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314 lines
8.6 KiB
314 lines
8.6 KiB
// Copyright 2006-2009 the V8 project authors. All rights reserved.
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//
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// Tests of profiler-related functions from log.h
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#ifdef ENABLE_LOGGING_AND_PROFILING
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#include <stdlib.h>
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#include "v8.h"
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#include "log.h"
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#include "top.h"
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#include "cctest.h"
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using v8::Function;
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using v8::Local;
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using v8::Object;
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using v8::Script;
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using v8::String;
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using v8::Value;
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using v8::internal::byte;
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using v8::internal::Handle;
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using v8::internal::JSFunction;
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using v8::internal::StackTracer;
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using v8::internal::TickSample;
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using v8::internal::Top;
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static v8::Persistent<v8::Context> env;
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static struct {
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StackTracer* tracer;
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TickSample* sample;
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} trace_env = { NULL, NULL };
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static void InitTraceEnv(StackTracer* tracer, TickSample* sample) {
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trace_env.tracer = tracer;
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trace_env.sample = sample;
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}
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static void DoTrace(unsigned int fp) {
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trace_env.sample->fp = fp;
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// sp is only used to define stack high bound
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trace_env.sample->sp =
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reinterpret_cast<unsigned int>(trace_env.sample) - 10240;
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trace_env.tracer->Trace(trace_env.sample);
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}
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// Hide c_entry_fp to emulate situation when sampling is done while
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// pure JS code is being executed
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static void DoTraceHideCEntryFPAddress(unsigned int fp) {
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v8::internal::Address saved_c_frame_fp = *(Top::c_entry_fp_address());
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CHECK(saved_c_frame_fp);
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*(Top::c_entry_fp_address()) = 0;
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DoTrace(fp);
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*(Top::c_entry_fp_address()) = saved_c_frame_fp;
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}
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static void CheckRetAddrIsInFunction(const char* func_name,
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unsigned int ret_addr,
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unsigned int func_start_addr,
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unsigned int func_len) {
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printf("CheckRetAddrIsInFunction \"%s\": %08x %08x %08x\n",
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func_name, func_start_addr, ret_addr, func_start_addr + func_len);
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CHECK_GE(ret_addr, func_start_addr);
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CHECK_GE(func_start_addr + func_len, ret_addr);
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}
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static void CheckRetAddrIsInJSFunction(const char* func_name,
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unsigned int ret_addr,
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Handle<JSFunction> func) {
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v8::internal::Code* func_code = func->code();
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CheckRetAddrIsInFunction(
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func_name, ret_addr,
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reinterpret_cast<unsigned int>(func_code->instruction_start()),
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func_code->ExecutableSize());
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}
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// --- T r a c e E x t e n s i o n ---
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class TraceExtension : public v8::Extension {
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public:
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TraceExtension() : v8::Extension("v8/trace", kSource) { }
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virtual v8::Handle<v8::FunctionTemplate> GetNativeFunction(
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v8::Handle<String> name);
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static v8::Handle<v8::Value> Trace(const v8::Arguments& args);
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static v8::Handle<v8::Value> JSTrace(const v8::Arguments& args);
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private:
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static unsigned int GetFP(const v8::Arguments& args);
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static const char* kSource;
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};
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const char* TraceExtension::kSource =
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"native function trace();"
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"native function js_trace();";
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v8::Handle<v8::FunctionTemplate> TraceExtension::GetNativeFunction(
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v8::Handle<String> name) {
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if (name->Equals(String::New("trace"))) {
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return v8::FunctionTemplate::New(TraceExtension::Trace);
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} else if (name->Equals(String::New("js_trace"))) {
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return v8::FunctionTemplate::New(TraceExtension::JSTrace);
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} else {
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CHECK(false);
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return v8::Handle<v8::FunctionTemplate>();
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}
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}
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unsigned int TraceExtension::GetFP(const v8::Arguments& args) {
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CHECK_EQ(1, args.Length());
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unsigned int fp = args[0]->Int32Value() << 2;
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printf("Trace: %08x\n", fp);
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return fp;
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}
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v8::Handle<v8::Value> TraceExtension::Trace(const v8::Arguments& args) {
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DoTrace(GetFP(args));
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return v8::Undefined();
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}
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v8::Handle<v8::Value> TraceExtension::JSTrace(const v8::Arguments& args) {
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DoTraceHideCEntryFPAddress(GetFP(args));
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return v8::Undefined();
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}
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static TraceExtension kTraceExtension;
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v8::DeclareExtension kTraceExtensionDeclaration(&kTraceExtension);
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static void InitializeVM() {
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if (env.IsEmpty()) {
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v8::HandleScope scope;
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const char* extensions[] = { "v8/trace" };
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v8::ExtensionConfiguration config(1, extensions);
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env = v8::Context::New(&config);
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}
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v8::HandleScope scope;
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env->Enter();
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}
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static Handle<JSFunction> CompileFunction(const char* source) {
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return v8::Utils::OpenHandle(*Script::Compile(String::New(source)));
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}
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static void CompileRun(const char* source) {
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Script::Compile(String::New(source))->Run();
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}
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static Local<Value> GetGlobalProperty(const char* name) {
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return env->Global()->Get(String::New(name));
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}
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static Handle<JSFunction> GetGlobalJSFunction(const char* name) {
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Handle<JSFunction> js_func(JSFunction::cast(
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*(v8::Utils::OpenHandle(
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*GetGlobalProperty(name)))));
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return js_func;
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}
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static void CheckRetAddrIsInJSFunction(const char* func_name,
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unsigned int ret_addr) {
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CheckRetAddrIsInJSFunction(func_name, ret_addr,
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GetGlobalJSFunction(func_name));
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}
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static void SetGlobalProperty(const char* name, Local<Value> value) {
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env->Global()->Set(String::New(name), value);
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}
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static bool Patch(byte* from,
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size_t num,
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byte* original,
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byte* patch,
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size_t patch_len) {
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byte* to = from + num;
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do {
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from = static_cast<byte*>(memchr(from, *original, to - from));
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CHECK(from != NULL);
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if (memcmp(original, from, patch_len) == 0) {
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memcpy(from, patch, patch_len);
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return true;
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} else {
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from++;
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}
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} while (to - from > 0);
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return false;
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}
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// Creates a global function named 'func_name' that calls the tracing
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// function 'trace_func_name' with an actual EBP register value,
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// shifted right to be presented as Smi.
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static void CreateTraceCallerFunction(const char* func_name,
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const char* trace_func_name) {
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::v8::internal::EmbeddedVector<char, 256> trace_call_buf;
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::v8::internal::OS::SNPrintF(trace_call_buf, "%s(0x6666);", trace_func_name);
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Handle<JSFunction> func = CompileFunction(trace_call_buf.start());
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CHECK(!func.is_null());
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v8::internal::Code* func_code = func->code();
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CHECK(func_code->IsCode());
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// push 0xcccc (= 0x6666 << 1)
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byte original[] = { 0x68, 0xcc, 0xcc, 0x00, 0x00 };
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// mov eax,ebp; shr eax; push eax;
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byte patch[] = { 0x89, 0xe8, 0xd1, 0xe8, 0x50 };
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// Patch generated code to replace pushing of a constant with
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// pushing of ebp contents in a Smi
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CHECK(Patch(func_code->instruction_start(),
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func_code->instruction_size(),
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original, patch, sizeof(patch)));
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SetGlobalProperty(func_name, v8::ToApi<Value>(func));
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}
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TEST(CFromJSStackTrace) {
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TickSample sample;
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StackTracer tracer(reinterpret_cast<unsigned int>(&sample));
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InitTraceEnv(&tracer, &sample);
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InitializeVM();
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v8::HandleScope scope;
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CreateTraceCallerFunction("JSFuncDoTrace", "trace");
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CompileRun(
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"function JSTrace() {"
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" JSFuncDoTrace();"
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"};\n"
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"JSTrace();");
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CHECK_GT(sample.frames_count, 1);
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// Stack sampling will start from the first JS function, i.e. "JSFuncDoTrace"
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CheckRetAddrIsInJSFunction("JSFuncDoTrace",
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reinterpret_cast<unsigned int>(sample.stack[0]));
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CheckRetAddrIsInJSFunction("JSTrace",
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reinterpret_cast<unsigned int>(sample.stack[1]));
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}
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TEST(PureJSStackTrace) {
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TickSample sample;
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StackTracer tracer(reinterpret_cast<unsigned int>(&sample));
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InitTraceEnv(&tracer, &sample);
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InitializeVM();
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v8::HandleScope scope;
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CreateTraceCallerFunction("JSFuncDoTrace", "js_trace");
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CompileRun(
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"function JSTrace() {"
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" JSFuncDoTrace();"
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"};\n"
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"function OuterJSTrace() {"
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" JSTrace();"
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"};\n"
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"OuterJSTrace();");
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CHECK_GT(sample.frames_count, 1);
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// Stack sampling will start from the caller of JSFuncDoTrace, i.e. "JSTrace"
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CheckRetAddrIsInJSFunction("JSTrace",
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reinterpret_cast<unsigned int>(sample.stack[0]));
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CheckRetAddrIsInJSFunction("OuterJSTrace",
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reinterpret_cast<unsigned int>(sample.stack[1]));
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}
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static void CFuncDoTrace() {
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unsigned int fp;
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#ifdef __GNUC__
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fp = reinterpret_cast<unsigned int>(__builtin_frame_address(0));
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#elif defined _MSC_VER
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__asm mov [fp], ebp // NOLINT
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#endif
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DoTrace(fp);
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}
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static int CFunc(int depth) {
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if (depth <= 0) {
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CFuncDoTrace();
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return 0;
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} else {
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return CFunc(depth - 1) + 1;
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}
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}
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TEST(PureCStackTrace) {
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TickSample sample;
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StackTracer tracer(reinterpret_cast<unsigned int>(&sample));
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InitTraceEnv(&tracer, &sample);
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// Check that sampler doesn't crash
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CHECK_EQ(10, CFunc(10));
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}
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#endif // ENABLE_LOGGING_AND_PROFILING
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