blob: f8d84213d7d2443f309d9d72a376d51104080377 [file] [log] [blame]
// Copyright 2016 The Chromium Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
#include "ui/ozone/platform/wayland/wayland_surface_factory.h"
#include <fcntl.h>
#include <sys/mman.h>
#include <wayland-client.h>
#include "base/memory/shared_memory.h"
#include "third_party/skia/include/core/SkSurface.h"
#include "ui/gfx/vsync_provider.h"
#include "ui/ozone/platform/wayland/wayland_display.h"
#include "ui/ozone/platform/wayland/wayland_object.h"
#include "ui/ozone/platform/wayland/wayland_window.h"
#include "ui/ozone/public/surface_ozone_canvas.h"
#include "ui/ozone/public/surface_ozone_egl.h"
namespace ui {
static void DeleteSharedMemory(void* pixels, void* context) {
delete static_cast<base::SharedMemory*>(context);
}
class WaylandCanvasSurface : public SurfaceOzoneCanvas {
public:
WaylandCanvasSurface(WaylandDisplay* display, WaylandWindow* window_);
~WaylandCanvasSurface() override;
// SurfaceOzoneCanvas
skia::RefPtr<SkSurface> GetSurface() override;
void ResizeCanvas(const gfx::Size& viewport_size) override;
void PresentCanvas(const gfx::Rect& damage) override;
scoped_ptr<gfx::VSyncProvider> CreateVSyncProvider() override;
private:
WaylandDisplay* display_;
WaylandWindow* window_;
gfx::Size size_;
skia::RefPtr<SkSurface> sk_surface_;
wl::Object<wl_shm_pool> pool_;
wl::Object<wl_buffer> buffer_;
DISALLOW_COPY_AND_ASSIGN(WaylandCanvasSurface);
};
WaylandCanvasSurface::WaylandCanvasSurface(WaylandDisplay* display,
WaylandWindow* window)
: display_(display), window_(window), size_(window->GetBounds().size()) {}
WaylandCanvasSurface::~WaylandCanvasSurface() {}
skia::RefPtr<SkSurface> WaylandCanvasSurface::GetSurface() {
if (sk_surface_)
return sk_surface_;
size_t length = size_.width() * size_.height() * 4;
auto shared_memory = make_scoped_ptr(new base::SharedMemory);
if (!shared_memory->CreateAndMapAnonymous(length))
return nullptr;
wl::Object<wl_shm_pool> pool(
wl_shm_create_pool(display_->shm(), shared_memory->handle().fd, length));
if (!pool)
return nullptr;
wl::Object<wl_buffer> buffer(
wl_shm_pool_create_buffer(pool.get(), 0, size_.width(), size_.height(),
size_.width() * 4, WL_SHM_FORMAT_ARGB8888));
if (!buffer)
return nullptr;
sk_surface_ = skia::AdoptRef(SkSurface::NewRasterDirectReleaseProc(
SkImageInfo::MakeN32Premul(size_.width(), size_.height()),
shared_memory->memory(), size_.width() * 4, &DeleteSharedMemory,
shared_memory.get(), nullptr));
if (!sk_surface_)
return nullptr;
pool_ = std::move(pool);
buffer_ = std::move(buffer);
(void)shared_memory.release();
return sk_surface_;
}
void WaylandCanvasSurface::ResizeCanvas(const gfx::Size& viewport_size) {
if (size_ == viewport_size)
return;
// TODO(forney): We could implement more efficient resizes by allocating
// buffers rounded up to larger sizes, and then reusing them if the new size
// still fits (but still reallocate if the new size is much smaller than the
// old size).
if (sk_surface_) {
sk_surface_.clear();
buffer_.reset();
pool_.reset();
}
size_ = viewport_size;
}
void WaylandCanvasSurface::PresentCanvas(const gfx::Rect& damage) {
// TODO(forney): This is just a naive implementation that allows chromium to
// draw to the buffer at any time, even if it is being used by the Wayland
// compositor. Instead, we should track buffer releases and frame callbacks
// from Wayland to ensure perfect frames (while minimizing copies).
wl_surface* surface = window_->surface();
wl_surface_damage(surface, damage.x(), damage.y(), damage.width(),
damage.height());
wl_surface_attach(surface, buffer_.get(), 0, 0);
wl_surface_commit(surface);
display_->Flush();
}
scoped_ptr<gfx::VSyncProvider> WaylandCanvasSurface::CreateVSyncProvider() {
// TODO(forney): This can be implemented with information from frame
// callbacks, and possibly output refresh rate.
NOTIMPLEMENTED();
return nullptr;
}
WaylandSurfaceFactory::WaylandSurfaceFactory(WaylandDisplay* display)
: display_(display) {}
WaylandSurfaceFactory::~WaylandSurfaceFactory() {}
intptr_t WaylandSurfaceFactory::GetNativeDisplay() {
NOTIMPLEMENTED();
return 0;
}
bool WaylandSurfaceFactory::LoadEGLGLES2Bindings(
AddGLLibraryCallback add_gl_library,
SetGLGetProcAddressProcCallback set_gl_get_proc_address) {
// This Ozone implementation does not support multi-process rendering so
// disable EGL unconditionally for now.
return false;
}
scoped_ptr<SurfaceOzoneCanvas> WaylandSurfaceFactory::CreateCanvasForWidget(
gfx::AcceleratedWidget widget) {
DCHECK(display_);
WaylandWindow* window = display_->GetWindow(widget);
DCHECK(window);
return make_scoped_ptr(new WaylandCanvasSurface(display_, window));
}
scoped_ptr<SurfaceOzoneEGL> WaylandSurfaceFactory::CreateEGLSurfaceForWidget(
gfx::AcceleratedWidget widget) {
NOTREACHED();
return nullptr;
}
scoped_refptr<NativePixmap> WaylandSurfaceFactory::CreateNativePixmap(
gfx::AcceleratedWidget widget,
gfx::Size size,
gfx::BufferFormat format,
gfx::BufferUsage usage) {
NOTIMPLEMENTED();
return nullptr;
}
scoped_refptr<NativePixmap> WaylandSurfaceFactory::CreateNativePixmapFromHandle(
gfx::Size size,
gfx::BufferFormat format,
const gfx::NativePixmapHandle& handle) {
NOTIMPLEMENTED();
return nullptr;
}
} // namespace ui