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oak-editor/app/render/colormanagement.cpp
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/***
Olive - Non-Linear Video Editor
Copyright (C) 2022 Olive Team
Modifications Copyright (C) 2025 mikesolar
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
***/
#include "renderer.h"
#include "common/filefunctions.h"
#include "node/node.h"
#include "render/colorprocessor.h"
#include "render/job/colortransformjob.h"
#include "render/job/shaderjob.h"
namespace olive
{
bool Renderer::GetColorContext(const ColorTransformJob &color_job,
Renderer::ColorContext *ctx)
{
QMutexLocker locker(&color_cache_mutex_);
ColorContext &color_ctx = *ctx;
QString proc_id = color_job.id();
if (color_cache_.contains(proc_id)) {
color_ctx = color_cache_.value(proc_id);
return true;
} else {
locker.unlock();
// Create shader description
QString ocio_func_name;
if (color_job.GetFunctionName().isEmpty()) {
ocio_func_name = "OCIODisplay";
} else {
ocio_func_name = color_job.GetFunctionName();
}
auto shader_desc = OCIO::GpuShaderDesc::CreateShaderDesc();
shader_desc->setLanguage(OCIO::GPU_LANGUAGE_GLSL_ES_3_0);
shader_desc->setFunctionName(ocio_func_name.toUtf8());
shader_desc->setResourcePrefix("ocio_");
// Generate shader
color_job.GetColorProcessor()
->GetProcessor()
->getDefaultGPUProcessor()
->extractGpuShaderInfo(shader_desc);
ShaderCode code;
if (const Node *shader_src = color_job.CustomShaderSource()) {
// Use shader code from associated node
code = shader_src->GetShaderCode(
{ color_job.CustomShaderID(), shader_desc->getShaderText() });
} else {
// Generate shader code using OCIO stub and our auto-generated name
code = FileFunctions::ReadFileAsString(
QStringLiteral(":/shaders/colormanage.frag"));
code.set_frag_code(
code.frag_code().arg(shader_desc->getShaderText()));
}
// Try to compile shader
color_ctx.compiled_shader = CreateNativeShader(code);
if (color_ctx.compiled_shader.isNull()) {
return false;
}
color_ctx.lut3d_textures.resize(shader_desc->getNum3DTextures());
for (unsigned int i = 0; i < shader_desc->getNum3DTextures(); i++) {
const char *tex_name = nullptr;
const char *sampler_name = nullptr;
unsigned int edge_len = 0;
OCIO::Interpolation interpolation = OCIO::INTERP_LINEAR;
shader_desc->get3DTexture(i, tex_name, sampler_name, edge_len,
interpolation);
if (!tex_name || !*tex_name || !sampler_name || !*sampler_name ||
!edge_len) {
qCritical() << "3D LUT texture data is corrupted";
return false;
}
const float *values = nullptr;
shader_desc->get3DTextureValues(i, values);
if (!values) {
qCritical() << "3D LUT texture values are missing";
return false;
}
// Allocate 3D LUT
color_ctx.lut3d_textures[i].texture = CreateTexture(
VideoParams(edge_len, edge_len, edge_len, PixelFormat::F32,
VideoParams::kRGBChannelCount),
values);
color_ctx.lut3d_textures[i].name = sampler_name;
color_ctx.lut3d_textures[i].interpolation =
(interpolation == OCIO::INTERP_NEAREST) ? Texture::kNearest :
Texture::kLinear;
}
color_ctx.lut1d_textures.resize(shader_desc->getNumTextures());
for (unsigned int i = 0; i < shader_desc->getNumTextures(); i++) {
const char *tex_name = nullptr;
const char *sampler_name = nullptr;
unsigned int width = 0, height = 0;
OCIO::GpuShaderDesc::TextureType channel =
OCIO::GpuShaderDesc::TEXTURE_RGB_CHANNEL;
OCIO::Interpolation interpolation = OCIO::INTERP_LINEAR;
#if OCIO_VERSION_MAJOR > 2 || (OCIO_VERSION_MAJOR == 2 && OCIO_VERSION_MINOR >= 3)
OCIO::GpuShaderDesc::TextureDimensions dimensions =
OCIO::GpuShaderDesc::TEXTURE_2D;
shader_desc->getTexture(i, tex_name, sampler_name, width, height,
channel, dimensions, interpolation);
#else
shader_desc->getTexture(i, tex_name, sampler_name, width, height,
channel, interpolation);
#endif
if (!tex_name || !*tex_name || !sampler_name || !*sampler_name ||
!width) {
qCritical() << "1D LUT texture data is corrupted";
return false;
}
const float *values = nullptr;
shader_desc->getTextureValues(i, values);
if (!values) {
qCritical() << "1D LUT texture values are missing";
return false;
}
// Allocate 1D LUT
int lut_channels = (channel ==
OCIO::GpuShaderDesc::TEXTURE_RED_CHANNEL) ?
1 :
VideoParams::kRGBChannelCount;
VideoParams lut_params(width, height, PixelFormat::F32, lut_channels);
color_ctx.lut1d_textures[i].texture = CreateTexture(lut_params, values);
color_ctx.lut1d_textures[i].name = sampler_name;
color_ctx.lut1d_textures[i].interpolation =
(interpolation == OCIO::INTERP_NEAREST) ? Texture::kNearest :
Texture::kLinear;
}
locker.relock();
color_cache_.insert(proc_id, color_ctx);
return true;
}
}
void Renderer::BlitColorManaged(const ColorTransformJob &color_job,
Texture *destination, const VideoParams &params)
{
ColorContext color_ctx;
if (!GetColorContext(color_job, &color_ctx)) {
ShaderJob fallback_job;
fallback_job.Insert(QStringLiteral("ove_maintex"),
color_job.GetInputTexture());
fallback_job.Insert(
QStringLiteral("ove_mvpmat"),
NodeValue(NodeValue::kMatrix, color_job.GetTransformMatrix()));
if (destination) {
BlitToTexture(GetDefaultShader(), fallback_job, destination,
color_job.IsClearDestinationEnabled());
} else {
Blit(GetDefaultShader(), fallback_job, params,
color_job.IsClearDestinationEnabled());
}
return;
}
ShaderJob job;
job.Insert(QStringLiteral("ove_maintex"), color_job.GetInputTexture());
job.Insert(QStringLiteral("ove_mvpmat"),
NodeValue(NodeValue::kMatrix, color_job.GetTransformMatrix()));
job.Insert(QStringLiteral("ove_cropmatrix"),
NodeValue(NodeValue::kMatrix,
color_job.GetCropMatrix().inverted()));
job.Insert(QStringLiteral("ove_maintex_alpha"),
NodeValue(NodeValue::kInt,
int(color_job.GetInputAlphaAssociation())));
job.Insert(QStringLiteral("ove_force_opaque"),
NodeValue(NodeValue::kBoolean, color_job.GetForceOpaque()));
job.Insert(color_job.GetValues());
foreach (const ColorContext::LUT &l, color_ctx.lut3d_textures) {
job.Insert(l.name, NodeValue(NodeValue::kTexture,
QVariant::fromValue(l.texture)));
job.SetInterpolation(l.name, l.interpolation);
}
foreach (const ColorContext::LUT &l, color_ctx.lut1d_textures) {
job.Insert(l.name, NodeValue(NodeValue::kTexture,
QVariant::fromValue(l.texture)));
job.SetInterpolation(l.name, l.interpolation);
}
if (destination) {
BlitToTexture(color_ctx.compiled_shader, job, destination,
color_job.IsClearDestinationEnabled());
} else {
Blit(color_ctx.compiled_shader, job, params,
color_job.IsClearDestinationEnabled());
}
}
}