XE_BO_FLAG_VRAM0
XE_BO_FLAG_VRAM0 |
flags |= XE_BO_FLAG_VRAM0;
(params->mem_mask & XE_BO_FLAG_VRAM0))
if ((params->mem_mask & XE_BO_FLAG_VRAM0) &&
{.mem_mask = XE_BO_FLAG_VRAM0,
{.mem_mask = XE_BO_FLAG_VRAM0 | XE_BO_FLAG_NEEDS_CPU_ACCESS,
{.mem_mask = XE_BO_FLAG_VRAM0,
{.mem_mask = XE_BO_FLAG_VRAM0,
{.mem_mask = XE_BO_FLAG_VRAM0},
{.mem_mask = XE_BO_FLAG_VRAM0,
{.mem_mask = XE_BO_FLAG_SYSTEM | XE_BO_FLAG_VRAM0,
{.mem_mask = XE_BO_FLAG_SYSTEM | XE_BO_FLAG_VRAM0 |
{.mem_mask = XE_BO_FLAG_SYSTEM | XE_BO_FLAG_VRAM0,
{.mem_mask = XE_BO_FLAG_SYSTEM | XE_BO_FLAG_VRAM0,
{.mem_mask = XE_BO_FLAG_SYSTEM | XE_BO_FLAG_VRAM0},
{.mem_mask = XE_BO_FLAG_SYSTEM | XE_BO_FLAG_VRAM0,
if (!(params->mem_mask & XE_BO_FLAG_VRAM0))
region = XE_BO_FLAG_VRAM0;
return __ffs(vram_bo_flag >> (__ffs(XE_BO_FLAG_VRAM0) - 1)) - 1;
#define XE_BO_FLAG_VRAM_MASK (XE_BO_FLAG_VRAM0 | XE_BO_FLAG_VRAM1)
#define XE_BO_FLAG_VRAM(vram) (XE_BO_FLAG_VRAM0 << ((vram)->id))
!(bo->flags & XE_BO_FLAG_VRAM0) &&
(!(bo->flags & XE_BO_FLAG_VRAM0) &&