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https://github.com/brl/mutter.git
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54735dec84
The coding style has for a long time said to avoid using redundant glib data types such as gint or gchar etc because we feel that they make the code look unnecessarily foreign to developers coming from outside of the Gnome developer community. Note: When we tried to find the historical rationale for the types we just found that they were apparently only added for consistent syntax highlighting which didn't seem that compelling. Up until now we have been continuing to use some of the platform specific type such as gint{8,16,32,64} and gsize but this patch switches us over to using the standard c99 equivalents instead so we can further ensure that our code looks familiar to the widest range of C developers who might potentially contribute to Cogl. So instead of using the gint{8,16,32,64} and guint{8,16,32,64} types this switches all Cogl code to instead use the int{8,16,32,64}_t and uint{8,16,32,64}_t c99 types instead. Instead of gsize we now use size_t For now we are not going to use the c99 _Bool type and instead we have introduced a new CoglBool type to use instead of gboolean. Reviewed-by: Neil Roberts <neil@linux.intel.com> (cherry picked from commit 5967dad2400d32ca6319cef6cb572e81bf2c15f0)
499 lines
15 KiB
C
499 lines
15 KiB
C
/*
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* Clutter.
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*
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* An OpenGL based 'interactive canvas' library.
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*
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* Authored By Neil Roberts <neil@linux.intel.com>
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*
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* Copyright (C) 2009 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 <http://www.gnu.org/licenses/>.
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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 <glib.h>
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#include <cogl/cogl.h>
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#include <string.h>
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#include "cogl-pango-display-list.h"
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#include "cogl/cogl-context-private.h"
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typedef enum
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{
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COGL_PANGO_DISPLAY_LIST_TEXTURE,
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COGL_PANGO_DISPLAY_LIST_RECTANGLE,
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COGL_PANGO_DISPLAY_LIST_TRAPEZOID
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} CoglPangoDisplayListNodeType;
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typedef struct _CoglPangoDisplayListNode CoglPangoDisplayListNode;
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typedef struct _CoglPangoDisplayListRectangle CoglPangoDisplayListRectangle;
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struct _CoglPangoDisplayList
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{
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CoglBool color_override;
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CoglColor color;
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GSList *nodes;
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GSList *last_node;
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CoglPangoPipelineCache *pipeline_cache;
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};
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/* This matches the format expected by cogl_rectangles_with_texture_coords */
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struct _CoglPangoDisplayListRectangle
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{
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float x_1, y_1, x_2, y_2;
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float s_1, t_1, s_2, t_2;
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};
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struct _CoglPangoDisplayListNode
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{
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CoglPangoDisplayListNodeType type;
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CoglBool color_override;
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CoglColor color;
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CoglPipeline *pipeline;
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union
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{
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struct
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{
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/* The texture to render these coords from */
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CoglTexture *texture;
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/* Array of rectangles in the format expected by
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cogl_rectangles_with_texture_coords */
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GArray *rectangles;
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/* A primitive representing those vertices */
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CoglPrimitive *primitive;
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} texture;
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struct
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{
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float x_1, y_1;
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float x_2, y_2;
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} rectangle;
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struct
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{
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float y_1;
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float x_11;
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float x_21;
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float y_2;
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float x_12;
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float x_22;
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} trapezoid;
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} d;
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};
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CoglPangoDisplayList *
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_cogl_pango_display_list_new (CoglPangoPipelineCache *pipeline_cache)
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{
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CoglPangoDisplayList *dl = g_slice_new0 (CoglPangoDisplayList);
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dl->pipeline_cache = pipeline_cache;
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return dl;
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}
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static void
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_cogl_pango_display_list_append_node (CoglPangoDisplayList *dl,
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CoglPangoDisplayListNode *node)
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{
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if (dl->last_node)
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dl->last_node = dl->last_node->next = g_slist_prepend (NULL, node);
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else
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dl->last_node = dl->nodes = g_slist_prepend (NULL, node);
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}
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void
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_cogl_pango_display_list_set_color_override (CoglPangoDisplayList *dl,
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const CoglColor *color)
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{
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dl->color_override = TRUE;
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dl->color = *color;
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}
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void
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_cogl_pango_display_list_remove_color_override (CoglPangoDisplayList *dl)
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{
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dl->color_override = FALSE;
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}
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void
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_cogl_pango_display_list_add_texture (CoglPangoDisplayList *dl,
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CoglTexture *texture,
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float x_1, float y_1,
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float x_2, float y_2,
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float tx_1, float ty_1,
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float tx_2, float ty_2)
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{
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CoglPangoDisplayListNode *node;
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CoglPangoDisplayListRectangle *rectangle;
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/* Add to the last node if it is a texture node with the same
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target texture */
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if (dl->last_node
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&& (node = dl->last_node->data)->type == COGL_PANGO_DISPLAY_LIST_TEXTURE
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&& node->d.texture.texture == texture
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&& (dl->color_override
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? (node->color_override && cogl_color_equal (&dl->color, &node->color))
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: !node->color_override))
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{
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/* Get rid of the vertex buffer so that it will be recreated */
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if (node->d.texture.primitive != NULL)
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{
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cogl_object_unref (node->d.texture.primitive);
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node->d.texture.primitive = NULL;
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}
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}
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else
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{
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/* Otherwise create a new node */
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node = g_slice_new (CoglPangoDisplayListNode);
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node->type = COGL_PANGO_DISPLAY_LIST_TEXTURE;
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node->color_override = dl->color_override;
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node->color = dl->color;
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node->pipeline = NULL;
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node->d.texture.texture = cogl_object_ref (texture);
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node->d.texture.rectangles
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= g_array_new (FALSE, FALSE, sizeof (CoglPangoDisplayListRectangle));
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node->d.texture.primitive = NULL;
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_cogl_pango_display_list_append_node (dl, node);
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}
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g_array_set_size (node->d.texture.rectangles,
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node->d.texture.rectangles->len + 1);
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rectangle = &g_array_index (node->d.texture.rectangles,
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CoglPangoDisplayListRectangle,
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node->d.texture.rectangles->len - 1);
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rectangle->x_1 = x_1;
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rectangle->y_1 = y_1;
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rectangle->x_2 = x_2;
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rectangle->y_2 = y_2;
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rectangle->s_1 = tx_1;
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rectangle->t_1 = ty_1;
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rectangle->s_2 = tx_2;
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rectangle->t_2 = ty_2;
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}
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void
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_cogl_pango_display_list_add_rectangle (CoglPangoDisplayList *dl,
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float x_1, float y_1,
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float x_2, float y_2)
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{
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CoglPangoDisplayListNode *node = g_slice_new (CoglPangoDisplayListNode);
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node->type = COGL_PANGO_DISPLAY_LIST_RECTANGLE;
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node->color_override = dl->color_override;
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node->color = dl->color;
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node->d.rectangle.x_1 = x_1;
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node->d.rectangle.y_1 = y_1;
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node->d.rectangle.x_2 = x_2;
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node->d.rectangle.y_2 = y_2;
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node->pipeline = NULL;
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_cogl_pango_display_list_append_node (dl, node);
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}
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void
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_cogl_pango_display_list_add_trapezoid (CoglPangoDisplayList *dl,
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float y_1,
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float x_11,
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float x_21,
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float y_2,
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float x_12,
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float x_22)
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{
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CoglPangoDisplayListNode *node = g_slice_new (CoglPangoDisplayListNode);
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node->type = COGL_PANGO_DISPLAY_LIST_TRAPEZOID;
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node->color_override = dl->color_override;
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node->color = dl->color;
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node->d.trapezoid.y_1 = y_1;
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node->d.trapezoid.x_11 = x_11;
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node->d.trapezoid.x_21 = x_21;
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node->d.trapezoid.y_2 = y_2;
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node->d.trapezoid.x_12 = x_12;
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node->d.trapezoid.x_22 = x_22;
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node->pipeline = NULL;
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_cogl_pango_display_list_append_node (dl, node);
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}
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static void
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emit_rectangles_through_journal (CoglPangoDisplayListNode *node)
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{
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cogl_rectangles_with_texture_coords ((float *)
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node->d.texture.rectangles->data,
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node->d.texture.rectangles->len);
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}
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static void
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emit_vertex_buffer_geometry (CoglPangoDisplayListNode *node)
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{
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_COGL_GET_CONTEXT (ctx, NO_RETVAL);
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/* It's expensive to go through the Cogl journal for large runs
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* of text in part because the journal transforms the quads in software
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* to avoid changing the modelview matrix. So for larger runs of text
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* we load the vertices into a VBO, and this has the added advantage
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* that if the text doesn't change from frame to frame the VBO can
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* be re-used avoiding the repeated cost of validating the data and
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* mapping it into the GPU... */
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if (node->d.texture.primitive == NULL)
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{
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CoglAttributeBuffer *buffer;
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CoglVertexP2T2 *verts, *v;
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int n_verts;
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CoglBool allocated = FALSE;
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CoglAttribute *attributes[2];
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CoglPrimitive *prim;
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int i;
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n_verts = node->d.texture.rectangles->len * 4;
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buffer
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= cogl_attribute_buffer_new (ctx,
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n_verts * sizeof (CoglVertexP2T2), NULL);
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if ((verts = cogl_buffer_map (COGL_BUFFER (buffer),
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COGL_BUFFER_ACCESS_WRITE,
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COGL_BUFFER_MAP_HINT_DISCARD)) == NULL)
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{
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verts = g_new (CoglVertexP2T2, n_verts);
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allocated = TRUE;
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}
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v = verts;
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/* Copy the rectangles into the buffer and expand into four
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vertices instead of just two */
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for (i = 0; i < node->d.texture.rectangles->len; i++)
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{
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const CoglPangoDisplayListRectangle *rectangle
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= &g_array_index (node->d.texture.rectangles,
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CoglPangoDisplayListRectangle, i);
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v->x = rectangle->x_1;
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v->y = rectangle->y_1;
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v->s = rectangle->s_1;
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v->t = rectangle->t_1;
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v++;
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v->x = rectangle->x_1;
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v->y = rectangle->y_2;
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v->s = rectangle->s_1;
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v->t = rectangle->t_2;
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v++;
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v->x = rectangle->x_2;
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v->y = rectangle->y_2;
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v->s = rectangle->s_2;
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v->t = rectangle->t_2;
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v++;
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v->x = rectangle->x_2;
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v->y = rectangle->y_1;
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v->s = rectangle->s_2;
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v->t = rectangle->t_1;
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v++;
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}
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if (allocated)
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{
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cogl_buffer_set_data (COGL_BUFFER (buffer),
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0, /* offset */
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verts,
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sizeof (CoglVertexP2T2) * n_verts);
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g_free (verts);
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}
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else
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cogl_buffer_unmap (COGL_BUFFER (buffer));
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attributes[0] = cogl_attribute_new (buffer,
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"cogl_position_in",
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sizeof (CoglVertexP2T2),
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G_STRUCT_OFFSET (CoglVertexP2T2, x),
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2, /* n_components */
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COGL_ATTRIBUTE_TYPE_FLOAT);
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attributes[1] = cogl_attribute_new (buffer,
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"cogl_tex_coord0_in",
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sizeof (CoglVertexP2T2),
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G_STRUCT_OFFSET (CoglVertexP2T2, s),
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2, /* n_components */
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COGL_ATTRIBUTE_TYPE_FLOAT);
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prim = cogl_primitive_new_with_attributes (COGL_VERTICES_MODE_TRIANGLES,
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n_verts,
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attributes,
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2 /* n_attributes */);
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#ifdef CLUTTER_COGL_HAS_GL
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if (ctx->driver == COGL_DRIVER_GL)
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cogl_primitive_set_mode (prim, GL_QUADS);
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else
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#endif
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{
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/* GLES doesn't support GL_QUADS so instead we use a VBO
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with indexed vertices to generate GL_TRIANGLES from the
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quads */
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CoglIndices *indices =
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cogl_get_rectangle_indices (ctx, node->d.texture.rectangles->len);
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cogl_primitive_set_indices (prim, indices,
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node->d.texture.rectangles->len * 6);
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}
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node->d.texture.primitive = prim;
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cogl_object_unref (buffer);
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cogl_object_unref (attributes[0]);
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cogl_object_unref (attributes[1]);
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}
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cogl_framebuffer_draw_primitive (cogl_get_draw_framebuffer (),
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cogl_get_source (),
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node->d.texture.primitive);
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}
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static void
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_cogl_pango_display_list_render_texture (CoglPangoDisplayListNode *node)
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{
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/* For small runs of text like icon labels, we can get better performance
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* going through the Cogl journal since text may then be batched together
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* with other geometry. */
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/* FIXME: 25 is a number I plucked out of thin air; it would be good
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* to determine this empirically! */
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if (node->d.texture.rectangles->len < 25)
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emit_rectangles_through_journal (node);
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else
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emit_vertex_buffer_geometry (node);
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}
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void
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_cogl_pango_display_list_render (CoglPangoDisplayList *dl,
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const CoglColor *color)
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{
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GSList *l;
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for (l = dl->nodes; l; l = l->next)
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{
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CoglPangoDisplayListNode *node = l->data;
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CoglColor draw_color;
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if (node->pipeline == NULL)
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{
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if (node->type == COGL_PANGO_DISPLAY_LIST_TEXTURE)
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node->pipeline =
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_cogl_pango_pipeline_cache_get (dl->pipeline_cache,
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node->d.texture.texture);
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else
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node->pipeline =
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_cogl_pango_pipeline_cache_get (dl->pipeline_cache,
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NULL);
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}
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if (node->color_override)
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/* Use the override color but preserve the alpha from the
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draw color */
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cogl_color_init_from_4ub (&draw_color,
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cogl_color_get_red_byte (&node->color),
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cogl_color_get_green_byte (&node->color),
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cogl_color_get_blue_byte (&node->color),
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cogl_color_get_alpha_byte (color));
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else
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draw_color = *color;
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cogl_color_premultiply (&draw_color);
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cogl_pipeline_set_color (node->pipeline, &draw_color);
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cogl_push_source (node->pipeline);
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switch (node->type)
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{
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case COGL_PANGO_DISPLAY_LIST_TEXTURE:
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_cogl_pango_display_list_render_texture (node);
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break;
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case COGL_PANGO_DISPLAY_LIST_RECTANGLE:
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cogl_rectangle (node->d.rectangle.x_1,
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node->d.rectangle.y_1,
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node->d.rectangle.x_2,
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node->d.rectangle.y_2);
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break;
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case COGL_PANGO_DISPLAY_LIST_TRAPEZOID:
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{
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float points[8];
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CoglPath *path;
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_COGL_GET_CONTEXT (ctx, NO_RETVAL);
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points[0] = node->d.trapezoid.x_11;
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points[1] = node->d.trapezoid.y_1;
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points[2] = node->d.trapezoid.x_12;
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points[3] = node->d.trapezoid.y_2;
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points[4] = node->d.trapezoid.x_22;
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points[5] = node->d.trapezoid.y_2;
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points[6] = node->d.trapezoid.x_21;
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points[7] = node->d.trapezoid.y_1;
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path = cogl_path_new ();
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cogl_path_polygon (path, points, 4);
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cogl_path_fill (path);
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cogl_object_unref (path);
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}
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break;
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}
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cogl_pop_source ();
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}
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}
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static void
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_cogl_pango_display_list_node_free (CoglPangoDisplayListNode *node)
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{
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if (node->type == COGL_PANGO_DISPLAY_LIST_TEXTURE)
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{
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g_array_free (node->d.texture.rectangles, TRUE);
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if (node->d.texture.texture != NULL)
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cogl_object_unref (node->d.texture.texture);
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if (node->d.texture.primitive != NULL)
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cogl_object_unref (node->d.texture.primitive);
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}
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if (node->pipeline)
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cogl_object_unref (node->pipeline);
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g_slice_free (CoglPangoDisplayListNode, node);
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}
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void
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_cogl_pango_display_list_clear (CoglPangoDisplayList *dl)
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{
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g_slist_foreach (dl->nodes, (GFunc) _cogl_pango_display_list_node_free, NULL);
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g_slist_free (dl->nodes);
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dl->nodes = NULL;
|
|
dl->last_node = NULL;
|
|
}
|
|
|
|
void
|
|
_cogl_pango_display_list_free (CoglPangoDisplayList *dl)
|
|
{
|
|
_cogl_pango_display_list_clear (dl);
|
|
g_slice_free (CoglPangoDisplayList, dl);
|
|
}
|