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mpv/video/out/opengl/hwdec_dxva2gldx.c

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/*
* This file is part of mpv.
*
* mpv is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* mpv is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with mpv. If not, see <http://www.gnu.org/licenses/>.
*/
#include <d3d9.h>
#include <assert.h>
#include "common/common.h"
#include "osdep/windows_utils.h"
#include "video/out/gpu/hwdec.h"
#include "ra_gl.h"
#include "video/hwdec.h"
#include "video/d3d.h"
// for WGL_ACCESS_READ_ONLY_NV
#include <GL/wglext.h>
#define SHARED_SURFACE_D3DFMT D3DFMT_X8R8G8B8
struct priv_owner {
struct mp_hwdec_ctx hwctx;
IDirect3DDevice9Ex *device;
HANDLE device_h;
};
struct priv {
IDirect3DDevice9Ex *device;
HANDLE device_h;
IDirect3DSurface9 *rtarget;
HANDLE rtarget_h;
GLuint texture;
};
static void uninit(struct ra_hwdec *hw)
{
struct priv_owner *p = hw->priv;
hwdec_devices_remove(hw->devs, &p->hwctx);
av_buffer_unref(&p->hwctx.av_device_ref);
if (p->device)
IDirect3DDevice9Ex_Release(p->device);
}
static int init(struct ra_hwdec *hw)
{
struct priv_owner *p = hw->priv;
if (!ra_is_gl(hw->ra))
return -1;
GL *gl = ra_gl_get(hw->ra);
if (!(gl->mpgl_caps & MPGL_CAP_DXINTEROP))
return -1;
// AMD drivers won't open multiple dxinterop HANDLES on the same D3D device,
// so we request the one already in use by context_dxinterop
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
p->device_h = ra_get_native_resource(hw->ra, "dxinterop_device_HANDLE");
if (!p->device_h)
return -1;
// But we also still need the actual D3D device
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
p->device = ra_get_native_resource(hw->ra, "IDirect3DDevice9Ex");
if (!p->device)
return -1;
IDirect3DDevice9Ex_AddRef(p->device);
p->hwctx = (struct mp_hwdec_ctx){
.driver_name = hw->driver->name,
.av_device_ref = d3d9_wrap_device_ref((IDirect3DDevice9 *)p->device),
};
hwdec_devices_add(hw->devs, &p->hwctx);
return 0;
}
static void mapper_uninit(struct ra_hwdec_mapper *mapper)
{
struct priv *p = mapper->priv;
GL *gl = ra_gl_get(mapper->ra);
if (p->rtarget_h && p->device_h) {
if (!gl->DXUnlockObjectsNV(p->device_h, 1, &p->rtarget_h)) {
MP_ERR(mapper, "Failed unlocking texture for access by OpenGL: %s\n",
mp_LastError_to_str());
}
}
if (p->rtarget_h) {
if (!gl->DXUnregisterObjectNV(p->device_h, p->rtarget_h)) {
MP_ERR(mapper, "Failed to unregister Direct3D surface with OpenGL: %s\n",
mp_LastError_to_str());
} else {
p->rtarget_h = 0;
}
}
gl->DeleteTextures(1, &p->texture);
p->texture = 0;
if (p->rtarget) {
IDirect3DSurface9_Release(p->rtarget);
p->rtarget = NULL;
}
ra_tex_free(mapper->ra, &mapper->tex[0]);
}
static int mapper_init(struct ra_hwdec_mapper *mapper)
{
struct priv_owner *p_owner = mapper->owner->priv;
struct priv *p = mapper->priv;
GL *gl = ra_gl_get(mapper->ra);
HRESULT hr;
p->device = p_owner->device;
p->device_h = p_owner->device_h;
HANDLE share_handle = NULL;
hr = IDirect3DDevice9Ex_CreateRenderTarget(
p->device,
mapper->src_params.w, mapper->src_params.h,
SHARED_SURFACE_D3DFMT, D3DMULTISAMPLE_NONE, 0, FALSE,
&p->rtarget, &share_handle);
if (FAILED(hr)) {
MP_ERR(mapper, "Failed creating offscreen Direct3D surface: %s\n",
mp_HRESULT_to_str(hr));
return -1;
}
if (share_handle &&
!gl->DXSetResourceShareHandleNV(p->rtarget, share_handle)) {
MP_ERR(mapper, "Failed setting Direct3D/OpenGL share handle for surface: %s\n",
mp_LastError_to_str());
return -1;
}
gl->GenTextures(1, &p->texture);
gl->BindTexture(GL_TEXTURE_2D, p->texture);
gl->TexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_LINEAR);
gl->TexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_LINEAR);
gl->TexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, GL_CLAMP_TO_EDGE);
gl->TexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, GL_CLAMP_TO_EDGE);
gl->BindTexture(GL_TEXTURE_2D, 0);
p->rtarget_h = gl->DXRegisterObjectNV(p->device_h, p->rtarget, p->texture,
GL_TEXTURE_2D,
WGL_ACCESS_READ_ONLY_NV);
if (!p->rtarget_h) {
MP_ERR(mapper, "Failed to register Direct3D surface with OpenGL: %s\n",
mp_LastError_to_str());
return -1;
}
if (!gl->DXLockObjectsNV(p->device_h, 1, &p->rtarget_h)) {
MP_ERR(mapper, "Failed locking texture for access by OpenGL %s\n",
mp_LastError_to_str());
return -1;
}
struct ra_tex_params params = {
.dimensions = 2,
.w = mapper->src_params.w,
.h = mapper->src_params.h,
.d = 1,
.format = ra_find_unorm_format(mapper->ra, 1, 4),
.render_src = true,
.src_linear = true,
};
if (!params.format)
return -1;
mapper->tex[0] = ra_create_wrapped_tex(mapper->ra, &params, p->texture);
if (!mapper->tex[0])
return -1;
mapper->dst_params = mapper->src_params;
mapper->dst_params.imgfmt = IMGFMT_RGB0;
mapper->dst_params.hw_subfmt = 0;
vo_opengl: refactor how hwdec interop exports textures Rename gl_hwdec_driver.map_image to map_frame, and let it fill out a struct gl_hwdec_frame describing the exact texture layout. This gives more flexibility to what the hwdec interop can export. In particular, it can export strange component orders/permutations and textures with padded size. (The latter originating from cropped video.) The way gl_hwdec_frame works is in the spirit of the rest of the vo_opengl video processing code, which tends to put as much information in immediate state (as part of the dataflow), instead of declaring it globally. To some degree this duplicates the texplane and img_tex structs, but until we somehow unify those, it's better to give the hwdec state its own struct. The fact that changing the hwdec struct would require changes and testing on at least 4 platform/GPU combinations makes duplicating it almost a requirement to avoid pain later. Make gl_hwdec_driver.reinit set the new image format and remove the gl_hwdec.converted_imgfmt field. Likewise, gl_hwdec.gl_texture_target is replaced with gl_hwdec_plane.gl_target. Split out a init_image_desc function from init_format. The latter is not called in the hwdec case at all anymore. Setting up most of struct texplane is also completely separate in the hwdec and normal cases. video.c does not check whether the hwdec "mapped" image format is supported. This should not really happen anyway, and if it does, the hwdec interop backend must fail at creation time, so this is not an issue.
2016-05-10 16:29:10 +00:00
return 0;
}
static int mapper_map(struct ra_hwdec_mapper *mapper)
{
struct priv *p = mapper->priv;
GL *gl = ra_gl_get(mapper->ra);
HRESULT hr;
if (!gl->DXUnlockObjectsNV(p->device_h, 1, &p->rtarget_h)) {
MP_ERR(mapper, "Failed unlocking texture for access by OpenGL: %s\n",
mp_LastError_to_str());
return -1;
}
IDirect3DSurface9* hw_surface = (IDirect3DSurface9 *)mapper->src->planes[3];
RECT rc = {0, 0, mapper->src->w, mapper->src->h};
hr = IDirect3DDevice9Ex_StretchRect(p->device,
hw_surface, &rc,
p->rtarget, &rc,
D3DTEXF_NONE);
if (FAILED(hr)) {
MP_ERR(mapper, "Direct3D RGB conversion failed: %s", mp_HRESULT_to_str(hr));
return -1;
}
if (!gl->DXLockObjectsNV(p->device_h, 1, &p->rtarget_h)) {
MP_ERR(mapper, "Failed locking texture for access by OpenGL: %s\n",
mp_LastError_to_str());
return -1;
}
return 0;
}
const struct ra_hwdec_driver ra_hwdec_dxva2gldx = {
.name = "dxva2-dxinterop",
.priv_size = sizeof(struct priv_owner),
.imgfmts = {IMGFMT_DXVA2, 0},
.init = init,
.uninit = uninit,
.mapper = &(const struct ra_hwdec_mapper_driver){
.priv_size = sizeof(struct priv),
.init = mapper_init,
.uninit = mapper_uninit,
.map = mapper_map,
},
};