return (struct nouveau_bufctx_priv *)bctx;
}
-int
+drm_public int
nouveau_bufctx_new(struct nouveau_client *client, int bins,
struct nouveau_bufctx **pbctx)
{
return -ENOMEM;
}
-void
+drm_public void
nouveau_bufctx_del(struct nouveau_bufctx **pbctx)
{
struct nouveau_bufctx_priv *pctx = nouveau_bufctx(*pbctx);
}
}
-void
+drm_public void
nouveau_bufctx_reset(struct nouveau_bufctx *bctx, int bin)
{
struct nouveau_bufctx_priv *pctx = nouveau_bufctx(bctx);
pbin->relocs = 0;
}
-struct nouveau_bufref *
+drm_public struct nouveau_bufref *
nouveau_bufctx_refn(struct nouveau_bufctx *bctx, int bin,
struct nouveau_bo *bo, uint32_t flags)
{
return &pref->base;
}
-struct nouveau_bufref *
+drm_public struct nouveau_bufref *
nouveau_bufctx_mthd(struct nouveau_bufctx *bctx, int bin, uint32_t packet,
struct nouveau_bo *bo, uint64_t data, uint32_t flags,
uint32_t vor, uint32_t tor)
* is kept here to prevent AIGLX from crashing if the DDX is linked against
* the new libdrm, but the DRI driver against the old
*/
-int
+drm_public int
nouveau_device_open_existing(struct nouveau_device **pdev, int close, int fd,
drm_context_t ctx)
{
return -EACCES;
}
-int
+drm_public int
nouveau_device_wrap(int fd, int close, struct nouveau_device **pdev)
{
struct nouveau_device_priv *nvdev = calloc(1, sizeof(*nvdev));
return 0;
}
-int
+drm_public int
nouveau_device_open(const char *busid, struct nouveau_device **pdev)
{
int ret = -ENODEV, fd = drmOpen("nouveau", busid);
return ret;
}
-void
+drm_public void
nouveau_device_del(struct nouveau_device **pdev)
{
struct nouveau_device_priv *nvdev = nouveau_device(*pdev);
}
}
-int
+drm_public int
nouveau_getparam(struct nouveau_device *dev, uint64_t param, uint64_t *value)
{
struct drm_nouveau_getparam r = { param, 0 };
return ret;
}
-int
+drm_public int
nouveau_setparam(struct nouveau_device *dev, uint64_t param, uint64_t value)
{
struct drm_nouveau_setparam r = { param, value };
return drmCommandWrite(dev->fd, DRM_NOUVEAU_SETPARAM, &r, sizeof(r));
}
-int
+drm_public int
nouveau_client_new(struct nouveau_device *dev, struct nouveau_client **pclient)
{
struct nouveau_device_priv *nvdev = nouveau_device(dev);
return ret;
}
-void
+drm_public void
nouveau_client_del(struct nouveau_client **pclient)
{
struct nouveau_client_priv *pcli = nouveau_client(*pclient);
}
}
-int
+drm_public int
nouveau_object_new(struct nouveau_object *parent, uint64_t handle,
uint32_t oclass, void *data, uint32_t length,
struct nouveau_object **pobj)
return 0;
}
-void
+drm_public void
nouveau_object_del(struct nouveau_object **pobj)
{
struct nouveau_object *obj = *pobj;
*pobj = NULL;
}
-void *
+drm_public void *
nouveau_object_find(struct nouveau_object *obj, uint32_t pclass)
{
while (obj && obj->oclass != pclass) {
free(nvbo);
}
-int
+drm_public int
nouveau_bo_new(struct nouveau_device *dev, uint32_t flags, uint32_t align,
uint64_t size, union nouveau_bo_config *config,
struct nouveau_bo **pbo)
return -ENOMEM;
}
-int
+drm_public int
nouveau_bo_wrap(struct nouveau_device *dev, uint32_t handle,
struct nouveau_bo **pbo)
{
return ret;
}
-int
+drm_public int
nouveau_bo_name_ref(struct nouveau_device *dev, uint32_t name,
struct nouveau_bo **pbo)
{
return ret;
}
-int
+drm_public int
nouveau_bo_name_get(struct nouveau_bo *bo, uint32_t *name)
{
struct drm_gem_flink req = { .handle = bo->handle };
return 0;
}
-void
+drm_public void
nouveau_bo_ref(struct nouveau_bo *bo, struct nouveau_bo **pref)
{
struct nouveau_bo *ref = *pref;
*pref = bo;
}
-int
+drm_public int
nouveau_bo_prime_handle_ref(struct nouveau_device *dev, int prime_fd,
struct nouveau_bo **bo)
{
return ret;
}
-int
+drm_public int
nouveau_bo_set_prime(struct nouveau_bo *bo, int *prime_fd)
{
struct nouveau_bo_priv *nvbo = nouveau_bo(bo);
return 0;
}
-int
+drm_public int
nouveau_bo_wait(struct nouveau_bo *bo, uint32_t access,
struct nouveau_client *client)
{
return ret;
}
-int
+drm_public int
nouveau_bo_map(struct nouveau_bo *bo, uint32_t access,
struct nouveau_client *client)
{
return ret;
}
-int
+drm_public int
nouveau_pushbuf_new(struct nouveau_client *client, struct nouveau_object *chan,
int nr, uint32_t size, bool immediate,
struct nouveau_pushbuf **ppush)
return 0;
}
-void
+drm_public void
nouveau_pushbuf_del(struct nouveau_pushbuf **ppush)
{
struct nouveau_pushbuf_priv *nvpb = nouveau_pushbuf(*ppush);
*ppush = NULL;
}
-struct nouveau_bufctx *
+drm_public struct nouveau_bufctx *
nouveau_pushbuf_bufctx(struct nouveau_pushbuf *push, struct nouveau_bufctx *ctx)
{
struct nouveau_bufctx *prev = push->bufctx;
return prev;
}
-int
+drm_public int
nouveau_pushbuf_space(struct nouveau_pushbuf *push,
uint32_t dwords, uint32_t relocs, uint32_t pushes)
{
return flushed ? pushbuf_validate(push, false) : 0;
}
-void
+drm_public void
nouveau_pushbuf_data(struct nouveau_pushbuf *push, struct nouveau_bo *bo,
uint64_t offset, uint64_t length)
{
}
}
-int
+drm_public int
nouveau_pushbuf_refn(struct nouveau_pushbuf *push,
struct nouveau_pushbuf_refn *refs, int nr)
{
return pushbuf_refn(push, true, refs, nr);
}
-void
+drm_public void
nouveau_pushbuf_reloc(struct nouveau_pushbuf *push, struct nouveau_bo *bo,
uint32_t data, uint32_t flags, uint32_t vor, uint32_t tor)
{
push->cur++;
}
-int
+drm_public int
nouveau_pushbuf_validate(struct nouveau_pushbuf *push)
{
return pushbuf_validate(push, true);
}
-uint32_t
+drm_public uint32_t
nouveau_pushbuf_refd(struct nouveau_pushbuf *push, struct nouveau_bo *bo)
{
struct drm_nouveau_gem_pushbuf_bo *kref;
return flags;
}
-int
+drm_public int
nouveau_pushbuf_kick(struct nouveau_pushbuf *push, struct nouveau_object *chan)
{
if (!push->channel)