* Copyright 2018 Google Inc.
*
* Use of this source code is governed by a BSD-style license that can be
* found in the LICENSE file.
*/
#ifndef PromiseImageHelper_DEFINED
#define PromiseImageHelper_DEFINED
#include "include/core/SkBitmap.h"
#include "include/core/SkRefCnt.h"
#include "include/core/SkYUVAPixmaps.h"
#include "include/gpu/ganesh/GrBackendSurface.h"
#include "include/private/base/SkTArray.h"
#include "include/private/chromium/GrPromiseImageTexture.h"
#include "src/base/SkTLazy.h"
#include "src/core/SkCachedData.h"
class GrContextThreadSafeProxy;
class GrDirectContext;
class SkImage;
class SkMipmap;
class SkPicture;
class SkTaskGroup;
class PromiseImageCallbackContext : public SkRefCnt {
public:
PromiseImageCallbackContext(GrDirectContext* direct, GrBackendFormat backendFormat)
: fContext(direct)
, fBackendFormat(backendFormat) {}
~PromiseImageCallbackContext() override;
const GrBackendFormat& backendFormat() const { return fBackendFormat; }
void setBackendTexture(const GrBackendTexture& backendTexture);
void destroyBackendTexture();
sk_sp<GrPromiseImageTexture> fulfill() {
++fTotalFulfills;
return fPromiseImageTexture;
}
void release() {
++fDoneCnt;
SkASSERT(fDoneCnt <= fNumImages);
}
void wasAddedToImage() { fNumImages++; }
const GrPromiseImageTexture* promiseImageTexture() const {
return fPromiseImageTexture.get();
}
static sk_sp<GrPromiseImageTexture> PromiseImageFulfillProc(void* textureContext) {
auto callbackContext = static_cast<PromiseImageCallbackContext*>(textureContext);
return callbackContext->fulfill();
}
static void PromiseImageReleaseProc(void* textureContext) {
auto callbackContext = static_cast<PromiseImageCallbackContext*>(textureContext);
callbackContext->release();
callbackContext->unref();
}
private:
GrDirectContext* fContext;
GrBackendFormat fBackendFormat;
sk_sp<GrPromiseImageTexture> fPromiseImageTexture;
int fNumImages = 0;
int fTotalFulfills = 0;
int fDoneCnt = 0;
using INHERITED = SkRefCnt;
};
class DDLPromiseImageHelper {
public:
DDLPromiseImageHelper(const SkYUVAPixmapInfo::SupportedDataTypes& supportedYUVADataTypes)
: fSupportedYUVADataTypes(supportedYUVADataTypes) {}
~DDLPromiseImageHelper() = default;
sk_sp<SkPicture> recreateSKP(GrDirectContext*, SkPicture*);
void uploadAllToGPU(SkTaskGroup*, GrDirectContext*);
void deleteAllFromGPU(SkTaskGroup*, GrDirectContext*);
void reset() {
fImageInfo.clear();
fPromiseImages.clear();
}
private:
void createCallbackContexts(GrDirectContext*);
sk_sp<SkPicture> reinflateSKP(sk_sp<GrContextThreadSafeProxy>, SkData* deflatedSKP);
class PromiseImageInfo {
public:
PromiseImageInfo(int index, uint32_t originalUniqueID, const SkImageInfo& ii);
PromiseImageInfo(PromiseImageInfo&& other);
~PromiseImageInfo();
int index() const { return fIndex; }
uint32_t originalUniqueID() const { return fOriginalUniqueID; }
bool isYUV() const { return fYUVAPixmaps.isValid(); }
SkISize overallDimensions() const { return fImageInfo.dimensions(); }
SkColorType overallColorType() const { return fImageInfo.colorType(); }
SkAlphaType overallAlphaType() const { return fImageInfo.alphaType(); }
sk_sp<SkColorSpace> refOverallColorSpace() const { return fImageInfo.refColorSpace(); }
const SkYUVAInfo& yuvaInfo() const { return fYUVAPixmaps.yuvaInfo(); }
const SkPixmap& yuvPixmap(int index) const {
SkASSERT(this->isYUV());
return fYUVAPixmaps.planes()[index];
}
const SkBitmap& baseLevel() const {
SkASSERT(!this->isYUV());
return fBaseLevel;
}
std::unique_ptr<SkPixmap[]> normalMipLevels() const;
int numMipLevels() const;
void setCallbackContext(int index, sk_sp<PromiseImageCallbackContext> callbackContext) {
SkASSERT(index >= 0 && index < (this->isYUV() ? SkYUVAInfo::kMaxPlanes : 1));
fCallbackContexts[index] = callbackContext;
}
PromiseImageCallbackContext* callbackContext(int index) const {
SkASSERT(index >= 0 && index < (this->isYUV() ? SkYUVAInfo::kMaxPlanes : 1));
return fCallbackContexts[index].get();
}
sk_sp<PromiseImageCallbackContext> refCallbackContext(int index) const {
SkASSERT(index >= 0 && index < (this->isYUV() ? SkYUVAInfo::kMaxPlanes : 1));
return fCallbackContexts[index];
}
skgpu::Mipmapped mipmapped(int index) const {
if (this->isYUV()) {
return skgpu::Mipmapped::kNo;
}
return fMipLevels ? skgpu::Mipmapped::kYes : skgpu::Mipmapped::kNo;
}
const GrBackendFormat& backendFormat(int index) const {
SkASSERT(index >= 0 && index < (this->isYUV() ? SkYUVAInfo::kMaxPlanes : 1));
return fCallbackContexts[index]->backendFormat();
}
const GrPromiseImageTexture* promiseTexture(int index) const {
SkASSERT(index >= 0 && index < (this->isYUV() ? SkYUVAInfo::kMaxPlanes : 1));
return fCallbackContexts[index]->promiseImageTexture();
}
void setMipLevels(const SkBitmap& baseLevel, std::unique_ptr<SkMipmap> mipLevels);
void setYUVPlanes(SkYUVAPixmaps yuvaPixmaps) { fYUVAPixmaps = std::move(yuvaPixmaps); }
private:
const int fIndex;
const uint32_t fOriginalUniqueID;
const SkImageInfo fImageInfo;
SkBitmap fBaseLevel;
std::unique_ptr<SkMipmap> fMipLevels;
SkYUVAPixmaps fYUVAPixmaps;
sk_sp<PromiseImageCallbackContext> fCallbackContexts[SkYUVAInfo::kMaxPlanes];
};
struct DeserialImageProcContext {
sk_sp<GrContextThreadSafeProxy> fThreadSafeProxy;
DDLPromiseImageHelper* fHelper;
};
static void CreateBETexturesForPromiseImage(GrDirectContext*, PromiseImageInfo*);
static void DeleteBETexturesForPromiseImage(PromiseImageInfo*);
static sk_sp<SkImage> CreatePromiseImages(const void* rawData, size_t length, void* ctxIn);
bool isValidID(int id) const { return id >= 0 && id < fImageInfo.size(); }
const PromiseImageInfo& getInfo(int id) const { return fImageInfo[id]; }
void uploadImage(GrDirectContext*, PromiseImageInfo*);
int findImage(SkImage* image) const;
int addImage(SkImage* image);
int findOrDefineImage(SkImage* image);
SkYUVAPixmapInfo::SupportedDataTypes fSupportedYUVADataTypes;
skia_private::TArray<PromiseImageInfo> fImageInfo;
skia_private::TArray<sk_sp<SkImage>> fPromiseImages;
};
#endif