]> git.sesse.net Git - nageru/blobdiff - ycbcr_converter.cpp
Implement fades.
[nageru] / ycbcr_converter.cpp
index d038fc46f518f862a684cf96baae7090cb44375c..40d1a9cd771d04cc1f37d1d809dba47ed000f964 100644 (file)
@@ -8,6 +8,30 @@
 using namespace std;
 using namespace movit;
 
+namespace {
+
+void setup_outputs(YCbCrConverter::OutputMode output_mode, const ImageFormat &output_format, const YCbCrFormat &ycbcr_output_format, EffectChain *chain)
+{
+       if (output_mode == YCbCrConverter::OUTPUT_TO_RGBA) {
+               chain->add_output(output_format, OUTPUT_ALPHA_FORMAT_POSTMULTIPLIED);
+               chain->set_output_origin(OUTPUT_ORIGIN_BOTTOM_LEFT);
+       } else if (output_mode == YCbCrConverter::OUTPUT_TO_SEMIPLANAR) {
+               chain->add_ycbcr_output(output_format, OUTPUT_ALPHA_FORMAT_POSTMULTIPLIED, ycbcr_output_format, YCBCR_OUTPUT_SPLIT_Y_AND_CBCR);
+               chain->set_output_origin(OUTPUT_ORIGIN_TOP_LEFT);
+       } else {
+               assert(output_mode == YCbCrConverter::OUTPUT_TO_DUAL_YCBCR);
+
+               // One full Y'CbCr texture (for interpolation), one that's just Y (throwing away the
+               // Cb and Cr channels). The second copy is sort of redundant, but it's the easiest way
+               // of getting the gray data into a layered texture.
+               chain->add_ycbcr_output(output_format, OUTPUT_ALPHA_FORMAT_POSTMULTIPLIED, ycbcr_output_format);
+               chain->add_ycbcr_output(output_format, OUTPUT_ALPHA_FORMAT_POSTMULTIPLIED, ycbcr_output_format);
+               chain->set_output_origin(OUTPUT_ORIGIN_TOP_LEFT);
+       }
+}
+
+}  // namespace
+
 YCbCrConverter::YCbCrConverter(YCbCrConverter::OutputMode output_mode, ResourcePool *resource_pool)
 {
        ImageFormat inout_format;
@@ -30,36 +54,58 @@ YCbCrConverter::YCbCrConverter(YCbCrConverter::OutputMode output_mode, ResourceP
        // Planar Y'CbCr decoding chain.
        planar_chain.reset(new EffectChain(1280, 720, resource_pool));
        ycbcr_planar_input = (YCbCrInput *)planar_chain->add_input(new YCbCrInput(inout_format, ycbcr_format, 1280, 720, YCBCR_INPUT_PLANAR));
-       if (output_mode == OUTPUT_TO_RGBA) {
-               planar_chain->add_output(inout_format, OUTPUT_ALPHA_FORMAT_POSTMULTIPLIED);
-               planar_chain->set_output_origin(OUTPUT_ORIGIN_BOTTOM_LEFT);
-       } else {
-               assert(output_mode == OUTPUT_TO_DUAL_YCBCR);
-
-               // One full Y'CbCr texture (for interpolation), one that's just Y (throwing away the
-               // Cb and Cr channels). The second copy is sort of redundant, but it's the easiest way
-               // of getting the gray data into a layered texture.
-               planar_chain->add_ycbcr_output(inout_format, OUTPUT_ALPHA_FORMAT_POSTMULTIPLIED, ycbcr_output_format);
-               planar_chain->add_ycbcr_output(inout_format, OUTPUT_ALPHA_FORMAT_POSTMULTIPLIED, ycbcr_output_format);
-               planar_chain->set_output_origin(OUTPUT_ORIGIN_TOP_LEFT);
-       }
+       setup_outputs(output_mode, inout_format, ycbcr_output_format, planar_chain.get());
        planar_chain->set_dither_bits(8);
        planar_chain->finalize();
 
        // Semiplanar Y'CbCr decoding chain (for images coming from VA-API).
        semiplanar_chain.reset(new EffectChain(1280, 720, resource_pool));
        ycbcr_semiplanar_input = (YCbCrInput *)semiplanar_chain->add_input(new YCbCrInput(inout_format, ycbcr_format, 1280, 720, YCBCR_INPUT_SPLIT_Y_AND_CBCR));
-       if (output_mode == OUTPUT_TO_RGBA) {
-               semiplanar_chain->add_output(inout_format, OUTPUT_ALPHA_FORMAT_POSTMULTIPLIED);
-               semiplanar_chain->set_output_origin(OUTPUT_ORIGIN_BOTTOM_LEFT);
-       } else {
-               // See above.
-               semiplanar_chain->add_ycbcr_output(inout_format, OUTPUT_ALPHA_FORMAT_POSTMULTIPLIED, ycbcr_output_format);
-               semiplanar_chain->add_ycbcr_output(inout_format, OUTPUT_ALPHA_FORMAT_POSTMULTIPLIED, ycbcr_output_format);
-               semiplanar_chain->set_output_origin(OUTPUT_ORIGIN_TOP_LEFT);
-       }
+       setup_outputs(output_mode, inout_format, ycbcr_output_format, semiplanar_chain.get());
        semiplanar_chain->set_dither_bits(8);
        semiplanar_chain->finalize();
+
+       // Fade chains.
+       for (bool first_input_is_semiplanar : { false, true }) {
+               for (bool second_input_is_semiplanar : { false, true }) {
+                       FadeChain &fade_chain = fade_chains[first_input_is_semiplanar][second_input_is_semiplanar];
+                       fade_chain.chain.reset(new EffectChain(1280, 720, resource_pool));
+                       fade_chain.input[0] = (movit::YCbCrInput *)fade_chain.chain->add_input(
+                               new YCbCrInput(inout_format, ycbcr_format, 1280, 720,
+                                       first_input_is_semiplanar ? YCBCR_INPUT_SPLIT_Y_AND_CBCR : YCBCR_INPUT_PLANAR));
+                       fade_chain.input[1] = (movit::YCbCrInput *)fade_chain.chain->add_input(
+                               new YCbCrInput(inout_format, ycbcr_format, 1280, 720,
+                                       second_input_is_semiplanar ? YCBCR_INPUT_SPLIT_Y_AND_CBCR : YCBCR_INPUT_PLANAR));
+                       fade_chain.mix_effect = (movit::MixEffect *)fade_chain.chain->add_effect(
+                               new MixEffect, fade_chain.input[0], fade_chain.input[1]);
+                       setup_outputs(output_mode, inout_format, ycbcr_output_format, fade_chain.chain.get());
+                       fade_chain.chain->set_dither_bits(8);
+                       fade_chain.chain->finalize();
+               }
+       }
+
+       // Fade from interleaved chain (ie., first input is interleaved, since it comes
+       // directly from the GPU anyway).
+       for (bool second_input_is_semiplanar : { false, true }) {
+               FadeChain &fade_chain = interleaved_fade_chains[second_input_is_semiplanar];
+               fade_chain.chain.reset(new EffectChain(1280, 720, resource_pool));
+
+               ycbcr_format.chroma_subsampling_x = 1;
+               fade_chain.input[0] = (movit::YCbCrInput *)fade_chain.chain->add_input(
+                       new YCbCrInput(inout_format, ycbcr_format, 1280, 720,
+                               YCBCR_INPUT_INTERLEAVED));
+
+               ycbcr_format.chroma_subsampling_x = 2;
+               fade_chain.input[1] = (movit::YCbCrInput *)fade_chain.chain->add_input(
+                       new YCbCrInput(inout_format, ycbcr_format, 1280, 720,
+                               second_input_is_semiplanar ? YCBCR_INPUT_SPLIT_Y_AND_CBCR : YCBCR_INPUT_PLANAR));
+
+               fade_chain.mix_effect = (movit::MixEffect *)fade_chain.chain->add_effect(
+                       new MixEffect, fade_chain.input[0], fade_chain.input[1]);
+               setup_outputs(output_mode, inout_format, ycbcr_output_format, fade_chain.chain.get());
+               fade_chain.chain->set_dither_bits(8);
+               fade_chain.chain->finalize();
+       }
 }
 
 EffectChain *YCbCrConverter::prepare_chain_for_conversion(shared_ptr<Frame> frame)
@@ -73,6 +119,42 @@ EffectChain *YCbCrConverter::prepare_chain_for_conversion(shared_ptr<Frame> fram
        }
 }
 
+EffectChain *YCbCrConverter::prepare_chain_for_fade(shared_ptr<Frame> frame, shared_ptr<Frame> secondary_frame, float fade_alpha)
+{
+       const FadeChain &fade_chain = fade_chains[frame->is_semiplanar][secondary_frame->is_semiplanar];
+       setup_input_for_frame(frame, ycbcr_format, fade_chain.input[0]);
+       setup_input_for_frame(secondary_frame, ycbcr_format, fade_chain.input[1]);
+       bool ok = fade_chain.mix_effect->set_float("strength_first", 1.0f - fade_alpha);
+       ok |= fade_chain.mix_effect->set_float("strength_second", fade_alpha);
+       assert(ok);
+       return fade_chain.chain.get();
+}
+
+EffectChain *YCbCrConverter::prepare_chain_for_fade_from_texture(GLuint tex, std::shared_ptr<Frame> secondary_frame, float fade_alpha)
+{
+       const FadeChain &fade_chain = interleaved_fade_chains[secondary_frame->is_semiplanar];
+       {
+               YCbCrFormat format_copy = ycbcr_format;
+               format_copy.chroma_subsampling_x = 1;
+               format_copy.chroma_subsampling_y = 1;
+               fade_chain.input[0]->change_ycbcr_format(format_copy);
+
+               fade_chain.input[0]->set_width(1280);  // FIXME
+               fade_chain.input[0]->set_height(720);
+               fade_chain.input[0]->set_texture_num(0, tex);
+
+               glTextureParameteri(tex, GL_TEXTURE_MIN_FILTER, GL_LINEAR);
+               glTextureParameteri(tex, GL_TEXTURE_MAG_FILTER, GL_LINEAR);
+               glTextureParameteri(tex, GL_TEXTURE_WRAP_S, GL_CLAMP_TO_BORDER);
+               glTextureParameteri(tex, GL_TEXTURE_WRAP_T, GL_CLAMP_TO_BORDER);
+       }
+       setup_input_for_frame(secondary_frame, ycbcr_format, fade_chain.input[1]);
+       bool ok = fade_chain.mix_effect->set_float("strength_first", 1.0f - fade_alpha);
+       ok |= fade_chain.mix_effect->set_float("strength_second", fade_alpha);
+       assert(ok);
+       return fade_chain.chain.get();
+}
+
 void setup_input_for_frame(shared_ptr<Frame> frame, const YCbCrFormat &ycbcr_format, YCbCrInput *input)
 {
        YCbCrFormat format_copy = ycbcr_format;