/* * Copyright (C) 2006 Nikolas Zimmermann * Copyright (C) 2008 Apple Inc. All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * 1. Redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution. * * THIS SOFTWARE IS PROVIDED BY APPLE COMPUTER, INC. ``AS IS'' AND ANY * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL APPLE COMPUTER, INC. OR * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR * PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY * OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. */ #include "config.h" #include "ImageBuffer.h" #include "Base64.h" #include "BitmapImage.h" #include "CString.h" #include "GraphicsContext.h" #include "ImageData.h" #include "MIMETypeRegistry.h" #include "PlatformString.h" #include #include #include #include using namespace std; namespace WebCore { ImageBufferData::ImageBufferData(const IntSize&) : m_data(0) { } ImageBuffer::ImageBuffer(const IntSize& size, bool grayScale, bool& success) : m_data(size) , m_size(size) { success = false; // Make early return mean failure. unsigned bytesPerRow; if (size.width() < 0 || size.height() < 0) return; bytesPerRow = size.width(); if (!grayScale) { // Protect against overflow if (bytesPerRow > 0x3FFFFFFF) return; bytesPerRow *= 4; } m_data.m_data = tryFastCalloc(size.height(), bytesPerRow); ASSERT((reinterpret_cast(m_data.m_data) & 2) == 0); CGColorSpaceRef colorSpace = grayScale ? CGColorSpaceCreateDeviceGray() : CGColorSpaceCreateDeviceRGB(); CGContextRef cgContext = CGBitmapContextCreate(m_data.m_data, size.width(), size.height(), 8, bytesPerRow, colorSpace, grayScale ? kCGImageAlphaNone : kCGImageAlphaPremultipliedLast); CGColorSpaceRelease(colorSpace); if (!cgContext) return; m_context.set(new GraphicsContext(cgContext)); m_context->scale(FloatSize(1, -1)); m_context->translate(0, -size.height()); CGContextRelease(cgContext); success = true; } ImageBuffer::~ImageBuffer() { fastFree(m_data.m_data); } GraphicsContext* ImageBuffer::context() const { return m_context.get(); } Image* ImageBuffer::image() const { if (!m_image) { // It's assumed that if image() is called, the actual rendering to the // GraphicsContext must be done. ASSERT(context()); CGImageRef cgImage = CGBitmapContextCreateImage(context()->platformContext()); // BitmapImage will release the passed in CGImage on destruction m_image = BitmapImage::create(cgImage); } return m_image.get(); } PassRefPtr ImageBuffer::getImageData(const IntRect& rect) const { PassRefPtr result = ImageData::create(rect.width(), rect.height()); unsigned char* data = result->data()->data()->data(); if (rect.x() < 0 || rect.y() < 0 || (rect.x() + rect.width()) > m_size.width() || (rect.y() + rect.height()) > m_size.height()) memset(data, 0, result->data()->length()); int originx = rect.x(); int destx = 0; if (originx < 0) { destx = -originx; originx = 0; } int endx = rect.x() + rect.width(); if (endx > m_size.width()) endx = m_size.width(); int numColumns = endx - originx; int originy = rect.y(); int desty = 0; if (originy < 0) { desty = -originy; originy = 0; } int endy = rect.y() + rect.height(); if (endy > m_size.height()) endy = m_size.height(); int numRows = endy - originy; unsigned srcBytesPerRow = 4 * m_size.width(); unsigned destBytesPerRow = 4 * rect.width(); // ::create ensures that all ImageBuffers have valid data, so we don't need to check it here. unsigned char* srcRows = reinterpret_cast(m_data.m_data) + originy * srcBytesPerRow + originx * 4; unsigned char* destRows = data + desty * destBytesPerRow + destx * 4; for (int y = 0; y < numRows; ++y) { for (int x = 0; x < numColumns; x++) { int basex = x * 4; if (unsigned char alpha = srcRows[basex + 3]) { destRows[basex] = (srcRows[basex] * 255) / alpha; destRows[basex + 1] = (srcRows[basex + 1] * 255) / alpha; destRows[basex + 2] = (srcRows[basex + 2] * 255) / alpha; destRows[basex + 3] = alpha; } else reinterpret_cast(destRows + basex)[0] = reinterpret_cast(srcRows + basex)[0]; } srcRows += srcBytesPerRow; destRows += destBytesPerRow; } return result; } void ImageBuffer::putImageData(ImageData* source, const IntRect& sourceRect, const IntPoint& destPoint) { ASSERT(sourceRect.width() > 0); ASSERT(sourceRect.height() > 0); int originx = sourceRect.x(); int destx = destPoint.x() + sourceRect.x(); ASSERT(destx >= 0); ASSERT(destx < m_size.width()); ASSERT(originx >= 0); ASSERT(originx <= sourceRect.right()); int endx = destPoint.x() + sourceRect.right(); ASSERT(endx <= m_size.width()); int numColumns = endx - destx; int originy = sourceRect.y(); int desty = destPoint.y() + sourceRect.y(); ASSERT(desty >= 0); ASSERT(desty < m_size.height()); ASSERT(originy >= 0); ASSERT(originy <= sourceRect.bottom()); int endy = destPoint.y() + sourceRect.bottom(); ASSERT(endy <= m_size.height()); int numRows = endy - desty; unsigned srcBytesPerRow = 4 * source->width(); unsigned destBytesPerRow = 4 * m_size.width(); unsigned char* srcRows = source->data()->data()->data() + originy * srcBytesPerRow + originx * 4; unsigned char* destRows = reinterpret_cast(m_data.m_data) + desty * destBytesPerRow + destx * 4; for (int y = 0; y < numRows; ++y) { for (int x = 0; x < numColumns; x++) { int basex = x * 4; unsigned char alpha = srcRows[basex + 3]; if (alpha != 255) { destRows[basex] = (srcRows[basex] * alpha + 254) / 255; destRows[basex + 1] = (srcRows[basex + 1] * alpha + 254) / 255; destRows[basex + 2] = (srcRows[basex + 2] * alpha + 254) / 255; destRows[basex + 3] = alpha; } else reinterpret_cast(destRows + basex)[0] = reinterpret_cast(srcRows + basex)[0]; } destRows += destBytesPerRow; srcRows += srcBytesPerRow; } } static RetainPtr utiFromMIMEType(const String& mimeType) { #if PLATFORM(MAC) RetainPtr mimeTypeCFString(AdoptCF, mimeType.createCFString()); return RetainPtr(AdoptCF, UTTypeCreatePreferredIdentifierForTag(kUTTagClassMIMEType, mimeTypeCFString.get(), 0)); #else // FIXME: Add Windows support for all the supported UTIs when a way to convert from MIMEType to UTI reliably is found. // For now, only support PNG, JPEG, and GIF. See . static const CFStringRef kUTTypePNG = CFSTR("public.png"); static const CFStringRef kUTTypeJPEG = CFSTR("public.jpeg"); static const CFStringRef kUTTypeGIF = CFSTR("com.compuserve.gif"); if (equalIgnoringCase(mimeType, "image/png")) return kUTTypePNG; if (equalIgnoringCase(mimeType, "image/jpeg")) return kUTTypeJPEG; if (equalIgnoringCase(mimeType, "image/gif")) return kUTTypeGIF; ASSERT_NOT_REACHED(); return kUTTypePNG; #endif } String ImageBuffer::toDataURL(const String& mimeType) const { ASSERT(MIMETypeRegistry::isSupportedImageMIMETypeForEncoding(mimeType)); RetainPtr image(AdoptCF, CGBitmapContextCreateImage(context()->platformContext())); if (!image) return "data:,"; size_t width = CGImageGetWidth(image.get()); size_t height = CGImageGetHeight(image.get()); OwnArrayPtr imageData(new uint32_t[width * height]); if (!imageData) return "data:,"; RetainPtr transformedImage(AdoptCF, CGBitmapContextCreateImage(context()->platformContext())); if (!transformedImage) return "data:,"; RetainPtr transformedImageData(AdoptCF, CFDataCreateMutable(kCFAllocatorDefault, 0)); if (!transformedImageData) return "data:,"; RetainPtr imageDestination(AdoptCF, CGImageDestinationCreateWithData(transformedImageData.get(), utiFromMIMEType(mimeType).get(), 1, 0)); if (!imageDestination) return "data:,"; CGImageDestinationAddImage(imageDestination.get(), transformedImage.get(), 0); CGImageDestinationFinalize(imageDestination.get()); Vector in; in.append(CFDataGetBytePtr(transformedImageData.get()), CFDataGetLength(transformedImageData.get())); Vector out; base64Encode(in, out); out.append('\0'); return String::format("data:%s;base64,%s", mimeType.utf8().data(), out.data()); } } // namespace WebCore