blob: b875898fc9a75b18b1bc72e9e89a7aea196dc66c [file] [log] [blame]
/*
* Copyright 2007 The Android Open Source Project
*
* Use of this source code is governed by a BSD-style license that can be
* found in the LICENSE file.
*/
#include "SkImageEncoderPriv.h"
#ifdef SK_HAS_JPEG_LIBRARY
#include "SkColorPriv.h"
#include "SkImageEncoderFns.h"
#include "SkImageInfoPriv.h"
#include "SkJpegEncoder.h"
#include "SkJPEGWriteUtility.h"
#include "SkStream.h"
#include "SkTemplates.h"
#include <stdio.h>
extern "C" {
#include "jpeglib.h"
#include "jerror.h"
}
// This warning triggers false postives way too often in here.
#if defined(__GNUC__) && !defined(__clang__)
#pragma GCC diagnostic ignored "-Wclobbered"
#endif
class SkJpegEncoderMgr : SkNoncopyable {
public:
/*
* Create the decode manager
* Does not take ownership of stream
*/
static std::unique_ptr<SkJpegEncoderMgr> Make(SkWStream* stream) {
return std::unique_ptr<SkJpegEncoderMgr>(new SkJpegEncoderMgr(stream));
}
bool setParams(const SkImageInfo& srcInfo);
jpeg_compress_struct* cinfo() { return &fCInfo; }
jmp_buf& jmpBuf() { return fErrMgr.fJmpBuf; }
transform_scanline_proc proc() const { return fProc; }
~SkJpegEncoderMgr() {
jpeg_destroy_compress(&fCInfo);
}
private:
SkJpegEncoderMgr(SkWStream* stream)
: fDstMgr(stream)
, fProc(nullptr)
{
fCInfo.err = jpeg_std_error(&fErrMgr);
fErrMgr.error_exit = skjpeg_error_exit;
jpeg_create_compress(&fCInfo);
fCInfo.dest = &fDstMgr;
}
jpeg_compress_struct fCInfo;
skjpeg_error_mgr fErrMgr;
skjpeg_destination_mgr fDstMgr;
transform_scanline_proc fProc;
};
bool SkJpegEncoderMgr::setParams(const SkImageInfo& srcInfo) {
J_COLOR_SPACE jpegColorType = JCS_EXT_RGBA;
int numComponents = 0;
switch (srcInfo.colorType()) {
case kRGBA_8888_SkColorType:
jpegColorType = JCS_EXT_RGBA;
numComponents = 4;
break;
case kBGRA_8888_SkColorType:
jpegColorType = JCS_EXT_BGRA;
numComponents = 4;
break;
case kRGB_565_SkColorType:
fProc = transform_scanline_565;
jpegColorType = JCS_RGB;
numComponents = 3;
break;
case kARGB_4444_SkColorType:
fProc = transform_scanline_444;
jpegColorType = JCS_RGB;
numComponents = 3;
break;
case kIndex_8_SkColorType:
fProc = transform_scanline_index8_opaque;
jpegColorType = JCS_RGB;
numComponents = 3;
break;
case kGray_8_SkColorType:
SkASSERT(srcInfo.isOpaque());
jpegColorType = JCS_GRAYSCALE;
numComponents = 1;
break;
case kRGBA_F16_SkColorType:
if (!srcInfo.colorSpace() || !srcInfo.colorSpace()->gammaIsLinear()) {
return false;
}
fProc = transform_scanline_F16_to_8888;
jpegColorType = JCS_EXT_RGBA;
numComponents = 4;
break;
default:
return false;
}
fCInfo.image_width = srcInfo.width();
fCInfo.image_height = srcInfo.height();
fCInfo.in_color_space = jpegColorType;
fCInfo.input_components = numComponents;
jpeg_set_defaults(&fCInfo);
// Tells libjpeg-turbo to compute optimal Huffman coding tables
// for the image. This improves compression at the cost of
// slower encode performance.
fCInfo.optimize_coding = TRUE;
return true;
}
class SkJpegEncoder_Base : public SkJpegEncoder {
public:
SkJpegEncoder_Base(std::unique_ptr<SkJpegEncoderMgr> encoderMgr, const SkPixmap& src);
bool onEncodeRows(int numRows);
private:
std::unique_ptr<SkJpegEncoderMgr> fEncoderMgr;
SkPixmap fSrc;
int fCurrRow;
SkAutoTMalloc<uint8_t> fStorage;
};
std::unique_ptr<SkJpegEncoder> SkJpegEncoder::Make(SkWStream* dst, const SkPixmap& src,
const Options& options) {
if (!SkImageInfoIsValidAllowNumericalCS(src.info()) || !src.addr() ||
src.rowBytes() < src.info().minRowBytes()) {
return nullptr;
}
std::unique_ptr<SkJpegEncoderMgr> encoderMgr = SkJpegEncoderMgr::Make(dst);
if (setjmp(encoderMgr->jmpBuf())) {
return nullptr;
}
if (!encoderMgr->setParams(src.info())) {
return nullptr;
}
jpeg_set_quality(encoderMgr->cinfo(), options.fQuality, TRUE);
jpeg_start_compress(encoderMgr->cinfo(), TRUE);
if (src.colorSpace()) {
sk_sp<SkData> icc = icc_from_color_space(*src.colorSpace());
if (icc) {
// Create a contiguous block of memory with the icc signature followed by the profile.
sk_sp<SkData> markerData =
SkData::MakeUninitialized(kICCMarkerHeaderSize + icc->size());
uint8_t* ptr = (uint8_t*) markerData->writable_data();
memcpy(ptr, kICCSig, sizeof(kICCSig));
ptr += sizeof(kICCSig);
*ptr++ = 1; // This is the first marker.
*ptr++ = 1; // Out of one total markers.
memcpy(ptr, icc->data(), icc->size());
jpeg_write_marker(encoderMgr->cinfo(), kICCMarker, markerData->bytes(),
markerData->size());
}
}
return std::unique_ptr<SkJpegEncoder>(new SkJpegEncoder_Base(std::move(encoderMgr), src));
}
SkJpegEncoder_Base::SkJpegEncoder_Base(std::unique_ptr<SkJpegEncoderMgr> encoderMgr,
const SkPixmap& src)
: fEncoderMgr(std::move(encoderMgr))
, fSrc(src)
, fCurrRow(0)
, fStorage(fEncoderMgr->proc() ? fEncoderMgr->cinfo()->input_components*src.width() : 0)
{}
bool SkJpegEncoder::encodeRows(int numRows) {
return ((SkJpegEncoder_Base*) this)->onEncodeRows(numRows);
}
bool SkJpegEncoder_Base::onEncodeRows(int numRows) {
SkASSERT(numRows > 0 && fCurrRow < fSrc.height());
if (numRows <= 0 || fCurrRow >= fSrc.height()) {
return false;
}
if (fCurrRow + numRows > fSrc.height()) {
numRows = fSrc.height() - fCurrRow;
}
if (setjmp(fEncoderMgr->jmpBuf())) {
// Short circuit any future calls after failing.
fCurrRow = fSrc.height();
return false;
}
const void* srcRow = fSrc.addr(0, fCurrRow);
const SkPMColor* colors = fSrc.ctable() ? fSrc.ctable()->readColors() : nullptr;
for (int i = 0; i < numRows; i++) {
JSAMPLE* jpegSrcRow = (JSAMPLE*) srcRow;
if (fEncoderMgr->proc()) {
fEncoderMgr->proc()((char*)fStorage.get(), (const char*)srcRow, fSrc.width(),
fEncoderMgr->cinfo()->input_components, colors);
jpegSrcRow = fStorage.get();
}
jpeg_write_scanlines(fEncoderMgr->cinfo(), &jpegSrcRow, 1);
srcRow = SkTAddOffset<const void>(srcRow, fSrc.rowBytes());
}
fCurrRow += numRows;
if (fCurrRow == fSrc.height()) {
jpeg_finish_compress(fEncoderMgr->cinfo());
}
return true;
}
bool SkJpegEncoder::Encode(SkWStream* dst, const SkPixmap& src, const Options& options) {
auto encoder = SkJpegEncoder::Make(dst, src, options);
return encoder && encoder->encodeRows(src.height());
}
#endif