This source file includes following definitions.
- vmci_handle_is_equal
- vmci_handle_is_invalid
- vmci_event_data_const_payload
- vmci_event_data_payload
- vmci_qp_add_pointer
- vmci_q_header_producer_tail
- vmci_q_header_consumer_head
- vmci_q_header_add_producer_tail
- vmci_q_header_add_consumer_head
- vmci_q_header_get_pointers
- vmci_q_header_init
- vmci_q_header_free_space
- vmci_q_header_buf_ready
#ifndef _VMW_VMCI_DEF_H_
#define _VMW_VMCI_DEF_H_
#include <linux/atomic.h>
#define VMCI_STATUS_ADDR 0x00
#define VMCI_CONTROL_ADDR 0x04
#define VMCI_ICR_ADDR 0x08
#define VMCI_IMR_ADDR 0x0c
#define VMCI_DATA_OUT_ADDR 0x10
#define VMCI_DATA_IN_ADDR 0x14
#define VMCI_CAPS_ADDR 0x18
#define VMCI_RESULT_LOW_ADDR 0x1c
#define VMCI_RESULT_HIGH_ADDR 0x20
#define VMCI_MAX_DEVICES 1
#define VMCI_STATUS_INT_ON 0x1
#define VMCI_CONTROL_RESET 0x1
#define VMCI_CONTROL_INT_ENABLE 0x2
#define VMCI_CONTROL_INT_DISABLE 0x4
#define VMCI_CAPS_HYPERCALL 0x1
#define VMCI_CAPS_GUESTCALL 0x2
#define VMCI_CAPS_DATAGRAM 0x4
#define VMCI_CAPS_NOTIFICATIONS 0x8
#define VMCI_ICR_DATAGRAM 0x1
#define VMCI_ICR_NOTIFICATION 0x2
#define VMCI_IMR_DATAGRAM 0x1
#define VMCI_IMR_NOTIFICATION 0x2
enum {
VMCI_INTR_TYPE_INTX = 0,
VMCI_INTR_TYPE_MSI = 1,
VMCI_INTR_TYPE_MSIX = 2,
};
#define VMCI_MAX_INTRS 2
enum {
VMCI_INTR_DATAGRAM = 0,
VMCI_INTR_NOTIFICATION = 1,
};
#define VMCI_MAX_GUEST_QP_MEMORY (128 * 1024 * 1024)
#define VMCI_MAX_PINNED_QP_MEMORY (32 * 1024)
enum {
VMCI_RESOURCES_QUERY = 0,
VMCI_GET_CONTEXT_ID = 1,
VMCI_SET_NOTIFY_BITMAP = 2,
VMCI_DOORBELL_LINK = 3,
VMCI_DOORBELL_UNLINK = 4,
VMCI_DOORBELL_NOTIFY = 5,
VMCI_DATAGRAM_REQUEST_MAP = 6,
VMCI_DATAGRAM_REMOVE_MAP = 7,
VMCI_EVENT_SUBSCRIBE = 8,
VMCI_EVENT_UNSUBSCRIBE = 9,
VMCI_QUEUEPAIR_ALLOC = 10,
VMCI_QUEUEPAIR_DETACH = 11,
VMCI_HGFS_TRANSPORT = 13,
VMCI_UNITY_PBRPC_REGISTER = 14,
VMCI_RPC_PRIVILEGED = 15,
VMCI_RPC_UNPRIVILEGED = 16,
VMCI_RESOURCE_MAX = 17,
};
struct vmci_handle {
u32 context;
u32 resource;
};
#define vmci_make_handle(_cid, _rid) \
(struct vmci_handle){ .context = _cid, .resource = _rid }
static inline bool vmci_handle_is_equal(struct vmci_handle h1,
struct vmci_handle h2)
{
return h1.context == h2.context && h1.resource == h2.resource;
}
#define VMCI_INVALID_ID ~0
static const struct vmci_handle VMCI_INVALID_HANDLE = {
.context = VMCI_INVALID_ID,
.resource = VMCI_INVALID_ID
};
static inline bool vmci_handle_is_invalid(struct vmci_handle h)
{
return vmci_handle_is_equal(h, VMCI_INVALID_HANDLE);
}
#define VMCI_ANON_SRC_CONTEXT_ID VMCI_INVALID_ID
#define VMCI_ANON_SRC_RESOURCE_ID VMCI_INVALID_ID
static const struct vmci_handle VMCI_ANON_SRC_HANDLE = {
.context = VMCI_ANON_SRC_CONTEXT_ID,
.resource = VMCI_ANON_SRC_RESOURCE_ID
};
#define VMCI_RESERVED_CID_LIMIT ((u32) 16)
#define VMCI_HYPERVISOR_CONTEXT_ID 0
#define VMCI_WELL_KNOWN_CONTEXT_ID 1
#define VMCI_HOST_CONTEXT_ID 2
#define VMCI_CONTEXT_IS_VM(_cid) (VMCI_INVALID_ID != (_cid) && \
(_cid) > VMCI_HOST_CONTEXT_ID)
#define VMCI_CONTEXT_RESOURCE_ID 0
enum {
VMCI_SUCCESS_QUEUEPAIR_ATTACH = 5,
VMCI_SUCCESS_QUEUEPAIR_CREATE = 4,
VMCI_SUCCESS_LAST_DETACH = 3,
VMCI_SUCCESS_ACCESS_GRANTED = 2,
VMCI_SUCCESS_ENTRY_DEAD = 1,
VMCI_SUCCESS = 0,
VMCI_ERROR_INVALID_RESOURCE = (-1),
VMCI_ERROR_INVALID_ARGS = (-2),
VMCI_ERROR_NO_MEM = (-3),
VMCI_ERROR_DATAGRAM_FAILED = (-4),
VMCI_ERROR_MORE_DATA = (-5),
VMCI_ERROR_NO_MORE_DATAGRAMS = (-6),
VMCI_ERROR_NO_ACCESS = (-7),
VMCI_ERROR_NO_HANDLE = (-8),
VMCI_ERROR_DUPLICATE_ENTRY = (-9),
VMCI_ERROR_DST_UNREACHABLE = (-10),
VMCI_ERROR_PAYLOAD_TOO_LARGE = (-11),
VMCI_ERROR_INVALID_PRIV = (-12),
VMCI_ERROR_GENERIC = (-13),
VMCI_ERROR_PAGE_ALREADY_SHARED = (-14),
VMCI_ERROR_CANNOT_SHARE_PAGE = (-15),
VMCI_ERROR_CANNOT_UNSHARE_PAGE = (-16),
VMCI_ERROR_NO_PROCESS = (-17),
VMCI_ERROR_NO_DATAGRAM = (-18),
VMCI_ERROR_NO_RESOURCES = (-19),
VMCI_ERROR_UNAVAILABLE = (-20),
VMCI_ERROR_NOT_FOUND = (-21),
VMCI_ERROR_ALREADY_EXISTS = (-22),
VMCI_ERROR_NOT_PAGE_ALIGNED = (-23),
VMCI_ERROR_INVALID_SIZE = (-24),
VMCI_ERROR_REGION_ALREADY_SHARED = (-25),
VMCI_ERROR_TIMEOUT = (-26),
VMCI_ERROR_DATAGRAM_INCOMPLETE = (-27),
VMCI_ERROR_INCORRECT_IRQL = (-28),
VMCI_ERROR_EVENT_UNKNOWN = (-29),
VMCI_ERROR_OBSOLETE = (-30),
VMCI_ERROR_QUEUEPAIR_MISMATCH = (-31),
VMCI_ERROR_QUEUEPAIR_NOTSET = (-32),
VMCI_ERROR_QUEUEPAIR_NOTOWNER = (-33),
VMCI_ERROR_QUEUEPAIR_NOTATTACHED = (-34),
VMCI_ERROR_QUEUEPAIR_NOSPACE = (-35),
VMCI_ERROR_QUEUEPAIR_NODATA = (-36),
VMCI_ERROR_BUSMEM_INVALIDATION = (-37),
VMCI_ERROR_MODULE_NOT_LOADED = (-38),
VMCI_ERROR_DEVICE_NOT_FOUND = (-39),
VMCI_ERROR_QUEUEPAIR_NOT_READY = (-40),
VMCI_ERROR_WOULD_BLOCK = (-41),
VMCI_ERROR_CLIENT_MIN = (-500),
VMCI_ERROR_CLIENT_MAX = (-550),
VMCI_SHAREDMEM_ERROR_BAD_CONTEXT = (-1000),
};
enum {
VMCI_EVENT_CTX_ID_UPDATE = 0,
VMCI_EVENT_CTX_REMOVED = 1,
VMCI_EVENT_QP_RESUMED = 2,
VMCI_EVENT_QP_PEER_ATTACH = 3,
VMCI_EVENT_QP_PEER_DETACH = 4,
VMCI_EVENT_MEM_ACCESS_ON = 5,
VMCI_EVENT_MEM_ACCESS_OFF = 6,
VMCI_EVENT_MAX = 7,
};
#define VMCI_EVENT_VALID_VMX(_event) ((_event) == VMCI_EVENT_MEM_ACCESS_ON || \
(_event) == VMCI_EVENT_MEM_ACCESS_OFF)
#define VMCI_EVENT_VALID(_event) ((_event) < VMCI_EVENT_MAX && \
!VMCI_EVENT_VALID_VMX(_event))
#define VMCI_EVENT_HANDLER 0
enum {
VMCI_NO_PRIVILEGE_FLAGS = 0,
VMCI_PRIVILEGE_FLAG_RESTRICTED = 1,
VMCI_PRIVILEGE_FLAG_TRUSTED = 2,
VMCI_PRIVILEGE_ALL_FLAGS = (VMCI_PRIVILEGE_FLAG_RESTRICTED |
VMCI_PRIVILEGE_FLAG_TRUSTED),
VMCI_DEFAULT_PROC_PRIVILEGE_FLAGS = VMCI_NO_PRIVILEGE_FLAGS,
VMCI_LEAST_PRIVILEGE_FLAGS = VMCI_PRIVILEGE_FLAG_RESTRICTED,
VMCI_MAX_PRIVILEGE_FLAGS = VMCI_PRIVILEGE_FLAG_TRUSTED,
};
#define VMCI_RESERVED_RESOURCE_ID_MAX 1023
#define VMCI_VERSION_SHIFT_WIDTH 16
#define VMCI_MAKE_VERSION(_major, _minor) \
((_major) << VMCI_VERSION_SHIFT_WIDTH | (u16) (_minor))
#define VMCI_VERSION_MAJOR(v) ((u32) (v) >> VMCI_VERSION_SHIFT_WIDTH)
#define VMCI_VERSION_MINOR(v) ((u16) (v))
#define VMCI_VERSION VMCI_VERSION_NOVMVM
#define VMCI_VERSION_NOVMVM VMCI_MAKE_VERSION(11, 0)
#define VMCI_VERSION_NOTIFY VMCI_MAKE_VERSION(10, 0)
#define VMCI_VERSION_HOSTQP VMCI_MAKE_VERSION(9, 0)
#define VMCI_VERSION_PREHOSTQP VMCI_MAKE_VERSION(8, 0)
#define VMCI_VERSION_PREVERS2 VMCI_MAKE_VERSION(1, 0)
#define VMCI_SOCKETS_MAKE_VERSION(_p) \
((((_p)[0] & 0xFF) << 24) | (((_p)[1] & 0xFF) << 16) | ((_p)[2]))
#define IOCTL_VMCI_VERSION _IO(7, 0x9f)
#define IOCTL_VMCI_INIT_CONTEXT _IO(7, 0xa0)
#define IOCTL_VMCI_QUEUEPAIR_SETVA _IO(7, 0xa4)
#define IOCTL_VMCI_NOTIFY_RESOURCE _IO(7, 0xa5)
#define IOCTL_VMCI_NOTIFICATIONS_RECEIVE _IO(7, 0xa6)
#define IOCTL_VMCI_VERSION2 _IO(7, 0xa7)
#define IOCTL_VMCI_QUEUEPAIR_ALLOC _IO(7, 0xa8)
#define IOCTL_VMCI_QUEUEPAIR_SETPAGEFILE _IO(7, 0xa9)
#define IOCTL_VMCI_QUEUEPAIR_DETACH _IO(7, 0xaa)
#define IOCTL_VMCI_DATAGRAM_SEND _IO(7, 0xab)
#define IOCTL_VMCI_DATAGRAM_RECEIVE _IO(7, 0xac)
#define IOCTL_VMCI_CTX_ADD_NOTIFICATION _IO(7, 0xaf)
#define IOCTL_VMCI_CTX_REMOVE_NOTIFICATION _IO(7, 0xb0)
#define IOCTL_VMCI_CTX_GET_CPT_STATE _IO(7, 0xb1)
#define IOCTL_VMCI_CTX_SET_CPT_STATE _IO(7, 0xb2)
#define IOCTL_VMCI_GET_CONTEXT_ID _IO(7, 0xb3)
#define IOCTL_VMCI_SOCKETS_VERSION _IO(7, 0xb4)
#define IOCTL_VMCI_SOCKETS_GET_AF_VALUE _IO(7, 0xb8)
#define IOCTL_VMCI_SOCKETS_GET_LOCAL_CID _IO(7, 0xb9)
#define IOCTL_VMCI_SET_NOTIFY _IO(7, 0xcb)
struct vmci_queue_header {
struct vmci_handle handle;
atomic64_t producer_tail;
atomic64_t consumer_head;
};
struct vmci_datagram {
struct vmci_handle dst;
struct vmci_handle src;
u64 payload_size;
};
#define VMCI_FLAG_DG_NONE 0
#define VMCI_FLAG_WELLKNOWN_DG_HND 0x1
#define VMCI_FLAG_ANYCID_DG_HND 0x2
#define VMCI_FLAG_DG_DELAYED_CB 0x4
#define VMCI_MAX_DG_SIZE (17 * 4096)
#define VMCI_MAX_DG_PAYLOAD_SIZE (VMCI_MAX_DG_SIZE - \
sizeof(struct vmci_datagram))
#define VMCI_DG_PAYLOAD(_dg) (void *)((char *)(_dg) + \
sizeof(struct vmci_datagram))
#define VMCI_DG_HEADERSIZE sizeof(struct vmci_datagram)
#define VMCI_DG_SIZE(_dg) (VMCI_DG_HEADERSIZE + (size_t)(_dg)->payload_size)
#define VMCI_DG_SIZE_ALIGNED(_dg) ((VMCI_DG_SIZE(_dg) + 7) & (~((size_t) 0x7)))
#define VMCI_MAX_DATAGRAM_QUEUE_SIZE (VMCI_MAX_DG_SIZE * 2)
struct vmci_event_payload_qp {
struct vmci_handle handle;
u32 peer_id;
u32 _pad;
};
enum {
VMCI_QPFLAG_ATTACH_ONLY = 1 << 0,
VMCI_QPFLAG_LOCAL = 1 << 1,
VMCI_QPFLAG_NONBLOCK = 1 << 2,
VMCI_QPFLAG_PINNED = 1 << 3,
VMCI_QP_ALL_FLAGS = (VMCI_QPFLAG_ATTACH_ONLY | VMCI_QPFLAG_LOCAL |
VMCI_QPFLAG_NONBLOCK | VMCI_QPFLAG_PINNED),
VMCI_QP_ASYMM = (VMCI_QPFLAG_NONBLOCK | VMCI_QPFLAG_PINNED),
VMCI_QP_ASYMM_PEER = (VMCI_QPFLAG_ATTACH_ONLY | VMCI_QP_ASYMM),
};
#define VMCI_MAX_DATAGRAM_AND_EVENT_QUEUE_SIZE \
(VMCI_MAX_DATAGRAM_QUEUE_SIZE + \
1024 * (sizeof(struct vmci_datagram) + \
sizeof(struct vmci_event_data_max)))
struct vmci_resource_query_hdr {
struct vmci_datagram hdr;
u32 num_resources;
u32 _padding;
};
struct vmci_resource_query_msg {
u32 num_resources;
u32 _padding;
u32 resources[1];
};
#define VMCI_RESOURCE_QUERY_MAX_NUM 31
#define VMCI_RESOURCE_QUERY_MAX_SIZE \
(sizeof(struct vmci_resource_query_hdr) + \
sizeof(u32) * VMCI_RESOURCE_QUERY_MAX_NUM)
struct vmci_notify_bm_set_msg {
struct vmci_datagram hdr;
u32 bitmap_ppn;
u32 _pad;
};
struct vmci_doorbell_link_msg {
struct vmci_datagram hdr;
struct vmci_handle handle;
u64 notify_idx;
};
struct vmci_doorbell_unlink_msg {
struct vmci_datagram hdr;
struct vmci_handle handle;
};
struct vmci_doorbell_notify_msg {
struct vmci_datagram hdr;
struct vmci_handle handle;
};
struct vmci_event_data {
u32 event;
u32 _pad;
};
struct vmci_event_payld_ctx {
u32 context_id;
u32 _pad;
};
struct vmci_event_payld_qp {
struct vmci_handle handle;
u32 peer_id;
u32 _pad;
};
struct vmci_event_data_max {
struct vmci_event_data event_data;
union {
struct vmci_event_payld_ctx context_payload;
struct vmci_event_payld_qp qp_payload;
} ev_data_payload;
};
struct vmci_event_msg {
struct vmci_datagram hdr;
struct vmci_event_data event_data;
};
struct vmci_event_ctx {
struct vmci_event_msg msg;
struct vmci_event_payld_ctx payload;
};
struct vmci_event_qp {
struct vmci_event_msg msg;
struct vmci_event_payld_qp payload;
};
struct vmci_qp_alloc_msg {
struct vmci_datagram hdr;
struct vmci_handle handle;
u32 peer;
u32 flags;
u64 produce_size;
u64 consume_size;
u64 num_ppns;
};
struct vmci_qp_detach_msg {
struct vmci_datagram hdr;
struct vmci_handle handle;
};
#define VMCI_FLAG_DELAYED_CB 0x01
typedef void (*vmci_callback) (void *client_data);
struct vmci_qp;
typedef int (*vmci_datagram_recv_cb) (void *client_data,
struct vmci_datagram *msg);
typedef void (*vmci_event_cb) (u32 sub_id, const struct vmci_event_data *ed,
void *client_data);
static inline const void *
vmci_event_data_const_payload(const struct vmci_event_data *ev_data)
{
return (const char *)ev_data + sizeof(*ev_data);
}
static inline void *vmci_event_data_payload(struct vmci_event_data *ev_data)
{
return (void *)vmci_event_data_const_payload(ev_data);
}
static inline void vmci_qp_add_pointer(atomic64_t *var,
size_t add,
u64 size)
{
u64 new_val = atomic64_read(var);
if (new_val >= size - add)
new_val -= size;
new_val += add;
atomic64_set(var, new_val);
}
static inline u64
vmci_q_header_producer_tail(const struct vmci_queue_header *q_header)
{
struct vmci_queue_header *qh = (struct vmci_queue_header *)q_header;
return atomic64_read(&qh->producer_tail);
}
static inline u64
vmci_q_header_consumer_head(const struct vmci_queue_header *q_header)
{
struct vmci_queue_header *qh = (struct vmci_queue_header *)q_header;
return atomic64_read(&qh->consumer_head);
}
static inline void
vmci_q_header_add_producer_tail(struct vmci_queue_header *q_header,
size_t add,
u64 queue_size)
{
vmci_qp_add_pointer(&q_header->producer_tail, add, queue_size);
}
static inline void
vmci_q_header_add_consumer_head(struct vmci_queue_header *q_header,
size_t add,
u64 queue_size)
{
vmci_qp_add_pointer(&q_header->consumer_head, add, queue_size);
}
static inline void
vmci_q_header_get_pointers(const struct vmci_queue_header *produce_q_header,
const struct vmci_queue_header *consume_q_header,
u64 *producer_tail,
u64 *consumer_head)
{
if (producer_tail)
*producer_tail = vmci_q_header_producer_tail(produce_q_header);
if (consumer_head)
*consumer_head = vmci_q_header_consumer_head(consume_q_header);
}
static inline void vmci_q_header_init(struct vmci_queue_header *q_header,
const struct vmci_handle handle)
{
q_header->handle = handle;
atomic64_set(&q_header->producer_tail, 0);
atomic64_set(&q_header->consumer_head, 0);
}
static s64
vmci_q_header_free_space(const struct vmci_queue_header *produce_q_header,
const struct vmci_queue_header *consume_q_header,
const u64 produce_q_size)
{
u64 tail;
u64 head;
u64 free_space;
tail = vmci_q_header_producer_tail(produce_q_header);
head = vmci_q_header_consumer_head(consume_q_header);
if (tail >= produce_q_size || head >= produce_q_size)
return VMCI_ERROR_INVALID_SIZE;
if (tail >= head)
free_space = produce_q_size - (tail - head) - 1;
else
free_space = head - tail - 1;
return free_space;
}
static inline s64
vmci_q_header_buf_ready(const struct vmci_queue_header *consume_q_header,
const struct vmci_queue_header *produce_q_header,
const u64 consume_q_size)
{
s64 free_space;
free_space = vmci_q_header_free_space(consume_q_header,
produce_q_header, consume_q_size);
if (free_space < VMCI_SUCCESS)
return free_space;
return consume_q_size - free_space - 1;
}
#endif