* Copyright 2015 Google Inc.
*
* Use of this source code is governed by a BSD-style license that can be
* found in the LICENSE file.
*/
#include "include/gpu/GrContext.h"
#include "include/gpu/GrTexture.h"
#include "src/gpu/GrContextPriv.h"
#include "src/gpu/GrRenderTargetContext.h"
#include "src/gpu/GrShaderCaps.h"
#include "src/gpu/GrSurfacePriv.h"
#include "src/gpu/GrTextureContext.h"
#include "src/gpu/GrTexturePriv.h"
#include "src/gpu/GrTextureProxyPriv.h"
#include "src/gpu/gl/GrGLGpu.h"
#include "src/gpu/gl/GrGLUtil.h"
#include "tests/Test.h"
#include "tests/TestUtils.h"
#include "tools/gpu/GrContextFactory.h"
#include "tools/gpu/gl/GLTestContext.h"
using sk_gpu_test::GLTestContext;
static void cleanup(GLTestContext* glctx0, GrGLuint texID0, GLTestContext* glctx1,
sk_sp<GrContext> grctx1, GrBackendTexture* backendTex1,
GrEGLImage image1) {
if (glctx1) {
glctx1->makeCurrent();
if (grctx1) {
if (backendTex1 && backendTex1->isValid()) {
grctx1->deleteBackendTexture(*backendTex1);
}
}
if (GR_EGL_NO_IMAGE != image1) {
glctx1->destroyEGLImage(image1);
}
}
glctx0->makeCurrent();
if (texID0) {
GR_GL_CALL(glctx0->gl(), DeleteTextures(1, &texID0));
}
}
DEF_GPUTEST_FOR_GL_RENDERING_CONTEXTS(EGLImageTest, reporter, ctxInfo) {
GrContext* context0 = ctxInfo.grContext();
sk_gpu_test::GLTestContext* glCtx0 = ctxInfo.glContext();
if (kGLES_GrGLStandard != glCtx0->gl()->fStandard) {
return;
}
GrGLGpu* gpu0 = static_cast<GrGLGpu*>(context0->priv().getGpu());
if (!gpu0->glCaps().shaderCaps()->externalTextureSupport()) {
return;
}
std::unique_ptr<GLTestContext> glCtx1 = glCtx0->makeNew();
if (!glCtx1) {
return;
}
sk_sp<GrContext> context1 = GrContext::MakeGL(sk_ref_sp(glCtx1->gl()));
GrBackendTexture backendTexture1;
GrEGLImage image = GR_EGL_NO_IMAGE;
GrGLTextureInfo externalTexture;
externalTexture.fID = 0;
if (!context1) {
cleanup(glCtx0, externalTexture.fID, glCtx1.get(), context1, &backendTexture1, image);
return;
}
if (!glCtx1->gl()->hasExtension("EGL_KHR_image") ||
!glCtx1->gl()->hasExtension("EGL_KHR_gl_texture_2D_image")) {
cleanup(glCtx0, externalTexture.fID, glCtx1.get(), context1, &backendTexture1, image);
return;
}
context1->flush();
static const int kSize = 100;
backendTexture1 =
context1->createBackendTexture(kSize, kSize, kRGBA_8888_SkColorType,
SkColors::kTransparent,
GrMipMapped::kNo, GrRenderable::kNo, GrProtected::kNo);
if (!backendTexture1.isValid()) {
ERRORF(reporter, "Error creating texture for EGL Image");
cleanup(glCtx0, externalTexture.fID, glCtx1.get(), context1, &backendTexture1, image);
return;
}
GrGLTextureInfo texInfo;
if (!backendTexture1.getGLTextureInfo(&texInfo)) {
ERRORF(reporter, "Failed to get GrGLTextureInfo");
return;
}
if (GR_GL_TEXTURE_2D != texInfo.fTarget) {
ERRORF(reporter, "Expected backend texture to be 2D");
cleanup(glCtx0, externalTexture.fID, glCtx1.get(), context1, &backendTexture1, image);
return;
}
image = glCtx1->texture2DToEGLImage(texInfo.fID);
if (GR_EGL_NO_IMAGE == image) {
ERRORF(reporter, "Error creating EGL Image from texture");
cleanup(glCtx0, externalTexture.fID, glCtx1.get(), context1, &backendTexture1, image);
return;
}
GR_GL_CALL(glCtx1->gl(), Finish());
SkAutoTMalloc<uint32_t> pixels(kSize * kSize);
for (int i = 0; i < kSize*kSize; ++i) {
pixels.get()[i] = 0xDDAABBCC;
}
GR_GL_CALL(glCtx1->gl(), ActiveTexture(GR_GL_TEXTURE0));
GR_GL_CALL(glCtx1->gl(), BindTexture(texInfo.fTarget, texInfo.fID));
GR_GL_CALL(glCtx1->gl(), TexSubImage2D(texInfo.fTarget, 0, 0, 0, kSize, kSize,
GR_GL_RGBA, GR_GL_UNSIGNED_BYTE, pixels.get()));
GR_GL_CALL(glCtx1->gl(), Finish());
context1->resetContext();
glCtx0->makeCurrent();
externalTexture.fTarget = GR_GL_TEXTURE_EXTERNAL;
externalTexture.fID = glCtx0->eglImageToExternalTexture(image);
externalTexture.fFormat = GR_GL_RGBA8;
if (0 == externalTexture.fID) {
ERRORF(reporter, "Error converting EGL Image back to texture");
cleanup(glCtx0, externalTexture.fID, glCtx1.get(), context1, &backendTexture1, image);
return;
}
GrBackendTexture backendTex(kSize, kSize, GrMipMapped::kNo, externalTexture);
sk_sp<GrTextureContext> surfaceContext = context0->priv().makeBackendTextureContext(
backendTex, kBottomLeft_GrSurfaceOrigin, GrColorType::kRGBA_8888, kPremul_SkAlphaType,
nullptr);
if (!surfaceContext) {
ERRORF(reporter, "Error wrapping external texture in GrSurfaceContext.");
cleanup(glCtx0, externalTexture.fID, glCtx1.get(), context1, &backendTexture1, image);
return;
}
GrTextureProxy* proxy = surfaceContext->asTextureProxy();
REPORTER_ASSERT(reporter, proxy->mipMapped() == GrMipMapped::kNo);
REPORTER_ASSERT(reporter, proxy->peekTexture()->texturePriv().mipMapped() == GrMipMapped::kNo);
REPORTER_ASSERT(reporter, proxy->textureType() == GrTextureType::kExternal);
REPORTER_ASSERT(reporter,
proxy->peekTexture()->texturePriv().textureType() == GrTextureType::kExternal);
REPORTER_ASSERT(reporter, proxy->hasRestrictedSampling());
REPORTER_ASSERT(reporter, proxy->peekTexture()->texturePriv().hasRestrictedSampling());
{
sk_sp<GrRenderTargetContext> temp = context0->priv().makeBackendTextureRenderTargetContext(
backendTex, kBottomLeft_GrSurfaceOrigin, 1, GrColorType::kRGBA_8888, nullptr);
if (temp) {
ERRORF(reporter, "Should not be able to wrap an EXTERNAL texture as a RT.");
}
}
test_read_pixels(reporter, surfaceContext.get(), pixels.get(), "EGLImageTest-read");
test_write_pixels(reporter, surfaceContext.get(), false, "EGLImageTest-write");
test_copy_from_surface(reporter, context0, surfaceContext->asSurfaceProxy(),
GrColorType::kRGBA_8888, pixels.get(), "EGLImageTest-copy");
cleanup(glCtx0, externalTexture.fID, glCtx1.get(), context1, &backendTexture1, image);
}