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	Add abstract scaled_scene_buffer implementation
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								include/common/scaled_scene_buffer.h
									
										
									
									
									
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								include/common/scaled_scene_buffer.h
									
										
									
									
									
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/* SPDX-License-Identifier: GPL-2.0-only */
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#ifndef __LAB_COMMON_SCALED_SCENE_BUFFER_H
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#define __LAB_COMMON_SCALED_SCENE_BUFFER_H
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#define LAB_SCALED_BUFFER_MAX_CACHE 2
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struct wl_list;
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struct wlr_buffer;
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struct wl_listener;
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struct wlr_scene_tree;
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struct lab_data_buffer;
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struct scaled_scene_buffer;
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struct scaled_scene_buffer_impl {
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	/* Return a new buffer optimized for the new scale */
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	struct lab_data_buffer *(*create_buffer)
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		(struct scaled_scene_buffer *scaled_buffer, double scale);
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	/* Might be NULL or used for cleaning up */
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	void (*destroy)(struct scaled_scene_buffer *scaled_buffer);
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};
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struct scaled_scene_buffer {
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	struct wlr_scene_buffer *scene_buffer;
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	int width;   /* unscaled, read only */
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	int height;  /* unscaled, read only */
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	void *data;  /* opaque user data */
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	/* Private */
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	double active_scale;
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	struct wl_list cache;  /* struct scaled_buffer_cache_entry.link */
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	struct wl_listener destroy;
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	struct wl_listener output_enter;
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	struct wl_listener output_leave;
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	const struct scaled_scene_buffer_impl *impl;
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};
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/**
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 * Create an auto scaling buffer that creates a wlr_scene_buffer
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 * and subscribes to its output_enter and output_leave signals.
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 *
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 * If the maximal scale changes, it either sets an already existing buffer
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 * that was rendered for the current scale or - if there is none - calls
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 * implementation->create_buffer(self, scale) to get a new lab_data_buffer
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 * optimized for the new scale.
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 *
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 * Up to LAB_SCALED_BUFFER_MAX_CACHE (2) buffers are cached in an LRU fashion
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 * to handle the majority of use cases where a view is moved between no more
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 * than two different scales.
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 *
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 * scaled_scene_buffer will clean up automatically once the internal
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 * wlr_scene_buffer is being destroyed. If implementation->destroy is set
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 * it will also get called so a consumer of this API may clean up its own
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 * allocations.
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 */
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struct scaled_scene_buffer *scaled_scene_buffer_create(
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	struct wlr_scene_tree *parent,
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	const struct scaled_scene_buffer_impl *implementation);
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/* Clear the cache of existing buffers, useful in case the content changes */
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void scaled_scene_buffer_invalidate_cache(struct scaled_scene_buffer *self);
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/* Private */
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struct scaled_scene_buffer_cache_entry {
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	struct wl_list link;   /* struct scaled_scene_buffer.cache */
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	struct wlr_buffer *buffer;
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	double scale;
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};
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#endif /* __LAB_COMMON_SCALED_SCENE_BUFFER_H */
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			@ -4,6 +4,7 @@ labwc_sources += files(
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  'font.c',
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  'grab-file.c',
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  'nodename.c',
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  'scaled_scene_buffer.c',
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  'scene-helpers.c',
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  'spawn.c',
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  'string-helpers.c',
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										192
									
								
								src/common/scaled_scene_buffer.c
									
										
									
									
									
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										192
									
								
								src/common/scaled_scene_buffer.c
									
										
									
									
									
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// SPDX-License-Identifier: GPL-2.0-only
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#define _POSIX_C_SOURCE 200809L
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#include <assert.h>
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#include <stdlib.h>
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#include <wayland-server-core.h>
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#include <wlr/types/wlr_buffer.h>
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#include <wlr/types/wlr_scene.h>
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#include <wlr/util/log.h>
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#include "buffer.h"
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#include "common/scaled_scene_buffer.h"
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/**
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 * TODO
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 *
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 * This implementation does not react to output scale changes itself but only
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 * to movement of scene nodes to different outputs. To also handle output scale
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 * changes we'd need to keep a list of struct wlr_outputs * in sync and listen
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 * to their commit signals.
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 *
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 * The detection of the max output scale is also not 100% robust for all use
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 * cases as on output_enter we only compare the new output scale with the
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 * primary_output scale. In specific conditions the primary output may be the
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 * same as the new output even though a smaller part of the buffer node is
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 * still visible on an output with a bigger scale. This could be solved the
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 * same way as the previous point in keeping a list of outputs in sync.
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 *
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 * Most of this would be easier when wlroots would instead provide a
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 * max_scale_changed event because it already touches all the relevant parts
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 * when calculating the primary_output and inform wlr_scene_buffers about
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 * output changes.
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 *
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 * See wlroots/types/scene/wlr_scene.c scene_buffer_update_outputs()
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 */
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/* Internal API */
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static void
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_cache_entry_destroy(struct scaled_scene_buffer_cache_entry *cache_entry)
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{
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	wl_list_remove(&cache_entry->link);
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	if (cache_entry->buffer) {
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		wlr_buffer_drop(cache_entry->buffer);
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	}
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	free(cache_entry);
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}
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static void
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_update_buffer(struct scaled_scene_buffer *self, double scale)
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{
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	self->active_scale = scale;
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	/* Search for cached buffer of specified scale */
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	struct scaled_scene_buffer_cache_entry *cache_entry, *cache_entry_tmp;
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	wl_list_for_each_safe(cache_entry, cache_entry_tmp, &self->cache, link) {
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		if (cache_entry->scale == scale) {
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			/* LRU cache, recently used in front */
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			wl_list_remove(&cache_entry->link);
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			wl_list_insert(&self->cache, &cache_entry->link);
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			wlr_scene_buffer_set_buffer(self->scene_buffer, cache_entry->buffer);
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			return;
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		}
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	}
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	/* Create new buffer, will get destroyed along the backing wlr_buffer */
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	struct lab_data_buffer *buffer = self->impl->create_buffer(self, scale);
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	self->width = buffer ? buffer->unscaled_width : 0;
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	self->height = buffer ? buffer->unscaled_height : 0;
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	/* Create or reuse cache entry */
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	if (wl_list_length(&self->cache) < LAB_SCALED_BUFFER_MAX_CACHE) {
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		cache_entry = calloc(1, sizeof(*cache_entry));
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	} else {
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		cache_entry = wl_container_of(self->cache.prev, cache_entry, link);
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		if (cache_entry->buffer) {
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			wlr_buffer_drop(cache_entry->buffer);
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		}
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		wl_list_remove(&cache_entry->link);
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	}
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	/* Update the cache entry */
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	cache_entry->scale = scale;
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	cache_entry->buffer = buffer ? &buffer->base : NULL;
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	wl_list_insert(&self->cache, &cache_entry->link);
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	/* And finally update the wlr_scene_buffer itself */
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	wlr_scene_buffer_set_buffer(self->scene_buffer, cache_entry->buffer);
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	wlr_scene_buffer_set_dest_size(self->scene_buffer, self->width, self->height);
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}
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/* Internal event handlers */
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static void
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_handle_node_destroy(struct wl_listener *listener, void *data)
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{
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	struct scaled_scene_buffer_cache_entry *cache_entry, *cache_entry_tmp;
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	struct scaled_scene_buffer *self = wl_container_of(listener, self, destroy);
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	wl_list_remove(&self->destroy.link);
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	wl_list_remove(&self->output_enter.link);
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	wl_list_remove(&self->output_leave.link);
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	wl_list_for_each_safe(cache_entry, cache_entry_tmp, &self->cache, link) {
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		_cache_entry_destroy(cache_entry);
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	}
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	assert(wl_list_empty(&self->cache));
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	if (self->impl->destroy) {
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		self->impl->destroy(self);
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	}
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	free(self);
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}
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static void
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_handle_output_enter(struct wl_listener *listener, void *data)
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{
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	struct scaled_scene_buffer *self
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		= wl_container_of(listener, self, output_enter);
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	/* primary_output is the output most of the node area is in */
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	struct wlr_scene_output *primary = self->scene_buffer->primary_output;
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	/* scene_output is the output we just entered */
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	struct wlr_scene_output *scene_output = data;
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	double max_scale = scene_output->output->scale;
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	if (primary && primary->output->scale > max_scale) {
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		max_scale = primary->output->scale;
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	}
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	if (self->active_scale != max_scale) {
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		_update_buffer(self, max_scale);
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	}
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}
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static void
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_handle_output_leave(struct wl_listener *listener, void *data)
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{
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	struct scaled_scene_buffer *self
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		= wl_container_of(listener, self, output_leave);
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	/* primary_output is the output most of the node area is in */
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	struct wlr_scene_output *primary = self->scene_buffer->primary_output;
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	if (primary && primary->output->scale != self->active_scale) {
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		_update_buffer(self, primary->output->scale);
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	}
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}
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/* Public API */
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struct scaled_scene_buffer *
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scaled_scene_buffer_create(struct wlr_scene_tree *parent,
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		const struct scaled_scene_buffer_impl *impl)
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{
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	assert(parent);
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	assert(impl);
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	assert(impl->create_buffer);
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	struct scaled_scene_buffer *self = calloc(1, sizeof(*self));
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	if (!self) {
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		return NULL;
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	}
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	self->scene_buffer = wlr_scene_buffer_create(parent, NULL);
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	if (!self->scene_buffer) {
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		wlr_log(WLR_ERROR, "Failed to create scene buffer");
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		free(self);
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		return NULL;
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	}
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	self->impl = impl;
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	self->active_scale = 1;
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	wl_list_init(&self->cache);
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	/* Listen to output enter/leave so we get notified about scale changes */
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	self->output_enter.notify = _handle_output_enter;
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	wl_signal_add(&self->scene_buffer->events.output_enter, &self->output_enter);
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	self->output_leave.notify = _handle_output_leave;
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	wl_signal_add(&self->scene_buffer->events.output_leave, &self->output_leave);
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	/* Let it destroy automatically when the scene node destroys */
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	self->destroy.notify = _handle_node_destroy;
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	wl_signal_add(&self->scene_buffer->node.events.destroy, &self->destroy);
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	return self;
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}
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void
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scaled_scene_buffer_invalidate_cache(struct scaled_scene_buffer *self)
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{
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	assert(self);
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	struct scaled_scene_buffer_cache_entry *cache_entry, *cache_entry_tmp;
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	wl_list_for_each_safe(cache_entry, cache_entry_tmp, &self->cache, link) {
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		_cache_entry_destroy(cache_entry);
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	}
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	assert(wl_list_empty(&self->cache));
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	_update_buffer(self, self->active_scale);
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}
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