Files
palemoon27/gfx/2d/Factory.cpp
T
roytam1 159d7b9c2f import changes from `dev' branch of rmottola/Arctic-Fox:
- Bug 967693 - Temporarily turn on HTTP cache v2 on for Desktop Firefox Nightly users, r=jduell+ehsan (0fb43bca09)
- Bug 1230939 - check the return of sGlobalEntryTables->Get(aContextKey, &diskEntries). r=mayhemer (da62f5bd04)
- fix header include (52d6efa786)
- Bug 1193605 - Part 3: do not stop non-started service; r=mcmanus (dfe2187f22)
- Bug 1193605 - Part 4: add UUID for listeners; r=mcmanus (fee78fd19d)
- Bug 1214176 - fix typo in _onOffer. r=junior. (b388d1f2a6)
- align test to 1216398 (74d505d1d6)
- Bug 1228457 create pref to allow blocking .onion at dns level rfc 7687 r=valentin.gosu (521aab1e58)
- Bug 1216370 - For safety and searchability, define the nsHostResolver::RES_* enum in terms of the nsIDNSService::RESOLVE_* enum. r=mayhemer (84c22f815f)
- Bug 1194763 - Ensure non-cluster-start flag is set properly for a run-initial supplementary-plane combining mark when shaping text. r=jdaggett (17c3ad163d)
- Bug 1168176 - Mark gfxFontShaper::mFont as MOZ_NON_OWNING_REF. r=jtd (0f3ca78c16)
- Bug 1167403 - Mark gfxFont::GlyphChangeObserver::mFont as MOZ_NON_OWNING_REF. r=jtd (ec77538943)
- align gfxContext to pre-1232822 (part 6) (bb7fa256c9)
- Bug 1231889 - Moz2Dify gfxWindowsNativeDrawing::PaintToContext(). r=mattwoodrow. (69b1d62395)
- Bug 1231864 (part 1) - Remove useless GetCairo() call in gfxWindowsNativeDrawing::BeginNativeDrawing(). r=mattwoodrow. (aa3017c392)
- Bug 1231864 (part 2) - Clean up gfxWindowsNativeDrawing::BeginNativeDrawing(). r=mattwoodrow. (860a81ba59)
- Bug 1225682 - Don't use nsAuto{,C}String as class member variables in gfx/. r=jrmuizel (a1cc11b749)
- Bug 1230611 - Make gfxWindowsPlatform::SupportsApzTouchInput use a pref cache to speed it up. r=dvander (4026e5dfe8)
- Bug 1193842 - Delete touch resampling preference and non resampling paths. r=kats (ff58c7753c)
- Bug 1177335 - Skip resampling if the time difference of touches is less than 2ms. (b98e40343d)
- Bug 1204518 - Fix warnings in widget/gonk/. r=mwu. (ddc13a4c24)
- Bug 1231832. Make IsActive work on Querys that have not begun. r=jgilbert (4b70a8fb0b)
- Bug 1218881. Enforce queries' new availability semantics. r=jgilbert (503bf80f8b)
- Bug 1233858 - Part 1 - ensure Skia's SkGraphics::Init is called from gfxPlatform::Init. r=jmuizelaar (db5fde96b1)
- Bug 1233858 -Part 2 - implement runtime-detected SSE2 optimizations for Skia. r=jmuizelaar (3c9ebaa64d)
- Bug 1233858 - work around Skia __vectorcall bugs on Win32. r=jmuizelaar (b5b5e2bbcf)
- Bug 1222569 - remove unused function from gfxPlatformFontList.cpp; r=Bas (68e1615eb2)
- Bug 1234566: Use LoadLibraryA instead of LoadLibrary in some skia Windows code to allow UNICODE to be defined. r=lsalzman (e45bf51ef7)
- Bug 1156742 Part 1: Change Moz2D recording, so that it can be used in isolation. r=bas (f02fd4992b)
- Bug 1156742 Part 2: Make gfx thebes/gl/2d work with UNICODE defined. r=bas, r=glandium (8fca45d9a3)
- Bug 1156742 Part 3: Add support for FontType::CAIRO to CreateScaledFontForTrueTypeData on Windows. r=bas (863ea539c4)
- Bug 1156742 Part 4: Add an in memory DrawEventRecorder. r=bas (c9196512a1)
- Bug 1156742 Part 5: Add a skeleton RemotePrintJob. r=mconley (aa48df9f32)
- Bug 1156742 Part 6: Add RemotePrintJob to PrintSession and PrintData. r=roc, r=mconley (607a3e6b9b)
- Bug 1233444 - add override declarations for widget/windows/; r=roc (edab847cb0)
- Bug 1156742 Part 7: Refactor nsDeviceContext.cpp to use printing surface for size and nsIDeviceContextSpec for DPI and scale. r=roc (ec6ff3d592)
- Bug 1156742 Part 8: Change gfxWindowsSurface, so that a non-printing surface can be used when recording a print. r=roc (1ab167635e)
- Bug 1156742 Part 9: Add a new nsIDeviceContextSpec for proxied printing. r=roc (11c3909a8f)
- Bug 1156742 Part 10: Allow RemotePrintJob to influence nsPagePrintTimer. r=roc (c658e96338)
- Bug 1156742 Part 11: Allow RemotePrintJobChild to abort the print. r=roc (30f3e9bce4)
- Bug 1156742 Part 12: Record CreateSimilarDrawTarget separately for Moz2D. r=bas (a978b691c3)
- Bug 1156742 Part 13: Create a Moz2D PrintTranslator. r=bas (1eca4e9b33)
- Bug 1156742 Part 14: Complete RemotePrintJob using PrintTranslator. r=mconley (7db80f0ba7)
- Bug 1156742 Part 15: Add pref for turning on printing via the parent process. r=mconley (e3dbf281ea)
- Bug 1156742 Part 16: Add recording and forwarding of Matrix attribute set for Moz2D recording. r=bas (cd5da598ea)
- Bug 1156742 Part 17: Add virtual destructor to RecorededEvent and fix subsequent crash with DWrite playback fonts. r=bas (c20a0b84fc)
- Bug 1156742 Part 18: Fix the way we hold custom font data so that they can be recorded with Moz2D. r=bas (54b4630927)
- Bug 1156742 Part 19: Implement GetFontFileData for ScaledFontWin. r=bas (f1df40b31b)
- Bug 1156742 Part 20: Move Moz2D PreferenceAccess into its own header. r=bas (0afdff8e14)
- Bug 1156742 Part 21: Use GetDirect3D11Device instead of DrawTargetD2D::GetDWriteFactory to determine if DWrite fonts should be used. r=Bas (0c87a5866d)
- Bug 1156742 Part 22: Change ScaledFontDWrite to support creation from TrueType Collection data. r=bas (5f2c607e64)
- Bug 1156742 Part 23: Assert in PrintTranslator when a lookup fails. r=bas (72e24c789f)
- Bug 1156742 Part 24: Add new Recorded event to record font data. r=bas (a0c6f951aa)
- Bug 1156742 Part 25: Flip the big switch and wait for the lightning. r=mconley (082a1a3ede)
- Bug 1203232 - Fix -Wshadow warnings in some ipc/chromium headers. r=njn (018499b8a1)
- Bug 1089837 - Make IPC::Message use MOZ_COUNT_CTOR/DTOR. r=jld (124e011902)
- Bug 1235234 - Fix unintentional switch fallthrough in ipc/chromium/ found by -Wimplicit-fallthrough warning. r=gcp (af37d85c1c)
- Bug 1207498 - Part 2: Remove use of expression closure from tests in toolkit/components/. r=Gijs (98915956bd)
- Bug 1157282 - Add test coverage for telemetry histogram recording. r=gfritzsche (f403b07c7f)
- Bug 1228147: part 1: Add telemetry RecordingEnabled support. r=gfritzsche f=froydnj (610c92394f)
- Bug 1228147: part 2: Add telemetry probe for synchronous scroll. r=kats (6816099c37)
- Bug 1201492 - Remove extended_statistics_ok from Telemetry histograms. r=dexter (f7f991249f)
- Bug 842894 - Support DirectWrite using the Skia backend. r=bas (f2487cf863)
2023-07-20 11:53:14 +08:00

1078 lines
27 KiB
C++

/* -*- Mode: C++; tab-width: 20; indent-tabs-mode: nil; c-basic-offset: 2 -*-
* This Source Code Form is subject to the terms of the Mozilla Public
* License, v. 2.0. If a copy of the MPL was not distributed with this
* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
#include "2D.h"
#ifdef USE_CAIRO
#include "DrawTargetCairo.h"
#include "ScaledFontCairo.h"
#endif
#ifdef USE_SKIA
#include "DrawTargetSkia.h"
#include "ScaledFontBase.h"
#ifdef MOZ_ENABLE_FREETYPE
#define USE_SKIA_FREETYPE
#include "ScaledFontCairo.h"
#endif
#endif
#if defined(WIN32)
#include "ScaledFontWin.h"
#include "NativeFontResourceGDI.h"
#endif
#ifdef XP_DARWIN
#include "ScaledFontMac.h"
#endif
#ifdef XP_DARWIN
#include "DrawTargetCG.h"
#endif
#ifdef WIN32
#include "DrawTargetD2D.h"
#include "DrawTargetD2D1.h"
#include "ScaledFontDWrite.h"
#include "NativeFontResourceDWrite.h"
#include <d3d10_1.h>
#include "HelpersD2D.h"
#endif
#include "DrawTargetDual.h"
#include "DrawTargetTiled.h"
#include "DrawTargetRecording.h"
#include "SourceSurfaceRawData.h"
#include "DrawEventRecorder.h"
#include "Preferences.h"
#include "Logging.h"
#include "mozilla/CheckedInt.h"
#if defined(MOZ_LOGGING)
GFX2D_API mozilla::LogModule*
GetGFX2DLog()
{
static mozilla::LazyLogModule sLog("gfx2d");
return sLog;
}
#endif
// The following code was largely taken from xpcom/glue/SSE.cpp and
// made a little simpler.
enum CPUIDRegister { eax = 0, ebx = 1, ecx = 2, edx = 3 };
#ifdef HAVE_CPUID_H
#if !(defined(__SSE2__) || defined(_M_X64) || \
(defined(_M_IX86_FP) && _M_IX86_FP >= 2))
// cpuid.h is available on gcc 4.3 and higher on i386 and x86_64
#include <cpuid.h>
static inline bool
HasCPUIDBit(unsigned int level, CPUIDRegister reg, unsigned int bit)
{
unsigned int regs[4];
return __get_cpuid(level, &regs[0], &regs[1], &regs[2], &regs[3]) &&
(regs[reg] & bit);
}
#endif
#define HAVE_CPU_DETECTION
#else
#if defined(_MSC_VER) && _MSC_VER >= 1600 && (defined(_M_IX86) || defined(_M_AMD64))
// MSVC 2005 or later supports __cpuid by intrin.h
// But it does't work on MSVC 2005 with SDK 7.1 (Bug 753772)
#include <intrin.h>
#define HAVE_CPU_DETECTION
#elif defined(__SUNPRO_CC) && (defined(__i386) || defined(__x86_64__))
// Define a function identical to MSVC function.
#ifdef __i386
static void
__cpuid(int CPUInfo[4], int InfoType)
{
asm (
"xchg %esi, %ebx\n"
"cpuid\n"
"movl %eax, (%edi)\n"
"movl %ebx, 4(%edi)\n"
"movl %ecx, 8(%edi)\n"
"movl %edx, 12(%edi)\n"
"xchg %esi, %ebx\n"
:
: "a"(InfoType), // %eax
"D"(CPUInfo) // %edi
: "%ecx", "%edx", "%esi"
);
}
#else
static void
__cpuid(int CPUInfo[4], int InfoType)
{
asm (
"xchg %rsi, %rbx\n"
"cpuid\n"
"movl %eax, (%rdi)\n"
"movl %ebx, 4(%rdi)\n"
"movl %ecx, 8(%rdi)\n"
"movl %edx, 12(%rdi)\n"
"xchg %rsi, %rbx\n"
:
: "a"(InfoType), // %eax
"D"(CPUInfo) // %rdi
: "%ecx", "%edx", "%rsi"
);
}
#define HAVE_CPU_DETECTION
#endif
#endif
#ifdef HAVE_CPU_DETECTION
static inline bool
HasCPUIDBit(unsigned int level, CPUIDRegister reg, unsigned int bit)
{
// Check that the level in question is supported.
volatile int regs[4];
__cpuid((int *)regs, level & 0x80000000u);
if (unsigned(regs[0]) < level)
return false;
__cpuid((int *)regs, level);
return !!(unsigned(regs[reg]) & bit);
}
#endif
#endif
namespace mozilla {
namespace gfx {
int32_t LoggingPrefs::sGfxLogLevel =
PreferenceAccess::RegisterLivePref("gfx.logging.level", &sGfxLogLevel,
LOG_DEFAULT);
#ifdef WIN32
ID3D10Device1 *Factory::mD3D10Device;
ID3D11Device *Factory::mD3D11Device;
ID2D1Device *Factory::mD2D1Device;
#endif
DrawEventRecorder *Factory::mRecorder;
mozilla::gfx::Config* Factory::sConfig = nullptr;
void
Factory::Init(const Config& aConfig)
{
MOZ_ASSERT(!sConfig);
sConfig = new Config(aConfig);
// Make sure we don't completely break rendering because of a typo in the
// pref or whatnot.
const int32_t kMinAllocPref = 10000000;
const int32_t kMinSizePref = 2048;
if (sConfig->mMaxAllocSize < kMinAllocPref) {
sConfig->mMaxAllocSize = kMinAllocPref;
}
if (sConfig->mMaxTextureSize < kMinSizePref) {
sConfig->mMaxTextureSize = kMinSizePref;
}
}
void
Factory::ShutDown()
{
if (sConfig) {
delete sConfig;
sConfig = nullptr;
}
}
bool
Factory::HasSSE2()
{
#if defined(__SSE2__) || defined(_M_X64) || \
(defined(_M_IX86_FP) && _M_IX86_FP >= 2)
// gcc with -msse2 (default on OSX and x86-64)
// cl.exe with -arch:SSE2 (default on x64 compiler)
return true;
#elif defined(HAVE_CPU_DETECTION)
static enum {
UNINITIALIZED,
NO_SSE2,
HAS_SSE2
} sDetectionState = UNINITIALIZED;
if (sDetectionState == UNINITIALIZED) {
sDetectionState = HasCPUIDBit(1u, edx, (1u<<26)) ? HAS_SSE2 : NO_SSE2;
}
return sDetectionState == HAS_SSE2;
#else
return false;
#endif
}
bool
Factory::HasVMX()
{
#if (defined(__powerpc__) || defined(__POWERPC__)) \
&& (defined(__ALTIVEC__) || defined(__APPLE_ALTIVEC__))
return true;
#else
return false;
#endif
}
// If the size is "reasonable", we want gfxCriticalError to assert, so
// this is the option set up for it.
inline int LoggerOptionsBasedOnSize(const IntSize& aSize)
{
return CriticalLog::DefaultOptions(Factory::ReasonableSurfaceSize(aSize));
}
bool
Factory::ReasonableSurfaceSize(const IntSize &aSize)
{
return Factory::CheckSurfaceSize(aSize, 8192);
}
bool
Factory::AllowedSurfaceSize(const IntSize &aSize)
{
if (sConfig) {
return Factory::CheckSurfaceSize(aSize,
sConfig->mMaxTextureSize,
sConfig->mMaxAllocSize);
}
return CheckSurfaceSize(aSize);
}
bool
Factory::CheckBufferSize(int32_t bufSize)
{
return !sConfig || bufSize < sConfig->mMaxAllocSize;
}
bool
Factory::CheckSurfaceSize(const IntSize &sz,
int32_t extentLimit,
int32_t allocLimit)
{
if (sz.width <= 0 || sz.height <= 0) {
gfxDebug() << "Surface width or height <= 0!";
return false;
}
// reject images with sides bigger than limit
if (extentLimit && (sz.width > extentLimit || sz.height > extentLimit)) {
gfxDebug() << "Surface size too large (exceeds extent limit)!";
return false;
}
// make sure the surface area doesn't overflow a int32_t
CheckedInt<int32_t> tmp = sz.width;
tmp *= sz.height;
if (!tmp.isValid()) {
gfxDebug() << "Surface size too large (would overflow)!";
return false;
}
// assuming 4 bytes per pixel, make sure the allocation size
// doesn't overflow a int32_t either
CheckedInt<int32_t> stride = sz.width;
stride *= 4;
// When aligning the stride to 16 bytes, it can grow by up to 15 bytes.
stride += 16 - 1;
if (!stride.isValid()) {
gfxDebug() << "Surface size too large (stride overflows int32_t)!";
return false;
}
CheckedInt<int32_t> numBytes = GetAlignedStride<16>(sz.width * 4);
numBytes *= sz.height;
if (!numBytes.isValid()) {
gfxDebug() << "Surface size too large (allocation size would overflow int32_t)!";
return false;
}
if (allocLimit && allocLimit < numBytes.value()) {
gfxDebug() << "Surface size too large (exceeds allocation limit)!";
return false;
}
return true;
}
already_AddRefed<DrawTarget>
Factory::CreateDrawTarget(BackendType aBackend, const IntSize &aSize, SurfaceFormat aFormat)
{
if (!AllowedSurfaceSize(aSize)) {
gfxCriticalError(LoggerOptionsBasedOnSize(aSize)) << "Failed to allocate a surface due to invalid size " << aSize;
return nullptr;
}
RefPtr<DrawTarget> retVal;
switch (aBackend) {
#ifdef WIN32
case BackendType::DIRECT2D:
{
RefPtr<DrawTargetD2D> newTarget;
newTarget = new DrawTargetD2D();
if (newTarget->Init(aSize, aFormat)) {
retVal = newTarget;
}
break;
}
case BackendType::DIRECT2D1_1:
{
RefPtr<DrawTargetD2D1> newTarget;
newTarget = new DrawTargetD2D1();
if (newTarget->Init(aSize, aFormat)) {
retVal = newTarget;
}
break;
}
#elif defined XP_DARWIN
case BackendType::COREGRAPHICS:
case BackendType::COREGRAPHICS_ACCELERATED:
{
RefPtr<DrawTargetCG> newTarget;
newTarget = new DrawTargetCG();
if (newTarget->Init(aBackend, aSize, aFormat)) {
retVal = newTarget;
}
break;
}
#endif
#ifdef USE_SKIA
case BackendType::SKIA:
{
RefPtr<DrawTargetSkia> newTarget;
newTarget = new DrawTargetSkia();
if (newTarget->Init(aSize, aFormat)) {
retVal = newTarget;
}
break;
}
#endif
#ifdef USE_CAIRO
case BackendType::CAIRO:
{
RefPtr<DrawTargetCairo> newTarget;
newTarget = new DrawTargetCairo();
if (newTarget->Init(aSize, aFormat)) {
retVal = newTarget;
}
break;
}
#endif
default:
gfxDebug() << "Invalid draw target type specified.";
return nullptr;
}
if (mRecorder && retVal) {
return MakeAndAddRef<DrawTargetRecording>(mRecorder, retVal);
}
if (!retVal) {
// Failed
gfxCriticalError(LoggerOptionsBasedOnSize(aSize)) << "Failed to create DrawTarget, Type: " << int(aBackend) << " Size: " << aSize;
}
return retVal.forget();
}
already_AddRefed<DrawTarget>
Factory::CreateRecordingDrawTarget(DrawEventRecorder *aRecorder, DrawTarget *aDT)
{
return MakeAndAddRef<DrawTargetRecording>(aRecorder, aDT);
}
already_AddRefed<DrawTarget>
Factory::CreateDrawTargetForData(BackendType aBackend,
unsigned char *aData,
const IntSize &aSize,
int32_t aStride,
SurfaceFormat aFormat)
{
MOZ_ASSERT(aData);
if (!AllowedSurfaceSize(aSize)) {
gfxCriticalError(LoggerOptionsBasedOnSize(aSize)) << "Failed to allocate a surface due to invalid size " << aSize;
return nullptr;
}
RefPtr<DrawTarget> retVal;
switch (aBackend) {
#ifdef USE_SKIA
case BackendType::SKIA:
{
RefPtr<DrawTargetSkia> newTarget;
newTarget = new DrawTargetSkia();
newTarget->Init(aData, aSize, aStride, aFormat);
retVal = newTarget;
break;
}
#endif
#ifdef XP_DARWIN
case BackendType::COREGRAPHICS:
{
RefPtr<DrawTargetCG> newTarget = new DrawTargetCG();
if (newTarget->Init(aBackend, aData, aSize, aStride, aFormat))
return newTarget.forget();
break;
}
#endif
#ifdef USE_CAIRO
case BackendType::CAIRO:
{
RefPtr<DrawTargetCairo> newTarget;
newTarget = new DrawTargetCairo();
if (newTarget->Init(aData, aSize, aStride, aFormat)) {
retVal = newTarget.forget();
}
break;
}
#endif
default:
gfxCriticalNote << "Invalid draw target type specified: " << (int)aBackend;
return nullptr;
}
if (mRecorder && retVal) {
return MakeAndAddRef<DrawTargetRecording>(mRecorder, retVal, true);
}
if (!retVal) {
gfxCriticalNote << "Failed to create DrawTarget, Type: " << int(aBackend) << " Size: " << aSize << ", Data: " << hexa(aData) << ", Stride: " << aStride;
}
return retVal.forget();
}
already_AddRefed<DrawTarget>
Factory::CreateTiledDrawTarget(const TileSet& aTileSet)
{
RefPtr<DrawTargetTiled> dt = new DrawTargetTiled();
if (!dt->Init(aTileSet)) {
return nullptr;
}
return dt.forget();
}
bool
Factory::DoesBackendSupportDataDrawtarget(BackendType aType)
{
switch (aType) {
case BackendType::DIRECT2D:
case BackendType::DIRECT2D1_1:
case BackendType::RECORDING:
case BackendType::NONE:
case BackendType::COREGRAPHICS_ACCELERATED:
return false;
case BackendType::CAIRO:
case BackendType::COREGRAPHICS:
#if defined(USE_SKIA)
case BackendType::SKIA:
#endif
return true;
}
return false;
}
uint32_t
Factory::GetMaxSurfaceSize(BackendType aType)
{
switch (aType) {
case BackendType::CAIRO:
case BackendType::COREGRAPHICS:
return DrawTargetCairo::GetMaxSurfaceSize();
#ifdef XP_MACOSX
case BackendType::COREGRAPHICS_ACCELERATED:
return DrawTargetCG::GetMaxSurfaceSize();
#endif
#ifdef USE_SKIA
case BackendType::SKIA:
return DrawTargetSkia::GetMaxSurfaceSize();
#endif
#ifdef WIN32
case BackendType::DIRECT2D:
return DrawTargetD2D::GetMaxSurfaceSize();
case BackendType::DIRECT2D1_1:
return DrawTargetD2D1::GetMaxSurfaceSize();
#endif
default:
return 0;
}
}
already_AddRefed<ScaledFont>
Factory::CreateScaledFontForNativeFont(const NativeFont &aNativeFont, Float aSize)
{
switch (aNativeFont.mType) {
#ifdef WIN32
case NativeFontType::DWRITE_FONT_FACE:
{
return MakeAndAddRef<ScaledFontDWrite>(static_cast<IDWriteFontFace*>(aNativeFont.mFont), aSize);
}
#if defined(USE_CAIRO) || defined(USE_SKIA)
case NativeFontType::GDI_FONT_FACE:
{
return MakeAndAddRef<ScaledFontWin>(static_cast<LOGFONTW*>(aNativeFont.mFont), aSize);
}
#endif
#endif
#ifdef XP_DARWIN
case NativeFontType::MAC_FONT_FACE:
{
return MakeAndAddRef<ScaledFontMac>(static_cast<CGFontRef>(aNativeFont.mFont), aSize);
}
#endif
#if defined(USE_CAIRO) || defined(USE_SKIA_FREETYPE)
case NativeFontType::CAIRO_FONT_FACE:
{
return MakeAndAddRef<ScaledFontCairo>(static_cast<cairo_scaled_font_t*>(aNativeFont.mFont), aSize);
}
#endif
default:
gfxWarning() << "Invalid native font type specified.";
return nullptr;
}
}
already_AddRefed<NativeFontResource>
Factory::CreateNativeFontResource(uint8_t *aData, uint32_t aSize,
FontType aType)
{
switch (aType) {
#ifdef WIN32
case FontType::DWRITE:
{
return NativeFontResourceDWrite::Create(aData, aSize,
/* aNeedsCairo = */ false);
}
#endif
case FontType::CAIRO:
{
#ifdef WIN32
if (GetDirect3D11Device()) {
return NativeFontResourceDWrite::Create(aData, aSize,
/* aNeedsCairo = */ true);
} else {
return NativeFontResourceGDI::Create(aData, aSize,
/* aNeedsCairo = */ true);
}
#else
gfxWarning() << "Unable to create cairo scaled font from truetype data";
return nullptr;
#endif
}
default:
gfxWarning() << "Unable to create requested font resource from truetype data";
return nullptr;
}
}
already_AddRefed<ScaledFont>
Factory::CreateScaledFontWithCairo(const NativeFont& aNativeFont, Float aSize, cairo_scaled_font_t* aScaledFont)
{
#ifdef USE_CAIRO
// In theory, we could pull the NativeFont out of the cairo_scaled_font_t*,
// but that would require a lot of code that would be otherwise repeated in
// various backends.
// Therefore, we just reuse CreateScaledFontForNativeFont's implementation.
RefPtr<ScaledFont> font = CreateScaledFontForNativeFont(aNativeFont, aSize);
static_cast<ScaledFontBase*>(font.get())->SetCairoScaledFont(aScaledFont);
return font.forget();
#else
return nullptr;
#endif
}
already_AddRefed<DrawTarget>
Factory::CreateDualDrawTarget(DrawTarget *targetA, DrawTarget *targetB)
{
MOZ_ASSERT(targetA && targetB);
RefPtr<DrawTarget> newTarget =
new DrawTargetDual(targetA, targetB);
RefPtr<DrawTarget> retVal = newTarget;
if (mRecorder) {
retVal = new DrawTargetRecording(mRecorder, retVal);
}
return retVal.forget();
}
#ifdef WIN32
already_AddRefed<DrawTarget>
Factory::CreateDrawTargetForD3D10Texture(ID3D10Texture2D *aTexture, SurfaceFormat aFormat)
{
MOZ_ASSERT(aTexture);
RefPtr<DrawTargetD2D> newTarget;
newTarget = new DrawTargetD2D();
if (newTarget->Init(aTexture, aFormat)) {
RefPtr<DrawTarget> retVal = newTarget;
if (mRecorder) {
retVal = new DrawTargetRecording(mRecorder, retVal, true);
}
return retVal.forget();
}
gfxWarning() << "Failed to create draw target for D3D10 texture.";
// Failed
return nullptr;
}
already_AddRefed<DrawTarget>
Factory::CreateDualDrawTargetForD3D10Textures(ID3D10Texture2D *aTextureA,
ID3D10Texture2D *aTextureB,
SurfaceFormat aFormat)
{
MOZ_ASSERT(aTextureA && aTextureB);
RefPtr<DrawTargetD2D> newTargetA;
RefPtr<DrawTargetD2D> newTargetB;
newTargetA = new DrawTargetD2D();
if (!newTargetA->Init(aTextureA, aFormat)) {
gfxWarning() << "Failed to create dual draw target for D3D10 texture.";
return nullptr;
}
newTargetB = new DrawTargetD2D();
if (!newTargetB->Init(aTextureB, aFormat)) {
gfxWarning() << "Failed to create new draw target for D3D10 texture.";
return nullptr;
}
RefPtr<DrawTarget> newTarget =
new DrawTargetDual(newTargetA, newTargetB);
RefPtr<DrawTarget> retVal = newTarget;
if (mRecorder) {
retVal = new DrawTargetRecording(mRecorder, retVal);
}
return retVal.forget();
}
void
Factory::SetDirect3D10Device(ID3D10Device1 *aDevice)
{
// do not throw on failure; return error codes and disconnect the device
// On Windows 8 error codes are the default, but on Windows 7 the
// default is to throw (or perhaps only with some drivers?)
if (aDevice) {
aDevice->SetExceptionMode(0);
}
mD3D10Device = aDevice;
}
ID3D10Device1*
Factory::GetDirect3D10Device()
{
#ifdef DEBUG
if (mD3D10Device) {
UINT mode = mD3D10Device->GetExceptionMode();
MOZ_ASSERT(0 == mode);
}
#endif
return mD3D10Device;
}
already_AddRefed<DrawTarget>
Factory::CreateDrawTargetForD3D11Texture(ID3D11Texture2D *aTexture, SurfaceFormat aFormat)
{
MOZ_ASSERT(aTexture);
RefPtr<DrawTargetD2D1> newTarget;
newTarget = new DrawTargetD2D1();
if (newTarget->Init(aTexture, aFormat)) {
RefPtr<DrawTarget> retVal = newTarget;
if (mRecorder) {
retVal = new DrawTargetRecording(mRecorder, retVal, true);
}
return retVal.forget();
}
gfxWarning() << "Failed to create draw target for D3D11 texture.";
// Failed
return nullptr;
}
void
Factory::SetDirect3D11Device(ID3D11Device *aDevice)
{
mD3D11Device = aDevice;
if (mD2D1Device) {
mD2D1Device->Release();
mD2D1Device = nullptr;
}
if (!aDevice) {
return;
}
RefPtr<ID2D1Factory1> factory = D2DFactory1();
RefPtr<IDXGIDevice> device;
aDevice->QueryInterface((IDXGIDevice**)getter_AddRefs(device));
HRESULT hr = factory->CreateDevice(device, &mD2D1Device);
if (FAILED(hr)) {
gfxCriticalError() << "[D2D1] Failed to create gfx factory's D2D1 device, code: " << hexa(hr);
}
}
ID3D11Device*
Factory::GetDirect3D11Device()
{
return mD3D11Device;
}
ID2D1Device*
Factory::GetD2D1Device()
{
return mD2D1Device;
}
bool
Factory::SupportsD2D1()
{
return !!D2DFactory1();
}
already_AddRefed<GlyphRenderingOptions>
Factory::CreateDWriteGlyphRenderingOptions(IDWriteRenderingParams *aParams)
{
return MakeAndAddRef<GlyphRenderingOptionsDWrite>(aParams);
}
uint64_t
Factory::GetD2DVRAMUsageDrawTarget()
{
return DrawTargetD2D::mVRAMUsageDT;
}
uint64_t
Factory::GetD2DVRAMUsageSourceSurface()
{
return DrawTargetD2D::mVRAMUsageSS;
}
void
Factory::D2DCleanup()
{
if (mD2D1Device) {
mD2D1Device->Release();
mD2D1Device = nullptr;
}
DrawTargetD2D1::CleanupD2D();
DrawTargetD2D::CleanupD2D();
}
already_AddRefed<ScaledFont>
Factory::CreateScaledFontForDWriteFont(IDWriteFont* aFont,
IDWriteFontFamily* aFontFamily,
IDWriteFontFace* aFontFace,
float aSize)
{
return MakeAndAddRef<ScaledFontDWrite>(aFont, aFontFamily, aFontFace, aSize);
}
#endif // XP_WIN
#ifdef USE_SKIA_GPU
already_AddRefed<DrawTarget>
Factory::CreateDrawTargetSkiaWithGrContext(GrContext* aGrContext,
const IntSize &aSize,
SurfaceFormat aFormat)
{
RefPtr<DrawTarget> newTarget = new DrawTargetSkia();
if (!newTarget->InitWithGrContext(aGrContext, aSize, aFormat)) {
return nullptr;
}
return newTarget.forget();
}
#endif // USE_SKIA_GPU
void
Factory::PurgeAllCaches()
{
}
#ifdef USE_SKIA_FREETYPE
already_AddRefed<GlyphRenderingOptions>
Factory::CreateCairoGlyphRenderingOptions(FontHinting aHinting, bool aAutoHinting, AntialiasMode aAntialiasMode)
{
RefPtr<GlyphRenderingOptionsCairo> options =
new GlyphRenderingOptionsCairo();
options->SetHinting(aHinting);
options->SetAutoHinting(aAutoHinting);
options->SetAntialiasMode(aAntialiasMode);
return options.forget();
}
#endif
already_AddRefed<DrawTarget>
Factory::CreateDrawTargetForCairoSurface(cairo_surface_t* aSurface, const IntSize& aSize, SurfaceFormat* aFormat)
{
RefPtr<DrawTarget> retVal;
#ifdef USE_CAIRO
RefPtr<DrawTargetCairo> newTarget = new DrawTargetCairo();
if (newTarget->Init(aSurface, aSize, aFormat)) {
retVal = newTarget;
}
if (mRecorder && retVal) {
return MakeAndAddRef<DrawTargetRecording>(mRecorder, retVal, true);
}
#endif
return retVal.forget();
}
#ifdef XP_DARWIN
already_AddRefed<DrawTarget>
Factory::CreateDrawTargetForCairoCGContext(CGContextRef cg, const IntSize& aSize)
{
RefPtr<DrawTarget> retVal;
RefPtr<DrawTargetCG> newTarget = new DrawTargetCG();
if (newTarget->Init(cg, aSize)) {
retVal = newTarget;
}
if (mRecorder && retVal) {
return MakeAndAddRef<DrawTargetRecording>(mRecorder, retVal);
}
return retVal.forget();
}
already_AddRefed<GlyphRenderingOptions>
Factory::CreateCGGlyphRenderingOptions(const Color &aFontSmoothingBackgroundColor)
{
return MakeAndAddRef<GlyphRenderingOptionsCG>(aFontSmoothingBackgroundColor);
}
#endif
already_AddRefed<DataSourceSurface>
Factory::CreateWrappingDataSourceSurface(uint8_t *aData, int32_t aStride,
const IntSize &aSize,
SurfaceFormat aFormat)
{
if (aSize.width <= 0 || aSize.height <= 0) {
return nullptr;
}
MOZ_ASSERT(aData);
RefPtr<SourceSurfaceRawData> newSurf = new SourceSurfaceRawData();
newSurf->InitWrappingData(aData, aSize, aStride, aFormat, false);
return newSurf.forget();
}
already_AddRefed<DataSourceSurface>
Factory::CreateDataSourceSurface(const IntSize &aSize,
SurfaceFormat aFormat,
bool aZero)
{
if (!AllowedSurfaceSize(aSize)) {
gfxCriticalError(LoggerOptionsBasedOnSize(aSize)) << "Failed to allocate a surface due to invalid size " << aSize;
return nullptr;
}
RefPtr<SourceSurfaceAlignedRawData> newSurf = new SourceSurfaceAlignedRawData();
if (newSurf->Init(aSize, aFormat, aZero)) {
return newSurf.forget();
}
gfxWarning() << "CreateDataSourceSurface failed in init";
return nullptr;
}
already_AddRefed<DataSourceSurface>
Factory::CreateDataSourceSurfaceWithStride(const IntSize &aSize,
SurfaceFormat aFormat,
int32_t aStride,
bool aZero)
{
if (aStride < aSize.width * BytesPerPixel(aFormat)) {
gfxCriticalError(LoggerOptionsBasedOnSize(aSize)) << "CreateDataSourceSurfaceWithStride failed with bad stride " << aStride << ", " << aSize << ", " << aFormat;
return nullptr;
}
RefPtr<SourceSurfaceAlignedRawData> newSurf = new SourceSurfaceAlignedRawData();
if (newSurf->InitWithStride(aSize, aFormat, aStride, aZero)) {
return newSurf.forget();
}
gfxCriticalError(LoggerOptionsBasedOnSize(aSize)) << "CreateDataSourceSurfaceWithStride failed to initialize " << aSize << ", " << aFormat << ", " << aStride << ", " << aZero;
return nullptr;
}
static uint16_t
PackRGB565(uint8_t r, uint8_t g, uint8_t b)
{
uint16_t pixel = ((r << 11) & 0xf800) |
((g << 5) & 0x07e0) |
((b ) & 0x001f);
return pixel;
}
void
Factory::CopyDataSourceSurface(DataSourceSurface* aSource,
DataSourceSurface* aDest)
{
// Don't worry too much about speed.
MOZ_ASSERT(aSource->GetSize() == aDest->GetSize());
MOZ_ASSERT(aSource->GetFormat() == SurfaceFormat::R8G8B8A8 ||
aSource->GetFormat() == SurfaceFormat::R8G8B8X8 ||
aSource->GetFormat() == SurfaceFormat::B8G8R8A8 ||
aSource->GetFormat() == SurfaceFormat::B8G8R8X8);
MOZ_ASSERT(aDest->GetFormat() == SurfaceFormat::R8G8B8A8 ||
aDest->GetFormat() == SurfaceFormat::R8G8B8X8 ||
aDest->GetFormat() == SurfaceFormat::B8G8R8A8 ||
aDest->GetFormat() == SurfaceFormat::B8G8R8X8 ||
aDest->GetFormat() == SurfaceFormat::R5G6B5_UINT16);
const bool isSrcBGR = aSource->GetFormat() == SurfaceFormat::B8G8R8A8 ||
aSource->GetFormat() == SurfaceFormat::B8G8R8X8;
const bool isDestBGR = aDest->GetFormat() == SurfaceFormat::B8G8R8A8 ||
aDest->GetFormat() == SurfaceFormat::B8G8R8X8;
const bool needsSwap02 = isSrcBGR != isDestBGR;
const bool srcHasAlpha = aSource->GetFormat() == SurfaceFormat::R8G8B8A8 ||
aSource->GetFormat() == SurfaceFormat::B8G8R8A8;
const bool destHasAlpha = aDest->GetFormat() == SurfaceFormat::R8G8B8A8 ||
aDest->GetFormat() == SurfaceFormat::B8G8R8A8;
const bool needsAlphaMask = !srcHasAlpha && destHasAlpha;
const bool needsConvertTo16Bits = aDest->GetFormat() == SurfaceFormat::R5G6B5_UINT16;
DataSourceSurface::MappedSurface srcMap;
DataSourceSurface::MappedSurface destMap;
if (!aSource->Map(DataSourceSurface::MapType::READ, &srcMap) ||
!aDest->Map(DataSourceSurface::MapType::WRITE, &destMap)) {
MOZ_ASSERT(false, "CopyDataSourceSurface: Failed to map surface.");
return;
}
MOZ_ASSERT(srcMap.mStride >= 0);
MOZ_ASSERT(destMap.mStride >= 0);
const size_t srcBPP = BytesPerPixel(aSource->GetFormat());
const size_t srcRowBytes = aSource->GetSize().width * srcBPP;
const size_t srcRowHole = srcMap.mStride - srcRowBytes;
const size_t destBPP = BytesPerPixel(aDest->GetFormat());
const size_t destRowBytes = aDest->GetSize().width * destBPP;
const size_t destRowHole = destMap.mStride - destRowBytes;
uint8_t* srcRow = srcMap.mData;
uint8_t* destRow = destMap.mData;
const size_t rows = aSource->GetSize().height;
for (size_t i = 0; i < rows; i++) {
const uint8_t* srcRowEnd = srcRow + srcRowBytes;
while (srcRow != srcRowEnd) {
uint8_t d0 = needsSwap02 ? srcRow[2] : srcRow[0];
uint8_t d1 = srcRow[1];
uint8_t d2 = needsSwap02 ? srcRow[0] : srcRow[2];
uint8_t d3 = needsAlphaMask ? 0xff : srcRow[3];
if (needsConvertTo16Bits) {
*(uint16_t*)destRow = PackRGB565(d0, d1, d2);
} else {
destRow[0] = d0;
destRow[1] = d1;
destRow[2] = d2;
destRow[3] = d3;
}
srcRow += srcBPP;
destRow += destBPP;
}
srcRow += srcRowHole;
destRow += destRowHole;
}
aSource->Unmap();
aDest->Unmap();
}
already_AddRefed<DrawEventRecorder>
Factory::CreateEventRecorderForFile(const char *aFilename)
{
return MakeAndAddRef<DrawEventRecorderFile>(aFilename);
}
void
Factory::SetGlobalEventRecorder(DrawEventRecorder *aRecorder)
{
mRecorder = aRecorder;
}
// static
void
Factory::SetLogForwarder(LogForwarder* aLogFwd) {
sConfig->mLogForwarder = aLogFwd;
}
// static
void
CriticalLogger::OutputMessage(const std::string &aString,
int aLevel, bool aNoNewline)
{
if (Factory::GetLogForwarder()) {
Factory::GetLogForwarder()->Log(aString);
}
BasicLogger::OutputMessage(aString, aLevel, aNoNewline);
}
void
CriticalLogger::CrashAction(LogReason aReason)
{
if (Factory::GetLogForwarder()) {
Factory::GetLogForwarder()->CrashAction(aReason);
}
}
} // namespace gfx
} // namespace mozilla