target_core_fabric.h 8.7 KB

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  1. /* SPDX-License-Identifier: GPL-2.0 */
  2. #ifndef TARGET_CORE_FABRIC_H
  3. #define TARGET_CORE_FABRIC_H
  4. #include <linux/configfs.h>
  5. #include <linux/types.h>
  6. #include <target/target_core_base.h>
  7. struct target_core_fabric_ops {
  8. struct module *module;
  9. const char *name;
  10. size_t node_acl_size;
  11. /*
  12. * Limits number of scatterlist entries per SCF_SCSI_DATA_CDB payload.
  13. * Setting this value tells target-core to enforce this limit, and
  14. * report as INQUIRY EVPD=b0 MAXIMUM TRANSFER LENGTH.
  15. *
  16. * target-core will currently reset se_cmd->data_length to this
  17. * maximum size, and set UNDERFLOW residual count if length exceeds
  18. * this limit.
  19. *
  20. * XXX: Not all initiator hosts honor this block-limit EVPD
  21. * XXX: Currently assumes single PAGE_SIZE per scatterlist entry
  22. */
  23. u32 max_data_sg_nents;
  24. char *(*get_fabric_name)(void);
  25. char *(*tpg_get_wwn)(struct se_portal_group *);
  26. u16 (*tpg_get_tag)(struct se_portal_group *);
  27. u32 (*tpg_get_default_depth)(struct se_portal_group *);
  28. int (*tpg_check_demo_mode)(struct se_portal_group *);
  29. int (*tpg_check_demo_mode_cache)(struct se_portal_group *);
  30. int (*tpg_check_demo_mode_write_protect)(struct se_portal_group *);
  31. int (*tpg_check_prod_mode_write_protect)(struct se_portal_group *);
  32. /*
  33. * Optionally used by fabrics to allow demo-mode login, but not
  34. * expose any TPG LUNs, and return 'not connected' in standard
  35. * inquiry response
  36. */
  37. int (*tpg_check_demo_mode_login_only)(struct se_portal_group *);
  38. /*
  39. * Optionally used as a configfs tunable to determine when
  40. * target-core should signal the PROTECT=1 feature bit for
  41. * backends that don't support T10-PI, so that either fabric
  42. * HW offload or target-core emulation performs the associated
  43. * WRITE_STRIP and READ_INSERT operations.
  44. */
  45. int (*tpg_check_prot_fabric_only)(struct se_portal_group *);
  46. u32 (*tpg_get_inst_index)(struct se_portal_group *);
  47. /*
  48. * Optional to release struct se_cmd and fabric dependent allocated
  49. * I/O descriptor after command execution has finished.
  50. *
  51. * Returning 1 will signal a descriptor has been released.
  52. * Returning 0 will signal a descriptor has not been released.
  53. */
  54. int (*check_stop_free)(struct se_cmd *);
  55. void (*release_cmd)(struct se_cmd *);
  56. void (*close_session)(struct se_session *);
  57. u32 (*sess_get_index)(struct se_session *);
  58. /*
  59. * Used only for SCSI fabrics that contain multi-value TransportIDs
  60. * (like iSCSI). All other SCSI fabrics should set this to NULL.
  61. */
  62. u32 (*sess_get_initiator_sid)(struct se_session *,
  63. unsigned char *, u32);
  64. int (*write_pending)(struct se_cmd *);
  65. int (*write_pending_status)(struct se_cmd *);
  66. void (*set_default_node_attributes)(struct se_node_acl *);
  67. int (*get_cmd_state)(struct se_cmd *);
  68. int (*queue_data_in)(struct se_cmd *);
  69. int (*queue_status)(struct se_cmd *);
  70. void (*queue_tm_rsp)(struct se_cmd *);
  71. void (*aborted_task)(struct se_cmd *);
  72. /*
  73. * fabric module calls for target_core_fabric_configfs.c
  74. */
  75. struct se_wwn *(*fabric_make_wwn)(struct target_fabric_configfs *,
  76. struct config_group *, const char *);
  77. void (*fabric_drop_wwn)(struct se_wwn *);
  78. void (*add_wwn_groups)(struct se_wwn *);
  79. struct se_portal_group *(*fabric_make_tpg)(struct se_wwn *,
  80. const char *);
  81. void (*fabric_drop_tpg)(struct se_portal_group *);
  82. int (*fabric_post_link)(struct se_portal_group *,
  83. struct se_lun *);
  84. void (*fabric_pre_unlink)(struct se_portal_group *,
  85. struct se_lun *);
  86. struct se_tpg_np *(*fabric_make_np)(struct se_portal_group *,
  87. struct config_group *, const char *);
  88. void (*fabric_drop_np)(struct se_tpg_np *);
  89. int (*fabric_init_nodeacl)(struct se_node_acl *, const char *);
  90. struct configfs_attribute **tfc_discovery_attrs;
  91. struct configfs_attribute **tfc_wwn_attrs;
  92. struct configfs_attribute **tfc_tpg_base_attrs;
  93. struct configfs_attribute **tfc_tpg_np_base_attrs;
  94. struct configfs_attribute **tfc_tpg_attrib_attrs;
  95. struct configfs_attribute **tfc_tpg_auth_attrs;
  96. struct configfs_attribute **tfc_tpg_param_attrs;
  97. struct configfs_attribute **tfc_tpg_nacl_base_attrs;
  98. struct configfs_attribute **tfc_tpg_nacl_attrib_attrs;
  99. struct configfs_attribute **tfc_tpg_nacl_auth_attrs;
  100. struct configfs_attribute **tfc_tpg_nacl_param_attrs;
  101. };
  102. int target_register_template(const struct target_core_fabric_ops *fo);
  103. void target_unregister_template(const struct target_core_fabric_ops *fo);
  104. int target_depend_item(struct config_item *item);
  105. void target_undepend_item(struct config_item *item);
  106. struct se_session *target_setup_session(struct se_portal_group *,
  107. unsigned int, unsigned int, enum target_prot_op prot_op,
  108. const char *, void *,
  109. int (*callback)(struct se_portal_group *,
  110. struct se_session *, void *));
  111. void target_remove_session(struct se_session *);
  112. int transport_init_session(struct se_session *se_sess);
  113. struct se_session *transport_alloc_session(enum target_prot_op);
  114. int transport_alloc_session_tags(struct se_session *, unsigned int,
  115. unsigned int);
  116. void __transport_register_session(struct se_portal_group *,
  117. struct se_node_acl *, struct se_session *, void *);
  118. void transport_register_session(struct se_portal_group *,
  119. struct se_node_acl *, struct se_session *, void *);
  120. ssize_t target_show_dynamic_sessions(struct se_portal_group *, char *);
  121. void transport_free_session(struct se_session *);
  122. void target_put_nacl(struct se_node_acl *);
  123. void transport_deregister_session_configfs(struct se_session *);
  124. void transport_deregister_session(struct se_session *);
  125. void transport_init_se_cmd(struct se_cmd *,
  126. const struct target_core_fabric_ops *,
  127. struct se_session *, u32, int, int, unsigned char *);
  128. sense_reason_t transport_lookup_cmd_lun(struct se_cmd *, u64);
  129. sense_reason_t target_setup_cmd_from_cdb(struct se_cmd *, unsigned char *);
  130. int target_submit_cmd_map_sgls(struct se_cmd *, struct se_session *,
  131. unsigned char *, unsigned char *, u64, u32, int, int, int,
  132. struct scatterlist *, u32, struct scatterlist *, u32,
  133. struct scatterlist *, u32);
  134. int target_submit_cmd(struct se_cmd *, struct se_session *, unsigned char *,
  135. unsigned char *, u64, u32, int, int, int);
  136. int target_submit_tmr(struct se_cmd *se_cmd, struct se_session *se_sess,
  137. unsigned char *sense, u64 unpacked_lun,
  138. void *fabric_tmr_ptr, unsigned char tm_type,
  139. gfp_t, u64, int);
  140. int transport_handle_cdb_direct(struct se_cmd *);
  141. sense_reason_t transport_generic_new_cmd(struct se_cmd *);
  142. void target_execute_cmd(struct se_cmd *cmd);
  143. int transport_generic_free_cmd(struct se_cmd *, int);
  144. bool transport_wait_for_tasks(struct se_cmd *);
  145. int transport_check_aborted_status(struct se_cmd *, int);
  146. int transport_send_check_condition_and_sense(struct se_cmd *,
  147. sense_reason_t, int);
  148. int target_get_sess_cmd(struct se_cmd *, bool);
  149. int target_put_sess_cmd(struct se_cmd *);
  150. void target_sess_cmd_list_set_waiting(struct se_session *);
  151. void target_wait_for_sess_cmds(struct se_session *);
  152. void target_show_cmd(const char *pfx, struct se_cmd *cmd);
  153. int core_alua_check_nonop_delay(struct se_cmd *);
  154. int core_tmr_alloc_req(struct se_cmd *, void *, u8, gfp_t);
  155. void core_tmr_release_req(struct se_tmr_req *);
  156. int transport_generic_handle_tmr(struct se_cmd *);
  157. void transport_generic_request_failure(struct se_cmd *, sense_reason_t);
  158. int transport_lookup_tmr_lun(struct se_cmd *, u64);
  159. void core_allocate_nexus_loss_ua(struct se_node_acl *acl);
  160. struct se_node_acl *core_tpg_get_initiator_node_acl(struct se_portal_group *tpg,
  161. unsigned char *);
  162. bool target_tpg_has_node_acl(struct se_portal_group *tpg,
  163. const char *);
  164. struct se_node_acl *core_tpg_check_initiator_node_acl(struct se_portal_group *,
  165. unsigned char *);
  166. int core_tpg_set_initiator_node_queue_depth(struct se_node_acl *, u32);
  167. int core_tpg_set_initiator_node_tag(struct se_portal_group *,
  168. struct se_node_acl *, const char *);
  169. int core_tpg_register(struct se_wwn *, struct se_portal_group *, int);
  170. int core_tpg_deregister(struct se_portal_group *);
  171. int target_alloc_sgl(struct scatterlist **sgl, unsigned int *nents,
  172. u32 length, bool zero_page, bool chainable);
  173. void target_free_sgl(struct scatterlist *sgl, int nents);
  174. /*
  175. * The LIO target core uses DMA_TO_DEVICE to mean that data is going
  176. * to the target (eg handling a WRITE) and DMA_FROM_DEVICE to mean
  177. * that data is coming from the target (eg handling a READ). However,
  178. * this is just the opposite of what we have to tell the DMA mapping
  179. * layer -- eg when handling a READ, the HBA will have to DMA the data
  180. * out of memory so it can send it to the initiator, which means we
  181. * need to use DMA_TO_DEVICE when we map the data.
  182. */
  183. static inline enum dma_data_direction
  184. target_reverse_dma_direction(struct se_cmd *se_cmd)
  185. {
  186. if (se_cmd->se_cmd_flags & SCF_BIDI)
  187. return DMA_BIDIRECTIONAL;
  188. switch (se_cmd->data_direction) {
  189. case DMA_TO_DEVICE:
  190. return DMA_FROM_DEVICE;
  191. case DMA_FROM_DEVICE:
  192. return DMA_TO_DEVICE;
  193. case DMA_NONE:
  194. default:
  195. return DMA_NONE;
  196. }
  197. }
  198. #endif /* TARGET_CORE_FABRICH */