mirror of
https://github.com/hyprwm/wlroots-hyprland.git
synced 2024-11-02 11:55:59 +01:00
d8ca494558
This helper is responsible for listening for new DRM devices and create new child DRM backends as necessary.
566 lines
15 KiB
C
566 lines
15 KiB
C
#define _POSIX_C_SOURCE 200809L
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#include <assert.h>
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#include <libudev.h>
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#include <stdarg.h>
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#include <stddef.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 <sys/stat.h>
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#include <sys/types.h>
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#include <unistd.h>
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#include <time.h>
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#include <wayland-server-core.h>
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#include <wlr/backend/session.h>
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#include <wlr/config.h>
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#include <wlr/util/log.h>
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#include <xf86drm.h>
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#include <xf86drmMode.h>
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#include "backend/session/session.h"
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#include "util/signal.h"
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#include <libseat.h>
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#define WAIT_GPU_TIMEOUT 10000 // ms
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static void handle_enable_seat(struct libseat *seat, void *data) {
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struct wlr_session *session = data;
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session->active = true;
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wlr_signal_emit_safe(&session->events.active, NULL);
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}
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static void handle_disable_seat(struct libseat *seat, void *data) {
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struct wlr_session *session = data;
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session->active = false;
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wlr_signal_emit_safe(&session->events.active, NULL);
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libseat_disable_seat(session->seat_handle);
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}
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static int libseat_event(int fd, uint32_t mask, void *data) {
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struct wlr_session *session = data;
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if (libseat_dispatch(session->seat_handle, 0) == -1) {
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wlr_log_errno(WLR_ERROR, "Failed to dispatch libseat");
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wl_display_terminate(session->display);
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}
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return 1;
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}
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static struct libseat_seat_listener seat_listener = {
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.enable_seat = handle_enable_seat,
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.disable_seat = handle_disable_seat,
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};
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static enum wlr_log_importance libseat_log_level_to_wlr(
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enum libseat_log_level level) {
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switch (level) {
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case LIBSEAT_LOG_LEVEL_ERROR:
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return WLR_ERROR;
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case LIBSEAT_LOG_LEVEL_INFO:
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return WLR_INFO;
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default:
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return WLR_DEBUG;
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}
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}
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static void log_libseat(enum libseat_log_level level,
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const char *fmt, va_list args) {
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enum wlr_log_importance importance = libseat_log_level_to_wlr(level);
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static char wlr_fmt[1024];
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snprintf(wlr_fmt, sizeof(wlr_fmt), "[libseat] %s", fmt);
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_wlr_vlog(importance, wlr_fmt, args);
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}
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static int libseat_session_init(struct wlr_session *session, struct wl_display *disp) {
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libseat_set_log_handler(log_libseat);
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libseat_set_log_level(LIBSEAT_LOG_LEVEL_INFO);
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// libseat will take care of updating the logind state if necessary
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setenv("XDG_SESSION_TYPE", "wayland", 1);
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session->seat_handle = libseat_open_seat(&seat_listener, session);
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if (session->seat_handle == NULL) {
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wlr_log_errno(WLR_ERROR, "Unable to create seat");
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return -1;
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}
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const char *seat_name = libseat_seat_name(session->seat_handle);
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if (seat_name == NULL) {
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wlr_log_errno(WLR_ERROR, "Unable to get seat info");
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goto error;
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}
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snprintf(session->seat, sizeof(session->seat), "%s", seat_name);
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struct wl_event_loop *event_loop = wl_display_get_event_loop(disp);
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session->libseat_event = wl_event_loop_add_fd(event_loop, libseat_get_fd(session->seat_handle),
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WL_EVENT_READABLE, libseat_event, session);
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if (session->libseat_event == NULL) {
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wlr_log(WLR_ERROR, "Failed to create libseat event source");
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goto error;
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}
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// We may have received enable_seat immediately after the open_seat result,
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// so, dispatch once without timeout to speed up activation.
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if (libseat_dispatch(session->seat_handle, 0) == -1) {
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wlr_log_errno(WLR_ERROR, "libseat dispatch failed");
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goto error_dispatch;
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}
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wlr_log(WLR_INFO, "Successfully loaded libseat session");
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return 0;
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error_dispatch:
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wl_event_source_remove(session->libseat_event);
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session->libseat_event = NULL;
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error:
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libseat_close_seat(session->seat_handle);
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session->seat_handle = NULL;
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return -1;
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}
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static void libseat_session_finish(struct wlr_session *session) {
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libseat_close_seat(session->seat_handle);
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wl_event_source_remove(session->libseat_event);
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session->seat_handle = NULL;
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session->libseat_event = NULL;
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}
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static bool is_drm_card(const char *sysname) {
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const char prefix[] = DRM_PRIMARY_MINOR_NAME;
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if (strncmp(sysname, prefix, strlen(prefix)) != 0) {
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return false;
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}
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for (size_t i = strlen(prefix); sysname[i] != '\0'; i++) {
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if (sysname[i] < '0' || sysname[i] > '9') {
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return false;
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}
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}
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return true;
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}
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static void read_udev_change_event(struct wlr_device_change_event *event,
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struct udev_device *udev_dev) {
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const char *hotplug = udev_device_get_property_value(udev_dev, "HOTPLUG");
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if (hotplug != NULL && strcmp(hotplug, "1") == 0) {
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event->type = WLR_DEVICE_HOTPLUG;
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struct wlr_device_hotplug_event *hotplug = &event->hotplug;
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const char *connector =
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udev_device_get_property_value(udev_dev, "CONNECTOR");
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if (connector != NULL) {
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hotplug->connector_id = strtoul(connector, NULL, 10);
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}
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const char *prop =
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udev_device_get_property_value(udev_dev, "PROPERTY");
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if (prop != NULL) {
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hotplug->prop_id = strtoul(prop, NULL, 10);
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}
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return;
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}
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const char *lease = udev_device_get_property_value(udev_dev, "LEASE");
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if (lease != NULL && strcmp(lease, "1") == 0) {
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event->type = WLR_DEVICE_LEASE;
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return;
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}
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}
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static int handle_udev_event(int fd, uint32_t mask, void *data) {
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struct wlr_session *session = data;
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struct udev_device *udev_dev = udev_monitor_receive_device(session->mon);
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if (!udev_dev) {
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return 1;
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}
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const char *sysname = udev_device_get_sysname(udev_dev);
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const char *devnode = udev_device_get_devnode(udev_dev);
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const char *action = udev_device_get_action(udev_dev);
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wlr_log(WLR_DEBUG, "udev event for %s (%s)", sysname, action);
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if (!is_drm_card(sysname) || !action || !devnode) {
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goto out;
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}
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const char *seat = udev_device_get_property_value(udev_dev, "ID_SEAT");
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if (!seat) {
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seat = "seat0";
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}
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if (session->seat[0] != '\0' && strcmp(session->seat, seat) != 0) {
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goto out;
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}
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if (strcmp(action, "add") == 0) {
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wlr_log(WLR_DEBUG, "DRM device %s added", sysname);
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struct wlr_session_add_event event = {
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.path = devnode,
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};
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wlr_signal_emit_safe(&session->events.add_drm_card, &event);
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} else if (strcmp(action, "change") == 0 || strcmp(action, "remove") == 0) {
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dev_t devnum = udev_device_get_devnum(udev_dev);
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struct wlr_device *dev;
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wl_list_for_each(dev, &session->devices, link) {
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if (dev->dev != devnum) {
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continue;
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}
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if (strcmp(action, "change") == 0) {
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wlr_log(WLR_DEBUG, "DRM device %s changed", sysname);
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struct wlr_device_change_event event = {0};
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read_udev_change_event(&event, udev_dev);
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wlr_signal_emit_safe(&dev->events.change, &event);
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} else if (strcmp(action, "remove") == 0) {
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wlr_log(WLR_DEBUG, "DRM device %s removed", sysname);
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wlr_signal_emit_safe(&dev->events.remove, NULL);
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} else {
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assert(0);
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}
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break;
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}
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}
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out:
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udev_device_unref(udev_dev);
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return 1;
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}
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static void handle_display_destroy(struct wl_listener *listener, void *data) {
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struct wlr_session *session =
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wl_container_of(listener, session, display_destroy);
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wlr_session_destroy(session);
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}
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struct wlr_session *wlr_session_create(struct wl_display *disp) {
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struct wlr_session *session = calloc(1, sizeof(*session));
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if (!session) {
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wlr_log_errno(WLR_ERROR, "Allocation failed");
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return NULL;
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}
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wl_signal_init(&session->events.active);
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wl_signal_init(&session->events.add_drm_card);
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wl_signal_init(&session->events.destroy);
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wl_list_init(&session->devices);
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if (libseat_session_init(session, disp) == -1) {
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wlr_log(WLR_ERROR, "Failed to load session backend");
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goto error_open;
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}
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session->udev = udev_new();
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if (!session->udev) {
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wlr_log_errno(WLR_ERROR, "Failed to create udev context");
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goto error_session;
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}
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session->mon = udev_monitor_new_from_netlink(session->udev, "udev");
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if (!session->mon) {
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wlr_log_errno(WLR_ERROR, "Failed to create udev monitor");
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goto error_udev;
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}
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udev_monitor_filter_add_match_subsystem_devtype(session->mon, "drm", NULL);
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udev_monitor_enable_receiving(session->mon);
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struct wl_event_loop *event_loop = wl_display_get_event_loop(disp);
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int fd = udev_monitor_get_fd(session->mon);
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session->udev_event = wl_event_loop_add_fd(event_loop, fd,
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WL_EVENT_READABLE, handle_udev_event, session);
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if (!session->udev_event) {
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wlr_log_errno(WLR_ERROR, "Failed to create udev event source");
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goto error_mon;
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}
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session->display = disp;
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session->display_destroy.notify = handle_display_destroy;
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wl_display_add_destroy_listener(disp, &session->display_destroy);
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return session;
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error_mon:
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udev_monitor_unref(session->mon);
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error_udev:
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udev_unref(session->udev);
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error_session:
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libseat_session_finish(session);
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error_open:
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free(session);
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return NULL;
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}
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void wlr_session_destroy(struct wlr_session *session) {
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if (!session) {
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return;
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}
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wlr_signal_emit_safe(&session->events.destroy, session);
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wl_list_remove(&session->display_destroy.link);
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wl_event_source_remove(session->udev_event);
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udev_monitor_unref(session->mon);
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udev_unref(session->udev);
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struct wlr_device *dev, *tmp_dev;
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wl_list_for_each_safe(dev, tmp_dev, &session->devices, link) {
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wlr_session_close_file(session, dev);
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}
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libseat_session_finish(session);
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free(session);
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}
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struct wlr_device *wlr_session_open_file(struct wlr_session *session,
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const char *path) {
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int fd;
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int device_id = libseat_open_device(session->seat_handle, path, &fd);
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if (device_id == -1) {
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wlr_log_errno(WLR_ERROR, "Failed to open device: '%s'", path);
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return NULL;
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}
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struct wlr_device *dev = malloc(sizeof(*dev));
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if (!dev) {
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wlr_log_errno(WLR_ERROR, "Allocation failed");
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goto error;
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}
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struct stat st;
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if (fstat(fd, &st) < 0) {
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wlr_log_errno(WLR_ERROR, "Stat failed");
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goto error;
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}
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dev->fd = fd;
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dev->dev = st.st_rdev;
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dev->device_id = device_id;
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wl_signal_init(&dev->events.change);
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wl_signal_init(&dev->events.remove);
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wl_list_insert(&session->devices, &dev->link);
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return dev;
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error:
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libseat_close_device(session->seat_handle, device_id);
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free(dev);
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close(fd);
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return NULL;
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}
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void wlr_session_close_file(struct wlr_session *session,
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struct wlr_device *dev) {
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if (libseat_close_device(session->seat_handle, dev->device_id) == -1) {
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wlr_log_errno(WLR_ERROR, "Failed to close device %d", dev->device_id);
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}
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close(dev->fd);
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wl_list_remove(&dev->link);
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free(dev);
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}
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bool wlr_session_change_vt(struct wlr_session *session, unsigned vt) {
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if (!session) {
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return false;
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}
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return libseat_switch_session(session->seat_handle, vt) == 0;
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}
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/* Tests if 'path' is KMS compatible by trying to open it. Returns the opened
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* device on success. */
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struct wlr_device *session_open_if_kms(struct wlr_session *restrict session,
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const char *restrict path) {
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if (!path) {
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return NULL;
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}
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struct wlr_device *dev = wlr_session_open_file(session, path);
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if (!dev) {
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return NULL;
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}
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if (!drmIsKMS(dev->fd)) {
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wlr_log(WLR_DEBUG, "Ignoring '%s': not a KMS device", path);
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wlr_session_close_file(session, dev);
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return NULL;
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}
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return dev;
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}
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static ssize_t explicit_find_gpus(struct wlr_session *session,
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size_t ret_len, struct wlr_device *ret[static ret_len], const char *str) {
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char *gpus = strdup(str);
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if (!gpus) {
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wlr_log_errno(WLR_ERROR, "Allocation failed");
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return -1;
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}
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size_t i = 0;
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char *save;
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char *ptr = strtok_r(gpus, ":", &save);
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do {
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if (i >= ret_len) {
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break;
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}
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ret[i] = session_open_if_kms(session, ptr);
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if (!ret[i]) {
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wlr_log(WLR_ERROR, "Unable to open %s as DRM device", ptr);
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} else {
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++i;
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}
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} while ((ptr = strtok_r(NULL, ":", &save)));
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free(gpus);
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return i;
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}
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static struct udev_enumerate *enumerate_drm_cards(struct udev *udev) {
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struct udev_enumerate *en = udev_enumerate_new(udev);
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if (!en) {
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wlr_log(WLR_ERROR, "udev_enumerate_new failed");
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return NULL;
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}
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udev_enumerate_add_match_subsystem(en, "drm");
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udev_enumerate_add_match_sysname(en, DRM_PRIMARY_MINOR_NAME "[0-9]*");
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if (udev_enumerate_scan_devices(en) != 0) {
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wlr_log(WLR_ERROR, "udev_enumerate_scan_devices failed");
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udev_enumerate_unref(en);
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return NULL;
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}
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return en;
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}
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static uint64_t get_current_time_ms(void) {
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struct timespec ts = {0};
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clock_gettime(CLOCK_MONOTONIC, &ts);
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return (uint64_t)ts.tv_sec * 1000 + (uint64_t)ts.tv_nsec / 1000000;
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}
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struct find_gpus_add_handler {
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bool added;
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struct wl_listener listener;
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};
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static void find_gpus_handle_add(struct wl_listener *listener, void *data) {
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struct find_gpus_add_handler *handler =
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wl_container_of(listener, handler, listener);
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handler->added = true;
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}
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/* Tries to find the primary GPU by checking for the "boot_vga" attribute.
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* If it's not found, it returns the first valid GPU it finds.
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*/
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ssize_t wlr_session_find_gpus(struct wlr_session *session,
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size_t ret_len, struct wlr_device **ret) {
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const char *explicit = getenv("WLR_DRM_DEVICES");
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if (explicit) {
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return explicit_find_gpus(session, ret_len, ret, explicit);
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}
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struct udev_enumerate *en = enumerate_drm_cards(session->udev);
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if (!en) {
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return -1;
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}
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if (udev_enumerate_get_list_entry(en) == NULL) {
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udev_enumerate_unref(en);
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wlr_log(WLR_INFO, "Waiting for a DRM card device");
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struct find_gpus_add_handler handler = {0};
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handler.listener.notify = find_gpus_handle_add;
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wl_signal_add(&session->events.add_drm_card, &handler.listener);
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|
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uint64_t started_at = get_current_time_ms();
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uint64_t timeout = WAIT_GPU_TIMEOUT;
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struct wl_event_loop *event_loop =
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wl_display_get_event_loop(session->display);
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while (!handler.added) {
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int ret = wl_event_loop_dispatch(event_loop, (int)timeout);
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if (ret < 0) {
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wlr_log_errno(WLR_ERROR, "Failed to wait for DRM card device: "
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"wl_event_loop_dispatch failed");
|
|
udev_enumerate_unref(en);
|
|
return -1;
|
|
}
|
|
|
|
uint64_t now = get_current_time_ms();
|
|
if (now >= started_at + WAIT_GPU_TIMEOUT) {
|
|
break;
|
|
}
|
|
timeout = started_at + WAIT_GPU_TIMEOUT - now;
|
|
}
|
|
|
|
wl_list_remove(&handler.listener.link);
|
|
|
|
en = enumerate_drm_cards(session->udev);
|
|
if (!en) {
|
|
return -1;
|
|
}
|
|
}
|
|
|
|
struct udev_list_entry *entry;
|
|
size_t i = 0;
|
|
|
|
udev_list_entry_foreach(entry, udev_enumerate_get_list_entry(en)) {
|
|
if (i == ret_len) {
|
|
break;
|
|
}
|
|
|
|
bool is_boot_vga = false;
|
|
|
|
const char *path = udev_list_entry_get_name(entry);
|
|
struct udev_device *dev = udev_device_new_from_syspath(session->udev, path);
|
|
if (!dev) {
|
|
continue;
|
|
}
|
|
|
|
const char *seat = udev_device_get_property_value(dev, "ID_SEAT");
|
|
if (!seat) {
|
|
seat = "seat0";
|
|
}
|
|
if (session->seat[0] && strcmp(session->seat, seat) != 0) {
|
|
udev_device_unref(dev);
|
|
continue;
|
|
}
|
|
|
|
// This is owned by 'dev', so we don't need to free it
|
|
struct udev_device *pci =
|
|
udev_device_get_parent_with_subsystem_devtype(dev, "pci", NULL);
|
|
|
|
if (pci) {
|
|
const char *id = udev_device_get_sysattr_value(pci, "boot_vga");
|
|
if (id && strcmp(id, "1") == 0) {
|
|
is_boot_vga = true;
|
|
}
|
|
}
|
|
|
|
struct wlr_device *wlr_dev =
|
|
session_open_if_kms(session, udev_device_get_devnode(dev));
|
|
if (!wlr_dev) {
|
|
udev_device_unref(dev);
|
|
continue;
|
|
}
|
|
|
|
udev_device_unref(dev);
|
|
|
|
ret[i] = wlr_dev;
|
|
if (is_boot_vga) {
|
|
struct wlr_device *tmp = ret[0];
|
|
ret[0] = ret[i];
|
|
ret[i] = tmp;
|
|
}
|
|
|
|
++i;
|
|
}
|
|
|
|
udev_enumerate_unref(en);
|
|
|
|
return i;
|
|
}
|