Add hidpi support to swaylock
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parent
f3f3e642bd
commit
61b2e71c0c
35
main.c
35
main.c
@ -56,12 +56,42 @@ static const struct zwlr_layer_surface_v1_listener layer_surface_listener = {
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.closed = layer_surface_closed,
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};
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static void output_geometry(void *data, struct wl_output *output, int32_t x,
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int32_t y, int32_t width_mm, int32_t height_mm, int32_t subpixel,
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const char *make, const char *model, int32_t transform) {
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// Who cares
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}
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static void output_mode(void *data, struct wl_output *output, uint32_t flags,
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int32_t width, int32_t height, int32_t refresh) {
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// Who cares
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}
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static void output_done(void *data, struct wl_output *output) {
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// Who cares
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}
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static void output_scale(void *data, struct wl_output *output, int32_t factor) {
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struct swaylock_surface *surface = data;
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surface->scale = factor;
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if (surface->state->run_display) {
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render_frames(surface->state);
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}
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}
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struct wl_output_listener output_listener = {
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.geometry = output_geometry,
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.mode = output_mode,
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.done = output_done,
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.scale = output_scale,
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};
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static void handle_global(void *data, struct wl_registry *registry,
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uint32_t name, const char *interface, uint32_t version) {
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struct swaylock_state *state = data;
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if (strcmp(interface, wl_compositor_interface.name) == 0) {
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state->compositor = wl_registry_bind(registry, name,
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&wl_compositor_interface, 1);
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&wl_compositor_interface, 3);
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} else if (strcmp(interface, wl_shm_interface.name) == 0) {
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state->shm = wl_registry_bind(registry, name,
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&wl_shm_interface, 1);
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@ -80,7 +110,8 @@ static void handle_global(void *data, struct wl_registry *registry,
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calloc(1, sizeof(struct swaylock_surface));
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surface->state = state;
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surface->output = wl_registry_bind(registry, name,
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&wl_output_interface, 1);
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&wl_output_interface, 3);
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wl_output_add_listener(surface->output, &output_listener, surface);
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wl_list_insert(&state->surfaces, &surface->link);
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}
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}
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41
render.c
41
render.c
@ -9,28 +9,32 @@
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void render_frame(struct swaylock_surface *surface) {
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struct swaylock_state *state = surface->state;
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surface->current_buffer = get_next_buffer(state->shm,
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surface->buffers, surface->width, surface->height);
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surface->buffers,
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surface->width * surface->scale,
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surface->height * surface->scale);
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cairo_t *cairo = surface->current_buffer->cairo;
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cairo_identity_matrix(cairo);
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int buffer_width = surface->width * surface->scale;
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int buffer_height = surface->height * surface->scale;
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if (state->args.mode == BACKGROUND_MODE_SOLID_COLOR) {
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cairo_set_source_u32(cairo, state->args.color);
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cairo_paint(cairo);
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} else {
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// TODO: hidpi
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render_background_image(cairo, surface->image,
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state->args.mode, surface->width, surface->height, 1);
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state->args.mode, buffer_width, buffer_height);
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}
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cairo_identity_matrix(cairo);
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const int ARC_RADIUS = 50;
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const int ARC_THICKNESS = 10;
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const float TYPE_INDICATOR_RANGE = M_PI / 3.0f;
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const float TYPE_INDICATOR_BORDER_THICKNESS = M_PI / 128.0f;
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int ARC_RADIUS = 50 * surface->scale;
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int ARC_THICKNESS = 10 * surface->scale;
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float TYPE_INDICATOR_RANGE = M_PI / 3.0f;
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float TYPE_INDICATOR_BORDER_THICKNESS = M_PI / 128.0f * surface->scale;
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if (state->args.show_indicator && state->auth_state != AUTH_STATE_IDLE) {
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// Draw circle
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cairo_set_line_width(cairo, ARC_THICKNESS);
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cairo_arc(cairo, surface->width / 2, surface->height / 2,
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ARC_RADIUS, 0, 2 * M_PI);
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cairo_arc(cairo, buffer_width / 2, buffer_height / 2, ARC_RADIUS, 0, 2 * M_PI);
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switch (state->auth_state) {
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case AUTH_STATE_INPUT:
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case AUTH_STATE_BACKSPACE: {
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@ -74,9 +78,9 @@ void render_frame(struct swaylock_surface *surface) {
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cairo_text_extents_t extents;
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double x, y;
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cairo_text_extents(cairo, text, &extents);
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x = (surface->width / 2) -
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x = (buffer_width / 2) -
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(extents.width / 2 + extents.x_bearing);
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y = (surface->height / 2) -
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y = (buffer_height / 2) -
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(extents.height / 2 + extents.y_bearing);
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cairo_move_to(cairo, x, y);
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@ -91,7 +95,7 @@ void render_frame(struct swaylock_surface *surface) {
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static double highlight_start = 0;
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highlight_start +=
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(rand() % (int)(M_PI * 100)) / 100.0 + M_PI * 0.5;
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cairo_arc(cairo, surface->width / 2, surface->height / 2,
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cairo_arc(cairo, buffer_width / 2, buffer_height / 2,
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ARC_RADIUS, highlight_start,
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highlight_start + TYPE_INDICATOR_RANGE);
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if (state->auth_state == AUTH_STATE_INPUT) {
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@ -103,12 +107,12 @@ void render_frame(struct swaylock_surface *surface) {
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// Draw borders
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cairo_set_source_rgb(cairo, 0, 0, 0);
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cairo_arc(cairo, surface->width / 2, surface->height / 2,
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cairo_arc(cairo, buffer_width / 2, buffer_height / 2,
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ARC_RADIUS, highlight_start,
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highlight_start + TYPE_INDICATOR_BORDER_THICKNESS);
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cairo_stroke(cairo);
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cairo_arc(cairo, surface->width / 2, surface->height / 2,
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cairo_arc(cairo, buffer_width / 2, buffer_height / 2,
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ARC_RADIUS, highlight_start + TYPE_INDICATOR_RANGE,
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highlight_start + TYPE_INDICATOR_RANGE +
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TYPE_INDICATOR_BORDER_THICKNESS);
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@ -117,17 +121,18 @@ void render_frame(struct swaylock_surface *surface) {
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// Draw inner + outer border of the circle
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cairo_set_source_rgb(cairo, 0, 0, 0);
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cairo_set_line_width(cairo, 2.0);
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cairo_arc(cairo, surface->width / 2, surface->height / 2,
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cairo_set_line_width(cairo, 2.0 * surface->scale);
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cairo_arc(cairo, buffer_width / 2, buffer_height / 2,
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ARC_RADIUS - ARC_THICKNESS / 2, 0, 2 * M_PI);
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cairo_stroke(cairo);
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cairo_arc(cairo, surface->width / 2, surface->height / 2,
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cairo_arc(cairo, buffer_width / 2, buffer_height / 2,
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ARC_RADIUS + ARC_THICKNESS / 2, 0, 2 * M_PI);
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cairo_stroke(cairo);
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}
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wl_surface_set_buffer_scale(surface->surface, surface->scale);
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wl_surface_attach(surface->surface, surface->current_buffer->buffer, 0, 0);
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wl_surface_damage(surface->surface, 0, 0, surface->width, surface->height);
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wl_surface_damage(surface->surface, 0, 0, buffer_width, buffer_height);
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wl_surface_commit(surface->surface);
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wl_display_roundtrip(state->display);
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}
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