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426c8b8f41
Currently features are represented as bits in a 32bit mask so we obviously can't have more than 32 features with that approach. The new approach is to use the COGL_FLAGS_ macros which lets us handle bitmasks without a size limit and we change the public api to accept individual feature enums instead of a mask. This way there is no limit on the number of features we can add to Cogl. Instead of using cogl_features_available() there is a new cogl_has_feature() function and for checking multiple features there is cogl_has_features() which takes a zero terminated vararg list of features. In addition to being able to check for individual features this also adds a way to query all the features currently available via cogl_foreach_feature() which will call a callback for each feature. Since the new functions take an explicit context pointer there is also no longer any ambiguity over when users can first start to query features. Reviewed-by: Neil Roberts <neil@linux.intel.com>
441 lines
14 KiB
C
441 lines
14 KiB
C
/*
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* Cogl
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*
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* An object oriented GL/GLES Abstraction/Utility Layer
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*
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* Copyright (C) 2010 Intel Corporation.
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library. If not, see
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* <http://www.gnu.org/licenses/>.
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*
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*
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*
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* Authors:
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* Neil Roberts <neil@linux.intel.com>
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*/
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#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#include "cogl-context-private.h"
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#include "cogl-pipeline-private.h"
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#include "cogl-pipeline-opengl-private.h"
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#ifdef COGL_PIPELINE_VERTEND_GLSL
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#include "cogl.h"
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#include "cogl-internal.h"
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#include "cogl-context-private.h"
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#include "cogl-handle.h"
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#include "cogl-program-private.h"
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#include "cogl-pipeline-vertend-glsl-private.h"
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const CoglPipelineVertend _cogl_pipeline_glsl_vertend;
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typedef struct
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{
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unsigned int ref_count;
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GLuint gl_shader;
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GString *header, *source;
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/* Age of the user program that was current when the shader was
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generated. We need to keep track of this because if the user
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program changes then we may need to redecide whether to generate
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a shader at all */
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unsigned int user_program_age;
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} CoglPipelineShaderState;
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static CoglUserDataKey shader_state_key;
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static CoglPipelineShaderState *
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shader_state_new (void)
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{
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CoglPipelineShaderState *shader_state;
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shader_state = g_slice_new0 (CoglPipelineShaderState);
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shader_state->ref_count = 1;
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return shader_state;
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}
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static CoglPipelineShaderState *
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get_shader_state (CoglPipeline *pipeline)
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{
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return cogl_object_get_user_data (COGL_OBJECT (pipeline), &shader_state_key);
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}
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static void
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destroy_shader_state (void *user_data)
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{
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CoglPipelineShaderState *shader_state = user_data;
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_COGL_GET_CONTEXT (ctx, NO_RETVAL);
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if (--shader_state->ref_count == 0)
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{
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if (shader_state->gl_shader)
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GE( ctx, glDeleteShader (shader_state->gl_shader) );
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g_slice_free (CoglPipelineShaderState, shader_state);
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}
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}
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static void
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set_shader_state (CoglPipeline *pipeline,
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CoglPipelineShaderState *shader_state)
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{
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cogl_object_set_user_data (COGL_OBJECT (pipeline),
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&shader_state_key,
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shader_state,
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destroy_shader_state);
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}
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static void
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dirty_shader_state (CoglPipeline *pipeline)
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{
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cogl_object_set_user_data (COGL_OBJECT (pipeline),
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&shader_state_key,
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NULL,
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NULL);
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}
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GLuint
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_cogl_pipeline_vertend_glsl_get_shader (CoglPipeline *pipeline)
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{
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CoglPipelineShaderState *shader_state = get_shader_state (pipeline);
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if (shader_state)
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return shader_state->gl_shader;
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else
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return 0;
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}
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static gboolean
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_cogl_pipeline_vertend_glsl_start (CoglPipeline *pipeline,
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int n_layers,
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unsigned long pipelines_difference)
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{
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CoglPipelineShaderState *shader_state;
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CoglPipeline *template_pipeline = NULL;
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CoglProgram *user_program;
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_COGL_GET_CONTEXT (ctx, FALSE);
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if (!cogl_has_feature (ctx, COGL_FEATURE_ID_GLSL))
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return FALSE;
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user_program = cogl_pipeline_get_user_program (pipeline);
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/* If the user program has a vertex shader that isn't GLSL then the
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appropriate vertend for that language should handle it */
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if (user_program &&
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_cogl_program_has_vertex_shader (user_program) &&
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_cogl_program_get_language (user_program) != COGL_SHADER_LANGUAGE_GLSL)
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return FALSE;
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/* Now lookup our glsl backend private state (allocating if
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* necessary) */
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shader_state = get_shader_state (pipeline);
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if (shader_state == NULL)
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{
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CoglPipeline *authority;
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/* Get the authority for anything affecting vertex shader
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state */
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authority = _cogl_pipeline_find_equivalent_parent
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(pipeline,
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COGL_PIPELINE_STATE_AFFECTS_VERTEX_CODEGEN &
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~COGL_PIPELINE_STATE_LAYERS,
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COGL_PIPELINE_LAYER_STATE_AFFECTS_VERTEX_CODEGEN);
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shader_state = get_shader_state (authority);
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if (shader_state == NULL)
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{
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/* Check if there is already a similar cached pipeline whose
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shader state we can share */
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if (G_LIKELY (!(COGL_DEBUG_ENABLED
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(COGL_DEBUG_DISABLE_PROGRAM_CACHES))))
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{
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template_pipeline =
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_cogl_pipeline_cache_get_vertex_template (ctx->pipeline_cache,
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authority);
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shader_state = get_shader_state (template_pipeline);
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}
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if (shader_state)
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shader_state->ref_count++;
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else
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shader_state = shader_state_new ();
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set_shader_state (authority, shader_state);
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if (template_pipeline)
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{
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shader_state->ref_count++;
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set_shader_state (template_pipeline, shader_state);
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}
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}
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if (authority != pipeline)
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{
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shader_state->ref_count++;
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set_shader_state (pipeline, shader_state);
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}
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}
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if (shader_state->gl_shader)
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{
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/* If we already have a valid GLSL shader then we don't need to
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generate a new one. However if there's a user program and it
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has changed since the last link then we do need a new shader */
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if (user_program == NULL ||
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shader_state->user_program_age == user_program->age)
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return TRUE;
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/* We need to recreate the shader so destroy the existing one */
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GE( ctx, glDeleteShader (shader_state->gl_shader) );
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shader_state->gl_shader = 0;
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}
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/* If we make it here then we have a shader_state struct without a gl_shader
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either because this is the first time we've encountered it or
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because the user program has changed */
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if (user_program)
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shader_state->user_program_age = user_program->age;
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/* If the user program contains a vertex shader then we don't need
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to generate one */
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if (user_program &&
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_cogl_program_has_vertex_shader (user_program))
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return TRUE;
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/* We reuse two grow-only GStrings for code-gen. One string
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contains the uniform and attribute declarations while the
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other contains the main function. We need two strings
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because we need to dynamically declare attributes as the
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add_layer callback is invoked */
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g_string_set_size (ctx->codegen_header_buffer, 0);
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g_string_set_size (ctx->codegen_source_buffer, 0);
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shader_state->header = ctx->codegen_header_buffer;
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shader_state->source = ctx->codegen_source_buffer;
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g_string_append (shader_state->source,
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"void\n"
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"main ()\n"
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"{\n");
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if (ctx->driver == COGL_DRIVER_GLES2)
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/* There is no builtin uniform for the pointsize on GLES2 so we need
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to copy it from the custom uniform in the vertex shader */
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g_string_append (shader_state->source,
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" cogl_point_size_out = cogl_point_size_in;\n");
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/* On regular OpenGL we'll just flush the point size builtin */
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else if (pipelines_difference & COGL_PIPELINE_STATE_POINT_SIZE)
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{
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CoglPipeline *authority =
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_cogl_pipeline_get_authority (pipeline, COGL_PIPELINE_STATE_POINT_SIZE);
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if (ctx->point_size_cache != authority->big_state->point_size)
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{
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GE( ctx, glPointSize (authority->big_state->point_size) );
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ctx->point_size_cache = authority->big_state->point_size;
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}
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}
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return TRUE;
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}
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static gboolean
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_cogl_pipeline_vertend_glsl_add_layer (CoglPipeline *pipeline,
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CoglPipelineLayer *layer,
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unsigned long layers_difference)
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{
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CoglPipelineShaderState *shader_state;
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int unit_index;
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_COGL_GET_CONTEXT (ctx, FALSE);
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shader_state = get_shader_state (pipeline);
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unit_index = _cogl_pipeline_layer_get_unit_index (layer);
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if (ctx->driver != COGL_DRIVER_GLES2)
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{
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/* We are using the fixed function uniforms for the user matrices
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and the only way to set them is with the fixed function API so we
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still need to flush them here */
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if (layers_difference & COGL_PIPELINE_LAYER_STATE_USER_MATRIX)
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{
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CoglPipelineLayerState state = COGL_PIPELINE_LAYER_STATE_USER_MATRIX;
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CoglPipelineLayer *authority =
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_cogl_pipeline_layer_get_authority (layer, state);
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CoglTextureUnit *unit = _cogl_get_texture_unit (unit_index);
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_cogl_matrix_stack_set (unit->matrix_stack,
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&authority->big_state->matrix);
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_cogl_set_active_texture_unit (unit_index);
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_cogl_matrix_stack_flush_to_gl (unit->matrix_stack,
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COGL_MATRIX_TEXTURE);
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}
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}
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if (shader_state->source == NULL)
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return TRUE;
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/* Transform the texture coordinates by the layer's user matrix.
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*
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* FIXME: this should avoid doing the transform if there is no user
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* matrix set. This might need a separate layer state flag for
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* whether there is a user matrix
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*
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* FIXME: we could be more clever here and try to detect if the
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* fragment program is going to use the texture coordinates and
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* avoid setting them if not
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*/
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g_string_append_printf (shader_state->source,
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" cogl_tex_coord_out[%i] = "
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"cogl_texture_matrix[%i] * cogl_tex_coord%i_in;\n",
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unit_index, unit_index, unit_index);
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return TRUE;
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}
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static gboolean
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_cogl_pipeline_vertend_glsl_end (CoglPipeline *pipeline,
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unsigned long pipelines_difference)
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{
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CoglPipelineShaderState *shader_state;
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_COGL_GET_CONTEXT (ctx, FALSE);
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shader_state = get_shader_state (pipeline);
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if (shader_state->source)
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{
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const char *source_strings[2];
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GLint lengths[2];
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GLint compile_status;
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GLuint shader;
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int n_layers;
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COGL_STATIC_COUNTER (vertend_glsl_compile_counter,
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"glsl vertex compile counter",
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"Increments each time a new GLSL "
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"vertex shader is compiled",
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0 /* no application private data */);
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COGL_COUNTER_INC (_cogl_uprof_context, vertend_glsl_compile_counter);
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g_string_append (shader_state->source,
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" cogl_position_out = "
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"cogl_modelview_projection_matrix * "
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"cogl_position_in;\n"
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" cogl_color_out = cogl_color_in;\n"
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"}\n");
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GE_RET( shader, ctx, glCreateShader (GL_VERTEX_SHADER) );
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lengths[0] = shader_state->header->len;
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source_strings[0] = shader_state->header->str;
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lengths[1] = shader_state->source->len;
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source_strings[1] = shader_state->source->str;
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n_layers = cogl_pipeline_get_n_layers (pipeline);
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_cogl_shader_set_source_with_boilerplate (shader, GL_VERTEX_SHADER,
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n_layers,
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2, /* count */
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source_strings, lengths);
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GE( ctx, glCompileShader (shader) );
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GE( ctx, glGetShaderiv (shader, GL_COMPILE_STATUS, &compile_status) );
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if (!compile_status)
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{
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GLint len = 0;
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char *shader_log;
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GE( ctx, glGetShaderiv (shader, GL_INFO_LOG_LENGTH, &len) );
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shader_log = g_alloca (len);
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GE( ctx, glGetShaderInfoLog (shader, len, &len, shader_log) );
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g_warning ("Shader compilation failed:\n%s", shader_log);
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}
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shader_state->header = NULL;
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shader_state->source = NULL;
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shader_state->gl_shader = shader;
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}
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return TRUE;
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}
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static void
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_cogl_pipeline_vertend_glsl_pre_change_notify (CoglPipeline *pipeline,
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CoglPipelineState change,
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const CoglColor *new_color)
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{
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if ((change & COGL_PIPELINE_STATE_AFFECTS_VERTEX_CODEGEN))
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dirty_shader_state (pipeline);
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}
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/* NB: layers are considered immutable once they have any dependants
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* so although multiple pipelines can end up depending on a single
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* static layer, we can guarantee that if a layer is being *changed*
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* then it can only have one pipeline depending on it.
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*
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* XXX: Don't forget this is *pre* change, we can't read the new value
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* yet!
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*/
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static void
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_cogl_pipeline_vertend_glsl_layer_pre_change_notify (
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CoglPipeline *owner,
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CoglPipelineLayer *layer,
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CoglPipelineLayerState change)
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{
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CoglPipelineShaderState *shader_state;
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shader_state = get_shader_state (owner);
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if (!shader_state)
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return;
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if ((change & COGL_PIPELINE_LAYER_STATE_AFFECTS_VERTEX_CODEGEN))
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{
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dirty_shader_state (owner);
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return;
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}
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/* TODO: we could be saving snippets of texture combine code along
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* with each layer and then when a layer changes we would just free
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* the snippet. */
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}
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const CoglPipelineVertend _cogl_pipeline_glsl_vertend =
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{
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_cogl_pipeline_vertend_glsl_start,
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_cogl_pipeline_vertend_glsl_add_layer,
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_cogl_pipeline_vertend_glsl_end,
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_cogl_pipeline_vertend_glsl_pre_change_notify,
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_cogl_pipeline_vertend_glsl_layer_pre_change_notify
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};
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#endif /* COGL_PIPELINE_VERTEND_GLSL */
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