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219 lines
6.3 KiB
219 lines
6.3 KiB
/*
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* Copyright © 2013 Sam Spilsbury <smspillaz@gmail.com>
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*
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* Permission to use, copy, modify, distribute, and sell this software and
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* its documentation for any purpose is hereby granted without fee, provided
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* that the above copyright notice appear in all copies and that both that
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* copyright notice and this permission notice appear in supporting
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* documentation, and that the name of the copyright holders not be used in
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* advertising or publicity pertaining to distribution of the software
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* without specific, written prior permission. The copyright holders make
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* no representations about the suitability of this software for any
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* purpose. It is provided "as is" without express or implied warranty.
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*
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* THE COPYRIGHT HOLDERS DISCLAIM ALL WARRANTIES WITH REGARD TO THIS
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* SOFTWARE, INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND
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* FITNESS, IN NO EVENT SHALL THE COPYRIGHT HOLDERS BE LIABLE FOR ANY
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* SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER
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* RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF
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* CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
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* CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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*/
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#include <assert.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <math.h>
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#include "weston-test-runner.h"
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#include "../src/vertex-clipping.h"
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#define BOUNDING_BOX_TOP_Y 100.0f
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#define BOUNDING_BOX_LEFT_X 50.0f
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#define BOUNDING_BOX_RIGHT_X 100.0f
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#define BOUNDING_BOX_BOTTOM_Y 50.0f
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#define INSIDE_X1 (BOUNDING_BOX_LEFT_X + 1.0f)
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#define INSIDE_X2 (BOUNDING_BOX_RIGHT_X - 1.0f)
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#define INSIDE_Y1 (BOUNDING_BOX_BOTTOM_Y + 1.0f)
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#define INSIDE_Y2 (BOUNDING_BOX_TOP_Y - 1.0f)
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#define OUTSIDE_X1 (BOUNDING_BOX_LEFT_X - 1.0f)
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#define OUTSIDE_X2 (BOUNDING_BOX_RIGHT_X + 1.0f)
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#define OUTSIDE_Y1 (BOUNDING_BOX_BOTTOM_Y - 1.0f)
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#define OUTSIDE_Y2 (BOUNDING_BOX_TOP_Y + 1.0f)
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static void
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populate_clip_context (struct clip_context *ctx)
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{
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ctx->clip.x1 = BOUNDING_BOX_LEFT_X;
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ctx->clip.y1 = BOUNDING_BOX_BOTTOM_Y;
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ctx->clip.x2 = BOUNDING_BOX_RIGHT_X;
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ctx->clip.y2 = BOUNDING_BOX_TOP_Y;
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}
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static int
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clip_polygon (struct clip_context *ctx,
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struct polygon8 *polygon,
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float *vertices_x,
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float *vertices_y)
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{
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populate_clip_context(ctx);
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return clip_transformed(ctx, polygon, vertices_x, vertices_y);
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}
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struct vertex_clip_test_data
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{
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struct polygon8 surface;
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struct polygon8 expected;
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};
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const struct vertex_clip_test_data test_data[] =
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{
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/* All inside */
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{
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{
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{ INSIDE_X1, INSIDE_X2, INSIDE_X2, INSIDE_X1 },
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{ INSIDE_Y1, INSIDE_Y1, INSIDE_Y2, INSIDE_Y2 },
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4
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},
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{
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{ INSIDE_X1, INSIDE_X2, INSIDE_X2, INSIDE_X1 },
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{ INSIDE_Y1, INSIDE_Y1, INSIDE_Y2, INSIDE_Y2 },
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4
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}
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},
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/* Top outside */
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{
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{
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{ INSIDE_X1, INSIDE_X2, INSIDE_X2, INSIDE_X1 },
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{ INSIDE_Y1, INSIDE_Y1, OUTSIDE_Y2, OUTSIDE_Y2 },
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4
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},
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{
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{ INSIDE_X1, INSIDE_X1, INSIDE_X2, INSIDE_X2 },
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{ BOUNDING_BOX_TOP_Y, INSIDE_Y1, INSIDE_Y1, BOUNDING_BOX_TOP_Y },
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4
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}
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},
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/* Bottom outside */
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{
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{
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{ INSIDE_X1, INSIDE_X2, INSIDE_X2, INSIDE_X1 },
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{ OUTSIDE_Y1, OUTSIDE_Y1, INSIDE_Y2, INSIDE_Y2 },
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4
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},
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{
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{ INSIDE_X1, INSIDE_X2, INSIDE_X2, INSIDE_X1 },
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{ BOUNDING_BOX_BOTTOM_Y, BOUNDING_BOX_BOTTOM_Y, INSIDE_Y2, INSIDE_Y2 },
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4
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}
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},
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/* Left outside */
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{
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{
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{ OUTSIDE_X1, INSIDE_X2, INSIDE_X2, OUTSIDE_X1 },
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{ INSIDE_Y1, INSIDE_Y1, INSIDE_Y2, INSIDE_Y2 },
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4
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},
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{
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{ BOUNDING_BOX_LEFT_X, INSIDE_X2, INSIDE_X2, BOUNDING_BOX_LEFT_X },
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{ INSIDE_Y1, INSIDE_Y1, INSIDE_Y2, INSIDE_Y2 },
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4
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}
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},
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/* Right outside */
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{
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{
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{ INSIDE_X1, OUTSIDE_X2, OUTSIDE_X2, INSIDE_X1 },
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{ INSIDE_Y1, INSIDE_Y1, INSIDE_Y2, INSIDE_Y2 },
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4
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},
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{
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{ INSIDE_X1, BOUNDING_BOX_RIGHT_X, BOUNDING_BOX_RIGHT_X, INSIDE_X1 },
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{ INSIDE_Y1, INSIDE_Y1, INSIDE_Y2, INSIDE_Y2 },
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4
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}
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},
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/* Diamond extending from bounding box edges, clip to bounding box */
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{
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{
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{ BOUNDING_BOX_LEFT_X - 25, BOUNDING_BOX_LEFT_X + 25, BOUNDING_BOX_RIGHT_X + 25, BOUNDING_BOX_RIGHT_X - 25 },
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{ BOUNDING_BOX_BOTTOM_Y + 25, BOUNDING_BOX_TOP_Y + 25, BOUNDING_BOX_TOP_Y - 25, BOUNDING_BOX_BOTTOM_Y - 25 },
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4
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},
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{
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{ BOUNDING_BOX_LEFT_X, BOUNDING_BOX_LEFT_X, BOUNDING_BOX_RIGHT_X, BOUNDING_BOX_RIGHT_X },
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{ BOUNDING_BOX_BOTTOM_Y, BOUNDING_BOX_TOP_Y, BOUNDING_BOX_TOP_Y, BOUNDING_BOX_BOTTOM_Y },
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4
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}
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},
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/* Diamond inside of bounding box edges, clip t bounding box, 8 resulting vertices */
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{
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{
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{ BOUNDING_BOX_LEFT_X - 12.5, BOUNDING_BOX_LEFT_X + 25, BOUNDING_BOX_RIGHT_X + 12.5, BOUNDING_BOX_RIGHT_X - 25 },
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{ BOUNDING_BOX_BOTTOM_Y + 25, BOUNDING_BOX_TOP_Y + 12.5, BOUNDING_BOX_TOP_Y - 25, BOUNDING_BOX_BOTTOM_Y - 12.5 },
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4
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},
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{
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{ BOUNDING_BOX_LEFT_X + 12.5, BOUNDING_BOX_LEFT_X, BOUNDING_BOX_LEFT_X, BOUNDING_BOX_LEFT_X + 12.5,
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BOUNDING_BOX_RIGHT_X - 12.5, BOUNDING_BOX_RIGHT_X, BOUNDING_BOX_RIGHT_X, BOUNDING_BOX_RIGHT_X - 12.5 },
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{ BOUNDING_BOX_BOTTOM_Y, BOUNDING_BOX_BOTTOM_Y + 12.5, BOUNDING_BOX_TOP_Y - 12.5, BOUNDING_BOX_TOP_Y,
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BOUNDING_BOX_TOP_Y, BOUNDING_BOX_TOP_Y - 12.5, BOUNDING_BOX_BOTTOM_Y + 12.5, BOUNDING_BOX_BOTTOM_Y },
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8
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}
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}
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};
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/* clip_polygon modifies the source operand and the test data must
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* be const, so we need to deep copy it */
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static void
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deep_copy_polygon8(const struct polygon8 *src, struct polygon8 *dst)
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{
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dst->n = src->n;
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memcpy((void *) dst->x, src->x, sizeof (src->x));
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memcpy((void *) dst->y, src->y, sizeof (src->y));
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}
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TEST_P(clip_polygon_n_vertices_emitted, test_data)
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{
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struct vertex_clip_test_data *tdata = data;
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struct clip_context ctx;
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struct polygon8 polygon;
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float vertices_x[8];
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float vertices_y[8];
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deep_copy_polygon8(&tdata->surface, &polygon);
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int emitted = clip_polygon(&ctx, &polygon, vertices_x, vertices_y);
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assert(emitted == tdata->expected.n);
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}
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TEST_P(clip_polygon_expected_vertices, test_data)
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{
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struct vertex_clip_test_data *tdata = data;
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struct clip_context ctx;
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struct polygon8 polygon;
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float vertices_x[8];
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float vertices_y[8];
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deep_copy_polygon8(&tdata->surface, &polygon);
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int emitted = clip_polygon(&ctx, &polygon, vertices_x, vertices_y);
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int i = 0;
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for (; i < emitted; ++i)
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{
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assert(vertices_x[i] == tdata->expected.x[i]);
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assert(vertices_y[i] == tdata->expected.y[i]);
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}
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}
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TEST(float_difference_different)
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{
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assert(float_difference(1.0f, 0.0f) == 1.0f);
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}
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TEST(float_difference_same)
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{
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assert(float_difference(1.0f, 1.0f) == 0.0f);
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}
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