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537 lines
15 KiB
537 lines
15 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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/** @file kms_vblank.c
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*
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* This is a test of performance of drmWaitVblank.
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*/
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#include "igt.h"
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include <fcntl.h>
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#include <inttypes.h>
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#include <errno.h>
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#include <time.h>
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#include <sys/poll.h>
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#include <sys/stat.h>
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#include <sys/time.h>
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#include <sys/wait.h>
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#include <drm.h>
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#include "intel_bufmgr.h"
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IGT_TEST_DESCRIPTION("Test speed of WaitVblank.");
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typedef struct {
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igt_display_t display;
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struct igt_fb primary_fb;
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igt_output_t *output;
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enum pipe pipe;
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unsigned int flags;
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#define IDLE 0x1
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#define BUSY 0x2
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#define FORKED 0x4
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#define NOHANG 0x8
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#define MODESET 0x10
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#define DPMS 0x20
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#define SUSPEND 0x40
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#define RPM 0x80
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} data_t;
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static double elapsed(const struct timespec *start,
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const struct timespec *end,
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int loop)
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{
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return (1e6*(end->tv_sec - start->tv_sec) + (end->tv_nsec - start->tv_nsec)/1000)/loop;
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}
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static void prepare_crtc(data_t *data, int fd, igt_output_t *output)
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{
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drmModeModeInfo *mode;
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igt_display_t *display = &data->display;
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igt_plane_t *primary;
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igt_display_reset(display);
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/* select the pipe we want to use */
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igt_output_set_pipe(output, data->pipe);
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/* create and set the primary plane fb */
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mode = igt_output_get_mode(output);
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igt_create_color_fb(fd, mode->hdisplay, mode->vdisplay,
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DRM_FORMAT_XRGB8888,
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LOCAL_DRM_FORMAT_MOD_NONE,
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0.0, 0.0, 0.0,
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&data->primary_fb);
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primary = igt_output_get_plane_type(output, DRM_PLANE_TYPE_PRIMARY);
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igt_plane_set_fb(primary, &data->primary_fb);
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igt_display_commit(display);
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igt_wait_for_vblank(fd, data->pipe);
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}
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static void cleanup_crtc(data_t *data, int fd, igt_output_t *output)
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{
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igt_remove_fb(fd, &data->primary_fb);
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}
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static int wait_vblank(int fd, union drm_wait_vblank *vbl)
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{
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int err;
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err = 0;
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if (igt_ioctl(fd, DRM_IOCTL_WAIT_VBLANK, vbl))
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err = -errno;
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return err;
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}
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static void run_test(data_t *data, void (*testfunc)(data_t *, int, int))
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{
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igt_display_t *display = &data->display;
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igt_output_t *output = data->output;
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int fd = display->drm_fd;
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igt_hang_t hang;
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prepare_crtc(data, fd, output);
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if (data->flags & RPM)
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igt_require(igt_setup_runtime_pm());
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igt_info("Beginning %s on pipe %s, connector %s\n",
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igt_subtest_name(), kmstest_pipe_name(data->pipe),
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igt_output_name(output));
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if (!(data->flags & NOHANG))
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hang = igt_hang_ring(fd, I915_EXEC_DEFAULT);
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if (data->flags & BUSY) {
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union drm_wait_vblank vbl;
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memset(&vbl, 0, sizeof(vbl));
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vbl.request.type =
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DRM_VBLANK_RELATIVE | DRM_VBLANK_EVENT;
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vbl.request.type |= kmstest_get_vbl_flag(data->pipe);
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vbl.request.sequence = 120 + 12;
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igt_assert_eq(wait_vblank(fd, &vbl), 0);
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}
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if (data->flags & FORKED) {
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int nchildren = sysconf(_SC_NPROCESSORS_ONLN);
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igt_debug("Spawning %d threads\n", nchildren);
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igt_fork(child, nchildren)
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testfunc(data, fd, nchildren);
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igt_waitchildren();
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} else
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testfunc(data, fd, 1);
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if (data->flags & BUSY) {
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struct drm_event_vblank buf;
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igt_assert_eq(read(fd, &buf, sizeof(buf)), sizeof(buf));
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}
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igt_assert(poll(&(struct pollfd){fd, POLLIN}, 1, 0) == 0);
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if (!(data->flags & NOHANG))
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igt_post_hang_ring(fd, hang);
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igt_info("\n%s on pipe %s, connector %s: PASSED\n\n",
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igt_subtest_name(), kmstest_pipe_name(data->pipe), igt_output_name(output));
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/* cleanup what prepare_crtc() has done */
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cleanup_crtc(data, fd, output);
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}
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static void crtc_id_subtest(data_t *data, int fd)
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{
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igt_display_t *display = &data->display;
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igt_output_t *output;
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enum pipe p;
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for_each_pipe_with_valid_output(display, p, output) {
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struct drm_event_vblank buf;
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const uint32_t pipe_id_flag = kmstest_get_vbl_flag(p);
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unsigned crtc_id, expected_crtc_id;
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uint64_t val;
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union drm_wait_vblank vbl;
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crtc_id = display->pipes[p].crtc_id;
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if (drmGetCap(display->drm_fd, DRM_CAP_CRTC_IN_VBLANK_EVENT, &val) == 0)
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expected_crtc_id = crtc_id;
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else
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expected_crtc_id = 0;
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data->pipe = p;
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prepare_crtc(data, fd, output);
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memset(&vbl, 0, sizeof(vbl));
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vbl.request.type = DRM_VBLANK_RELATIVE | DRM_VBLANK_EVENT;
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vbl.request.type |= pipe_id_flag;
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vbl.request.sequence = 1;
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igt_assert_eq(wait_vblank(fd, &vbl), 0);
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igt_assert_eq(read(fd, &buf, sizeof(buf)), sizeof(buf));
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igt_assert_eq(buf.crtc_id, expected_crtc_id);
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do_or_die(drmModePageFlip(fd, crtc_id,
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data->primary_fb.fb_id,
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DRM_MODE_PAGE_FLIP_EVENT, NULL));
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igt_assert_eq(read(fd, &buf, sizeof(buf)), sizeof(buf));
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igt_assert_eq(buf.crtc_id, expected_crtc_id);
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if (display->is_atomic) {
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igt_plane_t *primary = igt_output_get_plane(output, 0);
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igt_plane_set_fb(primary, &data->primary_fb);
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igt_display_commit_atomic(display, DRM_MODE_PAGE_FLIP_EVENT, NULL);
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igt_assert_eq(read(fd, &buf, sizeof(buf)), sizeof(buf));
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igt_assert_eq(buf.crtc_id, expected_crtc_id);
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}
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cleanup_crtc(data, fd, output);
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return;
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}
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}
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static void accuracy(data_t *data, int fd, int nchildren)
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{
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const uint32_t pipe_id_flag = kmstest_get_vbl_flag(data->pipe);
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union drm_wait_vblank vbl;
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unsigned long target;
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int total = 120 / nchildren;
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int n;
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memset(&vbl, 0, sizeof(vbl));
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vbl.request.type = _DRM_VBLANK_RELATIVE;
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vbl.request.type |= pipe_id_flag;
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vbl.request.sequence = 1;
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igt_assert_eq(wait_vblank(fd, &vbl), 0);
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target = vbl.reply.sequence + total;
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for (n = 0; n < total; n++) {
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vbl.request.type = _DRM_VBLANK_RELATIVE;
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vbl.request.type |= pipe_id_flag;
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vbl.request.sequence = 1;
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igt_assert_eq(wait_vblank(fd, &vbl), 0);
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vbl.request.type = _DRM_VBLANK_ABSOLUTE | _DRM_VBLANK_EVENT;
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vbl.request.type |= pipe_id_flag;
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vbl.request.sequence = target;
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igt_assert_eq(wait_vblank(fd, &vbl), 0);
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}
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vbl.request.type = _DRM_VBLANK_RELATIVE;
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vbl.request.type |= pipe_id_flag;
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vbl.request.sequence = 0;
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igt_assert_eq(wait_vblank(fd, &vbl), 0);
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igt_assert_eq(vbl.reply.sequence, target);
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for (n = 0; n < total; n++) {
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struct drm_event_vblank ev;
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igt_assert_eq(read(fd, &ev, sizeof(ev)), sizeof(ev));
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igt_assert_eq(ev.sequence, target);
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}
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}
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static void vblank_query(data_t *data, int fd, int nchildren)
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{
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const uint32_t pipe_id_flag = kmstest_get_vbl_flag(data->pipe);
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union drm_wait_vblank vbl;
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struct timespec start, end;
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unsigned long sq, count = 0;
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memset(&vbl, 0, sizeof(vbl));
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vbl.request.type = _DRM_VBLANK_RELATIVE;
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vbl.request.type |= pipe_id_flag;
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vbl.request.sequence = 0;
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igt_assert_eq(wait_vblank(fd, &vbl), 0);
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sq = vbl.reply.sequence;
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clock_gettime(CLOCK_MONOTONIC, &start);
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do {
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vbl.request.type = _DRM_VBLANK_RELATIVE;
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vbl.request.type |= pipe_id_flag;
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vbl.request.sequence = 0;
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igt_assert_eq(wait_vblank(fd, &vbl), 0);
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count++;
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} while ((vbl.reply.sequence - sq) <= 120);
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clock_gettime(CLOCK_MONOTONIC, &end);
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igt_info("Time to query current counter (%s): %7.3fµs\n",
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data->flags & BUSY ? "busy" : "idle", elapsed(&start, &end, count));
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}
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static void vblank_wait(data_t *data, int fd, int nchildren)
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{
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const uint32_t pipe_id_flag = kmstest_get_vbl_flag(data->pipe);
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union drm_wait_vblank vbl;
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struct timespec start, end;
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unsigned long sq, count = 0;
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memset(&vbl, 0, sizeof(vbl));
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vbl.request.type = _DRM_VBLANK_RELATIVE;
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vbl.request.type |= pipe_id_flag;
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vbl.request.sequence = 0;
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igt_assert_eq(wait_vblank(fd, &vbl), 0);
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sq = vbl.reply.sequence;
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clock_gettime(CLOCK_MONOTONIC, &start);
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do {
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vbl.request.type = _DRM_VBLANK_RELATIVE;
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vbl.request.type |= pipe_id_flag;
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vbl.request.sequence = 1;
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igt_assert_eq(wait_vblank(fd, &vbl), 0);
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count++;
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} while ((vbl.reply.sequence - sq) <= 120);
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clock_gettime(CLOCK_MONOTONIC, &end);
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igt_info("Time to wait for %ld/%d vblanks (%s): %7.3fµs\n",
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count, (int)(vbl.reply.sequence - sq),
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data->flags & BUSY ? "busy" : "idle",
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elapsed(&start, &end, count));
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}
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static int get_vblank(int fd, enum pipe pipe, unsigned flags)
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{
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union drm_wait_vblank vbl;
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memset(&vbl, 0, sizeof(vbl));
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vbl.request.type = DRM_VBLANK_RELATIVE | kmstest_get_vbl_flag(pipe) | flags;
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do_or_die(igt_ioctl(fd, DRM_IOCTL_WAIT_VBLANK, &vbl));
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return vbl.reply.sequence;
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}
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#define VBLANK_ERR 5
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static void vblank_ts_cont(data_t *data, int fd, int nchildren)
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{
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igt_display_t *display = &data->display;
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igt_output_t *output = data->output;
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int seq1, seq2;
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union drm_wait_vblank vbl;
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struct timespec start, end;
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int estimated_vblanks = 0;
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int vrefresh = igt_output_get_mode(output)->vrefresh;
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double time_elapsed;
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seq1 = get_vblank(fd, data->pipe, 0);
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clock_gettime(CLOCK_MONOTONIC, &start);
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if (data->flags & DPMS) {
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igt_output_set_prop_value(output, IGT_CONNECTOR_DPMS, DRM_MODE_DPMS_OFF);
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igt_display_commit(display);
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}
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if (data->flags & MODESET) {
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igt_output_set_pipe(output, PIPE_NONE);
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igt_display_commit2(display, display->is_atomic ? COMMIT_ATOMIC : COMMIT_LEGACY);
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}
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if (data->flags & RPM)
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igt_require(igt_wait_for_pm_status(IGT_RUNTIME_PM_STATUS_SUSPENDED));
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if (data->flags & SUSPEND)
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igt_system_suspend_autoresume(SUSPEND_STATE_MEM,
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SUSPEND_TEST_NONE);
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if (data->flags & (MODESET | DPMS)) {
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/* Attempting to do a vblank while disabled should return -EINVAL */
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memset(&vbl, 0, sizeof(vbl));
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vbl.request.type = _DRM_VBLANK_RELATIVE;
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vbl.request.type |= kmstest_get_vbl_flag(data->pipe);
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igt_assert_eq(wait_vblank(fd, &vbl), -EINVAL);
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}
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if (data->flags & DPMS) {
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igt_output_set_prop_value(output, IGT_CONNECTOR_DPMS, DRM_MODE_DPMS_ON);
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igt_display_commit(display);
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}
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if (data->flags & MODESET) {
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igt_output_set_pipe(output, data->pipe);
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igt_display_commit2(display, display->is_atomic ? COMMIT_ATOMIC : COMMIT_LEGACY);
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}
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seq2 = get_vblank(fd, data->pipe, 0);
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clock_gettime(CLOCK_MONOTONIC, &end);
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time_elapsed = igt_time_elapsed(&start, &end);
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estimated_vblanks = (int)(time_elapsed * vrefresh);
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igt_debug("testing ts continuity: Current frame %u, old frame %u\n", seq2, seq1);
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igt_assert_f(seq2 - seq1 >= 0, "elapsed %f(%d vblanks) unexpected vblank seq %u, should be > %u\n", time_elapsed,
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estimated_vblanks, seq2, seq1);
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igt_assert_f(seq2 - seq1 <= estimated_vblanks + VBLANK_ERR, "elapsed %f(%d vblanks) unexpected vblank seq %u, should be <= %u\n", time_elapsed,
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estimated_vblanks, seq2, seq1 + estimated_vblanks);
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}
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static void run_subtests_for_pipe(data_t *data)
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{
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const struct {
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const char *name;
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void (*func)(data_t *, int, int);
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unsigned int valid;
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} funcs[] = {
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/*
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* GPU reset recovery may disable irqs or reset display, so
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* accuracy tests will fail in the hang case, disable this test.
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*/
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{ "accuracy", accuracy, IDLE | NOHANG },
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{ "query", vblank_query, IDLE | FORKED | BUSY },
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{ "wait", vblank_wait, IDLE | FORKED | BUSY },
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{ "ts-continuation", vblank_ts_cont, IDLE | SUSPEND | MODESET | DPMS | RPM },
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{ }
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}, *f;
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const struct {
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const char *name;
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unsigned int flags;
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} modes[] = {
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{ "idle", IDLE },
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{ "forked", IDLE | FORKED },
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{ "busy", BUSY },
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{ "forked-busy", BUSY | FORKED },
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{ "dpms-rpm", DPMS | RPM | NOHANG },
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{ "dpms-suspend", DPMS | SUSPEND | NOHANG},
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{ "suspend", SUSPEND | NOHANG },
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{ "modeset", MODESET },
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{ "modeset-rpm", MODESET | RPM | NOHANG},
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{ }
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}, *m;
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igt_fixture
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igt_display_require_output_on_pipe(&data->display, data->pipe);
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for (f = funcs; f->name; f++) {
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for (m = modes; m->name; m++) {
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if (m->flags & ~(f->valid | NOHANG))
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continue;
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igt_subtest_f("pipe-%s-%s-%s",
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kmstest_pipe_name(data->pipe),
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f->name, m->name) {
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for_each_valid_output_on_pipe(&data->display, data->pipe, data->output) {
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data->flags = m->flags | NOHANG;
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run_test(data, f->func);
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}
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}
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/* Skip the -hang version if NOHANG flag is set */
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if (f->valid & NOHANG || m->flags & NOHANG)
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continue;
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igt_subtest_f("pipe-%s-%s-%s-hang",
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kmstest_pipe_name(data->pipe),
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f->name, m->name) {
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igt_hang_t hang;
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hang = igt_allow_hang(data->display.drm_fd, 0, 0);
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for_each_valid_output_on_pipe(&data->display, data->pipe, data->output) {
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data->flags = m->flags;
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run_test(data, f->func);
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}
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igt_disallow_hang(data->display.drm_fd, hang);
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}
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}
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}
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}
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static void invalid_subtest(data_t *data, int fd)
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{
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union drm_wait_vblank vbl;
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unsigned long valid_flags;
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igt_display_require_output_on_pipe(&data->display, 0);
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/* First check all is well with a simple query */
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memset(&vbl, 0, sizeof(vbl));
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vbl.request.type = _DRM_VBLANK_RELATIVE;
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igt_assert_eq(wait_vblank(fd, &vbl), 0);
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valid_flags = (_DRM_VBLANK_TYPES_MASK |
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_DRM_VBLANK_FLAGS_MASK |
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_DRM_VBLANK_HIGH_CRTC_MASK);
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/* pick some interesting invalid permutations */
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memset(&vbl, 0, sizeof(vbl));
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vbl.request.type = _DRM_VBLANK_RELATIVE | ~valid_flags;
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igt_assert_eq(wait_vblank(fd, &vbl), -EINVAL);
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for (int bit = 0; bit < 32; bit++) {
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int err;
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if (valid_flags & (1 << bit))
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continue;
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memset(&vbl, 0, sizeof(vbl));
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vbl.request.type = _DRM_VBLANK_RELATIVE | (1 << bit);
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err = wait_vblank(fd, &vbl);
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igt_assert_f(err == -EINVAL,
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"vblank wait with invalid request.type bit %d [0x%08x] did not report -EINVAL, got %d\n",
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bit, 1 << bit, err);
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}
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/* check the maximum pipe, nobody should have that many pipes! */
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memset(&vbl, 0, sizeof(vbl));
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vbl.request.type = _DRM_VBLANK_RELATIVE;
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vbl.request.type |= _DRM_VBLANK_SECONDARY;
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vbl.request.type |= _DRM_VBLANK_FLAGS_MASK;
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igt_assert_eq(wait_vblank(fd, &vbl), -EINVAL);
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}
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igt_main
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{
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int fd;
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data_t data;
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igt_skip_on_simulation();
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igt_fixture {
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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, fd);
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igt_display_require_output(&data.display);
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}
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igt_subtest("invalid")
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invalid_subtest(&data, fd);
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igt_subtest("crtc-id")
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crtc_id_subtest(&data, fd);
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for_each_pipe_static(data.pipe)
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igt_subtest_group
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run_subtests_for_pipe(&data);
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}
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