276 lines
7.6 KiB
C++
276 lines
7.6 KiB
C++
// Copyright 2006 The Android Open Source Project
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#include <stdio.h>
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#include <unistd.h>
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#include <stdlib.h>
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#include <inttypes.h>
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#include <assert.h>
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#include "trace_reader.h"
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#include "bitvector.h"
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#include "parse_options.h"
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#include "dmtrace.h"
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#include "armdis.h"
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struct symbol {
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uint32_t id;
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};
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typedef TraceReader<symbol> TraceReaderType;
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#include "parse_options-inl.h"
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#include "callstack.h"
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DmTrace *dmtrace;
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class MyFrame : public StackFrame<symbol_type> {
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public:
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void push(int stackLevel, uint64_t time, CallStackBase *base);
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void pop(int stackLevel, uint64_t time, CallStackBase *base);
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};
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typedef CallStack<MyFrame> CallStackType;
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static const int kNumStackFrames = 500;
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static const int kMaxThreads = (32 * 1024);
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uint64_t thread_time[kMaxThreads];
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class FunctionStack {
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public:
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FunctionStack() {
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top = 0;
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}
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void push(symbol_type *sym) {
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if (top >= kNumStackFrames)
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return;
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frames[top] = sym;
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top += 1;
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}
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symbol_type* pop() {
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if (top <= 0) {
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return NULL;
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}
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top -= 1;
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return frames[top];
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}
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void showStack() {
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fprintf(stderr, "top %d\n", top);
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for (int ii = 0; ii < top; ii++) {
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fprintf(stderr, " %d: %s\n", ii, frames[ii]->name);
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}
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}
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private:
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int top;
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symbol_type *frames[kNumStackFrames];
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};
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FunctionStack *dmtrace_stack[kMaxThreads];
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void MyFrame::push(int stackLevel, uint64_t time, CallStackBase *base)
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{
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int pid = base->getId();
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CallStackType *stack = (CallStackType *) base;
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#if 0
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fprintf(stderr, "native push t %llu p %d s %d fid %d 0x%x %s\n",
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stack->getGlobalTime(time), pid, stackLevel,
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function->id, function->addr, function->name);
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#endif
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FunctionStack *fstack = dmtrace_stack[pid];
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if (fstack == NULL) {
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fstack = new FunctionStack();
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dmtrace_stack[pid] = fstack;
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}
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fstack->push(function);
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thread_time[pid] = time;
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dmtrace->addFunctionEntry(function->id, time, pid);
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}
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void MyFrame::pop(int stackLevel, uint64_t time, CallStackBase *base)
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{
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int pid = base->getId();
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CallStackType *stack = (CallStackType *) base;
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#if 0
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fprintf(stderr, "native pop t %llu p %d s %d fid %d 0x%x %s\n",
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stack->getGlobalTime(time), pid, stackLevel,
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function->id, function->addr, function->name);
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#endif
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FunctionStack *fstack = dmtrace_stack[pid];
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if (fstack == NULL) {
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fstack = new FunctionStack();
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dmtrace_stack[pid] = fstack;
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}
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symbol_type *sym = fstack->pop();
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if (sym != NULL && sym != function) {
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fprintf(stderr, "Error: q2dm function mismatch at time %llu pid %d sym %s\n",
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stack->getGlobalTime(time), pid, sym->name);
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fstack->showStack();
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exit(1);
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}
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thread_time[pid] = time;
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dmtrace->addFunctionExit(function->id, time, pid);
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}
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uint32_t nextFunctionId = 4;
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CallStackType *stacks[kMaxThreads];
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void Usage(const char *program)
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{
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fprintf(stderr, "Usage: %s [options] trace_name elf_file dmtrace_name\n",
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program);
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OptionsUsage();
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}
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int main(int argc, char **argv)
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{
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bool useKernelStack = true;
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ParseOptions(argc, argv);
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if (argc - optind != 3) {
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Usage(argv[0]);
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exit(1);
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}
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char *qemu_trace_file = argv[optind++];
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char *elf_file = argv[optind++];
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char *dmtrace_file = argv[optind++];
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TraceReaderType *trace = new TraceReaderType;
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trace->Open(qemu_trace_file);
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trace->SetDemangle(demangle);
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trace->ReadKernelSymbols(elf_file);
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trace->SetRoot(root);
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TraceHeader *qheader = trace->GetHeader();
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uint64_t startTime = qheader->start_sec;
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startTime = (startTime << 32) | qheader->start_usec;
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int kernelPid = qheader->first_unused_pid;
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dmtrace = new DmTrace;
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dmtrace->open(dmtrace_file, startTime);
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bool inKernel = false;
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CallStackType *kernelStack = NULL;
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if (useKernelStack) {
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// Create a fake kernel thread stack where we will put all the kernel
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// code.
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kernelStack = new CallStackType(kernelPid, kNumStackFrames, trace);
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dmtrace->addThread(kernelPid, "(kernel)");
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}
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CallStackType *prevStack = NULL;
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BBEvent event;
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while (1) {
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BBEvent ignored;
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symbol_type *function;
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if (GetNextValidEvent(trace, &event, &ignored, &function))
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break;
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if (event.bb_num == 0)
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break;
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#if 0
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fprintf(stderr, "event t %llu p %d %s\n",
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event.time, event.pid, function->name);
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#endif
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CallStackType *pStack;
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if (useKernelStack) {
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uint32_t flags = function->region->flags;
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uint32_t region_mask = region_type::kIsKernelRegion
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| region_type::kIsUserMappedRegion;
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if ((flags & region_mask) == region_type::kIsKernelRegion) {
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// Use the kernel stack
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pStack = kernelStack;
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inKernel = true;
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} else {
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// If we were just in the kernel then pop off all of the
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// stack frames for the kernel thread.
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if (inKernel == true) {
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inKernel = false;
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kernelStack->popAll(event.time);
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}
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// Get the stack for the current thread
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pStack = stacks[event.pid];
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}
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} else {
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// Get the stack for the current thread
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pStack = stacks[event.pid];
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}
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// If the stack does not exist, then allocate a new one.
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if (pStack == NULL) {
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pStack = new CallStackType(event.pid, kNumStackFrames, trace);
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stacks[event.pid] = pStack;
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char *name = trace->GetProcessName(event.pid);
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dmtrace->addThread(event.pid, name);
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}
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if (prevStack != pStack) {
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pStack->threadStart(event.time);
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if (prevStack)
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prevStack->threadStop(event.time);
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}
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prevStack = pStack;
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// If we have never seen this function before, then add it to the
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// list of known functions.
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if (function->id == 0) {
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function->id = nextFunctionId;
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nextFunctionId += 4;
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uint32_t flags = function->region->flags;
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const char *name = function->name;
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if (flags & region_type::kIsKernelRegion) {
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// To distinguish kernel function names from user library
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// names, add a marker to the name.
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int len = strlen(name) + strlen(" [kernel]") + 1;
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char *kernelName = new char[len];
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strcpy(kernelName, name);
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strcat(kernelName, " [kernel]");
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name = kernelName;
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}
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dmtrace->parseAndAddFunction(function->id, name);
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}
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// Update the stack
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pStack->updateStack(&event, function);
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}
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if (prevStack == NULL) {
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fprintf(stderr, "Error: no events in trace.\n");
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exit(1);
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}
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prevStack->threadStop(event.time);
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for (int ii = 0; ii < kMaxThreads; ++ii) {
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if (stacks[ii]) {
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stacks[ii]->threadStart(event.time);
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stacks[ii]->popAll(event.time);
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}
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}
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if (useKernelStack) {
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kernelStack->popAll(event.time);
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}
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// Read the pid events to find the names of the processes
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while (1) {
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PidEvent pid_event;
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if (trace->ReadPidEvent(&pid_event))
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break;
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if (pid_event.rec_type == kPidName) {
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dmtrace->updateName(pid_event.pid, pid_event.path);
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}
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}
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dmtrace->close();
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delete dmtrace;
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delete trace;
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return 0;
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}
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