2021-09-01 19:05:18 +02:00
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#define _POSIX_C_SOURCE 200809L
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2020-06-01 19:48:39 +02:00
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#include <assert.h>
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2021-09-01 19:05:18 +02:00
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#include <fcntl.h>
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2020-06-01 19:48:39 +02:00
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#include <stdlib.h>
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2021-09-01 19:05:18 +02:00
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#include <unistd.h>
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2021-04-23 23:06:21 +02:00
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#include <wlr/util/log.h>
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#include <xf86drm.h>
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#include "backend/backend.h"
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2021-08-25 09:33:19 +02:00
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#include "render/allocator/allocator.h"
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#include "render/allocator/drm_dumb.h"
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#include "render/allocator/gbm.h"
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#include "render/allocator/shm.h"
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2021-04-23 23:06:21 +02:00
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#include "render/wlr_renderer.h"
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2020-06-01 19:48:39 +02:00
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void wlr_allocator_init(struct wlr_allocator *alloc,
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2021-05-31 20:16:32 +02:00
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const struct wlr_allocator_interface *impl, uint32_t buffer_caps) {
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2020-06-01 19:48:39 +02:00
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assert(impl && impl->destroy && impl->create_buffer);
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alloc->impl = impl;
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2021-05-31 20:16:32 +02:00
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alloc->buffer_caps = buffer_caps;
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2020-06-01 19:48:39 +02:00
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wl_signal_init(&alloc->events.destroy);
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}
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2021-09-01 19:05:18 +02:00
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/* Re-open the DRM node to avoid GEM handle ref'counting issues. See:
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* https://gitlab.freedesktop.org/mesa/drm/-/merge_requests/110
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* TODO: don't assume we have the permission to just open the DRM node,
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* find another way to re-open it.
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*/
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static int reopen_drm_node(int drm_fd) {
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char *name = drmGetDeviceNameFromFd2(drm_fd);
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if (name == NULL) {
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wlr_log(WLR_ERROR, "drmGetDeviceNameFromFd2 failed");
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return -1;
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}
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int new_fd = open(name, O_RDWR | O_CLOEXEC);
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if (new_fd < 0) {
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wlr_log_errno(WLR_ERROR, "Failed to open DRM node '%s'", name);
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2021-09-03 10:03:27 +02:00
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free(name);
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return -1;
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2021-09-01 19:05:18 +02:00
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}
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2021-09-03 10:03:27 +02:00
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2021-09-01 19:05:18 +02:00
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free(name);
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2021-09-03 10:03:27 +02:00
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// If we're using a DRM primary node (e.g. because we're running under the
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// DRM backend, or because we're on split render/display machine), we need
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// to use the legacy DRM authentication mechanism to have the permission to
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// manipulate buffers.
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if (drmGetNodeTypeFromFd(new_fd) == DRM_NODE_PRIMARY) {
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drm_magic_t magic;
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if (drmGetMagic(new_fd, &magic) < 0) {
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wlr_log_errno(WLR_ERROR, "drmGetMagic failed");
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close(new_fd);
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return -1;
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}
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if (drmAuthMagic(drm_fd, magic) < 0) {
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wlr_log_errno(WLR_ERROR, "drmAuthMagic failed");
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close(new_fd);
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return -1;
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}
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}
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2021-09-01 19:05:18 +02:00
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return new_fd;
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}
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2021-04-29 09:48:33 +02:00
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struct wlr_allocator *allocator_autocreate_with_drm_fd(
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struct wlr_backend *backend, struct wlr_renderer *renderer,
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int drm_fd) {
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2021-04-23 23:06:21 +02:00
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uint32_t backend_caps = backend_get_buffer_caps(backend);
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uint32_t renderer_caps = renderer_get_render_buffer_caps(renderer);
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struct wlr_allocator *alloc = NULL;
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uint32_t gbm_caps = WLR_BUFFER_CAP_DMABUF;
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if ((backend_caps & gbm_caps) && (renderer_caps & gbm_caps)
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2021-09-01 19:05:18 +02:00
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&& drm_fd >= 0) {
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2021-04-23 23:06:21 +02:00
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wlr_log(WLR_DEBUG, "Trying to create gbm allocator");
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2021-09-01 19:05:18 +02:00
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int gbm_fd = reopen_drm_node(drm_fd);
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if (gbm_fd < 0) {
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return NULL;
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}
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if ((alloc = wlr_gbm_allocator_create(gbm_fd)) != NULL) {
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2021-04-23 23:06:21 +02:00
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return alloc;
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}
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2021-09-01 19:05:18 +02:00
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close(gbm_fd);
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2021-04-23 23:06:21 +02:00
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wlr_log(WLR_DEBUG, "Failed to create gbm allocator");
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}
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uint32_t shm_caps = WLR_BUFFER_CAP_SHM | WLR_BUFFER_CAP_DATA_PTR;
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if ((backend_caps & shm_caps) && (renderer_caps & shm_caps)) {
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wlr_log(WLR_DEBUG, "Trying to create shm allocator");
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if ((alloc = wlr_shm_allocator_create()) != NULL) {
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return alloc;
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}
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wlr_log(WLR_DEBUG, "Failed to create shm allocator");
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}
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2021-01-28 04:10:59 +01:00
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uint32_t drm_caps = WLR_BUFFER_CAP_DMABUF | WLR_BUFFER_CAP_DATA_PTR;
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if ((backend_caps & drm_caps) && (renderer_caps & drm_caps)
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2021-09-01 19:05:18 +02:00
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&& drm_fd >= 0 && drmIsMaster(drm_fd)) {
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2021-01-28 04:10:59 +01:00
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wlr_log(WLR_DEBUG, "Trying to create drm dumb allocator");
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2021-09-01 19:05:18 +02:00
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int dumb_fd = reopen_drm_node(drm_fd);
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if (dumb_fd < 0) {
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return NULL;
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}
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if ((alloc = wlr_drm_dumb_allocator_create(dumb_fd)) != NULL) {
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2021-01-28 04:10:59 +01:00
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return alloc;
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}
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2021-09-01 19:05:18 +02:00
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close(dumb_fd);
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2021-01-28 04:10:59 +01:00
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wlr_log(WLR_DEBUG, "Failed to create drm dumb allocator");
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}
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2021-04-23 23:06:21 +02:00
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wlr_log(WLR_ERROR, "Failed to create allocator");
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return NULL;
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}
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2021-04-29 09:48:33 +02:00
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struct wlr_allocator *wlr_allocator_autocreate(struct wlr_backend *backend,
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struct wlr_renderer *renderer) {
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// Note, drm_fd may be negative if unavailable
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int drm_fd = wlr_backend_get_drm_fd(backend);
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return allocator_autocreate_with_drm_fd(backend, renderer, drm_fd);
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}
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2020-06-01 19:48:39 +02:00
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void wlr_allocator_destroy(struct wlr_allocator *alloc) {
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2020-12-04 15:35:59 +01:00
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if (alloc == NULL) {
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return;
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}
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2020-06-01 19:48:39 +02:00
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wl_signal_emit(&alloc->events.destroy, NULL);
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alloc->impl->destroy(alloc);
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}
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struct wlr_buffer *wlr_allocator_create_buffer(struct wlr_allocator *alloc,
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int width, int height, const struct wlr_drm_format *format) {
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2021-05-31 20:16:32 +02:00
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struct wlr_buffer *buffer =
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alloc->impl->create_buffer(alloc, width, height, format);
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if (buffer == NULL) {
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return NULL;
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}
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if (alloc->buffer_caps & WLR_BUFFER_CAP_DATA_PTR) {
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2021-06-02 17:02:28 +02:00
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assert(buffer->impl->begin_data_ptr_access &&
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buffer->impl->end_data_ptr_access);
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2021-05-31 20:16:32 +02:00
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}
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if (alloc->buffer_caps & WLR_BUFFER_CAP_DMABUF) {
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assert(buffer->impl->get_dmabuf);
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}
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if (alloc->buffer_caps & WLR_BUFFER_CAP_SHM) {
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assert(buffer->impl->get_shm);
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}
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return buffer;
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2020-06-01 19:48:39 +02:00
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}
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