Wed, 31 Dec 2014 06:09:35 +0100
Cloned upstream origin tor-browser at tor-browser-31.3.0esr-4.5-1-build1
revision ID fc1c9ff7c1b2defdbc039f12214767608f46423f for hacking purpose.
michael@0 | 1 | /* -*- Mode: C++; tab-width: 20; indent-tabs-mode: nil; c-basic-offset: 4 -*- |
michael@0 | 2 | * This Source Code Form is subject to the terms of the Mozilla Public |
michael@0 | 3 | * License, v. 2.0. If a copy of the MPL was not distributed with this |
michael@0 | 4 | * file, You can obtain one at http://mozilla.org/MPL/2.0/. */ |
michael@0 | 5 | |
michael@0 | 6 | #include "gfxUtils.h" |
michael@0 | 7 | #include "gfxContext.h" |
michael@0 | 8 | #include "gfxPlatform.h" |
michael@0 | 9 | #include "gfxDrawable.h" |
michael@0 | 10 | #include "mozilla/gfx/2D.h" |
michael@0 | 11 | #include "mozilla/RefPtr.h" |
michael@0 | 12 | #include "nsRegion.h" |
michael@0 | 13 | #include "yuv_convert.h" |
michael@0 | 14 | #include "ycbcr_to_rgb565.h" |
michael@0 | 15 | #include "GeckoProfiler.h" |
michael@0 | 16 | #include "ImageContainer.h" |
michael@0 | 17 | #include "gfx2DGlue.h" |
michael@0 | 18 | |
michael@0 | 19 | #ifdef XP_WIN |
michael@0 | 20 | #include "gfxWindowsPlatform.h" |
michael@0 | 21 | #endif |
michael@0 | 22 | |
michael@0 | 23 | using namespace mozilla; |
michael@0 | 24 | using namespace mozilla::layers; |
michael@0 | 25 | using namespace mozilla::gfx; |
michael@0 | 26 | |
michael@0 | 27 | #include "DeprecatedPremultiplyTables.h" |
michael@0 | 28 | |
michael@0 | 29 | static const uint8_t PremultiplyValue(uint8_t a, uint8_t v) { |
michael@0 | 30 | return gfxUtils::sPremultiplyTable[a*256+v]; |
michael@0 | 31 | } |
michael@0 | 32 | |
michael@0 | 33 | static const uint8_t UnpremultiplyValue(uint8_t a, uint8_t v) { |
michael@0 | 34 | return gfxUtils::sUnpremultiplyTable[a*256+v]; |
michael@0 | 35 | } |
michael@0 | 36 | |
michael@0 | 37 | void |
michael@0 | 38 | gfxUtils::PremultiplyImageSurface(gfxImageSurface *aSourceSurface, |
michael@0 | 39 | gfxImageSurface *aDestSurface) |
michael@0 | 40 | { |
michael@0 | 41 | if (!aDestSurface) |
michael@0 | 42 | aDestSurface = aSourceSurface; |
michael@0 | 43 | |
michael@0 | 44 | MOZ_ASSERT(aSourceSurface->Format() == aDestSurface->Format() && |
michael@0 | 45 | aSourceSurface->Width() == aDestSurface->Width() && |
michael@0 | 46 | aSourceSurface->Height() == aDestSurface->Height() && |
michael@0 | 47 | aSourceSurface->Stride() == aDestSurface->Stride(), |
michael@0 | 48 | "Source and destination surfaces don't have identical characteristics"); |
michael@0 | 49 | |
michael@0 | 50 | MOZ_ASSERT(aSourceSurface->Stride() == aSourceSurface->Width() * 4, |
michael@0 | 51 | "Source surface stride isn't tightly packed"); |
michael@0 | 52 | |
michael@0 | 53 | // Only premultiply ARGB32 |
michael@0 | 54 | if (aSourceSurface->Format() != gfxImageFormat::ARGB32) { |
michael@0 | 55 | if (aDestSurface != aSourceSurface) { |
michael@0 | 56 | memcpy(aDestSurface->Data(), aSourceSurface->Data(), |
michael@0 | 57 | aSourceSurface->Stride() * aSourceSurface->Height()); |
michael@0 | 58 | } |
michael@0 | 59 | return; |
michael@0 | 60 | } |
michael@0 | 61 | |
michael@0 | 62 | uint8_t *src = aSourceSurface->Data(); |
michael@0 | 63 | uint8_t *dst = aDestSurface->Data(); |
michael@0 | 64 | |
michael@0 | 65 | uint32_t dim = aSourceSurface->Width() * aSourceSurface->Height(); |
michael@0 | 66 | for (uint32_t i = 0; i < dim; ++i) { |
michael@0 | 67 | #ifdef IS_LITTLE_ENDIAN |
michael@0 | 68 | uint8_t b = *src++; |
michael@0 | 69 | uint8_t g = *src++; |
michael@0 | 70 | uint8_t r = *src++; |
michael@0 | 71 | uint8_t a = *src++; |
michael@0 | 72 | |
michael@0 | 73 | *dst++ = PremultiplyValue(a, b); |
michael@0 | 74 | *dst++ = PremultiplyValue(a, g); |
michael@0 | 75 | *dst++ = PremultiplyValue(a, r); |
michael@0 | 76 | *dst++ = a; |
michael@0 | 77 | #else |
michael@0 | 78 | uint8_t a = *src++; |
michael@0 | 79 | uint8_t r = *src++; |
michael@0 | 80 | uint8_t g = *src++; |
michael@0 | 81 | uint8_t b = *src++; |
michael@0 | 82 | |
michael@0 | 83 | *dst++ = a; |
michael@0 | 84 | *dst++ = PremultiplyValue(a, r); |
michael@0 | 85 | *dst++ = PremultiplyValue(a, g); |
michael@0 | 86 | *dst++ = PremultiplyValue(a, b); |
michael@0 | 87 | #endif |
michael@0 | 88 | } |
michael@0 | 89 | } |
michael@0 | 90 | |
michael@0 | 91 | void |
michael@0 | 92 | gfxUtils::UnpremultiplyImageSurface(gfxImageSurface *aSourceSurface, |
michael@0 | 93 | gfxImageSurface *aDestSurface) |
michael@0 | 94 | { |
michael@0 | 95 | if (!aDestSurface) |
michael@0 | 96 | aDestSurface = aSourceSurface; |
michael@0 | 97 | |
michael@0 | 98 | MOZ_ASSERT(aSourceSurface->Format() == aDestSurface->Format() && |
michael@0 | 99 | aSourceSurface->Width() == aDestSurface->Width() && |
michael@0 | 100 | aSourceSurface->Height() == aDestSurface->Height(), |
michael@0 | 101 | "Source and destination surfaces don't have identical characteristics"); |
michael@0 | 102 | |
michael@0 | 103 | // Only premultiply ARGB32 |
michael@0 | 104 | if (aSourceSurface->Format() != gfxImageFormat::ARGB32) { |
michael@0 | 105 | if (aDestSurface != aSourceSurface) { |
michael@0 | 106 | aDestSurface->CopyFrom(aSourceSurface); |
michael@0 | 107 | } |
michael@0 | 108 | return; |
michael@0 | 109 | } |
michael@0 | 110 | |
michael@0 | 111 | uint8_t *src = aSourceSurface->Data(); |
michael@0 | 112 | uint8_t *dst = aDestSurface->Data(); |
michael@0 | 113 | |
michael@0 | 114 | for (int32_t i = 0; i < aSourceSurface->Height(); ++i) { |
michael@0 | 115 | uint8_t *srcRow = src + (i * aSourceSurface->Stride()); |
michael@0 | 116 | uint8_t *dstRow = dst + (i * aDestSurface->Stride()); |
michael@0 | 117 | |
michael@0 | 118 | for (int32_t j = 0; j < aSourceSurface->Width(); ++j) { |
michael@0 | 119 | #ifdef IS_LITTLE_ENDIAN |
michael@0 | 120 | uint8_t b = *srcRow++; |
michael@0 | 121 | uint8_t g = *srcRow++; |
michael@0 | 122 | uint8_t r = *srcRow++; |
michael@0 | 123 | uint8_t a = *srcRow++; |
michael@0 | 124 | |
michael@0 | 125 | *dstRow++ = UnpremultiplyValue(a, b); |
michael@0 | 126 | *dstRow++ = UnpremultiplyValue(a, g); |
michael@0 | 127 | *dstRow++ = UnpremultiplyValue(a, r); |
michael@0 | 128 | *dstRow++ = a; |
michael@0 | 129 | #else |
michael@0 | 130 | uint8_t a = *srcRow++; |
michael@0 | 131 | uint8_t r = *srcRow++; |
michael@0 | 132 | uint8_t g = *srcRow++; |
michael@0 | 133 | uint8_t b = *srcRow++; |
michael@0 | 134 | |
michael@0 | 135 | *dstRow++ = a; |
michael@0 | 136 | *dstRow++ = UnpremultiplyValue(a, r); |
michael@0 | 137 | *dstRow++ = UnpremultiplyValue(a, g); |
michael@0 | 138 | *dstRow++ = UnpremultiplyValue(a, b); |
michael@0 | 139 | #endif |
michael@0 | 140 | } |
michael@0 | 141 | } |
michael@0 | 142 | } |
michael@0 | 143 | |
michael@0 | 144 | TemporaryRef<DataSourceSurface> |
michael@0 | 145 | gfxUtils::UnpremultiplyDataSurface(DataSourceSurface* aSurface) |
michael@0 | 146 | { |
michael@0 | 147 | // Only premultiply ARGB32 |
michael@0 | 148 | if (aSurface->GetFormat() != SurfaceFormat::B8G8R8A8) { |
michael@0 | 149 | return aSurface; |
michael@0 | 150 | } |
michael@0 | 151 | |
michael@0 | 152 | DataSourceSurface::MappedSurface map; |
michael@0 | 153 | if (!aSurface->Map(DataSourceSurface::MapType::READ, &map)) { |
michael@0 | 154 | return nullptr; |
michael@0 | 155 | } |
michael@0 | 156 | |
michael@0 | 157 | RefPtr<DataSourceSurface> dest = Factory::CreateDataSourceSurfaceWithStride(aSurface->GetSize(), |
michael@0 | 158 | aSurface->GetFormat(), |
michael@0 | 159 | map.mStride); |
michael@0 | 160 | |
michael@0 | 161 | DataSourceSurface::MappedSurface destMap; |
michael@0 | 162 | if (!dest->Map(DataSourceSurface::MapType::WRITE, &destMap)) { |
michael@0 | 163 | aSurface->Unmap(); |
michael@0 | 164 | return nullptr; |
michael@0 | 165 | } |
michael@0 | 166 | |
michael@0 | 167 | uint8_t *src = map.mData; |
michael@0 | 168 | uint8_t *dst = destMap.mData; |
michael@0 | 169 | |
michael@0 | 170 | for (int32_t i = 0; i < aSurface->GetSize().height; ++i) { |
michael@0 | 171 | uint8_t *srcRow = src + (i * map.mStride); |
michael@0 | 172 | uint8_t *dstRow = dst + (i * destMap.mStride); |
michael@0 | 173 | |
michael@0 | 174 | for (int32_t j = 0; j < aSurface->GetSize().width; ++j) { |
michael@0 | 175 | #ifdef IS_LITTLE_ENDIAN |
michael@0 | 176 | uint8_t b = *srcRow++; |
michael@0 | 177 | uint8_t g = *srcRow++; |
michael@0 | 178 | uint8_t r = *srcRow++; |
michael@0 | 179 | uint8_t a = *srcRow++; |
michael@0 | 180 | |
michael@0 | 181 | *dstRow++ = UnpremultiplyValue(a, b); |
michael@0 | 182 | *dstRow++ = UnpremultiplyValue(a, g); |
michael@0 | 183 | *dstRow++ = UnpremultiplyValue(a, r); |
michael@0 | 184 | *dstRow++ = a; |
michael@0 | 185 | #else |
michael@0 | 186 | uint8_t a = *srcRow++; |
michael@0 | 187 | uint8_t r = *srcRow++; |
michael@0 | 188 | uint8_t g = *srcRow++; |
michael@0 | 189 | uint8_t b = *srcRow++; |
michael@0 | 190 | |
michael@0 | 191 | *dstRow++ = a; |
michael@0 | 192 | *dstRow++ = UnpremultiplyValue(a, r); |
michael@0 | 193 | *dstRow++ = UnpremultiplyValue(a, g); |
michael@0 | 194 | *dstRow++ = UnpremultiplyValue(a, b); |
michael@0 | 195 | #endif |
michael@0 | 196 | } |
michael@0 | 197 | } |
michael@0 | 198 | |
michael@0 | 199 | aSurface->Unmap(); |
michael@0 | 200 | dest->Unmap(); |
michael@0 | 201 | return dest; |
michael@0 | 202 | } |
michael@0 | 203 | |
michael@0 | 204 | void |
michael@0 | 205 | gfxUtils::ConvertBGRAtoRGBA(gfxImageSurface *aSourceSurface, |
michael@0 | 206 | gfxImageSurface *aDestSurface) { |
michael@0 | 207 | if (!aDestSurface) |
michael@0 | 208 | aDestSurface = aSourceSurface; |
michael@0 | 209 | |
michael@0 | 210 | MOZ_ASSERT(aSourceSurface->Format() == aDestSurface->Format() && |
michael@0 | 211 | aSourceSurface->Width() == aDestSurface->Width() && |
michael@0 | 212 | aSourceSurface->Height() == aDestSurface->Height() && |
michael@0 | 213 | aSourceSurface->Stride() == aDestSurface->Stride(), |
michael@0 | 214 | "Source and destination surfaces don't have identical characteristics"); |
michael@0 | 215 | |
michael@0 | 216 | MOZ_ASSERT(aSourceSurface->Stride() == aSourceSurface->Width() * 4, |
michael@0 | 217 | "Source surface stride isn't tightly packed"); |
michael@0 | 218 | |
michael@0 | 219 | MOZ_ASSERT(aSourceSurface->Format() == gfxImageFormat::ARGB32 || aSourceSurface->Format() == gfxImageFormat::RGB24, |
michael@0 | 220 | "Surfaces must be ARGB32 or RGB24"); |
michael@0 | 221 | |
michael@0 | 222 | uint8_t *src = aSourceSurface->Data(); |
michael@0 | 223 | uint8_t *dst = aDestSurface->Data(); |
michael@0 | 224 | |
michael@0 | 225 | uint32_t dim = aSourceSurface->Width() * aSourceSurface->Height(); |
michael@0 | 226 | uint8_t *srcEnd = src + 4*dim; |
michael@0 | 227 | |
michael@0 | 228 | if (src == dst) { |
michael@0 | 229 | uint8_t buffer[4]; |
michael@0 | 230 | for (; src != srcEnd; src += 4) { |
michael@0 | 231 | buffer[0] = src[2]; |
michael@0 | 232 | buffer[1] = src[1]; |
michael@0 | 233 | buffer[2] = src[0]; |
michael@0 | 234 | |
michael@0 | 235 | src[0] = buffer[0]; |
michael@0 | 236 | src[1] = buffer[1]; |
michael@0 | 237 | src[2] = buffer[2]; |
michael@0 | 238 | } |
michael@0 | 239 | } else { |
michael@0 | 240 | for (; src != srcEnd; src += 4, dst += 4) { |
michael@0 | 241 | dst[0] = src[2]; |
michael@0 | 242 | dst[1] = src[1]; |
michael@0 | 243 | dst[2] = src[0]; |
michael@0 | 244 | dst[3] = src[3]; |
michael@0 | 245 | } |
michael@0 | 246 | } |
michael@0 | 247 | } |
michael@0 | 248 | |
michael@0 | 249 | void |
michael@0 | 250 | gfxUtils::ConvertBGRAtoRGBA(uint8_t* aData, uint32_t aLength) |
michael@0 | 251 | { |
michael@0 | 252 | uint8_t *src = aData; |
michael@0 | 253 | uint8_t *srcEnd = src + aLength; |
michael@0 | 254 | |
michael@0 | 255 | uint8_t buffer[4]; |
michael@0 | 256 | for (; src != srcEnd; src += 4) { |
michael@0 | 257 | buffer[0] = src[2]; |
michael@0 | 258 | buffer[1] = src[1]; |
michael@0 | 259 | buffer[2] = src[0]; |
michael@0 | 260 | |
michael@0 | 261 | src[0] = buffer[0]; |
michael@0 | 262 | src[1] = buffer[1]; |
michael@0 | 263 | src[2] = buffer[2]; |
michael@0 | 264 | } |
michael@0 | 265 | } |
michael@0 | 266 | |
michael@0 | 267 | static bool |
michael@0 | 268 | IsSafeImageTransformComponent(gfxFloat aValue) |
michael@0 | 269 | { |
michael@0 | 270 | return aValue >= -32768 && aValue <= 32767; |
michael@0 | 271 | } |
michael@0 | 272 | |
michael@0 | 273 | #ifndef MOZ_GFX_OPTIMIZE_MOBILE |
michael@0 | 274 | /** |
michael@0 | 275 | * This returns the fastest operator to use for solid surfaces which have no |
michael@0 | 276 | * alpha channel or their alpha channel is uniformly opaque. |
michael@0 | 277 | * This differs per render mode. |
michael@0 | 278 | */ |
michael@0 | 279 | static gfxContext::GraphicsOperator |
michael@0 | 280 | OptimalFillOperator() |
michael@0 | 281 | { |
michael@0 | 282 | #ifdef XP_WIN |
michael@0 | 283 | if (gfxWindowsPlatform::GetPlatform()->GetRenderMode() == |
michael@0 | 284 | gfxWindowsPlatform::RENDER_DIRECT2D) { |
michael@0 | 285 | // D2D -really- hates operator source. |
michael@0 | 286 | return gfxContext::OPERATOR_OVER; |
michael@0 | 287 | } else { |
michael@0 | 288 | #endif |
michael@0 | 289 | return gfxContext::OPERATOR_SOURCE; |
michael@0 | 290 | #ifdef XP_WIN |
michael@0 | 291 | } |
michael@0 | 292 | #endif |
michael@0 | 293 | } |
michael@0 | 294 | |
michael@0 | 295 | // EXTEND_PAD won't help us here; we have to create a temporary surface to hold |
michael@0 | 296 | // the subimage of pixels we're allowed to sample. |
michael@0 | 297 | static already_AddRefed<gfxDrawable> |
michael@0 | 298 | CreateSamplingRestrictedDrawable(gfxDrawable* aDrawable, |
michael@0 | 299 | gfxContext* aContext, |
michael@0 | 300 | const gfxMatrix& aUserSpaceToImageSpace, |
michael@0 | 301 | const gfxRect& aSourceRect, |
michael@0 | 302 | const gfxRect& aSubimage, |
michael@0 | 303 | const gfxImageFormat aFormat) |
michael@0 | 304 | { |
michael@0 | 305 | PROFILER_LABEL("gfxUtils", "CreateSamplingRestricedDrawable"); |
michael@0 | 306 | gfxRect userSpaceClipExtents = aContext->GetClipExtents(); |
michael@0 | 307 | // This isn't optimal --- if aContext has a rotation then GetClipExtents |
michael@0 | 308 | // will have to do a bounding-box computation, and TransformBounds might |
michael@0 | 309 | // too, so we could get a better result if we computed image space clip |
michael@0 | 310 | // extents in one go --- but it doesn't really matter and this is easier |
michael@0 | 311 | // to understand. |
michael@0 | 312 | gfxRect imageSpaceClipExtents = |
michael@0 | 313 | aUserSpaceToImageSpace.TransformBounds(userSpaceClipExtents); |
michael@0 | 314 | // Inflate by one pixel because bilinear filtering will sample at most |
michael@0 | 315 | // one pixel beyond the computed image pixel coordinate. |
michael@0 | 316 | imageSpaceClipExtents.Inflate(1.0); |
michael@0 | 317 | |
michael@0 | 318 | gfxRect needed = imageSpaceClipExtents.Intersect(aSourceRect); |
michael@0 | 319 | needed = needed.Intersect(aSubimage); |
michael@0 | 320 | needed.RoundOut(); |
michael@0 | 321 | |
michael@0 | 322 | // if 'needed' is empty, nothing will be drawn since aFill |
michael@0 | 323 | // must be entirely outside the clip region, so it doesn't |
michael@0 | 324 | // matter what we do here, but we should avoid trying to |
michael@0 | 325 | // create a zero-size surface. |
michael@0 | 326 | if (needed.IsEmpty()) |
michael@0 | 327 | return nullptr; |
michael@0 | 328 | |
michael@0 | 329 | nsRefPtr<gfxDrawable> drawable; |
michael@0 | 330 | gfxIntSize size(int32_t(needed.Width()), int32_t(needed.Height())); |
michael@0 | 331 | |
michael@0 | 332 | nsRefPtr<gfxImageSurface> image = aDrawable->GetAsImageSurface(); |
michael@0 | 333 | if (image && gfxRect(0, 0, image->GetSize().width, image->GetSize().height).Contains(needed)) { |
michael@0 | 334 | nsRefPtr<gfxASurface> temp = image->GetSubimage(needed); |
michael@0 | 335 | drawable = new gfxSurfaceDrawable(temp, size, gfxMatrix().Translate(-needed.TopLeft())); |
michael@0 | 336 | } else { |
michael@0 | 337 | mozilla::RefPtr<mozilla::gfx::DrawTarget> target = |
michael@0 | 338 | gfxPlatform::GetPlatform()->CreateOffscreenContentDrawTarget(ToIntSize(size), |
michael@0 | 339 | ImageFormatToSurfaceFormat(aFormat)); |
michael@0 | 340 | if (!target) { |
michael@0 | 341 | return nullptr; |
michael@0 | 342 | } |
michael@0 | 343 | |
michael@0 | 344 | nsRefPtr<gfxContext> tmpCtx = new gfxContext(target); |
michael@0 | 345 | tmpCtx->SetOperator(OptimalFillOperator()); |
michael@0 | 346 | aDrawable->Draw(tmpCtx, needed - needed.TopLeft(), true, |
michael@0 | 347 | GraphicsFilter::FILTER_FAST, gfxMatrix().Translate(needed.TopLeft())); |
michael@0 | 348 | drawable = new gfxSurfaceDrawable(target, size, gfxMatrix().Translate(-needed.TopLeft())); |
michael@0 | 349 | } |
michael@0 | 350 | |
michael@0 | 351 | return drawable.forget(); |
michael@0 | 352 | } |
michael@0 | 353 | #endif // !MOZ_GFX_OPTIMIZE_MOBILE |
michael@0 | 354 | |
michael@0 | 355 | // working around cairo/pixman bug (bug 364968) |
michael@0 | 356 | // Our device-space-to-image-space transform may not be acceptable to pixman. |
michael@0 | 357 | struct MOZ_STACK_CLASS AutoCairoPixmanBugWorkaround |
michael@0 | 358 | { |
michael@0 | 359 | AutoCairoPixmanBugWorkaround(gfxContext* aContext, |
michael@0 | 360 | const gfxMatrix& aDeviceSpaceToImageSpace, |
michael@0 | 361 | const gfxRect& aFill, |
michael@0 | 362 | const gfxASurface* aSurface) |
michael@0 | 363 | : mContext(aContext), mSucceeded(true), mPushedGroup(false) |
michael@0 | 364 | { |
michael@0 | 365 | // Quartz's limits for matrix are much larger than pixman |
michael@0 | 366 | if (!aSurface || aSurface->GetType() == gfxSurfaceType::Quartz) |
michael@0 | 367 | return; |
michael@0 | 368 | |
michael@0 | 369 | if (!IsSafeImageTransformComponent(aDeviceSpaceToImageSpace.xx) || |
michael@0 | 370 | !IsSafeImageTransformComponent(aDeviceSpaceToImageSpace.xy) || |
michael@0 | 371 | !IsSafeImageTransformComponent(aDeviceSpaceToImageSpace.yx) || |
michael@0 | 372 | !IsSafeImageTransformComponent(aDeviceSpaceToImageSpace.yy)) { |
michael@0 | 373 | NS_WARNING("Scaling up too much, bailing out"); |
michael@0 | 374 | mSucceeded = false; |
michael@0 | 375 | return; |
michael@0 | 376 | } |
michael@0 | 377 | |
michael@0 | 378 | if (IsSafeImageTransformComponent(aDeviceSpaceToImageSpace.x0) && |
michael@0 | 379 | IsSafeImageTransformComponent(aDeviceSpaceToImageSpace.y0)) |
michael@0 | 380 | return; |
michael@0 | 381 | |
michael@0 | 382 | // We'll push a group, which will hopefully reduce our transform's |
michael@0 | 383 | // translation so it's in bounds. |
michael@0 | 384 | gfxMatrix currentMatrix = mContext->CurrentMatrix(); |
michael@0 | 385 | mContext->Save(); |
michael@0 | 386 | |
michael@0 | 387 | // Clip the rounded-out-to-device-pixels bounds of the |
michael@0 | 388 | // transformed fill area. This is the area for the group we |
michael@0 | 389 | // want to push. |
michael@0 | 390 | mContext->IdentityMatrix(); |
michael@0 | 391 | gfxRect bounds = currentMatrix.TransformBounds(aFill); |
michael@0 | 392 | bounds.RoundOut(); |
michael@0 | 393 | mContext->Clip(bounds); |
michael@0 | 394 | mContext->SetMatrix(currentMatrix); |
michael@0 | 395 | mContext->PushGroup(gfxContentType::COLOR_ALPHA); |
michael@0 | 396 | mContext->SetOperator(gfxContext::OPERATOR_OVER); |
michael@0 | 397 | |
michael@0 | 398 | mPushedGroup = true; |
michael@0 | 399 | } |
michael@0 | 400 | |
michael@0 | 401 | ~AutoCairoPixmanBugWorkaround() |
michael@0 | 402 | { |
michael@0 | 403 | if (mPushedGroup) { |
michael@0 | 404 | mContext->PopGroupToSource(); |
michael@0 | 405 | mContext->Paint(); |
michael@0 | 406 | mContext->Restore(); |
michael@0 | 407 | } |
michael@0 | 408 | } |
michael@0 | 409 | |
michael@0 | 410 | bool PushedGroup() { return mPushedGroup; } |
michael@0 | 411 | bool Succeeded() { return mSucceeded; } |
michael@0 | 412 | |
michael@0 | 413 | private: |
michael@0 | 414 | gfxContext* mContext; |
michael@0 | 415 | bool mSucceeded; |
michael@0 | 416 | bool mPushedGroup; |
michael@0 | 417 | }; |
michael@0 | 418 | |
michael@0 | 419 | static gfxMatrix |
michael@0 | 420 | DeviceToImageTransform(gfxContext* aContext, |
michael@0 | 421 | const gfxMatrix& aUserSpaceToImageSpace) |
michael@0 | 422 | { |
michael@0 | 423 | gfxFloat deviceX, deviceY; |
michael@0 | 424 | nsRefPtr<gfxASurface> currentTarget = |
michael@0 | 425 | aContext->CurrentSurface(&deviceX, &deviceY); |
michael@0 | 426 | gfxMatrix currentMatrix = aContext->CurrentMatrix(); |
michael@0 | 427 | gfxMatrix deviceToUser = gfxMatrix(currentMatrix).Invert(); |
michael@0 | 428 | deviceToUser.Translate(-gfxPoint(-deviceX, -deviceY)); |
michael@0 | 429 | return gfxMatrix(deviceToUser).Multiply(aUserSpaceToImageSpace); |
michael@0 | 430 | } |
michael@0 | 431 | |
michael@0 | 432 | /* These heuristics are based on Source/WebCore/platform/graphics/skia/ImageSkia.cpp:computeResamplingMode() */ |
michael@0 | 433 | #ifdef MOZ_GFX_OPTIMIZE_MOBILE |
michael@0 | 434 | static GraphicsFilter ReduceResamplingFilter(GraphicsFilter aFilter, |
michael@0 | 435 | int aImgWidth, int aImgHeight, |
michael@0 | 436 | float aSourceWidth, float aSourceHeight) |
michael@0 | 437 | { |
michael@0 | 438 | // Images smaller than this in either direction are considered "small" and |
michael@0 | 439 | // are not resampled ever (see below). |
michael@0 | 440 | const int kSmallImageSizeThreshold = 8; |
michael@0 | 441 | |
michael@0 | 442 | // The amount an image can be stretched in a single direction before we |
michael@0 | 443 | // say that it is being stretched so much that it must be a line or |
michael@0 | 444 | // background that doesn't need resampling. |
michael@0 | 445 | const float kLargeStretch = 3.0f; |
michael@0 | 446 | |
michael@0 | 447 | if (aImgWidth <= kSmallImageSizeThreshold |
michael@0 | 448 | || aImgHeight <= kSmallImageSizeThreshold) { |
michael@0 | 449 | // Never resample small images. These are often used for borders and |
michael@0 | 450 | // rules (think 1x1 images used to make lines). |
michael@0 | 451 | return GraphicsFilter::FILTER_NEAREST; |
michael@0 | 452 | } |
michael@0 | 453 | |
michael@0 | 454 | if (aImgHeight * kLargeStretch <= aSourceHeight || aImgWidth * kLargeStretch <= aSourceWidth) { |
michael@0 | 455 | // Large image tiling detected. |
michael@0 | 456 | |
michael@0 | 457 | // Don't resample if it is being tiled a lot in only one direction. |
michael@0 | 458 | // This is trying to catch cases where somebody has created a border |
michael@0 | 459 | // (which might be large) and then is stretching it to fill some part |
michael@0 | 460 | // of the page. |
michael@0 | 461 | if (fabs(aSourceWidth - aImgWidth)/aImgWidth < 0.5 || fabs(aSourceHeight - aImgHeight)/aImgHeight < 0.5) |
michael@0 | 462 | return GraphicsFilter::FILTER_NEAREST; |
michael@0 | 463 | |
michael@0 | 464 | // The image is growing a lot and in more than one direction. Resampling |
michael@0 | 465 | // is slow and doesn't give us very much when growing a lot. |
michael@0 | 466 | return aFilter; |
michael@0 | 467 | } |
michael@0 | 468 | |
michael@0 | 469 | /* Some notes on other heuristics: |
michael@0 | 470 | The Skia backend also uses nearest for backgrounds that are stretched by |
michael@0 | 471 | a large amount. I'm not sure this is common enough for us to worry about |
michael@0 | 472 | now. It also uses nearest for backgrounds/avoids high quality for images |
michael@0 | 473 | that are very slightly scaled. I'm also not sure that very slightly |
michael@0 | 474 | scaled backgrounds are common enough us to worry about. |
michael@0 | 475 | |
michael@0 | 476 | We don't currently have much support for doing high quality interpolation. |
michael@0 | 477 | The only place this currently happens is on Quartz and we don't have as |
michael@0 | 478 | much control over it as would be needed. Webkit avoids using high quality |
michael@0 | 479 | resampling during load. It also avoids high quality if the transformation |
michael@0 | 480 | is not just a scale and translation |
michael@0 | 481 | |
michael@0 | 482 | WebKit bug #40045 added code to avoid resampling different parts |
michael@0 | 483 | of an image with different methods by using a resampling hint size. |
michael@0 | 484 | It currently looks unused in WebKit but it's something to watch out for. |
michael@0 | 485 | */ |
michael@0 | 486 | |
michael@0 | 487 | return aFilter; |
michael@0 | 488 | } |
michael@0 | 489 | #else |
michael@0 | 490 | static GraphicsFilter ReduceResamplingFilter(GraphicsFilter aFilter, |
michael@0 | 491 | int aImgWidth, int aImgHeight, |
michael@0 | 492 | int aSourceWidth, int aSourceHeight) |
michael@0 | 493 | { |
michael@0 | 494 | // Just pass the filter through unchanged |
michael@0 | 495 | return aFilter; |
michael@0 | 496 | } |
michael@0 | 497 | #endif |
michael@0 | 498 | |
michael@0 | 499 | /* static */ void |
michael@0 | 500 | gfxUtils::DrawPixelSnapped(gfxContext* aContext, |
michael@0 | 501 | gfxDrawable* aDrawable, |
michael@0 | 502 | const gfxMatrix& aUserSpaceToImageSpace, |
michael@0 | 503 | const gfxRect& aSubimage, |
michael@0 | 504 | const gfxRect& aSourceRect, |
michael@0 | 505 | const gfxRect& aImageRect, |
michael@0 | 506 | const gfxRect& aFill, |
michael@0 | 507 | const gfxImageFormat aFormat, |
michael@0 | 508 | GraphicsFilter aFilter, |
michael@0 | 509 | uint32_t aImageFlags) |
michael@0 | 510 | { |
michael@0 | 511 | PROFILER_LABEL("gfxUtils", "DrawPixelSnapped"); |
michael@0 | 512 | bool doTile = !aImageRect.Contains(aSourceRect) && |
michael@0 | 513 | !(aImageFlags & imgIContainer::FLAG_CLAMP); |
michael@0 | 514 | |
michael@0 | 515 | nsRefPtr<gfxASurface> currentTarget = aContext->CurrentSurface(); |
michael@0 | 516 | gfxMatrix deviceSpaceToImageSpace = |
michael@0 | 517 | DeviceToImageTransform(aContext, aUserSpaceToImageSpace); |
michael@0 | 518 | |
michael@0 | 519 | AutoCairoPixmanBugWorkaround workaround(aContext, deviceSpaceToImageSpace, |
michael@0 | 520 | aFill, currentTarget); |
michael@0 | 521 | if (!workaround.Succeeded()) |
michael@0 | 522 | return; |
michael@0 | 523 | |
michael@0 | 524 | nsRefPtr<gfxDrawable> drawable = aDrawable; |
michael@0 | 525 | |
michael@0 | 526 | aFilter = ReduceResamplingFilter(aFilter, aImageRect.Width(), aImageRect.Height(), aSourceRect.Width(), aSourceRect.Height()); |
michael@0 | 527 | |
michael@0 | 528 | gfxMatrix userSpaceToImageSpace = aUserSpaceToImageSpace; |
michael@0 | 529 | |
michael@0 | 530 | // On Mobile, we don't ever want to do this; it has the potential for |
michael@0 | 531 | // allocating very large temporary surfaces, especially since we'll |
michael@0 | 532 | // do full-page snapshots often (see bug 749426). |
michael@0 | 533 | #ifdef MOZ_GFX_OPTIMIZE_MOBILE |
michael@0 | 534 | // If the pattern translation is large we can get into trouble with pixman's |
michael@0 | 535 | // 16 bit coordinate limits. For now, we only do this on platforms where |
michael@0 | 536 | // we know we have the pixman limits. 16384.0 is a somewhat arbitrary |
michael@0 | 537 | // large number to make sure we avoid the expensive fmod when we can, but |
michael@0 | 538 | // still maintain a safe margin from the actual limit |
michael@0 | 539 | if (doTile && (userSpaceToImageSpace.y0 > 16384.0 || userSpaceToImageSpace.x0 > 16384.0)) { |
michael@0 | 540 | userSpaceToImageSpace.x0 = fmod(userSpaceToImageSpace.x0, aImageRect.width); |
michael@0 | 541 | userSpaceToImageSpace.y0 = fmod(userSpaceToImageSpace.y0, aImageRect.height); |
michael@0 | 542 | } |
michael@0 | 543 | #else |
michael@0 | 544 | // OK now, the hard part left is to account for the subimage sampling |
michael@0 | 545 | // restriction. If all the transforms involved are just integer |
michael@0 | 546 | // translations, then we assume no resampling will occur so there's |
michael@0 | 547 | // nothing to do. |
michael@0 | 548 | // XXX if only we had source-clipping in cairo! |
michael@0 | 549 | if (aContext->CurrentMatrix().HasNonIntegerTranslation() || |
michael@0 | 550 | aUserSpaceToImageSpace.HasNonIntegerTranslation()) { |
michael@0 | 551 | if (doTile || !aSubimage.Contains(aImageRect)) { |
michael@0 | 552 | nsRefPtr<gfxDrawable> restrictedDrawable = |
michael@0 | 553 | CreateSamplingRestrictedDrawable(aDrawable, aContext, |
michael@0 | 554 | aUserSpaceToImageSpace, aSourceRect, |
michael@0 | 555 | aSubimage, aFormat); |
michael@0 | 556 | if (restrictedDrawable) { |
michael@0 | 557 | drawable.swap(restrictedDrawable); |
michael@0 | 558 | } |
michael@0 | 559 | } |
michael@0 | 560 | // We no longer need to tile: Either we never needed to, or we already |
michael@0 | 561 | // filled a surface with the tiled pattern; this surface can now be |
michael@0 | 562 | // drawn without tiling. |
michael@0 | 563 | doTile = false; |
michael@0 | 564 | } |
michael@0 | 565 | #endif |
michael@0 | 566 | |
michael@0 | 567 | drawable->Draw(aContext, aFill, doTile, aFilter, userSpaceToImageSpace); |
michael@0 | 568 | } |
michael@0 | 569 | |
michael@0 | 570 | /* static */ int |
michael@0 | 571 | gfxUtils::ImageFormatToDepth(gfxImageFormat aFormat) |
michael@0 | 572 | { |
michael@0 | 573 | switch (aFormat) { |
michael@0 | 574 | case gfxImageFormat::ARGB32: |
michael@0 | 575 | return 32; |
michael@0 | 576 | case gfxImageFormat::RGB24: |
michael@0 | 577 | return 24; |
michael@0 | 578 | case gfxImageFormat::RGB16_565: |
michael@0 | 579 | return 16; |
michael@0 | 580 | default: |
michael@0 | 581 | break; |
michael@0 | 582 | } |
michael@0 | 583 | return 0; |
michael@0 | 584 | } |
michael@0 | 585 | |
michael@0 | 586 | static void |
michael@0 | 587 | PathFromRegionInternal(gfxContext* aContext, const nsIntRegion& aRegion, |
michael@0 | 588 | bool aSnap) |
michael@0 | 589 | { |
michael@0 | 590 | aContext->NewPath(); |
michael@0 | 591 | nsIntRegionRectIterator iter(aRegion); |
michael@0 | 592 | const nsIntRect* r; |
michael@0 | 593 | while ((r = iter.Next()) != nullptr) { |
michael@0 | 594 | aContext->Rectangle(gfxRect(r->x, r->y, r->width, r->height), aSnap); |
michael@0 | 595 | } |
michael@0 | 596 | } |
michael@0 | 597 | |
michael@0 | 598 | static void |
michael@0 | 599 | ClipToRegionInternal(gfxContext* aContext, const nsIntRegion& aRegion, |
michael@0 | 600 | bool aSnap) |
michael@0 | 601 | { |
michael@0 | 602 | PathFromRegionInternal(aContext, aRegion, aSnap); |
michael@0 | 603 | aContext->Clip(); |
michael@0 | 604 | } |
michael@0 | 605 | |
michael@0 | 606 | static TemporaryRef<Path> |
michael@0 | 607 | PathFromRegionInternal(DrawTarget* aTarget, const nsIntRegion& aRegion, |
michael@0 | 608 | bool aSnap) |
michael@0 | 609 | { |
michael@0 | 610 | Matrix mat = aTarget->GetTransform(); |
michael@0 | 611 | const gfxFloat epsilon = 0.000001; |
michael@0 | 612 | #define WITHIN_E(a,b) (fabs((a)-(b)) < epsilon) |
michael@0 | 613 | // We're essentially duplicating the logic in UserToDevicePixelSnapped here. |
michael@0 | 614 | bool shouldNotSnap = !aSnap || (WITHIN_E(mat._11,1.0) && |
michael@0 | 615 | WITHIN_E(mat._22,1.0) && |
michael@0 | 616 | WITHIN_E(mat._12,0.0) && |
michael@0 | 617 | WITHIN_E(mat._21,0.0)); |
michael@0 | 618 | #undef WITHIN_E |
michael@0 | 619 | |
michael@0 | 620 | RefPtr<PathBuilder> pb = aTarget->CreatePathBuilder(); |
michael@0 | 621 | nsIntRegionRectIterator iter(aRegion); |
michael@0 | 622 | |
michael@0 | 623 | const nsIntRect* r; |
michael@0 | 624 | if (shouldNotSnap) { |
michael@0 | 625 | while ((r = iter.Next()) != nullptr) { |
michael@0 | 626 | pb->MoveTo(Point(r->x, r->y)); |
michael@0 | 627 | pb->LineTo(Point(r->XMost(), r->y)); |
michael@0 | 628 | pb->LineTo(Point(r->XMost(), r->YMost())); |
michael@0 | 629 | pb->LineTo(Point(r->x, r->YMost())); |
michael@0 | 630 | pb->Close(); |
michael@0 | 631 | } |
michael@0 | 632 | } else { |
michael@0 | 633 | while ((r = iter.Next()) != nullptr) { |
michael@0 | 634 | Rect rect(r->x, r->y, r->width, r->height); |
michael@0 | 635 | |
michael@0 | 636 | rect.Round(); |
michael@0 | 637 | pb->MoveTo(rect.TopLeft()); |
michael@0 | 638 | pb->LineTo(rect.TopRight()); |
michael@0 | 639 | pb->LineTo(rect.BottomRight()); |
michael@0 | 640 | pb->LineTo(rect.BottomLeft()); |
michael@0 | 641 | pb->Close(); |
michael@0 | 642 | } |
michael@0 | 643 | } |
michael@0 | 644 | RefPtr<Path> path = pb->Finish(); |
michael@0 | 645 | return path; |
michael@0 | 646 | } |
michael@0 | 647 | |
michael@0 | 648 | static void |
michael@0 | 649 | ClipToRegionInternal(DrawTarget* aTarget, const nsIntRegion& aRegion, |
michael@0 | 650 | bool aSnap) |
michael@0 | 651 | { |
michael@0 | 652 | RefPtr<Path> path = PathFromRegionInternal(aTarget, aRegion, aSnap); |
michael@0 | 653 | aTarget->PushClip(path); |
michael@0 | 654 | } |
michael@0 | 655 | |
michael@0 | 656 | /*static*/ void |
michael@0 | 657 | gfxUtils::ClipToRegion(gfxContext* aContext, const nsIntRegion& aRegion) |
michael@0 | 658 | { |
michael@0 | 659 | ClipToRegionInternal(aContext, aRegion, false); |
michael@0 | 660 | } |
michael@0 | 661 | |
michael@0 | 662 | /*static*/ void |
michael@0 | 663 | gfxUtils::ClipToRegion(DrawTarget* aTarget, const nsIntRegion& aRegion) |
michael@0 | 664 | { |
michael@0 | 665 | ClipToRegionInternal(aTarget, aRegion, false); |
michael@0 | 666 | } |
michael@0 | 667 | |
michael@0 | 668 | /*static*/ void |
michael@0 | 669 | gfxUtils::ClipToRegionSnapped(gfxContext* aContext, const nsIntRegion& aRegion) |
michael@0 | 670 | { |
michael@0 | 671 | ClipToRegionInternal(aContext, aRegion, true); |
michael@0 | 672 | } |
michael@0 | 673 | |
michael@0 | 674 | /*static*/ void |
michael@0 | 675 | gfxUtils::ClipToRegionSnapped(DrawTarget* aTarget, const nsIntRegion& aRegion) |
michael@0 | 676 | { |
michael@0 | 677 | ClipToRegionInternal(aTarget, aRegion, true); |
michael@0 | 678 | } |
michael@0 | 679 | |
michael@0 | 680 | /*static*/ gfxFloat |
michael@0 | 681 | gfxUtils::ClampToScaleFactor(gfxFloat aVal) |
michael@0 | 682 | { |
michael@0 | 683 | // Arbitary scale factor limitation. We can increase this |
michael@0 | 684 | // for better scaling performance at the cost of worse |
michael@0 | 685 | // quality. |
michael@0 | 686 | static const gfxFloat kScaleResolution = 2; |
michael@0 | 687 | |
michael@0 | 688 | // Negative scaling is just a flip and irrelevant to |
michael@0 | 689 | // our resolution calculation. |
michael@0 | 690 | if (aVal < 0.0) { |
michael@0 | 691 | aVal = -aVal; |
michael@0 | 692 | } |
michael@0 | 693 | |
michael@0 | 694 | bool inverse = false; |
michael@0 | 695 | if (aVal < 1.0) { |
michael@0 | 696 | inverse = true; |
michael@0 | 697 | aVal = 1 / aVal; |
michael@0 | 698 | } |
michael@0 | 699 | |
michael@0 | 700 | gfxFloat power = log(aVal)/log(kScaleResolution); |
michael@0 | 701 | |
michael@0 | 702 | // If power is within 1e-6 of an integer, round to nearest to |
michael@0 | 703 | // prevent floating point errors, otherwise round up to the |
michael@0 | 704 | // next integer value. |
michael@0 | 705 | if (fabs(power - NS_round(power)) < 1e-6) { |
michael@0 | 706 | power = NS_round(power); |
michael@0 | 707 | } else if (inverse) { |
michael@0 | 708 | power = floor(power); |
michael@0 | 709 | } else { |
michael@0 | 710 | power = ceil(power); |
michael@0 | 711 | } |
michael@0 | 712 | |
michael@0 | 713 | gfxFloat scale = pow(kScaleResolution, power); |
michael@0 | 714 | |
michael@0 | 715 | if (inverse) { |
michael@0 | 716 | scale = 1 / scale; |
michael@0 | 717 | } |
michael@0 | 718 | |
michael@0 | 719 | return scale; |
michael@0 | 720 | } |
michael@0 | 721 | |
michael@0 | 722 | |
michael@0 | 723 | /*static*/ void |
michael@0 | 724 | gfxUtils::PathFromRegion(gfxContext* aContext, const nsIntRegion& aRegion) |
michael@0 | 725 | { |
michael@0 | 726 | PathFromRegionInternal(aContext, aRegion, false); |
michael@0 | 727 | } |
michael@0 | 728 | |
michael@0 | 729 | /*static*/ void |
michael@0 | 730 | gfxUtils::PathFromRegionSnapped(gfxContext* aContext, const nsIntRegion& aRegion) |
michael@0 | 731 | { |
michael@0 | 732 | PathFromRegionInternal(aContext, aRegion, true); |
michael@0 | 733 | } |
michael@0 | 734 | |
michael@0 | 735 | gfxMatrix |
michael@0 | 736 | gfxUtils::TransformRectToRect(const gfxRect& aFrom, const gfxPoint& aToTopLeft, |
michael@0 | 737 | const gfxPoint& aToTopRight, const gfxPoint& aToBottomRight) |
michael@0 | 738 | { |
michael@0 | 739 | gfxMatrix m; |
michael@0 | 740 | if (aToTopRight.y == aToTopLeft.y && aToTopRight.x == aToBottomRight.x) { |
michael@0 | 741 | // Not a rotation, so xy and yx are zero |
michael@0 | 742 | m.xy = m.yx = 0.0; |
michael@0 | 743 | m.xx = (aToBottomRight.x - aToTopLeft.x)/aFrom.width; |
michael@0 | 744 | m.yy = (aToBottomRight.y - aToTopLeft.y)/aFrom.height; |
michael@0 | 745 | m.x0 = aToTopLeft.x - m.xx*aFrom.x; |
michael@0 | 746 | m.y0 = aToTopLeft.y - m.yy*aFrom.y; |
michael@0 | 747 | } else { |
michael@0 | 748 | NS_ASSERTION(aToTopRight.y == aToBottomRight.y && aToTopRight.x == aToTopLeft.x, |
michael@0 | 749 | "Destination rectangle not axis-aligned"); |
michael@0 | 750 | m.xx = m.yy = 0.0; |
michael@0 | 751 | m.xy = (aToBottomRight.x - aToTopLeft.x)/aFrom.height; |
michael@0 | 752 | m.yx = (aToBottomRight.y - aToTopLeft.y)/aFrom.width; |
michael@0 | 753 | m.x0 = aToTopLeft.x - m.xy*aFrom.y; |
michael@0 | 754 | m.y0 = aToTopLeft.y - m.yx*aFrom.x; |
michael@0 | 755 | } |
michael@0 | 756 | return m; |
michael@0 | 757 | } |
michael@0 | 758 | |
michael@0 | 759 | Matrix |
michael@0 | 760 | gfxUtils::TransformRectToRect(const gfxRect& aFrom, const IntPoint& aToTopLeft, |
michael@0 | 761 | const IntPoint& aToTopRight, const IntPoint& aToBottomRight) |
michael@0 | 762 | { |
michael@0 | 763 | Matrix m; |
michael@0 | 764 | if (aToTopRight.y == aToTopLeft.y && aToTopRight.x == aToBottomRight.x) { |
michael@0 | 765 | // Not a rotation, so xy and yx are zero |
michael@0 | 766 | m._12 = m._21 = 0.0; |
michael@0 | 767 | m._11 = (aToBottomRight.x - aToTopLeft.x)/aFrom.width; |
michael@0 | 768 | m._22 = (aToBottomRight.y - aToTopLeft.y)/aFrom.height; |
michael@0 | 769 | m._31 = aToTopLeft.x - m._11*aFrom.x; |
michael@0 | 770 | m._32 = aToTopLeft.y - m._22*aFrom.y; |
michael@0 | 771 | } else { |
michael@0 | 772 | NS_ASSERTION(aToTopRight.y == aToBottomRight.y && aToTopRight.x == aToTopLeft.x, |
michael@0 | 773 | "Destination rectangle not axis-aligned"); |
michael@0 | 774 | m._11 = m._22 = 0.0; |
michael@0 | 775 | m._21 = (aToBottomRight.x - aToTopLeft.x)/aFrom.height; |
michael@0 | 776 | m._12 = (aToBottomRight.y - aToTopLeft.y)/aFrom.width; |
michael@0 | 777 | m._31 = aToTopLeft.x - m._21*aFrom.y; |
michael@0 | 778 | m._32 = aToTopLeft.y - m._12*aFrom.x; |
michael@0 | 779 | } |
michael@0 | 780 | return m; |
michael@0 | 781 | } |
michael@0 | 782 | |
michael@0 | 783 | bool |
michael@0 | 784 | gfxUtils::GfxRectToIntRect(const gfxRect& aIn, nsIntRect* aOut) |
michael@0 | 785 | { |
michael@0 | 786 | *aOut = nsIntRect(int32_t(aIn.X()), int32_t(aIn.Y()), |
michael@0 | 787 | int32_t(aIn.Width()), int32_t(aIn.Height())); |
michael@0 | 788 | return gfxRect(aOut->x, aOut->y, aOut->width, aOut->height).IsEqualEdges(aIn); |
michael@0 | 789 | } |
michael@0 | 790 | |
michael@0 | 791 | void |
michael@0 | 792 | gfxUtils::GetYCbCrToRGBDestFormatAndSize(const PlanarYCbCrData& aData, |
michael@0 | 793 | gfxImageFormat& aSuggestedFormat, |
michael@0 | 794 | gfxIntSize& aSuggestedSize) |
michael@0 | 795 | { |
michael@0 | 796 | YUVType yuvtype = |
michael@0 | 797 | TypeFromSize(aData.mYSize.width, |
michael@0 | 798 | aData.mYSize.height, |
michael@0 | 799 | aData.mCbCrSize.width, |
michael@0 | 800 | aData.mCbCrSize.height); |
michael@0 | 801 | |
michael@0 | 802 | // 'prescale' is true if the scaling is to be done as part of the |
michael@0 | 803 | // YCbCr to RGB conversion rather than on the RGB data when rendered. |
michael@0 | 804 | bool prescale = aSuggestedSize.width > 0 && aSuggestedSize.height > 0 && |
michael@0 | 805 | ToIntSize(aSuggestedSize) != aData.mPicSize; |
michael@0 | 806 | |
michael@0 | 807 | if (aSuggestedFormat == gfxImageFormat::RGB16_565) { |
michael@0 | 808 | #if defined(HAVE_YCBCR_TO_RGB565) |
michael@0 | 809 | if (prescale && |
michael@0 | 810 | !IsScaleYCbCrToRGB565Fast(aData.mPicX, |
michael@0 | 811 | aData.mPicY, |
michael@0 | 812 | aData.mPicSize.width, |
michael@0 | 813 | aData.mPicSize.height, |
michael@0 | 814 | aSuggestedSize.width, |
michael@0 | 815 | aSuggestedSize.height, |
michael@0 | 816 | yuvtype, |
michael@0 | 817 | FILTER_BILINEAR) && |
michael@0 | 818 | IsConvertYCbCrToRGB565Fast(aData.mPicX, |
michael@0 | 819 | aData.mPicY, |
michael@0 | 820 | aData.mPicSize.width, |
michael@0 | 821 | aData.mPicSize.height, |
michael@0 | 822 | yuvtype)) { |
michael@0 | 823 | prescale = false; |
michael@0 | 824 | } |
michael@0 | 825 | #else |
michael@0 | 826 | // yuv2rgb16 function not available |
michael@0 | 827 | aSuggestedFormat = gfxImageFormat::RGB24; |
michael@0 | 828 | #endif |
michael@0 | 829 | } |
michael@0 | 830 | else if (aSuggestedFormat != gfxImageFormat::RGB24) { |
michael@0 | 831 | // No other formats are currently supported. |
michael@0 | 832 | aSuggestedFormat = gfxImageFormat::RGB24; |
michael@0 | 833 | } |
michael@0 | 834 | if (aSuggestedFormat == gfxImageFormat::RGB24) { |
michael@0 | 835 | /* ScaleYCbCrToRGB32 does not support a picture offset, nor 4:4:4 data. |
michael@0 | 836 | See bugs 639415 and 640073. */ |
michael@0 | 837 | if (aData.mPicX != 0 || aData.mPicY != 0 || yuvtype == YV24) |
michael@0 | 838 | prescale = false; |
michael@0 | 839 | } |
michael@0 | 840 | if (!prescale) { |
michael@0 | 841 | ToIntSize(aSuggestedSize) = aData.mPicSize; |
michael@0 | 842 | } |
michael@0 | 843 | } |
michael@0 | 844 | |
michael@0 | 845 | void |
michael@0 | 846 | gfxUtils::ConvertYCbCrToRGB(const PlanarYCbCrData& aData, |
michael@0 | 847 | const gfxImageFormat& aDestFormat, |
michael@0 | 848 | const gfxIntSize& aDestSize, |
michael@0 | 849 | unsigned char* aDestBuffer, |
michael@0 | 850 | int32_t aStride) |
michael@0 | 851 | { |
michael@0 | 852 | // ConvertYCbCrToRGB et al. assume the chroma planes are rounded up if the |
michael@0 | 853 | // luma plane is odd sized. |
michael@0 | 854 | MOZ_ASSERT((aData.mCbCrSize.width == aData.mYSize.width || |
michael@0 | 855 | aData.mCbCrSize.width == (aData.mYSize.width + 1) >> 1) && |
michael@0 | 856 | (aData.mCbCrSize.height == aData.mYSize.height || |
michael@0 | 857 | aData.mCbCrSize.height == (aData.mYSize.height + 1) >> 1)); |
michael@0 | 858 | YUVType yuvtype = |
michael@0 | 859 | TypeFromSize(aData.mYSize.width, |
michael@0 | 860 | aData.mYSize.height, |
michael@0 | 861 | aData.mCbCrSize.width, |
michael@0 | 862 | aData.mCbCrSize.height); |
michael@0 | 863 | |
michael@0 | 864 | // Convert from YCbCr to RGB now, scaling the image if needed. |
michael@0 | 865 | if (ToIntSize(aDestSize) != aData.mPicSize) { |
michael@0 | 866 | #if defined(HAVE_YCBCR_TO_RGB565) |
michael@0 | 867 | if (aDestFormat == gfxImageFormat::RGB16_565) { |
michael@0 | 868 | ScaleYCbCrToRGB565(aData.mYChannel, |
michael@0 | 869 | aData.mCbChannel, |
michael@0 | 870 | aData.mCrChannel, |
michael@0 | 871 | aDestBuffer, |
michael@0 | 872 | aData.mPicX, |
michael@0 | 873 | aData.mPicY, |
michael@0 | 874 | aData.mPicSize.width, |
michael@0 | 875 | aData.mPicSize.height, |
michael@0 | 876 | aDestSize.width, |
michael@0 | 877 | aDestSize.height, |
michael@0 | 878 | aData.mYStride, |
michael@0 | 879 | aData.mCbCrStride, |
michael@0 | 880 | aStride, |
michael@0 | 881 | yuvtype, |
michael@0 | 882 | FILTER_BILINEAR); |
michael@0 | 883 | } else |
michael@0 | 884 | #endif |
michael@0 | 885 | ScaleYCbCrToRGB32(aData.mYChannel, |
michael@0 | 886 | aData.mCbChannel, |
michael@0 | 887 | aData.mCrChannel, |
michael@0 | 888 | aDestBuffer, |
michael@0 | 889 | aData.mPicSize.width, |
michael@0 | 890 | aData.mPicSize.height, |
michael@0 | 891 | aDestSize.width, |
michael@0 | 892 | aDestSize.height, |
michael@0 | 893 | aData.mYStride, |
michael@0 | 894 | aData.mCbCrStride, |
michael@0 | 895 | aStride, |
michael@0 | 896 | yuvtype, |
michael@0 | 897 | ROTATE_0, |
michael@0 | 898 | FILTER_BILINEAR); |
michael@0 | 899 | } else { // no prescale |
michael@0 | 900 | #if defined(HAVE_YCBCR_TO_RGB565) |
michael@0 | 901 | if (aDestFormat == gfxImageFormat::RGB16_565) { |
michael@0 | 902 | ConvertYCbCrToRGB565(aData.mYChannel, |
michael@0 | 903 | aData.mCbChannel, |
michael@0 | 904 | aData.mCrChannel, |
michael@0 | 905 | aDestBuffer, |
michael@0 | 906 | aData.mPicX, |
michael@0 | 907 | aData.mPicY, |
michael@0 | 908 | aData.mPicSize.width, |
michael@0 | 909 | aData.mPicSize.height, |
michael@0 | 910 | aData.mYStride, |
michael@0 | 911 | aData.mCbCrStride, |
michael@0 | 912 | aStride, |
michael@0 | 913 | yuvtype); |
michael@0 | 914 | } else // aDestFormat != gfxImageFormat::RGB16_565 |
michael@0 | 915 | #endif |
michael@0 | 916 | ConvertYCbCrToRGB32(aData.mYChannel, |
michael@0 | 917 | aData.mCbChannel, |
michael@0 | 918 | aData.mCrChannel, |
michael@0 | 919 | aDestBuffer, |
michael@0 | 920 | aData.mPicX, |
michael@0 | 921 | aData.mPicY, |
michael@0 | 922 | aData.mPicSize.width, |
michael@0 | 923 | aData.mPicSize.height, |
michael@0 | 924 | aData.mYStride, |
michael@0 | 925 | aData.mCbCrStride, |
michael@0 | 926 | aStride, |
michael@0 | 927 | yuvtype); |
michael@0 | 928 | } |
michael@0 | 929 | } |
michael@0 | 930 | |
michael@0 | 931 | /* static */ TemporaryRef<DataSourceSurface> |
michael@0 | 932 | gfxUtils::CopySurfaceToDataSourceSurfaceWithFormat(SourceSurface* aSurface, |
michael@0 | 933 | SurfaceFormat aFormat) |
michael@0 | 934 | { |
michael@0 | 935 | MOZ_ASSERT(aFormat != aSurface->GetFormat(), |
michael@0 | 936 | "Unnecessary - and very expersive - surface format conversion"); |
michael@0 | 937 | |
michael@0 | 938 | Rect bounds(0, 0, aSurface->GetSize().width, aSurface->GetSize().height); |
michael@0 | 939 | |
michael@0 | 940 | if (aSurface->GetType() != SurfaceType::DATA) { |
michael@0 | 941 | // If the surface is NOT of type DATA then its data is not mapped into main |
michael@0 | 942 | // memory. Format conversion is probably faster on the GPU, and by doing it |
michael@0 | 943 | // there we can avoid any expensive uploads/readbacks except for (possibly) |
michael@0 | 944 | // a single readback due to the unavoidable GetDataSurface() call. Using |
michael@0 | 945 | // CreateOffscreenContentDrawTarget ensures the conversion happens on the |
michael@0 | 946 | // GPU. |
michael@0 | 947 | RefPtr<DrawTarget> dt = gfxPlatform::GetPlatform()-> |
michael@0 | 948 | CreateOffscreenContentDrawTarget(aSurface->GetSize(), aFormat); |
michael@0 | 949 | // Using DrawSurface() here rather than CopySurface() because CopySurface |
michael@0 | 950 | // is optimized for memcpy and therefore isn't good for format conversion. |
michael@0 | 951 | // Using OP_OVER since in our case it's equivalent to OP_SOURCE and |
michael@0 | 952 | // generally more optimized. |
michael@0 | 953 | dt->DrawSurface(aSurface, bounds, bounds, DrawSurfaceOptions(), |
michael@0 | 954 | DrawOptions(1.0f, CompositionOp::OP_OVER)); |
michael@0 | 955 | RefPtr<SourceSurface> surface = dt->Snapshot(); |
michael@0 | 956 | return surface->GetDataSurface(); |
michael@0 | 957 | } |
michael@0 | 958 | |
michael@0 | 959 | // If the surface IS of type DATA then it may or may not be in main memory |
michael@0 | 960 | // depending on whether or not it has been mapped yet. We have no way of |
michael@0 | 961 | // knowing, so we can't be sure if it's best to create a data wrapping |
michael@0 | 962 | // DrawTarget for the conversion or an offscreen content DrawTarget. We could |
michael@0 | 963 | // guess it's not mapped and create an offscreen content DrawTarget, but if |
michael@0 | 964 | // it is then we'll end up uploading the surface data, and most likely the |
michael@0 | 965 | // caller is going to be accessing the resulting surface data, resulting in a |
michael@0 | 966 | // readback (both very expensive operations). Alternatively we could guess |
michael@0 | 967 | // the data is mapped and create a data wrapping DrawTarget and, if the |
michael@0 | 968 | // surface is not in main memory, then we will incure a readback. The latter |
michael@0 | 969 | // of these two "wrong choices" is the least costly (a readback, vs an |
michael@0 | 970 | // upload and a readback), and more than likely the DATA surface that we've |
michael@0 | 971 | // been passed actually IS in main memory anyway. For these reasons it's most |
michael@0 | 972 | // likely best to create a data wrapping DrawTarget here to do the format |
michael@0 | 973 | // conversion. |
michael@0 | 974 | RefPtr<DataSourceSurface> dataSurface = |
michael@0 | 975 | Factory::CreateDataSourceSurface(aSurface->GetSize(), aFormat); |
michael@0 | 976 | DataSourceSurface::MappedSurface map; |
michael@0 | 977 | if (!dataSurface || |
michael@0 | 978 | !dataSurface->Map(DataSourceSurface::MapType::READ_WRITE, &map)) { |
michael@0 | 979 | return nullptr; |
michael@0 | 980 | } |
michael@0 | 981 | RefPtr<DrawTarget> dt = |
michael@0 | 982 | Factory::CreateDrawTargetForData(BackendType::CAIRO, |
michael@0 | 983 | map.mData, |
michael@0 | 984 | dataSurface->GetSize(), |
michael@0 | 985 | map.mStride, |
michael@0 | 986 | aFormat); |
michael@0 | 987 | if (!dt) { |
michael@0 | 988 | dataSurface->Unmap(); |
michael@0 | 989 | return nullptr; |
michael@0 | 990 | } |
michael@0 | 991 | // Using DrawSurface() here rather than CopySurface() because CopySurface |
michael@0 | 992 | // is optimized for memcpy and therefore isn't good for format conversion. |
michael@0 | 993 | // Using OP_OVER since in our case it's equivalent to OP_SOURCE and |
michael@0 | 994 | // generally more optimized. |
michael@0 | 995 | dt->DrawSurface(aSurface, bounds, bounds, DrawSurfaceOptions(), |
michael@0 | 996 | DrawOptions(1.0f, CompositionOp::OP_OVER)); |
michael@0 | 997 | dataSurface->Unmap(); |
michael@0 | 998 | return dataSurface.forget(); |
michael@0 | 999 | } |
michael@0 | 1000 | |
michael@0 | 1001 | #ifdef MOZ_DUMP_PAINTING |
michael@0 | 1002 | /* static */ void |
michael@0 | 1003 | gfxUtils::WriteAsPNG(DrawTarget* aDT, const char* aFile) |
michael@0 | 1004 | { |
michael@0 | 1005 | aDT->Flush(); |
michael@0 | 1006 | nsRefPtr<gfxASurface> surf = gfxPlatform::GetPlatform()->GetThebesSurfaceForDrawTarget(aDT); |
michael@0 | 1007 | if (surf) { |
michael@0 | 1008 | surf->WriteAsPNG(aFile); |
michael@0 | 1009 | } else { |
michael@0 | 1010 | NS_WARNING("Failed to get Thebes surface!"); |
michael@0 | 1011 | } |
michael@0 | 1012 | } |
michael@0 | 1013 | |
michael@0 | 1014 | /* static */ void |
michael@0 | 1015 | gfxUtils::DumpAsDataURL(DrawTarget* aDT) |
michael@0 | 1016 | { |
michael@0 | 1017 | aDT->Flush(); |
michael@0 | 1018 | nsRefPtr<gfxASurface> surf = gfxPlatform::GetPlatform()->GetThebesSurfaceForDrawTarget(aDT); |
michael@0 | 1019 | if (surf) { |
michael@0 | 1020 | surf->DumpAsDataURL(); |
michael@0 | 1021 | } else { |
michael@0 | 1022 | NS_WARNING("Failed to get Thebes surface!"); |
michael@0 | 1023 | } |
michael@0 | 1024 | } |
michael@0 | 1025 | |
michael@0 | 1026 | /* static */ void |
michael@0 | 1027 | gfxUtils::CopyAsDataURL(DrawTarget* aDT) |
michael@0 | 1028 | { |
michael@0 | 1029 | aDT->Flush(); |
michael@0 | 1030 | nsRefPtr<gfxASurface> surf = gfxPlatform::GetPlatform()->GetThebesSurfaceForDrawTarget(aDT); |
michael@0 | 1031 | if (surf) { |
michael@0 | 1032 | surf->CopyAsDataURL(); |
michael@0 | 1033 | } else { |
michael@0 | 1034 | NS_WARNING("Failed to get Thebes surface!"); |
michael@0 | 1035 | } |
michael@0 | 1036 | } |
michael@0 | 1037 | |
michael@0 | 1038 | /* static */ void |
michael@0 | 1039 | gfxUtils::WriteAsPNG(RefPtr<gfx::SourceSurface> aSourceSurface, const char* aFile) |
michael@0 | 1040 | { |
michael@0 | 1041 | RefPtr<gfx::DataSourceSurface> dataSurface = aSourceSurface->GetDataSurface(); |
michael@0 | 1042 | RefPtr<gfx::DrawTarget> dt |
michael@0 | 1043 | = gfxPlatform::GetPlatform() |
michael@0 | 1044 | ->CreateDrawTargetForData(dataSurface->GetData(), |
michael@0 | 1045 | dataSurface->GetSize(), |
michael@0 | 1046 | dataSurface->Stride(), |
michael@0 | 1047 | aSourceSurface->GetFormat()); |
michael@0 | 1048 | gfxUtils::WriteAsPNG(dt.get(), aFile); |
michael@0 | 1049 | } |
michael@0 | 1050 | |
michael@0 | 1051 | /* static */ void |
michael@0 | 1052 | gfxUtils::DumpAsDataURL(RefPtr<gfx::SourceSurface> aSourceSurface) |
michael@0 | 1053 | { |
michael@0 | 1054 | RefPtr<gfx::DataSourceSurface> dataSurface = aSourceSurface->GetDataSurface(); |
michael@0 | 1055 | RefPtr<gfx::DrawTarget> dt |
michael@0 | 1056 | = gfxPlatform::GetPlatform() |
michael@0 | 1057 | ->CreateDrawTargetForData(dataSurface->GetData(), |
michael@0 | 1058 | dataSurface->GetSize(), |
michael@0 | 1059 | dataSurface->Stride(), |
michael@0 | 1060 | aSourceSurface->GetFormat()); |
michael@0 | 1061 | gfxUtils::DumpAsDataURL(dt.get()); |
michael@0 | 1062 | } |
michael@0 | 1063 | |
michael@0 | 1064 | /* static */ void |
michael@0 | 1065 | gfxUtils::CopyAsDataURL(RefPtr<gfx::SourceSurface> aSourceSurface) |
michael@0 | 1066 | { |
michael@0 | 1067 | RefPtr<gfx::DataSourceSurface> dataSurface = aSourceSurface->GetDataSurface(); |
michael@0 | 1068 | RefPtr<gfx::DrawTarget> dt |
michael@0 | 1069 | = gfxPlatform::GetPlatform() |
michael@0 | 1070 | ->CreateDrawTargetForData(dataSurface->GetData(), |
michael@0 | 1071 | dataSurface->GetSize(), |
michael@0 | 1072 | dataSurface->Stride(), |
michael@0 | 1073 | aSourceSurface->GetFormat()); |
michael@0 | 1074 | |
michael@0 | 1075 | gfxUtils::CopyAsDataURL(dt.get()); |
michael@0 | 1076 | } |
michael@0 | 1077 | |
michael@0 | 1078 | bool gfxUtils::sDumpPaintList = getenv("MOZ_DUMP_PAINT_LIST") != 0; |
michael@0 | 1079 | bool gfxUtils::sDumpPainting = getenv("MOZ_DUMP_PAINT") != 0; |
michael@0 | 1080 | bool gfxUtils::sDumpPaintingToFile = getenv("MOZ_DUMP_PAINT_TO_FILE") != 0; |
michael@0 | 1081 | FILE *gfxUtils::sDumpPaintFile = nullptr; |
michael@0 | 1082 | #endif |