1 /* 2 * CDDL HEADER START 3 * 4 * The contents of this file are subject to the terms of the 5 * Common Development and Distribution License (the "License"). 6 * You may not use this file except in compliance with the License. 7 * 8 * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9 * or http://www.opensolaris.org/os/licensing. 10 * See the License for the specific language governing permissions 11 * and limitations under the License. 12 * 13 * When distributing Covered Code, include this CDDL HEADER in each 14 * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15 * If applicable, add the following below this CDDL HEADER, with the 16 * fields enclosed by brackets "[]" replaced with your own identifying 17 * information: Portions Copyright [yyyy] [name of copyright owner] 18 * 19 * CDDL HEADER END 20 */ 21 /* Copyright (c) 1984, 1986, 1987, 1988, 1989 AT&T */ 22 /* All Rights Reserved */ 23 24 25 /* 26 * Copyright 2009 Sun Microsystems, Inc. All rights reserved. 27 * Use is subject to license terms. 28 */ 29 30 #ifndef _SYS_SYSTM_H 31 #define _SYS_SYSTM_H 32 33 #include <sys/types.h> 34 #include <sys/t_lock.h> 35 #include <sys/proc.h> 36 #include <sys/dditypes.h> 37 38 #ifdef __cplusplus 39 extern "C" { 40 #endif 41 42 /* 43 * The pc_t is the type of the kernel's program counter. In general, a 44 * pc_t is a uintptr_t -- except for a sparcv9 kernel, in which case all 45 * instruction text is below 4G, and a pc_t is thus a uint32_t. 46 */ 47 #ifdef __sparcv9 48 typedef uint32_t pc_t; 49 #else 50 typedef uintptr_t pc_t; 51 #endif 52 53 /* 54 * Random set of variables used by more than one routine. 55 */ 56 57 #ifdef _KERNEL 58 #include <sys/varargs.h> 59 #include <sys/uadmin.h> 60 61 extern int hz; /* system clock rate */ 62 extern struct vnode *rootdir; /* pointer to vnode of root directory */ 63 extern struct vnode *devicesdir; /* pointer to /devices vnode */ 64 extern volatile clock_t lbolt; /* time in HZ since last boot */ 65 extern volatile int64_t lbolt64; /* lbolt computed as 64-bit value */ 66 extern int interrupts_unleashed; /* set after the spl0() in main() */ 67 68 extern char runin; /* scheduling flag */ 69 extern char runout; /* scheduling flag */ 70 extern char wake_sched; /* causes clock to wake swapper on next tick */ 71 extern char wake_sched_sec; /* causes clock to wake swapper after a sec */ 72 73 extern pgcnt_t maxmem; /* max available memory (pages) */ 74 extern pgcnt_t physmem; /* physical memory (pages) on this CPU */ 75 extern pfn_t physmax; /* highest numbered physical page present */ 76 extern pgcnt_t physinstalled; /* physical pages including PROM/boot use */ 77 78 extern caddr_t s_text; /* start of kernel text segment */ 79 extern caddr_t e_text; /* end of kernel text segment */ 80 extern caddr_t s_data; /* start of kernel text segment */ 81 extern caddr_t e_data; /* end of kernel text segment */ 82 83 extern pgcnt_t availrmem; /* Available resident (not swapable) */ 84 /* memory in pages. */ 85 extern pgcnt_t availrmem_initial; /* initial value of availrmem */ 86 extern pgcnt_t segspt_minfree; /* low water mark for availrmem in seg_spt */ 87 extern pgcnt_t freemem; /* Current free memory. */ 88 89 extern dev_t rootdev; /* device of the root */ 90 extern struct vnode *rootvp; /* vnode of root device */ 91 extern boolean_t root_is_svm; /* root is a mirrored device flag */ 92 extern boolean_t root_is_ramdisk; /* root is boot_archive ramdisk */ 93 extern uint32_t ramdisk_size; /* (KB) set only for sparc netboots */ 94 extern char *volatile panicstr; /* panic string pointer */ 95 extern va_list panicargs; /* panic arguments */ 96 extern volatile int quiesce_active; /* quiesce(9E) is in progress */ 97 98 extern int rstchown; /* 1 ==> restrictive chown(2) semantics */ 99 extern int klustsize; 100 101 extern int abort_enable; /* Platform input-device abort policy */ 102 103 extern int audit_active; /* Solaris Auditing active 1, absent 0. */ 104 105 extern int avenrun[]; /* array of load averages */ 106 107 extern char *isa_list; /* For sysinfo's isalist option */ 108 109 extern int noexec_user_stack; /* patchable via /etc/system */ 110 extern int noexec_user_stack_log; /* patchable via /etc/system */ 111 112 /* 113 * Use NFS client operations in the global zone only. Under contract with 114 * admin/install; do not change without coordinating with that consolidation. 115 */ 116 extern int nfs_global_client_only; 117 118 extern void report_stack_exec(proc_t *, caddr_t); 119 120 extern void startup(void); 121 extern void clkstart(void); 122 extern void post_startup(void); 123 extern void kern_setup1(void); 124 extern void ka_init(void); 125 extern void nodename_set(void); 126 127 /* 128 * for tod fault detection 129 */ 130 enum tod_fault_type { 131 TOD_REVERSED = 0, 132 TOD_STALLED, 133 TOD_JUMPED, 134 TOD_RATECHANGED, 135 TOD_RDONLY, 136 TOD_NOFAULT 137 }; 138 139 extern time_t tod_validate(time_t); 140 extern void tod_fault_reset(void); 141 extern void plat_tod_fault(enum tod_fault_type); 142 143 #ifndef _LP64 144 #ifndef min 145 int min(int, int); 146 #endif 147 148 #ifndef max 149 int max(int, int); 150 #endif 151 152 uint_t umin(uint_t, uint_t); 153 uint_t umax(uint_t, uint_t); 154 #endif /* !_LP64 */ 155 int grow(caddr_t); 156 int grow_internal(caddr_t, uint_t); 157 int brk_internal(caddr_t, uint_t); 158 typedef uint64_t callout_id_t; 159 timeout_id_t timeout(void (*)(void *), void *, clock_t); 160 timeout_id_t realtime_timeout(void (*)(void *), void *, clock_t); 161 clock_t untimeout(timeout_id_t); 162 /* 163 * The last argument to timeout_generic() is flags. See callo.h for the 164 * flags definitions. 165 */ 166 callout_id_t timeout_generic(int, void (*)(void *), void *, hrtime_t, hrtime_t, 167 int); 168 callout_id_t timeout_default(void (*)(void *), void *, clock_t); 169 callout_id_t realtime_timeout_default(void (*)(void *), void *, clock_t); 170 /* 171 * The last argument to untimeout_generic() is flags. See callout.c for the 172 * use. 173 */ 174 hrtime_t untimeout_generic(callout_id_t, int); 175 clock_t untimeout_default(callout_id_t, int); 176 void delay(clock_t); 177 int delay_sig(clock_t); 178 int nodev(); 179 int nulldev(); 180 major_t getudev(void); 181 int cmpldev(dev32_t *, dev_t); 182 dev_t expldev(dev32_t); 183 int bcmp(const void *, const void *, size_t) __PURE; 184 int stoi(char **); 185 void numtos(ulong_t, char *); 186 char *kmem_asprintf(const char *fmt, ...); 187 int strident_valid(const char *); 188 void strident_canon(char *, size_t); 189 int getsubopt(char **optionsp, char * const *tokens, char **valuep); 190 char *append_subopt(const char *, size_t, char *, const char *); 191 int ffs(uintmax_t); 192 int copyin(const void *, void *, size_t); 193 void copyin_noerr(const void *, void *, size_t); 194 int xcopyin(const void *, void *, size_t); 195 int xcopyin_nta(const void *, void *, size_t, int); 196 int copyout(const void *, void *, size_t); 197 void copyout_noerr(const void *, void *, size_t); 198 int xcopyout(const void *, void *, size_t); 199 int xcopyout_nta(const void *, void *, size_t, int); 200 int copyinstr(const char *, char *, size_t, size_t *); 201 int copyinstr_noerr(const char *, char *, size_t, size_t *); 202 int copyoutstr(const char *, char *, size_t, size_t *); 203 int copyoutstr_noerr(const char *, char *, size_t, size_t *); 204 int copystr(const char *, char *, size_t, size_t *); 205 void ucopy(const void *, void *, size_t); 206 void ucopystr(const char *, char *, size_t, size_t *); 207 void pgcopy(const void *, void *, size_t); 208 void ovbcopy(const void *, void *, size_t); 209 void uzero(void *, size_t); 210 int kcopy(const void *, void *, size_t); 211 int kcopy_nta(const void *, void *, size_t, int); 212 int kzero(void *, size_t); 213 214 int fuword8(const void *, uint8_t *); 215 int fuword16(const void *, uint16_t *); 216 int fuword32(const void *, uint32_t *); 217 int fulword(const void *, ulong_t *); 218 void fuword8_noerr(const void *, uint8_t *); 219 void fuword16_noerr(const void *, uint16_t *); 220 void fuword32_noerr(const void *, uint32_t *); 221 void fulword_noerr(const void *, ulong_t *); 222 223 #ifdef _LP64 224 int fuword64(const void *, uint64_t *); 225 void fuword64_noerr(const void *, uint64_t *); 226 #endif 227 228 int subyte(void *, uint8_t); 229 int suword8(void *, uint8_t); 230 int suword16(void *, uint16_t); 231 int suword32(void *, uint32_t); 232 int sulword(void *, ulong_t); 233 void subyte_noerr(void *, uint8_t); 234 void suword8_noerr(void *, uint8_t); 235 void suword16_noerr(void *, uint16_t); 236 void suword32_noerr(void *, uint32_t); 237 void sulword_noerr(void *, ulong_t); 238 239 #ifdef _LP64 240 int suword64(void *, uint64_t); 241 void suword64_noerr(void *, uint64_t); 242 #endif 243 244 #if !defined(_BOOT) 245 int setjmp(label_t *); 246 extern void longjmp(label_t *) 247 __NORETURN; 248 #pragma unknown_control_flow(setjmp) 249 #endif 250 251 void prefetch_read_once(void *); 252 void prefetch_write_once(void *); 253 void prefetch_read_many(void *); 254 void prefetch_write_many(void *); 255 caddr_t caller(void); 256 caddr_t callee(void); 257 int getpcstack(pc_t *, int); 258 int on_fault(label_t *); 259 void no_fault(void); 260 void halt(char *); 261 int scanc(size_t, uchar_t *, uchar_t *, uchar_t); 262 int movtuc(size_t, uchar_t *, uchar_t *, uchar_t *); 263 int splr(int); 264 int splhigh(void); 265 int splhi(void); 266 int splzs(void); 267 int spl0(void); 268 int spl6(void); 269 int spl7(void); 270 int spl8(void); 271 void splx(int); 272 void set_base_spl(void); 273 int __ipltospl(int); 274 275 void softcall_init(void); 276 void softcall(void (*)(void *), void *); 277 void softint(void); 278 279 extern void sync_icache(caddr_t, uint_t); 280 extern void sync_data_memory(caddr_t, size_t); 281 extern void hot_patch_kernel_text(caddr_t, uint32_t, uint_t); 282 283 void _insque(caddr_t, caddr_t); 284 void _remque(caddr_t); 285 286 /* casts to keep lint happy */ 287 #define insque(q, p) _insque((caddr_t)q, (caddr_t)p) 288 #define remque(q) _remque((caddr_t)q) 289 290 #pragma unknown_control_flow(on_fault) 291 292 struct timeval; 293 extern void uniqtime(struct timeval *); 294 struct timeval32; 295 extern void uniqtime32(struct timeval32 *); 296 297 uint_t page_num_pagesizes(void); 298 size_t page_get_pagesize(uint_t n); 299 300 extern int maxusers; 301 extern int pidmax; 302 303 extern void param_preset(void); 304 extern void param_calc(int); 305 extern void param_init(void); 306 extern void param_check(void); 307 308 #endif /* _KERNEL */ 309 310 /* 311 * Structure of the system-entry table. 312 * 313 * Changes to struct sysent should maintain binary compatibility with 314 * loadable system calls, although the interface is currently private. 315 * 316 * This means it should only be expanded on the end, and flag values 317 * should not be reused. 318 * 319 * It is desirable to keep the size of this struct a power of 2 for quick 320 * indexing. 321 */ 322 struct sysent { 323 char sy_narg; /* total number of arguments */ 324 #ifdef _LP64 325 unsigned short sy_flags; /* various flags as defined below */ 326 #else 327 unsigned char sy_flags; /* various flags as defined below */ 328 #endif 329 int (*sy_call)(); /* argp, rvalp-style handler */ 330 krwlock_t *sy_lock; /* lock for loadable system calls */ 331 int64_t (*sy_callc)(); /* C-style call hander or wrapper */ 332 }; 333 334 extern struct sysent sysent[]; 335 #ifdef _SYSCALL32_IMPL 336 extern struct sysent sysent32[]; 337 #endif 338 339 extern struct sysent nosys_ent; /* entry for invalid system call */ 340 341 #define NSYSCALL 256 /* number of system calls */ 342 343 #define LOADABLE_SYSCALL(s) (s->sy_flags & SE_LOADABLE) 344 #define LOADED_SYSCALL(s) (s->sy_flags & SE_LOADED) 345 346 /* 347 * sy_flags values 348 * Values 1, 2, and 4 were used previously for SETJUMP, ASYNC, and IOSYS. 349 */ 350 #define SE_32RVAL1 0x0 /* handler returns int32_t in rval1 */ 351 #define SE_32RVAL2 0x1 /* handler returns int32_t in rval2 */ 352 #define SE_64RVAL 0x2 /* handler returns int64_t in rvals */ 353 #define SE_RVAL_MASK 0x3 /* mask of rval_t bits */ 354 355 #define SE_LOADABLE 0x08 /* syscall is loadable */ 356 #define SE_LOADED 0x10 /* syscall is completely loaded */ 357 #define SE_NOUNLOAD 0x20 /* syscall never needs unload */ 358 #define SE_ARGC 0x40 /* syscall takes C-style args */ 359 360 /* 361 * Structure of the return-value parameter passed by reference to 362 * system entries. 363 */ 364 union rval { 365 struct { 366 int r_v1; 367 int r_v2; 368 } r_v; 369 off_t r_off; 370 offset_t r_offset; 371 time_t r_time; 372 int64_t r_vals; 373 }; 374 #define r_val1 r_v.r_v1 375 #define r_val2 r_v.r_v2 376 377 typedef union rval rval_t; 378 379 #ifdef _KERNEL 380 381 extern void reset_syscall_args(void); 382 extern int save_syscall_args(void); 383 extern uint_t get_syscall_args(klwp_t *lwp, long *argp, int *nargsp); 384 #ifdef _SYSCALL32_IMPL 385 extern uint_t get_syscall32_args(klwp_t *lwp, int *argp, int *nargp); 386 #endif 387 388 extern uint_t set_errno(uint_t error); 389 #pragma rarely_called(set_errno) 390 391 extern int64_t syscall_ap(void); 392 extern int64_t loadable_syscall(long, long, long, long, long, long, long, long); 393 extern int64_t nosys(void); 394 395 extern void swtch(void); 396 397 extern uint_t kcpc_key; /* TSD key for performance counter context */ 398 399 /* 400 * initname holds the path to init and is used as a point of rendezvous 401 * between krtld (which processes the boot arguments) and the kernel. 402 */ 403 #define INITNAME_SZ 32 404 extern char initname[INITNAME_SZ]; 405 406 /* 407 * initargs holds the arguments to init (such as -v, -s, -r, -m verbose) and 408 * is a point of rendezvous between krtld (which processes the boot arguments) 409 * and the kernel. 410 */ 411 extern char initargs[BOOTARGS_MAX]; 412 413 extern int exec_init(const char *, const char *); 414 extern int start_init_common(void); 415 416 #endif /* _KERNEL */ 417 418 #if defined(_KERNEL) || defined(_BOOT) 419 420 size_t strlcat(char *, const char *, size_t); 421 size_t strlen(const char *) __PURE; 422 char *strcat(char *, const char *); 423 char *strncat(char *, const char *, size_t); 424 char *strcpy(char *, const char *); 425 char *strncpy(char *, const char *, size_t); 426 /* Need to be consistent with <string.h> C++ definitions */ 427 #if __cplusplus >= 199711L 428 extern const char *strchr(const char *, int); 429 #ifndef _STRCHR_INLINE 430 #define _STRCHR_INLINE 431 extern "C++" { 432 inline char *strchr(char *__s, int __c) { 433 return (char *)strchr((const char *)__s, __c); 434 } 435 } 436 #endif /* _STRCHR_INLINE */ 437 extern const char *strrchr(const char *, int); 438 #ifndef _STRRCHR_INLINE 439 #define _STRRCHR_INLINE 440 extern "C++" { 441 inline char *strrchr(char *__s, int __c) { 442 return (char *)strrchr((const char *)__s, __c); 443 } 444 } 445 #endif /* _STRRCHR_INLINE */ 446 extern const char *strstr(const char *, const char *); 447 #ifndef _STRSTR_INLINE 448 #define _STRSTR_INLINE 449 extern "C++" { 450 inline char *strstr(char *__s1, const char *__s2) { 451 return (char *)strstr((const char *)__s1, __s2); 452 } 453 } 454 #endif /* _STRSTR_INLINE */ 455 #else /* __cplusplus >= 199711L */ 456 char *strchr(const char *, int); 457 char *strrchr(const char *, int); 458 char *strstr(const char *, const char *); 459 #endif /* __cplusplus >= 199711L */ 460 char *strnrchr(const char *, int, size_t); 461 int strcmp(const char *, const char *) __PURE; 462 int strncmp(const char *, const char *, size_t) __PURE; 463 int strcasecmp(const char *, const char *) __PURE; 464 int strncasecmp(const char *, const char *, size_t) __PURE; 465 /* Need to be consistent with <string.h> C++ definitions */ 466 #if __cplusplus >= 199711L 467 extern const char *strpbrk(const char *, const char *); 468 #ifndef _STRPBRK_INLINE 469 #define _STRPBRK_INLINE 470 extern "C++" { 471 inline char *strpbrk(char *__s1, const char *__s2) { 472 return (char *)strpbrk((const char *)__s1, __s2); 473 } 474 } 475 #endif /* _STRPBRK_INLINE */ 476 #else /* __cplusplus >= 199711L */ 477 char *strpbrk(const char *, const char *); 478 #endif /* __cplusplus >= 199711L */ 479 void bcopy(const void *, void *, size_t); 480 void bzero(void *, size_t); 481 482 extern void *memset(void *, int, size_t); 483 extern void *memcpy(void *, const void *, size_t); 484 extern void *memmove(void *, const void *, size_t); 485 extern int memcmp(const void *, const void *, size_t); 486 487 #ifdef __lint 488 extern int __lintzero; /* for spoofing lint */ 489 #else /* __lint */ 490 #define __lintzero 0 491 #endif /* __lint */ 492 #endif /* _KERNEL || _BOOT */ 493 494 #ifdef __cplusplus 495 } 496 #endif 497 498 #endif /* _SYS_SYSTM_H */ 499