17c478bd9Sstevel@tonic-gate /*
27c478bd9Sstevel@tonic-gate * CDDL HEADER START
37c478bd9Sstevel@tonic-gate *
47c478bd9Sstevel@tonic-gate * The contents of this file are subject to the terms of the
5100b72f4Sandrei * Common Development and Distribution License (the "License").
6100b72f4Sandrei * You may not use this file except in compliance with the License.
77c478bd9Sstevel@tonic-gate *
87c478bd9Sstevel@tonic-gate * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
97c478bd9Sstevel@tonic-gate * or http://www.opensolaris.org/os/licensing.
107c478bd9Sstevel@tonic-gate * See the License for the specific language governing permissions
117c478bd9Sstevel@tonic-gate * and limitations under the License.
127c478bd9Sstevel@tonic-gate *
137c478bd9Sstevel@tonic-gate * When distributing Covered Code, include this CDDL HEADER in each
147c478bd9Sstevel@tonic-gate * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
157c478bd9Sstevel@tonic-gate * If applicable, add the following below this CDDL HEADER, with the
167c478bd9Sstevel@tonic-gate * fields enclosed by brackets "[]" replaced with your own identifying
177c478bd9Sstevel@tonic-gate * information: Portions Copyright [yyyy] [name of copyright owner]
187c478bd9Sstevel@tonic-gate *
197c478bd9Sstevel@tonic-gate * CDDL HEADER END
207c478bd9Sstevel@tonic-gate */
217c478bd9Sstevel@tonic-gate /*
220db3240dSStephen Hanson * Copyright (c) 1993, 2010, Oracle and/or its affiliates. All rights reserved.
239e3e4df2SGarrett D'Amore * Copyright 2012 DEY Storage Systems, Inc. All rights reserved.
2479ec9da8SYuri Pankov * Copyright 2013 Nexenta Systems, Inc. All rights reserved.
250181461bSKeith M Wesolowski * Copyright 2013 Joyent, Inc. All rights reserved.
267c478bd9Sstevel@tonic-gate */
27a3114836SGerry Liu /*
28a3114836SGerry Liu * Copyright (c) 2010, Intel Corporation.
29a3114836SGerry Liu * All rights reserved.
30a3114836SGerry Liu */
317c478bd9Sstevel@tonic-gate
327c478bd9Sstevel@tonic-gate #include <sys/types.h>
337c478bd9Sstevel@tonic-gate #include <sys/t_lock.h>
347c478bd9Sstevel@tonic-gate #include <sys/param.h>
357c478bd9Sstevel@tonic-gate #include <sys/sysmacros.h>
367c478bd9Sstevel@tonic-gate #include <sys/signal.h>
377c478bd9Sstevel@tonic-gate #include <sys/systm.h>
387c478bd9Sstevel@tonic-gate #include <sys/user.h>
397c478bd9Sstevel@tonic-gate #include <sys/mman.h>
407c478bd9Sstevel@tonic-gate #include <sys/vm.h>
417c478bd9Sstevel@tonic-gate #include <sys/conf.h>
427c478bd9Sstevel@tonic-gate #include <sys/avintr.h>
437c478bd9Sstevel@tonic-gate #include <sys/autoconf.h>
447c478bd9Sstevel@tonic-gate #include <sys/disp.h>
457c478bd9Sstevel@tonic-gate #include <sys/class.h>
467c478bd9Sstevel@tonic-gate #include <sys/bitmap.h>
477c478bd9Sstevel@tonic-gate
487c478bd9Sstevel@tonic-gate #include <sys/privregs.h>
497c478bd9Sstevel@tonic-gate
507c478bd9Sstevel@tonic-gate #include <sys/proc.h>
517c478bd9Sstevel@tonic-gate #include <sys/buf.h>
527c478bd9Sstevel@tonic-gate #include <sys/kmem.h>
53ae115bc7Smrj #include <sys/mem.h>
547c478bd9Sstevel@tonic-gate #include <sys/kstat.h>
557c478bd9Sstevel@tonic-gate
567c478bd9Sstevel@tonic-gate #include <sys/reboot.h>
577c478bd9Sstevel@tonic-gate
587c478bd9Sstevel@tonic-gate #include <sys/cred.h>
597c478bd9Sstevel@tonic-gate #include <sys/vnode.h>
607c478bd9Sstevel@tonic-gate #include <sys/file.h>
617c478bd9Sstevel@tonic-gate
627c478bd9Sstevel@tonic-gate #include <sys/procfs.h>
637c478bd9Sstevel@tonic-gate
647c478bd9Sstevel@tonic-gate #include <sys/vfs.h>
657c478bd9Sstevel@tonic-gate #include <sys/cmn_err.h>
667c478bd9Sstevel@tonic-gate #include <sys/utsname.h>
677c478bd9Sstevel@tonic-gate #include <sys/debug.h>
687c478bd9Sstevel@tonic-gate #include <sys/kdi.h>
697c478bd9Sstevel@tonic-gate
707c478bd9Sstevel@tonic-gate #include <sys/dumphdr.h>
717c478bd9Sstevel@tonic-gate #include <sys/bootconf.h>
72a3114836SGerry Liu #include <sys/memlist_plat.h>
737c478bd9Sstevel@tonic-gate #include <sys/varargs.h>
747c478bd9Sstevel@tonic-gate #include <sys/promif.h>
75843e1988Sjohnlev #include <sys/modctl.h>
767c478bd9Sstevel@tonic-gate
777c478bd9Sstevel@tonic-gate #include <sys/sunddi.h>
787c478bd9Sstevel@tonic-gate #include <sys/sunndi.h>
797c478bd9Sstevel@tonic-gate #include <sys/ndi_impldefs.h>
807c478bd9Sstevel@tonic-gate #include <sys/ddidmareq.h>
817c478bd9Sstevel@tonic-gate #include <sys/psw.h>
827c478bd9Sstevel@tonic-gate #include <sys/regset.h>
837c478bd9Sstevel@tonic-gate #include <sys/clock.h>
847c478bd9Sstevel@tonic-gate #include <sys/pte.h>
857c478bd9Sstevel@tonic-gate #include <sys/tss.h>
867c478bd9Sstevel@tonic-gate #include <sys/stack.h>
877c478bd9Sstevel@tonic-gate #include <sys/trap.h>
887c478bd9Sstevel@tonic-gate #include <sys/fp.h>
891d03c31eSjohnlev #include <vm/kboot_mmu.h>
907c478bd9Sstevel@tonic-gate #include <vm/anon.h>
917c478bd9Sstevel@tonic-gate #include <vm/as.h>
927c478bd9Sstevel@tonic-gate #include <vm/page.h>
937c478bd9Sstevel@tonic-gate #include <vm/seg.h>
947c478bd9Sstevel@tonic-gate #include <vm/seg_dev.h>
957c478bd9Sstevel@tonic-gate #include <vm/seg_kmem.h>
967c478bd9Sstevel@tonic-gate #include <vm/seg_kpm.h>
977c478bd9Sstevel@tonic-gate #include <vm/seg_map.h>
987c478bd9Sstevel@tonic-gate #include <vm/seg_vn.h>
997c478bd9Sstevel@tonic-gate #include <vm/seg_kp.h>
1007c478bd9Sstevel@tonic-gate #include <sys/memnode.h>
1017c478bd9Sstevel@tonic-gate #include <vm/vm_dep.h>
1027c478bd9Sstevel@tonic-gate #include <sys/thread.h>
1037c478bd9Sstevel@tonic-gate #include <sys/sysconf.h>
1047c478bd9Sstevel@tonic-gate #include <sys/vm_machparam.h>
1057c478bd9Sstevel@tonic-gate #include <sys/archsystm.h>
1067c478bd9Sstevel@tonic-gate #include <sys/machsystm.h>
1077c478bd9Sstevel@tonic-gate #include <vm/hat.h>
1087c478bd9Sstevel@tonic-gate #include <vm/hat_i86.h>
1097c478bd9Sstevel@tonic-gate #include <sys/pmem.h>
1107c478bd9Sstevel@tonic-gate #include <sys/smp_impldefs.h>
1117c478bd9Sstevel@tonic-gate #include <sys/x86_archext.h>
112a563a037Sbholler #include <sys/cpuvar.h>
1137c478bd9Sstevel@tonic-gate #include <sys/segments.h>
1147c478bd9Sstevel@tonic-gate #include <sys/clconf.h>
1157c478bd9Sstevel@tonic-gate #include <sys/kobj.h>
1167c478bd9Sstevel@tonic-gate #include <sys/kobj_lex.h>
1177c478bd9Sstevel@tonic-gate #include <sys/cpc_impl.h>
1187aec1d6eScindi #include <sys/cpu_module.h>
11984ab085aSmws #include <sys/smbios.h>
120ae115bc7Smrj #include <sys/debug_info.h>
1211d03c31eSjohnlev #include <sys/bootinfo.h>
122a288e5a9SJoshua M. Clulow #include <sys/ddi_periodic.h>
1235679c89fSjv227347 #include <sys/systeminfo.h>
12419397407SSherry Moore #include <sys/multiboot.h>
1250181461bSKeith M Wesolowski #include <sys/ramdisk.h>
126ae115bc7Smrj
127843e1988Sjohnlev #ifdef __xpv
1281d03c31eSjohnlev
129843e1988Sjohnlev #include <sys/hypervisor.h>
130843e1988Sjohnlev #include <sys/xen_mmu.h>
131843e1988Sjohnlev #include <sys/evtchn_impl.h>
132843e1988Sjohnlev #include <sys/gnttab.h>
133843e1988Sjohnlev #include <sys/xpv_panic.h>
134843e1988Sjohnlev #include <xen/sys/xenbus_comms.h>
135843e1988Sjohnlev #include <xen/public/physdev.h>
136ae115bc7Smrj
1371d03c31eSjohnlev extern void xen_late_startup(void);
1381d03c31eSjohnlev
1391d03c31eSjohnlev struct xen_evt_data cpu0_evt_data;
1401d03c31eSjohnlev
141a3114836SGerry Liu #else /* __xpv */
142a3114836SGerry Liu #include <sys/memlist_impl.h>
143a3114836SGerry Liu
144a3114836SGerry Liu extern void mem_config_init(void);
1451d03c31eSjohnlev #endif /* __xpv */
1467c478bd9Sstevel@tonic-gate
1477c478bd9Sstevel@tonic-gate extern void progressbar_init(void);
1489acbbeafSnn35248 extern void brand_init(void);
14906fb6a36Sdv142724 extern void pcf_init(void);
1500e751525SEric Saxe extern void pg_init(void);
1516a59053bSAlex Wilson extern void ssp_init(void);
1527c478bd9Sstevel@tonic-gate
153d7d93655Sblakej extern int size_pse_array(pgcnt_t, int);
154d7d93655Sblakej
155ed5289f9SKen Erickson #if defined(_SOFT_HOSTID)
156ed5289f9SKen Erickson
157ed5289f9SKen Erickson #include <sys/rtc.h>
158ed5289f9SKen Erickson
159ed5289f9SKen Erickson static int32_t set_soft_hostid(void);
160ed5289f9SKen Erickson static char hostid_file[] = "/etc/hostid";
161ed5289f9SKen Erickson
162ed5289f9SKen Erickson #endif
163ed5289f9SKen Erickson
16494f1124eSVikram Hegde void *gfx_devinfo_list;
165ed5289f9SKen Erickson
1663a634bfcSVikram Hegde #if defined(__amd64) && !defined(__xpv)
1673a634bfcSVikram Hegde extern void immu_startup(void);
1683a634bfcSVikram Hegde #endif
1693a634bfcSVikram Hegde
1707c478bd9Sstevel@tonic-gate /*
1717c478bd9Sstevel@tonic-gate * XXX make declaration below "static" when drivers no longer use this
1727c478bd9Sstevel@tonic-gate * interface.
1737c478bd9Sstevel@tonic-gate */
1747c478bd9Sstevel@tonic-gate extern caddr_t p0_va; /* Virtual address for accessing physical page 0 */
1757c478bd9Sstevel@tonic-gate
1767c478bd9Sstevel@tonic-gate /*
1777c478bd9Sstevel@tonic-gate * segkp
1787c478bd9Sstevel@tonic-gate */
1797c478bd9Sstevel@tonic-gate extern int segkp_fromheap;
1807c478bd9Sstevel@tonic-gate
1817c478bd9Sstevel@tonic-gate static void kvm_init(void);
1827c478bd9Sstevel@tonic-gate static void startup_init(void);
1837c478bd9Sstevel@tonic-gate static void startup_memlist(void);
184ae115bc7Smrj static void startup_kmem(void);
1857c478bd9Sstevel@tonic-gate static void startup_modules(void);
1867c478bd9Sstevel@tonic-gate static void startup_vm(void);
1877c478bd9Sstevel@tonic-gate static void startup_end(void);
18835b1ab99Sjosephb static void layout_kernel_va(void);
1897c478bd9Sstevel@tonic-gate
1907c478bd9Sstevel@tonic-gate /*
1917c478bd9Sstevel@tonic-gate * Declare these as initialized data so we can patch them.
1927c478bd9Sstevel@tonic-gate */
193f53ad214Skchow #ifdef __i386
19435b1ab99Sjosephb
195f53ad214Skchow /*
196f53ad214Skchow * Due to virtual address space limitations running in 32 bit mode, restrict
19735b1ab99Sjosephb * the amount of physical memory configured to a max of PHYSMEM pages (16g).
198f53ad214Skchow *
199f53ad214Skchow * If the physical max memory size of 64g were allowed to be configured, the
200f53ad214Skchow * size of user virtual address space will be less than 1g. A limited user
201f53ad214Skchow * address space greatly reduces the range of applications that can run.
202f53ad214Skchow *
20335b1ab99Sjosephb * If more physical memory than PHYSMEM is required, users should preferably
20435b1ab99Sjosephb * run in 64 bit mode which has far looser virtual address space limitations.
205f53ad214Skchow *
206f53ad214Skchow * If 64 bit mode is not available (as in IA32) and/or more physical memory
20735b1ab99Sjosephb * than PHYSMEM is required in 32 bit mode, physmem can be set to the desired
208f53ad214Skchow * value or to 0 (to configure all available memory) via eeprom(1M). kernelbase
209f53ad214Skchow * should also be carefully tuned to balance out the need of the user
210f53ad214Skchow * application while minimizing the risk of kernel heap exhaustion due to
211f53ad214Skchow * kernelbase being set too high.
212f53ad214Skchow */
21335b1ab99Sjosephb #define PHYSMEM 0x400000
214f53ad214Skchow
21535b1ab99Sjosephb #else /* __amd64 */
21635b1ab99Sjosephb
21735b1ab99Sjosephb /*
21835b1ab99Sjosephb * For now we can handle memory with physical addresses up to about
21935b1ab99Sjosephb * 64 Terabytes. This keeps the kernel above the VA hole, leaving roughly
22035b1ab99Sjosephb * half the VA space for seg_kpm. When systems get bigger than 64TB this
22135b1ab99Sjosephb * code will need revisiting. There is an implicit assumption that there
22235b1ab99Sjosephb * are no *huge* holes in the physical address space too.
22335b1ab99Sjosephb */
22435b1ab99Sjosephb #define TERABYTE (1ul << 40)
22535b1ab99Sjosephb #define PHYSMEM_MAX64 mmu_btop(64 * TERABYTE)
22635b1ab99Sjosephb #define PHYSMEM PHYSMEM_MAX64
22735b1ab99Sjosephb #define AMD64_VA_HOLE_END 0xFFFF800000000000ul
22835b1ab99Sjosephb
22935b1ab99Sjosephb #endif /* __amd64 */
23035b1ab99Sjosephb
23135b1ab99Sjosephb pgcnt_t physmem = PHYSMEM;
2327c478bd9Sstevel@tonic-gate pgcnt_t obp_pages; /* Memory used by PROM for its text and data */
2337c478bd9Sstevel@tonic-gate
2347c478bd9Sstevel@tonic-gate char *kobj_file_buf;
2357c478bd9Sstevel@tonic-gate int kobj_file_bufsize; /* set in /etc/system */
2367c478bd9Sstevel@tonic-gate
2377c478bd9Sstevel@tonic-gate /* Global variables for MP support. Used in mp_startup */
23819397407SSherry Moore caddr_t rm_platter_va = 0;
2397c478bd9Sstevel@tonic-gate uint32_t rm_platter_pa;
2407c478bd9Sstevel@tonic-gate
24183f9b804Skchow int auto_lpg_disable = 1;
24283f9b804Skchow
2437c478bd9Sstevel@tonic-gate /*
2447c478bd9Sstevel@tonic-gate * Some CPUs have holes in the middle of the 64-bit virtual address range.
2457c478bd9Sstevel@tonic-gate */
2467c478bd9Sstevel@tonic-gate uintptr_t hole_start, hole_end;
2477c478bd9Sstevel@tonic-gate
2487c478bd9Sstevel@tonic-gate /*
2497c478bd9Sstevel@tonic-gate * kpm mapping window
2507c478bd9Sstevel@tonic-gate */
2517c478bd9Sstevel@tonic-gate caddr_t kpm_vbase;
2527c478bd9Sstevel@tonic-gate size_t kpm_size;
25335b1ab99Sjosephb static int kpm_desired;
25435b1ab99Sjosephb #ifdef __amd64
25535b1ab99Sjosephb static uintptr_t segkpm_base = (uintptr_t)SEGKPM_BASE;
25635b1ab99Sjosephb #endif
2577c478bd9Sstevel@tonic-gate
2587c478bd9Sstevel@tonic-gate /*
2597c478bd9Sstevel@tonic-gate * Configuration parameters set at boot time.
2607c478bd9Sstevel@tonic-gate */
2617c478bd9Sstevel@tonic-gate
2627c478bd9Sstevel@tonic-gate caddr_t econtig; /* end of first block of contiguous kernel */
2637c478bd9Sstevel@tonic-gate
2647c478bd9Sstevel@tonic-gate struct bootops *bootops = 0; /* passed in from boot */
2657c478bd9Sstevel@tonic-gate struct bootops **bootopsp;
2667c478bd9Sstevel@tonic-gate struct boot_syscalls *sysp; /* passed in from boot */
2677c478bd9Sstevel@tonic-gate
2687c478bd9Sstevel@tonic-gate char bootblock_fstype[16];
2697c478bd9Sstevel@tonic-gate
2707c478bd9Sstevel@tonic-gate char kern_bootargs[OBP_MAXPATHLEN];
27119397407SSherry Moore char kern_bootfile[OBP_MAXPATHLEN];
2727c478bd9Sstevel@tonic-gate
2737c478bd9Sstevel@tonic-gate /*
274ad23a2dbSjohansen * ZFS zio segment. This allows us to exclude large portions of ZFS data that
275ad23a2dbSjohansen * gets cached in kmem caches on the heap. If this is set to zero, we allocate
276ad23a2dbSjohansen * zio buffers from their own segment, otherwise they are allocated from the
277ad23a2dbSjohansen * heap. The optimization of allocating zio buffers from their own segment is
278ad23a2dbSjohansen * only valid on 64-bit kernels.
279ad23a2dbSjohansen */
280ad23a2dbSjohansen #if defined(__amd64)
281ad23a2dbSjohansen int segzio_fromheap = 0;
282ad23a2dbSjohansen #else
283ad23a2dbSjohansen int segzio_fromheap = 1;
284ad23a2dbSjohansen #endif
285ad23a2dbSjohansen
286ad23a2dbSjohansen /*
2877c478bd9Sstevel@tonic-gate * new memory fragmentations are possible in startup() due to BOP_ALLOCs. this
2887c478bd9Sstevel@tonic-gate * depends on number of BOP_ALLOC calls made and requested size, memory size
2897c478bd9Sstevel@tonic-gate * combination and whether boot.bin memory needs to be freed.
2907c478bd9Sstevel@tonic-gate */
2917c478bd9Sstevel@tonic-gate #define POSS_NEW_FRAGMENTS 12
2927c478bd9Sstevel@tonic-gate
2937c478bd9Sstevel@tonic-gate /*
2947c478bd9Sstevel@tonic-gate * VM data structures
2957c478bd9Sstevel@tonic-gate */
2967c478bd9Sstevel@tonic-gate long page_hashsz; /* Size of page hash table (power of two) */
297cb15d5d9SPeter Rival unsigned int page_hashsz_shift; /* log2(page_hashsz) */
2987c478bd9Sstevel@tonic-gate struct page *pp_base; /* Base of initial system page struct array */
2997c478bd9Sstevel@tonic-gate struct page **page_hash; /* Page hash table */
300d7d93655Sblakej pad_mutex_t *pse_mutex; /* Locks protecting pp->p_selock */
301d7d93655Sblakej size_t pse_table_size; /* Number of mutexes in pse_mutex[] */
302d7d93655Sblakej int pse_shift; /* log2(pse_table_size) */
3037c478bd9Sstevel@tonic-gate struct seg ktextseg; /* Segment used for kernel executable image */
3047c478bd9Sstevel@tonic-gate struct seg kvalloc; /* Segment used for "valloc" mapping */
3057c478bd9Sstevel@tonic-gate struct seg kpseg; /* Segment used for pageable kernel virt mem */
3067c478bd9Sstevel@tonic-gate struct seg kmapseg; /* Segment used for generic kernel mappings */
3077c478bd9Sstevel@tonic-gate struct seg kdebugseg; /* Segment used for the kernel debugger */
3087c478bd9Sstevel@tonic-gate
3097c478bd9Sstevel@tonic-gate struct seg *segkmap = &kmapseg; /* Kernel generic mapping segment */
310ae115bc7Smrj static struct seg *segmap = &kmapseg; /* easier to use name for in here */
311ae115bc7Smrj
3127c478bd9Sstevel@tonic-gate struct seg *segkp = &kpseg; /* Pageable kernel virtual memory segment */
3137c478bd9Sstevel@tonic-gate
3147c478bd9Sstevel@tonic-gate #if defined(__amd64)
3157c478bd9Sstevel@tonic-gate struct seg kvseg_core; /* Segment used for the core heap */
3167c478bd9Sstevel@tonic-gate struct seg kpmseg; /* Segment used for physical mapping */
3177c478bd9Sstevel@tonic-gate struct seg *segkpm = &kpmseg; /* 64bit kernel physical mapping segment */
3187c478bd9Sstevel@tonic-gate #else
3197c478bd9Sstevel@tonic-gate struct seg *segkpm = NULL; /* Unused on IA32 */
3207c478bd9Sstevel@tonic-gate #endif
3217c478bd9Sstevel@tonic-gate
3227c478bd9Sstevel@tonic-gate caddr_t segkp_base; /* Base address of segkp */
323ad23a2dbSjohansen caddr_t segzio_base; /* Base address of segzio */
3247c478bd9Sstevel@tonic-gate #if defined(__amd64)
3257c478bd9Sstevel@tonic-gate pgcnt_t segkpsize = btop(SEGKPDEFSIZE); /* size of segkp segment in pages */
3267c478bd9Sstevel@tonic-gate #else
3277c478bd9Sstevel@tonic-gate pgcnt_t segkpsize = 0;
3287c478bd9Sstevel@tonic-gate #endif
329ad23a2dbSjohansen pgcnt_t segziosize = 0; /* size of zio segment in pages */
3307c478bd9Sstevel@tonic-gate
331ae115bc7Smrj /*
332a3114836SGerry Liu * A static DR page_t VA map is reserved that can map the page structures
333a3114836SGerry Liu * for a domain's entire RA space. The pages that back this space are
334a3114836SGerry Liu * dynamically allocated and need not be physically contiguous. The DR
335a3114836SGerry Liu * map size is derived from KPM size.
336a3114836SGerry Liu * This mechanism isn't used by x86 yet, so just stubs here.
337a3114836SGerry Liu */
338a3114836SGerry Liu int ppvm_enable = 0; /* Static virtual map for page structs */
339a3114836SGerry Liu page_t *ppvm_base = NULL; /* Base of page struct map */
340a3114836SGerry Liu pgcnt_t ppvm_size = 0; /* Size of page struct map */
341a3114836SGerry Liu
342a3114836SGerry Liu /*
343ae115bc7Smrj * VA range available to the debugger
344ae115bc7Smrj */
345ae115bc7Smrj const caddr_t kdi_segdebugbase = (const caddr_t)SEGDEBUGBASE;
346ae115bc7Smrj const size_t kdi_segdebugsize = SEGDEBUGSIZE;
347ae115bc7Smrj
3487c478bd9Sstevel@tonic-gate struct memseg *memseg_base;
3497c478bd9Sstevel@tonic-gate struct vnode unused_pages_vp;
3507c478bd9Sstevel@tonic-gate
3517c478bd9Sstevel@tonic-gate #define FOURGB 0x100000000LL
3527c478bd9Sstevel@tonic-gate
3537c478bd9Sstevel@tonic-gate struct memlist *memlist;
3547c478bd9Sstevel@tonic-gate
3557c478bd9Sstevel@tonic-gate caddr_t s_text; /* start of kernel text segment */
3567c478bd9Sstevel@tonic-gate caddr_t e_text; /* end of kernel text segment */
3577c478bd9Sstevel@tonic-gate caddr_t s_data; /* start of kernel data segment */
3587c478bd9Sstevel@tonic-gate caddr_t e_data; /* end of kernel data segment */
3597c478bd9Sstevel@tonic-gate caddr_t modtext; /* start of loadable module text reserved */
3607c478bd9Sstevel@tonic-gate caddr_t e_modtext; /* end of loadable module text reserved */
3617c478bd9Sstevel@tonic-gate caddr_t moddata; /* start of loadable module data reserved */
3627c478bd9Sstevel@tonic-gate caddr_t e_moddata; /* end of loadable module data reserved */
3637c478bd9Sstevel@tonic-gate
3647c478bd9Sstevel@tonic-gate struct memlist *phys_install; /* Total installed physical memory */
3657c478bd9Sstevel@tonic-gate struct memlist *phys_avail; /* Total available physical memory */
3661de082f7SVikram Hegde struct memlist *bios_rsvd; /* Bios reserved memory */
3677c478bd9Sstevel@tonic-gate
3687c478bd9Sstevel@tonic-gate /*
3697c478bd9Sstevel@tonic-gate * kphysm_init returns the number of pages that were processed
3707c478bd9Sstevel@tonic-gate */
371ae115bc7Smrj static pgcnt_t kphysm_init(page_t *, pgcnt_t);
3727c478bd9Sstevel@tonic-gate
3737c478bd9Sstevel@tonic-gate #define IO_PROP_SIZE 64 /* device property size */
3747c478bd9Sstevel@tonic-gate
3757c478bd9Sstevel@tonic-gate /*
3767c478bd9Sstevel@tonic-gate * a couple useful roundup macros
3777c478bd9Sstevel@tonic-gate */
3787c478bd9Sstevel@tonic-gate #define ROUND_UP_PAGE(x) \
3797c478bd9Sstevel@tonic-gate ((uintptr_t)P2ROUNDUP((uintptr_t)(x), (uintptr_t)MMU_PAGESIZE))
3807c478bd9Sstevel@tonic-gate #define ROUND_UP_LPAGE(x) \
3817c478bd9Sstevel@tonic-gate ((uintptr_t)P2ROUNDUP((uintptr_t)(x), mmu.level_size[1]))
3827c478bd9Sstevel@tonic-gate #define ROUND_UP_4MEG(x) \
383ae115bc7Smrj ((uintptr_t)P2ROUNDUP((uintptr_t)(x), (uintptr_t)FOUR_MEG))
3847c478bd9Sstevel@tonic-gate #define ROUND_UP_TOPLEVEL(x) \
3857c478bd9Sstevel@tonic-gate ((uintptr_t)P2ROUNDUP((uintptr_t)(x), mmu.level_size[mmu.max_level]))
3867c478bd9Sstevel@tonic-gate
3877c478bd9Sstevel@tonic-gate /*
3887c478bd9Sstevel@tonic-gate * 32-bit Kernel's Virtual memory layout.
3897c478bd9Sstevel@tonic-gate * +-----------------------+
390ae115bc7Smrj * | |
3917c478bd9Sstevel@tonic-gate * 0xFFC00000 -|-----------------------|- ARGSBASE
3927c478bd9Sstevel@tonic-gate * | debugger |
3937c478bd9Sstevel@tonic-gate * 0xFF800000 -|-----------------------|- SEGDEBUGBASE
3947c478bd9Sstevel@tonic-gate * | Kernel Data |
3957c478bd9Sstevel@tonic-gate * 0xFEC00000 -|-----------------------|
3967c478bd9Sstevel@tonic-gate * | Kernel Text |
397843e1988Sjohnlev * 0xFE800000 -|-----------------------|- KERNEL_TEXT (0xFB400000 on Xen)
398ae115bc7Smrj * |--- GDT ---|- GDT page (GDT_VA)
399ae115bc7Smrj * |--- debug info ---|- debug info (DEBUG_INFO_VA)
400ae115bc7Smrj * | |
401ae115bc7Smrj * | page_t structures |
4027c478bd9Sstevel@tonic-gate * | memsegs, memlists, |
4037c478bd9Sstevel@tonic-gate * | page hash, etc. |
404ae115bc7Smrj * --- -|-----------------------|- ekernelheap, valloc_base (floating)
405ae115bc7Smrj * | | (segkp is just an arena in the heap)
4067c478bd9Sstevel@tonic-gate * | |
4077c478bd9Sstevel@tonic-gate * | kvseg |
4087c478bd9Sstevel@tonic-gate * | |
4097c478bd9Sstevel@tonic-gate * | |
4107c478bd9Sstevel@tonic-gate * --- -|-----------------------|- kernelheap (floating)
4117c478bd9Sstevel@tonic-gate * | Segkmap |
412ae115bc7Smrj * 0xC3002000 -|-----------------------|- segmap_start (floating)
4137c478bd9Sstevel@tonic-gate * | Red Zone |
4147c478bd9Sstevel@tonic-gate * 0xC3000000 -|-----------------------|- kernelbase / userlimit (floating)
4157c478bd9Sstevel@tonic-gate * | | ||
4167c478bd9Sstevel@tonic-gate * | Shared objects | \/
4177c478bd9Sstevel@tonic-gate * | |
4187c478bd9Sstevel@tonic-gate * : :
4197c478bd9Sstevel@tonic-gate * | user data |
4207c478bd9Sstevel@tonic-gate * |-----------------------|
4217c478bd9Sstevel@tonic-gate * | user text |
4227c478bd9Sstevel@tonic-gate * 0x08048000 -|-----------------------|
4237c478bd9Sstevel@tonic-gate * | user stack |
4247c478bd9Sstevel@tonic-gate * : :
4257c478bd9Sstevel@tonic-gate * | invalid |
4267c478bd9Sstevel@tonic-gate * 0x00000000 +-----------------------+
4277c478bd9Sstevel@tonic-gate *
4287c478bd9Sstevel@tonic-gate *
4297c478bd9Sstevel@tonic-gate * 64-bit Kernel's Virtual memory layout. (assuming 64 bit app)
4307c478bd9Sstevel@tonic-gate * +-----------------------+
431ae115bc7Smrj * | |
4327c478bd9Sstevel@tonic-gate * 0xFFFFFFFF.FFC00000 |-----------------------|- ARGSBASE
4337c478bd9Sstevel@tonic-gate * | debugger (?) |
4347c478bd9Sstevel@tonic-gate * 0xFFFFFFFF.FF800000 |-----------------------|- SEGDEBUGBASE
4357c478bd9Sstevel@tonic-gate * | unused |
4367c478bd9Sstevel@tonic-gate * +-----------------------+
4377c478bd9Sstevel@tonic-gate * | Kernel Data |
4387c478bd9Sstevel@tonic-gate * 0xFFFFFFFF.FBC00000 |-----------------------|
4397c478bd9Sstevel@tonic-gate * | Kernel Text |
4407c478bd9Sstevel@tonic-gate * 0xFFFFFFFF.FB800000 |-----------------------|- KERNEL_TEXT
441ae115bc7Smrj * |--- GDT ---|- GDT page (GDT_VA)
442ae115bc7Smrj * |--- debug info ---|- debug info (DEBUG_INFO_VA)
443ae115bc7Smrj * | |
4447c478bd9Sstevel@tonic-gate * | Core heap | (used for loadable modules)
4457c478bd9Sstevel@tonic-gate * 0xFFFFFFFF.C0000000 |-----------------------|- core_base / ekernelheap
4467c478bd9Sstevel@tonic-gate * | Kernel |
4477c478bd9Sstevel@tonic-gate * | heap |
4487c478bd9Sstevel@tonic-gate * 0xFFFFFXXX.XXX00000 |-----------------------|- kernelheap (floating)
449ae115bc7Smrj * | segmap |
450ae115bc7Smrj * 0xFFFFFXXX.XXX00000 |-----------------------|- segmap_start (floating)
4517c478bd9Sstevel@tonic-gate * | device mappings |
4527c478bd9Sstevel@tonic-gate * 0xFFFFFXXX.XXX00000 |-----------------------|- toxic_addr (floating)
453ad23a2dbSjohansen * | segzio |
454ad23a2dbSjohansen * 0xFFFFFXXX.XXX00000 |-----------------------|- segzio_base (floating)
4557c478bd9Sstevel@tonic-gate * | segkp |
456ae115bc7Smrj * --- |-----------------------|- segkp_base (floating)
457ae115bc7Smrj * | page_t structures | valloc_base + valloc_sz
458ae115bc7Smrj * | memsegs, memlists, |
459ae115bc7Smrj * | page hash, etc. |
46035b1ab99Sjosephb * 0xFFFFFF00.00000000 |-----------------------|- valloc_base (lower if > 1TB)
4617c478bd9Sstevel@tonic-gate * | segkpm |
4627c478bd9Sstevel@tonic-gate * 0xFFFFFE00.00000000 |-----------------------|
4637c478bd9Sstevel@tonic-gate * | Red Zone |
46435b1ab99Sjosephb * 0xFFFFFD80.00000000 |-----------------------|- KERNELBASE (lower if > 1TB)
4657c478bd9Sstevel@tonic-gate * | User stack |- User space memory
4667c478bd9Sstevel@tonic-gate * | |
4677c478bd9Sstevel@tonic-gate * | shared objects, etc | (grows downwards)
4687c478bd9Sstevel@tonic-gate * : :
4697c478bd9Sstevel@tonic-gate * | |
4707c478bd9Sstevel@tonic-gate * 0xFFFF8000.00000000 |-----------------------|
4717c478bd9Sstevel@tonic-gate * | |
4727c478bd9Sstevel@tonic-gate * | VA Hole / unused |
4737c478bd9Sstevel@tonic-gate * | |
4747c478bd9Sstevel@tonic-gate * 0x00008000.00000000 |-----------------------|
4757c478bd9Sstevel@tonic-gate * | |
4767c478bd9Sstevel@tonic-gate * | |
4777c478bd9Sstevel@tonic-gate * : :
4787c478bd9Sstevel@tonic-gate * | user heap | (grows upwards)
4797c478bd9Sstevel@tonic-gate * | |
4807c478bd9Sstevel@tonic-gate * | user data |
4817c478bd9Sstevel@tonic-gate * |-----------------------|
4827c478bd9Sstevel@tonic-gate * | user text |
4837c478bd9Sstevel@tonic-gate * 0x00000000.04000000 |-----------------------|
4847c478bd9Sstevel@tonic-gate * | invalid |
4857c478bd9Sstevel@tonic-gate * 0x00000000.00000000 +-----------------------+
4867c478bd9Sstevel@tonic-gate *
4877c478bd9Sstevel@tonic-gate * A 32 bit app on the 64 bit kernel sees the same layout as on the 32 bit
4887c478bd9Sstevel@tonic-gate * kernel, except that userlimit is raised to 0xfe000000
4897c478bd9Sstevel@tonic-gate *
4907c478bd9Sstevel@tonic-gate * Floating values:
4917c478bd9Sstevel@tonic-gate *
4927c478bd9Sstevel@tonic-gate * valloc_base: start of the kernel's memory management/tracking data
493ae115bc7Smrj * structures. This region contains page_t structures for
494ae115bc7Smrj * physical memory, memsegs, memlists, and the page hash.
4957c478bd9Sstevel@tonic-gate *
4967c478bd9Sstevel@tonic-gate * core_base: start of the kernel's "core" heap area on 64-bit systems.
4977c478bd9Sstevel@tonic-gate * This area is intended to be used for global data as well as for module
4987c478bd9Sstevel@tonic-gate * text/data that does not fit into the nucleus pages. The core heap is
4997c478bd9Sstevel@tonic-gate * restricted to a 2GB range, allowing every address within it to be
5007c478bd9Sstevel@tonic-gate * accessed using rip-relative addressing
5017c478bd9Sstevel@tonic-gate *
5027c478bd9Sstevel@tonic-gate * ekernelheap: end of kernelheap and start of segmap.
5037c478bd9Sstevel@tonic-gate *
5047c478bd9Sstevel@tonic-gate * kernelheap: start of kernel heap. On 32-bit systems, this starts right
5057c478bd9Sstevel@tonic-gate * above a red zone that separates the user's address space from the
5067c478bd9Sstevel@tonic-gate * kernel's. On 64-bit systems, it sits above segkp and segkpm.
5077c478bd9Sstevel@tonic-gate *
508ae115bc7Smrj * segmap_start: start of segmap. The length of segmap can be modified
50952eef812SAmrita Sadhukhan * through eeprom. The default length is 16MB on 32-bit systems and 64MB
51052eef812SAmrita Sadhukhan * on 64-bit systems.
5117c478bd9Sstevel@tonic-gate *
5127c478bd9Sstevel@tonic-gate * kernelbase: On a 32-bit kernel the default value of 0xd4000000 will be
5137c478bd9Sstevel@tonic-gate * decreased by 2X the size required for page_t. This allows the kernel
5147c478bd9Sstevel@tonic-gate * heap to grow in size with physical memory. With sizeof(page_t) == 80
5157c478bd9Sstevel@tonic-gate * bytes, the following shows the values of kernelbase and kernel heap
5167c478bd9Sstevel@tonic-gate * sizes for different memory configurations (assuming default segmap and
5177c478bd9Sstevel@tonic-gate * segkp sizes).
5187c478bd9Sstevel@tonic-gate *
5197c478bd9Sstevel@tonic-gate * mem size for kernelbase kernel heap
5207c478bd9Sstevel@tonic-gate * size page_t's size
5217c478bd9Sstevel@tonic-gate * ---- --------- ---------- -----------
5227c478bd9Sstevel@tonic-gate * 1gb 0x01400000 0xd1800000 684MB
5237c478bd9Sstevel@tonic-gate * 2gb 0x02800000 0xcf000000 704MB
5247c478bd9Sstevel@tonic-gate * 4gb 0x05000000 0xca000000 744MB
5257c478bd9Sstevel@tonic-gate * 6gb 0x07800000 0xc5000000 784MB
5267c478bd9Sstevel@tonic-gate * 8gb 0x0a000000 0xc0000000 824MB
5277c478bd9Sstevel@tonic-gate * 16gb 0x14000000 0xac000000 984MB
5287c478bd9Sstevel@tonic-gate * 32gb 0x28000000 0x84000000 1304MB
5297c478bd9Sstevel@tonic-gate * 64gb 0x50000000 0x34000000 1944MB (*)
5307c478bd9Sstevel@tonic-gate *
5317c478bd9Sstevel@tonic-gate * kernelbase is less than the abi minimum of 0xc0000000 for memory
5327c478bd9Sstevel@tonic-gate * configurations above 8gb.
5337c478bd9Sstevel@tonic-gate *
5347c478bd9Sstevel@tonic-gate * (*) support for memory configurations above 32gb will require manual tuning
5357c478bd9Sstevel@tonic-gate * of kernelbase to balance out the need of user applications.
5367c478bd9Sstevel@tonic-gate */
5377c478bd9Sstevel@tonic-gate
5387c478bd9Sstevel@tonic-gate /* real-time-clock initialization parameters */
539ae115bc7Smrj extern time_t process_rtc_config_file(void);
5407c478bd9Sstevel@tonic-gate
5417c478bd9Sstevel@tonic-gate uintptr_t kernelbase;
542ae115bc7Smrj uintptr_t postbootkernelbase; /* not set till boot loader is gone */
5437c478bd9Sstevel@tonic-gate uintptr_t eprom_kernelbase;
5447c478bd9Sstevel@tonic-gate size_t segmapsize;
545ae115bc7Smrj uintptr_t segmap_start;
5467c478bd9Sstevel@tonic-gate int segmapfreelists;
5477c478bd9Sstevel@tonic-gate pgcnt_t npages;
548ae115bc7Smrj pgcnt_t orig_npages;
5497c478bd9Sstevel@tonic-gate size_t core_size; /* size of "core" heap */
5507c478bd9Sstevel@tonic-gate uintptr_t core_base; /* base address of "core" heap */
5517c478bd9Sstevel@tonic-gate
5527c478bd9Sstevel@tonic-gate /*
5537c478bd9Sstevel@tonic-gate * List of bootstrap pages. We mark these as allocated in startup.
5547c478bd9Sstevel@tonic-gate * release_bootstrap() will free them when we're completely done with
5557c478bd9Sstevel@tonic-gate * the bootstrap.
5567c478bd9Sstevel@tonic-gate */
557ae115bc7Smrj static page_t *bootpages;
558ae115bc7Smrj
559ae115bc7Smrj /*
560ae115bc7Smrj * boot time pages that have a vnode from the ramdisk will keep that forever.
561ae115bc7Smrj */
562ae115bc7Smrj static page_t *rd_pages;
5637c478bd9Sstevel@tonic-gate
56419397407SSherry Moore /*
56519397407SSherry Moore * Lower 64K
56619397407SSherry Moore */
56719397407SSherry Moore static page_t *lower_pages = NULL;
56819397407SSherry Moore static int lower_pages_count = 0;
56919397407SSherry Moore
5707c478bd9Sstevel@tonic-gate struct system_hardware system_hardware;
5717c478bd9Sstevel@tonic-gate
5727c478bd9Sstevel@tonic-gate /*
5737c478bd9Sstevel@tonic-gate * Enable some debugging messages concerning memory usage...
5747c478bd9Sstevel@tonic-gate */
5757c478bd9Sstevel@tonic-gate static void
print_memlist(char * title,struct memlist * mp)576ae115bc7Smrj print_memlist(char *title, struct memlist *mp)
5777c478bd9Sstevel@tonic-gate {
5787c478bd9Sstevel@tonic-gate prom_printf("MEMLIST: %s:\n", title);
5797c478bd9Sstevel@tonic-gate while (mp != NULL) {
5807c478bd9Sstevel@tonic-gate prom_printf("\tAddress 0x%" PRIx64 ", size 0x%" PRIx64 "\n",
58156f33205SJonathan Adams mp->ml_address, mp->ml_size);
58256f33205SJonathan Adams mp = mp->ml_next;
5837c478bd9Sstevel@tonic-gate }
5847c478bd9Sstevel@tonic-gate }
5857c478bd9Sstevel@tonic-gate
5867c478bd9Sstevel@tonic-gate /*
5877c478bd9Sstevel@tonic-gate * XX64 need a comment here.. are these just default values, surely
5887c478bd9Sstevel@tonic-gate * we read the "cpuid" type information to figure this out.
5897c478bd9Sstevel@tonic-gate */
5907c478bd9Sstevel@tonic-gate int l2cache_sz = 0x80000;
5917c478bd9Sstevel@tonic-gate int l2cache_linesz = 0x40;
5927c478bd9Sstevel@tonic-gate int l2cache_assoc = 1;
5937c478bd9Sstevel@tonic-gate
5942cb27123Saguzovsk static size_t textrepl_min_gb = 10;
5952cb27123Saguzovsk
5967c478bd9Sstevel@tonic-gate /*
5977c478bd9Sstevel@tonic-gate * on 64 bit we use a predifined VA range for mapping devices in the kernel
5987c478bd9Sstevel@tonic-gate * on 32 bit the mappings are intermixed in the heap, so we use a bit map
5997c478bd9Sstevel@tonic-gate */
6007c478bd9Sstevel@tonic-gate #ifdef __amd64
6017c478bd9Sstevel@tonic-gate
6027c478bd9Sstevel@tonic-gate vmem_t *device_arena;
6037c478bd9Sstevel@tonic-gate uintptr_t toxic_addr = (uintptr_t)NULL;
604ae115bc7Smrj size_t toxic_size = 1024 * 1024 * 1024; /* Sparc uses 1 gig too */
6057c478bd9Sstevel@tonic-gate
6067c478bd9Sstevel@tonic-gate #else /* __i386 */
6077c478bd9Sstevel@tonic-gate
6087c478bd9Sstevel@tonic-gate ulong_t *toxic_bit_map; /* one bit for each 4k of VA in heap_arena */
6097c478bd9Sstevel@tonic-gate size_t toxic_bit_map_len = 0; /* in bits */
6107c478bd9Sstevel@tonic-gate
6117c478bd9Sstevel@tonic-gate #endif /* __i386 */
6127c478bd9Sstevel@tonic-gate
6137c478bd9Sstevel@tonic-gate /*
6147c478bd9Sstevel@tonic-gate * Simple boot time debug facilities
6157c478bd9Sstevel@tonic-gate */
6167c478bd9Sstevel@tonic-gate static char *prm_dbg_str[] = {
6177c478bd9Sstevel@tonic-gate "%s:%d: '%s' is 0x%x\n",
6187c478bd9Sstevel@tonic-gate "%s:%d: '%s' is 0x%llx\n"
6197c478bd9Sstevel@tonic-gate };
6207c478bd9Sstevel@tonic-gate
6217c478bd9Sstevel@tonic-gate int prom_debug;
6227c478bd9Sstevel@tonic-gate
6237c478bd9Sstevel@tonic-gate #define PRM_DEBUG(q) if (prom_debug) \
6247c478bd9Sstevel@tonic-gate prom_printf(prm_dbg_str[sizeof (q) >> 3], "startup.c", __LINE__, #q, q);
6257c478bd9Sstevel@tonic-gate #define PRM_POINT(q) if (prom_debug) \
6267c478bd9Sstevel@tonic-gate prom_printf("%s:%d: %s\n", "startup.c", __LINE__, q);
6277c478bd9Sstevel@tonic-gate
6287c478bd9Sstevel@tonic-gate /*
6297c478bd9Sstevel@tonic-gate * This structure is used to keep track of the intial allocations
6307c478bd9Sstevel@tonic-gate * done in startup_memlist(). The value of NUM_ALLOCATIONS needs to
6317c478bd9Sstevel@tonic-gate * be >= the number of ADD_TO_ALLOCATIONS() executed in the code.
6327c478bd9Sstevel@tonic-gate */
6331de082f7SVikram Hegde #define NUM_ALLOCATIONS 8
6347c478bd9Sstevel@tonic-gate int num_allocations = 0;
6357c478bd9Sstevel@tonic-gate struct {
6367c478bd9Sstevel@tonic-gate void **al_ptr;
6377c478bd9Sstevel@tonic-gate size_t al_size;
6387c478bd9Sstevel@tonic-gate } allocations[NUM_ALLOCATIONS];
6397c478bd9Sstevel@tonic-gate size_t valloc_sz = 0;
6407c478bd9Sstevel@tonic-gate uintptr_t valloc_base;
6417c478bd9Sstevel@tonic-gate
6427c478bd9Sstevel@tonic-gate #define ADD_TO_ALLOCATIONS(ptr, size) { \
6437c478bd9Sstevel@tonic-gate size = ROUND_UP_PAGE(size); \
6447c478bd9Sstevel@tonic-gate if (num_allocations == NUM_ALLOCATIONS) \
6457c478bd9Sstevel@tonic-gate panic("too many ADD_TO_ALLOCATIONS()"); \
6467c478bd9Sstevel@tonic-gate allocations[num_allocations].al_ptr = (void**)&ptr; \
6477c478bd9Sstevel@tonic-gate allocations[num_allocations].al_size = size; \
6487c478bd9Sstevel@tonic-gate valloc_sz += size; \
6497c478bd9Sstevel@tonic-gate ++num_allocations; \
6507c478bd9Sstevel@tonic-gate }
6517c478bd9Sstevel@tonic-gate
652ae115bc7Smrj /*
653ae115bc7Smrj * Allocate all the initial memory needed by the page allocator.
654ae115bc7Smrj */
6557c478bd9Sstevel@tonic-gate static void
perform_allocations(void)6567c478bd9Sstevel@tonic-gate perform_allocations(void)
6577c478bd9Sstevel@tonic-gate {
6587c478bd9Sstevel@tonic-gate caddr_t mem;
6597c478bd9Sstevel@tonic-gate int i;
660ae115bc7Smrj int valloc_align;
6617c478bd9Sstevel@tonic-gate
662ae115bc7Smrj PRM_DEBUG(valloc_base);
663ae115bc7Smrj PRM_DEBUG(valloc_sz);
664ae115bc7Smrj valloc_align = mmu.level_size[mmu.max_page_level > 0];
665ae115bc7Smrj mem = BOP_ALLOC(bootops, (caddr_t)valloc_base, valloc_sz, valloc_align);
6667c478bd9Sstevel@tonic-gate if (mem != (caddr_t)valloc_base)
6677c478bd9Sstevel@tonic-gate panic("BOP_ALLOC() failed");
6687c478bd9Sstevel@tonic-gate bzero(mem, valloc_sz);
6697c478bd9Sstevel@tonic-gate for (i = 0; i < num_allocations; ++i) {
6707c478bd9Sstevel@tonic-gate *allocations[i].al_ptr = (void *)mem;
6717c478bd9Sstevel@tonic-gate mem += allocations[i].al_size;
6727c478bd9Sstevel@tonic-gate }
6737c478bd9Sstevel@tonic-gate }
6747c478bd9Sstevel@tonic-gate
6757c478bd9Sstevel@tonic-gate /*
6767c478bd9Sstevel@tonic-gate * Our world looks like this at startup time.
6777c478bd9Sstevel@tonic-gate *
6787c478bd9Sstevel@tonic-gate * In a 32-bit OS, boot loads the kernel text at 0xfe800000 and kernel data
6797c478bd9Sstevel@tonic-gate * at 0xfec00000. On a 64-bit OS, kernel text and data are loaded at
6807c478bd9Sstevel@tonic-gate * 0xffffffff.fe800000 and 0xffffffff.fec00000 respectively. Those
6817c478bd9Sstevel@tonic-gate * addresses are fixed in the binary at link time.
6827c478bd9Sstevel@tonic-gate *
6837c478bd9Sstevel@tonic-gate * On the text page:
6847c478bd9Sstevel@tonic-gate * unix/genunix/krtld/module text loads.
6857c478bd9Sstevel@tonic-gate *
6867c478bd9Sstevel@tonic-gate * On the data page:
687ae115bc7Smrj * unix/genunix/krtld/module data loads.
688ae115bc7Smrj *
6897c478bd9Sstevel@tonic-gate * Machine-dependent startup code
6907c478bd9Sstevel@tonic-gate */
6917c478bd9Sstevel@tonic-gate void
startup(void)6927c478bd9Sstevel@tonic-gate startup(void)
6937c478bd9Sstevel@tonic-gate {
694843e1988Sjohnlev #if !defined(__xpv)
69575bcd456Sjg extern void startup_pci_bios(void);
696843e1988Sjohnlev #endif
697a563a037Sbholler extern cpuset_t cpu_ready_set;
698a563a037Sbholler
699843e1988Sjohnlev /*
700843e1988Sjohnlev * Make sure that nobody tries to use sekpm until we have
701843e1988Sjohnlev * initialized it properly.
702843e1988Sjohnlev */
7037c478bd9Sstevel@tonic-gate #if defined(__amd64)
70435b1ab99Sjosephb kpm_desired = 1;
7057c478bd9Sstevel@tonic-gate #endif
7067c478bd9Sstevel@tonic-gate kpm_enable = 0;
707a563a037Sbholler CPUSET_ONLY(cpu_ready_set, 0); /* cpu 0 is boot cpu */
7087c478bd9Sstevel@tonic-gate
709843e1988Sjohnlev #if defined(__xpv) /* XXPV fix me! */
710843e1988Sjohnlev {
711843e1988Sjohnlev extern int segvn_use_regions;
712843e1988Sjohnlev segvn_use_regions = 0;
713843e1988Sjohnlev }
714843e1988Sjohnlev #endif
7156a59053bSAlex Wilson ssp_init();
7167c478bd9Sstevel@tonic-gate progressbar_init();
7177c478bd9Sstevel@tonic-gate startup_init();
718ab4a9bebSjohnlev #if defined(__xpv)
719ab4a9bebSjohnlev startup_xen_version();
720ab4a9bebSjohnlev #endif
7217c478bd9Sstevel@tonic-gate startup_memlist();
722ae115bc7Smrj startup_kmem();
72335b1ab99Sjosephb startup_vm();
724843e1988Sjohnlev #if !defined(__xpv)
7250db3240dSStephen Hanson /*
7260db3240dSStephen Hanson * Note we need to do this even on fast reboot in order to access
7270db3240dSStephen Hanson * the irq routing table (used for pci labels).
7280db3240dSStephen Hanson */
72975bcd456Sjg startup_pci_bios();
730843e1988Sjohnlev #endif
731e4b86885SCheng Sean Ye #if defined(__xpv)
732e4b86885SCheng Sean Ye startup_xen_mca();
733e4b86885SCheng Sean Ye #endif
7347c478bd9Sstevel@tonic-gate startup_modules();
7358770118eSlipeng sang - Sun Microsystems - Beijing China
7367c478bd9Sstevel@tonic-gate startup_end();
7377c478bd9Sstevel@tonic-gate }
7387c478bd9Sstevel@tonic-gate
7397c478bd9Sstevel@tonic-gate static void
startup_init()7407c478bd9Sstevel@tonic-gate startup_init()
7417c478bd9Sstevel@tonic-gate {
7427c478bd9Sstevel@tonic-gate PRM_POINT("startup_init() starting...");
7437c478bd9Sstevel@tonic-gate
7447c478bd9Sstevel@tonic-gate /*
7457c478bd9Sstevel@tonic-gate * Complete the extraction of cpuid data
7467c478bd9Sstevel@tonic-gate */
7477c478bd9Sstevel@tonic-gate cpuid_pass2(CPU);
7487c478bd9Sstevel@tonic-gate
7497c478bd9Sstevel@tonic-gate (void) check_boot_version(BOP_GETVERSION(bootops));
7507c478bd9Sstevel@tonic-gate
7517c478bd9Sstevel@tonic-gate /*
7527c478bd9Sstevel@tonic-gate * Check for prom_debug in boot environment
7537c478bd9Sstevel@tonic-gate */
7547c478bd9Sstevel@tonic-gate if (BOP_GETPROPLEN(bootops, "prom_debug") >= 0) {
7557c478bd9Sstevel@tonic-gate ++prom_debug;
7567c478bd9Sstevel@tonic-gate PRM_POINT("prom_debug found in boot enviroment");
7577c478bd9Sstevel@tonic-gate }
7587c478bd9Sstevel@tonic-gate
7597c478bd9Sstevel@tonic-gate /*
7607c478bd9Sstevel@tonic-gate * Collect node, cpu and memory configuration information.
7617c478bd9Sstevel@tonic-gate */
7627c478bd9Sstevel@tonic-gate get_system_configuration();
7637c478bd9Sstevel@tonic-gate
7647c478bd9Sstevel@tonic-gate /*
7657c478bd9Sstevel@tonic-gate * Halt if this is an unsupported processor.
7667c478bd9Sstevel@tonic-gate */
7677c478bd9Sstevel@tonic-gate if (x86_type == X86_TYPE_486 || x86_type == X86_TYPE_CYRIX_486) {
7687c478bd9Sstevel@tonic-gate printf("\n486 processor (\"%s\") detected.\n",
7697c478bd9Sstevel@tonic-gate CPU->cpu_brandstr);
7707c478bd9Sstevel@tonic-gate halt("This processor is not supported by this release "
7717c478bd9Sstevel@tonic-gate "of Solaris.");
7727c478bd9Sstevel@tonic-gate }
7737c478bd9Sstevel@tonic-gate
7747c478bd9Sstevel@tonic-gate PRM_POINT("startup_init() done");
7757c478bd9Sstevel@tonic-gate }
7767c478bd9Sstevel@tonic-gate
7777c478bd9Sstevel@tonic-gate /*
7787c478bd9Sstevel@tonic-gate * Callback for copy_memlist_filter() to filter nucleus, kadb/kmdb, (ie.
7797c478bd9Sstevel@tonic-gate * everything mapped above KERNEL_TEXT) pages from phys_avail. Note it
7807c478bd9Sstevel@tonic-gate * also filters out physical page zero. There is some reliance on the
7817c478bd9Sstevel@tonic-gate * boot loader allocating only a few contiguous physical memory chunks.
7827c478bd9Sstevel@tonic-gate */
7837c478bd9Sstevel@tonic-gate static void
avail_filter(uint64_t * addr,uint64_t * size)7847c478bd9Sstevel@tonic-gate avail_filter(uint64_t *addr, uint64_t *size)
7857c478bd9Sstevel@tonic-gate {
7867c478bd9Sstevel@tonic-gate uintptr_t va;
7877c478bd9Sstevel@tonic-gate uintptr_t next_va;
7887c478bd9Sstevel@tonic-gate pfn_t pfn;
7897c478bd9Sstevel@tonic-gate uint64_t pfn_addr;
7907c478bd9Sstevel@tonic-gate uint64_t pfn_eaddr;
7917c478bd9Sstevel@tonic-gate uint_t prot;
7927c478bd9Sstevel@tonic-gate size_t len;
7937c478bd9Sstevel@tonic-gate uint_t change;
7947c478bd9Sstevel@tonic-gate
7957c478bd9Sstevel@tonic-gate if (prom_debug)
7967c478bd9Sstevel@tonic-gate prom_printf("\tFilter: in: a=%" PRIx64 ", s=%" PRIx64 "\n",
7977c478bd9Sstevel@tonic-gate *addr, *size);
7987c478bd9Sstevel@tonic-gate
7997c478bd9Sstevel@tonic-gate /*
8007c478bd9Sstevel@tonic-gate * page zero is required for BIOS.. never make it available
8017c478bd9Sstevel@tonic-gate */
8027c478bd9Sstevel@tonic-gate if (*addr == 0) {
8037c478bd9Sstevel@tonic-gate *addr += MMU_PAGESIZE;
8047c478bd9Sstevel@tonic-gate *size -= MMU_PAGESIZE;
8057c478bd9Sstevel@tonic-gate }
8067c478bd9Sstevel@tonic-gate
8077c478bd9Sstevel@tonic-gate /*
808ae115bc7Smrj * First we trim from the front of the range. Since kbm_probe()
8097c478bd9Sstevel@tonic-gate * walks ranges in virtual order, but addr/size are physical, we need
8107c478bd9Sstevel@tonic-gate * to the list until no changes are seen. This deals with the case
8117c478bd9Sstevel@tonic-gate * where page "p" is mapped at v, page "p + PAGESIZE" is mapped at w
8127c478bd9Sstevel@tonic-gate * but w < v.
8137c478bd9Sstevel@tonic-gate */
8147c478bd9Sstevel@tonic-gate do {
8157c478bd9Sstevel@tonic-gate change = 0;
8167c478bd9Sstevel@tonic-gate for (va = KERNEL_TEXT;
817ae115bc7Smrj *size > 0 && kbm_probe(&va, &len, &pfn, &prot) != 0;
8187c478bd9Sstevel@tonic-gate va = next_va) {
8197c478bd9Sstevel@tonic-gate
8207c478bd9Sstevel@tonic-gate next_va = va + len;
821ae115bc7Smrj pfn_addr = pfn_to_pa(pfn);
8227c478bd9Sstevel@tonic-gate pfn_eaddr = pfn_addr + len;
8237c478bd9Sstevel@tonic-gate
8247c478bd9Sstevel@tonic-gate if (pfn_addr <= *addr && pfn_eaddr > *addr) {
8257c478bd9Sstevel@tonic-gate change = 1;
8267c478bd9Sstevel@tonic-gate while (*size > 0 && len > 0) {
8277c478bd9Sstevel@tonic-gate *addr += MMU_PAGESIZE;
8287c478bd9Sstevel@tonic-gate *size -= MMU_PAGESIZE;
8297c478bd9Sstevel@tonic-gate len -= MMU_PAGESIZE;
8307c478bd9Sstevel@tonic-gate }
8317c478bd9Sstevel@tonic-gate }
8327c478bd9Sstevel@tonic-gate }
8337c478bd9Sstevel@tonic-gate if (change && prom_debug)
8347c478bd9Sstevel@tonic-gate prom_printf("\t\ttrim: a=%" PRIx64 ", s=%" PRIx64 "\n",
8357c478bd9Sstevel@tonic-gate *addr, *size);
8367c478bd9Sstevel@tonic-gate } while (change);
8377c478bd9Sstevel@tonic-gate
8387c478bd9Sstevel@tonic-gate /*
8397c478bd9Sstevel@tonic-gate * Trim pages from the end of the range.
8407c478bd9Sstevel@tonic-gate */
8417c478bd9Sstevel@tonic-gate for (va = KERNEL_TEXT;
842ae115bc7Smrj *size > 0 && kbm_probe(&va, &len, &pfn, &prot) != 0;
8437c478bd9Sstevel@tonic-gate va = next_va) {
8447c478bd9Sstevel@tonic-gate
8457c478bd9Sstevel@tonic-gate next_va = va + len;
846ae115bc7Smrj pfn_addr = pfn_to_pa(pfn);
8477c478bd9Sstevel@tonic-gate
8487c478bd9Sstevel@tonic-gate if (pfn_addr >= *addr && pfn_addr < *addr + *size)
8497c478bd9Sstevel@tonic-gate *size = pfn_addr - *addr;
8507c478bd9Sstevel@tonic-gate }
8517c478bd9Sstevel@tonic-gate
8527c478bd9Sstevel@tonic-gate if (prom_debug)
8537c478bd9Sstevel@tonic-gate prom_printf("\tFilter out: a=%" PRIx64 ", s=%" PRIx64 "\n",
8547c478bd9Sstevel@tonic-gate *addr, *size);
8557c478bd9Sstevel@tonic-gate }
8567c478bd9Sstevel@tonic-gate
8577c478bd9Sstevel@tonic-gate static void
kpm_init()8587c478bd9Sstevel@tonic-gate kpm_init()
8597c478bd9Sstevel@tonic-gate {
8607c478bd9Sstevel@tonic-gate struct segkpm_crargs b;
8617c478bd9Sstevel@tonic-gate
8627c478bd9Sstevel@tonic-gate /*
8637c478bd9Sstevel@tonic-gate * These variables were all designed for sfmmu in which segkpm is
8647c478bd9Sstevel@tonic-gate * mapped using a single pagesize - either 8KB or 4MB. On x86, we
8657c478bd9Sstevel@tonic-gate * might use 2+ page sizes on a single machine, so none of these
8667c478bd9Sstevel@tonic-gate * variables have a single correct value. They are set up as if we
8677c478bd9Sstevel@tonic-gate * always use a 4KB pagesize, which should do no harm. In the long
8687c478bd9Sstevel@tonic-gate * run, we should get rid of KPM's assumption that only a single
8697c478bd9Sstevel@tonic-gate * pagesize is used.
8707c478bd9Sstevel@tonic-gate */
8717c478bd9Sstevel@tonic-gate kpm_pgshft = MMU_PAGESHIFT;
8727c478bd9Sstevel@tonic-gate kpm_pgsz = MMU_PAGESIZE;
8737c478bd9Sstevel@tonic-gate kpm_pgoff = MMU_PAGEOFFSET;
8747c478bd9Sstevel@tonic-gate kpmp2pshft = 0;
8757c478bd9Sstevel@tonic-gate kpmpnpgs = 1;
8767c478bd9Sstevel@tonic-gate ASSERT(((uintptr_t)kpm_vbase & (kpm_pgsz - 1)) == 0);
8777c478bd9Sstevel@tonic-gate
8787c478bd9Sstevel@tonic-gate PRM_POINT("about to create segkpm");
8797c478bd9Sstevel@tonic-gate rw_enter(&kas.a_lock, RW_WRITER);
8807c478bd9Sstevel@tonic-gate
8817c478bd9Sstevel@tonic-gate if (seg_attach(&kas, kpm_vbase, kpm_size, segkpm) < 0)
8827c478bd9Sstevel@tonic-gate panic("cannot attach segkpm");
8837c478bd9Sstevel@tonic-gate
8847c478bd9Sstevel@tonic-gate b.prot = PROT_READ | PROT_WRITE;
8857c478bd9Sstevel@tonic-gate b.nvcolors = 1;
8867c478bd9Sstevel@tonic-gate
8877c478bd9Sstevel@tonic-gate if (segkpm_create(segkpm, (caddr_t)&b) != 0)
8887c478bd9Sstevel@tonic-gate panic("segkpm_create segkpm");
8897c478bd9Sstevel@tonic-gate
8907c478bd9Sstevel@tonic-gate rw_exit(&kas.a_lock);
891ae115bc7Smrj }
8927c478bd9Sstevel@tonic-gate
8937c478bd9Sstevel@tonic-gate /*
894ae115bc7Smrj * The debug info page provides enough information to allow external
895ae115bc7Smrj * inspectors (e.g. when running under a hypervisor) to bootstrap
896ae115bc7Smrj * themselves into allowing full-blown kernel debugging.
8977c478bd9Sstevel@tonic-gate */
898ae115bc7Smrj static void
init_debug_info(void)899ae115bc7Smrj init_debug_info(void)
900ae115bc7Smrj {
901ae115bc7Smrj caddr_t mem;
902ae115bc7Smrj debug_info_t *di;
903ae115bc7Smrj
904ae115bc7Smrj #ifndef __lint
905ae115bc7Smrj ASSERT(sizeof (debug_info_t) < MMU_PAGESIZE);
906ae115bc7Smrj #endif
907ae115bc7Smrj
908ae115bc7Smrj mem = BOP_ALLOC(bootops, (caddr_t)DEBUG_INFO_VA, MMU_PAGESIZE,
909ae115bc7Smrj MMU_PAGESIZE);
910ae115bc7Smrj
911ae115bc7Smrj if (mem != (caddr_t)DEBUG_INFO_VA)
912ae115bc7Smrj panic("BOP_ALLOC() failed");
913ae115bc7Smrj bzero(mem, MMU_PAGESIZE);
914ae115bc7Smrj
915ae115bc7Smrj di = (debug_info_t *)mem;
916ae115bc7Smrj
917ae115bc7Smrj di->di_magic = DEBUG_INFO_MAGIC;
918ae115bc7Smrj di->di_version = DEBUG_INFO_VERSION;
919843e1988Sjohnlev di->di_modules = (uintptr_t)&modules;
920843e1988Sjohnlev di->di_s_text = (uintptr_t)s_text;
921843e1988Sjohnlev di->di_e_text = (uintptr_t)e_text;
922843e1988Sjohnlev di->di_s_data = (uintptr_t)s_data;
923843e1988Sjohnlev di->di_e_data = (uintptr_t)e_data;
924843e1988Sjohnlev di->di_hat_htable_off = offsetof(hat_t, hat_htable);
925843e1988Sjohnlev di->di_ht_pfn_off = offsetof(htable_t, ht_pfn);
9267c478bd9Sstevel@tonic-gate }
9277c478bd9Sstevel@tonic-gate
9287c478bd9Sstevel@tonic-gate /*
929ae115bc7Smrj * Build the memlists and other kernel essential memory system data structures.
930ae115bc7Smrj * This is everything at valloc_base.
9317c478bd9Sstevel@tonic-gate */
9327c478bd9Sstevel@tonic-gate static void
startup_memlist(void)9337c478bd9Sstevel@tonic-gate startup_memlist(void)
9347c478bd9Sstevel@tonic-gate {
9357c478bd9Sstevel@tonic-gate size_t memlist_sz;
9367c478bd9Sstevel@tonic-gate size_t memseg_sz;
9377c478bd9Sstevel@tonic-gate size_t pagehash_sz;
9387c478bd9Sstevel@tonic-gate size_t pp_sz;
9397c478bd9Sstevel@tonic-gate uintptr_t va;
9407c478bd9Sstevel@tonic-gate size_t len;
9417c478bd9Sstevel@tonic-gate uint_t prot;
9427c478bd9Sstevel@tonic-gate pfn_t pfn;
9437c478bd9Sstevel@tonic-gate int memblocks;
9441de082f7SVikram Hegde pfn_t rsvd_high_pfn;
9451de082f7SVikram Hegde pgcnt_t rsvd_pgcnt;
9461de082f7SVikram Hegde size_t rsvdmemlist_sz;
9471de082f7SVikram Hegde int rsvdmemblocks;
9487c478bd9Sstevel@tonic-gate caddr_t pagecolor_mem;
9497c478bd9Sstevel@tonic-gate size_t pagecolor_memsz;
9507c478bd9Sstevel@tonic-gate caddr_t page_ctrs_mem;
9517c478bd9Sstevel@tonic-gate size_t page_ctrs_size;
952d7d93655Sblakej size_t pse_table_alloc_size;
9537c478bd9Sstevel@tonic-gate struct memlist *current;
9547c478bd9Sstevel@tonic-gate extern void startup_build_mem_nodes(struct memlist *);
9557c478bd9Sstevel@tonic-gate
9567c478bd9Sstevel@tonic-gate /* XX64 fix these - they should be in include files */
9577c478bd9Sstevel@tonic-gate extern size_t page_coloring_init(uint_t, int, int);
9587c478bd9Sstevel@tonic-gate extern void page_coloring_setup(caddr_t);
9597c478bd9Sstevel@tonic-gate
9607c478bd9Sstevel@tonic-gate PRM_POINT("startup_memlist() starting...");
9617c478bd9Sstevel@tonic-gate
9627c478bd9Sstevel@tonic-gate /*
9637c478bd9Sstevel@tonic-gate * Use leftover large page nucleus text/data space for loadable modules.
9647c478bd9Sstevel@tonic-gate * Use at most MODTEXT/MODDATA.
9657c478bd9Sstevel@tonic-gate */
966ae115bc7Smrj len = kbm_nucleus_size;
967ae115bc7Smrj ASSERT(len > MMU_PAGESIZE);
9687c478bd9Sstevel@tonic-gate
9697c478bd9Sstevel@tonic-gate moddata = (caddr_t)ROUND_UP_PAGE(e_data);
970ae115bc7Smrj e_moddata = (caddr_t)P2ROUNDUP((uintptr_t)e_data, (uintptr_t)len);
9717c478bd9Sstevel@tonic-gate if (e_moddata - moddata > MODDATA)
9727c478bd9Sstevel@tonic-gate e_moddata = moddata + MODDATA;
9737c478bd9Sstevel@tonic-gate
9747c478bd9Sstevel@tonic-gate modtext = (caddr_t)ROUND_UP_PAGE(e_text);
975ae115bc7Smrj e_modtext = (caddr_t)P2ROUNDUP((uintptr_t)e_text, (uintptr_t)len);
9767c478bd9Sstevel@tonic-gate if (e_modtext - modtext > MODTEXT)
9777c478bd9Sstevel@tonic-gate e_modtext = modtext + MODTEXT;
9787c478bd9Sstevel@tonic-gate
9797c478bd9Sstevel@tonic-gate econtig = e_moddata;
9807c478bd9Sstevel@tonic-gate
9817c478bd9Sstevel@tonic-gate PRM_DEBUG(modtext);
9827c478bd9Sstevel@tonic-gate PRM_DEBUG(e_modtext);
9837c478bd9Sstevel@tonic-gate PRM_DEBUG(moddata);
9847c478bd9Sstevel@tonic-gate PRM_DEBUG(e_moddata);
9857c478bd9Sstevel@tonic-gate PRM_DEBUG(econtig);
9867c478bd9Sstevel@tonic-gate
9877c478bd9Sstevel@tonic-gate /*
988ae115bc7Smrj * Examine the boot loader physical memory map to find out:
9897c478bd9Sstevel@tonic-gate * - total memory in system - physinstalled
9907c478bd9Sstevel@tonic-gate * - the max physical address - physmax
991ae115bc7Smrj * - the number of discontiguous segments of memory.
9927c478bd9Sstevel@tonic-gate */
9937c478bd9Sstevel@tonic-gate if (prom_debug)
994ae115bc7Smrj print_memlist("boot physinstalled",
9957c478bd9Sstevel@tonic-gate bootops->boot_mem->physinstalled);
996a3114836SGerry Liu installed_top_size_ex(bootops->boot_mem->physinstalled, &physmax,
9977c478bd9Sstevel@tonic-gate &physinstalled, &memblocks);
9987c478bd9Sstevel@tonic-gate PRM_DEBUG(physmax);
9997c478bd9Sstevel@tonic-gate PRM_DEBUG(physinstalled);
10007c478bd9Sstevel@tonic-gate PRM_DEBUG(memblocks);
10017c478bd9Sstevel@tonic-gate
10027c478bd9Sstevel@tonic-gate /*
1003a3114836SGerry Liu * Compute maximum physical address for memory DR operations.
1004a3114836SGerry Liu * Memory DR operations are unsupported on xpv or 32bit OSes.
1005a3114836SGerry Liu */
1006a3114836SGerry Liu #ifdef __amd64
1007a3114836SGerry Liu if (plat_dr_support_memory()) {
1008a3114836SGerry Liu if (plat_dr_physmax == 0) {
1009a3114836SGerry Liu uint_t pabits = UINT_MAX;
1010a3114836SGerry Liu
1011a3114836SGerry Liu cpuid_get_addrsize(CPU, &pabits, NULL);
1012a3114836SGerry Liu plat_dr_physmax = btop(1ULL << pabits);
1013a3114836SGerry Liu }
1014a3114836SGerry Liu if (plat_dr_physmax > PHYSMEM_MAX64)
1015a3114836SGerry Liu plat_dr_physmax = PHYSMEM_MAX64;
1016a3114836SGerry Liu } else
1017a3114836SGerry Liu #endif
1018a3114836SGerry Liu plat_dr_physmax = 0;
1019a3114836SGerry Liu
1020a3114836SGerry Liu /*
10211de082f7SVikram Hegde * Examine the bios reserved memory to find out:
10221de082f7SVikram Hegde * - the number of discontiguous segments of memory.
10231de082f7SVikram Hegde */
10241de082f7SVikram Hegde if (prom_debug)
10251de082f7SVikram Hegde print_memlist("boot reserved mem",
10261de082f7SVikram Hegde bootops->boot_mem->rsvdmem);
1027a3114836SGerry Liu installed_top_size_ex(bootops->boot_mem->rsvdmem, &rsvd_high_pfn,
10281de082f7SVikram Hegde &rsvd_pgcnt, &rsvdmemblocks);
10291de082f7SVikram Hegde PRM_DEBUG(rsvd_high_pfn);
10301de082f7SVikram Hegde PRM_DEBUG(rsvd_pgcnt);
10311de082f7SVikram Hegde PRM_DEBUG(rsvdmemblocks);
10321de082f7SVikram Hegde
10331de082f7SVikram Hegde /*
10347c478bd9Sstevel@tonic-gate * Initialize hat's mmu parameters.
10357c478bd9Sstevel@tonic-gate * Check for enforce-prot-exec in boot environment. It's used to
10367c478bd9Sstevel@tonic-gate * enable/disable support for the page table entry NX bit.
10377c478bd9Sstevel@tonic-gate * The default is to enforce PROT_EXEC on processors that support NX.
10387c478bd9Sstevel@tonic-gate * Boot seems to round up the "len", but 8 seems to be big enough.
10397c478bd9Sstevel@tonic-gate */
10407c478bd9Sstevel@tonic-gate mmu_init();
10417c478bd9Sstevel@tonic-gate
10427c478bd9Sstevel@tonic-gate #ifdef __i386
10437c478bd9Sstevel@tonic-gate /*
10447c478bd9Sstevel@tonic-gate * physmax is lowered if there is more memory than can be
10457c478bd9Sstevel@tonic-gate * physically addressed in 32 bit (PAE/non-PAE) modes.
10467c478bd9Sstevel@tonic-gate */
10477c478bd9Sstevel@tonic-gate if (mmu.pae_hat) {
10487c478bd9Sstevel@tonic-gate if (PFN_ABOVE64G(physmax)) {
10497c478bd9Sstevel@tonic-gate physinstalled -= (physmax - (PFN_64G - 1));
10507c478bd9Sstevel@tonic-gate physmax = PFN_64G - 1;
10517c478bd9Sstevel@tonic-gate }
10527c478bd9Sstevel@tonic-gate } else {
10537c478bd9Sstevel@tonic-gate if (PFN_ABOVE4G(physmax)) {
10547c478bd9Sstevel@tonic-gate physinstalled -= (physmax - (PFN_4G - 1));
10557c478bd9Sstevel@tonic-gate physmax = PFN_4G - 1;
10567c478bd9Sstevel@tonic-gate }
10577c478bd9Sstevel@tonic-gate }
10587c478bd9Sstevel@tonic-gate #endif
10597c478bd9Sstevel@tonic-gate
10607c478bd9Sstevel@tonic-gate startup_build_mem_nodes(bootops->boot_mem->physinstalled);
10617c478bd9Sstevel@tonic-gate
10627c478bd9Sstevel@tonic-gate if (BOP_GETPROPLEN(bootops, "enforce-prot-exec") >= 0) {
10637c478bd9Sstevel@tonic-gate int len = BOP_GETPROPLEN(bootops, "enforce-prot-exec");
10647c478bd9Sstevel@tonic-gate char value[8];
10657c478bd9Sstevel@tonic-gate
10667c478bd9Sstevel@tonic-gate if (len < 8)
10677c478bd9Sstevel@tonic-gate (void) BOP_GETPROP(bootops, "enforce-prot-exec", value);
10687c478bd9Sstevel@tonic-gate else
10697c478bd9Sstevel@tonic-gate (void) strcpy(value, "");
10707c478bd9Sstevel@tonic-gate if (strcmp(value, "off") == 0)
10717c478bd9Sstevel@tonic-gate mmu.pt_nx = 0;
10727c478bd9Sstevel@tonic-gate }
10737c478bd9Sstevel@tonic-gate PRM_DEBUG(mmu.pt_nx);
10747c478bd9Sstevel@tonic-gate
10757c478bd9Sstevel@tonic-gate /*
10767c478bd9Sstevel@tonic-gate * We will need page_t's for every page in the system, except for
10777c478bd9Sstevel@tonic-gate * memory mapped at or above above the start of the kernel text segment.
10787c478bd9Sstevel@tonic-gate *
10797c478bd9Sstevel@tonic-gate * pages above e_modtext are attributed to kernel debugger (obp_pages)
10807c478bd9Sstevel@tonic-gate */
10817c478bd9Sstevel@tonic-gate npages = physinstalled - 1; /* avail_filter() skips page 0, so "- 1" */
10827c478bd9Sstevel@tonic-gate obp_pages = 0;
10837c478bd9Sstevel@tonic-gate va = KERNEL_TEXT;
1084ae115bc7Smrj while (kbm_probe(&va, &len, &pfn, &prot) != 0) {
10857c478bd9Sstevel@tonic-gate npages -= len >> MMU_PAGESHIFT;
10867c478bd9Sstevel@tonic-gate if (va >= (uintptr_t)e_moddata)
10877c478bd9Sstevel@tonic-gate obp_pages += len >> MMU_PAGESHIFT;
10887c478bd9Sstevel@tonic-gate va += len;
10897c478bd9Sstevel@tonic-gate }
10907c478bd9Sstevel@tonic-gate PRM_DEBUG(npages);
10917c478bd9Sstevel@tonic-gate PRM_DEBUG(obp_pages);
10927c478bd9Sstevel@tonic-gate
10937c478bd9Sstevel@tonic-gate /*
109435b1ab99Sjosephb * If physmem is patched to be non-zero, use it instead of the computed
109535b1ab99Sjosephb * value unless it is larger than the actual amount of memory on hand.
10967c478bd9Sstevel@tonic-gate */
10974944b02eSkchow if (physmem == 0 || physmem > npages) {
10987c478bd9Sstevel@tonic-gate physmem = npages;
10994944b02eSkchow } else if (physmem < npages) {
1100f53ad214Skchow orig_npages = npages;
11017c478bd9Sstevel@tonic-gate npages = physmem;
11024944b02eSkchow }
11037c478bd9Sstevel@tonic-gate PRM_DEBUG(physmem);
11047c478bd9Sstevel@tonic-gate
11057c478bd9Sstevel@tonic-gate /*
11067c478bd9Sstevel@tonic-gate * We now compute the sizes of all the initial allocations for
11077c478bd9Sstevel@tonic-gate * structures the kernel needs in order do kmem_alloc(). These
11087c478bd9Sstevel@tonic-gate * include:
11097c478bd9Sstevel@tonic-gate * memsegs
11107c478bd9Sstevel@tonic-gate * memlists
11117c478bd9Sstevel@tonic-gate * page hash table
11127c478bd9Sstevel@tonic-gate * page_t's
11137c478bd9Sstevel@tonic-gate * page coloring data structs
11147c478bd9Sstevel@tonic-gate */
11157c478bd9Sstevel@tonic-gate memseg_sz = sizeof (struct memseg) * (memblocks + POSS_NEW_FRAGMENTS);
11167c478bd9Sstevel@tonic-gate ADD_TO_ALLOCATIONS(memseg_base, memseg_sz);
11177c478bd9Sstevel@tonic-gate PRM_DEBUG(memseg_sz);
11187c478bd9Sstevel@tonic-gate
11197c478bd9Sstevel@tonic-gate /*
1120ae115bc7Smrj * Reserve space for memlists. There's no real good way to know exactly
1121ae115bc7Smrj * how much room we'll need, but this should be a good upper bound.
11227c478bd9Sstevel@tonic-gate */
11237c478bd9Sstevel@tonic-gate memlist_sz = ROUND_UP_PAGE(2 * sizeof (struct memlist) *
11247c478bd9Sstevel@tonic-gate (memblocks + POSS_NEW_FRAGMENTS));
11257c478bd9Sstevel@tonic-gate ADD_TO_ALLOCATIONS(memlist, memlist_sz);
11267c478bd9Sstevel@tonic-gate PRM_DEBUG(memlist_sz);
11277c478bd9Sstevel@tonic-gate
11287c478bd9Sstevel@tonic-gate /*
11291de082f7SVikram Hegde * Reserve space for bios reserved memlists.
11301de082f7SVikram Hegde */
11311de082f7SVikram Hegde rsvdmemlist_sz = ROUND_UP_PAGE(2 * sizeof (struct memlist) *
11321de082f7SVikram Hegde (rsvdmemblocks + POSS_NEW_FRAGMENTS));
11331de082f7SVikram Hegde ADD_TO_ALLOCATIONS(bios_rsvd, rsvdmemlist_sz);
11341de082f7SVikram Hegde PRM_DEBUG(rsvdmemlist_sz);
11351de082f7SVikram Hegde
1136cb15d5d9SPeter Rival /* LINTED */
1137cb15d5d9SPeter Rival ASSERT(P2SAMEHIGHBIT((1 << PP_SHIFT), sizeof (struct page)));
11381de082f7SVikram Hegde /*
11397c478bd9Sstevel@tonic-gate * The page structure hash table size is a power of 2
11407c478bd9Sstevel@tonic-gate * such that the average hash chain length is PAGE_HASHAVELEN.
11417c478bd9Sstevel@tonic-gate */
11427c478bd9Sstevel@tonic-gate page_hashsz = npages / PAGE_HASHAVELEN;
1143cb15d5d9SPeter Rival page_hashsz_shift = highbit(page_hashsz);
1144cb15d5d9SPeter Rival page_hashsz = 1 << page_hashsz_shift;
11457c478bd9Sstevel@tonic-gate pagehash_sz = sizeof (struct page *) * page_hashsz;
11467c478bd9Sstevel@tonic-gate ADD_TO_ALLOCATIONS(page_hash, pagehash_sz);
11477c478bd9Sstevel@tonic-gate PRM_DEBUG(pagehash_sz);
11487c478bd9Sstevel@tonic-gate
11497c478bd9Sstevel@tonic-gate /*
1150ae115bc7Smrj * Set aside room for the page structures themselves.
11517c478bd9Sstevel@tonic-gate */
1152ae115bc7Smrj PRM_DEBUG(npages);
1153ae115bc7Smrj pp_sz = sizeof (struct page) * npages;
11547c478bd9Sstevel@tonic-gate ADD_TO_ALLOCATIONS(pp_base, pp_sz);
11557c478bd9Sstevel@tonic-gate PRM_DEBUG(pp_sz);
11567c478bd9Sstevel@tonic-gate
11577c478bd9Sstevel@tonic-gate /*
11587c478bd9Sstevel@tonic-gate * determine l2 cache info and memory size for page coloring
11597c478bd9Sstevel@tonic-gate */
11607c478bd9Sstevel@tonic-gate (void) getl2cacheinfo(CPU,
11617c478bd9Sstevel@tonic-gate &l2cache_sz, &l2cache_linesz, &l2cache_assoc);
11627c478bd9Sstevel@tonic-gate pagecolor_memsz =
11637c478bd9Sstevel@tonic-gate page_coloring_init(l2cache_sz, l2cache_linesz, l2cache_assoc);
11647c478bd9Sstevel@tonic-gate ADD_TO_ALLOCATIONS(pagecolor_mem, pagecolor_memsz);
11657c478bd9Sstevel@tonic-gate PRM_DEBUG(pagecolor_memsz);
11667c478bd9Sstevel@tonic-gate
11677c478bd9Sstevel@tonic-gate page_ctrs_size = page_ctrs_sz();
11687c478bd9Sstevel@tonic-gate ADD_TO_ALLOCATIONS(page_ctrs_mem, page_ctrs_size);
11697c478bd9Sstevel@tonic-gate PRM_DEBUG(page_ctrs_size);
11707c478bd9Sstevel@tonic-gate
1171d7d93655Sblakej /*
1172d7d93655Sblakej * Allocate the array that protects pp->p_selock.
1173d7d93655Sblakej */
1174d7d93655Sblakej pse_shift = size_pse_array(physmem, max_ncpus);
1175d7d93655Sblakej pse_table_size = 1 << pse_shift;
1176d7d93655Sblakej pse_table_alloc_size = pse_table_size * sizeof (pad_mutex_t);
1177d7d93655Sblakej ADD_TO_ALLOCATIONS(pse_mutex, pse_table_alloc_size);
1178d7d93655Sblakej
1179ae115bc7Smrj #if defined(__amd64)
11807c478bd9Sstevel@tonic-gate valloc_sz = ROUND_UP_LPAGE(valloc_sz);
1181ae115bc7Smrj valloc_base = VALLOC_BASE;
118235b1ab99Sjosephb
118335b1ab99Sjosephb /*
118435b1ab99Sjosephb * The default values of VALLOC_BASE and SEGKPM_BASE should work
118535b1ab99Sjosephb * for values of physmax up to 1 Terabyte. They need adjusting when
11866c8c89eaSKit Chow * memory is at addresses above 1 TB. When adjusted, segkpm_base must
11876c8c89eaSKit Chow * be aligned on KERNEL_REDZONE_SIZE boundary (span of top level pte).
118835b1ab99Sjosephb */
1189a3114836SGerry Liu if (physmax + 1 > mmu_btop(TERABYTE) ||
1190a3114836SGerry Liu plat_dr_physmax > mmu_btop(TERABYTE)) {
119135b1ab99Sjosephb uint64_t kpm_resv_amount = mmu_ptob(physmax + 1);
119235b1ab99Sjosephb
1193a3114836SGerry Liu if (kpm_resv_amount < mmu_ptob(plat_dr_physmax)) {
1194a3114836SGerry Liu kpm_resv_amount = mmu_ptob(plat_dr_physmax);
1195a3114836SGerry Liu }
1196a3114836SGerry Liu
11976c8c89eaSKit Chow segkpm_base = -(P2ROUNDUP((2 * kpm_resv_amount),
11986c8c89eaSKit Chow KERNEL_REDZONE_SIZE)); /* down from top VA */
119935b1ab99Sjosephb
120035b1ab99Sjosephb /* make sure we leave some space for user apps above hole */
120135b1ab99Sjosephb segkpm_base = MAX(segkpm_base, AMD64_VA_HOLE_END + TERABYTE);
120235b1ab99Sjosephb if (segkpm_base > SEGKPM_BASE)
120335b1ab99Sjosephb segkpm_base = SEGKPM_BASE;
120435b1ab99Sjosephb PRM_DEBUG(segkpm_base);
120535b1ab99Sjosephb
12066c8c89eaSKit Chow valloc_base = segkpm_base + P2ROUNDUP(kpm_resv_amount, ONE_GIG);
12076c8c89eaSKit Chow if (valloc_base < segkpm_base)
12086c8c89eaSKit Chow panic("not enough kernel VA to support memory size");
120935b1ab99Sjosephb PRM_DEBUG(valloc_base);
121035b1ab99Sjosephb }
1211ae115bc7Smrj #else /* __i386 */
1212ae115bc7Smrj valloc_base = (uintptr_t)(MISC_VA_BASE - valloc_sz);
1213ae115bc7Smrj valloc_base = P2ALIGN(valloc_base, mmu.level_size[1]);
12147c478bd9Sstevel@tonic-gate PRM_DEBUG(valloc_base);
121535b1ab99Sjosephb #endif /* __i386 */
1216ae115bc7Smrj
1217ae115bc7Smrj /*
1218ae115bc7Smrj * do all the initial allocations
1219ae115bc7Smrj */
1220ae115bc7Smrj perform_allocations();
1221ae115bc7Smrj
1222ae115bc7Smrj /*
1223ae115bc7Smrj * Build phys_install and phys_avail in kernel memspace.
1224ae115bc7Smrj * - phys_install should be all memory in the system.
1225ae115bc7Smrj * - phys_avail is phys_install minus any memory mapped before this
1226ae115bc7Smrj * point above KERNEL_TEXT.
1227ae115bc7Smrj */
1228ae115bc7Smrj current = phys_install = memlist;
1229ae115bc7Smrj copy_memlist_filter(bootops->boot_mem->physinstalled, ¤t, NULL);
1230ae115bc7Smrj if ((caddr_t)current > (caddr_t)memlist + memlist_sz)
1231ae115bc7Smrj panic("physinstalled was too big!");
1232ae115bc7Smrj if (prom_debug)
1233ae115bc7Smrj print_memlist("phys_install", phys_install);
1234ae115bc7Smrj
1235ae115bc7Smrj phys_avail = current;
1236ae115bc7Smrj PRM_POINT("Building phys_avail:\n");
1237ae115bc7Smrj copy_memlist_filter(bootops->boot_mem->physinstalled, ¤t,
1238ae115bc7Smrj avail_filter);
1239ae115bc7Smrj if ((caddr_t)current > (caddr_t)memlist + memlist_sz)
1240ae115bc7Smrj panic("physavail was too big!");
1241ae115bc7Smrj if (prom_debug)
1242ae115bc7Smrj print_memlist("phys_avail", phys_avail);
1243a3114836SGerry Liu #ifndef __xpv
1244a3114836SGerry Liu /*
1245a3114836SGerry Liu * Free unused memlist items, which may be used by memory DR driver
1246a3114836SGerry Liu * at runtime.
1247a3114836SGerry Liu */
1248a3114836SGerry Liu if ((caddr_t)current < (caddr_t)memlist + memlist_sz) {
1249a3114836SGerry Liu memlist_free_block((caddr_t)current,
1250a3114836SGerry Liu (caddr_t)memlist + memlist_sz - (caddr_t)current);
1251a3114836SGerry Liu }
1252a3114836SGerry Liu #endif
1253ae115bc7Smrj
1254ae115bc7Smrj /*
12551de082f7SVikram Hegde * Build bios reserved memspace
12561de082f7SVikram Hegde */
12571de082f7SVikram Hegde current = bios_rsvd;
12581de082f7SVikram Hegde copy_memlist_filter(bootops->boot_mem->rsvdmem, ¤t, NULL);
12591de082f7SVikram Hegde if ((caddr_t)current > (caddr_t)bios_rsvd + rsvdmemlist_sz)
12601de082f7SVikram Hegde panic("bios_rsvd was too big!");
12611de082f7SVikram Hegde if (prom_debug)
12621de082f7SVikram Hegde print_memlist("bios_rsvd", bios_rsvd);
1263a3114836SGerry Liu #ifndef __xpv
1264a3114836SGerry Liu /*
1265a3114836SGerry Liu * Free unused memlist items, which may be used by memory DR driver
1266a3114836SGerry Liu * at runtime.
1267a3114836SGerry Liu */
1268a3114836SGerry Liu if ((caddr_t)current < (caddr_t)bios_rsvd + rsvdmemlist_sz) {
1269a3114836SGerry Liu memlist_free_block((caddr_t)current,
1270a3114836SGerry Liu (caddr_t)bios_rsvd + rsvdmemlist_sz - (caddr_t)current);
1271a3114836SGerry Liu }
1272a3114836SGerry Liu #endif
12731de082f7SVikram Hegde
12741de082f7SVikram Hegde /*
1275ae115bc7Smrj * setup page coloring
1276ae115bc7Smrj */
1277ae115bc7Smrj page_coloring_setup(pagecolor_mem);
1278ae115bc7Smrj page_lock_init(); /* currently a no-op */
1279ae115bc7Smrj
1280ae115bc7Smrj /*
1281ae115bc7Smrj * free page list counters
1282ae115bc7Smrj */
1283ae115bc7Smrj (void) page_ctrs_alloc(page_ctrs_mem);
1284ae115bc7Smrj
1285ae115bc7Smrj /*
128606fb6a36Sdv142724 * Size the pcf array based on the number of cpus in the box at
128706fb6a36Sdv142724 * boot time.
128806fb6a36Sdv142724 */
128906fb6a36Sdv142724
129006fb6a36Sdv142724 pcf_init();
129106fb6a36Sdv142724
129206fb6a36Sdv142724 /*
1293ae115bc7Smrj * Initialize the page structures from the memory lists.
1294ae115bc7Smrj */
1295ae115bc7Smrj availrmem_initial = availrmem = freemem = 0;
1296ae115bc7Smrj PRM_POINT("Calling kphysm_init()...");
1297ae115bc7Smrj npages = kphysm_init(pp_base, npages);
1298ae115bc7Smrj PRM_POINT("kphysm_init() done");
1299ae115bc7Smrj PRM_DEBUG(npages);
1300ae115bc7Smrj
1301ae115bc7Smrj init_debug_info();
1302ae115bc7Smrj
1303ae115bc7Smrj /*
1304ae115bc7Smrj * Now that page_t's have been initialized, remove all the
1305ae115bc7Smrj * initial allocation pages from the kernel free page lists.
1306ae115bc7Smrj */
1307ae115bc7Smrj boot_mapin((caddr_t)valloc_base, valloc_sz);
13080cfdb603Sjosephb boot_mapin((caddr_t)MISC_VA_BASE, MISC_VA_SIZE);
1309ae115bc7Smrj PRM_POINT("startup_memlist() done");
1310ae115bc7Smrj
1311ae115bc7Smrj PRM_DEBUG(valloc_sz);
13122cb27123Saguzovsk
1313567d55e1Saguzovsk #if defined(__amd64)
1314567d55e1Saguzovsk if ((availrmem >> (30 - MMU_PAGESHIFT)) >=
1315567d55e1Saguzovsk textrepl_min_gb && l2cache_sz <= 2 << 20) {
1316567d55e1Saguzovsk extern size_t textrepl_size_thresh;
13172cb27123Saguzovsk textrepl_size_thresh = (16 << 20) - 1;
13182cb27123Saguzovsk }
1319567d55e1Saguzovsk #endif
1320ae115bc7Smrj }
1321ae115bc7Smrj
1322ae115bc7Smrj /*
1323ae115bc7Smrj * Layout the kernel's part of address space and initialize kmem allocator.
1324ae115bc7Smrj */
1325ae115bc7Smrj static void
startup_kmem(void)1326ae115bc7Smrj startup_kmem(void)
1327ae115bc7Smrj {
1328932dc8e5Sdp78419 extern void page_set_colorequiv_arr(void);
1329932dc8e5Sdp78419
1330ae115bc7Smrj PRM_POINT("startup_kmem() starting...");
13317c478bd9Sstevel@tonic-gate
13327c478bd9Sstevel@tonic-gate #if defined(__amd64)
13337c478bd9Sstevel@tonic-gate if (eprom_kernelbase && eprom_kernelbase != KERNELBASE)
13347c478bd9Sstevel@tonic-gate cmn_err(CE_NOTE, "!kernelbase cannot be changed on 64-bit "
13357c478bd9Sstevel@tonic-gate "systems.");
133635b1ab99Sjosephb kernelbase = segkpm_base - KERNEL_REDZONE_SIZE;
13377c478bd9Sstevel@tonic-gate core_base = (uintptr_t)COREHEAP_BASE;
1338ae115bc7Smrj core_size = (size_t)MISC_VA_BASE - COREHEAP_BASE;
13397c478bd9Sstevel@tonic-gate #else /* __i386 */
13407c478bd9Sstevel@tonic-gate /*
13417c478bd9Sstevel@tonic-gate * We configure kernelbase based on:
13427c478bd9Sstevel@tonic-gate *
13437c478bd9Sstevel@tonic-gate * 1. user specified kernelbase via eeprom command. Value cannot exceed
13447c478bd9Sstevel@tonic-gate * KERNELBASE_MAX. we large page align eprom_kernelbase
13457c478bd9Sstevel@tonic-gate *
13467c478bd9Sstevel@tonic-gate * 2. Default to KERNELBASE and adjust to 2X less the size for page_t.
13477c478bd9Sstevel@tonic-gate * On large memory systems we must lower kernelbase to allow
13487c478bd9Sstevel@tonic-gate * enough room for page_t's for all of memory.
13497c478bd9Sstevel@tonic-gate *
13507c478bd9Sstevel@tonic-gate * The value set here, might be changed a little later.
13517c478bd9Sstevel@tonic-gate */
13527c478bd9Sstevel@tonic-gate if (eprom_kernelbase) {
13537c478bd9Sstevel@tonic-gate kernelbase = eprom_kernelbase & mmu.level_mask[1];
13547c478bd9Sstevel@tonic-gate if (kernelbase > KERNELBASE_MAX)
13557c478bd9Sstevel@tonic-gate kernelbase = KERNELBASE_MAX;
13567c478bd9Sstevel@tonic-gate } else {
13577c478bd9Sstevel@tonic-gate kernelbase = (uintptr_t)KERNELBASE;
13587c478bd9Sstevel@tonic-gate kernelbase -= ROUND_UP_4MEG(2 * valloc_sz);
13597c478bd9Sstevel@tonic-gate }
13607c478bd9Sstevel@tonic-gate ASSERT((kernelbase & mmu.level_offset[1]) == 0);
1361ae115bc7Smrj core_base = valloc_base;
13627c478bd9Sstevel@tonic-gate core_size = 0;
1363ae115bc7Smrj #endif /* __i386 */
13647c478bd9Sstevel@tonic-gate
13657c478bd9Sstevel@tonic-gate PRM_DEBUG(core_base);
13667c478bd9Sstevel@tonic-gate PRM_DEBUG(core_size);
1367ae115bc7Smrj PRM_DEBUG(kernelbase);
13687c478bd9Sstevel@tonic-gate
136935b1ab99Sjosephb #if defined(__i386)
13707c478bd9Sstevel@tonic-gate segkp_fromheap = 1;
1371ae115bc7Smrj #endif /* __i386 */
137235b1ab99Sjosephb
13737c478bd9Sstevel@tonic-gate ekernelheap = (char *)core_base;
1374ae115bc7Smrj PRM_DEBUG(ekernelheap);
13757c478bd9Sstevel@tonic-gate
13767c478bd9Sstevel@tonic-gate /*
13777c478bd9Sstevel@tonic-gate * Now that we know the real value of kernelbase,
13787c478bd9Sstevel@tonic-gate * update variables that were initialized with a value of
13797c478bd9Sstevel@tonic-gate * KERNELBASE (in common/conf/param.c).
13807c478bd9Sstevel@tonic-gate *
13817c478bd9Sstevel@tonic-gate * XXX The problem with this sort of hackery is that the
13827c478bd9Sstevel@tonic-gate * compiler just may feel like putting the const declarations
13837c478bd9Sstevel@tonic-gate * (in param.c) into the .text section. Perhaps they should
13847c478bd9Sstevel@tonic-gate * just be declared as variables there?
13857c478bd9Sstevel@tonic-gate */
13867c478bd9Sstevel@tonic-gate
13877c478bd9Sstevel@tonic-gate *(uintptr_t *)&_kernelbase = kernelbase;
13887c478bd9Sstevel@tonic-gate *(uintptr_t *)&_userlimit = kernelbase;
1389ccbaea4fSjosephb #if defined(__amd64)
1390ccbaea4fSjosephb *(uintptr_t *)&_userlimit -= KERNELBASE - USERLIMIT;
1391ccbaea4fSjosephb #else
13927c478bd9Sstevel@tonic-gate *(uintptr_t *)&_userlimit32 = _userlimit;
13937c478bd9Sstevel@tonic-gate #endif
13947c478bd9Sstevel@tonic-gate PRM_DEBUG(_kernelbase);
13957c478bd9Sstevel@tonic-gate PRM_DEBUG(_userlimit);
13967c478bd9Sstevel@tonic-gate PRM_DEBUG(_userlimit32);
13977c478bd9Sstevel@tonic-gate
139835b1ab99Sjosephb layout_kernel_va();
139935b1ab99Sjosephb
140035b1ab99Sjosephb #if defined(__i386)
140135b1ab99Sjosephb /*
140235b1ab99Sjosephb * If segmap is too large we can push the bottom of the kernel heap
140335b1ab99Sjosephb * higher than the base. Or worse, it could exceed the top of the
140435b1ab99Sjosephb * VA space entirely, causing it to wrap around.
140535b1ab99Sjosephb */
140635b1ab99Sjosephb if (kernelheap >= ekernelheap || (uintptr_t)kernelheap < kernelbase)
140735b1ab99Sjosephb panic("too little address space available for kernelheap,"
140835b1ab99Sjosephb " use eeprom for lower kernelbase or smaller segmapsize");
140935b1ab99Sjosephb #endif /* __i386 */
141035b1ab99Sjosephb
14117c478bd9Sstevel@tonic-gate /*
14127c478bd9Sstevel@tonic-gate * Initialize the kernel heap. Note 3rd argument must be > 1st.
14137c478bd9Sstevel@tonic-gate */
141435b1ab99Sjosephb kernelheap_init(kernelheap, ekernelheap,
141535b1ab99Sjosephb kernelheap + MMU_PAGESIZE,
1416ae115bc7Smrj (void *)core_base, (void *)(core_base + core_size));
14177c478bd9Sstevel@tonic-gate
1418843e1988Sjohnlev #if defined(__xpv)
1419843e1988Sjohnlev /*
1420843e1988Sjohnlev * Link pending events struct into cpu struct
1421843e1988Sjohnlev */
1422843e1988Sjohnlev CPU->cpu_m.mcpu_evt_pend = &cpu0_evt_data;
1423843e1988Sjohnlev #endif
14247c478bd9Sstevel@tonic-gate /*
14257c478bd9Sstevel@tonic-gate * Initialize kernel memory allocator.
14267c478bd9Sstevel@tonic-gate */
14277c478bd9Sstevel@tonic-gate kmem_init();
14287c478bd9Sstevel@tonic-gate
14297c478bd9Sstevel@tonic-gate /*
1430932dc8e5Sdp78419 * Factor in colorequiv to check additional 'equivalent' bins
1431932dc8e5Sdp78419 */
1432932dc8e5Sdp78419 page_set_colorequiv_arr();
1433932dc8e5Sdp78419
1434932dc8e5Sdp78419 /*
14357c478bd9Sstevel@tonic-gate * print this out early so that we know what's going on
14367c478bd9Sstevel@tonic-gate */
14377417cfdeSKuriakose Kuruvilla print_x86_featureset(x86_featureset);
14387c478bd9Sstevel@tonic-gate
14397c478bd9Sstevel@tonic-gate /*
14407c478bd9Sstevel@tonic-gate * Initialize bp_mapin().
14417c478bd9Sstevel@tonic-gate */
14427c478bd9Sstevel@tonic-gate bp_init(MMU_PAGESIZE, HAT_STORECACHING_OK);
14437c478bd9Sstevel@tonic-gate
1444f53ad214Skchow /*
1445f53ad214Skchow * orig_npages is non-zero if physmem has been configured for less
1446f53ad214Skchow * than the available memory.
1447f53ad214Skchow */
1448f53ad214Skchow if (orig_npages) {
144935b1ab99Sjosephb cmn_err(CE_WARN, "!%slimiting physmem to 0x%lx of 0x%lx pages",
145035b1ab99Sjosephb (npages == PHYSMEM ? "Due to virtual address space " : ""),
1451f53ad214Skchow npages, orig_npages);
1452f53ad214Skchow }
14537c478bd9Sstevel@tonic-gate #if defined(__i386)
14547c478bd9Sstevel@tonic-gate if (eprom_kernelbase && (eprom_kernelbase != kernelbase))
14557c478bd9Sstevel@tonic-gate cmn_err(CE_WARN, "kernelbase value, User specified 0x%lx, "
14567c478bd9Sstevel@tonic-gate "System using 0x%lx",
14577c478bd9Sstevel@tonic-gate (uintptr_t)eprom_kernelbase, (uintptr_t)kernelbase);
14587c478bd9Sstevel@tonic-gate #endif
14597c478bd9Sstevel@tonic-gate
14607c478bd9Sstevel@tonic-gate #ifdef KERNELBASE_ABI_MIN
14617c478bd9Sstevel@tonic-gate if (kernelbase < (uintptr_t)KERNELBASE_ABI_MIN) {
14627c478bd9Sstevel@tonic-gate cmn_err(CE_NOTE, "!kernelbase set to 0x%lx, system is not "
14637c478bd9Sstevel@tonic-gate "i386 ABI compliant.", (uintptr_t)kernelbase);
14647c478bd9Sstevel@tonic-gate }
14657c478bd9Sstevel@tonic-gate #endif
14667c478bd9Sstevel@tonic-gate
1467a3114836SGerry Liu #ifndef __xpv
1468a3114836SGerry Liu if (plat_dr_support_memory()) {
1469a3114836SGerry Liu mem_config_init();
1470a3114836SGerry Liu }
1471a3114836SGerry Liu #else /* __xpv */
1472843e1988Sjohnlev /*
1473843e1988Sjohnlev * Some of the xen start information has to be relocated up
1474843e1988Sjohnlev * into the kernel's permanent address space.
1475843e1988Sjohnlev */
1476843e1988Sjohnlev PRM_POINT("calling xen_relocate_start_info()");
1477843e1988Sjohnlev xen_relocate_start_info();
1478843e1988Sjohnlev PRM_POINT("xen_relocate_start_info() done");
1479843e1988Sjohnlev
1480843e1988Sjohnlev /*
1481843e1988Sjohnlev * (Update the vcpu pointer in our cpu structure to point into
1482843e1988Sjohnlev * the relocated shared info.)
1483843e1988Sjohnlev */
1484843e1988Sjohnlev CPU->cpu_m.mcpu_vcpu_info =
1485843e1988Sjohnlev &HYPERVISOR_shared_info->vcpu_info[CPU->cpu_id];
1486a3114836SGerry Liu #endif /* __xpv */
1487843e1988Sjohnlev
1488ae115bc7Smrj PRM_POINT("startup_kmem() done");
14897c478bd9Sstevel@tonic-gate }
14907c478bd9Sstevel@tonic-gate
1491551bc2a6Smrj #ifndef __xpv
1492551bc2a6Smrj /*
1493551bc2a6Smrj * If we have detected that we are running in an HVM environment, we need
1494551bc2a6Smrj * to prepend the PV driver directory to the module search path.
1495551bc2a6Smrj */
1496551bc2a6Smrj #define HVM_MOD_DIR "/platform/i86hvm/kernel"
1497551bc2a6Smrj static void
update_default_path()1498551bc2a6Smrj update_default_path()
1499551bc2a6Smrj {
1500551bc2a6Smrj char *current, *newpath;
1501551bc2a6Smrj int newlen;
1502551bc2a6Smrj
1503551bc2a6Smrj /*
1504551bc2a6Smrj * We are about to resync with krtld. krtld will reset its
1505551bc2a6Smrj * internal module search path iff Solaris has set default_path.
1506551bc2a6Smrj * We want to be sure we're prepending this new directory to the
1507551bc2a6Smrj * right search path.
1508551bc2a6Smrj */
1509551bc2a6Smrj current = (default_path == NULL) ? kobj_module_path : default_path;
1510551bc2a6Smrj
1511b6611e3bSStuart Maybee newlen = strlen(HVM_MOD_DIR) + strlen(current) + 2;
1512551bc2a6Smrj newpath = kmem_alloc(newlen, KM_SLEEP);
1513551bc2a6Smrj (void) strcpy(newpath, HVM_MOD_DIR);
1514551bc2a6Smrj (void) strcat(newpath, " ");
1515551bc2a6Smrj (void) strcat(newpath, current);
1516551bc2a6Smrj
1517551bc2a6Smrj default_path = newpath;
1518551bc2a6Smrj }
1519551bc2a6Smrj #endif
1520551bc2a6Smrj
15217c478bd9Sstevel@tonic-gate static void
startup_modules(void)15227c478bd9Sstevel@tonic-gate startup_modules(void)
15237c478bd9Sstevel@tonic-gate {
1524ed5289f9SKen Erickson int cnt;
15257c478bd9Sstevel@tonic-gate extern void prom_setup(void);
1526ed5289f9SKen Erickson int32_t v, h;
1527ed5289f9SKen Erickson char d[11];
1528ed5289f9SKen Erickson char *cp;
1529e4b86885SCheng Sean Ye cmi_hdl_t hdl;
15307c478bd9Sstevel@tonic-gate
15317c478bd9Sstevel@tonic-gate PRM_POINT("startup_modules() starting...");
1532843e1988Sjohnlev
1533843e1988Sjohnlev #ifndef __xpv
15347c478bd9Sstevel@tonic-gate /*
15357c478bd9Sstevel@tonic-gate * Initialize ten-micro second timer so that drivers will
15367c478bd9Sstevel@tonic-gate * not get short changed in their init phase. This was
15377c478bd9Sstevel@tonic-gate * not getting called until clkinit which, on fast cpu's
15387c478bd9Sstevel@tonic-gate * caused the drv_usecwait to be way too short.
15397c478bd9Sstevel@tonic-gate */
15407c478bd9Sstevel@tonic-gate microfind();
1541551bc2a6Smrj
154279ec9da8SYuri Pankov if ((get_hwenv() & HW_XEN_HVM) != 0)
1543551bc2a6Smrj update_default_path();
1544843e1988Sjohnlev #endif
15457c478bd9Sstevel@tonic-gate
15467c478bd9Sstevel@tonic-gate /*
15477c478bd9Sstevel@tonic-gate * Read the GMT lag from /etc/rtc_config.
15487c478bd9Sstevel@tonic-gate */
1549ae115bc7Smrj sgmtl(process_rtc_config_file());
15507c478bd9Sstevel@tonic-gate
15517c478bd9Sstevel@tonic-gate /*
15527c478bd9Sstevel@tonic-gate * Calculate default settings of system parameters based upon
15537c478bd9Sstevel@tonic-gate * maxusers, yet allow to be overridden via the /etc/system file.
15547c478bd9Sstevel@tonic-gate */
15557c478bd9Sstevel@tonic-gate param_calc(0);
15567c478bd9Sstevel@tonic-gate
15577c478bd9Sstevel@tonic-gate mod_setup();
15587c478bd9Sstevel@tonic-gate
15597c478bd9Sstevel@tonic-gate /*
15607c478bd9Sstevel@tonic-gate * Initialize system parameters.
15617c478bd9Sstevel@tonic-gate */
15627c478bd9Sstevel@tonic-gate param_init();
15637c478bd9Sstevel@tonic-gate
15647c478bd9Sstevel@tonic-gate /*
15659acbbeafSnn35248 * Initialize the default brands
15669acbbeafSnn35248 */
15679acbbeafSnn35248 brand_init();
15689acbbeafSnn35248
15699acbbeafSnn35248 /*
15707c478bd9Sstevel@tonic-gate * maxmem is the amount of physical memory we're playing with.
15717c478bd9Sstevel@tonic-gate */
15727c478bd9Sstevel@tonic-gate maxmem = physmem;
15737c478bd9Sstevel@tonic-gate
15747c478bd9Sstevel@tonic-gate /*
15757c478bd9Sstevel@tonic-gate * Initialize segment management stuff.
15767c478bd9Sstevel@tonic-gate */
15777c478bd9Sstevel@tonic-gate seg_init();
15787c478bd9Sstevel@tonic-gate
15797c478bd9Sstevel@tonic-gate if (modload("fs", "specfs") == -1)
15807c478bd9Sstevel@tonic-gate halt("Can't load specfs");
15817c478bd9Sstevel@tonic-gate
15827c478bd9Sstevel@tonic-gate if (modload("fs", "devfs") == -1)
15837c478bd9Sstevel@tonic-gate halt("Can't load devfs");
15847c478bd9Sstevel@tonic-gate
1585facf4a8dSllai1 if (modload("fs", "dev") == -1)
1586facf4a8dSllai1 halt("Can't load dev");
1587facf4a8dSllai1
158835a5a358SJonathan Adams if (modload("fs", "procfs") == -1)
158935a5a358SJonathan Adams halt("Can't load procfs");
159035a5a358SJonathan Adams
159145916cd2Sjpk (void) modloadonly("sys", "lbl_edition");
159245916cd2Sjpk
15937c478bd9Sstevel@tonic-gate dispinit();
15947c478bd9Sstevel@tonic-gate
15957c478bd9Sstevel@tonic-gate /* Read cluster configuration data. */
15967c478bd9Sstevel@tonic-gate clconf_init();
15977c478bd9Sstevel@tonic-gate
1598843e1988Sjohnlev #if defined(__xpv)
1599349b53ddSStuart Maybee (void) ec_init();
1600843e1988Sjohnlev gnttab_init();
1601843e1988Sjohnlev (void) xs_early_init();
1602843e1988Sjohnlev #endif /* __xpv */
1603843e1988Sjohnlev
16047c478bd9Sstevel@tonic-gate /*
16057c478bd9Sstevel@tonic-gate * Create a kernel device tree. First, create rootnex and
16067c478bd9Sstevel@tonic-gate * then invoke bus specific code to probe devices.
16077c478bd9Sstevel@tonic-gate */
16087c478bd9Sstevel@tonic-gate setup_ddi();
16097aec1d6eScindi
1610074bb90dSTom Pothier #ifdef __xpv
1611074bb90dSTom Pothier if (DOMAIN_IS_INITDOMAIN(xen_info))
1612074bb90dSTom Pothier #endif
1613074bb90dSTom Pothier {
1614074bb90dSTom Pothier /*
1615074bb90dSTom Pothier * Load the System Management BIOS into the global ksmbios
1616074bb90dSTom Pothier * handle, if an SMBIOS is present on this system.
1617074bb90dSTom Pothier */
1618074bb90dSTom Pothier ksmbios = smbios_open(NULL, SMB_VERSION, ksmbios_flags, NULL);
1619074bb90dSTom Pothier }
1620074bb90dSTom Pothier
1621074bb90dSTom Pothier
16227aec1d6eScindi /*
16239e3e4df2SGarrett D'Amore * Originally clconf_init() apparently needed the hostid. But
16249e3e4df2SGarrett D'Amore * this no longer appears to be true - it uses its own nodeid.
16259e3e4df2SGarrett D'Amore * By placing the hostid logic here, we are able to make use of
16269e3e4df2SGarrett D'Amore * the SMBIOS UUID.
16279e3e4df2SGarrett D'Amore */
16289e3e4df2SGarrett D'Amore if ((h = set_soft_hostid()) == HW_INVALID_HOSTID) {
16299e3e4df2SGarrett D'Amore cmn_err(CE_WARN, "Unable to set hostid");
16309e3e4df2SGarrett D'Amore } else {
16319e3e4df2SGarrett D'Amore for (v = h, cnt = 0; cnt < 10; cnt++) {
16329e3e4df2SGarrett D'Amore d[cnt] = (char)(v % 10);
16339e3e4df2SGarrett D'Amore v /= 10;
16349e3e4df2SGarrett D'Amore if (v == 0)
16359e3e4df2SGarrett D'Amore break;
16369e3e4df2SGarrett D'Amore }
16379e3e4df2SGarrett D'Amore for (cp = hw_serial; cnt >= 0; cnt--)
16389e3e4df2SGarrett D'Amore *cp++ = d[cnt] + '0';
16399e3e4df2SGarrett D'Amore *cp = 0;
16409e3e4df2SGarrett D'Amore }
16419e3e4df2SGarrett D'Amore
16429e3e4df2SGarrett D'Amore /*
1643e4b86885SCheng Sean Ye * Set up the CPU module subsystem for the boot cpu in the native
1644e4b86885SCheng Sean Ye * case, and all physical cpu resource in the xpv dom0 case.
1645e4b86885SCheng Sean Ye * Modifies the device tree, so this must be done after
1646e4b86885SCheng Sean Ye * setup_ddi().
16477aec1d6eScindi */
1648e4b86885SCheng Sean Ye #ifdef __xpv
1649e4b86885SCheng Sean Ye /*
1650e4b86885SCheng Sean Ye * If paravirtualized and on dom0 then we initialize all physical
1651e4b86885SCheng Sean Ye * cpu handles now; if paravirtualized on a domU then do not
1652e4b86885SCheng Sean Ye * initialize.
1653e4b86885SCheng Sean Ye */
1654e4b86885SCheng Sean Ye if (DOMAIN_IS_INITDOMAIN(xen_info)) {
1655e4b86885SCheng Sean Ye xen_mc_lcpu_cookie_t cpi;
16567aec1d6eScindi
1657e4b86885SCheng Sean Ye for (cpi = xen_physcpu_next(NULL); cpi != NULL;
1658e4b86885SCheng Sean Ye cpi = xen_physcpu_next(cpi)) {
1659e4b86885SCheng Sean Ye if ((hdl = cmi_init(CMI_HDL_SOLARIS_xVM_MCA,
1660e4b86885SCheng Sean Ye xen_physcpu_chipid(cpi), xen_physcpu_coreid(cpi),
1661e4b86885SCheng Sean Ye xen_physcpu_strandid(cpi))) != NULL &&
16627417cfdeSKuriakose Kuruvilla is_x86_feature(x86_featureset, X86FSET_MCA))
166320c794b3Sgavinm cmi_mca_init(hdl);
166420c794b3Sgavinm }
166520c794b3Sgavinm }
1666e4b86885SCheng Sean Ye #else
1667e4b86885SCheng Sean Ye /*
1668e4b86885SCheng Sean Ye * Initialize a handle for the boot cpu - others will initialize
1669e4b86885SCheng Sean Ye * as they startup. Do not do this if we know we are in an HVM domU.
1670e4b86885SCheng Sean Ye */
167179ec9da8SYuri Pankov if ((get_hwenv() & HW_XEN_HVM) == 0 &&
1672e4b86885SCheng Sean Ye (hdl = cmi_init(CMI_HDL_NATIVE, cmi_ntv_hwchipid(CPU),
1673e4b86885SCheng Sean Ye cmi_ntv_hwcoreid(CPU), cmi_ntv_hwstrandid(CPU))) != NULL &&
16747417cfdeSKuriakose Kuruvilla is_x86_feature(x86_featureset, X86FSET_MCA)) {
1675e4b86885SCheng Sean Ye cmi_mca_init(hdl);
1676a3114836SGerry Liu CPU->cpu_m.mcpu_cmi_hdl = hdl;
1677a3114836SGerry Liu }
167820c794b3Sgavinm #endif /* __xpv */
16797aec1d6eScindi
16807c478bd9Sstevel@tonic-gate /*
16817c478bd9Sstevel@tonic-gate * Fake a prom tree such that /dev/openprom continues to work
16827c478bd9Sstevel@tonic-gate */
1683ae115bc7Smrj PRM_POINT("startup_modules: calling prom_setup...");
16847c478bd9Sstevel@tonic-gate prom_setup();
1685ae115bc7Smrj PRM_POINT("startup_modules: done");
16867c478bd9Sstevel@tonic-gate
16877c478bd9Sstevel@tonic-gate /*
16887c478bd9Sstevel@tonic-gate * Load all platform specific modules
16897c478bd9Sstevel@tonic-gate */
1690ae115bc7Smrj PRM_POINT("startup_modules: calling psm_modload...");
16917c478bd9Sstevel@tonic-gate psm_modload();
16927c478bd9Sstevel@tonic-gate
16937c478bd9Sstevel@tonic-gate PRM_POINT("startup_modules() done");
16947c478bd9Sstevel@tonic-gate }
16957c478bd9Sstevel@tonic-gate
1696ae115bc7Smrj /*
1697ae115bc7Smrj * claim a "setaside" boot page for use in the kernel
1698ae115bc7Smrj */
1699ae115bc7Smrj page_t *
boot_claim_page(pfn_t pfn)1700ae115bc7Smrj boot_claim_page(pfn_t pfn)
17017c478bd9Sstevel@tonic-gate {
1702ae115bc7Smrj page_t *pp;
17037c478bd9Sstevel@tonic-gate
1704ae115bc7Smrj pp = page_numtopp_nolock(pfn);
1705ae115bc7Smrj ASSERT(pp != NULL);
17067c478bd9Sstevel@tonic-gate
1707ae115bc7Smrj if (PP_ISBOOTPAGES(pp)) {
1708ae115bc7Smrj if (pp->p_next != NULL)
1709ae115bc7Smrj pp->p_next->p_prev = pp->p_prev;
1710ae115bc7Smrj if (pp->p_prev == NULL)
1711ae115bc7Smrj bootpages = pp->p_next;
1712ae115bc7Smrj else
1713ae115bc7Smrj pp->p_prev->p_next = pp->p_next;
1714ae115bc7Smrj } else {
17157c478bd9Sstevel@tonic-gate /*
1716ae115bc7Smrj * htable_attach() expects a base pagesize page
17177c478bd9Sstevel@tonic-gate */
1718ae115bc7Smrj if (pp->p_szc != 0)
1719ae115bc7Smrj page_boot_demote(pp);
1720ae115bc7Smrj pp = page_numtopp(pfn, SE_EXCL);
1721ae115bc7Smrj }
1722ae115bc7Smrj return (pp);
17237c478bd9Sstevel@tonic-gate }
17247c478bd9Sstevel@tonic-gate
17257c478bd9Sstevel@tonic-gate /*
17267c478bd9Sstevel@tonic-gate * Walk through the pagetables looking for pages mapped in by boot. If the
17277c478bd9Sstevel@tonic-gate * setaside flag is set the pages are expected to be returned to the
17287c478bd9Sstevel@tonic-gate * kernel later in boot, so we add them to the bootpages list.
17297c478bd9Sstevel@tonic-gate */
17307c478bd9Sstevel@tonic-gate static void
protect_boot_range(uintptr_t low,uintptr_t high,int setaside)17317c478bd9Sstevel@tonic-gate protect_boot_range(uintptr_t low, uintptr_t high, int setaside)
17327c478bd9Sstevel@tonic-gate {
17337c478bd9Sstevel@tonic-gate uintptr_t va = low;
17347c478bd9Sstevel@tonic-gate size_t len;
17357c478bd9Sstevel@tonic-gate uint_t prot;
17367c478bd9Sstevel@tonic-gate pfn_t pfn;
17377c478bd9Sstevel@tonic-gate page_t *pp;
17387c478bd9Sstevel@tonic-gate pgcnt_t boot_protect_cnt = 0;
17397c478bd9Sstevel@tonic-gate
1740ae115bc7Smrj while (kbm_probe(&va, &len, &pfn, &prot) != 0 && va < high) {
17417c478bd9Sstevel@tonic-gate if (va + len >= high)
17427c478bd9Sstevel@tonic-gate panic("0x%lx byte mapping at 0x%p exceeds boot's "
17437c478bd9Sstevel@tonic-gate "legal range.", len, (void *)va);
17447c478bd9Sstevel@tonic-gate
17457c478bd9Sstevel@tonic-gate while (len > 0) {
17467c478bd9Sstevel@tonic-gate pp = page_numtopp_alloc(pfn);
17477c478bd9Sstevel@tonic-gate if (pp != NULL) {
17487c478bd9Sstevel@tonic-gate if (setaside == 0)
17497c478bd9Sstevel@tonic-gate panic("Unexpected mapping by boot. "
17507c478bd9Sstevel@tonic-gate "addr=%p pfn=%lx\n",
17517c478bd9Sstevel@tonic-gate (void *)va, pfn);
17527c478bd9Sstevel@tonic-gate
17537c478bd9Sstevel@tonic-gate pp->p_next = bootpages;
1754ae115bc7Smrj pp->p_prev = NULL;
1755ae115bc7Smrj PP_SETBOOTPAGES(pp);
1756ae115bc7Smrj if (bootpages != NULL) {
1757ae115bc7Smrj bootpages->p_prev = pp;
1758ae115bc7Smrj }
17597c478bd9Sstevel@tonic-gate bootpages = pp;
17607c478bd9Sstevel@tonic-gate ++boot_protect_cnt;
17617c478bd9Sstevel@tonic-gate }
17627c478bd9Sstevel@tonic-gate
17637c478bd9Sstevel@tonic-gate ++pfn;
17647c478bd9Sstevel@tonic-gate len -= MMU_PAGESIZE;
17657c478bd9Sstevel@tonic-gate va += MMU_PAGESIZE;
17667c478bd9Sstevel@tonic-gate }
17677c478bd9Sstevel@tonic-gate }
17687c478bd9Sstevel@tonic-gate PRM_DEBUG(boot_protect_cnt);
17697c478bd9Sstevel@tonic-gate }
17707c478bd9Sstevel@tonic-gate
1771ae115bc7Smrj /*
177235b1ab99Sjosephb *
1773ae115bc7Smrj */
17747c478bd9Sstevel@tonic-gate static void
layout_kernel_va(void)177535b1ab99Sjosephb layout_kernel_va(void)
17767c478bd9Sstevel@tonic-gate {
177735b1ab99Sjosephb PRM_POINT("layout_kernel_va() starting...");
17787c478bd9Sstevel@tonic-gate /*
1779ae115bc7Smrj * Establish the final size of the kernel's heap, size of segmap,
1780ae115bc7Smrj * segkp, etc.
17817c478bd9Sstevel@tonic-gate */
17827c478bd9Sstevel@tonic-gate
17837c478bd9Sstevel@tonic-gate #if defined(__amd64)
17847c478bd9Sstevel@tonic-gate
178535b1ab99Sjosephb kpm_vbase = (caddr_t)segkpm_base;
1786a3114836SGerry Liu if (physmax + 1 < plat_dr_physmax) {
1787a3114836SGerry Liu kpm_size = ROUND_UP_LPAGE(mmu_ptob(plat_dr_physmax));
1788a3114836SGerry Liu } else {
1789ae115bc7Smrj kpm_size = ROUND_UP_LPAGE(mmu_ptob(physmax + 1));
1790a3114836SGerry Liu }
179135b1ab99Sjosephb if ((uintptr_t)kpm_vbase + kpm_size > (uintptr_t)valloc_base)
179235b1ab99Sjosephb panic("not enough room for kpm!");
1793ae115bc7Smrj PRM_DEBUG(kpm_size);
1794ae115bc7Smrj PRM_DEBUG(kpm_vbase);
1795ae115bc7Smrj
1796ae115bc7Smrj /*
1797ae115bc7Smrj * By default we create a seg_kp in 64 bit kernels, it's a little
1798ae115bc7Smrj * faster to access than embedding it in the heap.
1799ae115bc7Smrj */
1800ae115bc7Smrj segkp_base = (caddr_t)valloc_base + valloc_sz;
18017c478bd9Sstevel@tonic-gate if (!segkp_fromheap) {
18027c478bd9Sstevel@tonic-gate size_t sz = mmu_ptob(segkpsize);
18037c478bd9Sstevel@tonic-gate
18047c478bd9Sstevel@tonic-gate /*
1805ae115bc7Smrj * determine size of segkp
18067c478bd9Sstevel@tonic-gate */
18077c478bd9Sstevel@tonic-gate if (sz < SEGKPMINSIZE || sz > SEGKPMAXSIZE) {
18087c478bd9Sstevel@tonic-gate sz = SEGKPDEFSIZE;
18097c478bd9Sstevel@tonic-gate cmn_err(CE_WARN, "!Illegal value for segkpsize. "
18107c478bd9Sstevel@tonic-gate "segkpsize has been reset to %ld pages",
18117c478bd9Sstevel@tonic-gate mmu_btop(sz));
18127c478bd9Sstevel@tonic-gate }
18137c478bd9Sstevel@tonic-gate sz = MIN(sz, MAX(SEGKPMINSIZE, mmu_ptob(physmem)));
18147c478bd9Sstevel@tonic-gate
18157c478bd9Sstevel@tonic-gate segkpsize = mmu_btop(ROUND_UP_LPAGE(sz));
18167c478bd9Sstevel@tonic-gate }
1817ae115bc7Smrj PRM_DEBUG(segkp_base);
1818ae115bc7Smrj PRM_DEBUG(segkpsize);
18197c478bd9Sstevel@tonic-gate
182035b1ab99Sjosephb /*
182135b1ab99Sjosephb * segzio is used for ZFS cached data. It uses a distinct VA
182235b1ab99Sjosephb * segment (from kernel heap) so that we can easily tell not to
182335b1ab99Sjosephb * include it in kernel crash dumps on 64 bit kernels. The trick is
182435b1ab99Sjosephb * to give it lots of VA, but not constrain the kernel heap.
182535b1ab99Sjosephb * We scale the size of segzio linearly with physmem up to
182635b1ab99Sjosephb * SEGZIOMAXSIZE. Above that amount it scales at 50% of physmem.
182735b1ab99Sjosephb */
1828*1e194cd1SSimon Klinkert segzio_base = segkp_base + SEGKPMAXSIZE;
1829ae115bc7Smrj if (segzio_fromheap) {
1830ae115bc7Smrj segziosize = 0;
1831ae115bc7Smrj } else {
183235b1ab99Sjosephb size_t physmem_size = mmu_ptob(physmem);
183335b1ab99Sjosephb size_t size = (segziosize == 0) ?
183435b1ab99Sjosephb physmem_size : mmu_ptob(segziosize);
1835ad23a2dbSjohansen
183635b1ab99Sjosephb if (size < SEGZIOMINSIZE)
1837ad23a2dbSjohansen size = SEGZIOMINSIZE;
183835b1ab99Sjosephb if (size > SEGZIOMAXSIZE) {
1839a778305aSjohansen size = SEGZIOMAXSIZE;
184035b1ab99Sjosephb if (physmem_size > size)
184135b1ab99Sjosephb size += (physmem_size - size) / 2;
1842ad23a2dbSjohansen }
1843ad23a2dbSjohansen segziosize = mmu_btop(ROUND_UP_LPAGE(size));
1844ae115bc7Smrj }
1845ad23a2dbSjohansen PRM_DEBUG(segziosize);
1846ad23a2dbSjohansen PRM_DEBUG(segzio_base);
1847ad23a2dbSjohansen
18487c478bd9Sstevel@tonic-gate /*
1849ae115bc7Smrj * Put the range of VA for device mappings next, kmdb knows to not
1850ae115bc7Smrj * grep in this range of addresses.
18517c478bd9Sstevel@tonic-gate */
1852ae115bc7Smrj toxic_addr =
1853ae115bc7Smrj ROUND_UP_LPAGE((uintptr_t)segzio_base + mmu_ptob(segziosize));
18547c478bd9Sstevel@tonic-gate PRM_DEBUG(toxic_addr);
1855ae115bc7Smrj segmap_start = ROUND_UP_LPAGE(toxic_addr + toxic_size);
1856ae115bc7Smrj #else /* __i386 */
1857ae115bc7Smrj segmap_start = ROUND_UP_LPAGE(kernelbase);
1858ae115bc7Smrj #endif /* __i386 */
1859ae115bc7Smrj PRM_DEBUG(segmap_start);
18607c478bd9Sstevel@tonic-gate
18617c478bd9Sstevel@tonic-gate /*
186252eef812SAmrita Sadhukhan * Users can change segmapsize through eeprom. If the variable
186352eef812SAmrita Sadhukhan * is tuned through eeprom, there is no upper bound on the
186452eef812SAmrita Sadhukhan * size of segmap.
18657c478bd9Sstevel@tonic-gate */
18667c478bd9Sstevel@tonic-gate segmapsize = MAX(ROUND_UP_LPAGE(segmapsize), SEGMAPDEFAULT);
18677c478bd9Sstevel@tonic-gate
18687c478bd9Sstevel@tonic-gate #if defined(__i386)
18697c478bd9Sstevel@tonic-gate /*
18707c478bd9Sstevel@tonic-gate * 32-bit systems don't have segkpm or segkp, so segmap appears at
18717c478bd9Sstevel@tonic-gate * the bottom of the kernel's address range. Set aside space for a
1872ae115bc7Smrj * small red zone just below the start of segmap.
18737c478bd9Sstevel@tonic-gate */
1874ae115bc7Smrj segmap_start += KERNEL_REDZONE_SIZE;
18757c478bd9Sstevel@tonic-gate segmapsize -= KERNEL_REDZONE_SIZE;
18767c478bd9Sstevel@tonic-gate #endif
18777c478bd9Sstevel@tonic-gate
1878ae115bc7Smrj PRM_DEBUG(segmap_start);
18797c478bd9Sstevel@tonic-gate PRM_DEBUG(segmapsize);
188035b1ab99Sjosephb kernelheap = (caddr_t)ROUND_UP_LPAGE(segmap_start + segmapsize);
188135b1ab99Sjosephb PRM_DEBUG(kernelheap);
188235b1ab99Sjosephb PRM_POINT("layout_kernel_va() done...");
188335b1ab99Sjosephb }
188435b1ab99Sjosephb
188535b1ab99Sjosephb /*
188635b1ab99Sjosephb * Finish initializing the VM system, now that we are no longer
188735b1ab99Sjosephb * relying on the boot time memory allocators.
188835b1ab99Sjosephb */
188935b1ab99Sjosephb static void
startup_vm(void)189035b1ab99Sjosephb startup_vm(void)
189135b1ab99Sjosephb {
189235b1ab99Sjosephb struct segmap_crargs a;
189335b1ab99Sjosephb
189435b1ab99Sjosephb extern int use_brk_lpg, use_stk_lpg;
189535b1ab99Sjosephb
189635b1ab99Sjosephb PRM_POINT("startup_vm() starting...");
189735b1ab99Sjosephb
189835b1ab99Sjosephb /*
189935b1ab99Sjosephb * Initialize the hat layer.
190035b1ab99Sjosephb */
190135b1ab99Sjosephb hat_init();
19027c478bd9Sstevel@tonic-gate
19037c478bd9Sstevel@tonic-gate /*
1904ae115bc7Smrj * Do final allocations of HAT data structures that need to
1905ae115bc7Smrj * be allocated before quiescing the boot loader.
1906ae115bc7Smrj */
1907ae115bc7Smrj PRM_POINT("Calling hat_kern_alloc()...");
1908ae115bc7Smrj hat_kern_alloc((caddr_t)segmap_start, segmapsize, ekernelheap);
1909ae115bc7Smrj PRM_POINT("hat_kern_alloc() done");
1910ae115bc7Smrj
1911843e1988Sjohnlev #ifndef __xpv
1912ae115bc7Smrj /*
19131d03c31eSjohnlev * Setup Page Attribute Table
1914ae115bc7Smrj */
19151d03c31eSjohnlev pat_sync();
1916843e1988Sjohnlev #endif
1917ae115bc7Smrj
1918ae115bc7Smrj /*
1919ae115bc7Smrj * The next two loops are done in distinct steps in order
1920ae115bc7Smrj * to be sure that any page that is doubly mapped (both above
1921ae115bc7Smrj * KERNEL_TEXT and below kernelbase) is dealt with correctly.
1922ae115bc7Smrj * Note this may never happen, but it might someday.
1923ae115bc7Smrj */
1924ae115bc7Smrj bootpages = NULL;
1925ae115bc7Smrj PRM_POINT("Protecting boot pages");
1926ae115bc7Smrj
1927ae115bc7Smrj /*
1928ae115bc7Smrj * Protect any pages mapped above KERNEL_TEXT that somehow have
1929ae115bc7Smrj * page_t's. This can only happen if something weird allocated
1930ae115bc7Smrj * in this range (like kadb/kmdb).
1931ae115bc7Smrj */
1932ae115bc7Smrj protect_boot_range(KERNEL_TEXT, (uintptr_t)-1, 0);
1933ae115bc7Smrj
1934ae115bc7Smrj /*
1935ae115bc7Smrj * Before we can take over memory allocation/mapping from the boot
1936ae115bc7Smrj * loader we must remove from our free page lists any boot allocated
1937ae115bc7Smrj * pages that stay mapped until release_bootstrap().
1938ae115bc7Smrj */
1939ae115bc7Smrj protect_boot_range(0, kernelbase, 1);
1940ae115bc7Smrj
1941843e1988Sjohnlev
1942ae115bc7Smrj /*
1943ae115bc7Smrj * Switch to running on regular HAT (not boot_mmu)
1944ae115bc7Smrj */
1945ae115bc7Smrj PRM_POINT("Calling hat_kern_setup()...");
1946ae115bc7Smrj hat_kern_setup();
1947ae115bc7Smrj
1948ae115bc7Smrj /*
1949ae115bc7Smrj * It is no longer safe to call BOP_ALLOC(), so make sure we don't.
1950ae115bc7Smrj */
1951ae115bc7Smrj bop_no_more_mem();
1952ae115bc7Smrj
1953ae115bc7Smrj PRM_POINT("hat_kern_setup() done");
1954ae115bc7Smrj
1955ae115bc7Smrj hat_cpu_online(CPU);
1956ae115bc7Smrj
1957ae115bc7Smrj /*
19587c478bd9Sstevel@tonic-gate * Initialize VM system
19597c478bd9Sstevel@tonic-gate */
19607c478bd9Sstevel@tonic-gate PRM_POINT("Calling kvm_init()...");
19617c478bd9Sstevel@tonic-gate kvm_init();
19627c478bd9Sstevel@tonic-gate PRM_POINT("kvm_init() done");
19637c478bd9Sstevel@tonic-gate
19647c478bd9Sstevel@tonic-gate /*
19657c478bd9Sstevel@tonic-gate * Tell kmdb that the VM system is now working
19667c478bd9Sstevel@tonic-gate */
19677c478bd9Sstevel@tonic-gate if (boothowto & RB_DEBUG)
19687c478bd9Sstevel@tonic-gate kdi_dvec_vmready();
19697c478bd9Sstevel@tonic-gate
1970843e1988Sjohnlev #if defined(__xpv)
1971843e1988Sjohnlev /*
1972843e1988Sjohnlev * Populate the I/O pool on domain 0
1973843e1988Sjohnlev */
1974843e1988Sjohnlev if (DOMAIN_IS_INITDOMAIN(xen_info)) {
1975843e1988Sjohnlev extern long populate_io_pool(void);
1976843e1988Sjohnlev long init_io_pool_cnt;
1977843e1988Sjohnlev
1978843e1988Sjohnlev PRM_POINT("Populating reserve I/O page pool");
1979843e1988Sjohnlev init_io_pool_cnt = populate_io_pool();
1980843e1988Sjohnlev PRM_DEBUG(init_io_pool_cnt);
1981843e1988Sjohnlev }
1982843e1988Sjohnlev #endif
19837c478bd9Sstevel@tonic-gate /*
19847c478bd9Sstevel@tonic-gate * Mangle the brand string etc.
19857c478bd9Sstevel@tonic-gate */
19867c478bd9Sstevel@tonic-gate cpuid_pass3(CPU);
19877c478bd9Sstevel@tonic-gate
19887c478bd9Sstevel@tonic-gate #if defined(__amd64)
19897c478bd9Sstevel@tonic-gate
19907c478bd9Sstevel@tonic-gate /*
19917c478bd9Sstevel@tonic-gate * Create the device arena for toxic (to dtrace/kmdb) mappings.
19927c478bd9Sstevel@tonic-gate */
19937c478bd9Sstevel@tonic-gate device_arena = vmem_create("device", (void *)toxic_addr,
19947c478bd9Sstevel@tonic-gate toxic_size, MMU_PAGESIZE, NULL, NULL, NULL, 0, VM_SLEEP);
19957c478bd9Sstevel@tonic-gate
19967c478bd9Sstevel@tonic-gate #else /* __i386 */
19977c478bd9Sstevel@tonic-gate
19987c478bd9Sstevel@tonic-gate /*
19997c478bd9Sstevel@tonic-gate * allocate the bit map that tracks toxic pages
20007c478bd9Sstevel@tonic-gate */
2001ae115bc7Smrj toxic_bit_map_len = btop((ulong_t)(valloc_base - kernelbase));
20027c478bd9Sstevel@tonic-gate PRM_DEBUG(toxic_bit_map_len);
20037c478bd9Sstevel@tonic-gate toxic_bit_map =
20047c478bd9Sstevel@tonic-gate kmem_zalloc(BT_SIZEOFMAP(toxic_bit_map_len), KM_NOSLEEP);
20057c478bd9Sstevel@tonic-gate ASSERT(toxic_bit_map != NULL);
20067c478bd9Sstevel@tonic-gate PRM_DEBUG(toxic_bit_map);
20077c478bd9Sstevel@tonic-gate
20087c478bd9Sstevel@tonic-gate #endif /* __i386 */
20097c478bd9Sstevel@tonic-gate
20107c478bd9Sstevel@tonic-gate
20117c478bd9Sstevel@tonic-gate /*
20127c478bd9Sstevel@tonic-gate * Now that we've got more VA, as well as the ability to allocate from
20137c478bd9Sstevel@tonic-gate * it, tell the debugger.
20147c478bd9Sstevel@tonic-gate */
20157c478bd9Sstevel@tonic-gate if (boothowto & RB_DEBUG)
20167c478bd9Sstevel@tonic-gate kdi_dvec_memavail();
20177c478bd9Sstevel@tonic-gate
20187c478bd9Sstevel@tonic-gate /*
20197c478bd9Sstevel@tonic-gate * The following code installs a special page fault handler (#pf)
20207c478bd9Sstevel@tonic-gate * to work around a pentium bug.
20217c478bd9Sstevel@tonic-gate */
2022843e1988Sjohnlev #if !defined(__amd64) && !defined(__xpv)
20237c478bd9Sstevel@tonic-gate if (x86_type == X86_TYPE_P5) {
2024ae115bc7Smrj desctbr_t idtr;
20257c478bd9Sstevel@tonic-gate gate_desc_t *newidt;
20267c478bd9Sstevel@tonic-gate
20277c478bd9Sstevel@tonic-gate if ((newidt = kmem_zalloc(MMU_PAGESIZE, KM_NOSLEEP)) == NULL)
20287c478bd9Sstevel@tonic-gate panic("failed to install pentium_pftrap");
20297c478bd9Sstevel@tonic-gate
20300cfdb603Sjosephb bcopy(idt0, newidt, NIDT * sizeof (*idt0));
20317c478bd9Sstevel@tonic-gate set_gatesegd(&newidt[T_PGFLT], &pentium_pftrap,
20329844da31SSeth Goldberg KCS_SEL, SDT_SYSIGT, TRP_KPL, 0);
20337c478bd9Sstevel@tonic-gate
20347c478bd9Sstevel@tonic-gate (void) as_setprot(&kas, (caddr_t)newidt, MMU_PAGESIZE,
20357c478bd9Sstevel@tonic-gate PROT_READ | PROT_EXEC);
20367c478bd9Sstevel@tonic-gate
20370cfdb603Sjosephb CPU->cpu_idt = newidt;
20380cfdb603Sjosephb idtr.dtr_base = (uintptr_t)CPU->cpu_idt;
20390cfdb603Sjosephb idtr.dtr_limit = (NIDT * sizeof (*idt0)) - 1;
2040ae115bc7Smrj wr_idtr(&idtr);
20417c478bd9Sstevel@tonic-gate }
20427c478bd9Sstevel@tonic-gate #endif /* !__amd64 */
20437c478bd9Sstevel@tonic-gate
2044843e1988Sjohnlev #if !defined(__xpv)
20457c478bd9Sstevel@tonic-gate /*
20467c478bd9Sstevel@tonic-gate * Map page pfn=0 for drivers, such as kd, that need to pick up
20477c478bd9Sstevel@tonic-gate * parameters left there by controllers/BIOS.
20487c478bd9Sstevel@tonic-gate */
20497c478bd9Sstevel@tonic-gate PRM_POINT("setup up p0_va");
20507c478bd9Sstevel@tonic-gate p0_va = i86devmap(0, 1, PROT_READ);
20517c478bd9Sstevel@tonic-gate PRM_DEBUG(p0_va);
2052843e1988Sjohnlev #endif
20537c478bd9Sstevel@tonic-gate
20547c478bd9Sstevel@tonic-gate cmn_err(CE_CONT, "?mem = %luK (0x%lx)\n",
20557c478bd9Sstevel@tonic-gate physinstalled << (MMU_PAGESHIFT - 10), ptob(physinstalled));
20567c478bd9Sstevel@tonic-gate
205783f9b804Skchow /*
205883f9b804Skchow * disable automatic large pages for small memory systems or
205983f9b804Skchow * when the disable flag is set.
206002bc52beSkchow *
206102bc52beSkchow * Do not yet consider page sizes larger than 2m/4m.
206283f9b804Skchow */
2063ec25b48fSsusans if (!auto_lpg_disable && mmu.max_page_level > 0) {
2064ec25b48fSsusans max_uheap_lpsize = LEVEL_SIZE(1);
2065ec25b48fSsusans max_ustack_lpsize = LEVEL_SIZE(1);
2066ec25b48fSsusans max_privmap_lpsize = LEVEL_SIZE(1);
2067ec25b48fSsusans max_uidata_lpsize = LEVEL_SIZE(1);
2068ec25b48fSsusans max_utext_lpsize = LEVEL_SIZE(1);
2069ec25b48fSsusans max_shm_lpsize = LEVEL_SIZE(1);
2070ec25b48fSsusans }
2071ec25b48fSsusans if (physmem < privm_lpg_min_physmem || mmu.max_page_level == 0 ||
2072ec25b48fSsusans auto_lpg_disable) {
2073beb1bda0Sdavemq use_brk_lpg = 0;
2074beb1bda0Sdavemq use_stk_lpg = 0;
2075ec25b48fSsusans }
207602bc52beSkchow mcntl0_lpsize = LEVEL_SIZE(mmu.umax_page_level);
2077beb1bda0Sdavemq
20787c478bd9Sstevel@tonic-gate PRM_POINT("Calling hat_init_finish()...");
20797c478bd9Sstevel@tonic-gate hat_init_finish();
20807c478bd9Sstevel@tonic-gate PRM_POINT("hat_init_finish() done");
20817c478bd9Sstevel@tonic-gate
20827c478bd9Sstevel@tonic-gate /*
20837c478bd9Sstevel@tonic-gate * Initialize the segkp segment type.
20847c478bd9Sstevel@tonic-gate */
20857c478bd9Sstevel@tonic-gate rw_enter(&kas.a_lock, RW_WRITER);
2086ae115bc7Smrj PRM_POINT("Attaching segkp");
2087ae115bc7Smrj if (segkp_fromheap) {
2088ae115bc7Smrj segkp->s_as = &kas;
2089ae115bc7Smrj } else if (seg_attach(&kas, (caddr_t)segkp_base, mmu_ptob(segkpsize),
20907c478bd9Sstevel@tonic-gate segkp) < 0) {
20917c478bd9Sstevel@tonic-gate panic("startup: cannot attach segkp");
20927c478bd9Sstevel@tonic-gate /*NOTREACHED*/
20937c478bd9Sstevel@tonic-gate }
2094ae115bc7Smrj PRM_POINT("Doing segkp_create()");
20957c478bd9Sstevel@tonic-gate if (segkp_create(segkp) != 0) {
20967c478bd9Sstevel@tonic-gate panic("startup: segkp_create failed");
20977c478bd9Sstevel@tonic-gate /*NOTREACHED*/
20987c478bd9Sstevel@tonic-gate }
20997c478bd9Sstevel@tonic-gate PRM_DEBUG(segkp);
21007c478bd9Sstevel@tonic-gate rw_exit(&kas.a_lock);
21017c478bd9Sstevel@tonic-gate
21027c478bd9Sstevel@tonic-gate /*
21037c478bd9Sstevel@tonic-gate * kpm segment
21047c478bd9Sstevel@tonic-gate */
21057c478bd9Sstevel@tonic-gate segmap_kpm = 0;
21067c478bd9Sstevel@tonic-gate if (kpm_desired) {
21077c478bd9Sstevel@tonic-gate kpm_init();
21087c478bd9Sstevel@tonic-gate kpm_enable = 1;
21097c478bd9Sstevel@tonic-gate }
21107c478bd9Sstevel@tonic-gate
21117c478bd9Sstevel@tonic-gate /*
21127c478bd9Sstevel@tonic-gate * Now create segmap segment.
21137c478bd9Sstevel@tonic-gate */
21147c478bd9Sstevel@tonic-gate rw_enter(&kas.a_lock, RW_WRITER);
2115ae115bc7Smrj if (seg_attach(&kas, (caddr_t)segmap_start, segmapsize, segmap) < 0) {
2116ae115bc7Smrj panic("cannot attach segmap");
21177c478bd9Sstevel@tonic-gate /*NOTREACHED*/
21187c478bd9Sstevel@tonic-gate }
2119ae115bc7Smrj PRM_DEBUG(segmap);
21207c478bd9Sstevel@tonic-gate
21217c478bd9Sstevel@tonic-gate a.prot = PROT_READ | PROT_WRITE;
21227c478bd9Sstevel@tonic-gate a.shmsize = 0;
21237c478bd9Sstevel@tonic-gate a.nfreelist = segmapfreelists;
21247c478bd9Sstevel@tonic-gate
2125ae115bc7Smrj if (segmap_create(segmap, (caddr_t)&a) != 0)
2126ae115bc7Smrj panic("segmap_create segmap");
21277c478bd9Sstevel@tonic-gate rw_exit(&kas.a_lock);
21287c478bd9Sstevel@tonic-gate
21297c478bd9Sstevel@tonic-gate setup_vaddr_for_ppcopy(CPU);
21307c478bd9Sstevel@tonic-gate
21317c478bd9Sstevel@tonic-gate segdev_init();
2132843e1988Sjohnlev #if defined(__xpv)
2133843e1988Sjohnlev if (DOMAIN_IS_INITDOMAIN(xen_info))
2134843e1988Sjohnlev #endif
21357c478bd9Sstevel@tonic-gate pmem_init();
2136ae115bc7Smrj
21377c478bd9Sstevel@tonic-gate PRM_POINT("startup_vm() done");
21387c478bd9Sstevel@tonic-gate }
21397c478bd9Sstevel@tonic-gate
2140ae115bc7Smrj /*
2141ae115bc7Smrj * Load a tod module for the non-standard tod part found on this system.
2142ae115bc7Smrj */
2143ae115bc7Smrj static void
load_tod_module(char * todmod)2144ae115bc7Smrj load_tod_module(char *todmod)
2145ae115bc7Smrj {
2146ae115bc7Smrj if (modload("tod", todmod) == -1)
2147ae115bc7Smrj halt("Can't load TOD module");
2148ae115bc7Smrj }
2149ae115bc7Smrj
21507c478bd9Sstevel@tonic-gate static void
startup_end(void)21517c478bd9Sstevel@tonic-gate startup_end(void)
21527c478bd9Sstevel@tonic-gate {
2153dd4eeefdSeota int i;
21547c478bd9Sstevel@tonic-gate extern void setx86isalist(void);
2155fb2caebeSRandy Fishel extern void cpu_event_init(void);
21567c478bd9Sstevel@tonic-gate
21577c478bd9Sstevel@tonic-gate PRM_POINT("startup_end() starting...");
21587c478bd9Sstevel@tonic-gate
21597c478bd9Sstevel@tonic-gate /*
21607c478bd9Sstevel@tonic-gate * Perform tasks that get done after most of the VM
21617c478bd9Sstevel@tonic-gate * initialization has been done but before the clock
21627c478bd9Sstevel@tonic-gate * and other devices get started.
21637c478bd9Sstevel@tonic-gate */
21647c478bd9Sstevel@tonic-gate kern_setup1();
21657c478bd9Sstevel@tonic-gate
21667c478bd9Sstevel@tonic-gate /*
21677c478bd9Sstevel@tonic-gate * Perform CPC initialization for this CPU.
21687c478bd9Sstevel@tonic-gate */
21697c478bd9Sstevel@tonic-gate kcpc_hw_init(CPU);
21707c478bd9Sstevel@tonic-gate
2171fb2caebeSRandy Fishel /*
2172fb2caebeSRandy Fishel * Initialize cpu event framework.
2173fb2caebeSRandy Fishel */
2174fb2caebeSRandy Fishel cpu_event_init();
2175fb2caebeSRandy Fishel
2176ee88d2b9Skchow #if defined(OPTERON_WORKAROUND_6323525)
2177ee88d2b9Skchow if (opteron_workaround_6323525)
2178ee88d2b9Skchow patch_workaround_6323525();
2179ee88d2b9Skchow #endif
21807c478bd9Sstevel@tonic-gate /*
2181ae115bc7Smrj * If needed, load TOD module now so that ddi_get_time(9F) etc. work
2182ae115bc7Smrj * (For now, "needed" is defined as set tod_module_name in /etc/system)
2183ae115bc7Smrj */
2184ae115bc7Smrj if (tod_module_name != NULL) {
2185ae115bc7Smrj PRM_POINT("load_tod_module()");
2186ae115bc7Smrj load_tod_module(tod_module_name);
2187ae115bc7Smrj }
2188ae115bc7Smrj
2189843e1988Sjohnlev #if defined(__xpv)
2190843e1988Sjohnlev /*
2191843e1988Sjohnlev * Forceload interposing TOD module for the hypervisor.
2192843e1988Sjohnlev */
2193843e1988Sjohnlev PRM_POINT("load_tod_module()");
2194843e1988Sjohnlev load_tod_module("xpvtod");
2195843e1988Sjohnlev #endif
2196843e1988Sjohnlev
2197ae115bc7Smrj /*
21987c478bd9Sstevel@tonic-gate * Configure the system.
21997c478bd9Sstevel@tonic-gate */
22007c478bd9Sstevel@tonic-gate PRM_POINT("Calling configure()...");
22017c478bd9Sstevel@tonic-gate configure(); /* set up devices */
22027c478bd9Sstevel@tonic-gate PRM_POINT("configure() done");
22037c478bd9Sstevel@tonic-gate
22047c478bd9Sstevel@tonic-gate /*
22057af88ac7SKuriakose Kuruvilla * We can now setup for XSAVE because fpu_probe is done in configure().
22067af88ac7SKuriakose Kuruvilla */
22077af88ac7SKuriakose Kuruvilla if (fp_save_mech == FP_XSAVE) {
22087af88ac7SKuriakose Kuruvilla xsave_setup_msr(CPU);
22097af88ac7SKuriakose Kuruvilla }
22107af88ac7SKuriakose Kuruvilla
22117af88ac7SKuriakose Kuruvilla /*
22127c478bd9Sstevel@tonic-gate * Set the isa_list string to the defined instruction sets we
22137c478bd9Sstevel@tonic-gate * support.
22147c478bd9Sstevel@tonic-gate */
22157c478bd9Sstevel@tonic-gate setx86isalist();
2216100b72f4Sandrei cpu_intr_alloc(CPU, NINTR_THREADS);
22177c478bd9Sstevel@tonic-gate psm_install();
22187c478bd9Sstevel@tonic-gate
22197c478bd9Sstevel@tonic-gate /*
22207c478bd9Sstevel@tonic-gate * We're done with bootops. We don't unmap the bootstrap yet because
22217c478bd9Sstevel@tonic-gate * we're still using bootsvcs.
22227c478bd9Sstevel@tonic-gate */
2223ae115bc7Smrj PRM_POINT("NULLing out bootops");
2224ae115bc7Smrj *bootopsp = (struct bootops *)NULL;
22257c478bd9Sstevel@tonic-gate bootops = (struct bootops *)NULL;
22267c478bd9Sstevel@tonic-gate
2227843e1988Sjohnlev #if defined(__xpv)
2228843e1988Sjohnlev ec_init_debug_irq();
2229843e1988Sjohnlev xs_domu_init();
2230843e1988Sjohnlev #endif
22311de082f7SVikram Hegde
22323a634bfcSVikram Hegde #if defined(__amd64) && !defined(__xpv)
22333a634bfcSVikram Hegde /*
22343a634bfcSVikram Hegde * Intel IOMMU has been setup/initialized in ddi_impl.c
22353a634bfcSVikram Hegde * Start it up now.
22363a634bfcSVikram Hegde */
22373a634bfcSVikram Hegde immu_startup();
22381de082f7SVikram Hegde #endif
22393a634bfcSVikram Hegde
22407c478bd9Sstevel@tonic-gate PRM_POINT("Enabling interrupts");
22417c478bd9Sstevel@tonic-gate (*picinitf)();
22427c478bd9Sstevel@tonic-gate sti();
2243843e1988Sjohnlev #if defined(__xpv)
2244843e1988Sjohnlev ASSERT(CPU->cpu_m.mcpu_vcpu_info->evtchn_upcall_mask == 0);
2245843e1988Sjohnlev xen_late_startup();
2246843e1988Sjohnlev #endif
22477c478bd9Sstevel@tonic-gate
22487c478bd9Sstevel@tonic-gate (void) add_avsoftintr((void *)&softlevel1_hdl, 1, softlevel1,
22497c478bd9Sstevel@tonic-gate "softlevel1", NULL, NULL); /* XXX to be moved later */
22507c478bd9Sstevel@tonic-gate
2251dd4eeefdSeota /*
2252a288e5a9SJoshua M. Clulow * Register software interrupt handlers for ddi_periodic_add(9F).
2253dd4eeefdSeota * Software interrupts up to the level 10 are supported.
2254dd4eeefdSeota */
2255dd4eeefdSeota for (i = DDI_IPL_1; i <= DDI_IPL_10; i++) {
2256dd4eeefdSeota (void) add_avsoftintr((void *)&softlevel_hdl[i-1], i,
2257a288e5a9SJoshua M. Clulow (avfunc)ddi_periodic_softintr, "ddi_periodic",
2258a288e5a9SJoshua M. Clulow (caddr_t)(uintptr_t)i, NULL);
2259dd4eeefdSeota }
2260dd4eeefdSeota
22617125fcbdSVikram Hegde #if !defined(__xpv)
22627125fcbdSVikram Hegde if (modload("drv", "amd_iommu") < 0) {
22637125fcbdSVikram Hegde PRM_POINT("No AMD IOMMU present\n");
226494f1124eSVikram Hegde } else if (ddi_hold_installed_driver(ddi_name_to_major(
226594f1124eSVikram Hegde "amd_iommu")) == NULL) {
22667125fcbdSVikram Hegde prom_printf("ERROR: failed to attach AMD IOMMU\n");
22677125fcbdSVikram Hegde }
22687125fcbdSVikram Hegde #endif
2269e774b42bSBill Holler post_startup_cpu_fixups();
22707125fcbdSVikram Hegde
22717c478bd9Sstevel@tonic-gate PRM_POINT("startup_end() done");
22727c478bd9Sstevel@tonic-gate }
22737c478bd9Sstevel@tonic-gate
227496d008c2SKen Erickson /*
227596d008c2SKen Erickson * Don't remove the following 2 variables. They are necessary
227696d008c2SKen Erickson * for reading the hostid from the legacy file (/kernel/misc/sysinit).
227796d008c2SKen Erickson */
22787c478bd9Sstevel@tonic-gate char *_hs1107 = hw_serial;
22797c478bd9Sstevel@tonic-gate ulong_t _bdhs34;
22807c478bd9Sstevel@tonic-gate
22817c478bd9Sstevel@tonic-gate void
post_startup(void)22827c478bd9Sstevel@tonic-gate post_startup(void)
22837c478bd9Sstevel@tonic-gate {
22840e751525SEric Saxe extern void cpupm_init(cpu_t *);
2285fb2caebeSRandy Fishel extern void cpu_event_init_cpu(cpu_t *);
22860e751525SEric Saxe
22877c478bd9Sstevel@tonic-gate /*
22887c478bd9Sstevel@tonic-gate * Set the system wide, processor-specific flags to be passed
22897c478bd9Sstevel@tonic-gate * to userland via the aux vector for performance hints and
22907c478bd9Sstevel@tonic-gate * instruction set extensions.
22917c478bd9Sstevel@tonic-gate */
22927c478bd9Sstevel@tonic-gate bind_hwcap();
22937c478bd9Sstevel@tonic-gate
2294843e1988Sjohnlev #ifdef __xpv
2295843e1988Sjohnlev if (DOMAIN_IS_INITDOMAIN(xen_info))
2296843e1988Sjohnlev #endif
2297843e1988Sjohnlev {
2298843e1988Sjohnlev #if defined(__xpv)
2299843e1988Sjohnlev xpv_panic_init();
2300843e1988Sjohnlev #else
230184ab085aSmws /*
2302ae115bc7Smrj * Startup the memory scrubber.
2303843e1988Sjohnlev * XXPV This should be running somewhere ..
23047c478bd9Sstevel@tonic-gate */
230579ec9da8SYuri Pankov if ((get_hwenv() & HW_VIRTUAL) == 0)
230684ab085aSmws memscrub_init();
2307843e1988Sjohnlev #endif
2308843e1988Sjohnlev }
23097c478bd9Sstevel@tonic-gate
23107c478bd9Sstevel@tonic-gate /*
23117aec1d6eScindi * Complete CPU module initialization
23127aec1d6eScindi */
231320c794b3Sgavinm cmi_post_startup();
23147aec1d6eScindi
23157aec1d6eScindi /*
23167c478bd9Sstevel@tonic-gate * Perform forceloading tasks for /etc/system.
23177c478bd9Sstevel@tonic-gate */
23187c478bd9Sstevel@tonic-gate (void) mod_sysctl(SYS_FORCELOAD, NULL);
23197c478bd9Sstevel@tonic-gate
23207c478bd9Sstevel@tonic-gate /*
23217c478bd9Sstevel@tonic-gate * ON4.0: Force /proc module in until clock interrupt handle fixed
23227c478bd9Sstevel@tonic-gate * ON4.0: This must be fixed or restated in /etc/systems.
23237c478bd9Sstevel@tonic-gate */
23247c478bd9Sstevel@tonic-gate (void) modload("fs", "procfs");
23257c478bd9Sstevel@tonic-gate
2326c35aa225Smarx (void) i_ddi_attach_hw_nodes("pit_beep");
2327c35aa225Smarx
23287c478bd9Sstevel@tonic-gate #if defined(__i386)
23297c478bd9Sstevel@tonic-gate /*
23307c478bd9Sstevel@tonic-gate * Check for required functional Floating Point hardware,
23317c478bd9Sstevel@tonic-gate * unless FP hardware explicitly disabled.
23327c478bd9Sstevel@tonic-gate */
23337c478bd9Sstevel@tonic-gate if (fpu_exists && (fpu_pentium_fdivbug || fp_kind == FP_NO))
23347c478bd9Sstevel@tonic-gate halt("No working FP hardware found");
23357c478bd9Sstevel@tonic-gate #endif
23367c478bd9Sstevel@tonic-gate
23377c478bd9Sstevel@tonic-gate maxmem = freemem;
23387c478bd9Sstevel@tonic-gate
2339fb2caebeSRandy Fishel cpu_event_init_cpu(CPU);
23400e751525SEric Saxe cpupm_init(CPU);
2341fa96bd91SMichael Corcoran (void) mach_cpu_create_device_node(CPU, NULL);
23420e751525SEric Saxe
23430e751525SEric Saxe pg_init();
23447c478bd9Sstevel@tonic-gate }
23457c478bd9Sstevel@tonic-gate
23467c478bd9Sstevel@tonic-gate static int
pp_in_range(page_t * pp,uint64_t low_addr,uint64_t high_addr)234719397407SSherry Moore pp_in_range(page_t *pp, uint64_t low_addr, uint64_t high_addr)
23487c478bd9Sstevel@tonic-gate {
234919397407SSherry Moore return ((pp->p_pagenum >= btop(low_addr)) &&
235019397407SSherry Moore (pp->p_pagenum < btopr(high_addr)));
23517c478bd9Sstevel@tonic-gate }
23527c478bd9Sstevel@tonic-gate
23530181461bSKeith M Wesolowski static int
pp_in_module(page_t * pp,const rd_existing_t * modranges)23540181461bSKeith M Wesolowski pp_in_module(page_t *pp, const rd_existing_t *modranges)
23550181461bSKeith M Wesolowski {
23560181461bSKeith M Wesolowski uint_t i;
23570181461bSKeith M Wesolowski
23580181461bSKeith M Wesolowski for (i = 0; modranges[i].phys != 0; i++) {
23590181461bSKeith M Wesolowski if (pp_in_range(pp, modranges[i].phys,
23600181461bSKeith M Wesolowski modranges[i].phys + modranges[i].size))
23610181461bSKeith M Wesolowski return (1);
23620181461bSKeith M Wesolowski }
23630181461bSKeith M Wesolowski
23640181461bSKeith M Wesolowski return (0);
23650181461bSKeith M Wesolowski }
23660181461bSKeith M Wesolowski
23677c478bd9Sstevel@tonic-gate void
release_bootstrap(void)23687c478bd9Sstevel@tonic-gate release_bootstrap(void)
23697c478bd9Sstevel@tonic-gate {
23707c478bd9Sstevel@tonic-gate int root_is_ramdisk;
23717c478bd9Sstevel@tonic-gate page_t *pp;
23727c478bd9Sstevel@tonic-gate extern void kobj_boot_unmountroot(void);
23737c478bd9Sstevel@tonic-gate extern dev_t rootdev;
23740181461bSKeith M Wesolowski uint_t i;
23750181461bSKeith M Wesolowski char propname[32];
23760181461bSKeith M Wesolowski rd_existing_t *modranges;
237755d507a9SSeth Goldberg #if !defined(__xpv)
237855d507a9SSeth Goldberg pfn_t pfn;
237955d507a9SSeth Goldberg #endif
23807c478bd9Sstevel@tonic-gate
23810181461bSKeith M Wesolowski /*
23820181461bSKeith M Wesolowski * Save the bootfs module ranges so that we can reserve them below
23830181461bSKeith M Wesolowski * for the real bootfs.
23840181461bSKeith M Wesolowski */
23850181461bSKeith M Wesolowski modranges = kmem_alloc(sizeof (rd_existing_t) * MAX_BOOT_MODULES,
23860181461bSKeith M Wesolowski KM_SLEEP);
23870181461bSKeith M Wesolowski for (i = 0; ; i++) {
23880181461bSKeith M Wesolowski uint64_t start, size;
23890181461bSKeith M Wesolowski
23900181461bSKeith M Wesolowski modranges[i].phys = 0;
23910181461bSKeith M Wesolowski
23920181461bSKeith M Wesolowski (void) snprintf(propname, sizeof (propname),
23930181461bSKeith M Wesolowski "module-addr-%u", i);
23940181461bSKeith M Wesolowski if (do_bsys_getproplen(NULL, propname) <= 0)
23950181461bSKeith M Wesolowski break;
23960181461bSKeith M Wesolowski (void) do_bsys_getprop(NULL, propname, &start);
23970181461bSKeith M Wesolowski
23980181461bSKeith M Wesolowski (void) snprintf(propname, sizeof (propname),
23990181461bSKeith M Wesolowski "module-size-%u", i);
24000181461bSKeith M Wesolowski if (do_bsys_getproplen(NULL, propname) <= 0)
24010181461bSKeith M Wesolowski break;
24020181461bSKeith M Wesolowski (void) do_bsys_getprop(NULL, propname, &size);
24030181461bSKeith M Wesolowski
24040181461bSKeith M Wesolowski modranges[i].phys = start;
24050181461bSKeith M Wesolowski modranges[i].size = size;
24060181461bSKeith M Wesolowski }
24070181461bSKeith M Wesolowski
24087c478bd9Sstevel@tonic-gate /* unmount boot ramdisk and release kmem usage */
24097c478bd9Sstevel@tonic-gate kobj_boot_unmountroot();
24107c478bd9Sstevel@tonic-gate
24117c478bd9Sstevel@tonic-gate /*
24127c478bd9Sstevel@tonic-gate * We're finished using the boot loader so free its pages.
24137c478bd9Sstevel@tonic-gate */
24147c478bd9Sstevel@tonic-gate PRM_POINT("Unmapping lower boot pages");
241519397407SSherry Moore
2416ae115bc7Smrj clear_boot_mappings(0, _userlimit);
241719397407SSherry Moore
2418ae115bc7Smrj postbootkernelbase = kernelbase;
24197c478bd9Sstevel@tonic-gate
24207c478bd9Sstevel@tonic-gate /*
24217c478bd9Sstevel@tonic-gate * If root isn't on ramdisk, destroy the hardcoded
24227c478bd9Sstevel@tonic-gate * ramdisk node now and release the memory. Else,
24237c478bd9Sstevel@tonic-gate * ramdisk memory is kept in rd_pages.
24247c478bd9Sstevel@tonic-gate */
24257c478bd9Sstevel@tonic-gate root_is_ramdisk = (getmajor(rootdev) == ddi_name_to_major("ramdisk"));
24267c478bd9Sstevel@tonic-gate if (!root_is_ramdisk) {
24277c478bd9Sstevel@tonic-gate dev_info_t *dip = ddi_find_devinfo("ramdisk", -1, 0);
24287c478bd9Sstevel@tonic-gate ASSERT(dip && ddi_get_parent(dip) == ddi_root_node());
24297c478bd9Sstevel@tonic-gate ndi_rele_devi(dip); /* held from ddi_find_devinfo */
24307c478bd9Sstevel@tonic-gate (void) ddi_remove_child(dip, 0);
24317c478bd9Sstevel@tonic-gate }
24327c478bd9Sstevel@tonic-gate
24337c478bd9Sstevel@tonic-gate PRM_POINT("Releasing boot pages");
24347c478bd9Sstevel@tonic-gate while (bootpages) {
243519397407SSherry Moore extern uint64_t ramdisk_start, ramdisk_end;
24367c478bd9Sstevel@tonic-gate pp = bootpages;
24377c478bd9Sstevel@tonic-gate bootpages = pp->p_next;
243819397407SSherry Moore
243919397407SSherry Moore
244019397407SSherry Moore /* Keep pages for the lower 64K */
244119397407SSherry Moore if (pp_in_range(pp, 0, 0x40000)) {
244219397407SSherry Moore pp->p_next = lower_pages;
244319397407SSherry Moore lower_pages = pp;
244419397407SSherry Moore lower_pages_count++;
244519397407SSherry Moore continue;
244619397407SSherry Moore }
244719397407SSherry Moore
244819397407SSherry Moore if (root_is_ramdisk && pp_in_range(pp, ramdisk_start,
24490181461bSKeith M Wesolowski ramdisk_end) || pp_in_module(pp, modranges)) {
24507c478bd9Sstevel@tonic-gate pp->p_next = rd_pages;
24517c478bd9Sstevel@tonic-gate rd_pages = pp;
24527c478bd9Sstevel@tonic-gate continue;
24537c478bd9Sstevel@tonic-gate }
24547c478bd9Sstevel@tonic-gate pp->p_next = (struct page *)0;
2455ae115bc7Smrj pp->p_prev = (struct page *)0;
2456ae115bc7Smrj PP_CLRBOOTPAGES(pp);
24577c478bd9Sstevel@tonic-gate page_free(pp, 1);
24587c478bd9Sstevel@tonic-gate }
2459ae115bc7Smrj PRM_POINT("Boot pages released");
24607c478bd9Sstevel@tonic-gate
24610181461bSKeith M Wesolowski kmem_free(modranges, sizeof (rd_existing_t) * 99);
24620181461bSKeith M Wesolowski
2463843e1988Sjohnlev #if !defined(__xpv)
2464843e1988Sjohnlev /* XXPV -- note this following bunch of code needs to be revisited in Xen 3.0 */
24657c478bd9Sstevel@tonic-gate /*
246655d507a9SSeth Goldberg * Find 1 page below 1 MB so that other processors can boot up or
246755d507a9SSeth Goldberg * so that any processor can resume.
24687c478bd9Sstevel@tonic-gate * Make sure it has a kernel VA as well as a 1:1 mapping.
24697c478bd9Sstevel@tonic-gate * We should have just free'd one up.
24707c478bd9Sstevel@tonic-gate */
247119397407SSherry Moore
247219397407SSherry Moore /*
247319397407SSherry Moore * 0x10 pages is 64K. Leave the bottom 64K alone
247419397407SSherry Moore * for BIOS.
247519397407SSherry Moore */
247619397407SSherry Moore for (pfn = 0x10; pfn < btop(1*1024*1024); pfn++) {
24777c478bd9Sstevel@tonic-gate if (page_numtopp_alloc(pfn) == NULL)
24787c478bd9Sstevel@tonic-gate continue;
24797c478bd9Sstevel@tonic-gate rm_platter_va = i86devmap(pfn, 1,
24807c478bd9Sstevel@tonic-gate PROT_READ | PROT_WRITE | PROT_EXEC);
24817c478bd9Sstevel@tonic-gate rm_platter_pa = ptob(pfn);
24827c478bd9Sstevel@tonic-gate break;
24837c478bd9Sstevel@tonic-gate }
248455d507a9SSeth Goldberg if (pfn == btop(1*1024*1024) && use_mp)
248555d507a9SSeth Goldberg panic("No page below 1M available for starting "
248655d507a9SSeth Goldberg "other processors or for resuming from system-suspend");
2487843e1988Sjohnlev #endif /* !__xpv */
24887c478bd9Sstevel@tonic-gate }
24897c478bd9Sstevel@tonic-gate
24907c478bd9Sstevel@tonic-gate /*
24917c478bd9Sstevel@tonic-gate * Initialize the platform-specific parts of a page_t.
24927c478bd9Sstevel@tonic-gate */
24937c478bd9Sstevel@tonic-gate void
add_physmem_cb(page_t * pp,pfn_t pnum)24947c478bd9Sstevel@tonic-gate add_physmem_cb(page_t *pp, pfn_t pnum)
24957c478bd9Sstevel@tonic-gate {
24967c478bd9Sstevel@tonic-gate pp->p_pagenum = pnum;
24977c478bd9Sstevel@tonic-gate pp->p_mapping = NULL;
24987c478bd9Sstevel@tonic-gate pp->p_embed = 0;
24997c478bd9Sstevel@tonic-gate pp->p_share = 0;
25007c478bd9Sstevel@tonic-gate pp->p_mlentry = 0;
25017c478bd9Sstevel@tonic-gate }
25027c478bd9Sstevel@tonic-gate
25037c478bd9Sstevel@tonic-gate /*
25047c478bd9Sstevel@tonic-gate * kphysm_init() initializes physical memory.
25057c478bd9Sstevel@tonic-gate */
25067c478bd9Sstevel@tonic-gate static pgcnt_t
kphysm_init(page_t * pp,pgcnt_t npages)25077c478bd9Sstevel@tonic-gate kphysm_init(
2508ae115bc7Smrj page_t *pp,
25097c478bd9Sstevel@tonic-gate pgcnt_t npages)
25107c478bd9Sstevel@tonic-gate {
25117c478bd9Sstevel@tonic-gate struct memlist *pmem;
25127c478bd9Sstevel@tonic-gate struct memseg *cur_memseg;
25137c478bd9Sstevel@tonic-gate pfn_t base_pfn;
251418968004SKit Chow pfn_t end_pfn;
25157c478bd9Sstevel@tonic-gate pgcnt_t num;
25167c478bd9Sstevel@tonic-gate pgcnt_t pages_done = 0;
25177c478bd9Sstevel@tonic-gate uint64_t addr;
25187c478bd9Sstevel@tonic-gate uint64_t size;
25197c478bd9Sstevel@tonic-gate extern pfn_t ddiphysmin;
252018968004SKit Chow extern int mnode_xwa;
252118968004SKit Chow int ms = 0, me = 0;
25227c478bd9Sstevel@tonic-gate
25237c478bd9Sstevel@tonic-gate ASSERT(page_hash != NULL && page_hashsz != 0);
25247c478bd9Sstevel@tonic-gate
2525ae115bc7Smrj cur_memseg = memseg_base;
252656f33205SJonathan Adams for (pmem = phys_avail; pmem && npages; pmem = pmem->ml_next) {
25277c478bd9Sstevel@tonic-gate /*
25287c478bd9Sstevel@tonic-gate * In a 32 bit kernel can't use higher memory if we're
25297c478bd9Sstevel@tonic-gate * not booting in PAE mode. This check takes care of that.
25307c478bd9Sstevel@tonic-gate */
253156f33205SJonathan Adams addr = pmem->ml_address;
253256f33205SJonathan Adams size = pmem->ml_size;
25337c478bd9Sstevel@tonic-gate if (btop(addr) > physmax)
25347c478bd9Sstevel@tonic-gate continue;
25357c478bd9Sstevel@tonic-gate
25367c478bd9Sstevel@tonic-gate /*
25377c478bd9Sstevel@tonic-gate * align addr and size - they may not be at page boundaries
25387c478bd9Sstevel@tonic-gate */
25397c478bd9Sstevel@tonic-gate if ((addr & MMU_PAGEOFFSET) != 0) {
25407c478bd9Sstevel@tonic-gate addr += MMU_PAGEOFFSET;
25417c478bd9Sstevel@tonic-gate addr &= ~(uint64_t)MMU_PAGEOFFSET;
254256f33205SJonathan Adams size -= addr - pmem->ml_address;
25437c478bd9Sstevel@tonic-gate }
25447c478bd9Sstevel@tonic-gate
25456bb54764Skchow /* only process pages below or equal to physmax */
25466bb54764Skchow if ((btop(addr + size) - 1) > physmax)
25476bb54764Skchow size = ptob(physmax - btop(addr) + 1);
25487c478bd9Sstevel@tonic-gate
25497c478bd9Sstevel@tonic-gate num = btop(size);
25507c478bd9Sstevel@tonic-gate if (num == 0)
25517c478bd9Sstevel@tonic-gate continue;
25527c478bd9Sstevel@tonic-gate
25537c478bd9Sstevel@tonic-gate if (num > npages)
25547c478bd9Sstevel@tonic-gate num = npages;
25557c478bd9Sstevel@tonic-gate
25567c478bd9Sstevel@tonic-gate npages -= num;
25577c478bd9Sstevel@tonic-gate pages_done += num;
25587c478bd9Sstevel@tonic-gate base_pfn = btop(addr);
25597c478bd9Sstevel@tonic-gate
25607c478bd9Sstevel@tonic-gate if (prom_debug)
25617c478bd9Sstevel@tonic-gate prom_printf("MEMSEG addr=0x%" PRIx64
25627c478bd9Sstevel@tonic-gate " pgs=0x%lx pfn 0x%lx-0x%lx\n",
25637c478bd9Sstevel@tonic-gate addr, num, base_pfn, base_pfn + num);
25647c478bd9Sstevel@tonic-gate
25657c478bd9Sstevel@tonic-gate /*
2566ae115bc7Smrj * Ignore pages below ddiphysmin to simplify ddi memory
25677c478bd9Sstevel@tonic-gate * allocation with non-zero addr_lo requests.
25687c478bd9Sstevel@tonic-gate */
25697c478bd9Sstevel@tonic-gate if (base_pfn < ddiphysmin) {
2570ae115bc7Smrj if (base_pfn + num <= ddiphysmin)
25717c478bd9Sstevel@tonic-gate continue;
25727c478bd9Sstevel@tonic-gate pp += (ddiphysmin - base_pfn);
25737c478bd9Sstevel@tonic-gate num -= (ddiphysmin - base_pfn);
25747c478bd9Sstevel@tonic-gate base_pfn = ddiphysmin;
25757c478bd9Sstevel@tonic-gate }
2576ae115bc7Smrj
25777c478bd9Sstevel@tonic-gate /*
257818968004SKit Chow * mnode_xwa is greater than 1 when large pages regions can
257918968004SKit Chow * cross memory node boundaries. To prevent the formation
258018968004SKit Chow * of these large pages, configure the memsegs based on the
258118968004SKit Chow * memory node ranges which had been made non-contiguous.
258218968004SKit Chow */
258318968004SKit Chow if (mnode_xwa > 1) {
258418968004SKit Chow
258518968004SKit Chow end_pfn = base_pfn + num - 1;
258618968004SKit Chow ms = PFN_2_MEM_NODE(base_pfn);
258718968004SKit Chow me = PFN_2_MEM_NODE(end_pfn);
258818968004SKit Chow
258918968004SKit Chow if (ms != me) {
259018968004SKit Chow /*
259118968004SKit Chow * current range spans more than 1 memory node.
259218968004SKit Chow * Set num to only the pfn range in the start
259318968004SKit Chow * memory node.
259418968004SKit Chow */
259518968004SKit Chow num = mem_node_config[ms].physmax - base_pfn
259618968004SKit Chow + 1;
259718968004SKit Chow ASSERT(end_pfn > mem_node_config[ms].physmax);
259818968004SKit Chow }
259918968004SKit Chow }
260018968004SKit Chow
260118968004SKit Chow for (;;) {
260218968004SKit Chow /*
26037c478bd9Sstevel@tonic-gate * Build the memsegs entry
26047c478bd9Sstevel@tonic-gate */
26057c478bd9Sstevel@tonic-gate cur_memseg->pages = pp;
26067c478bd9Sstevel@tonic-gate cur_memseg->epages = pp + num;
26077c478bd9Sstevel@tonic-gate cur_memseg->pages_base = base_pfn;
26087c478bd9Sstevel@tonic-gate cur_memseg->pages_end = base_pfn + num;
26097c478bd9Sstevel@tonic-gate
26107c478bd9Sstevel@tonic-gate /*
261118968004SKit Chow * Insert into memseg list in decreasing pfn range
261218968004SKit Chow * order. Low memory is typically more fragmented such
261318968004SKit Chow * that this ordering keeps the larger ranges at the
261418968004SKit Chow * front of the list for code that searches memseg.
261518968004SKit Chow * This ASSERTS that the memsegs coming in from boot
261618968004SKit Chow * are in increasing physical address order and not
261718968004SKit Chow * contiguous.
26187c478bd9Sstevel@tonic-gate */
2619ae115bc7Smrj if (memsegs != NULL) {
262018968004SKit Chow ASSERT(cur_memseg->pages_base >=
262118968004SKit Chow memsegs->pages_end);
2622ae115bc7Smrj cur_memseg->next = memsegs;
2623ae115bc7Smrj }
26247c478bd9Sstevel@tonic-gate memsegs = cur_memseg;
26257c478bd9Sstevel@tonic-gate
26267c478bd9Sstevel@tonic-gate /*
26277c478bd9Sstevel@tonic-gate * add_physmem() initializes the PSM part of the page
26287c478bd9Sstevel@tonic-gate * struct by calling the PSM back with add_physmem_cb().
26297c478bd9Sstevel@tonic-gate * In addition it coalesces pages into larger pages as
26307c478bd9Sstevel@tonic-gate * it initializes them.
26317c478bd9Sstevel@tonic-gate */
26327c478bd9Sstevel@tonic-gate add_physmem(pp, num, base_pfn);
26337c478bd9Sstevel@tonic-gate cur_memseg++;
26347c478bd9Sstevel@tonic-gate availrmem_initial += num;
26357c478bd9Sstevel@tonic-gate availrmem += num;
26367c478bd9Sstevel@tonic-gate
2637ae115bc7Smrj pp += num;
263818968004SKit Chow if (ms >= me)
263918968004SKit Chow break;
264018968004SKit Chow
264118968004SKit Chow /* process next memory node range */
264218968004SKit Chow ms++;
264318968004SKit Chow base_pfn = mem_node_config[ms].physbase;
264418968004SKit Chow num = MIN(mem_node_config[ms].physmax,
264518968004SKit Chow end_pfn) - base_pfn + 1;
264618968004SKit Chow }
26477c478bd9Sstevel@tonic-gate }
26487c478bd9Sstevel@tonic-gate
26497c478bd9Sstevel@tonic-gate PRM_DEBUG(availrmem_initial);
26507c478bd9Sstevel@tonic-gate PRM_DEBUG(availrmem);
26517c478bd9Sstevel@tonic-gate PRM_DEBUG(freemem);
26527c478bd9Sstevel@tonic-gate build_pfn_hash();
26537c478bd9Sstevel@tonic-gate return (pages_done);
26547c478bd9Sstevel@tonic-gate }
26557c478bd9Sstevel@tonic-gate
26567c478bd9Sstevel@tonic-gate /*
26577c478bd9Sstevel@tonic-gate * Kernel VM initialization.
26587c478bd9Sstevel@tonic-gate */
26597c478bd9Sstevel@tonic-gate static void
kvm_init(void)26607c478bd9Sstevel@tonic-gate kvm_init(void)
26617c478bd9Sstevel@tonic-gate {
26627c478bd9Sstevel@tonic-gate ASSERT((((uintptr_t)s_text) & MMU_PAGEOFFSET) == 0);
26637c478bd9Sstevel@tonic-gate
26647c478bd9Sstevel@tonic-gate /*
26657c478bd9Sstevel@tonic-gate * Put the kernel segments in kernel address space.
26667c478bd9Sstevel@tonic-gate */
26677c478bd9Sstevel@tonic-gate rw_enter(&kas.a_lock, RW_WRITER);
26687c478bd9Sstevel@tonic-gate as_avlinit(&kas);
26697c478bd9Sstevel@tonic-gate
26707c478bd9Sstevel@tonic-gate (void) seg_attach(&kas, s_text, e_moddata - s_text, &ktextseg);
26717c478bd9Sstevel@tonic-gate (void) segkmem_create(&ktextseg);
26727c478bd9Sstevel@tonic-gate
26737c478bd9Sstevel@tonic-gate (void) seg_attach(&kas, (caddr_t)valloc_base, valloc_sz, &kvalloc);
26747c478bd9Sstevel@tonic-gate (void) segkmem_create(&kvalloc);
26757c478bd9Sstevel@tonic-gate
267635b1ab99Sjosephb (void) seg_attach(&kas, kernelheap,
267735b1ab99Sjosephb ekernelheap - kernelheap, &kvseg);
26787c478bd9Sstevel@tonic-gate (void) segkmem_create(&kvseg);
26797c478bd9Sstevel@tonic-gate
2680ae115bc7Smrj if (core_size > 0) {
2681ae115bc7Smrj PRM_POINT("attaching kvseg_core");
2682ae115bc7Smrj (void) seg_attach(&kas, (caddr_t)core_base, core_size,
2683ae115bc7Smrj &kvseg_core);
26847c478bd9Sstevel@tonic-gate (void) segkmem_create(&kvseg_core);
2685ae115bc7Smrj }
2686ad23a2dbSjohansen
2687ae115bc7Smrj if (segziosize > 0) {
2688ae115bc7Smrj PRM_POINT("attaching segzio");
2689ad23a2dbSjohansen (void) seg_attach(&kas, segzio_base, mmu_ptob(segziosize),
2690ad23a2dbSjohansen &kzioseg);
2691ad23a2dbSjohansen (void) segkmem_zio_create(&kzioseg);
2692ad23a2dbSjohansen
2693ad23a2dbSjohansen /* create zio area covering new segment */
2694ad23a2dbSjohansen segkmem_zio_init(segzio_base, mmu_ptob(segziosize));
2695ad23a2dbSjohansen }
26967c478bd9Sstevel@tonic-gate
2697ae115bc7Smrj (void) seg_attach(&kas, kdi_segdebugbase, kdi_segdebugsize, &kdebugseg);
26987c478bd9Sstevel@tonic-gate (void) segkmem_create(&kdebugseg);
26997c478bd9Sstevel@tonic-gate
27007c478bd9Sstevel@tonic-gate rw_exit(&kas.a_lock);
27017c478bd9Sstevel@tonic-gate
27027c478bd9Sstevel@tonic-gate /*
27037c478bd9Sstevel@tonic-gate * Ensure that the red zone at kernelbase is never accessible.
27047c478bd9Sstevel@tonic-gate */
2705ae115bc7Smrj PRM_POINT("protecting redzone");
27067c478bd9Sstevel@tonic-gate (void) as_setprot(&kas, (caddr_t)kernelbase, KERNEL_REDZONE_SIZE, 0);
27077c478bd9Sstevel@tonic-gate
27087c478bd9Sstevel@tonic-gate /*
27097c478bd9Sstevel@tonic-gate * Make the text writable so that it can be hot patched by DTrace.
27107c478bd9Sstevel@tonic-gate */
27117c478bd9Sstevel@tonic-gate (void) as_setprot(&kas, s_text, e_modtext - s_text,
27127c478bd9Sstevel@tonic-gate PROT_READ | PROT_WRITE | PROT_EXEC);
27137c478bd9Sstevel@tonic-gate
27147c478bd9Sstevel@tonic-gate /*
27157c478bd9Sstevel@tonic-gate * Make data writable until end.
27167c478bd9Sstevel@tonic-gate */
27177c478bd9Sstevel@tonic-gate (void) as_setprot(&kas, s_data, e_moddata - s_data,
27187c478bd9Sstevel@tonic-gate PROT_READ | PROT_WRITE | PROT_EXEC);
27197c478bd9Sstevel@tonic-gate }
27207c478bd9Sstevel@tonic-gate
2721843e1988Sjohnlev #ifndef __xpv
27227c478bd9Sstevel@tonic-gate /*
27231d03c31eSjohnlev * Solaris adds an entry for Write Combining caching to the PAT
27247c478bd9Sstevel@tonic-gate */
27251d03c31eSjohnlev static uint64_t pat_attr_reg = PAT_DEFAULT_ATTRIBUTE;
27267c478bd9Sstevel@tonic-gate
27277c478bd9Sstevel@tonic-gate void
pat_sync(void)27281d03c31eSjohnlev pat_sync(void)
27297c478bd9Sstevel@tonic-gate {
27301d03c31eSjohnlev ulong_t cr0, cr0_orig, cr4;
27317c478bd9Sstevel@tonic-gate
27327417cfdeSKuriakose Kuruvilla if (!is_x86_feature(x86_featureset, X86FSET_PAT))
27337c478bd9Sstevel@tonic-gate return;
27341d03c31eSjohnlev cr0_orig = cr0 = getcr0();
27351d03c31eSjohnlev cr4 = getcr4();
27367c478bd9Sstevel@tonic-gate
27371d03c31eSjohnlev /* disable caching and flush all caches and TLBs */
27381d03c31eSjohnlev cr0 |= CR0_CD;
27391d03c31eSjohnlev cr0 &= ~CR0_NW;
27401d03c31eSjohnlev setcr0(cr0);
27417c478bd9Sstevel@tonic-gate invalidate_cache();
27421d03c31eSjohnlev if (cr4 & CR4_PGE) {
27431d03c31eSjohnlev setcr4(cr4 & ~(ulong_t)CR4_PGE);
27441d03c31eSjohnlev setcr4(cr4);
27451d03c31eSjohnlev } else {
2746ae115bc7Smrj reload_cr3();
27477c478bd9Sstevel@tonic-gate }
2748ae115bc7Smrj
27491d03c31eSjohnlev /* add our entry to the PAT */
27501d03c31eSjohnlev wrmsr(REG_PAT, pat_attr_reg);
27511d03c31eSjohnlev
27521d03c31eSjohnlev /* flush TLBs and cache again, then reenable cr0 caching */
27531d03c31eSjohnlev if (cr4 & CR4_PGE) {
27541d03c31eSjohnlev setcr4(cr4 & ~(ulong_t)CR4_PGE);
27551d03c31eSjohnlev setcr4(cr4);
27561d03c31eSjohnlev } else {
2757ae115bc7Smrj reload_cr3();
27581d03c31eSjohnlev }
27597c478bd9Sstevel@tonic-gate invalidate_cache();
27607c478bd9Sstevel@tonic-gate setcr0(cr0_orig);
27617c478bd9Sstevel@tonic-gate }
27627c478bd9Sstevel@tonic-gate
27631d03c31eSjohnlev #endif /* !__xpv */
27647c478bd9Sstevel@tonic-gate
2765ed5289f9SKen Erickson #if defined(_SOFT_HOSTID)
2766ed5289f9SKen Erickson /*
2767ed5289f9SKen Erickson * On platforms that do not have a hardware serial number, attempt
2768ed5289f9SKen Erickson * to set one based on the contents of /etc/hostid. If this file does
2769ed5289f9SKen Erickson * not exist, assume that we are to generate a new hostid and set
2770ed5289f9SKen Erickson * it in the kernel, for subsequent saving by a userland process
2771ed5289f9SKen Erickson * once the system is up and the root filesystem is mounted r/w.
2772ed5289f9SKen Erickson *
277396d008c2SKen Erickson * In order to gracefully support upgrade on OpenSolaris, if
277496d008c2SKen Erickson * /etc/hostid does not exist, we will attempt to get a serial number
277596d008c2SKen Erickson * using the legacy method (/kernel/misc/sysinit).
277696d008c2SKen Erickson *
27779e3e4df2SGarrett D'Amore * If that isn't present, we attempt to use an SMBIOS UUID, which is
27789e3e4df2SGarrett D'Amore * a hardware serial number. Note that we don't automatically trust
27799e3e4df2SGarrett D'Amore * all SMBIOS UUIDs (some older platforms are defective and ship duplicate
27809e3e4df2SGarrett D'Amore * UUIDs in violation of the standard), we check against a blacklist.
27819e3e4df2SGarrett D'Amore *
2782ed5289f9SKen Erickson * In an attempt to make the hostid less prone to abuse
2783ed5289f9SKen Erickson * (for license circumvention, etc), we store it in /etc/hostid
2784ed5289f9SKen Erickson * in rot47 format.
2785ed5289f9SKen Erickson */
2786ed5289f9SKen Erickson extern volatile unsigned long tenmicrodata;
278796d008c2SKen Erickson static int atoi(char *);
2788ed5289f9SKen Erickson
27899e3e4df2SGarrett D'Amore /*
27909e3e4df2SGarrett D'Amore * Set this to non-zero in /etc/system if you think your SMBIOS returns a
27919e3e4df2SGarrett D'Amore * UUID that is not unique. (Also report it so that the smbios_uuid_blacklist
27929e3e4df2SGarrett D'Amore * array can be updated.)
27939e3e4df2SGarrett D'Amore */
27949e3e4df2SGarrett D'Amore int smbios_broken_uuid = 0;
27959e3e4df2SGarrett D'Amore
27969e3e4df2SGarrett D'Amore /*
27979e3e4df2SGarrett D'Amore * List of known bad UUIDs. This is just the lower 32-bit values, since
27989e3e4df2SGarrett D'Amore * that's what we use for the host id. If your hostid falls here, you need
27999e3e4df2SGarrett D'Amore * to contact your hardware OEM for a fix for your BIOS.
28009e3e4df2SGarrett D'Amore */
28019e3e4df2SGarrett D'Amore static unsigned char
28029e3e4df2SGarrett D'Amore smbios_uuid_blacklist[][16] = {
28039e3e4df2SGarrett D'Amore
28049e3e4df2SGarrett D'Amore { /* Reported bad UUID (Google search) */
28059e3e4df2SGarrett D'Amore 0x00, 0x02, 0x00, 0x03, 0x00, 0x04, 0x00, 0x05,
28069e3e4df2SGarrett D'Amore 0x00, 0x06, 0x00, 0x07, 0x00, 0x08, 0x00, 0x09,
28079e3e4df2SGarrett D'Amore },
28089e3e4df2SGarrett D'Amore { /* Known bad DELL UUID */
28099e3e4df2SGarrett D'Amore 0x4C, 0x4C, 0x45, 0x44, 0x00, 0x00, 0x20, 0x10,
28109e3e4df2SGarrett D'Amore 0x80, 0x20, 0x80, 0xC0, 0x4F, 0x20, 0x20, 0x20,
28119e3e4df2SGarrett D'Amore },
28129e3e4df2SGarrett D'Amore { /* Uninitialized flash */
28139e3e4df2SGarrett D'Amore 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
28149e3e4df2SGarrett D'Amore 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff
28159e3e4df2SGarrett D'Amore },
28169e3e4df2SGarrett D'Amore { /* All zeros */
28179e3e4df2SGarrett D'Amore 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
28189e3e4df2SGarrett D'Amore 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00
28199e3e4df2SGarrett D'Amore },
28209e3e4df2SGarrett D'Amore };
28219e3e4df2SGarrett D'Amore
28229e3e4df2SGarrett D'Amore static int32_t
uuid_to_hostid(const uint8_t * uuid)28239e3e4df2SGarrett D'Amore uuid_to_hostid(const uint8_t *uuid)
28249e3e4df2SGarrett D'Amore {
28259e3e4df2SGarrett D'Amore /*
28269e3e4df2SGarrett D'Amore * Although the UUIDs are 128-bits, they may not distribute entropy
28279e3e4df2SGarrett D'Amore * evenly. We would like to use SHA or MD5, but those are located
28289e3e4df2SGarrett D'Amore * in loadable modules and not available this early in boot. As we
28299e3e4df2SGarrett D'Amore * don't need the values to be cryptographically strong, we just
28309e3e4df2SGarrett D'Amore * generate 32-bit vaue by xor'ing the various sequences together,
28312df37efaSGarrett D'Amore * which ensures that the entire UUID contributes to the hostid.
28329e3e4df2SGarrett D'Amore */
28332df37efaSGarrett D'Amore uint32_t id = 0;
28349e3e4df2SGarrett D'Amore
28359e3e4df2SGarrett D'Amore /* first check against the blacklist */
28369e3e4df2SGarrett D'Amore for (int i = 0; i < (sizeof (smbios_uuid_blacklist) / 16); i++) {
28379e3e4df2SGarrett D'Amore if (bcmp(smbios_uuid_blacklist[0], uuid, 16) == 0) {
28389e3e4df2SGarrett D'Amore cmn_err(CE_CONT, "?Broken SMBIOS UUID. "
28399e3e4df2SGarrett D'Amore "Contact BIOS manufacturer for repair.\n");
28409e3e4df2SGarrett D'Amore return ((int32_t)HW_INVALID_HOSTID);
28419e3e4df2SGarrett D'Amore }
28429e3e4df2SGarrett D'Amore }
28439e3e4df2SGarrett D'Amore
28449e3e4df2SGarrett D'Amore for (int i = 0; i < 16; i++)
28459e3e4df2SGarrett D'Amore id ^= ((uuid[i]) << (8 * (i % sizeof (id))));
28469e3e4df2SGarrett D'Amore
28472df37efaSGarrett D'Amore /* Make sure return value is positive */
28482df37efaSGarrett D'Amore return (id & 0x7fffffff);
28499e3e4df2SGarrett D'Amore }
28509e3e4df2SGarrett D'Amore
2851ed5289f9SKen Erickson static int32_t
set_soft_hostid(void)2852ed5289f9SKen Erickson set_soft_hostid(void)
2853ed5289f9SKen Erickson {
2854ed5289f9SKen Erickson struct _buf *file;
2855ed5289f9SKen Erickson char tokbuf[MAXNAMELEN];
2856ed5289f9SKen Erickson token_t token;
2857ed5289f9SKen Erickson int done = 0;
2858ed5289f9SKen Erickson u_longlong_t tmp;
285996d008c2SKen Erickson int i;
28605679c89fSjv227347 int32_t hostid = (int32_t)HW_INVALID_HOSTID;
2861ed5289f9SKen Erickson unsigned char *c;
2862ed5289f9SKen Erickson hrtime_t tsc;
28639e3e4df2SGarrett D'Amore smbios_system_t smsys;
2864ed5289f9SKen Erickson
2865ed5289f9SKen Erickson /*
2866ed5289f9SKen Erickson * If /etc/hostid file not found, we'd like to get a pseudo
2867ed5289f9SKen Erickson * random number to use at the hostid. A nice way to do this
2868ed5289f9SKen Erickson * is to read the real time clock. To remain xen-compatible,
2869ed5289f9SKen Erickson * we can't poke the real hardware, so we use tsc_read() to
2870ed5289f9SKen Erickson * read the real time clock. However, there is an ominous
2871ed5289f9SKen Erickson * warning in tsc_read that says it can return zero, so we
2872ed5289f9SKen Erickson * deal with that possibility by falling back to using the
2873ed5289f9SKen Erickson * (hopefully random enough) value in tenmicrodata.
2874ed5289f9SKen Erickson */
2875ed5289f9SKen Erickson
2876ed5289f9SKen Erickson if ((file = kobj_open_file(hostid_file)) == (struct _buf *)-1) {
287796d008c2SKen Erickson /*
287896d008c2SKen Erickson * hostid file not found - try to load sysinit module
287996d008c2SKen Erickson * and see if it has a nonzero hostid value...use that
288096d008c2SKen Erickson * instead of generating a new hostid here if so.
288196d008c2SKen Erickson */
288296d008c2SKen Erickson if ((i = modload("misc", "sysinit")) != -1) {
288396d008c2SKen Erickson if (strlen(hw_serial) > 0)
288496d008c2SKen Erickson hostid = (int32_t)atoi(hw_serial);
288596d008c2SKen Erickson (void) modunload(i);
288696d008c2SKen Erickson }
28879e3e4df2SGarrett D'Amore
28889e3e4df2SGarrett D'Amore /*
28899e3e4df2SGarrett D'Amore * We try to use the SMBIOS UUID. But not if it is blacklisted
28909e3e4df2SGarrett D'Amore * in /etc/system.
28919e3e4df2SGarrett D'Amore */
28929e3e4df2SGarrett D'Amore if ((hostid == HW_INVALID_HOSTID) &&
28939e3e4df2SGarrett D'Amore (smbios_broken_uuid == 0) &&
28949e3e4df2SGarrett D'Amore (ksmbios != NULL) &&
28959e3e4df2SGarrett D'Amore (smbios_info_system(ksmbios, &smsys) != SMB_ERR) &&
28969e3e4df2SGarrett D'Amore (smsys.smbs_uuidlen >= 16)) {
28979e3e4df2SGarrett D'Amore hostid = uuid_to_hostid(smsys.smbs_uuid);
28989e3e4df2SGarrett D'Amore }
28999e3e4df2SGarrett D'Amore
29009e3e4df2SGarrett D'Amore /*
29019e3e4df2SGarrett D'Amore * Generate a "random" hostid using the clock. These
29029e3e4df2SGarrett D'Amore * hostids will change on each boot if the value is not
29039e3e4df2SGarrett D'Amore * saved to a persistent /etc/hostid file.
29049e3e4df2SGarrett D'Amore */
29055679c89fSjv227347 if (hostid == HW_INVALID_HOSTID) {
2906ed5289f9SKen Erickson tsc = tsc_read();
2907ed5289f9SKen Erickson if (tsc == 0) /* tsc_read can return zero sometimes */
2908ed5289f9SKen Erickson hostid = (int32_t)tenmicrodata & 0x0CFFFFF;
2909ed5289f9SKen Erickson else
2910ed5289f9SKen Erickson hostid = (int32_t)tsc & 0x0CFFFFF;
291196d008c2SKen Erickson }
2912ed5289f9SKen Erickson } else {
2913ed5289f9SKen Erickson /* hostid file found */
2914ed5289f9SKen Erickson while (!done) {
2915ed5289f9SKen Erickson token = kobj_lex(file, tokbuf, sizeof (tokbuf));
2916ed5289f9SKen Erickson
2917ed5289f9SKen Erickson switch (token) {
2918ed5289f9SKen Erickson case POUND:
2919ed5289f9SKen Erickson /*
2920ed5289f9SKen Erickson * skip comments
2921ed5289f9SKen Erickson */
2922ed5289f9SKen Erickson kobj_find_eol(file);
2923ed5289f9SKen Erickson break;
2924ed5289f9SKen Erickson case STRING:
2925ed5289f9SKen Erickson /*
2926ed5289f9SKen Erickson * un-rot47 - obviously this
2927ed5289f9SKen Erickson * nonsense is ascii-specific
2928ed5289f9SKen Erickson */
2929ed5289f9SKen Erickson for (c = (unsigned char *)tokbuf;
2930ed5289f9SKen Erickson *c != '\0'; c++) {
2931ed5289f9SKen Erickson *c += 47;
2932ed5289f9SKen Erickson if (*c > '~')
2933ed5289f9SKen Erickson *c -= 94;
2934ed5289f9SKen Erickson else if (*c < '!')
2935ed5289f9SKen Erickson *c += 94;
2936ed5289f9SKen Erickson }
2937ed5289f9SKen Erickson /*
2938ed5289f9SKen Erickson * now we should have a real number
2939ed5289f9SKen Erickson */
2940ed5289f9SKen Erickson
2941ed5289f9SKen Erickson if (kobj_getvalue(tokbuf, &tmp) != 0)
2942ed5289f9SKen Erickson kobj_file_err(CE_WARN, file,
2943ed5289f9SKen Erickson "Bad value %s for hostid",
2944ed5289f9SKen Erickson tokbuf);
2945ed5289f9SKen Erickson else
2946ed5289f9SKen Erickson hostid = (int32_t)tmp;
2947ed5289f9SKen Erickson
2948ed5289f9SKen Erickson break;
2949ed5289f9SKen Erickson case EOF:
2950ed5289f9SKen Erickson done = 1;
2951ed5289f9SKen Erickson /* FALLTHROUGH */
2952ed5289f9SKen Erickson case NEWLINE:
2953ed5289f9SKen Erickson kobj_newline(file);
2954ed5289f9SKen Erickson break;
2955ed5289f9SKen Erickson default:
2956ed5289f9SKen Erickson break;
2957ed5289f9SKen Erickson
2958ed5289f9SKen Erickson }
2959ed5289f9SKen Erickson }
29605679c89fSjv227347 if (hostid == HW_INVALID_HOSTID) /* didn't find a hostid */
2961ed5289f9SKen Erickson kobj_file_err(CE_WARN, file,
2962ed5289f9SKen Erickson "hostid missing or corrupt");
2963ed5289f9SKen Erickson
2964ed5289f9SKen Erickson kobj_close_file(file);
2965ed5289f9SKen Erickson }
2966ed5289f9SKen Erickson /*
2967ed5289f9SKen Erickson * hostid is now the value read from /etc/hostid, or the
29685679c89fSjv227347 * new hostid we generated in this routine or HW_INVALID_HOSTID if not
29695679c89fSjv227347 * set.
2970ed5289f9SKen Erickson */
2971ed5289f9SKen Erickson return (hostid);
2972ed5289f9SKen Erickson }
297396d008c2SKen Erickson
297496d008c2SKen Erickson static int
atoi(char * p)297596d008c2SKen Erickson atoi(char *p)
297696d008c2SKen Erickson {
297796d008c2SKen Erickson int i = 0;
297896d008c2SKen Erickson
297996d008c2SKen Erickson while (*p != '\0')
298096d008c2SKen Erickson i = 10 * i + (*p++ - '0');
298196d008c2SKen Erickson
298296d008c2SKen Erickson return (i);
298396d008c2SKen Erickson }
298496d008c2SKen Erickson
2985ed5289f9SKen Erickson #endif /* _SOFT_HOSTID */
2986ed5289f9SKen Erickson
29877c478bd9Sstevel@tonic-gate void
get_system_configuration(void)298845916cd2Sjpk get_system_configuration(void)
29897c478bd9Sstevel@tonic-gate {
29907c478bd9Sstevel@tonic-gate char prop[32];
29917c478bd9Sstevel@tonic-gate u_longlong_t nodes_ll, cpus_pernode_ll, lvalue;
29927c478bd9Sstevel@tonic-gate
299335b1ab99Sjosephb if (BOP_GETPROPLEN(bootops, "nodes") > sizeof (prop) ||
299435b1ab99Sjosephb BOP_GETPROP(bootops, "nodes", prop) < 0 ||
299535b1ab99Sjosephb kobj_getvalue(prop, &nodes_ll) == -1 ||
299635b1ab99Sjosephb nodes_ll > MAXNODES ||
299735b1ab99Sjosephb BOP_GETPROPLEN(bootops, "cpus_pernode") > sizeof (prop) ||
299835b1ab99Sjosephb BOP_GETPROP(bootops, "cpus_pernode", prop) < 0 ||
299935b1ab99Sjosephb kobj_getvalue(prop, &cpus_pernode_ll) == -1) {
30007c478bd9Sstevel@tonic-gate system_hardware.hd_nodes = 1;
30017c478bd9Sstevel@tonic-gate system_hardware.hd_cpus_per_node = 0;
30027c478bd9Sstevel@tonic-gate } else {
30037c478bd9Sstevel@tonic-gate system_hardware.hd_nodes = (int)nodes_ll;
30047c478bd9Sstevel@tonic-gate system_hardware.hd_cpus_per_node = (int)cpus_pernode_ll;
30057c478bd9Sstevel@tonic-gate }
300635b1ab99Sjosephb
300735b1ab99Sjosephb if (BOP_GETPROPLEN(bootops, "kernelbase") > sizeof (prop) ||
300835b1ab99Sjosephb BOP_GETPROP(bootops, "kernelbase", prop) < 0 ||
300935b1ab99Sjosephb kobj_getvalue(prop, &lvalue) == -1)
30107c478bd9Sstevel@tonic-gate eprom_kernelbase = NULL;
30117c478bd9Sstevel@tonic-gate else
30127c478bd9Sstevel@tonic-gate eprom_kernelbase = (uintptr_t)lvalue;
30137c478bd9Sstevel@tonic-gate
301435b1ab99Sjosephb if (BOP_GETPROPLEN(bootops, "segmapsize") > sizeof (prop) ||
301535b1ab99Sjosephb BOP_GETPROP(bootops, "segmapsize", prop) < 0 ||
301635b1ab99Sjosephb kobj_getvalue(prop, &lvalue) == -1)
30177c478bd9Sstevel@tonic-gate segmapsize = SEGMAPDEFAULT;
301835b1ab99Sjosephb else
30197c478bd9Sstevel@tonic-gate segmapsize = (uintptr_t)lvalue;
30207c478bd9Sstevel@tonic-gate
302135b1ab99Sjosephb if (BOP_GETPROPLEN(bootops, "segmapfreelists") > sizeof (prop) ||
302235b1ab99Sjosephb BOP_GETPROP(bootops, "segmapfreelists", prop) < 0 ||
302335b1ab99Sjosephb kobj_getvalue(prop, &lvalue) == -1)
30247c478bd9Sstevel@tonic-gate segmapfreelists = 0; /* use segmap driver default */
302535b1ab99Sjosephb else
30267c478bd9Sstevel@tonic-gate segmapfreelists = (int)lvalue;
30274944b02eSkchow
3028aac11643Sjosephb /* physmem used to be here, but moved much earlier to fakebop.c */
30297c478bd9Sstevel@tonic-gate }
30307c478bd9Sstevel@tonic-gate
30317c478bd9Sstevel@tonic-gate /*
30327c478bd9Sstevel@tonic-gate * Add to a memory list.
30337c478bd9Sstevel@tonic-gate * start = start of new memory segment
30347c478bd9Sstevel@tonic-gate * len = length of new memory segment in bytes
30357c478bd9Sstevel@tonic-gate * new = pointer to a new struct memlist
30367c478bd9Sstevel@tonic-gate * memlistp = memory list to which to add segment.
30377c478bd9Sstevel@tonic-gate */
3038ae115bc7Smrj void
memlist_add(uint64_t start,uint64_t len,struct memlist * new,struct memlist ** memlistp)30397c478bd9Sstevel@tonic-gate memlist_add(
30407c478bd9Sstevel@tonic-gate uint64_t start,
30417c478bd9Sstevel@tonic-gate uint64_t len,
30427c478bd9Sstevel@tonic-gate struct memlist *new,
30437c478bd9Sstevel@tonic-gate struct memlist **memlistp)
30447c478bd9Sstevel@tonic-gate {
30457c478bd9Sstevel@tonic-gate struct memlist *cur;
30467c478bd9Sstevel@tonic-gate uint64_t end = start + len;
30477c478bd9Sstevel@tonic-gate
304856f33205SJonathan Adams new->ml_address = start;
304956f33205SJonathan Adams new->ml_size = len;
30507c478bd9Sstevel@tonic-gate
30517c478bd9Sstevel@tonic-gate cur = *memlistp;
30527c478bd9Sstevel@tonic-gate
30537c478bd9Sstevel@tonic-gate while (cur) {
305456f33205SJonathan Adams if (cur->ml_address >= end) {
305556f33205SJonathan Adams new->ml_next = cur;
30567c478bd9Sstevel@tonic-gate *memlistp = new;
305756f33205SJonathan Adams new->ml_prev = cur->ml_prev;
305856f33205SJonathan Adams cur->ml_prev = new;
30597c478bd9Sstevel@tonic-gate return;
30607c478bd9Sstevel@tonic-gate }
306156f33205SJonathan Adams ASSERT(cur->ml_address + cur->ml_size <= start);
306256f33205SJonathan Adams if (cur->ml_next == NULL) {
306356f33205SJonathan Adams cur->ml_next = new;
306456f33205SJonathan Adams new->ml_prev = cur;
306556f33205SJonathan Adams new->ml_next = NULL;
30667c478bd9Sstevel@tonic-gate return;
30677c478bd9Sstevel@tonic-gate }
306856f33205SJonathan Adams memlistp = &cur->ml_next;
306956f33205SJonathan Adams cur = cur->ml_next;
30707c478bd9Sstevel@tonic-gate }
30717c478bd9Sstevel@tonic-gate }
30727c478bd9Sstevel@tonic-gate
30737c478bd9Sstevel@tonic-gate void
kobj_vmem_init(vmem_t ** text_arena,vmem_t ** data_arena)30747c478bd9Sstevel@tonic-gate kobj_vmem_init(vmem_t **text_arena, vmem_t **data_arena)
30757c478bd9Sstevel@tonic-gate {
30767c478bd9Sstevel@tonic-gate size_t tsize = e_modtext - modtext;
30777c478bd9Sstevel@tonic-gate size_t dsize = e_moddata - moddata;
30787c478bd9Sstevel@tonic-gate
30797c478bd9Sstevel@tonic-gate *text_arena = vmem_create("module_text", tsize ? modtext : NULL, tsize,
30807c478bd9Sstevel@tonic-gate 1, segkmem_alloc, segkmem_free, heaptext_arena, 0, VM_SLEEP);
30817c478bd9Sstevel@tonic-gate *data_arena = vmem_create("module_data", dsize ? moddata : NULL, dsize,
30827c478bd9Sstevel@tonic-gate 1, segkmem_alloc, segkmem_free, heap32_arena, 0, VM_SLEEP);
30837c478bd9Sstevel@tonic-gate }
30847c478bd9Sstevel@tonic-gate
30857c478bd9Sstevel@tonic-gate caddr_t
kobj_text_alloc(vmem_t * arena,size_t size)30867c478bd9Sstevel@tonic-gate kobj_text_alloc(vmem_t *arena, size_t size)
30877c478bd9Sstevel@tonic-gate {
30887c478bd9Sstevel@tonic-gate return (vmem_alloc(arena, size, VM_SLEEP | VM_BESTFIT));
30897c478bd9Sstevel@tonic-gate }
30907c478bd9Sstevel@tonic-gate
30917c478bd9Sstevel@tonic-gate /*ARGSUSED*/
30927c478bd9Sstevel@tonic-gate caddr_t
kobj_texthole_alloc(caddr_t addr,size_t size)30937c478bd9Sstevel@tonic-gate kobj_texthole_alloc(caddr_t addr, size_t size)
30947c478bd9Sstevel@tonic-gate {
30957c478bd9Sstevel@tonic-gate panic("unexpected call to kobj_texthole_alloc()");
30967c478bd9Sstevel@tonic-gate /*NOTREACHED*/
30977c478bd9Sstevel@tonic-gate return (0);
30987c478bd9Sstevel@tonic-gate }
30997c478bd9Sstevel@tonic-gate
31007c478bd9Sstevel@tonic-gate /*ARGSUSED*/
31017c478bd9Sstevel@tonic-gate void
kobj_texthole_free(caddr_t addr,size_t size)31027c478bd9Sstevel@tonic-gate kobj_texthole_free(caddr_t addr, size_t size)
31037c478bd9Sstevel@tonic-gate {
31047c478bd9Sstevel@tonic-gate panic("unexpected call to kobj_texthole_free()");
31057c478bd9Sstevel@tonic-gate }
31067c478bd9Sstevel@tonic-gate
31077c478bd9Sstevel@tonic-gate /*
31087c478bd9Sstevel@tonic-gate * This is called just after configure() in startup().
31097c478bd9Sstevel@tonic-gate *
31107c478bd9Sstevel@tonic-gate * The ISALIST concept is a bit hopeless on Intel, because
31117c478bd9Sstevel@tonic-gate * there's no guarantee of an ever-more-capable processor
31127c478bd9Sstevel@tonic-gate * given that various parts of the instruction set may appear
31137c478bd9Sstevel@tonic-gate * and disappear between different implementations.
31147c478bd9Sstevel@tonic-gate *
31157c478bd9Sstevel@tonic-gate * While it would be possible to correct it and even enhance
31167c478bd9Sstevel@tonic-gate * it somewhat, the explicit hardware capability bitmask allows
31177c478bd9Sstevel@tonic-gate * more flexibility.
31187c478bd9Sstevel@tonic-gate *
31197c478bd9Sstevel@tonic-gate * So, we just leave this alone.
31207c478bd9Sstevel@tonic-gate */
31217c478bd9Sstevel@tonic-gate void
setx86isalist(void)31227c478bd9Sstevel@tonic-gate setx86isalist(void)
31237c478bd9Sstevel@tonic-gate {
31247c478bd9Sstevel@tonic-gate char *tp;
31257c478bd9Sstevel@tonic-gate size_t len;
31267c478bd9Sstevel@tonic-gate extern char *isa_list;
31277c478bd9Sstevel@tonic-gate
31287c478bd9Sstevel@tonic-gate #define TBUFSIZE 1024
31297c478bd9Sstevel@tonic-gate
31307c478bd9Sstevel@tonic-gate tp = kmem_alloc(TBUFSIZE, KM_SLEEP);
31317c478bd9Sstevel@tonic-gate *tp = '\0';
31327c478bd9Sstevel@tonic-gate
31337c478bd9Sstevel@tonic-gate #if defined(__amd64)
31347c478bd9Sstevel@tonic-gate (void) strcpy(tp, "amd64 ");
31357c478bd9Sstevel@tonic-gate #endif
31367c478bd9Sstevel@tonic-gate
31377c478bd9Sstevel@tonic-gate switch (x86_vendor) {
31387c478bd9Sstevel@tonic-gate case X86_VENDOR_Intel:
31397c478bd9Sstevel@tonic-gate case X86_VENDOR_AMD:
31407c478bd9Sstevel@tonic-gate case X86_VENDOR_TM:
31417417cfdeSKuriakose Kuruvilla if (is_x86_feature(x86_featureset, X86FSET_CMOV)) {
31427c478bd9Sstevel@tonic-gate /*
31437c478bd9Sstevel@tonic-gate * Pentium Pro or later
31447c478bd9Sstevel@tonic-gate */
31457c478bd9Sstevel@tonic-gate (void) strcat(tp, "pentium_pro");
31467417cfdeSKuriakose Kuruvilla (void) strcat(tp,
31477417cfdeSKuriakose Kuruvilla is_x86_feature(x86_featureset, X86FSET_MMX) ?
31487c478bd9Sstevel@tonic-gate "+mmx pentium_pro " : " ");
31497c478bd9Sstevel@tonic-gate }
31507c478bd9Sstevel@tonic-gate /*FALLTHROUGH*/
31517c478bd9Sstevel@tonic-gate case X86_VENDOR_Cyrix:
31527c478bd9Sstevel@tonic-gate /*
31537c478bd9Sstevel@tonic-gate * The Cyrix 6x86 does not have any Pentium features
31547c478bd9Sstevel@tonic-gate * accessible while not at privilege level 0.
31557c478bd9Sstevel@tonic-gate */
31567417cfdeSKuriakose Kuruvilla if (is_x86_feature(x86_featureset, X86FSET_CPUID)) {
31577c478bd9Sstevel@tonic-gate (void) strcat(tp, "pentium");
31587417cfdeSKuriakose Kuruvilla (void) strcat(tp,
31597417cfdeSKuriakose Kuruvilla is_x86_feature(x86_featureset, X86FSET_MMX) ?
31607c478bd9Sstevel@tonic-gate "+mmx pentium " : " ");
31617c478bd9Sstevel@tonic-gate }
31627c478bd9Sstevel@tonic-gate break;
31637c478bd9Sstevel@tonic-gate default:
31647c478bd9Sstevel@tonic-gate break;
31657c478bd9Sstevel@tonic-gate }
31667c478bd9Sstevel@tonic-gate (void) strcat(tp, "i486 i386 i86");
31677c478bd9Sstevel@tonic-gate len = strlen(tp) + 1; /* account for NULL at end of string */
31687c478bd9Sstevel@tonic-gate isa_list = strcpy(kmem_alloc(len, KM_SLEEP), tp);
31697c478bd9Sstevel@tonic-gate kmem_free(tp, TBUFSIZE);
31707c478bd9Sstevel@tonic-gate
31717c478bd9Sstevel@tonic-gate #undef TBUFSIZE
31727c478bd9Sstevel@tonic-gate }
31737c478bd9Sstevel@tonic-gate
31747c478bd9Sstevel@tonic-gate
31757c478bd9Sstevel@tonic-gate #ifdef __amd64
31767c478bd9Sstevel@tonic-gate
31777c478bd9Sstevel@tonic-gate void *
device_arena_alloc(size_t size,int vm_flag)31787c478bd9Sstevel@tonic-gate device_arena_alloc(size_t size, int vm_flag)
31797c478bd9Sstevel@tonic-gate {
31807c478bd9Sstevel@tonic-gate return (vmem_alloc(device_arena, size, vm_flag));
31817c478bd9Sstevel@tonic-gate }
31827c478bd9Sstevel@tonic-gate
31837c478bd9Sstevel@tonic-gate void
device_arena_free(void * vaddr,size_t size)31847c478bd9Sstevel@tonic-gate device_arena_free(void *vaddr, size_t size)
31857c478bd9Sstevel@tonic-gate {
31867c478bd9Sstevel@tonic-gate vmem_free(device_arena, vaddr, size);
31877c478bd9Sstevel@tonic-gate }
31887c478bd9Sstevel@tonic-gate
3189ae115bc7Smrj #else /* __i386 */
31907c478bd9Sstevel@tonic-gate
31917c478bd9Sstevel@tonic-gate void *
device_arena_alloc(size_t size,int vm_flag)31927c478bd9Sstevel@tonic-gate device_arena_alloc(size_t size, int vm_flag)
31937c478bd9Sstevel@tonic-gate {
31947c478bd9Sstevel@tonic-gate caddr_t vaddr;
31957c478bd9Sstevel@tonic-gate uintptr_t v;
31967c478bd9Sstevel@tonic-gate size_t start;
31977c478bd9Sstevel@tonic-gate size_t end;
31987c478bd9Sstevel@tonic-gate
31997c478bd9Sstevel@tonic-gate vaddr = vmem_alloc(heap_arena, size, vm_flag);
32007c478bd9Sstevel@tonic-gate if (vaddr == NULL)
32017c478bd9Sstevel@tonic-gate return (NULL);
32027c478bd9Sstevel@tonic-gate
32037c478bd9Sstevel@tonic-gate v = (uintptr_t)vaddr;
32047c478bd9Sstevel@tonic-gate ASSERT(v >= kernelbase);
3205ae115bc7Smrj ASSERT(v + size <= valloc_base);
32067c478bd9Sstevel@tonic-gate
32077c478bd9Sstevel@tonic-gate start = btop(v - kernelbase);
32087c478bd9Sstevel@tonic-gate end = btop(v + size - 1 - kernelbase);
32097c478bd9Sstevel@tonic-gate ASSERT(start < toxic_bit_map_len);
32107c478bd9Sstevel@tonic-gate ASSERT(end < toxic_bit_map_len);
32117c478bd9Sstevel@tonic-gate
32127c478bd9Sstevel@tonic-gate while (start <= end) {
32137c478bd9Sstevel@tonic-gate BT_ATOMIC_SET(toxic_bit_map, start);
32147c478bd9Sstevel@tonic-gate ++start;
32157c478bd9Sstevel@tonic-gate }
32167c478bd9Sstevel@tonic-gate return (vaddr);
32177c478bd9Sstevel@tonic-gate }
32187c478bd9Sstevel@tonic-gate
32197c478bd9Sstevel@tonic-gate void
device_arena_free(void * vaddr,size_t size)32207c478bd9Sstevel@tonic-gate device_arena_free(void *vaddr, size_t size)
32217c478bd9Sstevel@tonic-gate {
32227c478bd9Sstevel@tonic-gate uintptr_t v = (uintptr_t)vaddr;
32237c478bd9Sstevel@tonic-gate size_t start;
32247c478bd9Sstevel@tonic-gate size_t end;
32257c478bd9Sstevel@tonic-gate
32267c478bd9Sstevel@tonic-gate ASSERT(v >= kernelbase);
3227ae115bc7Smrj ASSERT(v + size <= valloc_base);
32287c478bd9Sstevel@tonic-gate
32297c478bd9Sstevel@tonic-gate start = btop(v - kernelbase);
32307c478bd9Sstevel@tonic-gate end = btop(v + size - 1 - kernelbase);
32317c478bd9Sstevel@tonic-gate ASSERT(start < toxic_bit_map_len);
32327c478bd9Sstevel@tonic-gate ASSERT(end < toxic_bit_map_len);
32337c478bd9Sstevel@tonic-gate
32347c478bd9Sstevel@tonic-gate while (start <= end) {
32357c478bd9Sstevel@tonic-gate ASSERT(BT_TEST(toxic_bit_map, start) != 0);
32367c478bd9Sstevel@tonic-gate BT_ATOMIC_CLEAR(toxic_bit_map, start);
32377c478bd9Sstevel@tonic-gate ++start;
32387c478bd9Sstevel@tonic-gate }
32397c478bd9Sstevel@tonic-gate vmem_free(heap_arena, vaddr, size);
32407c478bd9Sstevel@tonic-gate }
32417c478bd9Sstevel@tonic-gate
32427c478bd9Sstevel@tonic-gate /*
32437c478bd9Sstevel@tonic-gate * returns 1st address in range that is in device arena, or NULL
32447c478bd9Sstevel@tonic-gate * if len is not NULL it returns the length of the toxic range
32457c478bd9Sstevel@tonic-gate */
32467c478bd9Sstevel@tonic-gate void *
device_arena_contains(void * vaddr,size_t size,size_t * len)32477c478bd9Sstevel@tonic-gate device_arena_contains(void *vaddr, size_t size, size_t *len)
32487c478bd9Sstevel@tonic-gate {
32497c478bd9Sstevel@tonic-gate uintptr_t v = (uintptr_t)vaddr;
32507c478bd9Sstevel@tonic-gate uintptr_t eaddr = v + size;
32517c478bd9Sstevel@tonic-gate size_t start;
32527c478bd9Sstevel@tonic-gate size_t end;
32537c478bd9Sstevel@tonic-gate
32547c478bd9Sstevel@tonic-gate /*
32557c478bd9Sstevel@tonic-gate * if called very early by kmdb, just return NULL
32567c478bd9Sstevel@tonic-gate */
32577c478bd9Sstevel@tonic-gate if (toxic_bit_map == NULL)
32587c478bd9Sstevel@tonic-gate return (NULL);
32597c478bd9Sstevel@tonic-gate
32607c478bd9Sstevel@tonic-gate /*
32617c478bd9Sstevel@tonic-gate * First check if we're completely outside the bitmap range.
32627c478bd9Sstevel@tonic-gate */
3263ae115bc7Smrj if (v >= valloc_base || eaddr < kernelbase)
32647c478bd9Sstevel@tonic-gate return (NULL);
32657c478bd9Sstevel@tonic-gate
32667c478bd9Sstevel@tonic-gate /*
32677c478bd9Sstevel@tonic-gate * Trim ends of search to look at only what the bitmap covers.
32687c478bd9Sstevel@tonic-gate */
32697c478bd9Sstevel@tonic-gate if (v < kernelbase)
32707c478bd9Sstevel@tonic-gate v = kernelbase;
32717c478bd9Sstevel@tonic-gate start = btop(v - kernelbase);
32727c478bd9Sstevel@tonic-gate end = btop(eaddr - kernelbase);
32737c478bd9Sstevel@tonic-gate if (end >= toxic_bit_map_len)
32747c478bd9Sstevel@tonic-gate end = toxic_bit_map_len;
32757c478bd9Sstevel@tonic-gate
32767c478bd9Sstevel@tonic-gate if (bt_range(toxic_bit_map, &start, &end, end) == 0)
32777c478bd9Sstevel@tonic-gate return (NULL);
32787c478bd9Sstevel@tonic-gate
32797c478bd9Sstevel@tonic-gate v = kernelbase + ptob(start);
32807c478bd9Sstevel@tonic-gate if (len != NULL)
32817c478bd9Sstevel@tonic-gate *len = ptob(end - start);
32827c478bd9Sstevel@tonic-gate return ((void *)v);
32837c478bd9Sstevel@tonic-gate }
32847c478bd9Sstevel@tonic-gate
3285ae115bc7Smrj #endif /* __i386 */
3286