mirror of
https://github.com/hyprwm/wlroots-hyprland.git
synced 2024-11-26 06:35:58 +01:00
Filled out more wlr_output fields.
This commit is contained in:
parent
d79f578022
commit
632a7acb03
5 changed files with 107 additions and 25 deletions
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@ -150,14 +150,14 @@ static bool display_init_renderer(struct wlr_drm_renderer *renderer,
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output->gbm = gbm_surface_create(renderer->gbm, mode->width,
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output->gbm = gbm_surface_create(renderer->gbm, mode->width,
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mode->height, GBM_FORMAT_XRGB8888, GBM_BO_USE_SCANOUT | GBM_BO_USE_RENDERING);
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mode->height, GBM_FORMAT_XRGB8888, GBM_BO_USE_SCANOUT | GBM_BO_USE_RENDERING);
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if (!output->gbm) {
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if (!output->gbm) {
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wlr_log(L_ERROR, "Failed to create GBM surface for %s: %s", output->name,
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wlr_log(L_ERROR, "Failed to create GBM surface for %s: %s", output->wlr_output->name,
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strerror(errno));
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strerror(errno));
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return false;
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return false;
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}
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}
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output->egl = wlr_egl_create_surface(&renderer->egl, output->gbm);
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output->egl = wlr_egl_create_surface(&renderer->egl, output->gbm);
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if (output->egl == EGL_NO_SURFACE) {
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if (output->egl == EGL_NO_SURFACE) {
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wlr_log(L_ERROR, "Failed to create EGL surface for %s", output->name);
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wlr_log(L_ERROR, "Failed to create EGL surface for %s", output->wlr_output->name);
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return false;
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return false;
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}
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}
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@ -183,7 +183,7 @@ static bool wlr_drm_output_set_mode(struct wlr_output_state *output,
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struct wlr_backend_state *state =
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struct wlr_backend_state *state =
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wl_container_of(output->renderer, state, renderer);
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wl_container_of(output->renderer, state, renderer);
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wlr_log(L_INFO, "Modesetting '%s' with '%ux%u@%u mHz'", output->name,
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wlr_log(L_INFO, "Modesetting '%s' with '%ux%u@%u mHz'", output->wlr_output->name,
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mode->width, mode->height, mode->refresh);
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mode->width, mode->height, mode->refresh);
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drmModeConnector *conn = drmModeGetConnector(state->fd, output->connector);
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drmModeConnector *conn = drmModeGetConnector(state->fd, output->connector);
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@ -193,7 +193,7 @@ static bool wlr_drm_output_set_mode(struct wlr_output_state *output,
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}
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}
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if (conn->connection != DRM_MODE_CONNECTED || conn->count_modes == 0) {
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if (conn->connection != DRM_MODE_CONNECTED || conn->count_modes == 0) {
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wlr_log(L_ERROR, "%s is not connected", output->name);
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wlr_log(L_ERROR, "%s is not connected", output->wlr_output->name);
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goto error;
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goto error;
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}
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}
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@ -228,7 +228,7 @@ static bool wlr_drm_output_set_mode(struct wlr_output_state *output,
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drmModeFreeResources(res);
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drmModeFreeResources(res);
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if (!success) {
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if (!success) {
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wlr_log(L_ERROR, "Failed to find CRTC for %s", output->name);
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wlr_log(L_ERROR, "Failed to find CRTC for %s", output->wlr_output->name);
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goto error;
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goto error;
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}
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}
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@ -238,7 +238,7 @@ static bool wlr_drm_output_set_mode(struct wlr_output_state *output,
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output->wlr_output->current_mode = mode;
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output->wlr_output->current_mode = mode;
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if (!display_init_renderer(&state->renderer, output)) {
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if (!display_init_renderer(&state->renderer, output)) {
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wlr_log(L_ERROR, "Failed to initalise renderer for %s", output->name);
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wlr_log(L_ERROR, "Failed to initalise renderer for %s", output->wlr_output->name);
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goto error;
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goto error;
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}
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}
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@ -298,6 +298,87 @@ static int32_t calculate_refresh_rate(drmModeModeInfo *mode) {
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return refresh;
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return refresh;
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}
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}
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// Constructed from http://edid.tv/manufacturer
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const char *get_manufacturer(uint16_t id) {
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#define ID(a, b, c) ((a & 0x1f) << 10) | ((b & 0x1f) << 5) | (c & 0x1f)
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switch (id) {
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case ID('A', 'A', 'A'): return "Avolites Ltd";
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case ID('A', 'C', 'I'): return "Ancor Communications Inc";
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case ID('A', 'C', 'R'): return "Acer Technologies";
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case ID('A', 'P', 'P'): return "Apple Computer Inc";
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case ID('B', 'N', 'O'): return "Bang & Olufsen";
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case ID('C', 'M', 'N'): return "Chimei Innolux Corporation";
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case ID('C', 'M', 'O'): return "Chi Mei Optoelectronics corp.";
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case ID('C', 'R', 'O'): return "Extraordinary Technologies PTY Limited";
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case ID('D', 'E', 'L'): return "Dell Inc.";
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case ID('D', 'O', 'N'): return "DENON, Ltd.";
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case ID('E', 'N', 'C'): return "Eizo Nanao Corporation";
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case ID('E', 'P', 'H'): return "Epiphan Systems Inc.";
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case ID('F', 'U', 'S'): return "Fujitsu Siemens Computers GmbH";
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case ID('G', 'S', 'M'): return "Goldstar Company Ltd";
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case ID('H', 'I', 'Q'): return "Kaohsiung Opto Electronics Americas, Inc.";
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case ID('H', 'S', 'D'): return "HannStar Display Corp";
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case ID('H', 'W', 'P'): return "Hewlett Packard";
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case ID('I', 'N', 'T'): return "Interphase Corporation";
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case ID('I', 'V', 'M'): return "Iiyama North America";
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case ID('L', 'E', 'N'): return "Lenovo Group Limited";
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case ID('M', 'A', 'X'): return "Rogen Tech Distribution Inc";
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case ID('M', 'E', 'G'): return "Abeam Tech Ltd";
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case ID('M', 'E', 'I'): return "Panasonic Industry Company";
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case ID('M', 'T', 'C'): return "Mars-Tech Corporation";
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case ID('M', 'T', 'X'): return "Matrox";
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case ID('N', 'E', 'C'): return "NEC Corporation";
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case ID('O', 'N', 'K'): return "ONKYO Corporation";
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case ID('O', 'R', 'N'): return "ORION ELECTRIC CO., LTD.";
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case ID('O', 'T', 'M'): return "Optoma Corporation";
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case ID('O', 'V', 'R'): return "Oculus VR, Inc.";
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case ID('P', 'H', 'L'): return "Philips Consumer Electronics Company";
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case ID('P', 'I', 'O'): return "Pioneer Electronic Corporation";
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case ID('P', 'N', 'R'): return "Planar Systems, Inc.";
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case ID('Q', 'D', 'S'): return "Quanta Display Inc.";
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case ID('S', 'A', 'M'): return "Samsung Electric Company";
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case ID('S', 'E', 'C'): return "Seiko Epson Corporation";
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case ID('S', 'H', 'P'): return "Sharp Corporation";
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case ID('S', 'I', 'I'): return "Silicon Image, Inc.";
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case ID('S', 'N', 'Y'): return "Sony";
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case ID('T', 'O', 'P'): return "Orion Communications Co., Ltd.";
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case ID('T', 'S', 'B'): return "Toshiba America Info Systems Inc";
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case ID('T', 'S', 'T'): return "Transtream Inc";
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case ID('U', 'N', 'K'): return "Unknown";
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case ID('V', 'I', 'Z'): return "VIZIO, Inc";
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case ID('V', 'S', 'C'): return "ViewSonic Corporation";
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case ID('Y', 'M', 'H'): return "Yamaha Corporation";
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default: return "Unknown";
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}
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#undef ID
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}
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/* See https://en.wikipedia.org/wiki/Extended_Display_Identification_Data for layout of EDID data.
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* We don't parse the EDID properly. We just expect to receive valid data.
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*/
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static void parse_edid(struct wlr_output *restrict output, const uint8_t *restrict data) {
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uint32_t id = (data[8] << 8) | data[9];
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snprintf(output->make, sizeof(output->make), "%s", get_manufacturer(id));
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output->phys_width = ((data[68] & 0xf0) << 4) | data[66];
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output->phys_height = ((data[68] & 0x0f) << 8) | data[67];
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for (size_t i = 72; i <= 108; i += 18) {
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uint16_t flag = (data[i] << 8) | data[i + 1];
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if (flag == 0 && data[i + 3] == 0xFC) {
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sprintf(output->model, "%.13s", &data[i + 5]);
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// Monitor names are terminated by newline if they're too short
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char *nl = strchr(output->model, '\n');
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if (nl) {
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*nl = '\0';
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}
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break;
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}
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}
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}
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static void scan_property_ids(int fd, drmModeConnector *conn,
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static void scan_property_ids(int fd, drmModeConnector *conn,
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struct wlr_output_state *output) {
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struct wlr_output_state *output) {
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for (int i = 0; i < conn->count_props; ++i) {
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for (int i = 0; i < conn->count_props; ++i) {
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@ -306,16 +387,18 @@ static void scan_property_ids(int fd, drmModeConnector *conn,
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continue;
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continue;
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}
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}
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// I think this is guranteed to exist
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if (strcmp(prop->name, "DPMS") == 0) {
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if (strcmp(prop->name, "DPMS") == 0) {
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output->props.dpms = prop->prop_id;
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output->props.dpms = prop->prop_id;
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} else if (strcmp(prop->name, "EDID") == 0) {
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drmModePropertyBlobRes *edid = drmModeGetPropertyBlob(fd, conn->prop_values[i]);
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if (!edid) {
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drmModeFreeProperty(prop);
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continue;
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}
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/* There may be more properties we want to get,
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parse_edid(output->wlr_output, edid->data);
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* but since it's currently only this, we exit early
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*/
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drmModeFreeProperty(prop);
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drmModeFreePropertyBlob(edid);
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break;
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}
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}
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drmModeFreeProperty(prop);
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drmModeFreeProperty(prop);
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@ -363,7 +446,7 @@ void wlr_drm_scan_connectors(struct wlr_backend_state *state) {
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output->connector = id;
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output->connector = id;
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// TODO: Populate more wlr_output fields
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// TODO: Populate more wlr_output fields
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// TODO: Move this to wlr_output->name
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// TODO: Move this to wlr_output->name
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snprintf(output->name, sizeof(output->name), "%s-%"PRIu32,
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snprintf(wlr_output->name, sizeof(wlr_output->name), "%s-%"PRIu32,
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conn_name[conn->connector_type],
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conn_name[conn->connector_type],
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conn->connector_type_id);
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conn->connector_type_id);
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@ -376,7 +459,7 @@ void wlr_drm_scan_connectors(struct wlr_backend_state *state) {
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scan_property_ids(state->fd, conn, output);
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scan_property_ids(state->fd, conn, output);
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list_add(state->outputs, output);
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list_add(state->outputs, output);
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wlr_log(L_INFO, "Found display '%s'", output->name);
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wlr_log(L_INFO, "Found display '%s'", wlr_output->name);
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} else {
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} else {
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output = state->outputs->items[index];
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output = state->outputs->items[index];
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wlr_output = output->wlr_output;
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wlr_output = output->wlr_output;
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@ -386,7 +469,7 @@ void wlr_drm_scan_connectors(struct wlr_backend_state *state) {
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if (output->state == DRM_OUTPUT_DISCONNECTED &&
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if (output->state == DRM_OUTPUT_DISCONNECTED &&
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conn->connection == DRM_MODE_CONNECTED) {
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conn->connection == DRM_MODE_CONNECTED) {
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wlr_log(L_INFO, "'%s' connected", output->name);
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wlr_log(L_INFO, "'%s' connected", output->wlr_output->name);
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wlr_log(L_INFO, "Detected modes:");
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wlr_log(L_INFO, "Detected modes:");
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for (int i = 0; i < conn->count_modes; ++i) {
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for (int i = 0; i < conn->count_modes; ++i) {
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@ -407,12 +490,12 @@ void wlr_drm_scan_connectors(struct wlr_backend_state *state) {
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}
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}
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output->state = DRM_OUTPUT_NEEDS_MODESET;
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output->state = DRM_OUTPUT_NEEDS_MODESET;
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wlr_log(L_INFO, "Sending modesetting signal for '%s'", output->name);
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wlr_log(L_INFO, "Sending modesetting signal for '%s'", output->wlr_output->name);
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wl_signal_emit(&state->backend->events.output_add, wlr_output);
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wl_signal_emit(&state->backend->events.output_add, wlr_output);
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} else if (output->state == DRM_OUTPUT_CONNECTED &&
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} else if (output->state == DRM_OUTPUT_CONNECTED &&
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conn->connection != DRM_MODE_CONNECTED) {
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conn->connection != DRM_MODE_CONNECTED) {
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wlr_log(L_INFO, "'%s' disconnected", output->name);
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wlr_log(L_INFO, "'%s' disconnected", output->wlr_output->name);
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wlr_drm_output_cleanup(output, false);
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wlr_drm_output_cleanup(output, false);
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}
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}
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@ -487,7 +570,7 @@ void wlr_drm_output_cleanup(struct wlr_output_state *output, bool restore) {
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if (restore) {
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if (restore) {
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restore_output(output, renderer->fd);
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restore_output(output, renderer->fd);
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}
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}
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wlr_log(L_INFO, "Emmiting destruction signal for '%s'", output->name);
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wlr_log(L_INFO, "Emmiting destruction signal for '%s'", output->wlr_output->name);
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wl_signal_emit(&state->backend->events.output_remove, output->wlr_output);
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wl_signal_emit(&state->backend->events.output_remove, output->wlr_output);
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break;
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break;
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case DRM_OUTPUT_DISCONNECTED:
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case DRM_OUTPUT_DISCONNECTED:
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@ -2,6 +2,7 @@
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#include <stdio.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <stdlib.h>
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#include <time.h>
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#include <time.h>
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#include <inttypes.h>
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#include <wayland-server.h>
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#include <wayland-server.h>
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#include <GLES3/gl3.h>
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#include <GLES3/gl3.h>
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#include <wlr/backend.h>
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#include <wlr/backend.h>
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@ -54,6 +55,8 @@ void output_add(struct wl_listener *listener, void *data) {
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struct wlr_output *output = data;
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struct wlr_output *output = data;
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struct state *state = wl_container_of(listener, state, output_add);
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struct state *state = wl_container_of(listener, state, output_add);
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fprintf(stderr, "Output '%s' added\n", output->name);
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fprintf(stderr, "Output '%s' added\n", output->name);
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fprintf(stderr, "%s %s %"PRId32"mm x %"PRId32"mm\n", output->make, output->model,
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output->phys_width, output->phys_height);
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wlr_output_set_mode(output, output->modes->items[0]);
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wlr_output_set_mode(output, output->modes->items[0]);
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struct output_state *ostate = calloc(1, sizeof(struct output_state));
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struct output_state *ostate = calloc(1, sizeof(struct output_state));
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ostate->output = output;
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ostate->output = output;
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@ -34,7 +34,6 @@ struct wlr_output_state {
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struct wlr_output *wlr_output;
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struct wlr_output *wlr_output;
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enum wlr_drm_output_state state;
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enum wlr_drm_output_state state;
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uint32_t connector;
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uint32_t connector;
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char name[16];
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struct {
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struct {
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uint32_t dpms;
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uint32_t dpms;
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@ -22,11 +22,10 @@ struct wlr_output {
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struct wlr_output_state *state;
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struct wlr_output_state *state;
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uint32_t flags;
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uint32_t flags;
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char *name;
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char name[16];
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char *make;
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char make[48];
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char *model;
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char model[16];
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uint32_t scale;
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uint32_t scale;
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int32_t x, y;
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int32_t phys_width, phys_height; // mm
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int32_t phys_width, phys_height; // mm
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int32_t subpixel; // enum wl_output_subpixel
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int32_t subpixel; // enum wl_output_subpixel
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int32_t transform; // enum wl_output_transform
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int32_t transform; // enum wl_output_transform
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@ -17,8 +17,6 @@ struct wlr_output *wlr_output_create(struct wlr_output_impl *impl,
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void wlr_output_destroy(struct wlr_output *output) {
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void wlr_output_destroy(struct wlr_output *output) {
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if (!output) return;
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if (!output) return;
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output->impl->destroy(output->state);
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output->impl->destroy(output->state);
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if (output->make) free(output->make);
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if (output->model) free(output->model);
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for (size_t i = 0; output->modes && i < output->modes->length; ++i) {
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for (size_t i = 0; output->modes && i < output->modes->length; ++i) {
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free(output->modes->items[i]);
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free(output->modes->items[i]);
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}
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}
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