5ff330e6bc
handle_destroy would mark the output es being destroyed and commit the transaction. Committing the transaction results in the output being freed, the output manager can not retrieve the server reference afterwards, resulting in the following use-after-free: ==22746==ERROR: AddressSanitizer: heap-use-after-free on address 0x614000017088 at pc 0x560c1ac17136 bp 0x7ffeab146f20 sp 0x7ffeab146f10 READ of size 8 at 0x614000017088 thread T0 #0 0x560c1ac17135 in handle_destroy ../sway/desktop/output.c:566 #1 0x7f38af69330e in wlr_signal_emit_safe ../subprojects/wlroots/util/signal.c:29 #2 0x7f38af5d3dfc in drm_connector_cleanup ../subprojects/wlroots/backend/drm/drm.c:1448 #3 0x7f38af5d2058 in scan_drm_connectors ../subprojects/wlroots/backend/drm/drm.c:1240 #4 0x7f38af5c6a59 in drm_invalidated ../subprojects/wlroots/backend/drm/backend.c:135 #5 0x7f38af69330e in wlr_signal_emit_safe ../subprojects/wlroots/util/signal.c:29 #6 0x7f38af5e827a in udev_event ../subprojects/wlroots/backend/session/session.c:52 #7 0x7f38aef5d7f1 in wl_event_loop_dispatch (/usr/lib/libwayland-server.so.0+0xa7f1) #8 0x7f38aef5c39b in wl_display_run (/usr/lib/libwayland-server.so.0+0x939b) #9 0x560c1ac0afbe in server_run ../sway/server.c:225 #10 0x560c1ac09382 in main ../sway/main.c:397 #11 0x7f38aed35ce2 in __libc_start_main (/usr/lib/libc.so.6+0x23ce2) #12 0x560c1abea10d in _start (/usr/local/bin/sway+0x3910d) 0x614000017088 is located 72 bytes inside of 432-byte region [0x614000017040,0x6140000171f0) freed by thread T0 here: #0 0x7f38af82df89 in __interceptor_free /build/gcc/src/gcc/libsanitizer/asan/asan_malloc_linux.cc:66 #1 0x560c1acbd1ed in output_destroy ../sway/tree/output.c:243 #2 0x560c1ac23ce5 in transaction_destroy ../sway/desktop/transaction.c:66 #3 0x560c1ac26b71 in transaction_progress_queue ../sway/desktop/transaction.c:348 #4 0x560c1ac284ca in transaction_commit_dirty ../sway/desktop/transaction.c:539 #5 0x560c1ac17110 in handle_destroy ../sway/desktop/output.c:564 #6 0x7f38af69330e in wlr_signal_emit_safe ../subprojects/wlroots/util/signal.c:29 #7 0x7f38af5d3dfc in drm_connector_cleanup ../subprojects/wlroots/backend/drm/drm.c:1448 #8 0x7f38af5d2058 in scan_drm_connectors ../subprojects/wlroots/backend/drm/drm.c:1240 #9 0x7f38af5c6a59 in drm_invalidated ../subprojects/wlroots/backend/drm/backend.c:135 #10 0x7f38af69330e in wlr_signal_emit_safe ../subprojects/wlroots/util/signal.c:29 #11 0x7f38af5e827a in udev_event ../subprojects/wlroots/backend/session/session.c:52 #12 0x7f38aef5d7f1 in wl_event_loop_dispatch (/usr/lib/libwayland-server.so.0+0xa7f1) previously allocated by thread T0 here: #0 0x7f38af82e5a1 in __interceptor_calloc /build/gcc/src/gcc/libsanitizer/asan/asan_malloc_linux.cc:95 #1 0x560c1acbc228 in output_create ../sway/tree/output.c:91 #2 0x560c1ac17ba2 in handle_new_output ../sway/desktop/output.c:656 #3 0x7f38af69330e in wlr_signal_emit_safe ../subprojects/wlroots/util/signal.c:29 #4 0x7f38af5e4ce8 in new_output_reemit ../subprojects/wlroots/backend/multi/backend.c:143 #5 0x7f38af69330e in wlr_signal_emit_safe ../subprojects/wlroots/util/signal.c:29 #6 0x7f38af5d26d4 in scan_drm_connectors ../subprojects/wlroots/backend/drm/drm.c:1294 #7 0x7f38af5c6a59 in drm_invalidated ../subprojects/wlroots/backend/drm/backend.c:135 #8 0x7f38af69330e in wlr_signal_emit_safe ../subprojects/wlroots/util/signal.c:29 #9 0x7f38af5e827a in udev_event ../subprojects/wlroots/backend/session/session.c:52 #10 0x7f38aef5d7f1 in wl_event_loop_dispatch (/usr/lib/libwayland-server.so.0+0xa7f1) SUMMARY: AddressSanitizer: heap-use-after-free ../sway/desktop/output.c:566 in handle_destroy Shadow bytes around the buggy address: 0x0c287fffadc0: fa fa fa fa fa fa fa fa fd fd fd fd fd fd fd fd 0x0c287fffadd0: fd fd fd fd fd fd fd fd fd fd fd fd fd fd fd fd 0x0c287fffade0: fd fd fd fd fd fd fd fd fd fd fd fd fd fd fd fd 0x0c287fffadf0: fd fd fd fd fd fd fd fd fd fd fd fd fd fd fd fd 0x0c287fffae00: fa fa fa fa fa fa fa fa fd fd fd fd fd fd fd fd =>0x0c287fffae10: fd[fd]fd fd fd fd fd fd fd fd fd fd fd fd fd fd 0x0c287fffae20: fd fd fd fd fd fd fd fd fd fd fd fd fd fd fd fd 0x0c287fffae30: fd fd fd fd fd fd fd fd fd fd fd fd fd fd fa fa 0x0c287fffae40: fa fa fa fa fa fa fa fa 00 00 00 00 00 00 00 00 0x0c287fffae50: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 0x0c287fffae60: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 Retrieve the reference before the output is destroyed and update the output_management state with the saved reference.
757 lines
23 KiB
C
757 lines
23 KiB
C
#define _POSIX_C_SOURCE 200809L
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#include <assert.h>
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#include <stdlib.h>
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#include <strings.h>
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#include <time.h>
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#include <wayland-server.h>
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#include <wlr/render/wlr_renderer.h>
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#include <wlr/types/wlr_box.h>
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#include <wlr/types/wlr_buffer.h>
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#include <wlr/types/wlr_matrix.h>
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#include <wlr/types/wlr_output_damage.h>
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#include <wlr/types/wlr_output_layout.h>
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#include <wlr/types/wlr_output.h>
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#include <wlr/types/wlr_presentation_time.h>
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#include <wlr/types/wlr_surface.h>
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#include <wlr/util/region.h>
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#include "config.h"
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#include "log.h"
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#include "sway/config.h"
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#include "sway/desktop/transaction.h"
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#include "sway/input/input-manager.h"
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#include "sway/input/seat.h"
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#include "sway/layers.h"
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#include "sway/output.h"
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#include "sway/server.h"
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#include "sway/tree/arrange.h"
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#include "sway/tree/container.h"
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#include "sway/tree/root.h"
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#include "sway/tree/view.h"
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#include "sway/tree/workspace.h"
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struct sway_output *output_by_name_or_id(const char *name_or_id) {
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for (int i = 0; i < root->outputs->length; ++i) {
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struct sway_output *output = root->outputs->items[i];
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char identifier[128];
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output_get_identifier(identifier, sizeof(identifier), output);
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if (strcasecmp(identifier, name_or_id) == 0
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|| strcasecmp(output->wlr_output->name, name_or_id) == 0) {
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return output;
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}
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}
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return NULL;
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}
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struct sway_output *all_output_by_name_or_id(const char *name_or_id) {
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struct sway_output *output;
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wl_list_for_each(output, &root->all_outputs, link) {
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char identifier[128];
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output_get_identifier(identifier, sizeof(identifier), output);
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if (strcasecmp(identifier, name_or_id) == 0
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|| strcasecmp(output->wlr_output->name, name_or_id) == 0) {
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return output;
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}
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}
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return NULL;
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}
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/**
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* Rotate a child's position relative to a parent. The parent size is (pw, ph),
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* the child position is (*sx, *sy) and its size is (sw, sh).
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*/
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static void rotate_child_position(double *sx, double *sy, double sw, double sh,
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double pw, double ph, float rotation) {
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if (rotation == 0.0f) {
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return;
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}
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// Coordinates relative to the center of the subsurface
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double ox = *sx - pw/2 + sw/2,
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oy = *sy - ph/2 + sh/2;
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// Rotated coordinates
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double rx = cos(-rotation)*ox - sin(-rotation)*oy,
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ry = cos(-rotation)*oy + sin(-rotation)*ox;
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*sx = rx + pw/2 - sw/2;
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*sy = ry + ph/2 - sh/2;
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}
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struct surface_iterator_data {
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sway_surface_iterator_func_t user_iterator;
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void *user_data;
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struct sway_output *output;
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double ox, oy;
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int width, height;
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float rotation;
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};
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static bool get_surface_box(struct surface_iterator_data *data,
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struct wlr_surface *surface, int sx, int sy,
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struct wlr_box *surface_box) {
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struct sway_output *output = data->output;
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if (!wlr_surface_has_buffer(surface)) {
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return false;
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}
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int sw = surface->current.width;
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int sh = surface->current.height;
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double _sx = sx + surface->sx;
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double _sy = sy + surface->sy;
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rotate_child_position(&_sx, &_sy, sw, sh, data->width, data->height,
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data->rotation);
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struct wlr_box box = {
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.x = data->ox + _sx,
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.y = data->oy + _sy,
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.width = sw,
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.height = sh,
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};
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if (surface_box != NULL) {
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memcpy(surface_box, &box, sizeof(struct wlr_box));
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}
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struct wlr_box rotated_box;
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wlr_box_rotated_bounds(&rotated_box, &box, data->rotation);
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struct wlr_box output_box = {
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.width = output->width,
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.height = output->height,
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};
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struct wlr_box intersection;
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return wlr_box_intersection(&intersection, &output_box, &rotated_box);
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}
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static void output_for_each_surface_iterator(struct wlr_surface *surface,
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int sx, int sy, void *_data) {
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struct surface_iterator_data *data = _data;
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struct wlr_box box;
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bool intersects = get_surface_box(data, surface, sx, sy, &box);
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if (!intersects) {
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return;
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}
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data->user_iterator(data->output, surface, &box, data->rotation,
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data->user_data);
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}
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void output_surface_for_each_surface(struct sway_output *output,
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struct wlr_surface *surface, double ox, double oy,
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sway_surface_iterator_func_t iterator, void *user_data) {
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struct surface_iterator_data data = {
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.user_iterator = iterator,
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.user_data = user_data,
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.output = output,
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.ox = ox,
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.oy = oy,
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.width = surface->current.width,
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.height = surface->current.height,
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.rotation = 0,
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};
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wlr_surface_for_each_surface(surface,
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output_for_each_surface_iterator, &data);
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}
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void output_view_for_each_surface(struct sway_output *output,
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struct sway_view *view, sway_surface_iterator_func_t iterator,
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void *user_data) {
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struct surface_iterator_data data = {
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.user_iterator = iterator,
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.user_data = user_data,
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.output = output,
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.ox = view->container->current.content_x - output->lx
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- view->geometry.x,
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.oy = view->container->current.content_y - output->ly
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- view->geometry.y,
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.width = view->container->current.content_width,
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.height = view->container->current.content_height,
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.rotation = 0, // TODO
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};
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view_for_each_surface(view, output_for_each_surface_iterator, &data);
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}
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void output_view_for_each_popup(struct sway_output *output,
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struct sway_view *view, sway_surface_iterator_func_t iterator,
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void *user_data) {
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struct surface_iterator_data data = {
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.user_iterator = iterator,
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.user_data = user_data,
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.output = output,
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.ox = view->container->current.content_x - output->lx
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- view->geometry.x,
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.oy = view->container->current.content_y - output->ly
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- view->geometry.y,
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.width = view->container->current.content_width,
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.height = view->container->current.content_height,
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.rotation = 0, // TODO
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};
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view_for_each_popup(view, output_for_each_surface_iterator, &data);
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}
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void output_layer_for_each_surface(struct sway_output *output,
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struct wl_list *layer_surfaces, sway_surface_iterator_func_t iterator,
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void *user_data) {
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struct sway_layer_surface *layer_surface;
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wl_list_for_each(layer_surface, layer_surfaces, link) {
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struct wlr_layer_surface_v1 *wlr_layer_surface_v1 =
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layer_surface->layer_surface;
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output_surface_for_each_surface(output, wlr_layer_surface_v1->surface,
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layer_surface->geo.x, layer_surface->geo.y, iterator,
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user_data);
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}
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}
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#if HAVE_XWAYLAND
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void output_unmanaged_for_each_surface(struct sway_output *output,
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struct wl_list *unmanaged, sway_surface_iterator_func_t iterator,
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void *user_data) {
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struct sway_xwayland_unmanaged *unmanaged_surface;
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wl_list_for_each(unmanaged_surface, unmanaged, link) {
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struct wlr_xwayland_surface *xsurface =
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unmanaged_surface->wlr_xwayland_surface;
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double ox = unmanaged_surface->lx - output->lx;
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double oy = unmanaged_surface->ly - output->ly;
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output_surface_for_each_surface(output, xsurface->surface, ox, oy,
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iterator, user_data);
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}
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}
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#endif
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void output_drag_icons_for_each_surface(struct sway_output *output,
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struct wl_list *drag_icons, sway_surface_iterator_func_t iterator,
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void *user_data) {
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struct sway_drag_icon *drag_icon;
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wl_list_for_each(drag_icon, drag_icons, link) {
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double ox = drag_icon->x - output->lx;
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double oy = drag_icon->y - output->ly;
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if (drag_icon->wlr_drag_icon->mapped) {
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output_surface_for_each_surface(output,
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drag_icon->wlr_drag_icon->surface, ox, oy,
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iterator, user_data);
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}
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}
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}
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static void for_each_surface_container_iterator(struct sway_container *con,
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void *_data) {
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if (!con->view || !view_is_visible(con->view)) {
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return;
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}
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struct surface_iterator_data *data = _data;
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output_view_for_each_surface(data->output, con->view,
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data->user_iterator, data->user_data);
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}
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static void output_for_each_surface(struct sway_output *output,
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sway_surface_iterator_func_t iterator, void *user_data) {
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if (output_has_opaque_overlay_layer_surface(output)) {
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goto overlay;
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}
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struct surface_iterator_data data = {
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.user_iterator = iterator,
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.user_data = user_data,
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.output = output,
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};
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struct sway_workspace *workspace = output_get_active_workspace(output);
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struct sway_container *fullscreen_con = root->fullscreen_global;
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if (!fullscreen_con) {
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if (!workspace) {
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return;
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}
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fullscreen_con = workspace->current.fullscreen;
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}
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if (fullscreen_con) {
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for_each_surface_container_iterator(fullscreen_con, &data);
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container_for_each_child(fullscreen_con,
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for_each_surface_container_iterator, &data);
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// TODO: Show transient containers for fullscreen global
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if (fullscreen_con == workspace->current.fullscreen) {
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for (int i = 0; i < workspace->current.floating->length; ++i) {
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struct sway_container *floater =
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workspace->current.floating->items[i];
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if (container_is_transient_for(floater, fullscreen_con)) {
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for_each_surface_container_iterator(floater, &data);
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}
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}
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}
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#if HAVE_XWAYLAND
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output_unmanaged_for_each_surface(output, &root->xwayland_unmanaged,
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iterator, user_data);
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#endif
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} else {
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output_layer_for_each_surface(output,
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&output->layers[ZWLR_LAYER_SHELL_V1_LAYER_BACKGROUND],
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iterator, user_data);
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output_layer_for_each_surface(output,
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&output->layers[ZWLR_LAYER_SHELL_V1_LAYER_BOTTOM],
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iterator, user_data);
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workspace_for_each_container(workspace,
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for_each_surface_container_iterator, &data);
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#if HAVE_XWAYLAND
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output_unmanaged_for_each_surface(output, &root->xwayland_unmanaged,
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iterator, user_data);
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#endif
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output_layer_for_each_surface(output,
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&output->layers[ZWLR_LAYER_SHELL_V1_LAYER_TOP],
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iterator, user_data);
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}
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overlay:
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output_layer_for_each_surface(output,
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&output->layers[ZWLR_LAYER_SHELL_V1_LAYER_OVERLAY],
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iterator, user_data);
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output_drag_icons_for_each_surface(output, &root->drag_icons,
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iterator, user_data);
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}
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static int scale_length(int length, int offset, float scale) {
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return round((offset + length) * scale) - round(offset * scale);
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}
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void scale_box(struct wlr_box *box, float scale) {
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box->width = scale_length(box->width, box->x, scale);
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box->height = scale_length(box->height, box->y, scale);
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box->x = round(box->x * scale);
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box->y = round(box->y * scale);
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}
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struct sway_workspace *output_get_active_workspace(struct sway_output *output) {
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struct sway_seat *seat = input_manager_current_seat();
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struct sway_node *focus = seat_get_active_tiling_child(seat, &output->node);
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if (!focus) {
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if (!output->workspaces->length) {
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return NULL;
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}
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return output->workspaces->items[0];
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}
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return focus->sway_workspace;
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}
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bool output_has_opaque_overlay_layer_surface(struct sway_output *output) {
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struct wlr_layer_surface_v1 *wlr_layer_surface_v1;
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wl_list_for_each(wlr_layer_surface_v1, &server.layer_shell->surfaces, link) {
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if (wlr_layer_surface_v1->output != output->wlr_output ||
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wlr_layer_surface_v1->layer != ZWLR_LAYER_SHELL_V1_LAYER_OVERLAY) {
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continue;
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}
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struct wlr_surface *wlr_surface = wlr_layer_surface_v1->surface;
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struct sway_layer_surface *sway_layer_surface =
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layer_from_wlr_layer_surface_v1(wlr_layer_surface_v1);
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pixman_box32_t output_box = {
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.x2 = output->width,
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.y2 = output->height,
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};
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pixman_region32_t surface_opaque_box;
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pixman_region32_init(&surface_opaque_box);
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pixman_region32_copy(&surface_opaque_box, &wlr_surface->opaque_region);
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pixman_region32_translate(&surface_opaque_box,
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sway_layer_surface->geo.x, sway_layer_surface->geo.y);
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bool contains = pixman_region32_contains_rectangle(&surface_opaque_box,
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&output_box);
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pixman_region32_fini(&surface_opaque_box);
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if (contains) {
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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 void send_frame_done_iterator(struct sway_output *output,
|
|
struct wlr_surface *surface, struct wlr_box *box, float rotation,
|
|
void *data) {
|
|
struct timespec *when = data;
|
|
wlr_surface_send_frame_done(surface, when);
|
|
}
|
|
|
|
static void send_frame_done(struct sway_output *output, struct timespec *when) {
|
|
output_for_each_surface(output, send_frame_done_iterator, when);
|
|
}
|
|
|
|
static void damage_handle_frame(struct wl_listener *listener, void *data) {
|
|
struct sway_output *output =
|
|
wl_container_of(listener, output, damage_frame);
|
|
if (!output->enabled || !output->wlr_output->enabled) {
|
|
return;
|
|
}
|
|
|
|
struct timespec now;
|
|
clock_gettime(CLOCK_MONOTONIC, &now);
|
|
|
|
bool needs_frame;
|
|
pixman_region32_t damage;
|
|
pixman_region32_init(&damage);
|
|
if (!wlr_output_damage_attach_render(output->damage,
|
|
&needs_frame, &damage)) {
|
|
return;
|
|
}
|
|
|
|
if (needs_frame) {
|
|
output_render(output, &now, &damage);
|
|
}
|
|
|
|
pixman_region32_fini(&damage);
|
|
|
|
// Send frame done to all visible surfaces
|
|
send_frame_done(output, &now);
|
|
}
|
|
|
|
void output_damage_whole(struct sway_output *output) {
|
|
// The output can exist with no wlr_output if it's just been disconnected
|
|
// and the transaction to evacuate it has't completed yet.
|
|
if (output && output->wlr_output && output->damage) {
|
|
wlr_output_damage_add_whole(output->damage);
|
|
}
|
|
}
|
|
|
|
static void damage_surface_iterator(struct sway_output *output,
|
|
struct wlr_surface *surface, struct wlr_box *_box, float rotation,
|
|
void *_data) {
|
|
bool *data = _data;
|
|
bool whole = *data;
|
|
|
|
struct wlr_box box = *_box;
|
|
scale_box(&box, output->wlr_output->scale);
|
|
|
|
int center_x = box.x + box.width/2;
|
|
int center_y = box.y + box.height/2;
|
|
|
|
if (pixman_region32_not_empty(&surface->buffer_damage)) {
|
|
pixman_region32_t damage;
|
|
pixman_region32_init(&damage);
|
|
wlr_surface_get_effective_damage(surface, &damage);
|
|
wlr_region_scale(&damage, &damage, output->wlr_output->scale);
|
|
if (ceil(output->wlr_output->scale) > surface->current.scale) {
|
|
// When scaling up a surface, it'll become blurry so we need to
|
|
// expand the damage region
|
|
wlr_region_expand(&damage, &damage,
|
|
ceil(output->wlr_output->scale) - surface->current.scale);
|
|
}
|
|
pixman_region32_translate(&damage, box.x, box.y);
|
|
wlr_region_rotated_bounds(&damage, &damage, rotation,
|
|
center_x, center_y);
|
|
wlr_output_damage_add(output->damage, &damage);
|
|
pixman_region32_fini(&damage);
|
|
}
|
|
|
|
if (whole) {
|
|
wlr_box_rotated_bounds(&box, &box, rotation);
|
|
wlr_output_damage_add_box(output->damage, &box);
|
|
}
|
|
|
|
wlr_output_schedule_frame(output->wlr_output);
|
|
}
|
|
|
|
void output_damage_surface(struct sway_output *output, double ox, double oy,
|
|
struct wlr_surface *surface, bool whole) {
|
|
output_surface_for_each_surface(output, surface, ox, oy,
|
|
damage_surface_iterator, &whole);
|
|
}
|
|
|
|
void output_damage_from_view(struct sway_output *output,
|
|
struct sway_view *view) {
|
|
if (!view_is_visible(view)) {
|
|
return;
|
|
}
|
|
bool whole = false;
|
|
output_view_for_each_surface(output, view, damage_surface_iterator, &whole);
|
|
}
|
|
|
|
// Expecting an unscaled box in layout coordinates
|
|
void output_damage_box(struct sway_output *output, struct wlr_box *_box) {
|
|
struct wlr_box box;
|
|
memcpy(&box, _box, sizeof(struct wlr_box));
|
|
box.x -= output->lx;
|
|
box.y -= output->ly;
|
|
scale_box(&box, output->wlr_output->scale);
|
|
wlr_output_damage_add_box(output->damage, &box);
|
|
}
|
|
|
|
static void damage_child_views_iterator(struct sway_container *con,
|
|
void *data) {
|
|
if (!con->view || !view_is_visible(con->view)) {
|
|
return;
|
|
}
|
|
struct sway_output *output = data;
|
|
bool whole = true;
|
|
output_view_for_each_surface(output, con->view, damage_surface_iterator,
|
|
&whole);
|
|
}
|
|
|
|
void output_damage_whole_container(struct sway_output *output,
|
|
struct sway_container *con) {
|
|
// Pad the box by 1px, because the width is a double and might be a fraction
|
|
struct wlr_box box = {
|
|
.x = con->current.x - output->lx - 1,
|
|
.y = con->current.y - output->ly - 1,
|
|
.width = con->current.width + 2,
|
|
.height = con->current.height + 2,
|
|
};
|
|
scale_box(&box, output->wlr_output->scale);
|
|
wlr_output_damage_add_box(output->damage, &box);
|
|
// Damage subsurfaces as well, which may extend outside the box
|
|
if (con->view) {
|
|
damage_child_views_iterator(con, output);
|
|
} else {
|
|
container_for_each_child(con, damage_child_views_iterator, output);
|
|
}
|
|
}
|
|
|
|
static void damage_handle_destroy(struct wl_listener *listener, void *data) {
|
|
struct sway_output *output =
|
|
wl_container_of(listener, output, damage_destroy);
|
|
if (!output->enabled) {
|
|
return;
|
|
}
|
|
output_disable(output);
|
|
transaction_commit_dirty();
|
|
}
|
|
|
|
static void update_output_manager_config(struct sway_server *server) {
|
|
struct wlr_output_configuration_v1 *config =
|
|
wlr_output_configuration_v1_create();
|
|
|
|
struct sway_output *output;
|
|
wl_list_for_each(output, &root->all_outputs, link) {
|
|
if (output == root->noop_output) {
|
|
continue;
|
|
}
|
|
struct wlr_output_configuration_head_v1 *config_head =
|
|
wlr_output_configuration_head_v1_create(config, output->wlr_output);
|
|
struct wlr_box *output_box = wlr_output_layout_get_box(
|
|
root->output_layout, output->wlr_output);
|
|
// We mark the output enabled even if it is switched off by DPMS
|
|
config_head->state.enabled = output->enabled;
|
|
if (output_box) {
|
|
config_head->state.x = output_box->x;
|
|
config_head->state.y = output_box->y;
|
|
}
|
|
}
|
|
|
|
wlr_output_manager_v1_set_configuration(server->output_manager_v1, config);
|
|
}
|
|
|
|
static void handle_destroy(struct wl_listener *listener, void *data) {
|
|
struct sway_output *output = wl_container_of(listener, output, destroy);
|
|
struct sway_server *server = output->server;
|
|
wl_signal_emit(&output->events.destroy, output);
|
|
|
|
if (output->enabled) {
|
|
output_disable(output);
|
|
}
|
|
output_begin_destroy(output);
|
|
|
|
wl_list_remove(&output->destroy.link);
|
|
wl_list_remove(&output->mode.link);
|
|
wl_list_remove(&output->transform.link);
|
|
wl_list_remove(&output->scale.link);
|
|
wl_list_remove(&output->present.link);
|
|
wl_list_remove(&output->damage_destroy.link);
|
|
wl_list_remove(&output->damage_frame.link);
|
|
|
|
transaction_commit_dirty();
|
|
|
|
update_output_manager_config(server);
|
|
}
|
|
|
|
static void handle_mode(struct wl_listener *listener, void *data) {
|
|
struct sway_output *output = wl_container_of(listener, output, mode);
|
|
if (!output->configured && !output->enabled) {
|
|
struct output_config *oc = find_output_config(output);
|
|
if (output->wlr_output->current_mode != NULL &&
|
|
(!oc || oc->enabled)) {
|
|
// We want to enable this output, but it didn't work last time,
|
|
// possibly because we hadn't enough CRTCs. Try again now that the
|
|
// output has a mode.
|
|
sway_log(SWAY_DEBUG, "Output %s has gained a CRTC, "
|
|
"trying to enable it", output->wlr_output->name);
|
|
apply_output_config(oc, output);
|
|
}
|
|
return;
|
|
}
|
|
if (!output->enabled || !output->configured) {
|
|
return;
|
|
}
|
|
arrange_layers(output);
|
|
arrange_output(output);
|
|
transaction_commit_dirty();
|
|
|
|
update_output_manager_config(output->server);
|
|
}
|
|
|
|
static void handle_transform(struct wl_listener *listener, void *data) {
|
|
struct sway_output *output = wl_container_of(listener, output, transform);
|
|
if (!output->enabled || !output->configured) {
|
|
return;
|
|
}
|
|
arrange_layers(output);
|
|
arrange_output(output);
|
|
transaction_commit_dirty();
|
|
|
|
update_output_manager_config(output->server);
|
|
}
|
|
|
|
static void update_textures(struct sway_container *con, void *data) {
|
|
container_update_title_textures(con);
|
|
container_update_marks_textures(con);
|
|
}
|
|
|
|
static void handle_scale(struct wl_listener *listener, void *data) {
|
|
struct sway_output *output = wl_container_of(listener, output, scale);
|
|
if (!output->enabled || !output->configured) {
|
|
return;
|
|
}
|
|
arrange_layers(output);
|
|
output_for_each_container(output, update_textures, NULL);
|
|
arrange_output(output);
|
|
transaction_commit_dirty();
|
|
|
|
update_output_manager_config(output->server);
|
|
}
|
|
|
|
static void send_presented_iterator(struct sway_output *output,
|
|
struct wlr_surface *surface, struct wlr_box *box, float rotation,
|
|
void *data) {
|
|
struct wlr_presentation_event *event = data;
|
|
wlr_presentation_send_surface_presented(server.presentation,
|
|
surface, event);
|
|
}
|
|
|
|
static void handle_present(struct wl_listener *listener, void *data) {
|
|
struct sway_output *output = wl_container_of(listener, output, present);
|
|
struct wlr_output_event_present *output_event = data;
|
|
|
|
if (!output->enabled) {
|
|
return;
|
|
}
|
|
|
|
struct wlr_presentation_event event = {
|
|
.output = output->wlr_output,
|
|
.tv_sec = (uint64_t)output_event->when->tv_sec,
|
|
.tv_nsec = (uint32_t)output_event->when->tv_nsec,
|
|
.refresh = (uint32_t)output_event->refresh,
|
|
.seq = (uint64_t)output_event->seq,
|
|
.flags = output_event->flags,
|
|
};
|
|
output_for_each_surface(output, send_presented_iterator, &event);
|
|
}
|
|
|
|
void handle_new_output(struct wl_listener *listener, void *data) {
|
|
struct sway_server *server = wl_container_of(listener, server, new_output);
|
|
struct wlr_output *wlr_output = data;
|
|
sway_log(SWAY_DEBUG, "New output %p: %s", wlr_output, wlr_output->name);
|
|
|
|
struct sway_output *output = output_create(wlr_output);
|
|
if (!output) {
|
|
return;
|
|
}
|
|
output->server = server;
|
|
output->damage = wlr_output_damage_create(wlr_output);
|
|
|
|
wl_signal_add(&wlr_output->events.destroy, &output->destroy);
|
|
output->destroy.notify = handle_destroy;
|
|
wl_signal_add(&wlr_output->events.mode, &output->mode);
|
|
output->mode.notify = handle_mode;
|
|
wl_signal_add(&wlr_output->events.transform, &output->transform);
|
|
output->transform.notify = handle_transform;
|
|
wl_signal_add(&wlr_output->events.scale, &output->scale);
|
|
output->scale.notify = handle_scale;
|
|
wl_signal_add(&wlr_output->events.present, &output->present);
|
|
output->present.notify = handle_present;
|
|
wl_signal_add(&output->damage->events.frame, &output->damage_frame);
|
|
output->damage_frame.notify = damage_handle_frame;
|
|
wl_signal_add(&output->damage->events.destroy, &output->damage_destroy);
|
|
output->damage_destroy.notify = damage_handle_destroy;
|
|
|
|
struct output_config *oc = find_output_config(output);
|
|
if (!oc || oc->enabled) {
|
|
output_enable(output, oc);
|
|
} else {
|
|
wlr_output_enable(output->wlr_output, false);
|
|
}
|
|
|
|
transaction_commit_dirty();
|
|
|
|
update_output_manager_config(server);
|
|
}
|
|
|
|
void handle_output_manager_apply(struct wl_listener *listener, void *data) {
|
|
struct sway_server *server =
|
|
wl_container_of(listener, server, output_manager_apply);
|
|
struct wlr_output_configuration_v1 *config = data;
|
|
|
|
struct wlr_output_configuration_head_v1 *config_head;
|
|
// First disable outputs we need to disable
|
|
bool ok = true;
|
|
wl_list_for_each(config_head, &config->heads, link) {
|
|
struct wlr_output *wlr_output = config_head->state.output;
|
|
struct sway_output *output = wlr_output->data;
|
|
if (!output->enabled || config_head->state.enabled) {
|
|
continue;
|
|
}
|
|
struct output_config *oc = new_output_config(output->wlr_output->name);
|
|
oc->enabled = false;
|
|
|
|
oc = store_output_config(oc);
|
|
ok &= apply_output_config(oc, output);
|
|
}
|
|
|
|
// Then enable outputs that need to
|
|
wl_list_for_each(config_head, &config->heads, link) {
|
|
struct wlr_output *wlr_output = config_head->state.output;
|
|
struct sway_output *output = wlr_output->data;
|
|
if (!config_head->state.enabled) {
|
|
continue;
|
|
}
|
|
struct output_config *oc = new_output_config(output->wlr_output->name);
|
|
oc->enabled = true;
|
|
if (config_head->state.mode != NULL) {
|
|
struct wlr_output_mode *mode = config_head->state.mode;
|
|
oc->width = mode->width;
|
|
oc->height = mode->height;
|
|
oc->refresh_rate = mode->refresh;
|
|
} else {
|
|
oc->width = config_head->state.custom_mode.width;
|
|
oc->height = config_head->state.custom_mode.height;
|
|
oc->refresh_rate = config_head->state.custom_mode.refresh;
|
|
}
|
|
oc->x = config_head->state.x;
|
|
oc->y = config_head->state.y;
|
|
oc->transform = config_head->state.transform;
|
|
oc->scale = config_head->state.scale;
|
|
|
|
oc = store_output_config(oc);
|
|
ok &= apply_output_config(oc, output);
|
|
}
|
|
|
|
if (ok) {
|
|
wlr_output_configuration_v1_send_succeeded(config);
|
|
} else {
|
|
wlr_output_configuration_v1_send_failed(config);
|
|
}
|
|
wlr_output_configuration_v1_destroy(config);
|
|
|
|
update_output_manager_config(server);
|
|
}
|
|
|
|
void handle_output_manager_test(struct wl_listener *listener, void *data) {
|
|
struct wlr_output_configuration_v1 *config = data;
|
|
|
|
// TODO: implement test-only mode
|
|
wlr_output_configuration_v1_send_succeeded(config);
|
|
wlr_output_configuration_v1_destroy(config);
|
|
}
|