/** * Looking Glass * Copyright © 2017-2026 The Looking Glass Authors * https://looking-glass.io * * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License as published by the Free * Software Foundation; either version 2 of the License, or (at your option) * any later version. * * This program is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for * more details. * * You should have received a copy of the GNU General Public License along * with this program; if not, write to the Free Software Foundation, Inc., 59 * Temple Place, Suite 330, Boston, MA 02111-1307 USA */ #include "wayland.h" #include #include #include #include #include #include "app.h" #include "common/debug.h" struct OutputColorDescription { struct WaylandOutput * output; struct wp_image_description_v1 * description; struct wp_image_description_info_v1 * info; }; static void outputColorDescriptionFree(struct OutputColorDescription * desc) { if (!desc) return; if (desc->info) wl_proxy_destroy((struct wl_proxy *)desc->info); if (desc->description) wp_image_description_v1_destroy(desc->description); if (desc->output && desc->output->colorDescription == desc) desc->output->colorDescription = NULL; free(desc); } static struct WaylandOutput * outputFind(struct wl_output * output) { struct WaylandOutput * node; wl_list_for_each(node, &wlWm.outputs, link) if (node->output == output) return node; return NULL; } void waylandOutputUpdateHDRWhiteLevel(void) { uint32_t pqWhite = 203; uint32_t scRGBWhite = 80; struct SurfaceOutput * surfaceOutput; wl_list_for_each(surfaceOutput, &wlWm.surfaceOutputs, link) { struct WaylandOutput * output = outputFind(surfaceOutput->output); if (!output || !output->referenceWhiteValid) continue; pqWhite = scRGBWhite = output->referenceWhiteLevel; break; } const uint32_t oldPQ = atomic_exchange(&wlWm.hdrPQWhiteLevel, pqWhite); const uint32_t oldScRGB = atomic_exchange(&wlWm.hdrScRGBWhiteLevel, scRGBWhite); if ((oldPQ != pqWhite || oldScRGB != scRGBWhite) && wlWm.frameEvent) { DEBUG_INFO("Wayland output reference white: %u cd/m²", pqWhite); app_invalidateWindow(true); waylandStopWaitFrame(); } } static void outputInfoDone(void * data, struct wp_image_description_info_v1 * info) { struct OutputColorDescription * desc = data; desc->info = NULL; // the protocol destroys it after this event outputColorDescriptionFree(desc); } static void outputInfoICCFile(void * data, struct wp_image_description_info_v1 * info, int32_t fd, uint32_t size) { close(fd); } static void outputInfoPrimaries(void * data, struct wp_image_description_info_v1 * info, int32_t rx, int32_t ry, int32_t gx, int32_t gy, int32_t bx, int32_t by, int32_t wx, int32_t wy) { } static void outputInfoPrimariesNamed(void * data, struct wp_image_description_info_v1 * info, uint32_t primaries) { } static void outputInfoTFPower(void * data, struct wp_image_description_info_v1 * info, uint32_t exponent) { } static void outputInfoTFNamed(void * data, struct wp_image_description_info_v1 * info, uint32_t tf) { } static void outputInfoLuminances(void * data, struct wp_image_description_info_v1 * info, uint32_t minLum, uint32_t maxLum, uint32_t referenceLum) { struct OutputColorDescription * desc = data; if (!referenceLum || desc->output->colorDescription != desc) return; desc->output->referenceWhiteLevel = referenceLum; desc->output->referenceWhiteValid = true; waylandOutputUpdateHDRWhiteLevel(); } static void outputInfoTargetPrimaries(void * data, struct wp_image_description_info_v1 * info, int32_t rx, int32_t ry, int32_t gx, int32_t gy, int32_t bx, int32_t by, int32_t wx, int32_t wy) { } static void outputInfoTargetLuminance(void * data, struct wp_image_description_info_v1 * info, uint32_t minLum, uint32_t maxLum) { } static void outputInfoTargetMaxCLL(void * data, struct wp_image_description_info_v1 * info, uint32_t maxCLL) { } static void outputInfoTargetMaxFALL(void * data, struct wp_image_description_info_v1 * info, uint32_t maxFALL) { } static const struct wp_image_description_info_v1_listener outputInfoListener = { .done = outputInfoDone, .icc_file = outputInfoICCFile, .primaries = outputInfoPrimaries, .primaries_named = outputInfoPrimariesNamed, .tf_power = outputInfoTFPower, .tf_named = outputInfoTFNamed, .luminances = outputInfoLuminances, .target_primaries = outputInfoTargetPrimaries, .target_luminance = outputInfoTargetLuminance, .target_max_cll = outputInfoTargetMaxCLL, .target_max_fall = outputInfoTargetMaxFALL, }; static void outputDescriptionFailed(void * data, struct wp_image_description_v1 * description, uint32_t cause, const char * message) { struct OutputColorDescription * desc = data; DEBUG_WARN("Failed to query Wayland output colour description " "(cause:%u): %s", cause, message); outputColorDescriptionFree(desc); } static void outputDescriptionReady(struct OutputColorDescription * desc) { desc->info = wp_image_description_v1_get_information(desc->description); if (!desc->info) { outputColorDescriptionFree(desc); return; } wp_image_description_info_v1_add_listener( desc->info, &outputInfoListener, desc); } static void outputDescriptionReadyV1(void * data, struct wp_image_description_v1 * description, uint32_t identity) { outputDescriptionReady(data); } static void outputDescriptionReadyV2(void * data, struct wp_image_description_v1 * description, uint32_t identityHi, uint32_t identityLo) { outputDescriptionReady(data); } static const struct wp_image_description_v1_listener outputDescriptionListener = { .failed = outputDescriptionFailed, .ready = outputDescriptionReadyV1, .ready2 = outputDescriptionReadyV2, }; static void outputRequestColorDescription(struct WaylandOutput * output) { outputColorDescriptionFree(output->colorDescription); output->referenceWhiteValid = false; waylandOutputUpdateHDRWhiteLevel(); struct OutputColorDescription * desc = calloc(1, sizeof(*desc)); if (!desc) return; desc->output = output; desc->description = wp_color_management_output_v1_get_image_description(output->colorOutput); if (!desc->description) { free(desc); return; } output->colorDescription = desc; wp_image_description_v1_add_listener( desc->description, &outputDescriptionListener, desc); } static void outputImageDescriptionChanged(void * data, struct wp_color_management_output_v1 * colorOutput) { outputRequestColorDescription(data); } static const struct wp_color_management_output_v1_listener colorOutputListener = { .image_description_changed = outputImageDescriptionChanged, }; void waylandOutputColorMgmtInit(struct WaylandOutput * output) { if (!wlWm.colorManager || output->colorOutput) return; output->colorOutput = wp_color_manager_v1_get_output(wlWm.colorManager, output->output); if (!output->colorOutput) return; wp_color_management_output_v1_add_listener( output->colorOutput, &colorOutputListener, output); outputRequestColorDescription(output); } void waylandOutputColorMgmtInitAll(void) { struct WaylandOutput * output; wl_list_for_each(output, &wlWm.outputs, link) waylandOutputColorMgmtInit(output); } static void outputUpdateScale(struct WaylandOutput * node) { struct WaylandScale original = node->scale; if (!wlWm.useFractionalScale || !wlWm.viewporter || !node->logicalWidth) node->scale = waylandScaleFromInt(node->scaleInt); else { int32_t modeWidth = node->modeRotate ? node->modeHeight : node->modeWidth; node->scale = waylandScaleFromRatio(modeWidth, node->logicalWidth); } if (!waylandScaleEqual(original, node->scale)) waylandWindowUpdateScale(); } static void outputGeometryHandler(void * opaque, struct wl_output * output, int32_t x, int32_t y, int32_t physical_width, int32_t physical_height, int32_t subpixel, const char * make, const char * model, int32_t output_transform) { struct WaylandOutput * node = opaque; switch (output_transform) { case WL_OUTPUT_TRANSFORM_90: case WL_OUTPUT_TRANSFORM_270: case WL_OUTPUT_TRANSFORM_FLIPPED_90: case WL_OUTPUT_TRANSFORM_FLIPPED_270: node->modeRotate = true; break; default: node->modeRotate = false; } } static void outputModeHandler(void * opaque, struct wl_output * wl_output, uint32_t flags, int32_t width, int32_t height, int32_t refresh) { if (!(flags & WL_OUTPUT_MODE_CURRENT)) return; struct WaylandOutput * node = opaque; node->modeWidth = width; node->modeHeight = height; } static void outputDoneHandler(void * opaque, struct wl_output * output) { struct WaylandOutput * node = opaque; outputUpdateScale(node); } static void outputScaleHandler(void * opaque, struct wl_output * output, int32_t scale) { struct WaylandOutput * node = opaque; node->scaleInt = scale; } static const struct wl_output_listener outputListener = { .geometry = outputGeometryHandler, .mode = outputModeHandler, .done = outputDoneHandler, .scale = outputScaleHandler, }; static void xdgOutputLogicalPositionHandler(void * opaque, struct zxdg_output_v1 * xdgOutput, int32_t x, int32_t y) { // Do nothing. } static void xdgOutputLogicalSizeHandler(void * opaque, struct zxdg_output_v1 * xdgOutput, int32_t width, int32_t height) { struct WaylandOutput * node = opaque; node->logicalWidth = width; node->logicalHeight = height; } static void xdgOutputDoneHandler(void * opaque, struct zxdg_output_v1 * xdgOutput) { struct WaylandOutput * node = opaque; outputUpdateScale(node); } static void xdgOutputNameHandler(void * opaque, struct zxdg_output_v1 * xdgOutput, const char * name) { // Do nothing. } static void xdgOutputDescriptionHandler(void * opaque, struct zxdg_output_v1 * xdgOutput, const char * description) { // Do nothing. } static const struct zxdg_output_v1_listener xdgOutputListener = { .logical_position = xdgOutputLogicalPositionHandler, .logical_size = xdgOutputLogicalSizeHandler, .done = xdgOutputDoneHandler, .name = xdgOutputNameHandler, .description = xdgOutputDescriptionHandler, }; bool waylandOutputInit(void) { wl_list_init(&wlWm.outputs); return true; } void waylandOutputFree(void) { struct WaylandOutput * node; struct WaylandOutput * temp; wl_list_for_each_safe(node, temp, &wlWm.outputs, link) { outputColorDescriptionFree(node->colorDescription); if (node->colorOutput) wp_color_management_output_v1_destroy(node->colorOutput); if (node->version >= 3) wl_output_release(node->output); if (node->xdgOutput) zxdg_output_v1_destroy(node->xdgOutput); wl_list_remove(&node->link); free(node); } } void waylandOutputBind(uint32_t name, uint32_t version) { struct WaylandOutput * node = calloc(1, sizeof(struct WaylandOutput)); if (!node) return; if (version < 2) { DEBUG_WARN("wl_output version too old: expected >= 2, got %d", version); free(node); return; } node->name = name; node->scale = waylandScaleFromInt(0); node->version = version; node->output = wl_registry_bind(wlWm.registry, name, &wl_output_interface, version >= 3 ? 3 : 2); if (!node->output) { DEBUG_ERROR("Failed to bind to wl_output %u\n", name); free(node); return; } if (wlWm.xdgOutputManager) { node->xdgOutput = zxdg_output_manager_v1_get_xdg_output(wlWm.xdgOutputManager, node->output); if (node->xdgOutput) zxdg_output_v1_add_listener(node->xdgOutput, &xdgOutputListener, node); } wl_output_add_listener(node->output, &outputListener, node); wl_list_insert(&wlWm.outputs, &node->link); waylandOutputColorMgmtInit(node); } void waylandOutputTryUnbind(uint32_t name) { struct WaylandOutput * node; wl_list_for_each(node, &wlWm.outputs, link) { if (node->name == name) { struct SurfaceOutput * surfaceOutput; struct SurfaceOutput * temp; wl_list_for_each_safe( surfaceOutput, temp, &wlWm.surfaceOutputs, link) if (surfaceOutput->output == node->output) { wl_list_remove(&surfaceOutput->link); free(surfaceOutput); } outputColorDescriptionFree(node->colorDescription); if (node->colorOutput) wp_color_management_output_v1_destroy(node->colorOutput); if (node->version >= 3) wl_output_release(node->output); if (node->xdgOutput) zxdg_output_v1_destroy(node->xdgOutput); wl_list_remove(&node->link); free(node); waylandWindowUpdateScale(); waylandOutputUpdateHDRWhiteLevel(); break; } } } struct WaylandScale waylandOutputGetScale(struct wl_output * output) { struct WaylandOutput * node; wl_list_for_each(node, &wlWm.outputs, link) if (node->output == output) return node->scale; return waylandScaleFromInt(0); }