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288 lines
7.3 KiB
288 lines
7.3 KiB
/*
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* Copyright © 2015 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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* Authors:
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* Ander Conselvan de Oliveira <ander.conselvan.de.oliveira@intel.com>
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*/
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#include "igt.h"
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IGT_TEST_DESCRIPTION(
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"Exercise the FDI lane bifurcation code for IVB in the kernel by setting"
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"different combinations of modes for pipes B and C.");
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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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} data_t;
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drmModeModeInfo mode_3_lanes = {
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.clock = 173000,
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.hdisplay = 1920,
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.hsync_start = 2048,
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.hsync_end = 2248,
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.htotal = 2576,
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.vdisplay = 1080,
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.vsync_start = 1083,
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.vsync_end = 1088,
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.vtotal = 1120,
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.vrefresh = 60,
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.flags = DRM_MODE_FLAG_NHSYNC | DRM_MODE_FLAG_PVSYNC,
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.name = "3_lanes",
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};
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drmModeModeInfo mode_2_lanes = {
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.clock = 138500,
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.hdisplay = 1920,
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.hsync_start = 1968,
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.hsync_end = 2000,
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.htotal = 2080,
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.vdisplay = 1080,
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.vsync_start = 1083,
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.vsync_end = 1088,
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.vtotal = 1111,
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.vrefresh = 60,
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.flags = DRM_MODE_FLAG_PHSYNC | DRM_MODE_FLAG_NVSYNC,
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.name = "2_lanes",
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};
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static int
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disable_pipe(data_t *data, enum pipe pipe, igt_output_t *output)
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{
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igt_plane_t *primary;
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igt_output_set_pipe(output, pipe);
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primary = igt_output_get_plane(output, 0);
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igt_plane_set_fb(primary, NULL);
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return igt_display_commit(&data->display);
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}
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static int
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set_mode_on_pipe(data_t *data, enum pipe pipe, igt_output_t *output)
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{
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igt_plane_t *primary;
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drmModeModeInfo *mode;
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struct igt_fb fb;
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int fb_id;
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igt_output_set_pipe(output, pipe);
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mode = igt_output_get_mode(output);
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primary = igt_output_get_plane(output, 0);
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fb_id = igt_create_color_fb(data->drm_fd,
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mode->hdisplay, mode->vdisplay,
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DRM_FORMAT_XRGB8888, I915_TILING_NONE,
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1.0, 1.0, 1.0, &fb);
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igt_assert_lte(0, fb_id);
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igt_plane_set_fb(primary, &fb);
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return igt_display_try_commit2(&data->display, COMMIT_LEGACY);
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}
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static int
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set_big_mode_on_pipe(data_t *data, enum pipe pipe, igt_output_t *output)
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{
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igt_output_override_mode(output, &mode_3_lanes);
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return set_mode_on_pipe(data, pipe, output);
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}
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static int
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set_normal_mode_on_pipe(data_t *data, enum pipe pipe, igt_output_t *output)
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{
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igt_output_override_mode(output, &mode_2_lanes);
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return set_mode_on_pipe(data, pipe, output);
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}
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static void
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find_outputs(data_t *data, igt_output_t **output1, igt_output_t **output2)
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{
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igt_output_t *output;
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enum pipe pipe;
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*output1 = NULL;
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*output2 = NULL;
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for_each_pipe_with_valid_output(&data->display, pipe, output) {
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if (pipe == PIPE_B && !*output1 && output != *output2)
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*output1 = output;
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if (pipe == PIPE_C && output != *output1 && !*output2)
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*output2 = output;
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igt_output_set_pipe(output, PIPE_ANY);
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}
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igt_skip_on_f(!*output1 || !*output2, "Not enough connected outputs\n");
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}
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static void
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test_dpms(data_t *data)
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{
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igt_output_t *output1, *output2;
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int ret;
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find_outputs(data, &output1, &output2);
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igt_info("Pipe %s will use connector %s\n",
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kmstest_pipe_name(PIPE_B), igt_output_name(output1));
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igt_info("Pipe %s will use connector %s\n",
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kmstest_pipe_name(PIPE_C), igt_output_name(output2));
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ret = set_big_mode_on_pipe(data, PIPE_B, output1);
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igt_assert_eq(ret, 0);
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kmstest_set_connector_dpms(data->drm_fd, output1->config.connector, DRM_MODE_DPMS_OFF);
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ret = set_big_mode_on_pipe(data, PIPE_C, output2);
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igt_assert_neq(ret, 0);
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}
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static void
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test_lane_reduction(data_t *data)
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{
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igt_output_t *output1, *output2;
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int ret;
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find_outputs(data, &output1, &output2);
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igt_info("Pipe %s will use connector %s\n",
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kmstest_pipe_name(PIPE_B), igt_output_name(output1));
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igt_info("Pipe %s will use connector %s\n",
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kmstest_pipe_name(PIPE_C), igt_output_name(output2));
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ret = set_big_mode_on_pipe(data, PIPE_B, output1);
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igt_assert_eq(ret, 0);
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ret = set_normal_mode_on_pipe(data, PIPE_B, output1);
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igt_assert_eq(ret, 0);
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ret = set_normal_mode_on_pipe(data, PIPE_C, output2);
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igt_assert_eq(ret, 0);
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}
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static void
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test_disable_pipe_B(data_t *data)
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{
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igt_output_t *output1, *output2;
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int ret;
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find_outputs(data, &output1, &output2);
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igt_info("Pipe %s will use connector %s\n",
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kmstest_pipe_name(PIPE_B), igt_output_name(output1));
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igt_info("Pipe %s will use connector %s\n",
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kmstest_pipe_name(PIPE_C), igt_output_name(output2));
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ret = set_big_mode_on_pipe(data, PIPE_B, output1);
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igt_assert_eq(ret, 0);
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ret = disable_pipe(data, PIPE_B, output1);
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igt_assert_eq(ret, 0);
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ret = set_normal_mode_on_pipe(data, PIPE_C, output2);
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igt_assert_eq(ret, 0);
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ret = set_normal_mode_on_pipe(data, PIPE_B, output1);
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igt_assert_eq(ret, 0);
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}
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static void
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test_from_C_to_B_with_3_lanes(data_t *data)
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{
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igt_output_t *output1, *output2;
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int ret;
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find_outputs(data, &output1, &output2);
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igt_info("Pipe %s will use connector %s\n",
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kmstest_pipe_name(PIPE_B), igt_output_name(output1));
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igt_info("Pipe %s will use connector %s\n",
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kmstest_pipe_name(PIPE_C), igt_output_name(output2));
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ret = set_normal_mode_on_pipe(data, PIPE_C, output2);
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igt_assert_eq(ret, 0);
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ret = disable_pipe(data, PIPE_C, output2);
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igt_assert_eq(ret, 0);
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ret = set_big_mode_on_pipe(data, PIPE_B, output1);
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igt_assert_eq(ret, 0);
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}
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static void
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test_fail_enable_pipe_C_while_B_has_3_lanes(data_t *data)
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{
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igt_output_t *output1, *output2;
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int ret;
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find_outputs(data, &output1, &output2);
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igt_info("Pipe %s will use connector %s\n",
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kmstest_pipe_name(PIPE_B), igt_output_name(output1));
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igt_info("Pipe %s will use connector %s\n",
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kmstest_pipe_name(PIPE_C), igt_output_name(output2));
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ret = set_big_mode_on_pipe(data, PIPE_B, output1);
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igt_assert_eq(ret, 0);
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ret = set_normal_mode_on_pipe(data, PIPE_C, output2);
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igt_assert_neq(ret, 0);
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}
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static data_t data;
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igt_main
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{
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int devid;
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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_INTEL);
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devid = intel_get_drm_devid(data.drm_fd);
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igt_skip_on(!IS_IVYBRIDGE(devid));
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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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}
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igt_subtest("pipe-B-dpms-off-modeset-pipe-C")
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test_dpms(&data);
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igt_subtest("pipe-B-double-modeset-then-modeset-pipe-C")
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test_lane_reduction(&data);
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igt_subtest("disable-pipe-B-enable-pipe-C")
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test_disable_pipe_B(&data);
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igt_subtest("from-pipe-C-to-B-with-3-lanes")
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test_from_C_to_B_with_3_lanes(&data);
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igt_subtest("enable-pipe-C-while-B-has-3-lanes")
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test_fail_enable_pipe_C_while_B_has_3_lanes(&data);
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igt_fixture {
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igt_display_fini(&data.display);
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}
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}
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