blob: 098bf6ca7896f6a8cf301cd8c8dc96a320235f9b [file] [log] [blame]
/****************************************************************************
****************************************************************************
***
*** This header was automatically generated from a Linux kernel header
*** of the same name, to make information necessary for userspace to
*** call into the kernel available to libc. It contains only constants,
*** structures, and macros generated from the original header, and thus,
*** contains no copyrightable information.
***
*** To edit the content of this header, modify the corresponding
*** source file (e.g. under external/kernel-headers/original/) then
*** run bionic/libc/kernel/tools/update_all.py
***
*** Any manual change here will be lost the next time this script will
*** be run. You've been warned!
***
****************************************************************************
****************************************************************************/
#ifndef RDMA_USER_RXE_H
#define RDMA_USER_RXE_H
#include <linux/types.h>
#include <linux/socket.h>
#include <linux/in.h>
#include <linux/in6.h>
enum {
RXE_NETWORK_TYPE_IPV4 = 1,
RXE_NETWORK_TYPE_IPV6 = 2,
};
union rxe_gid {
__u8 raw[16];
struct {
__be64 subnet_prefix;
__be64 interface_id;
} global;
};
struct rxe_global_route {
union rxe_gid dgid;
__u32 flow_label;
__u8 sgid_index;
__u8 hop_limit;
__u8 traffic_class;
};
struct rxe_av {
__u8 port_num;
__u8 network_type;
__u8 dmac[6];
struct rxe_global_route grh;
union {
struct sockaddr_in _sockaddr_in;
struct sockaddr_in6 _sockaddr_in6;
} sgid_addr, dgid_addr;
};
struct rxe_send_wr {
__aligned_u64 wr_id;
__u32 num_sge;
__u32 opcode;
__u32 send_flags;
union {
__be32 imm_data;
__u32 invalidate_rkey;
} ex;
union {
struct {
__aligned_u64 remote_addr;
__u32 rkey;
__u32 reserved;
} rdma;
struct {
__aligned_u64 remote_addr;
__aligned_u64 compare_add;
__aligned_u64 swap;
__u32 rkey;
__u32 reserved;
} atomic;
struct {
__u32 remote_qpn;
__u32 remote_qkey;
__u16 pkey_index;
} ud;
struct {
__aligned_u64 addr;
__aligned_u64 length;
__u32 mr_lkey;
__u32 mw_rkey;
__u32 rkey;
__u32 access;
} mw;
} wr;
};
struct rxe_sge {
__aligned_u64 addr;
__u32 length;
__u32 lkey;
};
struct mminfo {
__aligned_u64 offset;
__u32 size;
__u32 pad;
};
struct rxe_dma_info {
__u32 length;
__u32 resid;
__u32 cur_sge;
__u32 num_sge;
__u32 sge_offset;
__u32 reserved;
union {
__u8 inline_data[0];
struct rxe_sge sge[0];
};
};
struct rxe_send_wqe {
struct rxe_send_wr wr;
struct rxe_av av;
__u32 status;
__u32 state;
__aligned_u64 iova;
__u32 mask;
__u32 first_psn;
__u32 last_psn;
__u32 ack_length;
__u32 ssn;
__u32 has_rd_atomic;
struct rxe_dma_info dma;
};
struct rxe_recv_wqe {
__aligned_u64 wr_id;
__u32 num_sge;
__u32 padding;
struct rxe_dma_info dma;
};
struct rxe_create_cq_resp {
struct mminfo mi;
};
struct rxe_resize_cq_resp {
struct mminfo mi;
};
struct rxe_create_qp_resp {
struct mminfo rq_mi;
struct mminfo sq_mi;
};
struct rxe_create_srq_resp {
struct mminfo mi;
__u32 srq_num;
__u32 reserved;
};
struct rxe_modify_srq_cmd {
__aligned_u64 mmap_info_addr;
};
struct rxe_queue_buf {
__u32 log2_elem_size;
__u32 index_mask;
__u32 pad_1[30];
__u32 producer_index;
__u32 pad_2[31];
__u32 consumer_index;
__u32 pad_3[31];
__u8 data[];
};
#endif