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53 Commits

Author SHA1 Message Date
Slava Monich
dfafcfc190 Merge pull request #11 from monich/modemwatch
Expose modem watch API to plugins
2021-10-08 13:07:45 +03:00
Slava Monich
c38df7dbf0 [ofono] Expose modem watch API to plugins. JB#54540 2021-10-08 03:39:47 +03:00
Slava Monich
a008c72abd Update upstream hash 2021-10-07 19:52:37 +03:00
Slava Monich
7794754b6a Merge pull request #9 from PsychoGame/ofono-new
[ofono] Update baseline to 1.25. JB#54354
2021-10-07 19:50:03 +03:00
Slava Monich
9c2ab0e1d8 [plugin] Disabled OFONO_API_SUBJECT_TO_CHANGE check in plugin.h
Sailfish OS APIs must remain backward compatible. That's not subject
to change.
2021-10-01 13:53:18 +03:00
Slava Monich
d87e925d57 Merge pull request #10 from monich/config
Do not require non-critical packages
2021-09-29 12:34:40 +03:00
Slava Monich
33744c5106 [ofono] Do not require non-critical packages. JB#55701
Recommend them instead (requires rpm 4.12)
2021-09-28 19:13:18 +03:00
Jan Jasper de Kroon
a68123c74b Merge branch 'sailfishos:master' into ofono-new 2021-09-20 17:38:41 +01:00
Slava Monich
1d35a2dc2d Merge pull request #8 from monich/signals
Fix a problem with D-Bus signal not being emitted
2021-09-17 12:42:08 +03:00
Jan Jasper de Kroon
fcd5ce0bdd Merge branch 'sailfishos:master' into ofono-new 2021-09-17 06:57:45 +01:00
Slava Monich
352bdf5a39 [unit] Test DefaultDataModemChanged signal. JB#55575 2021-09-17 02:25:57 +03:00
Slava Monich
d73d3e2e7f [ofono] Fixed a problem with D-Bus signal not being emitted. JB#55575
Whenever slot_manager_update_modem_paths() returns something non-zero,
corresponding D-Bus signals must be emitted.
2021-09-17 02:25:43 +03:00
Slava Monich
38a83d3c18 [ofono] Added debug trace 2021-09-16 20:28:42 +03:00
Slava Monich
5b175c2877 [unit] Fixed coverage script
It was broken by removal of ril plugin.
2021-09-16 19:59:06 +03:00
Slava Monich
52bb7b3295 [unit] Added back test-conf
It was accidentally removed earlier.
2021-09-16 19:57:18 +03:00
Marcel Holtmann
024cce6145 Release 1.25 2021-09-15 19:26:53 +02:00
Pavel Machek
4d537b3234 udevng: Move debug print to more useful place
in setup_gobi()
2021-09-15 19:24:56 +02:00
Pavel Machek
a96228731f doc: Fix typo in location-reporting-api.txt 2021-09-15 19:24:21 +02:00
Pavel Machek
5023d59bc5 test: Better help for delivery reports
Explain "delivery report" parameter in send-sms.
2021-09-15 19:23:37 +02:00
Anirudh Gargi
51c83a9837 atmodem: add EUTRAN tech for creg read status
Add handling for CREG's status to get the technology type. CREG
notify URC does not need additional handling as 'AcT' is mapped
one-on-one to tech.
2021-09-15 19:22:54 +02:00
Giacinto Cifelli
d4599af851 atmodem/sms: no mms support for Gemalto 2021-09-15 19:21:58 +02:00
Giacinto Cifelli
67d401d1f8 gemalto: Use GEMALTO vendor for sms 2021-09-15 19:21:17 +02:00
Giacinto Cifelli
af7ba36e78 atmodem: change vendor CINTERION in GEMALTO in sms 2021-09-15 19:20:00 +02:00
Giacinto Cifelli
27ebe48759 gemalto: Use GEMALTO vendor instead of CINTERION
The sim atom is now created with the GEMALTO vendor instead of
CINTERION.  This is because GEMALTO has superceeded CINTERION and the
gemalto plugin will be updated to handle (legacy) modems from cinterion
as well as current gemalto devices.
2021-09-15 19:19:21 +02:00
Giacinto Cifelli
bafb4c2c31 atmodem: change vendor CINTERION to GEMALTO in sim 2021-09-15 19:17:54 +02:00
Giacinto Cifelli
7a12dd7ac7 atmodem: added Gemalto vendor to CBS CSCB logic 2021-09-15 19:17:15 +02:00
Giacinto Cifelli
61ea242ce6 lte: add implementation for ofono_lte_get_modem 2021-09-15 19:16:32 +02:00
Giacinto Cifelli
d4a0dd4efc include: add ofono_lte_get_modem global function
this function can be used in the drivers to query the functions
ofono_modem_get_* to retrieve modem-specific properties
2021-09-15 19:14:02 +02:00
Giacinto Cifelli
d6d0ee296d lte: clarify failed registration message 2021-09-15 19:13:01 +02:00
Marcel Holtmann
3575ce6a2d build: Remove setup of thread support 2021-09-15 19:10:42 +02:00
Giacinto Cifelli
f8bdf3cd4e gprs: make sure that the context is properly released 2021-09-15 19:00:01 +02:00
Giacinto Cifelli
b4f200efc7 atmodem/sms: Do not print an error message incorrectly
add missing return in at_cmt_notify.  Without it an error message was
generated in all cases, even successful ones.
2021-09-15 18:58:18 +02:00
Giacinto Cifelli
758210a774 mbim: fix calling mbim_sms_exit instead of _init 2021-09-15 18:57:26 +02:00
Giacinto Cifelli
75c85ee49a tools: remove calls to g_thread_init 2021-09-15 18:56:44 +02:00
Giacinto Cifelli
b7a3fce633 main: Remove call to g_thread_init
according to g_thread documentation, this call is no longer needed,
and starting from g_thread version 2.32 it must not be used
2021-09-15 18:56:00 +02:00
Giacinto Cifelli
3b2945f3ff gprs: Fix use of invalid operator for bitwise flags 2021-09-15 18:54:57 +02:00
Giacinto Cifelli
fa3875693b atmodem: added vendor Gemalto 2021-09-15 18:54:15 +02:00
Giacinto Cifelli
92e8e6604c doc: fix typo in doc/emergency-call-handling.txt 2021-09-15 18:53:15 +02:00
Anirudh Gargi
9ca9dc545e udev:fix seg fault in case of vid and pid is NULL
In some case linux report 'driver' as valid yet vid and pid as NULL.
Adding NULL check to prevent seg fault.

Log:
ofonod[23829]: plugins/udevng.c:udev_start()
ofonod[23829]: plugins/udevng.c:enumerate_devices()
ofonod[23829]: plugins/udevng.c:check_usb_device() hub [1d6b:0002]
ofonod[23829]: plugins/udevng.c:check_usb_device() usb [1d6b:0002]
ofonod[23829]: plugins/udevng.c:check_usb_device() usbhid [03f0:034a]
ofonod[23829]: plugins/udevng.c:check_usb_device() usbhid [03f0:034a]
ofonod[23829]: plugins/udevng.c:check_usb_device() usb [1d6b:0002]
ofonod[23829]: plugins/udevng.c:check_usb_device() cdc_acm [(null):(null)]
ofonod[23829]: Aborting (signal 11) [./src/ofonod]
2021-09-15 18:52:34 +02:00
Christophe Ronco
69b6338baa qmimodem: fix roaming status report
Problem seen with a MC7304 modem and a roaming SIM card.
Status in org.ofono.NetworkRegistration properties ends up in "registered"
instead of roaming. Both AT command and qmicli indicates we are roaming.

What's happening is the following:

1) first QMI_NAS_SS_INFO_IND indicating we are registered contains a
QMI_NAS_RESULT_ROAMING_STATUS parameter.
Parameter inside says we are roaming and qmimidem driver correctly reports
status NETWORK_REGISTRATION_STATUS_ROAMING.
2) other QMI_NAS_SS_INFO_IND arrive, saying we are registered without
QMI_NAS_RESULT_ROAMING_STATUS parameter.
Driver reports NETWORK_REGISTRATION_STATUS_REGISTERED.

Extract of traces with QMI binary debug interpreted (as far as I can...):
a) first "searching" indication
ofonod[855]: QMI: < 01 3b 00 80 03 01 04 00 00 24 00 2f 00
29 05 00 d0 00 14 00 00 MCC:208 MNC:20
22 05 00 01 02 00 01 00 Detailed Service Status:
                        QMI_NAS_SERVICE_STATUS_LIMITED,
                        QMI_NAS_NETWORK_SERVICE_DOMAIN_PS, ...
15 03 00 01 08 01 LTE, no roaming
12 05 00 d0 00 14 00 00 Current PLMN: MCC:208 MNC:20, no desc
11 01 00 00
10 01 00 01 No roaming
01 06 00 02 02 02 02 01 08 NAS_REGISTRATION_STATE_NOT_REGISTERED_SEARCHING,
                           CS detached, PS detached, NETWORK_TYPE_3GPP,
                           QMI_NAS_RADIO_INTERFACE_LTE
ofonod[855]: QMI: NAS_ind msg=36 len=47 [client=1,type=4,tid=0,len=59]
ofonod[855]: QMI: {type=41,len=5} {type=34,len=5} {type=21,len=3}
             {type=18,len=5}
ofonod[855]: QMI: {type=17,len=1} {type=16,len=1} {type=1,len=6}
ofonod[855]: ofono_netreg_status_notify modem /sierra_0 status 2 lac -1
             cellid -1 tech 7

b) second "searching" indication
ofonod[855]: QMI: < 01 21 00 80 03 01 04 00 00 24 00 15 00
22 05 00 03 03 00 01 00 Detailed Service Status:
                        QMI_NAS_SERVICE_STATUS_LIMITED_REGIONAL, CS_PS, ...
11 01 00 00
01 06 00 02 02 02 02 01 08 NAS_REGISTRATION_STATE_NOT_REGISTERED_SEARCHING,
                           CS detached, PS detached, NETWORK_TYPE_3GPP,
                           QMI_NAS_RADIO_INTERFACE_LTE

ofonod[855]: QMI: NAS_ind msg=36 len=21 [client=1,type=4,tid=0,len=33]
ofonod[855]: QMI: {type=34,len=5} {type=17,len=1} {type=1,len=6}

c) First indication while "registered"
ofonod[855]: QMI: < 01 5e 00 80 03 01 04 00 00 24 00 52 00
2a 01 00 00
29 05 00 d0 00 14 00 00 MCC:208 MNC:20
28 02 00 15 01 UMTS Primary Scrambling Code
26 08 00 03 00 00 00 03 00 00 00 CS: all calls allowed,
                                 PS: all calls allowed
22 05 00 02 03 00 01 00 Detailed Service Status:
                        QMI_NAS_SERVICE_STATUS_AVAILABLE, CS_PS, ...
1e 04 00 f7 00 95 04 CID 3GPP
1d 02 00 fb 50 LAC 3GPP
15 03 00 01 05 00 UMTS: roaming
12 05 00 d0 00 14 00 00 Current PLMN: MCC:208 MNC:20, no desc
11 04 00 03 03 04 05
10 01 00 00 ROAMING ON
01 06 00 01 01 01 02 01 05 NAS_REGISTRATION_STATE_REGISTERED, CS attached,
                           PS attached, NETWORK_TYPE_3GPP,
                           QMI_NAS_RADIO_INTERFACE_UMTS
ofonod[855]: QMI: NAS_ind msg=36 len=82 [client=1,type=4,tid=0,len=94]
ofonod[855]: QMI: {type=42,len=1} {type=41,len=5} {type=40,len=2}
             {type=38,len=8}
ofonod[855]: QMI: {type=34,len=5} {type=30,len=4} {type=29,len=2}
             {type=21,len=3}
ofonod[855]: QMI: {type=18,len=5} {type=17,len=4} {type=16,len=1}
             {type=1,len=6}
ofonod[855]: ofono_gprs_status_notify modem /sierra_0 status 1

==================> ROAMING status reported <==========================
ofonod[855]: ofono_netreg_status_notify modem /sierra_0 status 5 lac 20731
             cellid 76873975 tech 2

d) second indication while "registered"
ofonod[855]: QMI: < 01 31 00 80 03 01 04 00 00 24 00 25 00
29 05 00 d0 00 14 00 00 MCC:208 MNC:20
28 02 00 15 01 UMTS Primary Scrambling Code
12 05 00 d0 00 14 00 00 Current PLMN: MCC:208 MNC:20, no desc
11 04 00 03 03 04 05
01 06 00 01 01 01 02 01 05 NAS_REGISTRATION_STATE_REGISTERED, CS attached,
                           PS attached, NETWORK_TYPE_3GPP,
                           QMI_NAS_RADIO_INTERFACE_UMTS
ofonod[855]: QMI: NAS_ind msg=36 len=37 [client=1,type=4,tid=0,len=49]
ofonod[855]: QMI: {type=41,len=5} {type=40,len=2} {type=18,len=5}
                  {type=17,len=4}
ofonod[855]: QMI: {type=1,len=6}
==================> ROAMING information lost <==========================
ofonod[855]: ofono_netreg_status_notify modem /sierra_0 status 1 lac -1
             cellid -1 tech 2

I can't tell if not having the ROAMING_STATUS parameter in all indication
is something happening only on MC7304 or if it happens on all "QMI" modems.

I have also seen (on MC7430, with a roaming SIM card):
 - first notification indicating status
QMI_NAS_REGISTRATION_STATE_SEARCHING and roaming ON
 - following notifications indicating status
QMI_NAS_REGISTRATION_STATE_REGISTERED and no roaming notification

So we must handle roaming information even when not registered.
2021-09-15 18:51:39 +02:00
Denis Kenzior
bef7e690b5 AUTHORS: Mention Julien's contributions 2021-09-15 18:50:45 +02:00
Julien Tournier
5a4923261a atmodem: Handle cinterion modems compliant with 27.005 2021-09-15 18:45:17 +02:00
Martin Hundebøll
05c2185163 atmodem: add Quectel M95 special case for PIN query
The AT command reference for Quectel M95 specifies that remaining SIM
pin retires can be queried using AT+QTRPIN, which responds with one
count for each pin-type:

+QTRPIN: 3,3,10,10

After entering the PIN code, enable an extra AT+CPIN? for the M95
vendor.
2021-09-15 18:40:51 +02:00
Denis Kenzior
2da2e87b76 AUTHORS: Mention Martin's contributions 2021-09-15 18:39:12 +02:00
Martin Hundebøll
8ca429b2c1 udevng: fix removal of serial devices
Since the merge of udev.c into udevng.c all cleanup function must handle
both usb devices and serial devices. Add this distinction to
check_remove(), so that is doesn't try to iterate the .serial member as
if it were a .devices list.
2021-09-15 18:38:24 +02:00
Giacinto Cifelli
dbcf6e269d ublox: Add voicecall support 2021-09-15 18:37:30 +02:00
Christophe Ronco
061c743837 huawei: use VENDOR_HUAWEI quirk on gprs context creation 2021-09-15 18:35:47 +02:00
Christophe Ronco
b908289e32 atmodem: Add gprs-context quirk for HUAWEI vendor
When ofono dies while connected using PPP, modem AT channel is not put
back to command mode (tested with HUAWEI modems E3372 and MS2372).
If ofono is restarted, it won't be able to connect as it gets no answer
to AT commands on this AT channel.
This patch adds a quirk to immediately send escape sequence on modem
channel when gprs-context atom is removed.
2021-09-15 18:33:58 +02:00
Denis Kenzior
d4220f7223 udevng: Fix SIM900 detection 2021-09-15 18:22:41 +02:00
Denis Kenzior
4ddff7658f mbim: Remove useless debug 2021-09-15 18:21:46 +02:00
Slava Monich
09e6f35a23 [ofono] Replace built-in ril plugin with the external one. JB#55027 2021-09-15 03:02:16 +03:00
Slava Monich
6dddf527d5 Merge pull request #7 from monich/double-free
Fix double-free
2021-09-14 17:01:57 +03:00
Slava Monich
a9de07c2bb [ril] Fix double-free. JB#55547 2021-09-14 16:43:36 +03:00
100 changed files with 309 additions and 25996 deletions

View File

@@ -135,3 +135,5 @@ Bassem Boubaker <bassem.boubaker@actia.fr>
Bob Ham <bob.ham@puri.sm>
Varun Gargi <varun.gargi@intel.com>
Florent Beillonnet <florent.beillonnet@gmail.com>
Martin Hundebøll <martin@geanix.com>
Julien Tournier <tournier.julien@gmail.com>

View File

@@ -1,3 +1,10 @@
ver 1.25:
Fix issue with handling GPRS context release.
Fix issue with GPRS context shutdown and Huawei modems.
Fix issue with roaming status report and QMI devices.
Add support for voice call handling of U-Blox modems
Add support for EUTRAN technology reporting.
ver 1.24:
Fix issue with property changed signals and CDMA networks.
Fix issue with handling SIM filesystem and SIM removal.

View File

@@ -126,58 +126,7 @@ builtin_modules += sailfish_access
builtin_sources += plugins/sailfish_access.c
endif
if DATAFILES
dist_conf_DATA += drivers/ril/ril_subscription.conf
endif
if RILMODEM
if SAILFISH_RILMODEM
builtin_modules += ril
builtin_sources += drivers/ril/ril_call_barring.c \
drivers/ril/ril_call_forward.c \
drivers/ril/ril_call_settings.c \
drivers/ril/ril_call_volume.c \
drivers/ril/ril_cell_info.c \
drivers/ril/ril_config.c \
drivers/ril/ril_connman.c \
drivers/ril/ril_cbs.c \
drivers/ril/ril_data.c \
drivers/ril/ril_devinfo.c \
drivers/ril/ril_devmon.c \
drivers/ril/ril_devmon_auto.c \
drivers/ril/ril_devmon_combine.c \
drivers/ril/ril_devmon_ds.c \
drivers/ril/ril_devmon_ss.c \
drivers/ril/ril_devmon_ur.c \
drivers/ril/ril_ecclist.c \
drivers/ril/ril_gprs.c \
drivers/ril/ril_gprs_context.c \
drivers/ril/ril_modem.c \
drivers/ril/ril_netmon.c \
drivers/ril/ril_netreg.c \
drivers/ril/ril_network.c \
drivers/ril/ril_oem_raw.c \
drivers/ril/ril_phonebook.c \
drivers/ril/ril_plugin.c \
drivers/ril/ril_radio.c \
drivers/ril/ril_radio_caps.c \
drivers/ril/ril_radio_settings.c \
drivers/ril/ril_sim.c \
drivers/ril/ril_sim_card.c \
drivers/ril/ril_sim_settings.c \
drivers/ril/ril_sms.c \
drivers/ril/ril_stk.c \
drivers/ril/ril_ussd.c \
drivers/ril/ril_util.c \
drivers/ril/ril_vendor.c \
drivers/ril/ril_voicecall.c
# Vendor specific extensions
builtin_sources += drivers/ril/ril_vendor_mtk.c
else
builtin_sources += $(gril_sources)
builtin_modules += rildev
@@ -218,7 +167,6 @@ builtin_sources += drivers/rilmodem/rilmodem.h \
drivers/infineonmodem/infineon_constants.h \
drivers/rilmodem/lte.c
endif
endif
if ISIMODEM
builtin_modules += isimodem
@@ -488,7 +436,7 @@ builtin_sources += drivers/cdmamodem/cdmamodem.h \
drivers/cdmamodem/connman.c
endif
if !RILMODEM
if EXTRA_MODEMS
builtin_modules += g1
builtin_sources += plugins/g1.c
@@ -567,9 +515,6 @@ builtin_sources += plugins/sim900.c
builtin_modules += sim7100
builtin_sources += plugins/sim7100.c
builtin_modules += connman
builtin_sources += plugins/connman.c
builtin_modules += telit
builtin_sources += plugins/telit.c
@@ -966,6 +911,12 @@ unit_tests = unit/test-common unit/test-util unit/test-idmap \
unit/test-simutil unit/test-stkutil \
unit/test-sms unit/test-cdmasms
unit_test_conf_SOURCES = unit/test-conf.c src/conf.c src/log.c
unit_test_conf_CFLAGS = $(AM_CFLAGS) $(COVERAGE_OPT)
unit_test_conf_LDADD = @GLIB_LIBS@ -ldl
unit_objects += $(unit_test_conf_OBJECTS)
unit_tests += unit/test-conf
unit_test_cell_info_SOURCES = unit/test-cell-info.c src/cell-info.c src/log.c
unit_test_cell_info_CFLAGS = $(AM_CFLAGS) $(COVERAGE_OPT)
unit_test_cell_info_LDADD = @GLIB_LIBS@ -ldl
@@ -1036,45 +987,6 @@ unit_objects += $(unit_test_dbus_access_OBJECTS)
unit_tests += unit/test-dbus-access
if RILMODEM
if SAILFISH_RILMODEM
unit_test_conf_SOURCES = unit/test-conf.c drivers/ril/ril_util.c \
src/conf.c src/util.c src/log.c
unit_test_conf_CFLAGS = $(COVERAGE_OPT) $(AM_CFLAGS)
unit_test_conf_LDADD = @GLIB_LIBS@ -ldl
unit_objects += $(unit_test_conf_OBJECTS)
unit_tests += unit/test-conf
unit_test_ril_config_SOURCES = unit/test-ril_config.c drivers/ril/ril_util.c \
drivers/ril/ril_config.c src/conf.c src/util.c src/log.c
unit_test_ril_config_CFLAGS = $(COVERAGE_OPT) $(AM_CFLAGS)
unit_test_ril_config_LDADD = @GLIB_LIBS@ -ldl
unit_objects += $(unit_test_ril_config_OBJECTS)
unit_tests += unit/test-ril_config
unit_test_ril_ecclist_SOURCES = unit/test-ril_ecclist.c \
drivers/ril/ril_ecclist.c src/log.c
unit_test_ril_ecclist_CFLAGS = $(COVERAGE_OPT) $(AM_CFLAGS)
unit_test_ril_ecclist_LDADD = @GLIB_LIBS@ -ldl
unit_objects += $(unit_test_ril_ecclist_OBJECTS)
unit_tests += unit/test-ril_ecclist
unit_test_ril_util_SOURCES = unit/test-ril_util.c drivers/ril/ril_util.c \
src/util.c src/log.c
unit_test_ril_util_CFLAGS = $(COVERAGE_OPT) $(AM_CFLAGS)
unit_test_ril_util_LDADD = @GLIB_LIBS@ -ldl
unit_objects += $(unit_test_ril_util_OBJECTS)
unit_tests += unit/test-ril_util
unit_test_ril_vendor_SOURCES = unit/test-ril_vendor.c unit/fake_watch.c \
drivers/ril/ril_vendor.c drivers/ril/ril_vendor_mtk.c \
drivers/ril/ril_util.c src/util.c src/log.c
unit_test_ril_vendor_CFLAGS = $(COVERAGE_OPT) $(AM_CFLAGS)
unit_test_ril_vendor_LDADD = @GLIB_LIBS@ -ldl
unit_objects += $(unit_test_ril_vendor_OBJECTS)
unit_tests += unit/test-ril_vendor
else
unit_tests += unit/test-rilmodem-cs \
unit/test-rilmodem-cs \
unit/test-rilmodem-sms \
@@ -1082,7 +994,6 @@ unit_tests += unit/test-rilmodem-cs \
unit/test-rilmodem-gprs
endif
endif
if ELL
if MBIMMODEM

View File

@@ -1,5 +1,5 @@
AC_PREREQ(2.60)
AC_INIT(ofono, 1.24)
AC_INIT(ofono, 1.25)
AM_INIT_AUTOMAKE([foreign subdir-objects color-tests])
AC_CONFIG_HEADERS(config.h)
@@ -55,9 +55,6 @@ AC_ARG_ENABLE(pie, AC_HELP_STRING([--enable-pie],
fi
])
AC_ARG_ENABLE(threads, AC_HELP_STRING([--enable-threads],
[enable threading support]), [enable_threads=${enableval}])
AC_CHECK_FUNC(signalfd, dummy=yes,
AC_MSG_ERROR(signalfd support is required))
@@ -79,14 +76,6 @@ PKG_CHECK_MODULES(GIO, gio-2.0, dummy=yes,
GLIB_CFLAGS="$GLIB_CFLAGS $GIO_CFLAGS"
GLIB_LIBS="$GLIB_LIBS $GIO_LIBS"
if (test "${enable_threads}" = "yes"); then
AC_DEFINE(NEED_THREADS, 1, [Define if threading support is required])
PKG_CHECK_MODULES(GTHREAD, gthread-2.0 >= 2.16, dummy=yes,
AC_MSG_ERROR(GThread >= 2.16 is required))
GLIB_CFLAGS="$GLIB_CFLAGS $GTHREAD_CFLAGS"
GLIB_LIBS="$GLIB_LIBS $GTHREAD_LIBS"
fi
PKG_CHECK_MODULES(DBUS, dbus-1 >= 1.4, dummy=yes,
AC_MSG_ERROR(D-Bus >= 1.4 is required))
AC_SUBST(DBUS_CFLAGS)
@@ -177,33 +166,17 @@ AC_ARG_ENABLE(rilmodem, AC_HELP_STRING([--disable-rilmodem],
[enable_rilmodem=${enableval}])
AM_CONDITIONAL(RILMODEM, test "${enable_rilmodem}" != "no")
AC_ARG_ENABLE(sailfish-rilmodem, AC_HELP_STRING([--enable-sailfish-rilmodem],
[enable Sailfish RIL modem]),
[enable_sailfish_rilmodem=${enableval}],
[enable_sailfish_rilmodem="no"])
AM_CONDITIONAL(SAILFISH_RILMODEM, test "${enable_sailfish_rilmodem}" != "no")
AC_ARG_ENABLE(extra-modems,
AC_HELP_STRING([--enable-extra-modems],
[enable modems not used by Sailfish OS]),
[enable_extra_modems=${enableval}])
AM_CONDITIONAL(EXTRA_MODEMS, test "${enable_extra_modems}" = "yes")
PKG_CHECK_MODULES(GLIBUTIL, libglibutil >= 1.0.49, dummy=yes,
AC_MSG_ERROR(libglibutil >= 1.0.49 is required))
CFLAGS="$CFLAGS $GLIBUTIL_CFLAGS"
LIBS="$LIBS $GLIBUTIL_LIBS"
if (test "${enable_sailfish_rilmodem}" = "yes"); then
PKG_CHECK_MODULES(GRILIO, libgrilio >= 1.0.38, dummy=yes,
AC_MSG_ERROR(libgrilio >= 1.0.38 is required))
PKG_CHECK_MODULES(LIBMCE, libmce-glib >= 1.0.6, dummy=yes,
AC_MSG_ERROR(libmce-glib >= 1.0.6 is required))
CFLAGS="$CFLAGS $GRILIO_CFLAGS $LIBMCE_CFLAGS"
LIBS="$LIBS $GRILIO_LIBS $LIBMCE_LIBS"
enable_sailfish_manager=yes
fi
AC_ARG_ENABLE(sailfish-manager,
AC_HELP_STRING([--enable-sailfish-manager],
[enable Sailfish OS modem manager plugin]),
[enable_sailfish_manager=${enableval}])
AM_CONDITIONAL(SAILFISH_MANAGER, test "${enable_sailfish_manager}" = "yes")
PKG_CHECK_MODULES(DBUS_GLIB, dbus-glib-1, dummy=yes,
AC_MSG_ERROR(dbus-glib is required by unit tests))
AC_SUBST(DBUS_GLIB_CFLAGS)

View File

@@ -14,7 +14,7 @@ What oFono will do:
- Post online atoms will be created.
- Upon reception of Dial request, Emergency mode is activated.
- Once the call is ended, Emergency mode is deactivated.
- Modem remains in online mode with full funcationality.
- Modem remains in online mode with full functionality.
Case 2: Call in SIM Present and PIN required state

View File

@@ -13,7 +13,7 @@ Methods dict GetProperties()
filedescriptor Request()
Asks to turn ON the NMEA stream and supplies the
gps device file descriptor. The external cliend should
gps device file descriptor. The external client should
use the file descriptor to receive the NMEA data.
Possible Errors: [service].Error.InProgress

View File

@@ -166,6 +166,7 @@ static void at_cbs_set_topics(struct ofono_cbs *cbs, const char *topics,
switch (data->vendor) {
case OFONO_VENDOR_GOBI:
case OFONO_VENDOR_QUALCOMM_MSM:
case OFONO_VENDOR_GEMALTO:
g_at_chat_send(data->chat, "AT+CSCB=0", none_prefix,
NULL, NULL, NULL);
break;

View File

@@ -465,10 +465,19 @@ static int at_gprs_context_probe(struct ofono_gprs_context *gc,
static void at_gprs_context_remove(struct ofono_gprs_context *gc)
{
struct gprs_context_data *gcd = ofono_gprs_context_get_data(gc);
GAtIO *io;
DBG("");
if (gcd->state != STATE_IDLE && gcd->ppp) {
if ((gcd->vendor == OFONO_VENDOR_HUAWEI) && gcd->chat) {
/* immediately send escape sequence */
io = g_at_chat_get_io(gcd->chat);
if (io)
g_at_io_write(io, "+++", 3);
}
g_at_ppp_unref(gcd->ppp);
g_at_chat_resume(gcd->chat);
}

View File

@@ -228,6 +228,10 @@ static void at_creg_cb(gboolean ok, GAtResult *result, gpointer user_data)
if ((status == 1 || status == 5) && (tech == -1))
tech = nd->tech;
/* 6-10 is EUTRAN, with 8 being emergency bearer case */
if (status > 5 && tech == -1)
tech = ACCESS_TECHNOLOGY_EUTRAN;
cb(&error, status, lac, ci, tech, cbd->data);
}

View File

@@ -66,10 +66,11 @@ static const char *oercn_prefix[] = { "_OERCN:", NULL };
static const char *cpinr_prefixes[] = { "+CPINR:", "+CPINRE:", NULL };
static const char *epin_prefix[] = { "*EPIN:", NULL };
static const char *simcom_spic_prefix[] = { "+SPIC:", NULL };
static const char *cinterion_spic_prefix[] = { "^SPIC:", NULL };
static const char *gemalto_spic_prefix[] = { "^SPIC:", NULL };
static const char *pct_prefix[] = { "#PCT:", NULL };
static const char *pnnm_prefix[] = { "+PNNM:", NULL };
static const char *qpinc_prefix[] = { "+QPINC:", NULL };
static const char *qtrpin_prefix[] = { "+QTRPIN:", NULL };
static const char *upincnt_prefix[] = { "+UPINCNT:", NULL };
static const char *cuad_prefix[] = { "+CUAD:", NULL };
static const char *ccho_prefix[] = { "+CCHO:", NULL };
@@ -982,6 +983,49 @@ error:
CALLBACK_WITH_FAILURE(cb, NULL, cbd->data);
}
static void at_qtrpin_cb(gboolean ok, GAtResult *result, gpointer user_data)
{
struct cb_data *cbd = user_data;
ofono_sim_pin_retries_cb_t cb = cbd->cb;
const char *final = g_at_result_final_response(result);
GAtResultIter iter;
struct ofono_error error;
int retries[OFONO_SIM_PASSWORD_INVALID];
size_t i;
decode_at_error(&error, final);
if (!ok) {
cb(&error, NULL, cbd->data);
return;
}
for (i = 0; i < OFONO_SIM_PASSWORD_INVALID; i++)
retries[i] = -1;
g_at_result_iter_init(&iter, result);
while (g_at_result_iter_next(&iter, "+QTRPIN:")) {
int pin, pin2, puk, puk2;
if (!g_at_result_iter_next_number(&iter, &pin))
continue;
if (!g_at_result_iter_next_number(&iter, &pin2))
continue;
if (!g_at_result_iter_next_number(&iter, &puk))
continue;
if (!g_at_result_iter_next_number(&iter, &puk2))
continue;
retries[OFONO_SIM_PASSWORD_SIM_PIN] = pin;
retries[OFONO_SIM_PASSWORD_SIM_PUK] = puk;
retries[OFONO_SIM_PASSWORD_SIM_PIN2] = pin2;
retries[OFONO_SIM_PASSWORD_SIM_PUK2] = puk2;
}
cb(&error, retries, cbd->data);
}
static void at_qpinc_cb(gboolean ok, GAtResult *result, gpointer user_data)
{
struct cb_data *cbd = user_data;
@@ -1066,7 +1110,7 @@ error:
CALLBACK_WITH_FAILURE(cb, NULL, cbd->data);
}
static void cinterion_spic_cb(gboolean ok, GAtResult *result,
static void gemalto_spic_cb(gboolean ok, GAtResult *result,
gpointer user_data)
{
struct cb_data *cbd = user_data;
@@ -1172,15 +1216,20 @@ static void at_pin_retries_query(struct ofono_sim *sim,
at_qpinc_cb, cbd, g_free) > 0)
return;
break;
case OFONO_VENDOR_QUECTEL_M95:
if (g_at_chat_send(sd->chat, "AT+QTRPIN", qtrpin_prefix,
at_qtrpin_cb, cbd, g_free) > 0)
return;
break;
case OFONO_VENDOR_UBLOX:
case OFONO_VENDOR_UBLOX_TOBY_L2:
if (g_at_chat_send(sd->chat, "AT+UPINCNT", upincnt_prefix,
upincnt_cb, cbd, g_free) > 0)
return;
break;
case OFONO_VENDOR_CINTERION:
if (g_at_chat_send(sd->chat, "AT^SPIC", cinterion_spic_prefix,
cinterion_spic_cb, cbd, g_free) > 0)
case OFONO_VENDOR_GEMALTO:
if (g_at_chat_send(sd->chat, "AT^SPIC", gemalto_spic_prefix,
gemalto_spic_cb, cbd, g_free) > 0)
return;
break;
default:
@@ -1305,6 +1354,7 @@ static void at_pin_send_cb(gboolean ok, GAtResult *result,
case OFONO_VENDOR_HUAWEI:
case OFONO_VENDOR_SIMCOM:
case OFONO_VENDOR_SIERRA:
case OFONO_VENDOR_QUECTEL_M95:
/*
* On ZTE modems, after pin is entered, SIM state is checked
* by polling CPIN as their modem doesn't provide unsolicited

View File

@@ -220,9 +220,16 @@ static void at_cmgs(struct ofono_sms *sms, const unsigned char *pdu,
int len;
if (mms) {
snprintf(buf, sizeof(buf), "AT+CMMS=%d", mms);
g_at_chat_send(data->chat, buf, none_prefix,
NULL, NULL, NULL);
switch (data->vendor) {
case OFONO_VENDOR_GEMALTO:
/* no mms support */
break;
default:
snprintf(buf, sizeof(buf), "AT+CMMS=%d", mms);
g_at_chat_send(data->chat, buf, none_prefix,
NULL, NULL, NULL);
break;
}
}
len = snprintf(buf, sizeof(buf), "AT+CMGS=%d\r", tpdu_len);
@@ -329,7 +336,7 @@ static inline void at_ack_delivery(struct ofono_sms *sms)
/* We must acknowledge the PDU using CNMA */
if (data->cnma_ack_pdu) {
switch (data->vendor) {
case OFONO_VENDOR_CINTERION:
case OFONO_VENDOR_GEMALTO:
snprintf(buf, sizeof(buf), "AT+CNMA=1");
break;
default:
@@ -411,9 +418,25 @@ static void at_cmt_notify(GAtResult *result, gpointer user_data)
goto err;
switch (data->vendor) {
case OFONO_VENDOR_CINTERION:
if (!g_at_result_iter_next_number(&iter, &tpdu_len))
goto err;
case OFONO_VENDOR_GEMALTO:
if (!g_at_result_iter_next_number(&iter, &tpdu_len)) {
/*
* Some Gemalto modems (ALS3,PLS8...), act in
* accordance with 3GPP 27.005. So we need to skip
* the first (<alpha>) field
* \r\n+CMT: ,23\r\nCAFECAFECAFE... ...\r\n
* ^------- PDU length
*/
DBG("Retrying to find the PDU length");
if (!g_at_result_iter_skip_next(&iter))
goto err;
/* Next attempt at finding the PDU length. */
if (!g_at_result_iter_next_number(&iter, &tpdu_len))
goto err;
}
break;
default:
if (!g_at_result_iter_skip_next(&iter))
@@ -439,6 +462,7 @@ static void at_cmt_notify(GAtResult *result, gpointer user_data)
if (data->vendor != OFONO_VENDOR_SIMCOM)
at_ack_delivery(sms);
return;
err:
ofono_error("Unable to parse CMT notification");

View File

@@ -44,8 +44,10 @@ enum ofono_vendor {
OFONO_VENDOR_WAVECOM_Q2XXX,
OFONO_VENDOR_ALCATEL,
OFONO_VENDOR_QUECTEL,
OFONO_VENDOR_QUECTEL_M95,
OFONO_VENDOR_UBLOX,
OFONO_VENDOR_UBLOX_TOBY_L2,
OFONO_VENDOR_CINTERION,
OFONO_VENDOR_XMM,
OFONO_VENDOR_GEMALTO,
};

View File

@@ -33,7 +33,7 @@ static int mbimmodem_init(void)
mbim_devinfo_init();
mbim_sim_init();
mbim_netreg_init();
mbim_sms_exit();
mbim_sms_init();
mbim_gprs_init();
mbim_gprs_context_init();
return 0;

View File

@@ -42,6 +42,13 @@ struct netreg_data {
struct qmi_service *nas;
struct ofono_network_operator operator;
uint8_t current_rat;
bool is_roaming;
};
enum roaming_status {
ROAMING_STATUS_OFF,
ROAMING_STATUS_ON,
ROAMING_STATUS_NO_CHANGE,
};
static bool extract_ss_info_time(
@@ -78,11 +85,12 @@ static bool extract_ss_info_time(
static bool extract_ss_info(struct qmi_result *result, int *status,
int *lac, int *cellid, int *tech,
enum roaming_status *roaming,
struct ofono_network_operator *operator)
{
const struct qmi_nas_serving_system *ss;
const struct qmi_nas_current_plmn *plmn;
uint8_t i, roaming;
uint8_t i, roaming_status;
uint16_t value16, len, opname_len;
uint32_t value32;
@@ -104,10 +112,13 @@ static bool extract_ss_info(struct qmi_result *result, int *status,
*tech = qmi_nas_rat_to_tech(ss->radio_if[i]);
}
*roaming = ROAMING_STATUS_NO_CHANGE;
if (qmi_result_get_uint8(result, QMI_NAS_RESULT_ROAMING_STATUS,
&roaming)) {
if (ss->status == 1 && roaming == 0)
*status = NETWORK_REGISTRATION_STATUS_ROAMING;
&roaming_status)) {
if (roaming_status == 0)
*roaming = ROAMING_STATUS_ON;
else if (roaming_status == 1)
*roaming = ROAMING_STATUS_OFF;
}
if (!operator)
@@ -149,7 +160,8 @@ static bool extract_ss_info(struct qmi_result *result, int *status,
else
*cellid = -1;
DBG("lac %d cellid %d tech %d", *lac, *cellid, *tech);
DBG("roaming %u lac %d cellid %d tech %d", *roaming, *lac, *cellid,
*tech);
return true;
}
@@ -160,16 +172,26 @@ static void ss_info_notify(struct qmi_result *result, void *user_data)
struct ofono_network_time net_time;
struct netreg_data *data = ofono_netreg_get_data(netreg);
int status, lac, cellid, tech;
enum roaming_status roaming;
DBG("");
if (extract_ss_info_time(result, &net_time))
ofono_netreg_time_notify(netreg, &net_time);
if (!extract_ss_info(result, &status, &lac, &cellid, &tech,
if (!extract_ss_info(result, &status, &lac, &cellid, &tech, &roaming,
&data->operator))
return;
if (roaming == ROAMING_STATUS_ON)
data->is_roaming = true;
else if (roaming == ROAMING_STATUS_OFF)
data->is_roaming = false;
if (status == QMI_NAS_REGISTRATION_STATE_REGISTERED &&
data->is_roaming)
status = NETWORK_REGISTRATION_STATUS_ROAMING;
ofono_netreg_status_notify(netreg, status, lac, cellid, tech);
}
@@ -179,6 +201,7 @@ static void get_ss_info_cb(struct qmi_result *result, void *user_data)
ofono_netreg_status_cb_t cb = cbd->cb;
struct netreg_data *data = cbd->user;
int status, lac, cellid, tech;
enum roaming_status roaming;
DBG("");
@@ -187,12 +210,21 @@ static void get_ss_info_cb(struct qmi_result *result, void *user_data)
return;
}
if (!extract_ss_info(result, &status, &lac, &cellid, &tech,
if (!extract_ss_info(result, &status, &lac, &cellid, &tech, &roaming,
&data->operator)) {
CALLBACK_WITH_FAILURE(cb, -1, -1, -1, -1, cbd->data);
return;
}
if (roaming == ROAMING_STATUS_ON)
data->is_roaming = true;
else if (roaming == ROAMING_STATUS_OFF)
data->is_roaming = false;
if (status == QMI_NAS_REGISTRATION_STATE_REGISTERED &&
data->is_roaming)
status = NETWORK_REGISTRATION_STATUS_ROAMING;
CALLBACK_WITH_SUCCESS(cb, status, lac, cellid, tech, cbd->data);
}
@@ -580,6 +612,7 @@ static int qmi_netreg_probe(struct ofono_netreg *netreg,
data->operator.tech = -1;
data->current_rat = QMI_NAS_NETWORK_RAT_NO_CHANGE;
data->is_roaming = false;
ofono_netreg_set_data(netreg, data);

View File

@@ -1,278 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_plugin.h"
#include "ril_sim_card.h"
#include "ril_util.h"
#include "ril_log.h"
/* See 3GPP 27.007 7.4 for possible values */
#define RIL_MAX_SERVICE_LENGTH 3
/*
* ril.h does not state that string count must be given, but that is
* still expected by the modem
*/
#define RIL_SET_STRING_COUNT 5
#define RIL_SET_PW_STRING_COUNT 3
struct ril_call_barring {
struct ril_sim_card *card;
GRilIoQueue *q;
guint timer_id;
};
struct ril_call_barring_cbd {
struct ril_call_barring *bd;
union _ofono_call_barring_cb {
ofono_call_barring_query_cb_t query;
ofono_call_barring_set_cb_t set;
gpointer ptr;
} cb;
gpointer data;
};
#define ril_call_barring_cbd_free g_free
static inline struct ril_call_barring *ril_call_barring_get_data(
struct ofono_call_barring *b)
{
return ofono_call_barring_get_data(b);
}
static struct ril_call_barring_cbd *ril_call_barring_cbd_new(
struct ril_call_barring *bd, void *cb, void *data)
{
struct ril_call_barring_cbd *cbd;
cbd = g_new0(struct ril_call_barring_cbd, 1);
cbd->bd = bd;
cbd->cb.ptr = cb;
cbd->data = data;
return cbd;
}
static inline void ril_call_barring_submit_request(struct ril_call_barring *bd,
GRilIoRequest* req, guint code, GRilIoChannelResponseFunc response,
void *cb, void *data)
{
grilio_queue_send_request_full(bd->q, req, code, response,
ril_call_barring_cbd_free,
ril_call_barring_cbd_new(bd, cb, data));
}
static void ril_call_barring_query_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ofono_error error;
struct ril_call_barring_cbd *cbd = user_data;
ofono_call_barring_query_cb_t cb = cbd->cb.query;
if (status == RIL_E_SUCCESS) {
int bearer_class = 0;
GRilIoParser rilp;
/*
* Services for which the specified barring facility is active.
* "0" means "disabled for all, -1 if unknown"
*/
grilio_parser_init(&rilp, data, len);
grilio_parser_get_int32(&rilp, NULL); /* count */
grilio_parser_get_int32(&rilp, &bearer_class);
DBG("Active services: %d", bearer_class);
cb(ril_error_ok(&error), bearer_class, cbd->data);
} else {
ofono_error("Call Barring query error %d", status);
cb(ril_error_failure(&error), 0, cbd->data);
}
}
static void ril_call_barring_query(struct ofono_call_barring *b,
const char *lock, int cls,
ofono_call_barring_query_cb_t cb, void *data)
{
struct ril_call_barring *bd = ofono_call_barring_get_data(b);
char cls_textual[RIL_MAX_SERVICE_LENGTH];
GRilIoRequest *req;
DBG("lock: %s, services to query: %d", lock, cls);
/*
* RIL modems do not support 7 as default bearer class. According to
* the 22.030 Annex C: When service code is not given it corresponds to
* "All tele and bearer services"
*/
if (cls == BEARER_CLASS_DEFAULT) {
cls = SERVICE_CLASS_NONE;
}
sprintf(cls_textual, "%d", cls);
/*
* See 3GPP 27.007 7.4 for parameter descriptions.
*/
req = grilio_request_array_utf8_new(4, lock, "", cls_textual,
ril_sim_card_app_aid(bd->card));
ril_call_barring_submit_request(bd, req,
RIL_REQUEST_QUERY_FACILITY_LOCK,
ril_call_barring_query_cb, cb, data);
grilio_request_unref(req);
}
static void ril_call_barring_set_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ofono_error error;
struct ril_call_barring_cbd *cbd = user_data;
ofono_call_barring_set_cb_t cb = cbd->cb.set;
if (status == RIL_E_SUCCESS) {
cb(ril_error_ok(&error), cbd->data);
} else {
ofono_error("Call Barring Set error %d", status);
cb(ril_error_failure(&error), cbd->data);
}
}
static void ril_call_barring_set(struct ofono_call_barring *b,
const char *lock, int enable, const char *passwd, int cls,
ofono_call_barring_set_cb_t cb, void *data)
{
struct ril_call_barring *bd = ofono_call_barring_get_data(b);
char cls_textual[RIL_MAX_SERVICE_LENGTH];
GRilIoRequest *req = grilio_request_new();
DBG("lock: %s, enable: %i, bearer class: %i", lock, enable, cls);
/*
* RIL modem does not support 7 as default bearer class. According to
* the 22.030 Annex C: When service code is not given it corresponds to
* "All tele and bearer services"
*/
if (cls == BEARER_CLASS_DEFAULT) {
cls = SERVICE_CLASS_NONE;
}
sprintf(cls_textual, "%d", cls);
/* See 3GPP 27.007 7.4 for parameter descriptions */
grilio_request_append_int32(req, RIL_SET_STRING_COUNT);
grilio_request_append_utf8(req, lock); /* Facility code */
grilio_request_append_utf8(req, enable ?
RIL_FACILITY_LOCK :
RIL_FACILITY_UNLOCK);
grilio_request_append_utf8(req, passwd);
grilio_request_append_utf8(req, cls_textual);
grilio_request_append_utf8(req, ril_sim_card_app_aid(bd->card));
ril_call_barring_submit_request(bd, req,
RIL_REQUEST_SET_FACILITY_LOCK,
ril_call_barring_set_cb, cb, data);
grilio_request_unref(req);
}
static void ril_call_barring_set_passwd_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ofono_error error;
struct ril_call_barring_cbd *cbd = user_data;
ofono_call_barring_set_cb_t cb = cbd->cb.set;
if (status == RIL_E_SUCCESS) {
cb(ril_error_ok(&error), cbd->data);
} else {
ofono_error("Call Barring Set PW error %d", status);
cb(ril_error_failure(&error), cbd->data);
}
}
static void ril_call_barring_set_passwd(struct ofono_call_barring *b,
const char *lock, const char *old_passwd,
const char *new_passwd, ofono_call_barring_set_cb_t cb,
void *data)
{
struct ril_call_barring *bd = ofono_call_barring_get_data(b);
GRilIoRequest *req = grilio_request_new();
DBG("");
grilio_request_append_int32(req, RIL_SET_PW_STRING_COUNT);
grilio_request_append_utf8(req, lock); /* Facility code */
grilio_request_append_utf8(req, old_passwd);
grilio_request_append_utf8(req, new_passwd);
ril_call_barring_submit_request(bd, req,
RIL_REQUEST_CHANGE_BARRING_PASSWORD,
ril_call_barring_set_passwd_cb, cb, data);
grilio_request_unref(req);
}
static gboolean ril_call_barring_register(gpointer user_data)
{
struct ofono_call_barring *b = user_data;
struct ril_call_barring *bd = ril_call_barring_get_data(b);
GASSERT(bd->timer_id);
bd->timer_id = 0;
ofono_call_barring_register(b);
return FALSE;
}
static int ril_call_barring_probe(struct ofono_call_barring *b,
unsigned int vendor, void *data)
{
struct ril_modem *modem = data;
struct ril_call_barring *bd = g_new0(struct ril_call_barring, 1);
DBG("");
bd->card = ril_sim_card_ref(modem->sim_card);
bd->q = grilio_queue_new(ril_modem_io(modem));
bd->timer_id = g_idle_add(ril_call_barring_register, b);
ofono_call_barring_set_data(b, bd);
return 0;
}
static void ril_call_barring_remove(struct ofono_call_barring *b)
{
struct ril_call_barring *bd = ril_call_barring_get_data(b);
DBG("");
ofono_call_barring_set_data(b, NULL);
if (bd->timer_id > 0) {
g_source_remove(bd->timer_id);
}
ril_sim_card_unref(bd->card);
grilio_queue_cancel_all(bd->q, FALSE);
grilio_queue_unref(bd->q);
g_free(bd);
}
const struct ofono_call_barring_driver ril_call_barring_driver = {
.name = RILMODEM_DRIVER,
.probe = ril_call_barring_probe,
.remove = ril_call_barring_remove,
.query = ril_call_barring_query,
.set = ril_call_barring_set,
.set_passwd = ril_call_barring_set_passwd
};
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,274 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_plugin.h"
#include "ril_util.h"
#include "ril_log.h"
#include <ofono/netreg.h>
struct ril_call_forward {
GRilIoQueue *q;
guint timer_id;
};
enum ril_call_forward_action {
CF_ACTION_DISABLE,
CF_ACTION_ENABLE,
CF_ACTION_INTERROGATE,
CF_ACTION_REGISTRATION,
CF_ACTION_ERASURE
};
#define CF_TIME_DEFAULT (0)
struct ril_call_forward_cbd {
struct ril_call_forward *fd;
union _ofono_call_forward_cb {
ofono_call_forwarding_query_cb_t query;
ofono_call_forwarding_set_cb_t set;
gpointer ptr;
} cb;
gpointer data;
};
static inline struct ril_call_forward *ril_call_forward_get_data(
struct ofono_call_forwarding *cf)
{
return ofono_call_forwarding_get_data(cf);
}
static void ril_call_forward_cbd_free(gpointer cbd)
{
g_slice_free(struct ril_call_forward_cbd, cbd);
}
static struct ril_call_forward_cbd *ril_call_forward_cbd_new(void *cb,
void *data)
{
struct ril_call_forward_cbd *cbd;
cbd = g_slice_new0(struct ril_call_forward_cbd);
cbd->cb.ptr = cb;
cbd->data = data;
return cbd;
}
static GRilIoRequest *ril_call_forward_req(enum ril_call_forward_action action,
int type, int cls, const struct ofono_phone_number *number, int time)
{
GRilIoRequest *req = grilio_request_new();
/*
* Modem seems to respond with error to all requests
* made with bearer class BEARER_CLASS_DEFAULT.
*/
if (cls == BEARER_CLASS_DEFAULT) {
cls = SERVICE_CLASS_NONE;
}
grilio_request_append_int32(req, action);
grilio_request_append_int32(req, type);
grilio_request_append_int32(req, cls); /* Service class */
if (number) {
grilio_request_append_int32(req, number->type);
grilio_request_append_utf8(req, number->number);
} else {
grilio_request_append_int32(req, 0x81); /* TOA unknown */
grilio_request_append_utf8(req, NULL); /* No number */
}
grilio_request_append_int32(req, time);
return req;
}
static void ril_call_forward_set_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ofono_error error;
struct ril_call_forward_cbd *cbd = user_data;
ofono_call_forwarding_set_cb_t cb = cbd->cb.set;
if (status == RIL_E_SUCCESS) {
cb(ril_error_ok(&error), cbd->data);
} else {
ofono_error("CF setting failed");
cb(ril_error_failure(&error), cbd->data);
}
}
static void ril_call_forward_set(struct ofono_call_forwarding *cf,
enum ril_call_forward_action cmd, int type, int cls,
const struct ofono_phone_number *number, int time,
ofono_call_forwarding_set_cb_t cb, void *data)
{
struct ril_call_forward *fd = ril_call_forward_get_data(cf);
GRilIoRequest *req = ril_call_forward_req(cmd, type, cls, number, time);
grilio_queue_send_request_full(fd->q, req, RIL_REQUEST_SET_CALL_FORWARD,
ril_call_forward_set_cb, ril_call_forward_cbd_free,
ril_call_forward_cbd_new(cb, data));
grilio_request_unref(req);
}
static void ril_call_forward_registration(struct ofono_call_forwarding *cf,
int type, int cls, const struct ofono_phone_number *number,
int time, ofono_call_forwarding_set_cb_t cb, void *data)
{
ofono_info("cf registration");
ril_call_forward_set(cf, CF_ACTION_REGISTRATION, type, cls,
number, time, cb, data);
}
static void ril_call_forward_erasure(struct ofono_call_forwarding *cf,
int type, int cls, ofono_call_forwarding_set_cb_t cb, void *data)
{
ofono_info("cf erasure");
ril_call_forward_set(cf, CF_ACTION_ERASURE, type, cls,
NULL, CF_TIME_DEFAULT, cb, data);
}
static void ril_call_forward_deactivate(struct ofono_call_forwarding *cf,
int type, int cls, ofono_call_forwarding_set_cb_t cb, void *data)
{
ofono_info("cf disable");
ril_call_forward_set(cf, CF_ACTION_DISABLE, type, cls,
NULL, CF_TIME_DEFAULT, cb, data);
}
static void ril_call_forward_activate(struct ofono_call_forwarding *cf,
int type, int cls, ofono_call_forwarding_set_cb_t cb, void *data)
{
ofono_info("cf enable");
ril_call_forward_set(cf, CF_ACTION_ENABLE, type, cls,
NULL, CF_TIME_DEFAULT, cb, data);
}
static void ril_call_forward_query_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ofono_error error;
struct ril_call_forward_cbd *cbd = user_data;
ofono_call_forwarding_query_cb_t cb = cbd->cb.query;
if (status == RIL_E_SUCCESS) {
struct ofono_call_forwarding_condition *list = NULL;
GRilIoParser rilp;
int count = 0;
int i;
grilio_parser_init(&rilp, data, len);
grilio_parser_get_int32(&rilp, &count);
list = g_new0(struct ofono_call_forwarding_condition, count);
for (i = 0; i < count; i++) {
struct ofono_call_forwarding_condition *fw = list + i;
char *str;
grilio_parser_get_int32(&rilp, &fw->status);
grilio_parser_get_int32(&rilp, NULL);
grilio_parser_get_int32(&rilp, &fw->cls);
grilio_parser_get_int32(&rilp, &fw->phone_number.type);
str = grilio_parser_get_utf8(&rilp);
if (str) {
strncpy(fw->phone_number.number, str,
OFONO_MAX_PHONE_NUMBER_LENGTH);
fw->phone_number.number[
OFONO_MAX_PHONE_NUMBER_LENGTH] = 0;
g_free(str);
}
grilio_parser_get_int32(&rilp, &fw->time);
}
cb(ril_error_ok(&error), count, list, cbd->data);
g_free(list);
} else {
ofono_error("CF query failed");
cb(ril_error_failure(&error), 0, NULL, cbd->data);
}
}
static void ril_call_forward_query(struct ofono_call_forwarding *cf, int type,
int cls, ofono_call_forwarding_query_cb_t cb, void *data)
{
struct ril_call_forward *fd = ril_call_forward_get_data(cf);
GRilIoRequest *req = ril_call_forward_req(CF_ACTION_INTERROGATE,
type, cls, NULL, CF_TIME_DEFAULT);
ofono_info("cf query");
grilio_queue_send_request_full(fd->q, req,
RIL_REQUEST_QUERY_CALL_FORWARD_STATUS,
ril_call_forward_query_cb, ril_call_forward_cbd_free,
ril_call_forward_cbd_new(cb, data));
grilio_request_unref(req);
}
static gboolean ril_call_forward_register(gpointer user_data)
{
struct ofono_call_forwarding *cf = user_data;
struct ril_call_forward *fd = ril_call_forward_get_data(cf);
fd->timer_id = 0;
ofono_call_forwarding_register(cf);
return FALSE;
}
static int ril_call_forward_probe(struct ofono_call_forwarding *cf,
unsigned int vendor, void *data)
{
struct ril_modem *modem = data;
struct ril_call_forward *fd = g_try_new0(struct ril_call_forward, 1);
DBG("");
fd->q = grilio_queue_new(ril_modem_io(modem));
fd->timer_id = g_idle_add(ril_call_forward_register, cf);
ofono_call_forwarding_set_data(cf, fd);
return 0;
}
static void ril_call_forward_remove(struct ofono_call_forwarding *cf)
{
struct ril_call_forward *fd = ril_call_forward_get_data(cf);
DBG("");
ofono_call_forwarding_set_data(cf, NULL);
if (fd->timer_id) {
g_source_remove(fd->timer_id);
}
grilio_queue_cancel_all(fd->q, FALSE);
grilio_queue_unref(fd->q);
g_free(fd);
}
const struct ofono_call_forwarding_driver ril_call_forwarding_driver = {
.name = RILMODEM_DRIVER,
.probe = ril_call_forward_probe,
.remove = ril_call_forward_remove,
.erasure = ril_call_forward_erasure,
.deactivation = ril_call_forward_deactivate,
.query = ril_call_forward_query,
.registration = ril_call_forward_registration,
.activation = ril_call_forward_activate
};
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,306 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_plugin.h"
#include "ril_util.h"
#include "ril_log.h"
struct ril_call_settings {
GRilIoQueue *q;
guint timer_id;
};
struct ril_call_settings_cbd {
union _ofono_call_settings_cb {
ofono_call_settings_status_cb_t status;
ofono_call_settings_set_cb_t set;
ofono_call_settings_clir_cb_t clir;
gpointer ptr;
} cb;
gpointer data;
};
#define ril_call_settings_cbd_free g_free
static inline struct ril_call_settings *ril_call_settings_get_data(
struct ofono_call_settings *b)
{
return ofono_call_settings_get_data(b);
}
static struct ril_call_settings_cbd *ril_call_settings_cbd_new(void *cb,
void *data)
{
struct ril_call_settings_cbd *cbd;
cbd = g_new0(struct ril_call_settings_cbd, 1);
cbd->cb.ptr = cb;
cbd->data = data;
return cbd;
}
static inline void ril_call_settings_submit_req(struct ril_call_settings *sd,
GRilIoRequest* req, guint code, GRilIoChannelResponseFunc response,
void *cb, void *data)
{
grilio_queue_send_request_full(sd->q, req, code, response,
ril_call_settings_cbd_free,
ril_call_settings_cbd_new(cb, data));
}
static void ril_call_settings_clip_query_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ofono_error error;
struct ril_call_settings_cbd *cbd = user_data;
ofono_call_settings_status_cb_t cb = cbd->cb.status;
if (status == RIL_E_SUCCESS) {
GRilIoParser rilp;
int res = 0;
/* data length of the response */
grilio_parser_init(&rilp, data, len);
if (grilio_parser_get_int32(&rilp, &res) && res > 0) {
grilio_parser_get_int32(&rilp, &res);
}
cb(ril_error_ok(&error), res, cbd->data);
} else {
cb(ril_error_failure(&error), -1, cbd->data);
}
}
static void ril_call_settings_set_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ofono_error error;
struct ril_call_settings_cbd *cbd = user_data;
ofono_call_settings_set_cb_t cb = cbd->cb.set;
if (status == RIL_E_SUCCESS) {
cb(ril_error_ok(&error), cbd->data);
} else {
cb(ril_error_failure(&error), cbd->data);
}
}
static void ril_call_settings_cw_set(struct ofono_call_settings *cs, int mode,
int cls, ofono_call_settings_set_cb_t cb, void *data)
{
struct ril_call_settings *sd = ril_call_settings_get_data(cs);
GRilIoRequest *req = grilio_request_sized_new(12);
grilio_request_append_int32(req, 2); /* Number of params */
grilio_request_append_int32(req, mode); /* on/off */
/* Modem seems to respond with error to all queries
* or settings made with bearer class
* BEARER_CLASS_DEFAULT. Design decision: If given
* class is BEARER_CLASS_DEFAULT let's map it to
* SERVICE_CLASS_VOICE effectively making it the
* default bearer. This in line with API which is
* contains only voice anyways.
*/
if (cls == BEARER_CLASS_DEFAULT) {
cls = BEARER_CLASS_VOICE;
}
grilio_request_append_int32(req, cls); /* Service class */
ril_call_settings_submit_req(sd, req, RIL_REQUEST_SET_CALL_WAITING,
ril_call_settings_set_cb, cb, data);
grilio_request_unref(req);
}
static void ril_call_settings_cw_query_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ofono_error error;
struct ril_call_settings_cbd *cbd = user_data;
ofono_call_settings_status_cb_t cb = cbd->cb.status;
if (status == RIL_E_SUCCESS) {
GRilIoParser rilp;
int res = 0;
int sv = 0;
grilio_parser_init(&rilp, data, len);
/* first value in int[] is len so let's skip that */
grilio_parser_get_int32(&rilp, NULL);
/* status of call waiting service, disabled is returned only if
* service is not active for any service class */
grilio_parser_get_int32(&rilp, &res);
DBG("CW enabled/disabled: %d", res);
if (res > 0) {
/* services for which call waiting is enabled,
27.007 7.12 */
grilio_parser_get_int32(&rilp, &sv);
DBG("CW enabled for: %d", sv);
}
cb(ril_error_ok(&error), sv, cbd->data);
} else {
cb(ril_error_failure(&error), -1, cbd->data);
}
}
static void ril_call_settings_cw_query(struct ofono_call_settings *cs, int cls,
ofono_call_settings_status_cb_t cb, void *data)
{
struct ril_call_settings *sd = ril_call_settings_get_data(cs);
GRilIoRequest *req = grilio_request_sized_new(8);
grilio_request_append_int32(req, 1); /* Number of params */
/*
* RILD expects service class to be 0 as certain carriers can reject
* the query with specific service class
*/
grilio_request_append_int32(req, 0);
ril_call_settings_submit_req(sd, req, RIL_REQUEST_QUERY_CALL_WAITING,
ril_call_settings_cw_query_cb, cb, data);
grilio_request_unref(req);
}
static void ril_call_settings_clip_query(struct ofono_call_settings *cs,
ofono_call_settings_status_cb_t cb, void *data)
{
struct ril_call_settings *sd = ril_call_settings_get_data(cs);
ril_call_settings_submit_req(sd, NULL, RIL_REQUEST_QUERY_CLIP,
ril_call_settings_clip_query_cb, cb, data);
}
static void ril_call_settings_clir_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ofono_error error;
struct ril_call_settings_cbd *cbd = user_data;
ofono_call_settings_clir_cb_t cb = cbd->cb.clir;
if (status == RIL_E_SUCCESS) {
GRilIoParser rilp;
int override = -1, network = -1;
grilio_parser_init(&rilp, data, len);
/*first value in int[] is len so let's skip that*/
grilio_parser_get_int32(&rilp, NULL);
/* Set HideCallerId property from network */
grilio_parser_get_int32(&rilp, &override);
/* CallingLineRestriction indicates the state of
the CLIR supplementary service in the network */
grilio_parser_get_int32(&rilp, &network);
cb(ril_error_ok(&error), override, network, cbd->data);
} else {
cb(ril_error_failure(&error), -1, -1, cbd->data);
}
}
static void ril_call_settings_clir_query(struct ofono_call_settings *cs,
ofono_call_settings_clir_cb_t cb, void *data)
{
struct ril_call_settings *sd = ril_call_settings_get_data(cs);
ril_call_settings_submit_req(sd, NULL, RIL_REQUEST_GET_CLIR,
ril_call_settings_clir_cb, cb, data);
}
static void ril_call_settings_clir_set(struct ofono_call_settings *cs,
int mode, ofono_call_settings_set_cb_t cb, void *data)
{
struct ril_call_settings *sd = ril_call_settings_get_data(cs);
GRilIoRequest *req = grilio_request_sized_new(8);
grilio_request_append_int32(req, 1); /* Number of params */
grilio_request_append_int32(req, mode); /* for outgoing calls */
ril_call_settings_submit_req(sd, req, RIL_REQUEST_SET_CLIR,
ril_call_settings_set_cb, cb, data);
grilio_request_unref(req);
}
static gboolean ril_call_settings_register(gpointer user_data)
{
struct ofono_call_settings *cs = user_data;
struct ril_call_settings *sd = ril_call_settings_get_data(cs);
DBG("");
GASSERT(sd->timer_id);
sd->timer_id = 0;
ofono_call_settings_register(cs);
/* Single-shot */
return FALSE;
}
static int ril_call_settings_probe(struct ofono_call_settings *cs,
unsigned int vendor, void *data)
{
struct ril_modem *modem = data;
struct ril_call_settings *sd = g_try_new0(struct ril_call_settings, 1);
DBG("");
sd->q = grilio_queue_new(ril_modem_io(modem));
sd->timer_id = g_idle_add(ril_call_settings_register, cs);
ofono_call_settings_set_data(cs, sd);
return 0;
}
static void ril_call_settings_remove(struct ofono_call_settings *cs)
{
struct ril_call_settings *sd = ril_call_settings_get_data(cs);
DBG("");
ofono_call_settings_set_data(cs, NULL);
if (sd->timer_id > 0) {
g_source_remove(sd->timer_id);
}
grilio_queue_cancel_all(sd->q, FALSE);
grilio_queue_unref(sd->q);
g_free(sd);
}
const struct ofono_call_settings_driver ril_call_settings_driver = {
.name = RILMODEM_DRIVER,
.probe = ril_call_settings_probe,
.remove = ril_call_settings_remove,
.clip_query = ril_call_settings_clip_query,
.cw_query = ril_call_settings_cw_query,
.cw_set = ril_call_settings_cw_set,
.clir_query = ril_call_settings_clir_query,
.clir_set = ril_call_settings_clir_set
/*
* Not supported in RIL API
* .colp_query = ril_call_settings_colp_query,
* .colr_query = ril_call_settings_colr_query
*/
};
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,150 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2017 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_plugin.h"
#include "ril_util.h"
#include "ril_log.h"
struct ril_call_volume {
struct ofono_call_volume *v;
GRilIoQueue *q;
guint timer_id;
};
struct ril_call_volume_req {
ofono_call_volume_cb_t cb;
gpointer data;
};
static inline struct ril_call_volume *ril_call_volume_get_data(
struct ofono_call_volume *v)
{
return ofono_call_volume_get_data(v);
}
static void ril_call_volume_mute_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ofono_error error;
struct ril_call_volume_req *cbd = user_data;
ofono_call_volume_cb_t cb = cbd->cb;
if (status == RIL_E_SUCCESS) {
cb(ril_error_ok(&error), cbd->data);
} else {
ofono_error("Could not set the ril mute state");
cb(ril_error_failure(&error), cbd->data);
}
}
static void ril_call_volume_mute(struct ofono_call_volume *v, int muted,
ofono_call_volume_cb_t cb, void *data)
{
struct ril_call_volume *vd = ril_call_volume_get_data(v);
struct ril_call_volume_req *cbd;
GRilIoRequest *req = grilio_request_sized_new(8);
cbd = g_new(struct ril_call_volume_req, 1);
cbd->cb = cb;
cbd->data = data;
DBG("%d", muted);
grilio_request_append_int32(req, 1);
grilio_request_append_int32(req, muted);
grilio_queue_send_request_full(vd->q, req, RIL_REQUEST_SET_MUTE,
ril_call_volume_mute_cb, g_free, cbd);
grilio_request_unref(req);
}
static void ril_call_volume_query_mute_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ril_call_volume *vd = user_data;
if (status == RIL_E_SUCCESS) {
int muted = 0;
GRilIoParser rilp;
grilio_parser_init(&rilp, data, len);
grilio_parser_get_int32(&rilp, NULL); /* Array length */
grilio_parser_get_int32(&rilp, &muted);
DBG("{%d}", muted);
ofono_call_volume_set_muted(vd->v, muted);
} else {
ofono_error("Could not retrive the ril mute state");
}
}
static gboolean ril_call_volume_register(gpointer user_data)
{
struct ril_call_volume *vd = user_data;
DBG("");
GASSERT(vd->timer_id);
vd->timer_id = 0;
ofono_call_volume_register(vd->v);
/* Probe the mute state */
grilio_queue_send_request_full(vd->q, NULL,
RIL_REQUEST_GET_MUTE, ril_call_volume_query_mute_cb, NULL, vd);
/* This makes the timeout a single-shot */
return FALSE;
}
static int ril_call_volume_probe(struct ofono_call_volume *v,
unsigned int vendor, void *data)
{
struct ril_modem *modem = data;
struct ril_call_volume *vd = g_new0(struct ril_call_volume, 1);
DBG("");
vd->v = v;
vd->q = grilio_queue_new(ril_modem_io(modem));
vd->timer_id = g_idle_add(ril_call_volume_register, vd);
ofono_call_volume_set_data(v, vd);
return 0;
}
static void ril_call_volume_remove(struct ofono_call_volume *v)
{
struct ril_call_volume *vd = ril_call_volume_get_data(v);
DBG("");
ofono_call_volume_set_data(v, NULL);
if (vd->timer_id) {
g_source_remove(vd->timer_id);
}
grilio_queue_cancel_all(vd->q, FALSE);
grilio_queue_unref(vd->q);
g_free(vd);
}
const struct ofono_call_volume_driver ril_call_volume_driver = {
.name = RILMODEM_DRIVER,
.probe = ril_call_volume_probe,
.remove = ril_call_volume_remove,
.mute = ril_call_volume_mute,
};
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,246 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2020 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_plugin.h"
#include "ril_util.h"
#include "ril_log.h"
#include <gutil_strv.h>
struct ril_cbs {
struct ofono_cbs *cbs;
GRilIoChannel *io;
GRilIoQueue *q;
char *log_prefix;
guint register_id;
gulong event_id;
};
struct ril_cbs_cbd {
struct ril_cbs *cd;
ofono_cbs_set_cb_t cb;
gpointer data;
};
#define RIL_CBS_CHECK_RETRY_MS 1000
#define RIL_CBS_CHECK_RETRY_COUNT 30
#define DBG_(cd,fmt,args...) DBG("%s" fmt, (cd)->log_prefix, ##args)
#define ril_cbs_cbd_free g_free
static struct ril_cbs_cbd *ril_cbs_cbd_new(struct ril_cbs *cd,
ofono_cbs_set_cb_t cb, void *data)
{
struct ril_cbs_cbd *cbd = g_new(struct ril_cbs_cbd, 1);
cbd->cd = cd;
cbd->cb = cb;
cbd->data = data;
return cbd;
}
static gboolean ril_cbs_retry(GRilIoRequest *request, int ril_status,
const void *resp_data, guint resp_len, void *user_data)
{
return ril_status == RIL_E_INVALID_STATE;
}
static void ril_cbs_request_activation(struct ril_cbs *cd,
gboolean activate, GRilIoChannelResponseFunc response,
GDestroyNotify destroy, void* user_data)
{
GRilIoRequest* req = grilio_request_sized_new(8);
grilio_request_append_int32(req, 1);
grilio_request_append_int32(req, activate ? 0 :1);
DBG_(cd, "%sactivating CB", activate ? "" : "de");
grilio_request_set_retry_func(req, ril_cbs_retry);
grilio_request_set_retry(req, RIL_CBS_CHECK_RETRY_MS,
RIL_CBS_CHECK_RETRY_COUNT);
grilio_queue_send_request_full(cd->q, req,
RIL_REQUEST_GSM_SMS_BROADCAST_ACTIVATION,
response, destroy, user_data);
grilio_request_unref(req);
}
static void ril_cbs_set_config(struct ril_cbs *cd, const char *topics,
GRilIoChannelResponseFunc response,
GDestroyNotify destroy, void* user_data)
{
char **list = topics ? g_strsplit(topics, ",", 0) : NULL;
int i, n = gutil_strv_length(list);
GRilIoRequest* req = grilio_request_new();
grilio_request_append_int32(req, n);
for (i = 0; i < n; i++) {
const char *entry = list[i];
const char *delim = strchr(entry, '-');
int from, to;
if (delim) {
char **range = g_strsplit(topics, "-", 0);
from = atoi(range[0]);
to = atoi(range[1]);
g_strfreev(range);
} else {
from = to = atoi(entry);
}
grilio_request_append_int32(req, from);
grilio_request_append_int32(req, to);
grilio_request_append_int32(req, 0);
grilio_request_append_int32(req, 0xff);
grilio_request_append_int32(req, 1);
}
DBG_(cd, "configuring CB");
grilio_request_set_retry_func(req, ril_cbs_retry);
grilio_request_set_retry(req, RIL_CBS_CHECK_RETRY_MS,
RIL_CBS_CHECK_RETRY_COUNT);
grilio_queue_send_request_full(cd->q, req,
RIL_REQUEST_GSM_SET_BROADCAST_SMS_CONFIG,
response, destroy, user_data);
grilio_request_unref(req);
g_strfreev(list);
}
static void ril_cbs_cb(GRilIoChannel *io, int ril_status,
const void *data, guint len, void *user_data)
{
struct ril_cbs_cbd *cbd = user_data;
if (cbd->cb) {
struct ofono_error error;
if (ril_status == RIL_E_SUCCESS) {
cbd->cb(ril_error_ok(&error), cbd->data);
} else {
cbd->cb(ril_error_failure(&error), cbd->data);
}
}
}
static void ril_cbs_set_topics(struct ofono_cbs *cbs, const char *topics,
ofono_cbs_set_cb_t cb, void *data)
{
struct ril_cbs *cd = ofono_cbs_get_data(cbs);
DBG_(cd, "%s", topics);
ril_cbs_set_config(cd, topics, ril_cbs_cb, ril_cbs_cbd_free,
ril_cbs_cbd_new(cd, cb, data));
}
static void ril_cbs_clear_topics(struct ofono_cbs *cbs,
ofono_cbs_set_cb_t cb, void *data)
{
struct ril_cbs *cd = ofono_cbs_get_data(cbs);
DBG_(cd, "");
ril_cbs_request_activation(cd, FALSE, ril_cbs_cb, ril_cbs_cbd_free,
ril_cbs_cbd_new(cd, cb, data));
}
static void ril_cbs_notify(GRilIoChannel *io, guint code,
const void *data, guint len, void *user_data)
{
struct ril_cbs *cd = user_data;
GRilIoParser rilp;
guint32 pdu_len;
GASSERT(code == RIL_UNSOL_RESPONSE_NEW_BROADCAST_SMS);
grilio_parser_init(&rilp, data, len);
if (grilio_parser_get_uint32(&rilp, &pdu_len)) {
const void* pdu = grilio_parser_get_bytes(&rilp, pdu_len);
/*
* By default assume that it's a length followed by the
* binary PDU data.
*/
if (pdu && grilio_parser_bytes_remaining(&rilp) < 4) {
DBG_(cd, "%u bytes", pdu_len);
ofono_cbs_notify(cd->cbs, pdu, pdu_len);
} else {
/*
* But I've seen cell broadcasts arriving without
* the length, simply as a blob.
*/
ofono_cbs_notify(cd->cbs, data, len);
}
}
}
static gboolean ril_cbs_register(void *user_data)
{
struct ril_cbs *cd = user_data;
DBG_(cd, "registering for CB");
cd->register_id = 0;
cd->event_id = grilio_channel_add_unsol_event_handler(cd->io,
ril_cbs_notify, RIL_UNSOL_RESPONSE_NEW_BROADCAST_SMS, cd);
ofono_cbs_register(cd->cbs);
return G_SOURCE_REMOVE;
}
static int ril_cbs_probe(struct ofono_cbs *cbs, unsigned int vendor,
void *data)
{
struct ril_modem *modem = data;
struct ril_cbs *cd = g_try_new0(struct ril_cbs, 1);
ofono_cbs_set_data(cbs, cd);
cd->log_prefix = (modem->log_prefix && modem->log_prefix[0]) ?
g_strconcat(modem->log_prefix, " ", NULL) : g_strdup("");
cd->cbs = cbs;
DBG_(cd, "");
cd->io = grilio_channel_ref(ril_modem_io(modem));
cd->q = grilio_queue_new(cd->io);
cd->register_id = g_idle_add(ril_cbs_register, cd);
return 0;
}
static void ril_cbs_remove(struct ofono_cbs *cbs)
{
struct ril_cbs *cd = ofono_cbs_get_data(cbs);
DBG_(cd, "");
if (cd->register_id) {
g_source_remove(cd->register_id);
}
ofono_cbs_set_data(cbs, NULL);
grilio_channel_remove_handler(cd->io, cd->event_id);
grilio_channel_unref(cd->io);
grilio_queue_cancel_all(cd->q, FALSE);
grilio_queue_unref(cd->q);
g_free(cd->log_prefix);
g_free(cd);
}
const struct ofono_cbs_driver ril_cbs_driver = {
.name = RILMODEM_DRIVER,
.probe = ril_cbs_probe,
.remove = ril_cbs_remove,
.set_topics = ril_cbs_set_topics,
.clear_topics = ril_cbs_clear_topics
};
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

View File

@@ -1,620 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2016-2021 Jolla Ltd.
* Copyright (C) 2020 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_cell_info.h"
#include "ril_sim_card.h"
#include "ril_radio.h"
#include "ril_util.h"
#include "ril_log.h"
#include <grilio_channel.h>
#include <grilio_request.h>
#include <grilio_parser.h>
#include <gutil_idlepool.h>
#include <gutil_macros.h>
#include <gutil_misc.h>
#define DEFAULT_UPDATE_RATE_MS (10000) /* 10 sec */
#define MAX_RETRIES (5)
typedef GObjectClass RilCellInfoClass;
typedef struct ril_cell_info RilCellInfo;
struct ril_cell_info {
GObject object;
struct ofono_cell_info info;
struct ofono_cell **cells;
GRilIoChannel *io;
struct ril_radio *radio;
struct ril_sim_card *sim_card;
gulong radio_state_event_id;
gulong sim_status_event_id;
gboolean sim_card_ready;
int update_rate_ms;
char *log_prefix;
gulong event_id;
guint query_id;
guint set_rate_id;
gboolean enabled;
};
enum ril_cell_info_signal {
SIGNAL_CELLS_CHANGED,
SIGNAL_COUNT
};
#define SIGNAL_CELLS_CHANGED_NAME "ril-cell-info-cells-changed"
static guint ril_cell_info_signals[SIGNAL_COUNT] = { 0 };
#define PARENT_TYPE G_TYPE_OBJECT
#define PARENT_CLASS ril_cell_info_parent_class
#define THIS_TYPE (ril_cell_info_get_type())
#define THIS(obj) (G_TYPE_CHECK_INSTANCE_CAST((obj), THIS_TYPE, RilCellInfo))
G_DEFINE_TYPE(RilCellInfo, ril_cell_info, PARENT_TYPE)
#define DBG_(self,fmt,args...) DBG("%s" fmt, (self)->log_prefix, ##args)
static const char *ril_cell_info_int_format(int value, const char *format)
{
if (value == OFONO_CELL_INVALID_VALUE) {
return "";
} else {
static GUtilIdlePool *ril_cell_info_pool = NULL;
GUtilIdlePool *pool = gutil_idle_pool_get(&ril_cell_info_pool);
char *str = g_strdup_printf(format, value);
gutil_idle_pool_add(pool, str, g_free);
return str;
}
}
static gint ril_cell_info_list_sort_cb(gconstpointer a, gconstpointer b)
{
return ofono_cell_compare_location(*(struct ofono_cell **)a,
*(struct ofono_cell **)b);
}
static gboolean ril_cell_info_list_identical(const ofono_cell_ptr *l1,
const ofono_cell_ptr *l2)
{
if (l1 && l2) {
while (*l1 && *l2) {
if (memcmp(*l1, *l2, sizeof(struct ofono_cell))) {
return FALSE;
}
l1++;
l2++;
}
return !*l1 && !*l2;
} else {
return (!l1 || !*l1) && (!l2 || !*l2);
}
}
/* Takes ownership of GPtrArray */
static void ril_cell_info_update_cells(RilCellInfo *self, GPtrArray *l)
{
if (l && !ril_cell_info_list_identical(self->cells,
(struct ofono_cell **)l->pdata)) {
gutil_ptrv_free((void**)self->cells);
self->info.cells = (struct ofono_cell **)
g_ptr_array_free(l, FALSE);
g_signal_emit(self, ril_cell_info_signals
[SIGNAL_CELLS_CHANGED], 0);
} else if (l) {
g_ptr_array_set_free_func(l, g_free);
g_ptr_array_free(l, TRUE);
}
}
static struct ofono_cell *ril_cell_info_parse_cell_gsm(GRilIoParser *rilp,
guint version, gboolean registered)
{
struct ofono_cell *cell = g_new0(struct ofono_cell, 1);
struct ofono_cell_info_gsm *gsm = &cell->info.gsm;
/* Optional RIL_CellIdentityGsm_v12 part */
gsm->arfcn = OFONO_CELL_INVALID_VALUE;
gsm->bsic = OFONO_CELL_INVALID_VALUE;
/* Optional RIL_GSM_SignalStrength_v12 part */
gsm->timingAdvance = OFONO_CELL_INVALID_VALUE;
/* RIL_CellIdentityGsm */
if (grilio_parser_get_int32(rilp, &gsm->mcc) &&
grilio_parser_get_int32(rilp, &gsm->mnc) &&
grilio_parser_get_int32(rilp, &gsm->lac) &&
grilio_parser_get_int32(rilp, &gsm->cid) &&
(version < 12 || /* RIL_CellIdentityGsm_v12 part */
(grilio_parser_get_int32(rilp, &gsm->arfcn) &&
grilio_parser_get_int32(rilp, &gsm->bsic))) &&
/* RIL_GW_SignalStrength */
grilio_parser_get_int32(rilp, &gsm->signalStrength) &&
grilio_parser_get_int32(rilp, &gsm->bitErrorRate) &&
(version < 12 || /* RIL_GSM_SignalStrength_v12 part */
grilio_parser_get_int32(rilp, &gsm->timingAdvance))) {
DBG("[gsm] reg=%d%s%s%s%s%s%s%s%s%s", registered,
ril_cell_info_int_format(gsm->mcc, ",mcc=%d"),
ril_cell_info_int_format(gsm->mnc, ",mnc=%d"),
ril_cell_info_int_format(gsm->lac, ",lac=%d"),
ril_cell_info_int_format(gsm->cid, ",cid=%d"),
ril_cell_info_int_format(gsm->arfcn, ",arfcn=%d"),
ril_cell_info_int_format(gsm->bsic, ",bsic=%d"),
ril_cell_info_int_format(gsm->signalStrength,
",strength=%d"),
ril_cell_info_int_format(gsm->bitErrorRate, ",err=%d"),
ril_cell_info_int_format(gsm->timingAdvance, ",t=%d"));
cell->type = OFONO_CELL_TYPE_GSM;
cell->registered = registered;
return cell;
}
ofono_error("failed to parse GSM cell info");
g_free(cell);
return NULL;
}
static struct ofono_cell *ril_cell_info_parse_cell_wcdma(GRilIoParser *rilp,
guint version, gboolean registered)
{
struct ofono_cell *cell = g_new0(struct ofono_cell, 1);
struct ofono_cell_info_wcdma *wcdma = &cell->info.wcdma;
/* Optional RIL_CellIdentityWcdma_v12 part */
wcdma->uarfcn = OFONO_CELL_INVALID_VALUE;
if (grilio_parser_get_int32(rilp, &wcdma->mcc) &&
grilio_parser_get_int32(rilp, &wcdma->mnc) &&
grilio_parser_get_int32(rilp, &wcdma->lac) &&
grilio_parser_get_int32(rilp, &wcdma->cid) &&
grilio_parser_get_int32(rilp, &wcdma->psc) &&
(version < 12 || /* RIL_CellIdentityWcdma_v12 part */
grilio_parser_get_int32(rilp, &wcdma->uarfcn)) &&
grilio_parser_get_int32(rilp, &wcdma->signalStrength) &&
grilio_parser_get_int32(rilp, &wcdma->bitErrorRate)) {
DBG("[wcdma] reg=%d%s%s%s%s%s%s%s", registered,
ril_cell_info_int_format(wcdma->mcc, ",mcc=%d"),
ril_cell_info_int_format(wcdma->mnc, ",mnc=%d"),
ril_cell_info_int_format(wcdma->lac, ",lac=%d"),
ril_cell_info_int_format(wcdma->cid, ",cid=%d"),
ril_cell_info_int_format(wcdma->psc, ",psc=%d"),
ril_cell_info_int_format(wcdma->signalStrength,
",strength=%d"),
ril_cell_info_int_format(wcdma->bitErrorRate,
",err=%d"));
cell->type = OFONO_CELL_TYPE_WCDMA;
cell->registered = registered;
return cell;
}
ofono_error("failed to parse WCDMA cell info");
g_free(cell);
return NULL;
}
static struct ofono_cell *ril_cell_info_parse_cell_lte(GRilIoParser *rilp,
guint version, gboolean registered)
{
struct ofono_cell *cell = g_new0(struct ofono_cell, 1);
struct ofono_cell_info_lte *lte = &cell->info.lte;
/* Optional RIL_CellIdentityLte_v12 part */
lte->earfcn = OFONO_CELL_INVALID_VALUE;
if (grilio_parser_get_int32(rilp, &lte->mcc) &&
grilio_parser_get_int32(rilp, &lte->mnc) &&
grilio_parser_get_int32(rilp, &lte->ci) &&
grilio_parser_get_int32(rilp, &lte->pci) &&
grilio_parser_get_int32(rilp, &lte->tac) &&
(version < 12 || /* RIL_CellIdentityLte_v12 part */
grilio_parser_get_int32(rilp, &lte->earfcn)) &&
grilio_parser_get_int32(rilp, &lte->signalStrength) &&
grilio_parser_get_int32(rilp, &lte->rsrp) &&
grilio_parser_get_int32(rilp, &lte->rsrq) &&
grilio_parser_get_int32(rilp, &lte->rssnr) &&
grilio_parser_get_int32(rilp, &lte->cqi) &&
grilio_parser_get_int32(rilp, &lte->timingAdvance)) {
DBG("[lte] reg=%d%s%s%s%s%s%s%s%s%s%s%s", registered,
ril_cell_info_int_format(lte->mcc, ",mcc=%d"),
ril_cell_info_int_format(lte->mnc, ",mnc=%d"),
ril_cell_info_int_format(lte->ci, ",ci=%d"),
ril_cell_info_int_format(lte->pci, ",pci=%d"),
ril_cell_info_int_format(lte->tac, ",tac=%d"),
ril_cell_info_int_format(lte->signalStrength,
",strength=%d"),
ril_cell_info_int_format(lte->rsrp, ",rsrp=%d"),
ril_cell_info_int_format(lte->rsrq, ",rsrq=%d"),
ril_cell_info_int_format(lte->rssnr, ",rssnr=%d"),
ril_cell_info_int_format(lte->cqi, ",cqi=%d"),
ril_cell_info_int_format(lte->timingAdvance, ",t=%d"));
cell->type = OFONO_CELL_TYPE_LTE;
cell->registered = registered;
return cell;
}
ofono_error("failed to parse LTE cell info");
g_free(cell);
return NULL;
}
static gboolean ril_cell_info_parse_cell(GRilIoParser *rilp, guint v,
struct ofono_cell **cell_ptr)
{
int type, reg;
if (grilio_parser_get_int32(rilp, &type) &&
grilio_parser_get_int32(rilp, &reg) &&
/* Skip timestamp */
grilio_parser_get_int32_array(rilp, NULL, 3)) {
int skip = 0;
struct ofono_cell *cell = NULL;
/* Normalize the boolean value */
reg = (reg != FALSE);
switch (type) {
case RIL_CELL_INFO_TYPE_GSM:
cell = ril_cell_info_parse_cell_gsm(rilp, v, reg);
break;
case RIL_CELL_INFO_TYPE_WCDMA:
cell = ril_cell_info_parse_cell_wcdma(rilp, v, reg);
break;
case RIL_CELL_INFO_TYPE_LTE:
cell = ril_cell_info_parse_cell_lte(rilp, v, reg);
break;
case RIL_CELL_INFO_TYPE_CDMA:
skip = 10;
break;
case RIL_CELL_INFO_TYPE_TD_SCDMA:
skip = 6;
break;
default:
skip = 0;
break;
}
if (cell) {
*cell_ptr = cell;
return TRUE;
}
if (skip && grilio_parser_get_int32_array(rilp, NULL, skip)) {
*cell_ptr = NULL;
return TRUE;
}
}
*cell_ptr = NULL;
return FALSE;
}
static GPtrArray *ril_cell_info_parse_list(guint v, const void *data, guint len)
{
GPtrArray *l = NULL;
GRilIoParser rilp;
int i, n;
grilio_parser_init(&rilp, data, len);
if (grilio_parser_get_int32(&rilp, &n) && n > 0) {
struct ofono_cell *c;
l = g_ptr_array_sized_new(n + 1);
DBG("%d cell(s):", n);
for (i=0; i<n && ril_cell_info_parse_cell(&rilp, v, &c); i++) {
if (c) {
g_ptr_array_add(l, c);
}
}
g_ptr_array_sort(l, ril_cell_info_list_sort_cb);
g_ptr_array_add(l, NULL);
}
GASSERT(grilio_parser_at_end(&rilp));
return l;
}
static void ril_cell_info_list_changed_cb(GRilIoChannel *io, guint code,
const void *data, guint len, void *user_data)
{
RilCellInfo *self = THIS(user_data);
DBG_(self, "");
ril_cell_info_update_cells(self, ril_cell_info_parse_list
(io->ril_version, data, len));
}
static void ril_cell_info_list_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
RilCellInfo *self = THIS(user_data);
DBG_(self, "");
GASSERT(self->query_id);
self->query_id = 0;
ril_cell_info_update_cells(self,
(status == RIL_E_SUCCESS && self->enabled) ?
ril_cell_info_parse_list(io->ril_version, data, len) : NULL);
}
static void ril_cell_info_set_rate_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
RilCellInfo *self = THIS(user_data);
DBG_(self, "");
GASSERT(self->set_rate_id);
self->set_rate_id = 0;
}
static gboolean ril_cell_info_retry(GRilIoRequest *request, int ril_status,
const void *response_data, guint response_len, void *user_data)
{
RilCellInfo *self = THIS(user_data);
switch (ril_status) {
case RIL_E_SUCCESS:
case RIL_E_RADIO_NOT_AVAILABLE:
return FALSE;
default:
return self->enabled;
}
}
static void ril_cell_info_query(RilCellInfo *self)
{
GRilIoRequest *req = grilio_request_new();
grilio_request_set_retry(req, RIL_RETRY_MS, MAX_RETRIES);
grilio_request_set_retry_func(req, ril_cell_info_retry);
grilio_channel_cancel_request(self->io, self->query_id, FALSE);
self->query_id = grilio_channel_send_request_full(self->io, req,
RIL_REQUEST_GET_CELL_INFO_LIST, ril_cell_info_list_cb,
NULL, self);
grilio_request_unref(req);
}
static void ril_cell_info_set_rate(RilCellInfo *self)
{
GRilIoRequest *req = grilio_request_array_int32_new(1,
(self->update_rate_ms >= 0 && self->enabled) ?
self->update_rate_ms : INT_MAX);
grilio_request_set_retry(req, RIL_RETRY_MS, MAX_RETRIES);
grilio_request_set_retry_func(req, ril_cell_info_retry);
grilio_channel_cancel_request(self->io, self->set_rate_id, FALSE);
self->set_rate_id = grilio_channel_send_request_full(self->io, req,
RIL_REQUEST_SET_UNSOL_CELL_INFO_LIST_RATE,
ril_cell_info_set_rate_cb, NULL, self);
grilio_request_unref(req);
}
static void ril_cell_info_refresh(RilCellInfo *self)
{
/* RIL_REQUEST_GET_CELL_INFO_LIST fails without SIM card */
if (self->enabled && self->radio->state == RADIO_STATE_ON &&
self->sim_card_ready) {
ril_cell_info_query(self);
} else {
ril_cell_info_update_cells(self, NULL);
}
}
static void ril_cell_info_radio_state_cb(struct ril_radio *radio, void *arg)
{
RilCellInfo *self = THIS(arg);
DBG_(self, "%s", ril_radio_state_to_string(radio->state));
ril_cell_info_refresh(self);
}
static void ril_cell_info_sim_status_cb(struct ril_sim_card *sim, void *arg)
{
RilCellInfo *self = THIS(arg);
self->sim_card_ready = ril_sim_card_ready(sim);
DBG_(self, "%sready", self->sim_card_ready ? "" : "not ");
ril_cell_info_refresh(self);
if (self->sim_card_ready) {
ril_cell_info_set_rate(self);
}
}
/* ofono_cell_info interface callbacks */
typedef struct ril_cell_info_closure {
GCClosure cclosure;
ofono_cell_info_cb_t cb;
void *arg;
} RilCellInfoClosure;
static inline RilCellInfo *ril_cell_info_cast(struct ofono_cell_info *info)
{
return G_CAST(info, RilCellInfo, info);
}
static void ril_cell_info_ref_proc(struct ofono_cell_info *info)
{
g_object_ref(ril_cell_info_cast(info));
}
static void ril_cell_info_unref_proc(struct ofono_cell_info *info)
{
g_object_unref(ril_cell_info_cast(info));
}
static void ril_cell_info_cells_changed_cb(RilCellInfo *self,
RilCellInfoClosure *closure)
{
closure->cb(&self->info, closure->arg);
}
static gulong ril_cell_info_add_cells_changed_handler_proc
(struct ofono_cell_info *info, ofono_cell_info_cb_t cb, void *arg)
{
if (cb) {
RilCellInfoClosure *closure = (RilCellInfoClosure *)
g_closure_new_simple(sizeof(RilCellInfoClosure), NULL);
GCClosure *cc = &closure->cclosure;
cc->closure.data = closure;
cc->callback = G_CALLBACK(ril_cell_info_cells_changed_cb);
closure->cb = cb;
closure->arg = arg;
return g_signal_connect_closure_by_id(ril_cell_info_cast(info),
ril_cell_info_signals[SIGNAL_CELLS_CHANGED], 0,
&cc->closure, FALSE);
} else {
return 0;
}
}
static void ril_cell_info_remove_handler_proc(struct ofono_cell_info *info,
gulong id)
{
if (G_LIKELY(id)) {
g_signal_handler_disconnect(ril_cell_info_cast(info), id);
}
}
static void ril_cell_info_set_update_interval_proc
(struct ofono_cell_info *info, int ms)
{
RilCellInfo *self = ril_cell_info_cast(info);
if (self->update_rate_ms != ms) {
self->update_rate_ms = ms;
DBG_(self, "%d ms", ms);
if (self->enabled && self->sim_card_ready) {
ril_cell_info_set_rate(self);
}
}
}
void ril_cell_info_set_enabled_proc(struct ofono_cell_info *info,
gboolean enabled)
{
RilCellInfo *self = ril_cell_info_cast(info);
if (self->enabled != enabled) {
self->enabled = enabled;
DBG_(self, "%d", enabled);
ril_cell_info_refresh(self);
if (self->sim_card_ready) {
ril_cell_info_set_rate(self);
}
}
}
struct ofono_cell_info *ril_cell_info_new(GRilIoChannel *io,
const char *log_prefix, struct ril_radio *radio,
struct ril_sim_card *sim_card)
{
RilCellInfo *self = g_object_new(THIS_TYPE, 0);
self->io = grilio_channel_ref(io);
self->radio = ril_radio_ref(radio);
self->sim_card = ril_sim_card_ref(sim_card);
self->log_prefix = (log_prefix && log_prefix[0]) ?
g_strconcat(log_prefix, " ", NULL) : g_strdup("");
DBG_(self, "");
self->event_id = grilio_channel_add_unsol_event_handler(self->io,
ril_cell_info_list_changed_cb, RIL_UNSOL_CELL_INFO_LIST, self);
self->radio_state_event_id =
ril_radio_add_state_changed_handler(radio,
ril_cell_info_radio_state_cb, self);
self->sim_status_event_id =
ril_sim_card_add_status_changed_handler(self->sim_card,
ril_cell_info_sim_status_cb, self);
self->sim_card_ready = ril_sim_card_ready(sim_card);
ril_cell_info_refresh(self);
/* Disable updates by default */
self->enabled = FALSE;
if (self->sim_card_ready) {
ril_cell_info_set_rate(self);
}
return &self->info;
}
static void ril_cell_info_init(RilCellInfo *self)
{
static const struct ofono_cell_info_proc ril_cell_info_proc = {
ril_cell_info_ref_proc,
ril_cell_info_unref_proc,
ril_cell_info_add_cells_changed_handler_proc,
ril_cell_info_remove_handler_proc,
ril_cell_info_set_update_interval_proc,
ril_cell_info_set_enabled_proc
};
self->update_rate_ms = DEFAULT_UPDATE_RATE_MS;
self->info.cells = self->cells = g_new0(struct ofono_cell*, 1);
self->info.proc = &ril_cell_info_proc;
}
static void ril_cell_info_dispose(GObject *object)
{
RilCellInfo *self = THIS(object);
grilio_channel_remove_handlers(self->io, &self->event_id, 1);
if (self->query_id) {
grilio_channel_cancel_request(self->io, self->query_id, FALSE);
self->query_id = 0;
}
if (self->set_rate_id) {
grilio_channel_cancel_request(self->io, self->set_rate_id,
FALSE);
self->set_rate_id = 0;
}
/* xxx_remove_handlers() zero the ids */
ril_radio_remove_handlers(self->radio,
&self->radio_state_event_id, 1);
ril_sim_card_remove_handlers(self->sim_card,
&self->sim_status_event_id, 1);
G_OBJECT_CLASS(PARENT_CLASS)->dispose(object);
}
static void ril_cell_info_finalize(GObject *object)
{
RilCellInfo *self = THIS(object);
DBG_(self, "");
gutil_ptrv_free((void**)self->cells);
g_free(self->log_prefix);
grilio_channel_unref(self->io);
ril_radio_unref(self->radio);
ril_sim_card_unref(self->sim_card);
G_OBJECT_CLASS(PARENT_CLASS)->finalize(object);
}
static void ril_cell_info_class_init(RilCellInfoClass *klass)
{
GObjectClass *object_class = G_OBJECT_CLASS(klass);
object_class->dispose = ril_cell_info_dispose;
object_class->finalize = ril_cell_info_finalize;
ril_cell_info_signals[SIGNAL_CELLS_CHANGED] =
g_signal_new(SIGNAL_CELLS_CHANGED_NAME,
G_OBJECT_CLASS_TYPE(klass), G_SIGNAL_RUN_FIRST,
0, NULL, NULL, NULL, G_TYPE_NONE, 0);
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,35 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2016-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_CELL_INFO_H
#define RIL_CELL_INFO_H
#include "ril_types.h"
#include <ofono/cell-info.h>
struct ofono_cell_info *ril_cell_info_new(GRilIoChannel *io,
const char *log_prefix, struct ril_radio *radio,
struct ril_sim_card *sim_card);
#endif /* RIL_CELL_INFO_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,89 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
* Copyright (C) 2019-2020 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_config.h"
#include "ril_util.h"
#include "ril_log.h"
#include <gutil_intarray.h>
#include <gutil_ints.h>
#include <gutil_misc.h>
#include <sys/types.h>
#include <sys/stat.h>
#include <unistd.h>
/* Utilities for parsing ril_subscription.conf */
GUtilInts *ril_config_get_ints(GKeyFile *file, const char *group,
const char *key)
{
char *value = ofono_conf_get_string(file, group, key);
if (value) {
GUtilIntArray *array = gutil_int_array_new();
char **values, **ptr;
/*
* Some people are thinking that # is a comment
* anywhere on the line, not just at the beginning
*/
char *comment = strchr(value, '#');
if (comment) *comment = 0;
values = g_strsplit(value, ",", -1);
ptr = values;
while (*ptr) {
int val;
if (gutil_parse_int(*ptr++, 0, &val)) {
gutil_int_array_append(array, val);
}
}
g_free(value);
g_strfreev(values);
return gutil_int_array_free_to_ints(array);
}
return NULL;
}
char *ril_config_ints_to_string(GUtilInts *ints, char separator)
{
if (ints) {
guint i, n;
const int *data = gutil_ints_get_data(ints, &n);
GString *buf = g_string_new(NULL);
for (i=0; i<n; i++) {
if (buf->len > 0) {
g_string_append_c(buf, separator);
}
g_string_append_printf(buf, "%d", data[i]);
}
return g_string_free(buf, FALSE);
}
return NULL;
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,38 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
* Copyright (C) 2019-2020 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_CONFIG_H
#define RIL_CONFIG_H
#include "ril_types.h"
#include <ofono/conf.h>
#define RILCONF_SETTINGS_GROUP OFONO_COMMON_SETTINGS_GROUP
GUtilInts *ril_config_get_ints(GKeyFile *file, const char *group,
const char *key);
char *ril_config_ints_to_string(GUtilInts *ints, char separator);
#endif /* RIL_CONFIG_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

View File

@@ -1,621 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2019-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_connman.h"
#include <ofono/log.h>
#include <ofono/gdbus.h>
#include <gutil_macros.h>
#include <gutil_misc.h>
#include <glib-object.h>
#define CONNMAN_BUS DBUS_BUS_SYSTEM
#define CONNMAN_SERVICE "net.connman"
#define CONNMAN_PATH "/"
#define CONNMAN_GET_PROPERTIES "GetProperties"
#define CONNMAN_GET_TECHNOLOGIES "GetTechnologies"
#define CONNMAN_PROPERTY_CHANGED "PropertyChanged"
#define CONNMAN_TECH_CONNECTED "Connected"
#define CONNMAN_TECH_TETHERING "Tethering"
#define CONNMAN_INTERFACE_(name) "net.connman." name
#define CONNMAN_MANAGER_INTERFACE CONNMAN_INTERFACE_("Manager")
#define CONNMAN_TECH_INTERFACE CONNMAN_INTERFACE_("Technology")
#define CONNMAN_TECH_PATH_(name) "/net/connman/technology/" name
#define CONNMAN_TECH_PATH_WIFI CONNMAN_TECH_PATH_("wifi")
#define CONNMAN_TECH_CONNECTED_BIT (0x01)
#define CONNMAN_TECH_TETHERING_BIT (0x02)
#define CONNMAN_TECH_ALL_PROPERTY_BITS (\
CONNMAN_TECH_CONNECTED_BIT | \
CONNMAN_TECH_TETHERING_BIT)
typedef GObjectClass ConnManObjectClass;
typedef struct connman_tech ConnManTech;
typedef struct connman_object {
GObject object;
struct ril_connman pub;
guint32 pending_signals;
DBusConnection *connection;
DBusPendingCall *call;
guint service_watch;
guint signal_watch;
GHashTable *techs;
ConnManTech *wifi;
} ConnManObject;
G_DEFINE_TYPE(ConnManObject, connman_object, G_TYPE_OBJECT)
#define CONNMAN_OBJECT_TYPE (connman_object_get_type())
#define CONNMAN_OBJECT(obj) (G_TYPE_CHECK_INSTANCE_CAST((obj),\
CONNMAN_OBJECT_TYPE, ConnManObject))
struct connman_tech {
ConnManObject *obj;
const char *path;
gboolean connected;
gboolean tethering;
};
typedef struct connman_closure {
GCClosure cclosure;
ril_connman_property_cb_t callback;
gpointer user_data;
} ConnManClosure;
#define connman_closure_new() ((ConnManClosure *) \
g_closure_new_simple(sizeof(ConnManClosure), NULL))
#define SIGNAL_PROPERTY_CHANGED_NAME "ril-connman-property-changed"
#define SIGNAL_PROPERTY_DETAIL "%x"
#define SIGNAL_PROPERTY_DETAIL_MAX_LEN (8)
#define SIGNAL_BIT(property) (1 << (property - 1))
#define SIGNAL_BIT_(name) SIGNAL_BIT(RIL_CONNMAN_PROPERTY_##name)
enum connman_object_signal {
SIGNAL_PROPERTY_CHANGED,
SIGNAL_COUNT
};
static guint connman_object_signals[SIGNAL_COUNT];
static GQuark connman_object_property_quarks[RIL_CONNMAN_PROPERTY_COUNT - 1];
static inline ConnManObject *connman_object_cast(struct ril_connman *connman)
{
return G_LIKELY(connman) ?
CONNMAN_OBJECT(G_CAST(connman, ConnManObject, pub)) :
NULL;
}
static inline const char *connman_iter_get_string(DBusMessageIter *it)
{
const char *str = NULL;
dbus_message_iter_get_basic(it, &str);
return str;
}
static GQuark connman_object_property_quark(enum ril_connman_property p)
{
/* For ANY property this function is expected to return zero */
if (p > RIL_CONNMAN_PROPERTY_ANY && p < RIL_CONNMAN_PROPERTY_COUNT) {
const int i = p - 1;
if (G_UNLIKELY(!connman_object_property_quarks[i])) {
char buf[SIGNAL_PROPERTY_DETAIL_MAX_LEN + 1];
snprintf(buf, sizeof(buf), SIGNAL_PROPERTY_DETAIL, p);
buf[sizeof(buf) - 1] = 0;
connman_object_property_quarks[i] =
g_quark_from_string(buf);
}
return connman_object_property_quarks[i];
}
return 0;
}
static void connman_object_property_changed(ConnManObject *self,
enum ril_connman_property property, ConnManClosure *closure)
{
closure->callback(&self->pub, property, closure->user_data);
}
static void connman_object_emit_property_change(ConnManObject *self,
enum ril_connman_property p)
{
self->pending_signals &= ~SIGNAL_BIT(p);
g_signal_emit(self, connman_object_signals[SIGNAL_PROPERTY_CHANGED],
connman_object_property_quark(p), p);
}
static void connman_object_emit_pending_signals(ConnManObject *self)
{
struct ril_connman *connman = &self->pub;
gboolean valid_changed, present_changed;
enum ril_connman_property p;
/* Handlers could drop their references to us */
g_object_ref(self);
/*
* PRESENT and VALID are the last signals to be emitted if the object
* BECOMES present and/or valid.
*/
if ((self->pending_signals & SIGNAL_BIT_(VALID)) &&
connman->valid) {
self->pending_signals &= ~SIGNAL_BIT_(VALID);
valid_changed = TRUE;
} else {
valid_changed = FALSE;
}
if ((self->pending_signals & SIGNAL_BIT_(PRESENT)) &&
connman->present) {
self->pending_signals &= ~SIGNAL_BIT_(PRESENT);
present_changed = TRUE;
} else {
present_changed = FALSE;
}
/*
* Emit the signals. Not that in case if valid has become FALSE,
* then VALID is emitted first, otherwise it's emitted last.
* Same thing with PRESENT.
*/
for (p = RIL_CONNMAN_PROPERTY_ANY + 1;
p < RIL_CONNMAN_PROPERTY_COUNT && self->pending_signals;
p++) {
if (self->pending_signals & SIGNAL_BIT(p)) {
connman_object_emit_property_change(self, p);
}
}
/* Then emit PRESENT and VALID if necessary */
if (present_changed) {
connman_object_emit_property_change(self,
RIL_CONNMAN_PROPERTY_PRESENT);
}
if (valid_changed) {
connman_object_emit_property_change(self,
RIL_CONNMAN_PROPERTY_VALID);
}
/* And release the temporary reference */
g_object_unref(self);
}
static void connman_cancel_call(ConnManObject *self)
{
if (self->call) {
dbus_pending_call_cancel(self->call);
dbus_pending_call_unref(self->call);
self->call = NULL;
}
}
static ConnManTech *connman_tech_new(ConnManObject *self, const char *path)
{
ConnManTech *tech = g_new0(ConnManTech, 1);
char *key = g_strdup(path);
tech->obj = self;
tech->path = key;
g_hash_table_replace(self->techs, key, tech);
return tech;
}
static void connman_invalidate(ConnManObject *self)
{
struct ril_connman *connman = &self->pub;
if (connman->valid) {
connman->valid = FALSE;
self->pending_signals |= SIGNAL_BIT_(VALID);
}
}
static void connman_update_valid(ConnManObject *self)
{
struct ril_connman *connman = &self->pub;
const gboolean valid = (connman->present && !self->call);
if (connman->valid != valid) {
connman->valid = valid;
self->pending_signals |= SIGNAL_BIT_(VALID);
}
}
static gboolean connman_update_tethering(ConnManObject *self)
{
struct ril_connman *connman = &self->pub;
gboolean tethering = FALSE;
GHashTableIter it;
gpointer value;
g_hash_table_iter_init(&it, self->techs);
while (g_hash_table_iter_next(&it, NULL, &value)) {
const ConnManTech *tech = value;
if (tech->tethering) {
tethering = TRUE;
break;
}
}
if (connman->tethering != tethering) {
connman->tethering = tethering;
self->pending_signals |= SIGNAL_BIT_(TETHERING);
return TRUE;
} else {
return FALSE;
}
}
static void connman_set_tech_tethering(ConnManTech *tech, gboolean tethering)
{
if (tech->tethering != tethering) {
ConnManObject *self = tech->obj;
tech->tethering = tethering;
DBG(CONNMAN_TECH_TETHERING " %s for %s",
tethering ? "on" : "off", tech->path);
if (tethering) {
struct ril_connman *connman = &self->pub;
if (G_LIKELY(!connman->tethering)) {
/* Definitely tethering now */
connman->tethering = TRUE;
self->pending_signals |= SIGNAL_BIT_(TETHERING);
DBG("Tethering on");
}
} else if (connman_update_tethering(self)) {
/* Not tethering anymore */
DBG("Tethering off");
}
}
}
static void connman_set_tech_connected(ConnManTech *tech, gboolean connected)
{
if (tech->connected != connected) {
ConnManObject *self = tech->obj;
tech->connected = connected;
DBG(CONNMAN_TECH_CONNECTED " %s for %s",
connected ? "on" : "off", tech->path);
if (tech == self->wifi) {
struct ril_connman *connman = &self->pub;
connman->wifi_connected = connected;
self->pending_signals |= SIGNAL_BIT_(WIFI_CONNECTED);
DBG("WiFi %sconnected", connected ? "" : "dis");
}
}
}
static int connman_tech_set_property(ConnManTech *tech, DBusMessageIter *it)
{
DBusMessageIter var;
DBusBasicValue value;
const char *key = connman_iter_get_string(it);
dbus_message_iter_next(it);
dbus_message_iter_recurse(it, &var);
dbus_message_iter_get_basic(&var, &value);
if (!g_ascii_strcasecmp(key, CONNMAN_TECH_CONNECTED)) {
if (dbus_message_iter_get_arg_type(&var) == DBUS_TYPE_BOOLEAN) {
connman_set_tech_connected(tech, value.bool_val);
return CONNMAN_TECH_CONNECTED_BIT;
}
} else if (!g_ascii_strcasecmp(key, CONNMAN_TECH_TETHERING)) {
if (dbus_message_iter_get_arg_type(&var) == DBUS_TYPE_BOOLEAN) {
connman_set_tech_tethering(tech, value.bool_val);
return CONNMAN_TECH_TETHERING_BIT;
}
}
return 0;
}
static void connman_tech_set_properties(ConnManTech *tech, DBusMessageIter *it)
{
DBusMessageIter dict;
int handled = 0;
dbus_message_iter_recurse(it, &dict);
while (dbus_message_iter_get_arg_type(&dict) == DBUS_TYPE_DICT_ENTRY) {
DBusMessageIter entry;
dbus_message_iter_recurse(&dict, &entry);
handled |= connman_tech_set_property(tech, &entry);
if (handled == CONNMAN_TECH_ALL_PROPERTY_BITS) {
/* Ignore the rest */
break;
}
dbus_message_iter_next(&dict);
}
}
static gboolean connman_tech_property_changed(DBusConnection *conn,
DBusMessage *msg, void *user_data)
{
const char *path = dbus_message_get_path(msg);
ConnManObject *self = CONNMAN_OBJECT(user_data);
ConnManTech *tech = g_hash_table_lookup(self->techs, path);
DBusMessageIter it;
if (tech && dbus_message_has_signature(msg, "sv") &&
dbus_message_iter_init(msg, &it)) {
const char* name = connman_iter_get_string(&it);
if (!connman_tech_set_property(tech, &it)) {
DBG("%s changed for %s", name, path);
}
connman_object_emit_pending_signals(self);
}
return TRUE;
}
static void connman_set_techs(ConnManObject *self, DBusMessageIter *it)
{
DBusMessageIter list;
dbus_message_iter_recurse(it, &list);
while (dbus_message_iter_get_arg_type(&list) == DBUS_TYPE_STRUCT) {
DBusMessageIter entry;
const char *path;
ConnManTech *tech;
dbus_message_iter_recurse(&list, &entry);
path = connman_iter_get_string(&entry);
tech = connman_tech_new(self, path);
DBG("%s", path);
if (!g_strcmp0(path, CONNMAN_TECH_PATH_WIFI)) {
/* WiFi is a special case */
self->wifi = tech;
}
dbus_message_iter_next(&entry);
connman_tech_set_properties(tech, &entry);
dbus_message_iter_next(&list);
}
}
static void connman_techs_reply(DBusPendingCall *call, void *user_data)
{
ConnManObject *self = CONNMAN_OBJECT(user_data);
DBusMessage *reply = dbus_pending_call_steal_reply(call);
DBusError error;
DBusMessageIter array;
dbus_error_init(&error);
if (dbus_set_error_from_message(&error, reply)) {
DBG("Failed to get technologies: %s", error.message);
dbus_error_free(&error);
} else if (dbus_message_has_signature(reply, "a(oa{sv})") &&
dbus_message_iter_init(reply, &array)) {
connman_set_techs(self, &array);
}
dbus_message_unref(reply);
dbus_pending_call_unref(self->call);
self->call = NULL;
connman_update_valid(self);
connman_object_emit_pending_signals(self);
}
static void connman_get_techs(ConnManObject *self)
{
DBusMessage *msg = dbus_message_new_method_call(CONNMAN_SERVICE,
CONNMAN_PATH, CONNMAN_MANAGER_INTERFACE,
CONNMAN_GET_TECHNOLOGIES);
connman_cancel_call(self);
if (g_dbus_send_message_with_reply(self->connection, msg,
&self->call, DBUS_TIMEOUT_INFINITE)) {
/* Not valid while any request is pending */
connman_invalidate(self);
dbus_pending_call_set_notify(self->call, connman_techs_reply,
self, NULL);
}
dbus_message_unref(msg);
}
static void connman_appeared(DBusConnection *conn, void *user_data)
{
ConnManObject *self = CONNMAN_OBJECT(user_data);
struct ril_connman *connman = &self->pub;
if (!connman->present) {
DBG("connman is there");
connman->present = TRUE;
self->pending_signals |= SIGNAL_BIT_(PRESENT);
connman_get_techs(self);
connman_object_emit_pending_signals(self);
}
}
static void connman_vanished(DBusConnection *conn, void *user_data)
{
ConnManObject *self = CONNMAN_OBJECT(user_data);
struct ril_connman *connman = &self->pub;
if (connman->present) {
DBG("connman has disappeared");
g_hash_table_remove_all(self->techs);
self->wifi = NULL;
connman->present = FALSE;
self->pending_signals |= SIGNAL_BIT_(PRESENT);
if (connman->wifi_connected) {
connman->wifi_connected = FALSE;
self->pending_signals |= SIGNAL_BIT_(WIFI_CONNECTED);
}
if (connman->tethering) {
connman->tethering = FALSE;
self->pending_signals |= SIGNAL_BIT_(TETHERING);
}
connman_object_emit_pending_signals(self);
}
}
static void connman_init(ConnManObject *self, DBusConnection *connection)
{
self->connection = dbus_connection_ref(connection);
self->service_watch = g_dbus_add_service_watch(self->connection,
CONNMAN_SERVICE, connman_appeared, connman_vanished,
self, NULL);
self->signal_watch = g_dbus_add_signal_watch(self->connection,
CONNMAN_SERVICE, NULL, CONNMAN_TECH_INTERFACE,
CONNMAN_PROPERTY_CHANGED, connman_tech_property_changed,
self, NULL);
}
struct ril_connman *ril_connman_new()
{
static ConnManObject *instance = NULL;
if (instance) {
g_object_ref(instance);
return &instance->pub;
} else {
DBusError error;
DBusConnection *connection;
dbus_error_init(&error);
connection = dbus_bus_get(CONNMAN_BUS, NULL);
if (connection) {
instance = g_object_new(CONNMAN_OBJECT_TYPE, NULL);
connman_init(instance, connection);
dbus_connection_unref(connection);
g_object_add_weak_pointer(G_OBJECT(instance),
(gpointer*)(&instance));
return &instance->pub;
} else {
ofono_error("Unable to attach to connman bus: %s",
error.message);
dbus_error_free(&error);
return NULL;
}
}
}
struct ril_connman *ril_connman_ref(struct ril_connman *connman)
{
ConnManObject *self = connman_object_cast(connman);
if (G_LIKELY(self)) {
g_object_ref(self);
return connman;
} else {
return NULL;
}
}
void ril_connman_unref(struct ril_connman *connman)
{
ConnManObject *self = connman_object_cast(connman);
if (G_LIKELY(self)) {
g_object_unref(self);
}
}
gulong ril_connman_add_property_changed_handler(struct ril_connman *connman,
enum ril_connman_property p, ril_connman_property_cb_t cb, void *arg)
{
ConnManObject *self = connman_object_cast(connman);
if (G_LIKELY(self) && G_LIKELY(cb)) {
/*
* We can't directly connect the provided callback because
* it expects the first parameter to point to public part
* of the object but glib will call it with ConnManObject
* as the first parameter. connman_object_property_changed()
* will do the conversion.
*/
ConnManClosure *closure = connman_closure_new();
GCClosure *cc = &closure->cclosure;
cc->closure.data = closure;
cc->callback = G_CALLBACK(connman_object_property_changed);
closure->callback = cb;
closure->user_data = arg;
return g_signal_connect_closure_by_id(self,
connman_object_signals[SIGNAL_PROPERTY_CHANGED],
connman_object_property_quark(p), &cc->closure, FALSE);
}
return 0;
}
void ril_connman_remove_handler(struct ril_connman *connman, gulong id)
{
if (G_LIKELY(id)) {
ConnManObject *self = connman_object_cast(connman);
if (G_LIKELY(self)) {
g_signal_handler_disconnect(self, id);
}
}
}
void ril_connman_remove_handlers(struct ril_connman *connman, gulong *ids,
int n)
{
gutil_disconnect_handlers(connman_object_cast(connman), ids, n);
}
static void connman_object_init(ConnManObject *self)
{
self->techs = g_hash_table_new_full(g_str_hash, g_str_equal,
g_free, g_free);
}
static void connman_object_finalize(GObject *object)
{
ConnManObject *self = CONNMAN_OBJECT(object);
connman_cancel_call(self);
g_hash_table_destroy(self->techs);
g_dbus_remove_watch(self->connection, self->service_watch);
g_dbus_remove_watch(self->connection, self->signal_watch);
dbus_connection_unref(self->connection);
G_OBJECT_CLASS(connman_object_parent_class)->finalize(object);
}
static void connman_object_class_init(ConnManObjectClass *klass)
{
G_OBJECT_CLASS(klass)->finalize = connman_object_finalize;
connman_object_signals[SIGNAL_PROPERTY_CHANGED] =
g_signal_new(SIGNAL_PROPERTY_CHANGED_NAME,
G_OBJECT_CLASS_TYPE(klass),
G_SIGNAL_RUN_FIRST | G_SIGNAL_DETAILED,
0, NULL, NULL, NULL, G_TYPE_NONE, 1, G_TYPE_UINT);
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,61 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2019 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_CONNMAN_H
#define RIL_CONNMAN_H
#include <gutil_misc.h>
struct ril_connman {
gboolean valid; /* TRUE if other fields are valid */
gboolean present; /* ConnMan is present on D-Bus */
gboolean tethering; /* At least one technology is tethering */
gboolean wifi_connected; /* WiFi network is connected */
};
enum ril_connman_property {
RIL_CONNMAN_PROPERTY_ANY,
RIL_CONNMAN_PROPERTY_VALID,
RIL_CONNMAN_PROPERTY_PRESENT,
RIL_CONNMAN_PROPERTY_TETHERING,
RIL_CONNMAN_PROPERTY_WIFI_CONNECTED,
RIL_CONNMAN_PROPERTY_COUNT
};
typedef void (*ril_connman_property_cb_t)(struct ril_connman *connman,
enum ril_connman_property property, void *arg);
struct ril_connman *ril_connman_new(void);
struct ril_connman *ril_connman_ref(struct ril_connman *connman);
void ril_connman_unref(struct ril_connman *connman);
gulong ril_connman_add_property_changed_handler(struct ril_connman *connman,
enum ril_connman_property p, ril_connman_property_cb_t cb, void *arg);
void ril_connman_remove_handler(struct ril_connman *connman, gulong id);
void ril_connman_remove_handlers(struct ril_connman *connman, gulong *ids,
int n);
#define ril_connman_remove_all_handlers(connman, ids) \
ril_connman_remove_handlers(connman, ids, G_N_ELEMENTS(ids))
#endif /* RIL_CONNMAN_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,399 +0,0 @@
/*
* Copyright (C) 2013 Canonical Ltd.
* Copyright (C) 2013-2020 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef __RIL_CONSTANTS_H
#define __RIL_CONSTANTS_H 1
#include <ofono/ril-constants.h>
#define RIL_MAX_UUID_LENGTH 64
/* Radio state */
enum ril_radio_state {
RADIO_STATE_OFF = 0,
RADIO_STATE_UNAVAILABLE = 1,
RADIO_STATE_SIM_NOT_READY = 2,
RADIO_STATE_SIM_LOCKED_OR_ABSENT = 3,
RADIO_STATE_SIM_READY = 4,
RADIO_STATE_RUIM_NOT_READY = 5,
RADIO_STATE_RUIM_READY = 6,
RADIO_STATE_RUIM_LOCKED_OR_ABSENT = 7,
RADIO_STATE_NV_NOT_READY = 8,
RADIO_STATE_NV_READY = 9,
RADIO_STATE_ON = 10
};
/* Preferred network types */
enum ril_pref_net_type {
PREF_NET_TYPE_GSM_WCDMA = 0,
PREF_NET_TYPE_GSM_ONLY = 1,
PREF_NET_TYPE_WCDMA = 2,
PREF_NET_TYPE_GSM_WCDMA_AUTO = 3,
PREF_NET_TYPE_CDMA_EVDO_AUTO = 4,
PREF_NET_TYPE_CDMA_ONLY = 5,
PREF_NET_TYPE_EVDO_ONLY = 6,
PREF_NET_TYPE_GSM_WCDMA_CDMA_EVDO_AUTO = 7,
PREF_NET_TYPE_LTE_CDMA_EVDO = 8,
PREF_NET_TYPE_LTE_GSM_WCDMA = 9,
PREF_NET_TYPE_LTE_CMDA_EVDO_GSM_WCDMA = 10,
PREF_NET_TYPE_LTE_ONLY = 11,
PREF_NET_TYPE_LTE_WCDMA = 12
};
/* Radio technologies */
enum ril_radio_tech {
RADIO_TECH_UNKNOWN = 0,
RADIO_TECH_GPRS = 1,
RADIO_TECH_EDGE = 2,
RADIO_TECH_UMTS = 3,
RADIO_TECH_IS95A = 4,
RADIO_TECH_IS95B = 5,
RADIO_TECH_1xRTT = 6,
RADIO_TECH_EVDO_0 = 7,
RADIO_TECH_EVDO_A = 8,
RADIO_TECH_HSDPA = 9,
RADIO_TECH_HSUPA = 10,
RADIO_TECH_HSPA = 11,
RADIO_TECH_EVDO_B = 12,
RADIO_TECH_EHRPD = 13,
RADIO_TECH_LTE = 14,
RADIO_TECH_HSPAP = 15,
RADIO_TECH_GSM = 16,
RADIO_TECH_TD_SCDMA = 17,
RADIO_TECH_IWLAN = 18,
RADIO_TECH_LTE_CA = 19
};
/* Radio capabilities */
enum ril_radio_access_family {
RAF_GPRS = (1 << RADIO_TECH_GPRS),
RAF_EDGE = (1 << RADIO_TECH_EDGE),
RAF_UMTS = (1 << RADIO_TECH_UMTS),
RAF_IS95A = (1 << RADIO_TECH_IS95A),
RAF_IS95B = (1 << RADIO_TECH_IS95B),
RAF_1xRTT = (1 << RADIO_TECH_1xRTT),
RAF_EVDO_0 = (1 << RADIO_TECH_EVDO_0),
RAF_EVDO_A = (1 << RADIO_TECH_EVDO_A),
RAF_HSDPA = (1 << RADIO_TECH_HSDPA),
RAF_HSUPA = (1 << RADIO_TECH_HSUPA),
RAF_HSPA = (1 << RADIO_TECH_HSPA),
RAF_EVDO_B = (1 << RADIO_TECH_EVDO_B),
RAF_EHRPD = (1 << RADIO_TECH_EHRPD),
RAF_LTE = (1 << RADIO_TECH_LTE),
RAF_HSPAP = (1 << RADIO_TECH_HSPAP),
RAF_GSM = (1 << RADIO_TECH_GSM),
RAF_TD_SCDMA = (1 << RADIO_TECH_TD_SCDMA),
RAF_LTE_CA = (1 << RADIO_TECH_LTE_CA)
};
enum ril_radio_capability_phase {
RC_PHASE_CONFIGURED = 0,
RC_PHASE_START = 1,
RC_PHASE_APPLY = 2,
RC_PHASE_UNSOL_RSP = 3,
RC_PHASE_FINISH = 4
};
enum ril_radio_capability_status {
RC_STATUS_NONE = 0,
RC_STATUS_SUCCESS = 1,
RC_STATUS_FAIL = 2
};
#define RIL_RADIO_CAPABILITY_VERSION 1
struct ril_radio_capability {
int version;
int session;
enum ril_radio_capability_phase phase;
enum ril_radio_access_family rat;
char logicalModemUuid[RIL_MAX_UUID_LENGTH];
int status;
};
enum ril_uicc_subscription_action {
RIL_UICC_SUBSCRIPTION_DEACTIVATE = 0,
RIL_UICC_SUBSCRIPTION_ACTIVATE = 1
};
/* See RIL_REQUEST_LAST_CALL_FAIL_CAUSE */
enum ril_call_fail_cause {
CALL_FAIL_UNOBTAINABLE_NUMBER = 1,
CALL_FAIL_NO_ROUTE_TO_DESTINATION = 3,
CALL_FAIL_CHANNEL_UNACCEPTABLE = 6,
CALL_FAIL_OPERATOR_DETERMINED_BARRING = 8,
CALL_FAIL_NORMAL = 16,
CALL_FAIL_BUSY = 17,
CALL_FAIL_NO_USER_RESPONDING = 18,
CALL_FAIL_NO_ANSWER_FROM_USER = 19,
CALL_FAIL_CALL_REJECTED = 21,
CALL_FAIL_NUMBER_CHANGED = 22,
CALL_FAIL_DESTINATION_OUT_OF_ORDER = 27,
CALL_FAIL_INVALID_NUMBER_FORMAT = 28,
CALL_FAIL_FACILITY_REJECTED = 29,
CALL_FAIL_RESP_TO_STATUS_ENQUIRY = 30,
CALL_FAIL_NORMAL_UNSPECIFIED = 31,
CALL_FAIL_CONGESTION = 34,
CALL_FAIL_NETWORK_OUT_OF_ORDER = 38,
CALL_FAIL_TEMPORARY_FAILURE = 41,
CALL_FAIL_SWITCHING_EQUIPMENT_CONGESTION = 42,
CALL_FAIL_ACCESS_INFORMATION_DISCARDED = 43,
CALL_FAIL_REQUESTED_CIRCUIT_OR_CHANNEL_NOT_AVAILABLE = 44,
CALL_FAIL_RESOURCES_UNAVAILABLE_OR_UNSPECIFIED = 47,
CALL_FAIL_QOS_UNAVAILABLE = 49,
CALL_FAIL_REQUESTED_FACILITY_NOT_SUBSCRIBED = 50,
CALL_FAIL_INCOMING_CALLS_BARRED_WITHIN_CUG = 55,
CALL_FAIL_BEARER_CAPABILITY_NOT_AUTHORIZED = 57,
CALL_FAIL_BEARER_CAPABILITY_UNAVAILABLE = 58,
CALL_FAIL_SERVICE_OPTION_NOT_AVAILABLE = 63,
CALL_FAIL_BEARER_SERVICE_NOT_IMPLEMENTED = 65,
CALL_FAIL_ACM_LIMIT_EXCEEDED = 68,
CALL_FAIL_REQUESTED_FACILITY_NOT_IMPLEMENTED = 69,
CALL_FAIL_ONLY_DIGITAL_INFORMATION_BEARER_AVAILABLE = 70,
CALL_FAIL_SERVICE_OR_OPTION_NOT_IMPLEMENTED = 79,
CALL_FAIL_INVALID_TRANSACTION_IDENTIFIER = 81,
CALL_FAIL_USER_NOT_MEMBER_OF_CUG = 87,
CALL_FAIL_INCOMPATIBLE_DESTINATION = 88,
CALL_FAIL_INVALID_TRANSIT_NW_SELECTION = 91,
CALL_FAIL_SEMANTICALLY_INCORRECT_MESSAGE = 95,
CALL_FAIL_INVALID_MANDATORY_INFORMATION = 96,
CALL_FAIL_MESSAGE_TYPE_NON_IMPLEMENTED = 97,
CALL_FAIL_MESSAGE_TYPE_NOT_COMPATIBLE_WITH_PROTOCOL_STATE = 98,
CALL_FAIL_INFORMATION_ELEMENT_NON_EXISTENT = 99,
CALL_FAIL_CONDITIONAL_IE_ERROR = 100,
CALL_FAIL_MESSAGE_NOT_COMPATIBLE_WITH_PROTOCOL_STATE = 101,
CALL_FAIL_RECOVERY_ON_TIMER_EXPIRED = 102,
CALL_FAIL_PROTOCOL_ERROR_UNSPECIFIED = 111,
CALL_FAIL_INTERWORKING_UNSPECIFIED = 127,
CALL_FAIL_CALL_BARRED = 240,
CALL_FAIL_FDN_BLOCKED = 241,
CALL_FAIL_IMSI_UNKNOWN_IN_VLR = 242,
CALL_FAIL_IMEI_NOT_ACCEPTED = 243,
CALL_FAIL_DIAL_MODIFIED_TO_USSD = 244,
CALL_FAIL_DIAL_MODIFIED_TO_SS = 245,
CALL_FAIL_DIAL_MODIFIED_TO_DIAL = 246,
CALL_FAIL_ERROR_UNSPECIFIED = 0xffff,
/* Not defined in ril.h but valid 3GPP specific cause values
* for call control. See 3GPP TS 24.008 Annex H. */
CALL_FAIL_ANONYMOUS_CALL_REJECTION = 24,
CALL_FAIL_PRE_EMPTION = 25
};
enum ril_data_call_fail_cause {
PDP_FAIL_NONE = 0,
PDP_FAIL_OPERATOR_BARRED = 0x08,
PDP_FAIL_INSUFFICIENT_RESOURCES = 0x1A,
PDP_FAIL_MISSING_UKNOWN_APN = 0x1B,
PDP_FAIL_UNKNOWN_PDP_ADDRESS_TYPE = 0x1C,
PDP_FAIL_USER_AUTHENTICATION = 0x1D,
PDP_FAIL_ACTIVATION_REJECT_GGSN = 0x1E,
PDP_FAIL_ACTIVATION_REJECT_UNSPECIFIED = 0x1F,
PDP_FAIL_SERVICE_OPTION_NOT_SUPPORTED = 0x20,
PDP_FAIL_SERVICE_OPTION_NOT_SUBSCRIBED = 0x21,
PDP_FAIL_SERVICE_OPTION_OUT_OF_ORDER = 0x22,
PDP_FAIL_NSAPI_IN_USE = 0x23,
PDP_FAIL_REGULAR_DEACTIVATION = 0x24,
PDP_FAIL_QOS_NOT_ACCEPTED = 0x25,
PDP_FAIL_NETWORK_FAILURE = 0x26,
PDP_FAIL_UMTS_REACTIVATION_REQ = 0x27,
PDP_FAIL_FEATURE_NOT_SUPP = 0x28,
PDP_FAIL_TFT_SEMANTIC_ERROR = 0x29,
PDP_FAIL_TFT_SYTAX_ERROR = 0x2A,
PDP_FAIL_UNKNOWN_PDP_CONTEXT = 0x2B,
PDP_FAIL_FILTER_SEMANTIC_ERROR = 0x2C,
PDP_FAIL_FILTER_SYTAX_ERROR = 0x2D,
PDP_FAIL_PDP_WITHOUT_ACTIVE_TFT = 0x2E,
PDP_FAIL_ONLY_IPV4_ALLOWED = 0x32,
PDP_FAIL_ONLY_IPV6_ALLOWED = 0x33,
PDP_FAIL_ONLY_SINGLE_BEARER_ALLOWED = 0x34,
PDP_FAIL_ESM_INFO_NOT_RECEIVED = 0x35,
PDP_FAIL_PDN_CONN_DOES_NOT_EXIST = 0x36,
PDP_FAIL_MULTI_CONN_TO_SAME_PDN_NOT_ALLOWED = 0x37,
PDP_FAIL_MAX_ACTIVE_PDP_CONTEXT_REACHED = 0x41,
PDP_FAIL_UNSUPPORTED_APN_IN_CURRENT_PLMN = 0x42,
PDP_FAIL_INVALID_TRANSACTION_ID = 0x51,
PDP_FAIL_MESSAGE_INCORRECT_SEMANTIC = 0x5F,
PDP_FAIL_INVALID_MANDATORY_INFO = 0x60,
PDP_FAIL_MESSAGE_TYPE_UNSUPPORTED = 0x61,
PDP_FAIL_MSG_TYPE_NONCOMPATIBLE_STATE = 0x62,
PDP_FAIL_UNKNOWN_INFO_ELEMENT = 0x63,
PDP_FAIL_CONDITIONAL_IE_ERROR = 0x64,
PDP_FAIL_MSG_AND_PROTOCOL_STATE_UNCOMPATIBLE = 0x65,
PDP_FAIL_PROTOCOL_ERRORS = 0x6F,
PDP_FAIL_APN_TYPE_CONFLICT = 0x70,
PDP_FAIL_INVALID_PCSCF_ADDR = 0x71,
PDP_FAIL_INTERNAL_CALL_PREEMPT_BY_HIGH_PRIO_APN = 0x72,
PDP_FAIL_EMM_ACCESS_BARRED = 0x73,
PDP_FAIL_EMERGENCY_IFACE_ONLY = 0x74,
PDP_FAIL_IFACE_MISMATCH = 0x75,
PDP_FAIL_COMPANION_IFACE_IN_USE = 0x76,
PDP_FAIL_IP_ADDRESS_MISMATCH = 0x77,
PDP_FAIL_IFACE_AND_POL_FAMILY_MISMATCH = 0x78,
PDP_FAIL_EMM_ACCESS_BARRED_INFINITE_RETRY = 0x79,
PDP_FAIL_AUTH_FAILURE_ON_EMERGENCY_CALL = 0x7A,
PDP_FAIL_VOICE_REGISTRATION_FAIL = -1,
PDP_FAIL_DATA_REGISTRATION_FAIL = -2,
PDP_FAIL_SIGNAL_LOST = -3,
PDP_FAIL_PREF_RADIO_TECH_CHANGED = -4,
PDP_FAIL_RADIO_POWER_OFF = -5,
PDP_FAIL_TETHERED_CALL_ACTIVE = -6,
PDP_FAIL_ERROR_UNSPECIFIED = 0xffff
};
/* RIL_REQUEST_DEACTIVATE_DATA_CALL parameter */
#define RIL_DEACTIVATE_DATA_CALL_NO_REASON 0
#define RIL_DEACTIVATE_DATA_CALL_RADIO_SHUTDOWN 1
/* RIL_REQUEST_SETUP_DATA_CALL */
enum ril_data_profile {
RIL_DATA_PROFILE_DEFAULT = 0,
RIL_DATA_PROFILE_TETHERED = 1,
RIL_DATA_PROFILE_IMS = 2,
RIL_DATA_PROFILE_FOTA = 3,
RIL_DATA_PROFILE_CBS = 4,
RIL_DATA_PROFILE_OEM_BASE = 1000,
RIL_DATA_PROFILE_INVALID = 0xFFFFFFFF
};
enum ril_profile_type {
RIL_PROFILE_COMMON = 0,
RIL_PROFILE_3GPP = 1,
RIL_PROFILE_3GPP2 = 2
};
enum ril_auth {
RIL_AUTH_NONE = 0,
RIL_AUTH_PAP = 1,
RIL_AUTH_CHAP = 2,
RIL_AUTH_BOTH = 3
};
#define RIL_CARD_MAX_APPS 8
/* SIM card states */
enum ril_card_state {
RIL_CARDSTATE_UNKNOWN = -1,
RIL_CARDSTATE_ABSENT = 0,
RIL_CARDSTATE_PRESENT = 1,
RIL_CARDSTATE_ERROR = 2
};
/* SIM personalization substates */
enum ril_perso_substate {
RIL_PERSOSUBSTATE_UNKNOWN = 0,
RIL_PERSOSUBSTATE_IN_PROGRESS = 1,
RIL_PERSOSUBSTATE_READY = 2,
RIL_PERSOSUBSTATE_SIM_NETWORK = 3,
RIL_PERSOSUBSTATE_SIM_NETWORK_SUBSET = 4,
RIL_PERSOSUBSTATE_SIM_CORPORATE = 5,
RIL_PERSOSUBSTATE_SIM_SERVICE_PROVIDER = 6,
RIL_PERSOSUBSTATE_SIM_SIM = 7,
RIL_PERSOSUBSTATE_SIM_NETWORK_PUK = 8,
RIL_PERSOSUBSTATE_SIM_NETWORK_SUBSET_PUK = 9,
RIL_PERSOSUBSTATE_SIM_CORPORATE_PUK = 10,
RIL_PERSOSUBSTATE_SIM_SERVICE_PROVIDER_PUK = 11,
RIL_PERSOSUBSTATE_SIM_SIM_PUK = 12,
RIL_PERSOSUBSTATE_RUIM_NETWORK1 = 13,
RIL_PERSOSUBSTATE_RUIM_NETWORK2 = 14,
RIL_PERSOSUBSTATE_RUIM_HRPD = 15,
RIL_PERSOSUBSTATE_RUIM_CORPORATE = 16,
RIL_PERSOSUBSTATE_RUIM_SERVICE_PROVIDER = 17,
RIL_PERSOSUBSTATE_RUIM_RUIM = 18,
RIL_PERSOSUBSTATE_RUIM_NETWORK1_PUK = 19,
RIL_PERSOSUBSTATE_RUIM_NETWORK2_PUK = 20,
RIL_PERSOSUBSTATE_RUIM_HRPD_PUK = 21,
RIL_PERSOSUBSTATE_RUIM_CORPORATE_PUK = 22,
RIL_PERSOSUBSTATE_RUIM_SERVICE_PROVIDER_PUK = 23,
RIL_PERSOSUBSTATE_RUIM_RUIM_PUK = 24
};
/* SIM - App states */
enum ril_app_state {
RIL_APPSTATE_ILLEGAL = -1,
RIL_APPSTATE_UNKNOWN = 0,
RIL_APPSTATE_DETECTED = 1,
RIL_APPSTATE_PIN = 2,
RIL_APPSTATE_PUK = 3,
RIL_APPSTATE_SUBSCRIPTION_PERSO = 4,
RIL_APPSTATE_READY = 5
};
/* SIM - PIN states */
enum ril_pin_state {
RIL_PINSTATE_UNKNOWN = 0,
RIL_PINSTATE_ENABLED_NOT_VERIFIED = 1,
RIL_PINSTATE_ENABLED_VERIFIED = 2,
RIL_PINSTATE_DISABLED = 3,
RIL_PINSTATE_ENABLED_BLOCKED = 4,
RIL_PINSTATE_ENABLED_PERM_BLOCKED = 5
};
/* SIM - App types */
enum ril_app_type {
RIL_APPTYPE_UNKNOWN = 0,
RIL_APPTYPE_SIM = 1,
RIL_APPTYPE_USIM = 2,
RIL_APPTYPE_RUIM = 3,
RIL_APPTYPE_CSIM = 4,
RIL_APPTYPE_ISIM = 5
};
/* Cell info */
enum ril_cell_info_type {
RIL_CELL_INFO_TYPE_NONE = 0,
RIL_CELL_INFO_TYPE_GSM = 1,
RIL_CELL_INFO_TYPE_CDMA = 2,
RIL_CELL_INFO_TYPE_LTE = 3,
RIL_CELL_INFO_TYPE_WCDMA = 4,
RIL_CELL_INFO_TYPE_TD_SCDMA = 5
};
enum ril_restricted_state {
RIL_RESTRICTED_STATE_NONE = 0x00,
RIL_RESTRICTED_STATE_CS_EMERGENCY = 0x01,
RIL_RESTRICTED_STATE_CS_NORMAL = 0x02,
RIL_RESTRICTED_STATE_CS_ALL = 0x04,
RIL_RESTRICTED_STATE_PS_ALL = 0x10
};
/* Suplementary services Service class*/
#define SERVICE_CLASS_NONE 0
/* RIL_FACILITY_LOCK parameters */
#define RIL_FACILITY_UNLOCK "0"
#define RIL_FACILITY_LOCK "1"
/* See RIL_REQUEST_SET_UNSOLICITED_RESPONSE_FILTER (RIL_VERSION >= 15) */
enum ril_unsolicited_response_filter {
RIL_UR_SIGNAL_STRENGTH = 0x01,
RIL_UR_FULL_NETWORK_STATE = 0x02,
RIL_UR_DATA_CALL_DORMANCY_CHANGED = 0x04
};
/* RIL_REQUEST_QUERY_NETWORK_SELECTION_MODE result */
enum ril_network_selection_mode {
RIL_NETWORK_SELECTION_MODE_AUTO = 0,
RIL_NETWORK_SELECTION_MODE_MANUAL = 1
};
#endif /*__RIL_CONSTANTS_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2016-2021 Jolla Ltd.
* Copyright (C) 2019 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_DATA_H
#define RIL_DATA_H
#include "ril_types.h"
#include <ofono/gprs-context.h>
#include <glib-object.h>
enum ril_data_call_active {
RIL_DATA_CALL_INACTIVE = 0,
RIL_DATA_CALL_LINK_DOWN = 1,
RIL_DATA_CALL_ACTIVE = 2
};
struct ril_data_call {
int cid;
enum ril_data_call_fail_cause status;
enum ril_data_call_active active;
enum ofono_gprs_proto prot;
int retry_time;
int mtu;
char *ifname;
char **dnses;
char **gateways;
char **addresses;
char **pcscf;
};
struct ril_data_call_list {
guint version;
guint num;
GSList *calls;
};
struct ril_data {
GObject object;
struct ril_data_priv *priv;
struct ril_data_call_list *data_calls;
};
enum ril_data_manager_flags {
RIL_DATA_MANAGER_3GLTE_HANDOVER = 0x01,
RIL_DATA_MANAGER_FORCE_GSM_ON_OTHER_SLOTS = 0x02
};
enum ril_data_allow_data_opt {
RIL_ALLOW_DATA_AUTO,
RIL_ALLOW_DATA_ENABLED,
RIL_ALLOW_DATA_DISABLED
};
enum ril_data_call_format {
RIL_DATA_CALL_FORMAT_AUTO,
RIL_DATA_CALL_FORMAT_6 = 6,
RIL_DATA_CALL_FORMAT_9 = 9,
RIL_DATA_CALL_FORMAT_11 = 11
};
struct ril_data_options {
enum ril_data_allow_data_opt allow_data;
enum ril_data_call_format data_call_format;
unsigned int data_call_retry_limit;
unsigned int data_call_retry_delay_ms;
};
struct ril_data_manager;
struct ril_data_manager *ril_data_manager_new(enum ril_data_manager_flags flg);
struct ril_data_manager *ril_data_manager_ref(struct ril_data_manager *dm);
void ril_data_manager_unref(struct ril_data_manager *dm);
void ril_data_manager_check_data(struct ril_data_manager *dm);
void ril_data_manager_assert_data_on(struct ril_data_manager *dm);
typedef void (*ril_data_cb_t)(struct ril_data *data, void *arg);
typedef void (*ril_data_call_setup_cb_t)(struct ril_data *data,
int ril_status, const struct ril_data_call *call,
void *arg);
typedef void (*ril_data_call_deactivate_cb_t)(struct ril_data *data,
int ril_status, void *arg);
struct ril_data *ril_data_new(struct ril_data_manager *dm, const char *name,
struct ril_radio *radio, struct ril_network *network,
GRilIoChannel *io, const struct ril_data_options *options,
const struct ril_slot_config *config,
struct ril_vendor *vendor);
struct ril_data *ril_data_ref(struct ril_data *data);
void ril_data_unref(struct ril_data *data);
gboolean ril_data_allowed(struct ril_data *data);
void ril_data_poll_call_state(struct ril_data *data);
gulong ril_data_add_allow_changed_handler(struct ril_data *data,
ril_data_cb_t cb, void *arg);
gulong ril_data_add_calls_changed_handler(struct ril_data *data,
ril_data_cb_t cb, void *arg);
void ril_data_remove_handler(struct ril_data *data, gulong id);
void ril_data_allow(struct ril_data *data, enum ril_data_role role);
struct ril_data_request;
struct ril_data_request *ril_data_call_setup(struct ril_data *data,
const struct ofono_gprs_primary_context *ctx,
enum ofono_gprs_context_type context_type,
ril_data_call_setup_cb_t cb, void *arg);
struct ril_data_request *ril_data_call_deactivate(struct ril_data *data,
int cid, ril_data_call_deactivate_cb_t cb, void *arg);
void ril_data_request_detach(struct ril_data_request *req);
void ril_data_request_cancel(struct ril_data_request *req);
gboolean ril_data_call_grab(struct ril_data *data, int cid, void *cookie);
void ril_data_call_release(struct ril_data *data, int cid, void *cookie);
void ril_data_call_free(struct ril_data_call *call);
struct ril_data_call *ril_data_call_dup(const struct ril_data_call *call);
struct ril_data_call *ril_data_call_find(struct ril_data_call_list *list,
int cid);
/* Constructors of various kinds of RIL requests */
GRilIoRequest *ril_request_allow_data_new(gboolean allow);
GRilIoRequest *ril_request_deactivate_data_call_new(int cid);
#endif /* RIL_DATA_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2017 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_plugin.h"
#include "ril_util.h"
#include "ril_log.h"
#include <gutil_idlequeue.h>
/*
* TODO: No public RIL api to query manufacturer or model.
* Check where to get, could /system/build.prop be updated to have good values?
*/
enum ril_devinfo_cb_tag {
DEVINFO_QUERY_SERIAL = 1,
DEVINFO_QUERY_SVN
};
struct ril_devinfo {
struct ofono_devinfo *info;
GRilIoQueue *q;
GUtilIdleQueue *iq;
char *log_prefix;
char *imeisv;
char *imei;
};
struct ril_devinfo_cbd {
struct ril_devinfo *di;
ofono_devinfo_query_cb_t cb;
gpointer data;
};
#define DBG_(self,fmt,args...) DBG("%s" fmt, (self)->log_prefix, ##args)
#define ril_devinfo_cbd_free g_free
static inline struct ril_devinfo *ril_devinfo_get_data(
struct ofono_devinfo *info)
{
return ofono_devinfo_get_data(info);
}
struct ril_devinfo_cbd *ril_devinfo_cbd_new(struct ril_devinfo *di,
ofono_devinfo_query_cb_t cb, void *data)
{
struct ril_devinfo_cbd *cbd = g_new0(struct ril_devinfo_cbd, 1);
cbd->di = di;
cbd->cb = cb;
cbd->data = data;
return cbd;
}
static void ril_devinfo_query_unsupported(struct ofono_devinfo *info,
ofono_devinfo_query_cb_t cb, void *data)
{
struct ofono_error error;
cb(ril_error_failure(&error), "", data);
}
static void ril_devinfo_query_revision_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ofono_error error;
struct ril_devinfo_cbd *cbd = user_data;
if (status == RIL_E_SUCCESS) {
char *res;
GRilIoParser rilp;
grilio_parser_init(&rilp, data, len);
res = grilio_parser_get_utf8(&rilp);
DBG_(cbd->di, "%s", res);
cbd->cb(ril_error_ok(&error), res ? res : "", cbd->data);
g_free(res);
} else {
cbd->cb(ril_error_failure(&error), NULL, cbd->data);
}
}
static void ril_devinfo_query_revision(struct ofono_devinfo *info,
ofono_devinfo_query_cb_t cb, void *data)
{
struct ril_devinfo *di = ril_devinfo_get_data(info);
DBG_(di, "");
grilio_queue_send_request_full(di->q, NULL,
RIL_REQUEST_BASEBAND_VERSION,
ril_devinfo_query_revision_cb,
ril_devinfo_cbd_free,
ril_devinfo_cbd_new(di, cb, data));
}
static void ril_devinfo_query_serial_cb(gpointer user_data)
{
struct ril_devinfo_cbd *cbd = user_data;
struct ril_devinfo *di = cbd->di;
struct ofono_error error;
DBG_(di, "%s", di->imei);
cbd->cb(ril_error_ok(&error), di->imei, cbd->data);
}
static void ril_devinfo_query_svn_cb(gpointer user_data)
{
struct ril_devinfo_cbd *cbd = user_data;
struct ril_devinfo *di = cbd->di;
struct ofono_error error;
DBG_(di, "%s", di->imeisv);
if (di->imeisv && di->imeisv[0]) {
cbd->cb(ril_error_ok(&error), di->imeisv, cbd->data);
} else {
cbd->cb(ril_error_failure(&error), "", cbd->data);
}
}
static void ril_devinfo_query(struct ril_devinfo *di,
enum ril_devinfo_cb_tag tag, GUtilIdleFunc fn,
ofono_devinfo_query_cb_t cb, void *data)
{
GVERIFY_FALSE(gutil_idle_queue_cancel_tag(di->iq, tag));
gutil_idle_queue_add_tag_full(di->iq, tag, fn,
ril_devinfo_cbd_new(di, cb, data),
ril_devinfo_cbd_free);
}
static void ril_devinfo_query_serial(struct ofono_devinfo *info,
ofono_devinfo_query_cb_t cb,
void *data)
{
struct ril_devinfo *di = ril_devinfo_get_data(info);
DBG_(di, "");
ril_devinfo_query(di, DEVINFO_QUERY_SERIAL,
ril_devinfo_query_serial_cb, cb, data);
}
static void ril_devinfo_query_svn(struct ofono_devinfo *info,
ofono_devinfo_query_cb_t cb,
void *data)
{
struct ril_devinfo *di = ril_devinfo_get_data(info);
DBG_(di, "");
ril_devinfo_query(di, DEVINFO_QUERY_SVN,
ril_devinfo_query_svn_cb, cb, data);
}
static void ril_devinfo_register(gpointer user_data)
{
struct ril_devinfo *di = user_data;
DBG_(di, "");
ofono_devinfo_register(di->info);
}
static int ril_devinfo_probe(struct ofono_devinfo *info, unsigned int vendor,
void *data)
{
struct ril_modem *modem = data;
struct ril_devinfo *di = g_new0(struct ril_devinfo, 1);
di->log_prefix = (modem->log_prefix && modem->log_prefix[0]) ?
g_strconcat(modem->log_prefix, " ", NULL) : g_strdup("");
DBG_(di, "%s", modem->imei);
GASSERT(modem->imei);
di->q = grilio_queue_new(ril_modem_io(modem));
di->info = info;
di->imeisv = g_strdup(modem->imeisv);
di->imei = g_strdup(modem->imei);
di->iq = gutil_idle_queue_new();
gutil_idle_queue_add(di->iq, ril_devinfo_register, di);
ofono_devinfo_set_data(info, di);
return 0;
}
static void ril_devinfo_remove(struct ofono_devinfo *info)
{
struct ril_devinfo *di = ril_devinfo_get_data(info);
DBG_(di, "");
ofono_devinfo_set_data(info, NULL);
gutil_idle_queue_cancel_all(di->iq);
gutil_idle_queue_unref(di->iq);
grilio_queue_cancel_all(di->q, FALSE);
grilio_queue_unref(di->q);
g_free(di->log_prefix);
g_free(di->imeisv);
g_free(di->imei);
g_free(di);
}
const struct ofono_devinfo_driver ril_devinfo_driver = {
.name = RILMODEM_DRIVER,
.probe = ril_devinfo_probe,
.remove = ril_devinfo_remove,
/* query_revision won't be called if query_model is missing */
.query_model = ril_devinfo_query_unsupported,
.query_revision = ril_devinfo_query_revision,
.query_serial = ril_devinfo_query_serial,
.query_svn = ril_devinfo_query_svn
};
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2019-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_devmon.h"
struct ril_devmon_io *ril_devmon_start_io(struct ril_devmon *devmon,
GRilIoChannel *channel, struct ofono_cell_info *cell_info)
{
return devmon ? devmon->start_io(devmon, channel, cell_info) : NULL;
}
void ril_devmon_io_free(struct ril_devmon_io *devmon_io)
{
if (devmon_io) {
devmon_io->free(devmon_io);
}
}
void ril_devmon_free(struct ril_devmon *devmon)
{
if (devmon) {
devmon->free(devmon);
}
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2019-2021 Jolla Ltd.
* Copyright (C) 2020 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_DEVMON_H
#define RIL_DEVMON_H
#include "ril_types.h"
#include <ofono/cell-info.h>
/*
* Separate instance of ril_devmon is created for each modem.
* Device monitor is started after RIL has been connected.
*/
struct ril_devmon_io {
void (*free)(struct ril_devmon_io *devmon_io);
};
struct ril_devmon {
void (*free)(struct ril_devmon *devmon);
struct ril_devmon_io *(*start_io)(struct ril_devmon *devmon,
GRilIoChannel *channel, struct ofono_cell_info *cell_info);
};
/*
* Legacy Device Monitor uses RIL_REQUEST_SCREEN_STATE to tell
* the modem when screen turns on and off.
*/
struct ril_devmon *ril_devmon_ss_new(const struct ril_slot_config *config);
/*
* This Device Monitor uses RIL_REQUEST_SEND_DEVICE_STATE to let
* the modem choose the right power saving strategy. It basically
* mirrors the logic of Android's DeviceStateMonitor class.
*/
struct ril_devmon *ril_devmon_ds_new(const struct ril_slot_config *config);
/*
* This Device Monitor implementation controls network state updates
* by sending SET_UNSOLICITED_RESPONSE_FILTER.
*/
struct ril_devmon *ril_devmon_ur_new(const struct ril_slot_config *config);
/*
* This one selects the type based on the RIL version.
*/
struct ril_devmon *ril_devmon_auto_new(const struct ril_slot_config *config);
/*
* This one combines several methods. Takes ownership of ril_devmon objects.
*/
struct ril_devmon *ril_devmon_combine(struct ril_devmon *devmon[], guint n);
/* Utilities (NULL tolerant) */
struct ril_devmon_io *ril_devmon_start_io(struct ril_devmon *devmon,
GRilIoChannel *channel, struct ofono_cell_info *cell_info);
void ril_devmon_io_free(struct ril_devmon_io *devmon_io);
void ril_devmon_free(struct ril_devmon *devmon);
#endif /* RIL_CONNMAN_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2019-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_devmon.h"
#include <ofono/log.h>
#include <grilio_channel.h>
typedef struct ril_devmon_ds {
struct ril_devmon pub;
struct ril_devmon *ss;
struct ril_devmon *ds;
} DevMon;
static inline DevMon *ril_devmon_auto_cast(struct ril_devmon *pub)
{
return G_CAST(pub, DevMon, pub);
}
static struct ril_devmon_io *ril_devmon_auto_start_io(struct ril_devmon *devmon,
GRilIoChannel *io, struct ofono_cell_info *cell_info)
{
DevMon *self = ril_devmon_auto_cast(devmon);
if (!self->ss) {
/* We have already chosen SEND_DEVICE_STATE method */
return ril_devmon_start_io(self->ds, io, cell_info);
} else if (!self->ds) {
/* We have already chosen SCREEN_STATE method */
return ril_devmon_start_io(self->ss, io, cell_info);
} else if (io->ril_version > 14 /* Covers binder implementation */) {
/* Choose SEND_DEVICE_STATE method */
DBG("%s: Will use SEND_DEVICE_STATE method", io->name);
ril_devmon_free(self->ss);
self->ss = NULL;
return ril_devmon_start_io(self->ds, io, cell_info);
} else {
/* Choose legacy SCREEN_STATE method */
DBG("%s: Will use SCREEN_STATE method", io->name);
ril_devmon_free(self->ds);
self->ds = NULL;
return ril_devmon_start_io(self->ss, io, cell_info);
}
}
static void ril_devmon_auto_free(struct ril_devmon *devmon)
{
DevMon *self = ril_devmon_auto_cast(devmon);
ril_devmon_free(self->ss);
ril_devmon_free(self->ds);
g_free(self);
}
struct ril_devmon *ril_devmon_auto_new(const struct ril_slot_config *config)
{
DevMon *self = g_new0(DevMon, 1);
/*
* Allocate both implementations at startup. We need to do that
* early so that connections to D-Bus daemon and services are
* established before we drop privileges. This isn't much of
* an overhead because those implementation don't do much until
* we actually start the I/O (at which point we drop one of those).
*/
self->pub.free = ril_devmon_auto_free;
self->pub.start_io = ril_devmon_auto_start_io;
self->ss = ril_devmon_ss_new(config);
self->ds = ril_devmon_ds_new(config);
return &self->pub;
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2020-2021 Jolla Ltd.
* Copyright (C) 2020 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_devmon.h"
#include <ofono/log.h>
typedef struct ril_devmon_combine {
struct ril_devmon pub;
struct ril_devmon **impl;
guint count;
} DevMon;
typedef struct ril_devmon_combine_io {
struct ril_devmon_io pub;
struct ril_devmon_io **impl;
guint count;
} DevMonIo;
static inline DevMon *ril_devmon_combine_cast(struct ril_devmon *dm)
{
return G_CAST(dm, DevMon, pub);
}
static inline DevMonIo *ril_devmon_ds_io_cast(struct ril_devmon_io *io)
{
return G_CAST(io, DevMonIo, pub);
}
static void ril_devmon_combine_io_free(struct ril_devmon_io *io)
{
guint i;
DevMonIo *self = ril_devmon_ds_io_cast(io);
for (i = 0; i < self->count; i++) {
ril_devmon_io_free(self->impl[i]);
}
g_free(self);
}
static struct ril_devmon_io *ril_devmon_combine_start_io(struct ril_devmon *dm,
GRilIoChannel *chan, struct ofono_cell_info *ci)
{
guint i;
DevMon *self = ril_devmon_combine_cast(dm);
DevMonIo *io = g_malloc0(sizeof(DevMonIo) +
sizeof(struct ril_devmon_io *) * self->count);
io->pub.free = ril_devmon_combine_io_free;
io->impl = (struct ril_devmon_io**)(io + 1);
io->count = self->count;
for (i = 0; i < io->count; i++) {
io->impl[i] = ril_devmon_start_io(self->impl[i], chan, ci);
}
return &io->pub;
}
static void ril_devmon_combine_free(struct ril_devmon *dm)
{
DevMon *self = ril_devmon_combine_cast(dm);
guint i;
for (i = 0; i < self->count; i++) {
ril_devmon_free(self->impl[i]);
}
g_free(self);
}
struct ril_devmon *ril_devmon_combine(struct ril_devmon *dm[], guint n)
{
guint i;
DevMon *self = g_malloc0(sizeof(DevMon) +
sizeof(struct ril_devmon *) * n);
self->pub.free = ril_devmon_combine_free;
self->pub.start_io = ril_devmon_combine_start_io;
self->impl = (struct ril_devmon **)(self + 1);
self->count = n;
for (i = 0; i < n; i++) {
self->impl[i] = dm[i];
}
return &self->pub;
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,355 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2019-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_devmon.h"
#include "ril_connman.h"
#include <ofono/log.h>
#include <ofono/ril-constants.h>
#include <mce_battery.h>
#include <mce_charger.h>
#include <mce_display.h>
#include <grilio_channel.h>
#include <grilio_request.h>
#include <gutil_macros.h>
enum device_state_type {
/* Mirrors RIL_DeviceStateType from ril.h */
POWER_SAVE_MODE,
CHARGING_STATE,
LOW_DATA_EXPECTED
};
enum ril_devmon_ds_battery_event {
BATTERY_EVENT_VALID,
BATTERY_EVENT_STATUS,
BATTERY_EVENT_COUNT
};
enum ril_devmon_ds_charger_event {
CHARGER_EVENT_VALID,
CHARGER_EVENT_STATE,
CHARGER_EVENT_COUNT
};
enum ril_devmon_ds_display_event {
DISPLAY_EVENT_VALID,
DISPLAY_EVENT_STATE,
DISPLAY_EVENT_COUNT
};
enum ril_devmon_ds_connman_event {
CONNMAN_EVENT_VALID,
CONNMAN_EVENT_TETHERING,
CONNMAN_EVENT_COUNT
};
typedef struct ril_devmon_ds {
struct ril_devmon pub;
struct ril_connman *connman;
MceBattery *battery;
MceCharger *charger;
MceDisplay *display;
int cell_info_interval_short_ms;
int cell_info_interval_long_ms;
} DevMon;
typedef struct ril_devmon_ds_io {
struct ril_devmon_io pub;
struct ril_connman *connman;
struct ofono_cell_info *cell_info;
MceBattery *battery;
MceCharger *charger;
MceDisplay *display;
GRilIoChannel *io;
guint low_data_req_id;
guint charging_req_id;
gboolean low_data;
gboolean charging;
gboolean low_data_supported;
gboolean charging_supported;
gulong connman_event_id[CONNMAN_EVENT_COUNT];
gulong battery_event_id[BATTERY_EVENT_COUNT];
gulong charger_event_id[CHARGER_EVENT_COUNT];
gulong display_event_id[DISPLAY_EVENT_COUNT];
guint req_id;
int cell_info_interval_short_ms;
int cell_info_interval_long_ms;
} DevMonIo;
#define DBG_(self,fmt,args...) DBG("%s: " fmt, (self)->io->name, ##args)
static inline DevMon *ril_devmon_ds_cast(struct ril_devmon *pub)
{
return G_CAST(pub, DevMon, pub);
}
static inline DevMonIo *ril_devmon_ds_io_cast(struct ril_devmon_io *pub)
{
return G_CAST(pub, DevMonIo, pub);
}
static inline gboolean ril_devmon_ds_tethering_on(struct ril_connman *connman)
{
return connman->valid && connman->tethering;
}
static inline gboolean ril_devmon_ds_battery_ok(MceBattery *battery)
{
return battery->valid && battery->status >= MCE_BATTERY_OK;
}
static inline gboolean ril_devmon_ds_charging(MceCharger *charger)
{
return charger->valid && charger->state == MCE_CHARGER_ON;
}
static inline gboolean ril_devmon_ds_display_on(MceDisplay *display)
{
return display->valid && display->state != MCE_DISPLAY_STATE_OFF;
}
static guint ril_devmon_ds_io_send_device_state(DevMonIo *self,
enum device_state_type type, gboolean state,
GRilIoChannelResponseFunc callback)
{
GRilIoRequest *req = grilio_request_array_int32_new(2, type, state);
const guint id = grilio_channel_send_request_full(self->io, req,
RIL_REQUEST_SEND_DEVICE_STATE, callback, NULL, self);
grilio_request_unref(req);
return id;
}
static void ril_devmon_ds_io_low_data_state_sent(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
DevMonIo *self = user_data;
self->low_data_req_id = 0;
if (status == RIL_E_REQUEST_NOT_SUPPORTED) {
DBG_(self, "LOW_DATA_EXPECTED state is not supported");
self->low_data_supported = FALSE;
}
}
static void ril_devmon_ds_io_charging_state_sent(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
DevMonIo *self = user_data;
self->charging_req_id = 0;
if (status == RIL_E_REQUEST_NOT_SUPPORTED) {
DBG_(self, "CHARGING state is not supported");
self->charging_supported = FALSE;
}
}
static void ril_devmon_ds_io_update_charging(DevMonIo *self)
{
const gboolean charging = ril_devmon_ds_charging(self->charger);
if (self->charging != charging) {
self->charging = charging;
DBG_(self, "Charging %s", charging ? "on" : "off");
if (self->charging_supported) {
grilio_channel_cancel_request(self->io,
self->charging_req_id, FALSE);
self->charging_req_id =
ril_devmon_ds_io_send_device_state(self,
CHARGING_STATE, charging,
ril_devmon_ds_io_charging_state_sent);
}
}
}
static void ril_devmon_ds_io_update_low_data(DevMonIo *self)
{
const gboolean low_data =
!ril_devmon_ds_tethering_on(self->connman) &&
!ril_devmon_ds_charging(self->charger) &&
!ril_devmon_ds_display_on(self->display);
if (self->low_data != low_data) {
self->low_data = low_data;
DBG_(self, "Low data is%s expected", low_data ? "" : " not");
if (self->low_data_supported) {
grilio_channel_cancel_request(self->io,
self->low_data_req_id, FALSE);
self->low_data_req_id =
ril_devmon_ds_io_send_device_state(self,
LOW_DATA_EXPECTED, low_data,
ril_devmon_ds_io_low_data_state_sent);
}
}
}
static void ril_devmon_ds_io_set_cell_info_update_interval(DevMonIo *self)
{
ofono_cell_info_set_update_interval(self->cell_info,
(ril_devmon_ds_display_on(self->display) &&
(ril_devmon_ds_charging(self->charger) ||
ril_devmon_ds_battery_ok(self->battery))) ?
self->cell_info_interval_short_ms :
self->cell_info_interval_long_ms);
}
static void ril_devmon_ds_io_connman_cb(struct ril_connman *connman,
enum ril_connman_property property, void *user_data)
{
ril_devmon_ds_io_update_low_data((DevMonIo *)user_data);
}
static void ril_devmon_ds_io_battery_cb(MceBattery *battery, void *user_data)
{
ril_devmon_ds_io_set_cell_info_update_interval(user_data);
}
static void ril_devmon_ds_io_display_cb(MceDisplay *display, void *user_data)
{
DevMonIo *self = user_data;
ril_devmon_ds_io_update_low_data(self);
ril_devmon_ds_io_set_cell_info_update_interval(self);
}
static void ril_devmon_ds_io_charger_cb(MceCharger *charger, void *user_data)
{
DevMonIo *self = user_data;
ril_devmon_ds_io_update_low_data(self);
ril_devmon_ds_io_update_charging(self);
ril_devmon_ds_io_set_cell_info_update_interval(self);
}
static void ril_devmon_ds_io_free(struct ril_devmon_io *devmon_io)
{
DevMonIo *self = ril_devmon_ds_io_cast(devmon_io);
ril_connman_remove_all_handlers(self->connman, self->connman_event_id);
ril_connman_unref(self->connman);
mce_battery_remove_all_handlers(self->battery, self->battery_event_id);
mce_battery_unref(self->battery);
mce_charger_remove_all_handlers(self->charger, self->charger_event_id);
mce_charger_unref(self->charger);
mce_display_remove_all_handlers(self->display, self->display_event_id);
mce_display_unref(self->display);
grilio_channel_cancel_request(self->io, self->low_data_req_id, FALSE);
grilio_channel_cancel_request(self->io, self->charging_req_id, FALSE);
grilio_channel_unref(self->io);
ofono_cell_info_unref(self->cell_info);
g_free(self);
}
static struct ril_devmon_io *ril_devmon_ds_start_io(struct ril_devmon *devmon,
GRilIoChannel *io, struct ofono_cell_info *cell_info)
{
DevMon *ds = ril_devmon_ds_cast(devmon);
DevMonIo *self = g_new0(DevMonIo, 1);
self->pub.free = ril_devmon_ds_io_free;
self->low_data_supported = TRUE;
self->charging_supported = TRUE;
self->io = grilio_channel_ref(io);
self->cell_info = ofono_cell_info_ref(cell_info);
self->connman = ril_connman_ref(ds->connman);
self->connman_event_id[CONNMAN_EVENT_VALID] =
ril_connman_add_property_changed_handler(self->connman,
RIL_CONNMAN_PROPERTY_VALID,
ril_devmon_ds_io_connman_cb, self);
self->connman_event_id[CONNMAN_EVENT_TETHERING] =
ril_connman_add_property_changed_handler(self->connman,
RIL_CONNMAN_PROPERTY_TETHERING,
ril_devmon_ds_io_connman_cb, self);
self->battery = mce_battery_ref(ds->battery);
self->battery_event_id[BATTERY_EVENT_VALID] =
mce_battery_add_valid_changed_handler(self->battery,
ril_devmon_ds_io_battery_cb, self);
self->battery_event_id[BATTERY_EVENT_STATUS] =
mce_battery_add_status_changed_handler(self->battery,
ril_devmon_ds_io_battery_cb, self);
self->charger = mce_charger_ref(ds->charger);
self->charger_event_id[CHARGER_EVENT_VALID] =
mce_charger_add_valid_changed_handler(self->charger,
ril_devmon_ds_io_charger_cb, self);
self->charger_event_id[CHARGER_EVENT_STATE] =
mce_charger_add_state_changed_handler(self->charger,
ril_devmon_ds_io_charger_cb, self);
self->display = mce_display_ref(ds->display);
self->display_event_id[DISPLAY_EVENT_VALID] =
mce_display_add_valid_changed_handler(self->display,
ril_devmon_ds_io_display_cb, self);
self->display_event_id[DISPLAY_EVENT_STATE] =
mce_display_add_state_changed_handler(self->display,
ril_devmon_ds_io_display_cb, self);
self->cell_info_interval_short_ms =
ds->cell_info_interval_short_ms;
self->cell_info_interval_long_ms =
ds->cell_info_interval_long_ms;
ril_devmon_ds_io_update_low_data(self);
ril_devmon_ds_io_update_charging(self);
ril_devmon_ds_io_set_cell_info_update_interval(self);
return &self->pub;
}
static void ril_devmon_ds_free(struct ril_devmon *devmon)
{
DevMon *self = ril_devmon_ds_cast(devmon);
ril_connman_unref(self->connman);
mce_battery_unref(self->battery);
mce_charger_unref(self->charger);
mce_display_unref(self->display);
g_free(self);
}
struct ril_devmon *ril_devmon_ds_new(const struct ril_slot_config *config)
{
DevMon *self = g_new0(DevMon, 1);
self->pub.free = ril_devmon_ds_free;
self->pub.start_io = ril_devmon_ds_start_io;
self->connman = ril_connman_new();
self->battery = mce_battery_new();
self->charger = mce_charger_new();
self->display = mce_display_new();
self->cell_info_interval_short_ms =
config->cell_info_interval_short_ms;
self->cell_info_interval_long_ms =
config->cell_info_interval_long_ms;
return &self->pub;
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,261 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2019-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_devmon.h"
#include <ofono/log.h>
#include <ofono/ril-constants.h>
#include <mce_battery.h>
#include <mce_charger.h>
#include <mce_display.h>
#include <grilio_channel.h>
#include <grilio_request.h>
#include <gutil_macros.h>
enum ril_devmon_ss_battery_event {
BATTERY_EVENT_VALID,
BATTERY_EVENT_STATUS,
BATTERY_EVENT_COUNT
};
enum ril_devmon_ss_charger_event {
CHARGER_EVENT_VALID,
CHARGER_EVENT_STATE,
CHARGER_EVENT_COUNT
};
enum ril_devmon_ss_display_event {
DISPLAY_EVENT_VALID,
DISPLAY_EVENT_STATE,
DISPLAY_EVENT_COUNT
};
typedef struct ril_devmon_ss {
struct ril_devmon pub;
MceBattery *battery;
MceCharger *charger;
MceDisplay *display;
int cell_info_interval_short_ms;
int cell_info_interval_long_ms;
} DevMon;
typedef struct ril_devmon_ss_io {
struct ril_devmon_io pub;
struct ofono_cell_info *cell_info;
MceBattery *battery;
MceCharger *charger;
MceDisplay *display;
GRilIoChannel *io;
gboolean display_on;
gboolean screen_state_supported;
gulong battery_event_id[BATTERY_EVENT_COUNT];
gulong charger_event_id[CHARGER_EVENT_COUNT];
gulong display_event_id[DISPLAY_EVENT_COUNT];
guint req_id;
int cell_info_interval_short_ms;
int cell_info_interval_long_ms;
} DevMonIo;
inline static DevMon *ril_devmon_ss_cast(struct ril_devmon *pub)
{
return G_CAST(pub, DevMon, pub);
}
inline static DevMonIo *ril_devmon_ss_io_cast(struct ril_devmon_io *pub)
{
return G_CAST(pub, DevMonIo, pub);
}
static inline gboolean ril_devmon_ss_battery_ok(MceBattery *battery)
{
return battery->valid && battery->status >= MCE_BATTERY_OK;
}
static inline gboolean ril_devmon_ss_charging(MceCharger *charger)
{
return charger->valid && charger->state == MCE_CHARGER_ON;
}
static gboolean ril_devmon_ss_display_on(MceDisplay *display)
{
return display->valid && display->state != MCE_DISPLAY_STATE_OFF;
}
static void ril_devmon_ss_io_state_sent(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
DevMonIo *self = user_data;
self->req_id = 0;
if (status == RIL_E_REQUEST_NOT_SUPPORTED) {
/* This is a permanent failure */
DBG("RIL_REQUEST_SCREEN_STATE is not supported");
self->screen_state_supported = FALSE;
}
}
static void ril_devmon_ss_io_send_screen_state(DevMonIo *self)
{
/*
* RIL_REQUEST_SCREEN_STATE (deprecated on 2017-01-10)
*
* ((int *)data)[0] is == 1 for "Screen On"
* ((int *)data)[0] is == 0 for "Screen Off"
*/
if (self->screen_state_supported) {
GRilIoRequest *req = grilio_request_array_int32_new(1,
self->display_on);
grilio_channel_cancel_request(self->io, self->req_id, FALSE);
self->req_id = grilio_channel_send_request_full(self->io, req,
RIL_REQUEST_SCREEN_STATE, ril_devmon_ss_io_state_sent,
NULL, self);
grilio_request_unref(req);
}
}
static void ril_devmon_ss_io_set_cell_info_update_interval(DevMonIo *self)
{
ofono_cell_info_set_update_interval(self->cell_info,
(self->display_on && (ril_devmon_ss_charging(self->charger) ||
ril_devmon_ss_battery_ok(self->battery))) ?
self->cell_info_interval_short_ms :
self->cell_info_interval_long_ms);
}
static void ril_devmon_ss_io_battery_cb(MceBattery *battery, void *user_data)
{
ril_devmon_ss_io_set_cell_info_update_interval(user_data);
}
static void ril_devmon_ss_io_charger_cb(MceCharger *charger, void *user_data)
{
ril_devmon_ss_io_set_cell_info_update_interval(user_data);
}
static void ril_devmon_ss_io_display_cb(MceDisplay *display, void *user_data)
{
DevMonIo *self = user_data;
const gboolean display_on = ril_devmon_ss_display_on(display);
if (self->display_on != display_on) {
self->display_on = display_on;
ril_devmon_ss_io_send_screen_state(self);
ril_devmon_ss_io_set_cell_info_update_interval(self);
}
}
static void ril_devmon_ss_io_free(struct ril_devmon_io *devmon_io)
{
DevMonIo *self = ril_devmon_ss_io_cast(devmon_io);
mce_battery_remove_all_handlers(self->battery, self->battery_event_id);
mce_battery_unref(self->battery);
mce_charger_remove_all_handlers(self->charger, self->charger_event_id);
mce_charger_unref(self->charger);
mce_display_remove_all_handlers(self->display, self->display_event_id);
mce_display_unref(self->display);
grilio_channel_cancel_request(self->io, self->req_id, FALSE);
grilio_channel_unref(self->io);
ofono_cell_info_unref(self->cell_info);
g_free(self);
}
static struct ril_devmon_io *ril_devmon_ss_start_io(struct ril_devmon *devmon,
GRilIoChannel *io, struct ofono_cell_info *cell_info)
{
DevMon *ss = ril_devmon_ss_cast(devmon);
DevMonIo *self = g_new0(DevMonIo, 1);
self->pub.free = ril_devmon_ss_io_free;
self->screen_state_supported = TRUE;
self->io = grilio_channel_ref(io);
self->cell_info = ofono_cell_info_ref(cell_info);
self->battery = mce_battery_ref(ss->battery);
self->battery_event_id[BATTERY_EVENT_VALID] =
mce_battery_add_valid_changed_handler(self->battery,
ril_devmon_ss_io_battery_cb, self);
self->battery_event_id[BATTERY_EVENT_STATUS] =
mce_battery_add_status_changed_handler(self->battery,
ril_devmon_ss_io_battery_cb, self);
self->charger = mce_charger_ref(ss->charger);
self->charger_event_id[CHARGER_EVENT_VALID] =
mce_charger_add_valid_changed_handler(self->charger,
ril_devmon_ss_io_charger_cb, self);
self->charger_event_id[CHARGER_EVENT_STATE] =
mce_charger_add_state_changed_handler(self->charger,
ril_devmon_ss_io_charger_cb, self);
self->display = mce_display_ref(ss->display);
self->display_on = ril_devmon_ss_display_on(self->display);
self->display_event_id[DISPLAY_EVENT_VALID] =
mce_display_add_valid_changed_handler(self->display,
ril_devmon_ss_io_display_cb, self);
self->display_event_id[DISPLAY_EVENT_STATE] =
mce_display_add_state_changed_handler(self->display,
ril_devmon_ss_io_display_cb, self);
self->cell_info_interval_short_ms =
ss->cell_info_interval_short_ms;
self->cell_info_interval_long_ms =
ss->cell_info_interval_long_ms;
ril_devmon_ss_io_send_screen_state(self);
ril_devmon_ss_io_set_cell_info_update_interval(self);
return &self->pub;
}
static void ril_devmon_ss_free(struct ril_devmon *devmon)
{
DevMon *self = ril_devmon_ss_cast(devmon);
mce_battery_unref(self->battery);
mce_charger_unref(self->charger);
mce_display_unref(self->display);
g_free(self);
}
struct ril_devmon *ril_devmon_ss_new(const struct ril_slot_config *config)
{
DevMon *self = g_new0(DevMon, 1);
self->pub.free = ril_devmon_ss_free;
self->pub.start_io = ril_devmon_ss_start_io;
self->battery = mce_battery_new();
self->charger = mce_charger_new();
self->display = mce_display_new();
self->cell_info_interval_short_ms =
config->cell_info_interval_short_ms;
self->cell_info_interval_long_ms =
config->cell_info_interval_long_ms;
return &self->pub;
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,267 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2019-2021 Jolla Ltd.
* Copyright (C) 2020 Open Mobile Platform LLC
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_devmon.h"
#include <ofono/log.h>
#include <ofono/ril-constants.h>
#include <mce_battery.h>
#include <mce_charger.h>
#include <mce_display.h>
#include <grilio_channel.h>
#include <grilio_request.h>
#include <gutil_macros.h>
#define RIL_UR_ENABLE_ALL (RIL_UR_SIGNAL_STRENGTH | \
RIL_UR_FULL_NETWORK_STATE | \
RIL_UR_DATA_CALL_DORMANCY_CHANGED)
enum ril_devmon_ur_battery_event {
BATTERY_EVENT_VALID,
BATTERY_EVENT_STATUS,
BATTERY_EVENT_COUNT
};
enum ril_devmon_ur_charger_event {
CHARGER_EVENT_VALID,
CHARGER_EVENT_STATE,
CHARGER_EVENT_COUNT
};
enum ril_devmon_ur_display_event {
DISPLAY_EVENT_VALID,
DISPLAY_EVENT_STATE,
DISPLAY_EVENT_COUNT
};
typedef struct ril_devmon_ur {
struct ril_devmon pub;
MceBattery *battery;
MceCharger *charger;
MceDisplay *display;
int cell_info_interval_short_ms;
int cell_info_interval_long_ms;
} DevMon;
typedef struct ril_devmon_ur_io {
struct ril_devmon_io pub;
struct ofono_cell_info *cell_info;
MceBattery *battery;
MceCharger *charger;
MceDisplay *display;
GRilIoChannel *io;
gboolean display_on;
gboolean unsol_filter_supported;
gulong battery_event_id[BATTERY_EVENT_COUNT];
gulong charger_event_id[CHARGER_EVENT_COUNT];
gulong display_event_id[DISPLAY_EVENT_COUNT];
guint req_id;
int cell_info_interval_short_ms;
int cell_info_interval_long_ms;
} DevMonIo;
#define DBG_(self,fmt,args...) DBG("%s: " fmt, (self)->io->name, ##args)
inline static DevMon *ril_devmon_ur_cast(struct ril_devmon *pub)
{
return G_CAST(pub, DevMon, pub);
}
inline static DevMonIo *ril_devmon_ur_io_cast(struct ril_devmon_io *pub)
{
return G_CAST(pub, DevMonIo, pub);
}
static inline gboolean ril_devmon_ur_battery_ok(MceBattery *battery)
{
return battery->valid && battery->status >= MCE_BATTERY_OK;
}
static inline gboolean ril_devmon_ur_charging(MceCharger *charger)
{
return charger->valid && charger->state == MCE_CHARGER_ON;
}
static gboolean ril_devmon_ur_display_on(MceDisplay *display)
{
return display->valid && display->state != MCE_DISPLAY_STATE_OFF;
}
static void ril_devmon_ur_io_unsol_response_filter_sent(GRilIoChannel *io,
int status, const void *data, guint len,
void *user_data)
{
DevMonIo *self = user_data;
self->req_id = 0;
if (status == RIL_E_REQUEST_NOT_SUPPORTED) {
/* This is a permanent failure */
DBG_(self, "Unsolicited response filter is not supported");
self->unsol_filter_supported = FALSE;
}
}
static void ril_devmon_ur_io_set_unsol_response_filter(DevMonIo *self)
{
if (self->unsol_filter_supported) {
const gint32 value = self->display_on ? RIL_UR_ENABLE_ALL : 0;
GRilIoRequest *req = grilio_request_array_int32_new(1, value);
DBG_(self, "Setting unsolicited response filter: %u", value);
grilio_channel_cancel_request(self->io, self->req_id, FALSE);
self->req_id =
grilio_channel_send_request_full(self->io, req,
RIL_REQUEST_SET_UNSOLICITED_RESPONSE_FILTER,
ril_devmon_ur_io_unsol_response_filter_sent,
NULL, self);
grilio_request_unref(req);
}
}
static void ril_devmon_ur_io_set_cell_info_update_interval(DevMonIo *self)
{
ofono_cell_info_set_update_interval(self->cell_info,
(self->display_on && (ril_devmon_ur_charging(self->charger) ||
ril_devmon_ur_battery_ok(self->battery))) ?
self->cell_info_interval_short_ms :
self->cell_info_interval_long_ms);
}
static void ril_devmon_ur_io_battery_cb(MceBattery *battery, void *user_data)
{
ril_devmon_ur_io_set_cell_info_update_interval(user_data);
}
static void ril_devmon_ur_io_charger_cb(MceCharger *charger, void *user_data)
{
ril_devmon_ur_io_set_cell_info_update_interval(user_data);
}
static void ril_devmon_ur_io_display_cb(MceDisplay *display, void *user_data)
{
DevMonIo *self = user_data;
const gboolean display_on = ril_devmon_ur_display_on(display);
if (self->display_on != display_on) {
self->display_on = display_on;
ril_devmon_ur_io_set_unsol_response_filter(self);
ril_devmon_ur_io_set_cell_info_update_interval(self);
}
}
static void ril_devmon_ur_io_free(struct ril_devmon_io *devmon_io)
{
DevMonIo *self = ril_devmon_ur_io_cast(devmon_io);
mce_battery_remove_all_handlers(self->battery, self->battery_event_id);
mce_battery_unref(self->battery);
mce_charger_remove_all_handlers(self->charger, self->charger_event_id);
mce_charger_unref(self->charger);
mce_display_remove_all_handlers(self->display, self->display_event_id);
mce_display_unref(self->display);
grilio_channel_cancel_request(self->io, self->req_id, FALSE);
grilio_channel_unref(self->io);
ofono_cell_info_unref(self->cell_info);
g_free(self);
}
static struct ril_devmon_io *ril_devmon_ur_start_io(struct ril_devmon *devmon,
GRilIoChannel *io, struct ofono_cell_info *cell_info)
{
DevMon *ur = ril_devmon_ur_cast(devmon);
DevMonIo *self = g_new0(DevMonIo, 1);
self->pub.free = ril_devmon_ur_io_free;
self->unsol_filter_supported = TRUE;
self->io = grilio_channel_ref(io);
self->cell_info = ofono_cell_info_ref(cell_info);
self->battery = mce_battery_ref(ur->battery);
self->battery_event_id[BATTERY_EVENT_VALID] =
mce_battery_add_valid_changed_handler(self->battery,
ril_devmon_ur_io_battery_cb, self);
self->battery_event_id[BATTERY_EVENT_STATUS] =
mce_battery_add_status_changed_handler(self->battery,
ril_devmon_ur_io_battery_cb, self);
self->charger = mce_charger_ref(ur->charger);
self->charger_event_id[CHARGER_EVENT_VALID] =
mce_charger_add_valid_changed_handler(self->charger,
ril_devmon_ur_io_charger_cb, self);
self->charger_event_id[CHARGER_EVENT_STATE] =
mce_charger_add_state_changed_handler(self->charger,
ril_devmon_ur_io_charger_cb, self);
self->display = mce_display_ref(ur->display);
self->display_on = ril_devmon_ur_display_on(self->display);
self->display_event_id[DISPLAY_EVENT_VALID] =
mce_display_add_valid_changed_handler(self->display,
ril_devmon_ur_io_display_cb, self);
self->display_event_id[DISPLAY_EVENT_STATE] =
mce_display_add_state_changed_handler(self->display,
ril_devmon_ur_io_display_cb, self);
self->cell_info_interval_short_ms =
ur->cell_info_interval_short_ms;
self->cell_info_interval_long_ms =
ur->cell_info_interval_long_ms;
ril_devmon_ur_io_set_unsol_response_filter(self);
ril_devmon_ur_io_set_cell_info_update_interval(self);
return &self->pub;
}
static void ril_devmon_ur_free(struct ril_devmon *devmon)
{
DevMon *self = ril_devmon_ur_cast(devmon);
mce_battery_unref(self->battery);
mce_charger_unref(self->charger);
mce_display_unref(self->display);
g_free(self);
}
struct ril_devmon *ril_devmon_ur_new(const struct ril_slot_config *config)
{
DevMon *self = g_new0(DevMon, 1);
self->pub.free = ril_devmon_ur_free;
self->pub.start_io = ril_devmon_ur_start_io;
self->battery = mce_battery_new();
self->charger = mce_charger_new();
self->display = mce_display_new();
self->cell_info_interval_short_ms =
config->cell_info_interval_short_ms;
self->cell_info_interval_long_ms =
config->cell_info_interval_long_ms;
return &self->pub;
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,301 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2016-2020 Jolla Ltd.
* Copyright (C) 2019 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#define GLIB_DISABLE_DEPRECATION_WARNINGS
#include "ril_ecclist.h"
#include "ril_log.h"
#include <gutil_strv.h>
#include <gutil_inotify.h>
#include <sys/inotify.h>
typedef GObjectClass RilEccListClass;
typedef struct ril_ecclist RilEccList;
struct ril_ecclist_priv {
struct ofono_sim *sim;
GUtilInotifyWatchCallback *dir_watch;
GUtilInotifyWatchCallback *file_watch;
char *dir;
char *path;
char *name;
};
enum ril_ecclist_signal {
SIGNAL_LIST_CHANGED,
SIGNAL_COUNT
};
#define SIGNAL_LIST_CHANGED_NAME "ril-ecclist-changed"
static guint ril_ecclist_signals[SIGNAL_COUNT] = { 0 };
G_DEFINE_TYPE(RilEccList, ril_ecclist, G_TYPE_OBJECT)
#define RIL_ECCLIST_TYPE (ril_ecclist_get_type())
#define RIL_ECCLIST(obj) (G_TYPE_CHECK_INSTANCE_CAST((obj),\
RIL_ECCLIST_TYPE, RilEccList))
static char **ril_ecclist_parse(const char *content)
{
char **ptr;
char **list = NULL;
guint i;
/*
* Some MediaTek devices use ECC,CAT;ECC,CAT kind of syntax
*/
if (strchr(content, ';')) {
list = g_strsplit(content, ";", 0);
for (ptr = list; *ptr; ptr++) {
char* comma;
*ptr = g_strstrip(*ptr);
/* Strip service category */
comma = strchr(*ptr, ',');
if (comma) {
*comma = 0;
}
}
} else {
/* The right ECC,ECC syntax is handled here */
list = g_strsplit(content, ",", 0);
for (ptr = list; *ptr; ptr++) {
*ptr = g_strstrip(*ptr);
}
}
/* Sort the list */
gutil_strv_sort(list, TRUE);
/* Remove empty strings (those are at the beginning after sorting) */
while (list[0] && !list[0][0]) {
list = gutil_strv_remove_at(list, 0, TRUE);
}
/* Remove duplicates */
for (i = 0; list[i] && list[i+1]; i++) {
while (list[i+1] && !strcmp(list[i], list[i+1])) {
list = gutil_strv_remove_at(list, i+1, TRUE);
}
}
return list;
}
static char **ril_ecclist_read(struct ril_ecclist *self)
{
struct ril_ecclist_priv *priv = self->priv;
char **list = NULL;
if (g_file_test(priv->path, G_FILE_TEST_EXISTS)) {
gsize len = 0;
gchar *content = NULL;
GError *error = NULL;
if (g_file_get_contents(priv->path, &content, &len, &error)) {
DBG("%s = %s", priv->name, content);
list = ril_ecclist_parse(content);
} else {
DBG("%s: %s", priv->path, GERRMSG(error));
g_error_free(error);
}
g_free (content);
} else {
DBG("%s doesn't exist", priv->path);
}
return list;
}
static void ril_ecclist_update(struct ril_ecclist *self)
{
struct ril_ecclist_priv *priv = self->priv;
char **list = ril_ecclist_read(self);
if (!gutil_strv_equal(self->list, list)) {
DBG("%s changed", priv->name);
g_strfreev(self->list);
self->list = list;
g_signal_emit(self, ril_ecclist_signals
[SIGNAL_LIST_CHANGED], 0);
} else {
g_strfreev(list);
}
}
static void ril_ecclist_changed(GUtilInotifyWatch *watch, guint mask,
guint cookie, const char *name, void *user_data)
{
struct ril_ecclist *self = RIL_ECCLIST(user_data);
struct ril_ecclist_priv *priv = self->priv;
ril_ecclist_update(self);
if (mask & IN_IGNORED) {
DBG("file %s is gone", priv->path);
gutil_inotify_watch_callback_free(priv->file_watch);
priv->file_watch = NULL;
}
}
static void ril_ecclist_dir_changed(GUtilInotifyWatch *watch, guint mask,
guint cookie, const char *name, void *user_data)
{
struct ril_ecclist *self = RIL_ECCLIST(user_data);
struct ril_ecclist_priv *priv = self->priv;
DBG("0x%04x %s", mask, name);
if (!priv->file_watch && !g_strcmp0(name, priv->name)) {
priv->file_watch = gutil_inotify_watch_callback_new(priv->path,
IN_MODIFY | IN_CLOSE_WRITE,
ril_ecclist_changed, self);
DBG("%swatching %s", priv->file_watch ? "" : "not ",
priv->path);
ril_ecclist_update(self);
}
if (mask & IN_IGNORED) {
DBG("%s is gone", priv->dir);
gutil_inotify_watch_callback_free(priv->dir_watch);
priv->dir_watch = NULL;
}
}
gulong ril_ecclist_add_list_changed_handler(struct ril_ecclist *self,
ril_ecclist_cb_t cb, void *arg)
{
return (G_LIKELY(self) && G_LIKELY(cb)) ? g_signal_connect(self,
SIGNAL_LIST_CHANGED_NAME, G_CALLBACK(cb), arg) : 0;
}
void ril_ecclist_remove_handler(struct ril_ecclist *self, gulong id)
{
if (G_LIKELY(self) && G_LIKELY(id)) {
g_signal_handler_disconnect(self, id);
}
}
struct ril_ecclist *ril_ecclist_new(const char *path)
{
if (path) {
struct ril_ecclist *self = g_object_new(RIL_ECCLIST_TYPE, 0);
struct ril_ecclist_priv *priv = self->priv;
DBG("%s", path);
priv->path = g_strdup(path);
priv->name = g_path_get_basename(path);
priv->dir = g_path_get_dirname(path);
priv->dir_watch = gutil_inotify_watch_callback_new(priv->dir,
IN_MODIFY|IN_MOVED_FROM|IN_MOVED_TO|IN_DELETE|
IN_CREATE|IN_DELETE_SELF|IN_CLOSE_WRITE,
ril_ecclist_dir_changed, self);
if (priv->dir_watch) {
DBG("watching %s", priv->dir);
}
self->list = ril_ecclist_read(self);
priv->file_watch = gutil_inotify_watch_callback_new(priv->path,
IN_MODIFY | IN_CLOSE_WRITE,
ril_ecclist_changed, self);
if (priv->file_watch) {
DBG("watching %s", priv->path);
}
return self;
}
return NULL;
}
struct ril_ecclist *ril_ecclist_ref(struct ril_ecclist *self)
{
if (G_LIKELY(self)) {
g_object_ref(RIL_ECCLIST(self));
return self;
} else {
return NULL;
}
}
void ril_ecclist_unref(struct ril_ecclist *self)
{
if (G_LIKELY(self)) {
g_object_unref(RIL_ECCLIST(self));
}
}
static void ril_ecclist_init(struct ril_ecclist *self)
{
self->priv = G_TYPE_INSTANCE_GET_PRIVATE(self, RIL_ECCLIST_TYPE,
struct ril_ecclist_priv);
}
static void ril_ecclist_dispose(GObject *object)
{
struct ril_ecclist *self = RIL_ECCLIST(object);
struct ril_ecclist_priv *priv = self->priv;
if (priv->dir_watch) {
gutil_inotify_watch_callback_free(priv->dir_watch);
priv->dir_watch = NULL;
}
if (priv->file_watch) {
gutil_inotify_watch_callback_free(priv->file_watch);
priv->file_watch = NULL;
}
G_OBJECT_CLASS(ril_ecclist_parent_class)->dispose(object);
}
static void ril_ecclist_finalize(GObject *object)
{
struct ril_ecclist *self = RIL_ECCLIST(object);
struct ril_ecclist_priv *priv = self->priv;
GASSERT(!priv->dir_watch);
GASSERT(!priv->file_watch);
g_free(priv->dir);
g_free(priv->path);
g_free(priv->name);
g_strfreev(self->list);
G_OBJECT_CLASS(ril_ecclist_parent_class)->finalize(object);
}
static void ril_ecclist_class_init(RilEccListClass *klass)
{
GObjectClass *object_class = G_OBJECT_CLASS(klass);
object_class->dispose = ril_ecclist_dispose;
object_class->finalize = ril_ecclist_finalize;
g_type_class_add_private(klass, sizeof(struct ril_ecclist_priv));
ril_ecclist_signals[SIGNAL_LIST_CHANGED] =
g_signal_new(SIGNAL_LIST_CHANGED_NAME,
G_OBJECT_CLASS_TYPE(klass), G_SIGNAL_RUN_FIRST,
0, NULL, NULL, NULL, G_TYPE_NONE, 0);
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,48 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2016-2018 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_ECCLIST_H
#define RIL_ECCLIST_H
#include "ril_types.h"
#include <glib-object.h>
struct ril_ecclist_priv;
struct ril_ecclist {
GObject object;
struct ril_ecclist_priv *priv;
char **list;
};
typedef void (*ril_ecclist_cb_t)(struct ril_ecclist *ecc, void *arg);
struct ril_ecclist *ril_ecclist_new(const char *path);
struct ril_ecclist *ril_ecclist_ref(struct ril_ecclist *ecc);
void ril_ecclist_unref(struct ril_ecclist *ecc);
gulong ril_ecclist_add_list_changed_handler(struct ril_ecclist *ecc,
ril_ecclist_cb_t cb, void *arg);
void ril_ecclist_remove_handler(struct ril_ecclist *ecc, gulong id);
#endif /* RIL_ECCLIST_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,282 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_plugin.h"
#include "ril_network.h"
#include "ril_netreg.h"
#include "ril_data.h"
#include "ril_util.h"
#include "ril_log.h"
#include <ofono/misc.h>
/*
* This module is the ofono_gprs_driver implementation for rilmodem.
*
* Notes:
*
* 1. ofono_gprs_suspend/resume() are not used by this module, as
* the concept of suspended GPRS is not exposed by RILD.
*
* 2. ofono_gprs_bearer_notify() is never called as RILD does not
* expose an unsolicited event equivalent to +CPSB ( see 27.007
* 7.29 ), and the tech values returned by REQUEST_DATA/VOICE
* _REGISTRATION requests do not match the values defined for
* <AcT> in the +CPSB definition. Note, the values returned by
* the *REGISTRATION commands are aligned with those defined by
* +CREG ( see 27.003 7.2 ).
*/
struct ril_gprs {
struct ofono_gprs *gprs;
struct ril_modem *md;
struct ril_data *data;
struct ril_network *network;
GRilIoChannel *io;
GRilIoQueue *q;
gboolean attached;
int max_cids;
enum ofono_netreg_status registration_status;
guint register_id;
gulong network_event_id;
gulong data_event_id;
guint set_attached_id;
};
struct ril_gprs_cbd {
struct ril_gprs *gd;
ofono_gprs_cb_t cb;
gpointer data;
};
#define ril_gprs_cbd_free g_free
static struct ril_gprs *ril_gprs_get_data(struct ofono_gprs *ofono)
{
return ofono ? ofono_gprs_get_data(ofono) : NULL;
}
static struct ril_gprs_cbd *ril_gprs_cbd_new(struct ril_gprs *gd,
ofono_gprs_cb_t cb, void *data)
{
struct ril_gprs_cbd *cbd = g_new0(struct ril_gprs_cbd, 1);
cbd->gd = gd;
cbd->cb = cb;
cbd->data = data;
return cbd;
}
static enum ofono_netreg_status ril_gprs_fix_registration_status(
struct ril_gprs *gd, enum ofono_netreg_status status)
{
if (!ril_data_allowed(gd->data)) {
return OFONO_NETREG_STATUS_NOT_REGISTERED;
} else {
/* TODO: need a way to make sure that SPDI information has
* already been read from the SIM (i.e. sim_spdi_read_cb in
* network.c has been called) */
struct ofono_netreg *netreg = ril_modem_ofono_netreg(gd->md);
return ril_netreg_check_if_really_roaming(netreg, status);
}
}
static void ril_gprs_data_update_registration_state(struct ril_gprs *gd)
{
const enum ofono_netreg_status status =
ril_gprs_fix_registration_status(gd, gd->network->data.status);
if (gd->registration_status != status) {
ofono_info("data reg changed %d -> %d (%s), attached %d",
gd->registration_status, status,
ofono_netreg_status_to_string(status),
gd->attached);
gd->registration_status = status;
ofono_gprs_status_notify(gd->gprs, gd->registration_status);
}
}
static void ril_gprs_check_data_allowed(struct ril_gprs *gd)
{
DBG("%s %d %d", ril_modem_get_path(gd->md), ril_data_allowed(gd->data),
gd->attached);
if (!ril_data_allowed(gd->data) && gd->attached) {
gd->attached = FALSE;
if (gd->gprs) {
ofono_gprs_detached_notify(gd->gprs);
}
}
ril_gprs_data_update_registration_state(gd);
}
static gboolean ril_gprs_set_attached_cb(gpointer user_data)
{
struct ofono_error error;
struct ril_gprs_cbd *cbd = user_data;
struct ril_gprs *gd = cbd->gd;
GASSERT(gd->set_attached_id);
gd->set_attached_id = 0;
ril_gprs_check_data_allowed(gd);
cbd->cb(ril_error_ok(&error), cbd->data);
return FALSE;
}
static void ril_gprs_set_attached(struct ofono_gprs *gprs, int attached,
ofono_gprs_cb_t cb, void *data)
{
struct ril_gprs *gd = ril_gprs_get_data(gprs);
if (ril_data_allowed(gd->data) || !attached) {
DBG("%s attached: %d", ril_modem_get_path(gd->md), attached);
if (gd->set_attached_id) {
g_source_remove(gd->set_attached_id);
}
gd->attached = attached;
gd->set_attached_id = g_idle_add_full(G_PRIORITY_DEFAULT_IDLE,
ril_gprs_set_attached_cb,
ril_gprs_cbd_new(gd, cb, data),
ril_gprs_cbd_free);
} else {
struct ofono_error error;
DBG("%s not allowed to attach", ril_modem_get_path(gd->md));
cb(ril_error_failure(&error), data);
}
}
static void ril_gprs_allow_data_changed(struct ril_data *data, void *user_data)
{
struct ril_gprs *gd = user_data;
GASSERT(gd->data == data);
DBG("%s %d", ril_modem_get_path(gd->md), ril_data_allowed(data));
if (!gd->set_attached_id) {
ril_gprs_check_data_allowed(gd);
}
}
static void ril_gprs_data_registration_state_changed(struct ril_network *net,
void *user_data)
{
struct ril_gprs *gd = user_data;
const struct ril_registration_state *data = &net->data;
GASSERT(gd->network == net);
if (data->max_calls > gd->max_cids) {
DBG("Setting max cids to %d", data->max_calls);
gd->max_cids = data->max_calls;
ofono_gprs_set_cid_range(gd->gprs, 1, gd->max_cids);
}
ril_gprs_data_update_registration_state(gd);
}
static void ril_gprs_registration_status(struct ofono_gprs *gprs,
ofono_gprs_status_cb_t cb, void *data)
{
struct ril_gprs *gd = ril_gprs_get_data(gprs);
struct ofono_error error;
const enum ofono_netreg_status status = gd->attached ?
gd->registration_status : OFONO_NETREG_STATUS_NOT_REGISTERED;
DBG("%d (%s)", status, ofono_netreg_status_to_string(status));
cb(ril_error_ok(&error), status, data);
}
static gboolean ril_gprs_register(gpointer user_data)
{
struct ril_gprs *gd = user_data;
gd->register_id = 0;
gd->network_event_id = ril_network_add_data_state_changed_handler(
gd->network, ril_gprs_data_registration_state_changed, gd);
gd->data_event_id = ril_data_add_allow_changed_handler(gd->data,
ril_gprs_allow_data_changed, gd);
gd->registration_status = ril_gprs_fix_registration_status(gd,
gd->network->data.status);
gd->max_cids = gd->network->data.max_calls;
if (gd->max_cids > 0) {
DBG("Setting max cids to %d", gd->max_cids);
ofono_gprs_set_cid_range(gd->gprs, 1, gd->max_cids);
}
ofono_gprs_register(gd->gprs);
return FALSE;
}
static int ril_gprs_probe(struct ofono_gprs *gprs, unsigned int vendor,
void *data)
{
struct ril_modem *modem = data;
struct ril_gprs *gd = g_new0(struct ril_gprs, 1);
DBG("%s", ril_modem_get_path(modem));
gd->md = modem;
gd->io = grilio_channel_ref(ril_modem_io(modem));
gd->q = grilio_queue_new(gd->io);
gd->data = ril_data_ref(modem->data);
gd->network = ril_network_ref(modem->network);
gd->gprs = gprs;
ofono_gprs_set_data(gprs, gd);
/* ofono crashes if we register right away */
gd->register_id = g_idle_add(ril_gprs_register, gd);
return 0;
}
static void ril_gprs_remove(struct ofono_gprs *gprs)
{
struct ril_gprs *gd = ril_gprs_get_data(gprs);
DBG("%s", ril_modem_get_path(gd->md));
ofono_gprs_set_data(gprs, NULL);
if (gd->set_attached_id) {
g_source_remove(gd->set_attached_id);
}
if (gd->register_id) {
g_source_remove(gd->register_id);
}
ril_network_remove_handler(gd->network, gd->network_event_id);
ril_network_unref(gd->network);
ril_data_remove_handler(gd->data, gd->data_event_id);
ril_data_unref(gd->data);
grilio_channel_unref(gd->io);
grilio_queue_cancel_all(gd->q, FALSE);
grilio_queue_unref(gd->q);
g_free(gd);
}
const struct ofono_gprs_driver ril_gprs_driver = {
.name = RILMODEM_DRIVER,
.probe = ril_gprs_probe,
.remove = ril_gprs_remove,
.set_attached = ril_gprs_set_attached,
.attached_status = ril_gprs_registration_status,
};
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

View File

@@ -1,645 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_plugin.h"
#include "ril_network.h"
#include "ril_netreg.h"
#include "ril_data.h"
#include "ril_util.h"
#include "ril_log.h"
#include <ofono/mtu-limit.h>
#include <gutil_strv.h>
#include <arpa/inet.h>
#define CTX_ID_NONE ((unsigned int)(-1))
#define MAX_MMS_MTU 1280
struct ril_gprs_context_call {
struct ril_data_request *req;
ofono_gprs_context_cb_t cb;
gpointer data;
};
struct ril_gprs_context {
struct ofono_gprs_context *gc;
struct ril_modem *modem;
struct ril_network *network;
struct ril_data *data;
guint active_ctx_cid;
gulong calls_changed_id;
struct ofono_mtu_limit *mtu_limit;
struct ril_data_call *active_call;
struct ril_gprs_context_call activate;
struct ril_gprs_context_call deactivate;
};
static inline struct ril_gprs_context *ril_gprs_context_get_data(
struct ofono_gprs_context *gprs)
{
return ofono_gprs_context_get_data(gprs);
}
static char *ril_gprs_context_netmask(const char *bits)
{
if (bits) {
int nbits = atoi(bits);
if (nbits > 0 && nbits < 33) {
const char* str;
struct in_addr in;
in.s_addr = htonl((nbits == 32) ? 0xffffffff :
((1u << nbits)-1) << (32-nbits));
str = inet_ntoa(in);
if (str) {
return g_strdup(str);
}
}
}
return NULL;
}
static int ril_gprs_context_address_family(const char *addr)
{
if (strchr(addr, ':')) {
return AF_INET6;
} else if (strchr(addr, '.')) {
return AF_INET;
} else {
return AF_UNSPEC;
}
}
static void ril_gprs_context_free_active_call(struct ril_gprs_context *gcd)
{
if (gcd->active_call) {
ril_data_call_release(gcd->data, gcd->active_call->cid, gcd);
ril_data_call_free(gcd->active_call);
gcd->active_call = NULL;
}
if (gcd->calls_changed_id) {
ril_data_remove_handler(gcd->data, gcd->calls_changed_id);
gcd->calls_changed_id = 0;
}
if (gcd->mtu_limit) {
ofono_mtu_limit_free(gcd->mtu_limit);
gcd->mtu_limit = NULL;
}
}
static void ril_gprs_context_set_active_call(struct ril_gprs_context *gcd,
const struct ril_data_call *call)
{
if (call) {
ril_data_call_free(gcd->active_call);
gcd->active_call = ril_data_call_dup(call);
if (ofono_gprs_context_get_type(gcd->gc) ==
OFONO_GPRS_CONTEXT_TYPE_MMS) {
/*
* Some MMS providers have a problem with MTU
* greater than 1280. Let's be safe.
*/
if (!gcd->mtu_limit) {
gcd->mtu_limit =
ofono_mtu_limit_new(MAX_MMS_MTU);
}
}
ofono_mtu_limit_set_ifname(gcd->mtu_limit, call->ifname);
ril_data_call_grab(gcd->data, call->cid, gcd);
} else {
ril_gprs_context_free_active_call(gcd);
}
}
static void ril_gprs_context_set_disconnected(struct ril_gprs_context *gcd)
{
if (gcd->active_call) {
ril_gprs_context_free_active_call(gcd);
if (gcd->deactivate.req) {
struct ril_gprs_context_call deact = gcd->deactivate;
/*
* Complete the deactivate request. We need to
* clear gcd->deactivate first because cancelling
* the deactivation request will probably result
* in ril_gprs_context_deactivate_primary_cb() being
* invoked with GRILIO_CANCELLED status. And we don't
* want to fail the disconnect request because this
* is a success (we wanted to disconnect the data
* call and it's gone).
*
* Additionally, we need to make sure that we don't
* complete the same request twice - that would crash
* the core.
*/
memset(&gcd->deactivate, 0, sizeof(gcd->deactivate));
ril_data_request_cancel(deact.req);
if (deact.cb) {
struct ofono_error error;
ofono_info("Deactivated data call");
deact.cb(ril_error_ok(&error), deact.data);
}
}
}
if (gcd->active_ctx_cid != CTX_ID_NONE) {
guint id = gcd->active_ctx_cid;
gcd->active_ctx_cid = CTX_ID_NONE;
DBG("ofono context %u deactivated", id);
ofono_gprs_context_deactivated(gcd->gc, id);
}
}
static void ril_gprs_context_set_address(struct ofono_gprs_context *gc,
const struct ril_data_call *call)
{
const char *ip_addr = NULL;
char *ip_mask = NULL;
const char *ipv6_addr = NULL;
unsigned char ipv6_prefix_length = 0;
char *tmp_ip_addr = NULL;
char *tmp_ipv6_addr = NULL;
char * const *list = call->addresses;
const int n = gutil_strv_length(list);
int i;
for (i = 0; i < n && (!ipv6_addr || !ip_addr); i++) {
const char *addr = list[i];
switch (ril_gprs_context_address_family(addr)) {
case AF_INET:
if (!ip_addr) {
const char* s = strstr(addr, "/");
if (s) {
const gsize len = s - addr;
tmp_ip_addr = g_strndup(addr, len);
ip_addr = tmp_ip_addr;
ip_mask = ril_gprs_context_netmask(s+1);
} else {
ip_addr = addr;
}
if (!ip_mask) {
ip_mask = g_strdup("255.255.255.0");
}
}
break;
case AF_INET6:
if (!ipv6_addr) {
const char* s = strstr(addr, "/");
if (s) {
const gsize len = s - addr;
const int prefix = atoi(s + 1);
tmp_ipv6_addr = g_strndup(addr, len);
ipv6_addr = tmp_ipv6_addr;
if (prefix >= 0 && prefix <= 128) {
ipv6_prefix_length = prefix;
}
} else {
ipv6_addr = addr;
}
}
}
}
ofono_gprs_context_set_ipv4_address(gc, ip_addr, TRUE);
ofono_gprs_context_set_ipv4_netmask(gc, ip_mask);
ofono_gprs_context_set_ipv6_address(gc, ipv6_addr);
ofono_gprs_context_set_ipv6_prefix_length(gc, ipv6_prefix_length);
if (!ip_addr && !ipv6_addr) {
ofono_error("GPRS context: No IP address");
}
/* Allocate temporary strings */
g_free(ip_mask);
g_free(tmp_ip_addr);
g_free(tmp_ipv6_addr);
}
static void ril_gprs_context_set_gateway(struct ofono_gprs_context *gc,
const struct ril_data_call *call)
{
const char *ip_gw = NULL;
const char *ipv6_gw = NULL;
char * const *list = call->gateways;
const int n = gutil_strv_length(list);
int i;
/* Pick 1 gw for each protocol*/
for (i = 0; i < n && (!ipv6_gw || !ip_gw); i++) {
const char *addr = list[i];
switch (ril_gprs_context_address_family(addr)) {
case AF_INET:
if (!ip_gw) ip_gw = addr;
break;
case AF_INET6:
if (!ipv6_gw) ipv6_gw = addr;
break;
}
}
ofono_gprs_context_set_ipv4_gateway(gc, ip_gw);
ofono_gprs_context_set_ipv6_gateway(gc, ipv6_gw);
}
typedef void (*ofono_gprs_context_list_setter_t)(struct ofono_gprs_context *gc,
const char **list);
static void ril_gprs_context_set_servers(struct ofono_gprs_context *gc,
char * const *list, ofono_gprs_context_list_setter_t set_ipv4,
ofono_gprs_context_list_setter_t set_ipv6)
{
int i;
const char **ip_list = NULL, **ip_ptr = NULL;
const char **ipv6_list = NULL, **ipv6_ptr = NULL;
const int n = gutil_strv_length(list);
for (i = 0; i < n; i++) {
const char *addr = list[i];
switch (ril_gprs_context_address_family(addr)) {
case AF_INET:
if (!ip_ptr) {
ip_list = g_new0(const char *, n - i + 1);
ip_ptr = ip_list;
}
*ip_ptr++ = addr;
break;
case AF_INET6:
if (!ipv6_ptr) {
ipv6_list = g_new0(const char *, n - i + 1);
ipv6_ptr = ipv6_list;
}
*ipv6_ptr++ = addr;
break;
}
}
set_ipv4(gc, ip_list);
set_ipv6(gc, ipv6_list);
g_free(ip_list);
g_free(ipv6_list);
}
static void ril_gprs_context_set_dns_servers(struct ofono_gprs_context *gc,
const struct ril_data_call *call)
{
ril_gprs_context_set_servers(gc, call->dnses,
ofono_gprs_context_set_ipv4_dns_servers,
ofono_gprs_context_set_ipv6_dns_servers);
}
static void ril_gprs_context_set_proxy_cscf(struct ofono_gprs_context *gc,
const struct ril_data_call *call)
{
ril_gprs_context_set_servers(gc, call->pcscf,
ofono_gprs_context_set_ipv4_proxy_cscf,
ofono_gprs_context_set_ipv6_proxy_cscf);
}
/* Only compares the stuff that's important to us */
#define DATA_CALL_IFNAME_CHANGED (0x01)
#define DATA_CALL_ADDRESS_CHANGED (0x02)
#define DATA_CALL_GATEWAY_CHANGED (0x04)
#define DATA_CALL_DNS_CHANGED (0x08)
#define DATA_CALL_PCSCF_CHANGED (0x10)
#define DATA_CALL_ALL_CHANGED (0x1f)
static int ril_gprs_context_data_call_change(
const struct ril_data_call *c1,
const struct ril_data_call *c2)
{
if (!c1 && !c2) {
return 0;
} else if (c1 && c2) {
int changes = 0;
if (g_strcmp0(c1->ifname, c2->ifname)) {
changes |= DATA_CALL_IFNAME_CHANGED;
}
if (!gutil_strv_equal(c1->addresses, c2->addresses)) {
changes |= DATA_CALL_ADDRESS_CHANGED;
}
if (!gutil_strv_equal(c1->gateways, c2->gateways)) {
changes |= DATA_CALL_GATEWAY_CHANGED;
}
if (!gutil_strv_equal(c1->dnses, c2->dnses)) {
changes |= DATA_CALL_DNS_CHANGED;
}
if (!gutil_strv_equal(c1->pcscf, c2->pcscf)) {
changes |= DATA_CALL_PCSCF_CHANGED;
}
return changes;
} else {
return DATA_CALL_ALL_CHANGED;
}
}
static void ril_gprs_context_call_list_changed(struct ril_data *data, void *arg)
{
struct ril_gprs_context *gcd = arg;
struct ofono_gprs_context *gc = gcd->gc;
/*
* gcd->active_call can't be NULL here because this callback
* is only registered when we have the active call and released
* when active call is dropped.
*/
struct ril_data_call *prev_call = gcd->active_call;
const struct ril_data_call *call =
ril_data_call_find(data->data_calls, prev_call->cid);
int change = 0;
if (call && call->active != RIL_DATA_CALL_INACTIVE) {
/* Compare it against the last known state */
change = ril_gprs_context_data_call_change(call, prev_call);
} else {
ofono_error("Clearing active context");
ril_gprs_context_set_disconnected(gcd);
call = NULL;
}
if (!call) {
/* We are not interested */
return;
} else if (!change) {
DBG("call %u didn't change", call->cid);
return;
} else {
DBG("call %u changed", call->cid);
}
/*
* prev_call points to the previous active call, and it will
* be deallocated at the end of the this function. Clear the
* gcd->active_call pointer so that we don't deallocate it twice.
*/
gcd->active_call = NULL;
ril_gprs_context_set_active_call(gcd, call);
if (call->status != PDP_FAIL_NONE) {
ofono_info("data call status: %d", call->status);
}
if (change & DATA_CALL_IFNAME_CHANGED) {
DBG("interface changed");
ofono_gprs_context_set_interface(gc, call->ifname);
}
if (change & DATA_CALL_ADDRESS_CHANGED) {
DBG("address changed");
ril_gprs_context_set_address(gc, call);
}
if (change & DATA_CALL_GATEWAY_CHANGED) {
DBG("gateway changed");
ril_gprs_context_set_gateway(gc, call);
}
if (change & DATA_CALL_DNS_CHANGED) {
DBG("name server(s) changed");
ril_gprs_context_set_dns_servers(gc, call);
}
if (change & DATA_CALL_PCSCF_CHANGED) {
DBG("P-CSCF changed");
ril_gprs_context_set_proxy_cscf(gc, call);
}
ofono_gprs_context_signal_change(gc, gcd->active_ctx_cid);
ril_data_call_free(prev_call);
}
static void ril_gprs_context_activate_primary_cb(struct ril_data *data,
int ril_status, const struct ril_data_call *call,
void *user_data)
{
struct ril_gprs_context *gcd = user_data;
struct ofono_gprs_context *gc = gcd->gc;
struct ofono_error error;
ofono_gprs_context_cb_t cb;
gpointer cb_data;
ril_error_init_failure(&error);
if (ril_status != RIL_E_SUCCESS) {
ofono_error("GPRS context: Reply failure: %s",
ril_error_to_string(ril_status));
} else if (!call) {
ofono_error("Unexpected data call failure");
} else if (call->status != PDP_FAIL_NONE) {
ofono_error("Unexpected data call status %d", call->status);
error.type = OFONO_ERROR_TYPE_CMS;
error.error = call->status;
} else if (!call->ifname) {
/* Must have interface */
ofono_error("GPRS context: No interface");
} else {
ofono_info("setting up data call");
GASSERT(!gcd->calls_changed_id);
ril_data_remove_handler(gcd->data, gcd->calls_changed_id);
gcd->calls_changed_id =
ril_data_add_calls_changed_handler(gcd->data,
ril_gprs_context_call_list_changed, gcd);
ril_gprs_context_set_active_call(gcd, call);
ofono_gprs_context_set_interface(gc, call->ifname);
ril_gprs_context_set_address(gc, call);
ril_gprs_context_set_gateway(gc, call);
ril_gprs_context_set_dns_servers(gc, call);
ril_gprs_context_set_proxy_cscf(gc, call);
ril_error_init_ok(&error);
}
if (error.type != OFONO_ERROR_TYPE_NO_ERROR) {
gcd->active_ctx_cid = CTX_ID_NONE;
}
cb = gcd->activate.cb;
cb_data = gcd->activate.data;
GASSERT(gcd->activate.req);
memset(&gcd->activate, 0, sizeof(gcd->activate));
if (cb) {
cb(&error, cb_data);
}
}
static void ril_gprs_context_activate_primary(struct ofono_gprs_context *gc,
const struct ofono_gprs_primary_context *ctx,
ofono_gprs_context_cb_t cb, void *data)
{
struct ril_gprs_context *gcd = ril_gprs_context_get_data(gc);
struct ofono_netreg *netreg = ril_modem_ofono_netreg(gcd->modem);
const enum ofono_netreg_status rs = ofono_netreg_get_status(netreg);
/* Let's make sure that we aren't connecting when roaming not allowed */
if (rs == OFONO_NETREG_STATUS_ROAMING) {
struct ofono_gprs *gprs = ril_modem_ofono_gprs(gcd->modem);
if (!ofono_gprs_get_roaming_allowed(gprs) &&
ril_netreg_check_if_really_roaming(netreg, rs) ==
OFONO_NETREG_STATUS_ROAMING) {
struct ofono_error error;
ofono_info("Can't activate context %u (roaming)",
ctx->cid);
cb(ril_error_failure(&error), data);
return;
}
}
ofono_info("Activating context: %u", ctx->cid);
GASSERT(!gcd->activate.req);
GASSERT(ctx->cid != CTX_ID_NONE);
gcd->active_ctx_cid = ctx->cid;
gcd->activate.cb = cb;
gcd->activate.data = data;
gcd->activate.req = ril_data_call_setup(gcd->data, ctx,
ofono_gprs_context_get_assigned_type(gc),
ril_gprs_context_activate_primary_cb, gcd);
}
static void ril_gprs_context_deactivate_primary_cb(struct ril_data *data,
int ril_status, void *user_data)
{
struct ril_gprs_context *gcd = user_data;
/*
* Data call list may change before the completion of the deactivate
* request, in that case ril_gprs_context_set_disconnected will be
* invoked and gcd->deactivate.req will be NULL.
*/
if (gcd->deactivate.req) {
ofono_gprs_context_cb_t cb = gcd->deactivate.cb;
gpointer cb_data = gcd->deactivate.data;
if (ril_status == RIL_E_SUCCESS) {
GASSERT(gcd->active_call);
ofono_info("Deactivated data call");
} else {
ofono_error("Deactivate failure: %s",
ril_error_to_string(ril_status));
}
memset(&gcd->deactivate, 0, sizeof(gcd->deactivate));
if (cb) {
struct ofono_error error;
ril_gprs_context_free_active_call(gcd);
cb(ril_error_ok(&error), cb_data);
return;
}
}
/* Make sure we are in the disconnected state */
ril_gprs_context_set_disconnected(gcd);
}
static void ril_gprs_context_deactivate_primary(struct ofono_gprs_context *gc,
unsigned int id, ofono_gprs_context_cb_t cb, void *data)
{
struct ril_gprs_context *gcd = ril_gprs_context_get_data(gc);
GASSERT(gcd->active_ctx_cid == id);
ofono_info("Deactivating context: %u", id);
if (gcd->active_call && gcd->active_ctx_cid == id) {
gcd->deactivate.cb = cb;
gcd->deactivate.data = data;
gcd->deactivate.req = ril_data_call_deactivate(gcd->data,
gcd->active_call->cid,
ril_gprs_context_deactivate_primary_cb, gcd);
} else if (cb) {
struct ofono_error error;
cb(ril_error_ok(&error), data);
}
}
static void ril_gprs_context_detach_shutdown(struct ofono_gprs_context *gc,
unsigned int id)
{
DBG("%u", id);
ril_gprs_context_deactivate_primary(gc, id, NULL, NULL);
}
static int ril_gprs_context_probe(struct ofono_gprs_context *gc,
unsigned int vendor, void *data)
{
struct ril_modem *modem = data;
struct ril_gprs_context *gcd = g_new0(struct ril_gprs_context, 1);
DBG("");
gcd->gc = gc;
gcd->modem = modem;
gcd->network = ril_network_ref(modem->network);
gcd->data = ril_data_ref(modem->data);
gcd->active_ctx_cid = CTX_ID_NONE;
ofono_gprs_context_set_data(gc, gcd);
return 0;
}
static void ril_gprs_context_remove(struct ofono_gprs_context *gc)
{
struct ril_gprs_context *gcd = ril_gprs_context_get_data(gc);
DBG("");
ofono_gprs_context_set_data(gc, NULL);
if (gcd->activate.req) {
/*
* The core has already completed its pending D-Bus
* request, invoking the completion callback will
* cause libdbus to panic.
*/
ril_data_request_detach(gcd->activate.req);
ril_data_request_cancel(gcd->activate.req);
}
if (gcd->deactivate.req) {
/* Let it complete but we won't be around to be notified. */
ril_data_request_detach(gcd->deactivate.req);
} else if (gcd->active_call) {
ril_data_call_deactivate(gcd->data, gcd->active_call->cid,
NULL, NULL);
}
ril_data_remove_handler(gcd->data, gcd->calls_changed_id);
ril_data_unref(gcd->data);
ril_network_unref(gcd->network);
ril_data_call_free(gcd->active_call);
ofono_mtu_limit_free(gcd->mtu_limit);
g_free(gcd);
}
const struct ofono_gprs_context_driver ril_gprs_context_driver = {
.name = RILMODEM_DRIVER,
.probe = ril_gprs_context_probe,
.remove = ril_gprs_context_remove,
.activate_primary = ril_gprs_context_activate_primary,
.deactivate_primary = ril_gprs_context_deactivate_primary,
.detach_shutdown = ril_gprs_context_detach_shutdown,
};
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,31 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_LOG_H
#define RIL_LOG_H
#define GLOG_MODULE_NAME ril_log
#include <gutil_log.h>
#include <ofono/log.h>
#endif /* RIL_LOG_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,572 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
* Copyright (C) 2019 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_plugin.h"
#include "ril_network.h"
#include "ril_radio.h"
#include "ril_sim_card.h"
#include "ril_sim_settings.h"
#include "ril_cell_info.h"
#include "ril_vendor.h"
#include "ril_data.h"
#include "ril_util.h"
#include "ril_log.h"
#include <ofono/message-waiting.h>
#include <ofono/cell-info.h>
#include <ofono/sim-auth.h>
#include <ofono/watch.h>
#define ONLINE_TIMEOUT_SECS (15) /* 20 sec is hardcoded in ofono core */
enum ril_modem_power_state {
POWERED_OFF,
POWERED_ON,
POWERING_OFF
};
enum ril_modem_online_state {
OFFLINE,
GOING_ONLINE,
ONLINE,
GOING_OFFLINE
};
enum ril_modem_watch_event {
WATCH_IMSI,
WATCH_ICCID,
WATCH_SIM_STATE,
WATCH_EVENT_COUNT
};
struct ril_modem_online_request {
const char *name;
ofono_modem_online_cb_t cb;
struct ril_modem_data *md;
void *data;
guint timeout_id;
};
struct ril_modem_data {
struct ril_modem modem;
struct ofono_watch *watch;
GRilIoQueue *q;
char *log_prefix;
char *imeisv;
char *imei;
char *ecclist_file;
gulong watch_event_id[WATCH_EVENT_COUNT];
char* last_known_iccid;
char* reset_iccid;
guint online_check_id;
enum ril_modem_power_state power_state;
gulong radio_state_event_id;
struct ril_modem_online_request set_online;
struct ril_modem_online_request set_offline;
};
#define RADIO_POWER_TAG(md) (md)
#define DBG_(md,fmt,args...) DBG("%s" fmt, (md)->log_prefix, ##args)
static struct ril_modem_data *ril_modem_data_from_ofono(struct ofono_modem *o)
{
struct ril_modem_data *md = ofono_modem_get_data(o);
GASSERT(md->modem.ofono == o);
return md;
}
struct ofono_sim *ril_modem_ofono_sim(struct ril_modem *m)
{
return (m && m->ofono) ? ofono_modem_get_sim(m->ofono) : NULL;
}
struct ofono_gprs *ril_modem_ofono_gprs(struct ril_modem *m)
{
return (m && m->ofono) ? ofono_modem_get_gprs(m->ofono) : NULL;
}
struct ofono_netreg *ril_modem_ofono_netreg(struct ril_modem *m)
{
return (m && m->ofono) ? ofono_modem_get_netreg(m->ofono) : NULL;
}
static inline struct ofono_radio_settings *ril_modem_radio_settings(
struct ril_modem *modem)
{
return (modem && modem->ofono) ?
ofono_modem_get_radio_settings(modem->ofono) : NULL;
}
void ril_modem_delete(struct ril_modem *md)
{
if (md && md->ofono) {
ofono_modem_remove(md->ofono);
}
}
static void ril_modem_online_request_done(struct ril_modem_online_request *req)
{
if (req->cb) {
struct ofono_error error;
ofono_modem_online_cb_t cb = req->cb;
void *data = req->data;
req->cb = NULL;
req->data = NULL;
DBG_(req->md, "%s", req->name);
cb(ril_error_ok(&error), data);
}
}
static void ril_modem_online_request_ok(struct ril_modem_online_request *req)
{
if (req->timeout_id) {
g_source_remove(req->timeout_id);
req->timeout_id = 0;
}
ril_modem_online_request_done(req);
}
static void ril_modem_update_online_state(struct ril_modem_data *md)
{
switch (md->modem.radio->state) {
case RADIO_STATE_ON:
DBG_(md, "online");
ril_modem_online_request_ok(&md->set_online);
break;
case RADIO_STATE_OFF:
case RADIO_STATE_UNAVAILABLE:
DBG_(md, "offline");
ril_modem_online_request_ok(&md->set_offline);
break;
default:
break;
}
if (!md->set_offline.timeout_id && !md->set_online.timeout_id &&
md->power_state == POWERING_OFF) {
md->power_state = POWERED_OFF;
if (md->modem.ofono) {
ofono_modem_set_powered(md->modem.ofono, FALSE);
}
}
}
static gboolean ril_modem_online_request_timeout(gpointer data)
{
struct ril_modem_online_request *req = data;
GASSERT(req->timeout_id);
req->timeout_id = 0;
DBG_(req->md, "%s", req->name);
ril_modem_online_request_done(req);
ril_modem_update_online_state(req->md);
return G_SOURCE_REMOVE;
}
static gboolean ril_modem_online_check(gpointer data)
{
struct ril_modem_data *md = data;
GASSERT(md->online_check_id);
md->online_check_id = 0;
ril_modem_update_online_state(md);
return FALSE;
}
static void ril_modem_schedule_online_check(struct ril_modem_data *md)
{
if (!md->online_check_id) {
md->online_check_id = g_idle_add(ril_modem_online_check, md);
}
}
static void ril_modem_update_radio_settings(struct ril_modem_data *md)
{
struct ril_modem *m = &md->modem;
struct ofono_radio_settings *rs = ril_modem_radio_settings(m);
if (md->watch->imsi) {
/* radio-settings.c assumes that IMSI is available */
if (!rs) {
DBG_(md, "initializing radio settings interface");
ofono_radio_settings_create(m->ofono, 0,
RILMODEM_DRIVER, md);
}
} else if (rs) {
DBG_(md, "removing radio settings interface");
ofono_radio_settings_remove(rs);
} else {
/* ofono core may remove radio settings atom internally */
DBG_(md, "radio settings interface is already gone");
}
}
static void ril_modem_radio_state_cb(struct ril_radio *radio, void *data)
{
struct ril_modem_data *md = data;
GASSERT(md->modem.radio == radio);
ril_modem_update_online_state(md);
}
static void ril_modem_imsi_cb(struct ofono_watch *watch, void *data)
{
struct ril_modem_data *md = data;
GASSERT(md->watch == watch);
ril_modem_update_radio_settings(md);
}
static void ril_modem_iccid_cb(struct ofono_watch *watch, void *data)
{
struct ril_modem_data *md = data;
GASSERT(md->watch == watch);
if (watch->iccid) {
g_free(md->last_known_iccid);
md->last_known_iccid = g_strdup(watch->iccid);
DBG_(md, "%s", md->last_known_iccid);
}
}
static void ril_modem_sim_state_cb(struct ofono_watch *watch, void *data)
{
struct ril_modem_data *md = data;
const enum ofono_sim_state state = ofono_sim_get_state(watch->sim);
GASSERT(md->watch == watch);
if (state == OFONO_SIM_STATE_RESETTING) {
g_free(md->reset_iccid);
md->reset_iccid = md->last_known_iccid;
md->last_known_iccid = NULL;
DBG_(md, "%s is resetting", md->reset_iccid);
}
}
static void ril_modem_pre_sim(struct ofono_modem *modem)
{
struct ril_modem_data *md = ril_modem_data_from_ofono(modem);
DBG("%s", ofono_modem_get_path(modem));
ofono_devinfo_create(modem, 0, RILMODEM_DRIVER, md);
ofono_sim_create(modem, 0, RILMODEM_DRIVER, md);
if (md->modem.config.enable_voicecall) {
ofono_voicecall_create(modem, 0, RILMODEM_DRIVER, md);
}
if (!md->radio_state_event_id) {
md->radio_state_event_id =
ril_radio_add_state_changed_handler(md->modem.radio,
ril_modem_radio_state_cb, md);
}
}
static void ril_modem_post_sim(struct ofono_modem *modem)
{
struct ril_modem_data *md = ril_modem_data_from_ofono(modem);
struct ofono_gprs *gprs;
DBG("%s", ofono_modem_get_path(modem));
ofono_sms_create(modem, 0, RILMODEM_DRIVER, md);
gprs = ofono_gprs_create(modem, 0, RILMODEM_DRIVER, md);
if (gprs) {
guint i;
static const enum ofono_gprs_context_type ap_types[] = {
OFONO_GPRS_CONTEXT_TYPE_INTERNET,
OFONO_GPRS_CONTEXT_TYPE_MMS,
OFONO_GPRS_CONTEXT_TYPE_IMS
};
/* Create a context for each type */
for (i = 0; i < G_N_ELEMENTS(ap_types); i++) {
struct ofono_gprs_context *gc =
ofono_gprs_context_create(modem, 0,
RILMODEM_DRIVER, md);
if (gc == NULL)
break;
ofono_gprs_context_set_type(gc, ap_types[i]);
ofono_gprs_add_context(gprs, gc);
}
}
ofono_phonebook_create(modem, 0, RILMODEM_DRIVER, md);
ofono_call_forwarding_create(modem, 0, RILMODEM_DRIVER, md);
ofono_call_barring_create(modem, 0, RILMODEM_DRIVER, md);
ofono_message_waiting_register(ofono_message_waiting_create(modem));
if (md->modem.config.enable_stk) {
if (!md->reset_iccid ||
g_strcmp0(md->reset_iccid, md->watch->iccid)) {
/* This SIM was never reset */
ofono_stk_create(modem, 0, RILMODEM_DRIVER, md);
} else {
ofono_warn("Disabling STK after SIM reset");
}
}
if (md->modem.config.enable_cbs) {
ofono_cbs_create(modem, 0, RILMODEM_DRIVER, md);
}
ofono_sim_auth_create(modem);
}
static void ril_modem_post_online(struct ofono_modem *modem)
{
struct ril_modem_data *md = ril_modem_data_from_ofono(modem);
DBG("%s", ofono_modem_get_path(modem));
ofono_call_volume_create(modem, 0, RILMODEM_DRIVER, md);
ofono_netreg_create(modem, 0, RILMODEM_DRIVER, md);
ofono_ussd_create(modem, 0, RILMODEM_DRIVER, md);
ofono_call_settings_create(modem, 0, RILMODEM_DRIVER, md);
ofono_netmon_create(modem, 0, RILMODEM_DRIVER, md);
}
static void ril_modem_set_online(struct ofono_modem *modem, ofono_bool_t online,
ofono_modem_online_cb_t cb, void *data)
{
struct ril_modem_data *md = ril_modem_data_from_ofono(modem);
struct ril_radio *radio = md->modem.radio;
struct ril_modem_online_request *req;
DBG("%s going %sline", ofono_modem_get_path(modem),
online ? "on" : "off");
ril_radio_set_online(radio, online);
if (online) {
ril_radio_power_on(radio, RADIO_POWER_TAG(md));
req = &md->set_online;
} else {
ril_radio_power_off(radio, RADIO_POWER_TAG(md));
req = &md->set_offline;
}
req->cb = cb;
req->data = data;
if (req->timeout_id) {
g_source_remove(req->timeout_id);
}
req->timeout_id = g_timeout_add_seconds(ONLINE_TIMEOUT_SECS,
ril_modem_online_request_timeout, req);
ril_modem_schedule_online_check(md);
}
static int ril_modem_enable(struct ofono_modem *modem)
{
struct ril_modem_data *md = ril_modem_data_from_ofono(modem);
DBG("%s", ofono_modem_get_path(modem));
md->power_state = POWERED_ON;
return 0;
}
static int ril_modem_disable(struct ofono_modem *modem)
{
struct ril_modem_data *md = ril_modem_data_from_ofono(modem);
DBG("%s", ofono_modem_get_path(modem));
if (md->set_online.timeout_id || md->set_offline.timeout_id) {
md->power_state = POWERING_OFF;
return -EINPROGRESS;
} else {
md->power_state = POWERED_OFF;
return 0;
}
}
static int ril_modem_probe(struct ofono_modem *modem)
{
DBG("%s", ofono_modem_get_path(modem));
return 0;
}
static void ril_modem_remove(struct ofono_modem *ofono)
{
struct ril_modem_data *md = ril_modem_data_from_ofono(ofono);
struct ril_modem *modem = &md->modem;
DBG("%s", ril_modem_get_path(modem));
ofono_modem_set_data(ofono, NULL);
ril_radio_remove_handler(modem->radio, md->radio_state_event_id);
ril_radio_set_online(modem->radio, FALSE);
ril_radio_power_off(modem->radio, RADIO_POWER_TAG(md));
ril_radio_set_online(modem->radio, FALSE);
ril_radio_unref(modem->radio);
ril_sim_settings_unref(modem->sim_settings);
ofono_watch_remove_all_handlers(md->watch, md->watch_event_id);
ofono_watch_unref(md->watch);
if (md->online_check_id) {
g_source_remove(md->online_check_id);
}
if (md->set_online.timeout_id) {
g_source_remove(md->set_online.timeout_id);
}
if (md->set_offline.timeout_id) {
g_source_remove(md->set_offline.timeout_id);
}
ril_vendor_unref(modem->vendor);
ril_network_unref(modem->network);
ril_sim_card_unref(modem->sim_card);
ril_data_unref(modem->data);
ofono_cell_info_unref(modem->cell_info);
grilio_channel_unref(modem->io);
grilio_queue_cancel_all(md->q, FALSE);
grilio_queue_unref(md->q);
g_free(md->last_known_iccid);
g_free(md->reset_iccid);
g_free(md->ecclist_file);
g_free(md->log_prefix);
g_free(md->imeisv);
g_free(md->imei);
g_free(md);
}
struct ril_modem *ril_modem_create(GRilIoChannel *io, const char *log_prefix,
const char *path, const char *imei, const char *imeisv,
const char *ecclist_file, const struct ril_slot_config *config,
struct ril_radio *radio, struct ril_network *network,
struct ril_sim_card *card, struct ril_data *data,
struct ril_sim_settings *settings, struct ril_vendor *vendor,
struct ofono_cell_info *cell_info)
{
/* Skip the slash from the path, it looks like "/ril_0" */
struct ofono_modem *ofono = ofono_modem_create(path + 1,
RILMODEM_DRIVER);
if (ofono) {
int err;
struct ril_modem_data *md = g_new0(struct ril_modem_data, 1);
struct ril_modem *modem = &md->modem;
/*
* ril_plugin.c must wait until IMEI becomes known before
* creating the modem
*/
GASSERT(imei);
/* Copy config */
modem->config = *config;
modem->imei = md->imei = g_strdup(imei);
modem->imeisv = md->imeisv = g_strdup(imeisv);
modem->log_prefix = log_prefix; /* No need to strdup */
modem->ecclist_file = ecclist_file; /* No need to strdup */
md->log_prefix = (log_prefix && log_prefix[0]) ?
g_strconcat(log_prefix, " ", NULL) : g_strdup("");
modem->ofono = ofono;
modem->vendor = ril_vendor_ref(vendor);
modem->radio = ril_radio_ref(radio);
modem->network = ril_network_ref(network);
modem->sim_card = ril_sim_card_ref(card);
modem->sim_settings = ril_sim_settings_ref(settings);
modem->cell_info = ofono_cell_info_ref(cell_info);
modem->data = ril_data_ref(data);
modem->io = grilio_channel_ref(io);
md->q = grilio_queue_new(io);
md->watch = ofono_watch_new(path);
md->last_known_iccid = g_strdup(md->watch->iccid);
md->watch_event_id[WATCH_IMSI] =
ofono_watch_add_imsi_changed_handler(md->watch,
ril_modem_imsi_cb, md);
md->watch_event_id[WATCH_ICCID] =
ofono_watch_add_iccid_changed_handler(md->watch,
ril_modem_iccid_cb, md);
md->watch_event_id[WATCH_SIM_STATE] =
ofono_watch_add_sim_state_changed_handler(md->watch,
ril_modem_sim_state_cb, md);
md->set_online.name = "online";
md->set_online.md = md;
md->set_offline.name = "offline";
md->set_offline.md = md;
ofono_modem_set_data(ofono, md);
err = ofono_modem_register(ofono);
if (!err) {
GASSERT(io->connected);
if (config->radio_power_cycle) {
ril_radio_power_cycle(modem->radio);
}
/*
* ofono_modem_reset sets Powered to TRUE without
* issuing PropertyChange signal.
*/
ofono_modem_set_powered(modem->ofono, FALSE);
ofono_modem_set_powered(modem->ofono, TRUE);
md->power_state = POWERED_ON;
/*
* With some RIL implementations, querying available
* band modes causes some magic Android properties to
* appear.
*/
if (config->query_available_band_mode) {
grilio_queue_send_request(md->q, NULL,
RIL_REQUEST_QUERY_AVAILABLE_BAND_MODE);
}
ril_modem_update_radio_settings(md);
return modem;
} else {
ofono_error("Error %d registering %s",
err, RILMODEM_DRIVER);
/*
* If ofono_modem_register() failed, then
* ofono_modem_remove() won't invoke
* ril_modem_remove() callback.
*/
ril_modem_remove(ofono);
}
ofono_modem_remove(ofono);
}
return NULL;
}
const struct ofono_modem_driver ril_modem_driver = {
.name = RILMODEM_DRIVER,
.probe = ril_modem_probe,
.remove = ril_modem_remove,
.enable = ril_modem_enable,
.disable = ril_modem_disable,
.pre_sim = ril_modem_pre_sim,
.post_sim = ril_modem_post_sim,
.post_online = ril_modem_post_online,
.set_online = ril_modem_set_online
};
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

View File

@@ -1,329 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2016-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_plugin.h"
#include "ril_util.h"
#include "ril_log.h"
#include <ofono/sim-mnclength.h>
#include <ofono/cell-info.h>
struct ril_netmon {
struct ofono_netmon *netmon;
struct ofono_cell_info *cell_info;
guint register_id;
};
/* This number must be in sync with ril_netmon_notify_ofono: */
#define RIL_NETMON_MAX_OFONO_PARAMS (8)
struct ril_netmon_ofono_param {
enum ofono_netmon_info type;
int value;
};
static inline struct ril_netmon *ril_netmon_get_data(struct ofono_netmon *ofono)
{
return ofono ? ofono_netmon_get_data(ofono) : NULL;
}
static void ril_netmon_format_mccmnc(char *s_mcc, char *s_mnc, int mcc, int mnc)
{
s_mcc[0] = 0;
s_mnc[0] = 0;
if (mcc >= 0 && mcc <= 999) {
snprintf(s_mcc, OFONO_MAX_MCC_LENGTH + 1, "%03d", mcc);
if (mnc >= 0 && mnc <= 999) {
const int mnclen =
ofono_sim_mnclength_get_mnclength_mccmnc(mcc,
mnc);
const char *format[] = { "%d", "%02d", "%03d" };
const char *fmt = (mnclen > 0 &&
mnclen <= G_N_ELEMENTS(format)) ?
format[mnclen - 1] : format[0];
snprintf(s_mnc, OFONO_MAX_MNC_LENGTH + 1, fmt, mnc);
}
}
}
static void ril_netmon_notify_ofono(struct ofono_netmon *netmon,
enum ofono_netmon_cell_type type, int mcc, int mnc,
struct ril_netmon_ofono_param *params, int nparams)
{
char s_mcc[OFONO_MAX_MCC_LENGTH + 1];
char s_mnc[OFONO_MAX_MNC_LENGTH + 1];
int i;
/* Better not to push uninitialized data to the stack ... */
for (i = nparams; i < RIL_NETMON_MAX_OFONO_PARAMS; i++) {
params[i].type = OFONO_NETMON_INFO_INVALID;
params[i].value = OFONO_CELL_INVALID_VALUE;
}
ril_netmon_format_mccmnc(s_mcc, s_mnc, mcc, mnc);
ofono_netmon_serving_cell_notify(netmon, type,
OFONO_NETMON_INFO_MCC, s_mcc,
OFONO_NETMON_INFO_MNC, s_mnc,
params[0].type, params[0].value,
params[1].type, params[1].value,
params[2].type, params[2].value,
params[3].type, params[3].value,
params[4].type, params[4].value,
params[5].type, params[5].value,
params[6].type, params[6].value,
params[7].type, params[7].value,
OFONO_NETMON_INFO_INVALID);
}
static void ril_netmon_notify_gsm(struct ofono_netmon *netmon,
const struct ofono_cell_info_gsm *gsm)
{
struct ril_netmon_ofono_param params[RIL_NETMON_MAX_OFONO_PARAMS];
int n = 0;
if (gsm->lac != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_LAC;
params[n].value = gsm->lac;
n++;
}
if (gsm->cid != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_CI;
params[n].value = gsm->cid;
n++;
}
if (gsm->arfcn != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_ARFCN;
params[n].value = gsm->arfcn;
n++;
}
if (gsm->signalStrength != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_RSSI;
params[n].value = gsm->signalStrength;
n++;
}
if (gsm->bitErrorRate != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_BER;
params[n].value = gsm->bitErrorRate;
n++;
}
ril_netmon_notify_ofono(netmon, OFONO_NETMON_CELL_TYPE_GSM,
gsm->mcc, gsm->mnc, params, n);
}
static void ril_netmon_notify_wcdma(struct ofono_netmon *netmon,
const struct ofono_cell_info_wcdma *wcdma)
{
struct ril_netmon_ofono_param params[RIL_NETMON_MAX_OFONO_PARAMS];
int n = 0;
if (wcdma->lac != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_LAC;
params[n].value = wcdma->lac;
n++;
}
if (wcdma->cid != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_CI;
params[n].value = wcdma->cid;
n++;
}
if (wcdma->psc != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_PSC;
params[n].value = wcdma->psc;
n++;
}
if (wcdma->uarfcn != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_ARFCN;
params[n].value = wcdma->uarfcn;
n++;
}
if (wcdma->signalStrength != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_RSSI;
params[n].value = wcdma->signalStrength;
n++;
}
if (wcdma->bitErrorRate != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_BER;
params[n].value = wcdma->bitErrorRate;
n++;
}
ril_netmon_notify_ofono(netmon, OFONO_NETMON_CELL_TYPE_UMTS,
wcdma->mcc, wcdma->mnc, params, n);
}
static void ril_netmon_notify_lte(struct ofono_netmon *netmon,
const struct ofono_cell_info_lte *lte)
{
struct ril_netmon_ofono_param params[RIL_NETMON_MAX_OFONO_PARAMS];
int n = 0;
if (lte->ci != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_CI;
params[n].value = lte->ci;
n++;
}
if (lte->earfcn != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_EARFCN;
params[n].value = lte->earfcn;
n++;
}
if (lte->signalStrength != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_RSSI;
params[n].value = lte->signalStrength;
n++;
}
if (lte->rsrp != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_RSRQ;
params[n].value = lte->rsrp;
n++;
}
if (lte->rsrq != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_RSRP;
params[n].value = lte->rsrq;
n++;
}
if (lte->cqi != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_CQI;
params[n].value = lte->cqi;
n++;
}
if (lte->timingAdvance != OFONO_CELL_INVALID_VALUE) {
params[n].type = OFONO_NETMON_INFO_TIMING_ADVANCE;
params[n].value = lte->timingAdvance;
n++;
}
ril_netmon_notify_ofono(netmon, OFONO_NETMON_CELL_TYPE_LTE,
lte->mcc, lte->mnc, params, n);
}
static void ril_netmon_request_update(struct ofono_netmon *netmon,
ofono_netmon_cb_t cb, void *data)
{
struct ril_netmon *nm = ril_netmon_get_data(netmon);
const ofono_cell_ptr *cells = nm->cell_info->cells;
struct ofono_error error;
if (cells) {
const ofono_cell_ptr *ptr;
for (ptr = cells; *ptr; ptr++) {
const struct ofono_cell *cell = *ptr;
if (cell->registered) {
switch (cell->type) {
case OFONO_CELL_TYPE_GSM:
ril_netmon_notify_gsm(netmon,
&cell->info.gsm);
break;
case OFONO_CELL_TYPE_WCDMA:
ril_netmon_notify_wcdma(netmon,
&cell->info.wcdma);
break;
case OFONO_CELL_TYPE_LTE:
ril_netmon_notify_lte(netmon,
&cell->info.lte);
break;
default:
break;
}
}
}
}
cb(ril_error_ok(&error), data);
}
static gboolean ril_netmon_register(gpointer user_data)
{
struct ril_netmon *nm = user_data;
GASSERT(nm->register_id);
nm->register_id = 0;
ofono_netmon_register(nm->netmon);
return G_SOURCE_REMOVE;
}
static int ril_netmon_probe(struct ofono_netmon *netmon, unsigned int vendor,
void *data)
{
struct ril_modem *modem = data;
int ret;
if (modem->cell_info) {
struct ril_netmon *nm = g_slice_new0(struct ril_netmon);
nm->cell_info = ofono_cell_info_ref(modem->cell_info);
nm->netmon = netmon;
ofono_netmon_set_data(netmon, nm);
nm->register_id = g_idle_add(ril_netmon_register, nm);
ret = 0;
} else {
DBG("%s no", modem->log_prefix ? modem->log_prefix : "");
ret = -1;
}
DBG("%s %d", modem->log_prefix ? modem->log_prefix : "", ret);
return ret;
}
static void ril_netmon_remove(struct ofono_netmon *netmon)
{
struct ril_netmon *nm = ril_netmon_get_data(netmon);
DBG("");
ofono_netmon_set_data(netmon, NULL);
if (nm->register_id > 0) {
g_source_remove(nm->register_id);
}
ofono_cell_info_unref(nm->cell_info);
g_slice_free(struct ril_netmon, nm);
}
const struct ofono_netmon_driver ril_netmon_driver = {
.name = RILMODEM_DRIVER,
.probe = ril_netmon_probe,
.remove = ril_netmon_remove,
.request_update = ril_netmon_request_update,
};
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

View File

@@ -1,726 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
* Copyright (C) 2019-2020 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_plugin.h"
#include "ril_network.h"
#include "ril_netreg.h"
#include "ril_util.h"
#include "ril_vendor.h"
#include "ril_log.h"
#include <ofono/watch.h>
#include <ofono/gprs-provision.h>
#define REGISTRATION_MAX_RETRIES (2)
enum ril_netreg_events {
NETREG_RIL_EVENT_NITZ_TIME_RECEIVED,
NETREG_RIL_EVENT_SIGNAL_STRENGTH,
NETREG_RIL_EVENT_COUNT
};
enum ril_netreg_network_events {
NETREG_NETWORK_EVENT_OPERATOR_CHANGED,
NETREG_NETWORK_EVENT_VOICE_STATE_CHANGED,
NETREG_NETWORK_EVENT_COUNT
};
struct ril_netreg {
GRilIoChannel *io;
GRilIoQueue *q;
gboolean replace_strange_oper;
gboolean network_selection_manual_0;
int signal_strength_dbm_weak;
int signal_strength_dbm_strong;
struct ofono_watch *watch;
struct ofono_netreg *netreg;
struct ril_network *network;
struct ril_vendor *vendor;
char *log_prefix;
guint timer_id;
guint notify_id;
guint current_operator_id;
gulong ril_event_id[NETREG_RIL_EVENT_COUNT];
gulong network_event_id[NETREG_NETWORK_EVENT_COUNT];
int network_selection_timeout;
};
struct ril_netreg_cbd {
struct ril_netreg *nd;
union {
ofono_netreg_status_cb_t status;
ofono_netreg_operator_cb_t operator;
ofono_netreg_operator_list_cb_t operator_list;
ofono_netreg_register_cb_t reg;
ofono_netreg_strength_cb_t strength;
gpointer ptr;
} cb;
gpointer data;
};
#define ril_netreg_cbd_free g_free
#define DBG_(nd,fmt,args...) DBG("%s" fmt, (nd)->log_prefix, ##args)
static inline struct ril_netreg *ril_netreg_get_data(struct ofono_netreg *ofono)
{
return ofono ? ofono_netreg_get_data(ofono) : NULL;
}
static struct ril_netreg_cbd *ril_netreg_cbd_new(struct ril_netreg *nd,
void *cb, void *data)
{
struct ril_netreg_cbd *cbd = g_new0(struct ril_netreg_cbd, 1);
cbd->nd = nd;
cbd->cb.ptr = cb;
cbd->data = data;
return cbd;
}
enum ofono_netreg_status ril_netreg_check_if_really_roaming
(struct ofono_netreg *netreg, enum ofono_netreg_status status)
{
if (status == OFONO_NETREG_STATUS_ROAMING) {
/* These functions tolerate NULL argument */
const char *net_mcc = ofono_netreg_get_mcc(netreg);
const char *net_mnc = ofono_netreg_get_mnc(netreg);
if (ofono_netreg_spdi_lookup(netreg, net_mcc, net_mnc)) {
ofono_info("not roaming based on spdi");
return OFONO_NETREG_STATUS_REGISTERED;
}
}
return status;
}
static int ril_netreg_check_status(struct ril_netreg *nd, int status)
{
return (nd && nd->netreg) ?
ril_netreg_check_if_really_roaming(nd->netreg, status) :
status;
}
static gboolean ril_netreg_status_notify_cb(gpointer user_data)
{
struct ril_netreg *nd = user_data;
const struct ril_registration_state *reg = &nd->network->voice;
DBG_(nd, "");
GASSERT(nd->notify_id);
nd->notify_id = 0;
ofono_netreg_status_notify(nd->netreg,
ril_netreg_check_status(nd, reg->status),
reg->lac, reg->ci, reg->access_tech);
return FALSE;
}
static void ril_netreg_status_notify(struct ril_network *net, void *user_data)
{
struct ril_netreg *nd = user_data;
/* Coalesce multiple notifications into one */
if (nd->notify_id) {
DBG_(nd, "notification aready queued");
} else {
DBG_(nd, "queuing notification");
nd->notify_id = g_idle_add(ril_netreg_status_notify_cb, nd);
}
}
static void ril_netreg_registration_status(struct ofono_netreg *netreg,
ofono_netreg_status_cb_t cb, void *data)
{
struct ril_netreg *nd = ril_netreg_get_data(netreg);
const struct ril_registration_state *reg = &nd->network->voice;
struct ofono_error error;
DBG_(nd, "");
cb(ril_error_ok(&error),
ril_netreg_check_status(nd, reg->status),
reg->lac, reg->ci, reg->access_tech, data);
}
static gboolean ril_netreg_current_operator_cb(void *user_data)
{
struct ril_netreg_cbd *cbd = user_data;
struct ril_netreg *nd = cbd->nd;
ofono_netreg_operator_cb_t cb = cbd->cb.operator;
struct ofono_error error;
DBG_(nd, "");
GASSERT(nd->current_operator_id);
nd->current_operator_id = 0;
cb(ril_error_ok(&error), nd->network->operator, cbd->data);
return FALSE;
}
static void ril_netreg_current_operator(struct ofono_netreg *netreg,
ofono_netreg_operator_cb_t cb, void *data)
{
struct ril_netreg *nd = ril_netreg_get_data(netreg);
/*
* Calling ofono_netreg_status_notify() may result in
* ril_netreg_current_operator() being invoked even if one
* is already pending. Since ofono core doesn't associate
* any context with individual calls, we can safely assume
* that such a call essentially cancels the previous one.
*/
if (nd->current_operator_id) {
g_source_remove(nd->current_operator_id);
}
nd->current_operator_id = g_idle_add_full(G_PRIORITY_DEFAULT_IDLE,
ril_netreg_current_operator_cb,
ril_netreg_cbd_new(nd, cb, data),
ril_netreg_cbd_free);
}
static gboolean ril_netreg_strange(const struct ofono_network_operator *op,
struct ofono_sim *sim)
{
gsize mcclen;
if (sim && op->status != OFONO_OPERATOR_STATUS_CURRENT) {
const char *spn = ofono_sim_get_spn(sim);
const char *mcc = ofono_sim_get_mcc(sim);
const char *mnc = ofono_sim_get_mnc(sim);
if (spn && mcc && mnc && !strcmp(op->name, spn) &&
(strcmp(op->mcc, mcc) || strcmp(op->mnc, mnc))) {
/*
* Status is not "current", SPN matches the SIM, but
* MCC and/or MNC don't (e.g. Sony Xperia X where all
* operators could be reported with the same name
* which equals SPN).
*/
DBG("%s %s%s (sim spn?)", op->name, op->mcc, op->mnc);
return TRUE;
}
}
mcclen = strlen(op->mcc);
if (!strncmp(op->name, op->mcc, mcclen) &&
!strcmp(op->name + mcclen, op->mnc)) {
/* Some MediaTek RILs only report numeric operator name */
DBG("%s %s%s (numeric?)", op->name, op->mcc, op->mnc);
return TRUE;
}
return FALSE;
}
static void ril_netreg_process_operators(struct ril_netreg *nd,
struct ofono_network_operator *ops, int nops)
{
if (nd->replace_strange_oper) {
int i;
for (i = 0; i < nops; i++) {
struct ofono_network_operator *op = ops + i;
struct ofono_gprs_provision_data *prov = NULL;
int np = 0;
if (ril_netreg_strange(op, nd->watch->sim) &&
ofono_gprs_provision_get_settings(op->mcc,
op->mnc, NULL, &prov, &np)) {
/* Use the first entry */
if (np > 0 && prov->provider_name &&
prov->provider_name[0]) {
DBG("%s %s%s -> %s", op->name, op->mcc,
op->mnc, prov->provider_name);
strncpy(op->name, prov->provider_name,
OFONO_MAX_OPERATOR_NAME_LENGTH);
}
ofono_gprs_provision_free_settings(prov, np);
}
}
}
}
static void ril_netreg_list_operators_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ril_netreg_cbd *cbd = user_data;
ofono_netreg_operator_list_cb_t cb = cbd->cb.operator_list;
struct ril_netreg *nd = cbd->nd;
struct ofono_network_operator *list;
struct ofono_error error;
int noperators = 0, i;
GRilIoParser rilp;
gboolean ok = TRUE;
if (status != RIL_E_SUCCESS) {
ofono_error("Failed to retrive the list of operators: %s",
ril_error_to_string(status));
cb(ril_error_failure(&error), 0, NULL, cbd->data);
return;
}
grilio_parser_init(&rilp, data, len);
/* Number of operators at the list (4 strings for every operator) */
grilio_parser_get_int32(&rilp, &noperators);
GASSERT(!(noperators % 4));
noperators /= 4;
ofono_info("noperators = %d", noperators);
list = g_new0(struct ofono_network_operator, noperators);
for (i = 0; i < noperators && ok; i++) {
struct ofono_network_operator *op = list + i;
char *lalpha = grilio_parser_get_utf8(&rilp);
char *salpha = grilio_parser_get_utf8(&rilp);
char *numeric = grilio_parser_get_utf8(&rilp);
char *status = grilio_parser_get_utf8(&rilp);
/* Try to use long by default */
if (lalpha) {
strncpy(op->name, lalpha,
OFONO_MAX_OPERATOR_NAME_LENGTH);
} else if (salpha) {
strncpy(op->name, salpha,
OFONO_MAX_OPERATOR_NAME_LENGTH);
} else {
op->name[0] = 0;
}
/* Set the proper status */
op->status = OFONO_OPERATOR_STATUS_UNKNOWN;
if (status) {
if (!strcmp(status, "available")) {
op->status = OFONO_OPERATOR_STATUS_AVAILABLE;
} else if (!strcmp(status, "current")) {
op->status = OFONO_OPERATOR_STATUS_CURRENT;
} else if (!strcmp(status, "forbidden")) {
op->status = OFONO_OPERATOR_STATUS_FORBIDDEN;
}
}
op->tech = -1;
ok = ril_parse_mcc_mnc(numeric, op);
if (ok) {
if (op->tech < 0) {
op->tech = nd->network->voice.access_tech;
}
DBG("[operator=%s, %s, %s, status: %s]", op->name,
op->mcc, op->mnc, status);
} else {
DBG("failed to parse operator list");
}
g_free(lalpha);
g_free(salpha);
g_free(numeric);
g_free(status);
}
if (ok) {
ril_netreg_process_operators(nd, list, noperators);
cb(ril_error_ok(&error), noperators, list, cbd->data);
} else {
cb(ril_error_failure(&error), 0, NULL, cbd->data);
}
g_free(list);
}
static void ril_netreg_list_operators(struct ofono_netreg *netreg,
ofono_netreg_operator_list_cb_t cb, void *data)
{
struct ril_netreg *nd = ril_netreg_get_data(netreg);
grilio_queue_send_request_full(nd->q, NULL,
RIL_REQUEST_QUERY_AVAILABLE_NETWORKS,
ril_netreg_list_operators_cb, ril_netreg_cbd_free,
ril_netreg_cbd_new(nd, cb, data));
}
static void ril_netreg_register_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ril_netreg_cbd *cbd = user_data;
ofono_netreg_register_cb_t cb = cbd->cb.reg;
struct ofono_error error;
if (status == RIL_E_SUCCESS) {
cb(ril_error_ok(&error), cbd->data);
} else {
ofono_error("registration failed, ril result %d", status);
cb(ril_error_failure(&error), cbd->data);
}
}
static void ril_netreg_set_register_auto(struct ril_netreg *nd,
ofono_netreg_register_cb_t cb, void *data)
{
GRilIoRequest *req = grilio_request_new();
ofono_info("nw select automatic");
grilio_request_set_timeout(req, nd->network_selection_timeout);
grilio_request_set_retry(req, 0, REGISTRATION_MAX_RETRIES);
grilio_queue_send_request_full(nd->q, req,
RIL_REQUEST_SET_NETWORK_SELECTION_AUTOMATIC,
ril_netreg_register_cb, ril_netreg_cbd_free,
ril_netreg_cbd_new(nd, cb, data));
grilio_request_unref(req);
}
static void ril_netreg_query_register_auto_cb(GRilIoChannel *io, int status,
const void *data, guint len,
void *user_data)
{
struct ril_netreg_cbd *cbd = user_data;
ofono_netreg_register_cb_t cb = cbd->cb.reg;
if (status == RIL_E_SUCCESS) {
GRilIoParser rilp;
gint32 net_mode;
grilio_parser_init(&rilp, data, len);
if (grilio_parser_get_int32(&rilp, NULL) /* Array length */ &&
grilio_parser_get_int32(&rilp, &net_mode) &&
net_mode == RIL_NETWORK_SELECTION_MODE_AUTO) {
struct ofono_error error;
ofono_info("nw selection is already auto");
cb(ril_error_ok(&error), cbd->data);
return;
}
}
ril_netreg_set_register_auto(cbd->nd, cb, cbd->data);
}
static void ril_netreg_register_auto(struct ofono_netreg *netreg,
ofono_netreg_register_cb_t cb, void *data)
{
struct ril_netreg *nd = ril_netreg_get_data(netreg);
GRilIoRequest *req = grilio_request_new();
grilio_queue_send_request_full(nd->q, req,
RIL_REQUEST_QUERY_NETWORK_SELECTION_MODE,
ril_netreg_query_register_auto_cb, ril_netreg_cbd_free,
ril_netreg_cbd_new(nd, cb, data));
grilio_request_unref(req);
}
static void ril_netreg_register_manual(struct ofono_netreg *netreg,
const char *mcc, const char *mnc,
ofono_netreg_register_cb_t cb, void *data)
{
struct ril_netreg *nd = ril_netreg_get_data(netreg);
GRilIoRequest *req = grilio_request_new();
const char *suffix = nd->network_selection_manual_0 ? "+0" : "";
ofono_info("nw select manual: %s%s%s", mcc, mnc, suffix);
grilio_request_append_format(req, "%s%s%s", mcc, mnc, suffix);
grilio_request_set_timeout(req, nd->network_selection_timeout);
grilio_queue_send_request_full(nd->q, req,
RIL_REQUEST_SET_NETWORK_SELECTION_MANUAL,
ril_netreg_register_cb, ril_netreg_cbd_free,
ril_netreg_cbd_new(nd, cb, data));
grilio_request_unref(req);
}
static int ril_netreg_qdbm_to_percentage(struct ril_netreg *nd, int qdbm)
{
const int min_qdbm = 4 * nd->signal_strength_dbm_weak; /* 4*dBm */
const int max_qdbm = 4 * nd->signal_strength_dbm_strong; /* 4*dBm */
return (qdbm <= min_qdbm) ? 1 :
(qdbm >= max_qdbm) ? 100 :
(100 * (qdbm - min_qdbm) / (max_qdbm - min_qdbm));
}
static int ril_netreg_get_signal_strength(struct ril_netreg *nd,
const void *data, guint len)
{
GRilIoParser rilp;
struct ril_vendor_signal_strength signal;
grilio_parser_init(&rilp, data, len);
signal.gsm = INT_MAX;
signal.lte = INT_MAX;
signal.qdbm = 0;
if (!ril_vendor_signal_strength_parse(nd->vendor, &signal, &rilp)) {
gint32 rsrp = 0, tdscdma_dbm = 0;
/* Apply default parsing algorithm */
grilio_parser_init(&rilp, data, len);
signal.gsm = INT_MAX;
signal.lte = INT_MAX;
signal.qdbm = 0;
/* GW_SignalStrength */
grilio_parser_get_int32(&rilp, &signal.gsm);
grilio_parser_get_int32(&rilp, NULL); /* bitErrorRate */
/* CDMA_SignalStrength */
grilio_parser_get_int32(&rilp, NULL); /* dbm */
grilio_parser_get_int32(&rilp, NULL); /* ecio */
/* EVDO_SignalStrength */
grilio_parser_get_int32(&rilp, NULL); /* dbm */
grilio_parser_get_int32(&rilp, NULL); /* ecio */
grilio_parser_get_int32(&rilp, NULL); /* signalNoiseRatio */
/* LTE_SignalStrength */
grilio_parser_get_int32(&rilp, &signal.lte);
grilio_parser_get_int32(&rilp, &rsrp);
/* The rest is considered optional */
if (grilio_parser_get_int32(&rilp, NULL) && /* rsrq */
grilio_parser_get_int32(&rilp, NULL) && /* rssnr */
grilio_parser_get_int32(&rilp, NULL) && /* cqi */
grilio_parser_get_int32(&rilp, NULL) && /* timingAdv */
/* TD_SCDMA_SignalStrength */
grilio_parser_get_int32(&rilp, &tdscdma_dbm) &&
/* RSCP range: 25 to 120 dBm per 3GPP TS 25.123 */
tdscdma_dbm >= 25 && tdscdma_dbm <= 120) {
signal.qdbm = -4 * tdscdma_dbm;
} else if (signal.lte == 99 && rsrp >= 44 && rsrp <= 140) {
/* RSRP range: 44 to 140 dBm per 3GPP TS 36.133 */
signal.qdbm = -4 * rsrp;
}
}
DBG("gw: %d, lte: %d, qdbm: %d", signal.gsm, signal.lte, signal.qdbm);
/* Return the first valid one */
/* Some RILs (namely, from MediaTek) report 0 here AND a valid LTE
* RSRP value. If we've got zero, don't report it just yet. */
if (signal.gsm >= 1 && signal.gsm <= 31) {
/* Valid values are (0-31, 99) as defined in TS 27.007 */
return (signal.gsm * 100) / 31;
}
/* Valid values are (0-31, 99) as defined in TS 27.007 */
if (signal.lte >= 0 && signal.lte <= 31) {
return (signal.lte * 100) / 31;
}
if (signal.qdbm < 0) {
return ril_netreg_qdbm_to_percentage(nd, signal.qdbm);
} else if (signal.gsm == 0) {
return 0;
} else {
return -1;
}
}
static void ril_netreg_strength_notify(GRilIoChannel *io, guint ril_event,
const void *data, guint len, void *user_data)
{
struct ril_netreg *nd = user_data;
int strength;
GASSERT(ril_event == RIL_UNSOL_SIGNAL_STRENGTH);
strength = ril_netreg_get_signal_strength(nd, data, len);
DBG_(nd, "%d", strength);
if (strength >= 0) {
ofono_netreg_strength_notify(nd->netreg, strength);
}
}
static void ril_netreg_strength_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ril_netreg_cbd *cbd = user_data;
ofono_netreg_strength_cb_t cb = cbd->cb.strength;
struct ofono_error error;
if (status == RIL_E_SUCCESS) {
cb(ril_error_ok(&error), ril_netreg_get_signal_strength
(cbd->nd, data, len), cbd->data);
} else {
ofono_error("Failed to retrive the signal strength: %s",
ril_error_to_string(status));
cb(ril_error_failure(&error), -1, cbd->data);
}
}
static void ril_netreg_strength(struct ofono_netreg *netreg,
ofono_netreg_strength_cb_t cb, void *data)
{
struct ril_netreg *nd = ril_netreg_get_data(netreg);
GRilIoRequest* req = grilio_request_new();
grilio_request_set_retry(req, RIL_RETRY_MS, -1);
grilio_queue_send_request_full(nd->q, req,
RIL_REQUEST_SIGNAL_STRENGTH, ril_netreg_strength_cb,
ril_netreg_cbd_free, ril_netreg_cbd_new(nd, cb, data));
grilio_request_unref(req);
}
static void ril_netreg_nitz_notify(GRilIoChannel *io, guint ril_event,
const void *data, guint len, void *user_data)
{
struct ril_netreg *nd = user_data;
GRilIoParser rilp;
int year, mon, mday, hour, min, sec, tzi, dst = 0;
char tzs;
gchar *nitz;
GASSERT(ril_event == RIL_UNSOL_NITZ_TIME_RECEIVED);
grilio_parser_init(&rilp, data, len);
nitz = grilio_parser_get_utf8(&rilp);
DBG_(nd, "%s", nitz);
/*
* Format: yy/mm/dd,hh:mm:ss(+/-)tz[,ds]
* The ds part is considered optional, initialized to zero.
*/
if (nitz && sscanf(nitz, "%u/%u/%u,%u:%u:%u%c%u,%u",
&year, &mon, &mday, &hour, &min, &sec, &tzs, &tzi,
&dst) >= 8 && (tzs == '+' || tzs == '-')) {
struct ofono_network_time time;
char tz[4];
snprintf(tz, sizeof(tz), "%c%d", tzs, tzi);
time.utcoff = atoi(tz) * 15 * 60;
time.dst = dst;
time.sec = sec;
time.min = min;
time.hour = hour;
time.mday = mday;
time.mon = mon;
time.year = 2000 + year;
ofono_netreg_time_notify(nd->netreg, &time);
} else {
ofono_warn("Failed to parse NITZ string \"%s\"", nitz);
}
g_free(nitz);
}
static gboolean ril_netreg_register(gpointer user_data)
{
struct ril_netreg *nd = user_data;
GASSERT(nd->timer_id);
nd->timer_id = 0;
ofono_netreg_register(nd->netreg);
/* Register for network state changes */
nd->network_event_id[NETREG_NETWORK_EVENT_OPERATOR_CHANGED] =
ril_network_add_operator_changed_handler(nd->network,
ril_netreg_status_notify, nd);
nd->network_event_id[NETREG_NETWORK_EVENT_VOICE_STATE_CHANGED] =
ril_network_add_voice_state_changed_handler(nd->network,
ril_netreg_status_notify, nd);
/* Register for network time updates */
nd->ril_event_id[NETREG_RIL_EVENT_NITZ_TIME_RECEIVED] =
grilio_channel_add_unsol_event_handler(nd->io,
ril_netreg_nitz_notify,
RIL_UNSOL_NITZ_TIME_RECEIVED, nd);
/* Register for signal strength changes */
nd->ril_event_id[NETREG_RIL_EVENT_SIGNAL_STRENGTH] =
grilio_channel_add_unsol_event_handler(nd->io,
ril_netreg_strength_notify,
RIL_UNSOL_SIGNAL_STRENGTH, nd);
/* This makes the timeout a single-shot */
return FALSE;
}
static int ril_netreg_probe(struct ofono_netreg *netreg, unsigned int vendor,
void *data)
{
struct ril_modem *modem = data;
struct ril_netreg *nd = g_new0(struct ril_netreg, 1);
const struct ril_slot_config *config = &modem->config;
nd->log_prefix = (modem->log_prefix && modem->log_prefix[0]) ?
g_strconcat(modem->log_prefix, " ", NULL) : g_strdup("");
DBG_(nd, "%p", netreg);
nd->io = grilio_channel_ref(ril_modem_io(modem));
nd->q = grilio_queue_new(nd->io);
nd->watch = ofono_watch_new(ril_modem_get_path(modem));
nd->vendor = ril_vendor_ref(modem->vendor);
nd->network = ril_network_ref(modem->network);
nd->netreg = netreg;
nd->replace_strange_oper = config->replace_strange_oper;
nd->network_selection_manual_0 = config->network_selection_manual_0;
nd->signal_strength_dbm_weak = config->signal_strength_dbm_weak;
nd->signal_strength_dbm_strong = config->signal_strength_dbm_strong;
nd->network_selection_timeout = config->network_selection_timeout;
ofono_netreg_set_data(netreg, nd);
nd->timer_id = g_idle_add(ril_netreg_register, nd);
return 0;
}
static void ril_netreg_remove(struct ofono_netreg *netreg)
{
struct ril_netreg *nd = ril_netreg_get_data(netreg);
DBG_(nd, "%p", netreg);
grilio_queue_cancel_all(nd->q, FALSE);
ofono_netreg_set_data(netreg, NULL);
if (nd->timer_id > 0) {
g_source_remove(nd->timer_id);
}
if (nd->notify_id) {
g_source_remove(nd->notify_id);
}
if (nd->current_operator_id) {
g_source_remove(nd->current_operator_id);
}
ofono_watch_unref(nd->watch);
ril_network_remove_all_handlers(nd->network, nd->network_event_id);
ril_network_unref(nd->network);
ril_vendor_unref(nd->vendor);
grilio_channel_remove_all_handlers(nd->io, nd->ril_event_id);
grilio_channel_unref(nd->io);
grilio_queue_unref(nd->q);
g_free(nd->log_prefix);
g_free(nd);
}
const struct ofono_netreg_driver ril_netreg_driver = {
.name = RILMODEM_DRIVER,
.probe = ril_netreg_probe,
.remove = ril_netreg_remove,
.registration_status = ril_netreg_registration_status,
.current_operator = ril_netreg_current_operator,
.list_operators = ril_netreg_list_operators,
.register_auto = ril_netreg_register_auto,
.register_manual = ril_netreg_register_manual,
.strength = ril_netreg_strength
};
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,34 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_NETREG_H
#define RIL_NETREG_H
#include "ril_types.h"
#include <ofono/netreg.h>
enum ofono_netreg_status ril_netreg_check_if_really_roaming
(struct ofono_netreg *reg, enum ofono_netreg_status status);
#endif /* RIL_NETREG_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
* Copyright (C) 2020 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_NETWORK_H
#define RIL_NETWORK_H
#include "ril_types.h"
#include <ofono/netreg.h>
#include <glib-object.h>
struct ofono_network_operator;
struct ril_radio_caps;
struct ril_registration_state {
enum ofono_netreg_status status;
enum ofono_access_technology access_tech;
int ril_tech;
int max_calls;
int lac;
int ci;
};
struct ril_network {
GObject object;
struct ril_network_priv *priv;
struct ril_registration_state voice;
struct ril_registration_state data;
const struct ofono_network_operator *operator;
enum ofono_radio_access_mode pref_mode;
enum ofono_radio_access_mode max_pref_mode;
struct ril_sim_settings *settings;
};
typedef void (*ril_network_cb_t)(struct ril_network *net, void *arg);
struct ril_network *ril_network_new(const char *path, GRilIoChannel *io,
const char *log_prefix, struct ril_radio *radio,
struct ril_sim_card *sim_card,
struct ril_sim_settings *settings,
const struct ril_slot_config *ril_slot_config,
struct ril_vendor *vendor);
struct ril_network *ril_network_ref(struct ril_network *net);
void ril_network_unref(struct ril_network *net);
void ril_network_set_radio_caps(struct ril_network *net,
struct ril_radio_caps *caps);
void ril_network_set_max_pref_mode(struct ril_network *net,
enum ofono_radio_access_mode max_pref_mode,
gboolean force_check);
enum ofono_radio_access_mode ril_network_max_supported_mode
(struct ril_network *self);
void ril_network_query_registration_state(struct ril_network *net);
gulong ril_network_add_operator_changed_handler(struct ril_network *net,
ril_network_cb_t cb, void *arg);
gulong ril_network_add_voice_state_changed_handler(struct ril_network *net,
ril_network_cb_t cb, void *arg);
gulong ril_network_add_data_state_changed_handler(struct ril_network *net,
ril_network_cb_t cb, void *arg);
gulong ril_network_add_pref_mode_changed_handler(struct ril_network *net,
ril_network_cb_t cb, void *arg);
void ril_network_remove_handler(struct ril_network *net, gulong id);
void ril_network_remove_handlers(struct ril_network *net, gulong *ids, int n);
#define ril_network_remove_all_handlers(net, ids) \
ril_network_remove_handlers(net, ids, G_N_ELEMENTS(ids))
#endif /* RIL_NETWORK_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
* Copyright (C) 2020 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_plugin.h"
#include "ril_util.h"
#include "ril_log.h"
#include <ofono/gdbus.h>
#include <ofono/dbus.h>
#include <ofono/dbus-access.h>
#define RIL_OEM_RAW_INTERFACE "org.ofono.OemRaw"
#define RIL_OEM_RAW_TIMEOUT (60*1000) /* 60 sec */
struct ril_oem_raw {
GRilIoQueue *q;
DBusConnection *conn;
char *path;
char *log_prefix;
};
#define DBG_(oem,fmt,args...) DBG("%s" fmt, (oem)->log_prefix, ##args)
static void ril_oem_raw_send_done(void *msg)
{
dbus_message_unref(msg);
}
static void ril_oem_raw_send_cb(GRilIoChannel *io, int ril_status,
const void *data, guint len, void *user_data)
{
DBusMessage *msg = user_data;
DBusMessage *reply;
if (ril_status == RIL_E_SUCCESS) {
DBusMessageIter it, array;
reply = dbus_message_new_method_return(msg);
dbus_message_iter_init_append(reply, &it);
dbus_message_iter_open_container(&it, DBUS_TYPE_ARRAY,
DBUS_TYPE_BYTE_AS_STRING, &array);
dbus_message_iter_append_fixed_array(&array, DBUS_TYPE_BYTE,
&data, len);
dbus_message_iter_close_container(&it, &array);
} else if (ril_status == GRILIO_STATUS_TIMEOUT) {
DBG("Timed out");
reply = ofono_dbus_error_timed_out(msg);
} else {
DBG("Error %s", ril_error_to_string(ril_status));
reply = ofono_dbus_error_failed(msg);
}
g_dbus_send_message(ofono_dbus_get_connection(), reply);
}
static DBusMessage *ril_oem_raw_send(DBusConnection *conn, DBusMessage *msg,
void *user_data)
{
DBusMessageIter it;
struct ril_oem_raw *oem = user_data;
if (!ofono_dbus_access_method_allowed(dbus_message_get_sender(msg),
OFONO_DBUS_ACCESS_INTF_OEMRAW,
OFONO_DBUS_ACCESS_OEMRAW_SEND, NULL)) {
return ofono_dbus_error_access_denied(msg);
}
dbus_message_iter_init(msg, &it);
if (dbus_message_iter_get_arg_type(&it) == DBUS_TYPE_ARRAY &&
dbus_message_iter_get_element_type(&it) == DBUS_TYPE_BYTE) {
char *data;
int data_len;
DBusMessageIter array;
GRilIoRequest *req;
/* Fetch the data */
dbus_message_iter_recurse(&it, &array);
dbus_message_iter_get_fixed_array(&array, &data, &data_len);
DBG_(oem, "%d bytes", data_len);
/*
* And forward it to rild. Set a timeout because rild may
* never respond to invalid requests.
*/
req = grilio_request_sized_new(data_len);
grilio_request_set_timeout(req, RIL_OEM_RAW_TIMEOUT);
grilio_request_append_bytes(req, data, data_len);
grilio_queue_send_request_full(oem->q, req,
RIL_REQUEST_OEM_HOOK_RAW, ril_oem_raw_send_cb,
ril_oem_raw_send_done, dbus_message_ref(msg));
grilio_request_unref(req);
return NULL;
} else {
DBG_(oem, "Unexpected signature");
return ofono_dbus_error_invalid_args(msg);
}
}
static const GDBusMethodTable ril_oem_raw_methods[] = {
{ GDBUS_ASYNC_METHOD("Send",
GDBUS_ARGS({ "request", "ay" }),
GDBUS_ARGS({ "response", "ay" }),
ril_oem_raw_send) },
{ }
};
struct ril_oem_raw *ril_oem_raw_new(struct ril_modem *modem,
const char *log_prefix)
{
struct ril_oem_raw *oem = g_new0(struct ril_oem_raw, 1);
DBG("%s", ril_modem_get_path(modem));
oem->path = g_strdup(ril_modem_get_path(modem));
oem->conn = dbus_connection_ref(ofono_dbus_get_connection());
oem->q = grilio_queue_new(ril_modem_io(modem));
oem->log_prefix = (log_prefix && log_prefix[0]) ?
g_strconcat(log_prefix, " ", NULL) : g_strdup("");
/* Register D-Bus interface */
if (g_dbus_register_interface(oem->conn, oem->path,
RIL_OEM_RAW_INTERFACE, ril_oem_raw_methods,
NULL, NULL, oem, NULL)) {
ofono_modem_add_interface(modem->ofono, RIL_OEM_RAW_INTERFACE);
return oem;
} else {
ofono_error("OemRaw D-Bus register failed");
ril_oem_raw_free(oem);
return NULL;
}
}
void ril_oem_raw_free(struct ril_oem_raw *oem)
{
if (oem) {
DBG("%s", oem->path);
g_dbus_unregister_interface(oem->conn, oem->path,
RIL_OEM_RAW_INTERFACE);
dbus_connection_unref(oem->conn);
grilio_queue_cancel_all(oem->q, TRUE);
grilio_queue_unref(oem->q);
g_free(oem->log_prefix);
g_free(oem->path);
g_free(oem);
}
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
* Copyright (C) 2019 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_PLUGIN_H
#define RIL_PLUGIN_H
#include "ril_types.h"
#include <ofono/modem.h>
#include <ofono/call-barring.h>
#include <ofono/call-forwarding.h>
#include <ofono/call-settings.h>
#include <ofono/call-volume.h>
#include <ofono/cbs.h>
#include <ofono/devinfo.h>
#include <ofono/gprs-context.h>
#include <ofono/gprs.h>
#include <ofono/netreg.h>
#include <ofono/phonebook.h>
#include <ofono/radio-settings.h>
#include <ofono/sim.h>
#include <ofono/sms.h>
#include <ofono/stk.h>
#include <ofono/ussd.h>
#include <ofono/voicecall.h>
#include <ofono/netmon.h>
#include <grilio_queue.h>
#include <grilio_request.h>
#include <grilio_parser.h>
#define RILMODEM_DRIVER "ril"
struct ril_modem {
GRilIoChannel *io;
const char *imei;
const char *imeisv;
const char *log_prefix;
const char *ecclist_file;
struct ofono_modem *ofono;
struct ofono_cell_info *cell_info;
struct ril_vendor *vendor;
struct ril_radio *radio;
struct ril_data *data;
struct ril_network *network;
struct ril_sim_card *sim_card;
struct ril_sim_settings *sim_settings;
struct ril_slot_config config;
};
struct ril_oem_raw;
struct ril_oem_raw *ril_oem_raw_new(struct ril_modem *modem,
const char *log_prefix);
void ril_oem_raw_free(struct ril_oem_raw *raw);
struct ril_modem *ril_modem_create(GRilIoChannel *io, const char *log_prefix,
const char *path, const char *imei, const char *imeisv,
const char *ecclist_file, const struct ril_slot_config *config,
struct ril_radio *radio, struct ril_network *network,
struct ril_sim_card *card, struct ril_data *data,
struct ril_sim_settings *settings, struct ril_vendor *vendor,
struct ofono_cell_info *cell_info);
void ril_modem_delete(struct ril_modem *modem);
struct ofono_sim *ril_modem_ofono_sim(struct ril_modem *modem);
struct ofono_gprs *ril_modem_ofono_gprs(struct ril_modem *modem);
struct ofono_netreg *ril_modem_ofono_netreg(struct ril_modem *modem);
#define ril_modem_get_path(modem) ofono_modem_get_path((modem)->ofono)
#define ril_modem_4g_enabled(modem) ((modem)->config.enable_4g)
#define ril_modem_slot(modem) ((modem)->config.slot)
#define ril_modem_io(modem) ((modem)->io)
int ril_sim_app_type(struct ofono_sim *sim);
extern const struct ofono_call_barring_driver ril_call_barring_driver;
extern const struct ofono_call_forwarding_driver ril_call_forwarding_driver;
extern const struct ofono_call_settings_driver ril_call_settings_driver;
extern const struct ofono_call_volume_driver ril_call_volume_driver;
extern const struct ofono_cbs_driver ril_cbs_driver;
extern const struct ofono_devinfo_driver ril_devinfo_driver;
extern const struct ofono_gprs_context_driver ril_gprs_context_driver;
extern const struct ofono_gprs_driver ril_gprs_driver;
extern const struct ofono_modem_driver ril_modem_driver;
extern const struct ofono_netreg_driver ril_netreg_driver;
extern const struct ofono_phonebook_driver ril_phonebook_driver;
extern const struct ofono_radio_settings_driver ril_radio_settings_driver;
extern const struct ofono_sim_driver ril_sim_driver;
extern const struct ofono_sms_driver ril_sms_driver;
extern const struct ofono_stk_driver ril_stk_driver;
extern const struct ofono_ussd_driver ril_ussd_driver;
extern const struct ofono_voicecall_driver ril_voicecall_driver;
extern const struct ofono_netmon_driver ril_netmon_driver;
#endif /* RIL_PLUGIN_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2020 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#define GLIB_DISABLE_DEPRECATION_WARNINGS
#include "ril_radio.h"
#include "ril_util.h"
#include "ril_log.h"
#include <grilio_queue.h>
#include <grilio_request.h>
#include <grilio_parser.h>
#include <gutil_misc.h>
typedef GObjectClass RilRadioClass;
typedef struct ril_radio RilRadio;
/*
* Object states:
*
* 1. Idle (!pending && !retry)
* 2. Power on/off request pending (pending)
* 3. Power on retry has been scheduled (retry)
*/
struct ril_radio_priv {
GRilIoChannel *io;
GRilIoQueue *q;
gulong state_event_id;
char *log_prefix;
GHashTable *req_table;
guint pending_id;
guint retry_id;
guint state_changed_while_request_pending;
enum ril_radio_state last_known_state;
gboolean power_cycle;
gboolean next_state_valid;
gboolean next_state;
};
enum ril_radio_signal {
SIGNAL_STATE_CHANGED,
SIGNAL_ONLINE_CHANGED,
SIGNAL_COUNT
};
#define POWER_RETRY_SECS (1)
#define SIGNAL_STATE_CHANGED_NAME "ril-radio-state-changed"
#define SIGNAL_ONLINE_CHANGED_NAME "ril-radio-online-changed"
static guint ril_radio_signals[SIGNAL_COUNT] = { 0 };
#define NEW_SIGNAL(klass,name) \
ril_radio_signals[SIGNAL_##name##_CHANGED] = \
g_signal_new(SIGNAL_##name##_CHANGED_NAME, \
G_OBJECT_CLASS_TYPE(klass), G_SIGNAL_RUN_FIRST, \
0, NULL, NULL, NULL, G_TYPE_NONE, 0)
G_DEFINE_TYPE(RilRadio, ril_radio, G_TYPE_OBJECT)
#define RIL_RADIO_TYPE (ril_radio_get_type())
#define RIL_RADIO(obj) (G_TYPE_CHECK_INSTANCE_CAST(obj,RIL_RADIO_TYPE,RilRadio))
#define DBG_(self,fmt,args...) DBG("%s" fmt, (self)->priv->log_prefix, ##args)
static void ril_radio_submit_power_request(struct ril_radio *self, gboolean on);
static inline gboolean ril_radio_power_should_be_on(struct ril_radio *self)
{
struct ril_radio_priv *priv = self->priv;
return (self->online || g_hash_table_size(priv->req_table) > 0) &&
!priv->power_cycle;
}
static inline gboolean ril_radio_state_off(enum ril_radio_state radio_state)
{
return radio_state == RADIO_STATE_OFF;
}
static inline gboolean ril_radio_state_on(enum ril_radio_state radio_state)
{
return !ril_radio_state_off(radio_state);
}
static inline void ril_radio_emit_signal(struct ril_radio *self,
enum ril_radio_signal id)
{
g_signal_emit(self, ril_radio_signals[id], 0);
}
static gboolean ril_radio_power_request_retry_cb(gpointer user_data)
{
struct ril_radio *self = RIL_RADIO(user_data);
struct ril_radio_priv *priv = self->priv;
DBG_(self, "");
GASSERT(priv->retry_id);
priv->retry_id = 0;
ril_radio_submit_power_request(self,
ril_radio_power_should_be_on(self));
return G_SOURCE_REMOVE;
}
static void ril_radio_cancel_retry(struct ril_radio *self)
{
struct ril_radio_priv *priv = self->priv;
if (priv->retry_id) {
DBG_(self, "retry cancelled");
g_source_remove(priv->retry_id);
priv->retry_id = 0;
}
}
static void ril_radio_check_state(struct ril_radio *self)
{
struct ril_radio_priv *priv = self->priv;
if (!priv->pending_id) {
gboolean should_be_on = ril_radio_power_should_be_on(self);
if (ril_radio_state_on(priv->last_known_state) ==
should_be_on) {
/* All is good, cancel pending retry if there is one */
ril_radio_cancel_retry(self);
} else if (priv->state_changed_while_request_pending) {
/* Hmm... RIL's reaction was inadequate, repeat */
ril_radio_submit_power_request(self, should_be_on);
} else if (!priv->retry_id) {
/* There has been no reaction so far, wait a bit */
DBG_(self, "retry scheduled");
priv->retry_id = g_timeout_add_seconds(POWER_RETRY_SECS,
ril_radio_power_request_retry_cb, self);
}
}
/* Don't update public state while something is pending */
if (!priv->pending_id && !priv->retry_id &&
self->state != priv->last_known_state) {
DBG_(self, "%s -> %s", ril_radio_state_to_string(self->state),
ril_radio_state_to_string(priv->last_known_state));
self->state = priv->last_known_state;
ril_radio_emit_signal(self, SIGNAL_STATE_CHANGED);
}
}
static void ril_radio_power_request_done(struct ril_radio *self)
{
struct ril_radio_priv *priv = self->priv;
GASSERT(priv->pending_id);
priv->pending_id = 0;
if (priv->next_state_valid) {
ril_radio_submit_power_request(self, priv->next_state);
} else {
ril_radio_check_state(self);
}
}
static void ril_radio_power_request_cb(GRilIoChannel *channel, int ril_status,
const void *data, guint len, void *user_data)
{
struct ril_radio *self = RIL_RADIO(user_data);
if (ril_status != RIL_E_SUCCESS) {
ofono_error("Power request failed: %s",
ril_error_to_string(ril_status));
}
ril_radio_power_request_done(self);
}
static void ril_radio_submit_power_request(struct ril_radio *self, gboolean on)
{
/*
* RIL_REQUEST_RADIO_POWER
*
* "data" is int *
* ((int *)data)[0] is > 0 for "Radio On"
* ((int *)data)[0] is == 0 for "Radio Off"
*
* "response" is NULL
**/
GRilIoRequest *req = grilio_request_array_int32_new(1, on);
struct ril_radio_priv *priv = self->priv;
priv->next_state_valid = FALSE;
priv->next_state = on;
priv->state_changed_while_request_pending = 0;
ril_radio_cancel_retry(self);
GASSERT(!priv->pending_id);
grilio_request_set_blocking(req, TRUE);
priv->pending_id = grilio_queue_send_request_full(priv->q, req,
RIL_REQUEST_RADIO_POWER, ril_radio_power_request_cb,
NULL, self);
grilio_request_unref(req);
}
static void ril_radio_power_request(struct ril_radio *self, gboolean on,
gboolean allow_repeat)
{
struct ril_radio_priv *priv = self->priv;
const char *on_off = on ? "on" : "off";
if (priv->pending_id) {
if (allow_repeat || priv->next_state != on) {
/* Wait for the pending request to complete */
priv->next_state_valid = TRUE;
priv->next_state = on;
DBG_(self, "%s (queued)", on_off);
} else {
DBG_(self, "%s (ignored)", on_off);
}
} else {
if (ril_radio_state_on(priv->last_known_state) == on) {
DBG_(self, "%s (already)", on_off);
ril_radio_check_state(self);
} else {
DBG_(self, "%s", on_off);
ril_radio_submit_power_request(self, on);
}
}
}
void ril_radio_confirm_power_on(struct ril_radio *self)
{
if (G_LIKELY(self) && ril_radio_power_should_be_on(self)) {
struct ril_radio_priv *priv = self->priv;
if (priv->pending_id) {
if (!priv->next_state) {
/* Wait for the pending request to complete */
priv->next_state_valid = TRUE;
priv->next_state = TRUE;
DBG_(self, "on (queued)");
}
} else {
DBG_(self, "on");
ril_radio_submit_power_request(self, TRUE);
}
}
}
void ril_radio_power_cycle(struct ril_radio *self)
{
if (G_LIKELY(self)) {
struct ril_radio_priv *priv = self->priv;
if (ril_radio_state_off(priv->last_known_state)) {
DBG_(self, "power is already off");
GASSERT(!priv->power_cycle);
} else if (priv->power_cycle) {
DBG_(self, "already in progress");
} else {
DBG_(self, "initiated");
priv->power_cycle = TRUE;
if (!priv->pending_id) {
ril_radio_submit_power_request(self, FALSE);
}
}
}
}
void ril_radio_power_on(struct ril_radio *self, gpointer tag)
{
if (G_LIKELY(self)) {
struct ril_radio_priv *priv = self->priv;
if (!g_hash_table_contains(priv->req_table, tag)) {
gboolean was_on = ril_radio_power_should_be_on(self);
DBG_(self, "%p", tag);
g_hash_table_insert(priv->req_table, tag, tag);
if (!was_on && ril_radio_power_should_be_on(self)) {
ril_radio_power_request(self, TRUE, FALSE);
}
}
}
}
void ril_radio_power_off(struct ril_radio *self, gpointer tag)
{
if (G_LIKELY(self)) {
struct ril_radio_priv *priv = self->priv;
if (g_hash_table_remove(priv->req_table, tag)) {
DBG_(self, "%p", tag);
if (!ril_radio_power_should_be_on(self)) {
/* The last one turns the lights off */
ril_radio_power_request(self, FALSE, FALSE);
}
}
}
}
void ril_radio_set_online(struct ril_radio *self, gboolean online)
{
if (G_LIKELY(self) && self->online != online) {
gboolean on, was_on = ril_radio_power_should_be_on(self);
self->online = online;
on = ril_radio_power_should_be_on(self);
if (was_on != on) {
ril_radio_power_request(self, on, FALSE);
}
ril_radio_emit_signal(self, SIGNAL_ONLINE_CHANGED);
}
}
gulong ril_radio_add_state_changed_handler(struct ril_radio *self,
ril_radio_cb_t cb, void *arg)
{
return (G_LIKELY(self) && G_LIKELY(cb)) ? g_signal_connect(self,
SIGNAL_STATE_CHANGED_NAME, G_CALLBACK(cb), arg) : 0;
}
gulong ril_radio_add_online_changed_handler(struct ril_radio *self,
ril_radio_cb_t cb, void *arg)
{
return (G_LIKELY(self) && G_LIKELY(cb)) ? g_signal_connect(self,
SIGNAL_ONLINE_CHANGED_NAME, G_CALLBACK(cb), arg) : 0;
}
void ril_radio_remove_handler(struct ril_radio *self, gulong id)
{
if (G_LIKELY(self) && G_LIKELY(id)) {
g_signal_handler_disconnect(self, id);
}
}
void ril_radio_remove_handlers(struct ril_radio *self, gulong *ids, int count)
{
gutil_disconnect_handlers(self, ids, count);
}
enum ril_radio_state ril_radio_state_parse(const void *data, guint len)
{
GRilIoParser rilp;
int radio_state;
grilio_parser_init(&rilp, data, len);
if (grilio_parser_get_int32(&rilp, &radio_state)) {
return radio_state;
} else {
ofono_error("Error parsing radio state");
return RADIO_STATE_UNAVAILABLE;
}
}
static void ril_radio_state_changed(GRilIoChannel *io, guint code,
const void *data, guint len, void *user_data)
{
struct ril_radio *self = RIL_RADIO(user_data);
enum ril_radio_state radio_state = ril_radio_state_parse(data, len);
GASSERT(code == RIL_UNSOL_RESPONSE_RADIO_STATE_CHANGED);
if (radio_state != RADIO_STATE_UNAVAILABLE) {
struct ril_radio_priv *priv = self->priv;
DBG_(self, "%s", ril_radio_state_to_string(radio_state));
GASSERT(!priv->pending_id || !priv->retry_id);
if (priv->power_cycle && ril_radio_state_off(radio_state)) {
DBG_(self, "switched off for power cycle");
priv->power_cycle = FALSE;
}
priv->last_known_state = radio_state;
if (priv->pending_id) {
if (ril_radio_state_on(radio_state) ==
ril_radio_power_should_be_on(self)) {
DBG_(self, "dropping pending request");
/*
* All right, the modem has switched to the
* desired state, drop the request.
*/
grilio_queue_cancel_request(priv->q,
priv->pending_id, FALSE);
/*
* This will zero pending_id and call
* ril_radio_check_state() if necesary:
*/
ril_radio_power_request_done(self);
/* We are done */
return;
} else {
/* Something weird is going on */
priv->state_changed_while_request_pending++;
}
}
ril_radio_check_state(self);
}
}
struct ril_radio *ril_radio_new(GRilIoChannel *io)
{
struct ril_radio *self = g_object_new(RIL_RADIO_TYPE, NULL);
struct ril_radio_priv *priv = self->priv;
priv->io = grilio_channel_ref(io);
priv->q = grilio_queue_new(priv->io);
priv->log_prefix =
(io && io->name && io->name[0] && strcmp(io->name, "RIL")) ?
g_strconcat(io->name, " ", NULL) : g_strdup("");
DBG_(self, "");
priv->state_event_id = grilio_channel_add_unsol_event_handler(priv->io,
ril_radio_state_changed,
RIL_UNSOL_RESPONSE_RADIO_STATE_CHANGED, self);
/*
* Some RILs like to receive power off request at startup even if
* radio is already off. Make those happy.
*/
ril_radio_submit_power_request(self, FALSE);
return self;
}
struct ril_radio *ril_radio_ref(struct ril_radio *self)
{
if (G_LIKELY(self)) {
g_object_ref(RIL_RADIO(self));
return self;
} else {
return NULL;
}
}
void ril_radio_unref(struct ril_radio *self)
{
if (G_LIKELY(self)) {
g_object_unref(RIL_RADIO(self));
}
}
static void ril_radio_init(struct ril_radio *self)
{
struct ril_radio_priv *priv = G_TYPE_INSTANCE_GET_PRIVATE(self,
RIL_RADIO_TYPE, struct ril_radio_priv);
self->priv = priv;
priv->req_table = g_hash_table_new_full(g_direct_hash, g_direct_equal,
NULL, NULL);
}
static void ril_radio_dispose(GObject *object)
{
struct ril_radio *self = RIL_RADIO(object);
struct ril_radio_priv *priv = self->priv;
if (priv->state_event_id) {
grilio_channel_remove_handler(priv->io, priv->state_event_id);
priv->state_event_id = 0;
}
if (priv->pending_id) {
grilio_queue_cancel_request(priv->q, priv->pending_id, FALSE);
priv->pending_id = 0;
}
priv->next_state_valid = FALSE;
ril_radio_cancel_retry(self);
grilio_queue_cancel_all(priv->q, FALSE);
G_OBJECT_CLASS(ril_radio_parent_class)->dispose(object);
}
static void ril_radio_finalize(GObject *object)
{
struct ril_radio *self = RIL_RADIO(object);
struct ril_radio_priv *priv = self->priv;
DBG_(self, "");
g_free(priv->log_prefix);
grilio_channel_unref(priv->io);
grilio_queue_unref(priv->q);
g_hash_table_unref(priv->req_table);
G_OBJECT_CLASS(ril_radio_parent_class)->finalize(object);
}
static void ril_radio_class_init(RilRadioClass *klass)
{
GObjectClass *object_class = G_OBJECT_CLASS(klass);
object_class->dispose = ril_radio_dispose;
object_class->finalize = ril_radio_finalize;
g_type_class_add_private(klass, sizeof(struct ril_radio_priv));
NEW_SIGNAL(klass, STATE);
NEW_SIGNAL(klass, ONLINE);
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,60 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2018 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_RADIO_H
#define RIL_RADIO_H
#include "ril_types.h"
#include <glib-object.h>
struct ril_radio {
GObject object;
struct ril_radio_priv *priv;
enum ril_radio_state state;
gboolean online;
};
typedef void (*ril_radio_cb_t)(struct ril_radio *radio, void *arg);
struct ril_radio *ril_radio_new(GRilIoChannel *io);
struct ril_radio *ril_radio_ref(struct ril_radio *radio);
void ril_radio_unref(struct ril_radio *radio);
void ril_radio_power_on(struct ril_radio *radio, gpointer tag);
void ril_radio_power_off(struct ril_radio *radio, gpointer tag);
void ril_radio_power_cycle(struct ril_radio *radio);
void ril_radio_confirm_power_on(struct ril_radio *radio);
void ril_radio_set_online(struct ril_radio *radio, gboolean online);
gulong ril_radio_add_state_changed_handler(struct ril_radio *radio,
ril_radio_cb_t cb, void *arg);
gulong ril_radio_add_online_changed_handler(struct ril_radio *radio,
ril_radio_cb_t cb, void *arg);
void ril_radio_remove_handler(struct ril_radio *radio, gulong id);
void ril_radio_remove_handlers(struct ril_radio *radio, gulong *ids, int n);
enum ril_radio_state ril_radio_state_parse(const void *data, guint len);
#define ril_radio_remove_all_handlers(r,ids) \
ril_radio_remove_handlers(r, ids, G_N_ELEMENTS(ids))
#endif /* RIL_RADIO_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,96 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2017-2020 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_RADIO_CAPS_H
#define RIL_RADIO_CAPS_H
#include "ril_types.h"
struct ril_data_manager;
struct ril_sim_settings;
struct ril_radio_caps;
struct ril_radio_caps_manager;
struct ril_radio_capability;
struct ril_radio_caps_request;
typedef void (*ril_radio_caps_cb_t)(struct ril_radio_caps *caps, void *arg);
typedef void (*ril_radio_caps_manager_cb_t)(struct ril_radio_caps_manager *mgr,
void *user_data);
/* ril_radio_capability pointer is NULL if functionality is unsupported */
typedef void (*ril_radio_caps_check_cb_t)
(const struct ril_radio_capability *cap, void *user_data);
/* The check can be cancelled with grilio_channel_cancel_request */
guint ril_radio_caps_check(GRilIoChannel *io, ril_radio_caps_check_cb_t cb,
void *user_data);
/* There should be a single ril_radio_caps_manager shared by all all modems */
struct ril_radio_caps_manager *ril_radio_caps_manager_new
(struct ril_data_manager *dm);
struct ril_radio_caps_manager *ril_radio_caps_manager_ref
(struct ril_radio_caps_manager *mgr);
void ril_radio_caps_manager_unref(struct ril_radio_caps_manager *mgr);
gulong ril_radio_caps_manager_add_tx_aborted_handler
(struct ril_radio_caps_manager *mgr,
ril_radio_caps_manager_cb_t cb, void *arg);
gulong ril_radio_caps_manager_add_tx_done_handler
(struct ril_radio_caps_manager *mgr,
ril_radio_caps_manager_cb_t cb, void *arg);
void ril_radio_caps_manager_remove_handler(struct ril_radio_caps_manager *mgr,
gulong id);
void ril_radio_caps_manager_remove_handlers(struct ril_radio_caps_manager *mgr,
gulong *ids, int count);
#define ril_radio_caps_manager_remove_all_handlers(mgr, ids) \
ril_radio_caps_manager_remove_handlers(mgr, ids, G_N_ELEMENTS(ids))
/* And one ril_radio_caps object per modem */
struct ril_radio_caps {
struct ril_radio_caps_manager *mgr;
enum ofono_radio_access_mode supported_modes;
};
struct ril_radio_caps *ril_radio_caps_new(struct ril_radio_caps_manager *mgr,
const char *log_prefix, GRilIoChannel *io,
struct ofono_watch *watch,
struct ril_data *data, struct ril_radio *radio,
struct ril_sim_card *sim, struct ril_sim_settings *settings,
const struct ril_slot_config *config,
const struct ril_radio_capability *cap);
struct ril_radio_caps *ril_radio_caps_ref(struct ril_radio_caps *caps);
void ril_radio_caps_unref(struct ril_radio_caps *caps);
void ril_radio_caps_drop(struct ril_radio_caps *caps);
gulong ril_radio_caps_add_supported_modes_handler
(struct ril_radio_caps *caps,
ril_radio_caps_cb_t cb, void *arg);
void ril_radio_caps_remove_handler(struct ril_radio_caps *caps, gulong id);
/* Data requests */
struct ril_radio_caps_request *ril_radio_caps_request_new
(struct ril_radio_caps *caps, enum ofono_radio_access_mode mode,
enum ril_data_role role);
void ril_radio_caps_request_free(struct ril_radio_caps_request *req);
#endif /* RIL_RADIO_CAPS_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,194 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2017 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_plugin.h"
#include "ril_sim_settings.h"
#include "ril_util.h"
#include "ril_log.h"
struct ril_radio_settings {
struct ofono_radio_settings *rs;
struct ril_sim_settings *settings;
const char *log_prefix;
char *allocated_log_prefix;
guint source_id;
};
struct ril_radio_settings_cbd {
struct ril_radio_settings *rsd;
union _ofono_radio_settings_cb {
ofono_radio_settings_rat_mode_set_cb_t rat_mode_set;
ofono_radio_settings_rat_mode_query_cb_t rat_mode_query;
ofono_radio_settings_available_rats_query_cb_t available_rats;
gpointer ptr;
} cb;
gpointer data;
};
#define DBG_(rsd,fmt,args...) DBG("%s" fmt, (rsd)->log_prefix, ##args)
static inline struct ril_radio_settings *ril_radio_settings_get_data(
struct ofono_radio_settings *rs)
{
return ofono_radio_settings_get_data(rs);
}
static void ril_radio_settings_later(struct ril_radio_settings *rsd,
GSourceFunc fn, void *cb, void *data)
{
struct ril_radio_settings_cbd *cbd;
cbd = g_new0(struct ril_radio_settings_cbd, 1);
cbd->rsd = rsd;
cbd->cb.ptr = cb;
cbd->data = data;
GASSERT(!rsd->source_id);
rsd->source_id = g_idle_add_full(G_PRIORITY_DEFAULT_IDLE,
fn, cbd, g_free);
}
static gboolean ril_radio_settings_set_rat_mode_cb(gpointer user_data)
{
struct ofono_error error;
struct ril_radio_settings_cbd *cbd = user_data;
struct ril_radio_settings *rsd = cbd->rsd;
GASSERT(rsd->source_id);
rsd->source_id = 0;
cbd->cb.rat_mode_set(ril_error_ok(&error), cbd->data);
return G_SOURCE_REMOVE;
}
static void ril_radio_settings_set_rat_mode(struct ofono_radio_settings *rs,
enum ofono_radio_access_mode mode,
ofono_radio_settings_rat_mode_set_cb_t cb, void *data)
{
struct ril_radio_settings *rsd = ril_radio_settings_get_data(rs);
DBG_(rsd, "%s", ofono_radio_access_mode_to_string(mode));
ril_sim_settings_set_pref_mode(rsd->settings, mode);
ril_radio_settings_later(rsd, ril_radio_settings_set_rat_mode_cb,
cb, data);
}
static gboolean ril_radio_settings_query_rat_mode_cb(gpointer user_data)
{
struct ril_radio_settings_cbd *cbd = user_data;
struct ril_radio_settings *rsd = cbd->rsd;
enum ofono_radio_access_mode mode = rsd->settings->pref_mode;
struct ofono_error error;
DBG_(rsd, "rat mode %s", ofono_radio_access_mode_to_string(mode));
GASSERT(rsd->source_id);
rsd->source_id = 0;
cbd->cb.rat_mode_query(ril_error_ok(&error), mode, cbd->data);
return G_SOURCE_REMOVE;
}
static void ril_radio_settings_query_rat_mode(struct ofono_radio_settings *rs,
ofono_radio_settings_rat_mode_query_cb_t cb, void *data)
{
struct ril_radio_settings *rsd = ril_radio_settings_get_data(rs);
DBG_(rsd, "");
ril_radio_settings_later(rsd, ril_radio_settings_query_rat_mode_cb,
cb, data);
}
static gboolean ril_radio_settings_query_available_rats_cb(gpointer data)
{
struct ofono_error error;
struct ril_radio_settings_cbd *cbd = data;
struct ril_radio_settings *rsd = cbd->rsd;
GASSERT(rsd->source_id);
rsd->source_id = 0;
cbd->cb.available_rats(ril_error_ok(&error), rsd->settings->techs,
cbd->data);
return G_SOURCE_REMOVE;
}
static void ril_radio_settings_query_available_rats(
struct ofono_radio_settings *rs,
ofono_radio_settings_available_rats_query_cb_t cb, void *data)
{
struct ril_radio_settings *rsd = ril_radio_settings_get_data(rs);
DBG_(rsd, "");
ril_radio_settings_later(rsd,
ril_radio_settings_query_available_rats_cb, cb, data);
}
static gboolean ril_radio_settings_register(gpointer user_data)
{
struct ril_radio_settings *rsd = user_data;
GASSERT(rsd->source_id);
rsd->source_id = 0;
ofono_radio_settings_register(rsd->rs);
return G_SOURCE_REMOVE;
}
static int ril_radio_settings_probe(struct ofono_radio_settings *rs,
unsigned int vendor, void *data)
{
struct ril_modem *modem = data;
struct ril_radio_settings *rsd = g_new0(struct ril_radio_settings, 1);
DBG("%s", modem->log_prefix);
rsd->rs = rs;
rsd->settings = ril_sim_settings_ref(modem->sim_settings);
rsd->source_id = g_idle_add(ril_radio_settings_register, rsd);
if (modem->log_prefix && modem->log_prefix[0]) {
rsd->log_prefix = rsd->allocated_log_prefix =
g_strconcat(modem->log_prefix, " ", NULL);
} else {
rsd->log_prefix = "";
}
ofono_radio_settings_set_data(rs, rsd);
return 0;
}
static void ril_radio_settings_remove(struct ofono_radio_settings *rs)
{
struct ril_radio_settings *rsd = ril_radio_settings_get_data(rs);
DBG_(rsd, "");
ofono_radio_settings_set_data(rs, NULL);
if (rsd->source_id) {
g_source_remove(rsd->source_id);
}
ril_sim_settings_unref(rsd->settings);
g_free(rsd->allocated_log_prefix);
g_free(rsd);
}
const struct ofono_radio_settings_driver ril_radio_settings_driver = {
.name = RILMODEM_DRIVER,
.probe = ril_radio_settings_probe,
.remove = ril_radio_settings_remove,
.query_rat_mode = ril_radio_settings_query_rat_mode,
.set_rat_mode = ril_radio_settings_set_rat_mode,
.query_available_rats = ril_radio_settings_query_available_rats
};
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2020 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#define GLIB_DISABLE_DEPRECATION_WARNINGS
#include "ril_sim_card.h"
#include "ril_radio.h"
#include "ril_util.h"
#include "ril_log.h"
#include <grilio_queue.h>
#include <grilio_request.h>
#include <grilio_parser.h>
#include <gutil_misc.h>
/*
* First we wait for USIM app to get activated by itself. If that
* doesn't happen within UICC_SUBSCRIPTION_START_MS we poke the SIM
* with SET_UICC_SUBSCRIPTION request, resubmitting it if it times out.
* If nothing happens within UICC_SUBSCRIPTION_TIMEOUT_MS we give up.
*
* Submitting SET_UICC_SUBSCRIPTION request when rild doesn't expect
* it sometimes breaks pretty much everything. Unfortunately, there no
* reliable way to find out when rild expects it and when it doesn't :/
*/
#define UICC_SUBSCRIPTION_START_MS (5000)
#define UICC_SUBSCRIPTION_TIMEOUT_MS (30000)
/* SIM I/O idle timeout is measured in the number of idle loops.
* When active SIM I/O is going on, the idle loop count very rarely
* exceeds 1 between the requests, so 10 is more than enough. Idle
* loop is actually more accurate criteria than a timeout because
* it doesn't depend that much on the system load. */
#define SIM_IO_IDLE_LOOPS (10)
typedef GObjectClass RilSimCardClass;
typedef struct ril_sim_card RilSimCard;
enum ril_sim_card_event {
EVENT_SIM_STATUS_CHANGED,
EVENT_UICC_SUBSCRIPTION_STATUS_CHANGED,
EVENT_COUNT
};
struct ril_sim_card_priv {
GRilIoChannel *io;
GRilIoQueue *q;
int flags;
guint status_req_id;
guint sub_req_id;
guint sub_start_timer;
gulong event_id[EVENT_COUNT];
guint sim_io_idle_id;
guint sim_io_idle_count;
GHashTable* sim_io_pending;
};
enum ril_sim_card_signal {
SIGNAL_STATUS_RECEIVED,
SIGNAL_STATUS_CHANGED,
SIGNAL_STATE_CHANGED,
SIGNAL_APP_CHANGED,
SIGNAL_SIM_IO_ACTIVE_CHANGED,
SIGNAL_COUNT
};
#define SIGNAL_STATUS_RECEIVED_NAME "ril-simcard-status-received"
#define SIGNAL_STATUS_CHANGED_NAME "ril-simcard-status-changed"
#define SIGNAL_STATE_CHANGED_NAME "ril-simcard-state-changed"
#define SIGNAL_APP_CHANGED_NAME "ril-simcard-app-changed"
#define SIGNAL_SIM_IO_ACTIVE_CHANGED_NAME "ril-simcard-sim-io-active-changed"
static guint ril_sim_card_signals[SIGNAL_COUNT] = { 0 };
G_DEFINE_TYPE(RilSimCard, ril_sim_card, G_TYPE_OBJECT)
#define RIL_SIMCARD_TYPE (ril_sim_card_get_type())
#define RIL_SIMCARD(obj) (G_TYPE_CHECK_INSTANCE_CAST((obj), \
RIL_SIMCARD_TYPE, RilSimCard))
#define NEW_SIGNAL(klass,name) NEW_SIGNAL_(klass,name##_CHANGED)
#define NEW_SIGNAL_(klass,name) \
ril_sim_card_signals[SIGNAL_##name] = \
g_signal_new(SIGNAL_##name##_NAME, \
G_OBJECT_CLASS_TYPE(klass), G_SIGNAL_RUN_FIRST, \
0, NULL, NULL, NULL, G_TYPE_NONE, 0)
#define RIL_SIMCARD_STATE_CHANGED (0x01)
#define RIL_SIMCARD_STATUS_CHANGED (0x02)
static gboolean ril_sim_card_app_equal(const struct ril_sim_card_app *a1,
const struct ril_sim_card_app *a2)
{
if (a1 == a2) {
return TRUE;
} else if (!a1 || !a2) {
return FALSE;
} else {
return a1->app_type == a2->app_type &&
a1->app_state == a2->app_state &&
a1->perso_substate == a2->perso_substate &&
a1->pin_replaced == a2->pin_replaced &&
a1->pin1_state == a2->pin1_state &&
a1->pin2_state == a2->pin2_state &&
!g_strcmp0(a1->aid, a2->aid) &&
!g_strcmp0(a1->label, a2->label);
}
}
static int ril_sim_card_status_compare(const struct ril_sim_card_status *s1,
const struct ril_sim_card_status *s2)
{
if (s1 == s2) {
return 0;
} else if (!s1 || !s2) {
return RIL_SIMCARD_STATE_CHANGED | RIL_SIMCARD_STATUS_CHANGED;
} else {
int diff = 0;
if (s1->card_state != s2->card_state) {
diff |= RIL_SIMCARD_STATE_CHANGED;
}
if (s1->pin_state != s2->pin_state ||
s1->gsm_umts_index != s2->gsm_umts_index ||
s1->cdma_index != s2->cdma_index ||
s1->ims_index != s2->ims_index ||
s1->num_apps != s2->num_apps) {
diff |= RIL_SIMCARD_STATUS_CHANGED;
} else {
int i;
for (i = 0; i < s1->num_apps; i++) {
if (!ril_sim_card_app_equal(s1->apps + i,
s2->apps + i)) {
diff |= RIL_SIMCARD_STATUS_CHANGED;
break;
}
}
}
return diff;
}
}
static void ril_sim_card_status_free(struct ril_sim_card_status *status)
{
if (status) {
if (status->apps) {
int i;
for (i = 0; i < status->num_apps; i++) {
g_free(status->apps[i].aid);
g_free(status->apps[i].label);
}
g_free(status->apps);
}
g_free(status);
}
}
static void ril_sim_card_tx_start(struct ril_sim_card *self)
{
struct ril_sim_card_priv *priv = self->priv;
GRILIO_TRANSACTION_STATE tx_state =
grilio_queue_transaction_state(priv->q);
if (tx_state == GRILIO_TRANSACTION_NONE) {
tx_state = grilio_queue_transaction_start(priv->q);
DBG("status tx for slot %u %s", self->slot,
(tx_state == GRILIO_TRANSACTION_STARTED) ?
"started" : "starting");
}
}
static void ril_sim_card_tx_check(struct ril_sim_card *self)
{
struct ril_sim_card_priv *priv = self->priv;
if (grilio_queue_transaction_state(priv->q) !=
GRILIO_TRANSACTION_NONE) {
const struct ril_sim_card_status *status = self->status;
if (status && status->card_state == RIL_CARDSTATE_PRESENT) {
/* Transaction (if there is any) is finished when
* both GET_SIM_STATUS and SET_UICC_SUBSCRIPTION
* complete or get dropped */
if (!priv->status_req_id && !priv->sub_req_id &&
status->gsm_umts_index >= 0 &&
status->gsm_umts_index < status->num_apps) {
DBG("status tx for slot %u finished",
self->slot);
grilio_queue_transaction_finish(priv->q);
}
} else {
DBG("status tx for slot %u cancelled", self->slot);
grilio_queue_transaction_finish(priv->q);
}
}
}
static void ril_sim_card_subscription_done(struct ril_sim_card *self)
{
struct ril_sim_card_priv *priv = self->priv;
if (priv->sub_start_timer) {
/* Don't need this timer anymore */
g_source_remove(priv->sub_start_timer);
priv->sub_start_timer = 0;
}
if (priv->sub_req_id) {
/* Some RILs never reply to SET_UICC_SUBSCRIPTION requst,
* so we better drop rather than cancel it (so that it gets
* removed from the list of pending requests) */
grilio_channel_drop_request(priv->io, priv->sub_req_id);
priv->sub_req_id = 0;
}
ril_sim_card_tx_check(self);
}
static void ril_sim_card_subscribe_cb(GRilIoChannel* io, int status,
const void* data, guint len, void* user_data)
{
struct ril_sim_card *self = RIL_SIMCARD(user_data);
struct ril_sim_card_priv *priv = self->priv;
GASSERT(status == GRILIO_STATUS_OK);
GASSERT(priv->sub_req_id);
priv->sub_req_id = 0;
DBG("UICC subscription OK for slot %u", self->slot);
ril_sim_card_subscription_done(self);
}
static void ril_sim_card_subscribe(struct ril_sim_card *self, int app_index)
{
struct ril_sim_card_priv *priv = self->priv;
GRilIoRequest *req = grilio_request_sized_new(16);
const guint sub_id = self->slot;
guint code;
DBG("%u,%d,%u", self->slot, app_index, sub_id);
grilio_request_append_int32(req, self->slot);
grilio_request_append_int32(req, app_index);
grilio_request_append_int32(req, sub_id);
grilio_request_append_int32(req, RIL_UICC_SUBSCRIPTION_ACTIVATE);
grilio_request_set_retry(req, 0, -1);
grilio_request_set_timeout(req, UICC_SUBSCRIPTION_TIMEOUT_MS);
code = (priv->io->ril_version <= 9 &&
(priv->flags & RIL_SIM_CARD_V9_UICC_SUBSCRIPTION_WORKAROUND)) ?
RIL_REQUEST_V9_SET_UICC_SUBSCRIPTION :
RIL_REQUEST_SET_UICC_SUBSCRIPTION;
if (priv->sub_req_id) {
/* Some RILs never reply to SET_UICC_SUBSCRIPTION requst,
* so we better drop rather than cancel it (so that it gets
* removed from the list of pending requests) */
grilio_channel_drop_request(priv->io, priv->sub_req_id);
}
/* Don't allow any requests other that GET_SIM_STATUS until
* we are done with the subscription */
ril_sim_card_tx_start(self);
priv->sub_req_id = grilio_queue_send_request_full(priv->q,
req, code, ril_sim_card_subscribe_cb, NULL, self);
grilio_request_unref(req);
}
static int ril_sim_card_select_app(const struct ril_sim_card_status *status)
{
int i, selected_app = -1;
for (i = 0; i < status->num_apps; i++) {
const int type = status->apps[i].app_type;
if (type == RIL_APPTYPE_USIM || type == RIL_APPTYPE_RUIM) {
selected_app = i;
break;
} else if (type != RIL_APPTYPE_UNKNOWN && selected_app == -1) {
selected_app = i;
}
}
DBG("%d", selected_app);
return selected_app;
}
static void ril_sim_card_update_app(struct ril_sim_card *self)
{
const struct ril_sim_card_app *old_app = self->app;
const struct ril_sim_card_status *status = self->status;
int app_index;
if (status->card_state == RIL_CARDSTATE_PRESENT) {
if (status->gsm_umts_index >= 0 &&
status->gsm_umts_index < status->num_apps) {
app_index = status->gsm_umts_index;
ril_sim_card_subscription_done(self);
} else {
app_index = ril_sim_card_select_app(status);
if (app_index >= 0 && !self->priv->sub_start_timer) {
ril_sim_card_subscribe(self, app_index);
}
}
} else {
app_index = -1;
ril_sim_card_subscription_done(self);
}
if (app_index >= 0 &&
status->apps[app_index].app_type != RIL_APPTYPE_UNKNOWN) {
self->app = status->apps + app_index;
} else {
self->app = NULL;
}
if (!ril_sim_card_app_equal(old_app, self->app)) {
g_signal_emit(self, ril_sim_card_signals
[SIGNAL_APP_CHANGED], 0);
}
}
static gboolean ril_sim_card_sub_start_timeout(gpointer user_data)
{
struct ril_sim_card *self = RIL_SIMCARD(user_data);
struct ril_sim_card_priv *priv = self->priv;
DBG("%u", self->slot);
GASSERT(priv->sub_start_timer);
priv->sub_start_timer = 0;
ril_sim_card_update_app(self);
return G_SOURCE_REMOVE;
}
static void ril_sim_card_update_status(struct ril_sim_card *self,
struct ril_sim_card_status *status)
{
const int diff = ril_sim_card_status_compare(self->status, status);
if (diff) {
struct ril_sim_card_status *old_status = self->status;
self->status = status;
if (diff & RIL_SIMCARD_STATE_CHANGED &&
status->card_state == RIL_CARDSTATE_PRESENT) {
struct ril_sim_card_priv *priv = self->priv;
/*
* SIM card has just appeared, give it some time to
* activate the USIM app
*/
if (priv->sub_start_timer) {
g_source_remove(priv->sub_start_timer);
}
DBG("started subscription timeout for slot %u",
self->slot);
priv->sub_start_timer =
g_timeout_add(UICC_SUBSCRIPTION_START_MS,
ril_sim_card_sub_start_timeout, self);
}
ril_sim_card_update_app(self);
g_signal_emit(self, ril_sim_card_signals
[SIGNAL_STATUS_RECEIVED], 0);
if (diff & RIL_SIMCARD_STATUS_CHANGED) {
DBG("status changed");
g_signal_emit(self, ril_sim_card_signals
[SIGNAL_STATUS_CHANGED], 0);
}
if (diff & RIL_SIMCARD_STATE_CHANGED) {
DBG("state changed");
g_signal_emit(self, ril_sim_card_signals
[SIGNAL_STATE_CHANGED], 0);
}
ril_sim_card_status_free(old_status);
} else {
ril_sim_card_update_app(self);
ril_sim_card_status_free(status);
g_signal_emit(self, ril_sim_card_signals
[SIGNAL_STATUS_RECEIVED], 0);
}
}
static gboolean ril_sim_card_app_parse(GRilIoParser *rilp,
struct ril_sim_card_app *app)
{
gint32 app_type, app_state, perso_substate;
gint32 pin_replaced, pin1_state, pin2_state;
grilio_parser_get_int32(rilp, &app_type);
grilio_parser_get_int32(rilp, &app_state);
/*
* Consider RIL_APPSTATE_ILLEGAL also READY. Even if app state is
* RIL_APPSTATE_ILLEGAL (-1), ICC operations must be permitted.
* Network access requests will anyway be rejected and ME will be
* in limited service.
*/
if (app_state == RIL_APPSTATE_ILLEGAL) {
DBG("RIL_APPSTATE_ILLEGAL => RIL_APPSTATE_READY");
app_state = RIL_APPSTATE_READY;
}
grilio_parser_get_int32(rilp, &perso_substate);
app->aid = grilio_parser_get_utf8(rilp);
app->label = grilio_parser_get_utf8(rilp);
if (grilio_parser_get_int32(rilp, &pin_replaced) &&
grilio_parser_get_int32(rilp, &pin1_state) &&
grilio_parser_get_int32(rilp, &pin2_state)) {
app->app_type = app_type;
app->app_state = app_state;
app->perso_substate = perso_substate;
app->pin_replaced = pin_replaced;
app->pin1_state = pin1_state;
app->pin2_state = pin2_state;
return TRUE;
}
return FALSE;
}
static struct ril_sim_card_status *ril_sim_card_status_parse(const void *data,
guint len)
{
GRilIoParser rilp;
gint32 card_state, pin_state, gsm_umts_index, cdma_index;
gint32 ims_index, num_apps;
grilio_parser_init(&rilp, data, len);
if (!grilio_parser_get_int32(&rilp, &card_state) ||
!grilio_parser_get_int32(&rilp, &pin_state) ||
!grilio_parser_get_int32(&rilp, &gsm_umts_index) ||
!grilio_parser_get_int32(&rilp, &cdma_index) ||
!grilio_parser_get_int32(&rilp, &ims_index) ||
!grilio_parser_get_int32(&rilp, &num_apps)) {
ofono_error("Failed to parse SIM card status request");
return NULL;
} else if (num_apps < 0 || num_apps > RIL_CARD_MAX_APPS) {
ofono_error("Invalid SIM app count %d", num_apps);
return NULL;
} else {
int i;
struct ril_sim_card_status *status =
g_new0(struct ril_sim_card_status, 1);
DBG("card_state=%d, universal_pin_state=%d, gsm_umts_index=%d, "
"cdma_index=%d, ims_index=%d, num_apps=%d",
card_state, pin_state, gsm_umts_index, cdma_index,
ims_index, num_apps);
status->card_state = card_state;
status->pin_state = pin_state;
status->gsm_umts_index = gsm_umts_index;
status->cdma_index = cdma_index;
status->ims_index = ims_index;
status->num_apps = num_apps;
if (num_apps > 0) {
status->apps =
g_new0(struct ril_sim_card_app, num_apps);
}
for (i = 0; i < num_apps; i++) {
struct ril_sim_card_app *app = status->apps + i;
if (ril_sim_card_app_parse(&rilp, app)) {
DBG("app[%d]: type=%d, state=%d, "
"perso_substate=%d, aid_ptr=%s, "
"label=%s, pin1_replaced=%d, pin1=%d, "
"pin2=%d", i, app->app_type,
app->app_state, app->perso_substate,
app->aid, app->label,
app->pin_replaced, app->pin1_state,
app->pin2_state);
} else {
break;
}
}
if (i == num_apps) {
GASSERT(grilio_parser_at_end(&rilp));
return status;
} else {
ril_sim_card_status_free(status);
return NULL;
}
}
}
static void ril_sim_card_status_cb(GRilIoChannel *io, int ril_status,
const void *data, guint len, void *user_data)
{
struct ril_sim_card *self = RIL_SIMCARD(user_data);
struct ril_sim_card_priv *priv = self->priv;
GASSERT(priv->status_req_id);
priv->status_req_id = 0;
if (ril_status == RIL_E_SUCCESS) {
struct ril_sim_card_status *status =
ril_sim_card_status_parse(data, len);
if (status) {
ril_sim_card_update_status(self, status);
}
}
ril_sim_card_tx_check(self);
}
void ril_sim_card_reset(struct ril_sim_card *self)
{
if (G_LIKELY(self)) {
struct ril_sim_card_status *status =
g_new0(struct ril_sim_card_status, 1);
/* Simulate removal and re-submit the SIM status query */
status->card_state = RIL_CARDSTATE_ABSENT;
status->gsm_umts_index = -1;
status->cdma_index = -1;
status->ims_index = -1;
ril_sim_card_update_status(self, status);
ril_sim_card_request_status(self);
}
}
void ril_sim_card_request_status(struct ril_sim_card *self)
{
if (G_LIKELY(self)) {
struct ril_sim_card_priv *priv = self->priv;
if (priv->status_req_id) {
/* Retry right away, don't wait for retry
* timeout to expire */
grilio_channel_retry_request(priv->io,
priv->status_req_id);
} else {
GRilIoRequest* req = grilio_request_new();
/* Start the transaction to not allow any other
* requests to interfere with SIM status query */
ril_sim_card_tx_start(self);
grilio_request_set_retry(req, RIL_RETRY_SECS*1000, -1);
priv->status_req_id =
grilio_queue_send_request_full(priv->q,
req, RIL_REQUEST_GET_SIM_STATUS,
ril_sim_card_status_cb, NULL, self);
grilio_request_unref(req);
}
}
}
static void ril_sim_card_update_sim_io_active(struct ril_sim_card *self)
{
/* SIM I/O is considered active for certain period of time after
* the last request has completed. That's because SIM_IO requests
* are usually submitted in large quantities and quick succession.
* Some RILs don't like being bothered while they are doing SIM I/O
* and some time after that too. That sucks but what else can we
* do about it? */
struct ril_sim_card_priv *priv = self->priv;
const gboolean active = priv->sim_io_idle_id ||
g_hash_table_size(priv->sim_io_pending);
if (self->sim_io_active != active) {
self->sim_io_active = active;
DBG("SIM I/O for slot %u is %sactive", self->slot,
active ? "" : "in");
g_signal_emit(self, ril_sim_card_signals
[SIGNAL_SIM_IO_ACTIVE_CHANGED], 0);
}
}
void ril_sim_card_sim_io_started(struct ril_sim_card *self, guint id)
{
if (G_LIKELY(self) && G_LIKELY(id)) {
struct ril_sim_card_priv *priv = self->priv;
gpointer key = GINT_TO_POINTER(id);
g_hash_table_insert(priv->sim_io_pending, key, key);
if (priv->sim_io_idle_id) {
g_source_remove(priv->sim_io_idle_id);
priv->sim_io_idle_id = 0;
priv->sim_io_idle_count = 0;
}
ril_sim_card_update_sim_io_active(self);
}
}
static gboolean ril_sim_card_sim_io_idle_cb(gpointer user_data)
{
struct ril_sim_card *self = RIL_SIMCARD(user_data);
struct ril_sim_card_priv *priv = self->priv;
if (++(priv->sim_io_idle_count) >= SIM_IO_IDLE_LOOPS) {
priv->sim_io_idle_id = 0;
priv->sim_io_idle_count = 0;
ril_sim_card_update_sim_io_active(self);
return G_SOURCE_REMOVE;
} else {
return G_SOURCE_CONTINUE;
}
}
void ril_sim_card_sim_io_finished(struct ril_sim_card *self, guint id)
{
if (G_LIKELY(self) && G_LIKELY(id)) {
struct ril_sim_card_priv *priv = self->priv;
gpointer key = GINT_TO_POINTER(id);
if (g_hash_table_remove(priv->sim_io_pending, key) &&
!g_hash_table_size(priv->sim_io_pending)) {
/* Reset the idle loop count */
if (priv->sim_io_idle_id) {
g_source_remove(priv->sim_io_idle_id);
priv->sim_io_idle_count = 0;
}
priv->sim_io_idle_id =
g_idle_add(ril_sim_card_sim_io_idle_cb, self);
}
ril_sim_card_update_sim_io_active(self);
}
}
static void ril_sim_card_status_changed(GRilIoChannel *io, guint code,
const void *data, guint len, void *user_data)
{
struct ril_sim_card *self = RIL_SIMCARD(user_data);
ril_sim_card_request_status(self);
}
struct ril_sim_card *ril_sim_card_new(GRilIoChannel *io, guint slot, int flags)
{
struct ril_sim_card *self = g_object_new(RIL_SIMCARD_TYPE, NULL);
struct ril_sim_card_priv *priv = self->priv;
/*
* We need to know the RIL version (for UICC subscription hack),
* so we must be connected. The caller is supposed to make sure
* that we get connected first.
*/
DBG("%u", slot);
GASSERT(io->connected);
self->slot = slot;
priv->io = grilio_channel_ref(io);
priv->q = grilio_queue_new(io);
priv->flags = flags;
priv->event_id[EVENT_SIM_STATUS_CHANGED] =
grilio_channel_add_unsol_event_handler(priv->io,
ril_sim_card_status_changed,
RIL_UNSOL_RESPONSE_SIM_STATUS_CHANGED, self);
priv->event_id[EVENT_UICC_SUBSCRIPTION_STATUS_CHANGED] =
grilio_channel_add_unsol_event_handler(priv->io,
ril_sim_card_status_changed,
RIL_UNSOL_UICC_SUBSCRIPTION_STATUS_CHANGED, self);
ril_sim_card_request_status(self);
return self;
}
struct ril_sim_card *ril_sim_card_ref(struct ril_sim_card *self)
{
if (G_LIKELY(self)) {
g_object_ref(RIL_SIMCARD(self));
return self;
} else {
return NULL;
}
}
void ril_sim_card_unref(struct ril_sim_card *self)
{
if (G_LIKELY(self)) {
g_object_unref(RIL_SIMCARD(self));
}
}
gboolean ril_sim_card_ready(struct ril_sim_card *self)
{
return self && self->app &&
((self->app->app_state == RIL_APPSTATE_READY) ||
(self->app->app_state == RIL_APPSTATE_SUBSCRIPTION_PERSO &&
self->app->perso_substate == RIL_PERSOSUBSTATE_READY));
}
gulong ril_sim_card_add_status_received_handler(struct ril_sim_card *self,
ril_sim_card_cb_t cb, void *arg)
{
return (G_LIKELY(self) && G_LIKELY(cb)) ? g_signal_connect(self,
SIGNAL_STATUS_RECEIVED_NAME, G_CALLBACK(cb), arg) : 0;
}
gulong ril_sim_card_add_status_changed_handler(struct ril_sim_card *self,
ril_sim_card_cb_t cb, void *arg)
{
return (G_LIKELY(self) && G_LIKELY(cb)) ? g_signal_connect(self,
SIGNAL_STATUS_CHANGED_NAME, G_CALLBACK(cb), arg) : 0;
}
gulong ril_sim_card_add_state_changed_handler(struct ril_sim_card *self,
ril_sim_card_cb_t cb, void *arg)
{
return (G_LIKELY(self) && G_LIKELY(cb)) ? g_signal_connect(self,
SIGNAL_STATE_CHANGED_NAME, G_CALLBACK(cb), arg) : 0;
}
gulong ril_sim_card_add_app_changed_handler(struct ril_sim_card *self,
ril_sim_card_cb_t cb, void *arg)
{
return (G_LIKELY(self) && G_LIKELY(cb)) ? g_signal_connect(self,
SIGNAL_APP_CHANGED_NAME, G_CALLBACK(cb), arg) : 0;
}
gulong ril_sim_card_add_sim_io_active_changed_handler(struct ril_sim_card *self,
ril_sim_card_cb_t cb, void *arg)
{
return (G_LIKELY(self) && G_LIKELY(cb)) ? g_signal_connect(self,
SIGNAL_SIM_IO_ACTIVE_CHANGED_NAME, G_CALLBACK(cb), arg) : 0;
}
void ril_sim_card_remove_handler(struct ril_sim_card *self, gulong id)
{
if (G_LIKELY(self) && G_LIKELY(id)) {
g_signal_handler_disconnect(self, id);
}
}
void ril_sim_card_remove_handlers(struct ril_sim_card *self, gulong *ids, int n)
{
gutil_disconnect_handlers(self, ids, n);
}
static void ril_sim_card_init(struct ril_sim_card *self)
{
struct ril_sim_card_priv *priv = G_TYPE_INSTANCE_GET_PRIVATE(self,
RIL_SIMCARD_TYPE, struct ril_sim_card_priv);
self->priv = priv;
priv->sim_io_pending = g_hash_table_new(g_direct_hash, g_direct_equal);
}
static void ril_sim_card_dispose(GObject *object)
{
struct ril_sim_card *self = RIL_SIMCARD(object);
struct ril_sim_card_priv *priv = self->priv;
grilio_channel_remove_handlers(priv->io, priv->event_id, EVENT_COUNT);
grilio_queue_cancel_all(priv->q, TRUE);
G_OBJECT_CLASS(ril_sim_card_parent_class)->dispose(object);
}
static void ril_sim_card_finalize(GObject *object)
{
struct ril_sim_card *self = RIL_SIMCARD(object);
struct ril_sim_card_priv *priv = self->priv;
if (priv->sim_io_idle_id) {
g_source_remove(priv->sim_io_idle_id);
}
if (priv->sub_start_timer) {
g_source_remove(priv->sub_start_timer);
}
g_hash_table_destroy(priv->sim_io_pending);
grilio_channel_unref(priv->io);
grilio_queue_unref(priv->q);
ril_sim_card_status_free(self->status);
G_OBJECT_CLASS(ril_sim_card_parent_class)->finalize(object);
}
static void ril_sim_card_class_init(RilSimCardClass *klass)
{
GObjectClass *object_class = G_OBJECT_CLASS(klass);
object_class->dispose = ril_sim_card_dispose;
object_class->finalize = ril_sim_card_finalize;
g_type_class_add_private(klass, sizeof(struct ril_sim_card_priv));
NEW_SIGNAL_(klass,STATUS_RECEIVED);
NEW_SIGNAL(klass,STATUS);
NEW_SIGNAL(klass,STATE);
NEW_SIGNAL(klass,APP);
NEW_SIGNAL(klass,SIM_IO_ACTIVE);
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,96 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2018 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_SIM_CARD_H
#define RIL_SIM_CARD_H
#include "ril_types.h"
#include <glib-object.h>
struct ril_sim_card_app {
enum ril_app_type app_type;
enum ril_app_state app_state;
enum ril_perso_substate perso_substate;
char *aid;
char *label;
guint pin_replaced;
enum ril_pin_state pin1_state;
enum ril_pin_state pin2_state;
};
struct ril_sim_card_status {
enum ril_card_state card_state;
enum ril_pin_state pin_state;
int gsm_umts_index;
int cdma_index;
int ims_index;
int num_apps;
struct ril_sim_card_app *apps;
};
struct ril_sim_card {
GObject object;
struct ril_sim_card_priv *priv;
struct ril_sim_card_status *status;
const struct ril_sim_card_app *app;
gboolean sim_io_active;
guint slot;
};
typedef void (*ril_sim_card_cb_t)(struct ril_sim_card *sc, void *arg);
/* Flags for ril_sim_card_new */
#define RIL_SIM_CARD_V9_UICC_SUBSCRIPTION_WORKAROUND (0x01)
struct ril_sim_card *ril_sim_card_new(GRilIoChannel *io, guint slot, int flags);
struct ril_sim_card *ril_sim_card_ref(struct ril_sim_card *sc);
void ril_sim_card_unref(struct ril_sim_card *sc);
void ril_sim_card_reset(struct ril_sim_card *sc);
void ril_sim_card_request_status(struct ril_sim_card *sc);
void ril_sim_card_sim_io_started(struct ril_sim_card *sc, guint id);
void ril_sim_card_sim_io_finished(struct ril_sim_card *sc, guint id);
gboolean ril_sim_card_ready(struct ril_sim_card *sc);
gulong ril_sim_card_add_status_received_handler(struct ril_sim_card *sc,
ril_sim_card_cb_t cb, void *arg);
gulong ril_sim_card_add_status_changed_handler(struct ril_sim_card *sc,
ril_sim_card_cb_t cb, void *arg);
gulong ril_sim_card_add_state_changed_handler(struct ril_sim_card *sc,
ril_sim_card_cb_t cb, void *arg);
gulong ril_sim_card_add_app_changed_handler(struct ril_sim_card *sc,
ril_sim_card_cb_t cb, void *arg);
gulong ril_sim_card_add_sim_io_active_changed_handler(struct ril_sim_card *sc,
ril_sim_card_cb_t cb, void *arg);
void ril_sim_card_remove_handler(struct ril_sim_card *sc, gulong id);
void ril_sim_card_remove_handlers(struct ril_sim_card *sc, gulong *ids, int n);
/* Inline wrappers */
static inline enum ril_app_type ril_sim_card_app_type(struct ril_sim_card *sc)
{ return (sc && sc->app) ? sc->app->app_type : RIL_APPTYPE_UNKNOWN; }
static inline const char *ril_sim_card_app_aid(struct ril_sim_card *sc)
{ return (sc && sc->app) ? sc->app->aid : NULL; }
#define ril_sim_card_remove_all_handlers(net, ids) \
ril_sim_card_remove_handlers(net, ids, G_N_ELEMENTS(ids))
#endif /* RIL_SIM_CARD_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,198 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2016-2020 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#define GLIB_DISABLE_DEPRECATION_WARNINGS
#include "ril_sim_settings.h"
#include "ril_log.h"
#include <ofono/watch.h>
#include <gutil_misc.h>
#define RIL_PREF_MODE_DEFAULT(self) (\
((self)->techs & OFONO_RADIO_ACCESS_MODE_LTE) ? \
OFONO_RADIO_ACCESS_MODE_LTE : \
((self)->techs & OFONO_RADIO_ACCESS_MODE_UMTS) ? \
OFONO_RADIO_ACCESS_MODE_UMTS : \
OFONO_RADIO_ACCESS_MODE_GSM)
typedef GObjectClass RilSimSettingsClass;
typedef struct ril_sim_settings RilSimSettings;
enum ofono_watch_events {
WATCH_EVENT_IMSI,
WATCH_EVENT_COUNT
};
struct ril_sim_settings_priv {
gulong watch_event_id[WATCH_EVENT_COUNT];
struct ofono_watch *watch;
char *imsi;
};
enum ril_sim_settings_signal {
SIGNAL_IMSI_CHANGED,
SIGNAL_PREF_MODE_CHANGED,
SIGNAL_COUNT
};
#define SIGNAL_IMSI_CHANGED_NAME "ril-sim-settings-imsi-changed"
#define SIGNAL_PREF_MODE_CHANGED_NAME "ril-sim-settings-pref-mode-changed"
static guint ril_sim_settings_signals[SIGNAL_COUNT] = { 0 };
G_DEFINE_TYPE(RilSimSettings, ril_sim_settings, G_TYPE_OBJECT)
#define RIL_SIM_SETTINGS_TYPE (ril_sim_settings_get_type())
#define RIL_SIM_SETTINGS(obj) (G_TYPE_CHECK_INSTANCE_CAST((obj),\
RIL_SIM_SETTINGS_TYPE, RilSimSettings))
#define NEW_SIGNAL(klass,name) \
ril_sim_settings_signals[SIGNAL_##name##_CHANGED] = \
g_signal_new(SIGNAL_##name##_CHANGED_NAME, \
G_OBJECT_CLASS_TYPE(klass), G_SIGNAL_RUN_FIRST, \
0, NULL, NULL, NULL, G_TYPE_NONE, 0)
/* Skip the leading slash from the modem path: */
#define DBG_(obj,fmt,args...) DBG("%s " fmt, (obj)->path+1, ##args)
static void ril_sim_settings_signal_emit(struct ril_sim_settings *self,
enum ril_sim_settings_signal id)
{
g_signal_emit(self, ril_sim_settings_signals[id], 0);
}
void ril_sim_settings_set_pref_mode(struct ril_sim_settings *self,
enum ofono_radio_access_mode mode)
{
if (G_LIKELY(self) && self->pref_mode != mode) {
self->pref_mode = mode;
ril_sim_settings_signal_emit(self, SIGNAL_PREF_MODE_CHANGED);
}
}
static void ril_sim_settings_imsi_changed(struct ofono_watch *watch,
void *user_data)
{
struct ril_sim_settings *self = RIL_SIM_SETTINGS(user_data);
struct ril_sim_settings_priv *priv = self->priv;
if (g_strcmp0(priv->imsi, watch->imsi)) {
g_free(priv->imsi);
self->imsi = priv->imsi = g_strdup(watch->imsi);
ril_sim_settings_signal_emit(self, SIGNAL_IMSI_CHANGED);
}
}
struct ril_sim_settings *ril_sim_settings_new(const char *path,
enum ofono_radio_access_mode techs)
{
struct ril_sim_settings *self = NULL;
if (G_LIKELY(path)) {
struct ril_sim_settings_priv *priv;
self = g_object_new(RIL_SIM_SETTINGS_TYPE, NULL);
priv = self->priv;
self->techs = techs;
self->pref_mode = RIL_PREF_MODE_DEFAULT(self);
priv->watch = ofono_watch_new(path);
priv->watch_event_id[WATCH_EVENT_IMSI] =
ofono_watch_add_imsi_changed_handler(priv->watch,
ril_sim_settings_imsi_changed, self);
self->imsi = priv->imsi = g_strdup(priv->watch->imsi);
}
return self;
}
struct ril_sim_settings *ril_sim_settings_ref(struct ril_sim_settings *self)
{
if (G_LIKELY(self)) {
g_object_ref(RIL_SIM_SETTINGS(self));
return self;
} else {
return NULL;
}
}
void ril_sim_settings_unref(struct ril_sim_settings *self)
{
if (G_LIKELY(self)) {
g_object_unref(RIL_SIM_SETTINGS(self));
}
}
gulong ril_sim_settings_add_imsi_changed_handler(struct ril_sim_settings *self,
ril_sim_settings_cb_t cb, void *arg)
{
return (G_LIKELY(self) && G_LIKELY(cb)) ? g_signal_connect(self,
SIGNAL_IMSI_CHANGED_NAME, G_CALLBACK(cb), arg) : 0;
}
gulong ril_sim_settings_add_pref_mode_changed_handler(
struct ril_sim_settings *self,
ril_sim_settings_cb_t cb, void *arg)
{
return (G_LIKELY(self) && G_LIKELY(cb)) ? g_signal_connect(self,
SIGNAL_PREF_MODE_CHANGED_NAME, G_CALLBACK(cb), arg) : 0;
}
void ril_sim_settings_remove_handler(struct ril_sim_settings *self, gulong id)
{
if (G_LIKELY(self) && G_LIKELY(id)) {
g_signal_handler_disconnect(self, id);
}
}
void ril_sim_settings_remove_handlers(struct ril_sim_settings *self,
gulong *ids, int count)
{
gutil_disconnect_handlers(self, ids, count);
}
static void ril_sim_settings_init(struct ril_sim_settings *self)
{
self->priv = G_TYPE_INSTANCE_GET_PRIVATE(self, RIL_SIM_SETTINGS_TYPE,
struct ril_sim_settings_priv);
}
static void ril_sim_settings_finalize(GObject *object)
{
struct ril_sim_settings *self = RIL_SIM_SETTINGS(object);
struct ril_sim_settings_priv *priv = self->priv;
ofono_watch_remove_all_handlers(priv->watch, priv->watch_event_id);
ofono_watch_unref(priv->watch);
g_free(priv->imsi);
G_OBJECT_CLASS(ril_sim_settings_parent_class)->finalize(object);
}
static void ril_sim_settings_class_init(RilSimSettingsClass *klass)
{
G_OBJECT_CLASS(klass)->finalize = ril_sim_settings_finalize;
g_type_class_add_private(klass, sizeof(struct ril_sim_settings_priv));
NEW_SIGNAL(klass, IMSI);
NEW_SIGNAL(klass, PREF_MODE);
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,59 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2016-2020 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_SIM_SETTINGS_H
#define RIL_SIM_SETTINGS_H
#include "ril_types.h"
#include <glib-object.h>
struct ril_sim_settings_priv;
struct ril_sim_settings {
GObject object;
struct ril_sim_settings_priv *priv;
const char *imsi;
enum ofono_radio_access_mode techs;
enum ofono_radio_access_mode pref_mode;
};
typedef void (*ril_sim_settings_cb_t)(struct ril_sim_settings *s, void *arg);
struct ril_sim_settings *ril_sim_settings_new(const char *path,
enum ofono_radio_access_mode techs);
struct ril_sim_settings *ril_sim_settings_ref(struct ril_sim_settings *s);
void ril_sim_settings_unref(struct ril_sim_settings *s);
void ril_sim_settings_set_pref_mode(struct ril_sim_settings *s,
enum ofono_radio_access_mode mode);
gulong ril_sim_settings_add_imsi_changed_handler(struct ril_sim_settings *s,
ril_sim_settings_cb_t cb, void *arg);
gulong ril_sim_settings_add_pref_mode_changed_handler(struct ril_sim_settings *s,
ril_sim_settings_cb_t cb, void *arg);
void ril_sim_settings_remove_handler(struct ril_sim_settings *s, gulong id);
void ril_sim_settings_remove_handlers(struct ril_sim_settings *s, gulong *ids,
int count);
#define ril_sim_settings_remove_all_handlers(s,ids) \
ril_sim_settings_remove_handlers(s, ids, G_N_ELEMENTS(ids))
#endif /* RIL_SIM_SETTINGS_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,514 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_plugin.h"
#include "ril_util.h"
#include "ril_log.h"
#define RIL_SMS_ACK_RETRY_MS 1000
#define RIL_SMS_ACK_RETRY_COUNT 10
#define SIM_EFSMS_FILEID 0x6F3C
#define EFSMS_LENGTH 176
#define TYPE_LOCAL 129
#define TYPE_INTERNATIONAL 145
static unsigned char sim_path[4] = {0x3F, 0x00, 0x7F, 0x10};
enum ril_sms_events {
SMS_EVENT_NEW_SMS,
SMS_EVENT_NEW_STATUS_REPORT,
SMS_EVENT_NEW_SMS_ON_SIM,
SMS_EVENT_COUNT
};
struct ril_sms {
GRilIoChannel *io;
GRilIoQueue *q;
struct ril_modem *modem;
struct ofono_sms *sms;
struct ofono_sim_context *sim_context;
gulong event_id[SMS_EVENT_COUNT];
guint timer_id;
};
struct ril_sms_cbd {
union _ofono_sms_cb {
ofono_sms_sca_set_cb_t sca_set;
ofono_sms_sca_query_cb_t sca_query;
ofono_sms_submit_cb_t submit;
gpointer ptr;
} cb;
gpointer data;
};
struct ril_sms_on_sim_req {
struct ril_sms *sd;
int record;
};
#define ril_sms_cbd_free g_free
#define ril_sms_on_sim_req_free g_free
static inline struct ril_sms *ril_sms_get_data(struct ofono_sms *sms)
{
return ofono_sms_get_data(sms);
}
struct ril_sms_cbd *ril_sms_cbd_new(struct ril_sms *sd, void *cb, void *data)
{
struct ril_sms_cbd *cbd = g_new0(struct ril_sms_cbd, 1);
cbd->cb.ptr = cb;
cbd->data = data;
return cbd;
}
struct ril_sms_on_sim_req *ril_sms_on_sim_req_new(struct ril_sms *sd, int rec)
{
struct ril_sms_on_sim_req *cbd = g_new0(struct ril_sms_on_sim_req, 1);
cbd->sd = sd;
cbd->record = rec;
return cbd;
}
static void ril_sms_sca_set_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ofono_error error;
struct ril_sms_cbd *cbd = user_data;
ofono_sms_sca_set_cb_t cb = cbd->cb.sca_set;
if (status == RIL_E_SUCCESS) {
cb(ril_error_ok(&error), cbd->data);
} else {
ofono_error("csca setting failed");
cb(ril_error_failure(&error), cbd->data);
}
}
static void ril_sms_sca_set(struct ofono_sms *sms,
const struct ofono_phone_number *sca,
ofono_sms_sca_set_cb_t cb, void *data)
{
struct ril_sms *sd = ril_sms_get_data(sms);
GRilIoRequest *req = grilio_request_new();
char number[OFONO_MAX_PHONE_NUMBER_LENGTH + 4];
if (sca->type == TYPE_LOCAL) {
snprintf(number, sizeof(number), "\"%s\"", sca->number);
} else {
snprintf(number, sizeof(number), "\"+%s\"", sca->number);
}
DBG("Setting sca: %s", number);
grilio_request_append_utf8(req, number);
grilio_queue_send_request_full(sd->q, req,
RIL_REQUEST_SET_SMSC_ADDRESS, ril_sms_sca_set_cb,
ril_sms_cbd_free, ril_sms_cbd_new(sd, cb, data));
grilio_request_unref(req);
}
static void ril_sms_sca_query_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ril_sms_cbd *cbd = user_data;
ofono_sms_sca_query_cb_t cb = cbd->cb.sca_query;
struct ofono_error error;
GRilIoParser rilp;
gchar *temp_buf;
if (status != RIL_E_SUCCESS) {
ofono_error("csca query failed");
cb(ril_error_failure(&error), NULL, cbd->data);
return;
}
grilio_parser_init(&rilp, data, len);
temp_buf = grilio_parser_get_utf8(&rilp);
if (temp_buf) {
/* RIL gives address in quotes */
gchar *number = strtok(temp_buf, "\"");
struct ofono_phone_number sca;
strncpy(sca.number, number, OFONO_MAX_PHONE_NUMBER_LENGTH);
sca.number[OFONO_MAX_PHONE_NUMBER_LENGTH] = '\0';
if (sca.number[0] == '+') {
number = number + 1;
sca.type = TYPE_INTERNATIONAL;
} else {
sca.type = TYPE_LOCAL;
}
DBG("csca_query_cb: %s, %d", sca.number, sca.type);
cb(ril_error_ok(&error), &sca, cbd->data);
g_free(temp_buf);
} else {
ofono_error("return value invalid");
cb(ril_error_failure(&error), NULL, cbd->data);
}
}
static void ril_sms_sca_query(struct ofono_sms *sms,
ofono_sms_sca_query_cb_t cb, void *data)
{
struct ril_sms *sd = ril_sms_get_data(sms);
DBG("Sending csca_query");
grilio_queue_send_request_full(sd->q, NULL,
RIL_REQUEST_GET_SMSC_ADDRESS, ril_sms_sca_query_cb,
ril_sms_cbd_free, ril_sms_cbd_new(sd, cb, data));
}
static void ril_sms_submit_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ril_sms_cbd *cbd = user_data;
ofono_sms_submit_cb_t cb = cbd->cb.submit;
struct ofono_error error;
int mr = 0;
if (status == RIL_E_SUCCESS) {
GRilIoParser rilp;
int err = -1;
grilio_parser_init(&rilp, data, len);
/* TP-Message-Reference for GSM/
* BearerData MessageId for CDMA
*/
grilio_parser_get_int32(&rilp, &mr);
grilio_parser_skip_string(&rilp);
/* error: 3GPP 27.005, 3.2.5, -1 if unknown or not applicable */
grilio_parser_get_int32(&rilp, &err);
DBG("sms msg ref: %d, error: %d", mr, err);
ril_error_init_ok(&error);
} else if (status == RIL_E_GENERIC_FAILURE) {
ofono_info("not allowed by MO SMS control, do not retry");
error.type = OFONO_ERROR_TYPE_CMS;
error.error = 500;
} else {
ofono_error("sms sending failed, retry");
ril_error_init_failure(&error);
}
cb(&error, mr, cbd->data);
}
static void ril_sms_submit(struct ofono_sms *sms, const unsigned char *pdu,
int pdu_len, int tpdu_len, int mms,
ofono_sms_submit_cb_t cb, void *data)
{
struct ril_sms *sd = ril_sms_get_data(sms);
GRilIoRequest *req = grilio_request_new();
int smsc_len;
char *tpdu;
DBG("pdu_len: %d, tpdu_len: %d mms: %d", pdu_len, tpdu_len, mms);
grilio_request_append_int32(req, 2); /* Number of strings */
/* SMSC address:
*
* smsc_len == 1, then zero-length SMSC was spec'd
* RILD expects a NULL string in this case instead
* of a zero-length string.
*/
smsc_len = pdu_len - tpdu_len;
if (smsc_len > 1) {
/* TODO: encode SMSC & write to parcel */
DBG("SMSC address specified (smsc_len %d); NOT-IMPLEMENTED",
smsc_len);
}
grilio_request_append_utf8(req, NULL); /* default SMSC address */
/* TPDU:
*
* 'pdu' is a raw hexadecimal string
* ril_encode_hex() turns it into an ASCII/hex buffer (subset of utf8)
* grilio_request_append_utf8() encodes utf8 -> utf16
*/
tpdu = ril_encode_hex(pdu + smsc_len, tpdu_len);
grilio_request_append_utf8(req, tpdu);
DBG("%s", tpdu);
grilio_queue_send_request_full(sd->q, req,
mms ? RIL_REQUEST_SEND_SMS_EXPECT_MORE : RIL_REQUEST_SEND_SMS,
ril_sms_submit_cb, ril_sms_cbd_free,
ril_sms_cbd_new(sd, cb, data));
grilio_request_unref(req);
g_free(tpdu);
}
static void ril_ack_delivery_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
if (status != RIL_E_SUCCESS) {
ofono_error("SMS acknowledgement failed: "
"Further SMS reception is not guaranteed");
}
}
static void ril_ack_delivery(struct ril_sms *sd, gboolean error)
{
GRilIoRequest *req = grilio_request_sized_new(12);
const int code = (error ? 0 : 0xff);
DBG("(%d,%d)", error, code);
grilio_request_append_int32(req, 2); /* Array size*/
grilio_request_append_int32(req, error); /* Success (1)/Failure (0) */
grilio_request_append_int32(req, code); /* error code */
/* ACK the incoming NEW_SMS */
grilio_request_set_retry(req, RIL_SMS_ACK_RETRY_MS,
RIL_SMS_ACK_RETRY_COUNT);
grilio_queue_send_request_full(sd->q, req,
RIL_REQUEST_SMS_ACKNOWLEDGE, ril_ack_delivery_cb, NULL, NULL);
grilio_request_unref(req);
}
static void ril_sms_notify(GRilIoChannel *io, guint ril_event,
const void *data, guint len, void *user_data)
{
struct ril_sms *sd = user_data;
GRilIoParser rilp;
char *ril_pdu;
int ril_pdu_len;
unsigned int smsc_len;
guint ril_buf_len;
guchar *ril_data;
ril_pdu = NULL;
ril_data = NULL;
DBG("event: %d; data_len: %d", ril_event, len);
grilio_parser_init(&rilp, data, len);
ril_pdu = grilio_parser_get_utf8(&rilp);
if (ril_pdu == NULL)
goto error;
ril_pdu_len = strlen(ril_pdu);
DBG("ril_pdu_len is %d", ril_pdu_len);
ril_data = ril_decode_hex(ril_pdu, ril_pdu_len, &ril_buf_len);
if (ril_data == NULL)
goto error;
/* The first octect in the pdu contains the SMSC address length
* which is the X following octects it reads. We add 1 octet to
* the read length to take into account this read octet in order
* to calculate the proper tpdu length.
*/
smsc_len = ril_data[0] + 1;
ofono_info("sms received, smsc_len is %d", smsc_len);
DBG("(%s)", ril_pdu);
if (ril_buf_len >= smsc_len) {
if (ril_event == RIL_UNSOL_RESPONSE_NEW_SMS) {
/* Last parameter is tpdu_len (substract SMSC length) */
ofono_sms_deliver_notify(sd->sms, ril_data, ril_buf_len,
ril_buf_len - smsc_len);
} else {
/* RIL_UNSOL_RESPONSE_NEW_SMS_STATUS_REPORT */
ofono_sms_status_notify(sd->sms, ril_data, ril_buf_len,
ril_buf_len - smsc_len);
}
}
g_free(ril_pdu);
g_free(ril_data);
ril_ack_delivery(sd, TRUE);
return;
error:
g_free(ril_pdu);
g_free(ril_data);
ril_ack_delivery(sd, FALSE);
ofono_error("Unable to parse NEW_SMS notification");
}
static void ril_new_sms_on_sim_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
DBG("%d", status);
if (status == RIL_E_SUCCESS) {
ofono_info("sms deleted from sim");
} else {
ofono_error("deleting sms from sim failed");
}
}
static void ril_request_delete_sms_om_sim(struct ril_sms *sd, int record)
{
GRilIoRequest *req = grilio_request_sized_new(8);
DBG("Deleting record: %d", record);
grilio_request_append_int32(req, 1); /* Array length */
grilio_request_append_int32(req, record);
grilio_queue_send_request_full(sd->q, req,
RIL_REQUEST_DELETE_SMS_ON_SIM,
ril_new_sms_on_sim_cb, NULL, NULL);
grilio_request_unref(req);
}
static void ril_sms_on_sim_cb(int ok, int total_length, int record,
const unsigned char *sdata, int length, void *userdata)
{
struct ril_sms_on_sim_req *cbd = userdata;
struct ril_sms *sd = cbd->sd;
/*
* It seems when reading EFsms RIL returns the whole record including
* the first status byte therefore we ignore that as we are only
* interested of the following pdu
*/
/* The first octect in the pdu contains the SMSC address length
* which is the X following octects it reads. We add 1 octet to
* the read length to take into account this read octet in order
* to calculate the proper tpdu length.
*/
if (ok) {
unsigned int smsc_len = sdata[1] + 1;
ofono_sms_deliver_notify(sd->sms, sdata + 1, length - 1,
length - smsc_len - 1);
ril_request_delete_sms_om_sim(sd, cbd->record);
} else {
ofono_error("cannot read sms from sim");
}
ril_sms_on_sim_req_free(cbd);
}
static void ril_sms_on_sim(GRilIoChannel *io, guint ril_event,
const void *data, guint len, void *user_data)
{
struct ril_sms *sd = user_data;
struct ofono_sim *sim = ril_modem_ofono_sim(sd->modem);
int data_len = 0, rec = 0;
GRilIoParser rilp;
ofono_info("new sms on sim");
grilio_parser_init(&rilp, data, len);
if (sim &&
grilio_parser_get_int32(&rilp, &data_len) && data_len > 0 &&
grilio_parser_get_int32(&rilp, &rec)) {
DBG("rec %d", rec);
if (sd->sim_context) {
ofono_sim_read_record(sd->sim_context,
SIM_EFSMS_FILEID,
OFONO_SIM_FILE_STRUCTURE_FIXED,
rec, EFSMS_LENGTH,
sim_path, sizeof(sim_path),
ril_sms_on_sim_cb,
ril_sms_on_sim_req_new(sd,rec));
}
}
}
static gboolean ril_sms_register(gpointer user_data)
{
struct ril_sms *sd = user_data;
DBG("");
GASSERT(sd->timer_id);
sd->timer_id = 0;
ofono_sms_register(sd->sms);
/* Register event handlers */
sd->event_id[SMS_EVENT_NEW_SMS] =
grilio_channel_add_unsol_event_handler(sd->io, ril_sms_notify,
RIL_UNSOL_RESPONSE_NEW_SMS, sd);
sd->event_id[SMS_EVENT_NEW_STATUS_REPORT] =
grilio_channel_add_unsol_event_handler(sd->io, ril_sms_notify,
RIL_UNSOL_RESPONSE_NEW_SMS_STATUS_REPORT, sd);
sd->event_id[SMS_EVENT_NEW_SMS_ON_SIM] =
grilio_channel_add_unsol_event_handler(sd->io, ril_sms_on_sim,
RIL_UNSOL_RESPONSE_NEW_SMS_ON_SIM, sd);
/* Single-shot */
return FALSE;
}
static int ril_sms_probe(struct ofono_sms *sms, unsigned int vendor,
void *data)
{
struct ril_modem *modem = data;
struct ofono_sim *sim = ril_modem_ofono_sim(modem);
struct ril_sms *sd = g_new0(struct ril_sms, 1);
sd->modem = modem;
sd->sms = sms;
sd->io = grilio_channel_ref(ril_modem_io(modem));
sd->sim_context = ofono_sim_context_create(sim);
sd->q = grilio_queue_new(sd->io);
sd->timer_id = g_idle_add(ril_sms_register, sd);
ofono_sms_set_data(sms, sd);
GASSERT(sd->sim_context);
return 0;
}
static void ril_sms_remove(struct ofono_sms *sms)
{
unsigned int i;
struct ril_sms *sd = ril_sms_get_data(sms);
DBG("");
ofono_sms_set_data(sms, NULL);
if (sd->sim_context) {
ofono_sim_context_free(sd->sim_context);
}
for (i=0; i<G_N_ELEMENTS(sd->event_id); i++) {
grilio_channel_remove_handler(sd->io, sd->event_id[i]);
}
if (sd->timer_id > 0) {
g_source_remove(sd->timer_id);
}
grilio_channel_unref(sd->io);
grilio_queue_cancel_all(sd->q, FALSE);
grilio_queue_unref(sd->q);
g_free(sd);
}
const struct ofono_sms_driver ril_sms_driver = {
.name = RILMODEM_DRIVER,
.probe = ril_sms_probe,
.remove = ril_sms_remove,
.sca_query = ril_sms_sca_query,
.sca_set = ril_sms_sca_set,
.submit = ril_sms_submit,
.bearer_query = NULL, /* FIXME: needs investigation. */
.bearer_set = NULL
};
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

View File

@@ -1,305 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_plugin.h"
#include "ril_util.h"
#include "ril_log.h"
#ifndef UI_LANG
# define UI_LANG "/var/lib/environment/nemo/locale.conf"
#endif
enum ril_stk_events {
STK_EVENT_PROACTIVE_COMMAND,
STK_EVENT_SESSION_END,
STK_EVENT_NOTIFY,
STK_EVENT_COUNT
};
struct ril_stk {
struct ofono_stk *stk;
GRilIoChannel *io;
GRilIoQueue *q;
gulong event_id[STK_EVENT_COUNT];
};
struct ril_stk_cbd {
union _ofono_stk_cb {
ofono_stk_envelope_cb_t envelope;
ofono_stk_generic_cb_t generic;
gpointer ptr;
} cb;
gpointer data;
};
#define ril_stk_cbd_free g_free
static inline struct ril_stk *ril_stk_get_data(struct ofono_stk *stk)
{
return ofono_stk_get_data(stk);
}
struct ril_stk_cbd *ril_stk_cbd_new(void *cb, void *data)
{
struct ril_stk_cbd *cbd = g_new0(struct ril_stk_cbd, 1);
cbd->cb.ptr = cb;
cbd->data = data;
return cbd;
}
static void ril_stk_envelope_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ofono_error error;
struct ril_stk_cbd *cbd = user_data;
ofono_stk_envelope_cb_t cb = cbd->cb.envelope;
if (status == RIL_E_SUCCESS) {
DBG("%u bytes(s)", len);
cb(ril_error_ok(&error), NULL, 0, cbd->data);
} else {
DBG("Envelope reply failure: %s", ril_error_to_string(status));
cb(ril_error_failure(&error), NULL, 0, cbd->data);
}
}
static void ril_stk_envelope(struct ofono_stk *stk, int length,
const unsigned char *cmd, ofono_stk_envelope_cb_t cb, void *data)
{
struct ril_stk *sd = ril_stk_get_data(stk);
GRilIoRequest *req = grilio_request_new();
char *hex_envelope = ril_encode_hex(cmd, length);
DBG("%s", hex_envelope);
grilio_request_append_utf8(req, hex_envelope);
g_free(hex_envelope);
grilio_queue_send_request_full(sd->q, req,
RIL_REQUEST_STK_SEND_ENVELOPE_COMMAND,
ril_stk_envelope_cb, ril_stk_cbd_free,
ril_stk_cbd_new(cb, data));
grilio_request_unref(req);
}
static void ril_stk_terminal_response_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ofono_error error;
struct ril_stk_cbd *cbd = user_data;
ofono_stk_generic_cb_t cb = cbd->cb.generic;
DBG("");
if (status == RIL_E_SUCCESS) {
cb(ril_error_ok(&error), cbd->data);
} else {
ofono_error("Error in sending terminal response");
cb(ril_error_failure(&error), cbd->data);
}
}
static void ril_stk_terminal_response(struct ofono_stk *stk, int length,
const unsigned char *resp,
ofono_stk_generic_cb_t cb, void *data)
{
struct ril_stk *sd = ril_stk_get_data(stk);
GRilIoRequest *req = grilio_request_new();
char *hex_tr = ril_encode_hex(resp, length);
DBG("rilmodem terminal response: %s", hex_tr);
grilio_request_append_utf8(req, hex_tr);
g_free(hex_tr);
grilio_queue_send_request_full(sd->q, req,
RIL_REQUEST_STK_SEND_TERMINAL_RESPONSE,
ril_stk_terminal_response_cb,
ril_stk_cbd_free, ril_stk_cbd_new(cb, data));
grilio_request_unref(req);
}
static void ril_stk_user_confirmation(struct ofono_stk *stk,
ofono_bool_t confirm)
{
struct ril_stk *sd = ril_stk_get_data(stk);
GRilIoRequest *req = grilio_request_sized_new(8);
DBG("%d", confirm);
grilio_request_append_int32(req, 1); /* size of array */
grilio_request_append_int32(req, confirm); /* yes/no */
grilio_queue_send_request(sd->q, req,
RIL_REQUEST_STK_HANDLE_CALL_SETUP_REQUESTED_FROM_SIM);
grilio_request_unref(req);
}
static void ril_stk_pcmd_notify(GRilIoChannel *io, guint code,
const void *data, guint data_len, void *user_data)
{
struct ril_stk *sd = user_data;
GRilIoParser rilp;
char *pcmd;
void *pdu;
guint len;
GASSERT(code == RIL_UNSOL_STK_PROACTIVE_COMMAND);
grilio_parser_init(&rilp, data, data_len);
pcmd = grilio_parser_get_utf8(&rilp);
pdu = ril_decode_hex(pcmd, -1, &len);
if (pdu) {
DBG("pcmd: %s", pcmd);
ofono_stk_proactive_command_notify(sd->stk, len, pdu);
g_free(pdu);
} else {
ofono_warn("Failed to parse STK command %s", pcmd);
}
g_free(pcmd);
}
static void ril_stk_event_notify(GRilIoChannel *io, guint code,
const void *data, guint data_len, void *user_data)
{
struct ril_stk *sd = user_data;
GRilIoParser rilp;
char *pcmd;
void *pdu;
guint len;
/* Proactive command has been handled by the modem. */
GASSERT(code == RIL_UNSOL_STK_EVENT_NOTIFY);
grilio_parser_init(&rilp, data, data_len);
pcmd = grilio_parser_get_utf8(&rilp);
pdu = ril_decode_hex(pcmd, -1, &len);
if (pdu) {
DBG("pcmd: %s", pcmd);
ofono_stk_proactive_command_handled_notify(sd->stk, len, pdu);
g_free(pdu);
} else {
ofono_warn("Failed to parse STK event %s", pcmd);
}
g_free(pcmd);
}
static void ril_stk_session_end_notify(GRilIoChannel *io, guint code,
const void *data, guint len, void *user_data)
{
struct ril_stk *sd = user_data;
DBG("");
GASSERT(code == RIL_UNSOL_STK_SESSION_END);
ofono_stk_proactive_session_end_notify(sd->stk);
}
static void ril_stk_agent_ready(struct ofono_stk *stk)
{
struct ril_stk *sd = ril_stk_get_data(stk);
DBG("");
if (!sd->event_id[STK_EVENT_PROACTIVE_COMMAND]) {
DBG("Subscribing notifications");
sd->event_id[STK_EVENT_PROACTIVE_COMMAND] =
grilio_channel_add_unsol_event_handler(sd->io,
ril_stk_pcmd_notify,
RIL_UNSOL_STK_PROACTIVE_COMMAND, sd);
GASSERT(!sd->event_id[STK_EVENT_SESSION_END]);
sd->event_id[STK_EVENT_SESSION_END] =
grilio_channel_add_unsol_event_handler(sd->io,
ril_stk_session_end_notify,
RIL_UNSOL_STK_SESSION_END, sd);
GASSERT(!sd->event_id[STK_EVENT_NOTIFY]);
sd->event_id[STK_EVENT_NOTIFY] =
grilio_channel_add_unsol_event_handler(sd->io,
ril_stk_event_notify,
RIL_UNSOL_STK_EVENT_NOTIFY, sd);
grilio_queue_send_request(sd->q, NULL,
RIL_REQUEST_REPORT_STK_SERVICE_IS_RUNNING);
}
}
static void ril_stk_set_lang()
{
GError *error = NULL;
GIOChannel* chan = g_io_channel_new_file(UI_LANG, "r", &error);
if (chan) {
GString* buf = g_string_new(NULL);
gsize term;
while (g_io_channel_read_line_string(chan, buf, &term, NULL) ==
G_IO_STATUS_NORMAL) {
char* lang;
g_string_set_size(buf, term);
lang = strstr(buf->str, "LANG=");
if (lang) {
setenv("LANG", lang + 5, TRUE);
}
}
g_string_free(buf, TRUE);
g_io_channel_unref(chan);
} else {
DBG("%s: %s", UI_LANG, error->message);
g_error_free(error);
}
}
static int ril_stk_probe(struct ofono_stk *stk, unsigned int vendor, void *data)
{
struct ril_modem *modem = data;
struct ril_stk *sd = g_new0(struct ril_stk, 1);
DBG("");
sd->stk = stk;
sd->io = grilio_channel_ref(ril_modem_io(modem));
sd->q = grilio_queue_new(sd->io);
ofono_stk_set_data(stk, sd);
ofono_stk_register(stk);
ril_stk_set_lang();
return 0;
}
static void ril_stk_remove(struct ofono_stk *stk)
{
struct ril_stk *sd = ril_stk_get_data(stk);
unsigned int i;
DBG("");
ofono_stk_set_data(stk, NULL);
for (i=0; i<G_N_ELEMENTS(sd->event_id); i++) {
grilio_channel_remove_handler(sd->io, sd->event_id[i]);
}
grilio_channel_unref(sd->io);
grilio_queue_cancel_all(sd->q, FALSE);
grilio_queue_unref(sd->q);
g_free(sd);
}
const struct ofono_stk_driver ril_stk_driver = {
.name = RILMODEM_DRIVER,
.probe = ril_stk_probe,
.remove = ril_stk_remove,
.envelope = ril_stk_envelope,
.terminal_response = ril_stk_terminal_response,
.user_confirmation = ril_stk_user_confirmation,
.ready = ril_stk_agent_ready
};
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

View File

@@ -1,373 +0,0 @@
# This is a sample configuration file for Jolla ril driver
#
# This file is expected to be installed in /etc/ofono
#
# Configuration for each modem is defined in its own [ril_x] section,
# common settings are in the [Settings] section, all other sections
# are ignored.
#
# If any value from [ril_x] section (except "socket") is defined
# in the [Settings] section, it becomes the default for all modems.
# Default values can still be redefined at [ril_x] level.
#
[Settings]
# This option stops RIL plugin from creating any RIL modems.
# If it's set to true, all [ril_x] sections are ignored even
# if they are present, and no default configurtation is created.
#
# Default false
#
#EmptyConfig=false
# User and group for the ofono process. RIL clients are typically
# expected to run under radio:radio.
#
# Default radio:radio
#
#Identity=radio:radio
# If the phone has more than one SIM slot, the 3G/LTE module may be
# shared by all modems, meaning that only one of the slots can use
# 3G/LTE. In order to "hand 4G over" to the other slot, the modem
# currently using 3G/LTE has to drop to GSM, release 3G/LTE module
# and only then 3G/LTE can be used by the other modem. This setting
# allows to disable this behaviour (say, if your phone has independent
# 3G/LTE modules for each slot or you don't need 4G for both slots).
# Obviously, it only has any effect if you have more than one SIM.
#
# Defaults to true (switch the current data modem to 2G when changing
# the data modems)
#
#3GLTEHandover=true
# If this option is on, preferred technology is set to GSM for non-data
# slots.
#
# Default true (for historical reasons)
#
#ForceGsmForNonDataSlots=true
# RIL_REQUEST_SET_RADIO_CAPABILITY may or may not be supported by your RIL.
# This option allows you to forcibly enable or disable use of this request.
# It's involved in 3G/LTE handover between the modems, meaning that it only
# makes sense if you have more than one slot.
#
# Possible values are auto, on and off
#
# Default auto (enable for RIL version >= 11)
#
#SetRadioCapability=auto
[ril_0]
# Required entry, defines the RIL socket path
socket=/dev/socket/rild
# Subscription string. Some (mostly, older) RILs require that 4 bytes
# (usually SUB1 or SUB2) are written to the socket before rild starts
# talking to us.
#
# Not sent by default.
#
#sub=SUB1
# RIL logging prefix, to tell one socket from another in the log.
# Makes sense if you have more than one modem configured.
#
# No prefix by default.
#
#name=RIL1
# Slot id for SET_UICC_SUBSCRIPTION request.
#
# By default the first modem becomes slot 0, the next one slot 1 and so on.
#
#slot=0
# RIL request timeout, in milliseconds.
#
# Default zero (no timeout)
#
#timeout=0
# Comma-separated list of radio technologies supported by the modem.
# Valid technologies are "gsm", "umts" and "lte". The special value
# "all" means that all technologies are supported.
#
# Default all
#
#technologies=all
# This one is deprecated, use the technologies entry instead (above).
#
#enable4G=true
# RIL_REQUEST_SET_UICC_SUBSCRIPTION is 115 in RIL version 9 (or earlier)
# and 122 in RIL version 10 and later. Since ofono doesn't know in advance
# which RIL version it's dealing with, it makes the decision at runtime.
# Settings it to false disables the workaround and always sends 122.
#
# Default true (select SET_UICC_SUBSCRIPTION based on the RIL version)
#
#uiccWorkaround=true
# Points to the file containing comma-separated ECC (Emergency List Codes)
# list, e.g. 911,112,*911,#911. The file is tracked by ofono and when its
# contents changes, it's reflected in the EmergencyNumbers property of
# org.ofono.VoiceCallManager.
#
# If necessary, the contents of the file can be synchronized with the
# Android system property by adding something like this to /init.rc:
#
# on property:ril.ecclist=*
# write /var/lib/ofono/ril.ecclist ${ril.ecclist}
# chmod 0644 /var/lib/ofono/ril.ecclist
#
#ecclistFile=/var/lib/ofono/ril.ecclist
# RIL_REQUEST_ALLOW_DATA may or may not be supported by your RIL.
# This option allows you to forcibly enable or disable use of this request.
# Possible values are auto, on and off
#
# Default auto (enable for RIL version >= 11)
#
#allowDataReq=auto
# Since RIL interface doesn't provide the standard way of querying the
# number of pin retries left, some RIL implementation (namely Qualcomm)
# allow to query the retry count by sending the empty pin. If your RIL
# actually does check the empty pin (and decrements the retry count)
# then you should turn this feature off.
#
# Default true
#
#emptyPinQuery=true
# Different RILs use different data call structures which don't necessarily
# match the format specified in the data list header. The header may have
# version 9 but the list may contain RIL_Data_Call_Response_v6 structures,
# list version 10 may contain RIL_Data_Call_Response_v11 and so on. By default
# ofono assumes that the version from the list header matches the contents
# but sometimes you have to explicitly tell ofono which one to use.
# Possible values are 6, 9, 11 and auto.
#
# Default auto
#
#dataCallFormat=auto
# Data call may fail with status 65535 which according to ril.h means that
# we need to retry silently. The maximum number of retries is limited by
# this parameter. Usually, one retry is enough. The first retry occurs
# immediately, the subsequent ones after dataCallRetryDelay (see below)
#
# Default 4
#
#dataCallRetryLimit=4
# Delay between data call retries, in milliseconds. Note that the first
# retry occurs immediately after the first failure, the delays are only
# applied if the first retry fails too.
#
# Default 200 ms
#
#dataCallRetryDelay=200
# Additional local and remote hangup reasons. Remote reasons are checked
# first. Normally, RIL plugin figures it out automatically. You would only
# need to define these if your RIL does something unusual.
#
# No default
#
#remoteHangupReasons=20
#localHangupReasons=23
# Voice call support. Some devices like USB modems and tablets don't support
# voice calls. By default, voice calls are enabled and this option allows you
# to disable voice call handling.
#
# Default true
#
#enableVoicecall=true
# Support for Cell Broadcast System (CBS). By default, its enabled but if
# your rild and/or modem is not happy about it, you can turn it off.
#
# Default true
#
#enableCellBroadcast=true
# Support for Sim Toolkit (STK). By default, its enabled but if your rild
# and/or modem is not happy about it, you can turn it off.
#
# Default true
#
#enableSimToolkit=true
# Timeout for the modem to show up, in milliseconds. Those that don't
# show up before this timeout expires, will be dropped (ignored).
#
# In some fairly rare cases it makes sense to shorten this timeout for
# optional modems (which may or may not be available), to speed up the
# boot up process.
#
# Default 20000 (20 seconds)
#
#startTimeout=20000
# This allows to use deprecated RIL_REQUEST_GET_IMEI instead of
# RIL_REQUEST_DEVICE_IDENTITY to query IMEI from the modem. Some
# RILs (e.g. MTK) still don't understand RIL_REQUEST_DEVICE_IDENTITY.
#
# Default false (use RIL_REQUEST_DEVICE_IDENTITY)
#
#legacyImeiQuery=false
# Some devices don't support LTE RAT mode PREF_NET_TYPE_LTE_GSM_WCDMA.
# This option allows to set a custom LTE mode.
#
# Default 9 (PREF_NET_TYPE_LTE_GSM_WCDMA)
#
#lteNetworkMode=9
# UMTS network mode.
#
# Default 3 (PREF_NET_TYPE_GSM_WCDMA_AUTO)
#
#umtsNetworkMode=3
# Timeout for RIL_REQUEST_SET_PREFERRED_NETWORK_TYPE, in milliseconds.
#
# Default 20000 (20 seconds)
#
#networkModeTimeout=20000
# Timeout for RIL_REQUEST_SET_NETWORK_SELECTION_AUTOMATIC and
# RIL_REQUEST_SET_NETWORK_SELECTION_MANUAL, in milliseconds.
#
# Default 100000 (100 seconds)
#
#networkSelectionTimeout=100000
# Comma-separated signal strength range, in dBm.
#
# These values are used for translating dBm values returned by the modem in
# LTE mode into signal strength percentage. If you are getting significantly
# different signal strength readings in GSM and LTE modes, you may need to
# tweak those.
#
# Default -100,-60
#
#signalStrengthRange=-100,-60
# Cycle radio power at startup.
#
# Default true (cycle the power)
#
#radioPowerCycle=true
# With some RILs it seems to be necessary to kick (RIL_REQUEST_RADIO_POWER)
# the modems with power on after one of the modems has been powered off.
# Otherwise bad things may happen (like the modem never registering
# on the network).
#
# On the other hand, with some RILs it's causing some trouble (like this
# extra RIL_REQUEST_RADIO_POWER getting stuck indefinitely).
#
# Default true (for historical reasons)
#
#confirmRadioPowerOn=true
# Normally we should be able to have two simultaneously active data
# contexts - one for mobile data and one for MMS. Some devices however
# require that mobile data is disconnected before we can send or receive
# MMS. In other words, activation of the second data context fails.
#
# Default false (more than one context is supported)
#
#singleDataContext=false
# With some RILs, RIL_REQUEST_QUERY_AVAILABLE_NETWORKS returns strange
# operator names, i.e. numeric MCC+MNC values or the same name for all
# operators (which is actually SPN fetched from the SIM). Such strange
# names can be replaced with operator names from MBPI database, based
# on the operator's MCC and MNC. That may not be 100% accurate, though.
#
# Default false (i.e. trust RIL to report the actual names)
#
#replaceStrangeOperatorNames=false
# Configures whether +0 is added to MCCMNC string passed to
# RIL_REQUEST_SET_NETWORK_SELECTION_MANUAL. Some Qualcomm RILs
# require it, some MediaTek RILs don't like it.
#
# Default true
#
#networkSelectionManual0=true
# Enables use of SET_DATA_PROFILE requests. Everything used to work without
# profiles, that's why it's disabled by default.
#
# Default false
#
#useDataProfiles=false
# Configures MMS data profile ID. Must be non-zero.
# This option is ignored if useDataProfiles is false.
#
# Default 2 (RIL_DATA_PROFILE_IMS)
#
#mmsDataProfileId=2
# Configures device state tracking (basically, power saving strategy).
# Possible values are:
#
# ss = Use legacy device state management (RIL_REQUEST_SCREEN_STATE)
# ds = Use newer device state management (RIL_REQUEST_SEND_DEVICE_STATE)
# ur = Use URC filter (RIL_REQUEST_SET_UNSOLICITED_RESPONSE_FILTER)
# This may be useful on devices with RIL version >= 15 if auto
# method fails
# auto = Choose ss or ds based on the RIL version
# none = Disable device state management
#
# In addition to specifying ss, ds or ur method, one can specify a
# combination of methods, e.g. ds+ur
#
# Default auto
#
#deviceStateTracking=auto
# On some phones (such as Jolla C), even if the slot which has been
# using LTE gets powered off, we still need to explicitely set its
# preferred mode to GSM, to make LTE machinery available to the other slot.
#
# Default true (false for MTK RILs)
#
#forceGsmWhenRadioOff=true
# Configures a period between RIL_UNSOL_CELL_INFO_LIST events when the device
# is awake. Possible values are:
#
# 0 = invoke RIL_UNSOL_CELL_INFO_LIST when any of the reported information
# changes
# 1..INT_MAX-1 (2147483646) = sets update period in milliseconds
# negative value or INT_MAX = never issue a RIL_UNSOL_CELL_INFO_LIST
#
# On MediaTek devices the period of RIL_UNSOL_CELL_INFO_LIST events can't be
# configured. The parameter RIL_REQUEST_SET_UNSOL_CELL_INFO_LIST_RATE has
# non-standard meaning:
#
# 0 = enable RIL_UNSOL_CELL_INFO_LIST
# any other value = disable RIL_UNSOL_CELL_INFO_LIST
#
# Default 2000
#
#cellInfoIntervalShortMs=2000
# Configures period between RIL_UNSOL_CELL_INFO_LIST events when the device is
# in a power saving mode. For possible values, look cellInfoIntervalShortMs.
#
# Default 30000
#
#cellInfoIntervalLongMs=30000

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@@ -1,110 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
* Copyright (C) 2019-2020 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_TYPES_H
#define RIL_TYPES_H
#ifdef HAVE_CONFIG_H
#include <config.h>
#endif
#include <grilio_types.h>
#include <gutil_macros.h>
struct ofono_watch;
struct ofono_modem;
struct ofono_sim;
#include <ofono/types.h>
#include <ofono/radio-settings.h>
#include <stdio.h>
#include <errno.h>
#include <stdlib.h>
#include <string.h>
#include <unistd.h>
#include "ril_constants.h"
#define RIL_RETRY_SECS (2)
#define RIL_RETRY_MS (RIL_RETRY_SECS*1000)
struct ril_data;
struct ril_data_call;
struct ril_modem;
struct ril_radio;
struct ril_network;
struct ril_sim_card;
struct ril_vendor;
enum ril_data_role {
RIL_DATA_ROLE_NONE, /* Mobile data not required */
RIL_DATA_ROLE_MMS, /* Data is needed at any speed */
RIL_DATA_ROLE_INTERNET /* Data is needed at full speed */
};
struct ril_slot_config {
guint slot;
enum ofono_radio_access_mode techs;
enum ril_pref_net_type lte_network_mode;
enum ril_pref_net_type umts_network_mode;
int network_mode_timeout;
int network_selection_timeout;
int signal_strength_dbm_weak;
int signal_strength_dbm_strong;
gboolean query_available_band_mode;
gboolean empty_pin_query;
gboolean radio_power_cycle;
gboolean confirm_radio_power_on;
gboolean enable_voicecall;
gboolean enable_cbs;
gboolean enable_stk;
gboolean replace_strange_oper;
gboolean network_selection_manual_0;
gboolean force_gsm_when_radio_off;
gboolean use_data_profiles;
guint mms_data_profile_id;
GUtilInts *local_hangup_reasons;
GUtilInts *remote_hangup_reasons;
int cell_info_interval_short_ms;
int cell_info_interval_long_ms;
};
/* Some values copied from ofono's internal common.h */
/* 27.007 Section 7.11 */
enum bearer_class {
BEARER_CLASS_VOICE = 1,
BEARER_CLASS_DATA = 2,
BEARER_CLASS_FAX = 4,
BEARER_CLASS_DEFAULT = 7,
BEARER_CLASS_SMS = 8,
BEARER_CLASS_DATA_SYNC = 16,
BEARER_CLASS_DATA_ASYNC = 32,
BEARER_CLASS_SS_DEFAULT = 61,
BEARER_CLASS_PACKET = 64,
BEARER_CLASS_PAD = 128
};
#endif /* RIL_TYPES_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,263 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
* Copyright (C) 2019 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_plugin.h"
#include "ril_util.h"
#include "ril_log.h"
#include <ofono/misc.h>
#define USSD_REQUEST_TIMEOUT_SEC (30)
#define USSD_CANCEL_TIMEOUT_SEC (20)
struct ril_ussd {
struct ofono_ussd *ussd;
GRilIoChannel *io;
GRilIoQueue *q;
guint request_id;
guint cancel_id;
guint timer_id;
gulong event_id;
};
struct ril_ussd_cbd {
struct ril_ussd *ud;
ofono_ussd_cb_t cb;
gpointer data;
};
static inline struct ril_ussd *ril_ussd_get_data(struct ofono_ussd *ussd)
{
return ofono_ussd_get_data(ussd);
}
static struct ril_ussd_cbd *ril_ussd_cbd_new(struct ril_ussd *ud,
ofono_ussd_cb_t cb, void *data)
{
struct ril_ussd_cbd *cbd = g_slice_new(struct ril_ussd_cbd);
cbd->ud = ud;
cbd->cb = cb;
cbd->data = data;
return cbd;
}
static void ril_ussd_cbd_free(void *cbd)
{
g_slice_free(struct ril_ussd_cbd, cbd);
}
static void ril_ussd_cancel_cb(GRilIoChannel *io, int status,
const void *data, guint len, void *user_data)
{
struct ofono_error error;
struct ril_ussd_cbd *cbd = user_data;
struct ril_ussd *ud = cbd->ud;
/* Always report sucessful completion, otherwise ofono may get
* stuck in the USSD_STATE_ACTIVE state */
GASSERT(ud->cancel_id);
ud->cancel_id = 0;
cbd->cb(ril_error_ok(&error), cbd->data);
}
static void ril_ussd_response(GRilIoChannel* channel, int status,
const void* data, guint len, void* user_data)
{
struct ofono_error error;
struct ril_ussd_cbd *cbd = user_data;
struct ril_ussd *ud = cbd->ud;
GASSERT(ud->request_id);
ud->request_id = 0;
if (status == RIL_E_SUCCESS) {
ril_error_init_ok(&error);
} else {
ril_error_init_failure(&error);
}
cbd->cb(&error, cbd->data);
}
static void ril_ussd_request(struct ofono_ussd *ussd, int dcs,
const unsigned char *pdu, int len, ofono_ussd_cb_t cb, void *data)
{
struct ofono_error error;
enum ofono_sms_charset charset;
struct ril_ussd *ud = ril_ussd_get_data(ussd);
ofono_info("send ussd, len:%d", len);
GASSERT(!ud->request_id);
if (ud->request_id) {
grilio_queue_cancel_request(ud->q, ud->request_id, FALSE);
ud->request_id = 0;
}
if (ofono_decode_cbs_dcs_charset(dcs, &charset) &&
charset == OFONO_SMS_CHARSET_7BIT) {
char unpacked[182];
unsigned int written = ofono_unpack_7bit(pdu, len,
OFONO_UNPACK_7BIT_USSD, unpacked, sizeof(unpacked)-1);
unpacked[written] = 0;
if (written >= 1) {
/*
* When USSD was packed, additional CR
* might have been added (according to
* 23.038 6.1.2.3.1). So if the last
* character is CR, it should be removed
* here.
*
* Over 2 characters long USSD string must
* end with # (checked in valid_ussd_string),
* so it should be safe to remove extra CR.
*/
GRilIoRequest *req = grilio_request_new();
int length = strlen(unpacked);
while (length > 2 && unpacked[length-1] == '\r') {
unpacked[--length] = 0;
}
grilio_request_append_utf8_chars(req, (char*)
unpacked, length);
grilio_request_set_timeout(req,
USSD_REQUEST_TIMEOUT_SEC * 1000);
ud->request_id = grilio_queue_send_request_full(ud->q,
req, RIL_REQUEST_SEND_USSD,
ril_ussd_response,
ril_ussd_cbd_free,
ril_ussd_cbd_new(ud, cb, data));
grilio_request_unref(req);
return;
}
}
cb(ril_error_failure(&error), data);
}
static void ril_ussd_cancel(struct ofono_ussd *ussd,
ofono_ussd_cb_t cb, void *data)
{
struct ril_ussd *ud = ril_ussd_get_data(ussd);
GRilIoRequest *req = grilio_request_new();
ofono_info("send ussd cancel");
GASSERT(!ud->cancel_id);
grilio_queue_cancel_request(ud->q, ud->cancel_id, FALSE);
grilio_request_set_timeout(req, USSD_CANCEL_TIMEOUT_SEC * 1000);
ud->cancel_id = grilio_queue_send_request_full(ud->q, req,
RIL_REQUEST_CANCEL_USSD, ril_ussd_cancel_cb,
ril_ussd_cbd_free, ril_ussd_cbd_new(ud, cb, data));
grilio_request_unref(req);
}
static void ril_ussd_notify(GRilIoChannel *io, guint code,
const void *data, guint len, void *user_data)
{
struct ril_ussd *ud = user_data;
GRilIoParser rilp;
char *type;
guint32 n = 0;
ofono_info("ussd received");
GASSERT(code == RIL_UNSOL_ON_USSD);
grilio_parser_init(&rilp, data, len);
grilio_parser_get_uint32(&rilp, &n);
type = grilio_parser_get_utf8(&rilp);
if (type) {
int ussdtype = g_ascii_xdigit_value(*type);
char *msg = (n > 1) ? grilio_parser_get_utf8(&rilp) : NULL;
if (msg) {
const int msglen = strlen(msg);
DBG("ussd length %d", msglen);
ofono_ussd_notify(ud->ussd, ussdtype, 0xFF,
(const unsigned char *)msg, msglen);
/* msg is freed by core if dcs is 0xFF */
} else {
ofono_ussd_notify(ud->ussd, ussdtype, 0, NULL, 0);
}
g_free(type);
}
}
static gboolean ril_ussd_register(gpointer user_data)
{
struct ril_ussd *ud = user_data;
DBG("");
GASSERT(ud->timer_id);
ud->timer_id = 0;
ofono_ussd_register(ud->ussd);
/* Register for USSD events */
ud->event_id = grilio_channel_add_unsol_event_handler(ud->io,
ril_ussd_notify, RIL_UNSOL_ON_USSD, ud);
/* Single-shot */
return G_SOURCE_REMOVE;
}
static int ril_ussd_probe(struct ofono_ussd *ussd, unsigned int vendor,
void *data)
{
struct ril_modem *modem = data;
struct ril_ussd *ud = g_try_new0(struct ril_ussd, 1);
DBG("");
ud->ussd = ussd;
ud->io = grilio_channel_ref(ril_modem_io(modem));
ud->q = grilio_queue_new(ud->io);
ud->timer_id = g_idle_add(ril_ussd_register, ud);
ofono_ussd_set_data(ussd, ud);
return 0;
}
static void ril_ussd_remove(struct ofono_ussd *ussd)
{
struct ril_ussd *ud = ril_ussd_get_data(ussd);
DBG("");
ofono_ussd_set_data(ussd, NULL);
if (ud->timer_id > 0) {
g_source_remove(ud->timer_id);
}
grilio_channel_remove_handler(ud->io, ud->event_id);
grilio_channel_unref(ud->io);
grilio_queue_cancel_all(ud->q, FALSE);
grilio_queue_unref(ud->q);
g_free(ud);
}
const struct ofono_ussd_driver ril_ussd_driver = {
.name = RILMODEM_DRIVER,
.probe = ril_ussd_probe,
.remove = ril_ussd_remove,
.request = ril_ussd_request,
.cancel = ril_ussd_cancel
};
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,512 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_util.h"
#include "ril_log.h"
#include <grilio_channel.h>
#include <gutil_misc.h>
#include <ofono/netreg.h>
#include <ofono/misc.h>
#include <ctype.h>
#define RIL_PROTO_IP_STR "IP"
#define RIL_PROTO_IPV6_STR "IPV6"
#define RIL_PROTO_IPV4V6_STR "IPV4V6"
const char *ril_error_to_string(int error)
{
#define RIL_E_(name) case RIL_E_##name: return #name
#define GRILIO_E_(name) case GRILIO_STATUS_##name: return "GRILIO_" #name
static char unknown[12];
switch (error) {
case RIL_E_SUCCESS: return "OK";
GRILIO_E_(TIMEOUT);
GRILIO_E_(CANCELLED);
RIL_E_(RADIO_NOT_AVAILABLE);
RIL_E_(GENERIC_FAILURE);
RIL_E_(PASSWORD_INCORRECT);
RIL_E_(SIM_PIN2);
RIL_E_(SIM_PUK2);
RIL_E_(REQUEST_NOT_SUPPORTED);
RIL_E_(CANCELLED);
RIL_E_(OP_NOT_ALLOWED_DURING_VOICE_CALL);
RIL_E_(OP_NOT_ALLOWED_BEFORE_REG_TO_NW);
RIL_E_(SMS_SEND_FAIL_RETRY);
RIL_E_(SIM_ABSENT);
RIL_E_(SUBSCRIPTION_NOT_AVAILABLE);
RIL_E_(MODE_NOT_SUPPORTED);
RIL_E_(FDN_CHECK_FAILURE);
RIL_E_(ILLEGAL_SIM_OR_ME);
RIL_E_(MISSING_RESOURCE);
RIL_E_(NO_SUCH_ELEMENT);
RIL_E_(DIAL_MODIFIED_TO_USSD);
RIL_E_(DIAL_MODIFIED_TO_SS);
RIL_E_(DIAL_MODIFIED_TO_DIAL);
RIL_E_(USSD_MODIFIED_TO_DIAL);
RIL_E_(USSD_MODIFIED_TO_SS);
RIL_E_(USSD_MODIFIED_TO_USSD);
RIL_E_(SS_MODIFIED_TO_DIAL);
RIL_E_(SS_MODIFIED_TO_USSD);
RIL_E_(SUBSCRIPTION_NOT_SUPPORTED);
RIL_E_(SS_MODIFIED_TO_SS);
RIL_E_(LCE_NOT_SUPPORTED);
RIL_E_(NO_MEMORY);
RIL_E_(INTERNAL_ERR);
RIL_E_(SYSTEM_ERR);
RIL_E_(MODEM_ERR);
RIL_E_(INVALID_STATE);
RIL_E_(NO_RESOURCES);
RIL_E_(SIM_ERR);
RIL_E_(INVALID_ARGUMENTS);
RIL_E_(INVALID_SIM_STATE);
RIL_E_(INVALID_MODEM_STATE);
RIL_E_(INVALID_CALL_ID);
RIL_E_(NO_SMS_TO_ACK);
RIL_E_(NETWORK_ERR);
RIL_E_(REQUEST_RATE_LIMITED);
RIL_E_(SIM_BUSY);
RIL_E_(SIM_FULL);
RIL_E_(NETWORK_REJECT);
RIL_E_(OPERATION_NOT_ALLOWED);
RIL_E_(EMPTY_RECORD);
RIL_E_(INVALID_SMS_FORMAT);
RIL_E_(ENCODING_ERR);
RIL_E_(INVALID_SMSC_ADDRESS);
RIL_E_(NO_SUCH_ENTRY);
RIL_E_(NETWORK_NOT_READY);
RIL_E_(NOT_PROVISIONED);
RIL_E_(NO_SUBSCRIPTION);
RIL_E_(NO_NETWORK_FOUND);
RIL_E_(DEVICE_IN_USE);
RIL_E_(ABORTED);
RIL_E_(INVALID_RESPONSE);
default:
snprintf(unknown, sizeof(unknown), "%d", error);
return unknown;
}
}
const char *ril_request_to_string(guint request)
{
#define RIL_REQUEST_(name) case RIL_REQUEST_##name: return #name
static char unknown[24];
switch (request) {
RIL_REQUEST_(GET_SIM_STATUS);
RIL_REQUEST_(ENTER_SIM_PIN);
RIL_REQUEST_(ENTER_SIM_PUK);
RIL_REQUEST_(ENTER_SIM_PIN2);
RIL_REQUEST_(ENTER_SIM_PUK2);
RIL_REQUEST_(CHANGE_SIM_PIN);
RIL_REQUEST_(CHANGE_SIM_PIN2);
RIL_REQUEST_(ENTER_NETWORK_DEPERSONALIZATION);
RIL_REQUEST_(GET_CURRENT_CALLS);
RIL_REQUEST_(DIAL);
RIL_REQUEST_(GET_IMSI);
RIL_REQUEST_(HANGUP);
RIL_REQUEST_(HANGUP_WAITING_OR_BACKGROUND);
RIL_REQUEST_(HANGUP_FOREGROUND_RESUME_BACKGROUND);
RIL_REQUEST_(SWITCH_HOLDING_AND_ACTIVE);
RIL_REQUEST_(CONFERENCE);
RIL_REQUEST_(UDUB);
RIL_REQUEST_(LAST_CALL_FAIL_CAUSE);
RIL_REQUEST_(SIGNAL_STRENGTH);
RIL_REQUEST_(VOICE_REGISTRATION_STATE);
RIL_REQUEST_(DATA_REGISTRATION_STATE);
RIL_REQUEST_(OPERATOR);
RIL_REQUEST_(RADIO_POWER);
RIL_REQUEST_(DTMF);
RIL_REQUEST_(SEND_SMS);
RIL_REQUEST_(SEND_SMS_EXPECT_MORE);
RIL_REQUEST_(SETUP_DATA_CALL);
RIL_REQUEST_(SIM_IO);
RIL_REQUEST_(SEND_USSD);
RIL_REQUEST_(CANCEL_USSD);
RIL_REQUEST_(GET_CLIR);
RIL_REQUEST_(SET_CLIR);
RIL_REQUEST_(QUERY_CALL_FORWARD_STATUS);
RIL_REQUEST_(SET_CALL_FORWARD);
RIL_REQUEST_(QUERY_CALL_WAITING);
RIL_REQUEST_(SET_CALL_WAITING);
RIL_REQUEST_(SMS_ACKNOWLEDGE);
RIL_REQUEST_(GET_IMEI);
RIL_REQUEST_(GET_IMEISV);
RIL_REQUEST_(ANSWER);
RIL_REQUEST_(DEACTIVATE_DATA_CALL);
RIL_REQUEST_(QUERY_FACILITY_LOCK);
RIL_REQUEST_(SET_FACILITY_LOCK);
RIL_REQUEST_(CHANGE_BARRING_PASSWORD);
RIL_REQUEST_(QUERY_NETWORK_SELECTION_MODE);
RIL_REQUEST_(SET_NETWORK_SELECTION_AUTOMATIC);
RIL_REQUEST_(SET_NETWORK_SELECTION_MANUAL);
RIL_REQUEST_(QUERY_AVAILABLE_NETWORKS);
RIL_REQUEST_(DTMF_START);
RIL_REQUEST_(DTMF_STOP);
RIL_REQUEST_(BASEBAND_VERSION);
RIL_REQUEST_(SEPARATE_CONNECTION);
RIL_REQUEST_(SET_MUTE);
RIL_REQUEST_(GET_MUTE);
RIL_REQUEST_(QUERY_CLIP);
RIL_REQUEST_(LAST_DATA_CALL_FAIL_CAUSE);
RIL_REQUEST_(DATA_CALL_LIST);
RIL_REQUEST_(RESET_RADIO);
RIL_REQUEST_(OEM_HOOK_RAW);
RIL_REQUEST_(OEM_HOOK_STRINGS);
RIL_REQUEST_(SCREEN_STATE);
RIL_REQUEST_(SET_SUPP_SVC_NOTIFICATION);
RIL_REQUEST_(WRITE_SMS_TO_SIM);
RIL_REQUEST_(DELETE_SMS_ON_SIM);
RIL_REQUEST_(SET_BAND_MODE);
RIL_REQUEST_(QUERY_AVAILABLE_BAND_MODE);
RIL_REQUEST_(STK_GET_PROFILE);
RIL_REQUEST_(STK_SET_PROFILE);
RIL_REQUEST_(STK_SEND_ENVELOPE_COMMAND);
RIL_REQUEST_(STK_SEND_TERMINAL_RESPONSE);
RIL_REQUEST_(STK_HANDLE_CALL_SETUP_REQUESTED_FROM_SIM);
RIL_REQUEST_(EXPLICIT_CALL_TRANSFER);
RIL_REQUEST_(SET_PREFERRED_NETWORK_TYPE);
RIL_REQUEST_(GET_PREFERRED_NETWORK_TYPE);
RIL_REQUEST_(GET_NEIGHBORING_CELL_IDS);
RIL_REQUEST_(SET_LOCATION_UPDATES);
RIL_REQUEST_(CDMA_SET_SUBSCRIPTION_SOURCE);
RIL_REQUEST_(CDMA_SET_ROAMING_PREFERENCE);
RIL_REQUEST_(CDMA_QUERY_ROAMING_PREFERENCE);
RIL_REQUEST_(SET_TTY_MODE);
RIL_REQUEST_(QUERY_TTY_MODE);
RIL_REQUEST_(CDMA_SET_PREFERRED_VOICE_PRIVACY_MODE);
RIL_REQUEST_(CDMA_QUERY_PREFERRED_VOICE_PRIVACY_MODE);
RIL_REQUEST_(CDMA_FLASH);
RIL_REQUEST_(CDMA_BURST_DTMF);
RIL_REQUEST_(CDMA_VALIDATE_AND_WRITE_AKEY);
RIL_REQUEST_(CDMA_SEND_SMS);
RIL_REQUEST_(CDMA_SMS_ACKNOWLEDGE);
RIL_REQUEST_(GSM_GET_BROADCAST_SMS_CONFIG);
RIL_REQUEST_(GSM_SET_BROADCAST_SMS_CONFIG);
RIL_REQUEST_(GSM_SMS_BROADCAST_ACTIVATION);
RIL_REQUEST_(CDMA_GET_BROADCAST_SMS_CONFIG);
RIL_REQUEST_(CDMA_SET_BROADCAST_SMS_CONFIG);
RIL_REQUEST_(CDMA_SMS_BROADCAST_ACTIVATION);
RIL_REQUEST_(CDMA_SUBSCRIPTION);
RIL_REQUEST_(CDMA_WRITE_SMS_TO_RUIM);
RIL_REQUEST_(CDMA_DELETE_SMS_ON_RUIM);
RIL_REQUEST_(DEVICE_IDENTITY);
RIL_REQUEST_(EXIT_EMERGENCY_CALLBACK_MODE);
RIL_REQUEST_(GET_SMSC_ADDRESS);
RIL_REQUEST_(SET_SMSC_ADDRESS);
RIL_REQUEST_(REPORT_SMS_MEMORY_STATUS);
RIL_REQUEST_(REPORT_STK_SERVICE_IS_RUNNING);
RIL_REQUEST_(CDMA_GET_SUBSCRIPTION_SOURCE);
RIL_REQUEST_(ISIM_AUTHENTICATION);
RIL_REQUEST_(ACKNOWLEDGE_INCOMING_GSM_SMS_WITH_PDU);
RIL_REQUEST_(STK_SEND_ENVELOPE_WITH_STATUS);
RIL_REQUEST_(VOICE_RADIO_TECH);
RIL_REQUEST_(GET_CELL_INFO_LIST);
RIL_REQUEST_(SET_UNSOL_CELL_INFO_LIST_RATE);
RIL_REQUEST_(SET_INITIAL_ATTACH_APN);
RIL_REQUEST_(IMS_REGISTRATION_STATE);
RIL_REQUEST_(IMS_SEND_SMS);
RIL_REQUEST_(SIM_TRANSMIT_APDU_BASIC);
RIL_REQUEST_(SIM_OPEN_CHANNEL);
RIL_REQUEST_(SIM_CLOSE_CHANNEL);
RIL_REQUEST_(SIM_TRANSMIT_APDU_CHANNEL);
RIL_REQUEST_(NV_READ_ITEM);
RIL_REQUEST_(NV_WRITE_ITEM);
RIL_REQUEST_(NV_WRITE_CDMA_PRL);
RIL_REQUEST_(NV_RESET_CONFIG);
RIL_REQUEST_(SET_UICC_SUBSCRIPTION);
RIL_REQUEST_(ALLOW_DATA);
RIL_REQUEST_(GET_HARDWARE_CONFIG);
RIL_REQUEST_(SIM_AUTHENTICATION);
RIL_REQUEST_(GET_DC_RT_INFO);
RIL_REQUEST_(SET_DC_RT_INFO_RATE);
RIL_REQUEST_(SET_DATA_PROFILE);
RIL_REQUEST_(SHUTDOWN);
RIL_REQUEST_(GET_RADIO_CAPABILITY);
RIL_REQUEST_(SET_RADIO_CAPABILITY);
RIL_REQUEST_(START_LCE);
RIL_REQUEST_(STOP_LCE);
RIL_REQUEST_(GET_ACTIVITY_INFO);
RIL_REQUEST_(GET_CARRIER_RESTRICTIONS);
RIL_REQUEST_(SEND_DEVICE_STATE);
RIL_REQUEST_(SET_UNSOLICITED_RESPONSE_FILTER);
RIL_REQUEST_(SET_SIM_CARD_POWER);
RIL_REQUEST_(SET_CARRIER_INFO_IMSI_ENCRYPTION);
RIL_REQUEST_(START_NETWORK_SCAN);
RIL_REQUEST_(STOP_NETWORK_SCAN);
RIL_REQUEST_(START_KEEPALIVE);
RIL_REQUEST_(STOP_KEEPALIVE);
case RIL_RESPONSE_ACKNOWLEDGEMENT:
return "RESPONSE_ACK";
default:
snprintf(unknown, sizeof(unknown), "RIL_REQUEST_%d", request);
return unknown;
}
}
const char *ril_unsol_event_to_string(guint event)
{
#define RIL_UNSOL_(name) case RIL_UNSOL_##name: return #name
static char unknown[24];
switch (event) {
RIL_UNSOL_(RESPONSE_RADIO_STATE_CHANGED);
RIL_UNSOL_(RESPONSE_CALL_STATE_CHANGED);
RIL_UNSOL_(RESPONSE_VOICE_NETWORK_STATE_CHANGED);
RIL_UNSOL_(RESPONSE_NEW_SMS);
RIL_UNSOL_(RESPONSE_NEW_SMS_STATUS_REPORT);
RIL_UNSOL_(RESPONSE_NEW_SMS_ON_SIM);
RIL_UNSOL_(ON_USSD);
RIL_UNSOL_(ON_USSD_REQUEST);
RIL_UNSOL_(NITZ_TIME_RECEIVED);
RIL_UNSOL_(SIGNAL_STRENGTH);
RIL_UNSOL_(DATA_CALL_LIST_CHANGED);
RIL_UNSOL_(SUPP_SVC_NOTIFICATION);
RIL_UNSOL_(STK_SESSION_END);
RIL_UNSOL_(STK_PROACTIVE_COMMAND);
RIL_UNSOL_(STK_EVENT_NOTIFY);
RIL_UNSOL_(STK_CALL_SETUP);
RIL_UNSOL_(SIM_SMS_STORAGE_FULL);
RIL_UNSOL_(SIM_REFRESH);
RIL_UNSOL_(CALL_RING);
RIL_UNSOL_(RESPONSE_SIM_STATUS_CHANGED);
RIL_UNSOL_(RESPONSE_CDMA_NEW_SMS);
RIL_UNSOL_(RESPONSE_NEW_BROADCAST_SMS);
RIL_UNSOL_(CDMA_RUIM_SMS_STORAGE_FULL);
RIL_UNSOL_(RESTRICTED_STATE_CHANGED);
RIL_UNSOL_(ENTER_EMERGENCY_CALLBACK_MODE);
RIL_UNSOL_(CDMA_CALL_WAITING);
RIL_UNSOL_(CDMA_OTA_PROVISION_STATUS);
RIL_UNSOL_(CDMA_INFO_REC);
RIL_UNSOL_(OEM_HOOK_RAW);
RIL_UNSOL_(RINGBACK_TONE);
RIL_UNSOL_(RESEND_INCALL_MUTE);
RIL_UNSOL_(CDMA_SUBSCRIPTION_SOURCE_CHANGED);
RIL_UNSOL_(CDMA_PRL_CHANGED);
RIL_UNSOL_(EXIT_EMERGENCY_CALLBACK_MODE);
RIL_UNSOL_(RIL_CONNECTED);
RIL_UNSOL_(VOICE_RADIO_TECH_CHANGED);
RIL_UNSOL_(CELL_INFO_LIST);
RIL_UNSOL_(RESPONSE_IMS_NETWORK_STATE_CHANGED);
RIL_UNSOL_(UICC_SUBSCRIPTION_STATUS_CHANGED);
RIL_UNSOL_(SRVCC_STATE_NOTIFY);
RIL_UNSOL_(HARDWARE_CONFIG_CHANGED);
RIL_UNSOL_(DC_RT_INFO_CHANGED);
RIL_UNSOL_(RADIO_CAPABILITY);
RIL_UNSOL_(ON_SS);
RIL_UNSOL_(STK_CC_ALPHA_NOTIFY);
default:
snprintf(unknown, sizeof(unknown), "RIL_UNSOL_%d", event);
return unknown;
}
}
const char *ril_radio_state_to_string(int radio_state)
{
#define RADIO_STATE_(name) case RADIO_STATE_##name: return #name
static char unknown[16];
switch (radio_state) {
RADIO_STATE_(OFF);
RADIO_STATE_(UNAVAILABLE);
RADIO_STATE_(SIM_NOT_READY);
RADIO_STATE_(SIM_LOCKED_OR_ABSENT);
RADIO_STATE_(SIM_READY);
RADIO_STATE_(RUIM_NOT_READY);
RADIO_STATE_(RUIM_READY);
RADIO_STATE_(RUIM_LOCKED_OR_ABSENT);
RADIO_STATE_(NV_NOT_READY);
RADIO_STATE_(NV_READY);
RADIO_STATE_(ON);
default:
snprintf(unknown, sizeof(unknown), "%d (?)", radio_state);
return unknown;
}
}
const char *ril_protocol_from_ofono(enum ofono_gprs_proto proto)
{
switch (proto) {
case OFONO_GPRS_PROTO_IPV6:
return RIL_PROTO_IPV6_STR;
case OFONO_GPRS_PROTO_IPV4V6:
return RIL_PROTO_IPV4V6_STR;
case OFONO_GPRS_PROTO_IP:
return RIL_PROTO_IP_STR;
}
return NULL;
}
int ril_protocol_to_ofono(const gchar *str)
{
if (str) {
if (!strcmp(str, RIL_PROTO_IPV6_STR)) {
return OFONO_GPRS_PROTO_IPV6;
} else if (!strcmp(str, RIL_PROTO_IPV4V6_STR)) {
return OFONO_GPRS_PROTO_IPV4V6;
} else if (!strcmp(str, RIL_PROTO_IP_STR)) {
return OFONO_GPRS_PROTO_IP;
}
}
return -1;
}
enum ril_auth ril_auth_method_from_ofono(enum ofono_gprs_auth_method auth)
{
switch (auth) {
case OFONO_GPRS_AUTH_METHOD_NONE:
return RIL_AUTH_NONE;
case OFONO_GPRS_AUTH_METHOD_CHAP:
return RIL_AUTH_CHAP;
case OFONO_GPRS_AUTH_METHOD_PAP:
return RIL_AUTH_PAP;
case OFONO_GPRS_AUTH_METHOD_ANY:
/* Use default */
break;
}
/* Default */
return RIL_AUTH_BOTH;
}
enum ofono_access_technology ril_parse_tech(const char *stech, int *ril_tech)
{
int tech = -1;
enum ofono_access_technology access_tech =
OFONO_ACCESS_TECHNOLOGY_NONE;
if (gutil_parse_int(stech, 0, &tech)) {
switch (tech) {
case RADIO_TECH_GPRS:
case RADIO_TECH_GSM:
access_tech = OFONO_ACCESS_TECHNOLOGY_GSM;
break;
case RADIO_TECH_EDGE:
access_tech = OFONO_ACCESS_TECHNOLOGY_GSM_EGPRS;
break;
case RADIO_TECH_UMTS:
access_tech = OFONO_ACCESS_TECHNOLOGY_UTRAN;
break;
case RADIO_TECH_HSDPA:
access_tech = OFONO_ACCESS_TECHNOLOGY_UTRAN_HSDPA;
break;
case RADIO_TECH_HSUPA:
access_tech = OFONO_ACCESS_TECHNOLOGY_UTRAN_HSUPA;
break;
case RADIO_TECH_HSPA:
case RADIO_TECH_HSPAP:
access_tech = OFONO_ACCESS_TECHNOLOGY_UTRAN_HSDPA_HSUPA;
break;
case RADIO_TECH_LTE:
case RADIO_TECH_LTE_CA:
access_tech = OFONO_ACCESS_TECHNOLOGY_EUTRAN;
break;
default:
DBG("Unknown RIL tech %s", stech);
/* no break */
case RADIO_TECH_IWLAN:
case RADIO_TECH_UNKNOWN:
break;
}
}
if (ril_tech) {
*ril_tech = tech;
}
return access_tech;
}
gboolean ril_parse_mcc_mnc(const char *str, struct ofono_network_operator *op)
{
if (str) {
int i;
const char *ptr = str;
/* Three digit country code */
for (i = 0;
i < OFONO_MAX_MCC_LENGTH && *ptr && isdigit(*ptr);
i++) {
op->mcc[i] = *ptr++;
}
op->mcc[i] = 0;
if (i == OFONO_MAX_MCC_LENGTH) {
/* Usually 2 but sometimes 3 digit network code */
for (i = 0;
i < OFONO_MAX_MNC_LENGTH && *ptr && isdigit(*ptr);
i++) {
op->mnc[i] = *ptr++;
}
op->mnc[i] = 0;
if (i > 0) {
/*
* Sometimes MCC/MNC are followed by + and
* what looks like the technology code. This
* is of course completely undocumented.
*/
if (*ptr == '+') {
int tech = ril_parse_tech(ptr+1, NULL);
if (tech >= 0) {
op->tech = tech;
}
}
return TRUE;
}
}
}
return FALSE;
}
char* ril_encode_hex(const void *in, guint size)
{
char *out = g_new(char, size * 2 + 1);
ofono_encode_hex(in, size, out);
return out;
}
void *ril_decode_hex(const char *hex, int len, guint *out_size)
{
void *out = NULL;
guint size = 0;
if (hex) {
if (len < 0) {
len = (int) strlen(hex);
}
if (len > 0 && !(len & 1)) {
size = len/2;
out = g_malloc(size);
if (!gutil_hex2bin(hex, len, out)) {
g_free(out);
out = NULL;
size = 0;
}
}
}
if (out_size) {
*out_size = size;
}
return out;
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

View File

@@ -1,57 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2015-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_UTIL_H
#define RIL_UTIL_H
#include "ril_types.h"
#include <ofono/gprs-context.h>
struct ofono_network_operator;
const char *ril_error_to_string(int error);
const char *ril_request_to_string(guint request);
const char *ril_unsol_event_to_string(guint event);
const char *ril_radio_state_to_string(int radio_state);
const char *ril_protocol_from_ofono(enum ofono_gprs_proto proto);
int ril_protocol_to_ofono(const char *str);
enum ril_auth ril_auth_method_from_ofono(enum ofono_gprs_auth_method auth);
enum ofono_access_technology ril_parse_tech(const char *stech, int *ril_tech);
gboolean ril_parse_mcc_mnc(const char *str, struct ofono_network_operator *op);
#define ril_error_init_ok(err) \
((err)->error = 0, (err)->type = OFONO_ERROR_TYPE_NO_ERROR)
#define ril_error_init_failure(err) \
((err)->error = 0, (err)->type = OFONO_ERROR_TYPE_FAILURE)
#define ril_error_init_sim_error(err,sw1,sw2) \
((err)->error = ((sw1) << 8)|(sw2), (err)->type = OFONO_ERROR_TYPE_SIM)
#define ril_error_ok(err) (ril_error_init_ok(err), err)
#define ril_error_failure(err) (ril_error_init_failure(err), err)
#define ril_error_sim(err,sw1,sw2) (ril_error_init_sim_error(err,sw1,sw2), err)
char *ril_encode_hex(const void *in, guint size);
void *ril_decode_hex(const char *hex, int len, guint *out_size);
#endif /* RIL_UTIL_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

View File

@@ -1,218 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2019 Jolla Ltd.
* Copyright (C) 2019 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_vendor.h"
#include "ril_vendor_impl.h"
#include "ril_log.h"
#include <grilio_channel.h>
G_DEFINE_ABSTRACT_TYPE(RilVendor, ril_vendor, G_TYPE_OBJECT)
/* Vendor driver descriptors are in the "__vendor" section */
extern const struct ril_vendor_driver __start___vendor[];
extern const struct ril_vendor_driver __stop___vendor[];
const struct ril_vendor_driver *ril_vendor_find_driver(const char *name)
{
if (name) {
const struct ril_vendor_driver *d;
for (d = __start___vendor; d < __stop___vendor; d++) {
if (!strcasecmp(d->name, name)) {
return d;
}
}
}
return NULL;
}
RilVendor *ril_vendor_create(const struct ril_vendor_driver *driver,
GRilIoChannel *io, const char *path,
const struct ril_slot_config *config)
{
return (driver && driver->create_vendor) ?
driver->create_vendor(driver->driver_data, io, path, config) :
NULL;
}
RilVendor *ril_vendor_ref(RilVendor *self)
{
if (G_LIKELY(self)) {
g_object_ref(RIL_VENDOR(self));
}
return self;
}
void ril_vendor_unref(RilVendor *self)
{
if (G_LIKELY(self)) {
g_object_unref(RIL_VENDOR(self));
}
}
void ril_vendor_get_defaults(const struct ril_vendor_driver *vendor,
struct ril_vendor_defaults *defaults)
{
if (vendor && vendor->get_defaults) {
vendor->get_defaults(defaults);
}
}
const char *ril_vendor_request_to_string(RilVendor *self, guint request)
{
return G_LIKELY(self) ? RIL_VENDOR_GET_CLASS(self)->
request_to_string(self, request) : NULL;
}
const char *ril_vendor_event_to_string(RilVendor *self, guint event)
{
return G_LIKELY(self) ? RIL_VENDOR_GET_CLASS(self)->
event_to_string(self, event) : NULL;
}
void ril_vendor_set_network(RilVendor *self, struct ril_network *nw)
{
if (G_LIKELY(self)) {
RIL_VENDOR_GET_CLASS(self)->set_network(self, nw);
}
}
GRilIoRequest *ril_vendor_set_attach_apn_req(RilVendor *self, const char *apn,
const char *user, const char *password,
enum ril_auth auth, const char *proto)
{
return G_LIKELY(self) ? RIL_VENDOR_GET_CLASS(self)->
set_attach_apn_req(self, apn, user, password, auth, proto) :
NULL;
}
GRilIoRequest *ril_vendor_data_call_req(RilVendor *self, int tech,
enum ril_data_profile profile, const char *apn,
const char *username, const char *password,
enum ril_auth auth, const char *proto)
{
return G_LIKELY(self) ? RIL_VENDOR_GET_CLASS(self)->
data_call_req(self, tech, profile, apn, username, password,
auth, proto) : NULL;
}
gboolean ril_vendor_data_call_parse(RilVendor *self,
struct ril_data_call *call, int ver, GRilIoParser *rilp)
{
return G_LIKELY(self) && RIL_VENDOR_GET_CLASS(self)->
data_call_parse(self, call, ver, rilp);
}
gboolean ril_vendor_signal_strength_parse(RilVendor *self,
struct ril_vendor_signal_strength *signal_strength,
GRilIoParser *rilp)
{
return G_LIKELY(self) && RIL_VENDOR_GET_CLASS(self)->
signal_strength_parse(self, signal_strength, rilp);
}
static void ril_vendor_default_set_network(RilVendor *self,
struct ril_network *network)
{
if (self->network != network) {
if (self->network) {
g_object_remove_weak_pointer(G_OBJECT(self->network),
(gpointer*) &self->network);
}
self->network = network;
if (self->network) {
g_object_add_weak_pointer(G_OBJECT(network),
(gpointer*) &self->network);
}
}
}
static const char *ril_vendor_default_id_to_string(RilVendor *self, guint id)
{
return NULL;
}
static GRilIoRequest *ril_vendor_default_set_attach_apn_req(RilVendor *self,
const char *apn, const char *username,
const char *password, enum ril_auth auth,
const char *proto)
{
return NULL;
}
static GRilIoRequest *ril_vendor_default_data_call_req(RilVendor *self,
int tech, enum ril_data_profile profile,
const char *apn, const char *user, const char *passwd,
enum ril_auth auth, const char *proto)
{
return NULL;
}
static gboolean ril_vendor_default_data_call_parse(RilVendor *self,
struct ril_data_call *call, int version,
GRilIoParser *rilp)
{
return FALSE;
}
static gboolean ril_vendor_default_signal_strength_parse(RilVendor *self,
struct ril_vendor_signal_strength *signal_strength,
GRilIoParser *rilp)
{
return FALSE;
}
void ril_vendor_init_base(RilVendor *self, GRilIoChannel *io)
{
self->io = grilio_channel_ref(io);
}
static void ril_vendor_init(RilVendor *self)
{
}
static void ril_vendor_finalize(GObject* object)
{
RilVendor *self = RIL_VENDOR(object);
if (self->network) {
g_object_remove_weak_pointer(G_OBJECT(self->network),
(gpointer*) &self->network);
}
grilio_channel_unref(self->io);
G_OBJECT_CLASS(ril_vendor_parent_class)->finalize(object);
}
static void ril_vendor_class_init(RilVendorClass* klass)
{
G_OBJECT_CLASS(klass)->finalize = ril_vendor_finalize;
klass->set_network = ril_vendor_default_set_network;
klass->request_to_string = ril_vendor_default_id_to_string;
klass->event_to_string = ril_vendor_default_id_to_string;
klass->set_attach_apn_req = ril_vendor_default_set_attach_apn_req;
klass->data_call_req = ril_vendor_default_data_call_req;
klass->data_call_parse = ril_vendor_default_data_call_parse;
klass->signal_strength_parse = ril_vendor_default_signal_strength_parse;
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2016-2020 Jolla Ltd.
* Copyright (C) 2019-2020 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_VENDOR_H
#define RIL_VENDOR_H
#include "ril_types.h"
struct ril_vendor_defaults {
gboolean empty_pin_query;
gboolean legacy_imei_query;
gboolean enable_cbs;
gboolean enable_stk;
gboolean replace_strange_oper;
gboolean query_available_band_mode;
gboolean use_data_profiles;
gboolean force_gsm_when_radio_off;
guint mms_data_profile_id;
};
struct ril_vendor_driver {
const char *name;
const void *driver_data;
void (*get_defaults)(struct ril_vendor_defaults *defaults);
struct ril_vendor *(*create_vendor)(const void *driver_data,
GRilIoChannel *io, const char *path,
const struct ril_slot_config *cfg);
};
struct ril_vendor_signal_strength {
gint32 gsm; /* (0-31, 99) per TS 27.007 8.5 */
gint32 lte; /* (0-31, 99) per TS 27.007 8.5 */
gint32 qdbm; /* 4*dBm, 0 if none */
};
const struct ril_vendor_driver *ril_vendor_find_driver(const char *name);
struct ril_vendor *ril_vendor_create
(const struct ril_vendor_driver *vendor, GRilIoChannel *io,
const char *path, const struct ril_slot_config *cfg);
void ril_vendor_get_defaults(const struct ril_vendor_driver *vendor,
struct ril_vendor_defaults *defaults);
struct ril_vendor *ril_vendor_ref(struct ril_vendor *vendor);
void ril_vendor_unref(struct ril_vendor *vendor);
const char *ril_vendor_request_to_string(struct ril_vendor *vendor,
guint request);
const char *ril_vendor_event_to_string(struct ril_vendor *vendor,
guint event);
void ril_vendor_set_network(struct ril_vendor *vendor, struct ril_network *nw);
GRilIoRequest *ril_vendor_set_attach_apn_req(struct ril_vendor *vendor,
const char *apn, const char *username,
const char *password, enum ril_auth auth,
const char *proto);
GRilIoRequest *ril_vendor_data_call_req(struct ril_vendor *vendor, int tech,
enum ril_data_profile profile, const char *apn,
const char *username, const char *password,
enum ril_auth auth, const char *proto);
gboolean ril_vendor_data_call_parse(struct ril_vendor *vendor,
struct ril_data_call *call, int version,
GRilIoParser *rilp);
gboolean ril_vendor_signal_strength_parse(struct ril_vendor *vendor,
struct ril_vendor_signal_strength *signal_strength,
GRilIoParser *rilp);
/* Put vendor driver descriptors to the "__vendor" section */
#define RIL_VENDOR_DRIVER_DEFINE(name) const struct ril_vendor_driver name \
__attribute__((used, section("__vendor"))) =
#endif /* RIL_VENDOR_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2019 Jolla Ltd.
* Copyright (C) 2019 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef RIL_VENDOR_IMPL_H
#define RIL_VENDOR_IMPL_H
#include "ril_vendor.h"
#include <glib-object.h>
typedef struct ril_vendor {
GObject parent;
GRilIoChannel *io;
struct ril_network *network;
} RilVendor;
typedef struct ril_vendor_class {
GObjectClass parent;
void (*set_network)(RilVendor *vendor, struct ril_network *network);
const char *(*request_to_string)(RilVendor *vendor, guint request);
const char *(*event_to_string)(RilVendor *vendor, guint event);
GRilIoRequest *(*set_attach_apn_req)(RilVendor *vendor,
const char *apn, const char *username,
const char *password, enum ril_auth auth,
const char *proto);
GRilIoRequest *(*data_call_req)(RilVendor *vendor, int tech,
enum ril_data_profile profile, const char *apn,
const char *username, const char *password,
enum ril_auth auth, const char *proto);
gboolean (*data_call_parse)(RilVendor *vendor,
struct ril_data_call *call, int version,
GRilIoParser *rilp);
gboolean (*signal_strength_parse)(RilVendor *vendor,
struct ril_vendor_signal_strength *signal_strength,
GRilIoParser *rilp);
} RilVendorClass;
GType ril_vendor_get_type(void);
#define RIL_VENDOR_TYPE (ril_vendor_get_type())
#define RIL_VENDOR(obj) G_TYPE_CHECK_INSTANCE_CAST((obj), \
RIL_VENDOR_TYPE, RilVendor)
#define RIL_VENDOR_GET_CLASS(obj) G_TYPE_INSTANCE_GET_CLASS((obj), \
RIL_VENDOR_TYPE, RilVendorClass)
#define RIL_VENDOR_CLASS(klass) G_TYPE_CHECK_CLASS_CAST((klass), \
RIL_VENDOR_TYPE, RilVendorClass)
void ril_vendor_init_base(RilVendor *vendor, GRilIoChannel *io);
#endif /* RIL_VENDOR_IMPL_H */
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

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@@ -1,717 +0,0 @@
/*
* oFono - Open Source Telephony - RIL-based devices
*
* Copyright (C) 2016-2020 Jolla Ltd.
* Copyright (C) 2019-2020 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "ril_vendor.h"
#include "ril_vendor_impl.h"
#include "ril_network.h"
#include "ril_data.h"
#include "ril_util.h"
#include "ril_log.h"
#include <grilio_channel.h>
#include <grilio_parser.h>
#include <grilio_request.h>
#include <grilio_queue.h>
#include <gutil_misc.h>
#include <ofono/watch.h>
#include <ofono/gprs.h>
#define SET_INITIAL_ATTACH_APN_TIMEOUT (20*1000)
enum ril_mtk_events {
MTK_EVENT_REGISTRATION_SUSPENDED,
MTK_EVENT_SET_ATTACH_APN,
MTK_EVENT_PS_NETWORK_STATE_CHANGED,
MTK_EVENT_INCOMING_CALL_INDICATION,
MTK_EVENT_COUNT
};
typedef struct ril_vendor_mtk {
RilVendor vendor;
const struct ril_mtk_flavor *flavor;
GRilIoQueue *q;
struct ofono_watch *watch;
guint set_initial_attach_apn_id;
gboolean initial_attach_apn_ok;
gulong ril_event_id[MTK_EVENT_COUNT];
guint slot;
} RilVendorMtk;
typedef struct ril_vendor_mtk_auto {
RilVendorMtk mtk;
gulong detect_id;
} RilVendorMtkAuto;
typedef RilVendorClass RilVendorMtkClass;
typedef RilVendorMtkClass RilVendorMtkAutoClass;
#define RIL_VENDOR_TYPE_MTK (ril_vendor_mtk_get_type())
#define RIL_VENDOR_TYPE_MTK_AUTO (ril_vendor_mtk_auto_get_type())
G_DEFINE_TYPE(RilVendorMtk, ril_vendor_mtk, RIL_VENDOR_TYPE)
G_DEFINE_TYPE(RilVendorMtkAuto, ril_vendor_mtk_auto, RIL_VENDOR_TYPE_MTK)
#define RIL_VENDOR_MTK(obj) G_TYPE_CHECK_INSTANCE_CAST((obj), \
RIL_VENDOR_TYPE_MTK, RilVendorMtk)
#define RIL_VENDOR_MTK_AUTO(obj) G_TYPE_CHECK_INSTANCE_CAST((obj), \
RIL_VENDOR_TYPE_MTK_AUTO, RilVendorMtkAuto)
/* driver_data point this this: */
struct ril_mtk_flavor {
const char *name;
const struct ril_mtk_msg *msg;
void (*build_attach_apn_req_fn)(GRilIoRequest *req, const char *apn,
const char *username, const char *password,
enum ril_auth auth, const char *proto);
gboolean (*data_call_parse_fn)(struct ril_data_call *call,
int version, GRilIoParser *rilp);
gboolean (*signal_strength_fn)(struct ril_vendor_signal_strength *sig,
GRilIoParser *rilp);
};
/* MTK specific RIL messages (actual codes differ from model to model!) */
struct ril_mtk_msg {
guint request_resume_registration;
guint request_set_call_indication;
/* See ril_vendor_mtk_auto_detect_event */
#define unsol_msgs unsol_ps_network_state_changed
#define MTK_UNSOL_MSGS (4)
guint unsol_ps_network_state_changed;
guint unsol_registration_suspended;
guint unsol_incoming_call_indication;
guint unsol_set_attach_apn;
};
static const struct ril_mtk_msg msg_mtk1 = {
.request_resume_registration = 2050,
.request_set_call_indication = 2065,
.unsol_ps_network_state_changed = 3012,
.unsol_registration_suspended = 3021,
.unsol_incoming_call_indication = 3037,
.unsol_set_attach_apn = 3065
};
static const struct ril_mtk_msg msg_mtk2 = {
.request_resume_registration = 2065,
.request_set_call_indication = 2086,
.unsol_ps_network_state_changed = 3015,
.unsol_registration_suspended = 3024,
.unsol_incoming_call_indication = 3042,
.unsol_set_attach_apn = 3073
};
static const char *ril_vendor_mtk_request_to_string(RilVendor *vendor,
guint request)
{
RilVendorMtk *self = RIL_VENDOR_MTK(vendor);
const struct ril_mtk_msg *msg = self->flavor->msg;
if (request == msg->request_resume_registration) {
return "MTK_RESUME_REGISTRATION";
} else if (request == msg->request_set_call_indication) {
return "MTK_SET_CALL_INDICATION";
} else {
return NULL;
}
}
static const char *ril_vendor_mtk_unsol_msg_name(const struct ril_mtk_msg *msg,
guint event)
{
if (event == msg->unsol_ps_network_state_changed) {
return "MTK_PS_NETWORK_STATE_CHANGED";
} else if (event == msg->unsol_registration_suspended) {
return "MTK_REGISTRATION_SUSPENDED";
} else if (event == msg->unsol_set_attach_apn) {
return "MTK_SET_ATTACH_APN";
} else if (event == msg->unsol_incoming_call_indication) {
return "MTK_INCOMING_CALL_INDICATION";
} else {
return NULL;
}
}
static const char *ril_vendor_mtk_event_to_string(RilVendor *vendor,
guint event)
{
RilVendorMtk *self = RIL_VENDOR_MTK(vendor);
return ril_vendor_mtk_unsol_msg_name(self->flavor->msg, event);
}
static void ril_vendor_mtk_registration_suspended(GRilIoChannel *io, guint id,
const void *data, guint len, void *user_data)
{
RilVendorMtk *self = RIL_VENDOR_MTK(user_data);
const struct ril_mtk_msg *msg = self->flavor->msg;
GRilIoParser rilp;
int session_id;
GASSERT(id == msg->unsol_registration_suspended);
grilio_parser_init(&rilp, data, len);
if (grilio_parser_get_int32(&rilp, NULL) &&
grilio_parser_get_int32(&rilp, &session_id)) {
GRilIoRequest *req = grilio_request_new();
DBG("slot=%u,session_id=%d", self->slot, session_id);
grilio_request_append_int32(req, 1);
grilio_request_append_int32(req, session_id);
grilio_queue_send_request(self->q, req,
msg->request_resume_registration);
grilio_request_unref(req);
}
}
static void ril_vendor_mtk_build_attach_apn_req_1(GRilIoRequest *req,
const char *apn, const char *username, const char *password,
enum ril_auth auth, const char *proto)
{
DBG("\"%s\" %s", apn, proto);
grilio_request_append_utf8(req, apn);
grilio_request_append_utf8(req, proto);
grilio_request_append_utf8(req, proto); /* roamingProtocol */
grilio_request_append_int32(req, auth);
grilio_request_append_utf8(req, username);
grilio_request_append_utf8(req, password);
grilio_request_append_utf8(req, ""); /* operatorNumeric */
grilio_request_append_int32(req, FALSE); /* canHandleIms */
grilio_request_append_int32(req, -1); /* dualApnPlmnList */
}
static void ril_vendor_mtk_build_attach_apn_req_2(GRilIoRequest *req,
const char *apn, const char *username, const char *password,
enum ril_auth auth, const char *proto)
{
DBG("\"%s\" %s", apn, proto);
grilio_request_append_utf8(req, apn);
grilio_request_append_utf8(req, proto);
grilio_request_append_int32(req, auth);
grilio_request_append_utf8(req, username);
grilio_request_append_utf8(req, password);
grilio_request_append_utf8(req, ""); /* operatorNumeric */
grilio_request_append_int32(req, FALSE); /* canHandleIms */
grilio_request_append_int32(req, -1); /* dualApnPlmnList */
}
static void ril_vendor_mtk_initial_attach_apn_resp(GRilIoChannel *io,
int ril_status, const void *data, guint len, void *user_data)
{
RilVendorMtk *self = RIL_VENDOR_MTK(user_data);
GASSERT(self->set_initial_attach_apn_id);
self->set_initial_attach_apn_id = 0;
if (ril_status == RIL_E_SUCCESS) {
DBG("ok");
self->initial_attach_apn_ok = TRUE;
}
}
static void ril_vendor_mtk_initial_attach_apn_check(RilVendorMtk *self)
{
if (!self->set_initial_attach_apn_id && !self->initial_attach_apn_ok) {
struct ofono_watch *watch = self->watch;
const struct ofono_gprs_primary_context *pc =
ofono_gprs_context_settings_by_type(watch->gprs,
OFONO_GPRS_CONTEXT_TYPE_INTERNET);
if (pc) {
const char *username;
const char *password;
enum ril_auth auth;
GRilIoRequest *req = grilio_request_new();
if (pc->username[0] || pc->password[0]) {
username = pc->username;
password = pc->password;
auth = ril_auth_method_from_ofono
(pc->auth_method);
} else {
username = "";
password = "";
auth = RIL_AUTH_NONE;
}
self->flavor->build_attach_apn_req_fn(req,
pc->apn, username, password, auth,
ril_protocol_from_ofono(pc->proto));
grilio_request_set_timeout(req,
SET_INITIAL_ATTACH_APN_TIMEOUT);
self->set_initial_attach_apn_id =
grilio_queue_send_request_full(self->q, req,
RIL_REQUEST_SET_INITIAL_ATTACH_APN,
ril_vendor_mtk_initial_attach_apn_resp,
NULL, self);
grilio_request_unref(req);
}
}
}
static void ril_vendor_mtk_set_attach_apn(GRilIoChannel *io, guint id,
const void *data, guint len, void *user_data)
{
ril_vendor_mtk_initial_attach_apn_check(RIL_VENDOR_MTK(user_data));
}
static void ril_vendor_mtk_ps_network_state_changed(GRilIoChannel *io,
guint id, const void *data, guint len, void *user_data)
{
ril_network_query_registration_state(RIL_VENDOR(user_data)->network);
}
static void ril_vendor_mtk_incoming_call_indication(GRilIoChannel *io, guint id,
const void *data, guint len, void *user_data)
{
RilVendorMtk *self = RIL_VENDOR_MTK(user_data);
const struct ril_mtk_msg *msg = self->flavor->msg;
GRilIoRequest* req = NULL;
GASSERT(id == msg->unsol_incoming_call_indication);
if (msg->request_set_call_indication) {
int nparams, cid, seq;
gchar *call_id = NULL, *seq_no = NULL;
GRilIoParser rilp;
grilio_parser_init(&rilp, data, len);
if (grilio_parser_get_int32(&rilp, &nparams) && nparams >= 5 &&
(call_id = grilio_parser_get_utf8(&rilp)) != NULL &&
grilio_parser_skip_string(&rilp) /* number */ &&
grilio_parser_skip_string(&rilp) /* type */ &&
grilio_parser_skip_string(&rilp) /* call_mode */ &&
(seq_no = grilio_parser_get_utf8(&rilp)) != NULL &&
gutil_parse_int(call_id, 10, &cid) &&
gutil_parse_int(seq_no, 10, &seq)) {
DBG("slot=%u,cid=%d,seq=%d", self->slot, cid, seq);
req = grilio_request_new();
grilio_request_append_int32(req, 3); /* Param count */
/* mode - IMS_ALLOW_INCOMING_CALL_INDICATION: */
grilio_request_append_int32(req, 0);
grilio_request_append_int32(req, cid);
grilio_request_append_int32(req, seq);
} else {
DBG("failed to parse INCOMING_CALL_INDICATION");
}
g_free(call_id);
g_free(seq_no);
}
if (req) {
grilio_queue_send_request(self->q, req,
msg->request_set_call_indication);
grilio_request_unref(req);
} else {
/* Let ril_voicecall.c know that something happened */
grilio_channel_inject_unsol_event(io,
RIL_UNSOL_RESPONSE_CALL_STATE_CHANGED, NULL, 0);
}
}
static GRilIoRequest *ril_vendor_mtk_data_call_req(RilVendor *vendor, int tech,
enum ril_data_profile profile, const char *apn,
const char *username, const char *password,
enum ril_auth auth, const char *proto)
{
RilVendorMtk *self = RIL_VENDOR_MTK(vendor);
GRilIoRequest *req = grilio_request_new();
grilio_request_append_int32(req, 8); /* Number of parameters */
grilio_request_append_format(req, "%d", tech);
grilio_request_append_format(req, "%d", profile);
grilio_request_append_utf8(req, apn);
grilio_request_append_utf8(req, username);
grilio_request_append_utf8(req, password);
grilio_request_append_format(req, "%d", auth);
grilio_request_append_utf8(req, proto);
grilio_request_append_format(req, "%d", self->slot+1);
return req;
}
static GRilIoRequest *ril_vendor_mtk_set_attach_apn_req(RilVendor *vendor,
const char *apn, const char *user, const char *pass,
enum ril_auth auth, const char *prot)
{
RilVendorMtk *self = RIL_VENDOR_MTK(vendor);
GRilIoRequest *req = grilio_request_new();
self->flavor->build_attach_apn_req_fn(req, apn, user, pass, auth, prot);
return req;
}
static gboolean ril_vendor_mtk_data_call_parse_v6(struct ril_data_call *call,
int version, GRilIoParser *rilp)
{
if (version < 11) {
int prot;
char *prot_str;
guint32 status = PDP_FAIL_ERROR_UNSPECIFIED;
guint32 active = RIL_DATA_CALL_INACTIVE;
/* RIL_Data_Call_Response_v6 with MTK specific additions */
grilio_parser_get_uint32(rilp, &status);
grilio_parser_get_int32(rilp, &call->retry_time);
grilio_parser_get_int32(rilp, &call->cid);
grilio_parser_get_uint32(rilp, &active);
grilio_parser_get_int32(rilp, &call->mtu); /* MTK specific */
prot_str = grilio_parser_get_utf8(rilp);
prot = ril_protocol_to_ofono(prot_str);
g_free(prot_str);
if (prot >= 0) {
call->ifname = grilio_parser_get_utf8(rilp);
call->addresses = grilio_parser_split_utf8(rilp, " ");
call->dnses = grilio_parser_split_utf8(rilp, " ");
call->gateways = grilio_parser_split_utf8(rilp, " ");
if (call->ifname && call->addresses) {
call->prot = prot;
call->status = status;
call->active = active;
return TRUE;
}
}
}
return FALSE;
}
static gboolean ril_vendor_mtk_data_call_parse(RilVendor *vendor,
struct ril_data_call *call, int version,
GRilIoParser *rilp)
{
const struct ril_mtk_flavor *flavor = RIL_VENDOR_MTK(vendor)->flavor;
return flavor->data_call_parse_fn ?
flavor->data_call_parse_fn(call, version, rilp) :
RIL_VENDOR_CLASS(ril_vendor_mtk_parent_class)->
data_call_parse(vendor, call, version, rilp);
}
static gboolean ril_vendor_mtk_signal_strength_1
(struct ril_vendor_signal_strength *signal, GRilIoParser *rilp)
{
if (grilio_parser_bytes_remaining(rilp) == 64) {
gint32 rsrp = 0, rssi = 0;
/* GW_SignalStrength */
grilio_parser_get_int32(rilp, &signal->gsm);
grilio_parser_get_int32(rilp, NULL); /* bitErrorRate */
/* CDMA_SignalStrength */
grilio_parser_get_int32(rilp, NULL); /* dbm */
grilio_parser_get_int32(rilp, NULL); /* ecio */
/* EVDO_SignalStrength */
grilio_parser_get_int32(rilp, NULL); /* dbm */
grilio_parser_get_int32(rilp, NULL); /* ecio */
grilio_parser_get_int32(rilp, NULL); /* signalNoiseRatio */
/* LTE_SignalStrength */
grilio_parser_get_int32(rilp, &signal->lte);
grilio_parser_get_int32(rilp, &rsrp); /* rsrp */
grilio_parser_get_int32(rilp, NULL); /* rsrq */
grilio_parser_get_int32(rilp, NULL); /* rssnr */
grilio_parser_get_int32(rilp, NULL); /* cqi */
/* ???? */
grilio_parser_get_int32(rilp, NULL);
grilio_parser_get_int32(rilp, &rssi);
grilio_parser_get_int32(rilp, NULL);
grilio_parser_get_int32(rilp, NULL);
signal->qdbm = (rssi > 0 && rssi != INT_MAX) ? (-4 * rssi) :
(rsrp >= 44 && rsrp <= 140) ? (-4 * rsrp) : 0;
return TRUE;
}
return FALSE;
}
static gboolean ril_vendor_mtk_signal_strength_2
(struct ril_vendor_signal_strength *signal, GRilIoParser *rilp)
{
if (grilio_parser_bytes_remaining(rilp) == 64) {
gint32 rsrp = 0, is_gsm = 0, rssi_qdbm = 0;
/* GW_SignalStrength */
grilio_parser_get_int32(rilp, &signal->gsm);
grilio_parser_get_int32(rilp, NULL); /* bitErrorRate */
/* CDMA_SignalStrength */
grilio_parser_get_int32(rilp, NULL); /* dbm */
grilio_parser_get_int32(rilp, NULL); /* ecio */
/* EVDO_SignalStrength */
grilio_parser_get_int32(rilp, NULL); /* dbm */
grilio_parser_get_int32(rilp, NULL); /* ecio */
grilio_parser_get_int32(rilp, NULL); /* signalNoiseRatio */
/* LTE_SignalStrength */
grilio_parser_get_int32(rilp, &signal->lte);
grilio_parser_get_int32(rilp, &rsrp); /* rsrp */
grilio_parser_get_int32(rilp, NULL); /* rsrq */
grilio_parser_get_int32(rilp, NULL); /* rssnr */
grilio_parser_get_int32(rilp, NULL); /* cqi */
/* WCDMA_SignalStrength */
grilio_parser_get_int32(rilp, &is_gsm); /* isGsm */
grilio_parser_get_int32(rilp, &rssi_qdbm); /* rssiQdbm */
grilio_parser_get_int32(rilp, NULL); /* rscpQdbm */
grilio_parser_get_int32(rilp, NULL); /* Ecn0Qdbm*/
signal->qdbm = (is_gsm == 1 && rssi_qdbm < 0) ? rssi_qdbm :
(rsrp >= 44 && rsrp <= 140) ? (-4 * rsrp) : 0;
return TRUE;
}
return FALSE;
}
static gboolean ril_vendor_mtk_signal_strength_parse(RilVendor *vendor,
struct ril_vendor_signal_strength *signal,
GRilIoParser *rilp)
{
const struct ril_mtk_flavor *flavor = RIL_VENDOR_MTK(vendor)->flavor;
return flavor->signal_strength_fn ?
flavor->signal_strength_fn(signal, rilp) :
RIL_VENDOR_CLASS(ril_vendor_mtk_parent_class)->
signal_strength_parse(vendor, signal, rilp);
}
static void ril_vendor_mtk_get_defaults(struct ril_vendor_defaults *defaults)
{
/*
* With most Qualcomm RIL implementations, querying available band
* modes causes some magic Android properties to appear. Otherwise
* this request is pretty harmless and useless.
*
* Most MediaTek RIL implementations don't support this request and
* don't even bother to reply which slows things down because we wait
* for this request to complete at startup.
*/
defaults->query_available_band_mode = FALSE;
defaults->empty_pin_query = FALSE;
defaults->legacy_imei_query = TRUE;
defaults->force_gsm_when_radio_off = FALSE;
defaults->replace_strange_oper = TRUE;
}
static void ril_vendor_mtk_base_init(RilVendorMtk *self, GRilIoChannel *io,
const char *path, const struct ril_slot_config *config)
{
ril_vendor_init_base(&self->vendor, io);
self->q = grilio_queue_new(io);
self->watch = ofono_watch_new(path);
self->slot = config->slot;
}
static void ril_vendor_mtk_set_flavor(RilVendorMtk *self,
const struct ril_mtk_flavor *flavor)
{
GRilIoChannel *io = self->vendor.io;
const struct ril_mtk_msg *msg = flavor->msg;
grilio_channel_remove_all_handlers(io, self->ril_event_id);
self->flavor = flavor;
self->ril_event_id[MTK_EVENT_REGISTRATION_SUSPENDED] =
grilio_channel_add_unsol_event_handler(io,
ril_vendor_mtk_registration_suspended,
msg->unsol_registration_suspended, self);
if (msg->unsol_set_attach_apn) {
self->ril_event_id[MTK_EVENT_SET_ATTACH_APN] =
grilio_channel_add_unsol_event_handler(io,
ril_vendor_mtk_set_attach_apn,
msg->unsol_set_attach_apn, self);
}
if (msg->unsol_ps_network_state_changed) {
self->ril_event_id[MTK_EVENT_PS_NETWORK_STATE_CHANGED] =
grilio_channel_add_unsol_event_handler(io,
ril_vendor_mtk_ps_network_state_changed,
msg->unsol_ps_network_state_changed, self);
}
if (msg->unsol_incoming_call_indication) {
self->ril_event_id[MTK_EVENT_INCOMING_CALL_INDICATION] =
grilio_channel_add_unsol_event_handler(io,
ril_vendor_mtk_incoming_call_indication,
msg->unsol_incoming_call_indication, self);
}
}
static RilVendor *ril_vendor_mtk_create_from_data(const void *driver_data,
GRilIoChannel *io, const char *path,
const struct ril_slot_config *config)
{
const struct ril_mtk_flavor *flavor = driver_data;
RilVendorMtk *mtk = g_object_new(RIL_VENDOR_TYPE_MTK, NULL);
ril_vendor_mtk_base_init(mtk, io, path, config);
ril_vendor_mtk_set_flavor(mtk, flavor);
DBG("%s slot %u", flavor->name, mtk->slot);
return &mtk->vendor;
}
static void ril_vendor_mtk_init(RilVendorMtk *self)
{
}
static void ril_vendor_mtk_finalize(GObject* object)
{
RilVendorMtk *self = RIL_VENDOR_MTK(object);
RilVendor *vendor = &self->vendor;
DBG("slot %u", self->slot);
grilio_queue_cancel_all(self->q, FALSE);
grilio_queue_unref(self->q);
ofono_watch_unref(self->watch);
grilio_channel_remove_all_handlers(vendor->io, self->ril_event_id);
G_OBJECT_CLASS(ril_vendor_mtk_parent_class)->finalize(object);
}
static void ril_vendor_mtk_class_init(RilVendorMtkClass* klass)
{
G_OBJECT_CLASS(klass)->finalize = ril_vendor_mtk_finalize;
klass->request_to_string = ril_vendor_mtk_request_to_string;
klass->event_to_string = ril_vendor_mtk_event_to_string;
klass->set_attach_apn_req = ril_vendor_mtk_set_attach_apn_req;
klass->data_call_req = ril_vendor_mtk_data_call_req;
klass->data_call_parse = ril_vendor_mtk_data_call_parse;
klass->signal_strength_parse = ril_vendor_mtk_signal_strength_parse;
}
static const struct ril_mtk_flavor ril_mtk_flavor1 = {
.name = "mtk1",
.msg = &msg_mtk1,
.build_attach_apn_req_fn = &ril_vendor_mtk_build_attach_apn_req_1,
.data_call_parse_fn = NULL,
.signal_strength_fn = &ril_vendor_mtk_signal_strength_1
};
static const struct ril_mtk_flavor ril_mtk_flavor2 = {
.name = "mtk2",
.msg = &msg_mtk2,
.build_attach_apn_req_fn = &ril_vendor_mtk_build_attach_apn_req_2,
.data_call_parse_fn = &ril_vendor_mtk_data_call_parse_v6,
.signal_strength_fn = &ril_vendor_mtk_signal_strength_2
};
#define DEFAULT_MTK_TYPE (&ril_mtk_flavor1)
static const struct ril_mtk_flavor *mtk_flavors [] = {
&ril_mtk_flavor1,
&ril_mtk_flavor2
};
RIL_VENDOR_DRIVER_DEFINE(ril_vendor_driver_mtk1) {
.name = "mtk1",
.driver_data = &ril_mtk_flavor1,
.get_defaults = ril_vendor_mtk_get_defaults,
.create_vendor = ril_vendor_mtk_create_from_data
};
RIL_VENDOR_DRIVER_DEFINE(ril_vendor_driver_mtk2) {
.name = "mtk2",
.driver_data = &ril_mtk_flavor2,
.get_defaults = ril_vendor_mtk_get_defaults,
.create_vendor = ril_vendor_mtk_create_from_data
};
/* Auto-selection */
static void ril_vendor_mtk_auto_detect_event(GRilIoChannel *io, guint id,
const void *data, guint len, void *user_data)
{
RilVendorMtkAuto *self = RIL_VENDOR_MTK_AUTO(user_data);
guint i;
for (i = 0; i < G_N_ELEMENTS(mtk_flavors); i++) {
const struct ril_mtk_flavor *flavor = mtk_flavors[i];
const struct ril_mtk_msg *msg = flavor->msg;
const guint *ids = &msg->unsol_msgs;
guint j;
for (j = 0; j < MTK_UNSOL_MSGS; j++) {
if (ids[j] == id) {
DBG("event %u is %s %s", id, flavor->name,
ril_vendor_mtk_unsol_msg_name(msg,id));
ril_vendor_mtk_set_flavor(&self->mtk, flavor);
/* We are done */
grilio_channel_remove_handler(io,
self->detect_id);
self->detect_id = 0;
/* And repeat the event to invoke the handler */
grilio_channel_inject_unsol_event(io, id,
data, len);
return;
}
}
}
}
static void ril_vendor_mtk_auto_init(RilVendorMtkAuto *self)
{
}
static void ril_vendor_mtk_auto_finalize(GObject* object)
{
RilVendorMtkAuto *self = RIL_VENDOR_MTK_AUTO(object);
DBG("slot %u", self->mtk.slot);
grilio_channel_remove_handler(self->mtk.vendor.io, self->detect_id);
G_OBJECT_CLASS(ril_vendor_mtk_auto_parent_class)->finalize(object);
}
static void ril_vendor_mtk_auto_class_init(RilVendorMtkAutoClass* klass)
{
G_OBJECT_CLASS(klass)->finalize = ril_vendor_mtk_auto_finalize;
}
static RilVendor *ril_vendor_mtk_auto_create_vendor(const void *driver_data,
GRilIoChannel *io, const char *path,
const struct ril_slot_config *config)
{
RilVendorMtkAuto *self = g_object_new(RIL_VENDOR_TYPE_MTK_AUTO, NULL);
RilVendorMtk *mtk = &self->mtk;
ril_vendor_mtk_base_init(mtk, io, path, config);
ril_vendor_mtk_set_flavor(mtk, DEFAULT_MTK_TYPE);
DBG("%s slot %u", mtk->flavor->name, mtk->slot);
/*
* Subscribe for (all) unsolicited events. Keep on listening until
* we receive an MTK specific event that tells us which particular
* kind of MTK adaptation we are using.
*/
self->detect_id = grilio_channel_add_unsol_event_handler(io,
ril_vendor_mtk_auto_detect_event, 0, self);
return &mtk->vendor;
}
RIL_VENDOR_DRIVER_DEFINE(ril_vendor_driver_mtk) {
.name = "mtk",
.get_defaults = ril_vendor_mtk_get_defaults,
.create_vendor = ril_vendor_mtk_auto_create_vendor
};
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

File diff suppressed because it is too large Load Diff

View File

@@ -61,6 +61,8 @@ void ofono_lte_set_data(struct ofono_lte *lte, void *data);
void *ofono_lte_get_data(const struct ofono_lte *lte);
struct ofono_modem *ofono_lte_get_modem(const struct ofono_lte *lte);
#ifdef __cplusplus
}
#endif

View File

@@ -47,6 +47,9 @@ typedef void (*ofono_modem_online_cb_t)(const struct ofono_error *error,
typedef ofono_bool_t (*ofono_modem_compare_cb_t)(struct ofono_modem *modem,
void *user_data);
typedef void (*ofono_modemwatch_cb_t)(struct ofono_modem *modem,
ofono_bool_t added, void *data); /* Since mer/1.25+git2 */
struct ofono_modem_driver {
const char *name;
enum ofono_modem_type modem_type;
@@ -131,6 +134,11 @@ void ofono_modem_driver_unregister(const struct ofono_modem_driver *);
struct ofono_modem *ofono_modem_find(ofono_modem_compare_cb_t func,
void *user_data);
/* Since mer/1.25+git2 */
unsigned int ofono_modem_add_watch(ofono_modemwatch_cb_t cb, void *user,
ofono_destroy_func destroy);
ofono_bool_t ofono_modem_remove_watch(unsigned int id);
#ifdef __cplusplus
}
#endif

View File

@@ -29,10 +29,12 @@
extern "C" {
#endif
#if 0 /* Sailfish OS API must remain stable */
#ifndef OFONO_API_SUBJECT_TO_CHANGE
#error "Please define OFONO_API_SUBJECT_TO_CHANGE to acknowledge your \
understanding that oFono hasn't reached a stable API."
#endif
#endif
#define OFONO_PLUGIN_PRIORITY_LOW -100
#define OFONO_PLUGIN_PRIORITY_DEFAULT 0

View File

@@ -571,7 +571,7 @@ static void gemalto_pre_sim(struct ofono_modem *modem)
ofono_devinfo_create(modem, 0, "atmodem", data->app);
ofono_location_reporting_create(modem, 0, "gemaltomodem", data->app);
data->sim = ofono_sim_create(modem, OFONO_VENDOR_CINTERION, "atmodem",
data->sim = ofono_sim_create(modem, OFONO_VENDOR_GEMALTO, "atmodem",
data->app);
if (data->sim && data->have_sim == TRUE)
@@ -589,7 +589,7 @@ static void gemalto_post_sim(struct ofono_modem *modem)
ofono_phonebook_create(modem, 0, "atmodem", data->app);
ofono_sms_create(modem, OFONO_VENDOR_CINTERION, "atmodem", data->app);
ofono_sms_create(modem, OFONO_VENDOR_GEMALTO, "atmodem", data->app);
gprs = ofono_gprs_create(modem, 0, "atmodem", data->app);
gc = ofono_gprs_context_create(modem, 0, "atmodem", data->mdm);

View File

@@ -875,7 +875,7 @@ static void huawei_post_sim(struct ofono_modem *modem)
data->gprs = ofono_gprs_create(modem, OFONO_VENDOR_HUAWEI,
"atmodem", data->pcui);
data->gc = ofono_gprs_context_create(modem, 0,
data->gc = ofono_gprs_context_create(modem, OFONO_VENDOR_HUAWEI,
"atmodem", data->modem);
if (data->gprs && data->gc)

View File

@@ -422,8 +422,6 @@ static struct ofono_modem_driver mbim_driver = {
static int mbim_init(void)
{
l_debug("------------------->Foobar");
return ofono_modem_driver_register(&mbim_driver);
}

View File

@@ -40,6 +40,7 @@
#include <ofono/gprs-context.h>
#include <ofono/netmon.h>
#include <ofono/lte.h>
#include <ofono/voicecall.h>
#include <drivers/atmodem/atutil.h>
#include <drivers/atmodem/vendor.h>
@@ -286,6 +287,14 @@ static void ublox_pre_sim(struct ofono_modem *modem)
DBG("%p", modem);
ofono_devinfo_create(modem, 0, "atmodem", data->aux);
/*
* Call support is technically possible only after sim insertion
* with the module online. However the EMERGENCY_SETUP procedure of
* the 3GPP TS_24.008 is triggered by the same AT command,
* and namely 'ATD112;' and 'ATD911;'. Therefore it makes sense to
* add the voice support as soon as possible.
*/
ofono_voicecall_create(modem, 0, "atmodem", data->aux);
sim = ofono_sim_create(modem, data->vendor_family, "atmodem",
data->aux);

View File

@@ -233,10 +233,11 @@ static gboolean setup_gobi(struct modem_info *modem)
}
}
DBG("qmi=%s net=%s mdm=%s gps=%s diag=%s", qmi, net, mdm, gps, diag);
if (qmi == NULL || mdm == NULL || net == NULL)
return FALSE;
DBG("qmi=%s net=%s mdm=%s gps=%s diag=%s", qmi, net, mdm, gps, diag);
ofono_modem_set_string(modem->modem, "Device", qmi);
ofono_modem_set_string(modem->modem, "Modem", mdm);
@@ -710,7 +711,8 @@ static gboolean setup_telitqmi(struct modem_info *modem)
return TRUE;
}
static gboolean setup_sim900(struct modem_info *modem)
/* TODO: Not used as we have no simcom driver */
static gboolean setup_simcom(struct modem_info *modem)
{
const char *mdm = NULL, *aux = NULL, *gps = NULL, *diag = NULL;
GSList *list;
@@ -1279,7 +1281,7 @@ static struct {
{ "nokia", setup_nokia },
{ "telit", setup_telit, "device/interface" },
{ "telitqmi", setup_telitqmi },
{ "sim900", setup_sim900 },
{ "simcom", setup_simcom },
{ "sim7100", setup_sim7100 },
{ "zte", setup_zte },
{ "icera", setup_icera },
@@ -1378,11 +1380,19 @@ static gboolean check_remove(gpointer key, gpointer value, gpointer user_data)
const char *devpath = user_data;
GSList *list;
for (list = modem->devices; list; list = list->next) {
struct device_info *info = list->data;
switch (modem->type) {
case MODEM_TYPE_USB:
for (list = modem->devices; list; list = list->next) {
struct device_info *info = list->data;
if (g_strcmp0(info->devpath, devpath) == 0)
if (g_strcmp0(info->devpath, devpath) == 0)
return TRUE;
}
break;
case MODEM_TYPE_SERIAL:
if (g_strcmp0(modem->serial->devpath, devpath) == 0)
return TRUE;
break;
}
return FALSE;
@@ -1644,7 +1654,7 @@ static struct {
{ "alcatel", "option", "1bbb", "0017" },
{ "novatel", "option", "1410" },
{ "zte", "option", "19d2" },
{ "sim900", "option", "05c6", "9000" },
{ "simcom", "option", "05c6", "9000" },
{ "sim7100", "option", "1e0e", "9001" },
{ "telit", "usbserial", "1bc7" },
{ "telit", "option", "1bc7" },
@@ -1731,6 +1741,9 @@ static void check_usb_device(struct udev_device *device)
DBG("%s [%s:%s]", drv, vendor, model);
if (vendor == NULL || model == NULL)
return;
for (i = 0; vendor_list[i].driver; i++) {
if (g_str_equal(vendor_list[i].drv, drv) == FALSE)
continue;

View File

@@ -1317,7 +1317,7 @@ static void pri_read_settings_callback(const struct ofono_error *error,
value = pri_ctx->active;
gprs->flags &= !GPRS_FLAG_ATTACHING;
gprs->flags &= ~GPRS_FLAG_ATTACHING;
gprs->driver_attached = TRUE;
gprs_set_attached_property(gprs, TRUE);
@@ -2004,6 +2004,9 @@ static void release_active_contexts(struct ofono_gprs *gprs)
if (gc->driver->detach_shutdown != NULL)
gc->driver->detach_shutdown(gc, ctx->context.cid);
/* Make sure the context is properly cleared */
release_context(ctx);
}
}

View File

@@ -343,7 +343,7 @@ void ofono_lte_register(struct ofono_lte *lte)
const char *imsi = ofono_sim_get_imsi(sim);
if (imsi == NULL) {
ofono_error("No sim atom required for registering LTE atom.");
ofono_error("No sim atom found. It is required for registering LTE atom.");
return;
}
@@ -373,3 +373,8 @@ void *ofono_lte_get_data(const struct ofono_lte *lte)
{
return lte->driver_data;
}
struct ofono_modem *ofono_lte_get_modem(const struct ofono_lte *lte)
{
return __ofono_atom_get_modem(lte->atom);
}

View File

@@ -217,11 +217,6 @@ int main(int argc, char **argv)
struct ell_event_source *source;
#endif
#ifdef NEED_THREADS
if (g_thread_supported() == FALSE)
g_thread_init(NULL);
#endif
context = g_option_context_new(NULL);
g_option_context_add_main_entries(context, options, NULL);
@@ -252,13 +247,6 @@ int main(int argc, char **argv)
event_loop = g_main_loop_new(NULL, FALSE);
#ifdef NEED_THREADS
if (dbus_threads_init_default() == FALSE) {
fprintf(stderr, "Can't init usage of threads\n");
exit(1);
}
#endif
#ifdef HAVE_ELL
l_log_set_stderr();
l_debug_enable("*");

View File

@@ -2359,3 +2359,16 @@ void __ofono_modem_dec_emergency_mode(struct ofono_modem *modem)
out:
modem->emergency--;
}
/* Since mer/1.25+git2 */
unsigned int ofono_modem_add_watch(ofono_modemwatch_cb_t cb, void *user,
ofono_destroy_func destroy)
{
return __ofono_modemwatch_add(cb, user, destroy);
}
ofono_bool_t ofono_modem_remove_watch(unsigned int id)
{
return __ofono_modemwatch_remove(id);
}

View File

@@ -225,8 +225,6 @@ gboolean __ofono_modem_remove_atom_watch(struct ofono_modem *modem,
void __ofono_atom_free(struct ofono_atom *atom);
typedef void (*ofono_modemwatch_cb_t)(struct ofono_modem *modem,
gboolean added, void *data);
void __ofono_modemwatch_init(void);
void __ofono_modemwatch_cleanup(void);
unsigned int __ofono_modemwatch_add(ofono_modemwatch_cb_t cb, void *user,

View File

@@ -263,6 +263,7 @@ static inline void slot_manager_dbus_signal_imsi(struct slot_manager_dbus *dbus,
const char *name, const char *imsi)
{
if (!imsi) imsi = SM_DBUS_IMSI_AUTO;
DBG("%s %s", name, imsi);
g_dbus_emit_signal(dbus->conn, SM_DBUS_PATH, SM_DBUS_INTERFACE,
name, DBUS_TYPE_STRING, &imsi, DBUS_TYPE_INVALID);
}
@@ -271,6 +272,7 @@ static inline void slot_manager_dbus_signal_string
(struct slot_manager_dbus *dbus, const char *name, const char *str)
{
if (!str) str = "";
DBG("%s %s", name, str);
g_dbus_emit_signal(dbus->conn, SM_DBUS_PATH, SM_DBUS_INTERFACE,
name, DBUS_TYPE_STRING, &str, DBUS_TYPE_INVALID);
}
@@ -278,6 +280,7 @@ static inline void slot_manager_dbus_signal_string
static inline void slot_manager_dbus_signal_boolean
(struct slot_manager_dbus *dbus, const char *name, dbus_bool_t value)
{
DBG("%s %d", name, value);
g_dbus_emit_signal(dbus->conn, SM_DBUS_PATH, SM_DBUS_INTERFACE,
name, DBUS_TYPE_BOOLEAN, &value, DBUS_TYPE_INVALID);
}

View File

@@ -178,9 +178,10 @@ static guint slot_base_signals[SIGNAL_COUNT];
static GQuark slot_base_property_quarks[MAX_PROPERTIES];
static void slot_manager_reindex_slots(OfonoSlotManagerObject *mgr);
static int slot_manager_update_modem_paths(OfonoSlotManagerObject *mgr);
static void slot_manager_emit_all_queued_signals(OfonoSlotManagerObject *mgr);
static void slot_manager_update_ready(OfonoSlotManagerObject *mgr);
static enum slot_manager_dbus_signal slot_manager_update_modem_paths
(OfonoSlotManagerObject *mgr) G_GNUC_WARN_UNUSED_RESULT;
static inline OfonoSlotBase *slot_base_cast(gpointer p)
{
@@ -368,6 +369,13 @@ static inline void slot_emit_queued_signals(OfonoSlotObject *slot)
slot_base_emit_queued_signals(&slot->base);
}
static inline void slot_manager_update_modem_paths_and_notify
(OfonoSlotManagerObject *mgr, enum slot_manager_dbus_signal extra)
{
slot_manager_dbus_signal(mgr->dbus, extra |
slot_manager_update_modem_paths(mgr));
}
static void slot_update_data_role(OfonoSlotObject *slot,
enum ofono_slot_data_role role)
{
@@ -401,7 +409,8 @@ static void slot_manager_slot_modem_changed(struct ofono_watch *w, void *data)
OfonoSlotManagerObject *mgr = slot->manager;
slot_update_cell_info_dbus(slot);
slot_manager_update_modem_paths(mgr);
slot_manager_update_modem_paths_and_notify(mgr,
SLOT_MANAGER_DBUS_SIGNAL_NONE);
slot_manager_update_ready(mgr);
slot_manager_emit_all_queued_signals(mgr);
}
@@ -695,9 +704,10 @@ static gboolean slot_manager_all_sims_are_initialized
* The caller has a chance to OR it with other bits. Also updates the
* queued signals mask but doesn't actually emit any signals.
*/
static int slot_manager_update_modem_paths(OfonoSlotManagerObject *mgr)
static enum slot_manager_dbus_signal slot_manager_update_modem_paths
(OfonoSlotManagerObject *mgr)
{
int mask = 0;
enum slot_manager_dbus_signal mask = SLOT_MANAGER_DBUS_SIGNAL_NONE;
OfonoSlotObject *slot = NULL;
OfonoSlotObject *mms_slot = NULL;
OfonoSlotObject *old_data_slot = NULL;
@@ -1107,10 +1117,9 @@ static void slot_manager_dbus_set_enabled_slots(struct ofono_slot_manager *m,
}
g_strfreev(new_slots);
/* Update paths and emigt signals */
slot_manager_dbus_signal(mgr->dbus,
SLOT_MANAGER_DBUS_SIGNAL_ENABLED_SLOTS |
slot_manager_update_modem_paths(mgr));
/* Update paths and emit signals */
slot_manager_update_modem_paths_and_notify(mgr,
SLOT_MANAGER_DBUS_SIGNAL_ENABLED_SLOTS);
slot_manager_emit_all_queued_signals(mgr);
}
}
@@ -1126,9 +1135,8 @@ static gboolean slot_manager_dbus_set_mms_imsi(struct ofono_slot_manager *m,
DBG("MMS sim %s", imsi);
g_free(mgr->mms_imsi);
m->mms_imsi = mgr->mms_imsi = g_strdup(imsi);
slot_manager_dbus_signal(mgr->dbus,
SLOT_MANAGER_DBUS_SIGNAL_MMS_IMSI |
slot_manager_update_modem_paths(mgr));
slot_manager_update_modem_paths_and_notify(mgr,
SLOT_MANAGER_DBUS_SIGNAL_MMS_IMSI);
slot_manager_emit_all_queued_signals(mgr);
} else {
DBG("IMSI not found: %s", imsi);
@@ -1140,9 +1148,8 @@ static gboolean slot_manager_dbus_set_mms_imsi(struct ofono_slot_manager *m,
DBG("No MMS sim");
g_free(mgr->mms_imsi);
m->mms_imsi = mgr->mms_imsi = NULL;
slot_manager_dbus_signal(mgr->dbus,
SLOT_MANAGER_DBUS_SIGNAL_MMS_IMSI |
slot_manager_update_modem_paths(mgr));
slot_manager_update_modem_paths_and_notify(mgr,
SLOT_MANAGER_DBUS_SIGNAL_MMS_IMSI);
slot_manager_emit_all_queued_signals(mgr);
}
}
@@ -1162,9 +1169,8 @@ static void slot_manager_dbus_set_default_voice_imsi
mgr->default_voice_imsi = g_strdup(imsi);
slot_manager_set_config_string(mgr,
SM_STORE_DEFAULT_VOICE_SIM, imsi);
slot_manager_dbus_signal(mgr->dbus,
SLOT_MANAGER_DBUS_SIGNAL_VOICE_IMSI |
slot_manager_update_modem_paths(mgr));
slot_manager_update_modem_paths_and_notify(mgr,
SLOT_MANAGER_DBUS_SIGNAL_VOICE_IMSI);
slot_manager_emit_all_queued_signals(mgr);
}
}
@@ -1181,9 +1187,8 @@ static void slot_manager_dbus_set_default_data_imsi
mgr->default_data_imsi = g_strdup(imsi);
slot_manager_set_config_string(mgr,
SM_STORE_DEFAULT_DATA_SIM, imsi);
slot_manager_dbus_signal(mgr->dbus,
SLOT_MANAGER_DBUS_SIGNAL_DATA_IMSI |
slot_manager_update_modem_paths(mgr));
slot_manager_update_modem_paths_and_notify(mgr,
SLOT_MANAGER_DBUS_SIGNAL_DATA_IMSI);
slot_manager_emit_all_queued_signals(mgr);
}
}
@@ -1365,7 +1370,8 @@ void ofono_slot_set_sim_presence(struct ofono_slot *s,
OFONO_SLOT_PROPERTY_SIM_PRESENCE);
slot_manager_dbus_signal_sim(mgr->dbus, slot->index,
SLOT_MANAGER_DBUS_SLOT_SIGNAL_PRESENT);
slot_manager_update_modem_paths(mgr);
slot_manager_update_modem_paths_and_notify(mgr,
SLOT_MANAGER_DBUS_SIGNAL_NONE);
slot_manager_update_ready(mgr);
slot_manager_emit_all_queued_signals(mgr);
}

View File

@@ -1,7 +1,7 @@
/*
* oFono - Open Source Telephony
*
* Copyright (C) 2017-2019 Jolla Ltd.
* Copyright (C) 2017-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
@@ -563,7 +563,7 @@ static void ofono_watch_set_modem(struct ofono_watch_object *self,
}
static void ofono_watch_modem_notify(struct ofono_modem *modem,
gboolean added, void *user_data)
ofono_bool_t added, void *user_data)
{
struct ofono_watch_object *self = OFONO_WATCH_OBJECT(user_data);

View File

@@ -6,6 +6,7 @@ import dbus
if len(sys.argv) < 4:
print("Usage: %s [modem] <to> <message> <delivery report>" %\
(sys.argv[0]))
print(" where delivery report is 0|1")
sys.exit(1)
bus = dbus.SystemBus()

View File

@@ -492,11 +492,6 @@ int main(int argc, char **argv)
guint watch;
struct sigaction sa;
#ifdef NEED_THREADS
if (g_thread_supported() == FALSE)
g_thread_init(NULL);
#endif
context = g_option_context_new(NULL);
g_option_context_add_main_entries(context, options, NULL);
@@ -518,13 +513,6 @@ int main(int argc, char **argv)
main_loop = g_main_loop_new(NULL, FALSE);
#ifdef NEED_THREADS
if (dbus_threads_init_default() == FALSE) {
fprintf(stderr, "Can't init usage of threads\n");
exit(1);
}
#endif
dbus_error_init(&err);
conn = g_dbus_setup_bus(DBUS_BUS_SYSTEM, NULL, &err);

View File

@@ -775,11 +775,6 @@ int main(int argc, char **argv)
guint watch;
struct sigaction sa;
#ifdef NEED_THREADS
if (g_thread_supported() == FALSE)
g_thread_init(NULL);
#endif
context = g_option_context_new(NULL);
g_option_context_add_main_entries(context, options, NULL);
@@ -801,13 +796,6 @@ int main(int argc, char **argv)
main_loop = g_main_loop_new(NULL, FALSE);
#ifdef NEED_THREADS
if (dbus_threads_init_default() == FALSE) {
fprintf(stderr, "Can't init usage of threads\n");
exit(1);
}
#endif
dbus_error_init(&err);
conn = g_dbus_setup_bus(DBUS_BUS_SYSTEM, NULL, &err);

View File

@@ -25,11 +25,7 @@ TESTS="\
test-gprs-filter \
test-provision \
test-watch \
test-ril_util \
test-ril_config \
test-ril_ecclist \
test-ril-transport \
test-ril_vendor \
test-sailfish_access \
test-sim-info \
test-sim-info-dbus \
@@ -45,14 +41,13 @@ popd > /dev/null
popd > /dev/null
FULL_COV="$TEST_DIR/full.gcov"
DRIVERS_COV="$TEST_DIR/drivers.gcov"
PLUGINS_COV="$TEST_DIR/plugins.gcov"
SRC_COV="$TEST_DIR/src.gcov"
OUT="$TEST_DIR/html"
# Clean everything up
find "$BASE_DIR" -name "*.gcda" -exec rm {} \;
rm -f "$FULL_COV" "$DRIVERS_COV" "$PLUGINS_COV" "$SRC_COV"
rm -f "$FULL_COV" "$PLUGINS_COV" "$SRC_COV"
rm -fr "$OUT"
# Run the tests
@@ -69,9 +64,8 @@ LCOV_OPT="--rc lcov_branch_coverage=1"
GENHTML_OPT="--branch-coverage"
lcov $LCOV_OPT -c -d "$BASE_DIR" -o "$FULL_COV" || exit 1
lcov $LCOV_OPT -e "$FULL_COV" "$BASE_DIR/drivers/*" -o "$DRIVERS_COV" || exit 1
lcov $LCOV_OPT -e "$FULL_COV" "$BASE_DIR/plugins/*" -o "$PLUGINS_COV" || exit 1
lcov $LCOV_OPT -e "$FULL_COV" "$BASE_DIR/src/*" -o "$SRC_COV" || exit 1
genhtml $GENHTML_OPT -t ofono "$DRIVERS_COV" "$PLUGINS_COV" "$SRC_COV" --output-directory "$OUT" || exit 1
genhtml $GENHTML_OPT -t ofono "$PLUGINS_COV" "$SRC_COV" --output-directory "$OUT" || exit 1
echo Coverage report: $OUT/index.html

View File

@@ -1,123 +0,0 @@
/*
* oFono - Open Source Telephony
*
* Copyright (C) 2018-2021 Jolla Ltd.
* Copyright (C) 2019-2020 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "drivers/ril/ril_config.h"
#include <ofono/log.h>
#include "ofono.h"
#include <gutil_strv.h>
#include <gutil_ints.h>
#include <stdio.h>
#include <sys/stat.h>
#include <sys/types.h>
#define TMP_DIR_TEMPLATE "test-ril_config-XXXXXX"
static void test_get_value(const char *conf, void (*test)(GKeyFile *k))
{
char *dir = g_dir_make_tmp(TMP_DIR_TEMPLATE, NULL);
char *file = g_strconcat(dir, "/test.conf", NULL);
GKeyFile *k = g_key_file_new();
g_assert(g_file_set_contents(file, conf, -1, NULL));
g_assert(g_key_file_load_from_file(k, file, 0, NULL));
DBG("%s:\n%s", file, conf);
test(k);
remove(file);
remove(dir);
g_key_file_unref(k);
g_free(file);
g_free(dir);
}
/* ==== get_ints ==== */
static void test_get_ints_cb(GKeyFile *k)
{
GUtilInts *ints;
const int* data;
guint count;
g_assert(!ril_config_get_ints(k, "g1", "k1"));
g_assert(!ril_config_get_ints(k, "g", "k2")); /* Empty */
ints = ril_config_get_ints(k, "g", "k");
data = gutil_ints_get_data(ints, &count);
g_assert(count == 2);
g_assert(data[0] == 0);
g_assert(data[1] == 1);
gutil_ints_unref(ints);
ints = ril_config_get_ints(k, "g", "k1");
data = gutil_ints_get_data(ints, &count);
g_assert(count == 3);
g_assert(data[0] == 2);
g_assert(data[1] == 3);
g_assert(data[2] == 4);
gutil_ints_unref(ints);
}
static void test_get_ints(void)
{
static const char conf [] =
"[" RILCONF_SETTINGS_GROUP "]\nk = 0, 1, x\n"
"[g]\nk1=2,3,4 # comment\nk2=\n";
test_get_value(conf, test_get_ints_cb);
}
/* ==== ints_to_string ==== */
static void test_ints_to_string(void)
{
static const int data[] = { 1, 2 };
GUtilInts* ints = gutil_ints_new_static(data, G_N_ELEMENTS(data));
char *str = ril_config_ints_to_string(ints, ',');
g_assert(!g_strcmp0(str, "1,2"));
g_free(str);
gutil_ints_unref(ints);
g_assert(!ril_config_ints_to_string(NULL, 0));
}
#define TEST_(name) "/ril_config/" name
int main(int argc, char *argv[])
{
g_test_init(&argc, &argv, NULL);
__ofono_log_init("test-ril_config",
g_test_verbose() ? "*" : NULL,
FALSE, FALSE);
g_test_add_func(TEST_("get_ints"), test_get_ints);
g_test_add_func(TEST_("ints_to_string"), test_ints_to_string);
return g_test_run();
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

View File

@@ -1,326 +0,0 @@
/*
* oFono - Open Source Telephony
*
* Copyright (C) 2019 Jolla Ltd.
* Copyright (C) 2019 Open Mobile Platform LLC.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "drivers/ril/ril_ecclist.h"
#include "drivers/ril/ril_log.h"
#include "ofono.h"
#include <gutil_strv.h>
#include <sys/stat.h>
#define TMP_DIR_TEMPLATE "test-ril_ecclist-XXXXXX"
#define TEST_TIMEOUT_SEC (20)
GLOG_MODULE_DEFINE("rilmodem");
static gboolean test_debug = FALSE;
struct ril_ecclist_parse_test {
const char* name;
const char* in;
const char* const* out;
};
static gboolean test_timeout_cb(gpointer user_data)
{
g_assert_not_reached();
return G_SOURCE_REMOVE;
}
static gboolean test_idle_quit_cb(gpointer loop)
{
g_main_loop_quit(loop);
return G_SOURCE_REMOVE;
}
static void test_quit_cb(struct ril_ecclist *ecc, gpointer loop)
{
g_idle_add(test_idle_quit_cb, loop);
}
static void test_inc_cb(struct ril_ecclist *ecc, gpointer ptr)
{
(*(int*)ptr)++;
}
/* ==== parse ==== */
static void test_parse(gconstpointer data)
{
const struct ril_ecclist_parse_test *test = data;
char *dir = g_dir_make_tmp(TMP_DIR_TEMPLATE, NULL);
char *file = g_build_filename(dir, "ecclist", NULL);
struct ril_ecclist *ecc;
GDEBUG("Created file %s", file);
g_assert(g_file_set_contents(file, test->in, -1, NULL));
ecc = ril_ecclist_new(file);
g_assert(gutil_strv_equal(ecc->list, (char**)test->out));
ril_ecclist_unref(ecc);
remove(file);
remove(dir);
g_free(file);
g_free(dir);
}
static const char* null_str = NULL;
static const char single_str_in[] = "911";
static const char* single_str_out[] = { "911", NULL };
static const char double_str_in[] = "911,112";
static const char double2_str_in[] = "911, 112,";
static const char double3_str_in[] = "911, 911, 112 ";
static const char* double_str_out[] = { "112", "911", NULL };
static const char mtk_str_in[] = "112,31;911,31;112,-1;911,-1";
static const char mtk2_str_in[] = "112,31; 911,31; 112; 911 ";
static const struct ril_ecclist_parse_test tests[] = {
{ "empty", "", &null_str },
{ "single", single_str_in, single_str_out },
{ "double", double_str_in, double_str_out },
{ "double2", double2_str_in, double_str_out },
{ "double3", double3_str_in, double_str_out },
{ "mtk", mtk_str_in, double_str_out },
{ "mtk2", mtk2_str_in, double_str_out }
};
/* ==== file_perm ==== */
static void test_file_perm()
{
char *dir = g_dir_make_tmp(TMP_DIR_TEMPLATE, NULL);
char *file = g_build_filename(dir, "ecclist", NULL);
int count = 0;
struct ril_ecclist *ecc;
gulong id[2];
GMainLoop *loop = g_main_loop_new(NULL, FALSE);
guint test_timeout_id = test_debug ? 0 :
g_timeout_add_seconds(TEST_TIMEOUT_SEC, test_timeout_cb, NULL);
GDEBUG("Created file %s", file);
g_assert(g_file_set_contents(file, single_str_in, -1, NULL));
ecc = ril_ecclist_new(file);
id[0] = ril_ecclist_add_list_changed_handler(ecc, test_inc_cb, &count);
id[1] = ril_ecclist_add_list_changed_handler(ecc, test_quit_cb, loop);
g_assert(id[0]);
g_assert(id[1]);
g_assert(gutil_strv_equal(ecc->list, (char**)single_str_out));
/* Modify the file */
g_assert(g_file_set_contents(file, double_str_in, -1, NULL));
/* ril_ecclist needs event loop to process filesystem change events */
g_main_loop_run(loop);
g_assert(count == 1);
g_assert(gutil_strv_equal(ecc->list, (char**)double_str_out));
/* Making file unreadable resets the ecc list */
GDEBUG("Making file %s unreadable", file);
g_assert(g_file_set_contents(file, single_str_in, -1, NULL));
g_assert(chmod(file, 0) == 0);
count = 0;
g_main_loop_run(loop);
g_assert(count == 1);
g_assert(!ecc->list);
if (test_timeout_id) {
g_source_remove(test_timeout_id);
}
g_main_loop_unref(loop);
ril_ecclist_remove_handler(ecc, id[0]);
ril_ecclist_remove_handler(ecc, id[1]);
ril_ecclist_unref(ecc);
remove(dir);
g_free(file);
g_free(dir);
}
/* ==== file_change ==== */
static void test_file_change()
{
char *dir = g_dir_make_tmp(TMP_DIR_TEMPLATE, NULL);
char *file = g_build_filename(dir, "ecclist", NULL);
int count = 0;
struct ril_ecclist *ecc;
gulong id[2];
GMainLoop *loop = g_main_loop_new(NULL, FALSE);
guint test_timeout_id = test_debug ? 0 :
g_timeout_add_seconds(TEST_TIMEOUT_SEC, test_timeout_cb, NULL);
GDEBUG("Created file %s", file);
g_assert(g_file_set_contents(file, single_str_in, -1, NULL));
ecc = ril_ecclist_new(file);
id[0] = ril_ecclist_add_list_changed_handler(ecc, test_inc_cb, &count);
id[1] = ril_ecclist_add_list_changed_handler(ecc, test_quit_cb, loop);
g_assert(id[0]);
g_assert(id[1]);
g_assert(gutil_strv_equal(ecc->list, (char**)single_str_out));
/* Modify the file */
g_assert(g_file_set_contents(file, double_str_in, -1, NULL));
/* ril_ecclist needs event loop to process filesystem change events */
g_main_loop_run(loop);
g_assert(count == 1);
g_assert(gutil_strv_equal(ecc->list, (char**)double_str_out));
/* Removing the file resets the ecc list */
GDEBUG("Removing file %s", file);
g_assert(remove(file) == 0);
count = 0;
g_main_loop_run(loop);
g_assert(count == 1);
g_assert(!ecc->list);
if (test_timeout_id) {
g_source_remove(test_timeout_id);
}
g_main_loop_unref(loop);
ril_ecclist_remove_handler(ecc, id[0]);
ril_ecclist_remove_handler(ecc, id[1]);
ril_ecclist_unref(ecc);
remove(dir);
g_free(file);
g_free(dir);
}
/* ==== dir_change ==== */
static void test_dir_change()
{
char *dir = g_dir_make_tmp(TMP_DIR_TEMPLATE, NULL);
char *file = g_build_filename(dir, "ecclist", NULL);
int count = 0;
struct ril_ecclist *ecc;
gulong id[3];
GMainLoop *loop = g_main_loop_new(NULL, FALSE);
guint test_timeout_id = test_debug ? 0 :
g_timeout_add_seconds(TEST_TIMEOUT_SEC, test_timeout_cb, NULL);
GDEBUG("Created directory %s", dir);
ecc = ril_ecclist_new(file);
id[0] = ril_ecclist_add_list_changed_handler(ecc, test_inc_cb, &count);
id[1] = ril_ecclist_add_list_changed_handler(ecc, test_quit_cb, loop);
g_assert(id[0]);
g_assert(id[1]);
g_assert(!ecc->list);
GDEBUG("Created file %s", file);
g_assert(g_file_set_contents(file, single_str_in, -1, NULL));
/* ril_ecclist needs event loop to process filesystem change events */
g_main_loop_run(loop);
g_assert(count == 1);
g_assert(gutil_strv_equal(ecc->list, (char**)single_str_out));
/* Removing the directory resets the ecc list */
GDEBUG("Removing directory %s", dir);
g_assert(remove(file) == 0);
g_assert(remove(dir) == 0);
count = 0;
g_main_loop_run(loop);
g_assert(count == 1);
g_assert(!ecc->list);
if (test_timeout_id) {
g_source_remove(test_timeout_id);
}
g_main_loop_unref(loop);
ril_ecclist_remove_handler(ecc, id[0]);
ril_ecclist_remove_handler(ecc, id[1]);
ril_ecclist_unref(ecc);
g_free(file);
g_free(dir);
}
/* ==== null ==== */
static void test_null(void)
{
char *dir = g_dir_make_tmp(TMP_DIR_TEMPLATE, NULL);
char *file = g_build_filename(dir, "ecclist", NULL);
struct ril_ecclist *ecc;
/* Make sure neither directory nor file exist */
remove(dir);
ecc = ril_ecclist_new(file);
g_assert(ecc);
g_assert(!ecc->list);
g_assert(!ril_ecclist_new(NULL));
g_assert(!ril_ecclist_ref(NULL));
g_assert(!ril_ecclist_add_list_changed_handler(NULL, NULL, NULL));
g_assert(!ril_ecclist_add_list_changed_handler(ecc, NULL, NULL));
ril_ecclist_unref(NULL);
ril_ecclist_remove_handler(NULL, 0);
ril_ecclist_remove_handler(ecc, 0);
ril_ecclist_unref(ril_ecclist_ref(ecc));
ril_ecclist_unref(ecc);
g_free(file);
g_free(dir);
}
#define TEST_(name) "/ril_ecclist/" name
int main(int argc, char *argv[])
{
int i;
g_test_init(&argc, &argv, NULL);
gutil_log_timestamp = FALSE;
gutil_log_default.name = "test-ril_ecclist";
gutil_log_default.level = g_test_verbose() ?
GLOG_LEVEL_VERBOSE : GLOG_LEVEL_NONE;
__ofono_log_init(gutil_log_default.name,
g_test_verbose() ? "*" : NULL,
FALSE, FALSE);
if (argc > 1 && !strcmp(argv[1] , "-d")) {
test_debug = TRUE;
GDEBUG("Debugging on (no timeout)");
}
for (i = 0; i < G_N_ELEMENTS(tests); i++) {
const struct ril_ecclist_parse_test* test = tests + i;
char* path = g_strconcat(TEST_("parse/"), test->name, NULL);
g_test_add_data_func(path, test, test_parse);
g_free(path);
}
g_test_add_func(TEST_("null"), test_null);
g_test_add_func(TEST_("file_perm"), test_file_perm);
g_test_add_func(TEST_("file_change"), test_file_change);
g_test_add_func(TEST_("dir_change"), test_dir_change);
return g_test_run();
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

View File

@@ -1,176 +0,0 @@
/*
* oFono - Open Source Telephony
*
* Copyright (C) 2017-2021 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "drivers/ril/ril_util.h"
#include <ofono/netreg.h>
#define RIL_PROTO_IP_STR "IP"
#define RIL_PROTO_IPV6_STR "IPV6"
#define RIL_PROTO_IPV4V6_STR "IPV4V6"
static void test_parse_tech(void)
{
int tech = -2;
g_assert_cmpint(ril_parse_tech(NULL, NULL), == ,
OFONO_ACCESS_TECHNOLOGY_NONE);
g_assert_cmpint(ril_parse_tech(NULL, &tech), == ,
OFONO_ACCESS_TECHNOLOGY_NONE);
g_assert_cmpint(tech, == ,-1);
g_assert_cmpint(ril_parse_tech("-1", &tech), == ,
OFONO_ACCESS_TECHNOLOGY_NONE);
g_assert_cmpint(tech, == ,-1);
g_assert_cmpint(ril_parse_tech("0", &tech), == ,
OFONO_ACCESS_TECHNOLOGY_NONE);
g_assert_cmpint(tech, == ,0);
g_assert_cmpint(ril_parse_tech("1", &tech), == ,
OFONO_ACCESS_TECHNOLOGY_GSM);
g_assert_cmpint(tech, == ,RADIO_TECH_GPRS);
g_assert_cmpint(ril_parse_tech("16", &tech), == ,
OFONO_ACCESS_TECHNOLOGY_GSM);
g_assert_cmpint(tech, == ,RADIO_TECH_GSM);
g_assert_cmpint(ril_parse_tech("2", &tech), == ,
OFONO_ACCESS_TECHNOLOGY_GSM_EGPRS);
g_assert_cmpint(tech, == ,RADIO_TECH_EDGE);
g_assert_cmpint(ril_parse_tech("3", &tech), == ,
OFONO_ACCESS_TECHNOLOGY_UTRAN);
g_assert_cmpint(tech, == ,RADIO_TECH_UMTS);
g_assert_cmpint(ril_parse_tech("9", &tech), == ,
OFONO_ACCESS_TECHNOLOGY_UTRAN_HSDPA);
g_assert_cmpint(tech, == ,RADIO_TECH_HSDPA);
g_assert_cmpint(ril_parse_tech("10", &tech), == ,
OFONO_ACCESS_TECHNOLOGY_UTRAN_HSUPA);
g_assert_cmpint(tech, == ,RADIO_TECH_HSUPA);
g_assert_cmpint(ril_parse_tech("11", &tech), == ,
OFONO_ACCESS_TECHNOLOGY_UTRAN_HSDPA_HSUPA);
g_assert_cmpint(tech, == ,RADIO_TECH_HSPA);
g_assert_cmpint(ril_parse_tech("15", &tech), == ,
OFONO_ACCESS_TECHNOLOGY_UTRAN_HSDPA_HSUPA);
g_assert_cmpint(tech, == ,RADIO_TECH_HSPAP);
g_assert_cmpint(ril_parse_tech("14", &tech), == ,
OFONO_ACCESS_TECHNOLOGY_EUTRAN);
g_assert_cmpint(tech, == ,RADIO_TECH_LTE);
}
static void test_parse_mcc_mnc(void)
{
struct ofono_network_operator op;
memset(&op, 0, sizeof(op));
g_assert(!ril_parse_mcc_mnc(NULL, &op));
g_assert(!ril_parse_mcc_mnc("", &op));
g_assert(!ril_parse_mcc_mnc("24x", &op));
g_assert(!ril_parse_mcc_mnc("244", &op));
g_assert(!ril_parse_mcc_mnc("244x", &op));
g_assert(ril_parse_mcc_mnc("24412", &op));
g_assert_cmpstr(op.mcc, == ,"244");
g_assert_cmpstr(op.mnc, == ,"12");
g_assert(!op.tech);
g_assert(ril_parse_mcc_mnc("25001+", &op));
g_assert_cmpstr(op.mcc, == ,"250");
g_assert_cmpstr(op.mnc, == ,"01");
g_assert(!op.tech);
g_assert(ril_parse_mcc_mnc("25503+14", &op));
g_assert_cmpstr(op.mcc, == ,"255");
g_assert_cmpstr(op.mnc, == ,"03");
g_assert_cmpint(op.tech, == ,OFONO_ACCESS_TECHNOLOGY_EUTRAN);
/* Not sure if this is right but that's now it currently works: */
op.tech = 0;
g_assert(ril_parse_mcc_mnc("3101500", &op));
g_assert_cmpstr(op.mcc, == ,"310");
g_assert_cmpstr(op.mnc, == ,"150");
g_assert(!op.tech);
}
static void test_protocol_from_ofono(void)
{
g_assert_cmpstr(ril_protocol_from_ofono(OFONO_GPRS_PROTO_IP), == ,
RIL_PROTO_IP_STR);
g_assert_cmpstr(ril_protocol_from_ofono(OFONO_GPRS_PROTO_IPV6), == ,
RIL_PROTO_IPV6_STR);
g_assert_cmpstr(ril_protocol_from_ofono(OFONO_GPRS_PROTO_IPV4V6), == ,
RIL_PROTO_IPV4V6_STR);
g_assert(!ril_protocol_from_ofono((enum ofono_gprs_proto)-1));
}
static void test_protocol_to_ofono(void)
{
g_assert(ril_protocol_to_ofono(NULL) < 0);
g_assert(ril_protocol_to_ofono("") < 0);
g_assert(ril_protocol_to_ofono("ip") < 0);
g_assert(ril_protocol_to_ofono(RIL_PROTO_IP_STR) ==
OFONO_GPRS_PROTO_IP);
g_assert(ril_protocol_to_ofono(RIL_PROTO_IPV6_STR) ==
OFONO_GPRS_PROTO_IPV6);
g_assert(ril_protocol_to_ofono(RIL_PROTO_IPV4V6_STR) ==
OFONO_GPRS_PROTO_IPV4V6);
}
static void test_auth_method(void)
{
g_assert(ril_auth_method_from_ofono(OFONO_GPRS_AUTH_METHOD_NONE) ==
RIL_AUTH_NONE);
g_assert(ril_auth_method_from_ofono(OFONO_GPRS_AUTH_METHOD_CHAP) ==
RIL_AUTH_CHAP);
g_assert(ril_auth_method_from_ofono(OFONO_GPRS_AUTH_METHOD_PAP) ==
RIL_AUTH_PAP);
g_assert(ril_auth_method_from_ofono(OFONO_GPRS_AUTH_METHOD_ANY) ==
RIL_AUTH_BOTH);
g_assert(ril_auth_method_from_ofono((enum ofono_gprs_auth_method)-1) ==
RIL_AUTH_BOTH);
}
static void test_strings(void)
{
g_assert_cmpstr(ril_error_to_string(RIL_E_SUCCESS), == ,"OK");
g_assert_cmpstr(ril_error_to_string(2147483647), == ,"2147483647");
g_assert_cmpstr(ril_request_to_string(RIL_RESPONSE_ACKNOWLEDGEMENT),==,
"RESPONSE_ACK");
g_assert_cmpstr(ril_request_to_string(2147483647), == ,
"RIL_REQUEST_2147483647");
g_assert_cmpstr(ril_unsol_event_to_string(2147483647), == ,
"RIL_UNSOL_2147483647");
g_assert_cmpstr(ril_radio_state_to_string(2147483647), == ,
"2147483647 (?)");
}
#define TEST_(name) "/ril_util/" name
int main(int argc, char *argv[])
{
g_test_init(&argc, &argv, NULL);
__ofono_log_init("test-ril_util",
g_test_verbose() ? "*" : NULL,
FALSE, FALSE);
g_test_add_func(TEST_("parse_tech"), test_parse_tech);
g_test_add_func(TEST_("parse_mcc_mnc"), test_parse_mcc_mnc);
g_test_add_func(TEST_("protocol_from_ofono"), test_protocol_from_ofono);
g_test_add_func(TEST_("protocol_to_ofono"), test_protocol_to_ofono);
g_test_add_func(TEST_("auth_method"), test_auth_method);
g_test_add_func(TEST_("strings"), test_strings);
return g_test_run();
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

View File

@@ -1,394 +0,0 @@
/*
* oFono - Open Source Telephony
*
* Copyright (C) 2017-2019 Jolla Ltd.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include "drivers/ril/ril_vendor.h"
#include "drivers/ril/ril_vendor_impl.h"
#include "drivers/ril/ril_network.h"
#include "drivers/ril/ril_data.h"
#include "drivers/ril/ril_log.h"
#include "ofono.h"
#include <grilio_request.h>
#include <grilio_parser.h>
GLOG_MODULE_DEFINE("ril");
/* Stubs */
typedef struct ril_network TestNetwork;
typedef GObjectClass TestNetworkClass;
static void test_network_init(TestNetwork *self) {}
static void test_network_class_init(TestNetworkClass *klass) {}
G_DEFINE_TYPE(TestNetwork, test_network, G_TYPE_OBJECT)
void ril_network_query_registration_state(struct ril_network *network)
{
}
const struct ofono_gprs_primary_context *ofono_gprs_context_settings_by_type
(struct ofono_gprs *gprs, enum ofono_gprs_context_type type)
{
return NULL;
}
/* Test vendor objects and drivers */
typedef RilVendor TestVendor;
typedef RilVendorClass TestVendorClass;
static void test_vendor_init(TestVendor *self) {}
static void test_vendor_class_init(TestVendorClass* klass) {}
static const struct ril_vendor_defaults test_defaults = { .enable_cbs = TRUE };
G_DEFINE_TYPE(TestVendor, test_vendor, RIL_VENDOR_TYPE)
static void test_driver_get_defaults(struct ril_vendor_defaults *defaults)
{
memcpy(defaults, &test_defaults, sizeof(*defaults));
}
static RilVendor *test_driver_create_vendor(const void *driver_data,
GRilIoChannel *io, const char *path,
const struct ril_slot_config *config)
{
TestVendor *self = g_object_new(test_vendor_get_type(), NULL);
ril_vendor_init_base(self, io);
return self;
}
RIL_VENDOR_DRIVER_DEFINE(test_driver) {
.name = "test",
.get_defaults = test_driver_get_defaults,
.create_vendor = test_driver_create_vendor
};
RIL_VENDOR_DRIVER_DEFINE(dummy_driver) { .name = "dummy" };
/* Tests */
static void test_null(void)
{
ril_vendor_unref(NULL);
ril_vendor_set_network(NULL, NULL);
ril_vendor_data_call_parse(NULL, NULL, 0, NULL);
ril_vendor_get_defaults(NULL, NULL);
g_assert(!ril_vendor_find_driver(NULL));
g_assert(!ril_vendor_create(NULL, NULL, NULL, NULL));
g_assert(!ril_vendor_ref(NULL));
g_assert(!ril_vendor_request_to_string(NULL, 0));
g_assert(!ril_vendor_event_to_string(NULL, 0));
g_assert(!ril_vendor_set_attach_apn_req(NULL, NULL, NULL, NULL,
RIL_AUTH_NONE, NULL));
g_assert(!ril_vendor_data_call_req(NULL, 0, RIL_DATA_PROFILE_DEFAULT,
NULL, NULL, NULL, RIL_AUTH_NONE, NULL));
}
static void test_drivers(void)
{
const struct ril_vendor_driver *driver;
struct ril_vendor_defaults defaults;
/* This one exists and has all the callbacks */
driver = ril_vendor_find_driver(test_driver.name);
g_assert(driver);
memset(&defaults, 0, sizeof(defaults));
ril_vendor_get_defaults(driver, &defaults);
g_assert(!memcmp(&defaults, &test_defaults, sizeof(defaults)));
/* This one has no callbacks at all */
driver = ril_vendor_find_driver(dummy_driver.name);
g_assert(driver);
memset(&defaults, 0, sizeof(defaults));
g_assert(!ril_vendor_create(driver, NULL, NULL, NULL));
ril_vendor_get_defaults(driver, &defaults);
/* And this one doesn't exist */
g_assert(!ril_vendor_find_driver("no such driver"));
}
static void test_base(void)
{
TestNetwork *network = g_object_new(test_network_get_type(), NULL);
const struct ril_vendor_driver *driver;
struct ril_vendor *base;
/* Create test vendor which does nothing but extends the base */
driver = ril_vendor_find_driver(test_driver.name);
g_assert(driver);
base = ril_vendor_create(driver, NULL, NULL, NULL);
ril_vendor_set_network(base, NULL);
ril_vendor_set_network(base, network);
ril_vendor_set_network(base, NULL);
ril_vendor_set_network(base, network);
g_assert(!ril_vendor_request_to_string(base, 0));
g_assert(!ril_vendor_event_to_string(base, 0));
g_assert(!ril_vendor_set_attach_apn_req(base, NULL, NULL, NULL,
RIL_AUTH_NONE, NULL));
g_assert(!ril_vendor_data_call_req(base, 0, RIL_DATA_PROFILE_DEFAULT,
NULL, NULL, NULL, RIL_AUTH_NONE, NULL));
g_assert(!ril_vendor_data_call_parse(base, NULL, 0, NULL));
g_assert(ril_vendor_ref(base) == base);
ril_vendor_unref(base);
ril_vendor_unref(base);
g_object_unref(network);
}
static void test_mtk(void)
{
TestNetwork *network = g_object_new(test_network_get_type(), NULL);
const struct ril_vendor_driver *driver = ril_vendor_find_driver("mtk");
struct ril_vendor_defaults defaults;
struct ril_slot_config config;
struct ril_vendor *mtk;
g_assert(driver);
memset(&defaults, 0, sizeof(defaults));
memset(&config, 0, sizeof(config));
ril_vendor_get_defaults(driver, &defaults);
mtk = ril_vendor_create(driver, NULL, NULL, &config);
g_assert(mtk);
/* Freeing the network clears vendor's weak pointer */
ril_vendor_set_network(mtk, network);
g_object_unref(network);
g_assert(!ril_vendor_request_to_string(mtk, 0));
g_assert(!ril_vendor_event_to_string(mtk, 0));
ril_vendor_unref(mtk);
}
static const char *MTK_RESUME_REGISTRATION="MTK_RESUME_REGISTRATION";
static const char *MTK_SET_CALL_INDICATION="MTK_SET_CALL_INDICATION";
static const char *MTK_PS_NETWORK_STATE_CHANGED="MTK_PS_NETWORK_STATE_CHANGED";
static const char *MTK_REGISTRATION_SUSPENDED="MTK_REGISTRATION_SUSPENDED";
static const char *MTK_SET_ATTACH_APN="MTK_SET_ATTACH_APN";
static const char *MTK_INCOMING_CALL_INDICATION="MTK_INCOMING_CALL_INDICATION";
static void test_mtk1(void)
{
const struct ril_vendor_driver *driver = ril_vendor_find_driver("mtk1");
struct ril_slot_config config;
struct ril_vendor *mtk1;
GRilIoRequest* req;
g_assert(driver);
memset(&config, 0, sizeof(config));
mtk1 = ril_vendor_create(driver, NULL, NULL, &config);
g_assert(mtk1);
g_assert(!g_strcmp0(ril_vendor_request_to_string(mtk1, 2050),
MTK_RESUME_REGISTRATION));
g_assert(!g_strcmp0(ril_vendor_request_to_string(mtk1, 2065),
MTK_SET_CALL_INDICATION));
g_assert(!g_strcmp0(ril_vendor_event_to_string(mtk1, 3012),
MTK_PS_NETWORK_STATE_CHANGED));
g_assert(!g_strcmp0(ril_vendor_event_to_string(mtk1, 3021),
MTK_REGISTRATION_SUSPENDED));
g_assert(!g_strcmp0(ril_vendor_event_to_string(mtk1, 3065),
MTK_SET_ATTACH_APN));
g_assert(!g_strcmp0(ril_vendor_event_to_string(mtk1, 3037),
MTK_INCOMING_CALL_INDICATION));
/* mtk1 doesn't parse data calls */
g_assert(!ril_vendor_data_call_parse(mtk1, NULL, 0, NULL));
/* Build RIL_REQUEST_SET_INITIAL_ATTACH_APN */
req = ril_vendor_set_attach_apn_req(mtk1, "apn", "username",
"password", RIL_AUTH_NONE, "IP");
grilio_request_unref(req);
/* Build RIL_REQUEST_SETUP_DATA_CALL */
req = ril_vendor_data_call_req(mtk1, 1, RIL_DATA_PROFILE_DEFAULT,
"apn", "username", "password", RIL_AUTH_NONE, "IP");
grilio_request_unref(req);
ril_vendor_unref(mtk1);
}
static void test_mtk2(void)
{
static const guint8 noprot[] = {
0x00, 0x00, 0x00, 0x00, /* status */
0x00, 0x00, 0x00, 0x00, /* retry_time */
0x00, 0x00, 0x00, 0x00, /* cid */
0x02, 0x00, 0x00, 0x00, /* active */
0x00, 0x05, 0x00, 0x00 /* mtu */
};
static const guint8 noifname[] = {
0x00, 0x00, 0x00, 0x00, /* status */
0x00, 0x00, 0x00, 0x00, /* retry_time */
0x00, 0x00, 0x00, 0x00, /* cid */
0x02, 0x00, 0x00, 0x00, /* active */
0x00, 0x05, 0x00, 0x00, /* mtu */
/* "IP" */
0x02, 0x00, 0x00, 0x00, 0x49, 0x00, 0x50, 0x00,
0x00, 0x00, 0x00, 0x00
};
static const guint8 noaddr[] = {
0x00, 0x00, 0x00, 0x00, /* status */
0x00, 0x00, 0x00, 0x00, /* retry_time */
0x00, 0x00, 0x00, 0x00, /* cid */
0x02, 0x00, 0x00, 0x00, /* active */
0x00, 0x05, 0x00, 0x00, /* mtu */
/* "IP" */
0x02, 0x00, 0x00, 0x00, 0x49, 0x00, 0x50, 0x00,
0x00, 0x00, 0x00, 0x00,
/* "ccmni0" */
0x06, 0x00, 0x00, 0x00, 0x63, 0x00, 0x63, 0x00,
0x6d, 0x00, 0x6e, 0x00, 0x69, 0x00, 0x30, 0x00,
0x00, 0x00, 0x00, 0x00
};
static const guint8 datacall[] = {
0x00, 0x00, 0x00, 0x00, /* status */
0x00, 0x00, 0x00, 0x00, /* retry_time */
0x00, 0x00, 0x00, 0x00, /* cid */
0x02, 0x00, 0x00, 0x00, /* active */
0x00, 0x05, 0x00, 0x00, /* mtu */
/* "IP" */
0x02, 0x00, 0x00, 0x00, 0x49, 0x00, 0x50, 0x00,
0x00, 0x00, 0x00, 0x00,
/* "ccmni0" */
0x06, 0x00, 0x00, 0x00, 0x63, 0x00, 0x63, 0x00,
0x6d, 0x00, 0x6e, 0x00, 0x69, 0x00, 0x30, 0x00,
0x00, 0x00, 0x00, 0x00,
/* "10.236.123.155" */
0x0e, 0x00, 0x00, 0x00, 0x31, 0x00, 0x30, 0x00,
0x2e, 0x00, 0x32, 0x00, 0x33, 0x00, 0x36, 0x00,
0x2e, 0x00, 0x31, 0x00, 0x32, 0x00, 0x33, 0x00,
0x2e, 0x00, 0x31, 0x00, 0x35, 0x00, 0x35, 0x00,
0x00, 0x00, 0x00, 0x00,
/* "217.118.66.243 217.118.66.244" */
0x1d, 0x00, 0x00, 0x00, 0x32, 0x00, 0x31, 0x00,
0x37, 0x00, 0x2e, 0x00, 0x31, 0x00, 0x31, 0x00,
0x38, 0x00, 0x2e, 0x00, 0x36, 0x00, 0x36, 0x00,
0x2e, 0x00, 0x32, 0x00, 0x34, 0x00, 0x33, 0x00,
0x20, 0x00, 0x32, 0x00, 0x31, 0x00, 0x37, 0x00,
0x2e, 0x00, 0x31, 0x00, 0x31, 0x00, 0x38, 0x00,
0x2e, 0x00, 0x36, 0x00, 0x36, 0x00, 0x2e, 0x00,
0x32, 0x00, 0x34, 0x00, 0x34, 0x00, 0x00, 0x00,
/* "10.236.123.155" */
0x0e, 0x00, 0x00, 0x00, 0x31, 0x00, 0x30, 0x00,
0x2e, 0x00, 0x32, 0x00, 0x33, 0x00, 0x36, 0x00,
0x2e, 0x00, 0x31, 0x00, 0x32, 0x00, 0x33, 0x00,
0x2e, 0x00, 0x31, 0x00, 0x35, 0x00, 0x35, 0x00,
0x00, 0x00, 0x00, 0x00,
/* whatever... */
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00,
0x01, 0x00, 0x00, 0x00
};
const struct ril_vendor_driver *driver = ril_vendor_find_driver("mtk2");
struct ril_slot_config config;
struct ril_data_call call;
struct ril_vendor *mtk2;
GRilIoParser rilp;
GRilIoRequest* req;
g_assert(driver);
memset(&config, 0, sizeof(config));
mtk2 = ril_vendor_create(driver, NULL, NULL, &config);
g_assert(mtk2);
g_assert(!g_strcmp0(ril_vendor_request_to_string(mtk2, 2065),
MTK_RESUME_REGISTRATION));
g_assert(!g_strcmp0(ril_vendor_request_to_string(mtk2, 2086),
MTK_SET_CALL_INDICATION));
g_assert(!g_strcmp0(ril_vendor_event_to_string(mtk2, 3015),
MTK_PS_NETWORK_STATE_CHANGED));
g_assert(!g_strcmp0(ril_vendor_event_to_string(mtk2, 3024),
MTK_REGISTRATION_SUSPENDED));
g_assert(!g_strcmp0(ril_vendor_event_to_string(mtk2, 3073),
MTK_SET_ATTACH_APN));
g_assert(!g_strcmp0(ril_vendor_event_to_string(mtk2, 3042),
MTK_INCOMING_CALL_INDICATION));
/* Build RIL_REQUEST_SET_INITIAL_ATTACH_APN */
req = ril_vendor_set_attach_apn_req(mtk2, "apn", "username",
"password", RIL_AUTH_NONE, "IP");
grilio_request_unref(req);
/* Build RIL_REQUEST_SETUP_DATA_CALL */
req = ril_vendor_data_call_req(mtk2, 1, RIL_DATA_PROFILE_DEFAULT,
"apn", "username", "password", RIL_AUTH_NONE, "IP");
grilio_request_unref(req);
/* Parse data call (version < 11) */
memset(&call, 0, sizeof(call));
memset(&rilp, 0, sizeof(rilp));
g_assert(!ril_vendor_data_call_parse(mtk2, &call, 11, &rilp));
memset(&call, 0, sizeof(call));
grilio_parser_init(&rilp, noprot, sizeof(noprot));
g_assert(!ril_vendor_data_call_parse(mtk2, &call, 10, &rilp));
memset(&call, 0, sizeof(call));
grilio_parser_init(&rilp, noifname, sizeof(noifname));
g_assert(!ril_vendor_data_call_parse(mtk2, &call, 10, &rilp));
memset(&call, 0, sizeof(call));
grilio_parser_init(&rilp, noaddr, sizeof(noaddr));
g_assert(!ril_vendor_data_call_parse(mtk2, &call, 10, &rilp));
g_free(call.ifname);
grilio_parser_init(&rilp, datacall, sizeof(datacall));
g_assert(ril_vendor_data_call_parse(mtk2, &call, 10, &rilp));
g_assert(call.active == RIL_DATA_CALL_ACTIVE);
g_assert(call.mtu == 1280);
g_assert(call.prot == OFONO_GPRS_PROTO_IP);
g_assert(!g_strcmp0(call.ifname, "ccmni0"));
g_assert(!g_strcmp0(call.dnses[0], "217.118.66.243"));
g_assert(!g_strcmp0(call.dnses[1], "217.118.66.244"));
g_assert(!call.dnses[2]);
g_assert(!g_strcmp0(call.gateways[0], "10.236.123.155"));
g_assert(!call.gateways[1]);
g_assert(!g_strcmp0(call.addresses[0], "10.236.123.155"));
g_assert(!call.addresses[1]);
g_free(call.ifname);
g_strfreev(call.dnses);
g_strfreev(call.gateways);
g_strfreev(call.addresses);
ril_vendor_unref(mtk2);
}
#define TEST_(name) "/ril_vendor/" name
int main(int argc, char *argv[])
{
g_test_init(&argc, &argv, NULL);
__ofono_log_init("test-ril_vendor",
g_test_verbose() ? "*" : NULL,
FALSE, FALSE);
g_test_add_func(TEST_("null"), test_null);
g_test_add_func(TEST_("drivers"), test_drivers);
g_test_add_func(TEST_("base"), test_base);
g_test_add_func(TEST_("mtk"), test_mtk);
g_test_add_func(TEST_("mtk1"), test_mtk1);
g_test_add_func(TEST_("mtk2"), test_mtk2);
return g_test_run();
}
/*
* Local Variables:
* mode: C
* c-basic-offset: 8
* indent-tabs-mode: t
* End:
*/

View File

@@ -213,7 +213,7 @@ void slot_manager_dbus_signal_error(struct slot_manager_dbus *d,
void slot_manager_dbus_signal_modem_error(struct slot_manager_dbus *d,
int index, const char *id, const char *msg) {}
/* Fake sim_info */
/* Fake sim_info_dbus */
struct sim_info_dbus {
int unused;
@@ -1154,11 +1154,19 @@ static gboolean test_data_sim_done(gpointer user_data)
g_assert_cmpstr(m->default_voice_path, == ,TEST_PATH);
g_assert(!m->default_data_path); /* No default data slot */
g_assert(!(fake_slot_manager_dbus.signals &
SLOT_MANAGER_DBUS_SIGNAL_DATA_PATH));
/* Set data SIM IMSI */
fake_slot_manager_dbus.cb.set_default_data_imsi(m, TEST_IMSI);
g_assert_cmpstr(m->default_data_imsi, == ,TEST_IMSI);
g_assert(!m->default_data_path); /* Modem is offline */
/* Data IMSI is signaled, path is not */
g_assert_cmpuint(fake_slot_manager_dbus.signals &
(SLOT_MANAGER_DBUS_SIGNAL_DATA_IMSI |
SLOT_MANAGER_DBUS_SIGNAL_DATA_PATH), == ,
SLOT_MANAGER_DBUS_SIGNAL_DATA_IMSI);
fake_slot_manager_dbus.signals &= ~SLOT_MANAGER_DBUS_SIGNAL_DATA_IMSI;
/* Set modem online */
w->modem = &modem;
@@ -1168,16 +1176,34 @@ static gboolean test_data_sim_done(gpointer user_data)
fake_watch_emit_queued_signals(w);
/* Now is should point to our slot */
g_assert_cmpstr(m->default_data_path, == ,TEST_PATH);
/* And D-Bus clients are notified */
g_assert(fake_slot_manager_dbus.signals &
SLOT_MANAGER_DBUS_SIGNAL_DATA_PATH);
fake_slot_manager_dbus.signals &= ~SLOT_MANAGER_DBUS_SIGNAL_DATA_PATH;
/* Point it to a non-existent SIM */
fake_slot_manager_dbus.cb.set_default_data_imsi(m, TEST_IMSI_1);
g_assert_cmpstr(m->default_data_imsi, == ,TEST_IMSI_1);
g_assert(!m->default_data_path);
/* And D-Bus clients are notified again */
g_assert_cmpuint(fake_slot_manager_dbus.signals &
(SLOT_MANAGER_DBUS_SIGNAL_DATA_IMSI |
SLOT_MANAGER_DBUS_SIGNAL_DATA_PATH), == ,
(SLOT_MANAGER_DBUS_SIGNAL_DATA_IMSI |
SLOT_MANAGER_DBUS_SIGNAL_DATA_PATH));
fake_slot_manager_dbus.signals &= ~(SLOT_MANAGER_DBUS_SIGNAL_DATA_IMSI |
SLOT_MANAGER_DBUS_SIGNAL_DATA_PATH);
/* Switch the SIM */
fake_watch_set_ofono_imsi(w, TEST_IMSI_1);
fake_watch_emit_queued_signals(w);
g_assert_cmpstr(m->default_data_path, == ,TEST_PATH);
/* And D-Bus clients are notified of data path change */
g_assert_cmpuint(fake_slot_manager_dbus.signals &
(SLOT_MANAGER_DBUS_SIGNAL_DATA_IMSI |
SLOT_MANAGER_DBUS_SIGNAL_DATA_PATH), == ,
SLOT_MANAGER_DBUS_SIGNAL_DATA_PATH);
fake_slot_manager_dbus.signals &= ~SLOT_MANAGER_DBUS_SIGNAL_DATA_PATH;
/* Remove the SIM */
fake_watch_set_ofono_sim(w, NULL);
@@ -1186,6 +1212,12 @@ static gboolean test_data_sim_done(gpointer user_data)
g_assert_cmpint(m->slots[0]->sim_presence, == ,OFONO_SLOT_SIM_ABSENT);
g_assert_cmpstr(m->default_data_imsi, == ,TEST_IMSI_1);
g_assert(!m->default_data_path);
/* And D-Bus clients are notified of data path change */
g_assert_cmpuint(fake_slot_manager_dbus.signals &
(SLOT_MANAGER_DBUS_SIGNAL_DATA_IMSI |
SLOT_MANAGER_DBUS_SIGNAL_DATA_PATH), == ,
SLOT_MANAGER_DBUS_SIGNAL_DATA_PATH);
fake_slot_manager_dbus.signals &= ~SLOT_MANAGER_DBUS_SIGNAL_DATA_IMSI;
ofono_watch_unref(w);
g_main_loop_quit(test_loop);

View File

@@ -1,37 +1,30 @@
Name: ofono
Summary: Open Source Telephony
Version: 1.24
Version: 1.25
Release: 1
License: GPLv2
URL: https://github.com/sailfishos/ofono
Source: %{name}-%{version}.tar.bz2
%define libgrilio_version 1.0.38
%define libglibutil_version 1.0.30
%define libmce_version 1.0.6
%define libglibutil_version 1.0.49
Requires: dbus
Requires: systemd
Requires: ofono-configs
Requires: libglibutil >= %{libglibutil_version}
Requires: libgrilio >= %{libgrilio_version}
Requires: libmce-glib >= %{libmce_version}
Requires: mobile-broadband-provider-info
Recommends: mobile-broadband-provider-info
Recommends: ofono-configs
Requires(preun): systemd
Requires(post): systemd
Requires(postun): systemd
# license macro requires reasonably fresh rpm
BuildRequires: rpm >= 4.11
# license macro and Recommends tag require reasonably fresh rpm
BuildRequires: rpm >= 4.12
BuildRequires: pkgconfig(dbus-1)
BuildRequires: pkgconfig(dbus-glib-1)
BuildRequires: pkgconfig(glib-2.0)
BuildRequires: pkgconfig(libudev) >= 145
BuildRequires: pkgconfig(libwspcodec) >= 2.0
BuildRequires: pkgconfig(libglibutil) >= %{libglibutil_version}
BuildRequires: pkgconfig(libgrilio) >= %{libgrilio_version}
BuildRequires: pkgconfig(libmce-glib) >= %{libmce_version}
BuildRequires: pkgconfig(libdbuslogserver-dbus)
BuildRequires: pkgconfig(libdbusaccess)
BuildRequires: pkgconfig(mobile-broadband-provider-info)
@@ -61,13 +54,6 @@ Obsoletes: ofono-test < 1.0
%description tests
Scripts for testing oFono and its functionality
%package configs-mer
Summary: Package to provide default configs for ofono
Provides: ofono-configs
%description configs-mer
This package provides default configs for ofono
%package doc
Summary: Documentation for %{name}
Requires: %{name} = %{version}-%{release}
@@ -89,9 +75,9 @@ autoreconf --force --install
--enable-sailfish-debuglog \
--enable-sailfish-provision \
--enable-sailfish-pushforwarder \
--enable-sailfish-rilmodem \
--enable-sailfish-access \
--disable-add-remove-context \
--disable-rilmodem \
--disable-isimodem \
--disable-qmimodem \
--with-systemdunitdir=%{_unitdir}
@@ -155,10 +141,6 @@ systemctl try-restart ofono.service ||:
%defattr(-,root,root,-)
%{_libdir}/%{name}/test/*
%files configs-mer
%defattr(-,root,root,-)
%config /etc/ofono/ril_subscription.conf
%files doc
%defattr(-,root,root,-)
%{_mandir}/man8/%{name}d.*