1edbf16697
Fixing clang-tidy warning. Bug: v8:8015 Change-Id: I4236a2cf85a414f9d7d1fbdaaaaf1c72a84f02e3 Reviewed-on: https://chromium-review.googlesource.com/1224093 Reviewed-by: Michael Lippautz <mlippautz@chromium.org> Commit-Queue: Florian Sattler <sattlerf@google.com> Cr-Commit-Position: refs/heads/master@{#55912}
259 lines
8.4 KiB
C++
259 lines
8.4 KiB
C++
// Copyright 2014 the V8 project authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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//
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// Tests the sampling API in include/v8.h
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#include <map>
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#include <string>
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#include "include/v8.h"
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#include "src/flags.h"
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#include "src/simulator.h"
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#include "test/cctest/cctest.h"
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namespace {
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class Sample {
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public:
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enum { kFramesLimit = 255 };
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Sample() = default;
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typedef const void* const* const_iterator;
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const_iterator begin() const { return data_.start(); }
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const_iterator end() const { return &data_[data_.length()]; }
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int size() const { return data_.length(); }
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v8::internal::Vector<void*>& data() { return data_; }
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private:
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v8::internal::EmbeddedVector<void*, kFramesLimit> data_;
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};
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#if defined(USE_SIMULATOR)
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class SimulatorHelper {
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public:
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inline bool Init(v8::Isolate* isolate) {
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simulator_ = reinterpret_cast<v8::internal::Isolate*>(isolate)
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->thread_local_top()
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->simulator_;
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// Check if there is active simulator.
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return simulator_ != nullptr;
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}
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inline void FillRegisters(v8::RegisterState* state) {
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#if V8_TARGET_ARCH_ARM
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state->pc = reinterpret_cast<void*>(simulator_->get_pc());
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state->sp = reinterpret_cast<void*>(
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simulator_->get_register(v8::internal::Simulator::sp));
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state->fp = reinterpret_cast<void*>(
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simulator_->get_register(v8::internal::Simulator::r11));
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#elif V8_TARGET_ARCH_ARM64
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if (simulator_->sp() == 0 || simulator_->fp() == 0) {
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// It's possible that the simulator is interrupted while it is updating
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// the sp or fp register. ARM64 simulator does this in two steps:
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// first setting it to zero and then setting it to a new value.
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// Bailout if sp/fp doesn't contain the new value.
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return;
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}
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state->pc = reinterpret_cast<void*>(simulator_->pc());
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state->sp = reinterpret_cast<void*>(simulator_->sp());
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state->fp = reinterpret_cast<void*>(simulator_->fp());
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#elif V8_TARGET_ARCH_MIPS || V8_TARGET_ARCH_MIPS64
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state->pc = reinterpret_cast<void*>(simulator_->get_pc());
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state->sp = reinterpret_cast<void*>(
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simulator_->get_register(v8::internal::Simulator::sp));
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state->fp = reinterpret_cast<void*>(
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simulator_->get_register(v8::internal::Simulator::fp));
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#elif V8_TARGET_ARCH_PPC || V8_TARGET_ARCH_PPC64
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state->pc = reinterpret_cast<void*>(simulator_->get_pc());
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state->sp = reinterpret_cast<void*>(
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simulator_->get_register(v8::internal::Simulator::sp));
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state->fp = reinterpret_cast<void*>(
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simulator_->get_register(v8::internal::Simulator::fp));
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#elif V8_TARGET_ARCH_S390 || V8_TARGET_ARCH_S390X
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state->pc = reinterpret_cast<void*>(simulator_->get_pc());
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state->sp = reinterpret_cast<void*>(
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simulator_->get_register(v8::internal::Simulator::sp));
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state->fp = reinterpret_cast<void*>(
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simulator_->get_register(v8::internal::Simulator::fp));
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#endif
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}
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private:
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v8::internal::Simulator* simulator_;
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};
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#endif // USE_SIMULATOR
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class SamplingTestHelper {
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public:
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struct CodeEventEntry {
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std::string name;
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const void* code_start;
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size_t code_len;
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};
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typedef std::map<const void*, CodeEventEntry> CodeEntries;
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explicit SamplingTestHelper(const std::string& test_function)
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: sample_is_taken_(false), isolate_(CcTest::isolate()) {
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CHECK(!instance_);
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instance_ = this;
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v8::HandleScope scope(isolate_);
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v8::Local<v8::ObjectTemplate> global = v8::ObjectTemplate::New(isolate_);
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global->Set(v8_str("CollectSample"),
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v8::FunctionTemplate::New(isolate_, CollectSample));
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LocalContext env(isolate_, nullptr, global);
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isolate_->SetJitCodeEventHandler(v8::kJitCodeEventDefault,
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JitCodeEventHandler);
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CompileRun(v8_str(test_function.c_str()));
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}
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~SamplingTestHelper() {
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isolate_->SetJitCodeEventHandler(v8::kJitCodeEventDefault, nullptr);
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instance_ = nullptr;
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}
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Sample& sample() { return sample_; }
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const CodeEventEntry* FindEventEntry(const void* address) {
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CodeEntries::const_iterator it = code_entries_.upper_bound(address);
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if (it == code_entries_.begin()) return nullptr;
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const CodeEventEntry& entry = (--it)->second;
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const void* code_end =
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static_cast<const uint8_t*>(entry.code_start) + entry.code_len;
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return address < code_end ? &entry : nullptr;
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}
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private:
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static void CollectSample(const v8::FunctionCallbackInfo<v8::Value>& args) {
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instance_->DoCollectSample();
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}
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static void JitCodeEventHandler(const v8::JitCodeEvent* event) {
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instance_->DoJitCodeEventHandler(event);
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}
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// The JavaScript calls this function when on full stack depth.
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void DoCollectSample() {
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v8::RegisterState state;
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#if defined(USE_SIMULATOR)
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SimulatorHelper simulator_helper;
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if (!simulator_helper.Init(isolate_)) return;
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simulator_helper.FillRegisters(&state);
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#else
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state.pc = nullptr;
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state.fp = &state;
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state.sp = &state;
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#endif
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v8::SampleInfo info;
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isolate_->GetStackSample(state, sample_.data().start(),
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static_cast<size_t>(sample_.size()), &info);
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size_t frames_count = info.frames_count;
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CHECK_LE(frames_count, static_cast<size_t>(sample_.size()));
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sample_.data().Truncate(static_cast<int>(frames_count));
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sample_is_taken_ = true;
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}
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void DoJitCodeEventHandler(const v8::JitCodeEvent* event) {
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if (sample_is_taken_) return;
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switch (event->type) {
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case v8::JitCodeEvent::CODE_ADDED: {
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CodeEventEntry entry;
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entry.name = std::string(event->name.str, event->name.len);
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entry.code_start = event->code_start;
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entry.code_len = event->code_len;
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code_entries_.insert(std::make_pair(entry.code_start, entry));
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break;
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}
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case v8::JitCodeEvent::CODE_MOVED: {
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CodeEntries::iterator it = code_entries_.find(event->code_start);
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CHECK(it != code_entries_.end());
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code_entries_.erase(it);
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CodeEventEntry entry;
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entry.name = std::string(event->name.str, event->name.len);
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entry.code_start = event->new_code_start;
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entry.code_len = event->code_len;
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code_entries_.insert(std::make_pair(entry.code_start, entry));
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break;
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}
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case v8::JitCodeEvent::CODE_REMOVED:
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code_entries_.erase(event->code_start);
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break;
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default:
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break;
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}
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}
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Sample sample_;
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bool sample_is_taken_;
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v8::Isolate* isolate_;
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CodeEntries code_entries_;
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static SamplingTestHelper* instance_;
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};
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SamplingTestHelper* SamplingTestHelper::instance_;
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} // namespace
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// A JavaScript function which takes stack depth
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// (minimum value 2) as an argument.
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// When at the bottom of the recursion,
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// the JavaScript code calls into C++ test code,
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// waiting for the sampler to take a sample.
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static const char* test_function =
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"function func(depth) {"
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" if (depth == 2) CollectSample();"
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" else return func(depth - 1);"
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"}";
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TEST(StackDepthIsConsistent) {
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SamplingTestHelper helper(std::string(test_function) + "func(8);");
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CHECK_EQ(8, helper.sample().size());
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}
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TEST(StackDepthDoesNotExceedMaxValue) {
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SamplingTestHelper helper(std::string(test_function) + "func(300);");
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CHECK_EQ(Sample::kFramesLimit, helper.sample().size());
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}
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// The captured sample should have three pc values.
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// They should fall in the range where the compiled code resides.
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// The expected stack is:
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// bottom of stack [{anon script}, outer, inner] top of stack
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// ^ ^ ^
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// sample.stack indices 2 1 0
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TEST(StackFramesConsistent) {
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i::FLAG_allow_natives_syntax = true;
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const char* test_script =
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"function test_sampler_api_inner() {"
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" CollectSample();"
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" return 0;"
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"}"
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"function test_sampler_api_outer() {"
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" return test_sampler_api_inner();"
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"}"
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"%NeverOptimizeFunction(test_sampler_api_inner);"
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"%NeverOptimizeFunction(test_sampler_api_outer);"
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"test_sampler_api_outer();";
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SamplingTestHelper helper(test_script);
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Sample& sample = helper.sample();
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CHECK_EQ(3, sample.size());
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const SamplingTestHelper::CodeEventEntry* entry;
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entry = helper.FindEventEntry(sample.begin()[0]);
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CHECK(entry);
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CHECK(std::string::npos != entry->name.find("test_sampler_api_inner"));
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entry = helper.FindEventEntry(sample.begin()[1]);
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CHECK(entry);
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CHECK(std::string::npos != entry->name.find("test_sampler_api_outer"));
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}
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