intel_rdt.h 13 KB

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  1. /* SPDX-License-Identifier: GPL-2.0 */
  2. #ifndef _ASM_X86_INTEL_RDT_H
  3. #define _ASM_X86_INTEL_RDT_H
  4. #include <linux/sched.h>
  5. #include <linux/kernfs.h>
  6. #include <linux/jump_label.h>
  7. #define IA32_L3_QOS_CFG 0xc81
  8. #define IA32_L2_QOS_CFG 0xc82
  9. #define IA32_L3_CBM_BASE 0xc90
  10. #define IA32_L2_CBM_BASE 0xd10
  11. #define IA32_MBA_THRTL_BASE 0xd50
  12. #define L3_QOS_CDP_ENABLE 0x01ULL
  13. #define L2_QOS_CDP_ENABLE 0x01ULL
  14. /*
  15. * Event IDs are used to program IA32_QM_EVTSEL before reading event
  16. * counter from IA32_QM_CTR
  17. */
  18. #define QOS_L3_OCCUP_EVENT_ID 0x01
  19. #define QOS_L3_MBM_TOTAL_EVENT_ID 0x02
  20. #define QOS_L3_MBM_LOCAL_EVENT_ID 0x03
  21. #define CQM_LIMBOCHECK_INTERVAL 1000
  22. #define MBM_CNTR_WIDTH 24
  23. #define MBM_OVERFLOW_INTERVAL 1000
  24. #define RMID_VAL_ERROR BIT_ULL(63)
  25. #define RMID_VAL_UNAVAIL BIT_ULL(62)
  26. DECLARE_STATIC_KEY_FALSE(rdt_enable_key);
  27. /**
  28. * struct mon_evt - Entry in the event list of a resource
  29. * @evtid: event id
  30. * @name: name of the event
  31. */
  32. struct mon_evt {
  33. u32 evtid;
  34. char *name;
  35. struct list_head list;
  36. };
  37. /**
  38. * struct mon_data_bits - Monitoring details for each event file
  39. * @rid: Resource id associated with the event file.
  40. * @evtid: Event id associated with the event file
  41. * @domid: The domain to which the event file belongs
  42. */
  43. union mon_data_bits {
  44. void *priv;
  45. struct {
  46. unsigned int rid : 10;
  47. unsigned int evtid : 8;
  48. unsigned int domid : 14;
  49. } u;
  50. };
  51. struct rmid_read {
  52. struct rdtgroup *rgrp;
  53. struct rdt_domain *d;
  54. int evtid;
  55. bool first;
  56. u64 val;
  57. };
  58. extern unsigned int intel_cqm_threshold;
  59. extern bool rdt_alloc_capable;
  60. extern bool rdt_mon_capable;
  61. extern unsigned int rdt_mon_features;
  62. enum rdt_group_type {
  63. RDTCTRL_GROUP = 0,
  64. RDTMON_GROUP,
  65. RDT_NUM_GROUP,
  66. };
  67. /**
  68. * struct mongroup - store mon group's data in resctrl fs.
  69. * @mon_data_kn kernlfs node for the mon_data directory
  70. * @parent: parent rdtgrp
  71. * @crdtgrp_list: child rdtgroup node list
  72. * @rmid: rmid for this rdtgroup
  73. */
  74. struct mongroup {
  75. struct kernfs_node *mon_data_kn;
  76. struct rdtgroup *parent;
  77. struct list_head crdtgrp_list;
  78. u32 rmid;
  79. };
  80. /**
  81. * struct rdtgroup - store rdtgroup's data in resctrl file system.
  82. * @kn: kernfs node
  83. * @rdtgroup_list: linked list for all rdtgroups
  84. * @closid: closid for this rdtgroup
  85. * @cpu_mask: CPUs assigned to this rdtgroup
  86. * @flags: status bits
  87. * @waitcount: how many cpus expect to find this
  88. * group when they acquire rdtgroup_mutex
  89. * @type: indicates type of this rdtgroup - either
  90. * monitor only or ctrl_mon group
  91. * @mon: mongroup related data
  92. */
  93. struct rdtgroup {
  94. struct kernfs_node *kn;
  95. struct list_head rdtgroup_list;
  96. u32 closid;
  97. struct cpumask cpu_mask;
  98. int flags;
  99. atomic_t waitcount;
  100. enum rdt_group_type type;
  101. struct mongroup mon;
  102. };
  103. /* rdtgroup.flags */
  104. #define RDT_DELETED 1
  105. /* rftype.flags */
  106. #define RFTYPE_FLAGS_CPUS_LIST 1
  107. /*
  108. * Define the file type flags for base and info directories.
  109. */
  110. #define RFTYPE_INFO BIT(0)
  111. #define RFTYPE_BASE BIT(1)
  112. #define RF_CTRLSHIFT 4
  113. #define RF_MONSHIFT 5
  114. #define RF_TOPSHIFT 6
  115. #define RFTYPE_CTRL BIT(RF_CTRLSHIFT)
  116. #define RFTYPE_MON BIT(RF_MONSHIFT)
  117. #define RFTYPE_TOP BIT(RF_TOPSHIFT)
  118. #define RFTYPE_RES_CACHE BIT(8)
  119. #define RFTYPE_RES_MB BIT(9)
  120. #define RF_CTRL_INFO (RFTYPE_INFO | RFTYPE_CTRL)
  121. #define RF_MON_INFO (RFTYPE_INFO | RFTYPE_MON)
  122. #define RF_TOP_INFO (RFTYPE_INFO | RFTYPE_TOP)
  123. #define RF_CTRL_BASE (RFTYPE_BASE | RFTYPE_CTRL)
  124. /* List of all resource groups */
  125. extern struct list_head rdt_all_groups;
  126. extern int max_name_width, max_data_width;
  127. int __init rdtgroup_init(void);
  128. /**
  129. * struct rftype - describe each file in the resctrl file system
  130. * @name: File name
  131. * @mode: Access mode
  132. * @kf_ops: File operations
  133. * @flags: File specific RFTYPE_FLAGS_* flags
  134. * @fflags: File specific RF_* or RFTYPE_* flags
  135. * @seq_show: Show content of the file
  136. * @write: Write to the file
  137. */
  138. struct rftype {
  139. char *name;
  140. umode_t mode;
  141. struct kernfs_ops *kf_ops;
  142. unsigned long flags;
  143. unsigned long fflags;
  144. int (*seq_show)(struct kernfs_open_file *of,
  145. struct seq_file *sf, void *v);
  146. /*
  147. * write() is the generic write callback which maps directly to
  148. * kernfs write operation and overrides all other operations.
  149. * Maximum write size is determined by ->max_write_len.
  150. */
  151. ssize_t (*write)(struct kernfs_open_file *of,
  152. char *buf, size_t nbytes, loff_t off);
  153. };
  154. /**
  155. * struct mbm_state - status for each MBM counter in each domain
  156. * @chunks: Total data moved (multiply by rdt_group.mon_scale to get bytes)
  157. * @prev_msr Value of IA32_QM_CTR for this RMID last time we read it
  158. */
  159. struct mbm_state {
  160. u64 chunks;
  161. u64 prev_msr;
  162. };
  163. /**
  164. * struct rdt_domain - group of cpus sharing an RDT resource
  165. * @list: all instances of this resource
  166. * @id: unique id for this instance
  167. * @cpu_mask: which cpus share this resource
  168. * @rmid_busy_llc:
  169. * bitmap of which limbo RMIDs are above threshold
  170. * @mbm_total: saved state for MBM total bandwidth
  171. * @mbm_local: saved state for MBM local bandwidth
  172. * @mbm_over: worker to periodically read MBM h/w counters
  173. * @cqm_limbo: worker to periodically read CQM h/w counters
  174. * @mbm_work_cpu:
  175. * worker cpu for MBM h/w counters
  176. * @cqm_work_cpu:
  177. * worker cpu for CQM h/w counters
  178. * @ctrl_val: array of cache or mem ctrl values (indexed by CLOSID)
  179. * @new_ctrl: new ctrl value to be loaded
  180. * @have_new_ctrl: did user provide new_ctrl for this domain
  181. */
  182. struct rdt_domain {
  183. struct list_head list;
  184. int id;
  185. struct cpumask cpu_mask;
  186. unsigned long *rmid_busy_llc;
  187. struct mbm_state *mbm_total;
  188. struct mbm_state *mbm_local;
  189. struct delayed_work mbm_over;
  190. struct delayed_work cqm_limbo;
  191. int mbm_work_cpu;
  192. int cqm_work_cpu;
  193. u32 *ctrl_val;
  194. u32 new_ctrl;
  195. bool have_new_ctrl;
  196. };
  197. /**
  198. * struct msr_param - set a range of MSRs from a domain
  199. * @res: The resource to use
  200. * @low: Beginning index from base MSR
  201. * @high: End index
  202. */
  203. struct msr_param {
  204. struct rdt_resource *res;
  205. int low;
  206. int high;
  207. };
  208. /**
  209. * struct rdt_cache - Cache allocation related data
  210. * @cbm_len: Length of the cache bit mask
  211. * @min_cbm_bits: Minimum number of consecutive bits to be set
  212. * @cbm_idx_mult: Multiplier of CBM index
  213. * @cbm_idx_offset: Offset of CBM index. CBM index is computed by:
  214. * closid * cbm_idx_multi + cbm_idx_offset
  215. * in a cache bit mask
  216. * @shareable_bits: Bitmask of shareable resource with other
  217. * executing entities
  218. */
  219. struct rdt_cache {
  220. unsigned int cbm_len;
  221. unsigned int min_cbm_bits;
  222. unsigned int cbm_idx_mult;
  223. unsigned int cbm_idx_offset;
  224. unsigned int shareable_bits;
  225. };
  226. /**
  227. * struct rdt_membw - Memory bandwidth allocation related data
  228. * @max_delay: Max throttle delay. Delay is the hardware
  229. * representation for memory bandwidth.
  230. * @min_bw: Minimum memory bandwidth percentage user can request
  231. * @bw_gran: Granularity at which the memory bandwidth is allocated
  232. * @delay_linear: True if memory B/W delay is in linear scale
  233. * @mb_map: Mapping of memory B/W percentage to memory B/W delay
  234. */
  235. struct rdt_membw {
  236. u32 max_delay;
  237. u32 min_bw;
  238. u32 bw_gran;
  239. u32 delay_linear;
  240. u32 *mb_map;
  241. };
  242. static inline bool is_llc_occupancy_enabled(void)
  243. {
  244. return (rdt_mon_features & (1 << QOS_L3_OCCUP_EVENT_ID));
  245. }
  246. static inline bool is_mbm_total_enabled(void)
  247. {
  248. return (rdt_mon_features & (1 << QOS_L3_MBM_TOTAL_EVENT_ID));
  249. }
  250. static inline bool is_mbm_local_enabled(void)
  251. {
  252. return (rdt_mon_features & (1 << QOS_L3_MBM_LOCAL_EVENT_ID));
  253. }
  254. static inline bool is_mbm_enabled(void)
  255. {
  256. return (is_mbm_total_enabled() || is_mbm_local_enabled());
  257. }
  258. static inline bool is_mbm_event(int e)
  259. {
  260. return (e >= QOS_L3_MBM_TOTAL_EVENT_ID &&
  261. e <= QOS_L3_MBM_LOCAL_EVENT_ID);
  262. }
  263. /**
  264. * struct rdt_resource - attributes of an RDT resource
  265. * @rid: The index of the resource
  266. * @alloc_enabled: Is allocation enabled on this machine
  267. * @mon_enabled: Is monitoring enabled for this feature
  268. * @alloc_capable: Is allocation available on this machine
  269. * @mon_capable: Is monitor feature available on this machine
  270. * @name: Name to use in "schemata" file
  271. * @num_closid: Number of CLOSIDs available
  272. * @cache_level: Which cache level defines scope of this resource
  273. * @default_ctrl: Specifies default cache cbm or memory B/W percent.
  274. * @msr_base: Base MSR address for CBMs
  275. * @msr_update: Function pointer to update QOS MSRs
  276. * @data_width: Character width of data when displaying
  277. * @domains: All domains for this resource
  278. * @cache: Cache allocation related data
  279. * @format_str: Per resource format string to show domain value
  280. * @parse_ctrlval: Per resource function pointer to parse control values
  281. * @evt_list: List of monitoring events
  282. * @num_rmid: Number of RMIDs available
  283. * @mon_scale: cqm counter * mon_scale = occupancy in bytes
  284. * @fflags: flags to choose base and info files
  285. */
  286. struct rdt_resource {
  287. int rid;
  288. bool alloc_enabled;
  289. bool mon_enabled;
  290. bool alloc_capable;
  291. bool mon_capable;
  292. char *name;
  293. int num_closid;
  294. int cache_level;
  295. u32 default_ctrl;
  296. unsigned int msr_base;
  297. void (*msr_update) (struct rdt_domain *d, struct msr_param *m,
  298. struct rdt_resource *r);
  299. int data_width;
  300. struct list_head domains;
  301. struct rdt_cache cache;
  302. struct rdt_membw membw;
  303. const char *format_str;
  304. int (*parse_ctrlval) (char *buf, struct rdt_resource *r,
  305. struct rdt_domain *d);
  306. struct list_head evt_list;
  307. int num_rmid;
  308. unsigned int mon_scale;
  309. unsigned long fflags;
  310. };
  311. int parse_cbm(char *buf, struct rdt_resource *r, struct rdt_domain *d);
  312. int parse_bw(char *buf, struct rdt_resource *r, struct rdt_domain *d);
  313. extern struct mutex rdtgroup_mutex;
  314. extern struct rdt_resource rdt_resources_all[];
  315. extern struct rdtgroup rdtgroup_default;
  316. DECLARE_STATIC_KEY_FALSE(rdt_alloc_enable_key);
  317. int __init rdtgroup_init(void);
  318. enum {
  319. RDT_RESOURCE_L3,
  320. RDT_RESOURCE_L3DATA,
  321. RDT_RESOURCE_L3CODE,
  322. RDT_RESOURCE_L2,
  323. RDT_RESOURCE_L2DATA,
  324. RDT_RESOURCE_L2CODE,
  325. RDT_RESOURCE_MBA,
  326. /* Must be the last */
  327. RDT_NUM_RESOURCES,
  328. };
  329. #define for_each_capable_rdt_resource(r) \
  330. for (r = rdt_resources_all; r < rdt_resources_all + RDT_NUM_RESOURCES;\
  331. r++) \
  332. if (r->alloc_capable || r->mon_capable)
  333. #define for_each_alloc_capable_rdt_resource(r) \
  334. for (r = rdt_resources_all; r < rdt_resources_all + RDT_NUM_RESOURCES;\
  335. r++) \
  336. if (r->alloc_capable)
  337. #define for_each_mon_capable_rdt_resource(r) \
  338. for (r = rdt_resources_all; r < rdt_resources_all + RDT_NUM_RESOURCES;\
  339. r++) \
  340. if (r->mon_capable)
  341. #define for_each_alloc_enabled_rdt_resource(r) \
  342. for (r = rdt_resources_all; r < rdt_resources_all + RDT_NUM_RESOURCES;\
  343. r++) \
  344. if (r->alloc_enabled)
  345. #define for_each_mon_enabled_rdt_resource(r) \
  346. for (r = rdt_resources_all; r < rdt_resources_all + RDT_NUM_RESOURCES;\
  347. r++) \
  348. if (r->mon_enabled)
  349. /* CPUID.(EAX=10H, ECX=ResID=1).EAX */
  350. union cpuid_0x10_1_eax {
  351. struct {
  352. unsigned int cbm_len:5;
  353. } split;
  354. unsigned int full;
  355. };
  356. /* CPUID.(EAX=10H, ECX=ResID=3).EAX */
  357. union cpuid_0x10_3_eax {
  358. struct {
  359. unsigned int max_delay:12;
  360. } split;
  361. unsigned int full;
  362. };
  363. /* CPUID.(EAX=10H, ECX=ResID).EDX */
  364. union cpuid_0x10_x_edx {
  365. struct {
  366. unsigned int cos_max:16;
  367. } split;
  368. unsigned int full;
  369. };
  370. void rdt_last_cmd_clear(void);
  371. void rdt_last_cmd_puts(const char *s);
  372. void rdt_last_cmd_printf(const char *fmt, ...);
  373. void rdt_ctrl_update(void *arg);
  374. struct rdtgroup *rdtgroup_kn_lock_live(struct kernfs_node *kn);
  375. void rdtgroup_kn_unlock(struct kernfs_node *kn);
  376. struct rdt_domain *rdt_find_domain(struct rdt_resource *r, int id,
  377. struct list_head **pos);
  378. ssize_t rdtgroup_schemata_write(struct kernfs_open_file *of,
  379. char *buf, size_t nbytes, loff_t off);
  380. int rdtgroup_schemata_show(struct kernfs_open_file *of,
  381. struct seq_file *s, void *v);
  382. struct rdt_domain *get_domain_from_cpu(int cpu, struct rdt_resource *r);
  383. int alloc_rmid(void);
  384. void free_rmid(u32 rmid);
  385. int rdt_get_mon_l3_config(struct rdt_resource *r);
  386. void mon_event_count(void *info);
  387. int rdtgroup_mondata_show(struct seq_file *m, void *arg);
  388. void rmdir_mondata_subdir_allrdtgrp(struct rdt_resource *r,
  389. unsigned int dom_id);
  390. void mkdir_mondata_subdir_allrdtgrp(struct rdt_resource *r,
  391. struct rdt_domain *d);
  392. void mon_event_read(struct rmid_read *rr, struct rdt_domain *d,
  393. struct rdtgroup *rdtgrp, int evtid, int first);
  394. void mbm_setup_overflow_handler(struct rdt_domain *dom,
  395. unsigned long delay_ms);
  396. void mbm_handle_overflow(struct work_struct *work);
  397. void cqm_setup_limbo_handler(struct rdt_domain *dom, unsigned long delay_ms);
  398. void cqm_handle_limbo(struct work_struct *work);
  399. bool has_busy_rmid(struct rdt_resource *r, struct rdt_domain *d);
  400. void __check_limbo(struct rdt_domain *d, bool force_free);
  401. #endif /* _ASM_X86_INTEL_RDT_H */