cachepc-linux

Fork of AMDESE/linux with modifications for CachePC side-channel attack
git clone https://git.sinitax.com/sinitax/cachepc-linux
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efa_com_cmd.h (7748B)


      1/* SPDX-License-Identifier: GPL-2.0 OR BSD-2-Clause */
      2/*
      3 * Copyright 2018-2021 Amazon.com, Inc. or its affiliates. All rights reserved.
      4 */
      5
      6#ifndef _EFA_COM_CMD_H_
      7#define _EFA_COM_CMD_H_
      8
      9#include "efa_com.h"
     10
     11#define EFA_GID_SIZE 16
     12
     13struct efa_com_create_qp_params {
     14	u64 rq_base_addr;
     15	u32 send_cq_idx;
     16	u32 recv_cq_idx;
     17	/*
     18	 * Send descriptor ring size in bytes,
     19	 * sufficient for user-provided number of WQEs and SGL size
     20	 */
     21	u32 sq_ring_size_in_bytes;
     22	/* Max number of WQEs that will be posted on send queue */
     23	u32 sq_depth;
     24	/* Recv descriptor ring size in bytes */
     25	u32 rq_ring_size_in_bytes;
     26	u32 rq_depth;
     27	u16 pd;
     28	u16 uarn;
     29	u8 qp_type;
     30};
     31
     32struct efa_com_create_qp_result {
     33	u32 qp_handle;
     34	u32 qp_num;
     35	u32 sq_db_offset;
     36	u32 rq_db_offset;
     37	u32 llq_descriptors_offset;
     38	u16 send_sub_cq_idx;
     39	u16 recv_sub_cq_idx;
     40};
     41
     42struct efa_com_modify_qp_params {
     43	u32 modify_mask;
     44	u32 qp_handle;
     45	u32 qp_state;
     46	u32 cur_qp_state;
     47	u32 qkey;
     48	u32 sq_psn;
     49	u8 sq_drained_async_notify;
     50	u8 rnr_retry;
     51};
     52
     53struct efa_com_query_qp_params {
     54	u32 qp_handle;
     55};
     56
     57struct efa_com_query_qp_result {
     58	u32 qp_state;
     59	u32 qkey;
     60	u32 sq_draining;
     61	u32 sq_psn;
     62	u8 rnr_retry;
     63};
     64
     65struct efa_com_destroy_qp_params {
     66	u32 qp_handle;
     67};
     68
     69struct efa_com_create_cq_params {
     70	/* cq physical base address in OS memory */
     71	dma_addr_t dma_addr;
     72	/* completion queue depth in # of entries */
     73	u16 cq_depth;
     74	u16 num_sub_cqs;
     75	u16 uarn;
     76	u16 eqn;
     77	u8 entry_size_in_bytes;
     78	bool interrupt_mode_enabled;
     79};
     80
     81struct efa_com_create_cq_result {
     82	/* cq identifier */
     83	u16 cq_idx;
     84	/* actual cq depth in # of entries */
     85	u16 actual_depth;
     86	u32 db_off;
     87	bool db_valid;
     88};
     89
     90struct efa_com_destroy_cq_params {
     91	u16 cq_idx;
     92};
     93
     94struct efa_com_create_ah_params {
     95	u16 pdn;
     96	/* Destination address in network byte order */
     97	u8 dest_addr[EFA_GID_SIZE];
     98};
     99
    100struct efa_com_create_ah_result {
    101	u16 ah;
    102};
    103
    104struct efa_com_destroy_ah_params {
    105	u16 ah;
    106	u16 pdn;
    107};
    108
    109struct efa_com_get_device_attr_result {
    110	u8 addr[EFA_GID_SIZE];
    111	u64 page_size_cap;
    112	u64 max_mr_pages;
    113	u32 mtu;
    114	u32 fw_version;
    115	u32 admin_api_version;
    116	u32 device_version;
    117	u32 supported_features;
    118	u32 phys_addr_width;
    119	u32 virt_addr_width;
    120	u32 max_qp;
    121	u32 max_sq_depth; /* wqes */
    122	u32 max_rq_depth; /* wqes */
    123	u32 max_cq;
    124	u32 max_cq_depth; /* cqes */
    125	u32 inline_buf_size;
    126	u32 max_mr;
    127	u32 max_pd;
    128	u32 max_ah;
    129	u32 max_llq_size;
    130	u32 max_rdma_size;
    131	u32 device_caps;
    132	u32 max_eq;
    133	u32 max_eq_depth;
    134	u32 event_bitmask; /* EQ events bitmask */
    135	u16 sub_cqs_per_cq;
    136	u16 max_sq_sge;
    137	u16 max_rq_sge;
    138	u16 max_wr_rdma_sge;
    139	u16 max_tx_batch;
    140	u16 min_sq_depth;
    141	u8 db_bar;
    142};
    143
    144struct efa_com_get_hw_hints_result {
    145	u16 mmio_read_timeout;
    146	u16 driver_watchdog_timeout;
    147	u16 admin_completion_timeout;
    148	u16 poll_interval;
    149	u32 reserved[4];
    150};
    151
    152struct efa_com_mem_addr {
    153	u32 mem_addr_low;
    154	u32 mem_addr_high;
    155};
    156
    157/* Used at indirect mode page list chunks for chaining */
    158struct efa_com_ctrl_buff_info {
    159	/* indicates length of the buffer pointed by control_buffer_address. */
    160	u32 length;
    161	/* points to control buffer (direct or indirect) */
    162	struct efa_com_mem_addr address;
    163};
    164
    165struct efa_com_reg_mr_params {
    166	/* Memory region length, in bytes. */
    167	u64 mr_length_in_bytes;
    168	/* IO Virtual Address associated with this MR. */
    169	u64 iova;
    170	/* words 8:15: Physical Buffer List, each element is page-aligned. */
    171	union {
    172		/*
    173		 * Inline array of physical addresses of app pages
    174		 * (optimization for short region reservations)
    175		 */
    176		u64 inline_pbl_array[4];
    177		/*
    178		 * Describes the next physically contiguous chunk of indirect
    179		 * page list. A page list contains physical addresses of command
    180		 * data pages. Data pages are 4KB; page list chunks are
    181		 * variable-sized.
    182		 */
    183		struct efa_com_ctrl_buff_info pbl;
    184	} pbl;
    185	/* number of pages in PBL (redundant, could be calculated) */
    186	u32 page_num;
    187	/* Protection Domain */
    188	u16 pd;
    189	/*
    190	 * phys_page_size_shift - page size is (1 << phys_page_size_shift)
    191	 * Page size is used for building the Virtual to Physical
    192	 * address mapping
    193	 */
    194	u8 page_shift;
    195	/* see permissions field of struct efa_admin_reg_mr_cmd */
    196	u8 permissions;
    197	u8 inline_pbl;
    198	u8 indirect;
    199};
    200
    201struct efa_com_reg_mr_result {
    202	/*
    203	 * To be used in conjunction with local buffers references in SQ and
    204	 * RQ WQE
    205	 */
    206	u32 l_key;
    207	/*
    208	 * To be used in incoming RDMA semantics messages to refer to remotely
    209	 * accessed memory region
    210	 */
    211	u32 r_key;
    212};
    213
    214struct efa_com_dereg_mr_params {
    215	u32 l_key;
    216};
    217
    218struct efa_com_alloc_pd_result {
    219	u16 pdn;
    220};
    221
    222struct efa_com_dealloc_pd_params {
    223	u16 pdn;
    224};
    225
    226struct efa_com_alloc_uar_result {
    227	u16 uarn;
    228};
    229
    230struct efa_com_dealloc_uar_params {
    231	u16 uarn;
    232};
    233
    234struct efa_com_get_stats_params {
    235	/* see enum efa_admin_get_stats_type */
    236	u8 type;
    237	/* see enum efa_admin_get_stats_scope */
    238	u8 scope;
    239	u16 scope_modifier;
    240};
    241
    242struct efa_com_basic_stats {
    243	u64 tx_bytes;
    244	u64 tx_pkts;
    245	u64 rx_bytes;
    246	u64 rx_pkts;
    247	u64 rx_drops;
    248};
    249
    250struct efa_com_messages_stats {
    251	u64 send_bytes;
    252	u64 send_wrs;
    253	u64 recv_bytes;
    254	u64 recv_wrs;
    255};
    256
    257struct efa_com_rdma_read_stats {
    258	u64 read_wrs;
    259	u64 read_bytes;
    260	u64 read_wr_err;
    261	u64 read_resp_bytes;
    262};
    263
    264union efa_com_get_stats_result {
    265	struct efa_com_basic_stats basic_stats;
    266	struct efa_com_messages_stats messages_stats;
    267	struct efa_com_rdma_read_stats rdma_read_stats;
    268};
    269
    270int efa_com_create_qp(struct efa_com_dev *edev,
    271		      struct efa_com_create_qp_params *params,
    272		      struct efa_com_create_qp_result *res);
    273int efa_com_modify_qp(struct efa_com_dev *edev,
    274		      struct efa_com_modify_qp_params *params);
    275int efa_com_query_qp(struct efa_com_dev *edev,
    276		     struct efa_com_query_qp_params *params,
    277		     struct efa_com_query_qp_result *result);
    278int efa_com_destroy_qp(struct efa_com_dev *edev,
    279		       struct efa_com_destroy_qp_params *params);
    280int efa_com_create_cq(struct efa_com_dev *edev,
    281		      struct efa_com_create_cq_params *params,
    282		      struct efa_com_create_cq_result *result);
    283int efa_com_destroy_cq(struct efa_com_dev *edev,
    284		       struct efa_com_destroy_cq_params *params);
    285int efa_com_register_mr(struct efa_com_dev *edev,
    286			struct efa_com_reg_mr_params *params,
    287			struct efa_com_reg_mr_result *result);
    288int efa_com_dereg_mr(struct efa_com_dev *edev,
    289		     struct efa_com_dereg_mr_params *params);
    290int efa_com_create_ah(struct efa_com_dev *edev,
    291		      struct efa_com_create_ah_params *params,
    292		      struct efa_com_create_ah_result *result);
    293int efa_com_destroy_ah(struct efa_com_dev *edev,
    294		       struct efa_com_destroy_ah_params *params);
    295int efa_com_get_device_attr(struct efa_com_dev *edev,
    296			    struct efa_com_get_device_attr_result *result);
    297int efa_com_get_hw_hints(struct efa_com_dev *edev,
    298			 struct efa_com_get_hw_hints_result *result);
    299bool
    300efa_com_check_supported_feature_id(struct efa_com_dev *edev,
    301				   enum efa_admin_aq_feature_id feature_id);
    302int efa_com_set_feature_ex(struct efa_com_dev *edev,
    303			   struct efa_admin_set_feature_resp *set_resp,
    304			   struct efa_admin_set_feature_cmd *set_cmd,
    305			   enum efa_admin_aq_feature_id feature_id,
    306			   dma_addr_t control_buf_dma_addr,
    307			   u32 control_buff_size);
    308int efa_com_set_aenq_config(struct efa_com_dev *edev, u32 groups);
    309int efa_com_alloc_pd(struct efa_com_dev *edev,
    310		     struct efa_com_alloc_pd_result *result);
    311int efa_com_dealloc_pd(struct efa_com_dev *edev,
    312		       struct efa_com_dealloc_pd_params *params);
    313int efa_com_alloc_uar(struct efa_com_dev *edev,
    314		      struct efa_com_alloc_uar_result *result);
    315int efa_com_dealloc_uar(struct efa_com_dev *edev,
    316			struct efa_com_dealloc_uar_params *params);
    317int efa_com_get_stats(struct efa_com_dev *edev,
    318		      struct efa_com_get_stats_params *params,
    319		      union efa_com_get_stats_result *result);
    320
    321#endif /* _EFA_COM_CMD_H_ */