1 /* 2 * Copyright 2004-2009, Haiku Inc. All Rights Reserved. 3 * Distributed under the terms of the MIT License. 4 */ 5 #ifndef _OS_H 6 #define _OS_H 7 8 //! Kernel specific structures and functions 9 10 #include <pthread.h> 11 #include <stdarg.h> 12 13 #include <SupportDefs.h> 14 #include <StorageDefs.h> 15 16 17 #ifdef __cplusplus 18 extern "C" { 19 #endif 20 21 /* System constants */ 22 23 #define B_OS_NAME_LENGTH 32 24 #define B_PAGE_SIZE 4096 25 #define B_INFINITE_TIMEOUT (9223372036854775807LL) 26 27 enum { 28 B_TIMEOUT = 0x8, /* relative timeout */ 29 B_RELATIVE_TIMEOUT = 0x8, /* fails after a relative timeout 30 with B_TIMED_OUT */ 31 B_ABSOLUTE_TIMEOUT = 0x10, /* fails after an absolute timeout 32 with B_TIMED_OUT */ 33 34 /* experimental Haiku only API */ 35 B_TIMEOUT_REAL_TIME_BASE = 0x40, 36 B_ABSOLUTE_REAL_TIME_TIMEOUT = B_ABSOLUTE_TIMEOUT 37 | B_TIMEOUT_REAL_TIME_BASE 38 }; 39 40 41 /* Types */ 42 43 typedef int32 area_id; 44 typedef int32 port_id; 45 typedef int32 sem_id; 46 typedef int32 team_id; 47 typedef int32 thread_id; 48 49 50 /* Areas */ 51 52 typedef struct area_info { 53 area_id area; 54 char name[B_OS_NAME_LENGTH]; 55 size_t size; 56 uint32 lock; 57 uint32 protection; 58 team_id team; 59 uint32 ram_size; 60 uint32 copy_count; 61 uint32 in_count; 62 uint32 out_count; 63 void *address; 64 } area_info; 65 66 /* area locking */ 67 #define B_NO_LOCK 0 68 #define B_LAZY_LOCK 1 69 #define B_FULL_LOCK 2 70 #define B_CONTIGUOUS 3 71 #define B_LOMEM 4 72 73 /* address spec for create_area(), and clone_area() */ 74 #define B_ANY_ADDRESS 0 75 #define B_EXACT_ADDRESS 1 76 #define B_BASE_ADDRESS 2 77 #define B_CLONE_ADDRESS 3 78 #define B_ANY_KERNEL_ADDRESS 4 79 80 /* area protection */ 81 #define B_READ_AREA 1 82 #define B_WRITE_AREA 2 83 84 extern area_id create_area(const char *name, void **startAddress, 85 uint32 addressSpec, size_t size, uint32 lock, 86 uint32 protection); 87 extern area_id clone_area(const char *name, void **destAddress, 88 uint32 addressSpec, uint32 protection, area_id source); 89 extern area_id find_area(const char *name); 90 extern area_id area_for(void *address); 91 extern status_t delete_area(area_id id); 92 extern status_t resize_area(area_id id, size_t newSize); 93 extern status_t set_area_protection(area_id id, uint32 newProtection); 94 95 /* system private, use macros instead */ 96 extern status_t _get_area_info(area_id id, area_info *areaInfo, size_t size); 97 extern status_t _get_next_area_info(team_id team, int32 *cookie, 98 area_info *areaInfo, size_t size); 99 100 #define get_area_info(id, areaInfo) \ 101 _get_area_info((id), (areaInfo),sizeof(*(areaInfo))) 102 #define get_next_area_info(team, cookie, areaInfo) \ 103 _get_next_area_info((team), (cookie), (areaInfo), sizeof(*(areaInfo))) 104 105 106 /* Ports */ 107 108 typedef struct port_info { 109 port_id port; 110 team_id team; 111 char name[B_OS_NAME_LENGTH]; 112 int32 capacity; /* queue depth */ 113 int32 queue_count; /* # msgs waiting to be read */ 114 int32 total_count; /* total # msgs read so far */ 115 } port_info; 116 117 extern port_id create_port(int32 capacity, const char *name); 118 extern port_id find_port(const char *name); 119 extern ssize_t read_port(port_id port, int32 *code, void *buffer, 120 size_t bufferSize); 121 extern ssize_t read_port_etc(port_id port, int32 *code, void *buffer, 122 size_t bufferSize, uint32 flags, bigtime_t timeout); 123 extern status_t write_port(port_id port, int32 code, const void *buffer, 124 size_t bufferSize); 125 extern status_t write_port_etc(port_id port, int32 code, const void *buffer, 126 size_t bufferSize, uint32 flags, bigtime_t timeout); 127 extern status_t close_port(port_id port); 128 extern status_t delete_port(port_id port); 129 130 extern ssize_t port_buffer_size(port_id port); 131 extern ssize_t port_buffer_size_etc(port_id port, uint32 flags, 132 bigtime_t timeout); 133 extern ssize_t port_count(port_id port); 134 extern status_t set_port_owner(port_id port, team_id team); 135 136 /* system private, use the macros instead */ 137 extern status_t _get_port_info(port_id port, port_info *portInfo, 138 size_t portInfoSize); 139 extern status_t _get_next_port_info(team_id team, int32 *cookie, 140 port_info *portInfo, size_t portInfoSize); 141 142 #define get_port_info(port, info) \ 143 _get_port_info((port), (info), sizeof(*(info))) 144 #define get_next_port_info(team, cookie, info) \ 145 _get_next_port_info((team), (cookie), (info), sizeof(*(info))) 146 147 148 /* WARNING: The following is Haiku experimental API. It might be removed or 149 changed in the future. */ 150 151 typedef struct port_message_info { 152 size_t size; 153 uid_t sender; 154 gid_t sender_group; 155 team_id sender_team; 156 } port_message_info; 157 158 /* similar to port_buffer_size_etc(), but returns (more) info */ 159 extern status_t _get_port_message_info_etc(port_id port, 160 port_message_info *info, size_t infoSize, uint32 flags, 161 bigtime_t timeout); 162 163 #define get_port_message_info_etc(port, info, flags, timeout) \ 164 _get_port_message_info_etc((port), (info), sizeof(*(info)), flags, timeout) 165 166 167 /* Semaphores */ 168 169 typedef struct sem_info { 170 sem_id sem; 171 team_id team; 172 char name[B_OS_NAME_LENGTH]; 173 int32 count; 174 thread_id latest_holder; 175 } sem_info; 176 177 /* semaphore flags */ 178 enum { 179 B_CAN_INTERRUPT = 0x01, /* acquisition of the semaphore can be 180 interrupted (system use only) */ 181 B_CHECK_PERMISSION = 0x04, /* ownership will be checked (system use 182 only) */ 183 B_KILL_CAN_INTERRUPT = 0x20, /* acquisition of the semaphore can be 184 interrupted by SIGKILL[THR], even 185 if not B_CAN_INTERRUPT (system use 186 only) */ 187 188 /* release_sem_etc() only flags */ 189 B_DO_NOT_RESCHEDULE = 0x02, /* thread is not rescheduled */ 190 B_RELEASE_ALL = 0x08, /* all waiting threads will be woken up, 191 count will be zeroed */ 192 B_RELEASE_IF_WAITING_ONLY = 0x10 /* release count only if there are any 193 threads waiting */ 194 }; 195 196 extern sem_id create_sem(int32 count, const char *name); 197 extern status_t delete_sem(sem_id id); 198 extern status_t acquire_sem(sem_id id); 199 extern status_t acquire_sem_etc(sem_id id, int32 count, uint32 flags, 200 bigtime_t timeout); 201 extern status_t release_sem(sem_id id); 202 extern status_t release_sem_etc(sem_id id, int32 count, uint32 flags); 203 /* TODO: the following two calls are not part of the BeOS API, and might be 204 changed or even removed for the final release of Haiku R1 */ 205 extern status_t switch_sem(sem_id semToBeReleased, sem_id id); 206 extern status_t switch_sem_etc(sem_id semToBeReleased, sem_id id, 207 int32 count, uint32 flags, bigtime_t timeout); 208 extern status_t get_sem_count(sem_id id, int32 *threadCount); 209 extern status_t set_sem_owner(sem_id id, team_id team); 210 211 /* system private, use the macros instead */ 212 extern status_t _get_sem_info(sem_id id, struct sem_info *info, 213 size_t infoSize); 214 extern status_t _get_next_sem_info(team_id team, int32 *cookie, 215 struct sem_info *info, size_t infoSize); 216 217 #define get_sem_info(sem, info) \ 218 _get_sem_info((sem), (info), sizeof(*(info))) 219 220 #define get_next_sem_info(team, cookie, info) \ 221 _get_next_sem_info((team), (cookie), (info), sizeof(*(info))) 222 223 224 /* Teams */ 225 226 typedef struct { 227 team_id team; 228 int32 thread_count; 229 int32 image_count; 230 int32 area_count; 231 thread_id debugger_nub_thread; 232 port_id debugger_nub_port; 233 int32 argc; 234 char args[64]; 235 uid_t uid; 236 gid_t gid; 237 } team_info; 238 239 #define B_CURRENT_TEAM 0 240 #define B_SYSTEM_TEAM 1 241 242 extern status_t kill_team(team_id team); 243 /* see also: send_signal() */ 244 245 /* system private, use macros instead */ 246 extern status_t _get_team_info(team_id id, team_info *info, size_t size); 247 extern status_t _get_next_team_info(int32 *cookie, team_info *info, 248 size_t size); 249 250 #define get_team_info(id, info) \ 251 _get_team_info((id), (info), sizeof(*(info))) 252 253 #define get_next_team_info(cookie, info) \ 254 _get_next_team_info((cookie), (info), sizeof(*(info))) 255 256 /* team usage info */ 257 258 typedef struct { 259 bigtime_t user_time; 260 bigtime_t kernel_time; 261 } team_usage_info; 262 263 enum { 264 /* compatible to sys/resource.h RUSAGE_SELF and RUSAGE_CHILDREN */ 265 B_TEAM_USAGE_SELF = 0, 266 B_TEAM_USAGE_CHILDREN = -1 267 }; 268 269 /* system private, use macros instead */ 270 extern status_t _get_team_usage_info(team_id team, int32 who, 271 team_usage_info *info, size_t size); 272 273 #define get_team_usage_info(team, who, info) \ 274 _get_team_usage_info((team), (who), (info), sizeof(*(info))) 275 276 277 /* Threads */ 278 279 typedef enum { 280 B_THREAD_RUNNING = 1, 281 B_THREAD_READY, 282 B_THREAD_RECEIVING, 283 B_THREAD_ASLEEP, 284 B_THREAD_SUSPENDED, 285 B_THREAD_WAITING 286 } thread_state; 287 288 typedef struct { 289 thread_id thread; 290 team_id team; 291 char name[B_OS_NAME_LENGTH]; 292 thread_state state; 293 int32 priority; 294 sem_id sem; 295 bigtime_t user_time; 296 bigtime_t kernel_time; 297 void *stack_base; 298 void *stack_end; 299 } thread_info; 300 301 #define B_IDLE_PRIORITY 0 302 #define B_LOWEST_ACTIVE_PRIORITY 1 303 #define B_LOW_PRIORITY 5 304 #define B_NORMAL_PRIORITY 10 305 #define B_DISPLAY_PRIORITY 15 306 #define B_URGENT_DISPLAY_PRIORITY 20 307 #define B_REAL_TIME_DISPLAY_PRIORITY 100 308 #define B_URGENT_PRIORITY 110 309 #define B_REAL_TIME_PRIORITY 120 310 311 #define B_SYSTEM_TIMEBASE 0 312 313 #define B_FIRST_REAL_TIME_PRIORITY B_REAL_TIME_DISPLAY_PRIORITY 314 315 typedef status_t (*thread_func)(void *); 316 #define thread_entry thread_func 317 /* thread_entry is for backward compatibility only! Use thread_func */ 318 319 extern thread_id spawn_thread(thread_func, const char *name, int32 priority, 320 void *data); 321 extern status_t kill_thread(thread_id thread); 322 extern status_t resume_thread(thread_id thread); 323 extern status_t suspend_thread(thread_id thread); 324 325 extern status_t rename_thread(thread_id thread, const char *newName); 326 extern status_t set_thread_priority(thread_id thread, int32 newPriority); 327 extern void exit_thread(status_t status); 328 extern status_t wait_for_thread(thread_id thread, status_t *returnValue); 329 extern status_t on_exit_thread(void (*callback)(void *), void *data); 330 331 extern thread_id find_thread(const char *name); 332 333 extern status_t send_data(thread_id thread, int32 code, const void *buffer, 334 size_t bufferSize); 335 extern int32 receive_data(thread_id *sender, void *buffer, 336 size_t bufferSize); 337 extern bool has_data(thread_id thread); 338 339 extern status_t snooze(bigtime_t amount); 340 extern status_t snooze_etc(bigtime_t amount, int timeBase, uint32 flags); 341 extern status_t snooze_until(bigtime_t time, int timeBase); 342 343 /* system private, use macros instead */ 344 extern status_t _get_thread_info(thread_id id, thread_info *info, size_t size); 345 extern status_t _get_next_thread_info(team_id team, int32 *cookie, 346 thread_info *info, size_t size); 347 348 #define get_thread_info(id, info) \ 349 _get_thread_info((id), (info), sizeof(*(info))) 350 351 #define get_next_thread_info(team, cookie, info) \ 352 _get_next_thread_info((team), (cookie), (info), sizeof(*(info))) 353 354 /* bridge to the pthread API */ 355 extern thread_id get_pthread_thread_id(pthread_t thread); 356 /* TODO: Would be nice to have, but we use TLS to associate a thread with its 357 pthread object. So this is not trivial to implement. 358 extern status_t convert_to_pthread(thread_id thread, pthread_t *_thread); 359 */ 360 361 362 /* Time */ 363 364 extern uint32 real_time_clock(void); 365 extern void set_real_time_clock(uint32 secsSinceJan1st1970); 366 extern bigtime_t real_time_clock_usecs(void); 367 extern status_t set_timezone(const char *timezone); 368 extern bigtime_t system_time(void); 369 /* time since booting in microseconds */ 370 extern nanotime_t system_time_nsecs(); 371 /* time since booting in nanoseconds */ 372 373 /* Alarm */ 374 375 enum { 376 B_ONE_SHOT_ABSOLUTE_ALARM = 1, 377 B_ONE_SHOT_RELATIVE_ALARM, 378 B_PERIODIC_ALARM /* "when" specifies the period */ 379 }; 380 381 extern bigtime_t set_alarm(bigtime_t when, uint32 flags); 382 383 384 /* Debugger */ 385 386 extern void debugger(const char *message); 387 388 /* 389 calling this function with a non-zero value will cause your thread 390 to receive signals for any exceptional conditions that occur (i.e. 391 you'll get SIGSEGV for data access exceptions, SIGFPE for floating 392 point errors, SIGILL for illegal instructions, etc). 393 394 to re-enable the default debugger pass a zero. 395 */ 396 extern int disable_debugger(int state); 397 398 /* TODO: Remove. Temporary debug helper. */ 399 extern void debug_printf(const char *format, ...) 400 __attribute__ ((format (__printf__, 1, 2))); 401 extern void debug_vprintf(const char *format, va_list args); 402 extern void ktrace_printf(const char *format, ...) 403 __attribute__ ((format (__printf__, 1, 2))); 404 extern void ktrace_vprintf(const char *format, va_list args); 405 406 407 /* System information */ 408 409 #if __INTEL__ 410 # define B_MAX_CPU_COUNT 8 411 #elif __POWERPC__ 412 # define B_MAX_CPU_COUNT 8 413 #elif __M68K__ 414 # define B_MAX_CPU_COUNT 1 415 #elif __ARM__ 416 # define B_MAX_CPU_COUNT 1 417 #elif __MIPSEL__ 418 # define B_MAX_CPU_COUNT 1 419 #else 420 # warning Unknown cpu 421 # define B_MAX_CPU_COUNT 1 422 #endif 423 424 typedef enum cpu_types { 425 /* TODO: add latest models */ 426 427 /* Motorola/IBM */ 428 B_CPU_PPC_UNKNOWN = 0, 429 B_CPU_PPC_601 = 1, 430 B_CPU_PPC_602 = 7, 431 B_CPU_PPC_603 = 2, 432 B_CPU_PPC_603e = 3, 433 B_CPU_PPC_603ev = 8, 434 B_CPU_PPC_604 = 4, 435 B_CPU_PPC_604e = 5, 436 B_CPU_PPC_604ev = 9, 437 B_CPU_PPC_620 = 10, 438 B_CPU_PPC_750 = 6, 439 B_CPU_PPC_686 = 13, 440 B_CPU_PPC_860 = 25, 441 B_CPU_PPC_7400 = 26, 442 B_CPU_PPC_7410 = 27, 443 B_CPU_PPC_7447A = 28, 444 B_CPU_PPC_7448 = 29, 445 B_CPU_PPC_7450 = 30, 446 B_CPU_PPC_7455 = 31, 447 B_CPU_PPC_7457 = 32, 448 B_CPU_PPC_8240 = 33, 449 B_CPU_PPC_8245 = 34, 450 451 B_CPU_PPC_IBM_401A1 = 35, 452 B_CPU_PPC_IBM_401B2 = 36, 453 B_CPU_PPC_IBM_401C2 = 37, 454 B_CPU_PPC_IBM_401D2 = 38, 455 B_CPU_PPC_IBM_401E2 = 39, 456 B_CPU_PPC_IBM_401F2 = 40, 457 B_CPU_PPC_IBM_401G2 = 41, 458 B_CPU_PPC_IBM_403 = 42, 459 B_CPU_PPC_IBM_405GP = 43, 460 B_CPU_PPC_IBM_405L = 44, 461 B_CPU_PPC_IBM_750FX = 45, 462 B_CPU_PPC_IBM_POWER3 = 46, 463 464 /* Intel */ 465 466 /* Updated according to Intel(R) Processor Identification and 467 * the CPUID instruction (Table 4) 468 * AP-485 Intel - 24161832.pdf 469 */ 470 B_CPU_INTEL_x86 = 0x1000, 471 B_CPU_INTEL_PENTIUM = 0x1051, 472 B_CPU_INTEL_PENTIUM75, 473 B_CPU_INTEL_PENTIUM_486_OVERDRIVE, 474 B_CPU_INTEL_PENTIUM_MMX, 475 B_CPU_INTEL_PENTIUM_MMX_MODEL_4 = B_CPU_INTEL_PENTIUM_MMX, 476 B_CPU_INTEL_PENTIUM_MMX_MODEL_8 = 0x1058, 477 B_CPU_INTEL_PENTIUM75_486_OVERDRIVE, 478 B_CPU_INTEL_PENTIUM_PRO = 0x1061, 479 B_CPU_INTEL_PENTIUM_II = 0x1063, 480 B_CPU_INTEL_PENTIUM_II_MODEL_3 = 0x1063, 481 B_CPU_INTEL_PENTIUM_II_MODEL_5 = 0x1065, 482 B_CPU_INTEL_CELERON = 0x1066, 483 B_CPU_INTEL_CELERON_MODEL_22 = 0x11066, 484 B_CPU_INTEL_PENTIUM_III = 0x1067, 485 B_CPU_INTEL_PENTIUM_III_MODEL_8 = 0x1068, 486 B_CPU_INTEL_PENTIUM_M = 0x1069, 487 B_CPU_INTEL_PENTIUM_III_XEON = 0x106a, 488 B_CPU_INTEL_PENTIUM_III_MODEL_11 = 0x106b, 489 B_CPU_INTEL_ATOM = 0x1106c, 490 B_CPU_INTEL_PENTIUM_M_MODEL_13 = 0x106d, /* Dothan */ 491 B_CPU_INTEL_PENTIUM_CORE, 492 B_CPU_INTEL_PENTIUM_CORE_2, 493 B_CPU_INTEL_PENTIUM_CORE_2_45_NM = 0x11067, /* Core 2 on 45 nm 494 (Core 2 Extreme, 495 Xeon model 23 or 496 Core 2 Duo/Quad) */ 497 B_CPU_INTEL_PENTIUM_CORE_I7 = 0x1106a, /* Core i7 920 @ 2.6(6) */ 498 B_CPU_INTEL_PENTIUM_IV = 0x10f0, 499 B_CPU_INTEL_PENTIUM_IV_MODEL_1, 500 B_CPU_INTEL_PENTIUM_IV_MODEL_2, 501 B_CPU_INTEL_PENTIUM_IV_MODEL_3, 502 B_CPU_INTEL_PENTIUM_IV_MODEL_4, 503 504 /* AMD */ 505 506 /* Checked with "AMD Processor Recognition Application Note" 507 * (Table 3) 508 * 20734.pdf 509 */ 510 B_CPU_AMD_x86 = 0x1100, 511 B_CPU_AMD_K5_MODEL_0 = 0x1150, 512 B_CPU_AMD_K5_MODEL_1, 513 B_CPU_AMD_K5_MODEL_2, 514 B_CPU_AMD_K5_MODEL_3, 515 B_CPU_AMD_K6_MODEL_6 = 0x1156, 516 B_CPU_AMD_K6_MODEL_7 = 0x1157, 517 B_CPU_AMD_K6_MODEL_8 = 0x1158, 518 B_CPU_AMD_K6_2 = 0x1158, 519 B_CPU_AMD_K6_MODEL_9 = 0x1159, 520 B_CPU_AMD_K6_III = 0x1159, 521 B_CPU_AMD_K6_III_MODEL_13 = 0x115d, 522 523 B_CPU_AMD_ATHLON_MODEL_1 = 0x1161, 524 B_CPU_AMD_ATHLON_MODEL_2 = 0x1162, 525 526 B_CPU_AMD_DURON = 0x1163, 527 528 B_CPU_AMD_ATHLON_THUNDERBIRD = 0x1164, 529 B_CPU_AMD_ATHLON_XP = 0x1166, 530 B_CPU_AMD_ATHLON_XP_MODEL_7, 531 B_CPU_AMD_ATHLON_XP_MODEL_8, 532 B_CPU_AMD_ATHLON_XP_MODEL_10 = 0x116a, /* Barton */ 533 534 B_CPU_AMD_SEMPRON_MODEL_8 = B_CPU_AMD_ATHLON_XP_MODEL_8, 535 B_CPU_AMD_SEMPRON_MODEL_10 = B_CPU_AMD_ATHLON_XP_MODEL_10, 536 537 /* According to "Revision Guide for AMD Family 10h 538 * Processors" (41322.pdf) 539 */ 540 B_CPU_AMD_PHENOM = 0x11f2, 541 542 /* According to "Revision guide for AMD Athlon 64 543 * and AMD Opteron Processors" (25759.pdf) 544 */ 545 B_CPU_AMD_ATHLON_64_MODEL_3 = 0x11f3, 546 B_CPU_AMD_ATHLON_64_MODEL_4, 547 B_CPU_AMD_ATHLON_64_MODEL_5, 548 B_CPU_AMD_OPTERON = B_CPU_AMD_ATHLON_64_MODEL_5, 549 B_CPU_AMD_ATHLON_64_FX = B_CPU_AMD_ATHLON_64_MODEL_5, 550 B_CPU_AMD_ATHLON_64_MODEL_7 = 0x11f7, 551 B_CPU_AMD_ATHLON_64_MODEL_8, 552 B_CPU_AMD_ATHLON_64_MODEL_11 = 0x11fb, 553 B_CPU_AMD_ATHLON_64_MODEL_12, 554 B_CPU_AMD_ATHLON_64_MODEL_14 = 0x11fe, 555 B_CPU_AMD_ATHLON_64_MODEL_15, 556 557 B_CPU_AMD_GEODE_LX = 0x115a, 558 559 /* VIA/Cyrix */ 560 B_CPU_CYRIX_x86 = 0x1200, 561 B_CPU_VIA_CYRIX_x86 = 0x1200, 562 B_CPU_CYRIX_GXm = 0x1254, 563 B_CPU_CYRIX_6x86MX = 0x1260, 564 565 /* VIA/IDT */ 566 B_CPU_IDT_x86 = 0x1300, 567 B_CPU_VIA_IDT_x86 = 0x1300, 568 B_CPU_IDT_WINCHIP_C6 = 0x1354, 569 B_CPU_IDT_WINCHIP_2 = 0x1358, 570 B_CPU_IDT_WINCHIP_3, 571 B_CPU_VIA_C3_SAMUEL = 0x1366, 572 B_CPU_VIA_C3_SAMUEL_2 = 0x1367, 573 B_CPU_VIA_C3_EZRA_T = 0x1368, 574 B_CPU_VIA_C3_NEHEMIAH = 0x1369, 575 B_CPU_VIA_C7_ESTHER = 0x136a, 576 B_CPU_VIA_C7_ESTHER_2 = 0x136d, 577 B_CPU_VIA_NANO_ISAIAH = 0x136f, 578 579 /* Transmeta */ 580 B_CPU_TRANSMETA_x86 = 0x1600, 581 B_CPU_TRANSMETA_CRUSOE = 0x1654, 582 B_CPU_TRANSMETA_EFFICEON = 0x16f2, 583 B_CPU_TRANSMETA_EFFICEON_2 = 0x16f3, 584 585 /* Rise */ 586 B_CPU_RISE_x86 = 0x1400, 587 B_CPU_RISE_mP6 = 0x1450, 588 589 /* National Semiconductor */ 590 B_CPU_NATIONAL_x86 = 0x1500, 591 B_CPU_NATIONAL_GEODE_GX1 = 0x1554, 592 B_CPU_NATIONAL_GEODE_GX2, 593 594 /* For compatibility */ 595 B_CPU_AMD_29K = 14, 596 B_CPU_x86, 597 B_CPU_MC6502, 598 B_CPU_Z80, 599 B_CPU_ALPHA, 600 B_CPU_MIPS, 601 B_CPU_HPPA, 602 B_CPU_M68K, 603 B_CPU_ARM, 604 B_CPU_SH, 605 B_CPU_SPARC 606 } cpu_type; 607 608 #define B_CPU_x86_VENDOR_MASK 0xff00 609 610 #ifdef __INTEL__ 611 typedef union { 612 struct { 613 uint32 max_eax; 614 char vendor_id[12]; 615 } eax_0; 616 617 struct { 618 uint32 stepping : 4; 619 uint32 model : 4; 620 uint32 family : 4; 621 uint32 type : 2; 622 uint32 reserved_0 : 2; 623 uint32 extended_model : 4; 624 uint32 extended_family : 8; 625 uint32 reserved_1 : 4; 626 627 uint32 brand_index : 8; 628 uint32 clflush : 8; 629 uint32 logical_cpus : 8; 630 uint32 apic_id : 8; 631 632 uint32 features; 633 uint32 extended_features; 634 } eax_1; 635 636 struct { 637 uint8 call_num; 638 uint8 cache_descriptors[15]; 639 } eax_2; 640 641 struct { 642 uint32 reserved[2]; 643 uint32 serial_number_high; 644 uint32 serial_number_low; 645 } eax_3; 646 647 char as_chars[16]; 648 649 struct { 650 uint32 eax; 651 uint32 ebx; 652 uint32 edx; 653 uint32 ecx; 654 } regs; 655 } cpuid_info; 656 657 extern status_t get_cpuid(cpuid_info *info, uint32 eaxRegister, 658 uint32 cpuNum); 659 #endif 660 661 662 typedef enum platform_types { 663 B_BEBOX_PLATFORM = 0, 664 B_MAC_PLATFORM, 665 B_AT_CLONE_PLATFORM, 666 B_ENIAC_PLATFORM, 667 B_APPLE_II_PLATFORM, 668 B_CRAY_PLATFORM, 669 B_LISA_PLATFORM, 670 B_TI_994A_PLATFORM, 671 B_TIMEX_SINCLAIR_PLATFORM, 672 B_ORAC_1_PLATFORM, 673 B_HAL_PLATFORM, 674 B_BESM_6_PLATFORM, 675 B_MK_61_PLATFORM, 676 B_NINTENDO_64_PLATFORM, 677 B_AMIGA_PLATFORM, 678 B_ATARI_PLATFORM 679 } platform_type; 680 681 typedef struct { 682 bigtime_t active_time; /* usec of doing useful work since boot */ 683 } cpu_info; 684 685 686 typedef int32 machine_id[2]; /* unique machine ID */ 687 688 typedef struct { 689 machine_id id; /* unique machine ID */ 690 bigtime_t boot_time; /* time of boot (usecs since 1/1/1970) */ 691 692 int32 cpu_count; /* number of cpus */ 693 enum cpu_types cpu_type; /* type of cpu */ 694 int32 cpu_revision; /* revision # of cpu */ 695 cpu_info cpu_infos[B_MAX_CPU_COUNT]; /* info about individual cpus */ 696 int64 cpu_clock_speed; /* processor clock speed (Hz) */ 697 int64 bus_clock_speed; /* bus clock speed (Hz) */ 698 enum platform_types platform_type; /* type of machine we're on */ 699 700 int32 max_pages; /* total # physical pages */ 701 int32 used_pages; /* # physical pages in use */ 702 int32 page_faults; /* # of page faults */ 703 int32 max_sems; 704 int32 used_sems; 705 int32 max_ports; 706 int32 used_ports; 707 int32 max_threads; 708 int32 used_threads; 709 int32 max_teams; 710 int32 used_teams; 711 712 char kernel_name[B_FILE_NAME_LENGTH]; 713 char kernel_build_date[B_OS_NAME_LENGTH]; 714 char kernel_build_time[B_OS_NAME_LENGTH]; 715 int64 kernel_version; 716 717 bigtime_t _busy_wait_time; /* reserved for whatever */ 718 int32 cached_pages; 719 720 uint32 abi; /* the system API */ 721 722 int32 pad[2]; 723 } system_info; 724 725 /* system private, use macro instead */ 726 extern status_t _get_system_info(system_info *info, size_t size); 727 728 #define get_system_info(info) \ 729 _get_system_info((info), sizeof(*(info))) 730 731 extern int32 is_computer_on(void); 732 extern double is_computer_on_fire(void); 733 734 735 /* WARNING: Experimental API! */ 736 737 enum { 738 B_OBJECT_TYPE_FD = 0, 739 B_OBJECT_TYPE_SEMAPHORE = 1, 740 B_OBJECT_TYPE_PORT = 2, 741 B_OBJECT_TYPE_THREAD = 3 742 }; 743 744 enum { 745 B_EVENT_READ = 0x0001, /* FD/port readable */ 746 B_EVENT_WRITE = 0x0002, /* FD/port writable */ 747 B_EVENT_ERROR = 0x0004, /* FD error */ 748 B_EVENT_PRIORITY_READ = 0x0008, /* FD priority readable */ 749 B_EVENT_PRIORITY_WRITE = 0x0010, /* FD priority writable */ 750 B_EVENT_HIGH_PRIORITY_READ = 0x0020, /* FD high priority readable */ 751 B_EVENT_HIGH_PRIORITY_WRITE = 0x0040, /* FD high priority writable */ 752 B_EVENT_DISCONNECTED = 0x0080, /* FD disconnected */ 753 754 B_EVENT_ACQUIRE_SEMAPHORE = 0x0001, /* semaphore can be acquired */ 755 756 B_EVENT_INVALID = 0x1000 /* FD/port/sem/thread ID not or 757 no longer valid (e.g. has been 758 close/deleted) */ 759 }; 760 761 typedef struct object_wait_info { 762 int32 object; /* ID of the object */ 763 uint16 type; /* type of the object */ 764 uint16 events; /* events mask */ 765 } object_wait_info; 766 767 /* wait_for_objects[_etc]() waits until at least one of the specified events or, 768 if given, the timeout occurred. When entering the function the 769 object_wait_info::events field specifies the events for each object the 770 caller is interested in. When the function returns the fields reflect the 771 events that actually occurred. The events B_EVENT_INVALID, B_EVENT_ERROR, 772 and B_EVENT_DISCONNECTED don't need to be specified. They will always be 773 reported, when they occur. */ 774 775 extern ssize_t wait_for_objects(object_wait_info* infos, int numInfos); 776 extern ssize_t wait_for_objects_etc(object_wait_info* infos, int numInfos, 777 uint32 flags, bigtime_t timeout); 778 779 780 #ifdef __cplusplus 781 } 782 #endif 783 784 #endif /* _OS_H */ 785