Flutter Impeller
content_context.cc
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1 // Copyright 2013 The Flutter Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file.
4 
6 
7 #include <format>
8 #include <memory>
9 #include <utility>
10 
11 #include "fml/trace_event.h"
13 #include "impeller/core/formats.h"
18 #include "impeller/entity/entity.h"
28 
29 namespace impeller {
30 
31 namespace {
32 
33 /// A generic version of `Variants` which mostly exists to reduce code size.
34 class GenericVariants {
35  public:
36  void Set(const ContentContextOptions& options,
37  std::unique_ptr<GenericRenderPipelineHandle> pipeline) {
38  uint64_t p_key = options.ToKey();
39  for (const auto& [key, pipeline] : pipelines_) {
40  if (key == p_key) {
41  return;
42  }
43  }
44  pipelines_.push_back(std::make_pair(p_key, std::move(pipeline)));
45  }
46 
47  void SetDefault(const ContentContextOptions& options,
48  std::unique_ptr<GenericRenderPipelineHandle> pipeline) {
49  default_options_ = options;
50  if (pipeline) {
51  Set(options, std::move(pipeline));
52  }
53  }
54 
55  GenericRenderPipelineHandle* Get(const ContentContextOptions& options) const {
56  uint64_t p_key = options.ToKey();
57  for (const auto& [key, pipeline] : pipelines_) {
58  if (key == p_key) {
59  return pipeline.get();
60  }
61  }
62  return nullptr;
63  }
64 
65  void SetDefaultDescriptor(std::optional<PipelineDescriptor> desc) {
66  desc_ = std::move(desc);
67  }
68 
69  size_t GetPipelineCount() const { return pipelines_.size(); }
70 
71  bool IsDefault(const ContentContextOptions& opts) {
72  return default_options_.has_value() &&
73  opts.ToKey() == default_options_.value().ToKey();
74  }
75 
76  protected:
77  std::optional<PipelineDescriptor> desc_;
78  std::optional<ContentContextOptions> default_options_;
79  std::vector<std::pair<uint64_t, std::unique_ptr<GenericRenderPipelineHandle>>>
81 };
82 
83 /// Holds multiple Pipelines associated with the same PipelineHandle types.
84 ///
85 /// For example, it may have multiple
86 /// RenderPipelineHandle<SolidFillVertexShader, SolidFillFragmentShader>
87 /// instances for different blend modes. From them you can access the
88 /// Pipeline.
89 ///
90 /// See also:
91 /// - impeller::ContentContextOptions - options from which variants are
92 /// created.
93 /// - impeller::Pipeline::CreateVariant
94 /// - impeller::RenderPipelineHandle<> - The type of objects this typically
95 /// contains.
96 template <class PipelineHandleT>
97 class Variants : public GenericVariants {
98  static_assert(
99  ShaderStageCompatibilityChecker<
100  typename PipelineHandleT::VertexShader,
101  typename PipelineHandleT::FragmentShader>::Check(),
102  "The output slots for the fragment shader don't have matches in the "
103  "vertex shader's output slots. This will result in a linker error.");
104 
105  public:
106  Variants() = default;
107 
108  void Set(const ContentContextOptions& options,
109  std::unique_ptr<PipelineHandleT> pipeline) {
110  GenericVariants::Set(options, std::move(pipeline));
111  }
112 
113  void SetDefault(const ContentContextOptions& options,
114  std::unique_ptr<PipelineHandleT> pipeline) {
115  GenericVariants::SetDefault(options, std::move(pipeline));
116  }
117 
118  void CreateDefault(const Context& context,
119  const ContentContextOptions& options,
120  const std::vector<Scalar>& constants = {}) {
121  std::optional<PipelineDescriptor> desc =
122  PipelineHandleT::Builder::MakeDefaultPipelineDescriptor(context,
123  constants);
124  if (!desc.has_value()) {
125  VALIDATION_LOG << "Failed to create default pipeline.";
126  return;
127  }
128  options.ApplyToPipelineDescriptor(*desc);
129  desc_ = desc;
130  if (context.GetFlags().lazy_shader_mode) {
131  SetDefault(options, nullptr);
132  } else {
133  SetDefault(options, std::make_unique<PipelineHandleT>(context, desc_,
134  /*async=*/true));
135  }
136  }
137 
138  PipelineHandleT* Get(const ContentContextOptions& options) const {
139  return static_cast<PipelineHandleT*>(GenericVariants::Get(options));
140  }
141 
142  PipelineHandleT* GetDefault(const Context& context) {
143  if (!default_options_.has_value()) {
144  return nullptr;
145  }
146  PipelineHandleT* result = Get(default_options_.value());
147  if (result != nullptr) {
148  return result;
149  }
150  SetDefault(default_options_.value(), std::make_unique<PipelineHandleT>(
151  context, desc_, /*async=*/false));
152  // NOLINTNEXTLINE(bugprone-unchecked-optional-access)
153  return Get(default_options_.value());
154  }
155 
156  private:
157  Variants(const Variants&) = delete;
158 
159  Variants& operator=(const Variants&) = delete;
160 };
161 
162 template <class RenderPipelineHandleT>
163 RenderPipelineHandleT* CreateIfNeeded(
164  const ContentContext* context,
165  Variants<RenderPipelineHandleT>& container,
166  ContentContextOptions opts) {
167  if (!context->IsValid()) {
168  return nullptr;
169  }
170 
171  if (RenderPipelineHandleT* found = container.Get(opts)) {
172  return found;
173  }
174 
175  RenderPipelineHandleT* default_handle =
176  container.GetDefault(*context->GetContext());
177  if (container.IsDefault(opts)) {
178  return default_handle;
179  }
180 
181  // The default must always be initialized in the constructor.
182  FML_CHECK(default_handle != nullptr);
183 
184  const std::shared_ptr<Pipeline<PipelineDescriptor>>& pipeline =
185  default_handle->WaitAndGet();
186  if (!pipeline) {
187  return nullptr;
188  }
189 
190  auto variant_future = pipeline->CreateVariant(
191  /*async=*/false, [&opts, variants_count = container.GetPipelineCount()](
192  PipelineDescriptor& desc) {
193  opts.ApplyToPipelineDescriptor(desc);
194  desc.SetLabel(std::format("{} V#{}", desc.GetLabel(), variants_count));
195  });
196  std::unique_ptr<RenderPipelineHandleT> variant =
197  std::make_unique<RenderPipelineHandleT>(std::move(variant_future));
198  container.Set(opts, std::move(variant));
199  return container.Get(opts);
200 }
201 
202 template <class TypedPipeline>
203 PipelineRef GetPipeline(const ContentContext* context,
204  Variants<TypedPipeline>& container,
205  ContentContextOptions opts) {
206  TypedPipeline* pipeline = CreateIfNeeded(context, container, opts);
207  if (!pipeline) {
208  return raw_ptr<Pipeline<PipelineDescriptor>>();
209  }
210  return raw_ptr(pipeline->WaitAndGet());
211 }
212 
213 } // namespace
214 
216  // clang-format off
217  Variants<BlendColorBurnPipeline> blend_colorburn;
218  Variants<BlendColorDodgePipeline> blend_colordodge;
219  Variants<BlendColorPipeline> blend_color;
220  Variants<BlendDarkenPipeline> blend_darken;
221  Variants<BlendDifferencePipeline> blend_difference;
222  Variants<BlendExclusionPipeline> blend_exclusion;
223  Variants<BlendHardLightPipeline> blend_hardlight;
224  Variants<BlendHuePipeline> blend_hue;
225  Variants<BlendLightenPipeline> blend_lighten;
226  Variants<BlendLuminosityPipeline> blend_luminosity;
227  Variants<BlendMultiplyPipeline> blend_multiply;
228  Variants<BlendOverlayPipeline> blend_overlay;
229  Variants<BlendSaturationPipeline> blend_saturation;
230  Variants<BlendScreenPipeline> blend_screen;
231  Variants<BlendSoftLightPipeline> blend_softlight;
232  Variants<BorderMaskBlurPipeline> border_mask_blur;
233  Variants<CirclePipeline> circle;
234  Variants<ClipPipeline> clip;
235  Variants<ColorMatrixColorFilterPipeline> color_matrix_color_filter;
236  Variants<ConicalGradientFillConicalPipeline> conical_gradient_fill;
237  Variants<ConicalGradientFillRadialPipeline> conical_gradient_fill_radial;
238  Variants<ConicalGradientFillStripPipeline> conical_gradient_fill_strip;
239  Variants<ConicalGradientFillStripRadialPipeline> conical_gradient_fill_strip_and_radial;
240  Variants<ConicalGradientSSBOFillPipeline> conical_gradient_ssbo_fill;
241  Variants<ConicalGradientSSBOFillPipeline> conical_gradient_ssbo_fill_radial;
242  Variants<ConicalGradientSSBOFillPipeline> conical_gradient_ssbo_fill_strip_and_radial;
243  Variants<ConicalGradientSSBOFillPipeline> conical_gradient_ssbo_fill_strip;
244  Variants<ConicalGradientUniformFillConicalPipeline> conical_gradient_uniform_fill;
245  Variants<ConicalGradientUniformFillRadialPipeline> conical_gradient_uniform_fill_radial;
246  Variants<ConicalGradientUniformFillStripPipeline> conical_gradient_uniform_fill_strip;
247  Variants<ConicalGradientUniformFillStripRadialPipeline> conical_gradient_uniform_fill_strip_and_radial;
248  Variants<FastGradientPipeline> fast_gradient;
249  Variants<FramebufferBlendColorBurnPipeline> framebuffer_blend_colorburn;
250  Variants<FramebufferBlendColorDodgePipeline> framebuffer_blend_colordodge;
251  Variants<FramebufferBlendColorPipeline> framebuffer_blend_color;
252  Variants<FramebufferBlendDarkenPipeline> framebuffer_blend_darken;
253  Variants<FramebufferBlendDifferencePipeline> framebuffer_blend_difference;
254  Variants<FramebufferBlendExclusionPipeline> framebuffer_blend_exclusion;
255  Variants<FramebufferBlendHardLightPipeline> framebuffer_blend_hardlight;
256  Variants<FramebufferBlendHuePipeline> framebuffer_blend_hue;
257  Variants<FramebufferBlendLightenPipeline> framebuffer_blend_lighten;
258  Variants<FramebufferBlendLuminosityPipeline> framebuffer_blend_luminosity;
259  Variants<FramebufferBlendMultiplyPipeline> framebuffer_blend_multiply;
260  Variants<FramebufferBlendOverlayPipeline> framebuffer_blend_overlay;
261  Variants<FramebufferBlendSaturationPipeline> framebuffer_blend_saturation;
262  Variants<FramebufferBlendScreenPipeline> framebuffer_blend_screen;
263  Variants<FramebufferBlendSoftLightPipeline> framebuffer_blend_softlight;
264  Variants<GaussianBlurPipeline> gaussian_blur;
265  Variants<GlyphAtlasPipeline> glyph_atlas;
266  Variants<LinePipeline> line;
267  Variants<LinearGradientFillPipeline> linear_gradient_fill;
268  Variants<LinearGradientSSBOFillPipeline> linear_gradient_ssbo_fill;
269  Variants<LinearGradientUniformFillPipeline> linear_gradient_uniform_fill;
270  Variants<LinearToSrgbFilterPipeline> linear_to_srgb_filter;
271  Variants<MorphologyFilterPipeline> morphology_filter;
272  Variants<PorterDuffBlendPipeline> clear_blend;
273  Variants<PorterDuffBlendPipeline> destination_a_top_blend;
274  Variants<PorterDuffBlendPipeline> destination_blend;
275  Variants<PorterDuffBlendPipeline> destination_in_blend;
276  Variants<PorterDuffBlendPipeline> destination_out_blend;
277  Variants<PorterDuffBlendPipeline> destination_over_blend;
278  Variants<PorterDuffBlendPipeline> modulate_blend;
279  Variants<PorterDuffBlendPipeline> plus_blend;
280  Variants<PorterDuffBlendPipeline> screen_blend;
281  Variants<PorterDuffBlendPipeline> source_a_top_blend;
282  Variants<PorterDuffBlendPipeline> source_blend;
283  Variants<PorterDuffBlendPipeline> source_in_blend;
284  Variants<PorterDuffBlendPipeline> source_out_blend;
285  Variants<PorterDuffBlendPipeline> source_over_blend;
286  Variants<PorterDuffBlendPipeline> xor_blend;
287  Variants<RadialGradientFillPipeline> radial_gradient_fill;
288  Variants<RadialGradientSSBOFillPipeline> radial_gradient_ssbo_fill;
289  Variants<RadialGradientUniformFillPipeline> radial_gradient_uniform_fill;
290  Variants<RRectBlurPipeline> rrect_blur;
291  Variants<RSuperellipseBlurPipeline> rsuperellipse_blur;
292  Variants<SolidFillPipeline> solid_fill;
293  Variants<SrgbToLinearFilterPipeline> srgb_to_linear_filter;
294  Variants<SweepGradientFillPipeline> sweep_gradient_fill;
295  Variants<SweepGradientSSBOFillPipeline> sweep_gradient_ssbo_fill;
296  Variants<SweepGradientUniformFillPipeline> sweep_gradient_uniform_fill;
297  Variants<TextureDownsamplePipeline> texture_downsample;
298  Variants<TexturePipeline> texture;
299  Variants<TextureStrictSrcPipeline> texture_strict_src;
300  Variants<TiledTexturePipeline> tiled_texture;
301  Variants<VerticesUber1Shader> vertices_uber_1_;
302  Variants<VerticesUber2Shader> vertices_uber_2_;
303  Variants<YUVToRGBFilterPipeline> yuv_to_rgb_filter;
304 
305 #ifdef IMPELLER_ENABLE_OPENGLES
306  Variants<TiledTextureExternalPipeline> tiled_texture_external;
307  Variants<TextureDownsampleGlesPipeline> texture_downsample_gles;
308  Variants<TiledTextureUvExternalPipeline> tiled_texture_uv_external;
309 #endif // IMPELLER_ENABLE_OPENGLES
310  // clang-format on
311 };
312 
314  PipelineDescriptor& desc) const {
315  auto pipeline_blend = blend_mode;
317  VALIDATION_LOG << "Cannot use blend mode " << static_cast<int>(blend_mode)
318  << " as a pipeline blend.";
319  pipeline_blend = BlendMode::kSrcOver;
320  }
321 
323 
329 
330  switch (pipeline_blend) {
331  case BlendMode::kClear:
339  } else {
344  }
345  break;
346  case BlendMode::kSrc:
347  color0.blending_enabled = false;
352  break;
353  case BlendMode::kDst:
359  break;
360  case BlendMode::kSrcOver:
365  break;
366  case BlendMode::kDstOver:
371  break;
372  case BlendMode::kSrcIn:
377  break;
378  case BlendMode::kDstIn:
383  break;
384  case BlendMode::kSrcOut:
389  break;
390  case BlendMode::kDstOut:
395  break;
396  case BlendMode::kSrcATop:
401  break;
402  case BlendMode::kDstATop:
407  break;
408  case BlendMode::kXor:
413  break;
414  case BlendMode::kPlus:
419  break;
425  break;
426  default:
427  FML_UNREACHABLE();
428  }
429  desc.SetColorAttachmentDescriptor(0u, color0);
430 
432  desc.ClearDepthAttachment();
434  }
435 
436  auto maybe_stencil = desc.GetFrontStencilAttachmentDescriptor();
437  auto maybe_depth = desc.GetDepthStencilAttachmentDescriptor();
438  FML_DCHECK(has_depth_stencil_attachments == maybe_depth.has_value())
439  << "Depth attachment doesn't match expected pipeline state. "
440  "has_depth_stencil_attachments="
442  FML_DCHECK(has_depth_stencil_attachments == maybe_stencil.has_value())
443  << "Stencil attachment doesn't match expected pipeline state. "
444  "has_depth_stencil_attachments="
446  if (maybe_stencil.has_value()) {
447  StencilAttachmentDescriptor front_stencil = maybe_stencil.value();
448  StencilAttachmentDescriptor back_stencil = front_stencil;
449 
450  switch (stencil_mode) {
454  desc.SetStencilAttachmentDescriptors(front_stencil);
455  break;
457  // The stencil ref should be 0 on commands that use this mode.
462  desc.SetStencilAttachmentDescriptors(front_stencil, back_stencil);
463  break;
465  // The stencil ref should be 0 on commands that use this mode.
469  desc.SetStencilAttachmentDescriptors(front_stencil);
470  break;
472  // The stencil ref should be 0 on commands that use this mode.
474  front_stencil.depth_stencil_pass =
476  desc.SetStencilAttachmentDescriptors(front_stencil);
477  break;
479  // The stencil ref should be 0 on commands that use this mode.
482  desc.SetStencilAttachmentDescriptors(front_stencil);
483  break;
487  desc.SetStencilAttachmentDescriptors(front_stencil);
488  break;
490  front_stencil.stencil_compare = CompareFunction::kLess;
491  front_stencil.depth_stencil_pass =
493  desc.SetStencilAttachmentDescriptors(front_stencil);
494  break;
495  }
496  }
497  if (maybe_depth.has_value()) {
498  DepthAttachmentDescriptor depth = maybe_depth.value();
502  }
503 
506 }
507 
508 std::array<std::vector<Scalar>, 15> GetPorterDuffSpecConstants(
509  bool supports_decal) {
510  Scalar x = supports_decal ? 1 : 0;
511  return {{
512  {x, 0, 0, 0, 0, 0}, // Clear
513  {x, 1, 0, 0, 0, 0}, // Source
514  {x, 0, 0, 1, 0, 0}, // Destination
515  {x, 1, 0, 1, -1, 0}, // SourceOver
516  {x, 1, -1, 1, 0, 0}, // DestinationOver
517  {x, 0, 1, 0, 0, 0}, // SourceIn
518  {x, 0, 0, 0, 1, 0}, // DestinationIn
519  {x, 1, -1, 0, 0, 0}, // SourceOut
520  {x, 0, 0, 1, -1, 0}, // DestinationOut
521  {x, 0, 1, 1, -1, 0}, // SourceATop
522  {x, 1, -1, 0, 1, 0}, // DestinationATop
523  {x, 1, -1, 1, -1, 0}, // Xor
524  {x, 1, 0, 1, 0, 0}, // Plus
525  {x, 0, 0, 0, 0, 1}, // Modulate
526  {x, 0, 0, 1, 0, -1}, // Screen
527  }};
528 }
529 
530 template <typename PipelineT>
531 static std::unique_ptr<PipelineT> CreateDefaultPipeline(
532  const Context& context) {
533  auto desc = PipelineT::Builder::MakeDefaultPipelineDescriptor(context);
534  if (!desc.has_value()) {
535  return nullptr;
536  }
537  // Apply default ContentContextOptions to the descriptor.
538  const auto default_color_format =
539  context.GetCapabilities()->GetDefaultColorFormat();
541  .primitive_type = PrimitiveType::kTriangleStrip,
542  .color_attachment_pixel_format = default_color_format}
543  .ApplyToPipelineDescriptor(*desc);
544  return std::make_unique<PipelineT>(context, desc);
545 }
546 
548  std::shared_ptr<Context> context,
549  std::shared_ptr<TypographerContext> typographer_context,
550  std::shared_ptr<RenderTargetAllocator> render_target_allocator)
551  : context_(std::move(context)),
552  lazy_glyph_atlas_(
553  std::make_shared<LazyGlyphAtlas>(std::move(typographer_context))),
554  pipelines_(new Pipelines()),
555  tessellator_(std::make_shared<Tessellator>(
556  context_->GetCapabilities()->Supports32BitPrimitiveIndices())),
557  render_target_cache_(render_target_allocator == nullptr
558  ? std::make_shared<RenderTargetCache>(
559  context_->GetResourceAllocator())
560  : std::move(render_target_allocator)),
561  data_host_buffer_(HostBuffer::Create(
562  context_->GetResourceAllocator(),
563  context_->GetIdleWaiter(),
564  context_->GetCapabilities()->GetMinimumUniformAlignment())),
565  text_shadow_cache_(std::make_unique<TextShadowCache>()) {
566  if (!context_ || !context_->IsValid()) {
567  return;
568  }
569 
570  // On most backends, indexes and other data can be allocated into the same
571  // buffers. However, some backends (namely WebGL) require indexes used in
572  // indexed draws to be allocated separately from other data. For those
573  // backends, we allocate a separate host buffer just for indexes.
574  indexes_host_buffer_ =
575  context_->GetCapabilities()->NeedsPartitionedHostBuffer()
577  context_->GetResourceAllocator(), context_->GetIdleWaiter(),
578  context_->GetCapabilities()->GetMinimumUniformAlignment())
579  : data_host_buffer_;
580  {
581  TextureDescriptor desc;
584  desc.size = ISize{1, 1};
585  empty_texture_ = GetContext()->GetResourceAllocator()->CreateTexture(desc);
586 
587  std::array<uint8_t, 4> data = Color::BlackTransparent().ToR8G8B8A8();
588  std::shared_ptr<CommandBuffer> cmd_buffer =
589  GetContext()->CreateCommandBuffer();
590  std::shared_ptr<BlitPass> blit_pass = cmd_buffer->CreateBlitPass();
591  HostBuffer& data_host_buffer = GetTransientsDataBuffer();
592  BufferView buffer_view = data_host_buffer.Emplace(data);
593  blit_pass->AddCopy(buffer_view, empty_texture_);
594 
595  if (!blit_pass->EncodeCommands() || !GetContext()
596  ->GetCommandQueue()
597  ->Submit({std::move(cmd_buffer)})
598  .ok()) {
599  VALIDATION_LOG << "Failed to create empty texture.";
600  }
601  }
602 
603  auto options = ContentContextOptions{
605  .color_attachment_pixel_format =
606  context_->GetCapabilities()->GetDefaultColorFormat()};
607  auto options_trianglestrip = ContentContextOptions{
609  .primitive_type = PrimitiveType::kTriangleStrip,
610  .color_attachment_pixel_format =
611  context_->GetCapabilities()->GetDefaultColorFormat()};
612  auto options_no_msaa_no_depth_stencil = ContentContextOptions{
614  .primitive_type = PrimitiveType::kTriangleStrip,
615  .color_attachment_pixel_format =
616  context_->GetCapabilities()->GetDefaultColorFormat(),
617  .has_depth_stencil_attachments = false};
618  const auto supports_decal = static_cast<Scalar>(
619  context_->GetCapabilities()->SupportsDecalSamplerAddressMode());
620 
621  // Futures for the following pipelines may block in case the first frame is
622  // rendered without the pipelines being ready. Put pipelines that are more
623  // likely to be used first.
624  {
625  pipelines_->glyph_atlas.CreateDefault(
626  *context_, options,
627  {static_cast<Scalar>(
628  GetContext()->GetCapabilities()->GetDefaultGlyphAtlasFormat() ==
630  pipelines_->solid_fill.CreateDefault(*context_, options);
631  pipelines_->texture.CreateDefault(*context_, options);
632  pipelines_->fast_gradient.CreateDefault(*context_, options);
633  pipelines_->line.CreateDefault(*context_, options);
634  pipelines_->circle.CreateDefault(*context_, options);
635 
636  if (context_->GetCapabilities()->SupportsSSBO()) {
637  pipelines_->linear_gradient_ssbo_fill.CreateDefault(*context_, options);
638  pipelines_->radial_gradient_ssbo_fill.CreateDefault(*context_, options);
639  pipelines_->conical_gradient_ssbo_fill.CreateDefault(*context_, options,
640  {3.0});
641  pipelines_->conical_gradient_ssbo_fill_radial.CreateDefault(
642  *context_, options, {1.0});
643  pipelines_->conical_gradient_ssbo_fill_strip.CreateDefault(
644  *context_, options, {2.0});
645  pipelines_->conical_gradient_ssbo_fill_strip_and_radial.CreateDefault(
646  *context_, options, {0.0});
647  pipelines_->sweep_gradient_ssbo_fill.CreateDefault(*context_, options);
648  } else {
649  pipelines_->linear_gradient_uniform_fill.CreateDefault(*context_,
650  options);
651  pipelines_->radial_gradient_uniform_fill.CreateDefault(*context_,
652  options);
653  pipelines_->conical_gradient_uniform_fill.CreateDefault(*context_,
654  options);
655  pipelines_->conical_gradient_uniform_fill_radial.CreateDefault(*context_,
656  options);
657  pipelines_->conical_gradient_uniform_fill_strip.CreateDefault(*context_,
658  options);
659  pipelines_->conical_gradient_uniform_fill_strip_and_radial.CreateDefault(
660  *context_, options);
661  pipelines_->sweep_gradient_uniform_fill.CreateDefault(*context_, options);
662 
663  pipelines_->linear_gradient_fill.CreateDefault(*context_, options);
664  pipelines_->radial_gradient_fill.CreateDefault(*context_, options);
665  pipelines_->conical_gradient_fill.CreateDefault(*context_, options);
666  pipelines_->conical_gradient_fill_radial.CreateDefault(*context_,
667  options);
668  pipelines_->conical_gradient_fill_strip.CreateDefault(*context_, options);
669  pipelines_->conical_gradient_fill_strip_and_radial.CreateDefault(
670  *context_, options);
671  pipelines_->sweep_gradient_fill.CreateDefault(*context_, options);
672  }
673 
674  /// Setup default clip pipeline.
675  auto clip_pipeline_descriptor =
677  if (!clip_pipeline_descriptor.has_value()) {
678  return;
679  }
682  .color_attachment_pixel_format =
683  context_->GetCapabilities()->GetDefaultColorFormat()}
684  .ApplyToPipelineDescriptor(*clip_pipeline_descriptor);
685  // Disable write to all color attachments.
686  auto clip_color_attachments =
687  clip_pipeline_descriptor->GetColorAttachmentDescriptors();
688  for (auto& color_attachment : clip_color_attachments) {
689  color_attachment.second.write_mask = ColorWriteMaskBits::kNone;
690  }
691  clip_pipeline_descriptor->SetColorAttachmentDescriptors(
692  std::move(clip_color_attachments));
693  if (GetContext()->GetFlags().lazy_shader_mode) {
694  pipelines_->clip.SetDefaultDescriptor(clip_pipeline_descriptor);
695  pipelines_->clip.SetDefault(options, nullptr);
696  } else {
697  pipelines_->clip.SetDefault(
698  options,
699  std::make_unique<ClipPipeline>(*context_, clip_pipeline_descriptor));
700  }
701  pipelines_->texture_downsample.CreateDefault(
702  *context_, options_no_msaa_no_depth_stencil);
703  pipelines_->rrect_blur.CreateDefault(*context_, options_trianglestrip);
704  pipelines_->rsuperellipse_blur.CreateDefault(*context_,
705  options_trianglestrip);
706  pipelines_->texture_strict_src.CreateDefault(*context_, options);
707  pipelines_->tiled_texture.CreateDefault(*context_, options,
708  {supports_decal});
709  pipelines_->gaussian_blur.CreateDefault(
710  *context_, options_no_msaa_no_depth_stencil, {supports_decal});
711  pipelines_->border_mask_blur.CreateDefault(*context_,
712  options_trianglestrip);
713  pipelines_->color_matrix_color_filter.CreateDefault(*context_,
714  options_trianglestrip);
715  pipelines_->vertices_uber_1_.CreateDefault(*context_, options,
716  {supports_decal});
717  pipelines_->vertices_uber_2_.CreateDefault(*context_, options,
718  {supports_decal});
719 
720  const std::array<std::vector<Scalar>, 15> porter_duff_constants =
721  GetPorterDuffSpecConstants(supports_decal);
722  pipelines_->clear_blend.CreateDefault(*context_, options_trianglestrip,
723  porter_duff_constants[0]);
724  pipelines_->source_blend.CreateDefault(*context_, options_trianglestrip,
725  porter_duff_constants[1]);
726  pipelines_->destination_blend.CreateDefault(
727  *context_, options_trianglestrip, porter_duff_constants[2]);
728  pipelines_->source_over_blend.CreateDefault(
729  *context_, options_trianglestrip, porter_duff_constants[3]);
730  pipelines_->destination_over_blend.CreateDefault(
731  *context_, options_trianglestrip, porter_duff_constants[4]);
732  pipelines_->source_in_blend.CreateDefault(*context_, options_trianglestrip,
733  porter_duff_constants[5]);
734  pipelines_->destination_in_blend.CreateDefault(
735  *context_, options_trianglestrip, porter_duff_constants[6]);
736  pipelines_->source_out_blend.CreateDefault(*context_, options_trianglestrip,
737  porter_duff_constants[7]);
738  pipelines_->destination_out_blend.CreateDefault(
739  *context_, options_trianglestrip, porter_duff_constants[8]);
740  pipelines_->source_a_top_blend.CreateDefault(
741  *context_, options_trianglestrip, porter_duff_constants[9]);
742  pipelines_->destination_a_top_blend.CreateDefault(
743  *context_, options_trianglestrip, porter_duff_constants[10]);
744  pipelines_->xor_blend.CreateDefault(*context_, options_trianglestrip,
745  porter_duff_constants[11]);
746  pipelines_->plus_blend.CreateDefault(*context_, options_trianglestrip,
747  porter_duff_constants[12]);
748  pipelines_->modulate_blend.CreateDefault(*context_, options_trianglestrip,
749  porter_duff_constants[13]);
750  pipelines_->screen_blend.CreateDefault(*context_, options_trianglestrip,
751  porter_duff_constants[14]);
752  }
753 
754  if (context_->GetCapabilities()->SupportsFramebufferFetch()) {
755  pipelines_->framebuffer_blend_color.CreateDefault(
756  *context_, options_trianglestrip,
757  {static_cast<Scalar>(BlendSelectValues::kColor), supports_decal});
758  pipelines_->framebuffer_blend_colorburn.CreateDefault(
759  *context_, options_trianglestrip,
760  {static_cast<Scalar>(BlendSelectValues::kColorBurn), supports_decal});
761  pipelines_->framebuffer_blend_colordodge.CreateDefault(
762  *context_, options_trianglestrip,
763  {static_cast<Scalar>(BlendSelectValues::kColorDodge), supports_decal});
764  pipelines_->framebuffer_blend_darken.CreateDefault(
765  *context_, options_trianglestrip,
766  {static_cast<Scalar>(BlendSelectValues::kDarken), supports_decal});
767  pipelines_->framebuffer_blend_difference.CreateDefault(
768  *context_, options_trianglestrip,
769  {static_cast<Scalar>(BlendSelectValues::kDifference), supports_decal});
770  pipelines_->framebuffer_blend_exclusion.CreateDefault(
771  *context_, options_trianglestrip,
772  {static_cast<Scalar>(BlendSelectValues::kExclusion), supports_decal});
773  pipelines_->framebuffer_blend_hardlight.CreateDefault(
774  *context_, options_trianglestrip,
775  {static_cast<Scalar>(BlendSelectValues::kHardLight), supports_decal});
776  pipelines_->framebuffer_blend_hue.CreateDefault(
777  *context_, options_trianglestrip,
778  {static_cast<Scalar>(BlendSelectValues::kHue), supports_decal});
779  pipelines_->framebuffer_blend_lighten.CreateDefault(
780  *context_, options_trianglestrip,
781  {static_cast<Scalar>(BlendSelectValues::kLighten), supports_decal});
782  pipelines_->framebuffer_blend_luminosity.CreateDefault(
783  *context_, options_trianglestrip,
784  {static_cast<Scalar>(BlendSelectValues::kLuminosity), supports_decal});
785  pipelines_->framebuffer_blend_multiply.CreateDefault(
786  *context_, options_trianglestrip,
787  {static_cast<Scalar>(BlendSelectValues::kMultiply), supports_decal});
788  pipelines_->framebuffer_blend_overlay.CreateDefault(
789  *context_, options_trianglestrip,
790  {static_cast<Scalar>(BlendSelectValues::kOverlay), supports_decal});
791  pipelines_->framebuffer_blend_saturation.CreateDefault(
792  *context_, options_trianglestrip,
793  {static_cast<Scalar>(BlendSelectValues::kSaturation), supports_decal});
794  pipelines_->framebuffer_blend_screen.CreateDefault(
795  *context_, options_trianglestrip,
796  {static_cast<Scalar>(BlendSelectValues::kScreen), supports_decal});
797  pipelines_->framebuffer_blend_softlight.CreateDefault(
798  *context_, options_trianglestrip,
799  {static_cast<Scalar>(BlendSelectValues::kSoftLight), supports_decal});
800  } else {
801  pipelines_->blend_color.CreateDefault(
802  *context_, options_trianglestrip,
803  {static_cast<Scalar>(BlendSelectValues::kColor), supports_decal});
804  pipelines_->blend_colorburn.CreateDefault(
805  *context_, options_trianglestrip,
806  {static_cast<Scalar>(BlendSelectValues::kColorBurn), supports_decal});
807  pipelines_->blend_colordodge.CreateDefault(
808  *context_, options_trianglestrip,
809  {static_cast<Scalar>(BlendSelectValues::kColorDodge), supports_decal});
810  pipelines_->blend_darken.CreateDefault(
811  *context_, options_trianglestrip,
812  {static_cast<Scalar>(BlendSelectValues::kDarken), supports_decal});
813  pipelines_->blend_difference.CreateDefault(
814  *context_, options_trianglestrip,
815  {static_cast<Scalar>(BlendSelectValues::kDifference), supports_decal});
816  pipelines_->blend_exclusion.CreateDefault(
817  *context_, options_trianglestrip,
818  {static_cast<Scalar>(BlendSelectValues::kExclusion), supports_decal});
819  pipelines_->blend_hardlight.CreateDefault(
820  *context_, options_trianglestrip,
821  {static_cast<Scalar>(BlendSelectValues::kHardLight), supports_decal});
822  pipelines_->blend_hue.CreateDefault(
823  *context_, options_trianglestrip,
824  {static_cast<Scalar>(BlendSelectValues::kHue), supports_decal});
825  pipelines_->blend_lighten.CreateDefault(
826  *context_, options_trianglestrip,
827  {static_cast<Scalar>(BlendSelectValues::kLighten), supports_decal});
828  pipelines_->blend_luminosity.CreateDefault(
829  *context_, options_trianglestrip,
830  {static_cast<Scalar>(BlendSelectValues::kLuminosity), supports_decal});
831  pipelines_->blend_multiply.CreateDefault(
832  *context_, options_trianglestrip,
833  {static_cast<Scalar>(BlendSelectValues::kMultiply), supports_decal});
834  pipelines_->blend_overlay.CreateDefault(
835  *context_, options_trianglestrip,
836  {static_cast<Scalar>(BlendSelectValues::kOverlay), supports_decal});
837  pipelines_->blend_saturation.CreateDefault(
838  *context_, options_trianglestrip,
839  {static_cast<Scalar>(BlendSelectValues::kSaturation), supports_decal});
840  pipelines_->blend_screen.CreateDefault(
841  *context_, options_trianglestrip,
842  {static_cast<Scalar>(BlendSelectValues::kScreen), supports_decal});
843  pipelines_->blend_softlight.CreateDefault(
844  *context_, options_trianglestrip,
845  {static_cast<Scalar>(BlendSelectValues::kSoftLight), supports_decal});
846  }
847 
848  pipelines_->morphology_filter.CreateDefault(*context_, options_trianglestrip,
849  {supports_decal});
850  pipelines_->linear_to_srgb_filter.CreateDefault(*context_,
851  options_trianglestrip);
852  pipelines_->srgb_to_linear_filter.CreateDefault(*context_,
853  options_trianglestrip);
854  pipelines_->yuv_to_rgb_filter.CreateDefault(*context_, options_trianglestrip);
855 
856 #if defined(IMPELLER_ENABLE_OPENGLES)
857  if (GetContext()->GetBackendType() == Context::BackendType::kOpenGLES) {
858 #if !defined(FML_OS_MACOSX)
859  // GLES only shader that is unsupported on macOS.
860  pipelines_->tiled_texture_external.CreateDefault(*context_, options);
861  pipelines_->tiled_texture_uv_external.CreateDefault(*context_, options);
862 #endif // !defined(FML_OS_MACOSX)
863  pipelines_->texture_downsample_gles.CreateDefault(*context_,
864  options_trianglestrip);
865  }
866 #endif // IMPELLER_ENABLE_OPENGLES
867 
868  is_valid_ = true;
869  InitializeCommonlyUsedShadersIfNeeded();
870 }
871 
873 
875  return is_valid_;
876 }
877 
878 std::shared_ptr<Texture> ContentContext::GetEmptyTexture() const {
879  return empty_texture_;
880 }
881 
882 fml::StatusOr<RenderTarget> ContentContext::MakeSubpass(
883  std::string_view label,
884  ISize texture_size,
885  const std::shared_ptr<CommandBuffer>& command_buffer,
886  const SubpassCallback& subpass_callback,
887  bool msaa_enabled,
888  bool depth_stencil_enabled,
889  int32_t mip_count) const {
890  const std::shared_ptr<Context>& context = GetContext();
891  RenderTarget subpass_target;
892 
893  std::optional<RenderTarget::AttachmentConfig> depth_stencil_config =
894  depth_stencil_enabled ? RenderTarget::kDefaultStencilAttachmentConfig
895  : std::optional<RenderTarget::AttachmentConfig>();
896 
897  if (context->GetCapabilities()->SupportsOffscreenMSAA() && msaa_enabled) {
898  subpass_target = GetRenderTargetCache()->CreateOffscreenMSAA(
899  /*context=*/*context,
900  /*size=*/texture_size,
901  /*mip_count=*/mip_count,
902  /*label=*/label,
903  /*color_attachment_config=*/
905  /*stencil_attachment_config=*/depth_stencil_config,
906  /*existing_color_msaa_texture=*/nullptr,
907  /*existing_color_resolve_texture=*/nullptr,
908  /*existing_depth_stencil_texture=*/nullptr,
909  /*target_pixel_format=*/std::nullopt);
910  } else {
911  subpass_target = GetRenderTargetCache()->CreateOffscreen(
912  *context, texture_size,
913  /*mip_count=*/mip_count, label,
914  RenderTarget::kDefaultColorAttachmentConfig, depth_stencil_config);
915  }
916  return MakeSubpass(label, subpass_target, command_buffer, subpass_callback);
917 }
918 
919 fml::StatusOr<RenderTarget> ContentContext::MakeSubpass(
920  std::string_view label,
921  const RenderTarget& subpass_target,
922  const std::shared_ptr<CommandBuffer>& command_buffer,
923  const SubpassCallback& subpass_callback) const {
924  const std::shared_ptr<Context>& context = GetContext();
925 
926  auto subpass_texture = subpass_target.GetRenderTargetTexture();
927  if (!subpass_texture) {
928  return fml::Status(fml::StatusCode::kUnknown, "");
929  }
930 
931  auto sub_renderpass = command_buffer->CreateRenderPass(subpass_target);
932  if (!sub_renderpass) {
933  return fml::Status(fml::StatusCode::kUnknown, "");
934  }
935  sub_renderpass->SetLabel(label);
936 
937  if (!subpass_callback(*this, *sub_renderpass)) {
938  return fml::Status(fml::StatusCode::kUnknown, "");
939  }
940 
941  if (!sub_renderpass->EncodeCommands()) {
942  return fml::Status(fml::StatusCode::kUnknown, "");
943  }
944 
945  const std::shared_ptr<Texture>& target_texture =
946  subpass_target.GetRenderTargetTexture();
947  if (target_texture->GetMipCount() > 1) {
948  fml::Status mipmap_status =
949  AddMipmapGeneration(command_buffer, context, target_texture);
950  if (!mipmap_status.ok()) {
951  return mipmap_status;
952  }
953  }
954 
955  return subpass_target;
956 }
957 
959  return *tessellator_;
960 }
961 
962 std::shared_ptr<Context> ContentContext::GetContext() const {
963  return context_;
964 }
965 
967  return *context_->GetCapabilities();
968 }
969 
971  const std::string& unique_entrypoint_name,
972  const ContentContextOptions& options,
973  const std::function<std::shared_ptr<Pipeline<PipelineDescriptor>>()>&
974  create_callback) const {
975  RuntimeEffectPipelineKey key{unique_entrypoint_name, options};
976  auto it = runtime_effect_pipelines_.find(key);
977  if (it == runtime_effect_pipelines_.end()) {
978  it = runtime_effect_pipelines_.insert(it, {key, create_callback()});
979  }
980  return raw_ptr(it->second);
981 }
982 
984  const std::string& unique_entrypoint_name) const {
985 #ifdef IMPELLER_DEBUG
986  // destroying in-use pipleines is a validation error.
987  const auto& idle_waiter = GetContext()->GetIdleWaiter();
988  if (idle_waiter) {
989  idle_waiter->WaitIdle();
990  }
991 #endif // IMPELLER_DEBUG
992  for (auto it = runtime_effect_pipelines_.begin();
993  it != runtime_effect_pipelines_.end();) {
994  if (it->first.unique_entrypoint_name == unique_entrypoint_name) {
995  it = runtime_effect_pipelines_.erase(it);
996  } else {
997  it++;
998  }
999  }
1000 }
1001 
1003  data_host_buffer_->Reset();
1004 
1005  // We should only reset the indexes host buffer if it is actually different
1006  // from the data host buffer. Otherwise we'll end up resetting the same host
1007  // buffer twice.
1008  if (data_host_buffer_ != indexes_host_buffer_) {
1009  indexes_host_buffer_->Reset();
1010  }
1011 }
1012 
1013 void ContentContext::InitializeCommonlyUsedShadersIfNeeded() const {
1014  if (GetContext()->GetFlags().lazy_shader_mode) {
1015  return;
1016  }
1017  GetContext()->InitializeCommonlyUsedShadersIfNeeded();
1018 }
1019 
1021  ContentContextOptions opts) const {
1022  return GetPipeline(this, pipelines_->fast_gradient, opts);
1023 }
1024 
1026  ContentContextOptions opts) const {
1027  return GetPipeline(this, pipelines_->linear_gradient_fill, opts);
1028 }
1029 
1031  ContentContextOptions opts) const {
1032  return GetPipeline(this, pipelines_->linear_gradient_uniform_fill, opts);
1033 }
1034 
1036  ContentContextOptions opts) const {
1037  return GetPipeline(this, pipelines_->radial_gradient_uniform_fill, opts);
1038 }
1039 
1041  ContentContextOptions opts) const {
1042  return GetPipeline(this, pipelines_->sweep_gradient_uniform_fill, opts);
1043 }
1044 
1046  ContentContextOptions opts) const {
1047  FML_DCHECK(GetDeviceCapabilities().SupportsSSBO());
1048  return GetPipeline(this, pipelines_->linear_gradient_ssbo_fill, opts);
1049 }
1050 
1052  ContentContextOptions opts) const {
1053  FML_DCHECK(GetDeviceCapabilities().SupportsSSBO());
1054  return GetPipeline(this, pipelines_->radial_gradient_ssbo_fill, opts);
1055 }
1056 
1058  ContentContextOptions opts,
1059  ConicalKind kind) const {
1060  switch (kind) {
1061  case ConicalKind::kConical:
1062  return GetPipeline(this, pipelines_->conical_gradient_uniform_fill, opts);
1063  case ConicalKind::kRadial:
1064  return GetPipeline(this, pipelines_->conical_gradient_uniform_fill_radial,
1065  opts);
1066  case ConicalKind::kStrip:
1067  return GetPipeline(this, pipelines_->conical_gradient_uniform_fill_strip,
1068  opts);
1070  return GetPipeline(
1071  this, pipelines_->conical_gradient_uniform_fill_strip_and_radial,
1072  opts);
1073  }
1074 }
1075 
1077  ContentContextOptions opts,
1078  ConicalKind kind) const {
1079  FML_DCHECK(GetDeviceCapabilities().SupportsSSBO());
1080  switch (kind) {
1081  case ConicalKind::kConical:
1082  return GetPipeline(this, pipelines_->conical_gradient_ssbo_fill, opts);
1083  case ConicalKind::kRadial:
1084  return GetPipeline(this, pipelines_->conical_gradient_ssbo_fill_radial,
1085  opts);
1086  case ConicalKind::kStrip:
1087  return GetPipeline(this, pipelines_->conical_gradient_ssbo_fill_strip,
1088  opts);
1090  return GetPipeline(
1091  this, pipelines_->conical_gradient_ssbo_fill_strip_and_radial, opts);
1092  }
1093 }
1094 
1096  ContentContextOptions opts) const {
1097  FML_DCHECK(GetDeviceCapabilities().SupportsSSBO());
1098  return GetPipeline(this, pipelines_->sweep_gradient_ssbo_fill, opts);
1099 }
1100 
1102  ContentContextOptions opts) const {
1103  return GetPipeline(this, pipelines_->radial_gradient_fill, opts);
1104 }
1105 
1107  ContentContextOptions opts,
1108  ConicalKind kind) const {
1109  switch (kind) {
1110  case ConicalKind::kConical:
1111  return GetPipeline(this, pipelines_->conical_gradient_fill, opts);
1112  case ConicalKind::kRadial:
1113  return GetPipeline(this, pipelines_->conical_gradient_fill_radial, opts);
1114  case ConicalKind::kStrip:
1115  return GetPipeline(this, pipelines_->conical_gradient_fill_strip, opts);
1117  return GetPipeline(
1118  this, pipelines_->conical_gradient_fill_strip_and_radial, opts);
1119  }
1120 }
1121 
1123  ContentContextOptions opts) const {
1124  return GetPipeline(this, pipelines_->rrect_blur, opts);
1125 }
1126 
1128  ContentContextOptions opts) const {
1129  return GetPipeline(this, pipelines_->rsuperellipse_blur, opts);
1130 }
1131 
1133  ContentContextOptions opts) const {
1134  return GetPipeline(this, pipelines_->sweep_gradient_fill, opts);
1135 }
1136 
1138  ContentContextOptions opts) const {
1139  return GetPipeline(this, pipelines_->solid_fill, opts);
1140 }
1141 
1143  ContentContextOptions opts) const {
1144  return GetPipeline(this, pipelines_->texture, opts);
1145 }
1146 
1148  ContentContextOptions opts) const {
1149  return GetPipeline(this, pipelines_->texture_strict_src, opts);
1150 }
1151 
1153  ContentContextOptions opts) const {
1154  return GetPipeline(this, pipelines_->tiled_texture, opts);
1155 }
1156 
1158  ContentContextOptions opts) const {
1159  return GetPipeline(this, pipelines_->gaussian_blur, opts);
1160 }
1161 
1163  ContentContextOptions opts) const {
1164  return GetPipeline(this, pipelines_->border_mask_blur, opts);
1165 }
1166 
1168  ContentContextOptions opts) const {
1169  return GetPipeline(this, pipelines_->morphology_filter, opts);
1170 }
1171 
1173  ContentContextOptions opts) const {
1174  return GetPipeline(this, pipelines_->color_matrix_color_filter, opts);
1175 }
1176 
1178  ContentContextOptions opts) const {
1179  return GetPipeline(this, pipelines_->linear_to_srgb_filter, opts);
1180 }
1181 
1183  ContentContextOptions opts) const {
1184  return GetPipeline(this, pipelines_->srgb_to_linear_filter, opts);
1185 }
1186 
1188  return GetPipeline(this, pipelines_->clip, opts);
1189 }
1190 
1192  ContentContextOptions opts) const {
1193  return GetPipeline(this, pipelines_->glyph_atlas, opts);
1194 }
1195 
1197  ContentContextOptions opts) const {
1198  return GetPipeline(this, pipelines_->yuv_to_rgb_filter, opts);
1199 }
1200 
1202  BlendMode mode,
1203  ContentContextOptions opts) const {
1204  switch (mode) {
1205  case BlendMode::kClear:
1206  return GetClearBlendPipeline(opts);
1207  case BlendMode::kSrc:
1208  return GetSourceBlendPipeline(opts);
1209  case BlendMode::kDst:
1210  return GetDestinationBlendPipeline(opts);
1211  case BlendMode::kSrcOver:
1212  return GetSourceOverBlendPipeline(opts);
1213  case BlendMode::kDstOver:
1214  return GetDestinationOverBlendPipeline(opts);
1215  case BlendMode::kSrcIn:
1216  return GetSourceInBlendPipeline(opts);
1217  case BlendMode::kDstIn:
1218  return GetDestinationInBlendPipeline(opts);
1219  case BlendMode::kSrcOut:
1220  return GetSourceOutBlendPipeline(opts);
1221  case BlendMode::kDstOut:
1222  return GetDestinationOutBlendPipeline(opts);
1223  case BlendMode::kSrcATop:
1224  return GetSourceATopBlendPipeline(opts);
1225  case BlendMode::kDstATop:
1226  return GetDestinationATopBlendPipeline(opts);
1227  case BlendMode::kXor:
1228  return GetXorBlendPipeline(opts);
1229  case BlendMode::kPlus:
1230  return GetPlusBlendPipeline(opts);
1231  case BlendMode::kModulate:
1232  return GetModulateBlendPipeline(opts);
1233  case BlendMode::kScreen:
1234  return GetScreenBlendPipeline(opts);
1235  case BlendMode::kOverlay:
1236  case BlendMode::kDarken:
1237  case BlendMode::kLighten:
1239  case BlendMode::kColorBurn:
1240  case BlendMode::kHardLight:
1241  case BlendMode::kSoftLight:
1243  case BlendMode::kExclusion:
1244  case BlendMode::kMultiply:
1245  case BlendMode::kHue:
1247  case BlendMode::kColor:
1249  VALIDATION_LOG << "Invalid porter duff blend mode "
1250  << BlendModeToString(mode);
1251  return GetClearBlendPipeline(opts);
1252  break;
1253  }
1254 }
1255 
1257  ContentContextOptions opts) const {
1258  return GetPipeline(this, pipelines_->clear_blend, opts);
1259 }
1260 
1262  ContentContextOptions opts) const {
1263  return GetPipeline(this, pipelines_->source_blend, opts);
1264 }
1265 
1267  ContentContextOptions opts) const {
1268  return GetPipeline(this, pipelines_->destination_blend, opts);
1269 }
1270 
1272  ContentContextOptions opts) const {
1273  return GetPipeline(this, pipelines_->source_over_blend, opts);
1274 }
1275 
1277  ContentContextOptions opts) const {
1278  return GetPipeline(this, pipelines_->destination_over_blend, opts);
1279 }
1280 
1282  ContentContextOptions opts) const {
1283  return GetPipeline(this, pipelines_->source_in_blend, opts);
1284 }
1285 
1287  ContentContextOptions opts) const {
1288  return GetPipeline(this, pipelines_->destination_in_blend, opts);
1289 }
1290 
1292  ContentContextOptions opts) const {
1293  return GetPipeline(this, pipelines_->source_out_blend, opts);
1294 }
1295 
1297  ContentContextOptions opts) const {
1298  return GetPipeline(this, pipelines_->destination_out_blend, opts);
1299 }
1300 
1302  ContentContextOptions opts) const {
1303  return GetPipeline(this, pipelines_->source_a_top_blend, opts);
1304 }
1305 
1307  ContentContextOptions opts) const {
1308  return GetPipeline(this, pipelines_->destination_a_top_blend, opts);
1309 }
1310 
1312  ContentContextOptions opts) const {
1313  return GetPipeline(this, pipelines_->xor_blend, opts);
1314 }
1315 
1317  ContentContextOptions opts) const {
1318  return GetPipeline(this, pipelines_->plus_blend, opts);
1319 }
1320 
1322  ContentContextOptions opts) const {
1323  return GetPipeline(this, pipelines_->modulate_blend, opts);
1324 }
1325 
1327  ContentContextOptions opts) const {
1328  return GetPipeline(this, pipelines_->screen_blend, opts);
1329 }
1330 
1332  ContentContextOptions opts) const {
1333  return GetPipeline(this, pipelines_->blend_color, opts);
1334 }
1335 
1337  ContentContextOptions opts) const {
1338  return GetPipeline(this, pipelines_->blend_colorburn, opts);
1339 }
1340 
1342  ContentContextOptions opts) const {
1343  return GetPipeline(this, pipelines_->blend_colordodge, opts);
1344 }
1345 
1347  ContentContextOptions opts) const {
1348  return GetPipeline(this, pipelines_->blend_darken, opts);
1349 }
1350 
1352  ContentContextOptions opts) const {
1353  return GetPipeline(this, pipelines_->blend_difference, opts);
1354 }
1355 
1357  ContentContextOptions opts) const {
1358  return GetPipeline(this, pipelines_->blend_exclusion, opts);
1359 }
1360 
1362  ContentContextOptions opts) const {
1363  return GetPipeline(this, pipelines_->blend_hardlight, opts);
1364 }
1365 
1367  ContentContextOptions opts) const {
1368  return GetPipeline(this, pipelines_->blend_hue, opts);
1369 }
1370 
1372  ContentContextOptions opts) const {
1373  return GetPipeline(this, pipelines_->blend_lighten, opts);
1374 }
1375 
1377  ContentContextOptions opts) const {
1378  return GetPipeline(this, pipelines_->blend_luminosity, opts);
1379 }
1380 
1382  ContentContextOptions opts) const {
1383  return GetPipeline(this, pipelines_->blend_multiply, opts);
1384 }
1385 
1387  ContentContextOptions opts) const {
1388  return GetPipeline(this, pipelines_->blend_overlay, opts);
1389 }
1390 
1392  ContentContextOptions opts) const {
1393  return GetPipeline(this, pipelines_->blend_saturation, opts);
1394 }
1395 
1397  ContentContextOptions opts) const {
1398  return GetPipeline(this, pipelines_->blend_screen, opts);
1399 }
1400 
1402  ContentContextOptions opts) const {
1403  return GetPipeline(this, pipelines_->blend_softlight, opts);
1404 }
1405 
1407  ContentContextOptions opts) const {
1408  return GetPipeline(this, pipelines_->texture_downsample, opts);
1409 }
1410 
1412  ContentContextOptions opts) const {
1413  FML_DCHECK(GetDeviceCapabilities().SupportsFramebufferFetch());
1414  return GetPipeline(this, pipelines_->framebuffer_blend_color, opts);
1415 }
1416 
1418  ContentContextOptions opts) const {
1419  FML_DCHECK(GetDeviceCapabilities().SupportsFramebufferFetch());
1420  return GetPipeline(this, pipelines_->framebuffer_blend_colorburn, opts);
1421 }
1422 
1424  ContentContextOptions opts) const {
1425  FML_DCHECK(GetDeviceCapabilities().SupportsFramebufferFetch());
1426  return GetPipeline(this, pipelines_->framebuffer_blend_colordodge, opts);
1427 }
1428 
1430  ContentContextOptions opts) const {
1431  FML_DCHECK(GetDeviceCapabilities().SupportsFramebufferFetch());
1432  return GetPipeline(this, pipelines_->framebuffer_blend_darken, opts);
1433 }
1434 
1436  ContentContextOptions opts) const {
1437  FML_DCHECK(GetDeviceCapabilities().SupportsFramebufferFetch());
1438  return GetPipeline(this, pipelines_->framebuffer_blend_difference, opts);
1439 }
1440 
1442  ContentContextOptions opts) const {
1443  FML_DCHECK(GetDeviceCapabilities().SupportsFramebufferFetch());
1444  return GetPipeline(this, pipelines_->framebuffer_blend_exclusion, opts);
1445 }
1446 
1448  ContentContextOptions opts) const {
1449  FML_DCHECK(GetDeviceCapabilities().SupportsFramebufferFetch());
1450  return GetPipeline(this, pipelines_->framebuffer_blend_hardlight, opts);
1451 }
1452 
1454  ContentContextOptions opts) const {
1455  FML_DCHECK(GetDeviceCapabilities().SupportsFramebufferFetch());
1456  return GetPipeline(this, pipelines_->framebuffer_blend_hue, opts);
1457 }
1458 
1460  ContentContextOptions opts) const {
1461  FML_DCHECK(GetDeviceCapabilities().SupportsFramebufferFetch());
1462  return GetPipeline(this, pipelines_->framebuffer_blend_lighten, opts);
1463 }
1464 
1466  ContentContextOptions opts) const {
1467  FML_DCHECK(GetDeviceCapabilities().SupportsFramebufferFetch());
1468  return GetPipeline(this, pipelines_->framebuffer_blend_luminosity, opts);
1469 }
1470 
1472  ContentContextOptions opts) const {
1473  FML_DCHECK(GetDeviceCapabilities().SupportsFramebufferFetch());
1474  return GetPipeline(this, pipelines_->framebuffer_blend_multiply, opts);
1475 }
1476 
1478  ContentContextOptions opts) const {
1479  FML_DCHECK(GetDeviceCapabilities().SupportsFramebufferFetch());
1480  return GetPipeline(this, pipelines_->framebuffer_blend_overlay, opts);
1481 }
1482 
1484  ContentContextOptions opts) const {
1485  FML_DCHECK(GetDeviceCapabilities().SupportsFramebufferFetch());
1486  return GetPipeline(this, pipelines_->framebuffer_blend_saturation, opts);
1487 }
1488 
1490  ContentContextOptions opts) const {
1491  FML_DCHECK(GetDeviceCapabilities().SupportsFramebufferFetch());
1492  return GetPipeline(this, pipelines_->framebuffer_blend_screen, opts);
1493 }
1494 
1496  ContentContextOptions opts) const {
1497  FML_DCHECK(GetDeviceCapabilities().SupportsFramebufferFetch());
1498  return GetPipeline(this, pipelines_->framebuffer_blend_softlight, opts);
1499 }
1500 
1502  BlendMode blend_mode,
1503  ContentContextOptions opts) const {
1504  if (blend_mode <= BlendMode::kHardLight) {
1505  return GetPipeline(this, pipelines_->vertices_uber_1_, opts);
1506  } else {
1507  return GetPipeline(this, pipelines_->vertices_uber_2_, opts);
1508  }
1509 }
1510 
1512  ContentContextOptions opts) const {
1513  return GetPipeline(this, pipelines_->circle, opts);
1514 }
1515 
1517  return GetPipeline(this, pipelines_->line, opts);
1518 }
1519 
1520 #ifdef IMPELLER_ENABLE_OPENGLES
1521 PipelineRef ContentContext::GetDownsampleTextureGlesPipeline(
1522  ContentContextOptions opts) const {
1523  return GetPipeline(this, pipelines_->texture_downsample_gles, opts);
1524 }
1525 
1526 PipelineRef ContentContext::GetTiledTextureExternalPipeline(
1527  ContentContextOptions opts) const {
1528  FML_DCHECK(GetContext()->GetBackendType() == Context::BackendType::kOpenGLES);
1529  return GetPipeline(this, pipelines_->tiled_texture_external, opts);
1530 }
1531 
1532 PipelineRef ContentContext::GetTiledTextureUvExternalPipeline(
1533  ContentContextOptions opts) const {
1534  FML_DCHECK(GetContext()->GetBackendType() == Context::BackendType::kOpenGLES);
1535  return GetPipeline(this, pipelines_->tiled_texture_uv_external, opts);
1536 }
1537 #endif // IMPELLER_ENABLE_OPENGLES
1538 
1539 } // namespace impeller
BufferView buffer_view
PipelineRef GetBlendLuminosityPipeline(ContentContextOptions opts) const
PipelineRef GetTiledTexturePipeline(ContentContextOptions opts) const
PipelineRef GetFramebufferBlendColorPipeline(ContentContextOptions opts) const
PipelineRef GetDownsamplePipeline(ContentContextOptions opts) const
PipelineRef GetSourceInBlendPipeline(ContentContextOptions opts) const
void ClearCachedRuntimeEffectPipeline(const std::string &unique_entrypoint_name) const
PipelineRef GetLinearGradientFillPipeline(ContentContextOptions opts) const
PipelineRef GetFramebufferBlendOverlayPipeline(ContentContextOptions opts) const
PipelineRef GetBlendColorDodgePipeline(ContentContextOptions opts) const
PipelineRef GetFramebufferBlendColorBurnPipeline(ContentContextOptions opts) const
PipelineRef GetPorterDuffPipeline(BlendMode mode, ContentContextOptions opts) const
std::shared_ptr< Texture > GetEmptyTexture() const
PipelineRef GetSourceOutBlendPipeline(ContentContextOptions opts) const
PipelineRef GetScreenBlendPipeline(ContentContextOptions opts) const
PipelineRef GetBlendColorPipeline(ContentContextOptions opts) const
PipelineRef GetLinePipeline(ContentContextOptions opts) const
PipelineRef GetFramebufferBlendLuminosityPipeline(ContentContextOptions opts) const
PipelineRef GetPlusBlendPipeline(ContentContextOptions opts) const
PipelineRef GetFastGradientPipeline(ContentContextOptions opts) const
ContentContext(std::shared_ptr< Context > context, std::shared_ptr< TypographerContext > typographer_context, std::shared_ptr< RenderTargetAllocator > render_target_allocator=nullptr)
void ResetTransientsBuffers()
Resets the transients buffers held onto by the content context.
PipelineRef GetSolidFillPipeline(ContentContextOptions opts) const
fml::StatusOr< RenderTarget > MakeSubpass(std::string_view label, ISize texture_size, const std::shared_ptr< CommandBuffer > &command_buffer, const SubpassCallback &subpass_callback, bool msaa_enabled=true, bool depth_stencil_enabled=false, int32_t mip_count=1) const
Creates a new texture of size texture_size and calls subpass_callback with a RenderPass for drawing t...
const Capabilities & GetDeviceCapabilities() const
PipelineRef GetModulateBlendPipeline(ContentContextOptions opts) const
PipelineRef GetFramebufferBlendHardLightPipeline(ContentContextOptions opts) const
PipelineRef GetFramebufferBlendColorDodgePipeline(ContentContextOptions opts) const
PipelineRef GetSweepGradientUniformFillPipeline(ContentContextOptions opts) const
PipelineRef GetBlendSoftLightPipeline(ContentContextOptions opts) const
PipelineRef GetDestinationATopBlendPipeline(ContentContextOptions opts) const
PipelineRef GetTextureStrictSrcPipeline(ContentContextOptions opts) const
PipelineRef GetCachedRuntimeEffectPipeline(const std::string &unique_entrypoint_name, const ContentContextOptions &options, const std::function< std::shared_ptr< Pipeline< PipelineDescriptor >>()> &create_callback) const
PipelineRef GetRadialGradientSSBOFillPipeline(ContentContextOptions opts) const
PipelineRef GetBlendColorBurnPipeline(ContentContextOptions opts) const
PipelineRef GetSweepGradientSSBOFillPipeline(ContentContextOptions opts) const
PipelineRef GetLinearGradientUniformFillPipeline(ContentContextOptions opts) const
PipelineRef GetFramebufferBlendScreenPipeline(ContentContextOptions opts) const
PipelineRef GetLinearGradientSSBOFillPipeline(ContentContextOptions opts) const
PipelineRef GetRadialGradientFillPipeline(ContentContextOptions opts) const
PipelineRef GetTexturePipeline(ContentContextOptions opts) const
PipelineRef GetBlendHardLightPipeline(ContentContextOptions opts) const
PipelineRef GetClearBlendPipeline(ContentContextOptions opts) const
PipelineRef GetCirclePipeline(ContentContextOptions opts) const
PipelineRef GetConicalGradientUniformFillPipeline(ContentContextOptions opts, ConicalKind kind) const
PipelineRef GetRadialGradientUniformFillPipeline(ContentContextOptions opts) const
PipelineRef GetSweepGradientFillPipeline(ContentContextOptions opts) const
PipelineRef GetFramebufferBlendExclusionPipeline(ContentContextOptions opts) const
PipelineRef GetFramebufferBlendDarkenPipeline(ContentContextOptions opts) const
PipelineRef GetBlendSaturationPipeline(ContentContextOptions opts) const
PipelineRef GetFramebufferBlendSoftLightPipeline(ContentContextOptions opts) const
PipelineRef GetFramebufferBlendLightenPipeline(ContentContextOptions opts) const
PipelineRef GetMorphologyFilterPipeline(ContentContextOptions opts) const
PipelineRef GetFramebufferBlendSaturationPipeline(ContentContextOptions opts) const
PipelineRef GetBlendDifferencePipeline(ContentContextOptions opts) const
PipelineRef GetGaussianBlurPipeline(ContentContextOptions opts) const
PipelineRef GetBlendHuePipeline(ContentContextOptions opts) const
PipelineRef GetSrgbToLinearFilterPipeline(ContentContextOptions opts) const
PipelineRef GetDestinationOutBlendPipeline(ContentContextOptions opts) const
PipelineRef GetYUVToRGBFilterPipeline(ContentContextOptions opts) const
PipelineRef GetFramebufferBlendDifferencePipeline(ContentContextOptions opts) const
PipelineRef GetFramebufferBlendHuePipeline(ContentContextOptions opts) const
PipelineRef GetSourceATopBlendPipeline(ContentContextOptions opts) const
HostBuffer & GetTransientsDataBuffer() const
Retrieve the current host buffer for transient storage of other non-index data.
PipelineRef GetXorBlendPipeline(ContentContextOptions opts) const
PipelineRef GetGlyphAtlasPipeline(ContentContextOptions opts) const
PipelineRef GetClipPipeline(ContentContextOptions opts) const
const std::shared_ptr< RenderTargetAllocator > & GetRenderTargetCache() const
PipelineRef GetRRectBlurPipeline(ContentContextOptions opts) const
PipelineRef GetBlendScreenPipeline(ContentContextOptions opts) const
std::function< bool(const ContentContext &, RenderPass &)> SubpassCallback
PipelineRef GetBlendDarkenPipeline(ContentContextOptions opts) const
PipelineRef GetSourceBlendPipeline(ContentContextOptions opts) const
PipelineRef GetLinearToSrgbFilterPipeline(ContentContextOptions opts) const
PipelineRef GetBlendOverlayPipeline(ContentContextOptions opts) const
PipelineRef GetDestinationBlendPipeline(ContentContextOptions opts) const
PipelineRef GetDestinationOverBlendPipeline(ContentContextOptions opts) const
PipelineRef GetFramebufferBlendMultiplyPipeline(ContentContextOptions opts) const
PipelineRef GetConicalGradientSSBOFillPipeline(ContentContextOptions opts, ConicalKind kind) const
Tessellator & GetTessellator() const
PipelineRef GetBlendLightenPipeline(ContentContextOptions opts) const
PipelineRef GetBlendMultiplyPipeline(ContentContextOptions opts) const
PipelineRef GetSourceOverBlendPipeline(ContentContextOptions opts) const
PipelineRef GetBlendExclusionPipeline(ContentContextOptions opts) const
PipelineRef GetColorMatrixColorFilterPipeline(ContentContextOptions opts) const
PipelineRef GetConicalGradientFillPipeline(ContentContextOptions opts, ConicalKind kind) const
std::shared_ptr< Context > GetContext() const
PipelineRef GetDestinationInBlendPipeline(ContentContextOptions opts) const
PipelineRef GetRSuperellipseBlurPipeline(ContentContextOptions opts) const
PipelineRef GetBorderMaskBlurPipeline(ContentContextOptions opts) const
PipelineRef GetDrawVerticesUberPipeline(BlendMode blend_mode, ContentContextOptions opts) const
To do anything rendering related with Impeller, you need a context.
Definition: context.h:65
virtual const std::shared_ptr< const Capabilities > & GetCapabilities() const =0
Get the capabilities of Impeller context. All optionally supported feature of the platform,...
static constexpr BlendMode kLastPipelineBlendMode
Definition: entity.h:28
BufferView Emplace(const BufferType &buffer, size_t alignment=0)
Emplace non-uniform data (like contiguous vertices) onto the host buffer.
Definition: host_buffer.h:92
static std::shared_ptr< HostBuffer > Create(const std::shared_ptr< Allocator > &allocator, const std::shared_ptr< const IdleWaiter > &idle_waiter, size_t minimum_uniform_alignment)
Definition: host_buffer.cc:21
PipelineDescriptor & SetDepthStencilAttachmentDescriptor(std::optional< DepthAttachmentDescriptor > desc)
void SetPolygonMode(PolygonMode mode)
std::optional< DepthAttachmentDescriptor > GetDepthStencilAttachmentDescriptor() const
PipelineDescriptor & SetStencilAttachmentDescriptors(std::optional< StencilAttachmentDescriptor > front_and_back)
const ColorAttachmentDescriptor * GetColorAttachmentDescriptor(size_t index) const
PipelineDescriptor & SetColorAttachmentDescriptor(size_t index, ColorAttachmentDescriptor desc)
PipelineDescriptor & SetSampleCount(SampleCount samples)
void SetPrimitiveType(PrimitiveType type)
std::optional< StencilAttachmentDescriptor > GetFrontStencilAttachmentDescriptor() const
An implementation of the [RenderTargetAllocator] that caches all allocated texture data for one frame...
std::shared_ptr< Texture > GetRenderTargetTexture() const
static constexpr AttachmentConfig kDefaultColorAttachmentConfig
Definition: render_target.h:55
static constexpr AttachmentConfigMSAA kDefaultColorAttachmentConfigMSAA
Definition: render_target.h:61
static constexpr AttachmentConfig kDefaultStencilAttachmentConfig
Definition: render_target.h:68
A utility that generates triangles of the specified fill type given a polyline. This happens on the C...
Definition: tessellator.h:37
A cache for blurred text that re-uses these across frames.
std::optional< PipelineDescriptor > desc_
std::vector< std::pair< uint64_t, std::unique_ptr< GenericRenderPipelineHandle > > > pipelines_
std::optional< ContentContextOptions > default_options_
int32_t x
ScopedObject< Object > Create(CtorArgs &&... args)
Definition: object.h:161
float Scalar
Definition: scalar.h:19
static std::unique_ptr< PipelineT > CreateDefaultPipeline(const Context &context)
raw_ptr< Pipeline< PipelineDescriptor > > PipelineRef
A raw ptr to a pipeline object.
Definition: pipeline.h:88
const char * BlendModeToString(BlendMode blend_mode)
Definition: color.cc:47
@ kEqual
Comparison test passes if new_value == current_value.
@ kAlways
Comparison test passes always passes.
@ kLess
Comparison test passes if new_value < current_value.
@ kNotEqual
Comparison test passes if new_value != current_value.
fml::Status AddMipmapGeneration(const std::shared_ptr< CommandBuffer > &command_buffer, const std::shared_ptr< Context > &context, const std::shared_ptr< Texture > &texture)
Adds a blit command to the render pass.
Definition: texture_util.cc:37
@ kDecrementWrap
Decrement the current stencil value by 1. If at zero, set to maximum.
@ kSetToReferenceValue
Reset the stencil value to the reference value.
@ kIncrementClamp
Increment the current stencil value by 1. Clamp it to the maximum.
@ kIncrementWrap
Increment the current stencil value by 1. If at maximum, set to zero.
@ kKeep
Don't modify the current stencil value.
BlendMode
Definition: color.h:58
std::array< std::vector< Scalar >, 15 > GetPorterDuffSpecConstants(bool supports_decal)
Definition: comparable.h:95
Describe the color attachment that will be used with this pipeline.
Definition: formats.h:522
std::array< uint8_t, 4 > ToR8G8B8A8() const
Convert to R8G8B8A8 representation.
Definition: color.h:246
static constexpr Color BlackTransparent()
Definition: color.h:270
Variants< SolidFillPipeline > solid_fill
Variants< PorterDuffBlendPipeline > destination_blend
Variants< SweepGradientSSBOFillPipeline > sweep_gradient_ssbo_fill
Variants< BlendScreenPipeline > blend_screen
Variants< PorterDuffBlendPipeline > modulate_blend
Variants< FramebufferBlendOverlayPipeline > framebuffer_blend_overlay
Variants< BlendSaturationPipeline > blend_saturation
Variants< TiledTexturePipeline > tiled_texture
Variants< PorterDuffBlendPipeline > destination_in_blend
Variants< BlendSoftLightPipeline > blend_softlight
Variants< BlendColorDodgePipeline > blend_colordodge
Variants< BlendMultiplyPipeline > blend_multiply
Variants< BlendColorPipeline > blend_color
Variants< BlendDifferencePipeline > blend_difference
Variants< BlendOverlayPipeline > blend_overlay
Variants< ConicalGradientFillStripPipeline > conical_gradient_fill_strip
Variants< FramebufferBlendExclusionPipeline > framebuffer_blend_exclusion
Variants< MorphologyFilterPipeline > morphology_filter
Variants< PorterDuffBlendPipeline > screen_blend
Variants< FramebufferBlendSaturationPipeline > framebuffer_blend_saturation
Variants< PorterDuffBlendPipeline > source_over_blend
Variants< LinearGradientFillPipeline > linear_gradient_fill
Variants< PorterDuffBlendPipeline > plus_blend
Variants< VerticesUber2Shader > vertices_uber_2_
Variants< FramebufferBlendHardLightPipeline > framebuffer_blend_hardlight
Variants< RadialGradientSSBOFillPipeline > radial_gradient_ssbo_fill
Variants< PorterDuffBlendPipeline > clear_blend
Variants< ConicalGradientUniformFillConicalPipeline > conical_gradient_uniform_fill
Variants< FramebufferBlendMultiplyPipeline > framebuffer_blend_multiply
Variants< ConicalGradientSSBOFillPipeline > conical_gradient_ssbo_fill
Variants< TextureDownsamplePipeline > texture_downsample
Variants< FramebufferBlendLuminosityPipeline > framebuffer_blend_luminosity
Variants< FramebufferBlendSoftLightPipeline > framebuffer_blend_softlight
Variants< SweepGradientUniformFillPipeline > sweep_gradient_uniform_fill
Variants< BlendColorBurnPipeline > blend_colorburn
Variants< ConicalGradientUniformFillStripRadialPipeline > conical_gradient_uniform_fill_strip_and_radial
Variants< PorterDuffBlendPipeline > source_in_blend
Variants< ConicalGradientFillConicalPipeline > conical_gradient_fill
Variants< CirclePipeline > circle
Variants< SweepGradientFillPipeline > sweep_gradient_fill
Variants< FramebufferBlendLightenPipeline > framebuffer_blend_lighten
Variants< PorterDuffBlendPipeline > source_a_top_blend
Variants< PorterDuffBlendPipeline > destination_a_top_blend
Variants< RadialGradientUniformFillPipeline > radial_gradient_uniform_fill
Variants< BlendLightenPipeline > blend_lighten
Variants< LinearGradientUniformFillPipeline > linear_gradient_uniform_fill
Variants< FramebufferBlendColorBurnPipeline > framebuffer_blend_colorburn
Variants< ConicalGradientFillRadialPipeline > conical_gradient_fill_radial
Variants< PorterDuffBlendPipeline > destination_over_blend
Variants< BlendExclusionPipeline > blend_exclusion
Variants< RSuperellipseBlurPipeline > rsuperellipse_blur
Variants< SrgbToLinearFilterPipeline > srgb_to_linear_filter
Variants< ColorMatrixColorFilterPipeline > color_matrix_color_filter
Variants< LinearToSrgbFilterPipeline > linear_to_srgb_filter
Variants< ConicalGradientUniformFillRadialPipeline > conical_gradient_uniform_fill_radial
Variants< ConicalGradientSSBOFillPipeline > conical_gradient_ssbo_fill_strip
Variants< RRectBlurPipeline > rrect_blur
Variants< BlendDarkenPipeline > blend_darken
Variants< TexturePipeline > texture
Variants< PorterDuffBlendPipeline > source_out_blend
Variants< FramebufferBlendHuePipeline > framebuffer_blend_hue
Variants< TextureStrictSrcPipeline > texture_strict_src
Variants< FramebufferBlendColorPipeline > framebuffer_blend_color
Variants< BlendHuePipeline > blend_hue
Variants< FramebufferBlendDarkenPipeline > framebuffer_blend_darken
Variants< FastGradientPipeline > fast_gradient
Variants< ConicalGradientUniformFillStripPipeline > conical_gradient_uniform_fill_strip
Variants< PorterDuffBlendPipeline > xor_blend
Variants< GaussianBlurPipeline > gaussian_blur
Variants< LinearGradientSSBOFillPipeline > linear_gradient_ssbo_fill
Variants< ConicalGradientSSBOFillPipeline > conical_gradient_ssbo_fill_strip_and_radial
Variants< GlyphAtlasPipeline > glyph_atlas
Variants< PorterDuffBlendPipeline > source_blend
Variants< BlendLuminosityPipeline > blend_luminosity
Variants< BorderMaskBlurPipeline > border_mask_blur
Variants< FramebufferBlendScreenPipeline > framebuffer_blend_screen
Variants< FramebufferBlendDifferencePipeline > framebuffer_blend_difference
Variants< YUVToRGBFilterPipeline > yuv_to_rgb_filter
Variants< RadialGradientFillPipeline > radial_gradient_fill
Variants< ConicalGradientSSBOFillPipeline > conical_gradient_ssbo_fill_radial
Variants< ConicalGradientFillStripRadialPipeline > conical_gradient_fill_strip_and_radial
Variants< BlendHardLightPipeline > blend_hardlight
Variants< FramebufferBlendColorDodgePipeline > framebuffer_blend_colordodge
Variants< PorterDuffBlendPipeline > destination_out_blend
Variants< VerticesUber1Shader > vertices_uber_1_
void ApplyToPipelineDescriptor(PipelineDescriptor &desc) const
static std::optional< PipelineDescriptor > MakeDefaultPipelineDescriptor(const Context &context, const std::vector< Scalar > &constants={})
Create a default pipeline descriptor using the combination reflected shader information....
StencilOperation depth_stencil_pass
Definition: formats.h:633
A lightweight object that describes the attributes of a texture that can then used an allocator to cr...
std::shared_ptr< const fml::Mapping > data
Definition: texture_gles.cc:69
#define VALIDATION_LOG
Definition: validation.h:91