Merge pull request #73 from SDWebImage/perf/awebp_thumbnail_allocation
Reduce memory usage peak when using thumbnail animated WebP decoding and encoding
This commit is contained in:
commit
9082448d5d
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@ -68,6 +68,26 @@ else OSSpinLockUnlock(&lock##_deprecated);
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#endif
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#endif
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/// Used for animated WebP, which need a canvas for decoding (rendering), possible apply a scale transform for thumbnail decoding (avoiding post-rescale using vImage)
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/// See more in #73
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static inline CGContextRef _Nullable CreateWebPCanvas(BOOL hasAlpha, CGSize canvasSize, CGSize thumbnailSize, BOOL preserveAspectRatio) {
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CGBitmapInfo bitmapInfo = kCGBitmapByteOrder32Host;
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bitmapInfo |= hasAlpha ? kCGImageAlphaPremultipliedFirst : kCGImageAlphaNoneSkipFirst;
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// Check whether we need to use thumbnail
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CGSize scaledSize = [SDImageCoderHelper scaledSizeWithImageSize:CGSizeMake(canvasSize.width, canvasSize.height) scaleSize:thumbnailSize preserveAspectRatio:preserveAspectRatio shouldScaleUp:NO];
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CGContextRef canvas = CGBitmapContextCreate(NULL, scaledSize.width, scaledSize.height, 8, 0, [SDImageCoderHelper colorSpaceGetDeviceRGB], bitmapInfo);
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if (!canvas) {
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return nil;
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}
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// Check whether we need to use thumbnail
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if (!CGSizeEqualToSize(canvasSize, scaledSize)) {
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CGFloat sx = scaledSize.width / canvasSize.width;
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CGFloat sy = scaledSize.height / canvasSize.height;
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CGContextScaleCTM(canvas, sx, sy);
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}
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return canvas;
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}
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@interface SDWebPCoderFrame : NSObject
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@property (nonatomic, assign) NSUInteger index; // Frame index (zero based)
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@ -218,9 +238,7 @@ else OSSpinLockUnlock(&lock##_deprecated);
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}
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BOOL hasAlpha = flags & ALPHA_FLAG;
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CGBitmapInfo bitmapInfo = kCGBitmapByteOrder32Host;
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bitmapInfo |= hasAlpha ? kCGImageAlphaPremultipliedFirst : kCGImageAlphaNoneSkipFirst;
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CGContextRef canvas = CGBitmapContextCreate(NULL, canvasWidth, canvasHeight, 8, 0, [SDImageCoderHelper colorSpaceGetDeviceRGB], bitmapInfo);
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CGContextRef canvas = CreateWebPCanvas(hasAlpha, CGSizeMake(canvasWidth, canvasHeight), thumbnailSize, preserveAspectRatio);
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if (!canvas) {
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WebPDemuxDelete(demuxer);
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CGColorSpaceRelease(colorSpace);
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@ -232,7 +250,7 @@ else OSSpinLockUnlock(&lock##_deprecated);
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do {
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@autoreleasepool {
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CGImageRef imageRef = [self sd_drawnWebpImageWithCanvas:canvas iterator:iter colorSpace:colorSpace scaledSize:scaledSize];
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CGImageRef imageRef = [self sd_drawnWebpImageWithCanvas:canvas demuxer:demuxer iterator:iter colorSpace:colorSpace];
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if (!imageRef) {
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continue;
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}
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@ -381,7 +399,7 @@ else OSSpinLockUnlock(&lock##_deprecated);
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return nil;
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}
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CGContextRef canvas = CGBitmapContextCreate(NULL, width, height, 8, 0, [SDImageCoderHelper colorSpaceGetDeviceRGB], bitmapInfo);
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CGContextRef canvas = CreateWebPCanvas(YES, CGSizeMake(width, height), _thumbnailSize, _preserveAspectRatio);
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if (!canvas) {
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CGImageRelease(imageRef);
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return nil;
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@ -403,13 +421,6 @@ else OSSpinLockUnlock(&lock##_deprecated);
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scale = 1;
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}
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}
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CGSize scaledSize = [SDImageCoderHelper scaledSizeWithImageSize:CGSizeMake(width, height) scaleSize:_thumbnailSize preserveAspectRatio:_preserveAspectRatio shouldScaleUp:NO];
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// Check whether we need to use thumbnail
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if (!CGSizeEqualToSize(CGSizeMake(width, height), scaledSize)) {
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CGImageRef scaledImageRef = [SDImageCoderHelper CGImageCreateScaled:newImageRef size:scaledSize];
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CGImageRelease(newImageRef);
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newImageRef = scaledImageRef;
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}
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#if SD_UIKIT || SD_WATCH
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image = [[UIImage alloc] initWithCGImage:newImageRef scale:scale orientation:UIImageOrientationUp];
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@ -425,8 +436,8 @@ else OSSpinLockUnlock(&lock##_deprecated);
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return image;
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}
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- (void)sd_blendWebpImageWithCanvas:(CGContextRef)canvas iterator:(WebPIterator)iter colorSpace:(nonnull CGColorSpaceRef)colorSpaceRef {
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size_t canvasHeight = CGBitmapContextGetHeight(canvas);
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- (void)sd_blendWebpImageWithCanvas:(CGContextRef)canvas demuxer:(nonnull WebPDemuxer *)demuxer iterator:(WebPIterator)iter colorSpace:(nonnull CGColorSpaceRef)colorSpaceRef {
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int canvasHeight = WebPDemuxGetI(demuxer, WEBP_FF_CANVAS_HEIGHT);
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CGFloat tmpX = iter.x_offset;
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CGFloat tmpY = canvasHeight - iter.height - iter.y_offset;
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CGRect imageRect = CGRectMake(tmpX, tmpY, iter.width, iter.height);
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@ -448,14 +459,13 @@ else OSSpinLockUnlock(&lock##_deprecated);
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}
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}
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- (nullable CGImageRef)sd_drawnWebpImageWithCanvas:(CGContextRef)canvas iterator:(WebPIterator)iter colorSpace:(nonnull CGColorSpaceRef)colorSpaceRef scaledSize:(CGSize)scaledSize CF_RETURNS_RETAINED {
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- (nullable CGImageRef)sd_drawnWebpImageWithCanvas:(CGContextRef)canvas demuxer:(nonnull WebPDemuxer *)demuxer iterator:(WebPIterator)iter colorSpace:(nonnull CGColorSpaceRef)colorSpaceRef CF_RETURNS_RETAINED {
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CGImageRef imageRef = [self sd_createWebpImageWithData:iter.fragment colorSpace:colorSpaceRef scaledSize:CGSizeZero];
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if (!imageRef) {
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return nil;
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}
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size_t canvasWidth = CGBitmapContextGetWidth(canvas);
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size_t canvasHeight = CGBitmapContextGetHeight(canvas);
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int canvasHeight = WebPDemuxGetI(demuxer, WEBP_FF_CANVAS_HEIGHT);
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CGFloat tmpX = iter.x_offset;
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CGFloat tmpY = canvasHeight - iter.height - iter.y_offset;
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CGRect imageRect = CGRectMake(tmpX, tmpY, iter.width, iter.height);
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@ -466,26 +476,15 @@ else OSSpinLockUnlock(&lock##_deprecated);
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if (!shouldBlend) {
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CGContextClearRect(canvas, imageRect);
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}
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CGContextDrawImage(canvas, imageRect, imageRef);
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CGImageRef newImageRef = CGBitmapContextCreateImage(canvas);
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CGImageRelease(imageRef);
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if (iter.dispose_method == WEBP_MUX_DISPOSE_BACKGROUND) {
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CGContextClearRect(canvas, imageRect);
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}
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// Check whether we need to use thumbnail
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if (!CGSizeEqualToSize(CGSizeMake(canvasWidth, canvasHeight), scaledSize)) {
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// Important: For Animated WebP thumbnail generation, we can not just use a scaled small canvas and draw each thumbnail frame
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// This works **On Theory**. However, image scale down loss details. Animated WebP use the partial pixels with blend mode / dispose method with offset, to cover previous canvas status
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// Because of this reason, even each frame contains small zigzag, the final animation contains visible glitch, this is not we want.
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// So, always create the full pixels canvas (even though this consume more RAM), after drawn on the canvas, re-scale again with the final size
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CGImageRef scaledImageRef = [SDImageCoderHelper CGImageCreateScaled:newImageRef size:scaledSize];
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CGImageRelease(newImageRef);
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newImageRef = scaledImageRef;
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}
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return newImageRef;
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}
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@ -736,76 +735,22 @@ else OSSpinLockUnlock(&lock##_deprecated);
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if (!dataProvider) {
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return nil;
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}
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// Check colorSpace is RGB/RGBA
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CGColorSpaceRef colorSpace = CGImageGetColorSpace(imageRef);
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BOOL isRGB = CGColorSpaceGetModel(colorSpace) == kCGColorSpaceModelRGB;
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CFDataRef dataRef;
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uint8_t *rgba = NULL; // RGBA Buffer managed by CFData, don't call `free` on it, instead call `CFRelease` on `dataRef`
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// We could not assume that input CGImage's color mode is always RGB888/RGBA8888. Convert all other cases to target color mode using vImage
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BOOL isRGB888 = isRGB && byteOrderNormal && alphaInfo == kCGImageAlphaNone && components == 3;
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BOOL isRGBA8888 = isRGB && byteOrderNormal && alphaInfo == kCGImageAlphaLast && components == 4;
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if (isRGB888 || isRGBA8888) {
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// If the input CGImage is already RGB888/RGBA8888
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dataRef = CGDataProviderCopyData(dataProvider);
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if (!dataRef) {
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return nil;
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}
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rgba = (uint8_t *)CFDataGetBytePtr(dataRef);
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} else {
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// Convert all other cases to target color mode using vImage
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vImageConverterRef convertor = NULL;
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vImage_Error error = kvImageNoError;
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vImage_CGImageFormat srcFormat = {
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.bitsPerComponent = (uint32_t)bitsPerComponent,
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.bitsPerPixel = (uint32_t)bitsPerPixel,
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.colorSpace = colorSpace,
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.bitmapInfo = bitmapInfo,
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.renderingIntent = CGImageGetRenderingIntent(imageRef)
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};
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vImage_CGImageFormat destFormat = {
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.bitsPerComponent = 8,
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.bitsPerPixel = hasAlpha ? 32 : 24,
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.colorSpace = [SDImageCoderHelper colorSpaceGetDeviceRGB],
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.bitmapInfo = hasAlpha ? kCGImageAlphaLast | kCGBitmapByteOrderDefault : kCGImageAlphaNone | kCGBitmapByteOrderDefault // RGB888/RGBA8888 (Non-premultiplied to works for libwebp)
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};
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convertor = vImageConverter_CreateWithCGImageFormat(&srcFormat, &destFormat, NULL, kvImageNoFlags, &error);
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if (error != kvImageNoError) {
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return nil;
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}
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vImage_Buffer src;
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error = vImageBuffer_InitWithCGImage(&src, &srcFormat, nil, imageRef, kvImageNoFlags);
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if (error != kvImageNoError) {
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vImageConverter_Release(convertor);
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return nil;
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}
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vImage_Buffer dest;
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error = vImageBuffer_Init(&dest, height, width, destFormat.bitsPerPixel, kvImageNoFlags);
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if (error != kvImageNoError) {
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vImageConverter_Release(convertor);
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free(src.data);
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return nil;
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}
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// Convert input color mode to RGB888/RGBA8888
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error = vImageConvert_AnyToAny(convertor, &src, &dest, NULL, kvImageNoFlags);
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// Free the buffer
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free(src.data);
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vImageConverter_Release(convertor);
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if (error != kvImageNoError) {
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free(dest.data);
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return nil;
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}
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rgba = dest.data; // Converted buffer
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bytesPerRow = dest.rowBytes; // Converted bytePerRow
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dataRef = CFDataCreateWithBytesNoCopy(kCFAllocatorDefault, rgba, bytesPerRow * height, kCFAllocatorDefault);
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vImage_CGImageFormat destFormat = {
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.bitsPerComponent = 8,
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.bitsPerPixel = hasAlpha ? 32 : 24,
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.colorSpace = [SDImageCoderHelper colorSpaceGetDeviceRGB],
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.bitmapInfo = hasAlpha ? kCGImageAlphaLast | kCGBitmapByteOrderDefault : kCGImageAlphaNone | kCGBitmapByteOrderDefault // RGB888/RGBA8888 (Non-premultiplied to works for libwebp)
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};
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vImage_Buffer dest;
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vImage_Error error = vImageBuffer_InitWithCGImage(&dest, &destFormat, NULL, imageRef, kvImageNoFlags);
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if (error != kvImageNoError) {
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return nil;
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}
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rgba = dest.data;
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bytesPerRow = dest.rowBytes;
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float qualityFactor = quality * 100; // WebP quality is 0-100
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// Encode RGB888/RGBA8888 buffer to WebP data
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@ -817,7 +762,8 @@ else OSSpinLockUnlock(&lock##_deprecated);
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if (!WebPConfigPreset(&config, WEBP_PRESET_DEFAULT, qualityFactor) ||
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!WebPPictureInit(&picture)) {
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// shouldn't happen, except if system installation is broken
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CFRelease(dataRef);
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free(dest.data);
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// CFRelease(dataRef);
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return nil;
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}
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@ -837,7 +783,7 @@ else OSSpinLockUnlock(&lock##_deprecated);
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}
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if (!result) {
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WebPMemoryWriterClear(&writer);
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CFRelease(dataRef);
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free(dest.data);
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return nil;
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}
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@ -848,14 +794,14 @@ else OSSpinLockUnlock(&lock##_deprecated);
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if (!result) {
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WebPMemoryWriterClear(&writer);
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WebPPictureFree(&picture);
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CFRelease(dataRef);
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free(dest.data);
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return nil;
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}
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}
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result = WebPEncode(&config, &picture);
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WebPPictureFree(&picture);
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CFRelease(dataRef); // Free bitmap buffer
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free(dest.data);
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if (result) {
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// success
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@ -1137,16 +1083,13 @@ static float GetFloatValueForKey(NSDictionary * _Nonnull dictionary, NSString *
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if (_hasAnimation) {
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// If have animation, we still need to allocate a CGContext, because the poster frame may be smaller than canvas
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if (!_canvas) {
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CGBitmapInfo bitmapInfo = kCGBitmapByteOrder32Host;
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bitmapInfo |= _hasAlpha ? kCGImageAlphaPremultipliedFirst : kCGImageAlphaNoneSkipFirst;
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CGContextRef canvas = CGBitmapContextCreate(NULL, _canvasWidth, _canvasHeight, 8, 0, [SDImageCoderHelper colorSpaceGetDeviceRGB], bitmapInfo);
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CGContextRef canvas = CreateWebPCanvas(_hasAlpha, CGSizeMake(_canvasWidth, _canvasHeight), _thumbnailSize, _preserveAspectRatio);
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if (!canvas) {
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return nil;
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}
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_canvas = canvas;
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}
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CGSize scaledSize = [SDImageCoderHelper scaledSizeWithImageSize:CGSizeMake(_canvasWidth, _canvasHeight) scaleSize:_thumbnailSize preserveAspectRatio:_preserveAspectRatio shouldScaleUp:NO];
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imageRef = [self sd_drawnWebpImageWithCanvas:_canvas iterator:iter colorSpace:_colorSpace scaledSize:scaledSize];
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imageRef = [self sd_drawnWebpImageWithCanvas:_canvas demuxer:_demux iterator:iter colorSpace:_colorSpace];
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} else {
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CGSize scaledSize = [SDImageCoderHelper scaledSizeWithImageSize:CGSizeMake(iter.width, iter.height) scaleSize:_thumbnailSize preserveAspectRatio:_preserveAspectRatio shouldScaleUp:NO];
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imageRef = [self sd_createWebpImageWithData:iter.fragment colorSpace:_colorSpace scaledSize:scaledSize];
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@ -1166,9 +1109,7 @@ static float GetFloatValueForKey(NSDictionary * _Nonnull dictionary, NSString *
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- (UIImage *)safeAnimatedImageFrameAtIndex:(NSUInteger)index {
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if (!_canvas) {
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CGBitmapInfo bitmapInfo = kCGBitmapByteOrder32Host;
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bitmapInfo |= _hasAlpha ? kCGImageAlphaPremultipliedFirst : kCGImageAlphaNoneSkipFirst;
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CGContextRef canvas = CGBitmapContextCreate(NULL, _canvasWidth, _canvasHeight, 8, 0, [SDImageCoderHelper colorSpaceGetDeviceRGB], bitmapInfo);
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CGContextRef canvas = CreateWebPCanvas(_hasAlpha, CGSizeMake(_canvasWidth, _canvasHeight), _thumbnailSize, _preserveAspectRatio);
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if (!canvas) {
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return nil;
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}
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if (endIndex > startIndex) {
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do {
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@autoreleasepool {
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[self sd_blendWebpImageWithCanvas:_canvas iterator:iter colorSpace:_colorSpace];
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[self sd_blendWebpImageWithCanvas:_canvas demuxer:_demux iterator:iter colorSpace:_colorSpace];
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}
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} while ((size_t)iter.frame_num < endIndex && WebPDemuxNextFrame(&iter));
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}
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_currentBlendIndex = index;
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// Now the canvas is ready, which respects of dispose method behavior. Just do normal decoding and produce image.
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// Check whether we need to use thumbnail
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CGSize scaledSize = [SDImageCoderHelper scaledSizeWithImageSize:CGSizeMake(_canvasWidth, _canvasHeight) scaleSize:_thumbnailSize preserveAspectRatio:_preserveAspectRatio shouldScaleUp:NO];
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CGImageRef imageRef = [self sd_drawnWebpImageWithCanvas:_canvas iterator:iter colorSpace:_colorSpace scaledSize:scaledSize];
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CGImageRef imageRef = [self sd_drawnWebpImageWithCanvas:_canvas demuxer:_demux iterator:iter colorSpace:_colorSpace];
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if (!imageRef) {
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return nil;
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}
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