mirror of
https://github.com/roytam1/palemoon27.git
synced 2026-05-26 14:30:27 +00:00
2121ac8f2e
- Bug 1207030 - Enable -Wshadow flag in more directories that have no -Wshadow warnings. r=glandium (0654c75bf5) - don't build hunspell unified (a576cbdc65) - Bug 1218315 - Replace NS_LITERAL_STRING(...).get() with MOZ_UTF16(...) on rdf. r=nfroyd (795b627c84) - Bug 138009 - Remove unused platform.js, now with packaging goodness, r=mossop (f7547f1f16) - Bug 1195168 - Use channel->ascynOpen2 src/nsAutoConfig.cpp (r=sicking) (23ed743739) - Bug 1197926 - Use channel->Open2() in extensions/pref/autoconfig/src/nsReadConfig.cpp (r=sicking) (a6372aa60a) - Bug 1231256 (part 1) - Remove unused nsBoxLayoutState parameters from many functions. r=roc. (9d57344ee6) - Bug 1231256 (part 2) - Remove unused BlobDirState parameters from SetLazyData(). r=jld. (f3d62d9754) - Bug 1231256 (part 3) - Remove unused parameter from TryToOuterize(). r=roc. (0dc80be011) - Bug 1231256 (part 4) - Remove dead SetContext() declaration. r=jfkthame. (4108786c72) - Bug 1231256 (part 5) - Remove dead FromCSSPerspectiveInfo() function. r=vlad. (a9980426b0) - Bug 1231256 (part 6) - Remove unused parameter from Damage functions. r=roc. (e74906d54a) - Bug 1231256 (part 7) - Remove unused parameters from two layout functions. r=roc. (1cdcf91a10) - Bug 1231256 (part 8) - Remove unused parameters from MouseClicked(). r=roc. (2acf1b532b) - Bug 1231256 (part 9) - Remove unused parameter from ShowPopup(). r=roc. (e57daff2ee) - Bug 1231256 (part 10) - Remove unused parameters from StartAPZDrag(). r=roc. (b8d8ed57f4) - Bug 1231256 (part 11) - Remove unused parameter from HidePopupsInList(). r=roc. (ab9ea00111) - Bug 1231256 (part 12) - Remove TraceableVectorOperations::canAppendWithoutRealloc. r=terrence. (dc1ae504d5) - Bug 1230911 - modified asseert in order to prevent null pointer dereference. r=roc (71dce2e51c) - Bug 1230913 - modified assert in order to prevent null pointer dereference. r=roc (91b6092a83) - Bug 1228952 - Move texture metadata out of the BufferTextureClient/Host's buffer. r=Sotaro (5783f02382) - Bug 1215005 - SourceSurface has thread-safe refcount now. r=bas (13a0f58815) - Bug 1215438 - Part 1: Add utility functions to support transferring ImageBitmap. r=roc (5837bc686b) - Bug 1212009 - ReadFullySerializableObjects() doesn't use the aIndex param and it can be removed, r=smaug (db1b7f2a2c) - Bug 1215438 - Part 2: Add transfer support for ImageBitmap. r=baku (5f428ddaa3) - Bug 1215438 - Part 3: CairoImage can use in any thread. r=roc (7e6d6562ef) - Bug 1215438 - Part 4: Rename CairoImage to SourceSurfaceImage. r=roc (e336d6bcd7) - Bug 1215438 - Part 5: Add test for imagebitmap transfer. r=roc (71c7dbc4a5) - Bug 1172796 - Part 1: ImageEncoder can be used on worker thread. r=seth (8aa6b4d9bc) - Bug 1172796 - Part 2: Add write-only flag for origin-clean check. r=roc (dc4a1d5ef4) - Bug 1172796 - Part 3: Implement OffscreenCanvas constructor. r=roc r=smaug (466bef6e1a) - Bug 1172796 - Part 4: Implement OffscreenCanvas::ToBlob. r=roc r=smaug (0afb84ecb2) - Bug 1172796 - Part 5: Implements OffscreenCanvas::TransferImageBitmap. r=roc r=smaug (2709566e26) - Bug 1172796 - Part 6: Implements ImageBitmap::Close(). r=roc r=smaug (a45e423d77) - Bug 1172796 - Part 7: Implements ImageBitmapRenderingContext. r=roc r=smaug (c5a30f3132) - Bug 1172796 - Part 8: Add ImageBitmapRenderingContext to test_intefaces.html r=smaug (e8786603b2) - Bug 1172796 - Part 9: Use gfxPrefs to get webgl.enable-prototype-webgl2. r=jgilbert (c4ee72d49c) - fix Bug 1230686 - use RefPtr<DrawTarget>& instead of DrawTarget* (f92f5fae12) - reapply per misspatch Bug 1200595 - Consolidate the TextureClient's destruction logic. (960eb012ae) - Bug 1215236 - "Remove compilation warnings in StructuredCloneHolder". r=smaug (0ba2fdb23b) - Bug 1222123 - Warning fix in CompositorD3D11.cpp. r=Bas (f8d36dbb71) - Bug 1219494 - Part 4. gfx/layers and gfxCrash. r=mchang (b4046ee2df) - Bug 1229533: Ensure our RenderingTargetView for the backbuffer and the backbuffer itself have no lingering references, and log if they do. r=milan (89c9eed426) - Bug 1222569 - remove unused variables in CompositorD3D9.cpp; r=Bas (05f5a61e66) - Bug 1198021 - When the ContentClient of a ClientTiledPaintedLayer changes, don't destroy the old content client until after the layer transaction has been sent. r=nical (901edd5f56) - Bug 901097 - FileReader API in workers, r=sicking, r=nfroyd (01a4023d7e) - Bug 1217307 - Remove some unnecessary null checks in dom/base/. r=njn (4411cefe18) - Bug 264412. Implement HTMLElement.innerText. r=smaug,mats (28306eabfb) - Bug 1119157: Fix false over-recursion in web worker threads by cleaning up thread info in the processes forked from Nuwa. a=asuth (be1fb6ca67) - Bug 1125091 - Make Nuwa be Valgrind-friendly. r=njn. (bade1e2e1f) - Bug 1144535: Respect caller-specifed thread attributes in creating threads in the Nuwa process. r=asuth (33acdcf8ca) - Bug 1216354 - Disable LSan leak checking by default in mozglue. r=glandium (c8177284b2) - Bug 1196859 - Block Roboform binaries written against old SDK. r=bsmedberg (bf21a047ea) - Bug 763395 - Add nlsp.dll to blocklist. r=bsmedberg (ab96eafdbe) - Bug 1136968 - Add YCWebCameraSource.ax to DLL blocklist. r=benjamin (735282235d) - Bug 1170141 - Block RealNetworks Browser Record Plugin due to startup crashes. r=ehan (21937f4bc1) - Bug 1222819 - Add Orbit Downloader .dlls to Windows blocklist. r=aklotz (e8446eda95) - Bug 1198186 - increase limit used to detect int values passed as first argument to LdrLoadDll, r=dmajor (89f5ae4a87) - Bug 1151506: Block long hex name DLLs due to startup crashes. r=bsmedberg (34c0b81bfc) - Bug 1160148: Also block AVX2 in Win7RTM, and move the code to mozglue. r=froydnj (61ab36c6c6) - Bug 1203350 - Unify arithmetic operators in TimeStamp; r=froydnj (a96aeb7e11) - Bug 1179550 - Always terminate the str buffer. r=erahm (0c07fcad4f) - No bug, add missing include to StackWalk.cpp, DONTBUILD (88beda3fbb) - Bug 989499 - Part 2: Use FramePointerStackwalk on windows. r=rjmuizel (3f0db58ded) - Bug 989499 - Part 1: Add a way to get the stack top. r=BenWa (a1bdae796f) - Bug 1193838 - Expose ProfileGatherer as an nsISupports through nsIProfiler for process parent actors. r=BenWa (07121dd03d) - Bug 1233835 - Fix TaskTracer double init assert. r=mconley (895511b141) - Bug 1193838 - Make ProfileGatherer exist during the lifetime of a GeckoSampler. r=BenWa (9ca73c74e4) - Revert "Bug 1172157 - Save malformed profile JSON to file to help debug." (r=BenWa) (e4fc0084d4) - Bug 1196845 - Fix invalid JSON in saved Java thread profile; r=BenWa (d5b542da81) - Bug 1145333 - Skip NativeStackAddrs that conflict with pseudoStackAddrs and jsStackAddrs when merging sampler stacks. r=mstange (b50a048ab2) - Bug 1122721 - Don't call pthread_get_stackaddr_np during sampling. r=mstange (c6818c45a2) - Bug 1229850 - Avoid unnecessary combobox dropdown calculations in the content process. r=dbaron (174530328f) - Bug 1187605 pt 1 - In vertical writing modes, add an 'orientation' attribute with value='left' or 'right' to the <select> control's dropdown button. r=smontagu (76f9cb3fcd) - Bug 1187605 pt 2 - Make the <select> dropdown arrow respect the 'orientation' attribute, if present. r=smontagu (bd58cd1f89)
610 lines
20 KiB
C++
610 lines
20 KiB
C++
/* -*- Mode: C++; tab-width: 8; 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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#ifndef mozilla_TimeStamp_h
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#define mozilla_TimeStamp_h
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#include <stdint.h>
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#include "mozilla/Assertions.h"
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#include "mozilla/Attributes.h"
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#include "mozilla/FloatingPoint.h"
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#include "mozilla/TypeTraits.h"
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#include "mozilla/Types.h"
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namespace IPC {
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template<typename T> struct ParamTraits;
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} // namespace IPC
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#ifdef XP_WIN
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// defines TimeStampValue as a complex value keeping both
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// GetTickCount and QueryPerformanceCounter values
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#include "TimeStamp_windows.h"
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#endif
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namespace mozilla {
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#ifndef XP_WIN
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typedef uint64_t TimeStampValue;
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#endif
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class TimeStamp;
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/**
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* Platform-specific implementation details of BaseTimeDuration.
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*/
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class BaseTimeDurationPlatformUtils
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{
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public:
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static MFBT_API double ToSeconds(int64_t aTicks);
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static MFBT_API double ToSecondsSigDigits(int64_t aTicks);
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static MFBT_API int64_t TicksFromMilliseconds(double aMilliseconds);
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static MFBT_API int64_t ResolutionInTicks();
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};
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/**
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* Instances of this class represent the length of an interval of time.
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* Negative durations are allowed, meaning the end is before the start.
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*
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* Internally the duration is stored as a int64_t in units of
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* PR_TicksPerSecond() when building with NSPR interval timers, or a
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* system-dependent unit when building with system clocks. The
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* system-dependent unit must be constant, otherwise the semantics of
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* this class would be broken.
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*
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* The ValueCalculator template parameter determines how arithmetic
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* operations are performed on the integer count of ticks (mValue).
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*/
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template <typename ValueCalculator>
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class BaseTimeDuration
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{
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public:
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// The default duration is 0.
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MOZ_CONSTEXPR BaseTimeDuration() : mValue(0) {}
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// Allow construction using '0' as the initial value, for readability,
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// but no other numbers (so we don't have any implicit unit conversions).
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struct _SomethingVeryRandomHere;
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MOZ_IMPLICIT BaseTimeDuration(_SomethingVeryRandomHere* aZero) : mValue(0)
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{
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MOZ_ASSERT(!aZero, "Who's playing funny games here?");
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}
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// Default copy-constructor and assignment are OK
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// Converting copy-constructor and assignment operator
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template <typename E>
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explicit BaseTimeDuration(const BaseTimeDuration<E>& aOther)
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: mValue(aOther.mValue)
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{ }
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template <typename E>
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BaseTimeDuration& operator=(const BaseTimeDuration<E>& aOther)
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{
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mValue = aOther.mValue;
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return *this;
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}
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double ToSeconds() const
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{
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if (mValue == INT64_MAX) {
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return PositiveInfinity<double>();
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}
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if (mValue == INT64_MIN) {
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return NegativeInfinity<double>();
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}
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return BaseTimeDurationPlatformUtils::ToSeconds(mValue);
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}
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// Return a duration value that includes digits of time we think to
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// be significant. This method should be used when displaying a
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// time to humans.
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double ToSecondsSigDigits() const
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{
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if (mValue == INT64_MAX) {
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return PositiveInfinity<double>();
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}
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if (mValue == INT64_MIN) {
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return NegativeInfinity<double>();
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}
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return BaseTimeDurationPlatformUtils::ToSecondsSigDigits(mValue);
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}
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double ToMilliseconds() const { return ToSeconds() * 1000.0; }
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double ToMicroseconds() const { return ToMilliseconds() * 1000.0; }
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// Using a double here is safe enough; with 53 bits we can represent
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// durations up to over 280,000 years exactly. If the units of
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// mValue do not allow us to represent durations of that length,
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// long durations are clamped to the max/min representable value
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// instead of overflowing.
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static inline BaseTimeDuration FromSeconds(double aSeconds)
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{
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return FromMilliseconds(aSeconds * 1000.0);
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}
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static BaseTimeDuration FromMilliseconds(double aMilliseconds)
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{
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if (aMilliseconds == PositiveInfinity<double>()) {
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return Forever();
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}
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if (aMilliseconds == NegativeInfinity<double>()) {
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return FromTicks(INT64_MIN);
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}
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return FromTicks(
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BaseTimeDurationPlatformUtils::TicksFromMilliseconds(aMilliseconds));
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}
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static inline BaseTimeDuration FromMicroseconds(double aMicroseconds)
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{
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return FromMilliseconds(aMicroseconds / 1000.0);
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}
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static BaseTimeDuration Forever()
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{
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return FromTicks(INT64_MAX);
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}
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BaseTimeDuration operator+(const BaseTimeDuration& aOther) const
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{
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return FromTicks(ValueCalculator::Add(mValue, aOther.mValue));
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}
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BaseTimeDuration operator-(const BaseTimeDuration& aOther) const
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{
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return FromTicks(ValueCalculator::Subtract(mValue, aOther.mValue));
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}
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BaseTimeDuration& operator+=(const BaseTimeDuration& aOther)
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{
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mValue = ValueCalculator::Add(mValue, aOther.mValue);
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return *this;
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}
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BaseTimeDuration& operator-=(const BaseTimeDuration& aOther)
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{
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mValue = ValueCalculator::Subtract(mValue, aOther.mValue);
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return *this;
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}
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BaseTimeDuration operator-() const
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{
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// We don't just use FromTicks(ValueCalculator::Subtract(0, mValue))
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// since that won't give the correct result for -TimeDuration::Forever().
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int64_t ticks;
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if (mValue == INT64_MAX) {
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ticks = INT64_MIN;
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} else if (mValue == INT64_MIN) {
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ticks = INT64_MAX;
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} else {
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ticks = -mValue;
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}
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return FromTicks(ticks);
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}
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private:
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// Block double multiplier (slower, imprecise if long duration) - Bug 853398.
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// If required, use MultDouble explicitly and with care.
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BaseTimeDuration operator*(const double aMultiplier) const = delete;
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// Block double divisor (for the same reason, and because dividing by
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// fractional values would otherwise invoke the int64_t variant, and rounding
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// the passed argument can then cause divide-by-zero) - Bug 1147491.
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BaseTimeDuration operator/(const double aDivisor) const = delete;
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public:
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BaseTimeDuration MultDouble(double aMultiplier) const
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{
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return FromTicks(ValueCalculator::Multiply(mValue, aMultiplier));
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}
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BaseTimeDuration operator*(const int32_t aMultiplier) const
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{
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return FromTicks(ValueCalculator::Multiply(mValue, aMultiplier));
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}
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BaseTimeDuration operator*(const uint32_t aMultiplier) const
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{
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return FromTicks(ValueCalculator::Multiply(mValue, aMultiplier));
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}
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BaseTimeDuration operator*(const int64_t aMultiplier) const
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{
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return FromTicks(ValueCalculator::Multiply(mValue, aMultiplier));
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}
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BaseTimeDuration operator*(const uint64_t aMultiplier) const
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{
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if (aMultiplier > INT64_MAX) {
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return Forever();
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}
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return FromTicks(ValueCalculator::Multiply(mValue, aMultiplier));
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}
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BaseTimeDuration operator/(const int64_t aDivisor) const
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{
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MOZ_ASSERT(aDivisor != 0, "Division by zero");
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return FromTicks(ValueCalculator::Divide(mValue, aDivisor));
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}
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double operator/(const BaseTimeDuration& aOther) const
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{
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#ifndef MOZ_B2G
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// Bug 1066388 - This fails on B2G ICS Emulator
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MOZ_ASSERT(aOther.mValue != 0, "Division by zero");
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#endif
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return ValueCalculator::DivideDouble(mValue, aOther.mValue);
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}
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BaseTimeDuration operator%(const BaseTimeDuration& aOther) const
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{
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MOZ_ASSERT(aOther.mValue != 0, "Division by zero");
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return FromTicks(ValueCalculator::Modulo(mValue, aOther.mValue));
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}
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template<typename E>
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bool operator<(const BaseTimeDuration<E>& aOther) const
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{
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return mValue < aOther.mValue;
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}
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template<typename E>
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bool operator<=(const BaseTimeDuration<E>& aOther) const
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{
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return mValue <= aOther.mValue;
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}
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template<typename E>
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bool operator>=(const BaseTimeDuration<E>& aOther) const
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{
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return mValue >= aOther.mValue;
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}
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template<typename E>
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bool operator>(const BaseTimeDuration<E>& aOther) const
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{
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return mValue > aOther.mValue;
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}
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template<typename E>
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bool operator==(const BaseTimeDuration<E>& aOther) const
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{
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return mValue == aOther.mValue;
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}
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template<typename E>
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bool operator!=(const BaseTimeDuration<E>& aOther) const
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{
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return mValue != aOther.mValue;
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}
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bool IsZero() const
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{
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return mValue == 0;
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}
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explicit operator bool() const
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{
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return mValue != 0;
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}
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// Return a best guess at the system's current timing resolution,
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// which might be variable. BaseTimeDurations below this order of
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// magnitude are meaningless, and those at the same order of
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// magnitude or just above are suspect.
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static BaseTimeDuration Resolution() {
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return FromTicks(BaseTimeDurationPlatformUtils::ResolutionInTicks());
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}
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// We could define additional operators here:
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// -- convert to/from other time units
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// -- scale duration by a float
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// but let's do that on demand.
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// Comparing durations for equality will only lead to bugs on
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// platforms with high-resolution timers.
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private:
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friend class TimeStamp;
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friend struct IPC::ParamTraits<mozilla::BaseTimeDuration<ValueCalculator>>;
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template <typename>
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friend class BaseTimeDuration;
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static BaseTimeDuration FromTicks(int64_t aTicks)
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{
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BaseTimeDuration t;
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t.mValue = aTicks;
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return t;
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}
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static BaseTimeDuration FromTicks(double aTicks)
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{
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// NOTE: this MUST be a >= test, because int64_t(double(INT64_MAX))
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// overflows and gives INT64_MIN.
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if (aTicks >= double(INT64_MAX)) {
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return FromTicks(INT64_MAX);
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}
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// This MUST be a <= test.
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if (aTicks <= double(INT64_MIN)) {
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return FromTicks(INT64_MIN);
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}
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return FromTicks(int64_t(aTicks));
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}
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// Duration, result is implementation-specific difference of two TimeStamps
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int64_t mValue;
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};
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/**
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* Perform arithmetic operations on the value of a BaseTimeDuration without
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* doing strict checks on the range of values.
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*/
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class TimeDurationValueCalculator
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{
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public:
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static int64_t Add(int64_t aA, int64_t aB) { return aA + aB; }
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static int64_t Subtract(int64_t aA, int64_t aB) { return aA - aB; }
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template <typename T>
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static int64_t Multiply(int64_t aA, T aB)
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{
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static_assert(IsIntegral<T>::value,
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"Using integer multiplication routine with non-integer type."
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" Further specialization required");
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return aA * static_cast<int64_t>(aB);
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}
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static int64_t Divide(int64_t aA, int64_t aB) { return aA / aB; }
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static double DivideDouble(int64_t aA, int64_t aB)
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{
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return static_cast<double>(aA) / aB;
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}
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static int64_t Modulo(int64_t aA, int64_t aB) { return aA % aB; }
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};
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template <>
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inline int64_t
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TimeDurationValueCalculator::Multiply<double>(int64_t aA, double aB)
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{
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return static_cast<int64_t>(aA * aB);
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}
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/**
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* Specialization of BaseTimeDuration that uses TimeDurationValueCalculator for
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* arithmetic on the mValue member.
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*
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* Use this class for time durations that are *not* expected to hold values of
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* Forever (or the negative equivalent) or when such time duration are *not*
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* expected to be used in arithmetic operations.
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*/
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typedef BaseTimeDuration<TimeDurationValueCalculator> TimeDuration;
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/**
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* Instances of this class represent moments in time, or a special
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* "null" moment. We do not use the non-monotonic system clock or
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* local time, since they can be reset, causing apparent backward
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* travel in time, which can confuse algorithms. Instead we measure
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* elapsed time according to the system. This time can never go
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* backwards (i.e. it never wraps around, at least not in less than
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* five million years of system elapsed time). It might not advance
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* while the system is sleeping. If TimeStamp::SetNow() is not called
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* at all for hours or days, we might not notice the passage of some
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* of that time.
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*
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* We deliberately do not expose a way to convert TimeStamps to some
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* particular unit. All you can do is compute a difference between two
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* TimeStamps to get a TimeDuration. You can also add a TimeDuration
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* to a TimeStamp to get a new TimeStamp. You can't do something
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* meaningless like add two TimeStamps.
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*
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* Internally this is implemented as either a wrapper around
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* - high-resolution, monotonic, system clocks if they exist on this
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* platform
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* - PRIntervalTime otherwise. We detect wraparounds of
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* PRIntervalTime and work around them.
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*
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* This class is similar to C++11's time_point, however it is
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* explicitly nullable and provides an IsNull() method. time_point
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* is initialized to the clock's epoch and provides a
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* time_since_epoch() method that functions similiarly. i.e.
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* t.IsNull() is equivalent to t.time_since_epoch() == decltype(t)::duration::zero();
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*/
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class TimeStamp
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{
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public:
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/**
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* Initialize to the "null" moment
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*/
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MOZ_CONSTEXPR TimeStamp() : mValue(0) {}
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// Default copy-constructor and assignment are OK
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/**
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* The system timestamps are the same as the TimeStamp
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* retrieved by mozilla::TimeStamp. Since we need this for
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* vsync timestamps, we enable the creation of mozilla::TimeStamps
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* on platforms that support vsync aligned refresh drivers / compositors
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* Verified true as of Jan 31, 2015: B2G and OS X
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* False on Windows 7
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* UNTESTED ON OTHER PLATFORMS
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*/
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#if defined(MOZ_WIDGET_GONK) || defined(XP_DARWIN)
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static TimeStamp FromSystemTime(int64_t aSystemTime)
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{
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static_assert(sizeof(aSystemTime) == sizeof(TimeStampValue),
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"System timestamp should be same units as TimeStampValue");
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return TimeStamp(aSystemTime);
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}
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#endif
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/**
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* Return true if this is the "null" moment
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*/
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bool IsNull() const { return mValue == 0; }
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/**
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* Return true if this is not the "null" moment, may be used in tests, e.g.:
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* |if (timestamp) { ... }|
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*/
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explicit operator bool() const
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{
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return mValue != 0;
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}
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/**
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* Return a timestamp reflecting the current elapsed system time. This
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* is monotonically increasing (i.e., does not decrease) over the
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* lifetime of this process' XPCOM session.
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*
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* Now() is trying to ensure the best possible precision on each platform,
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* at least one millisecond.
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*
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* NowLoRes() has been introduced to workaround performance problems of
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* QueryPerformanceCounter on the Windows platform. NowLoRes() is giving
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* lower precision, usually 15.6 ms, but with very good performance benefit.
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* Use it for measurements of longer times, like >200ms timeouts.
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*/
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static TimeStamp Now() { return Now(true); }
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static TimeStamp NowLoRes() { return Now(false); }
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/**
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* Return a timestamp representing the time when the current process was
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* created which will be comparable with other timestamps taken with this
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* class. If the actual process creation time is detected to be inconsistent
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* the @a aIsInconsistent parameter will be set to true, the returned
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* timestamp however will still be valid though inaccurate.
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*
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* @param aIsInconsistent Set to true if an inconsistency was detected in the
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* process creation time
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* @returns A timestamp representing the time when the process was created,
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* this timestamp is always valid even when errors are reported
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*/
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static MFBT_API TimeStamp ProcessCreation(bool& aIsInconsistent);
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/**
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* Records a process restart. After this call ProcessCreation() will return
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* the time when the browser was restarted instead of the actual time when
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* the process was created.
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*/
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static MFBT_API void RecordProcessRestart();
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/**
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* Compute the difference between two timestamps. Both must be non-null.
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*/
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TimeDuration operator-(const TimeStamp& aOther) const
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{
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MOZ_ASSERT(!IsNull(), "Cannot compute with a null value");
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MOZ_ASSERT(!aOther.IsNull(), "Cannot compute with aOther null value");
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static_assert(-INT64_MAX > INT64_MIN, "int64_t sanity check");
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int64_t ticks = int64_t(mValue - aOther.mValue);
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// Check for overflow.
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if (mValue > aOther.mValue) {
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if (ticks < 0) {
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ticks = INT64_MAX;
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}
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} else {
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if (ticks > 0) {
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ticks = INT64_MIN;
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}
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}
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return TimeDuration::FromTicks(ticks);
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}
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TimeStamp operator+(const TimeDuration& aOther) const
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{
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TimeStamp result = *this;
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result += aOther;
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return result;
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}
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TimeStamp operator-(const TimeDuration& aOther) const
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{
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TimeStamp result = *this;
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result -= aOther;
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return result;
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}
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TimeStamp& operator+=(const TimeDuration& aOther)
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{
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MOZ_ASSERT(!IsNull(), "Cannot compute with a null value");
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TimeStampValue value = mValue + aOther.mValue;
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// Check for underflow.
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// (We don't check for overflow because it's not obvious what the error
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// behavior should be in that case.)
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if (aOther.mValue < 0 && value > mValue) {
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value = 0;
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}
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mValue = value;
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return *this;
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}
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TimeStamp& operator-=(const TimeDuration& aOther)
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{
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MOZ_ASSERT(!IsNull(), "Cannot compute with a null value");
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TimeStampValue value = mValue - aOther.mValue;
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// Check for underflow.
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// (We don't check for overflow because it's not obvious what the error
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// behavior should be in that case.)
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if (aOther.mValue > 0 && value > mValue) {
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value = 0;
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}
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mValue = value;
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return *this;
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}
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bool operator<(const TimeStamp& aOther) const
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{
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MOZ_ASSERT(!IsNull(), "Cannot compute with a null value");
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MOZ_ASSERT(!aOther.IsNull(), "Cannot compute with aOther null value");
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return mValue < aOther.mValue;
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}
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bool operator<=(const TimeStamp& aOther) const
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{
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MOZ_ASSERT(!IsNull(), "Cannot compute with a null value");
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MOZ_ASSERT(!aOther.IsNull(), "Cannot compute with aOther null value");
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return mValue <= aOther.mValue;
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}
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bool operator>=(const TimeStamp& aOther) const
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{
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MOZ_ASSERT(!IsNull(), "Cannot compute with a null value");
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MOZ_ASSERT(!aOther.IsNull(), "Cannot compute with aOther null value");
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return mValue >= aOther.mValue;
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}
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bool operator>(const TimeStamp& aOther) const
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{
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MOZ_ASSERT(!IsNull(), "Cannot compute with a null value");
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MOZ_ASSERT(!aOther.IsNull(), "Cannot compute with aOther null value");
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return mValue > aOther.mValue;
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}
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bool operator==(const TimeStamp& aOther) const
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{
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return IsNull()
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? aOther.IsNull()
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: !aOther.IsNull() && mValue == aOther.mValue;
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}
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bool operator!=(const TimeStamp& aOther) const
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{
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return !(*this == aOther);
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}
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// Comparing TimeStamps for equality should be discouraged. Adding
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// two TimeStamps, or scaling TimeStamps, is nonsense and must never
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// be allowed.
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static MFBT_API void Startup();
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static MFBT_API void Shutdown();
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private:
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friend struct IPC::ParamTraits<mozilla::TimeStamp>;
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friend void StartupTimelineRecordExternal(int, uint64_t);
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MOZ_IMPLICIT TimeStamp(TimeStampValue aValue) : mValue(aValue) {}
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static MFBT_API TimeStamp Now(bool aHighResolution);
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/**
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* Computes the uptime of the current process in microseconds. The result
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* is platform-dependent and needs to be checked against existing timestamps
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* for consistency.
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*
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* @returns The number of microseconds since the calling process was started
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* or 0 if an error was encountered while computing the uptime
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*/
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static MFBT_API uint64_t ComputeProcessUptime();
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/**
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* When built with PRIntervalTime, a value of 0 means this instance
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* is "null". Otherwise, the low 32 bits represent a PRIntervalTime,
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* and the high 32 bits represent a counter of the number of
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* rollovers of PRIntervalTime that we've seen. This counter starts
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* at 1 to avoid a real time colliding with the "null" value.
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*
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* PR_INTERVAL_MAX is set at 100,000 ticks per second. So the minimum
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* time to wrap around is about 2^64/100000 seconds, i.e. about
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* 5,849,424 years.
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*
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* When using a system clock, a value is system dependent.
|
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*/
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TimeStampValue mValue;
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};
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} // namespace mozilla
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#endif /* mozilla_TimeStamp_h */
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