uv_bau.h 21 KB

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  1. /*
  2. * This file is subject to the terms and conditions of the GNU General Public
  3. * License. See the file "COPYING" in the main directory of this archive
  4. * for more details.
  5. *
  6. * SGI UV Broadcast Assist Unit definitions
  7. *
  8. * Copyright (C) 2008-2011 Silicon Graphics, Inc. All rights reserved.
  9. */
  10. #ifndef _ASM_X86_UV_UV_BAU_H
  11. #define _ASM_X86_UV_UV_BAU_H
  12. #include <linux/bitmap.h>
  13. #define BITSPERBYTE 8
  14. /*
  15. * Broadcast Assist Unit messaging structures
  16. *
  17. * Selective Broadcast activations are induced by software action
  18. * specifying a particular 8-descriptor "set" via a 6-bit index written
  19. * to an MMR.
  20. * Thus there are 64 unique 512-byte sets of SB descriptors - one set for
  21. * each 6-bit index value. These descriptor sets are mapped in sequence
  22. * starting with set 0 located at the address specified in the
  23. * BAU_SB_DESCRIPTOR_BASE register, set 1 is located at BASE + 512,
  24. * set 2 is at BASE + 2*512, set 3 at BASE + 3*512, and so on.
  25. *
  26. * We will use one set for sending BAU messages from each of the
  27. * cpu's on the uvhub.
  28. *
  29. * TLB shootdown will use the first of the 8 descriptors of each set.
  30. * Each of the descriptors is 64 bytes in size (8*64 = 512 bytes in a set).
  31. */
  32. #define MAX_CPUS_PER_UVHUB 64
  33. #define MAX_CPUS_PER_SOCKET 32
  34. #define ADP_SZ 64 /* hardware-provided max. */
  35. #define UV_CPUS_PER_AS 32 /* hardware-provided max. */
  36. #define ITEMS_PER_DESC 8
  37. /* the 'throttle' to prevent the hardware stay-busy bug */
  38. #define MAX_BAU_CONCURRENT 3
  39. #define UV_ACT_STATUS_MASK 0x3
  40. #define UV_ACT_STATUS_SIZE 2
  41. #define UV_DISTRIBUTION_SIZE 256
  42. #define UV_SW_ACK_NPENDING 8
  43. #define UV1_NET_ENDPOINT_INTD 0x38
  44. #define UV2_NET_ENDPOINT_INTD 0x28
  45. #define UV_NET_ENDPOINT_INTD (is_uv1_hub() ? \
  46. UV1_NET_ENDPOINT_INTD : UV2_NET_ENDPOINT_INTD)
  47. #define UV_DESC_PSHIFT 49
  48. #define UV_PAYLOADQ_PNODE_SHIFT 49
  49. #define UV_PTC_BASENAME "sgi_uv/ptc_statistics"
  50. #define UV_BAU_BASENAME "sgi_uv/bau_tunables"
  51. #define UV_BAU_TUNABLES_DIR "sgi_uv"
  52. #define UV_BAU_TUNABLES_FILE "bau_tunables"
  53. #define WHITESPACE " \t\n"
  54. #define uv_mmask ((1UL << uv_hub_info->m_val) - 1)
  55. #define uv_physnodeaddr(x) ((__pa((unsigned long)(x)) & uv_mmask))
  56. #define cpubit_isset(cpu, bau_local_cpumask) \
  57. test_bit((cpu), (bau_local_cpumask).bits)
  58. /* [19:16] SOFT_ACK timeout period 19: 1 is urgency 7 17:16 1 is multiplier */
  59. /*
  60. * UV2: Bit 19 selects between
  61. * (0): 10 microsecond timebase and
  62. * (1): 80 microseconds
  63. * we're using 655us, similar to UV1: 65 units of 10us
  64. */
  65. #define UV1_INTD_SOFT_ACK_TIMEOUT_PERIOD (9UL)
  66. #define UV2_INTD_SOFT_ACK_TIMEOUT_PERIOD (15UL)
  67. #define UV_INTD_SOFT_ACK_TIMEOUT_PERIOD (is_uv1_hub() ? \
  68. UV1_INTD_SOFT_ACK_TIMEOUT_PERIOD : \
  69. UV2_INTD_SOFT_ACK_TIMEOUT_PERIOD)
  70. #define BAU_MISC_CONTROL_MULT_MASK 3
  71. #define UVH_AGING_PRESCALE_SEL 0x000000b000UL
  72. /* [30:28] URGENCY_7 an index into a table of times */
  73. #define BAU_URGENCY_7_SHIFT 28
  74. #define BAU_URGENCY_7_MASK 7
  75. #define UVH_TRANSACTION_TIMEOUT 0x000000b200UL
  76. /* [45:40] BAU - BAU transaction timeout select - a multiplier */
  77. #define BAU_TRANS_SHIFT 40
  78. #define BAU_TRANS_MASK 0x3f
  79. /*
  80. * shorten some awkward names
  81. */
  82. #define AS_PUSH_SHIFT UVH_LB_BAU_SB_ACTIVATION_CONTROL_PUSH_SHFT
  83. #define SOFTACK_MSHIFT UVH_LB_BAU_MISC_CONTROL_ENABLE_INTD_SOFT_ACK_MODE_SHFT
  84. #define SOFTACK_PSHIFT UVH_LB_BAU_MISC_CONTROL_INTD_SOFT_ACK_TIMEOUT_PERIOD_SHFT
  85. #define SOFTACK_TIMEOUT_PERIOD UV_INTD_SOFT_ACK_TIMEOUT_PERIOD
  86. #define write_gmmr uv_write_global_mmr64
  87. #define write_lmmr uv_write_local_mmr
  88. #define read_lmmr uv_read_local_mmr
  89. #define read_gmmr uv_read_global_mmr64
  90. /*
  91. * bits in UVH_LB_BAU_SB_ACTIVATION_STATUS_0/1
  92. */
  93. #define DS_IDLE 0
  94. #define DS_ACTIVE 1
  95. #define DS_DESTINATION_TIMEOUT 2
  96. #define DS_SOURCE_TIMEOUT 3
  97. /*
  98. * bits put together from HRP_LB_BAU_SB_ACTIVATION_STATUS_0/1/2
  99. * values 1 and 3 will not occur
  100. * Decoded meaning ERROR BUSY AUX ERR
  101. * ------------------------------- ---- ----- -------
  102. * IDLE 0 0 0
  103. * BUSY (active) 0 1 0
  104. * SW Ack Timeout (destination) 1 0 0
  105. * SW Ack INTD rejected (strong NACK) 1 0 1
  106. * Source Side Time Out Detected 1 1 0
  107. * Destination Side PUT Failed 1 1 1
  108. */
  109. #define UV2H_DESC_IDLE 0
  110. #define UV2H_DESC_BUSY 2
  111. #define UV2H_DESC_DEST_TIMEOUT 4
  112. #define UV2H_DESC_DEST_STRONG_NACK 5
  113. #define UV2H_DESC_SOURCE_TIMEOUT 6
  114. #define UV2H_DESC_DEST_PUT_ERR 7
  115. /*
  116. * delay for 'plugged' timeout retries, in microseconds
  117. */
  118. #define PLUGGED_DELAY 10
  119. /*
  120. * threshholds at which to use IPI to free resources
  121. */
  122. /* after this # consecutive 'plugged' timeouts, use IPI to release resources */
  123. #define PLUGSB4RESET 100
  124. /* after this many consecutive timeouts, use IPI to release resources */
  125. #define TIMEOUTSB4RESET 1
  126. /* at this number uses of IPI to release resources, giveup the request */
  127. #define IPI_RESET_LIMIT 1
  128. /* after this # consecutive successes, bump up the throttle if it was lowered */
  129. #define COMPLETE_THRESHOLD 5
  130. #define UV_LB_SUBNODEID 0x10
  131. /* these two are the same for UV1 and UV2: */
  132. #define UV_SA_SHFT UVH_LB_BAU_MISC_CONTROL_INTD_SOFT_ACK_TIMEOUT_PERIOD_SHFT
  133. #define UV_SA_MASK UVH_LB_BAU_MISC_CONTROL_INTD_SOFT_ACK_TIMEOUT_PERIOD_MASK
  134. /* 4 bits of software ack period */
  135. #define UV2_ACK_MASK 0x7UL
  136. #define UV2_ACK_UNITS_SHFT 3
  137. #define UV2_LEG_SHFT UV2H_LB_BAU_MISC_CONTROL_USE_LEGACY_DESCRIPTOR_FORMATS_SHFT
  138. #define UV2_EXT_SHFT UV2H_LB_BAU_MISC_CONTROL_ENABLE_EXTENDED_SB_STATUS_SHFT
  139. /*
  140. * number of entries in the destination side payload queue
  141. */
  142. #define DEST_Q_SIZE 20
  143. /*
  144. * number of destination side software ack resources
  145. */
  146. #define DEST_NUM_RESOURCES 8
  147. /*
  148. * completion statuses for sending a TLB flush message
  149. */
  150. #define FLUSH_RETRY_PLUGGED 1
  151. #define FLUSH_RETRY_TIMEOUT 2
  152. #define FLUSH_GIVEUP 3
  153. #define FLUSH_COMPLETE 4
  154. /*
  155. * tuning the action when the numalink network is extremely delayed
  156. */
  157. #define CONGESTED_RESPONSE_US 1000 /* 'long' response time, in
  158. microseconds */
  159. #define CONGESTED_REPS 10 /* long delays averaged over
  160. this many broadcasts */
  161. #define CONGESTED_PERIOD 30 /* time for the bau to be
  162. disabled, in seconds */
  163. /* see msg_type: */
  164. #define MSG_NOOP 0
  165. #define MSG_REGULAR 1
  166. #define MSG_RETRY 2
  167. /*
  168. * Distribution: 32 bytes (256 bits) (bytes 0-0x1f of descriptor)
  169. * If the 'multilevel' flag in the header portion of the descriptor
  170. * has been set to 0, then endpoint multi-unicast mode is selected.
  171. * The distribution specification (32 bytes) is interpreted as a 256-bit
  172. * distribution vector. Adjacent bits correspond to consecutive even numbered
  173. * nodeIDs. The result of adding the index of a given bit to the 15-bit
  174. * 'base_dest_nasid' field of the header corresponds to the
  175. * destination nodeID associated with that specified bit.
  176. */
  177. struct pnmask {
  178. unsigned long bits[BITS_TO_LONGS(UV_DISTRIBUTION_SIZE)];
  179. };
  180. /*
  181. * mask of cpu's on a uvhub
  182. * (during initialization we need to check that unsigned long has
  183. * enough bits for max. cpu's per uvhub)
  184. */
  185. struct bau_local_cpumask {
  186. unsigned long bits;
  187. };
  188. /*
  189. * Payload: 16 bytes (128 bits) (bytes 0x20-0x2f of descriptor)
  190. * only 12 bytes (96 bits) of the payload area are usable.
  191. * An additional 3 bytes (bits 27:4) of the header address are carried
  192. * to the next bytes of the destination payload queue.
  193. * And an additional 2 bytes of the header Suppl_A field are also
  194. * carried to the destination payload queue.
  195. * But the first byte of the Suppl_A becomes bits 127:120 (the 16th byte)
  196. * of the destination payload queue, which is written by the hardware
  197. * with the s/w ack resource bit vector.
  198. * [ effective message contents (16 bytes (128 bits) maximum), not counting
  199. * the s/w ack bit vector ]
  200. */
  201. /*
  202. * The payload is software-defined for INTD transactions
  203. */
  204. struct bau_msg_payload {
  205. unsigned long address; /* signifies a page or all
  206. TLB's of the cpu */
  207. /* 64 bits */
  208. unsigned short sending_cpu; /* filled in by sender */
  209. /* 16 bits */
  210. unsigned short acknowledge_count; /* filled in by destination */
  211. /* 16 bits */
  212. unsigned int reserved1:32; /* not usable */
  213. };
  214. /*
  215. * Message header: 16 bytes (128 bits) (bytes 0x30-0x3f of descriptor)
  216. * see table 4.2.3.0.1 in broacast_assist spec.
  217. */
  218. struct bau_msg_header {
  219. unsigned int dest_subnodeid:6; /* must be 0x10, for the LB */
  220. /* bits 5:0 */
  221. unsigned int base_dest_nasid:15; /* nasid of the first bit */
  222. /* bits 20:6 */ /* in uvhub map */
  223. unsigned int command:8; /* message type */
  224. /* bits 28:21 */
  225. /* 0x38: SN3net EndPoint Message */
  226. unsigned int rsvd_1:3; /* must be zero */
  227. /* bits 31:29 */
  228. /* int will align on 32 bits */
  229. unsigned int rsvd_2:9; /* must be zero */
  230. /* bits 40:32 */
  231. /* Suppl_A is 56-41 */
  232. unsigned int sequence:16; /* message sequence number */
  233. /* bits 56:41 */ /* becomes bytes 16-17 of msg */
  234. /* Address field (96:57) is
  235. never used as an address
  236. (these are address bits
  237. 42:3) */
  238. unsigned int rsvd_3:1; /* must be zero */
  239. /* bit 57 */
  240. /* address bits 27:4 are payload */
  241. /* these next 24 (58-81) bits become bytes 12-14 of msg */
  242. /* bits 65:58 land in byte 12 */
  243. unsigned int replied_to:1; /* sent as 0 by the source to
  244. byte 12 */
  245. /* bit 58 */
  246. unsigned int msg_type:3; /* software type of the
  247. message */
  248. /* bits 61:59 */
  249. unsigned int canceled:1; /* message canceled, resource
  250. is to be freed*/
  251. /* bit 62 */
  252. unsigned int payload_1a:1; /* not currently used */
  253. /* bit 63 */
  254. unsigned int payload_1b:2; /* not currently used */
  255. /* bits 65:64 */
  256. /* bits 73:66 land in byte 13 */
  257. unsigned int payload_1ca:6; /* not currently used */
  258. /* bits 71:66 */
  259. unsigned int payload_1c:2; /* not currently used */
  260. /* bits 73:72 */
  261. /* bits 81:74 land in byte 14 */
  262. unsigned int payload_1d:6; /* not currently used */
  263. /* bits 79:74 */
  264. unsigned int payload_1e:2; /* not currently used */
  265. /* bits 81:80 */
  266. unsigned int rsvd_4:7; /* must be zero */
  267. /* bits 88:82 */
  268. unsigned int swack_flag:1; /* software acknowledge flag */
  269. /* bit 89 */
  270. /* INTD trasactions at
  271. destination are to wait for
  272. software acknowledge */
  273. unsigned int rsvd_5:6; /* must be zero */
  274. /* bits 95:90 */
  275. unsigned int rsvd_6:5; /* must be zero */
  276. /* bits 100:96 */
  277. unsigned int int_both:1; /* if 1, interrupt both sockets
  278. on the uvhub */
  279. /* bit 101*/
  280. unsigned int fairness:3; /* usually zero */
  281. /* bits 104:102 */
  282. unsigned int multilevel:1; /* multi-level multicast
  283. format */
  284. /* bit 105 */
  285. /* 0 for TLB: endpoint multi-unicast messages */
  286. unsigned int chaining:1; /* next descriptor is part of
  287. this activation*/
  288. /* bit 106 */
  289. unsigned int rsvd_7:21; /* must be zero */
  290. /* bits 127:107 */
  291. };
  292. /*
  293. * The activation descriptor:
  294. * The format of the message to send, plus all accompanying control
  295. * Should be 64 bytes
  296. */
  297. struct bau_desc {
  298. struct pnmask distribution;
  299. /*
  300. * message template, consisting of header and payload:
  301. */
  302. struct bau_msg_header header;
  303. struct bau_msg_payload payload;
  304. };
  305. /*
  306. * -payload-- ---------header------
  307. * bytes 0-11 bits 41-56 bits 58-81
  308. * A B (2) C (3)
  309. *
  310. * A/B/C are moved to:
  311. * A C B
  312. * bytes 0-11 bytes 12-14 bytes 16-17 (byte 15 filled in by hw as vector)
  313. * ------------payload queue-----------
  314. */
  315. /*
  316. * The payload queue on the destination side is an array of these.
  317. * With BAU_MISC_CONTROL set for software acknowledge mode, the messages
  318. * are 32 bytes (2 micropackets) (256 bits) in length, but contain only 17
  319. * bytes of usable data, including the sw ack vector in byte 15 (bits 127:120)
  320. * (12 bytes come from bau_msg_payload, 3 from payload_1, 2 from
  321. * swack_vec and payload_2)
  322. * "Enabling Software Acknowledgment mode (see Section 4.3.3 Software
  323. * Acknowledge Processing) also selects 32 byte (17 bytes usable) payload
  324. * operation."
  325. */
  326. struct bau_pq_entry {
  327. unsigned long address; /* signifies a page or all TLB's
  328. of the cpu */
  329. /* 64 bits, bytes 0-7 */
  330. unsigned short sending_cpu; /* cpu that sent the message */
  331. /* 16 bits, bytes 8-9 */
  332. unsigned short acknowledge_count; /* filled in by destination */
  333. /* 16 bits, bytes 10-11 */
  334. /* these next 3 bytes come from bits 58-81 of the message header */
  335. unsigned short replied_to:1; /* sent as 0 by the source */
  336. unsigned short msg_type:3; /* software message type */
  337. unsigned short canceled:1; /* sent as 0 by the source */
  338. unsigned short unused1:3; /* not currently using */
  339. /* byte 12 */
  340. unsigned char unused2a; /* not currently using */
  341. /* byte 13 */
  342. unsigned char unused2; /* not currently using */
  343. /* byte 14 */
  344. unsigned char swack_vec; /* filled in by the hardware */
  345. /* byte 15 (bits 127:120) */
  346. unsigned short sequence; /* message sequence number */
  347. /* bytes 16-17 */
  348. unsigned char unused4[2]; /* not currently using bytes 18-19 */
  349. /* bytes 18-19 */
  350. int number_of_cpus; /* filled in at destination */
  351. /* 32 bits, bytes 20-23 (aligned) */
  352. unsigned char unused5[8]; /* not using */
  353. /* bytes 24-31 */
  354. };
  355. struct msg_desc {
  356. struct bau_pq_entry *msg;
  357. int msg_slot;
  358. int swack_slot;
  359. struct bau_pq_entry *queue_first;
  360. struct bau_pq_entry *queue_last;
  361. };
  362. struct reset_args {
  363. int sender;
  364. };
  365. /*
  366. * This structure is allocated per_cpu for UV TLB shootdown statistics.
  367. */
  368. struct ptc_stats {
  369. /* sender statistics */
  370. unsigned long s_giveup; /* number of fall backs to
  371. IPI-style flushes */
  372. unsigned long s_requestor; /* number of shootdown
  373. requests */
  374. unsigned long s_stimeout; /* source side timeouts */
  375. unsigned long s_dtimeout; /* destination side timeouts */
  376. unsigned long s_time; /* time spent in sending side */
  377. unsigned long s_retriesok; /* successful retries */
  378. unsigned long s_ntargcpu; /* total number of cpu's
  379. targeted */
  380. unsigned long s_ntargself; /* times the sending cpu was
  381. targeted */
  382. unsigned long s_ntarglocals; /* targets of cpus on the local
  383. blade */
  384. unsigned long s_ntargremotes; /* targets of cpus on remote
  385. blades */
  386. unsigned long s_ntarglocaluvhub; /* targets of the local hub */
  387. unsigned long s_ntargremoteuvhub; /* remotes hubs targeted */
  388. unsigned long s_ntarguvhub; /* total number of uvhubs
  389. targeted */
  390. unsigned long s_ntarguvhub16; /* number of times target
  391. hubs >= 16*/
  392. unsigned long s_ntarguvhub8; /* number of times target
  393. hubs >= 8 */
  394. unsigned long s_ntarguvhub4; /* number of times target
  395. hubs >= 4 */
  396. unsigned long s_ntarguvhub2; /* number of times target
  397. hubs >= 2 */
  398. unsigned long s_ntarguvhub1; /* number of times target
  399. hubs == 1 */
  400. unsigned long s_resets_plug; /* ipi-style resets from plug
  401. state */
  402. unsigned long s_resets_timeout; /* ipi-style resets from
  403. timeouts */
  404. unsigned long s_busy; /* status stayed busy past
  405. s/w timer */
  406. unsigned long s_throttles; /* waits in throttle */
  407. unsigned long s_retry_messages; /* retry broadcasts */
  408. unsigned long s_bau_reenabled; /* for bau enable/disable */
  409. unsigned long s_bau_disabled; /* for bau enable/disable */
  410. /* destination statistics */
  411. unsigned long d_alltlb; /* times all tlb's on this
  412. cpu were flushed */
  413. unsigned long d_onetlb; /* times just one tlb on this
  414. cpu was flushed */
  415. unsigned long d_multmsg; /* interrupts with multiple
  416. messages */
  417. unsigned long d_nomsg; /* interrupts with no message */
  418. unsigned long d_time; /* time spent on destination
  419. side */
  420. unsigned long d_requestee; /* number of messages
  421. processed */
  422. unsigned long d_retries; /* number of retry messages
  423. processed */
  424. unsigned long d_canceled; /* number of messages canceled
  425. by retries */
  426. unsigned long d_nocanceled; /* retries that found nothing
  427. to cancel */
  428. unsigned long d_resets; /* number of ipi-style requests
  429. processed */
  430. unsigned long d_rcanceled; /* number of messages canceled
  431. by resets */
  432. };
  433. struct tunables {
  434. int *tunp;
  435. int deflt;
  436. };
  437. struct hub_and_pnode {
  438. short uvhub;
  439. short pnode;
  440. };
  441. struct socket_desc {
  442. short num_cpus;
  443. short cpu_number[MAX_CPUS_PER_SOCKET];
  444. };
  445. struct uvhub_desc {
  446. unsigned short socket_mask;
  447. short num_cpus;
  448. short uvhub;
  449. short pnode;
  450. struct socket_desc socket[2];
  451. };
  452. /*
  453. * one per-cpu; to locate the software tables
  454. */
  455. struct bau_control {
  456. struct bau_desc *descriptor_base;
  457. struct bau_pq_entry *queue_first;
  458. struct bau_pq_entry *queue_last;
  459. struct bau_pq_entry *bau_msg_head;
  460. struct bau_control *uvhub_master;
  461. struct bau_control *socket_master;
  462. struct ptc_stats *statp;
  463. cpumask_t *cpumask;
  464. unsigned long timeout_interval;
  465. unsigned long set_bau_on_time;
  466. atomic_t active_descriptor_count;
  467. int plugged_tries;
  468. int timeout_tries;
  469. int ipi_attempts;
  470. int conseccompletes;
  471. int baudisabled;
  472. int set_bau_off;
  473. short cpu;
  474. short osnode;
  475. short uvhub_cpu;
  476. short uvhub;
  477. short cpus_in_socket;
  478. short cpus_in_uvhub;
  479. short partition_base_pnode;
  480. unsigned short message_number;
  481. unsigned short uvhub_quiesce;
  482. short socket_acknowledge_count[DEST_Q_SIZE];
  483. cycles_t send_message;
  484. spinlock_t uvhub_lock;
  485. spinlock_t queue_lock;
  486. /* tunables */
  487. int max_concurr;
  488. int max_concurr_const;
  489. int plugged_delay;
  490. int plugsb4reset;
  491. int timeoutsb4reset;
  492. int ipi_reset_limit;
  493. int complete_threshold;
  494. int cong_response_us;
  495. int cong_reps;
  496. int cong_period;
  497. cycles_t period_time;
  498. long period_requests;
  499. struct hub_and_pnode *thp;
  500. };
  501. static inline unsigned long read_mmr_uv2_status(void)
  502. {
  503. return read_lmmr(UV2H_LB_BAU_SB_ACTIVATION_STATUS_2);
  504. }
  505. static inline void write_mmr_data_broadcast(int pnode, unsigned long mmr_image)
  506. {
  507. write_gmmr(pnode, UVH_BAU_DATA_BROADCAST, mmr_image);
  508. }
  509. static inline void write_mmr_descriptor_base(int pnode, unsigned long mmr_image)
  510. {
  511. write_gmmr(pnode, UVH_LB_BAU_SB_DESCRIPTOR_BASE, mmr_image);
  512. }
  513. static inline void write_mmr_activation(unsigned long index)
  514. {
  515. write_lmmr(UVH_LB_BAU_SB_ACTIVATION_CONTROL, index);
  516. }
  517. static inline void write_gmmr_activation(int pnode, unsigned long mmr_image)
  518. {
  519. write_gmmr(pnode, UVH_LB_BAU_SB_ACTIVATION_CONTROL, mmr_image);
  520. }
  521. static inline void write_mmr_payload_first(int pnode, unsigned long mmr_image)
  522. {
  523. write_gmmr(pnode, UVH_LB_BAU_INTD_PAYLOAD_QUEUE_FIRST, mmr_image);
  524. }
  525. static inline void write_mmr_payload_tail(int pnode, unsigned long mmr_image)
  526. {
  527. write_gmmr(pnode, UVH_LB_BAU_INTD_PAYLOAD_QUEUE_TAIL, mmr_image);
  528. }
  529. static inline void write_mmr_payload_last(int pnode, unsigned long mmr_image)
  530. {
  531. write_gmmr(pnode, UVH_LB_BAU_INTD_PAYLOAD_QUEUE_LAST, mmr_image);
  532. }
  533. static inline void write_mmr_misc_control(int pnode, unsigned long mmr_image)
  534. {
  535. write_gmmr(pnode, UVH_LB_BAU_MISC_CONTROL, mmr_image);
  536. }
  537. static inline unsigned long read_mmr_misc_control(int pnode)
  538. {
  539. return read_gmmr(pnode, UVH_LB_BAU_MISC_CONTROL);
  540. }
  541. static inline void write_mmr_sw_ack(unsigned long mr)
  542. {
  543. uv_write_local_mmr(UVH_LB_BAU_INTD_SOFTWARE_ACKNOWLEDGE_ALIAS, mr);
  544. }
  545. static inline unsigned long read_mmr_sw_ack(void)
  546. {
  547. return read_lmmr(UVH_LB_BAU_INTD_SOFTWARE_ACKNOWLEDGE);
  548. }
  549. static inline unsigned long read_gmmr_sw_ack(int pnode)
  550. {
  551. return read_gmmr(pnode, UVH_LB_BAU_INTD_SOFTWARE_ACKNOWLEDGE);
  552. }
  553. static inline void write_mmr_data_config(int pnode, unsigned long mr)
  554. {
  555. uv_write_global_mmr64(pnode, UVH_BAU_DATA_CONFIG, mr);
  556. }
  557. static inline int bau_uvhub_isset(int uvhub, struct pnmask *dstp)
  558. {
  559. return constant_test_bit(uvhub, &dstp->bits[0]);
  560. }
  561. static inline void bau_uvhub_set(int pnode, struct pnmask *dstp)
  562. {
  563. __set_bit(pnode, &dstp->bits[0]);
  564. }
  565. static inline void bau_uvhubs_clear(struct pnmask *dstp,
  566. int nbits)
  567. {
  568. bitmap_zero(&dstp->bits[0], nbits);
  569. }
  570. static inline int bau_uvhub_weight(struct pnmask *dstp)
  571. {
  572. return bitmap_weight((unsigned long *)&dstp->bits[0],
  573. UV_DISTRIBUTION_SIZE);
  574. }
  575. static inline void bau_cpubits_clear(struct bau_local_cpumask *dstp, int nbits)
  576. {
  577. bitmap_zero(&dstp->bits, nbits);
  578. }
  579. extern void uv_bau_message_intr1(void);
  580. extern void uv_bau_timeout_intr1(void);
  581. struct atomic_short {
  582. short counter;
  583. };
  584. /*
  585. * atomic_read_short - read a short atomic variable
  586. * @v: pointer of type atomic_short
  587. *
  588. * Atomically reads the value of @v.
  589. */
  590. static inline int atomic_read_short(const struct atomic_short *v)
  591. {
  592. return v->counter;
  593. }
  594. /*
  595. * atom_asr - add and return a short int
  596. * @i: short value to add
  597. * @v: pointer of type atomic_short
  598. *
  599. * Atomically adds @i to @v and returns @i + @v
  600. */
  601. static inline int atom_asr(short i, struct atomic_short *v)
  602. {
  603. return i + xadd(&v->counter, i);
  604. }
  605. /*
  606. * conditionally add 1 to *v, unless *v is >= u
  607. * return 0 if we cannot add 1 to *v because it is >= u
  608. * return 1 if we can add 1 to *v because it is < u
  609. * the add is atomic
  610. *
  611. * This is close to atomic_add_unless(), but this allows the 'u' value
  612. * to be lowered below the current 'v'. atomic_add_unless can only stop
  613. * on equal.
  614. */
  615. static inline int atomic_inc_unless_ge(spinlock_t *lock, atomic_t *v, int u)
  616. {
  617. spin_lock(lock);
  618. if (atomic_read(v) >= u) {
  619. spin_unlock(lock);
  620. return 0;
  621. }
  622. atomic_inc(v);
  623. spin_unlock(lock);
  624. return 1;
  625. }
  626. #endif /* _ASM_X86_UV_UV_BAU_H */