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7d0f2f414e
Now that defining $DMD is no longer necessary to run DMD, this patch does the following. - Removes all the places where we set DMD=1 (test harnesses, etc.) - Still handles DMD=1, for backwards compatibility. - Prints "$DMD is undefined" at DMD start-up if appropriate. - Writes a |null| value for |dmdEnvVar| in the JSON if $DMD is undefined. Bumps the DMD output version number accordingly. - Changes a bunch of the test files accordingly, including changing the mode of script-ignore-alloc-fns.json in order to test a case where $DMD is undefined. --HG-- extra : rebase_source : eb1ef5722410734ce6d7658465ff6f442ee4ed49
300 lines
9.5 KiB
C++
300 lines
9.5 KiB
C++
/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set ts=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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#ifndef DMD_h___
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#define DMD_h___
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#include <string.h>
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#include <stdarg.h>
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#include "mozilla/DebugOnly.h"
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#include "mozilla/Move.h"
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#include "mozilla/Types.h"
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#include "mozilla/UniquePtr.h"
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#include "replace_malloc_bridge.h"
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namespace mozilla {
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class JSONWriteFunc;
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namespace dmd {
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struct Sizes
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{
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size_t mStackTracesUsed;
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size_t mStackTracesUnused;
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size_t mStackTraceTable;
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size_t mLiveBlockTable;
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size_t mDeadBlockList;
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Sizes() { Clear(); }
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void Clear() { memset(this, 0, sizeof(Sizes)); }
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};
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// See further below for a description of each method. The DMDFuncs class
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// should contain a virtual method for each of them (except IsRunning,
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// which can be inferred from the DMDFuncs singleton existing).
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struct DMDFuncs
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{
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virtual void Report(const void*);
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virtual void ReportOnAlloc(const void*);
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virtual void ClearReports();
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virtual void Analyze(UniquePtr<JSONWriteFunc>);
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virtual void SizeOf(Sizes*);
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virtual void StatusMsg(const char*, va_list);
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virtual void ResetEverything(const char*);
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#ifndef REPLACE_MALLOC_IMPL
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// We deliberately don't use ReplaceMalloc::GetDMDFuncs here, because if we
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// did, the following would happen.
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// - The code footprint of each call to Get() larger as GetDMDFuncs ends
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// up inlined.
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// - When no replace-malloc library is loaded, the number of instructions
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// executed is equivalent, but don't necessarily fit in the same cache
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// line.
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// - When a non-DMD replace-malloc library is loaded, the overhead is
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// higher because there is first a check for the replace malloc bridge
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// and then for the DMDFuncs singleton.
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// Initializing the DMDFuncs singleton on the first access makes the
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// overhead even worse. Either Get() is inlined and massive, or it isn't
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// and a simple value check becomes a function call.
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static DMDFuncs* Get() { return sSingleton.Get(); }
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private:
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// Wrapper class keeping a pointer to the DMD functions. It is statically
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// initialized because it needs to be set early enough.
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// Debug builds also check that it's never accessed before the static
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// initialization actually occured, which could be the case if some other
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// static initializer ended up calling into DMD.
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class Singleton
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{
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public:
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Singleton() : mValue(ReplaceMalloc::GetDMDFuncs()), mInitialized(true) {}
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DMDFuncs* Get()
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{
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MOZ_ASSERT(mInitialized);
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return mValue;
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}
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private:
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DMDFuncs* mValue;
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DebugOnly<bool> mInitialized;
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};
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// This singleton pointer must be defined on the program side. In Gecko,
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// this is done in xpcom/base/nsMemoryInfoDumper.cpp.
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static /* DMDFuncs:: */Singleton sSingleton;
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#endif
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};
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#ifndef REPLACE_MALLOC_IMPL
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// Mark a heap block as reported by a memory reporter.
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inline void
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Report(const void* aPtr)
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{
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DMDFuncs* funcs = DMDFuncs::Get();
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if (funcs) {
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funcs->Report(aPtr);
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}
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}
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// Mark a heap block as reported immediately on allocation.
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inline void
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ReportOnAlloc(const void* aPtr)
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{
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DMDFuncs* funcs = DMDFuncs::Get();
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if (funcs) {
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funcs->ReportOnAlloc(aPtr);
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}
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}
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// Clears existing reportedness data from any prior runs of the memory
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// reporters. The following sequence should be used.
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// - ClearReports()
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// - run the memory reporters
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// - Analyze()
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// This sequence avoids spurious twice-reported warnings.
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inline void
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ClearReports()
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{
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DMDFuncs* funcs = DMDFuncs::Get();
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if (funcs) {
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funcs->ClearReports();
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}
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}
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// Determines which heap blocks have been reported, and dumps JSON output
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// (via |aWriter|) describing the heap.
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//
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// The following sample output contains comments that explain the format and
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// design choices. The output files can be quite large, so a number of
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// decisions were made to minimize size, such as using short property names and
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// omitting properties whenever possible.
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//
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// {
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// // The version number of the format, which will be incremented each time
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// // backwards-incompatible changes are made. A mandatory integer.
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// //
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// // Version history:
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// // - 1: The original format. Implemented in bug 1044709.
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// // - 2: Added the "mode" property under "invocation". Added in bug 1094552.
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// // - 3: The "dmdEnvVar" property under "invocation" can now be |null| if
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// // the |DMD| environment variable is not defined. Done in bug 1100851.
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// "version": 3,
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//
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// // Information about how DMD was invoked. A mandatory object.
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// "invocation": {
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// // The contents of the $DMD environment variable. A string, or |null| is
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// // $DMD is undefined.
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// "dmdEnvVar": "--mode=dark-matter",
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//
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// // The profiling mode. A mandatory string taking one of the following
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// // values: "live", "dark-matter", "cumulative".
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// "mode": "dark-matter",
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//
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// // The value of the --sample-below-size option. A mandatory integer.
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// "sampleBelowSize": 4093
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// },
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//
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// // Details of all analyzed heap blocks. A mandatory array.
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// "blockList": [
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// // An example of a non-sampled heap block.
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// {
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// // Requested size, in bytes. In non-sampled blocks this is a
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// // mandatory integer. In sampled blocks this is not present, and the
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// // requested size is equal to the "sampleBelowSize" value. Therefore,
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// // the block is sampled if and only if this property is absent.
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// "req": 3584,
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//
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// // Requested slop size, in bytes. This is mandatory if it is non-zero,
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// // but omitted otherwise. Because sampled blocks never have slop, this
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// // property is never present for non-sampled blocks.
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// "slop": 512,
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//
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// // The stack trace at which the block was allocated. A mandatory
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// // string which indexes into the "traceTable" object.
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// "alloc": "A"
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// },
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//
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// // An example of a sampled heap block.
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// {
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// "alloc": "B",
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//
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// // One or more stack traces at which this heap block was reported by a
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// // memory reporter. An optional array that will only be present in
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// // "dark-matter" mode. The elements are strings that index into
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// // the "traceTable" object.
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// "reps": ["C"]
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// }
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// ],
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//
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// // The stack traces referenced by elements of the "blockList" array. This
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// // could be an array, but making it an object makes it easier to see
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// // which stacks correspond to which references in the "blockList" array.
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// "traceTable": {
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// // Each property corresponds to a stack trace mentioned in the "blocks"
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// // object. Each element is an index into the "frameTable" object.
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// "A": ["D", "E"],
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// "B": ["D", "F"],
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// "C": ["G", "H"]
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// },
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//
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// // The stack frames referenced by the "traceTable" object. The
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// // descriptions can be quite long, so they are stored separately from the
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// // "traceTable" object so that each one only has to be written once.
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// // This could also be an array, but again, making it an object makes it
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// // easier to see which frames correspond to which references in the
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// // "traceTable" object.
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// "frameTable": {
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// // Each property key is a frame key mentioned in the "traceTable" object.
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// // Each property value is a string containing a frame description. Each
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// // frame description must be in a format recognized by the stack-fixing
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// // scripts (e.g. fix_linux_stack.py), which require a frame number at
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// // the start. Because each stack frame description in this table can
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// // be shared between multiple stack traces, we use a dummy value of
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// // #00. The proper frame number can be reconstructed later by scripts
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// // that output stack traces in a conventional non-shared format.
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// "D": "#00: foo (Foo.cpp:123)",
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// "E": "#00: bar (Bar.cpp:234)",
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// "F": "#00: baz (Baz.cpp:345)",
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// "G": "#00: quux (Quux.cpp:456)",
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// "H": "#00: quuux (Quux.cpp:567)"
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// }
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// }
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//
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// Implementation note: normally, this wouldn't be templated, but in that case,
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// the function is compiled, which makes the destructor for the UniquePtr fire
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// up, and that needs JSONWriteFunc to be fully defined. That, in turn,
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// requires to include JSONWriter.h, which includes double-conversion.h, which
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// ends up breaking various things built with -Werror for various reasons.
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//
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template <typename JSONWriteFunc>
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inline void
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Analyze(UniquePtr<JSONWriteFunc> aWriteFunc)
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{
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DMDFuncs* funcs = DMDFuncs::Get();
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if (funcs) {
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funcs->Analyze(Move(aWriteFunc));
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}
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}
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// Gets the size of various data structures. Used to implement a memory
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// reporter for DMD.
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inline void
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SizeOf(Sizes* aSizes)
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{
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DMDFuncs* funcs = DMDFuncs::Get();
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if (funcs) {
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funcs->SizeOf(aSizes);
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}
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}
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// Prints a status message prefixed with "DMD[<pid>]". Use sparingly.
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inline void
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StatusMsg(const char* aFmt, ...)
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{
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DMDFuncs* funcs = DMDFuncs::Get();
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if (funcs) {
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va_list ap;
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va_start(ap, aFmt);
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funcs->StatusMsg(aFmt, ap);
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va_end(ap);
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}
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}
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// Indicates whether or not DMD is running.
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inline bool
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IsRunning()
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{
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return !!DMDFuncs::Get();
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}
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// Resets all DMD options and then sets new ones according to those specified
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// in |aOptions|. Also clears all recorded data about allocations. Only used
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// for testing purposes.
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inline void
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ResetEverything(const char* aOptions)
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{
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DMDFuncs* funcs = DMDFuncs::Get();
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if (funcs) {
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funcs->ResetEverything(aOptions);
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}
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}
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#endif
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} // namespace dmd
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} // namespace mozilla
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#endif /* DMD_h___ */
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