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> 68874651b1SDavid E. O'Brien __FBSDID("$FreeBSD$"); 69874651b1SDavid E. O'Brien 707a469c8eSJeff Roberson #include "opt_vm.h" 717a469c8eSJeff Roberson 72df8bae1dSRodney W. Grimes #include <sys/param.h> 73df8bae1dSRodney W. Grimes #include <sys/systm.h> 7460363fb9SLuigi Rizzo #include <sys/kernel.h> /* for ticks and hz */ 757a469c8eSJeff Roberson #include <sys/domainset.h> 760f2c2ce0SPawel Jakub Dawidek #include <sys/eventhandler.h> 77fb919e4dSMark Murray #include <sys/lock.h> 78f23b4c91SGarrett Wollman #include <sys/proc.h> 79a1f6d91cSDavid Greenman #include <sys/malloc.h> 8089f6b863SAttilio Rao #include <sys/rwlock.h> 8186f08737SRobert Watson #include <sys/sysctl.h> 825df87b21SJeff Roberson #include <sys/vmem.h> 837a469c8eSJeff Roberson #include <sys/vmmeter.h> 84df8bae1dSRodney W. Grimes 85df8bae1dSRodney W. Grimes #include <vm/vm.h> 86efeaf95aSDavid Greenman #include <vm/vm_param.h> 877a469c8eSJeff Roberson #include <vm/vm_domainset.h> 885df87b21SJeff Roberson #include <vm/vm_kern.h> 89efeaf95aSDavid Greenman #include <vm/pmap.h> 90efeaf95aSDavid Greenman #include <vm/vm_map.h> 91efeaf95aSDavid Greenman #include <vm/vm_object.h> 92df8bae1dSRodney W. Grimes #include <vm/vm_page.h> 93df8bae1dSRodney W. Grimes #include <vm/vm_pageout.h> 947a469c8eSJeff Roberson #include <vm/vm_phys.h> 95e2068d0bSJeff Roberson #include <vm/vm_pagequeue.h> 9633fff5d5SMark Johnston #include <vm/vm_radix.h> 979b4288a3SBruce Evans #include <vm/vm_extern.h> 980f2c2ce0SPawel Jakub Dawidek #include <vm/uma.h> 99df8bae1dSRodney W. Grimes 1007dd979dfSMark Johnston struct vm_map kernel_map_store; 1017dd979dfSMark Johnston struct vm_map exec_map_store; 1027dd979dfSMark Johnston struct vm_map pipe_map_store; 103f23b4c91SGarrett Wollman 10489cb2a19SMatthew D Fleming const void *zero_region; 10589cb2a19SMatthew D Fleming CTASSERT((ZERO_REGION_SIZE & PAGE_MASK) == 0); 10689cb2a19SMatthew D Fleming 107645743eaSJohn Baldwin /* NB: Used by kernel debuggers. */ 108645743eaSJohn Baldwin const u_long vm_maxuser_address = VM_MAXUSER_ADDRESS; 109645743eaSJohn Baldwin 110ec492b13SMark Johnston u_int exec_map_entry_size; 111ec492b13SMark Johnston u_int exec_map_entries; 112ec492b13SMark Johnston 11394bfd5b1SMarius Strobl SYSCTL_ULONG(_vm, OID_AUTO, min_kernel_address, CTLFLAG_RD, 114f0188618SHans Petter Selasky SYSCTL_NULL_ULONG_PTR, VM_MIN_KERNEL_ADDRESS, "Min kernel address"); 11594bfd5b1SMarius Strobl 11694bfd5b1SMarius Strobl SYSCTL_ULONG(_vm, OID_AUTO, max_kernel_address, CTLFLAG_RD, 11758aa35d4SWarner Losh #if defined(__arm__) 11894bfd5b1SMarius Strobl &vm_max_kernel_address, 0, 11994bfd5b1SMarius Strobl #else 120f0188618SHans Petter Selasky SYSCTL_NULL_ULONG_PTR, VM_MAX_KERNEL_ADDRESS, 12194bfd5b1SMarius Strobl #endif 12294bfd5b1SMarius Strobl "Max kernel address"); 12394bfd5b1SMarius Strobl 1241aed6d48SMark Johnston #if VM_NRESERVLEVEL > 0 12525ed23cfSMark Johnston #define KVA_QUANTUM_SHIFT (VM_LEVEL_0_ORDER + PAGE_SHIFT) 1261aed6d48SMark Johnston #else 1272b601070SMark Johnston /* On non-superpage architectures we want large import sizes. */ 1282b601070SMark Johnston #define KVA_QUANTUM_SHIFT (8 + PAGE_SHIFT) 1291aed6d48SMark Johnston #endif 13025ed23cfSMark Johnston #define KVA_QUANTUM (1 << KVA_QUANTUM_SHIFT) 1311aed6d48SMark Johnston 132a81c400eSJeff Roberson extern void uma_startup2(void); 133a81c400eSJeff Roberson 134df8bae1dSRodney W. Grimes /* 1355df87b21SJeff Roberson * kva_alloc: 136a839bdc8SDmitrij Tejblum * 137b77c2bcdSAlan Cox * Allocate a virtual address range with no underlying object and 138b77c2bcdSAlan Cox * no initial mapping to physical memory. Any mapping from this 139b77c2bcdSAlan Cox * range to physical memory must be explicitly created prior to 140b77c2bcdSAlan Cox * its use, typically with pmap_qenter(). Any attempt to create 141b77c2bcdSAlan Cox * a mapping on demand through vm_fault() will result in a panic. 142a839bdc8SDmitrij Tejblum */ 143a839bdc8SDmitrij Tejblum vm_offset_t 1446e309d75SEd Maste kva_alloc(vm_size_t size) 145a839bdc8SDmitrij Tejblum { 146a839bdc8SDmitrij Tejblum vm_offset_t addr; 147a839bdc8SDmitrij Tejblum 148a839bdc8SDmitrij Tejblum size = round_page(size); 1495df87b21SJeff Roberson if (vmem_alloc(kernel_arena, size, M_BESTFIT | M_NOWAIT, &addr)) 150a839bdc8SDmitrij Tejblum return (0); 1515df87b21SJeff Roberson 152a839bdc8SDmitrij Tejblum return (addr); 153a839bdc8SDmitrij Tejblum } 154a839bdc8SDmitrij Tejblum 155a839bdc8SDmitrij Tejblum /* 1565df87b21SJeff Roberson * kva_free: 157ca596a25SJuli Mallett * 1585df87b21SJeff Roberson * Release a region of kernel virtual memory allocated 1595df87b21SJeff Roberson * with kva_alloc, and return the physical pages 1605df87b21SJeff Roberson * associated with that region. 1615df87b21SJeff Roberson * 1625df87b21SJeff Roberson * This routine may not block on kernel maps. 163ca596a25SJuli Mallett */ 1645df87b21SJeff Roberson void 1656e309d75SEd Maste kva_free(vm_offset_t addr, vm_size_t size) 166df8bae1dSRodney W. Grimes { 167df8bae1dSRodney W. Grimes 168df8bae1dSRodney W. Grimes size = round_page(size); 1695df87b21SJeff Roberson vmem_free(kernel_arena, addr, size); 170df8bae1dSRodney W. Grimes } 171df8bae1dSRodney W. Grimes 17233655d95SMark Johnston static vm_page_t 17333655d95SMark Johnston kmem_alloc_contig_pages(vm_object_t object, vm_pindex_t pindex, int domain, 17433655d95SMark Johnston int pflags, u_long npages, vm_paddr_t low, vm_paddr_t high, 17533655d95SMark Johnston u_long alignment, vm_paddr_t boundary, vm_memattr_t memattr) 17633655d95SMark Johnston { 17733655d95SMark Johnston vm_page_t m; 17833655d95SMark Johnston int tries; 17933655d95SMark Johnston bool wait; 18033655d95SMark Johnston 18133655d95SMark Johnston VM_OBJECT_ASSERT_WLOCKED(object); 18233655d95SMark Johnston 18333655d95SMark Johnston wait = (pflags & VM_ALLOC_WAITOK) != 0; 18433655d95SMark Johnston pflags &= ~(VM_ALLOC_NOWAIT | VM_ALLOC_WAITOK | VM_ALLOC_WAITFAIL); 18533655d95SMark Johnston pflags |= VM_ALLOC_NOWAIT; 18633655d95SMark Johnston for (tries = wait ? 3 : 1;; tries--) { 18733655d95SMark Johnston m = vm_page_alloc_contig_domain(object, pindex, domain, pflags, 18833655d95SMark Johnston npages, low, high, alignment, boundary, memattr); 18933655d95SMark Johnston if (m != NULL || tries == 0) 19033655d95SMark Johnston break; 19133655d95SMark Johnston 19233655d95SMark Johnston VM_OBJECT_WUNLOCK(object); 19333655d95SMark Johnston if (!vm_page_reclaim_contig_domain(domain, pflags, npages, 19433655d95SMark Johnston low, high, alignment, boundary) && wait) 19533655d95SMark Johnston vm_wait_domain(domain); 19633655d95SMark Johnston VM_OBJECT_WLOCK(object); 19733655d95SMark Johnston } 19833655d95SMark Johnston return (m); 19933655d95SMark Johnston } 20033655d95SMark Johnston 201df8bae1dSRodney W. Grimes /* 2020ff0fc84SAlan Cox * Allocates a region from the kernel address map and physical pages 2030ff0fc84SAlan Cox * within the specified address range to the kernel object. Creates a 2040ff0fc84SAlan Cox * wired mapping from this region to these pages, and returns the 2050ff0fc84SAlan Cox * region's starting virtual address. The allocated pages are not 2060ff0fc84SAlan Cox * necessarily physically contiguous. If M_ZERO is specified through the 2070ff0fc84SAlan Cox * given flags, then the pages are zeroed before they are mapped. 2080ff0fc84SAlan Cox */ 2099978bd99SMark Johnston static vm_offset_t 2107a469c8eSJeff Roberson kmem_alloc_attr_domain(int domain, vm_size_t size, int flags, vm_paddr_t low, 2110ff0fc84SAlan Cox vm_paddr_t high, vm_memattr_t memattr) 2120ff0fc84SAlan Cox { 2137a469c8eSJeff Roberson vmem_t *vmem; 21433655d95SMark Johnston vm_object_t object; 215d1780e8dSKonstantin Belousov vm_offset_t addr, i, offset; 2160ff0fc84SAlan Cox vm_page_t m; 21733655d95SMark Johnston int pflags; 218d22ff6e6SKonstantin Belousov vm_prot_t prot; 2190ff0fc84SAlan Cox 22033655d95SMark Johnston object = kernel_object; 2210ff0fc84SAlan Cox size = round_page(size); 2227a469c8eSJeff Roberson vmem = vm_dom[domain].vmd_kernel_arena; 2235df87b21SJeff Roberson if (vmem_alloc(vmem, size, M_BESTFIT | flags, &addr)) 2240ff0fc84SAlan Cox return (0); 2250ff0fc84SAlan Cox offset = addr - VM_MIN_KERNEL_ADDRESS; 22691e31c3cSJeff Roberson pflags = malloc2vm_flags(flags) | VM_ALLOC_WIRED; 227d22ff6e6SKonstantin Belousov prot = (flags & M_EXEC) != 0 ? VM_PROT_ALL : VM_PROT_RW; 22889f6b863SAttilio Rao VM_OBJECT_WLOCK(object); 2295df87b21SJeff Roberson for (i = 0; i < size; i += PAGE_SIZE) { 23033655d95SMark Johnston m = kmem_alloc_contig_pages(object, atop(offset + i), 2317a469c8eSJeff Roberson domain, pflags, 1, low, high, PAGE_SIZE, 0, memattr); 2320ff0fc84SAlan Cox if (m == NULL) { 23389f6b863SAttilio Rao VM_OBJECT_WUNLOCK(object); 2349e829b22SAlan Cox kmem_unback(object, addr, i); 2355df87b21SJeff Roberson vmem_free(vmem, addr, size); 2360ff0fc84SAlan Cox return (0); 2370ff0fc84SAlan Cox } 238e2068d0bSJeff Roberson KASSERT(vm_phys_domain(m) == domain, 2397a469c8eSJeff Roberson ("kmem_alloc_attr_domain: Domain mismatch %d != %d", 240e2068d0bSJeff Roberson vm_phys_domain(m), domain)); 2410ff0fc84SAlan Cox if ((flags & M_ZERO) && (m->flags & PG_ZERO) == 0) 2420ff0fc84SAlan Cox pmap_zero_page(m); 24391e31c3cSJeff Roberson vm_page_valid(m); 244d22ff6e6SKonstantin Belousov pmap_enter(kernel_pmap, addr + i, m, prot, 245d22ff6e6SKonstantin Belousov prot | PMAP_ENTER_WIRED, 0); 2460ff0fc84SAlan Cox } 24789f6b863SAttilio Rao VM_OBJECT_WUNLOCK(object); 2480ff0fc84SAlan Cox return (addr); 2490ff0fc84SAlan Cox } 2500ff0fc84SAlan Cox 2517a469c8eSJeff Roberson vm_offset_t 252db7c2a48SAlan Cox kmem_alloc_attr(vm_size_t size, int flags, vm_paddr_t low, vm_paddr_t high, 253db7c2a48SAlan Cox vm_memattr_t memattr) 2547a469c8eSJeff Roberson { 2559978bd99SMark Johnston 2569978bd99SMark Johnston return (kmem_alloc_attr_domainset(DOMAINSET_RR(), size, flags, low, 2579978bd99SMark Johnston high, memattr)); 2589978bd99SMark Johnston } 2599978bd99SMark Johnston 2609978bd99SMark Johnston vm_offset_t 2619978bd99SMark Johnston kmem_alloc_attr_domainset(struct domainset *ds, vm_size_t size, int flags, 2629978bd99SMark Johnston vm_paddr_t low, vm_paddr_t high, vm_memattr_t memattr) 2639978bd99SMark Johnston { 2647a469c8eSJeff Roberson struct vm_domainset_iter di; 2657a469c8eSJeff Roberson vm_offset_t addr; 2667a469c8eSJeff Roberson int domain; 2677a469c8eSJeff Roberson 2689978bd99SMark Johnston vm_domainset_iter_policy_init(&di, ds, &domain, &flags); 2697a469c8eSJeff Roberson do { 2707a469c8eSJeff Roberson addr = kmem_alloc_attr_domain(domain, size, flags, low, high, 2717a469c8eSJeff Roberson memattr); 2727a469c8eSJeff Roberson if (addr != 0) 2737a469c8eSJeff Roberson break; 2744c29d2deSMark Johnston } while (vm_domainset_iter_policy(&di, &domain) == 0); 2757a469c8eSJeff Roberson 2767a469c8eSJeff Roberson return (addr); 2777a469c8eSJeff Roberson } 2787a469c8eSJeff Roberson 2790ff0fc84SAlan Cox /* 2800ff0fc84SAlan Cox * Allocates a region from the kernel address map and physically 2810ff0fc84SAlan Cox * contiguous pages within the specified address range to the kernel 2820ff0fc84SAlan Cox * object. Creates a wired mapping from this region to these pages, and 2830ff0fc84SAlan Cox * returns the region's starting virtual address. If M_ZERO is specified 2840ff0fc84SAlan Cox * through the given flags, then the pages are zeroed before they are 2850ff0fc84SAlan Cox * mapped. 2860ff0fc84SAlan Cox */ 2879978bd99SMark Johnston static vm_offset_t 2887a469c8eSJeff Roberson kmem_alloc_contig_domain(int domain, vm_size_t size, int flags, vm_paddr_t low, 2890ff0fc84SAlan Cox vm_paddr_t high, u_long alignment, vm_paddr_t boundary, 2900ff0fc84SAlan Cox vm_memattr_t memattr) 2910ff0fc84SAlan Cox { 2927a469c8eSJeff Roberson vmem_t *vmem; 29333655d95SMark Johnston vm_object_t object; 294d1780e8dSKonstantin Belousov vm_offset_t addr, offset, tmp; 2950ff0fc84SAlan Cox vm_page_t end_m, m; 296c869e672SAlan Cox u_long npages; 29733655d95SMark Johnston int pflags; 2980ff0fc84SAlan Cox 29933655d95SMark Johnston object = kernel_object; 3000ff0fc84SAlan Cox size = round_page(size); 3017a469c8eSJeff Roberson vmem = vm_dom[domain].vmd_kernel_arena; 3025df87b21SJeff Roberson if (vmem_alloc(vmem, size, flags | M_BESTFIT, &addr)) 3030ff0fc84SAlan Cox return (0); 3040ff0fc84SAlan Cox offset = addr - VM_MIN_KERNEL_ADDRESS; 30591e31c3cSJeff Roberson pflags = malloc2vm_flags(flags) | VM_ALLOC_WIRED; 306c869e672SAlan Cox npages = atop(size); 30789f6b863SAttilio Rao VM_OBJECT_WLOCK(object); 30833655d95SMark Johnston m = kmem_alloc_contig_pages(object, atop(offset), domain, 30933655d95SMark Johnston pflags, npages, low, high, alignment, boundary, memattr); 3100ff0fc84SAlan Cox if (m == NULL) { 31189f6b863SAttilio Rao VM_OBJECT_WUNLOCK(object); 3125df87b21SJeff Roberson vmem_free(vmem, addr, size); 3130ff0fc84SAlan Cox return (0); 3140ff0fc84SAlan Cox } 315e2068d0bSJeff Roberson KASSERT(vm_phys_domain(m) == domain, 3167a469c8eSJeff Roberson ("kmem_alloc_contig_domain: Domain mismatch %d != %d", 317e2068d0bSJeff Roberson vm_phys_domain(m), domain)); 318c869e672SAlan Cox end_m = m + npages; 3195df87b21SJeff Roberson tmp = addr; 3200ff0fc84SAlan Cox for (; m < end_m; m++) { 3210ff0fc84SAlan Cox if ((flags & M_ZERO) && (m->flags & PG_ZERO) == 0) 3220ff0fc84SAlan Cox pmap_zero_page(m); 32391e31c3cSJeff Roberson vm_page_valid(m); 3240766f278SJonathan T. Looney pmap_enter(kernel_pmap, tmp, m, VM_PROT_RW, 3250766f278SJonathan T. Looney VM_PROT_RW | PMAP_ENTER_WIRED, 0); 3265df87b21SJeff Roberson tmp += PAGE_SIZE; 3270ff0fc84SAlan Cox } 32889f6b863SAttilio Rao VM_OBJECT_WUNLOCK(object); 3290ff0fc84SAlan Cox return (addr); 3300ff0fc84SAlan Cox } 3310ff0fc84SAlan Cox 3327a469c8eSJeff Roberson vm_offset_t 33344d0efb2SAlan Cox kmem_alloc_contig(vm_size_t size, int flags, vm_paddr_t low, vm_paddr_t high, 33444d0efb2SAlan Cox u_long alignment, vm_paddr_t boundary, vm_memattr_t memattr) 3357a469c8eSJeff Roberson { 3369978bd99SMark Johnston 3379978bd99SMark Johnston return (kmem_alloc_contig_domainset(DOMAINSET_RR(), size, flags, low, 3389978bd99SMark Johnston high, alignment, boundary, memattr)); 3399978bd99SMark Johnston } 3409978bd99SMark Johnston 3419978bd99SMark Johnston vm_offset_t 3429978bd99SMark Johnston kmem_alloc_contig_domainset(struct domainset *ds, vm_size_t size, int flags, 3439978bd99SMark Johnston vm_paddr_t low, vm_paddr_t high, u_long alignment, vm_paddr_t boundary, 3449978bd99SMark Johnston vm_memattr_t memattr) 3459978bd99SMark Johnston { 3467a469c8eSJeff Roberson struct vm_domainset_iter di; 3477a469c8eSJeff Roberson vm_offset_t addr; 3487a469c8eSJeff Roberson int domain; 3497a469c8eSJeff Roberson 3509978bd99SMark Johnston vm_domainset_iter_policy_init(&di, ds, &domain, &flags); 3517a469c8eSJeff Roberson do { 3527a469c8eSJeff Roberson addr = kmem_alloc_contig_domain(domain, size, flags, low, high, 3537a469c8eSJeff Roberson alignment, boundary, memattr); 3547a469c8eSJeff Roberson if (addr != 0) 3557a469c8eSJeff Roberson break; 3564c29d2deSMark Johnston } while (vm_domainset_iter_policy(&di, &domain) == 0); 3577a469c8eSJeff Roberson 3587a469c8eSJeff Roberson return (addr); 3597a469c8eSJeff Roberson } 3607a469c8eSJeff Roberson 3610ff0fc84SAlan Cox /* 3627dd979dfSMark Johnston * kmem_subinit: 363df8bae1dSRodney W. Grimes * 3647dd979dfSMark Johnston * Initializes a map to manage a subrange 365df8bae1dSRodney W. Grimes * of the kernel virtual address space. 366df8bae1dSRodney W. Grimes * 367df8bae1dSRodney W. Grimes * Arguments are as follows: 368df8bae1dSRodney W. Grimes * 369df8bae1dSRodney W. Grimes * parent Map to take range from 370df8bae1dSRodney W. Grimes * min, max Returned endpoints of map 371030f2369SAlfred Perlstein * size Size of range to find 3723202ed75SAlan Cox * superpage_align Request that min is superpage aligned 373df8bae1dSRodney W. Grimes */ 3747dd979dfSMark Johnston void 3757dd979dfSMark Johnston kmem_subinit(vm_map_t map, vm_map_t parent, vm_offset_t *min, vm_offset_t *max, 3767dd979dfSMark Johnston vm_size_t size, bool superpage_align) 377df8bae1dSRodney W. Grimes { 3786e4f51d1SAlfred Perlstein int ret; 37923955314SAlfred Perlstein 380df8bae1dSRodney W. Grimes size = round_page(size); 381df8bae1dSRodney W. Grimes 3822bc24aa9SAlan Cox *min = vm_map_min(parent); 383edb572a3SJohn Baldwin ret = vm_map_find(parent, NULL, 0, min, size, 0, superpage_align ? 3845aa60b6fSJohn Baldwin VMFS_SUPER_SPACE : VMFS_ANY_SPACE, VM_PROT_ALL, VM_PROT_ALL, 3853364c323SKonstantin Belousov MAP_ACC_NO_CHARGE); 38624dedba9SAlan Cox if (ret != KERN_SUCCESS) 3877dd979dfSMark Johnston panic("kmem_subinit: bad status return of %d", ret); 388df8bae1dSRodney W. Grimes *max = *min + size; 3897dd979dfSMark Johnston vm_map_init(map, vm_map_pmap(parent), *min, *max); 3907dd979dfSMark Johnston if (vm_map_submap(parent, *min, *max, map) != KERN_SUCCESS) 3917dd979dfSMark Johnston panic("kmem_subinit: unable to change range to submap"); 392df8bae1dSRodney W. Grimes } 393df8bae1dSRodney W. Grimes 394df8bae1dSRodney W. Grimes /* 3959978bd99SMark Johnston * kmem_malloc_domain: 3961c7c3c6aSMatthew Dillon * 3975df87b21SJeff Roberson * Allocate wired-down pages in the kernel's address space. 398df8bae1dSRodney W. Grimes */ 3999978bd99SMark Johnston static vm_offset_t 400067fd858SAlan Cox kmem_malloc_domain(int domain, vm_size_t size, int flags) 401df8bae1dSRodney W. Grimes { 4020766f278SJonathan T. Looney vmem_t *arena; 403df8bae1dSRodney W. Grimes vm_offset_t addr; 4045df87b21SJeff Roberson int rv; 405df8bae1dSRodney W. Grimes 406067fd858SAlan Cox if (__predict_true((flags & M_EXEC) == 0)) 4070766f278SJonathan T. Looney arena = vm_dom[domain].vmd_kernel_arena; 4080766f278SJonathan T. Looney else 4090766f278SJonathan T. Looney arena = vm_dom[domain].vmd_kernel_rwx_arena; 410df8bae1dSRodney W. Grimes size = round_page(size); 4110766f278SJonathan T. Looney if (vmem_alloc(arena, size, flags | M_BESTFIT, &addr)) 4125df87b21SJeff Roberson return (0); 413df8bae1dSRodney W. Grimes 4147a469c8eSJeff Roberson rv = kmem_back_domain(domain, kernel_object, addr, size, flags); 4155df87b21SJeff Roberson if (rv != KERN_SUCCESS) { 4160766f278SJonathan T. Looney vmem_free(arena, addr, size); 417f31c239dSAlan Cox return (0); 418df8bae1dSRodney W. Grimes } 4195df87b21SJeff Roberson return (addr); 420e3813573SMatthew D Fleming } 421e3813573SMatthew D Fleming 4227a469c8eSJeff Roberson vm_offset_t 42383a90bffSAlan Cox kmem_malloc(vm_size_t size, int flags) 4247a469c8eSJeff Roberson { 4259978bd99SMark Johnston 4269978bd99SMark Johnston return (kmem_malloc_domainset(DOMAINSET_RR(), size, flags)); 4279978bd99SMark Johnston } 4289978bd99SMark Johnston 4299978bd99SMark Johnston vm_offset_t 4309978bd99SMark Johnston kmem_malloc_domainset(struct domainset *ds, vm_size_t size, int flags) 4319978bd99SMark Johnston { 4327a469c8eSJeff Roberson struct vm_domainset_iter di; 4337a469c8eSJeff Roberson vm_offset_t addr; 4347a469c8eSJeff Roberson int domain; 4357a469c8eSJeff Roberson 4369978bd99SMark Johnston vm_domainset_iter_policy_init(&di, ds, &domain, &flags); 4377a469c8eSJeff Roberson do { 438067fd858SAlan Cox addr = kmem_malloc_domain(domain, size, flags); 4397a469c8eSJeff Roberson if (addr != 0) 4407a469c8eSJeff Roberson break; 4414c29d2deSMark Johnston } while (vm_domainset_iter_policy(&di, &domain) == 0); 4427a469c8eSJeff Roberson 4437a469c8eSJeff Roberson return (addr); 4447a469c8eSJeff Roberson } 4457a469c8eSJeff Roberson 446e3813573SMatthew D Fleming /* 44725ed23cfSMark Johnston * kmem_back_domain: 448e3813573SMatthew D Fleming * 44925ed23cfSMark Johnston * Allocate physical pages from the specified domain for the specified 45025ed23cfSMark Johnston * virtual address range. 451e3813573SMatthew D Fleming */ 452e3813573SMatthew D Fleming int 4537a469c8eSJeff Roberson kmem_back_domain(int domain, vm_object_t object, vm_offset_t addr, 4547a469c8eSJeff Roberson vm_size_t size, int flags) 455e3813573SMatthew D Fleming { 456e3813573SMatthew D Fleming vm_offset_t offset, i; 45733fff5d5SMark Johnston vm_page_t m, mpred; 4580766f278SJonathan T. Looney vm_prot_t prot; 459e3813573SMatthew D Fleming int pflags; 460e3813573SMatthew D Fleming 4612e47807cSJeff Roberson KASSERT(object == kernel_object, 4627a469c8eSJeff Roberson ("kmem_back_domain: only supports kernel object.")); 4635df87b21SJeff Roberson 4640891ef4cSJohn Dyson offset = addr - VM_MIN_KERNEL_ADDRESS; 46591e31c3cSJeff Roberson pflags = malloc2vm_flags(flags) | VM_ALLOC_WIRED; 4668d6fbbb8SJeff Roberson pflags &= ~(VM_ALLOC_NOWAIT | VM_ALLOC_WAITOK | VM_ALLOC_WAITFAIL); 4678d6fbbb8SJeff Roberson if (flags & M_WAITOK) 4688d6fbbb8SJeff Roberson pflags |= VM_ALLOC_WAITFAIL; 4690766f278SJonathan T. Looney prot = (flags & M_EXEC) != 0 ? VM_PROT_ALL : VM_PROT_RW; 470df8bae1dSRodney W. Grimes 47133fff5d5SMark Johnston i = 0; 47233fff5d5SMark Johnston VM_OBJECT_WLOCK(object); 4738d6fbbb8SJeff Roberson retry: 47433fff5d5SMark Johnston mpred = vm_radix_lookup_le(&object->rtree, atop(offset + i)); 47533fff5d5SMark Johnston for (; i < size; i += PAGE_SIZE, mpred = m) { 4767a469c8eSJeff Roberson m = vm_page_alloc_domain_after(object, atop(offset + i), 4777a469c8eSJeff Roberson domain, pflags, mpred); 478df8bae1dSRodney W. Grimes 479df8bae1dSRodney W. Grimes /* 4800d94caffSDavid Greenman * Ran out of space, free everything up and return. Don't need 4810d94caffSDavid Greenman * to lock page queues here as we know that the pages we got 4820d94caffSDavid Greenman * aren't on any queues. 483df8bae1dSRodney W. Grimes */ 484df8bae1dSRodney W. Grimes if (m == NULL) { 4858d6fbbb8SJeff Roberson if ((flags & M_NOWAIT) == 0) 486b18bfc3dSJohn Dyson goto retry; 4878d6fbbb8SJeff Roberson VM_OBJECT_WUNLOCK(object); 4889e829b22SAlan Cox kmem_unback(object, addr, i); 489e3813573SMatthew D Fleming return (KERN_NO_SPACE); 490df8bae1dSRodney W. Grimes } 491e2068d0bSJeff Roberson KASSERT(vm_phys_domain(m) == domain, 4927a469c8eSJeff Roberson ("kmem_back_domain: Domain mismatch %d != %d", 493e2068d0bSJeff Roberson vm_phys_domain(m), domain)); 4941e081f88SJeff Roberson if (flags & M_ZERO && (m->flags & PG_ZERO) == 0) 495fff6062aSAlan Cox pmap_zero_page(m); 496d98d0ce2SKonstantin Belousov KASSERT((m->oflags & VPO_UNMANAGED) != 0, 4979f5c801bSAlan Cox ("kmem_malloc: page %p is managed", m)); 49891e31c3cSJeff Roberson vm_page_valid(m); 4990766f278SJonathan T. Looney pmap_enter(kernel_pmap, addr + i, m, prot, 5000766f278SJonathan T. Looney prot | PMAP_ENTER_WIRED, 0); 50149bfa624SAlan Cox if (__predict_false((prot & VM_PROT_EXECUTE) != 0)) 50249bfa624SAlan Cox m->oflags |= VPO_KMEM_EXEC; 503df8bae1dSRodney W. Grimes } 5045df87b21SJeff Roberson VM_OBJECT_WUNLOCK(object); 505df8bae1dSRodney W. Grimes 506e3813573SMatthew D Fleming return (KERN_SUCCESS); 507df8bae1dSRodney W. Grimes } 508df8bae1dSRodney W. Grimes 50925ed23cfSMark Johnston /* 51025ed23cfSMark Johnston * kmem_back: 51125ed23cfSMark Johnston * 51225ed23cfSMark Johnston * Allocate physical pages for the specified virtual address range. 51325ed23cfSMark Johnston */ 5147a469c8eSJeff Roberson int 5157a469c8eSJeff Roberson kmem_back(vm_object_t object, vm_offset_t addr, vm_size_t size, int flags) 5167a469c8eSJeff Roberson { 51725ed23cfSMark Johnston vm_offset_t end, next, start; 51825ed23cfSMark Johnston int domain, rv; 5197a469c8eSJeff Roberson 5207a469c8eSJeff Roberson KASSERT(object == kernel_object, 5217a469c8eSJeff Roberson ("kmem_back: only supports kernel object.")); 5227a469c8eSJeff Roberson 52325ed23cfSMark Johnston for (start = addr, end = addr + size; addr < end; addr = next) { 52425ed23cfSMark Johnston /* 52525ed23cfSMark Johnston * We must ensure that pages backing a given large virtual page 52625ed23cfSMark Johnston * all come from the same physical domain. 52725ed23cfSMark Johnston */ 52825ed23cfSMark Johnston if (vm_ndomains > 1) { 52925ed23cfSMark Johnston domain = (addr >> KVA_QUANTUM_SHIFT) % vm_ndomains; 53030c5525bSAndrew Gallatin while (VM_DOMAIN_EMPTY(domain)) 53130c5525bSAndrew Gallatin domain++; 53225ed23cfSMark Johnston next = roundup2(addr + 1, KVA_QUANTUM); 53325ed23cfSMark Johnston if (next > end || next < start) 53425ed23cfSMark Johnston next = end; 5353d14a7bbSMark Johnston } else { 5363d14a7bbSMark Johnston domain = 0; 53725ed23cfSMark Johnston next = end; 5383d14a7bbSMark Johnston } 53925ed23cfSMark Johnston rv = kmem_back_domain(domain, object, addr, next - addr, flags); 54025ed23cfSMark Johnston if (rv != KERN_SUCCESS) { 54125ed23cfSMark Johnston kmem_unback(object, start, addr - start); 5427a469c8eSJeff Roberson break; 54325ed23cfSMark Johnston } 54425ed23cfSMark Johnston } 54525ed23cfSMark Johnston return (rv); 5467a469c8eSJeff Roberson } 5477a469c8eSJeff Roberson 5489e829b22SAlan Cox /* 5499e829b22SAlan Cox * kmem_unback: 5509e829b22SAlan Cox * 5519e829b22SAlan Cox * Unmap and free the physical pages underlying the specified virtual 5529e829b22SAlan Cox * address range. 5539e829b22SAlan Cox * 5549e829b22SAlan Cox * A physical page must exist within the specified object at each index 5559e829b22SAlan Cox * that is being unmapped. 5569e829b22SAlan Cox */ 55749bfa624SAlan Cox static struct vmem * 5587a469c8eSJeff Roberson _kmem_unback(vm_object_t object, vm_offset_t addr, vm_size_t size) 5595df87b21SJeff Roberson { 56049bfa624SAlan Cox struct vmem *arena; 5617e05ffa6SMark Johnston vm_page_t m, next; 5627e05ffa6SMark Johnston vm_offset_t end, offset; 5637a469c8eSJeff Roberson int domain; 5645df87b21SJeff Roberson 5652e47807cSJeff Roberson KASSERT(object == kernel_object, 5662e47807cSJeff Roberson ("kmem_unback: only supports kernel object.")); 5675df87b21SJeff Roberson 5687a469c8eSJeff Roberson if (size == 0) 56949bfa624SAlan Cox return (NULL); 570fa2f411cSAlan Cox pmap_remove(kernel_pmap, addr, addr + size); 5715df87b21SJeff Roberson offset = addr - VM_MIN_KERNEL_ADDRESS; 5727e05ffa6SMark Johnston end = offset + size; 5735df87b21SJeff Roberson VM_OBJECT_WLOCK(object); 5747a469c8eSJeff Roberson m = vm_page_lookup(object, atop(offset)); 575e2068d0bSJeff Roberson domain = vm_phys_domain(m); 57649bfa624SAlan Cox if (__predict_true((m->oflags & VPO_KMEM_EXEC) == 0)) 57749bfa624SAlan Cox arena = vm_dom[domain].vmd_kernel_arena; 57849bfa624SAlan Cox else 57949bfa624SAlan Cox arena = vm_dom[domain].vmd_kernel_rwx_arena; 5807a469c8eSJeff Roberson for (; offset < end; offset += PAGE_SIZE, m = next) { 5817e05ffa6SMark Johnston next = vm_page_next(m); 582e9ceb9ddSJeff Roberson vm_page_xbusy_claim(m); 58388ea538aSMark Johnston vm_page_unwire_noq(m); 5845df87b21SJeff Roberson vm_page_free(m); 5855df87b21SJeff Roberson } 5865df87b21SJeff Roberson VM_OBJECT_WUNLOCK(object); 5877a469c8eSJeff Roberson 58849bfa624SAlan Cox return (arena); 5897a469c8eSJeff Roberson } 5907a469c8eSJeff Roberson 5917a469c8eSJeff Roberson void 5927a469c8eSJeff Roberson kmem_unback(vm_object_t object, vm_offset_t addr, vm_size_t size) 5937a469c8eSJeff Roberson { 5947a469c8eSJeff Roberson 59549bfa624SAlan Cox (void)_kmem_unback(object, addr, size); 5965df87b21SJeff Roberson } 5975df87b21SJeff Roberson 598df8bae1dSRodney W. Grimes /* 5995df87b21SJeff Roberson * kmem_free: 6005df87b21SJeff Roberson * 6015df87b21SJeff Roberson * Free memory allocated with kmem_malloc. The size must match the 6025df87b21SJeff Roberson * original allocation. 6035df87b21SJeff Roberson */ 6045df87b21SJeff Roberson void 60549bfa624SAlan Cox kmem_free(vm_offset_t addr, vm_size_t size) 6065df87b21SJeff Roberson { 6070766f278SJonathan T. Looney struct vmem *arena; 6080766f278SJonathan T. Looney 6095df87b21SJeff Roberson size = round_page(size); 61049bfa624SAlan Cox arena = _kmem_unback(kernel_object, addr, size); 61149bfa624SAlan Cox if (arena != NULL) 6120766f278SJonathan T. Looney vmem_free(arena, addr, size); 6135df87b21SJeff Roberson } 6145df87b21SJeff Roberson 6155df87b21SJeff Roberson /* 6165df87b21SJeff Roberson * kmap_alloc_wait: 617df8bae1dSRodney W. Grimes * 618df8bae1dSRodney W. Grimes * Allocates pageable memory from a sub-map of the kernel. If the submap 619df8bae1dSRodney W. Grimes * has no room, the caller sleeps waiting for more memory in the submap. 620df8bae1dSRodney W. Grimes * 6211c7c3c6aSMatthew Dillon * This routine may block. 622df8bae1dSRodney W. Grimes */ 6230d94caffSDavid Greenman vm_offset_t 6246e309d75SEd Maste kmap_alloc_wait(vm_map_t map, vm_size_t size) 625df8bae1dSRodney W. Grimes { 626df8bae1dSRodney W. Grimes vm_offset_t addr; 62723955314SAlfred Perlstein 628df8bae1dSRodney W. Grimes size = round_page(size); 6293364c323SKonstantin Belousov if (!swap_reserve(size)) 6303364c323SKonstantin Belousov return (0); 631df8bae1dSRodney W. Grimes 632df8bae1dSRodney W. Grimes for (;;) { 633df8bae1dSRodney W. Grimes /* 6340d94caffSDavid Greenman * To make this work for more than one map, use the map's lock 6350d94caffSDavid Greenman * to lock out sleepers/wakers. 636df8bae1dSRodney W. Grimes */ 637df8bae1dSRodney W. Grimes vm_map_lock(map); 6389f701172SKonstantin Belousov addr = vm_map_findspace(map, vm_map_min(map), size); 6399f701172SKonstantin Belousov if (addr + size <= vm_map_max(map)) 640df8bae1dSRodney W. Grimes break; 641df8bae1dSRodney W. Grimes /* no space now; see if we can ever get space */ 642df8bae1dSRodney W. Grimes if (vm_map_max(map) - vm_map_min(map) < size) { 643df8bae1dSRodney W. Grimes vm_map_unlock(map); 6443364c323SKonstantin Belousov swap_release(size); 645df8bae1dSRodney W. Grimes return (0); 646df8bae1dSRodney W. Grimes } 6479688f931SAlan Cox map->needs_wakeup = TRUE; 6488ce2d00aSPawel Jakub Dawidek vm_map_unlock_and_wait(map, 0); 649df8bae1dSRodney W. Grimes } 65007702f72SMark Johnston vm_map_insert(map, NULL, 0, addr, addr + size, VM_PROT_RW, VM_PROT_RW, 65107702f72SMark Johnston MAP_ACC_CHARGED); 652df8bae1dSRodney W. Grimes vm_map_unlock(map); 653df8bae1dSRodney W. Grimes return (addr); 654df8bae1dSRodney W. Grimes } 655df8bae1dSRodney W. Grimes 656df8bae1dSRodney W. Grimes /* 6575df87b21SJeff Roberson * kmap_free_wakeup: 658df8bae1dSRodney W. Grimes * 65924a1cce3SDavid Greenman * Returns memory to a submap of the kernel, and wakes up any processes 660df8bae1dSRodney W. Grimes * waiting for memory in that map. 661df8bae1dSRodney W. Grimes */ 6620d94caffSDavid Greenman void 6636e309d75SEd Maste kmap_free_wakeup(vm_map_t map, vm_offset_t addr, vm_size_t size) 664df8bae1dSRodney W. Grimes { 66523955314SAlfred Perlstein 666df8bae1dSRodney W. Grimes vm_map_lock(map); 667655c3490SKonstantin Belousov (void) vm_map_delete(map, trunc_page(addr), round_page(addr + size)); 6689688f931SAlan Cox if (map->needs_wakeup) { 6699688f931SAlan Cox map->needs_wakeup = FALSE; 6709688f931SAlan Cox vm_map_wakeup(map); 6719688f931SAlan Cox } 672df8bae1dSRodney W. Grimes vm_map_unlock(map); 673df8bae1dSRodney W. Grimes } 674df8bae1dSRodney W. Grimes 6755df87b21SJeff Roberson void 67689cb2a19SMatthew D Fleming kmem_init_zero_region(void) 67789cb2a19SMatthew D Fleming { 678cfb00e5aSMatthew D Fleming vm_offset_t addr, i; 67989cb2a19SMatthew D Fleming vm_page_t m; 68089cb2a19SMatthew D Fleming 681cfb00e5aSMatthew D Fleming /* 682cfb00e5aSMatthew D Fleming * Map a single physical page of zeros to a larger virtual range. 683cfb00e5aSMatthew D Fleming * This requires less looping in places that want large amounts of 684cfb00e5aSMatthew D Fleming * zeros, while not using much more physical resources. 685cfb00e5aSMatthew D Fleming */ 6865df87b21SJeff Roberson addr = kva_alloc(ZERO_REGION_SIZE); 687703dec68SAlan Cox m = vm_page_alloc(NULL, 0, VM_ALLOC_NORMAL | 68889cb2a19SMatthew D Fleming VM_ALLOC_NOOBJ | VM_ALLOC_WIRED | VM_ALLOC_ZERO); 68989cb2a19SMatthew D Fleming if ((m->flags & PG_ZERO) == 0) 69089cb2a19SMatthew D Fleming pmap_zero_page(m); 69189cb2a19SMatthew D Fleming for (i = 0; i < ZERO_REGION_SIZE; i += PAGE_SIZE) 69289cb2a19SMatthew D Fleming pmap_qenter(addr + i, &m, 1); 6935df87b21SJeff Roberson pmap_protect(kernel_pmap, addr, addr + ZERO_REGION_SIZE, VM_PROT_READ); 69489cb2a19SMatthew D Fleming 69589cb2a19SMatthew D Fleming zero_region = (const void *)addr; 69689cb2a19SMatthew D Fleming } 69789cb2a19SMatthew D Fleming 698df8bae1dSRodney W. Grimes /* 699969e147aSMark Johnston * Import KVA from the kernel map into the kernel arena. 7001aed6d48SMark Johnston */ 7011aed6d48SMark Johnston static int 7021aed6d48SMark Johnston kva_import(void *unused, vmem_size_t size, int flags, vmem_addr_t *addrp) 7031aed6d48SMark Johnston { 7041aed6d48SMark Johnston vm_offset_t addr; 7051aed6d48SMark Johnston int result; 7061aed6d48SMark Johnston 7071aed6d48SMark Johnston KASSERT((size % KVA_QUANTUM) == 0, 7081aed6d48SMark Johnston ("kva_import: Size %jd is not a multiple of %d", 7091aed6d48SMark Johnston (intmax_t)size, (int)KVA_QUANTUM)); 7101aed6d48SMark Johnston addr = vm_map_min(kernel_map); 7111aed6d48SMark Johnston result = vm_map_find(kernel_map, NULL, 0, &addr, size, 0, 7121aed6d48SMark Johnston VMFS_SUPER_SPACE, VM_PROT_ALL, VM_PROT_ALL, MAP_NOFAULT); 7131aed6d48SMark Johnston if (result != KERN_SUCCESS) 7141aed6d48SMark Johnston return (ENOMEM); 7151aed6d48SMark Johnston 7161aed6d48SMark Johnston *addrp = addr; 7171aed6d48SMark Johnston 7181aed6d48SMark Johnston return (0); 7191aed6d48SMark Johnston } 7201aed6d48SMark Johnston 7211aed6d48SMark Johnston /* 722969e147aSMark Johnston * Import KVA from a parent arena into a per-domain arena. Imports must be 723969e147aSMark Johnston * KVA_QUANTUM-aligned and a multiple of KVA_QUANTUM in size. 7241aed6d48SMark Johnston */ 7251aed6d48SMark Johnston static int 726969e147aSMark Johnston kva_import_domain(void *arena, vmem_size_t size, int flags, vmem_addr_t *addrp) 7271aed6d48SMark Johnston { 7281aed6d48SMark Johnston 7291aed6d48SMark Johnston KASSERT((size % KVA_QUANTUM) == 0, 730969e147aSMark Johnston ("kva_import_domain: Size %jd is not a multiple of %d", 7311aed6d48SMark Johnston (intmax_t)size, (int)KVA_QUANTUM)); 7321aed6d48SMark Johnston return (vmem_xalloc(arena, size, KVA_QUANTUM, 0, 0, VMEM_ADDR_MIN, 7331aed6d48SMark Johnston VMEM_ADDR_MAX, flags, addrp)); 7341aed6d48SMark Johnston } 7351aed6d48SMark Johnston 7361aed6d48SMark Johnston /* 7371c7c3c6aSMatthew Dillon * kmem_init: 7381c7c3c6aSMatthew Dillon * 7391c7c3c6aSMatthew Dillon * Create the kernel map; insert a mapping covering kernel text, 7401c7c3c6aSMatthew Dillon * data, bss, and all space allocated thus far (`boostrap' data). The 7411c7c3c6aSMatthew Dillon * new map will thus map the range between VM_MIN_KERNEL_ADDRESS and 7421c7c3c6aSMatthew Dillon * `start' as allocated, and the range between `start' and `end' as free. 7431aed6d48SMark Johnston * Create the kernel vmem arena and its per-domain children. 744df8bae1dSRodney W. Grimes */ 7450d94caffSDavid Greenman void 7466e309d75SEd Maste kmem_init(vm_offset_t start, vm_offset_t end) 747df8bae1dSRodney W. Grimes { 7481aed6d48SMark Johnston int domain; 749df8bae1dSRodney W. Grimes 750*7efe14cbSMark Johnston vm_map_init(kernel_map, kernel_pmap, VM_MIN_KERNEL_ADDRESS, end); 751*7efe14cbSMark Johnston kernel_map->system_map = 1; 752*7efe14cbSMark Johnston vm_map_lock(kernel_map); 753df8bae1dSRodney W. Grimes /* N.B.: cannot use kgdb to debug, starting with this assignment ... */ 754*7efe14cbSMark Johnston (void)vm_map_insert(kernel_map, NULL, 0, 7555cfa90e9SAlan Cox #ifdef __amd64__ 7565cfa90e9SAlan Cox KERNBASE, 7575cfa90e9SAlan Cox #else 7585cfa90e9SAlan Cox VM_MIN_KERNEL_ADDRESS, 7595cfa90e9SAlan Cox #endif 7605cfa90e9SAlan Cox start, VM_PROT_ALL, VM_PROT_ALL, MAP_NOFAULT); 761df8bae1dSRodney W. Grimes /* ... and ending with the completion of the above `insert' */ 7629d75f0dcSMark Johnston 7639d75f0dcSMark Johnston #ifdef __amd64__ 7649d75f0dcSMark Johnston /* 7659d75f0dcSMark Johnston * Mark KVA used for the page array as allocated. Other platforms 7669d75f0dcSMark Johnston * that handle vm_page_array allocation can simply adjust virtual_avail 7679d75f0dcSMark Johnston * instead. 7689d75f0dcSMark Johnston */ 7697dd979dfSMark Johnston (void)vm_map_insert(kernel_map, NULL, 0, (vm_offset_t)vm_page_array, 7709d75f0dcSMark Johnston (vm_offset_t)vm_page_array + round_2mpage(vm_page_array_size * 7719d75f0dcSMark Johnston sizeof(struct vm_page)), 7729d75f0dcSMark Johnston VM_PROT_RW, VM_PROT_RW, MAP_NOFAULT); 7739d75f0dcSMark Johnston #endif 7747dd979dfSMark Johnston vm_map_unlock(kernel_map); 7751aed6d48SMark Johnston 7761aed6d48SMark Johnston /* 7771aed6d48SMark Johnston * Initialize the kernel_arena. This can grow on demand. 7781aed6d48SMark Johnston */ 7791aed6d48SMark Johnston vmem_init(kernel_arena, "kernel arena", 0, 0, PAGE_SIZE, 0, 0); 7801aed6d48SMark Johnston vmem_set_import(kernel_arena, kva_import, NULL, NULL, KVA_QUANTUM); 7811aed6d48SMark Johnston 7821aed6d48SMark Johnston for (domain = 0; domain < vm_ndomains; domain++) { 783969e147aSMark Johnston /* 784969e147aSMark Johnston * Initialize the per-domain arenas. These are used to color 785969e147aSMark Johnston * the KVA space in a way that ensures that virtual large pages 786969e147aSMark Johnston * are backed by memory from the same physical domain, 787969e147aSMark Johnston * maximizing the potential for superpage promotion. 788969e147aSMark Johnston */ 7891aed6d48SMark Johnston vm_dom[domain].vmd_kernel_arena = vmem_create( 7901aed6d48SMark Johnston "kernel arena domain", 0, 0, PAGE_SIZE, 0, M_WAITOK); 7911aed6d48SMark Johnston vmem_set_import(vm_dom[domain].vmd_kernel_arena, 792969e147aSMark Johnston kva_import_domain, NULL, kernel_arena, KVA_QUANTUM); 793969e147aSMark Johnston 794969e147aSMark Johnston /* 795969e147aSMark Johnston * In architectures with superpages, maintain separate arenas 796969e147aSMark Johnston * for allocations with permissions that differ from the 797969e147aSMark Johnston * "standard" read/write permissions used for kernel memory, 798969e147aSMark Johnston * so as not to inhibit superpage promotion. 799969e147aSMark Johnston */ 8001aed6d48SMark Johnston #if VM_NRESERVLEVEL > 0 8011aed6d48SMark Johnston vm_dom[domain].vmd_kernel_rwx_arena = vmem_create( 8021aed6d48SMark Johnston "kernel rwx arena domain", 0, 0, PAGE_SIZE, 0, M_WAITOK); 8031aed6d48SMark Johnston vmem_set_import(vm_dom[domain].vmd_kernel_rwx_arena, 804969e147aSMark Johnston kva_import_domain, (vmem_release_t *)vmem_xfree, 805969e147aSMark Johnston kernel_arena, KVA_QUANTUM); 806303b7702SMark Johnston #else 807303b7702SMark Johnston vm_dom[domain].vmd_kernel_rwx_arena = 808303b7702SMark Johnston vm_dom[domain].vmd_kernel_arena; 8091aed6d48SMark Johnston #endif 8101aed6d48SMark Johnston } 811a81c400eSJeff Roberson 812a81c400eSJeff Roberson /* 813a81c400eSJeff Roberson * This must be the very first call so that the virtual address 814a81c400eSJeff Roberson * space used for early allocations is properly marked used in 815a81c400eSJeff Roberson * the map. 816a81c400eSJeff Roberson */ 817a81c400eSJeff Roberson uma_startup2(); 818df8bae1dSRodney W. Grimes } 81986f08737SRobert Watson 820483f692eSMark Johnston /* 821483f692eSMark Johnston * kmem_bootstrap_free: 822483f692eSMark Johnston * 823483f692eSMark Johnston * Free pages backing preloaded data (e.g., kernel modules) to the 824483f692eSMark Johnston * system. Currently only supported on platforms that create a 825483f692eSMark Johnston * vm_phys segment for preloaded data. 826483f692eSMark Johnston */ 827483f692eSMark Johnston void 828483f692eSMark Johnston kmem_bootstrap_free(vm_offset_t start, vm_size_t size) 829483f692eSMark Johnston { 830483f692eSMark Johnston #if defined(__i386__) || defined(__amd64__) 831483f692eSMark Johnston struct vm_domain *vmd; 8326c85795aSMark Johnston vm_offset_t end, va; 833483f692eSMark Johnston vm_paddr_t pa; 834483f692eSMark Johnston vm_page_t m; 835483f692eSMark Johnston 836483f692eSMark Johnston end = trunc_page(start + size); 837483f692eSMark Johnston start = round_page(start); 838483f692eSMark Johnston 839f822c9e2SMark Johnston #ifdef __amd64__ 840f822c9e2SMark Johnston /* 841f822c9e2SMark Johnston * Preloaded files do not have execute permissions by default on amd64. 842f822c9e2SMark Johnston * Restore the default permissions to ensure that the direct map alias 843f822c9e2SMark Johnston * is updated. 844f822c9e2SMark Johnston */ 845f822c9e2SMark Johnston pmap_change_prot(start, end - start, VM_PROT_RW); 846f822c9e2SMark Johnston #endif 8476c85795aSMark Johnston for (va = start; va < end; va += PAGE_SIZE) { 8486c85795aSMark Johnston pa = pmap_kextract(va); 849483f692eSMark Johnston m = PHYS_TO_VM_PAGE(pa); 850483f692eSMark Johnston 851483f692eSMark Johnston vmd = vm_pagequeue_domain(m); 852483f692eSMark Johnston vm_domain_free_lock(vmd); 853483f692eSMark Johnston vm_phys_free_pages(m, 0); 854483f692eSMark Johnston vm_domain_free_unlock(vmd); 855c16bd872SMark Johnston 856c16bd872SMark Johnston vm_domain_freecnt_inc(vmd, 1); 857c16bd872SMark Johnston vm_cnt.v_page_count++; 858483f692eSMark Johnston } 8596c85795aSMark Johnston pmap_remove(kernel_pmap, start, end); 8606c85795aSMark Johnston (void)vmem_add(kernel_arena, start, end - start, M_WAITOK); 861483f692eSMark Johnston #endif 862483f692eSMark Johnston } 863483f692eSMark Johnston 86486f08737SRobert Watson /* 86586f08737SRobert Watson * Allow userspace to directly trigger the VM drain routine for testing 86686f08737SRobert Watson * purposes. 86786f08737SRobert Watson */ 86886f08737SRobert Watson static int 86986f08737SRobert Watson debug_vm_lowmem(SYSCTL_HANDLER_ARGS) 87086f08737SRobert Watson { 87186f08737SRobert Watson int error, i; 87286f08737SRobert Watson 87386f08737SRobert Watson i = 0; 87486f08737SRobert Watson error = sysctl_handle_int(oidp, &i, 0, req); 87586f08737SRobert Watson if (error) 87686f08737SRobert Watson return (error); 8779b43bc27SAndriy Gapon if ((i & ~(VM_LOW_KMEM | VM_LOW_PAGES)) != 0) 8789b43bc27SAndriy Gapon return (EINVAL); 8799b43bc27SAndriy Gapon if (i != 0) 8809b43bc27SAndriy Gapon EVENTHANDLER_INVOKE(vm_lowmem, i); 88186f08737SRobert Watson return (0); 88286f08737SRobert Watson } 88386f08737SRobert Watson 884a314aba8SMateusz Guzik SYSCTL_PROC(_debug, OID_AUTO, vm_lowmem, CTLTYPE_INT | CTLFLAG_MPSAFE | CTLFLAG_RW, 0, 0, 8859b43bc27SAndriy Gapon debug_vm_lowmem, "I", "set to trigger vm_lowmem event with given flags"); 886