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Fix documentation to refer to functions by their current names. Update to track latest API (in currently unused function).
999 lines
28 KiB
C
999 lines
28 KiB
C
/* cairo - a vector graphics library with display and print output
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*
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* Copyright © 2002 University of Southern California
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* Copyright © 2005 Red Hat, Inc.
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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 either under the terms of the GNU Lesser General Public
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* License version 2.1 as published by the Free Software Foundation
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* (the "LGPL") or, at your option, under the terms of the Mozilla
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* Public License Version 1.1 (the "MPL"). If you do not alter this
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* notice, a recipient may use your version of this file under either
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* the MPL or the LGPL.
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*
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* You should have received a copy of the LGPL along with this library
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* in the file COPYING-LGPL-2.1; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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* You should have received a copy of the MPL along with this library
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* in the file COPYING-MPL-1.1
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*
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* The contents of this file are subject to the Mozilla Public License
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* Version 1.1 (the "License"); you may not use this file except in
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* compliance with the License. You may obtain a copy of the License at
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* http://www.mozilla.org/MPL/
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*
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* This software is distributed on an "AS IS" basis, WITHOUT WARRANTY
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* OF ANY KIND, either express or implied. See the LGPL or the MPL for
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* the specific language governing rights and limitations.
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*
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* The Original Code is the cairo graphics library.
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*
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* The Initial Developer of the Original Code is University of Southern
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* California.
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*
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* Contributor(s):
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* Carl D. Worth <cworth@cworth.org>
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*/
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#include <stdlib.h>
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#include "cairoint.h"
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struct _cairo_surface_save {
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cairo_surface_save_t *next;
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pixman_region16_t *clip_region;
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};
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static cairo_status_t
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_cairo_surface_set_clip_region_internal (cairo_surface_t *surface,
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pixman_region16_t *region,
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cairo_bool_t copy_region,
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cairo_bool_t free_existing);
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void
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_cairo_surface_init (cairo_surface_t *surface,
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const cairo_surface_backend_t *backend)
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{
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surface->backend = backend;
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surface->ref_count = 1;
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surface->finished = FALSE;
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_cairo_user_data_array_init (&surface->user_data);
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cairo_matrix_init_identity (&surface->matrix);
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surface->filter = CAIRO_FILTER_GOOD;
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surface->repeat = 0;
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surface->device_x_offset = 0;
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surface->device_y_offset = 0;
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surface->clip_region = NULL;
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surface->saves = NULL;
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surface->level = 0;
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}
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static cairo_status_t
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_cairo_surface_begin_internal (cairo_surface_t *surface,
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cairo_bool_t reset_clip)
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{
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cairo_surface_save_t *save;
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if (surface->finished)
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return CAIRO_STATUS_SURFACE_FINISHED;
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save = malloc (sizeof (cairo_surface_save_t));
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if (!save)
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return CAIRO_STATUS_NO_MEMORY;
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if (surface->clip_region) {
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if (reset_clip)
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{
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cairo_status_t status;
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save->clip_region = surface->clip_region;
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status = _cairo_surface_set_clip_region_internal (surface, NULL, FALSE, FALSE);
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if (!CAIRO_OK (status)) {
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free (save);
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return status;
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}
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}
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else
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{
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save->clip_region = pixman_region_create ();
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pixman_region_copy (save->clip_region, surface->clip_region);
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}
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} else {
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save->clip_region = NULL;
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}
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save->next = surface->saves;
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surface->saves = save;
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surface->level++;
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return CAIRO_STATUS_SUCCESS;
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}
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/**
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* _cairo_surface_begin:
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* @surface: a #cairo_surface_t
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*
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* Must be called before beginning to use the surface. State
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* of the surface like the clip region will be saved then restored
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* on the matching call _cairo_surface_end().
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*/
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cairo_private cairo_status_t
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_cairo_surface_begin (cairo_surface_t *surface)
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{
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return _cairo_surface_begin_internal (surface, FALSE);
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}
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/**
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* _cairo_surface_begin_reset_clip:
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* @surface: a #cairo_surface_t
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*
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* Must be called before beginning to use the surface. State
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* of the surface like the clip region will be saved then restored
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* on the matching call _cairo_surface_end().
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*
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* After the state is saved, the clip region is cleared. This
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* combination of operations is a little artificial; the caller could
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* simply call _cairo_surface_set_clip_region (surface, NULL); after
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* _cairo_surface_save(). Combining the two saves a copy of the clip
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* region, and also simplifies error handling for the caller.
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**/
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cairo_private cairo_status_t
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_cairo_surface_begin_reset_clip (cairo_surface_t *surface)
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{
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return _cairo_surface_begin_internal (surface, TRUE);
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}
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/**
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* _cairo_surface_end:
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* @surface: a #cairo_surface_t
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*
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* Restores any state saved by _cairo_surface_begin()
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**/
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cairo_private cairo_status_t
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_cairo_surface_end (cairo_surface_t *surface)
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{
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cairo_surface_save_t *save;
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pixman_region16_t *clip_region;
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if (!surface->saves)
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return CAIRO_STATUS_BAD_NESTING;
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save = surface->saves;
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surface->saves = save->next;
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surface->level--;
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clip_region = save->clip_region;
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free (save);
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return _cairo_surface_set_clip_region_internal (surface, clip_region, FALSE, TRUE);
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}
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cairo_surface_t *
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_cairo_surface_create_similar_scratch (cairo_surface_t *other,
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cairo_format_t format,
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int drawable,
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int width,
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int height)
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{
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if (other == NULL)
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return NULL;
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return other->backend->create_similar (other, format, drawable,
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width, height);
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}
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cairo_surface_t *
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cairo_surface_create_similar (cairo_surface_t *other,
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cairo_format_t format,
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int width,
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int height)
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{
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if (other == NULL)
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return NULL;
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return _cairo_surface_create_similar_solid (other, format,
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width, height,
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CAIRO_COLOR_TRANSPARENT);
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}
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cairo_surface_t *
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_cairo_surface_create_similar_solid (cairo_surface_t *other,
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cairo_format_t format,
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int width,
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int height,
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const cairo_color_t *color)
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{
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cairo_status_t status;
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cairo_surface_t *surface;
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surface = _cairo_surface_create_similar_scratch (other, format, 1,
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width, height);
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if (surface == NULL)
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surface = cairo_image_surface_create (format, width, height);
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status = _cairo_surface_fill_rectangle (surface,
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CAIRO_OPERATOR_SOURCE, color,
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0, 0, width, height);
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if (status) {
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cairo_surface_destroy (surface);
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return NULL;
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}
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return surface;
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}
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void
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cairo_surface_reference (cairo_surface_t *surface)
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{
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if (surface == NULL)
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return;
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surface->ref_count++;
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}
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void
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cairo_surface_destroy (cairo_surface_t *surface)
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{
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if (surface == NULL)
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return;
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surface->ref_count--;
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if (surface->ref_count)
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return;
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cairo_surface_finish (surface);
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_cairo_user_data_array_destroy (&surface->user_data);
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free (surface);
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}
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slim_hidden_def(cairo_surface_destroy);
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/**
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* cairo_surface_finish:
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* @surface: the #cairo_surface_t to finish
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*
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* This function finishes the surface and drops all references to
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* external resources. For example, for the Xlib backend it means
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* that cairo will no longer access the drawable, which can be freed.
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* After calling cairo_surface_finish() the only valid operations on a
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* surface are getting and setting user data and referencing and
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* destroying it. Further drawing the the surface will not affect the
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* surface but set the surface status to
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* CAIRO_STATUS_SURFACE_FINISHED.
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*
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* When the last call to cairo_surface_destroy() decreases the
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* reference count to zero, cairo will call cairo_surface_finish() if
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* it hasn't been called already, before freeing the resources
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* associated with the surface.
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*
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* Return value: CAIRO_STATUS_SUCCESS if the surface was finished
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* successfully, otherwise CAIRO_STATUS_NO_MEMORY or
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* CAIRO_STATUS_WRITE_ERROR.
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**/
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cairo_status_t
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cairo_surface_finish (cairo_surface_t *surface)
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{
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cairo_status_t status;
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if (surface->finished)
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return CAIRO_STATUS_SURFACE_FINISHED;
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if (surface->saves)
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return CAIRO_STATUS_BAD_NESTING;
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if (surface->clip_region) {
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pixman_region_destroy (surface->clip_region);
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surface->clip_region = NULL;
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}
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if (surface->backend->finish) {
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status = surface->backend->finish (surface);
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if (status)
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return status;
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}
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surface->finished = TRUE;
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return CAIRO_STATUS_SUCCESS;
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}
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/**
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* cairo_surface_get_user_data:
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* @surface: a #cairo_surface_t
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* @key: the address of the #cairo_user_data_key_t the user data was
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* attached to
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*
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* Return user data previously attached to @surface using the specified
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* key. If no user data has been attached with the given key this
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* function returns %NULL.
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*
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* Return value: the user data previously attached or %NULL.
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**/
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void *
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cairo_surface_get_user_data (cairo_surface_t *surface,
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const cairo_user_data_key_t *key)
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{
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return _cairo_user_data_array_get_data (&surface->user_data,
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key);
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}
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/**
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* cairo_surface_set_user_data:
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* @surface: a #cairo_surface_t
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* @key: the address of a #cairo_user_data_key_t to attach the user data to
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* @user_data: the user data to attach to the surface
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* @destroy: a #cairo_destroy_func_t which will be called when the
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* surface is destroyed or when new user data is attached using the
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* same key.
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*
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* Attach user data to @surface. To remove user data from a surface,
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* call this function with the key that was used to set it and %NULL
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* for @data.
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*
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* Return value: %CAIRO_STATUS_SUCCESS or %CAIRO_STATUS_NO_MEMORY if a
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* slot could not be allocated for the user data.
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**/
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cairo_status_t
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cairo_surface_set_user_data (cairo_surface_t *surface,
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const cairo_user_data_key_t *key,
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void *user_data,
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cairo_destroy_func_t destroy)
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{
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return _cairo_user_data_array_set_data (&surface->user_data,
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key, user_data, destroy);
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}
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/**
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* cairo_surface_set_device_offset:
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* @surface: a #cairo_surface_t
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* @x_offset: the offset in the X direction, in device units
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* @y_offset: the offset in the Y direction, in device units
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*
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* Sets an offset that is added to the device coordinates determined
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* by the CTM when drawing to @surface. One use case for this function
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* is when we want to create a #cairo_surface_t that redirects drawing
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* for a portion of an onscreen surface to an offscreen surface in a
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* way that is completely invisible to the user of the cairo
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* API. Setting a transformation via cairo_translate() isn't
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* sufficient to do this, since functions like
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* cairo_device_to_user() will expose the hidden offset.
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*
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* Note that the offset only affects drawing to the surface, not using
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* the surface in a surface pattern.
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**/
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void
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cairo_surface_set_device_offset (cairo_surface_t *surface,
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double x_offset,
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double y_offset)
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{
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surface->device_x_offset = x_offset;
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surface->device_y_offset = y_offset;
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}
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/**
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* _cairo_surface_acquire_source_image:
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* @surface: a #cairo_surface_t
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* @image_out: location to store a pointer to an image surface that includes at least
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* the intersection of @interest_rect with the visible area of @surface.
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* This surface could be @surface itself, a surface held internal to @surface,
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* or it could be a new surface with a copy of the relevant portion of @surface.
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* @image_extra: location to store image specific backend data
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*
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* Gets an image surface to use when drawing as a fallback when drawing with
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* @surface as a source. _cairo_surface_release_source_image() must be called
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* when finished.
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*
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* Return value: %CAIRO_STATUS_SUCCESS if a an image was stored in @image_out.
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* %CAIRO_INT_STATUS_UNSUPPORTED if an image cannot be retrieved for the specified
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* surface. Or %CAIRO_STATUS_NO_MEMORY.
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**/
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cairo_private cairo_status_t
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_cairo_surface_acquire_source_image (cairo_surface_t *surface,
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cairo_image_surface_t **image_out,
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void **image_extra)
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{
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assert (!surface->finished);
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return surface->backend->acquire_source_image (surface, image_out, image_extra);
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}
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/**
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* _cairo_surface_release_source_image:
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* @surface: a #cairo_surface_t
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* @image_extra: same as return from the matching _cairo_surface_acquire_dest_image()
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*
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* Releases any resources obtained with _cairo_surface_acquire_source_image()
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**/
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cairo_private void
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_cairo_surface_release_source_image (cairo_surface_t *surface,
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cairo_image_surface_t *image,
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void *image_extra)
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{
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assert (!surface->finished);
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if (surface->backend->release_source_image)
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surface->backend->release_source_image (surface, image, image_extra);
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}
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/**
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* _cairo_surface_acquire_dest_image:
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* @surface: a #cairo_surface_t
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* @interest_rect: area of @surface for which fallback drawing is being done.
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* A value of %NULL indicates that the entire surface is desired.
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* @image_out: location to store a pointer to an image surface that includes at least
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* the intersection of @interest_rect with the visible area of @surface.
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* This surface could be @surface itself, a surface held internal to @surface,
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* or it could be a new surface with a copy of the relevant portion of @surface.
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* @image_rect: location to store area of the original surface occupied
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* by the surface stored in @image.
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* @image_extra: location to store image specific backend data
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*
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* Retrieves a local image for a surface for implementing a fallback drawing
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* operation. After calling this function, the implementation of the fallback
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* drawing operation draws the primitive to the surface stored in @image_out
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* then calls _cairo_surface_release_dest_fallback(),
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* which, if a temporary surface was created, copies the bits back to the
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* main surface and frees the temporary surface.
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*
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* Return value: %CAIRO_STATUS_SUCCESS or %CAIRO_STATUS_NO_MEMORY.
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* %CAIRO_INT_STATUS_UNSUPPORTED can be returned but this will mean that
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* the backend can't draw with fallbacks. It's possible for the routine
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* to store NULL in @local_out and return %CAIRO_STATUS_SUCCESS;
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* that indicates that no part of @interest_rect is visible, so no drawing
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* is necessary. _cairo_surface_release_dest_fallback() should not be called in that
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* case.
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**/
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cairo_status_t
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_cairo_surface_acquire_dest_image (cairo_surface_t *surface,
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cairo_rectangle_t *interest_rect,
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cairo_image_surface_t **image_out,
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cairo_rectangle_t *image_rect,
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void **image_extra)
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{
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assert (!surface->finished);
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return surface->backend->acquire_dest_image (surface, interest_rect,
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image_out, image_rect, image_extra);
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}
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/**
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* _cairo_surface_end_fallback:
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* @surface: a #cairo_surface_t
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* @interest_rect: same as passed to the matching _cairo_surface_acquire_dest_image()
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* @image: same as returned from the matching _cairo_surface_acquire_dest_image()
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* @image_rect: same as returned from the matching _cairo_surface_acquire_dest_image()
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* @image_extra: same as return from the matching _cairo_surface_acquire_dest_image()
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*
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* Finishes the operation started with _cairo_surface_acquire_dest_image(), by, if
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* necessary, copying the image from @image back to @surface and freeing any
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* resources that were allocated.
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**/
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void
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_cairo_surface_release_dest_image (cairo_surface_t *surface,
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cairo_rectangle_t *interest_rect,
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cairo_image_surface_t *image,
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cairo_rectangle_t *image_rect,
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void *image_extra)
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{
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assert (!surface->finished);
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if (surface->backend->release_dest_image)
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surface->backend->release_dest_image (surface, interest_rect,
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image, image_rect, image_extra);
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}
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/**
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* _cairo_surface_clone_similar:
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* @surface: a #cairo_surface_t
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* @src: the source image
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* @clone_out: location to store a surface compatible with @surface
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* and with contents identical to @src. The caller must call
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* cairo_surface_destroy() on the result.
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*
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* Creates a surface with contents identical to @src but that
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* can be used efficiently with @surface. If @surface and @src are
|
|
* already compatible then it may return a new reference to @src.
|
|
*
|
|
* Return value: %CAIRO_STATUS_SUCCESS if a surface was created and stored
|
|
* in @clone_out. Otherwise %CAIRO_INT_STATUS_UNSUPPORTED or another
|
|
* error like %CAIRO_STATUS_NO_MEMORY.
|
|
**/
|
|
cairo_status_t
|
|
_cairo_surface_clone_similar (cairo_surface_t *surface,
|
|
cairo_surface_t *src,
|
|
cairo_surface_t **clone_out)
|
|
{
|
|
cairo_status_t status;
|
|
cairo_image_surface_t *image;
|
|
void *image_extra;
|
|
|
|
if (surface->finished)
|
|
return CAIRO_STATUS_SURFACE_FINISHED;
|
|
|
|
if (surface->backend->clone_similar) {
|
|
status = surface->backend->clone_similar (surface, src, clone_out);
|
|
if (status != CAIRO_INT_STATUS_UNSUPPORTED)
|
|
return status;
|
|
}
|
|
|
|
status = _cairo_surface_acquire_source_image (src, &image, &image_extra);
|
|
if (status != CAIRO_STATUS_SUCCESS)
|
|
return status;
|
|
|
|
status = surface->backend->clone_similar (surface, &image->base, clone_out);
|
|
|
|
/* If the above failed point, we could implement a full fallback
|
|
* using acquire_dest_image, but that's going to be very
|
|
* inefficient compared to a backend-specific implementation of
|
|
* clone_similar() with an image source. So we don't bother
|
|
*/
|
|
|
|
_cairo_surface_release_source_image (src, image, image_extra);
|
|
return status;
|
|
}
|
|
|
|
typedef struct {
|
|
cairo_surface_t *dst;
|
|
cairo_rectangle_t extents;
|
|
cairo_image_surface_t *image;
|
|
cairo_rectangle_t image_rect;
|
|
void *image_extra;
|
|
} fallback_state_t;
|
|
|
|
static cairo_status_t
|
|
_fallback_init (fallback_state_t *state,
|
|
cairo_surface_t *dst,
|
|
int x,
|
|
int y,
|
|
int width,
|
|
int height)
|
|
{
|
|
state->extents.x = x;
|
|
state->extents.y = y;
|
|
state->extents.width = width;
|
|
state->extents.height = height;
|
|
|
|
state->dst = dst;
|
|
|
|
return _cairo_surface_acquire_dest_image (dst, &state->extents,
|
|
&state->image, &state->image_rect, &state->image_extra);
|
|
}
|
|
|
|
static void
|
|
_fallback_cleanup (fallback_state_t *state)
|
|
{
|
|
_cairo_surface_release_dest_image (state->dst, &state->extents,
|
|
state->image, &state->image_rect, state->image_extra);
|
|
}
|
|
|
|
static cairo_status_t
|
|
_fallback_composite (cairo_operator_t operator,
|
|
cairo_pattern_t *src,
|
|
cairo_pattern_t *mask,
|
|
cairo_surface_t *dst,
|
|
int src_x,
|
|
int src_y,
|
|
int mask_x,
|
|
int mask_y,
|
|
int dst_x,
|
|
int dst_y,
|
|
unsigned int width,
|
|
unsigned int height)
|
|
{
|
|
fallback_state_t state;
|
|
cairo_status_t status;
|
|
|
|
status = _fallback_init (&state, dst, dst_x, dst_y, width, height);
|
|
if (!CAIRO_OK (status) || !state.image)
|
|
return status;
|
|
|
|
state.image->base.backend->composite (operator, src, mask,
|
|
&state.image->base,
|
|
src_x, src_y, mask_x, mask_y,
|
|
dst_x - state.image_rect.x,
|
|
dst_y - state.image_rect.y,
|
|
width, height);
|
|
|
|
_fallback_cleanup (&state);
|
|
|
|
return status;
|
|
}
|
|
|
|
cairo_status_t
|
|
_cairo_surface_composite (cairo_operator_t operator,
|
|
cairo_pattern_t *src,
|
|
cairo_pattern_t *mask,
|
|
cairo_surface_t *dst,
|
|
int src_x,
|
|
int src_y,
|
|
int mask_x,
|
|
int mask_y,
|
|
int dst_x,
|
|
int dst_y,
|
|
unsigned int width,
|
|
unsigned int height)
|
|
{
|
|
cairo_int_status_t status;
|
|
|
|
if (dst->finished)
|
|
return CAIRO_STATUS_SURFACE_FINISHED;
|
|
|
|
if (dst->backend->composite) {
|
|
status = dst->backend->composite (operator,
|
|
src, mask, dst,
|
|
src_x, src_y,
|
|
mask_x, mask_y,
|
|
dst_x, dst_y,
|
|
width, height);
|
|
if (status != CAIRO_INT_STATUS_UNSUPPORTED)
|
|
return status;
|
|
}
|
|
|
|
return _fallback_composite (operator,
|
|
src, mask, dst,
|
|
src_x, src_y,
|
|
mask_x, mask_y,
|
|
dst_x, dst_y,
|
|
width, height);
|
|
}
|
|
|
|
cairo_status_t
|
|
_cairo_surface_fill_rectangle (cairo_surface_t *surface,
|
|
cairo_operator_t operator,
|
|
const cairo_color_t *color,
|
|
int x,
|
|
int y,
|
|
int width,
|
|
int height)
|
|
{
|
|
cairo_rectangle_t rect;
|
|
|
|
if (surface->finished)
|
|
return CAIRO_STATUS_SURFACE_FINISHED;
|
|
|
|
rect.x = x;
|
|
rect.y = y;
|
|
rect.width = width;
|
|
rect.height = height;
|
|
|
|
return _cairo_surface_fill_rectangles (surface, operator, color, &rect, 1);
|
|
}
|
|
|
|
static cairo_status_t
|
|
_fallback_fill_rectangles (cairo_surface_t *surface,
|
|
cairo_operator_t operator,
|
|
const cairo_color_t *color,
|
|
cairo_rectangle_t *rects,
|
|
int num_rects)
|
|
{
|
|
fallback_state_t state;
|
|
cairo_rectangle_t *offset_rects = NULL;
|
|
cairo_status_t status;
|
|
int x1, y1, x2, y2;
|
|
int i;
|
|
|
|
if (num_rects <= 0)
|
|
return CAIRO_STATUS_SUCCESS;
|
|
|
|
/* Compute the bounds of the rectangles, so that we know what area of the
|
|
* destination surface to fetch
|
|
*/
|
|
x1 = rects[0].x;
|
|
y1 = rects[0].y;
|
|
x2 = rects[0].x + rects[0].width;
|
|
y2 = rects[0].y + rects[0].height;
|
|
|
|
for (i = 1; i < num_rects; i++) {
|
|
if (rects[0].x < x1)
|
|
x1 = rects[0].x;
|
|
if (rects[0].y < y1)
|
|
y1 = rects[0].y;
|
|
|
|
if (rects[0].x + rects[0].width > x2)
|
|
x2 = rects[0].x + rects[0].width;
|
|
if (rects[0].y + rects[0].height > y2)
|
|
y2 = rects[0].y + rects[0].height;
|
|
}
|
|
|
|
status = _fallback_init (&state, surface, x1, y1, x2 - x1, y2 - y1);
|
|
if (!CAIRO_OK (status) || !state.image)
|
|
return status;
|
|
|
|
/* If the fetched image isn't at 0,0, we need to offset the rectangles */
|
|
|
|
if (state.image_rect.x != 0 || state.image_rect.y != 0) {
|
|
offset_rects = malloc (sizeof (cairo_rectangle_t) * num_rects);
|
|
if (!offset_rects) {
|
|
status = CAIRO_STATUS_NO_MEMORY;
|
|
goto FAIL;
|
|
}
|
|
|
|
for (i = 0; i < num_rects; i++) {
|
|
offset_rects[i].x = rects[i].x - state.image_rect.x;
|
|
offset_rects[i].y = rects[i].y - state.image_rect.y;
|
|
offset_rects[i].width = rects[i].width;
|
|
offset_rects[i].height = rects[i].height;
|
|
}
|
|
|
|
rects = offset_rects;
|
|
}
|
|
|
|
state.image->base.backend->fill_rectangles (&state.image->base, operator, color,
|
|
rects, num_rects);
|
|
|
|
if (offset_rects)
|
|
free (offset_rects);
|
|
|
|
FAIL:
|
|
_fallback_cleanup (&state);
|
|
|
|
return status;
|
|
}
|
|
|
|
cairo_status_t
|
|
_cairo_surface_fill_rectangles (cairo_surface_t *surface,
|
|
cairo_operator_t operator,
|
|
const cairo_color_t *color,
|
|
cairo_rectangle_t *rects,
|
|
int num_rects)
|
|
{
|
|
cairo_int_status_t status;
|
|
|
|
if (surface->finished)
|
|
return CAIRO_STATUS_SURFACE_FINISHED;
|
|
|
|
if (num_rects == 0)
|
|
return CAIRO_STATUS_SUCCESS;
|
|
|
|
if (surface->backend->fill_rectangles) {
|
|
status = surface->backend->fill_rectangles (surface,
|
|
operator,
|
|
color,
|
|
rects, num_rects);
|
|
if (status != CAIRO_INT_STATUS_UNSUPPORTED)
|
|
return status;
|
|
}
|
|
|
|
return _fallback_fill_rectangles (surface, operator, color, rects, num_rects);
|
|
}
|
|
|
|
cairo_private cairo_int_status_t
|
|
_cairo_surface_fill_path (cairo_operator_t operator,
|
|
cairo_pattern_t *pattern,
|
|
cairo_surface_t *dst,
|
|
cairo_path_fixed_t *path)
|
|
{
|
|
if (dst->backend->fill_path)
|
|
return dst->backend->fill_path (operator, pattern, dst, path);
|
|
else
|
|
return CAIRO_INT_STATUS_UNSUPPORTED;
|
|
}
|
|
|
|
|
|
static cairo_status_t
|
|
_fallback_composite_trapezoids (cairo_operator_t operator,
|
|
cairo_pattern_t *pattern,
|
|
cairo_surface_t *dst,
|
|
int src_x,
|
|
int src_y,
|
|
int dst_x,
|
|
int dst_y,
|
|
unsigned int width,
|
|
unsigned int height,
|
|
cairo_trapezoid_t *traps,
|
|
int num_traps)
|
|
{
|
|
fallback_state_t state;
|
|
cairo_trapezoid_t *offset_traps = NULL;
|
|
cairo_status_t status;
|
|
int i;
|
|
|
|
status = _fallback_init (&state, dst, dst_x, dst_y, width, height);
|
|
if (!CAIRO_OK (status) || !state.image)
|
|
return status;
|
|
|
|
/* If the destination image isn't at 0,0, we need to offset the trapezoids */
|
|
|
|
if (state.image_rect.x != 0 || state.image_rect.y != 0) {
|
|
|
|
cairo_fixed_t xoff = _cairo_fixed_from_int (state.image_rect.x);
|
|
cairo_fixed_t yoff = _cairo_fixed_from_int (state.image_rect.y);
|
|
|
|
offset_traps = malloc (sizeof (cairo_trapezoid_t) * num_traps);
|
|
if (!offset_traps) {
|
|
status = CAIRO_STATUS_NO_MEMORY;
|
|
goto FAIL;
|
|
}
|
|
|
|
for (i = 0; i < num_traps; i++) {
|
|
offset_traps[i].top = traps[i].top - yoff;
|
|
offset_traps[i].bottom = traps[i].bottom - yoff;
|
|
offset_traps[i].left.p1.x = traps[i].left.p1.x - xoff;
|
|
offset_traps[i].left.p1.y = traps[i].left.p1.y - yoff;
|
|
offset_traps[i].left.p2.x = traps[i].left.p2.x - xoff;
|
|
offset_traps[i].left.p2.y = traps[i].left.p2.y - yoff;
|
|
offset_traps[i].right.p1.x = traps[i].right.p1.x - xoff;
|
|
offset_traps[i].right.p1.y = traps[i].right.p1.y - yoff;
|
|
offset_traps[i].right.p2.x = traps[i].right.p2.x - xoff;
|
|
offset_traps[i].right.p2.y = traps[i].right.p2.y - yoff;
|
|
}
|
|
|
|
traps = offset_traps;
|
|
}
|
|
|
|
state.image->base.backend->composite_trapezoids (operator, pattern,
|
|
&state.image->base,
|
|
src_x, src_y,
|
|
dst_x - state.image_rect.x,
|
|
dst_y - state.image_rect.y,
|
|
width, height, traps, num_traps);
|
|
if (offset_traps)
|
|
free (offset_traps);
|
|
|
|
FAIL:
|
|
_fallback_cleanup (&state);
|
|
|
|
return status;
|
|
}
|
|
|
|
|
|
cairo_status_t
|
|
_cairo_surface_composite_trapezoids (cairo_operator_t operator,
|
|
cairo_pattern_t *pattern,
|
|
cairo_surface_t *dst,
|
|
int src_x,
|
|
int src_y,
|
|
int dst_x,
|
|
int dst_y,
|
|
unsigned int width,
|
|
unsigned int height,
|
|
cairo_trapezoid_t *traps,
|
|
int num_traps)
|
|
{
|
|
cairo_int_status_t status;
|
|
|
|
if (dst->finished)
|
|
return CAIRO_STATUS_SURFACE_FINISHED;
|
|
|
|
if (dst->backend->composite_trapezoids) {
|
|
status = dst->backend->composite_trapezoids (operator,
|
|
pattern, dst,
|
|
src_x, src_y,
|
|
dst_x, dst_y,
|
|
width, height,
|
|
traps, num_traps);
|
|
if (status != CAIRO_INT_STATUS_UNSUPPORTED)
|
|
return status;
|
|
}
|
|
|
|
return _fallback_composite_trapezoids (operator, pattern, dst,
|
|
src_x, src_y,
|
|
dst_x, dst_y,
|
|
width, height,
|
|
traps, num_traps);
|
|
}
|
|
|
|
cairo_status_t
|
|
_cairo_surface_copy_page (cairo_surface_t *surface)
|
|
{
|
|
if (surface->finished)
|
|
return CAIRO_STATUS_SURFACE_FINISHED;
|
|
|
|
/* It's fine if some backends just don't support this. */
|
|
if (surface->backend->copy_page == NULL)
|
|
return CAIRO_STATUS_SUCCESS;
|
|
|
|
return surface->backend->copy_page (surface);
|
|
}
|
|
|
|
cairo_status_t
|
|
_cairo_surface_show_page (cairo_surface_t *surface)
|
|
{
|
|
if (surface->finished)
|
|
return CAIRO_STATUS_SURFACE_FINISHED;
|
|
|
|
/* It's fine if some backends just don't support this. */
|
|
if (surface->backend->show_page == NULL)
|
|
return CAIRO_STATUS_SUCCESS;
|
|
|
|
return surface->backend->show_page (surface);
|
|
}
|
|
|
|
static cairo_status_t
|
|
_cairo_surface_set_clip_region_internal (cairo_surface_t *surface,
|
|
pixman_region16_t *region,
|
|
cairo_bool_t copy_region,
|
|
cairo_bool_t free_existing)
|
|
{
|
|
if (surface->finished)
|
|
return CAIRO_STATUS_SURFACE_FINISHED;
|
|
|
|
if (region == surface->clip_region)
|
|
return CAIRO_STATUS_SUCCESS;
|
|
|
|
if (surface->backend->set_clip_region == NULL)
|
|
return CAIRO_INT_STATUS_UNSUPPORTED;
|
|
|
|
if (surface->clip_region) {
|
|
if (free_existing)
|
|
pixman_region_destroy (surface->clip_region);
|
|
surface->clip_region = NULL;
|
|
}
|
|
|
|
if (region) {
|
|
if (copy_region) {
|
|
surface->clip_region = pixman_region_create ();
|
|
pixman_region_copy (surface->clip_region, region);
|
|
} else
|
|
surface->clip_region = region;
|
|
}
|
|
|
|
return surface->backend->set_clip_region (surface, region);
|
|
}
|
|
|
|
cairo_status_t
|
|
_cairo_surface_set_clip_region (cairo_surface_t *surface,
|
|
pixman_region16_t *region)
|
|
{
|
|
return _cairo_surface_set_clip_region_internal (surface, region, TRUE, TRUE);
|
|
}
|
|
|
|
cairo_status_t
|
|
_cairo_surface_get_clip_extents (cairo_surface_t *surface,
|
|
cairo_rectangle_t *rectangle)
|
|
{
|
|
if (surface->finished)
|
|
return CAIRO_STATUS_SURFACE_FINISHED;
|
|
|
|
if (surface->clip_region) {
|
|
pixman_box16_t *box = pixman_region_extents (surface->clip_region);
|
|
|
|
rectangle->x = box->x1;
|
|
rectangle->y = box->y1;
|
|
rectangle->width = box->x2 - box->x1;
|
|
rectangle->height = box->y2 - box->y1;
|
|
|
|
return CAIRO_STATUS_SUCCESS;
|
|
}
|
|
|
|
return surface->backend->get_extents (surface, rectangle);
|
|
}
|
|
|
|
cairo_status_t
|
|
_cairo_surface_show_glyphs (cairo_scaled_font_t *scaled_font,
|
|
cairo_operator_t operator,
|
|
cairo_pattern_t *pattern,
|
|
cairo_surface_t *dst,
|
|
int source_x,
|
|
int source_y,
|
|
int dest_x,
|
|
int dest_y,
|
|
unsigned int width,
|
|
unsigned int height,
|
|
const cairo_glyph_t *glyphs,
|
|
int num_glyphs)
|
|
{
|
|
cairo_status_t status;
|
|
|
|
if (dst->finished)
|
|
return CAIRO_STATUS_SURFACE_FINISHED;
|
|
|
|
if (dst->backend->show_glyphs)
|
|
status = dst->backend->show_glyphs (scaled_font, operator, pattern, dst,
|
|
source_x, source_y,
|
|
dest_x, dest_y,
|
|
width, height,
|
|
glyphs, num_glyphs);
|
|
else
|
|
status = CAIRO_INT_STATUS_UNSUPPORTED;
|
|
|
|
return status;
|
|
}
|