245 lines
8.5 KiB
C++
245 lines
8.5 KiB
C++
/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set ts=8 sts=2 et sw=2 tw=80: */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "ProfileBuffer.h"
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#include "BaseProfiler.h"
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#include "js/ColumnNumber.h" // JS::LimitedColumnNumberOneOrigin
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#include "js/GCAPI.h"
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#include "jsfriendapi.h"
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#include "mozilla/MathAlgorithms.h"
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#include "nsJSPrincipals.h"
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#include "nsScriptSecurityManager.h"
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using namespace mozilla;
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ProfileBuffer::ProfileBuffer(ProfileChunkedBuffer& aBuffer)
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: mEntries(aBuffer) {
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// Assume the given buffer is in-session.
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MOZ_ASSERT(mEntries.IsInSession());
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}
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/* static */
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ProfileBufferBlockIndex ProfileBuffer::AddEntry(
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ProfileChunkedBuffer& aProfileChunkedBuffer,
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const ProfileBufferEntry& aEntry) {
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switch (aEntry.GetKind()) {
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#define SWITCH_KIND(KIND, TYPE, SIZE) \
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case ProfileBufferEntry::Kind::KIND: { \
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return aProfileChunkedBuffer.PutFrom(&aEntry, 1 + (SIZE)); \
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}
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FOR_EACH_PROFILE_BUFFER_ENTRY_KIND(SWITCH_KIND)
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#undef SWITCH_KIND
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default:
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MOZ_ASSERT(false, "Unhandled ProfilerBuffer entry KIND");
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return ProfileBufferBlockIndex{};
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}
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}
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// Called from signal, call only reentrant functions
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uint64_t ProfileBuffer::AddEntry(const ProfileBufferEntry& aEntry) {
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return AddEntry(mEntries, aEntry).ConvertToProfileBufferIndex();
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}
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/* static */
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ProfileBufferBlockIndex ProfileBuffer::AddThreadIdEntry(
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ProfileChunkedBuffer& aProfileChunkedBuffer, ProfilerThreadId aThreadId) {
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return AddEntry(aProfileChunkedBuffer,
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ProfileBufferEntry::ThreadId(aThreadId));
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}
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uint64_t ProfileBuffer::AddThreadIdEntry(ProfilerThreadId aThreadId) {
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return AddThreadIdEntry(mEntries, aThreadId).ConvertToProfileBufferIndex();
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}
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void ProfileBuffer::CollectCodeLocation(
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const char* aLabel, const char* aStr, uint32_t aFrameFlags,
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uint64_t aInnerWindowID, const Maybe<uint32_t>& aLineNumber,
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const Maybe<uint32_t>& aColumnNumber,
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const Maybe<JS::ProfilingCategoryPair>& aCategoryPair) {
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AddEntry(ProfileBufferEntry::Label(aLabel));
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AddEntry(ProfileBufferEntry::FrameFlags(uint64_t(aFrameFlags)));
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if (aStr) {
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// Store the string using one or more DynamicStringFragment entries.
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size_t strLen = strlen(aStr) + 1; // +1 for the null terminator
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// If larger than the prescribed limit, we will cut the string and end it
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// with an ellipsis.
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const bool tooBig = strLen > kMaxFrameKeyLength;
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if (tooBig) {
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strLen = kMaxFrameKeyLength;
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}
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char chars[ProfileBufferEntry::kNumChars];
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for (size_t j = 0;; j += ProfileBufferEntry::kNumChars) {
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// Store up to kNumChars characters in the entry.
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size_t len = ProfileBufferEntry::kNumChars;
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const bool last = j + len >= strLen;
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if (last) {
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// Only the last entry may be smaller than kNumChars.
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len = strLen - j;
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if (tooBig) {
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// That last entry is part of a too-big string, replace the end
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// characters with an ellipsis "...".
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len = std::max(len, size_t(4));
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chars[len - 4] = '.';
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chars[len - 3] = '.';
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chars[len - 2] = '.';
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chars[len - 1] = '\0';
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// Make sure the memcpy will not overwrite our ellipsis!
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len -= 4;
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}
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}
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memcpy(chars, &aStr[j], len);
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AddEntry(ProfileBufferEntry::DynamicStringFragment(chars));
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if (last) {
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break;
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}
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}
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}
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if (aInnerWindowID) {
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AddEntry(ProfileBufferEntry::InnerWindowID(aInnerWindowID));
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}
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if (aLineNumber) {
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AddEntry(ProfileBufferEntry::LineNumber(*aLineNumber));
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}
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if (aColumnNumber) {
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AddEntry(ProfileBufferEntry::ColumnNumber(*aColumnNumber));
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}
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if (aCategoryPair.isSome()) {
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AddEntry(ProfileBufferEntry::CategoryPair(int(*aCategoryPair)));
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}
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}
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size_t ProfileBuffer::SizeOfExcludingThis(MallocSizeOf aMallocSizeOf) const {
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// Measurement of the following members may be added later if DMD finds it
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// is worthwhile:
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// - memory pointed to by the elements within mEntries
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return mEntries.SizeOfExcludingThis(aMallocSizeOf);
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}
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size_t ProfileBuffer::SizeOfIncludingThis(MallocSizeOf aMallocSizeOf) const {
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return aMallocSizeOf(this) + SizeOfExcludingThis(aMallocSizeOf);
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}
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void ProfileBuffer::CollectOverheadStats(double aSamplingTimeMs,
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TimeDuration aLocking,
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TimeDuration aCleaning,
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TimeDuration aCounters,
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TimeDuration aThreads) {
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double timeUs = aSamplingTimeMs * 1000.0;
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if (mFirstSamplingTimeUs == 0.0) {
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mFirstSamplingTimeUs = timeUs;
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} else {
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// Note that we'll have 1 fewer interval than other numbers (because
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// we need both ends of an interval to know its duration). The final
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// difference should be insignificant over the expected many thousands
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// of iterations.
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mIntervalsUs.Count(timeUs - mLastSamplingTimeUs);
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}
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mLastSamplingTimeUs = timeUs;
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double locking = aLocking.ToMilliseconds() * 1000.0;
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double cleaning = aCleaning.ToMilliseconds() * 1000.0;
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double counters = aCounters.ToMilliseconds() * 1000.0;
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double threads = aThreads.ToMilliseconds() * 1000.0;
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mOverheadsUs.Count(locking + cleaning + counters + threads);
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mLockingsUs.Count(locking);
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mCleaningsUs.Count(cleaning);
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mCountersUs.Count(counters);
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mThreadsUs.Count(threads);
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static const bool sRecordSamplingOverhead = []() {
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const char* recordOverheads = getenv("MOZ_PROFILER_RECORD_OVERHEADS");
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return recordOverheads && recordOverheads[0] != '\0';
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}();
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if (sRecordSamplingOverhead) {
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AddEntry(ProfileBufferEntry::ProfilerOverheadTime(aSamplingTimeMs));
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AddEntry(ProfileBufferEntry::ProfilerOverheadDuration(locking));
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AddEntry(ProfileBufferEntry::ProfilerOverheadDuration(cleaning));
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AddEntry(ProfileBufferEntry::ProfilerOverheadDuration(counters));
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AddEntry(ProfileBufferEntry::ProfilerOverheadDuration(threads));
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}
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}
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ProfilerBufferInfo ProfileBuffer::GetProfilerBufferInfo() const {
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return {BufferRangeStart(),
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BufferRangeEnd(),
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static_cast<uint32_t>(*mEntries.BufferLength() /
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8), // 8 bytes per entry.
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mIntervalsUs,
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mOverheadsUs,
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mLockingsUs,
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mCleaningsUs,
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mCountersUs,
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mThreadsUs};
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}
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/* ProfileBufferCollector */
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void ProfileBufferCollector::CollectNativeLeafAddr(void* aAddr) {
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mBuf.AddEntry(ProfileBufferEntry::NativeLeafAddr(aAddr));
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}
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void ProfileBufferCollector::CollectJitReturnAddr(void* aAddr) {
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mBuf.AddEntry(ProfileBufferEntry::JitReturnAddr(aAddr));
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}
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void ProfileBufferCollector::CollectWasmFrame(
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JS::ProfilingCategoryPair aCategory, const char* aLabel) {
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mBuf.CollectCodeLocation("", aLabel, 0, 0, Nothing(), Nothing(),
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Some(aCategory));
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}
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void ProfileBufferCollector::CollectProfilingStackFrame(
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const js::ProfilingStackFrame& aFrame) {
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// WARNING: this function runs within the profiler's "critical section".
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MOZ_ASSERT(aFrame.isLabelFrame() ||
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(aFrame.isJsFrame() && !aFrame.isOSRFrame()));
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const char* label = aFrame.label();
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const char* dynamicString = aFrame.dynamicString();
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Maybe<uint32_t> line;
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Maybe<uint32_t> column;
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if (aFrame.isJsFrame()) {
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// There are two kinds of JS frames that get pushed onto the ProfilingStack.
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//
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// - label = "", dynamic string = <something>
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// - label = "js::RunScript", dynamic string = nullptr
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//
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// The line number is only interesting in the first case.
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if (label[0] == '\0') {
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MOZ_ASSERT(dynamicString);
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// We call aFrame.script() repeatedly -- rather than storing the result in
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// a local variable in order -- to avoid rooting hazards.
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if (aFrame.script()) {
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if (aFrame.pc()) {
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JS::LimitedColumnNumberOneOrigin col;
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line = Some(JS_PCToLineNumber(aFrame.script(), aFrame.pc(), &col));
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column = Some(col.oneOriginValue());
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}
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}
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} else {
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MOZ_ASSERT(strcmp(label, "js::RunScript") == 0 && !dynamicString);
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}
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} else {
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MOZ_ASSERT(aFrame.isLabelFrame());
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}
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mBuf.CollectCodeLocation(label, dynamicString, aFrame.flags(),
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aFrame.realmID(), line, column,
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Some(aFrame.categoryPair()));
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}
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