2018-02-20 12:30:18 +00:00
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#include "config.h"
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#include "hwdec.h"
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#include "libmpv_gpu.h"
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#include "video.h"
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#include "video/out/libmpv.h"
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static const struct libmpv_gpu_context_fns *context_backends[] = {
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#if HAVE_GL
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&libmpv_gpu_context_gl,
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#endif
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NULL
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};
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struct priv {
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struct libmpv_gpu_context *context;
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struct gl_video *renderer;
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};
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2018-04-15 10:31:07 +00:00
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struct native_resource_entry {
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const char *name; // ra_add_native_resource() internal name argument
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size_t size; // size of struct pointed to (0 for no copy)
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};
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static const struct native_resource_entry native_resource_map[] = {
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[MPV_RENDER_PARAM_X11_DISPLAY] = {
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.name = "x11",
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.size = 0,
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},
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[MPV_RENDER_PARAM_WL_DISPLAY] = {
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.name = "wl",
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.size = 0,
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},
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client API: add a new way to pass X11 Display etc. to render API
Hardware decoding things often need access to additional handles from
the windowing system, such as the X11 or Wayland display when using
vaapi. The opengl-cb had nothing dedicated for this, and used the weird
GL_MP_MPGetNativeDisplay GL extension (which was mpv specific and not
officially registered with OpenGL).
This was awkward, and a pain due to having to emulate GL context
behavior (like needing a TLS variable to store context for the pseudo GL
extension function). In addition (and not inherently due to this), we
could pass only one resource from mpv builtin context backends to
hwdecs. It was also all GL specific.
Replace this with a newer mechanism. It works for all RA backends, not
just GL. the API user can explicitly pass the objects at init time via
mpv_render_context_create(). Multiple resources are naturally possible.
The API uses MPV_RENDER_PARAM_* defines, but internally we use strings.
This is done for 2 reasons: 1. trying to leave libmpv and internal
mechanisms decoupled, 2. not having to add public API for some of the
internal resource types (especially D3D/GL interop stuff).
To remain sane, drop support for obscure half-working opengl-cb things,
like the DRM interop (was missing necessary things), the RPI window
thing (nobody used it), and obscure D3D interop things (not needed with
ANGLE, others were undocumented). In order not to break ABI and the C
API, we don't remove the associated structs from opengl_cb.h.
The parts which are still needed (in particular DRM interop) needs to be
ported to the render API.
2018-03-22 16:05:01 +00:00
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};
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2018-02-20 12:30:18 +00:00
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static int init(struct render_backend *ctx, mpv_render_param *params)
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{
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ctx->priv = talloc_zero(NULL, struct priv);
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struct priv *p = ctx->priv;
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char *api = get_mpv_render_param(params, MPV_RENDER_PARAM_API_TYPE, NULL);
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if (!api)
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return MPV_ERROR_INVALID_PARAMETER;
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for (int n = 0; context_backends[n]; n++) {
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const struct libmpv_gpu_context_fns *backend = context_backends[n];
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if (strcmp(backend->api_name, api) == 0) {
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p->context = talloc_zero(NULL, struct libmpv_gpu_context);
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*p->context = (struct libmpv_gpu_context){
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.global = ctx->global,
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.log = ctx->log,
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.fns = backend,
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};
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break;
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}
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}
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if (!p->context)
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return MPV_ERROR_INVALID_PARAMETER;
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int err = p->context->fns->init(p->context, params);
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if (err < 0)
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return err;
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client API: add a new way to pass X11 Display etc. to render API
Hardware decoding things often need access to additional handles from
the windowing system, such as the X11 or Wayland display when using
vaapi. The opengl-cb had nothing dedicated for this, and used the weird
GL_MP_MPGetNativeDisplay GL extension (which was mpv specific and not
officially registered with OpenGL).
This was awkward, and a pain due to having to emulate GL context
behavior (like needing a TLS variable to store context for the pseudo GL
extension function). In addition (and not inherently due to this), we
could pass only one resource from mpv builtin context backends to
hwdecs. It was also all GL specific.
Replace this with a newer mechanism. It works for all RA backends, not
just GL. the API user can explicitly pass the objects at init time via
mpv_render_context_create(). Multiple resources are naturally possible.
The API uses MPV_RENDER_PARAM_* defines, but internally we use strings.
This is done for 2 reasons: 1. trying to leave libmpv and internal
mechanisms decoupled, 2. not having to add public API for some of the
internal resource types (especially D3D/GL interop stuff).
To remain sane, drop support for obscure half-working opengl-cb things,
like the DRM interop (was missing necessary things), the RPI window
thing (nobody used it), and obscure D3D interop things (not needed with
ANGLE, others were undocumented). In order not to break ABI and the C
API, we don't remove the associated structs from opengl_cb.h.
The parts which are still needed (in particular DRM interop) needs to be
ported to the render API.
2018-03-22 16:05:01 +00:00
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for (int n = 0; params && params[n].type; n++) {
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if (params[n].type > 0 &&
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params[n].type < MP_ARRAY_SIZE(native_resource_map) &&
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2018-04-15 10:31:07 +00:00
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native_resource_map[params[n].type].name)
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client API: add a new way to pass X11 Display etc. to render API
Hardware decoding things often need access to additional handles from
the windowing system, such as the X11 or Wayland display when using
vaapi. The opengl-cb had nothing dedicated for this, and used the weird
GL_MP_MPGetNativeDisplay GL extension (which was mpv specific and not
officially registered with OpenGL).
This was awkward, and a pain due to having to emulate GL context
behavior (like needing a TLS variable to store context for the pseudo GL
extension function). In addition (and not inherently due to this), we
could pass only one resource from mpv builtin context backends to
hwdecs. It was also all GL specific.
Replace this with a newer mechanism. It works for all RA backends, not
just GL. the API user can explicitly pass the objects at init time via
mpv_render_context_create(). Multiple resources are naturally possible.
The API uses MPV_RENDER_PARAM_* defines, but internally we use strings.
This is done for 2 reasons: 1. trying to leave libmpv and internal
mechanisms decoupled, 2. not having to add public API for some of the
internal resource types (especially D3D/GL interop stuff).
To remain sane, drop support for obscure half-working opengl-cb things,
like the DRM interop (was missing necessary things), the RPI window
thing (nobody used it), and obscure D3D interop things (not needed with
ANGLE, others were undocumented). In order not to break ABI and the C
API, we don't remove the associated structs from opengl_cb.h.
The parts which are still needed (in particular DRM interop) needs to be
ported to the render API.
2018-03-22 16:05:01 +00:00
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{
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2018-04-15 10:31:07 +00:00
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const struct native_resource_entry *entry =
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&native_resource_map[params[n].type];
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void *data = params[n].data;
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if (entry->size)
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data = talloc_memdup(p, data, entry->size);
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ra_add_native_resource(p->context->ra, entry->name, data);
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client API: add a new way to pass X11 Display etc. to render API
Hardware decoding things often need access to additional handles from
the windowing system, such as the X11 or Wayland display when using
vaapi. The opengl-cb had nothing dedicated for this, and used the weird
GL_MP_MPGetNativeDisplay GL extension (which was mpv specific and not
officially registered with OpenGL).
This was awkward, and a pain due to having to emulate GL context
behavior (like needing a TLS variable to store context for the pseudo GL
extension function). In addition (and not inherently due to this), we
could pass only one resource from mpv builtin context backends to
hwdecs. It was also all GL specific.
Replace this with a newer mechanism. It works for all RA backends, not
just GL. the API user can explicitly pass the objects at init time via
mpv_render_context_create(). Multiple resources are naturally possible.
The API uses MPV_RENDER_PARAM_* defines, but internally we use strings.
This is done for 2 reasons: 1. trying to leave libmpv and internal
mechanisms decoupled, 2. not having to add public API for some of the
internal resource types (especially D3D/GL interop stuff).
To remain sane, drop support for obscure half-working opengl-cb things,
like the DRM interop (was missing necessary things), the RPI window
thing (nobody used it), and obscure D3D interop things (not needed with
ANGLE, others were undocumented). In order not to break ABI and the C
API, we don't remove the associated structs from opengl_cb.h.
The parts which are still needed (in particular DRM interop) needs to be
ported to the render API.
2018-03-22 16:05:01 +00:00
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}
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}
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2018-02-20 12:30:18 +00:00
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p->renderer = gl_video_init(p->context->ra, ctx->log, ctx->global);
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ctx->hwdec_devs = hwdec_devices_create();
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gl_video_load_hwdecs(p->renderer, ctx->hwdec_devs, true);
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ctx->driver_caps = VO_CAP_ROTATE90;
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return 0;
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}
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static bool check_format(struct render_backend *ctx, int imgfmt)
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{
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struct priv *p = ctx->priv;
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return gl_video_check_format(p->renderer, imgfmt);
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}
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static int set_parameter(struct render_backend *ctx, mpv_render_param param)
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{
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struct priv *p = ctx->priv;
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switch (param.type) {
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case MPV_RENDER_PARAM_ICC_PROFILE: {
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mpv_byte_array *data = param.data;
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gl_video_set_icc_profile(p->renderer, (bstr){data->data, data->size});
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return 0;
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}
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case MPV_RENDER_PARAM_AMBIENT_LIGHT: {
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int lux = *(int *)param.data;
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gl_video_set_ambient_lux(p->renderer, lux);
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return 0;
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}
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default:
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return MPV_ERROR_NOT_IMPLEMENTED;
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}
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}
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static void reconfig(struct render_backend *ctx, struct mp_image_params *params)
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{
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struct priv *p = ctx->priv;
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gl_video_config(p->renderer, params);
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}
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static void reset(struct render_backend *ctx)
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{
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struct priv *p = ctx->priv;
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gl_video_reset(p->renderer);
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}
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static void update_external(struct render_backend *ctx, struct vo *vo)
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{
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struct priv *p = ctx->priv;
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gl_video_set_osd_source(p->renderer, vo ? vo->osd : NULL);
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if (vo)
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gl_video_configure_queue(p->renderer, vo);
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}
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static void resize(struct render_backend *ctx, struct mp_rect *src,
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struct mp_rect *dst, struct mp_osd_res *osd)
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{
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struct priv *p = ctx->priv;
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gl_video_resize(p->renderer, src, dst, osd);
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}
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static int get_target_size(struct render_backend *ctx, mpv_render_param *params,
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int *out_w, int *out_h)
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{
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struct priv *p = ctx->priv;
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// Mapping the surface is cheap, better than adding new backend entrypoints.
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struct ra_tex *tex;
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int err = p->context->fns->wrap_fbo(p->context, params, &tex);
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if (err < 0)
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return err;
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*out_w = tex->params.w;
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*out_h = tex->params.h;
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return 0;
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}
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static int render(struct render_backend *ctx, mpv_render_param *params,
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struct vo_frame *frame)
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{
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struct priv *p = ctx->priv;
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// Mapping the surface is cheap, better than adding new backend entrypoints.
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struct ra_tex *tex;
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int err = p->context->fns->wrap_fbo(p->context, params, &tex);
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if (err < 0)
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return err;
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int depth = *(int *)get_mpv_render_param(params, MPV_RENDER_PARAM_DEPTH,
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&(int){0});
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gl_video_set_fb_depth(p->renderer, depth);
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bool flip = *(int *)get_mpv_render_param(params, MPV_RENDER_PARAM_FLIP_Y,
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&(int){0});
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struct ra_fbo target = {.tex = tex, .flip = flip};
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gl_video_render_frame(p->renderer, frame, target, RENDER_FRAME_DEF);
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p->context->fns->done_frame(p->context, frame->display_synced);
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return 0;
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}
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static void destroy(struct render_backend *ctx)
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{
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struct priv *p = ctx->priv;
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if (p->renderer)
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gl_video_uninit(p->renderer);
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hwdec_devices_destroy(ctx->hwdec_devs);
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if (p->context) {
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p->context->fns->destroy(p->context);
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talloc_free(p->context->priv);
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talloc_free(p->context);
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}
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}
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const struct render_backend_fns render_backend_gpu = {
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.init = init,
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.check_format = check_format,
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.set_parameter = set_parameter,
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.reconfig = reconfig,
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.reset = reset,
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.update_external = update_external,
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.resize = resize,
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.get_target_size = get_target_size,
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.render = render,
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.destroy = destroy,
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};
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