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https://github.com/hyprwm/wlroots-hyprland.git
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2f615468b6
Right now, when a new output state field is added, all backends by default won't reject it. This means we need to add new checks to each and every backend when we introduce a new state field. Instead, introduce a bitmask of supported output state fields in each backend, and error out if the user has submitted an unknown field. Some fields don't need any backend involvment to work. These are listed in WLR_OUTPUT_STATE_BACKEND_OPTIONAL as a convenience.
164 lines
4.7 KiB
C
164 lines
4.7 KiB
C
#include <assert.h>
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#include <stdlib.h>
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#include <stdio.h>
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#include <wlr/interfaces/wlr_output.h>
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#include <wlr/render/wlr_renderer.h>
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#include <wlr/util/log.h>
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#include "backend/headless.h"
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#include "util/signal.h"
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static const uint32_t SUPPORTED_OUTPUT_STATE =
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WLR_OUTPUT_STATE_BACKEND_OPTIONAL |
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WLR_OUTPUT_STATE_BUFFER |
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WLR_OUTPUT_STATE_MODE;
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static struct wlr_headless_output *headless_output_from_output(
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struct wlr_output *wlr_output) {
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assert(wlr_output_is_headless(wlr_output));
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return (struct wlr_headless_output *)wlr_output;
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}
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static bool output_set_custom_mode(struct wlr_output *wlr_output, int32_t width,
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int32_t height, int32_t refresh) {
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struct wlr_headless_output *output =
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headless_output_from_output(wlr_output);
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if (refresh <= 0) {
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refresh = HEADLESS_DEFAULT_REFRESH;
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}
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output->frame_delay = 1000000 / refresh;
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wlr_output_update_custom_mode(&output->wlr_output, width, height, refresh);
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return true;
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}
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static bool output_test(struct wlr_output *wlr_output) {
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uint32_t unsupported =
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wlr_output->pending.committed & ~SUPPORTED_OUTPUT_STATE;
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if (unsupported != 0) {
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wlr_log(WLR_DEBUG, "Unsupported output state fields: 0x%"PRIx32,
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unsupported);
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return false;
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}
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if (wlr_output->pending.committed & WLR_OUTPUT_STATE_MODE) {
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assert(wlr_output->pending.mode_type == WLR_OUTPUT_STATE_MODE_CUSTOM);
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}
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return true;
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}
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static bool output_commit(struct wlr_output *wlr_output) {
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struct wlr_headless_output *output =
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headless_output_from_output(wlr_output);
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if (!output_test(wlr_output)) {
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return false;
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}
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if (wlr_output->pending.committed & WLR_OUTPUT_STATE_MODE) {
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if (!output_set_custom_mode(wlr_output,
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wlr_output->pending.custom_mode.width,
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wlr_output->pending.custom_mode.height,
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wlr_output->pending.custom_mode.refresh)) {
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return false;
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}
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}
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if (wlr_output->pending.committed & WLR_OUTPUT_STATE_BUFFER) {
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assert(wlr_output->pending.buffer_type ==
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WLR_OUTPUT_STATE_BUFFER_SCANOUT);
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wlr_buffer_unlock(output->front_buffer);
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output->front_buffer = wlr_buffer_lock(wlr_output->pending.buffer);
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wlr_output_send_present(wlr_output, NULL);
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}
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return true;
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}
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static bool output_export_dmabuf(struct wlr_output *wlr_output,
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struct wlr_dmabuf_attributes *attribs) {
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struct wlr_headless_output *output =
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headless_output_from_output(wlr_output);
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if (!output->front_buffer) {
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return false;
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}
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struct wlr_dmabuf_attributes tmp;
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if (!wlr_buffer_get_dmabuf(output->front_buffer, &tmp)) {
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return false;
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}
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return wlr_dmabuf_attributes_copy(attribs, &tmp);
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}
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static void output_destroy(struct wlr_output *wlr_output) {
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struct wlr_headless_output *output =
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headless_output_from_output(wlr_output);
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wl_list_remove(&output->link);
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wl_event_source_remove(output->frame_timer);
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wlr_buffer_unlock(output->front_buffer);
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free(output);
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}
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static const struct wlr_output_impl output_impl = {
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.destroy = output_destroy,
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.commit = output_commit,
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.export_dmabuf = output_export_dmabuf,
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};
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bool wlr_output_is_headless(struct wlr_output *wlr_output) {
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return wlr_output->impl == &output_impl;
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}
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static int signal_frame(void *data) {
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struct wlr_headless_output *output = data;
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wlr_output_send_frame(&output->wlr_output);
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wl_event_source_timer_update(output->frame_timer, output->frame_delay);
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return 0;
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}
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struct wlr_output *wlr_headless_add_output(struct wlr_backend *wlr_backend,
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unsigned int width, unsigned int height) {
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struct wlr_headless_backend *backend =
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headless_backend_from_backend(wlr_backend);
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struct wlr_headless_output *output =
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calloc(1, sizeof(struct wlr_headless_output));
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if (output == NULL) {
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wlr_log(WLR_ERROR, "Failed to allocate wlr_headless_output");
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return NULL;
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}
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output->backend = backend;
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wlr_output_init(&output->wlr_output, &backend->backend, &output_impl,
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backend->display);
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struct wlr_output *wlr_output = &output->wlr_output;
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output_set_custom_mode(wlr_output, width, height, 0);
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strncpy(wlr_output->make, "headless", sizeof(wlr_output->make));
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strncpy(wlr_output->model, "headless", sizeof(wlr_output->model));
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snprintf(wlr_output->name, sizeof(wlr_output->name), "HEADLESS-%zd",
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++backend->last_output_num);
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char description[128];
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snprintf(description, sizeof(description),
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"Headless output %zd", backend->last_output_num);
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wlr_output_set_description(wlr_output, description);
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struct wl_event_loop *ev = wl_display_get_event_loop(backend->display);
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output->frame_timer = wl_event_loop_add_timer(ev, signal_frame, output);
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wl_list_insert(&backend->outputs, &output->link);
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if (backend->started) {
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wl_event_source_timer_update(output->frame_timer, output->frame_delay);
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wlr_output_update_enabled(wlr_output, true);
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wlr_signal_emit_safe(&backend->backend.events.new_output, wlr_output);
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}
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return wlr_output;
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}
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