forked from AuroraMiddleware/gtk
58c2bea959
Use the category we get from transform nodes and add ops_ API to supply one when we set a graphene_matrix_t directly.
756 lines
21 KiB
C
756 lines
21 KiB
C
#include "gskglrenderopsprivate.h"
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static inline gboolean
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rect_equal (const graphene_rect_t *a,
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const graphene_rect_t *b)
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{
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return memcmp (a, b, sizeof (graphene_rect_t)) == 0;
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}
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void
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ops_finish (RenderOpBuilder *builder)
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{
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if (builder->mv_stack)
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g_array_free (builder->mv_stack, TRUE);
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if (builder->clip_stack)
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g_array_free (builder->clip_stack, TRUE);
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}
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static inline void
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rgba_to_float (const GdkRGBA *c,
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float *f)
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{
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f[0] = c->red;
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f[1] = c->green;
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f[2] = c->blue;
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f[3] = c->alpha;
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}
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/* Debugging only! */
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void
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ops_dump_framebuffer (RenderOpBuilder *builder,
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const char *filename,
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int width,
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int height)
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{
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RenderOp op;
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op.op = OP_DUMP_FRAMEBUFFER;
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op.dump.filename = g_strdup (filename);
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op.dump.width = width;
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op.dump.height = height;
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g_array_append_val (builder->render_ops, op);
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}
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float
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ops_get_scale (const RenderOpBuilder *builder)
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{
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const MatrixStackEntry *head;
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g_assert (builder->mv_stack != NULL);
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g_assert (builder->mv_stack->len >= 1);
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head = &g_array_index (builder->mv_stack, MatrixStackEntry, builder->mv_stack->len - 1);
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/* TODO: Use two separate values */
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return MAX (head->metadata.scale_x,
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head->metadata.scale_y);
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}
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static void
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extract_matrix_metadata (const graphene_matrix_t *m,
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OpsMatrixMetadata *md)
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{
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switch (md->category)
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{
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case GSK_MATRIX_CATEGORY_IDENTITY:
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md->scale_x = 1;
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md->scale_y = 1;
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break;
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case GSK_MATRIX_CATEGORY_2D_TRANSLATE:
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md->translate_x = graphene_matrix_get_value (m, 3, 0);
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md->translate_y = graphene_matrix_get_value (m, 3, 1);
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md->scale_x = 1;
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md->scale_y = 1;
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break;
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case GSK_MATRIX_CATEGORY_UNKNOWN:
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case GSK_MATRIX_CATEGORY_ANY:
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case GSK_MATRIX_CATEGORY_INVERTIBLE:
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case GSK_MATRIX_CATEGORY_2D_AFFINE:
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{
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graphene_vec3_t col1;
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graphene_vec3_t col2;
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md->translate_x = graphene_matrix_get_value (m, 3, 0);
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md->translate_y = graphene_matrix_get_value (m, 3, 1);
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graphene_vec3_init (&col1,
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graphene_matrix_get_value (m, 0, 0),
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graphene_matrix_get_value (m, 1, 0),
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graphene_matrix_get_value (m, 2, 0));
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graphene_vec3_init (&col2,
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graphene_matrix_get_value (m, 0, 1),
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graphene_matrix_get_value (m, 1, 1),
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graphene_matrix_get_value (m, 2, 1));
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md->scale_x = graphene_vec3_length (&col1);
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md->scale_y = graphene_vec3_length (&col2);
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}
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break;
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default:
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{}
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}
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}
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void
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ops_transform_bounds_modelview (const RenderOpBuilder *builder,
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const graphene_rect_t *src,
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graphene_rect_t *dst)
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{
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const MatrixStackEntry *head;
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g_assert (builder->mv_stack != NULL);
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g_assert (builder->mv_stack->len >= 1);
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head = &g_array_index (builder->mv_stack, MatrixStackEntry, builder->mv_stack->len - 1);
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switch (head->metadata.category)
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{
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case GSK_MATRIX_CATEGORY_IDENTITY:
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*dst = *src;
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break;
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case GSK_MATRIX_CATEGORY_2D_TRANSLATE:
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*dst = *src;
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dst->origin.x += head->metadata.translate_x;
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dst->origin.y += head->metadata.translate_y;
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break;
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/* TODO: Handle scale */
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case GSK_MATRIX_CATEGORY_2D_AFFINE:
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case GSK_MATRIX_CATEGORY_UNKNOWN:
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case GSK_MATRIX_CATEGORY_ANY:
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case GSK_MATRIX_CATEGORY_INVERTIBLE:
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default:
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graphene_matrix_transform_bounds (builder->current_modelview,
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src,
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dst);
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}
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dst->origin.x += builder->dx * head->metadata.scale_x;
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dst->origin.y += builder->dy * head->metadata.scale_y;
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}
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void
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ops_set_program (RenderOpBuilder *builder,
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const Program *program)
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{
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/* The tricky part about this is that we want to initialize all uniforms of a program
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* to the current value from the builder, but only once. */
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static const GskRoundedRect empty_clip;
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static const graphene_matrix_t empty_matrix;
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static const graphene_rect_t empty_rect;
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RenderOp op;
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ProgramState *program_state;
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if (builder->current_program == program)
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return;
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op.op = OP_CHANGE_PROGRAM;
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op.program = program;
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g_array_append_val (builder->render_ops, op);
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builder->current_program = program;
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program_state = &builder->program_state[program->index];
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/* If the projection is not yet set for this program, we use the current one. */
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if (memcmp (&empty_matrix, &program_state->projection, sizeof (graphene_matrix_t)) == 0 ||
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memcmp (&builder->current_projection, &program_state->projection, sizeof (graphene_matrix_t)) != 0)
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{
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op.op = OP_CHANGE_PROJECTION;
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op.projection = builder->current_projection;
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g_array_append_val (builder->render_ops, op);
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program_state->projection = builder->current_projection;
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}
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if (memcmp (&empty_matrix, &program_state->modelview, sizeof (graphene_matrix_t)) == 0 ||
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memcmp (builder->current_modelview, &program_state->modelview, sizeof (graphene_matrix_t)) != 0)
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{
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op.op = OP_CHANGE_MODELVIEW;
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op.modelview = *builder->current_modelview;
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g_array_append_val (builder->render_ops, op);
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program_state->modelview = *builder->current_modelview;
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}
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if (rect_equal (&empty_rect, &program_state->viewport) ||
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!rect_equal (&builder->current_viewport, &program_state->viewport))
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{
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op.op = OP_CHANGE_VIEWPORT;
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op.viewport = builder->current_viewport;
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g_array_append_val (builder->render_ops, op);
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program_state->viewport = builder->current_viewport;
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}
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if (memcmp (&empty_clip, &program_state->clip, sizeof (GskRoundedRect)) == 0 ||
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memcmp (&builder->current_clip, &program_state->clip, sizeof (GskRoundedRect)) != 0)
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{
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op.op = OP_CHANGE_CLIP;
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op.clip = *builder->current_clip;
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g_array_append_val (builder->render_ops, op);
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program_state->clip = *builder->current_clip;
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}
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if (program_state->opacity != builder->current_opacity)
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{
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op.op = OP_CHANGE_OPACITY;
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op.opacity = builder->current_opacity;
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g_array_append_val (builder->render_ops, op);
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program_state->opacity = builder->current_opacity;
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}
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builder->current_program_state = &builder->program_state[program->index];
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}
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static void
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ops_set_clip (RenderOpBuilder *builder,
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const GskRoundedRect *clip)
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{
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RenderOp *last_op;
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if (builder->current_program_state &&
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memcmp (&builder->current_program_state->clip, clip,sizeof (GskRoundedRect)) == 0)
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return;
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if (builder->render_ops->len > 0)
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{
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last_op = &g_array_index (builder->render_ops, RenderOp, builder->render_ops->len - 1);
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if (last_op->op == OP_CHANGE_CLIP)
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{
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last_op->clip = *clip;
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}
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else
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{
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RenderOp op;
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op.op = OP_CHANGE_CLIP;
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op.clip = *clip;
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g_array_append_val (builder->render_ops, op);
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}
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}
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if (builder->current_program != NULL)
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builder->current_program_state->clip = *clip;
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}
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void
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ops_push_clip (RenderOpBuilder *self,
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const GskRoundedRect *clip)
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{
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if (G_UNLIKELY (self->clip_stack == NULL))
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self->clip_stack = g_array_new (FALSE, TRUE, sizeof (GskRoundedRect));
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g_assert (self->clip_stack != NULL);
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g_array_append_val (self->clip_stack, *clip);
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self->current_clip = &g_array_index (self->clip_stack, GskRoundedRect, self->clip_stack->len - 1);
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ops_set_clip (self, clip);
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}
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void
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ops_pop_clip (RenderOpBuilder *self)
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{
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const GskRoundedRect *head;
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g_assert (self->clip_stack);
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g_assert (self->clip_stack->len >= 1);
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self->clip_stack->len --;
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head = &g_array_index (self->clip_stack, GskRoundedRect, self->clip_stack->len - 1);
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if (self->clip_stack->len >= 1)
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{
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self->current_clip = head;
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ops_set_clip (self, head);
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}
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else
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{
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self->current_clip = NULL;
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}
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}
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gboolean
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ops_has_clip (RenderOpBuilder *self)
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{
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return self->clip_stack != NULL &&
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self->clip_stack->len > 1;
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}
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static void
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ops_set_modelview_internal (RenderOpBuilder *builder,
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const graphene_matrix_t *modelview)
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{
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RenderOp op;
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if (builder->current_program &&
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memcmp (&builder->current_program_state->modelview, modelview,
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sizeof (graphene_matrix_t)) == 0)
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return;
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if (builder->render_ops->len > 0)
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{
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RenderOp *last_op = &g_array_index (builder->render_ops, RenderOp, builder->render_ops->len - 1);
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if (last_op->op == OP_CHANGE_MODELVIEW)
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{
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last_op->modelview = *modelview;
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}
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else
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{
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op.op = OP_CHANGE_MODELVIEW;
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op.modelview = *modelview;
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g_array_append_val (builder->render_ops, op);
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}
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}
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else
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{
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op.op = OP_CHANGE_MODELVIEW;
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op.modelview = *modelview;
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g_array_append_val (builder->render_ops, op);
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}
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if (builder->current_program != NULL)
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builder->current_program_state->modelview = *modelview;
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}
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/* This sets the modelview to the given one without looking at the
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* one that's currently set */
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void
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ops_set_modelview (RenderOpBuilder *builder,
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const graphene_matrix_t *mv,
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GskMatrixCategory mv_category)
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{
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MatrixStackEntry *entry;
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if (G_UNLIKELY (builder->mv_stack == NULL))
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builder->mv_stack = g_array_new (FALSE, TRUE, sizeof (MatrixStackEntry));
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g_assert (builder->mv_stack != NULL);
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g_array_set_size (builder->mv_stack, builder->mv_stack->len + 1);
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entry = &g_array_index (builder->mv_stack, MatrixStackEntry, builder->mv_stack->len - 1);
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entry->matrix = *mv;
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entry->metadata.category = mv_category;
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entry->metadata.dx_before = builder->dx;
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entry->metadata.dy_before = builder->dy;
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extract_matrix_metadata (mv, &entry->metadata);
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builder->dx = 0;
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builder->dy = 0;
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builder->current_modelview = &entry->matrix;
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ops_set_modelview_internal (builder, &entry->matrix);
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}
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/* This sets the given modelview to the one we get when multiplying
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* the given modelview with the current one. */
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void
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ops_push_modelview (RenderOpBuilder *builder,
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const graphene_matrix_t *mv,
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GskMatrixCategory mv_category)
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{
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float scale = ops_get_scale (builder);
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MatrixStackEntry *entry;
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if (G_UNLIKELY (builder->mv_stack == NULL))
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builder->mv_stack = g_array_new (FALSE, TRUE, sizeof (MatrixStackEntry));
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g_assert (builder->mv_stack != NULL);
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g_array_set_size (builder->mv_stack, builder->mv_stack->len + 1);
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entry = &g_array_index (builder->mv_stack, MatrixStackEntry, builder->mv_stack->len - 1);
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if (G_LIKELY (builder->mv_stack->len >= 2))
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{
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const MatrixStackEntry *cur;
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cur = &g_array_index (builder->mv_stack, MatrixStackEntry, builder->mv_stack->len - 2);
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/* Multiply given matrix with current modelview */
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graphene_matrix_multiply (mv, &cur->matrix, &entry->matrix);
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graphene_matrix_translate (&entry->matrix,
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&(graphene_point3d_t) { builder->dx * scale, builder->dy * scale, 0});
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entry->metadata.category = MIN (mv_category, cur->metadata.category);
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}
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else
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{
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entry->matrix = *mv;
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entry->metadata.category = mv_category;
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}
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entry->metadata.dx_before = builder->dx;
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entry->metadata.dy_before = builder->dy;
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extract_matrix_metadata (mv, &entry->metadata);
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builder->dx = 0;
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builder->dy = 0;
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builder->current_modelview = &entry->matrix;
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ops_set_modelview_internal (builder, &entry->matrix);
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}
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void
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ops_pop_modelview (RenderOpBuilder *builder)
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{
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const graphene_matrix_t *m;
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const MatrixStackEntry *head;
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g_assert (builder->mv_stack);
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g_assert (builder->mv_stack->len >= 1);
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head = &g_array_index (builder->mv_stack, MatrixStackEntry, builder->mv_stack->len - 1);
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builder->dx = head->metadata.dx_before;
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builder->dy = head->metadata.dy_before;
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builder->mv_stack->len --;
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head = &g_array_index (builder->mv_stack, MatrixStackEntry, builder->mv_stack->len - 1);
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m = &head->matrix;
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if (builder->mv_stack->len >= 1)
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{
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builder->current_modelview = m;
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ops_set_modelview_internal (builder, m);
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}
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else
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{
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builder->current_modelview = NULL;
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}
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}
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graphene_matrix_t
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ops_set_projection (RenderOpBuilder *builder,
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const graphene_matrix_t *projection)
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{
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RenderOp op;
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graphene_matrix_t prev_mv;
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if (builder->render_ops->len > 0)
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{
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RenderOp *last_op = &g_array_index (builder->render_ops, RenderOp, builder->render_ops->len - 1);
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if (last_op->op == OP_CHANGE_PROJECTION)
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{
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last_op->projection = *projection;
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}
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else
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{
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op.op = OP_CHANGE_PROJECTION;
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op.projection = *projection;
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g_array_append_val (builder->render_ops, op);
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}
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}
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else
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{
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op.op = OP_CHANGE_PROJECTION;
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op.projection = *projection;
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g_array_append_val (builder->render_ops, op);
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}
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if (builder->current_program != NULL)
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builder->current_program_state->projection = *projection;
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prev_mv = builder->current_projection;
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builder->current_projection = *projection;
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return prev_mv;
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}
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graphene_rect_t
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ops_set_viewport (RenderOpBuilder *builder,
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const graphene_rect_t *viewport)
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{
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RenderOp op;
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graphene_rect_t prev_viewport;
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if (builder->current_program_state != NULL &&
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rect_equal (&builder->current_program_state->viewport, viewport))
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return builder->current_program_state->viewport;
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op.op = OP_CHANGE_VIEWPORT;
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op.viewport = *viewport;
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g_array_append_val (builder->render_ops, op);
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if (builder->current_program != NULL)
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builder->current_program_state->viewport = *viewport;
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prev_viewport = builder->current_viewport;
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builder->current_viewport = *viewport;
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return prev_viewport;
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}
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void
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ops_set_texture (RenderOpBuilder *builder,
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int texture_id)
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{
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RenderOp op;
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if (builder->current_texture == texture_id)
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return;
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op.op = OP_CHANGE_SOURCE_TEXTURE;
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op.texture_id = texture_id;
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g_array_append_val (builder->render_ops, op);
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builder->current_texture = texture_id;
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}
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int
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ops_set_render_target (RenderOpBuilder *builder,
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int render_target_id)
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{
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RenderOp op;
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int prev_render_target;
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if (builder->current_render_target == render_target_id)
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return render_target_id;
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prev_render_target = builder->current_render_target;
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if (builder->render_ops->len > 0)
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{
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RenderOp *last_op = &g_array_index (builder->render_ops, RenderOp, builder->render_ops->len - 1);
|
|
if (last_op->op == OP_CHANGE_RENDER_TARGET)
|
|
{
|
|
last_op->render_target_id = render_target_id;
|
|
}
|
|
else
|
|
{
|
|
op.op = OP_CHANGE_RENDER_TARGET;
|
|
op.render_target_id = render_target_id;
|
|
g_array_append_val (builder->render_ops, op);
|
|
}
|
|
}
|
|
else
|
|
{
|
|
op.op = OP_CHANGE_RENDER_TARGET;
|
|
op.render_target_id = render_target_id;
|
|
g_array_append_val (builder->render_ops, op);
|
|
}
|
|
|
|
builder->current_render_target = render_target_id;
|
|
|
|
return prev_render_target;
|
|
}
|
|
|
|
float
|
|
ops_set_opacity (RenderOpBuilder *builder,
|
|
float opacity)
|
|
{
|
|
RenderOp op;
|
|
float prev_opacity;
|
|
RenderOp *last_op;
|
|
|
|
if (builder->current_opacity == opacity)
|
|
return opacity;
|
|
|
|
if (builder->render_ops->len > 0)
|
|
{
|
|
last_op = &g_array_index (builder->render_ops, RenderOp, builder->render_ops->len - 1);
|
|
|
|
if (last_op->op == OP_CHANGE_OPACITY)
|
|
{
|
|
last_op->opacity = opacity;
|
|
}
|
|
else
|
|
{
|
|
op.op = OP_CHANGE_OPACITY;
|
|
op.opacity = opacity;
|
|
g_array_append_val (builder->render_ops, op);
|
|
}
|
|
}
|
|
else
|
|
{
|
|
op.op = OP_CHANGE_OPACITY;
|
|
op.opacity = opacity;
|
|
g_array_append_val (builder->render_ops, op);
|
|
}
|
|
|
|
prev_opacity = builder->current_opacity;
|
|
builder->current_opacity = opacity;
|
|
|
|
if (builder->current_program != NULL)
|
|
builder->current_program_state->opacity = opacity;
|
|
|
|
return prev_opacity;
|
|
}
|
|
|
|
void
|
|
ops_set_color (RenderOpBuilder *builder,
|
|
const GdkRGBA *color)
|
|
{
|
|
RenderOp op;
|
|
|
|
if (gdk_rgba_equal (color, &builder->current_program_state->color))
|
|
return;
|
|
|
|
builder->current_program_state->color = *color;
|
|
|
|
op.op = OP_CHANGE_COLOR;
|
|
op.color = *color;
|
|
g_array_append_val (builder->render_ops, op);
|
|
}
|
|
|
|
void
|
|
ops_set_color_matrix (RenderOpBuilder *builder,
|
|
const graphene_matrix_t *matrix,
|
|
const graphene_vec4_t *offset)
|
|
{
|
|
RenderOp op;
|
|
|
|
if (memcmp (matrix,
|
|
&builder->current_program_state->color_matrix.matrix,
|
|
sizeof (graphene_matrix_t)) == 0 &&
|
|
memcmp (offset,
|
|
&builder->current_program_state->color_matrix.offset,
|
|
sizeof (graphene_vec4_t)) == 0)
|
|
return;
|
|
|
|
builder->current_program_state->color_matrix.matrix = *matrix;
|
|
builder->current_program_state->color_matrix.offset = *offset;
|
|
|
|
op.op = OP_CHANGE_COLOR_MATRIX;
|
|
op.color_matrix.matrix = *matrix;
|
|
op.color_matrix.offset = *offset;
|
|
g_array_append_val (builder->render_ops, op);
|
|
}
|
|
|
|
void
|
|
ops_set_border (RenderOpBuilder *builder,
|
|
const GskRoundedRect *outline)
|
|
{
|
|
RenderOp op;
|
|
|
|
if (memcmp (&builder->current_program_state->border.outline,
|
|
outline, sizeof (GskRoundedRect)) == 0)
|
|
return;
|
|
|
|
builder->current_program_state->border.outline = *outline;
|
|
|
|
op.op = OP_CHANGE_BORDER;
|
|
op.border.outline = *outline;
|
|
g_array_append_val (builder->render_ops, op);
|
|
}
|
|
|
|
void
|
|
ops_set_border_width (RenderOpBuilder *builder,
|
|
const float *widths)
|
|
{
|
|
RenderOp op;
|
|
|
|
if (memcmp (builder->current_program_state->border.widths,
|
|
widths, sizeof (float) * 4) == 0)
|
|
return;
|
|
|
|
memcpy (&builder->current_program_state->border.widths,
|
|
widths, sizeof (float) * 4);
|
|
|
|
op.op = OP_CHANGE_BORDER_WIDTH;
|
|
op.border.widths[0] = widths[0];
|
|
op.border.widths[1] = widths[1];
|
|
op.border.widths[2] = widths[2];
|
|
op.border.widths[3] = widths[3];
|
|
|
|
g_array_append_val (builder->render_ops, op);
|
|
}
|
|
|
|
void
|
|
ops_set_border_color (RenderOpBuilder *builder,
|
|
const GdkRGBA *color)
|
|
{
|
|
RenderOp op;
|
|
op.op = OP_CHANGE_BORDER_COLOR;
|
|
rgba_to_float (color, op.border.color);
|
|
|
|
if (memcmp (&op.border.color, &builder->current_program_state->border.color,
|
|
sizeof (float) * 4) == 0)
|
|
return;
|
|
|
|
rgba_to_float (color, builder->current_program_state->border.color);
|
|
|
|
g_array_append_val (builder->render_ops, op);
|
|
}
|
|
|
|
void
|
|
ops_draw (RenderOpBuilder *builder,
|
|
const GskQuadVertex vertex_data[GL_N_VERTICES])
|
|
{
|
|
RenderOp *last_op;
|
|
|
|
last_op = &g_array_index (builder->render_ops, RenderOp, builder->render_ops->len - 1);
|
|
/* If the previous op was a DRAW as well, we didn't change anything between the two calls,
|
|
* so these are just 2 subsequent draw calls. Same VAO, same program etc.
|
|
* And the offsets into the vao are in order as well, so make it one draw call. */
|
|
if (last_op->op == OP_DRAW)
|
|
{
|
|
/* We allow ourselves a little trick here. We still have to add a CHANGE_VAO op for
|
|
* this draw call so we can add our vertex data there, but we want it to be placed before
|
|
* the last draw call, so we reorder those. */
|
|
RenderOp new_draw;
|
|
new_draw.op = OP_DRAW;
|
|
new_draw.draw.vao_offset = last_op->draw.vao_offset;
|
|
new_draw.draw.vao_size = last_op->draw.vao_size + GL_N_VERTICES;
|
|
|
|
last_op->op = OP_CHANGE_VAO;
|
|
memcpy (&last_op->vertex_data, vertex_data, sizeof(GskQuadVertex) * GL_N_VERTICES);
|
|
|
|
/* Now add the DRAW */
|
|
g_array_append_val (builder->render_ops, new_draw);
|
|
}
|
|
else
|
|
{
|
|
const gsize n_ops = builder->render_ops->len;
|
|
RenderOp *op;
|
|
gsize offset = builder->buffer_size / sizeof (GskQuadVertex);
|
|
|
|
/* We will add two render ops here. */
|
|
g_array_set_size (builder->render_ops, n_ops + 2);
|
|
|
|
op = &g_array_index (builder->render_ops, RenderOp, n_ops);
|
|
op->op = OP_CHANGE_VAO;
|
|
memcpy (&op->vertex_data, vertex_data, sizeof(GskQuadVertex) * GL_N_VERTICES);
|
|
|
|
op = &g_array_index (builder->render_ops, RenderOp, n_ops + 1);
|
|
op->op = OP_DRAW;
|
|
op->draw.vao_offset = offset;
|
|
op->draw.vao_size = GL_N_VERTICES;
|
|
}
|
|
|
|
/* We added new vertex data in both cases so increase the buffer size */
|
|
builder->buffer_size += sizeof (GskQuadVertex) * GL_N_VERTICES;
|
|
}
|
|
|
|
/* The offset is only valid for the current modelview.
|
|
* Setting a new modelview will add the offset to that matrix
|
|
* and reset the internal offset to 0. */
|
|
void
|
|
ops_offset (RenderOpBuilder *builder,
|
|
float x,
|
|
float y)
|
|
{
|
|
builder->dx += x;
|
|
builder->dy += y;
|
|
}
|
|
|
|
void
|
|
ops_add (RenderOpBuilder *builder,
|
|
const RenderOp *op)
|
|
{
|
|
g_array_append_val (builder->render_ops, *op);
|
|
}
|