mirror of
https://gitlab.freedesktop.org/wlroots/wlroots.git
synced 2024-11-22 07:02:28 +00:00
1dd05437bf
We create a renderer for the sole purpose of blitting buffers from a primary renderer that we might not be able to scan-out from. If we end up with the pixman renderer, it either won't work becuase it cannot import dmabufs from the primary renderer, or won't have any effect because the primary renderer already uses dumb buffers. We test for DMA-BUF capabilities specifically to make it clear what our interest is, rather than focusing too much on the pixman renderer.
198 lines
5.5 KiB
C
198 lines
5.5 KiB
C
#include <assert.h>
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#include <drm_fourcc.h>
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#include <wlr/render/allocator.h>
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#include <wlr/render/drm_syncobj.h>
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#include <wlr/render/swapchain.h>
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#include <wlr/render/wlr_renderer.h>
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#include <wlr/util/log.h>
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#include "backend/drm/drm.h"
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#include "backend/drm/fb.h"
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#include "backend/drm/renderer.h"
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#include "backend/backend.h"
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#include "render/drm_format_set.h"
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#include "render/pixel_format.h"
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#include "render/wlr_renderer.h"
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bool init_drm_renderer(struct wlr_drm_backend *drm,
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struct wlr_drm_renderer *renderer) {
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renderer->wlr_rend = renderer_autocreate_with_drm_fd(drm->fd);
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if (!renderer->wlr_rend) {
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wlr_log(WLR_ERROR, "Failed to create renderer");
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return false;
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}
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if (wlr_renderer_get_texture_formats(renderer->wlr_rend, WLR_BUFFER_CAP_DMABUF) == NULL) {
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wlr_log(WLR_ERROR, "Renderer did not support importing DMA-BUFs");
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wlr_renderer_destroy(renderer->wlr_rend);
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renderer->wlr_rend = NULL;
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return false;
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}
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renderer->allocator = wlr_allocator_autocreate(&drm->backend, renderer->wlr_rend);
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if (renderer->allocator == NULL) {
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wlr_log(WLR_ERROR, "Failed to create allocator");
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wlr_renderer_destroy(renderer->wlr_rend);
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renderer->wlr_rend = NULL;
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return false;
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}
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return true;
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}
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void finish_drm_renderer(struct wlr_drm_renderer *renderer) {
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if (!renderer) {
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return;
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}
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wlr_allocator_destroy(renderer->allocator);
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wlr_renderer_destroy(renderer->wlr_rend);
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}
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void finish_drm_surface(struct wlr_drm_surface *surf) {
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if (!surf || !surf->renderer) {
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return;
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}
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wlr_drm_syncobj_timeline_unref(surf->timeline);
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wlr_swapchain_destroy(surf->swapchain);
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*surf = (struct wlr_drm_surface){0};
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}
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bool init_drm_surface(struct wlr_drm_surface *surf,
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struct wlr_drm_renderer *renderer, int width, int height,
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const struct wlr_drm_format *drm_format) {
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if (surf->swapchain != NULL && surf->swapchain->width == width &&
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surf->swapchain->height == height) {
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return true;
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}
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finish_drm_surface(surf);
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surf->swapchain = wlr_swapchain_create(renderer->allocator, width, height,
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drm_format);
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if (surf->swapchain == NULL) {
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wlr_log(WLR_ERROR, "Failed to create swapchain");
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return false;
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}
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int drm_fd = wlr_renderer_get_drm_fd(renderer->wlr_rend);
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if (renderer->wlr_rend->features.timeline && drm_fd >= 0) {
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surf->timeline = wlr_drm_syncobj_timeline_create(drm_fd);
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if (surf->timeline == NULL) {
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finish_drm_surface(surf);
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wlr_log(WLR_ERROR, "Failed to create DRM syncobj timeline");
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return false;
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}
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}
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surf->renderer = renderer;
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return true;
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}
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struct wlr_buffer *drm_surface_blit(struct wlr_drm_surface *surf,
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struct wlr_buffer *buffer,
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struct wlr_drm_syncobj_timeline *wait_timeline, uint64_t wait_point) {
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struct wlr_renderer *renderer = surf->renderer->wlr_rend;
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if (surf->swapchain->width != buffer->width ||
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surf->swapchain->height != buffer->height) {
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wlr_log(WLR_ERROR, "Surface size doesn't match buffer size");
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return NULL;
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}
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struct wlr_texture *tex = wlr_texture_from_buffer(renderer, buffer);
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if (tex == NULL) {
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wlr_log(WLR_ERROR, "Failed to import source buffer into multi-GPU renderer");
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return NULL;
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}
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struct wlr_buffer *dst = wlr_swapchain_acquire(surf->swapchain);
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if (!dst) {
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wlr_log(WLR_ERROR, "Failed to acquire multi-GPU swapchain buffer");
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goto error_tex;
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}
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surf->point++;
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const struct wlr_buffer_pass_options pass_options = {
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.signal_timeline = surf->timeline,
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.signal_point = surf->point,
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};
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struct wlr_render_pass *pass = wlr_renderer_begin_buffer_pass(renderer, dst, &pass_options);
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if (pass == NULL) {
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wlr_log(WLR_ERROR, "Failed to begin render pass with multi-GPU destination buffer");
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goto error_dst;
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}
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wlr_render_pass_add_texture(pass, &(struct wlr_render_texture_options){
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.texture = tex,
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.blend_mode = WLR_RENDER_BLEND_MODE_NONE,
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.wait_timeline = wait_timeline,
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.wait_point = wait_point,
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});
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if (!wlr_render_pass_submit(pass)) {
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wlr_log(WLR_ERROR, "Failed to submit multi-GPU render pass");
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goto error_dst;
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}
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wlr_texture_destroy(tex);
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return dst;
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error_dst:
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wlr_buffer_unlock(dst);
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error_tex:
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wlr_texture_destroy(tex);
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return NULL;
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}
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bool drm_plane_pick_render_format(struct wlr_drm_plane *plane,
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struct wlr_drm_format *fmt, struct wlr_drm_renderer *renderer) {
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const struct wlr_drm_format_set *render_formats =
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wlr_renderer_get_render_formats(renderer->wlr_rend);
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if (render_formats == NULL) {
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wlr_log(WLR_ERROR, "Failed to get render formats");
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return false;
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}
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const struct wlr_drm_format_set *plane_formats = &plane->formats;
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uint32_t format = DRM_FORMAT_ARGB8888;
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if (!wlr_drm_format_set_get(&plane->formats, format)) {
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const struct wlr_pixel_format_info *format_info =
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drm_get_pixel_format_info(format);
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assert(format_info != NULL &&
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format_info->opaque_substitute != DRM_FORMAT_INVALID);
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format = format_info->opaque_substitute;
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}
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const struct wlr_drm_format *render_format =
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wlr_drm_format_set_get(render_formats, format);
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if (render_format == NULL) {
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wlr_log(WLR_DEBUG, "Renderer doesn't support format 0x%"PRIX32, format);
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return false;
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}
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const struct wlr_drm_format *plane_format =
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wlr_drm_format_set_get(plane_formats, format);
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if (plane_format == NULL) {
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wlr_log(WLR_DEBUG, "Plane %"PRIu32" doesn't support format 0x%"PRIX32,
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plane->id, format);
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return false;
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}
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if (!wlr_drm_format_intersect(fmt, plane_format, render_format)) {
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wlr_log(WLR_DEBUG, "Failed to intersect plane and render "
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"modifiers for format 0x%"PRIX32, format);
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return false;
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}
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if (fmt->len == 0) {
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wlr_drm_format_finish(fmt);
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wlr_log(WLR_DEBUG, "Failed to find matching plane and renderer modifiers");
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return false;
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}
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return true;
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}
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