platform.h 16 KB

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  1. /******************************************************************************
  2. * platform.h
  3. *
  4. * Hardware platform operations. Intended for use by domain-0 kernel.
  5. *
  6. * Permission is hereby granted, free of charge, to any person obtaining a copy
  7. * of this software and associated documentation files (the "Software"), to
  8. * deal in the Software without restriction, including without limitation the
  9. * rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
  10. * sell copies of the Software, and to permit persons to whom the Software is
  11. * furnished to do so, subject to the following conditions:
  12. *
  13. * The above copyright notice and this permission notice shall be included in
  14. * all copies or substantial portions of the Software.
  15. *
  16. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  17. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  18. * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
  19. * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  20. * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
  21. * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
  22. * DEALINGS IN THE SOFTWARE.
  23. *
  24. * Copyright (c) 2002-2006, K Fraser
  25. */
  26. #ifndef __XEN_PUBLIC_PLATFORM_H__
  27. #define __XEN_PUBLIC_PLATFORM_H__
  28. #include <xen/interface/xen.h>
  29. #define XENPF_INTERFACE_VERSION 0x03000001
  30. /*
  31. * Set clock such that it would read <secs,nsecs> after 00:00:00 UTC,
  32. * 1 January, 1970 if the current system time was <system_time>.
  33. */
  34. #define XENPF_settime32 17
  35. struct xenpf_settime32 {
  36. /* IN variables. */
  37. uint32_t secs;
  38. uint32_t nsecs;
  39. uint64_t system_time;
  40. };
  41. DEFINE_GUEST_HANDLE_STRUCT(xenpf_settime32_t);
  42. #define XENPF_settime64 62
  43. struct xenpf_settime64 {
  44. /* IN variables. */
  45. uint64_t secs;
  46. uint32_t nsecs;
  47. uint32_t mbz;
  48. uint64_t system_time;
  49. };
  50. DEFINE_GUEST_HANDLE_STRUCT(xenpf_settime64_t);
  51. /*
  52. * Request memory range (@mfn, @mfn+@nr_mfns-1) to have type @type.
  53. * On x86, @type is an architecture-defined MTRR memory type.
  54. * On success, returns the MTRR that was used (@reg) and a handle that can
  55. * be passed to XENPF_DEL_MEMTYPE to accurately tear down the new setting.
  56. * (x86-specific).
  57. */
  58. #define XENPF_add_memtype 31
  59. struct xenpf_add_memtype {
  60. /* IN variables. */
  61. xen_pfn_t mfn;
  62. uint64_t nr_mfns;
  63. uint32_t type;
  64. /* OUT variables. */
  65. uint32_t handle;
  66. uint32_t reg;
  67. };
  68. DEFINE_GUEST_HANDLE_STRUCT(xenpf_add_memtype_t);
  69. /*
  70. * Tear down an existing memory-range type. If @handle is remembered then it
  71. * should be passed in to accurately tear down the correct setting (in case
  72. * of overlapping memory regions with differing types). If it is not known
  73. * then @handle should be set to zero. In all cases @reg must be set.
  74. * (x86-specific).
  75. */
  76. #define XENPF_del_memtype 32
  77. struct xenpf_del_memtype {
  78. /* IN variables. */
  79. uint32_t handle;
  80. uint32_t reg;
  81. };
  82. DEFINE_GUEST_HANDLE_STRUCT(xenpf_del_memtype_t);
  83. /* Read current type of an MTRR (x86-specific). */
  84. #define XENPF_read_memtype 33
  85. struct xenpf_read_memtype {
  86. /* IN variables. */
  87. uint32_t reg;
  88. /* OUT variables. */
  89. xen_pfn_t mfn;
  90. uint64_t nr_mfns;
  91. uint32_t type;
  92. };
  93. DEFINE_GUEST_HANDLE_STRUCT(xenpf_read_memtype_t);
  94. #define XENPF_microcode_update 35
  95. struct xenpf_microcode_update {
  96. /* IN variables. */
  97. GUEST_HANDLE(void) data; /* Pointer to microcode data */
  98. uint32_t length; /* Length of microcode data. */
  99. };
  100. DEFINE_GUEST_HANDLE_STRUCT(xenpf_microcode_update_t);
  101. #define XENPF_platform_quirk 39
  102. #define QUIRK_NOIRQBALANCING 1 /* Do not restrict IO-APIC RTE targets */
  103. #define QUIRK_IOAPIC_BAD_REGSEL 2 /* IO-APIC REGSEL forgets its value */
  104. #define QUIRK_IOAPIC_GOOD_REGSEL 3 /* IO-APIC REGSEL behaves properly */
  105. struct xenpf_platform_quirk {
  106. /* IN variables. */
  107. uint32_t quirk_id;
  108. };
  109. DEFINE_GUEST_HANDLE_STRUCT(xenpf_platform_quirk_t);
  110. #define XENPF_efi_runtime_call 49
  111. #define XEN_EFI_get_time 1
  112. #define XEN_EFI_set_time 2
  113. #define XEN_EFI_get_wakeup_time 3
  114. #define XEN_EFI_set_wakeup_time 4
  115. #define XEN_EFI_get_next_high_monotonic_count 5
  116. #define XEN_EFI_get_variable 6
  117. #define XEN_EFI_set_variable 7
  118. #define XEN_EFI_get_next_variable_name 8
  119. #define XEN_EFI_query_variable_info 9
  120. #define XEN_EFI_query_capsule_capabilities 10
  121. #define XEN_EFI_update_capsule 11
  122. struct xenpf_efi_runtime_call {
  123. uint32_t function;
  124. /*
  125. * This field is generally used for per sub-function flags (defined
  126. * below), except for the XEN_EFI_get_next_high_monotonic_count case,
  127. * where it holds the single returned value.
  128. */
  129. uint32_t misc;
  130. xen_ulong_t status;
  131. union {
  132. #define XEN_EFI_GET_TIME_SET_CLEARS_NS 0x00000001
  133. struct {
  134. struct xenpf_efi_time {
  135. uint16_t year;
  136. uint8_t month;
  137. uint8_t day;
  138. uint8_t hour;
  139. uint8_t min;
  140. uint8_t sec;
  141. uint32_t ns;
  142. int16_t tz;
  143. uint8_t daylight;
  144. } time;
  145. uint32_t resolution;
  146. uint32_t accuracy;
  147. } get_time;
  148. struct xenpf_efi_time set_time;
  149. #define XEN_EFI_GET_WAKEUP_TIME_ENABLED 0x00000001
  150. #define XEN_EFI_GET_WAKEUP_TIME_PENDING 0x00000002
  151. struct xenpf_efi_time get_wakeup_time;
  152. #define XEN_EFI_SET_WAKEUP_TIME_ENABLE 0x00000001
  153. #define XEN_EFI_SET_WAKEUP_TIME_ENABLE_ONLY 0x00000002
  154. struct xenpf_efi_time set_wakeup_time;
  155. #define XEN_EFI_VARIABLE_NON_VOLATILE 0x00000001
  156. #define XEN_EFI_VARIABLE_BOOTSERVICE_ACCESS 0x00000002
  157. #define XEN_EFI_VARIABLE_RUNTIME_ACCESS 0x00000004
  158. struct {
  159. GUEST_HANDLE(void) name; /* UCS-2/UTF-16 string */
  160. xen_ulong_t size;
  161. GUEST_HANDLE(void) data;
  162. struct xenpf_efi_guid {
  163. uint32_t data1;
  164. uint16_t data2;
  165. uint16_t data3;
  166. uint8_t data4[8];
  167. } vendor_guid;
  168. } get_variable, set_variable;
  169. struct {
  170. xen_ulong_t size;
  171. GUEST_HANDLE(void) name; /* UCS-2/UTF-16 string */
  172. struct xenpf_efi_guid vendor_guid;
  173. } get_next_variable_name;
  174. struct {
  175. uint32_t attr;
  176. uint64_t max_store_size;
  177. uint64_t remain_store_size;
  178. uint64_t max_size;
  179. } query_variable_info;
  180. struct {
  181. GUEST_HANDLE(void) capsule_header_array;
  182. xen_ulong_t capsule_count;
  183. uint64_t max_capsule_size;
  184. uint32_t reset_type;
  185. } query_capsule_capabilities;
  186. struct {
  187. GUEST_HANDLE(void) capsule_header_array;
  188. xen_ulong_t capsule_count;
  189. uint64_t sg_list; /* machine address */
  190. } update_capsule;
  191. } u;
  192. };
  193. DEFINE_GUEST_HANDLE_STRUCT(xenpf_efi_runtime_call);
  194. #define XEN_FW_EFI_VERSION 0
  195. #define XEN_FW_EFI_CONFIG_TABLE 1
  196. #define XEN_FW_EFI_VENDOR 2
  197. #define XEN_FW_EFI_MEM_INFO 3
  198. #define XEN_FW_EFI_RT_VERSION 4
  199. #define XENPF_firmware_info 50
  200. #define XEN_FW_DISK_INFO 1 /* from int 13 AH=08/41/48 */
  201. #define XEN_FW_DISK_MBR_SIGNATURE 2 /* from MBR offset 0x1b8 */
  202. #define XEN_FW_VBEDDC_INFO 3 /* from int 10 AX=4f15 */
  203. #define XEN_FW_EFI_INFO 4 /* from EFI */
  204. #define XEN_FW_KBD_SHIFT_FLAGS 5 /* Int16, Fn02: Get keyboard shift flags. */
  205. struct xenpf_firmware_info {
  206. /* IN variables. */
  207. uint32_t type;
  208. uint32_t index;
  209. /* OUT variables. */
  210. union {
  211. struct {
  212. /* Int13, Fn48: Check Extensions Present. */
  213. uint8_t device; /* %dl: bios device number */
  214. uint8_t version; /* %ah: major version */
  215. uint16_t interface_support; /* %cx: support bitmap */
  216. /* Int13, Fn08: Legacy Get Device Parameters. */
  217. uint16_t legacy_max_cylinder; /* %cl[7:6]:%ch: max cyl # */
  218. uint8_t legacy_max_head; /* %dh: max head # */
  219. uint8_t legacy_sectors_per_track; /* %cl[5:0]: max sector # */
  220. /* Int13, Fn41: Get Device Parameters (as filled into %ds:%esi). */
  221. /* NB. First uint16_t of buffer must be set to buffer size. */
  222. GUEST_HANDLE(void) edd_params;
  223. } disk_info; /* XEN_FW_DISK_INFO */
  224. struct {
  225. uint8_t device; /* bios device number */
  226. uint32_t mbr_signature; /* offset 0x1b8 in mbr */
  227. } disk_mbr_signature; /* XEN_FW_DISK_MBR_SIGNATURE */
  228. struct {
  229. /* Int10, AX=4F15: Get EDID info. */
  230. uint8_t capabilities;
  231. uint8_t edid_transfer_time;
  232. /* must refer to 128-byte buffer */
  233. GUEST_HANDLE(uchar) edid;
  234. } vbeddc_info; /* XEN_FW_VBEDDC_INFO */
  235. union xenpf_efi_info {
  236. uint32_t version;
  237. struct {
  238. uint64_t addr; /* EFI_CONFIGURATION_TABLE */
  239. uint32_t nent;
  240. } cfg;
  241. struct {
  242. uint32_t revision;
  243. uint32_t bufsz; /* input, in bytes */
  244. GUEST_HANDLE(void) name;
  245. /* UCS-2/UTF-16 string */
  246. } vendor;
  247. struct {
  248. uint64_t addr;
  249. uint64_t size;
  250. uint64_t attr;
  251. uint32_t type;
  252. } mem;
  253. } efi_info; /* XEN_FW_EFI_INFO */
  254. uint8_t kbd_shift_flags; /* XEN_FW_KBD_SHIFT_FLAGS */
  255. } u;
  256. };
  257. DEFINE_GUEST_HANDLE_STRUCT(xenpf_firmware_info_t);
  258. #define XENPF_enter_acpi_sleep 51
  259. struct xenpf_enter_acpi_sleep {
  260. /* IN variables */
  261. uint16_t val_a; /* PM1a control / sleep type A. */
  262. uint16_t val_b; /* PM1b control / sleep type B. */
  263. uint32_t sleep_state; /* Which state to enter (Sn). */
  264. #define XENPF_ACPI_SLEEP_EXTENDED 0x00000001
  265. uint32_t flags; /* XENPF_ACPI_SLEEP_*. */
  266. };
  267. DEFINE_GUEST_HANDLE_STRUCT(xenpf_enter_acpi_sleep_t);
  268. #define XENPF_change_freq 52
  269. struct xenpf_change_freq {
  270. /* IN variables */
  271. uint32_t flags; /* Must be zero. */
  272. uint32_t cpu; /* Physical cpu. */
  273. uint64_t freq; /* New frequency (Hz). */
  274. };
  275. DEFINE_GUEST_HANDLE_STRUCT(xenpf_change_freq_t);
  276. /*
  277. * Get idle times (nanoseconds since boot) for physical CPUs specified in the
  278. * @cpumap_bitmap with range [0..@cpumap_nr_cpus-1]. The @idletime array is
  279. * indexed by CPU number; only entries with the corresponding @cpumap_bitmap
  280. * bit set are written to. On return, @cpumap_bitmap is modified so that any
  281. * non-existent CPUs are cleared. Such CPUs have their @idletime array entry
  282. * cleared.
  283. */
  284. #define XENPF_getidletime 53
  285. struct xenpf_getidletime {
  286. /* IN/OUT variables */
  287. /* IN: CPUs to interrogate; OUT: subset of IN which are present */
  288. GUEST_HANDLE(uchar) cpumap_bitmap;
  289. /* IN variables */
  290. /* Size of cpumap bitmap. */
  291. uint32_t cpumap_nr_cpus;
  292. /* Must be indexable for every cpu in cpumap_bitmap. */
  293. GUEST_HANDLE(uint64_t) idletime;
  294. /* OUT variables */
  295. /* System time when the idletime snapshots were taken. */
  296. uint64_t now;
  297. };
  298. DEFINE_GUEST_HANDLE_STRUCT(xenpf_getidletime_t);
  299. #define XENPF_set_processor_pminfo 54
  300. /* ability bits */
  301. #define XEN_PROCESSOR_PM_CX 1
  302. #define XEN_PROCESSOR_PM_PX 2
  303. #define XEN_PROCESSOR_PM_TX 4
  304. /* cmd type */
  305. #define XEN_PM_CX 0
  306. #define XEN_PM_PX 1
  307. #define XEN_PM_TX 2
  308. #define XEN_PM_PDC 3
  309. /* Px sub info type */
  310. #define XEN_PX_PCT 1
  311. #define XEN_PX_PSS 2
  312. #define XEN_PX_PPC 4
  313. #define XEN_PX_PSD 8
  314. struct xen_power_register {
  315. uint32_t space_id;
  316. uint32_t bit_width;
  317. uint32_t bit_offset;
  318. uint32_t access_size;
  319. uint64_t address;
  320. };
  321. struct xen_processor_csd {
  322. uint32_t domain; /* domain number of one dependent group */
  323. uint32_t coord_type; /* coordination type */
  324. uint32_t num; /* number of processors in same domain */
  325. };
  326. DEFINE_GUEST_HANDLE_STRUCT(xen_processor_csd);
  327. struct xen_processor_cx {
  328. struct xen_power_register reg; /* GAS for Cx trigger register */
  329. uint8_t type; /* cstate value, c0: 0, c1: 1, ... */
  330. uint32_t latency; /* worst latency (ms) to enter/exit this cstate */
  331. uint32_t power; /* average power consumption(mW) */
  332. uint32_t dpcnt; /* number of dependency entries */
  333. GUEST_HANDLE(xen_processor_csd) dp; /* NULL if no dependency */
  334. };
  335. DEFINE_GUEST_HANDLE_STRUCT(xen_processor_cx);
  336. struct xen_processor_flags {
  337. uint32_t bm_control:1;
  338. uint32_t bm_check:1;
  339. uint32_t has_cst:1;
  340. uint32_t power_setup_done:1;
  341. uint32_t bm_rld_set:1;
  342. };
  343. struct xen_processor_power {
  344. uint32_t count; /* number of C state entries in array below */
  345. struct xen_processor_flags flags; /* global flags of this processor */
  346. GUEST_HANDLE(xen_processor_cx) states; /* supported c states */
  347. };
  348. struct xen_pct_register {
  349. uint8_t descriptor;
  350. uint16_t length;
  351. uint8_t space_id;
  352. uint8_t bit_width;
  353. uint8_t bit_offset;
  354. uint8_t reserved;
  355. uint64_t address;
  356. };
  357. struct xen_processor_px {
  358. uint64_t core_frequency; /* megahertz */
  359. uint64_t power; /* milliWatts */
  360. uint64_t transition_latency; /* microseconds */
  361. uint64_t bus_master_latency; /* microseconds */
  362. uint64_t control; /* control value */
  363. uint64_t status; /* success indicator */
  364. };
  365. DEFINE_GUEST_HANDLE_STRUCT(xen_processor_px);
  366. struct xen_psd_package {
  367. uint64_t num_entries;
  368. uint64_t revision;
  369. uint64_t domain;
  370. uint64_t coord_type;
  371. uint64_t num_processors;
  372. };
  373. struct xen_processor_performance {
  374. uint32_t flags; /* flag for Px sub info type */
  375. uint32_t platform_limit; /* Platform limitation on freq usage */
  376. struct xen_pct_register control_register;
  377. struct xen_pct_register status_register;
  378. uint32_t state_count; /* total available performance states */
  379. GUEST_HANDLE(xen_processor_px) states;
  380. struct xen_psd_package domain_info;
  381. uint32_t shared_type; /* coordination type of this processor */
  382. };
  383. DEFINE_GUEST_HANDLE_STRUCT(xen_processor_performance);
  384. struct xenpf_set_processor_pminfo {
  385. /* IN variables */
  386. uint32_t id; /* ACPI CPU ID */
  387. uint32_t type; /* {XEN_PM_CX, XEN_PM_PX} */
  388. union {
  389. struct xen_processor_power power;/* Cx: _CST/_CSD */
  390. struct xen_processor_performance perf; /* Px: _PPC/_PCT/_PSS/_PSD */
  391. GUEST_HANDLE(uint32_t) pdc;
  392. };
  393. };
  394. DEFINE_GUEST_HANDLE_STRUCT(xenpf_set_processor_pminfo);
  395. #define XENPF_get_cpuinfo 55
  396. struct xenpf_pcpuinfo {
  397. /* IN */
  398. uint32_t xen_cpuid;
  399. /* OUT */
  400. /* The maxium cpu_id that is present */
  401. uint32_t max_present;
  402. #define XEN_PCPU_FLAGS_ONLINE 1
  403. /* Correponding xen_cpuid is not present*/
  404. #define XEN_PCPU_FLAGS_INVALID 2
  405. uint32_t flags;
  406. uint32_t apic_id;
  407. uint32_t acpi_id;
  408. };
  409. DEFINE_GUEST_HANDLE_STRUCT(xenpf_pcpuinfo);
  410. #define XENPF_cpu_online 56
  411. #define XENPF_cpu_offline 57
  412. struct xenpf_cpu_ol {
  413. uint32_t cpuid;
  414. };
  415. DEFINE_GUEST_HANDLE_STRUCT(xenpf_cpu_ol);
  416. #define XENPF_cpu_hotadd 58
  417. struct xenpf_cpu_hotadd {
  418. uint32_t apic_id;
  419. uint32_t acpi_id;
  420. uint32_t pxm;
  421. };
  422. #define XENPF_mem_hotadd 59
  423. struct xenpf_mem_hotadd {
  424. uint64_t spfn;
  425. uint64_t epfn;
  426. uint32_t pxm;
  427. uint32_t flags;
  428. };
  429. #define XENPF_core_parking 60
  430. struct xenpf_core_parking {
  431. /* IN variables */
  432. #define XEN_CORE_PARKING_SET 1
  433. #define XEN_CORE_PARKING_GET 2
  434. uint32_t type;
  435. /* IN variables: set cpu nums expected to be idled */
  436. /* OUT variables: get cpu nums actually be idled */
  437. uint32_t idle_nums;
  438. };
  439. DEFINE_GUEST_HANDLE_STRUCT(xenpf_core_parking);
  440. #define XENPF_get_symbol 63
  441. struct xenpf_symdata {
  442. /* IN/OUT variables */
  443. uint32_t namelen; /* size of 'name' buffer */
  444. /* IN/OUT variables */
  445. uint32_t symnum; /* IN: Symbol to read */
  446. /* OUT: Next available symbol. If same as IN */
  447. /* then we reached the end */
  448. /* OUT variables */
  449. GUEST_HANDLE(char) name;
  450. uint64_t address;
  451. char type;
  452. };
  453. DEFINE_GUEST_HANDLE_STRUCT(xenpf_symdata);
  454. struct xen_platform_op {
  455. uint32_t cmd;
  456. uint32_t interface_version; /* XENPF_INTERFACE_VERSION */
  457. union {
  458. struct xenpf_settime32 settime32;
  459. struct xenpf_settime64 settime64;
  460. struct xenpf_add_memtype add_memtype;
  461. struct xenpf_del_memtype del_memtype;
  462. struct xenpf_read_memtype read_memtype;
  463. struct xenpf_microcode_update microcode;
  464. struct xenpf_platform_quirk platform_quirk;
  465. struct xenpf_efi_runtime_call efi_runtime_call;
  466. struct xenpf_firmware_info firmware_info;
  467. struct xenpf_enter_acpi_sleep enter_acpi_sleep;
  468. struct xenpf_change_freq change_freq;
  469. struct xenpf_getidletime getidletime;
  470. struct xenpf_set_processor_pminfo set_pminfo;
  471. struct xenpf_pcpuinfo pcpu_info;
  472. struct xenpf_cpu_ol cpu_ol;
  473. struct xenpf_cpu_hotadd cpu_add;
  474. struct xenpf_mem_hotadd mem_add;
  475. struct xenpf_core_parking core_parking;
  476. struct xenpf_symdata symdata;
  477. uint8_t pad[128];
  478. } u;
  479. };
  480. DEFINE_GUEST_HANDLE_STRUCT(xen_platform_op_t);
  481. #endif /* __XEN_PUBLIC_PLATFORM_H__ */