2 * Copyright (c) 2000-2012 Apple Inc. All rights reserved.
4 * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
6 * This file contains Original Code and/or Modifications of Original Code
7 * as defined in and that are subject to the Apple Public Source License
8 * Version 2.0 (the 'License'). You may not use this file except in
9 * compliance with the License. The rights granted to you under the License
10 * may not be used to create, or enable the creation or redistribution of,
11 * unlawful or unlicensed copies of an Apple operating system, or to
12 * circumvent, violate, or enable the circumvention or violation of, any
13 * terms of an Apple operating system software license agreement.
15 * Please obtain a copy of the License at
16 * http://www.opensource.apple.com/apsl/ and read it before using this file.
18 * The Original Code and all software distributed under the License are
19 * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
20 * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21 * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
23 * Please see the License for the specific language governing rights and
24 * limitations under the License.
26 * @APPLE_OSREFERENCE_LICENSE_HEADER_END@
32 * Mach Operating System
33 * Copyright (c) 1991,1990 Carnegie Mellon University
34 * All Rights Reserved.
36 * Permission to use, copy, modify and distribute this software and its
37 * documentation is hereby granted, provided that both the copyright
38 * notice and this permission notice appear in all copies of the
39 * software, derivative works or modified versions, and any portions
40 * thereof, and that both notices appear in supporting documentation.
42 * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS"
43 * CONDITION. CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND FOR
44 * ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
46 * Carnegie Mellon requests users of this software to return to
48 * Software Distribution Coordinator or Software.Distribution@CS.CMU.EDU
49 * School of Computer Science
50 * Carnegie Mellon University
51 * Pittsburgh PA 15213-3890
53 * any improvements or extensions that they make and grant Carnegie Mellon
54 * the rights to redistribute these changes.
57 #include <mach_ldebug.h>
60 * Pass field offsets to assembly code.
63 #include <kern/thread.h>
64 #include <kern/task.h>
65 #include <kern/locks.h>
66 #include <kern/host.h>
67 #include <kern/misc_protos.h>
68 #include <ipc/ipc_space.h>
69 #include <ipc/ipc_port.h>
70 #include <ipc/ipc_pset.h>
71 #include <vm/vm_map.h>
72 #include <i386/pmap.h>
73 #include <i386/Diagnostics.h>
74 #include <i386/mp_desc.h>
76 #include <i386/thread.h>
77 #include <i386/cpu_data.h>
79 #include <i386/cpu_capabilities.h>
80 #include <i386/cpuid.h>
81 #include <i386/pmCPU.h>
82 #include <mach/i386/vm_param.h>
83 #include <mach/i386/thread_status.h>
84 #include <machine/commpage.h>
85 #include <pexpert/i386/boot.h>
91 #define NEED_DTRACE_DEFS
92 #include <../bsd/sys/lockstat.h>
96 * genassym.c is used to produce an
97 * assembly file which, intermingled with unuseful assembly code,
98 * has all the necessary definitions emitted. This assembly file is
99 * then postprocessed with sed to extract only these definitions
100 * and thus the final assyms.s is created.
102 * This convoluted means is necessary since the structure alignment
103 * and packing may be different between the host machine and the
104 * target so we are forced into using the cross compiler to generate
105 * the values, but we cannot run anything on the target machine.
108 #define DECLARE(SYM,VAL) \
109 __asm("DEFINITION__define__" SYM ":\t .ascii \"%0\"" : : "n" ((u_int)(VAL)))
121 DECLARE("AST_URGENT", AST_URGENT
);
122 DECLARE("AST_BSD", AST_BSD
);
124 DECLARE("MAX_CPUS", MAX_CPUS
);
126 /* Simple Lock structure */
127 DECLARE("SLOCK_ILK", offsetof(usimple_lock_data_t
, interlock
));
129 DECLARE("SLOCK_TYPE", offsetof(usimple_lock_data_t
, lock_type
));
130 DECLARE("SLOCK_PC", offsetof(usimple_lock_data_t
, debug
.lock_pc
));
131 DECLARE("SLOCK_THREAD", offsetof(usimple_lock_data_t
, debug
.lock_thread
));
132 DECLARE("SLOCK_DURATIONH",offsetof(usimple_lock_data_t
, debug
.duration
[0]));
133 DECLARE("SLOCK_DURATIONL",offsetof(usimple_lock_data_t
, debug
.duration
[1]));
134 DECLARE("USLOCK_TAG", USLOCK_TAG
);
135 #endif /* MACH_LDEBUG */
137 /* Mutex structure */
138 DECLARE("MUTEX_OWNER", offsetof(lck_mtx_t
, lck_mtx_owner
));
139 DECLARE("MUTEX_PTR", offsetof(lck_mtx_t
, lck_mtx_ptr
));
140 DECLARE("MUTEX_STATE", offsetof(lck_mtx_t
, lck_mtx_state
));
141 DECLARE("MUTEX_IND", LCK_MTX_TAG_INDIRECT
);
142 DECLARE("MUTEX_ASSERT_OWNED", LCK_MTX_ASSERT_OWNED
);
143 DECLARE("MUTEX_ASSERT_NOTOWNED",LCK_MTX_ASSERT_NOTOWNED
);
144 DECLARE("GRP_MTX_STAT_UTIL", offsetof(lck_grp_t
, lck_grp_stat
.lck_grp_mtx_stat
.lck_grp_mtx_util_cnt
));
145 DECLARE("GRP_MTX_STAT_MISS", offsetof(lck_grp_t
, lck_grp_stat
.lck_grp_mtx_stat
.lck_grp_mtx_miss_cnt
));
146 DECLARE("GRP_MTX_STAT_WAIT", offsetof(lck_grp_t
, lck_grp_stat
.lck_grp_mtx_stat
.lck_grp_mtx_wait_cnt
));
149 DECLARE("MUTEX_DESTROYED", LCK_MTX_TAG_DESTROYED
);
151 /* Per-mutex statistic element */
152 DECLARE("MTX_ACQ_TSC", offsetof(lck_mtx_ext_t
, lck_mtx_stat
));
154 /* Mutex group statistics elements */
155 DECLARE("MUTEX_GRP", offsetof(lck_mtx_ext_t
, lck_mtx_grp
));
158 * The use of this field is somewhat at variance with the alias.
160 DECLARE("GRP_MTX_STAT_DIRECT_WAIT", offsetof(lck_grp_t
, lck_grp_stat
.lck_grp_mtx_stat
.lck_grp_mtx_held_cnt
));
162 DECLARE("GRP_MTX_STAT_HELD_MAX", offsetof(lck_grp_t
, lck_grp_stat
.lck_grp_mtx_stat
.lck_grp_mtx_held_max
));
163 /* Reader writer lock types */
164 DECLARE("RW_SHARED", LCK_RW_TYPE_SHARED
);
165 DECLARE("RW_EXCL", LCK_RW_TYPE_EXCLUSIVE
);
167 DECLARE("TH_RECOVER", offsetof(struct thread
, recover
));
168 DECLARE("TH_CONTINUATION", offsetof(struct thread
, continuation
));
169 DECLARE("TH_KERNEL_STACK", offsetof(struct thread
, kernel_stack
));
170 DECLARE("TH_MUTEX_COUNT", offsetof(struct thread
, mutex_count
));
171 DECLARE("TH_WAS_PROMOTED_ON_WAKEUP", offsetof(struct thread
, was_promoted_on_wakeup
));
172 DECLARE("TH_IOTIER_OVERRIDE", offsetof(struct thread
, iotier_override
));
174 DECLARE("TH_SYSCALLS_MACH", offsetof(struct thread
, syscalls_mach
));
175 DECLARE("TH_SYSCALLS_UNIX", offsetof(struct thread
, syscalls_unix
));
177 DECLARE("TASK_VTIMERS", offsetof(struct task
, vtimers
));
179 /* These fields are being added on demand */
180 DECLARE("TH_TASK", offsetof(struct thread
, task
));
181 DECLARE("TH_AST", offsetof(struct thread
, ast
));
182 DECLARE("TH_MAP", offsetof(struct thread
, map
));
183 DECLARE("TH_SPF", offsetof(struct thread
, machine
.specFlags
));
184 DECLARE("TH_PCB_ISS", offsetof(struct thread
, machine
.iss
));
185 DECLARE("TH_PCB_IDS", offsetof(struct thread
, machine
.ids
));
186 DECLARE("TH_PCB_FPS", offsetof(struct thread
, machine
.ifps
));
187 #if NCOPY_WINDOWS > 0
188 DECLARE("TH_COPYIO_STATE", offsetof(struct thread
, machine
.copyio_state
));
189 DECLARE("WINDOWS_CLEAN", WINDOWS_CLEAN
);
191 DECLARE("TH_RWLOCK_COUNT", offsetof(struct thread
, rwlock_count
));
193 DECLARE("MAP_PMAP", offsetof(struct _vm_map
, pmap
));
195 #define IEL_SIZE (sizeof(struct i386_exception_link *))
196 DECLARE("IKS_SIZE", sizeof(struct x86_kernel_state
));
199 * KSS_* are offsets from the top of the kernel stack (cpu_kernel_stack)
201 DECLARE("KSS_RBX", offsetof(struct x86_kernel_state
, k_rbx
));
202 DECLARE("KSS_RSP", offsetof(struct x86_kernel_state
, k_rsp
));
203 DECLARE("KSS_RBP", offsetof(struct x86_kernel_state
, k_rbp
));
204 DECLARE("KSS_R12", offsetof(struct x86_kernel_state
, k_r12
));
205 DECLARE("KSS_R13", offsetof(struct x86_kernel_state
, k_r13
));
206 DECLARE("KSS_R14", offsetof(struct x86_kernel_state
, k_r14
));
207 DECLARE("KSS_R15", offsetof(struct x86_kernel_state
, k_r15
));
208 DECLARE("KSS_RIP", offsetof(struct x86_kernel_state
, k_rip
));
210 DECLARE("DS_DR0", offsetof(struct x86_debug_state32
, dr0
));
211 DECLARE("DS_DR1", offsetof(struct x86_debug_state32
, dr1
));
212 DECLARE("DS_DR2", offsetof(struct x86_debug_state32
, dr2
));
213 DECLARE("DS_DR3", offsetof(struct x86_debug_state32
, dr3
));
214 DECLARE("DS_DR4", offsetof(struct x86_debug_state32
, dr4
));
215 DECLARE("DS_DR5", offsetof(struct x86_debug_state32
, dr5
));
216 DECLARE("DS_DR6", offsetof(struct x86_debug_state32
, dr6
));
217 DECLARE("DS_DR7", offsetof(struct x86_debug_state32
, dr7
));
219 DECLARE("DS64_DR0", offsetof(struct x86_debug_state64
, dr0
));
220 DECLARE("DS64_DR1", offsetof(struct x86_debug_state64
, dr1
));
221 DECLARE("DS64_DR2", offsetof(struct x86_debug_state64
, dr2
));
222 DECLARE("DS64_DR3", offsetof(struct x86_debug_state64
, dr3
));
223 DECLARE("DS64_DR4", offsetof(struct x86_debug_state64
, dr4
));
224 DECLARE("DS64_DR5", offsetof(struct x86_debug_state64
, dr5
));
225 DECLARE("DS64_DR6", offsetof(struct x86_debug_state64
, dr6
));
226 DECLARE("DS64_DR7", offsetof(struct x86_debug_state64
, dr7
));
228 DECLARE("FP_VALID", offsetof(struct x86_fx_thread_state
,fp_valid
));
230 DECLARE("SS_FLAVOR", offsetof(x86_saved_state_t
, flavor
));
231 DECLARE("SS_32", x86_SAVED_STATE32
);
232 DECLARE("SS_64", x86_SAVED_STATE64
);
234 #define R_(x) offsetof(x86_saved_state_t, ss_32.x)
235 DECLARE("R32_CS", R_(cs
));
236 DECLARE("R32_SS", R_(ss
));
237 DECLARE("R32_DS", R_(ds
));
238 DECLARE("R32_ES", R_(es
));
239 DECLARE("R32_FS", R_(fs
));
240 DECLARE("R32_GS", R_(gs
));
241 DECLARE("R32_UESP", R_(uesp
));
242 DECLARE("R32_EBP", R_(ebp
));
243 DECLARE("R32_EAX", R_(eax
));
244 DECLARE("R32_EBX", R_(ebx
));
245 DECLARE("R32_ECX", R_(ecx
));
246 DECLARE("R32_EDX", R_(edx
));
247 DECLARE("R32_ESI", R_(esi
));
248 DECLARE("R32_EDI", R_(edi
));
249 DECLARE("R32_TRAPNO", R_(trapno
));
250 DECLARE("R32_ERR", R_(err
));
251 DECLARE("R32_EFLAGS", R_(efl
));
252 DECLARE("R32_EIP", R_(eip
));
253 DECLARE("R32_CR2", R_(cr2
));
254 DECLARE("ISS32_SIZE", sizeof (x86_saved_state32_t
));
256 #define R64_(x) offsetof(x86_saved_state_t, ss_64.x)
257 DECLARE("R64_FS", R64_(fs
));
258 DECLARE("R64_GS", R64_(gs
));
259 DECLARE("R64_R8", R64_(r8
));
260 DECLARE("R64_R9", R64_(r9
));
261 DECLARE("R64_R10", R64_(r10
));
262 DECLARE("R64_R11", R64_(r11
));
263 DECLARE("R64_R12", R64_(r12
));
264 DECLARE("R64_R13", R64_(r13
));
265 DECLARE("R64_R14", R64_(r14
));
266 DECLARE("R64_R15", R64_(r15
));
267 DECLARE("R64_RBP", R64_(rbp
));
268 DECLARE("R64_RAX", R64_(rax
));
269 DECLARE("R64_RBX", R64_(rbx
));
270 DECLARE("R64_RCX", R64_(rcx
));
271 DECLARE("R64_RDX", R64_(rdx
));
272 DECLARE("R64_RSI", R64_(rsi
));
273 DECLARE("R64_RDI", R64_(rdi
));
274 DECLARE("R64_CS", R64_(isf
.cs
));
275 DECLARE("R64_SS", R64_(isf
.ss
));
276 DECLARE("R64_RSP", R64_(isf
.rsp
));
277 DECLARE("R64_TRAPNO", R64_(isf
.trapno
));
278 DECLARE("R64_TRAPFN", R64_(isf
.trapfn
));
279 DECLARE("R64_ERR", R64_(isf
.err
));
280 DECLARE("R64_RFLAGS", R64_(isf
.rflags
));
281 DECLARE("R64_RIP", R64_(isf
.rip
));
282 DECLARE("R64_CR2", R64_(cr2
));
283 DECLARE("ISS64_OFFSET", R64_(isf
));
284 DECLARE("ISS64_SIZE", sizeof (x86_saved_state64_t
));
286 #define ISF64_(x) offsetof(x86_64_intr_stack_frame_t, x)
287 DECLARE("ISF64_TRAPNO", ISF64_(trapno
));
288 DECLARE("ISF64_TRAPFN", ISF64_(trapfn
));
289 DECLARE("ISF64_ERR", ISF64_(err
));
290 DECLARE("ISF64_RIP", ISF64_(rip
));
291 DECLARE("ISF64_CS", ISF64_(cs
));
292 DECLARE("ISF64_RFLAGS", ISF64_(rflags
));
293 DECLARE("ISF64_RSP", ISF64_(rsp
));
294 DECLARE("ISF64_SS", ISF64_(ss
));
295 DECLARE("ISF64_SIZE", sizeof(x86_64_intr_stack_frame_t
));
297 DECLARE("NBPG", I386_PGBYTES
);
298 DECLARE("PAGE_SIZE", I386_PGBYTES
);
299 DECLARE("PAGE_MASK", I386_PGBYTES
-1);
300 DECLARE("PAGE_SHIFT", 12);
301 DECLARE("NKPT", NKPT
);
302 DECLARE("VM_MIN_ADDRESS", VM_MIN_ADDRESS
);
303 DECLARE("VM_MAX_ADDRESS", VM_MAX_ADDRESS
);
304 DECLARE("KERNELBASE", VM_MIN_KERNEL_ADDRESS
);
305 DECLARE("LINEAR_KERNELBASE", LINEAR_KERNEL_ADDRESS
);
306 DECLARE("KERNEL_STACK_SIZE", KERNEL_STACK_SIZE
);
308 DECLARE("ASM_COMM_PAGE32_BASE_ADDRESS", _COMM_PAGE32_BASE_ADDRESS
);
309 DECLARE("ASM_COMM_PAGE32_START_ADDRESS", _COMM_PAGE32_START_ADDRESS
);
310 DECLARE("ASM_COMM_PAGE_SCHED_GEN", _COMM_PAGE_SCHED_GEN
);
312 DECLARE("KERNEL_PML4_INDEX", KERNEL_PML4_INDEX
);
313 DECLARE("IDTSZ", IDTSZ
);
314 DECLARE("GDTSZ", GDTSZ
);
315 DECLARE("LDTSZ", LDTSZ
);
317 DECLARE("KERNEL_DS", KERNEL_DS
);
318 DECLARE("USER_CS", USER_CS
);
319 DECLARE("USER_DS", USER_DS
);
320 DECLARE("KERNEL32_CS", KERNEL32_CS
);
321 DECLARE("KERNEL64_CS", KERNEL64_CS
);
322 DECLARE("USER64_CS", USER64_CS
);
323 DECLARE("KERNEL_TSS", KERNEL_TSS
);
324 DECLARE("KERNEL_LDT", KERNEL_LDT
);
325 DECLARE("SYSENTER_CS", SYSENTER_CS
);
326 DECLARE("SYSENTER_TF_CS",SYSENTER_TF_CS
);
327 DECLARE("SYSENTER_DS", SYSENTER_DS
);
328 DECLARE("SYSCALL_CS", SYSCALL_CS
);
331 offsetof(cpu_data_t
, cpu_this
));
332 DECLARE("CPU_ACTIVE_THREAD",
333 offsetof(cpu_data_t
, cpu_active_thread
));
334 DECLARE("CPU_ACTIVE_STACK",
335 offsetof(cpu_data_t
, cpu_active_stack
));
336 DECLARE("CPU_KERNEL_STACK",
337 offsetof(cpu_data_t
, cpu_kernel_stack
));
338 DECLARE("CPU_INT_STACK_TOP",
339 offsetof(cpu_data_t
, cpu_int_stack_top
));
341 DECLARE("CPU_PREEMPTION_LEVEL",
342 offsetof(cpu_data_t
, cpu_preemption_level
));
344 DECLARE("CPU_HIBERNATE",
345 offsetof(cpu_data_t
, cpu_hibernate
));
346 DECLARE("CPU_INTERRUPT_LEVEL",
347 offsetof(cpu_data_t
, cpu_interrupt_level
));
348 DECLARE("CPU_NESTED_ISTACK",
349 offsetof(cpu_data_t
, cpu_nested_istack
));
350 DECLARE("CPU_NUMBER_GS",
351 offsetof(cpu_data_t
,cpu_number
));
352 DECLARE("CPU_RUNNING",
353 offsetof(cpu_data_t
,cpu_running
));
354 DECLARE("CPU_PENDING_AST",
355 offsetof(cpu_data_t
,cpu_pending_ast
));
356 DECLARE("CPU_DESC_TABLEP",
357 offsetof(cpu_data_t
,cpu_desc_tablep
));
358 DECLARE("CPU_DESC_INDEX",
359 offsetof(cpu_data_t
,cpu_desc_index
));
361 offsetof(cpu_desc_index_t
,cdi_gdt
));
363 offsetof(cpu_desc_index_t
,cdi_idt
));
364 DECLARE("CPU_PROCESSOR",
365 offsetof(cpu_data_t
,cpu_processor
));
366 DECLARE("CPU_INT_STATE",
367 offsetof(cpu_data_t
, cpu_int_state
));
368 DECLARE("CPU_INT_EVENT_TIME",
369 offsetof(cpu_data_t
, cpu_int_event_time
));
371 DECLARE("CPU_TASK_CR3",
372 offsetof(cpu_data_t
, cpu_task_cr3
));
373 DECLARE("CPU_ACTIVE_CR3",
374 offsetof(cpu_data_t
, cpu_active_cr3
));
375 DECLARE("CPU_KERNEL_CR3",
376 offsetof(cpu_data_t
, cpu_kernel_cr3
));
377 DECLARE("CPU_TLB_INVALID",
378 offsetof(cpu_data_t
, cpu_tlb_invalid
));
380 DECLARE("CPU_TASK_MAP",
381 offsetof(cpu_data_t
, cpu_task_map
));
382 DECLARE("TASK_MAP_32BIT", TASK_MAP_32BIT
);
383 DECLARE("TASK_MAP_64BIT", TASK_MAP_64BIT
);
384 DECLARE("CPU_UBER_USER_GS_BASE",
385 offsetof(cpu_data_t
, cpu_uber
.cu_user_gs_base
));
386 DECLARE("CPU_UBER_ISF",
387 offsetof(cpu_data_t
, cpu_uber
.cu_isf
));
388 DECLARE("CPU_UBER_TMP",
389 offsetof(cpu_data_t
, cpu_uber
.cu_tmp
));
391 DECLARE("CPU_NANOTIME",
392 offsetof(cpu_data_t
, cpu_nanotime
));
395 offsetof(cpu_data_t
, cpu_dr7
));
397 DECLARE("hwIntCnt", offsetof(cpu_data_t
,cpu_hwIntCnt
));
398 DECLARE("CPU_ACTIVE_PCID",
399 offsetof(cpu_data_t
, cpu_active_pcid
));
400 DECLARE("CPU_PCID_COHERENTP",
401 offsetof(cpu_data_t
, cpu_pmap_pcid_coherentp
));
402 DECLARE("CPU_PCID_COHERENTP_KERNEL",
403 offsetof(cpu_data_t
, cpu_pmap_pcid_coherentp_kernel
));
404 DECLARE("CPU_PMAP_PCID_ENABLED",
405 offsetof(cpu_data_t
, cpu_pmap_pcid_enabled
));
408 DECLARE("CPU_PMAP_USER_RETS",
409 offsetof(cpu_data_t
, cpu_pmap_user_rets
));
410 DECLARE("CPU_PMAP_PCID_PRESERVES",
411 offsetof(cpu_data_t
, cpu_pmap_pcid_preserves
));
412 DECLARE("CPU_PMAP_PCID_FLUSHES",
413 offsetof(cpu_data_t
, cpu_pmap_pcid_flushes
));
415 DECLARE("CPU_TLB_INVALID_LOCAL",
416 offsetof(cpu_data_t
, cpu_tlb_invalid_local
));
417 DECLARE("CPU_TLB_INVALID_GLOBAL",
418 offsetof(cpu_data_t
, cpu_tlb_invalid_global
));
419 DECLARE("enaExpTrace", enaExpTrace
);
420 DECLARE("enaUsrFCall", enaUsrFCall
);
421 DECLARE("enaUsrPhyMp", enaUsrPhyMp
);
422 DECLARE("enaDiagSCs", enaDiagSCs
);
423 DECLARE("enaDiagEM", enaDiagEM
);
424 DECLARE("enaNotifyEM", enaNotifyEM
);
425 DECLARE("dgLock", offsetof(struct diagWork
, dgLock
));
426 DECLARE("dgFlags", offsetof(struct diagWork
, dgFlags
));
427 DECLARE("dgMisc1", offsetof(struct diagWork
, dgMisc1
));
428 DECLARE("dgMisc2", offsetof(struct diagWork
, dgMisc2
));
429 DECLARE("dgMisc3", offsetof(struct diagWork
, dgMisc3
));
430 DECLARE("dgMisc4", offsetof(struct diagWork
, dgMisc4
));
431 DECLARE("dgMisc5", offsetof(struct diagWork
, dgMisc5
));
433 DECLARE("TSS_ESP0", offsetof(struct i386_tss
, esp0
));
434 DECLARE("TSS_SS0", offsetof(struct i386_tss
, ss0
));
435 DECLARE("TSS_LDT", offsetof(struct i386_tss
, ldt
));
436 DECLARE("TSS_PDBR", offsetof(struct i386_tss
, cr3
));
437 DECLARE("TSS_LINK", offsetof(struct i386_tss
, back_link
));
439 DECLARE("K_TASK_GATE", ACC_P
|ACC_PL_K
|ACC_TASK_GATE
);
440 DECLARE("K_TRAP_GATE", ACC_P
|ACC_PL_K
|ACC_TRAP_GATE
);
441 DECLARE("U_TRAP_GATE", ACC_P
|ACC_PL_U
|ACC_TRAP_GATE
);
442 DECLARE("K_INTR_GATE", ACC_P
|ACC_PL_K
|ACC_INTR_GATE
);
443 DECLARE("U_INTR_GATE", ACC_P
|ACC_PL_U
|ACC_INTR_GATE
);
444 DECLARE("K_TSS", ACC_P
|ACC_PL_K
|ACC_TSS
);
447 * usimple_lock fields
449 DECLARE("USL_INTERLOCK", offsetof(usimple_lock_data_t
, interlock
));
451 DECLARE("INTSTACK_SIZE", INTSTACK_SIZE
);
452 DECLARE("KADDR", offsetof(struct boot_args
, kaddr
));
453 DECLARE("KSIZE", offsetof(struct boot_args
, ksize
));
454 DECLARE("MEMORYMAP", offsetof(struct boot_args
, MemoryMap
));
455 DECLARE("DEVICETREEP", offsetof(struct boot_args
, deviceTreeP
));
457 DECLARE("RNT_TSC_BASE",
458 offsetof(pal_rtc_nanotime_t
, tsc_base
));
459 DECLARE("RNT_NS_BASE",
460 offsetof(pal_rtc_nanotime_t
, ns_base
));
462 offsetof(pal_rtc_nanotime_t
, scale
));
464 offsetof(pal_rtc_nanotime_t
, shift
));
465 DECLARE("RNT_GENERATION",
466 offsetof(pal_rtc_nanotime_t
, generation
));
468 /* values from kern/timer.h */
470 DECLARE("TIMER_ALL", offsetof(struct timer
, all_bits
));
472 DECLARE("TIMER_LOW", offsetof(struct timer
, low_bits
));
473 DECLARE("TIMER_HIGH", offsetof(struct timer
, high_bits
));
474 DECLARE("TIMER_HIGHCHK", offsetof(struct timer
, high_bits_check
));
476 DECLARE("TIMER_TSTAMP",
477 offsetof(struct timer
, tstamp
));
479 DECLARE("THREAD_TIMER",
480 offsetof(struct processor
, processor_data
.thread_timer
));
481 DECLARE("KERNEL_TIMER",
482 offsetof(struct processor
, processor_data
.kernel_timer
));
483 DECLARE("SYSTEM_TIMER",
484 offsetof(struct thread
, system_timer
));
485 DECLARE("USER_TIMER",
486 offsetof(struct thread
, user_timer
));
487 DECLARE("SYSTEM_STATE",
488 offsetof(struct processor
, processor_data
.system_state
));
489 DECLARE("USER_STATE",
490 offsetof(struct processor
, processor_data
.user_state
));
491 DECLARE("IDLE_STATE",
492 offsetof(struct processor
, processor_data
.idle_state
));
493 DECLARE("CURRENT_STATE",
494 offsetof(struct processor
, processor_data
.current_state
));
496 DECLARE("OnProc", OnProc
);
500 DECLARE("LS_LCK_MTX_LOCK_ACQUIRE", LS_LCK_MTX_LOCK_ACQUIRE
);
501 DECLARE("LS_LCK_MTX_TRY_SPIN_LOCK_ACQUIRE", LS_LCK_MTX_TRY_SPIN_LOCK_ACQUIRE
);
502 DECLARE("LS_LCK_MTX_UNLOCK_RELEASE", LS_LCK_MTX_UNLOCK_RELEASE
);
503 DECLARE("LS_LCK_MTX_TRY_LOCK_ACQUIRE", LS_LCK_MTX_TRY_LOCK_ACQUIRE
);
504 DECLARE("LS_LCK_RW_LOCK_SHARED_ACQUIRE", LS_LCK_RW_LOCK_SHARED_ACQUIRE
);
505 DECLARE("LS_LCK_RW_DONE_RELEASE", LS_LCK_RW_DONE_RELEASE
);
506 DECLARE("LS_LCK_MTX_EXT_LOCK_ACQUIRE", LS_LCK_MTX_EXT_LOCK_ACQUIRE
);
507 DECLARE("LS_LCK_MTX_TRY_EXT_LOCK_ACQUIRE", LS_LCK_MTX_TRY_EXT_LOCK_ACQUIRE
);
508 DECLARE("LS_LCK_MTX_EXT_UNLOCK_RELEASE", LS_LCK_MTX_EXT_UNLOCK_RELEASE
);
509 DECLARE("LS_LCK_RW_LOCK_EXCL_ACQUIRE", LS_LCK_RW_LOCK_EXCL_ACQUIRE
);
510 DECLARE("LS_LCK_RW_LOCK_SHARED_TO_EXCL_UPGRADE", LS_LCK_RW_LOCK_SHARED_TO_EXCL_UPGRADE
);
511 DECLARE("LS_LCK_RW_TRY_LOCK_EXCL_ACQUIRE", LS_LCK_RW_TRY_LOCK_EXCL_ACQUIRE
);
512 DECLARE("LS_LCK_RW_TRY_LOCK_SHARED_ACQUIRE", LS_LCK_RW_TRY_LOCK_SHARED_ACQUIRE
);
513 DECLARE("LS_LCK_MTX_LOCK_SPIN_ACQUIRE", LS_LCK_MTX_LOCK_SPIN_ACQUIRE
);