lpfc_disc.h 11 KB

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  1. /*******************************************************************
  2. * This file is part of the Emulex Linux Device Driver for *
  3. * Fibre Channel Host Bus Adapters. *
  4. * Copyright (C) 2004-2005 Emulex. All rights reserved. *
  5. * EMULEX and SLI are trademarks of Emulex. *
  6. * www.emulex.com *
  7. * *
  8. * This program is free software; you can redistribute it and/or *
  9. * modify it under the terms of version 2 of the GNU General *
  10. * Public License as published by the Free Software Foundation. *
  11. * This program is distributed in the hope that it will be useful. *
  12. * ALL EXPRESS OR IMPLIED CONDITIONS, REPRESENTATIONS AND *
  13. * WARRANTIES, INCLUDING ANY IMPLIED WARRANTY OF MERCHANTABILITY, *
  14. * FITNESS FOR A PARTICULAR PURPOSE, OR NON-INFRINGEMENT, ARE *
  15. * DISCLAIMED, EXCEPT TO THE EXTENT THAT SUCH DISCLAIMERS ARE HELD *
  16. * TO BE LEGALLY INVALID. See the GNU General Public License for *
  17. * more details, a copy of which can be found in the file COPYING *
  18. * included with this package. *
  19. *******************************************************************/
  20. #define FC_MAX_HOLD_RSCN 32 /* max number of deferred RSCNs */
  21. #define FC_MAX_NS_RSP 65536 /* max size NameServer rsp */
  22. #define FC_MAXLOOP 126 /* max devices supported on a fc loop */
  23. #define LPFC_DISC_FLOGI_TMO 10 /* Discovery FLOGI ratov */
  24. /* This is the protocol dependent definition for a Node List Entry.
  25. * This is used by Fibre Channel protocol to support FCP.
  26. */
  27. /* structure used to queue event to the discovery tasklet */
  28. struct lpfc_work_evt {
  29. struct list_head evt_listp;
  30. void * evt_arg1;
  31. void * evt_arg2;
  32. uint32_t evt;
  33. };
  34. #define LPFC_EVT_NODEV_TMO 0x1
  35. #define LPFC_EVT_ONLINE 0x2
  36. #define LPFC_EVT_OFFLINE 0x3
  37. #define LPFC_EVT_ELS_RETRY 0x4
  38. struct lpfc_nodelist {
  39. struct list_head nlp_listp;
  40. struct lpfc_name nlp_portname; /* port name */
  41. struct lpfc_name nlp_nodename; /* node name */
  42. uint32_t nlp_flag; /* entry flags */
  43. uint32_t nlp_DID; /* FC D_ID of entry */
  44. uint32_t nlp_last_elscmd; /* Last ELS cmd sent */
  45. uint16_t nlp_type;
  46. #define NLP_FC_NODE 0x1 /* entry is an FC node */
  47. #define NLP_FABRIC 0x4 /* entry rep a Fabric entity */
  48. #define NLP_FCP_TARGET 0x8 /* entry is an FCP target */
  49. #define NLP_FCP_INITIATOR 0x10 /* entry is an FCP Initiator */
  50. uint16_t nlp_rpi;
  51. uint16_t nlp_state; /* state transition indicator */
  52. uint16_t nlp_xri; /* output exchange id for RPI */
  53. uint16_t nlp_sid; /* scsi id */
  54. #define NLP_NO_SID 0xffff
  55. uint16_t nlp_maxframe; /* Max RCV frame size */
  56. uint8_t nlp_class_sup; /* Supported Classes */
  57. uint8_t nlp_retry; /* used for ELS retries */
  58. uint8_t nlp_disc_refcnt; /* used for DSM */
  59. uint8_t nlp_fcp_info; /* class info, bits 0-3 */
  60. #define NLP_FCP_2_DEVICE 0x10 /* FCP-2 device */
  61. struct timer_list nlp_delayfunc; /* Used for delayed ELS cmds */
  62. struct timer_list nlp_tmofunc; /* Used for nodev tmo */
  63. struct fc_rport *rport; /* Corresponding FC transport
  64. port structure */
  65. struct lpfc_hba *nlp_phba;
  66. struct lpfc_work_evt nodev_timeout_evt;
  67. struct lpfc_work_evt els_retry_evt;
  68. unsigned long last_ramp_up_time; /* jiffy of last ramp up */
  69. unsigned long last_q_full_time; /* jiffy of last queue full */
  70. };
  71. /* Defines for nlp_flag (uint32) */
  72. #define NLP_NO_LIST 0x0 /* Indicates immediately free node */
  73. #define NLP_UNUSED_LIST 0x1 /* Flg to indicate node will be freed */
  74. #define NLP_PLOGI_LIST 0x2 /* Flg to indicate sent PLOGI */
  75. #define NLP_ADISC_LIST 0x3 /* Flg to indicate sent ADISC */
  76. #define NLP_REGLOGIN_LIST 0x4 /* Flg to indicate sent REG_LOGIN */
  77. #define NLP_PRLI_LIST 0x5 /* Flg to indicate sent PRLI */
  78. #define NLP_UNMAPPED_LIST 0x6 /* Node is now unmapped */
  79. #define NLP_MAPPED_LIST 0x7 /* Node is now mapped */
  80. #define NLP_NPR_LIST 0x8 /* Node is in NPort Recovery state */
  81. #define NLP_JUST_DQ 0x9 /* just deque ndlp in lpfc_nlp_list */
  82. #define NLP_LIST_MASK 0xf /* mask to see what list node is on */
  83. #define NLP_PLOGI_SND 0x20 /* sent PLOGI request for this entry */
  84. #define NLP_PRLI_SND 0x40 /* sent PRLI request for this entry */
  85. #define NLP_ADISC_SND 0x80 /* sent ADISC request for this entry */
  86. #define NLP_LOGO_SND 0x100 /* sent LOGO request for this entry */
  87. #define NLP_RNID_SND 0x400 /* sent RNID request for this entry */
  88. #define NLP_ELS_SND_MASK 0x7e0 /* sent ELS request for this entry */
  89. #define NLP_NODEV_TMO 0x10000 /* nodev timeout is running for node */
  90. #define NLP_DELAY_TMO 0x20000 /* delay timeout is running for node */
  91. #define NLP_NPR_2B_DISC 0x40000 /* node is included in num_disc_nodes */
  92. #define NLP_RCV_PLOGI 0x80000 /* Rcv'ed PLOGI from remote system */
  93. #define NLP_LOGO_ACC 0x100000 /* Process LOGO after ACC completes */
  94. #define NLP_TGT_NO_SCSIID 0x200000 /* good PRLI but no binding for scsid */
  95. #define NLP_ACC_REGLOGIN 0x1000000 /* Issue Reg Login after successful
  96. ACC */
  97. #define NLP_NPR_ADISC 0x2000000 /* Issue ADISC when dq'ed from
  98. NPR list */
  99. #define NLP_DELAY_REMOVE 0x4000000 /* Defer removal till end of DSM */
  100. /* Defines for list searchs */
  101. #define NLP_SEARCH_MAPPED 0x1 /* search mapped */
  102. #define NLP_SEARCH_UNMAPPED 0x2 /* search unmapped */
  103. #define NLP_SEARCH_PLOGI 0x4 /* search plogi */
  104. #define NLP_SEARCH_ADISC 0x8 /* search adisc */
  105. #define NLP_SEARCH_REGLOGIN 0x10 /* search reglogin */
  106. #define NLP_SEARCH_PRLI 0x20 /* search prli */
  107. #define NLP_SEARCH_NPR 0x40 /* search npr */
  108. #define NLP_SEARCH_UNUSED 0x80 /* search mapped */
  109. #define NLP_SEARCH_ALL 0xff /* search all lists */
  110. /* There are 4 different double linked lists nodelist entries can reside on.
  111. * The Port Login (PLOGI) list and Address Discovery (ADISC) list are used
  112. * when Link Up discovery or Registered State Change Notification (RSCN)
  113. * processing is needed. Each list holds the nodes that require a PLOGI or
  114. * ADISC Extended Link Service (ELS) request. These lists keep track of the
  115. * nodes affected by an RSCN, or a Link Up (Typically, all nodes are effected
  116. * by Link Up) event. The unmapped_list contains all nodes that have
  117. * successfully logged into at the Fibre Channel level. The
  118. * mapped_list will contain all nodes that are mapped FCP targets.
  119. *
  120. * The bind list is a list of undiscovered (potentially non-existent) nodes
  121. * that we have saved binding information on. This information is used when
  122. * nodes transition from the unmapped to the mapped list.
  123. */
  124. /* Defines for nlp_state */
  125. #define NLP_STE_UNUSED_NODE 0x0 /* node is just allocated */
  126. #define NLP_STE_PLOGI_ISSUE 0x1 /* PLOGI was sent to NL_PORT */
  127. #define NLP_STE_ADISC_ISSUE 0x2 /* ADISC was sent to NL_PORT */
  128. #define NLP_STE_REG_LOGIN_ISSUE 0x3 /* REG_LOGIN was issued for NL_PORT */
  129. #define NLP_STE_PRLI_ISSUE 0x4 /* PRLI was sent to NL_PORT */
  130. #define NLP_STE_UNMAPPED_NODE 0x5 /* PRLI completed from NL_PORT */
  131. #define NLP_STE_MAPPED_NODE 0x6 /* Identified as a FCP Target */
  132. #define NLP_STE_NPR_NODE 0x7 /* NPort disappeared */
  133. #define NLP_STE_MAX_STATE 0x8
  134. #define NLP_STE_FREED_NODE 0xff /* node entry was freed to MEM_NLP */
  135. /* For UNUSED_NODE state, the node has just been allocated.
  136. * For PLOGI_ISSUE and REG_LOGIN_ISSUE, the node is on
  137. * the PLOGI list. For REG_LOGIN_COMPL, the node is taken off the PLOGI list
  138. * and put on the unmapped list. For ADISC processing, the node is taken off
  139. * the ADISC list and placed on either the mapped or unmapped list (depending
  140. * on its previous state). Once on the unmapped list, a PRLI is issued and the
  141. * state changed to PRLI_ISSUE. When the PRLI completion occurs, the state is
  142. * changed to PRLI_COMPL. If the completion indicates a mapped
  143. * node, the node is taken off the unmapped list. The binding list is checked
  144. * for a valid binding, or a binding is automatically assigned. If binding
  145. * assignment is unsuccessful, the node is left on the unmapped list. If
  146. * binding assignment is successful, the associated binding list entry (if
  147. * any) is removed, and the node is placed on the mapped list.
  148. */
  149. /*
  150. * For a Link Down, all nodes on the ADISC, PLOGI, unmapped or mapped
  151. * lists will receive a DEVICE_RECOVERY event. If the linkdown or nodev timers
  152. * expire, all effected nodes will receive a DEVICE_RM event.
  153. */
  154. /*
  155. * For a Link Up or RSCN, all nodes will move from the mapped / unmapped lists
  156. * to either the ADISC or PLOGI list. After a Nameserver query or ALPA loopmap
  157. * check, additional nodes may be added (DEVICE_ADD) or removed (DEVICE_RM) to /
  158. * from the PLOGI or ADISC lists. Once the PLOGI and ADISC lists are populated,
  159. * we will first process the ADISC list. 32 entries are processed initially and
  160. * ADISC is initited for each one. Completions / Events for each node are
  161. * funnelled thru the state machine. As each node finishes ADISC processing, it
  162. * starts ADISC for any nodes waiting for ADISC processing. If no nodes are
  163. * waiting, and the ADISC list count is identically 0, then we are done. For
  164. * Link Up discovery, since all nodes on the PLOGI list are UNREG_LOGIN'ed, we
  165. * can issue a CLEAR_LA and reenable Link Events. Next we will process the PLOGI
  166. * list. 32 entries are processed initially and PLOGI is initited for each one.
  167. * Completions / Events for each node are funnelled thru the state machine. As
  168. * each node finishes PLOGI processing, it starts PLOGI for any nodes waiting
  169. * for PLOGI processing. If no nodes are waiting, and the PLOGI list count is
  170. * identically 0, then we are done. We have now completed discovery / RSCN
  171. * handling. Upon completion, ALL nodes should be on either the mapped or
  172. * unmapped lists.
  173. */
  174. /* Defines for Node List Entry Events that could happen */
  175. #define NLP_EVT_RCV_PLOGI 0x0 /* Rcv'd an ELS PLOGI command */
  176. #define NLP_EVT_RCV_PRLI 0x1 /* Rcv'd an ELS PRLI command */
  177. #define NLP_EVT_RCV_LOGO 0x2 /* Rcv'd an ELS LOGO command */
  178. #define NLP_EVT_RCV_ADISC 0x3 /* Rcv'd an ELS ADISC command */
  179. #define NLP_EVT_RCV_PDISC 0x4 /* Rcv'd an ELS PDISC command */
  180. #define NLP_EVT_RCV_PRLO 0x5 /* Rcv'd an ELS PRLO command */
  181. #define NLP_EVT_CMPL_PLOGI 0x6 /* Sent an ELS PLOGI command */
  182. #define NLP_EVT_CMPL_PRLI 0x7 /* Sent an ELS PRLI command */
  183. #define NLP_EVT_CMPL_LOGO 0x8 /* Sent an ELS LOGO command */
  184. #define NLP_EVT_CMPL_ADISC 0x9 /* Sent an ELS ADISC command */
  185. #define NLP_EVT_CMPL_REG_LOGIN 0xa /* REG_LOGIN mbox cmd completed */
  186. #define NLP_EVT_DEVICE_RM 0xb /* Device not found in NS / ALPAmap */
  187. #define NLP_EVT_DEVICE_RECOVERY 0xc /* Device existence unknown */
  188. #define NLP_EVT_MAX_EVENT 0xd