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In order to run under memfault, the framework is first extended to handle running concurrent tests - i.e. multi-threading. (Not that this is a requirement for memfault, instead it shares a common goal of storing per-test data). To that end all the global data is moved into a per-test context and the targets are adjusted to avoid overlap on shared, global resources (such as output files and frame buffers). In order to preserve the simplicity of the standard draw routines, the context is not passed explicitly as a parameter to the routines, but is instead attached to the cairo_t via the user_data. For the masochist, to enable the tests to be run across multiple threads simply set the environment variable CAIRO_TEST_NUM_THREADS to the desired number. In the long run, we can hope the need for memfault (runtime testing of error paths) will be mitigated by static analysis. A promising candidate for this task would appear to be http://hal.cs.berkeley.edu/cil/.
209 lines
5.3 KiB
C
209 lines
5.3 KiB
C
/*
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* Copyright © Jeff Muizelaar
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*
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* Permission to use, copy, modify, distribute, and sell this software
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* and its documentation for any purpose is hereby granted without
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* fee, provided that the above copyright notice appear in all copies
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* and that both that copyright notice and this permission notice
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* appear in supporting documentation, and that the name of
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* Red Hat, Inc. not be used in advertising or publicity pertaining to
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* distribution of the software without specific, written prior
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* permission. Red Hat, Inc. makes no representations about the
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* suitability of this software for any purpose. It is provided "as
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* is" without express or implied warranty.
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*
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* JEFF MUIZELAAR DISCLAIMS 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 RED HAT, INC. BE LIABLE FOR ANY SPECIAL,
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* INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER
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* RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION
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* OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR
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* IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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*
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* Authors: Jeff Muizelaar <jeff@infidigm.net>
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* Carl Worth <cworth@cworth.org>
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* Chris Wilson <chris@chris-wilson.co.uk>
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*/
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#include "cairo-test.h"
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static cairo_test_draw_function_t draw;
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#define MASK_WIDTH 10
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#define MASK_HEIGHT 8
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#ifdef WORDS_BIGENDIAN
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#define MASK 0x28, 0x55
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#else
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#define MASK 0x14, 0xAA
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#endif
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static unsigned char mask[(MASK_WIDTH + 7) / 8 * MASK_HEIGHT] = {
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MASK,
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MASK,
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MASK,
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MASK,
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MASK,
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MASK,
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MASK,
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MASK,
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};
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static const cairo_test_t test = {
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"a1-mask",
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"test masks of CAIRO_FORMAT_A1",
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MASK_WIDTH, MASK_HEIGHT,
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draw
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};
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static cairo_test_status_t
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check_status (const cairo_test_context_t *ctx,
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cairo_status_t status,
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cairo_status_t expected)
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{
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if (status == expected)
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return CAIRO_TEST_SUCCESS;
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cairo_test_log (ctx,
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"Error: Expected status value %d (%s), received %d (%s)\n",
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expected,
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cairo_status_to_string (expected),
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status,
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cairo_status_to_string (status));
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return CAIRO_TEST_FAILURE;
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}
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static cairo_test_status_t
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test_surface_with_width_and_stride (const cairo_test_context_t *ctx,
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int width, int stride,
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cairo_status_t expected)
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{
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cairo_test_status_t status;
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cairo_surface_t *surface;
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cairo_t *cr;
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int len;
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unsigned char *data;
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cairo_test_log (ctx,
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"Creating surface with width %d and stride %d\n",
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width, stride);
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len = stride;
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if (len < 0)
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len = -len;
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data = xmalloc (len);
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surface = cairo_image_surface_create_for_data (data, CAIRO_FORMAT_A1,
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width, 1, stride);
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cr = cairo_create (surface);
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cairo_paint (cr);
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status = check_status (ctx, cairo_surface_status (surface), expected);
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if (status)
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goto BAIL;
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status = check_status (ctx, cairo_status (cr), expected);
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if (status)
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goto BAIL;
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BAIL:
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cairo_destroy (cr);
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cairo_surface_destroy (surface);
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free (data);
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return status;
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}
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static cairo_test_status_t
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draw (cairo_t *cr, int dst_width, int dst_height)
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{
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unsigned char *mask_aligned;
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cairo_surface_t *surface;
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surface = cairo_image_surface_create (CAIRO_FORMAT_A1,
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MASK_WIDTH,
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MASK_HEIGHT);
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mask_aligned = cairo_image_surface_get_data (surface);
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if (mask_aligned != NULL) {
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int stride = cairo_image_surface_get_stride (surface), row;
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const unsigned char *src = mask;
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unsigned char *dst = mask_aligned;
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for (row = 0; row < MASK_HEIGHT; row++) {
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memcpy (dst, src, (MASK_WIDTH + 7) / 8);
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src += (MASK_WIDTH + 7) / 8;
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dst += stride;
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}
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}
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/* Paint background blue */
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cairo_set_source_rgb (cr, 0, 0, 1); /* blue */
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cairo_paint (cr);
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/* Then paint red through our mask */
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cairo_set_source_rgb (cr, 1, 0, 0); /* red */
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cairo_mask_surface (cr, surface, 0, 0);
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cairo_surface_destroy (surface);
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return CAIRO_TEST_SUCCESS;
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}
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int
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main (void)
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{
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cairo_test_context_t ctx;
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int test_width;
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cairo_test_init (&ctx, "a1-mask");
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/* first check the API strictness */
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for (test_width = 0; test_width < 40; test_width++) {
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int test_stride = (test_width + 7) / 8;
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int stride = cairo_format_stride_for_width (CAIRO_FORMAT_A1,
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test_width);
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cairo_test_status_t status;
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cairo_status_t expected;
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/* First create a surface using the width as the stride,
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* (most of these should fail).
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*/
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expected = (stride == test_stride) ?
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CAIRO_STATUS_SUCCESS : CAIRO_STATUS_INVALID_STRIDE;
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status = test_surface_with_width_and_stride (&ctx,
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test_width,
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test_stride,
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expected);
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if (status)
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return status;
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status = test_surface_with_width_and_stride (&ctx,
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test_width,
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-test_stride,
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expected);
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if (status)
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return status;
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/* Then create a surface using the correct stride,
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* (should always succeed).
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*/
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status = test_surface_with_width_and_stride (&ctx,
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test_width,
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stride,
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CAIRO_STATUS_SUCCESS);
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if (status)
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return status;
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status = test_surface_with_width_and_stride (&ctx,
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test_width,
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-stride,
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CAIRO_STATUS_SUCCESS);
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if (status)
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return status;
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}
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cairo_test_fini (&ctx);
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return cairo_test (&test);
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}
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