forked from KolibriOS/kolibrios
754f9336f0
git-svn-id: svn://kolibrios.org@4349 a494cfbc-eb01-0410-851d-a64ba20cac60
501 lines
16 KiB
C
501 lines
16 KiB
C
/* cairo - a vector graphics library with display and print output
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*
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* Copyright © 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 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., 51 Franklin Street, Suite 500, Boston, MA 02110-1335, 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 Red Hat, Inc.
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*
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* Contributor(s):
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* Chris Wilson <chris@chris-wilson.co.uk>
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*/
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#include "cairoint.h"
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#include "cairo-clip-inline.h"
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#include "cairo-error-private.h"
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#include "cairo-composite-rectangles-private.h"
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#include "cairo-pattern-private.h"
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/* A collection of routines to facilitate writing compositors. */
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void _cairo_composite_rectangles_fini (cairo_composite_rectangles_t *extents)
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{
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_cairo_clip_destroy (extents->clip);
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}
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static void
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_cairo_composite_reduce_pattern (const cairo_pattern_t *src,
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cairo_pattern_union_t *dst)
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{
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int tx, ty;
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_cairo_pattern_init_static_copy (&dst->base, src);
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if (dst->base.type == CAIRO_PATTERN_TYPE_SOLID)
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return;
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dst->base.filter = _cairo_pattern_analyze_filter (&dst->base, NULL),
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tx = ty = 0;
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if (_cairo_matrix_is_pixman_translation (&dst->base.matrix,
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dst->base.filter,
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&tx, &ty))
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{
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dst->base.matrix.x0 = tx;
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dst->base.matrix.y0 = ty;
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}
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}
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static inline cairo_bool_t
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_cairo_composite_rectangles_init (cairo_composite_rectangles_t *extents,
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cairo_surface_t *surface,
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cairo_operator_t op,
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const cairo_pattern_t *source,
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const cairo_clip_t *clip)
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{
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if (_cairo_clip_is_all_clipped (clip))
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return FALSE;
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extents->surface = surface;
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extents->op = op;
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_cairo_surface_get_extents (surface, &extents->destination);
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extents->clip = NULL;
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extents->unbounded = extents->destination;
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if (clip && ! _cairo_rectangle_intersect (&extents->unbounded,
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_cairo_clip_get_extents (clip)))
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return FALSE;
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extents->bounded = extents->unbounded;
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extents->is_bounded = _cairo_operator_bounded_by_either (op);
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extents->original_source_pattern = source;
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_cairo_composite_reduce_pattern (source, &extents->source_pattern);
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_cairo_pattern_get_extents (&extents->source_pattern.base,
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&extents->source);
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if (extents->is_bounded & CAIRO_OPERATOR_BOUND_BY_SOURCE) {
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if (! _cairo_rectangle_intersect (&extents->bounded, &extents->source))
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return FALSE;
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}
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extents->original_mask_pattern = NULL;
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extents->mask_pattern.base.type = CAIRO_PATTERN_TYPE_SOLID;
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extents->mask_pattern.solid.color.alpha = 1.; /* XXX full initialisation? */
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extents->mask_pattern.solid.color.alpha_short = 0xffff;
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return TRUE;
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}
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cairo_int_status_t
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_cairo_composite_rectangles_init_for_paint (cairo_composite_rectangles_t *extents,
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cairo_surface_t *surface,
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cairo_operator_t op,
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const cairo_pattern_t *source,
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const cairo_clip_t *clip)
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{
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if (! _cairo_composite_rectangles_init (extents,
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surface, op, source, clip))
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{
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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}
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extents->mask = extents->destination;
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extents->clip = _cairo_clip_reduce_for_composite (clip, extents);
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if (_cairo_clip_is_all_clipped (extents->clip))
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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if (! _cairo_rectangle_intersect (&extents->unbounded,
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_cairo_clip_get_extents (extents->clip)))
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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if (extents->source_pattern.base.type != CAIRO_PATTERN_TYPE_SOLID)
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_cairo_pattern_sampled_area (&extents->source_pattern.base,
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&extents->bounded,
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&extents->source_sample_area);
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return CAIRO_STATUS_SUCCESS;
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}
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static cairo_int_status_t
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_cairo_composite_rectangles_intersect (cairo_composite_rectangles_t *extents,
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const cairo_clip_t *clip)
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{
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cairo_bool_t ret;
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ret = _cairo_rectangle_intersect (&extents->bounded, &extents->mask);
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if (! ret && extents->is_bounded & CAIRO_OPERATOR_BOUND_BY_MASK)
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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if (extents->is_bounded == (CAIRO_OPERATOR_BOUND_BY_MASK | CAIRO_OPERATOR_BOUND_BY_SOURCE)) {
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extents->unbounded = extents->bounded;
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} else if (extents->is_bounded & CAIRO_OPERATOR_BOUND_BY_MASK) {
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if (!_cairo_rectangle_intersect (&extents->unbounded, &extents->mask))
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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}
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extents->clip = _cairo_clip_reduce_for_composite (clip, extents);
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if (_cairo_clip_is_all_clipped (extents->clip))
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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if (! _cairo_rectangle_intersect (&extents->unbounded,
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_cairo_clip_get_extents (extents->clip)))
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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if (! _cairo_rectangle_intersect (&extents->bounded,
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_cairo_clip_get_extents (extents->clip)) &&
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extents->is_bounded & CAIRO_OPERATOR_BOUND_BY_MASK)
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{
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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}
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if (extents->source_pattern.base.type != CAIRO_PATTERN_TYPE_SOLID)
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_cairo_pattern_sampled_area (&extents->source_pattern.base,
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&extents->bounded,
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&extents->source_sample_area);
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if (extents->mask_pattern.base.type != CAIRO_PATTERN_TYPE_SOLID) {
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_cairo_pattern_sampled_area (&extents->mask_pattern.base,
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&extents->bounded,
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&extents->mask_sample_area);
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if (extents->mask_sample_area.width == 0 ||
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extents->mask_sample_area.height == 0) {
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_cairo_composite_rectangles_fini (extents);
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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}
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}
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return CAIRO_STATUS_SUCCESS;
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}
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cairo_int_status_t
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_cairo_composite_rectangles_intersect_source_extents (cairo_composite_rectangles_t *extents,
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const cairo_box_t *box)
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{
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cairo_rectangle_int_t rect;
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cairo_clip_t *clip;
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_cairo_box_round_to_rectangle (box, &rect);
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if (rect.x == extents->source.x &&
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rect.y == extents->source.y &&
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rect.width == extents->source.width &&
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rect.height == extents->source.height)
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{
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return CAIRO_INT_STATUS_SUCCESS;
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}
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_cairo_rectangle_intersect (&extents->source, &rect);
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rect = extents->bounded;
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if (! _cairo_rectangle_intersect (&extents->bounded, &extents->source) &&
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extents->is_bounded & CAIRO_OPERATOR_BOUND_BY_SOURCE)
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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if (rect.width == extents->bounded.width &&
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rect.height == extents->bounded.height)
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return CAIRO_INT_STATUS_SUCCESS;
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if (extents->is_bounded == (CAIRO_OPERATOR_BOUND_BY_MASK | CAIRO_OPERATOR_BOUND_BY_SOURCE)) {
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extents->unbounded = extents->bounded;
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} else if (extents->is_bounded & CAIRO_OPERATOR_BOUND_BY_MASK) {
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if (!_cairo_rectangle_intersect (&extents->unbounded, &extents->mask))
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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}
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clip = extents->clip;
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extents->clip = _cairo_clip_reduce_for_composite (clip, extents);
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if (clip != extents->clip)
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_cairo_clip_destroy (clip);
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if (_cairo_clip_is_all_clipped (extents->clip))
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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if (! _cairo_rectangle_intersect (&extents->unbounded,
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_cairo_clip_get_extents (extents->clip)))
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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if (extents->source_pattern.base.type != CAIRO_PATTERN_TYPE_SOLID)
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_cairo_pattern_sampled_area (&extents->source_pattern.base,
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&extents->bounded,
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&extents->source_sample_area);
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if (extents->mask_pattern.base.type != CAIRO_PATTERN_TYPE_SOLID) {
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_cairo_pattern_sampled_area (&extents->mask_pattern.base,
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&extents->bounded,
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&extents->mask_sample_area);
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if (extents->mask_sample_area.width == 0 ||
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extents->mask_sample_area.height == 0)
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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}
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return CAIRO_INT_STATUS_SUCCESS;
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}
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cairo_int_status_t
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_cairo_composite_rectangles_intersect_mask_extents (cairo_composite_rectangles_t *extents,
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const cairo_box_t *box)
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{
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cairo_rectangle_int_t mask;
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cairo_clip_t *clip;
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_cairo_box_round_to_rectangle (box, &mask);
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if (mask.x == extents->mask.x &&
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mask.y == extents->mask.y &&
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mask.width == extents->mask.width &&
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mask.height == extents->mask.height)
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{
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return CAIRO_INT_STATUS_SUCCESS;
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}
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_cairo_rectangle_intersect (&extents->mask, &mask);
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mask = extents->bounded;
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if (! _cairo_rectangle_intersect (&extents->bounded, &extents->mask) &&
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extents->is_bounded & CAIRO_OPERATOR_BOUND_BY_MASK)
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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if (mask.width == extents->bounded.width &&
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mask.height == extents->bounded.height)
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return CAIRO_INT_STATUS_SUCCESS;
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if (extents->is_bounded == (CAIRO_OPERATOR_BOUND_BY_MASK | CAIRO_OPERATOR_BOUND_BY_SOURCE)) {
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extents->unbounded = extents->bounded;
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} else if (extents->is_bounded & CAIRO_OPERATOR_BOUND_BY_MASK) {
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if (!_cairo_rectangle_intersect (&extents->unbounded, &extents->mask))
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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}
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clip = extents->clip;
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extents->clip = _cairo_clip_reduce_for_composite (clip, extents);
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if (clip != extents->clip)
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_cairo_clip_destroy (clip);
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if (_cairo_clip_is_all_clipped (extents->clip))
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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if (! _cairo_rectangle_intersect (&extents->unbounded,
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_cairo_clip_get_extents (extents->clip)))
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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if (extents->source_pattern.base.type != CAIRO_PATTERN_TYPE_SOLID)
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_cairo_pattern_sampled_area (&extents->source_pattern.base,
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&extents->bounded,
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&extents->source_sample_area);
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if (extents->mask_pattern.base.type != CAIRO_PATTERN_TYPE_SOLID) {
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_cairo_pattern_sampled_area (&extents->mask_pattern.base,
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&extents->bounded,
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&extents->mask_sample_area);
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if (extents->mask_sample_area.width == 0 ||
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extents->mask_sample_area.height == 0)
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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}
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return CAIRO_INT_STATUS_SUCCESS;
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}
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cairo_int_status_t
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_cairo_composite_rectangles_init_for_mask (cairo_composite_rectangles_t *extents,
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cairo_surface_t*surface,
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cairo_operator_t op,
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const cairo_pattern_t *source,
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const cairo_pattern_t *mask,
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const cairo_clip_t *clip)
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{
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if (! _cairo_composite_rectangles_init (extents,
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surface, op, source, clip))
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{
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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}
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extents->original_mask_pattern = mask;
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_cairo_composite_reduce_pattern (mask, &extents->mask_pattern);
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_cairo_pattern_get_extents (&extents->mask_pattern.base, &extents->mask);
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return _cairo_composite_rectangles_intersect (extents, clip);
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}
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cairo_int_status_t
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_cairo_composite_rectangles_init_for_stroke (cairo_composite_rectangles_t *extents,
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cairo_surface_t *surface,
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cairo_operator_t op,
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const cairo_pattern_t *source,
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const cairo_path_fixed_t *path,
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const cairo_stroke_style_t *style,
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const cairo_matrix_t *ctm,
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const cairo_clip_t *clip)
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{
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if (! _cairo_composite_rectangles_init (extents,
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surface, op, source, clip))
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{
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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}
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_cairo_path_fixed_approximate_stroke_extents (path, style, ctm, &extents->mask);
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return _cairo_composite_rectangles_intersect (extents, clip);
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}
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cairo_int_status_t
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_cairo_composite_rectangles_init_for_fill (cairo_composite_rectangles_t *extents,
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cairo_surface_t *surface,
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cairo_operator_t op,
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const cairo_pattern_t *source,
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const cairo_path_fixed_t *path,
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const cairo_clip_t *clip)
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{
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if (! _cairo_composite_rectangles_init (extents,
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surface, op, source, clip))
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{
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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}
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_cairo_path_fixed_approximate_fill_extents (path, &extents->mask);
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return _cairo_composite_rectangles_intersect (extents, clip);
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}
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cairo_int_status_t
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_cairo_composite_rectangles_init_for_polygon (cairo_composite_rectangles_t *extents,
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cairo_surface_t *surface,
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cairo_operator_t op,
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const cairo_pattern_t *source,
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const cairo_polygon_t *polygon,
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const cairo_clip_t *clip)
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{
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if (! _cairo_composite_rectangles_init (extents,
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surface, op, source, clip))
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{
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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}
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_cairo_box_round_to_rectangle (&polygon->extents, &extents->mask);
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return _cairo_composite_rectangles_intersect (extents, clip);
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}
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cairo_int_status_t
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_cairo_composite_rectangles_init_for_boxes (cairo_composite_rectangles_t *extents,
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cairo_surface_t *surface,
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cairo_operator_t op,
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const cairo_pattern_t *source,
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const cairo_boxes_t *boxes,
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const cairo_clip_t *clip)
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{
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cairo_box_t box;
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if (! _cairo_composite_rectangles_init (extents,
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surface, op, source, clip))
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{
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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}
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_cairo_boxes_extents (boxes, &box);
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_cairo_box_round_to_rectangle (&box, &extents->mask);
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return _cairo_composite_rectangles_intersect (extents, clip);
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}
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cairo_int_status_t
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_cairo_composite_rectangles_init_for_glyphs (cairo_composite_rectangles_t *extents,
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cairo_surface_t *surface,
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cairo_operator_t op,
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const cairo_pattern_t *source,
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cairo_scaled_font_t *scaled_font,
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cairo_glyph_t *glyphs,
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int num_glyphs,
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const cairo_clip_t *clip,
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cairo_bool_t *overlap)
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{
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cairo_status_t status;
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if (! _cairo_composite_rectangles_init (extents, surface, op, source, clip))
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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/* Computing the exact bbox and the overlap is expensive.
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* First perform a cheap test to see if the glyphs are all clipped out.
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*/
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if (extents->is_bounded & CAIRO_OPERATOR_BOUND_BY_MASK &&
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_cairo_scaled_font_glyph_approximate_extents (scaled_font,
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glyphs, num_glyphs,
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&extents->mask))
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{
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if (! _cairo_rectangle_intersect (&extents->bounded, &extents->mask))
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return CAIRO_INT_STATUS_NOTHING_TO_DO;
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}
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status = _cairo_scaled_font_glyph_device_extents (scaled_font,
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glyphs, num_glyphs,
|
|
&extents->mask,
|
|
overlap);
|
|
if (unlikely (status))
|
|
return status;
|
|
|
|
if (overlap && *overlap &&
|
|
scaled_font->options.antialias == CAIRO_ANTIALIAS_NONE &&
|
|
_cairo_pattern_is_opaque_solid (&extents->source_pattern.base))
|
|
{
|
|
*overlap = FALSE;
|
|
}
|
|
|
|
return _cairo_composite_rectangles_intersect (extents, clip);
|
|
}
|
|
|
|
cairo_bool_t
|
|
_cairo_composite_rectangles_can_reduce_clip (cairo_composite_rectangles_t *composite,
|
|
cairo_clip_t *clip)
|
|
{
|
|
cairo_rectangle_int_t extents;
|
|
cairo_box_t box;
|
|
|
|
if (clip == NULL)
|
|
return TRUE;
|
|
|
|
extents = composite->destination;
|
|
if (composite->is_bounded & CAIRO_OPERATOR_BOUND_BY_SOURCE)
|
|
_cairo_rectangle_intersect (&extents, &composite->source);
|
|
if (composite->is_bounded & CAIRO_OPERATOR_BOUND_BY_MASK)
|
|
_cairo_rectangle_intersect (&extents, &composite->mask);
|
|
|
|
_cairo_box_from_rectangle (&box, &extents);
|
|
return _cairo_clip_contains_box (clip, &box);
|
|
}
|
|
|
|
cairo_int_status_t
|
|
_cairo_composite_rectangles_add_to_damage (cairo_composite_rectangles_t *composite,
|
|
cairo_boxes_t *damage)
|
|
{
|
|
cairo_int_status_t status;
|
|
int n;
|
|
|
|
for (n = 0; n < composite->clip->num_boxes; n++) {
|
|
status = _cairo_boxes_add (damage,
|
|
CAIRO_ANTIALIAS_NONE,
|
|
&composite->clip->boxes[n]);
|
|
if (unlikely (status))
|
|
return status;
|
|
}
|
|
|
|
return CAIRO_INT_STATUS_SUCCESS;
|
|
}
|