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| 1 // Copyright 2014 The Chromium Authors. All rights reserved. | 1 // Copyright 2014 The Chromium Authors. All rights reserved. |
| 2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
| 3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
| 4 | 4 |
| 5 #include "ui/ozone/platform/drm/gpu/gbm_buffer.h" | 5 #include "ui/ozone/platform/drm/gpu/gbm_buffer.h" |
| 6 | 6 |
| 7 #include <drm.h> | 7 #include <drm.h> |
| 8 #include <fcntl.h> | 8 #include <fcntl.h> |
| 9 #include <gbm.h> | 9 #include <gbm.h> |
| 10 #include <xf86drm.h> | 10 #include <xf86drm.h> |
| 11 | 11 |
| 12 #include "base/logging.h" | 12 #include "base/logging.h" |
| 13 #include "base/posix/eintr_wrapper.h" | 13 #include "base/posix/eintr_wrapper.h" |
| 14 #include "base/trace_event/trace_event.h" | 14 #include "base/trace_event/trace_event.h" |
| 15 #include "ui/gfx/geometry/size_conversions.h" | 15 #include "ui/gfx/geometry/size_conversions.h" |
| 16 #include "ui/gfx/native_pixmap_handle_ozone.h" | 16 #include "ui/gfx/native_pixmap_handle_ozone.h" |
| 17 #include "ui/ozone/platform/drm/common/drm_util.h" | 17 #include "ui/ozone/platform/drm/common/drm_util.h" |
| 18 #include "ui/ozone/platform/drm/gpu/drm_window.h" | 18 #include "ui/ozone/platform/drm/gpu/drm_window.h" |
| 19 #include "ui/ozone/platform/drm/gpu/gbm_device.h" | 19 #include "ui/ozone/platform/drm/gpu/gbm_device.h" |
| 20 #include "ui/ozone/platform/drm/gpu/gbm_surface_factory.h" | 20 #include "ui/ozone/platform/drm/gpu/gbm_surface_factory.h" |
| 21 #include "ui/ozone/platform/drm/gpu/gbm_surfaceless.h" | 21 #include "ui/ozone/platform/drm/gpu/gbm_surfaceless.h" |
| 22 | 22 |
| 23 namespace { |
| 24 // Optimal format for rendering on overlay. |
| 25 const gfx::BufferFormat kOverlayRenderFormat = gfx::BufferFormat::UYVY_422; |
| 26 } // namespace |
| 27 |
| 23 namespace ui { | 28 namespace ui { |
| 24 | 29 |
| 25 GbmBuffer::GbmBuffer(const scoped_refptr<GbmDevice>& gbm, | 30 GbmBuffer::GbmBuffer(const scoped_refptr<GbmDevice>& gbm, |
| 26 gbm_bo* bo, | 31 gbm_bo* bo, |
| 27 gfx::BufferUsage usage) | 32 gfx::BufferUsage usage) |
| 28 : GbmBufferBase(gbm, bo, usage == gfx::BufferUsage::SCANOUT), | 33 : GbmBufferBase(gbm, bo, usage == gfx::BufferUsage::SCANOUT), |
| 29 usage_(usage) {} | 34 usage_(usage) {} |
| 30 | 35 |
| 31 GbmBuffer::~GbmBuffer() { | 36 GbmBuffer::~GbmBuffer() { |
| 32 if (bo()) | 37 if (bo()) |
| (...skipping 40 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 73 base::ScopedFD dma_buf(gbm_bo_get_fd(buffer->bo())); | 78 base::ScopedFD dma_buf(gbm_bo_get_fd(buffer->bo())); |
| 74 if (!dma_buf.is_valid()) { | 79 if (!dma_buf.is_valid()) { |
| 75 PLOG(ERROR) << "Failed to export buffer to dma_buf"; | 80 PLOG(ERROR) << "Failed to export buffer to dma_buf"; |
| 76 return false; | 81 return false; |
| 77 } | 82 } |
| 78 Initialize(dma_buf.Pass(), gbm_bo_get_stride(buffer->bo())); | 83 Initialize(dma_buf.Pass(), gbm_bo_get_stride(buffer->bo())); |
| 79 buffer_ = buffer; | 84 buffer_ = buffer; |
| 80 return true; | 85 return true; |
| 81 } | 86 } |
| 82 | 87 |
| 83 void GbmPixmap::SetScalingCallback(const ScalingCallback& scaling_callback) { | 88 void GbmPixmap::SetProcessingCallback( |
| 84 scaling_callback_ = scaling_callback; | 89 const ProcessingCallback& processing_callback) { |
| 90 processing_callback_ = processing_callback; |
| 85 } | 91 } |
| 86 | 92 |
| 87 scoped_refptr<NativePixmap> GbmPixmap::GetScaledPixmap(gfx::Size new_size) { | 93 scoped_refptr<NativePixmap> GbmPixmap::GetProcessedPixmap( |
| 88 return scaling_callback_.Run(new_size); | 94 gfx::Size target_size, |
| 95 gfx::BufferFormat target_format) { |
| 96 return processing_callback_.Run(target_size, target_format); |
| 89 } | 97 } |
| 90 | 98 |
| 91 gfx::NativePixmapHandle GbmPixmap::ExportHandle() { | 99 gfx::NativePixmapHandle GbmPixmap::ExportHandle() { |
| 92 gfx::NativePixmapHandle handle; | 100 gfx::NativePixmapHandle handle; |
| 93 | 101 |
| 94 base::ScopedFD dmabuf_fd(HANDLE_EINTR(dup(dma_buf_.get()))); | 102 base::ScopedFD dmabuf_fd(HANDLE_EINTR(dup(dma_buf_.get()))); |
| 95 if (!dmabuf_fd.is_valid()) { | 103 if (!dmabuf_fd.is_valid()) { |
| 96 PLOG(ERROR) << "dup"; | 104 PLOG(ERROR) << "dup"; |
| 97 return handle; | 105 return handle; |
| 98 } | 106 } |
| (...skipping 11 matching lines...) Expand all Loading... |
| 110 } | 118 } |
| 111 | 119 |
| 112 int GbmPixmap::GetDmaBufFd() { | 120 int GbmPixmap::GetDmaBufFd() { |
| 113 return dma_buf_.get(); | 121 return dma_buf_.get(); |
| 114 } | 122 } |
| 115 | 123 |
| 116 int GbmPixmap::GetDmaBufPitch() { | 124 int GbmPixmap::GetDmaBufPitch() { |
| 117 return dma_buf_pitch_; | 125 return dma_buf_pitch_; |
| 118 } | 126 } |
| 119 | 127 |
| 128 gfx::BufferFormat GbmPixmap::GetBufferFormat() { |
| 129 return GetBufferFormatFromFourCCFormat(buffer_->GetFramebufferPixelFormat()); |
| 130 } |
| 131 |
| 120 bool GbmPixmap::ScheduleOverlayPlane(gfx::AcceleratedWidget widget, | 132 bool GbmPixmap::ScheduleOverlayPlane(gfx::AcceleratedWidget widget, |
| 121 int plane_z_order, | 133 int plane_z_order, |
| 122 gfx::OverlayTransform plane_transform, | 134 gfx::OverlayTransform plane_transform, |
| 123 const gfx::Rect& display_bounds, | 135 const gfx::Rect& display_bounds, |
| 124 const gfx::RectF& crop_rect) { | 136 const gfx::RectF& crop_rect) { |
| 125 gfx::Size required_size; | 137 gfx::Size target_size; |
| 126 if (plane_z_order && | 138 gfx::BufferFormat target_format; |
| 127 ShouldApplyScaling(display_bounds, crop_rect, &required_size)) { | 139 if (plane_z_order && ShouldApplyProcessing(display_bounds, crop_rect, |
| 128 scoped_refptr<NativePixmap> scaled_pixmap = GetScaledPixmap(required_size); | 140 &target_size, &target_format)) { |
| 129 if (scaled_pixmap) { | 141 scoped_refptr<NativePixmap> processed_pixmap = |
| 130 return scaled_pixmap->ScheduleOverlayPlane( | 142 GetProcessedPixmap(target_size, target_format); |
| 143 if (processed_pixmap) { |
| 144 return processed_pixmap->ScheduleOverlayPlane( |
| 131 widget, plane_z_order, plane_transform, display_bounds, crop_rect); | 145 widget, plane_z_order, plane_transform, display_bounds, crop_rect); |
| 132 } else { | 146 } else { |
| 133 return false; | 147 return false; |
| 134 } | 148 } |
| 135 } | 149 } |
| 136 | 150 |
| 137 // TODO(reveman): Add support for imported buffers. crbug.com/541558 | 151 // TODO(reveman): Add support for imported buffers. crbug.com/541558 |
| 138 if (!buffer_) { | 152 if (!buffer_) { |
| 139 PLOG(ERROR) << "ScheduleOverlayPlane requires a buffer."; | 153 PLOG(ERROR) << "ScheduleOverlayPlane requires a buffer."; |
| 140 return false; | 154 return false; |
| 141 } | 155 } |
| 142 | 156 |
| 143 DCHECK(buffer_->GetUsage() == gfx::BufferUsage::SCANOUT); | 157 DCHECK(buffer_->GetUsage() == gfx::BufferUsage::SCANOUT); |
| 144 surface_manager_->GetSurface(widget)->QueueOverlayPlane(OverlayPlane( | 158 surface_manager_->GetSurface(widget)->QueueOverlayPlane(OverlayPlane( |
| 145 buffer_, plane_z_order, plane_transform, display_bounds, crop_rect)); | 159 buffer_, plane_z_order, plane_transform, display_bounds, crop_rect)); |
| 146 return true; | 160 return true; |
| 147 } | 161 } |
| 148 | 162 |
| 149 bool GbmPixmap::ShouldApplyScaling(const gfx::Rect& display_bounds, | 163 bool GbmPixmap::ShouldApplyProcessing(const gfx::Rect& display_bounds, |
| 150 const gfx::RectF& crop_rect, | 164 const gfx::RectF& crop_rect, |
| 151 gfx::Size* required_size) { | 165 gfx::Size* target_size, |
| 166 gfx::BufferFormat* target_format) { |
| 152 if (crop_rect.width() == 0 || crop_rect.height() == 0) { | 167 if (crop_rect.width() == 0 || crop_rect.height() == 0) { |
| 153 PLOG(ERROR) << "ShouldApplyScaling passed zero scaling target."; | 168 PLOG(ERROR) << "ShouldApplyProcessing passed zero processing target."; |
| 154 return false; | 169 return false; |
| 155 } | 170 } |
| 156 | 171 |
| 157 if (!buffer_) { | 172 if (!buffer_) { |
| 158 PLOG(ERROR) << "ShouldApplyScaling requires a buffer."; | 173 PLOG(ERROR) << "ShouldApplyProcessing requires a buffer."; |
| 159 return false; | 174 return false; |
| 160 } | 175 } |
| 161 | 176 |
| 177 // TODO(william.xie): Figure out the optimal render format for overlay. |
| 178 // See http://crbug.com/553264. |
| 179 *target_format = kOverlayRenderFormat; |
| 162 gfx::Size pixmap_size = buffer_->GetSize(); | 180 gfx::Size pixmap_size = buffer_->GetSize(); |
| 163 // If the required size is not integer-sized, round it to the next integer. | 181 // If the required size is not integer-sized, round it to the next integer. |
| 164 *required_size = gfx::ToCeiledSize( | 182 *target_size = gfx::ToCeiledSize( |
| 165 gfx::SizeF(display_bounds.width() / crop_rect.width(), | 183 gfx::SizeF(display_bounds.width() / crop_rect.width(), |
| 166 display_bounds.height() / crop_rect.height())); | 184 display_bounds.height() / crop_rect.height())); |
| 167 return pixmap_size != *required_size; | 185 |
| 186 return pixmap_size != *target_size || GetBufferFormat() != *target_format; |
| 168 } | 187 } |
| 169 | 188 |
| 170 } // namespace ui | 189 } // namespace ui |
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