smtdef.c 9.3 KB

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  1. // SPDX-License-Identifier: GPL-2.0-or-later
  2. /******************************************************************************
  3. *
  4. * (C)Copyright 1998,1999 SysKonnect,
  5. * a business unit of Schneider & Koch & Co. Datensysteme GmbH.
  6. *
  7. * See the file "skfddi.c" for further information.
  8. *
  9. * The information in this file is provided "AS IS" without warranty.
  10. *
  11. ******************************************************************************/
  12. /*
  13. SMT/CMT defaults
  14. */
  15. #include "h/types.h"
  16. #include "h/fddi.h"
  17. #include "h/smc.h"
  18. #ifndef OEM_USER_DATA
  19. #define OEM_USER_DATA "SK-NET FDDI V2.0 Userdata"
  20. #endif
  21. /*
  22. * defaults
  23. */
  24. #define TTMS(x) ((u_long)(x)*1000L)
  25. #define TTS(x) ((u_long)(x)*1000000L)
  26. #define TTUS(x) ((u_long)(x))
  27. #define DEFAULT_TB_MIN TTMS(5)
  28. #define DEFAULT_TB_MAX TTMS(50)
  29. #define DEFAULT_C_MIN TTUS(1600)
  30. #define DEFAULT_T_OUT TTMS(100+5)
  31. #define DEFAULT_TL_MIN TTUS(30)
  32. #define DEFAULT_LC_SHORT TTMS(50+5)
  33. #define DEFAULT_LC_MEDIUM TTMS(500+20)
  34. #define DEFAULT_LC_LONG TTS(5)+TTMS(50)
  35. #define DEFAULT_LC_EXTENDED TTS(50)+TTMS(50)
  36. #define DEFAULT_T_NEXT_9 TTMS(200+10)
  37. #define DEFAULT_NS_MAX TTUS(1310)
  38. #define DEFAULT_I_MAX TTMS(25)
  39. #define DEFAULT_IN_MAX TTMS(40)
  40. #define DEFAULT_TD_MIN TTMS(5)
  41. #define DEFAULT_T_NON_OP TTS(1)
  42. #define DEFAULT_T_STUCK TTS(8)
  43. #define DEFAULT_T_DIRECT TTMS(370)
  44. #define DEFAULT_T_JAM TTMS(370)
  45. #define DEFAULT_T_ANNOUNCE TTMS(2500)
  46. #define DEFAULT_D_MAX TTUS(1617)
  47. #define DEFAULT_LEM_ALARM (8)
  48. #define DEFAULT_LEM_CUTOFF (7)
  49. #define DEFAULT_TEST_DONE TTS(1)
  50. #define DEFAULT_CHECK_POLL TTS(1)
  51. #define DEFAULT_POLL TTMS(50)
  52. /*
  53. * LCT errors threshold
  54. */
  55. #define DEFAULT_LCT_SHORT 1
  56. #define DEFAULT_LCT_MEDIUM 3
  57. #define DEFAULT_LCT_LONG 5
  58. #define DEFAULT_LCT_EXTEND 50
  59. /* Forward declarations */
  60. void smt_reset_defaults(struct s_smc *smc, int level);
  61. static void smt_init_mib(struct s_smc *smc, int level);
  62. static int set_min_max(int maxflag, u_long mib, u_long limit, u_long *oper);
  63. #define MS2BCLK(x) ((x)*12500L)
  64. #define US2BCLK(x) ((x)*1250L)
  65. void smt_reset_defaults(struct s_smc *smc, int level)
  66. {
  67. struct smt_config *smt ;
  68. int i ;
  69. u_long smt_boot_time;
  70. smt_init_mib(smc,level) ;
  71. smc->os.smc_version = SMC_VERSION ;
  72. smt_boot_time = smt_get_time();
  73. for( i = 0; i < NUMMACS; i++ )
  74. smc->sm.last_tok_time[i] = smt_boot_time ;
  75. smt = &smc->s ;
  76. smt->attach_s = 0 ;
  77. smt->build_ring_map = 1 ;
  78. smt->sas = SMT_DAS ;
  79. smt->numphys = NUMPHYS ;
  80. smt->pcm_tb_min = DEFAULT_TB_MIN ;
  81. smt->pcm_tb_max = DEFAULT_TB_MAX ;
  82. smt->pcm_c_min = DEFAULT_C_MIN ;
  83. smt->pcm_t_out = DEFAULT_T_OUT ;
  84. smt->pcm_tl_min = DEFAULT_TL_MIN ;
  85. smt->pcm_lc_short = DEFAULT_LC_SHORT ;
  86. smt->pcm_lc_medium = DEFAULT_LC_MEDIUM ;
  87. smt->pcm_lc_long = DEFAULT_LC_LONG ;
  88. smt->pcm_lc_extended = DEFAULT_LC_EXTENDED ;
  89. smt->pcm_t_next_9 = DEFAULT_T_NEXT_9 ;
  90. smt->pcm_ns_max = DEFAULT_NS_MAX ;
  91. smt->ecm_i_max = DEFAULT_I_MAX ;
  92. smt->ecm_in_max = DEFAULT_IN_MAX ;
  93. smt->ecm_td_min = DEFAULT_TD_MIN ;
  94. smt->ecm_test_done = DEFAULT_TEST_DONE ;
  95. smt->ecm_check_poll = DEFAULT_CHECK_POLL ;
  96. smt->rmt_t_non_op = DEFAULT_T_NON_OP ;
  97. smt->rmt_t_stuck = DEFAULT_T_STUCK ;
  98. smt->rmt_t_direct = DEFAULT_T_DIRECT ;
  99. smt->rmt_t_jam = DEFAULT_T_JAM ;
  100. smt->rmt_t_announce = DEFAULT_T_ANNOUNCE ;
  101. smt->rmt_t_poll = DEFAULT_POLL ;
  102. smt->rmt_dup_mac_behavior = FALSE ; /* See Struct smt_config */
  103. smt->mac_d_max = DEFAULT_D_MAX ;
  104. smt->lct_short = DEFAULT_LCT_SHORT ;
  105. smt->lct_medium = DEFAULT_LCT_MEDIUM ;
  106. smt->lct_long = DEFAULT_LCT_LONG ;
  107. smt->lct_extended = DEFAULT_LCT_EXTEND ;
  108. #ifndef SLIM_SMT
  109. #ifdef ESS
  110. if (level == 0) {
  111. smc->ess.sync_bw_available = FALSE ;
  112. smc->mib.fddiESSPayload = 0 ;
  113. smc->mib.fddiESSOverhead = 0 ;
  114. smc->mib.fddiESSMaxTNeg = (u_long)(- MS2BCLK(25)) ;
  115. smc->mib.fddiESSMinSegmentSize = 1 ;
  116. smc->mib.fddiESSCategory = SB_STATIC ;
  117. smc->mib.fddiESSSynchTxMode = FALSE ;
  118. smc->ess.raf_act_timer_poll = FALSE ;
  119. smc->ess.timer_count = 7 ; /* first RAF alc req after 3s */
  120. }
  121. smc->ess.local_sba_active = FALSE ;
  122. smc->ess.sba_reply_pend = NULL ;
  123. #endif
  124. #ifdef SBA
  125. smt_init_sba(smc,level) ;
  126. #endif
  127. #endif /* no SLIM_SMT */
  128. #ifdef TAG_MODE
  129. if (level == 0) {
  130. smc->hw.pci_fix_value = 0 ;
  131. }
  132. #endif
  133. }
  134. /*
  135. * manufacturer data
  136. */
  137. static const char man_data[32] =
  138. /* 01234567890123456789012345678901 */
  139. "xxxSK-NET FDDI SMT 7.3 - V2.8.8" ;
  140. static void smt_init_mib(struct s_smc *smc, int level)
  141. {
  142. struct fddi_mib *mib ;
  143. struct fddi_mib_p *pm ;
  144. int port ;
  145. int path ;
  146. mib = &smc->mib ;
  147. if (level == 0) {
  148. /*
  149. * set EVERYTHING to ZERO
  150. * EXCEPT hw and os
  151. */
  152. memset(((char *)smc)+
  153. sizeof(struct s_smt_os)+sizeof(struct s_smt_hw), 0,
  154. sizeof(struct s_smc) -
  155. sizeof(struct s_smt_os) - sizeof(struct s_smt_hw)) ;
  156. }
  157. else {
  158. mib->fddiSMTRemoteDisconnectFlag = 0 ;
  159. mib->fddiSMTPeerWrapFlag = 0 ;
  160. }
  161. mib->fddiSMTOpVersionId = 2 ;
  162. mib->fddiSMTHiVersionId = 2 ;
  163. mib->fddiSMTLoVersionId = 2 ;
  164. memcpy((char *) mib->fddiSMTManufacturerData,man_data,32) ;
  165. if (level == 0) {
  166. strcpy(mib->fddiSMTUserData,OEM_USER_DATA) ;
  167. }
  168. mib->fddiSMTMIBVersionId = 1 ;
  169. mib->fddiSMTMac_Ct = NUMMACS ;
  170. mib->fddiSMTConnectionPolicy = POLICY_MM | POLICY_AA | POLICY_BB ;
  171. /*
  172. * fddiSMTNonMaster_Ct and fddiSMTMaster_Ct are set in smt_fixup_mib
  173. * s.sas is not set yet (is set in init driver)
  174. */
  175. mib->fddiSMTAvailablePaths = MIB_PATH_P | MIB_PATH_S ;
  176. mib->fddiSMTConfigCapabilities = 0 ; /* no hold,no wrap_ab*/
  177. mib->fddiSMTTT_Notify = 10 ;
  178. mib->fddiSMTStatRptPolicy = TRUE ;
  179. mib->fddiSMTTrace_MaxExpiration = SEC2MIB(7) ;
  180. mib->fddiSMTMACIndexes = INDEX_MAC ;
  181. mib->fddiSMTStationStatus = MIB_SMT_STASTA_SEPA ; /* separated */
  182. mib->m[MAC0].fddiMACIndex = INDEX_MAC ;
  183. mib->m[MAC0].fddiMACFrameStatusFunctions = FSC_TYPE0 ;
  184. mib->m[MAC0].fddiMACRequestedPaths =
  185. MIB_P_PATH_LOCAL |
  186. MIB_P_PATH_SEC_ALTER |
  187. MIB_P_PATH_PRIM_ALTER ;
  188. mib->m[MAC0].fddiMACAvailablePaths = MIB_PATH_P ;
  189. mib->m[MAC0].fddiMACCurrentPath = MIB_PATH_PRIMARY ;
  190. mib->m[MAC0].fddiMACT_MaxCapabilitiy = (u_long)(- MS2BCLK(165)) ;
  191. mib->m[MAC0].fddiMACTVXCapabilitiy = (u_long)(- US2BCLK(52)) ;
  192. if (level == 0) {
  193. mib->m[MAC0].fddiMACTvxValue = (u_long)(- US2BCLK(27)) ;
  194. mib->m[MAC0].fddiMACTvxValueMIB = (u_long)(- US2BCLK(27)) ;
  195. mib->m[MAC0].fddiMACT_Req = (u_long)(- MS2BCLK(165)) ;
  196. mib->m[MAC0].fddiMACT_ReqMIB = (u_long)(- MS2BCLK(165)) ;
  197. mib->m[MAC0].fddiMACT_Max = (u_long)(- MS2BCLK(165)) ;
  198. mib->m[MAC0].fddiMACT_MaxMIB = (u_long)(- MS2BCLK(165)) ;
  199. mib->m[MAC0].fddiMACT_Min = (u_long)(- MS2BCLK(4)) ;
  200. }
  201. mib->m[MAC0].fddiMACHardwarePresent = TRUE ;
  202. mib->m[MAC0].fddiMACMA_UnitdataEnable = TRUE ;
  203. mib->m[MAC0].fddiMACFrameErrorThreshold = 1 ;
  204. mib->m[MAC0].fddiMACNotCopiedThreshold = 1 ;
  205. /*
  206. * Path attributes
  207. */
  208. for (path = 0 ; path < NUMPATHS ; path++) {
  209. mib->a[path].fddiPATHIndex = INDEX_PATH + path ;
  210. if (level == 0) {
  211. mib->a[path].fddiPATHTVXLowerBound =
  212. (u_long)(- US2BCLK(27)) ;
  213. mib->a[path].fddiPATHT_MaxLowerBound =
  214. (u_long)(- MS2BCLK(165)) ;
  215. mib->a[path].fddiPATHMaxT_Req =
  216. (u_long)(- MS2BCLK(165)) ;
  217. }
  218. }
  219. /*
  220. * Port attributes
  221. */
  222. pm = mib->p ;
  223. for (port = 0 ; port < NUMPHYS ; port++) {
  224. /*
  225. * set MIB pointer in phy
  226. */
  227. /* Attention: don't initialize mib pointer here! */
  228. /* It must be initialized during phase 2 */
  229. smc->y[port].mib = NULL;
  230. mib->fddiSMTPORTIndexes[port] = port+INDEX_PORT ;
  231. pm->fddiPORTIndex = port+INDEX_PORT ;
  232. pm->fddiPORTHardwarePresent = TRUE ;
  233. if (level == 0) {
  234. pm->fddiPORTLer_Alarm = DEFAULT_LEM_ALARM ;
  235. pm->fddiPORTLer_Cutoff = DEFAULT_LEM_CUTOFF ;
  236. }
  237. /*
  238. * fddiPORTRequestedPaths are set in pcmplc.c
  239. * we don't know the port type yet !
  240. */
  241. pm->fddiPORTRequestedPaths[1] = 0 ;
  242. pm->fddiPORTRequestedPaths[2] = 0 ;
  243. pm->fddiPORTRequestedPaths[3] = 0 ;
  244. pm->fddiPORTAvailablePaths = MIB_PATH_P ;
  245. pm->fddiPORTPMDClass = MIB_PMDCLASS_MULTI ;
  246. pm++ ;
  247. }
  248. (void) smt_set_mac_opvalues(smc) ;
  249. }
  250. int smt_set_mac_opvalues(struct s_smc *smc)
  251. {
  252. int st ;
  253. int st2 ;
  254. st = set_min_max(1,smc->mib.m[MAC0].fddiMACTvxValueMIB,
  255. smc->mib.a[PATH0].fddiPATHTVXLowerBound,
  256. &smc->mib.m[MAC0].fddiMACTvxValue) ;
  257. st |= set_min_max(0,smc->mib.m[MAC0].fddiMACT_MaxMIB,
  258. smc->mib.a[PATH0].fddiPATHT_MaxLowerBound,
  259. &smc->mib.m[MAC0].fddiMACT_Max) ;
  260. st |= (st2 = set_min_max(0,smc->mib.m[MAC0].fddiMACT_ReqMIB,
  261. smc->mib.a[PATH0].fddiPATHMaxT_Req,
  262. &smc->mib.m[MAC0].fddiMACT_Req)) ;
  263. if (st2) {
  264. /* Treq attribute changed remotely. So send an AIX_EVENT to the
  265. * user
  266. */
  267. AIX_EVENT(smc, (u_long) FDDI_RING_STATUS, (u_long)
  268. FDDI_SMT_EVENT, (u_long) FDDI_REMOTE_T_REQ,
  269. smt_get_event_word(smc));
  270. }
  271. return st;
  272. }
  273. void smt_fixup_mib(struct s_smc *smc)
  274. {
  275. #ifdef CONCENTRATOR
  276. switch (smc->s.sas) {
  277. case SMT_SAS :
  278. smc->mib.fddiSMTNonMaster_Ct = 1 ;
  279. break ;
  280. case SMT_DAS :
  281. smc->mib.fddiSMTNonMaster_Ct = 2 ;
  282. break ;
  283. case SMT_NAC :
  284. smc->mib.fddiSMTNonMaster_Ct = 0 ;
  285. break ;
  286. }
  287. smc->mib.fddiSMTMaster_Ct = NUMPHYS - smc->mib.fddiSMTNonMaster_Ct ;
  288. #else
  289. switch (smc->s.sas) {
  290. case SMT_SAS :
  291. smc->mib.fddiSMTNonMaster_Ct = 1 ;
  292. break ;
  293. case SMT_DAS :
  294. smc->mib.fddiSMTNonMaster_Ct = 2 ;
  295. break ;
  296. }
  297. smc->mib.fddiSMTMaster_Ct = 0 ;
  298. #endif
  299. }
  300. /*
  301. * determine new setting for operational value
  302. * if limit is lower than mib
  303. * use limit
  304. * else
  305. * use mib
  306. * NOTE : numbers are negative, negate comparison !
  307. */
  308. static int set_min_max(int maxflag, u_long mib, u_long limit, u_long *oper)
  309. {
  310. u_long old ;
  311. old = *oper ;
  312. if ((limit > mib) ^ maxflag)
  313. *oper = limit ;
  314. else
  315. *oper = mib ;
  316. return old != *oper;
  317. }