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415 lines
10 KiB
415 lines
10 KiB
/*
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* Copyright © 2017 Intel Corporation
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*
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* Permission is hereby granted, free of charge, to any person obtaining a
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* copy of this software and associated documentation files (the "Software"),
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* to deal in the Software without restriction, including without limitation
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* the rights to use, copy, modify, merge, publish, distribute, sublicense,
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* and/or sell copies of the Software, and to permit persons to whom the
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* Software is furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice (including the next
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* paragraph) shall be included in all copies or substantial portions of the
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* Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
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* IN THE SOFTWARE.
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*
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*/
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#include "igt.h"
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#include "drmtest.h"
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IGT_TEST_DESCRIPTION("Test atomic mode setting concurrently with multiple planes and screen resolution");
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#define SIZE_PLANE 256
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#define SIZE_CURSOR 128
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#define LOOP_FOREVER -1
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typedef struct {
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int drm_fd;
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igt_display_t display;
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igt_plane_t **plane;
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struct igt_fb *fb;
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} data_t;
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/* Command line parameters. */
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struct {
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int iterations;
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bool user_seed;
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int seed;
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bool run;
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} opt = {
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.iterations = 1,
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.user_seed = false,
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.seed = 1,
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.run = true,
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};
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/*
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* Common code across all tests, acting on data_t
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*/
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static void test_init(data_t *data, enum pipe pipe, int n_planes,
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igt_output_t *output)
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{
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drmModeModeInfo *mode;
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igt_plane_t *primary;
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int ret;
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data->plane = calloc(n_planes, sizeof(*data->plane));
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igt_assert_f(data->plane != NULL, "Failed to allocate memory for planes\n");
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data->fb = calloc(n_planes, sizeof(struct igt_fb));
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igt_assert_f(data->fb != NULL, "Failed to allocate memory for FBs\n");
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igt_output_set_pipe(output, pipe);
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primary = igt_output_get_plane_type(output, DRM_PLANE_TYPE_PRIMARY);
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data->plane[primary->index] = primary;
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mode = igt_output_get_mode(output);
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igt_create_color_fb(data->drm_fd, mode->hdisplay, mode->vdisplay,
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DRM_FORMAT_XRGB8888,
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LOCAL_I915_FORMAT_MOD_X_TILED,
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0.0f, 0.0f, 1.0f,
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&data->fb[primary->index]);
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igt_plane_set_fb(data->plane[primary->index], &data->fb[primary->index]);
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ret = igt_display_try_commit2(&data->display, COMMIT_ATOMIC);
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igt_skip_on(ret != 0);
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}
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static void test_fini(data_t *data, enum pipe pipe, int n_planes,
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igt_output_t *output)
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{
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int i;
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for (i = 0; i < n_planes; i++) {
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igt_plane_t *plane = data->plane[i];
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if (!plane)
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continue;
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if (plane->type == DRM_PLANE_TYPE_PRIMARY)
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continue;
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igt_plane_set_fb(plane, NULL);
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data->plane[i] = NULL;
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}
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/* reset the constraint on the pipe */
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igt_output_set_pipe(output, PIPE_ANY);
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free(data->plane);
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data->plane = NULL;
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free(data->fb);
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data->fb = NULL;
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}
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static void
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create_fb_for_mode_position(data_t *data, drmModeModeInfo *mode,
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int *rect_x, int *rect_y,
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int *rect_w, int *rect_h,
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uint64_t tiling, int max_planes,
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igt_output_t *output)
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{
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unsigned int fb_id;
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cairo_t *cr;
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igt_plane_t *primary;
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primary = igt_output_get_plane_type(output, DRM_PLANE_TYPE_PRIMARY);
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fb_id = igt_create_fb(data->drm_fd,
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mode->hdisplay, mode->vdisplay,
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DRM_FORMAT_XRGB8888,
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tiling,
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&data->fb[primary->index]);
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igt_assert(fb_id);
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cr = igt_get_cairo_ctx(data->drm_fd, &data->fb[primary->index]);
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igt_paint_color(cr, rect_x[0], rect_y[0],
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mode->hdisplay, mode->vdisplay,
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0.0f, 0.0f, 1.0f);
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for (int i = 0; i < max_planes; i++) {
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if (data->plane[i]->type == DRM_PLANE_TYPE_PRIMARY)
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continue;
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igt_paint_color(cr, rect_x[i], rect_y[i],
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rect_w[i], rect_h[i], 0.0, 0.0, 0.0);
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}
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igt_put_cairo_ctx(data->drm_fd, &data->fb[primary->index], cr);
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}
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static void
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prepare_planes(data_t *data, enum pipe pipe, int max_planes,
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igt_output_t *output)
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{
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drmModeModeInfo *mode;
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igt_pipe_t *p;
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igt_plane_t *primary;
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int *x;
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int *y;
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int *size;
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int i;
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igt_output_set_pipe(output, pipe);
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primary = igt_output_get_plane_type(output, DRM_PLANE_TYPE_PRIMARY);
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p = primary->pipe;
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x = malloc(p->n_planes * sizeof(*x));
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igt_assert_f(x, "Failed to allocate %ld bytes for variable x\n", (long int) (p->n_planes * sizeof(*x)));
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y = malloc(p->n_planes * sizeof(*y));
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igt_assert_f(y, "Failed to allocate %ld bytes for variable y\n", (long int) (p->n_planes * sizeof(*y)));
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size = malloc(p->n_planes * sizeof(*size));
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igt_assert_f(size, "Failed to allocate %ld bytes for variable size\n", (long int) (p->n_planes * sizeof(*size)));
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mode = igt_output_get_mode(output);
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/* planes with random positions */
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x[primary->index] = 0;
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y[primary->index] = 0;
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for (i = 0; i < max_planes; i++) {
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igt_plane_t *plane = igt_output_get_plane(output, i);
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int ret;
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if (plane->type == DRM_PLANE_TYPE_PRIMARY)
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continue;
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else if (plane->type == DRM_PLANE_TYPE_CURSOR)
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size[i] = SIZE_CURSOR;
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else
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size[i] = SIZE_PLANE;
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x[i] = rand() % (mode->hdisplay - size[i]);
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y[i] = rand() % (mode->vdisplay - size[i]);
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data->plane[i] = plane;
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igt_create_color_fb(data->drm_fd,
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size[i], size[i],
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data->plane[i]->type == DRM_PLANE_TYPE_CURSOR ? DRM_FORMAT_ARGB8888 : DRM_FORMAT_XRGB8888,
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data->plane[i]->type == DRM_PLANE_TYPE_CURSOR ? LOCAL_DRM_FORMAT_MOD_NONE : LOCAL_I915_FORMAT_MOD_X_TILED,
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0.0f, 0.0f, 1.0f,
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&data->fb[i]);
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igt_plane_set_position(data->plane[i], x[i], y[i]);
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igt_plane_set_fb(data->plane[i], &data->fb[i]);
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ret = igt_display_try_commit_atomic(&data->display, DRM_MODE_ATOMIC_TEST_ONLY, NULL);
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if (ret) {
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igt_plane_set_fb(data->plane[i], NULL);
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igt_remove_fb(data->drm_fd, &data->fb[i]);
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data->plane[i] = NULL;
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break;
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}
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}
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max_planes = i;
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igt_assert_lt(0, max_planes);
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/* primary plane */
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data->plane[primary->index] = primary;
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create_fb_for_mode_position(data, mode, x, y, size, size,
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LOCAL_I915_FORMAT_MOD_X_TILED,
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max_planes, output);
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igt_plane_set_fb(data->plane[primary->index], &data->fb[primary->index]);
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}
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static void
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test_plane_position_with_output(data_t *data, enum pipe pipe, igt_output_t *output)
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{
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int i;
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int iterations = opt.iterations < 1 ? 1 : opt.iterations;
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bool loop_forever = opt.iterations == LOOP_FOREVER ? true : false;
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int max_planes = data->display.pipes[pipe].n_planes;
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igt_pipe_refresh(&data->display, pipe, true);
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i = 0;
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while (i < iterations || loop_forever) {
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prepare_planes(data, pipe, max_planes, output);
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igt_display_commit2(&data->display, COMMIT_ATOMIC);
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i++;
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}
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}
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static const drmModeModeInfo *
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get_lowres_mode(data_t *data, const drmModeModeInfo *mode_default,
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igt_output_t *output)
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{
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const drmModeModeInfo *mode = igt_std_1024_mode_get();
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drmModeConnector *connector = output->config.connector;
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int limit = mode_default->vdisplay - SIZE_PLANE;
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bool found;
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if (!connector)
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return mode;
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found = false;
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for (int i = 0; i < connector->count_modes; i++) {
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mode = &connector->modes[i];
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if (mode->vdisplay < limit) {
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found = true;
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break;
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}
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}
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if (!found)
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mode = igt_std_1024_mode_get();
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return mode;
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}
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static void
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test_resolution_with_output(data_t *data, enum pipe pipe, igt_output_t *output)
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{
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const drmModeModeInfo *mode_hi, *mode_lo;
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int iterations = opt.iterations < 1 ? 1 : opt.iterations;
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bool loop_forever = opt.iterations == LOOP_FOREVER ? true : false;
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int i;
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i = 0;
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while (i < iterations || loop_forever) {
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mode_hi = igt_output_get_mode(output);
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mode_lo = get_lowres_mode(data, mode_hi, output);
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/* switch to lower resolution */
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igt_output_override_mode(output, mode_lo);
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igt_display_commit2(&data->display, COMMIT_ATOMIC);
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/* switch back to higher resolution */
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igt_output_override_mode(output, NULL);
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igt_display_commit2(&data->display, COMMIT_ATOMIC);
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i++;
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}
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}
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static void
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run_test(data_t *data, enum pipe pipe, igt_output_t *output)
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{
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int connected_outs;
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int n_planes = data->display.pipes[pipe].n_planes;
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if (!opt.user_seed)
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opt.seed = time(NULL);
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connected_outs = 0;
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for_each_valid_output_on_pipe(&data->display, pipe, output) {
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igt_info("Testing resolution with connector %s using pipe %s with seed %d\n",
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igt_output_name(output), kmstest_pipe_name(pipe), opt.seed);
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test_init(data, pipe, n_planes, output);
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igt_fork(child, 1) {
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test_plane_position_with_output(data, pipe, output);
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}
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test_resolution_with_output(data, pipe, output);
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igt_waitchildren();
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test_fini(data, pipe, n_planes, output);
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connected_outs++;
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}
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igt_skip_on(connected_outs == 0);
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}
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static void
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run_tests_for_pipe(data_t *data, enum pipe pipe)
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{
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igt_output_t *output;
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igt_fixture {
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int valid_tests = 0;
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igt_skip_on(pipe >= data->display.n_pipes);
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igt_require(data->display.pipes[pipe].n_planes > 0);
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for_each_valid_output_on_pipe(&data->display, pipe, output)
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valid_tests++;
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igt_require_f(valid_tests, "no valid crtc/connector combinations found\n");
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}
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igt_subtest_f("pipe-%s", kmstest_pipe_name(pipe))
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for_each_valid_output_on_pipe(&data->display, pipe, output)
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run_test(data, pipe, output);
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}
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static int opt_handler(int option, int option_index, void *input)
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{
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switch (option) {
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case 'i':
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opt.iterations = strtol(optarg, NULL, 0);
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if (opt.iterations < LOOP_FOREVER || opt.iterations == 0) {
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igt_info("incorrect number of iterations\n");
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igt_assert(false);
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}
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break;
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case 's':
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opt.user_seed = true;
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opt.seed = strtol(optarg, NULL, 0);
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break;
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default:
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return IGT_OPT_HANDLER_ERROR;
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}
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return IGT_OPT_HANDLER_SUCCESS;
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}
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const char *help_str =
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" --iterations Number of iterations for test coverage. -1 loop forever, default 1 iteration\n"
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" --seed Seed for random number generator\n";
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struct option long_options[] = {
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{ "iterations", required_argument, NULL, 'i'},
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{ "seed", required_argument, NULL, 's'},
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{ 0, 0, 0, 0 }
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};
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static data_t data;
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igt_main_args("", long_options, help_str, opt_handler, NULL)
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{
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enum pipe pipe;
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igt_skip_on_simulation();
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igt_fixture {
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data.drm_fd = drm_open_driver_master(DRIVER_ANY);
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kmstest_set_vt_graphics_mode();
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igt_display_require(&data.display, data.drm_fd);
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igt_require(data.display.is_atomic);
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}
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for_each_pipe_static(pipe) {
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igt_subtest_group
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run_tests_for_pipe(&data, pipe);
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}
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igt_fixture {
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igt_display_fini(&data.display);
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close(data.drm_fd);
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}
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}
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