mirror of
https://github.com/labwc/labwc.git
synced 2026-04-18 06:46:46 -04:00
chase wlroots: Add support for HDR10 output
v2: Switch XRGB to XBGR
v3: Rewrite HDR mode checking and setting
v4: Restructure HDR support detection
v5: Fix code style
v6: Fix old style function declaration
v7: This function should be declared static
v8: This helper function can accept a const struct on input
v9: Rebase now that 0.20 is merged
v10: Rewrite with multiple color format attempts
v11: Add in the parts that accidentally got left in my
original color-management-v1 patch
v12: Add missing function prototype
This commit is contained in:
parent
c5ea41e876
commit
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5 changed files with 211 additions and 0 deletions
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@ -36,6 +36,17 @@ enum tearing_mode {
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LAB_TEARING_FULLSCREEN_FORCED,
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};
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enum hdr_mode {
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LAB_HDR_DISABLED = 0,
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LAB_HDR_ENABLED,
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};
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enum render_bit_depth {
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LAB_RENDER_BIT_DEPTH_DEFAULT = 0,
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LAB_RENDER_BIT_DEPTH_8,
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LAB_RENDER_BIT_DEPTH_10,
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};
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enum tiling_events_mode {
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LAB_TILING_EVENTS_NEVER = 0,
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LAB_TILING_EVENTS_REGION = 1 << 0,
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@ -74,6 +85,7 @@ struct rcxml {
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int gap;
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enum adaptive_sync_mode adaptive_sync;
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enum tearing_mode allow_tearing;
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enum hdr_mode hdr;
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bool auto_enable_outputs;
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bool reuse_output_mode;
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uint32_t allowed_interfaces;
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@ -71,6 +71,9 @@ struct wlr_box output_usable_area_in_layout_coords(struct output *output);
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void handle_output_power_manager_set_mode(struct wl_listener *listener,
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void *data);
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void output_enable_adaptive_sync(struct output *output, bool enabled);
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void output_enable_hdr(struct output *output, struct wlr_output_state *os,
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bool enabled, bool silent);
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void output_state_setup_hdr(struct output *output, bool silent);
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/**
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* Notifies whether a fullscreen view is displayed on the given output.
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@ -1070,6 +1070,16 @@ set_tearing_mode(const char *str, enum tearing_mode *variable)
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}
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}
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static void
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set_hdr_mode(const char *str, enum hdr_mode *variable)
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{
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if (parse_bool(str, -1) == 1) {
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*variable = LAB_HDR_ENABLED;
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} else {
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*variable = LAB_HDR_DISABLED;
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}
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}
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/* Returns true if the node's children should also be traversed */
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static bool
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entry(xmlNode *node, char *nodename, char *content)
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@ -1134,6 +1144,8 @@ entry(xmlNode *node, char *nodename, char *content)
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set_adaptive_sync_mode(content, &rc.adaptive_sync);
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} else if (!strcasecmp(nodename, "allowTearing.core")) {
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set_tearing_mode(content, &rc.allow_tearing);
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} else if (!strcasecmp(nodename, "Hdr.core")) {
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set_hdr_mode(content, &rc.hdr);
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} else if (!strcasecmp(nodename, "autoEnableOutputs.core")) {
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set_bool(content, &rc.auto_enable_outputs);
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} else if (!strcasecmp(nodename, "reuseOutputMode.core")) {
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@ -1505,6 +1517,7 @@ rcxml_init(void)
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rc.gap = 0;
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rc.adaptive_sync = LAB_ADAPTIVE_SYNC_DISABLED;
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rc.allow_tearing = LAB_TEARING_DISABLED;
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rc.hdr = LAB_HDR_DISABLED;
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rc.auto_enable_outputs = true;
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rc.reuse_output_mode = false;
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rc.allowed_interfaces = UINT32_MAX;
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@ -24,6 +24,10 @@ output_state_init(struct output *output)
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backup_config, output->wlr_output);
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wlr_output_head_v1_state_apply(&backup_head->state, &output->pending);
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/* This must be applied outside of config */
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output_state_setup_hdr(output, true);
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wlr_output_configuration_v1_destroy(backup_config);
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}
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@ -35,6 +39,7 @@ output_state_commit(struct output *output)
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if (committed) {
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wlr_output_state_finish(&output->pending);
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wlr_output_state_init(&output->pending);
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output_state_setup_hdr(output, true); /* So must this */
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} else {
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wlr_log(WLR_ERROR, "Failed to commit frame");
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}
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178
src/output.c
178
src/output.c
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@ -9,6 +9,7 @@
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#define _POSIX_C_SOURCE 200809L
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#include "output.h"
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#include <assert.h>
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#include <drm_fourcc.h>
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#include <strings.h>
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#include <wlr/backend/wayland.h>
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#include <wlr/config.h>
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@ -51,6 +52,126 @@
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#include <wlr/backend/session.h>
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#endif
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static uint32_t output_formats_8bit[] = {
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/* 32 bpp RGB with 8 bit component width */
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DRM_FORMAT_XRGB8888,
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DRM_FORMAT_XBGR8888,
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DRM_FORMAT_RGBX8888,
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DRM_FORMAT_BGRX8888,
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DRM_FORMAT_ARGB8888,
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DRM_FORMAT_ABGR8888,
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DRM_FORMAT_RGBA8888,
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DRM_FORMAT_BGRA8888,
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/* 24 bpp RGB */
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DRM_FORMAT_RGB888,
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DRM_FORMAT_BGR888,
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};
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static const size_t output_formats_8bit_count = sizeof(output_formats_8bit) /
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sizeof(output_formats_8bit[0]);
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uint32_t output_formats_10bit[] = {
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/* 32 bpp RGB with 10 bit component width */
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DRM_FORMAT_XRGB2101010,
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DRM_FORMAT_XBGR2101010,
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DRM_FORMAT_RGBX1010102,
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DRM_FORMAT_BGRX1010102,
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DRM_FORMAT_ARGB2101010,
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DRM_FORMAT_ABGR2101010,
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DRM_FORMAT_RGBA1010102,
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DRM_FORMAT_BGRA1010102,
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};
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static const size_t output_formats_10bit_count = sizeof(output_formats_10bit) /
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sizeof(output_formats_10bit[0]);
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static bool
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output_set_render_format(struct output *output, uint32_t candidates[], size_t count)
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{
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for (size_t i = 0; i < count; i++) {
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wlr_output_state_set_render_format(&output->pending, candidates[i]);
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if (wlr_output_test_state(output->wlr_output, &output->pending)) {
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return true;
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}
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}
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return false;
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}
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static bool
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output_format_in_candidates(uint32_t render_format, uint32_t candidates[], size_t count)
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{
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for (size_t i = 0; i < count; i++) {
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if (candidates[i] == render_format) {
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return true;
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}
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}
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return false;
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}
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static enum render_bit_depth
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bit_depth_from_format(uint32_t render_format)
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{
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if (output_format_in_candidates(render_format, output_formats_10bit,
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output_formats_10bit_count)) {
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return LAB_RENDER_BIT_DEPTH_10;
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} else if (output_format_in_candidates(render_format, output_formats_8bit,
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output_formats_8bit_count)) {
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return LAB_RENDER_BIT_DEPTH_8;
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}
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return LAB_RENDER_BIT_DEPTH_DEFAULT;
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}
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static enum render_bit_depth
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get_config_render_bit_depth(void)
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{
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if (rc.hdr == LAB_HDR_ENABLED) {
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return LAB_RENDER_BIT_DEPTH_10;
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}
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return LAB_RENDER_BIT_DEPTH_8;
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}
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void
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output_state_setup_hdr(struct output *output, bool silent)
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{
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uint32_t render_format = output->wlr_output->render_format;
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bool hdr_succeeded = false;
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enum render_bit_depth render_bit_depth = get_config_render_bit_depth();
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if (render_bit_depth == LAB_RENDER_BIT_DEPTH_10 &&
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bit_depth_from_format(render_format) == render_bit_depth) {
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/* 10-bit was set successfully before, try to save some
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* tests by reusing the format
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*/
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wlr_output_state_set_render_format(&output->pending, render_format);
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hdr_succeeded = true;
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} else if (render_bit_depth == LAB_RENDER_BIT_DEPTH_10) {
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hdr_succeeded = output_set_render_format(output, output_formats_10bit,
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output_formats_10bit_count);
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if (!hdr_succeeded) {
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if (!silent) {
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wlr_log(WLR_INFO, "No 10 bit color formats"
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" supported, HDR disabled.");
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}
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if (!output_set_render_format(output, output_formats_8bit,
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output_formats_8bit_count)) {
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if (!silent) {
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wlr_log(WLR_ERROR, "No 8 bit color formats"
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" supported either!");
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}
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}
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}
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} else {
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if (!output_set_render_format(output, output_formats_8bit,
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output_formats_8bit_count) && !silent) {
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wlr_log(WLR_ERROR, "No 8 bit color formats supported!");
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}
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}
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bool hdr = hdr_succeeded && (rc.hdr == LAB_HDR_ENABLED);
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output_enable_hdr(output, &output->pending, hdr, silent);
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}
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bool
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output_get_tearing_allowance(struct output *output)
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{
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@ -371,6 +492,8 @@ configure_new_output(struct output *output)
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output_enable_adaptive_sync(output, true);
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}
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output_state_setup_hdr(output, false);
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output_state_commit(output);
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wlr_output_effective_resolution(wlr_output,
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@ -653,6 +776,7 @@ output_config_apply(struct wlr_output_configuration_v1 *config)
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wlr_output_state_set_transform(os, head->state.transform);
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output_enable_adaptive_sync(output,
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head->state.adaptive_sync_enabled);
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output_state_setup_hdr(output, false);
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}
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if (!output_state_commit(output)) {
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/*
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@ -1136,3 +1260,57 @@ output_set_has_fullscreen_view(struct output *output, bool has_fullscreen_view)
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output_enable_adaptive_sync(output, has_fullscreen_view);
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output_state_commit(output);
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}
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static bool
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output_supports_hdr(const struct wlr_output *output, const char **unsupported_reason_ptr)
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{
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const char *unsupported_reason = NULL;
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if (!(output->supported_primaries & WLR_COLOR_NAMED_PRIMARIES_BT2020)) {
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unsupported_reason = "BT2020 primaries not supported by output";
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} else if (!(output->supported_transfer_functions &
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WLR_COLOR_TRANSFER_FUNCTION_ST2084_PQ)) {
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unsupported_reason = "PQ transfer function not supported by output";
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} else if (!server.renderer->features.output_color_transform) {
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unsupported_reason = "renderer doesn't support output color transforms";
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}
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if (unsupported_reason_ptr) {
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*unsupported_reason_ptr = unsupported_reason;
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}
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return !unsupported_reason;
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}
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void
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output_enable_hdr(struct output *output, struct wlr_output_state *os,
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bool enabled, bool silent)
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{
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const char *unsupported_reason = NULL;
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if (enabled && !output_supports_hdr(output->wlr_output, &unsupported_reason)) {
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if (!silent) {
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wlr_log(WLR_INFO, "Cannot enable HDR on output %s: %s",
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output->wlr_output->name, unsupported_reason);
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}
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enabled = false;
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}
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if (!enabled) {
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if (output->wlr_output->supported_primaries != 0 ||
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output->wlr_output->supported_transfer_functions != 0) {
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if (!silent) {
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wlr_log(WLR_DEBUG, "Disabling HDR on output %s",
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output->wlr_output->name);
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}
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wlr_output_state_set_image_description(os, NULL);
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}
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return;
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}
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if (!silent) {
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wlr_log(WLR_DEBUG, "Enabling HDR on output %s",
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output->wlr_output->name);
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}
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const struct wlr_output_image_description image_desc = {
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.primaries = WLR_COLOR_NAMED_PRIMARIES_BT2020,
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.transfer_function = WLR_COLOR_TRANSFER_FUNCTION_ST2084_PQ,
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};
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wlr_output_state_set_image_description(os, &image_desc);
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}
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