include/uapi/drm/amdgpu_drm.h: use __u32 and __u64 from <linux/types.h>
Kernel headers exported to userspace are supposed to use these. Fixes compilation errors in userspace: error: unknown type name ‘uint64_t’ error: unknown type name ‘uint32_t’ Signed-off-by: Mikko Rapeli <mikko.rapeli@iki.fi>
This commit is contained in:
Родитель
f95d3aa438
Коммит
2ce9dde0d4
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@ -76,19 +76,19 @@
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struct drm_amdgpu_gem_create_in {
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/** the requested memory size */
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uint64_t bo_size;
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__u64 bo_size;
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/** physical start_addr alignment in bytes for some HW requirements */
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uint64_t alignment;
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__u64 alignment;
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/** the requested memory domains */
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uint64_t domains;
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__u64 domains;
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/** allocation flags */
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uint64_t domain_flags;
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__u64 domain_flags;
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};
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struct drm_amdgpu_gem_create_out {
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/** returned GEM object handle */
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uint32_t handle;
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uint32_t _pad;
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__u32 handle;
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__u32 _pad;
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};
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union drm_amdgpu_gem_create {
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@ -105,28 +105,28 @@ union drm_amdgpu_gem_create {
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struct drm_amdgpu_bo_list_in {
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/** Type of operation */
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uint32_t operation;
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__u32 operation;
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/** Handle of list or 0 if we want to create one */
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uint32_t list_handle;
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__u32 list_handle;
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/** Number of BOs in list */
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uint32_t bo_number;
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__u32 bo_number;
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/** Size of each element describing BO */
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uint32_t bo_info_size;
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__u32 bo_info_size;
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/** Pointer to array describing BOs */
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uint64_t bo_info_ptr;
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__u64 bo_info_ptr;
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};
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struct drm_amdgpu_bo_list_entry {
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/** Handle of BO */
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uint32_t bo_handle;
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__u32 bo_handle;
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/** New (if specified) BO priority to be used during migration */
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uint32_t bo_priority;
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__u32 bo_priority;
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};
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struct drm_amdgpu_bo_list_out {
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/** Handle of resource list */
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uint32_t list_handle;
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uint32_t _pad;
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__u32 list_handle;
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__u32 _pad;
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};
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union drm_amdgpu_bo_list {
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@ -150,26 +150,26 @@ union drm_amdgpu_bo_list {
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struct drm_amdgpu_ctx_in {
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/** AMDGPU_CTX_OP_* */
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uint32_t op;
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__u32 op;
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/** For future use, no flags defined so far */
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uint32_t flags;
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uint32_t ctx_id;
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uint32_t _pad;
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__u32 flags;
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__u32 ctx_id;
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__u32 _pad;
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};
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union drm_amdgpu_ctx_out {
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struct {
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uint32_t ctx_id;
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uint32_t _pad;
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__u32 ctx_id;
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__u32 _pad;
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} alloc;
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struct {
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/** For future use, no flags defined so far */
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uint64_t flags;
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__u64 flags;
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/** Number of resets caused by this context so far. */
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uint32_t hangs;
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__u32 hangs;
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/** Reset status since the last call of the ioctl. */
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uint32_t reset_status;
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__u32 reset_status;
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} state;
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};
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@ -189,12 +189,12 @@ union drm_amdgpu_ctx {
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#define AMDGPU_GEM_USERPTR_REGISTER (1 << 3)
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struct drm_amdgpu_gem_userptr {
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uint64_t addr;
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uint64_t size;
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__u64 addr;
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__u64 size;
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/* AMDGPU_GEM_USERPTR_* */
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uint32_t flags;
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__u32 flags;
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/* Resulting GEM handle */
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uint32_t handle;
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__u32 handle;
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};
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/* same meaning as the GB_TILE_MODE and GL_MACRO_TILE_MODE fields */
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@ -226,28 +226,28 @@ struct drm_amdgpu_gem_userptr {
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/** The same structure is shared for input/output */
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struct drm_amdgpu_gem_metadata {
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/** GEM Object handle */
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uint32_t handle;
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__u32 handle;
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/** Do we want get or set metadata */
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uint32_t op;
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__u32 op;
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struct {
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/** For future use, no flags defined so far */
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uint64_t flags;
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__u64 flags;
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/** family specific tiling info */
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uint64_t tiling_info;
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uint32_t data_size_bytes;
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uint32_t data[64];
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__u64 tiling_info;
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__u32 data_size_bytes;
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__u32 data[64];
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} data;
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};
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struct drm_amdgpu_gem_mmap_in {
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/** the GEM object handle */
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uint32_t handle;
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uint32_t _pad;
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__u32 handle;
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__u32 _pad;
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};
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struct drm_amdgpu_gem_mmap_out {
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/** mmap offset from the vma offset manager */
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uint64_t addr_ptr;
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__u64 addr_ptr;
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};
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union drm_amdgpu_gem_mmap {
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@ -257,18 +257,18 @@ union drm_amdgpu_gem_mmap {
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struct drm_amdgpu_gem_wait_idle_in {
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/** GEM object handle */
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uint32_t handle;
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__u32 handle;
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/** For future use, no flags defined so far */
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uint32_t flags;
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__u32 flags;
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/** Absolute timeout to wait */
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uint64_t timeout;
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__u64 timeout;
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};
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struct drm_amdgpu_gem_wait_idle_out {
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/** BO status: 0 - BO is idle, 1 - BO is busy */
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uint32_t status;
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__u32 status;
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/** Returned current memory domain */
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uint32_t domain;
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__u32 domain;
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};
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union drm_amdgpu_gem_wait_idle {
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@ -278,18 +278,18 @@ union drm_amdgpu_gem_wait_idle {
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struct drm_amdgpu_wait_cs_in {
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/** Command submission handle */
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uint64_t handle;
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__u64 handle;
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/** Absolute timeout to wait */
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uint64_t timeout;
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uint32_t ip_type;
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uint32_t ip_instance;
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uint32_t ring;
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uint32_t ctx_id;
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__u64 timeout;
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__u32 ip_type;
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__u32 ip_instance;
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__u32 ring;
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__u32 ctx_id;
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};
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struct drm_amdgpu_wait_cs_out {
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/** CS status: 0 - CS completed, 1 - CS still busy */
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uint64_t status;
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__u64 status;
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};
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union drm_amdgpu_wait_cs {
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@ -303,11 +303,11 @@ union drm_amdgpu_wait_cs {
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/* Sets or returns a value associated with a buffer. */
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struct drm_amdgpu_gem_op {
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/** GEM object handle */
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uint32_t handle;
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__u32 handle;
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/** AMDGPU_GEM_OP_* */
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uint32_t op;
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__u32 op;
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/** Input or return value */
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uint64_t value;
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__u64 value;
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};
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#define AMDGPU_VA_OP_MAP 1
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@ -326,18 +326,18 @@ struct drm_amdgpu_gem_op {
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struct drm_amdgpu_gem_va {
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/** GEM object handle */
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uint32_t handle;
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uint32_t _pad;
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__u32 handle;
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__u32 _pad;
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/** AMDGPU_VA_OP_* */
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uint32_t operation;
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__u32 operation;
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/** AMDGPU_VM_PAGE_* */
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uint32_t flags;
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__u32 flags;
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/** va address to assign . Must be correctly aligned.*/
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uint64_t va_address;
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__u64 va_address;
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/** Specify offset inside of BO to assign. Must be correctly aligned.*/
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uint64_t offset_in_bo;
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__u64 offset_in_bo;
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/** Specify mapping size. Must be correctly aligned. */
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uint64_t map_size;
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__u64 map_size;
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};
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#define AMDGPU_HW_IP_GFX 0
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@ -354,24 +354,24 @@ struct drm_amdgpu_gem_va {
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#define AMDGPU_CHUNK_ID_DEPENDENCIES 0x03
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struct drm_amdgpu_cs_chunk {
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uint32_t chunk_id;
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uint32_t length_dw;
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uint64_t chunk_data;
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__u32 chunk_id;
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__u32 length_dw;
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__u64 chunk_data;
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};
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struct drm_amdgpu_cs_in {
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/** Rendering context id */
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uint32_t ctx_id;
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__u32 ctx_id;
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/** Handle of resource list associated with CS */
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uint32_t bo_list_handle;
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uint32_t num_chunks;
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uint32_t _pad;
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/** this points to uint64_t * which point to cs chunks */
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uint64_t chunks;
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__u32 bo_list_handle;
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__u32 num_chunks;
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__u32 _pad;
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/** this points to __u64 * which point to cs chunks */
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__u64 chunks;
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};
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struct drm_amdgpu_cs_out {
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uint64_t handle;
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__u64 handle;
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};
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union drm_amdgpu_cs {
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@ -388,32 +388,32 @@ union drm_amdgpu_cs {
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#define AMDGPU_IB_FLAG_PREAMBLE (1<<1)
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struct drm_amdgpu_cs_chunk_ib {
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uint32_t _pad;
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__u32 _pad;
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/** AMDGPU_IB_FLAG_* */
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uint32_t flags;
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__u32 flags;
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/** Virtual address to begin IB execution */
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uint64_t va_start;
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__u64 va_start;
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/** Size of submission */
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uint32_t ib_bytes;
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__u32 ib_bytes;
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/** HW IP to submit to */
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uint32_t ip_type;
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__u32 ip_type;
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/** HW IP index of the same type to submit to */
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uint32_t ip_instance;
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__u32 ip_instance;
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/** Ring index to submit to */
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uint32_t ring;
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__u32 ring;
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};
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struct drm_amdgpu_cs_chunk_dep {
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uint32_t ip_type;
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uint32_t ip_instance;
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uint32_t ring;
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uint32_t ctx_id;
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uint64_t handle;
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__u32 ip_type;
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__u32 ip_instance;
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__u32 ring;
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__u32 ctx_id;
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__u64 handle;
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};
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struct drm_amdgpu_cs_chunk_fence {
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uint32_t handle;
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uint32_t offset;
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__u32 handle;
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__u32 offset;
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};
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struct drm_amdgpu_cs_chunk_data {
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@ -486,83 +486,83 @@ struct drm_amdgpu_cs_chunk_data {
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/* Input structure for the INFO ioctl */
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struct drm_amdgpu_info {
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/* Where the return value will be stored */
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uint64_t return_pointer;
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__u64 return_pointer;
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/* The size of the return value. Just like "size" in "snprintf",
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* it limits how many bytes the kernel can write. */
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uint32_t return_size;
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__u32 return_size;
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/* The query request id. */
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uint32_t query;
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__u32 query;
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union {
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struct {
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uint32_t id;
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uint32_t _pad;
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__u32 id;
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__u32 _pad;
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} mode_crtc;
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struct {
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/** AMDGPU_HW_IP_* */
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uint32_t type;
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__u32 type;
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/**
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* Index of the IP if there are more IPs of the same
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* type. Ignored by AMDGPU_INFO_HW_IP_COUNT.
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*/
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uint32_t ip_instance;
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__u32 ip_instance;
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} query_hw_ip;
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struct {
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uint32_t dword_offset;
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__u32 dword_offset;
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/** number of registers to read */
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uint32_t count;
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uint32_t instance;
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__u32 count;
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__u32 instance;
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/** For future use, no flags defined so far */
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uint32_t flags;
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__u32 flags;
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} read_mmr_reg;
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struct {
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/** AMDGPU_INFO_FW_* */
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uint32_t fw_type;
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__u32 fw_type;
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/**
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* Index of the IP if there are more IPs of
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* the same type.
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*/
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uint32_t ip_instance;
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__u32 ip_instance;
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/**
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* Index of the engine. Whether this is used depends
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* on the firmware type. (e.g. MEC, SDMA)
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*/
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uint32_t index;
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uint32_t _pad;
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__u32 index;
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__u32 _pad;
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} query_fw;
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};
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};
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struct drm_amdgpu_info_gds {
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/** GDS GFX partition size */
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uint32_t gds_gfx_partition_size;
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__u32 gds_gfx_partition_size;
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/** GDS compute partition size */
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uint32_t compute_partition_size;
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__u32 compute_partition_size;
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/** total GDS memory size */
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uint32_t gds_total_size;
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__u32 gds_total_size;
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/** GWS size per GFX partition */
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uint32_t gws_per_gfx_partition;
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__u32 gws_per_gfx_partition;
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/** GSW size per compute partition */
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uint32_t gws_per_compute_partition;
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__u32 gws_per_compute_partition;
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/** OA size per GFX partition */
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uint32_t oa_per_gfx_partition;
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__u32 oa_per_gfx_partition;
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/** OA size per compute partition */
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uint32_t oa_per_compute_partition;
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uint32_t _pad;
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__u32 oa_per_compute_partition;
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__u32 _pad;
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};
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struct drm_amdgpu_info_vram_gtt {
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uint64_t vram_size;
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uint64_t vram_cpu_accessible_size;
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uint64_t gtt_size;
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__u64 vram_size;
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__u64 vram_cpu_accessible_size;
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__u64 gtt_size;
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};
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struct drm_amdgpu_info_firmware {
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uint32_t ver;
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uint32_t feature;
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__u32 ver;
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__u32 feature;
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};
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#define AMDGPU_VRAM_TYPE_UNKNOWN 0
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@ -576,61 +576,61 @@ struct drm_amdgpu_info_firmware {
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struct drm_amdgpu_info_device {
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/** PCI Device ID */
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uint32_t device_id;
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__u32 device_id;
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/** Internal chip revision: A0, A1, etc.) */
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uint32_t chip_rev;
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uint32_t external_rev;
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__u32 chip_rev;
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__u32 external_rev;
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/** Revision id in PCI Config space */
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uint32_t pci_rev;
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uint32_t family;
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uint32_t num_shader_engines;
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uint32_t num_shader_arrays_per_engine;
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__u32 pci_rev;
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__u32 family;
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__u32 num_shader_engines;
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__u32 num_shader_arrays_per_engine;
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/* in KHz */
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uint32_t gpu_counter_freq;
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uint64_t max_engine_clock;
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uint64_t max_memory_clock;
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__u32 gpu_counter_freq;
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__u64 max_engine_clock;
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__u64 max_memory_clock;
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/* cu information */
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uint32_t cu_active_number;
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uint32_t cu_ao_mask;
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uint32_t cu_bitmap[4][4];
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__u32 cu_active_number;
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__u32 cu_ao_mask;
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__u32 cu_bitmap[4][4];
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/** Render backend pipe mask. One render backend is CB+DB. */
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uint32_t enabled_rb_pipes_mask;
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uint32_t num_rb_pipes;
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uint32_t num_hw_gfx_contexts;
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uint32_t _pad;
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uint64_t ids_flags;
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__u32 enabled_rb_pipes_mask;
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__u32 num_rb_pipes;
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__u32 num_hw_gfx_contexts;
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__u32 _pad;
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__u64 ids_flags;
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/** Starting virtual address for UMDs. */
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uint64_t virtual_address_offset;
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__u64 virtual_address_offset;
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/** The maximum virtual address */
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uint64_t virtual_address_max;
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__u64 virtual_address_max;
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/** Required alignment of virtual addresses. */
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uint32_t virtual_address_alignment;
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__u32 virtual_address_alignment;
|
||||
/** Page table entry - fragment size */
|
||||
uint32_t pte_fragment_size;
|
||||
uint32_t gart_page_size;
|
||||
__u32 pte_fragment_size;
|
||||
__u32 gart_page_size;
|
||||
/** constant engine ram size*/
|
||||
uint32_t ce_ram_size;
|
||||
__u32 ce_ram_size;
|
||||
/** video memory type info*/
|
||||
uint32_t vram_type;
|
||||
__u32 vram_type;
|
||||
/** video memory bit width*/
|
||||
uint32_t vram_bit_width;
|
||||
__u32 vram_bit_width;
|
||||
/* vce harvesting instance */
|
||||
uint32_t vce_harvest_config;
|
||||
__u32 vce_harvest_config;
|
||||
};
|
||||
|
||||
struct drm_amdgpu_info_hw_ip {
|
||||
/** Version of h/w IP */
|
||||
uint32_t hw_ip_version_major;
|
||||
uint32_t hw_ip_version_minor;
|
||||
__u32 hw_ip_version_major;
|
||||
__u32 hw_ip_version_minor;
|
||||
/** Capabilities */
|
||||
uint64_t capabilities_flags;
|
||||
__u64 capabilities_flags;
|
||||
/** command buffer address start alignment*/
|
||||
uint32_t ib_start_alignment;
|
||||
__u32 ib_start_alignment;
|
||||
/** command buffer size alignment*/
|
||||
uint32_t ib_size_alignment;
|
||||
__u32 ib_size_alignment;
|
||||
/** Bitmask of available rings. Bit 0 means ring 0, etc. */
|
||||
uint32_t available_rings;
|
||||
uint32_t _pad;
|
||||
__u32 available_rings;
|
||||
__u32 _pad;
|
||||
};
|
||||
|
||||
/*
|
||||
|
|
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