160727d8bSWarner Losh /*- 2796df753SPedro F. Giffuni * SPDX-License-Identifier: (BSD-3-Clause AND MIT-CMU) 351369649SPedro F. Giffuni * 4df8bae1dSRodney W. Grimes * Copyright (c) 1991, 1993 5df8bae1dSRodney W. Grimes * The Regents of the University of California. All rights reserved. 6df8bae1dSRodney W. Grimes * 7df8bae1dSRodney W. Grimes * This code is derived from software contributed to Berkeley by 8df8bae1dSRodney W. Grimes * The Mach Operating System project at Carnegie-Mellon University. 9df8bae1dSRodney W. Grimes * 10df8bae1dSRodney W. Grimes * Redistribution and use in source and binary forms, with or without 11df8bae1dSRodney W. Grimes * modification, are permitted provided that the following conditions 12df8bae1dSRodney W. Grimes * are met: 13df8bae1dSRodney W. Grimes * 1. Redistributions of source code must retain the above copyright 14df8bae1dSRodney W. Grimes * notice, this list of conditions and the following disclaimer. 15df8bae1dSRodney W. Grimes * 2. Redistributions in binary form must reproduce the above copyright 16df8bae1dSRodney W. Grimes * notice, this list of conditions and the following disclaimer in the 17df8bae1dSRodney W. Grimes * documentation and/or other materials provided with the distribution. 18fbbd9655SWarner Losh * 3. Neither the name of the University nor the names of its contributors 19df8bae1dSRodney W. Grimes * may be used to endorse or promote products derived from this software 20df8bae1dSRodney W. Grimes * without specific prior written permission. 21df8bae1dSRodney W. Grimes * 22df8bae1dSRodney W. Grimes * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 23df8bae1dSRodney W. Grimes * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 24df8bae1dSRodney W. Grimes * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 25df8bae1dSRodney W. Grimes * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 26df8bae1dSRodney W. Grimes * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 27df8bae1dSRodney W. Grimes * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 28df8bae1dSRodney W. Grimes * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 29df8bae1dSRodney W. Grimes * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 30df8bae1dSRodney W. Grimes * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 31df8bae1dSRodney W. Grimes * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 32df8bae1dSRodney W. Grimes * SUCH DAMAGE. 33df8bae1dSRodney W. Grimes * 343c4dd356SDavid Greenman * from: @(#)vm_kern.c 8.3 (Berkeley) 1/12/94 35df8bae1dSRodney W. Grimes * 36df8bae1dSRodney W. Grimes * 37df8bae1dSRodney W. Grimes * Copyright (c) 1987, 1990 Carnegie-Mellon University. 38df8bae1dSRodney W. Grimes * All rights reserved. 39df8bae1dSRodney W. Grimes * 40df8bae1dSRodney W. Grimes * Authors: Avadis Tevanian, Jr., Michael Wayne Young 41df8bae1dSRodney W. Grimes * 42df8bae1dSRodney W. Grimes * Permission to use, copy, modify and distribute this software and 43df8bae1dSRodney W. Grimes * its documentation is hereby granted, provided that both the copyright 44df8bae1dSRodney W. Grimes * notice and this permission notice appear in all copies of the 45df8bae1dSRodney W. Grimes * software, derivative works or modified versions, and any portions 46df8bae1dSRodney W. Grimes * thereof, and that both notices appear in supporting documentation. 47df8bae1dSRodney W. Grimes * 48df8bae1dSRodney W. Grimes * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS" 49df8bae1dSRodney W. Grimes * CONDITION. CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND 50df8bae1dSRodney W. Grimes * FOR ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE. 51df8bae1dSRodney W. Grimes * 52df8bae1dSRodney W. Grimes * Carnegie Mellon requests users of this software to return to 53df8bae1dSRodney W. Grimes * 54df8bae1dSRodney W. Grimes * Software Distribution Coordinator or Software.Distribution@CS.CMU.EDU 55df8bae1dSRodney W. Grimes * School of Computer Science 56df8bae1dSRodney W. Grimes * Carnegie Mellon University 57df8bae1dSRodney W. Grimes * Pittsburgh PA 15213-3890 58df8bae1dSRodney W. Grimes * 59df8bae1dSRodney W. Grimes * any improvements or extensions that they make and grant Carnegie the 60df8bae1dSRodney W. Grimes * rights to redistribute these changes. 61df8bae1dSRodney W. Grimes */ 62df8bae1dSRodney W. Grimes 63df8bae1dSRodney W. Grimes /* 64df8bae1dSRodney W. Grimes * Kernel memory management. 65df8bae1dSRodney W. Grimes */ 66df8bae1dSRodney W. Grimes 67874651b1SDavid E. O'Brien #include <sys/cdefs.h> 687a469c8eSJeff Roberson #include "opt_vm.h" 697a469c8eSJeff Roberson 70df8bae1dSRodney W. Grimes #include <sys/param.h> 71df8bae1dSRodney W. Grimes #include <sys/systm.h> 722b914b85SMark Johnston #include <sys/asan.h> 737a469c8eSJeff Roberson #include <sys/domainset.h> 740f2c2ce0SPawel Jakub Dawidek #include <sys/eventhandler.h> 752b914b85SMark Johnston #include <sys/kernel.h> 76fb919e4dSMark Murray #include <sys/lock.h> 77a1f6d91cSDavid Greenman #include <sys/malloc.h> 78540da48dSMark Johnston #include <sys/msan.h> 792b914b85SMark Johnston #include <sys/proc.h> 8089f6b863SAttilio Rao #include <sys/rwlock.h> 81*8882b785SKonstantin Belousov #include <sys/smp.h> 8286f08737SRobert Watson #include <sys/sysctl.h> 835df87b21SJeff Roberson #include <sys/vmem.h> 847a469c8eSJeff Roberson #include <sys/vmmeter.h> 85df8bae1dSRodney W. Grimes 86df8bae1dSRodney W. Grimes #include <vm/vm.h> 87efeaf95aSDavid Greenman #include <vm/vm_param.h> 887a469c8eSJeff Roberson #include <vm/vm_domainset.h> 895df87b21SJeff Roberson #include <vm/vm_kern.h> 90efeaf95aSDavid Greenman #include <vm/pmap.h> 91efeaf95aSDavid Greenman #include <vm/vm_map.h> 92efeaf95aSDavid Greenman #include <vm/vm_object.h> 93df8bae1dSRodney W. Grimes #include <vm/vm_page.h> 94df8bae1dSRodney W. Grimes #include <vm/vm_pageout.h> 95e2068d0bSJeff Roberson #include <vm/vm_pagequeue.h> 96431fb8abSMark Johnston #include <vm/vm_phys.h> 9733fff5d5SMark Johnston #include <vm/vm_radix.h> 989b4288a3SBruce Evans #include <vm/vm_extern.h> 990f2c2ce0SPawel Jakub Dawidek #include <vm/uma.h> 100df8bae1dSRodney W. Grimes 1017dd979dfSMark Johnston struct vm_map kernel_map_store; 1027dd979dfSMark Johnston struct vm_map exec_map_store; 1037dd979dfSMark Johnston struct vm_map pipe_map_store; 104f23b4c91SGarrett Wollman 10589cb2a19SMatthew D Fleming const void *zero_region; 10689cb2a19SMatthew D Fleming CTASSERT((ZERO_REGION_SIZE & PAGE_MASK) == 0); 10789cb2a19SMatthew D Fleming 108645743eaSJohn Baldwin /* NB: Used by kernel debuggers. */ 109645743eaSJohn Baldwin const u_long vm_maxuser_address = VM_MAXUSER_ADDRESS; 110645743eaSJohn Baldwin 111ec492b13SMark Johnston u_int exec_map_entry_size; 112ec492b13SMark Johnston u_int exec_map_entries; 113ec492b13SMark Johnston 11494bfd5b1SMarius Strobl SYSCTL_ULONG(_vm, OID_AUTO, min_kernel_address, CTLFLAG_RD, 115f0188618SHans Petter Selasky SYSCTL_NULL_ULONG_PTR, VM_MIN_KERNEL_ADDRESS, "Min kernel address"); 11694bfd5b1SMarius Strobl 11794bfd5b1SMarius Strobl SYSCTL_ULONG(_vm, OID_AUTO, max_kernel_address, CTLFLAG_RD, 11858aa35d4SWarner Losh #if defined(__arm__) 11994bfd5b1SMarius Strobl &vm_max_kernel_address, 0, 12094bfd5b1SMarius Strobl #else 121f0188618SHans Petter Selasky SYSCTL_NULL_ULONG_PTR, VM_MAX_KERNEL_ADDRESS, 12294bfd5b1SMarius Strobl #endif 12394bfd5b1SMarius Strobl "Max kernel address"); 12494bfd5b1SMarius Strobl 1251aed6d48SMark Johnston #if VM_NRESERVLEVEL > 0 12625ed23cfSMark Johnston #define KVA_QUANTUM_SHIFT (VM_LEVEL_0_ORDER + PAGE_SHIFT) 1271aed6d48SMark Johnston #else 1282b601070SMark Johnston /* On non-superpage architectures we want large import sizes. */ 1292b601070SMark Johnston #define KVA_QUANTUM_SHIFT (8 + PAGE_SHIFT) 1301aed6d48SMark Johnston #endif 13123e875fdSMark Johnston #define KVA_QUANTUM (1ul << KVA_QUANTUM_SHIFT) 132aea9103eSMark Johnston #define KVA_NUMA_IMPORT_QUANTUM (KVA_QUANTUM * 128) 1331aed6d48SMark Johnston 134a81c400eSJeff Roberson extern void uma_startup2(void); 135a81c400eSJeff Roberson 136df8bae1dSRodney W. Grimes /* 1375df87b21SJeff Roberson * kva_alloc: 138a839bdc8SDmitrij Tejblum * 139b77c2bcdSAlan Cox * Allocate a virtual address range with no underlying object and 140b77c2bcdSAlan Cox * no initial mapping to physical memory. Any mapping from this 141b77c2bcdSAlan Cox * range to physical memory must be explicitly created prior to 142b77c2bcdSAlan Cox * its use, typically with pmap_qenter(). Any attempt to create 143b77c2bcdSAlan Cox * a mapping on demand through vm_fault() will result in a panic. 144a839bdc8SDmitrij Tejblum */ 145a839bdc8SDmitrij Tejblum vm_offset_t 1466e309d75SEd Maste kva_alloc(vm_size_t size) 147a839bdc8SDmitrij Tejblum { 148a839bdc8SDmitrij Tejblum vm_offset_t addr; 149a839bdc8SDmitrij Tejblum 150b9fd884aSColin Percival TSENTER(); 151a839bdc8SDmitrij Tejblum size = round_page(size); 1525df87b21SJeff Roberson if (vmem_alloc(kernel_arena, size, M_BESTFIT | M_NOWAIT, &addr)) 153a839bdc8SDmitrij Tejblum return (0); 154b9fd884aSColin Percival TSEXIT(); 1555df87b21SJeff Roberson 156a839bdc8SDmitrij Tejblum return (addr); 157a839bdc8SDmitrij Tejblum } 158a839bdc8SDmitrij Tejblum 159a839bdc8SDmitrij Tejblum /* 1605df87b21SJeff Roberson * kva_free: 161ca596a25SJuli Mallett * 1625df87b21SJeff Roberson * Release a region of kernel virtual memory allocated 1635df87b21SJeff Roberson * with kva_alloc, and return the physical pages 1645df87b21SJeff Roberson * associated with that region. 1655df87b21SJeff Roberson * 1665df87b21SJeff Roberson * This routine may not block on kernel maps. 167ca596a25SJuli Mallett */ 1685df87b21SJeff Roberson void 1696e309d75SEd Maste kva_free(vm_offset_t addr, vm_size_t size) 170df8bae1dSRodney W. Grimes { 171df8bae1dSRodney W. Grimes 172df8bae1dSRodney W. Grimes size = round_page(size); 1735df87b21SJeff Roberson vmem_free(kernel_arena, addr, size); 174df8bae1dSRodney W. Grimes } 175df8bae1dSRodney W. Grimes 176540da48dSMark Johnston /* 177540da48dSMark Johnston * Update sanitizer shadow state to reflect a new allocation. Force inlining to 178540da48dSMark Johnston * help make KMSAN origin tracking more precise. 179540da48dSMark Johnston */ 180540da48dSMark Johnston static __always_inline void 181540da48dSMark Johnston kmem_alloc_san(vm_offset_t addr, vm_size_t size, vm_size_t asize, int flags) 182540da48dSMark Johnston { 183540da48dSMark Johnston if ((flags & M_ZERO) == 0) { 184540da48dSMark Johnston kmsan_mark((void *)addr, asize, KMSAN_STATE_UNINIT); 185540da48dSMark Johnston kmsan_orig((void *)addr, asize, KMSAN_TYPE_KMEM, 186540da48dSMark Johnston KMSAN_RET_ADDR); 187540da48dSMark Johnston } else { 188540da48dSMark Johnston kmsan_mark((void *)addr, asize, KMSAN_STATE_INITED); 189540da48dSMark Johnston } 190540da48dSMark Johnston kasan_mark((void *)addr, size, asize, KASAN_KMEM_REDZONE); 191540da48dSMark Johnston } 192540da48dSMark Johnston 19333655d95SMark Johnston static vm_page_t 19433655d95SMark Johnston kmem_alloc_contig_pages(vm_object_t object, vm_pindex_t pindex, int domain, 19533655d95SMark Johnston int pflags, u_long npages, vm_paddr_t low, vm_paddr_t high, 19633655d95SMark Johnston u_long alignment, vm_paddr_t boundary, vm_memattr_t memattr) 19733655d95SMark Johnston { 19833655d95SMark Johnston vm_page_t m; 19933655d95SMark Johnston int tries; 200660344caSRyan Stone bool wait, reclaim; 20133655d95SMark Johnston 20233655d95SMark Johnston VM_OBJECT_ASSERT_WLOCKED(object); 20333655d95SMark Johnston 20433655d95SMark Johnston wait = (pflags & VM_ALLOC_WAITOK) != 0; 205660344caSRyan Stone reclaim = (pflags & VM_ALLOC_NORECLAIM) == 0; 20633655d95SMark Johnston pflags &= ~(VM_ALLOC_NOWAIT | VM_ALLOC_WAITOK | VM_ALLOC_WAITFAIL); 20733655d95SMark Johnston pflags |= VM_ALLOC_NOWAIT; 20833655d95SMark Johnston for (tries = wait ? 3 : 1;; tries--) { 20933655d95SMark Johnston m = vm_page_alloc_contig_domain(object, pindex, domain, pflags, 21033655d95SMark Johnston npages, low, high, alignment, boundary, memattr); 211660344caSRyan Stone if (m != NULL || tries == 0 || !reclaim) 21233655d95SMark Johnston break; 21333655d95SMark Johnston 21433655d95SMark Johnston VM_OBJECT_WUNLOCK(object); 21533655d95SMark Johnston if (!vm_page_reclaim_contig_domain(domain, pflags, npages, 21633655d95SMark Johnston low, high, alignment, boundary) && wait) 21733655d95SMark Johnston vm_wait_domain(domain); 21833655d95SMark Johnston VM_OBJECT_WLOCK(object); 21933655d95SMark Johnston } 22033655d95SMark Johnston return (m); 22133655d95SMark Johnston } 22233655d95SMark Johnston 223df8bae1dSRodney W. Grimes /* 2240ff0fc84SAlan Cox * Allocates a region from the kernel address map and physical pages 2250ff0fc84SAlan Cox * within the specified address range to the kernel object. Creates a 2260ff0fc84SAlan Cox * wired mapping from this region to these pages, and returns the 2270ff0fc84SAlan Cox * region's starting virtual address. The allocated pages are not 2280ff0fc84SAlan Cox * necessarily physically contiguous. If M_ZERO is specified through the 2290ff0fc84SAlan Cox * given flags, then the pages are zeroed before they are mapped. 2300ff0fc84SAlan Cox */ 231f49fd63aSJohn Baldwin static void * 2327a469c8eSJeff Roberson kmem_alloc_attr_domain(int domain, vm_size_t size, int flags, vm_paddr_t low, 2330ff0fc84SAlan Cox vm_paddr_t high, vm_memattr_t memattr) 2340ff0fc84SAlan Cox { 2357a469c8eSJeff Roberson vmem_t *vmem; 23633655d95SMark Johnston vm_object_t object; 237d1780e8dSKonstantin Belousov vm_offset_t addr, i, offset; 2380ff0fc84SAlan Cox vm_page_t m; 2392b914b85SMark Johnston vm_size_t asize; 24033655d95SMark Johnston int pflags; 241d22ff6e6SKonstantin Belousov vm_prot_t prot; 2420ff0fc84SAlan Cox 24333655d95SMark Johnston object = kernel_object; 2442b914b85SMark Johnston asize = round_page(size); 2457a469c8eSJeff Roberson vmem = vm_dom[domain].vmd_kernel_arena; 2462b914b85SMark Johnston if (vmem_alloc(vmem, asize, M_BESTFIT | flags, &addr)) 2470ff0fc84SAlan Cox return (0); 2480ff0fc84SAlan Cox offset = addr - VM_MIN_KERNEL_ADDRESS; 24991e31c3cSJeff Roberson pflags = malloc2vm_flags(flags) | VM_ALLOC_WIRED; 250d22ff6e6SKonstantin Belousov prot = (flags & M_EXEC) != 0 ? VM_PROT_ALL : VM_PROT_RW; 25189f6b863SAttilio Rao VM_OBJECT_WLOCK(object); 2522b914b85SMark Johnston for (i = 0; i < asize; i += PAGE_SIZE) { 25333655d95SMark Johnston m = kmem_alloc_contig_pages(object, atop(offset + i), 2547a469c8eSJeff Roberson domain, pflags, 1, low, high, PAGE_SIZE, 0, memattr); 2550ff0fc84SAlan Cox if (m == NULL) { 25689f6b863SAttilio Rao VM_OBJECT_WUNLOCK(object); 2579e829b22SAlan Cox kmem_unback(object, addr, i); 2582b914b85SMark Johnston vmem_free(vmem, addr, asize); 2590ff0fc84SAlan Cox return (0); 2600ff0fc84SAlan Cox } 261431fb8abSMark Johnston KASSERT(vm_page_domain(m) == domain, 2627a469c8eSJeff Roberson ("kmem_alloc_attr_domain: Domain mismatch %d != %d", 263431fb8abSMark Johnston vm_page_domain(m), domain)); 2640ff0fc84SAlan Cox if ((flags & M_ZERO) && (m->flags & PG_ZERO) == 0) 2650ff0fc84SAlan Cox pmap_zero_page(m); 26691e31c3cSJeff Roberson vm_page_valid(m); 267d22ff6e6SKonstantin Belousov pmap_enter(kernel_pmap, addr + i, m, prot, 268d22ff6e6SKonstantin Belousov prot | PMAP_ENTER_WIRED, 0); 2690ff0fc84SAlan Cox } 27089f6b863SAttilio Rao VM_OBJECT_WUNLOCK(object); 271540da48dSMark Johnston kmem_alloc_san(addr, size, asize, flags); 272f49fd63aSJohn Baldwin return ((void *)addr); 2730ff0fc84SAlan Cox } 2740ff0fc84SAlan Cox 275f49fd63aSJohn Baldwin void * 276db7c2a48SAlan Cox kmem_alloc_attr(vm_size_t size, int flags, vm_paddr_t low, vm_paddr_t high, 277db7c2a48SAlan Cox vm_memattr_t memattr) 2787a469c8eSJeff Roberson { 2799978bd99SMark Johnston 2809978bd99SMark Johnston return (kmem_alloc_attr_domainset(DOMAINSET_RR(), size, flags, low, 2819978bd99SMark Johnston high, memattr)); 2829978bd99SMark Johnston } 2839978bd99SMark Johnston 284f49fd63aSJohn Baldwin void * 2859978bd99SMark Johnston kmem_alloc_attr_domainset(struct domainset *ds, vm_size_t size, int flags, 2869978bd99SMark Johnston vm_paddr_t low, vm_paddr_t high, vm_memattr_t memattr) 2879978bd99SMark Johnston { 2887a469c8eSJeff Roberson struct vm_domainset_iter di; 289f49fd63aSJohn Baldwin void *addr; 2905fee468eSBryan Drewery int domain; 2917a469c8eSJeff Roberson 2925fee468eSBryan Drewery vm_domainset_iter_policy_init(&di, ds, &domain, &flags); 2937a469c8eSJeff Roberson do { 2947a469c8eSJeff Roberson addr = kmem_alloc_attr_domain(domain, size, flags, low, high, 2957a469c8eSJeff Roberson memattr); 296f49fd63aSJohn Baldwin if (addr != NULL) 2977a469c8eSJeff Roberson break; 2984c29d2deSMark Johnston } while (vm_domainset_iter_policy(&di, &domain) == 0); 2997a469c8eSJeff Roberson 3007a469c8eSJeff Roberson return (addr); 3017a469c8eSJeff Roberson } 3027a469c8eSJeff Roberson 3030ff0fc84SAlan Cox /* 3040ff0fc84SAlan Cox * Allocates a region from the kernel address map and physically 3050ff0fc84SAlan Cox * contiguous pages within the specified address range to the kernel 3060ff0fc84SAlan Cox * object. Creates a wired mapping from this region to these pages, and 3070ff0fc84SAlan Cox * returns the region's starting virtual address. If M_ZERO is specified 3080ff0fc84SAlan Cox * through the given flags, then the pages are zeroed before they are 3090ff0fc84SAlan Cox * mapped. 3100ff0fc84SAlan Cox */ 311f49fd63aSJohn Baldwin static void * 3127a469c8eSJeff Roberson kmem_alloc_contig_domain(int domain, vm_size_t size, int flags, vm_paddr_t low, 3130ff0fc84SAlan Cox vm_paddr_t high, u_long alignment, vm_paddr_t boundary, 3140ff0fc84SAlan Cox vm_memattr_t memattr) 3150ff0fc84SAlan Cox { 3167a469c8eSJeff Roberson vmem_t *vmem; 31733655d95SMark Johnston vm_object_t object; 318d1780e8dSKonstantin Belousov vm_offset_t addr, offset, tmp; 3190ff0fc84SAlan Cox vm_page_t end_m, m; 3202b914b85SMark Johnston vm_size_t asize; 321c869e672SAlan Cox u_long npages; 32233655d95SMark Johnston int pflags; 3230ff0fc84SAlan Cox 32433655d95SMark Johnston object = kernel_object; 3252b914b85SMark Johnston asize = round_page(size); 3267a469c8eSJeff Roberson vmem = vm_dom[domain].vmd_kernel_arena; 3272b914b85SMark Johnston if (vmem_alloc(vmem, asize, flags | M_BESTFIT, &addr)) 328f49fd63aSJohn Baldwin return (NULL); 3290ff0fc84SAlan Cox offset = addr - VM_MIN_KERNEL_ADDRESS; 33091e31c3cSJeff Roberson pflags = malloc2vm_flags(flags) | VM_ALLOC_WIRED; 3312b914b85SMark Johnston npages = atop(asize); 33289f6b863SAttilio Rao VM_OBJECT_WLOCK(object); 33333655d95SMark Johnston m = kmem_alloc_contig_pages(object, atop(offset), domain, 33433655d95SMark Johnston pflags, npages, low, high, alignment, boundary, memattr); 3350ff0fc84SAlan Cox if (m == NULL) { 33689f6b863SAttilio Rao VM_OBJECT_WUNLOCK(object); 3372b914b85SMark Johnston vmem_free(vmem, addr, asize); 338f49fd63aSJohn Baldwin return (NULL); 3390ff0fc84SAlan Cox } 340431fb8abSMark Johnston KASSERT(vm_page_domain(m) == domain, 3417a469c8eSJeff Roberson ("kmem_alloc_contig_domain: Domain mismatch %d != %d", 342431fb8abSMark Johnston vm_page_domain(m), domain)); 343c869e672SAlan Cox end_m = m + npages; 3445df87b21SJeff Roberson tmp = addr; 3450ff0fc84SAlan Cox for (; m < end_m; m++) { 3460ff0fc84SAlan Cox if ((flags & M_ZERO) && (m->flags & PG_ZERO) == 0) 3470ff0fc84SAlan Cox pmap_zero_page(m); 34891e31c3cSJeff Roberson vm_page_valid(m); 3490766f278SJonathan T. Looney pmap_enter(kernel_pmap, tmp, m, VM_PROT_RW, 3500766f278SJonathan T. Looney VM_PROT_RW | PMAP_ENTER_WIRED, 0); 3515df87b21SJeff Roberson tmp += PAGE_SIZE; 3520ff0fc84SAlan Cox } 35389f6b863SAttilio Rao VM_OBJECT_WUNLOCK(object); 354540da48dSMark Johnston kmem_alloc_san(addr, size, asize, flags); 355f49fd63aSJohn Baldwin return ((void *)addr); 3560ff0fc84SAlan Cox } 3570ff0fc84SAlan Cox 358f49fd63aSJohn Baldwin void * 35944d0efb2SAlan Cox kmem_alloc_contig(vm_size_t size, int flags, vm_paddr_t low, vm_paddr_t high, 36044d0efb2SAlan Cox u_long alignment, vm_paddr_t boundary, vm_memattr_t memattr) 3617a469c8eSJeff Roberson { 3629978bd99SMark Johnston 3639978bd99SMark Johnston return (kmem_alloc_contig_domainset(DOMAINSET_RR(), size, flags, low, 3649978bd99SMark Johnston high, alignment, boundary, memattr)); 3659978bd99SMark Johnston } 3669978bd99SMark Johnston 367f49fd63aSJohn Baldwin void * 3689978bd99SMark Johnston kmem_alloc_contig_domainset(struct domainset *ds, vm_size_t size, int flags, 3699978bd99SMark Johnston vm_paddr_t low, vm_paddr_t high, u_long alignment, vm_paddr_t boundary, 3709978bd99SMark Johnston vm_memattr_t memattr) 3719978bd99SMark Johnston { 3727a469c8eSJeff Roberson struct vm_domainset_iter di; 373f49fd63aSJohn Baldwin void *addr; 3745fee468eSBryan Drewery int domain; 3757a469c8eSJeff Roberson 3765fee468eSBryan Drewery vm_domainset_iter_policy_init(&di, ds, &domain, &flags); 3777a469c8eSJeff Roberson do { 3787a469c8eSJeff Roberson addr = kmem_alloc_contig_domain(domain, size, flags, low, high, 3797a469c8eSJeff Roberson alignment, boundary, memattr); 380f49fd63aSJohn Baldwin if (addr != NULL) 3817a469c8eSJeff Roberson break; 3824c29d2deSMark Johnston } while (vm_domainset_iter_policy(&di, &domain) == 0); 3837a469c8eSJeff Roberson 3847a469c8eSJeff Roberson return (addr); 3857a469c8eSJeff Roberson } 3867a469c8eSJeff Roberson 3870ff0fc84SAlan Cox /* 3887dd979dfSMark Johnston * kmem_subinit: 389df8bae1dSRodney W. Grimes * 3907dd979dfSMark Johnston * Initializes a map to manage a subrange 391df8bae1dSRodney W. Grimes * of the kernel virtual address space. 392df8bae1dSRodney W. Grimes * 393df8bae1dSRodney W. Grimes * Arguments are as follows: 394df8bae1dSRodney W. Grimes * 395df8bae1dSRodney W. Grimes * parent Map to take range from 396df8bae1dSRodney W. Grimes * min, max Returned endpoints of map 397030f2369SAlfred Perlstein * size Size of range to find 3983202ed75SAlan Cox * superpage_align Request that min is superpage aligned 399df8bae1dSRodney W. Grimes */ 4007dd979dfSMark Johnston void 4017dd979dfSMark Johnston kmem_subinit(vm_map_t map, vm_map_t parent, vm_offset_t *min, vm_offset_t *max, 4027dd979dfSMark Johnston vm_size_t size, bool superpage_align) 403df8bae1dSRodney W. Grimes { 4046e4f51d1SAlfred Perlstein int ret; 40523955314SAlfred Perlstein 406df8bae1dSRodney W. Grimes size = round_page(size); 407df8bae1dSRodney W. Grimes 4082bc24aa9SAlan Cox *min = vm_map_min(parent); 409edb572a3SJohn Baldwin ret = vm_map_find(parent, NULL, 0, min, size, 0, superpage_align ? 4105aa60b6fSJohn Baldwin VMFS_SUPER_SPACE : VMFS_ANY_SPACE, VM_PROT_ALL, VM_PROT_ALL, 4113364c323SKonstantin Belousov MAP_ACC_NO_CHARGE); 41224dedba9SAlan Cox if (ret != KERN_SUCCESS) 4137dd979dfSMark Johnston panic("kmem_subinit: bad status return of %d", ret); 414df8bae1dSRodney W. Grimes *max = *min + size; 4157dd979dfSMark Johnston vm_map_init(map, vm_map_pmap(parent), *min, *max); 4167dd979dfSMark Johnston if (vm_map_submap(parent, *min, *max, map) != KERN_SUCCESS) 4177dd979dfSMark Johnston panic("kmem_subinit: unable to change range to submap"); 418df8bae1dSRodney W. Grimes } 419df8bae1dSRodney W. Grimes 420df8bae1dSRodney W. Grimes /* 4219978bd99SMark Johnston * kmem_malloc_domain: 4221c7c3c6aSMatthew Dillon * 4235df87b21SJeff Roberson * Allocate wired-down pages in the kernel's address space. 424df8bae1dSRodney W. Grimes */ 425f49fd63aSJohn Baldwin static void * 426067fd858SAlan Cox kmem_malloc_domain(int domain, vm_size_t size, int flags) 427df8bae1dSRodney W. Grimes { 4280766f278SJonathan T. Looney vmem_t *arena; 429df8bae1dSRodney W. Grimes vm_offset_t addr; 4302b914b85SMark Johnston vm_size_t asize; 4315df87b21SJeff Roberson int rv; 432df8bae1dSRodney W. Grimes 433067fd858SAlan Cox if (__predict_true((flags & M_EXEC) == 0)) 4340766f278SJonathan T. Looney arena = vm_dom[domain].vmd_kernel_arena; 4350766f278SJonathan T. Looney else 4360766f278SJonathan T. Looney arena = vm_dom[domain].vmd_kernel_rwx_arena; 4372b914b85SMark Johnston asize = round_page(size); 4382b914b85SMark Johnston if (vmem_alloc(arena, asize, flags | M_BESTFIT, &addr)) 4395df87b21SJeff Roberson return (0); 440df8bae1dSRodney W. Grimes 4412b914b85SMark Johnston rv = kmem_back_domain(domain, kernel_object, addr, asize, flags); 4425df87b21SJeff Roberson if (rv != KERN_SUCCESS) { 4432b914b85SMark Johnston vmem_free(arena, addr, asize); 444f31c239dSAlan Cox return (0); 445df8bae1dSRodney W. Grimes } 4462b914b85SMark Johnston kasan_mark((void *)addr, size, asize, KASAN_KMEM_REDZONE); 447f49fd63aSJohn Baldwin return ((void *)addr); 448e3813573SMatthew D Fleming } 449e3813573SMatthew D Fleming 450f49fd63aSJohn Baldwin void * 45183a90bffSAlan Cox kmem_malloc(vm_size_t size, int flags) 4527a469c8eSJeff Roberson { 45345cc8519SColin Percival void * p; 4549978bd99SMark Johnston 45545cc8519SColin Percival TSENTER(); 45645cc8519SColin Percival p = kmem_malloc_domainset(DOMAINSET_RR(), size, flags); 45745cc8519SColin Percival TSEXIT(); 45845cc8519SColin Percival return (p); 4599978bd99SMark Johnston } 4609978bd99SMark Johnston 461f49fd63aSJohn Baldwin void * 4629978bd99SMark Johnston kmem_malloc_domainset(struct domainset *ds, vm_size_t size, int flags) 4639978bd99SMark Johnston { 4647a469c8eSJeff Roberson struct vm_domainset_iter di; 465f49fd63aSJohn Baldwin void *addr; 4667a469c8eSJeff Roberson int domain; 4677a469c8eSJeff Roberson 4689978bd99SMark Johnston vm_domainset_iter_policy_init(&di, ds, &domain, &flags); 4697a469c8eSJeff Roberson do { 470067fd858SAlan Cox addr = kmem_malloc_domain(domain, size, flags); 471f49fd63aSJohn Baldwin if (addr != NULL) 4727a469c8eSJeff Roberson break; 4734c29d2deSMark Johnston } while (vm_domainset_iter_policy(&di, &domain) == 0); 4747a469c8eSJeff Roberson 4757a469c8eSJeff Roberson return (addr); 4767a469c8eSJeff Roberson } 4777a469c8eSJeff Roberson 478e3813573SMatthew D Fleming /* 47925ed23cfSMark Johnston * kmem_back_domain: 480e3813573SMatthew D Fleming * 48125ed23cfSMark Johnston * Allocate physical pages from the specified domain for the specified 48225ed23cfSMark Johnston * virtual address range. 483e3813573SMatthew D Fleming */ 484e3813573SMatthew D Fleming int 4857a469c8eSJeff Roberson kmem_back_domain(int domain, vm_object_t object, vm_offset_t addr, 4867a469c8eSJeff Roberson vm_size_t size, int flags) 487e3813573SMatthew D Fleming { 488e3813573SMatthew D Fleming vm_offset_t offset, i; 48933fff5d5SMark Johnston vm_page_t m, mpred; 4900766f278SJonathan T. Looney vm_prot_t prot; 491e3813573SMatthew D Fleming int pflags; 492e3813573SMatthew D Fleming 4932e47807cSJeff Roberson KASSERT(object == kernel_object, 4947a469c8eSJeff Roberson ("kmem_back_domain: only supports kernel object.")); 4955df87b21SJeff Roberson 4960891ef4cSJohn Dyson offset = addr - VM_MIN_KERNEL_ADDRESS; 49791e31c3cSJeff Roberson pflags = malloc2vm_flags(flags) | VM_ALLOC_WIRED; 4988d6fbbb8SJeff Roberson pflags &= ~(VM_ALLOC_NOWAIT | VM_ALLOC_WAITOK | VM_ALLOC_WAITFAIL); 4998d6fbbb8SJeff Roberson if (flags & M_WAITOK) 5008d6fbbb8SJeff Roberson pflags |= VM_ALLOC_WAITFAIL; 5010766f278SJonathan T. Looney prot = (flags & M_EXEC) != 0 ? VM_PROT_ALL : VM_PROT_RW; 502df8bae1dSRodney W. Grimes 50333fff5d5SMark Johnston i = 0; 50433fff5d5SMark Johnston VM_OBJECT_WLOCK(object); 5058d6fbbb8SJeff Roberson retry: 50633fff5d5SMark Johnston mpred = vm_radix_lookup_le(&object->rtree, atop(offset + i)); 50733fff5d5SMark Johnston for (; i < size; i += PAGE_SIZE, mpred = m) { 5087a469c8eSJeff Roberson m = vm_page_alloc_domain_after(object, atop(offset + i), 5097a469c8eSJeff Roberson domain, pflags, mpred); 510df8bae1dSRodney W. Grimes 511df8bae1dSRodney W. Grimes /* 5120d94caffSDavid Greenman * Ran out of space, free everything up and return. Don't need 5130d94caffSDavid Greenman * to lock page queues here as we know that the pages we got 5140d94caffSDavid Greenman * aren't on any queues. 515df8bae1dSRodney W. Grimes */ 516df8bae1dSRodney W. Grimes if (m == NULL) { 5178d6fbbb8SJeff Roberson if ((flags & M_NOWAIT) == 0) 518b18bfc3dSJohn Dyson goto retry; 5198d6fbbb8SJeff Roberson VM_OBJECT_WUNLOCK(object); 5209e829b22SAlan Cox kmem_unback(object, addr, i); 521e3813573SMatthew D Fleming return (KERN_NO_SPACE); 522df8bae1dSRodney W. Grimes } 523431fb8abSMark Johnston KASSERT(vm_page_domain(m) == domain, 5247a469c8eSJeff Roberson ("kmem_back_domain: Domain mismatch %d != %d", 525431fb8abSMark Johnston vm_page_domain(m), domain)); 5261e081f88SJeff Roberson if (flags & M_ZERO && (m->flags & PG_ZERO) == 0) 527fff6062aSAlan Cox pmap_zero_page(m); 528d98d0ce2SKonstantin Belousov KASSERT((m->oflags & VPO_UNMANAGED) != 0, 5299f5c801bSAlan Cox ("kmem_malloc: page %p is managed", m)); 53091e31c3cSJeff Roberson vm_page_valid(m); 5310766f278SJonathan T. Looney pmap_enter(kernel_pmap, addr + i, m, prot, 5320766f278SJonathan T. Looney prot | PMAP_ENTER_WIRED, 0); 53349bfa624SAlan Cox if (__predict_false((prot & VM_PROT_EXECUTE) != 0)) 53449bfa624SAlan Cox m->oflags |= VPO_KMEM_EXEC; 535df8bae1dSRodney W. Grimes } 5365df87b21SJeff Roberson VM_OBJECT_WUNLOCK(object); 537540da48dSMark Johnston kmem_alloc_san(addr, size, size, flags); 538e3813573SMatthew D Fleming return (KERN_SUCCESS); 539df8bae1dSRodney W. Grimes } 540df8bae1dSRodney W. Grimes 54125ed23cfSMark Johnston /* 54225ed23cfSMark Johnston * kmem_back: 54325ed23cfSMark Johnston * 54425ed23cfSMark Johnston * Allocate physical pages for the specified virtual address range. 54525ed23cfSMark Johnston */ 5467a469c8eSJeff Roberson int 5477a469c8eSJeff Roberson kmem_back(vm_object_t object, vm_offset_t addr, vm_size_t size, int flags) 5487a469c8eSJeff Roberson { 54925ed23cfSMark Johnston vm_offset_t end, next, start; 55025ed23cfSMark Johnston int domain, rv; 5517a469c8eSJeff Roberson 5527a469c8eSJeff Roberson KASSERT(object == kernel_object, 5537a469c8eSJeff Roberson ("kmem_back: only supports kernel object.")); 5547a469c8eSJeff Roberson 55525ed23cfSMark Johnston for (start = addr, end = addr + size; addr < end; addr = next) { 55625ed23cfSMark Johnston /* 55725ed23cfSMark Johnston * We must ensure that pages backing a given large virtual page 55825ed23cfSMark Johnston * all come from the same physical domain. 55925ed23cfSMark Johnston */ 56025ed23cfSMark Johnston if (vm_ndomains > 1) { 56125ed23cfSMark Johnston domain = (addr >> KVA_QUANTUM_SHIFT) % vm_ndomains; 56230c5525bSAndrew Gallatin while (VM_DOMAIN_EMPTY(domain)) 56330c5525bSAndrew Gallatin domain++; 56425ed23cfSMark Johnston next = roundup2(addr + 1, KVA_QUANTUM); 56525ed23cfSMark Johnston if (next > end || next < start) 56625ed23cfSMark Johnston next = end; 5673d14a7bbSMark Johnston } else { 5683d14a7bbSMark Johnston domain = 0; 56925ed23cfSMark Johnston next = end; 5703d14a7bbSMark Johnston } 57125ed23cfSMark Johnston rv = kmem_back_domain(domain, object, addr, next - addr, flags); 57225ed23cfSMark Johnston if (rv != KERN_SUCCESS) { 57325ed23cfSMark Johnston kmem_unback(object, start, addr - start); 5747a469c8eSJeff Roberson break; 57525ed23cfSMark Johnston } 57625ed23cfSMark Johnston } 57725ed23cfSMark Johnston return (rv); 5787a469c8eSJeff Roberson } 5797a469c8eSJeff Roberson 5809e829b22SAlan Cox /* 5819e829b22SAlan Cox * kmem_unback: 5829e829b22SAlan Cox * 5839e829b22SAlan Cox * Unmap and free the physical pages underlying the specified virtual 5849e829b22SAlan Cox * address range. 5859e829b22SAlan Cox * 5869e829b22SAlan Cox * A physical page must exist within the specified object at each index 5879e829b22SAlan Cox * that is being unmapped. 5889e829b22SAlan Cox */ 58949bfa624SAlan Cox static struct vmem * 5907a469c8eSJeff Roberson _kmem_unback(vm_object_t object, vm_offset_t addr, vm_size_t size) 5915df87b21SJeff Roberson { 59249bfa624SAlan Cox struct vmem *arena; 5937e05ffa6SMark Johnston vm_page_t m, next; 5947e05ffa6SMark Johnston vm_offset_t end, offset; 5957a469c8eSJeff Roberson int domain; 5965df87b21SJeff Roberson 5972e47807cSJeff Roberson KASSERT(object == kernel_object, 5982e47807cSJeff Roberson ("kmem_unback: only supports kernel object.")); 5995df87b21SJeff Roberson 6007a469c8eSJeff Roberson if (size == 0) 60149bfa624SAlan Cox return (NULL); 602fa2f411cSAlan Cox pmap_remove(kernel_pmap, addr, addr + size); 6035df87b21SJeff Roberson offset = addr - VM_MIN_KERNEL_ADDRESS; 6047e05ffa6SMark Johnston end = offset + size; 6055df87b21SJeff Roberson VM_OBJECT_WLOCK(object); 6067a469c8eSJeff Roberson m = vm_page_lookup(object, atop(offset)); 607431fb8abSMark Johnston domain = vm_page_domain(m); 60849bfa624SAlan Cox if (__predict_true((m->oflags & VPO_KMEM_EXEC) == 0)) 60949bfa624SAlan Cox arena = vm_dom[domain].vmd_kernel_arena; 61049bfa624SAlan Cox else 61149bfa624SAlan Cox arena = vm_dom[domain].vmd_kernel_rwx_arena; 6127a469c8eSJeff Roberson for (; offset < end; offset += PAGE_SIZE, m = next) { 6137e05ffa6SMark Johnston next = vm_page_next(m); 614e9ceb9ddSJeff Roberson vm_page_xbusy_claim(m); 61588ea538aSMark Johnston vm_page_unwire_noq(m); 6165df87b21SJeff Roberson vm_page_free(m); 6175df87b21SJeff Roberson } 6185df87b21SJeff Roberson VM_OBJECT_WUNLOCK(object); 6197a469c8eSJeff Roberson 62049bfa624SAlan Cox return (arena); 6217a469c8eSJeff Roberson } 6227a469c8eSJeff Roberson 6237a469c8eSJeff Roberson void 6247a469c8eSJeff Roberson kmem_unback(vm_object_t object, vm_offset_t addr, vm_size_t size) 6257a469c8eSJeff Roberson { 6267a469c8eSJeff Roberson 62749bfa624SAlan Cox (void)_kmem_unback(object, addr, size); 6285df87b21SJeff Roberson } 6295df87b21SJeff Roberson 630df8bae1dSRodney W. Grimes /* 6315df87b21SJeff Roberson * kmem_free: 6325df87b21SJeff Roberson * 6335df87b21SJeff Roberson * Free memory allocated with kmem_malloc. The size must match the 6345df87b21SJeff Roberson * original allocation. 6355df87b21SJeff Roberson */ 6365df87b21SJeff Roberson void 637f49fd63aSJohn Baldwin kmem_free(void *addr, vm_size_t size) 6385df87b21SJeff Roberson { 6390766f278SJonathan T. Looney struct vmem *arena; 6400766f278SJonathan T. Looney 6415df87b21SJeff Roberson size = round_page(size); 642f49fd63aSJohn Baldwin kasan_mark(addr, size, size, 0); 643f49fd63aSJohn Baldwin arena = _kmem_unback(kernel_object, (uintptr_t)addr, size); 64449bfa624SAlan Cox if (arena != NULL) 645f49fd63aSJohn Baldwin vmem_free(arena, (uintptr_t)addr, size); 6465df87b21SJeff Roberson } 6475df87b21SJeff Roberson 6485df87b21SJeff Roberson /* 6495df87b21SJeff Roberson * kmap_alloc_wait: 650df8bae1dSRodney W. Grimes * 651df8bae1dSRodney W. Grimes * Allocates pageable memory from a sub-map of the kernel. If the submap 652df8bae1dSRodney W. Grimes * has no room, the caller sleeps waiting for more memory in the submap. 653df8bae1dSRodney W. Grimes * 6541c7c3c6aSMatthew Dillon * This routine may block. 655df8bae1dSRodney W. Grimes */ 6560d94caffSDavid Greenman vm_offset_t 6576e309d75SEd Maste kmap_alloc_wait(vm_map_t map, vm_size_t size) 658df8bae1dSRodney W. Grimes { 659df8bae1dSRodney W. Grimes vm_offset_t addr; 66023955314SAlfred Perlstein 661df8bae1dSRodney W. Grimes size = round_page(size); 6623364c323SKonstantin Belousov if (!swap_reserve(size)) 6633364c323SKonstantin Belousov return (0); 664df8bae1dSRodney W. Grimes 665df8bae1dSRodney W. Grimes for (;;) { 666df8bae1dSRodney W. Grimes /* 6670d94caffSDavid Greenman * To make this work for more than one map, use the map's lock 6680d94caffSDavid Greenman * to lock out sleepers/wakers. 669df8bae1dSRodney W. Grimes */ 670df8bae1dSRodney W. Grimes vm_map_lock(map); 6719f701172SKonstantin Belousov addr = vm_map_findspace(map, vm_map_min(map), size); 6729f701172SKonstantin Belousov if (addr + size <= vm_map_max(map)) 673df8bae1dSRodney W. Grimes break; 674df8bae1dSRodney W. Grimes /* no space now; see if we can ever get space */ 675df8bae1dSRodney W. Grimes if (vm_map_max(map) - vm_map_min(map) < size) { 676df8bae1dSRodney W. Grimes vm_map_unlock(map); 6773364c323SKonstantin Belousov swap_release(size); 678df8bae1dSRodney W. Grimes return (0); 679df8bae1dSRodney W. Grimes } 6809688f931SAlan Cox map->needs_wakeup = TRUE; 6818ce2d00aSPawel Jakub Dawidek vm_map_unlock_and_wait(map, 0); 682df8bae1dSRodney W. Grimes } 68307702f72SMark Johnston vm_map_insert(map, NULL, 0, addr, addr + size, VM_PROT_RW, VM_PROT_RW, 68407702f72SMark Johnston MAP_ACC_CHARGED); 685df8bae1dSRodney W. Grimes vm_map_unlock(map); 686df8bae1dSRodney W. Grimes return (addr); 687df8bae1dSRodney W. Grimes } 688df8bae1dSRodney W. Grimes 689df8bae1dSRodney W. Grimes /* 6905df87b21SJeff Roberson * kmap_free_wakeup: 691df8bae1dSRodney W. Grimes * 69224a1cce3SDavid Greenman * Returns memory to a submap of the kernel, and wakes up any processes 693df8bae1dSRodney W. Grimes * waiting for memory in that map. 694df8bae1dSRodney W. Grimes */ 6950d94caffSDavid Greenman void 6966e309d75SEd Maste kmap_free_wakeup(vm_map_t map, vm_offset_t addr, vm_size_t size) 697df8bae1dSRodney W. Grimes { 69823955314SAlfred Perlstein 699df8bae1dSRodney W. Grimes vm_map_lock(map); 700655c3490SKonstantin Belousov (void) vm_map_delete(map, trunc_page(addr), round_page(addr + size)); 7019688f931SAlan Cox if (map->needs_wakeup) { 7029688f931SAlan Cox map->needs_wakeup = FALSE; 7039688f931SAlan Cox vm_map_wakeup(map); 7049688f931SAlan Cox } 705df8bae1dSRodney W. Grimes vm_map_unlock(map); 706df8bae1dSRodney W. Grimes } 707df8bae1dSRodney W. Grimes 7085df87b21SJeff Roberson void 70989cb2a19SMatthew D Fleming kmem_init_zero_region(void) 71089cb2a19SMatthew D Fleming { 711cfb00e5aSMatthew D Fleming vm_offset_t addr, i; 71289cb2a19SMatthew D Fleming vm_page_t m; 71389cb2a19SMatthew D Fleming 714cfb00e5aSMatthew D Fleming /* 715cfb00e5aSMatthew D Fleming * Map a single physical page of zeros to a larger virtual range. 716cfb00e5aSMatthew D Fleming * This requires less looping in places that want large amounts of 717cfb00e5aSMatthew D Fleming * zeros, while not using much more physical resources. 718cfb00e5aSMatthew D Fleming */ 7195df87b21SJeff Roberson addr = kva_alloc(ZERO_REGION_SIZE); 720a4667e09SMark Johnston m = vm_page_alloc_noobj(VM_ALLOC_WIRED | VM_ALLOC_ZERO); 72189cb2a19SMatthew D Fleming for (i = 0; i < ZERO_REGION_SIZE; i += PAGE_SIZE) 72289cb2a19SMatthew D Fleming pmap_qenter(addr + i, &m, 1); 7235df87b21SJeff Roberson pmap_protect(kernel_pmap, addr, addr + ZERO_REGION_SIZE, VM_PROT_READ); 72489cb2a19SMatthew D Fleming 72589cb2a19SMatthew D Fleming zero_region = (const void *)addr; 72689cb2a19SMatthew D Fleming } 72789cb2a19SMatthew D Fleming 728df8bae1dSRodney W. Grimes /* 729969e147aSMark Johnston * Import KVA from the kernel map into the kernel arena. 7301aed6d48SMark Johnston */ 7311aed6d48SMark Johnston static int 7321aed6d48SMark Johnston kva_import(void *unused, vmem_size_t size, int flags, vmem_addr_t *addrp) 7331aed6d48SMark Johnston { 7341aed6d48SMark Johnston vm_offset_t addr; 7351aed6d48SMark Johnston int result; 7361aed6d48SMark Johnston 73745cc8519SColin Percival TSENTER(); 7381aed6d48SMark Johnston KASSERT((size % KVA_QUANTUM) == 0, 7391aed6d48SMark Johnston ("kva_import: Size %jd is not a multiple of %d", 7401aed6d48SMark Johnston (intmax_t)size, (int)KVA_QUANTUM)); 7411aed6d48SMark Johnston addr = vm_map_min(kernel_map); 7421aed6d48SMark Johnston result = vm_map_find(kernel_map, NULL, 0, &addr, size, 0, 7431aed6d48SMark Johnston VMFS_SUPER_SPACE, VM_PROT_ALL, VM_PROT_ALL, MAP_NOFAULT); 74445cc8519SColin Percival if (result != KERN_SUCCESS) { 74545cc8519SColin Percival TSEXIT(); 7461aed6d48SMark Johnston return (ENOMEM); 74745cc8519SColin Percival } 7481aed6d48SMark Johnston 7491aed6d48SMark Johnston *addrp = addr; 7501aed6d48SMark Johnston 75145cc8519SColin Percival TSEXIT(); 7521aed6d48SMark Johnston return (0); 7531aed6d48SMark Johnston } 7541aed6d48SMark Johnston 7551aed6d48SMark Johnston /* 756969e147aSMark Johnston * Import KVA from a parent arena into a per-domain arena. Imports must be 757969e147aSMark Johnston * KVA_QUANTUM-aligned and a multiple of KVA_QUANTUM in size. 7581aed6d48SMark Johnston */ 7591aed6d48SMark Johnston static int 760969e147aSMark Johnston kva_import_domain(void *arena, vmem_size_t size, int flags, vmem_addr_t *addrp) 7611aed6d48SMark Johnston { 7621aed6d48SMark Johnston 7631aed6d48SMark Johnston KASSERT((size % KVA_QUANTUM) == 0, 764969e147aSMark Johnston ("kva_import_domain: Size %jd is not a multiple of %d", 7651aed6d48SMark Johnston (intmax_t)size, (int)KVA_QUANTUM)); 7661aed6d48SMark Johnston return (vmem_xalloc(arena, size, KVA_QUANTUM, 0, 0, VMEM_ADDR_MIN, 7671aed6d48SMark Johnston VMEM_ADDR_MAX, flags, addrp)); 7681aed6d48SMark Johnston } 7691aed6d48SMark Johnston 7701aed6d48SMark Johnston /* 7711c7c3c6aSMatthew Dillon * kmem_init: 7721c7c3c6aSMatthew Dillon * 7731c7c3c6aSMatthew Dillon * Create the kernel map; insert a mapping covering kernel text, 7741c7c3c6aSMatthew Dillon * data, bss, and all space allocated thus far (`boostrap' data). The 7751c7c3c6aSMatthew Dillon * new map will thus map the range between VM_MIN_KERNEL_ADDRESS and 7761c7c3c6aSMatthew Dillon * `start' as allocated, and the range between `start' and `end' as free. 7771aed6d48SMark Johnston * Create the kernel vmem arena and its per-domain children. 778df8bae1dSRodney W. Grimes */ 7790d94caffSDavid Greenman void 7806e309d75SEd Maste kmem_init(vm_offset_t start, vm_offset_t end) 781df8bae1dSRodney W. Grimes { 782aea9103eSMark Johnston vm_size_t quantum; 7831aed6d48SMark Johnston int domain; 784df8bae1dSRodney W. Grimes 7857efe14cbSMark Johnston vm_map_init(kernel_map, kernel_pmap, VM_MIN_KERNEL_ADDRESS, end); 7867efe14cbSMark Johnston kernel_map->system_map = 1; 7877efe14cbSMark Johnston vm_map_lock(kernel_map); 788df8bae1dSRodney W. Grimes /* N.B.: cannot use kgdb to debug, starting with this assignment ... */ 7897efe14cbSMark Johnston (void)vm_map_insert(kernel_map, NULL, 0, 7905cfa90e9SAlan Cox #ifdef __amd64__ 7915cfa90e9SAlan Cox KERNBASE, 7925cfa90e9SAlan Cox #else 7935cfa90e9SAlan Cox VM_MIN_KERNEL_ADDRESS, 7945cfa90e9SAlan Cox #endif 7955cfa90e9SAlan Cox start, VM_PROT_ALL, VM_PROT_ALL, MAP_NOFAULT); 796df8bae1dSRodney W. Grimes /* ... and ending with the completion of the above `insert' */ 7979d75f0dcSMark Johnston 7989d75f0dcSMark Johnston #ifdef __amd64__ 7999d75f0dcSMark Johnston /* 8009d75f0dcSMark Johnston * Mark KVA used for the page array as allocated. Other platforms 8019d75f0dcSMark Johnston * that handle vm_page_array allocation can simply adjust virtual_avail 8029d75f0dcSMark Johnston * instead. 8039d75f0dcSMark Johnston */ 8047dd979dfSMark Johnston (void)vm_map_insert(kernel_map, NULL, 0, (vm_offset_t)vm_page_array, 8059d75f0dcSMark Johnston (vm_offset_t)vm_page_array + round_2mpage(vm_page_array_size * 8069d75f0dcSMark Johnston sizeof(struct vm_page)), 8079d75f0dcSMark Johnston VM_PROT_RW, VM_PROT_RW, MAP_NOFAULT); 8089d75f0dcSMark Johnston #endif 8097dd979dfSMark Johnston vm_map_unlock(kernel_map); 8101aed6d48SMark Johnston 8111aed6d48SMark Johnston /* 812aea9103eSMark Johnston * Use a large import quantum on NUMA systems. This helps minimize 813aea9103eSMark Johnston * interleaving of superpages, reducing internal fragmentation within 814aea9103eSMark Johnston * the per-domain arenas. 815aea9103eSMark Johnston */ 816aea9103eSMark Johnston if (vm_ndomains > 1 && PMAP_HAS_DMAP) 817aea9103eSMark Johnston quantum = KVA_NUMA_IMPORT_QUANTUM; 818aea9103eSMark Johnston else 819aea9103eSMark Johnston quantum = KVA_QUANTUM; 820aea9103eSMark Johnston 821aea9103eSMark Johnston /* 8221aed6d48SMark Johnston * Initialize the kernel_arena. This can grow on demand. 8231aed6d48SMark Johnston */ 8241aed6d48SMark Johnston vmem_init(kernel_arena, "kernel arena", 0, 0, PAGE_SIZE, 0, 0); 825aea9103eSMark Johnston vmem_set_import(kernel_arena, kva_import, NULL, NULL, quantum); 8261aed6d48SMark Johnston 8271aed6d48SMark Johnston for (domain = 0; domain < vm_ndomains; domain++) { 828969e147aSMark Johnston /* 829969e147aSMark Johnston * Initialize the per-domain arenas. These are used to color 830969e147aSMark Johnston * the KVA space in a way that ensures that virtual large pages 831969e147aSMark Johnston * are backed by memory from the same physical domain, 832969e147aSMark Johnston * maximizing the potential for superpage promotion. 833969e147aSMark Johnston */ 8341aed6d48SMark Johnston vm_dom[domain].vmd_kernel_arena = vmem_create( 8351aed6d48SMark Johnston "kernel arena domain", 0, 0, PAGE_SIZE, 0, M_WAITOK); 8361aed6d48SMark Johnston vmem_set_import(vm_dom[domain].vmd_kernel_arena, 837aea9103eSMark Johnston kva_import_domain, NULL, kernel_arena, quantum); 838969e147aSMark Johnston 839969e147aSMark Johnston /* 840969e147aSMark Johnston * In architectures with superpages, maintain separate arenas 841969e147aSMark Johnston * for allocations with permissions that differ from the 842969e147aSMark Johnston * "standard" read/write permissions used for kernel memory, 843969e147aSMark Johnston * so as not to inhibit superpage promotion. 844aea9103eSMark Johnston * 845aea9103eSMark Johnston * Use the base import quantum since this arena is rarely used. 846969e147aSMark Johnston */ 8471aed6d48SMark Johnston #if VM_NRESERVLEVEL > 0 8481aed6d48SMark Johnston vm_dom[domain].vmd_kernel_rwx_arena = vmem_create( 8491aed6d48SMark Johnston "kernel rwx arena domain", 0, 0, PAGE_SIZE, 0, M_WAITOK); 8501aed6d48SMark Johnston vmem_set_import(vm_dom[domain].vmd_kernel_rwx_arena, 851969e147aSMark Johnston kva_import_domain, (vmem_release_t *)vmem_xfree, 852969e147aSMark Johnston kernel_arena, KVA_QUANTUM); 853303b7702SMark Johnston #else 854303b7702SMark Johnston vm_dom[domain].vmd_kernel_rwx_arena = 855303b7702SMark Johnston vm_dom[domain].vmd_kernel_arena; 8561aed6d48SMark Johnston #endif 8571aed6d48SMark Johnston } 858a81c400eSJeff Roberson 859a81c400eSJeff Roberson /* 860a81c400eSJeff Roberson * This must be the very first call so that the virtual address 861a81c400eSJeff Roberson * space used for early allocations is properly marked used in 862a81c400eSJeff Roberson * the map. 863a81c400eSJeff Roberson */ 864a81c400eSJeff Roberson uma_startup2(); 865df8bae1dSRodney W. Grimes } 86686f08737SRobert Watson 867483f692eSMark Johnston /* 868483f692eSMark Johnston * kmem_bootstrap_free: 869483f692eSMark Johnston * 870483f692eSMark Johnston * Free pages backing preloaded data (e.g., kernel modules) to the 871483f692eSMark Johnston * system. Currently only supported on platforms that create a 872483f692eSMark Johnston * vm_phys segment for preloaded data. 873483f692eSMark Johnston */ 874483f692eSMark Johnston void 875483f692eSMark Johnston kmem_bootstrap_free(vm_offset_t start, vm_size_t size) 876483f692eSMark Johnston { 877483f692eSMark Johnston #if defined(__i386__) || defined(__amd64__) 878483f692eSMark Johnston struct vm_domain *vmd; 8796c85795aSMark Johnston vm_offset_t end, va; 880483f692eSMark Johnston vm_paddr_t pa; 881483f692eSMark Johnston vm_page_t m; 882483f692eSMark Johnston 883483f692eSMark Johnston end = trunc_page(start + size); 884483f692eSMark Johnston start = round_page(start); 885483f692eSMark Johnston 886f822c9e2SMark Johnston #ifdef __amd64__ 887f822c9e2SMark Johnston /* 888f822c9e2SMark Johnston * Preloaded files do not have execute permissions by default on amd64. 889f822c9e2SMark Johnston * Restore the default permissions to ensure that the direct map alias 890f822c9e2SMark Johnston * is updated. 891f822c9e2SMark Johnston */ 892f822c9e2SMark Johnston pmap_change_prot(start, end - start, VM_PROT_RW); 893f822c9e2SMark Johnston #endif 8946c85795aSMark Johnston for (va = start; va < end; va += PAGE_SIZE) { 8956c85795aSMark Johnston pa = pmap_kextract(va); 896483f692eSMark Johnston m = PHYS_TO_VM_PAGE(pa); 897483f692eSMark Johnston 898483f692eSMark Johnston vmd = vm_pagequeue_domain(m); 899483f692eSMark Johnston vm_domain_free_lock(vmd); 900483f692eSMark Johnston vm_phys_free_pages(m, 0); 901483f692eSMark Johnston vm_domain_free_unlock(vmd); 902c16bd872SMark Johnston 903c16bd872SMark Johnston vm_domain_freecnt_inc(vmd, 1); 904c16bd872SMark Johnston vm_cnt.v_page_count++; 905483f692eSMark Johnston } 9066c85795aSMark Johnston pmap_remove(kernel_pmap, start, end); 9076c85795aSMark Johnston (void)vmem_add(kernel_arena, start, end - start, M_WAITOK); 908483f692eSMark Johnston #endif 909483f692eSMark Johnston } 910483f692eSMark Johnston 911*8882b785SKonstantin Belousov #ifdef PMAP_WANT_ACTIVE_CPUS_NAIVE 912*8882b785SKonstantin Belousov void 913*8882b785SKonstantin Belousov pmap_active_cpus(pmap_t pmap, cpuset_t *res) 914*8882b785SKonstantin Belousov { 915*8882b785SKonstantin Belousov struct thread *td; 916*8882b785SKonstantin Belousov struct proc *p; 917*8882b785SKonstantin Belousov struct vmspace *vm; 918*8882b785SKonstantin Belousov int c; 919*8882b785SKonstantin Belousov 920*8882b785SKonstantin Belousov CPU_ZERO(res); 921*8882b785SKonstantin Belousov CPU_FOREACH(c) { 922*8882b785SKonstantin Belousov td = cpuid_to_pcpu[c]->pc_curthread; 923*8882b785SKonstantin Belousov p = td->td_proc; 924*8882b785SKonstantin Belousov if (p == NULL) 925*8882b785SKonstantin Belousov continue; 926*8882b785SKonstantin Belousov vm = vmspace_acquire_ref(p); 927*8882b785SKonstantin Belousov if (vm == NULL) 928*8882b785SKonstantin Belousov continue; 929*8882b785SKonstantin Belousov if (pmap == vmspace_pmap(vm)) 930*8882b785SKonstantin Belousov CPU_SET(c, res); 931*8882b785SKonstantin Belousov vmspace_free(vm); 932*8882b785SKonstantin Belousov } 933*8882b785SKonstantin Belousov } 934*8882b785SKonstantin Belousov #endif 935*8882b785SKonstantin Belousov 93686f08737SRobert Watson /* 93786f08737SRobert Watson * Allow userspace to directly trigger the VM drain routine for testing 93886f08737SRobert Watson * purposes. 93986f08737SRobert Watson */ 94086f08737SRobert Watson static int 94186f08737SRobert Watson debug_vm_lowmem(SYSCTL_HANDLER_ARGS) 94286f08737SRobert Watson { 94386f08737SRobert Watson int error, i; 94486f08737SRobert Watson 94586f08737SRobert Watson i = 0; 94686f08737SRobert Watson error = sysctl_handle_int(oidp, &i, 0, req); 94751a7be5fSKonstantin Belousov if (error != 0) 94886f08737SRobert Watson return (error); 9499b43bc27SAndriy Gapon if ((i & ~(VM_LOW_KMEM | VM_LOW_PAGES)) != 0) 9509b43bc27SAndriy Gapon return (EINVAL); 9519b43bc27SAndriy Gapon if (i != 0) 9529b43bc27SAndriy Gapon EVENTHANDLER_INVOKE(vm_lowmem, i); 95386f08737SRobert Watson return (0); 95486f08737SRobert Watson } 95551a7be5fSKonstantin Belousov SYSCTL_PROC(_debug, OID_AUTO, vm_lowmem, 95651a7be5fSKonstantin Belousov CTLTYPE_INT | CTLFLAG_MPSAFE | CTLFLAG_RW, 0, 0, debug_vm_lowmem, "I", 95751a7be5fSKonstantin Belousov "set to trigger vm_lowmem event with given flags"); 95889619b74SKonstantin Belousov 95989619b74SKonstantin Belousov static int 96089619b74SKonstantin Belousov debug_uma_reclaim(SYSCTL_HANDLER_ARGS) 96189619b74SKonstantin Belousov { 96289619b74SKonstantin Belousov int error, i; 96389619b74SKonstantin Belousov 96489619b74SKonstantin Belousov i = 0; 96589619b74SKonstantin Belousov error = sysctl_handle_int(oidp, &i, 0, req); 966aabe13f1SMark Johnston if (error != 0 || req->newptr == NULL) 96789619b74SKonstantin Belousov return (error); 96889619b74SKonstantin Belousov if (i != UMA_RECLAIM_TRIM && i != UMA_RECLAIM_DRAIN && 96989619b74SKonstantin Belousov i != UMA_RECLAIM_DRAIN_CPU) 97089619b74SKonstantin Belousov return (EINVAL); 97189619b74SKonstantin Belousov uma_reclaim(i); 97289619b74SKonstantin Belousov return (0); 97389619b74SKonstantin Belousov } 97489619b74SKonstantin Belousov SYSCTL_PROC(_debug, OID_AUTO, uma_reclaim, 97589619b74SKonstantin Belousov CTLTYPE_INT | CTLFLAG_MPSAFE | CTLFLAG_RW, 0, 0, debug_uma_reclaim, "I", 97689619b74SKonstantin Belousov "set to generate request to reclaim uma caches"); 977aabe13f1SMark Johnston 978aabe13f1SMark Johnston static int 979aabe13f1SMark Johnston debug_uma_reclaim_domain(SYSCTL_HANDLER_ARGS) 980aabe13f1SMark Johnston { 981aabe13f1SMark Johnston int domain, error, request; 982aabe13f1SMark Johnston 983aabe13f1SMark Johnston request = 0; 984aabe13f1SMark Johnston error = sysctl_handle_int(oidp, &request, 0, req); 985aabe13f1SMark Johnston if (error != 0 || req->newptr == NULL) 986aabe13f1SMark Johnston return (error); 987aabe13f1SMark Johnston 988aabe13f1SMark Johnston domain = request >> 4; 989aabe13f1SMark Johnston request &= 0xf; 990aabe13f1SMark Johnston if (request != UMA_RECLAIM_TRIM && request != UMA_RECLAIM_DRAIN && 991aabe13f1SMark Johnston request != UMA_RECLAIM_DRAIN_CPU) 992aabe13f1SMark Johnston return (EINVAL); 993aabe13f1SMark Johnston if (domain < 0 || domain >= vm_ndomains) 994aabe13f1SMark Johnston return (EINVAL); 995aabe13f1SMark Johnston uma_reclaim_domain(request, domain); 996aabe13f1SMark Johnston return (0); 997aabe13f1SMark Johnston } 998aabe13f1SMark Johnston SYSCTL_PROC(_debug, OID_AUTO, uma_reclaim_domain, 999aabe13f1SMark Johnston CTLTYPE_INT | CTLFLAG_MPSAFE | CTLFLAG_RW, 0, 0, 1000aabe13f1SMark Johnston debug_uma_reclaim_domain, "I", 1001aabe13f1SMark Johnston ""); 1002