13024e8afSRuslan Bukin /*- 23024e8afSRuslan Bukin * SPDX-License-Identifier: BSD-2-Clause-FreeBSD 33024e8afSRuslan Bukin * 43024e8afSRuslan Bukin * Copyright (c) 2013 The FreeBSD Foundation 53024e8afSRuslan Bukin * All rights reserved. 63024e8afSRuslan Bukin * 73024e8afSRuslan Bukin * This software was developed by Konstantin Belousov <kib@FreeBSD.org> 83024e8afSRuslan Bukin * under sponsorship from the FreeBSD Foundation. 93024e8afSRuslan Bukin * 103024e8afSRuslan Bukin * Redistribution and use in source and binary forms, with or without 113024e8afSRuslan Bukin * modification, are permitted provided that the following conditions 123024e8afSRuslan Bukin * are met: 133024e8afSRuslan Bukin * 1. Redistributions of source code must retain the above copyright 143024e8afSRuslan Bukin * notice, this list of conditions and the following disclaimer. 153024e8afSRuslan Bukin * 2. Redistributions in binary form must reproduce the above copyright 163024e8afSRuslan Bukin * notice, this list of conditions and the following disclaimer in the 173024e8afSRuslan Bukin * documentation and/or other materials provided with the distribution. 183024e8afSRuslan Bukin * 193024e8afSRuslan Bukin * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 203024e8afSRuslan Bukin * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 213024e8afSRuslan Bukin * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 223024e8afSRuslan Bukin * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 233024e8afSRuslan Bukin * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 243024e8afSRuslan Bukin * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 253024e8afSRuslan Bukin * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 263024e8afSRuslan Bukin * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 273024e8afSRuslan Bukin * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 283024e8afSRuslan Bukin * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 293024e8afSRuslan Bukin * SUCH DAMAGE. 303024e8afSRuslan Bukin */ 313024e8afSRuslan Bukin 323024e8afSRuslan Bukin #include <sys/cdefs.h> 333024e8afSRuslan Bukin __FBSDID("$FreeBSD$"); 343024e8afSRuslan Bukin 353024e8afSRuslan Bukin #define RB_AUGMENT(entry) iommu_gas_augment_entry(entry) 363024e8afSRuslan Bukin 373024e8afSRuslan Bukin #include <sys/param.h> 383024e8afSRuslan Bukin #include <sys/systm.h> 393024e8afSRuslan Bukin #include <sys/malloc.h> 403024e8afSRuslan Bukin #include <sys/bus.h> 413024e8afSRuslan Bukin #include <sys/interrupt.h> 423024e8afSRuslan Bukin #include <sys/kernel.h> 433024e8afSRuslan Bukin #include <sys/ktr.h> 443024e8afSRuslan Bukin #include <sys/lock.h> 453024e8afSRuslan Bukin #include <sys/proc.h> 463024e8afSRuslan Bukin #include <sys/rwlock.h> 473024e8afSRuslan Bukin #include <sys/memdesc.h> 483024e8afSRuslan Bukin #include <sys/mutex.h> 493024e8afSRuslan Bukin #include <sys/sysctl.h> 503024e8afSRuslan Bukin #include <sys/rman.h> 513024e8afSRuslan Bukin #include <sys/taskqueue.h> 523024e8afSRuslan Bukin #include <sys/tree.h> 533024e8afSRuslan Bukin #include <sys/uio.h> 543024e8afSRuslan Bukin #include <sys/vmem.h> 553024e8afSRuslan Bukin #include <vm/vm.h> 563024e8afSRuslan Bukin #include <vm/vm_extern.h> 573024e8afSRuslan Bukin #include <vm/vm_kern.h> 583024e8afSRuslan Bukin #include <vm/vm_object.h> 593024e8afSRuslan Bukin #include <vm/vm_page.h> 603024e8afSRuslan Bukin #include <vm/vm_map.h> 613024e8afSRuslan Bukin #include <vm/uma.h> 62c8597a1fSRuslan Bukin #include <dev/pci/pcireg.h> 63c8597a1fSRuslan Bukin #include <dev/pci/pcivar.h> 64c8597a1fSRuslan Bukin #include <dev/iommu/iommu.h> 65f23f7d3aSRuslan Bukin #include <dev/iommu/iommu_gas.h> 66e707c8beSRuslan Bukin #include <dev/iommu/iommu_msi.h> 673024e8afSRuslan Bukin #include <machine/atomic.h> 683024e8afSRuslan Bukin #include <machine/bus.h> 693024e8afSRuslan Bukin #include <machine/md_var.h> 70c4cd6990SRuslan Bukin #include <machine/iommu.h> 71c8597a1fSRuslan Bukin #include <dev/iommu/busdma_iommu.h> 723024e8afSRuslan Bukin 733024e8afSRuslan Bukin /* 743024e8afSRuslan Bukin * Guest Address Space management. 753024e8afSRuslan Bukin */ 763024e8afSRuslan Bukin 773024e8afSRuslan Bukin static uma_zone_t iommu_map_entry_zone; 783024e8afSRuslan Bukin 799c843a40SRuslan Bukin #ifdef INVARIANTS 809c843a40SRuslan Bukin static int iommu_check_free; 819c843a40SRuslan Bukin #endif 829c843a40SRuslan Bukin 833024e8afSRuslan Bukin static void 843024e8afSRuslan Bukin intel_gas_init(void) 853024e8afSRuslan Bukin { 863024e8afSRuslan Bukin 873024e8afSRuslan Bukin iommu_map_entry_zone = uma_zcreate("IOMMU_MAP_ENTRY", 883024e8afSRuslan Bukin sizeof(struct iommu_map_entry), NULL, NULL, 893024e8afSRuslan Bukin NULL, NULL, UMA_ALIGN_PTR, UMA_ZONE_NODUMP); 903024e8afSRuslan Bukin } 913024e8afSRuslan Bukin SYSINIT(intel_gas, SI_SUB_DRIVERS, SI_ORDER_FIRST, intel_gas_init, NULL); 923024e8afSRuslan Bukin 933024e8afSRuslan Bukin struct iommu_map_entry * 943024e8afSRuslan Bukin iommu_gas_alloc_entry(struct iommu_domain *domain, u_int flags) 953024e8afSRuslan Bukin { 963024e8afSRuslan Bukin struct iommu_map_entry *res; 973024e8afSRuslan Bukin 9815f6baf4SRuslan Bukin KASSERT((flags & ~(IOMMU_PGF_WAITOK)) == 0, 993024e8afSRuslan Bukin ("unsupported flags %x", flags)); 1003024e8afSRuslan Bukin 10115f6baf4SRuslan Bukin res = uma_zalloc(iommu_map_entry_zone, ((flags & IOMMU_PGF_WAITOK) != 1023024e8afSRuslan Bukin 0 ? M_WAITOK : M_NOWAIT) | M_ZERO); 1033024e8afSRuslan Bukin if (res != NULL) { 1043024e8afSRuslan Bukin res->domain = domain; 1053024e8afSRuslan Bukin atomic_add_int(&domain->entries_cnt, 1); 1063024e8afSRuslan Bukin } 1073024e8afSRuslan Bukin return (res); 1083024e8afSRuslan Bukin } 1093024e8afSRuslan Bukin 1103024e8afSRuslan Bukin void 1113024e8afSRuslan Bukin iommu_gas_free_entry(struct iommu_domain *domain, struct iommu_map_entry *entry) 1123024e8afSRuslan Bukin { 1133024e8afSRuslan Bukin 114b64dca2bSRuslan Bukin KASSERT(domain == entry->domain, 1153024e8afSRuslan Bukin ("mismatched free domain %p entry %p entry->domain %p", domain, 1163024e8afSRuslan Bukin entry, entry->domain)); 1173024e8afSRuslan Bukin atomic_subtract_int(&domain->entries_cnt, 1); 1183024e8afSRuslan Bukin uma_zfree(iommu_map_entry_zone, entry); 1193024e8afSRuslan Bukin } 1203024e8afSRuslan Bukin 1213024e8afSRuslan Bukin static int 1223024e8afSRuslan Bukin iommu_gas_cmp_entries(struct iommu_map_entry *a, struct iommu_map_entry *b) 1233024e8afSRuslan Bukin { 1243024e8afSRuslan Bukin 1253024e8afSRuslan Bukin /* Last entry have zero size, so <= */ 1263024e8afSRuslan Bukin KASSERT(a->start <= a->end, ("inverted entry %p (%jx, %jx)", 1273024e8afSRuslan Bukin a, (uintmax_t)a->start, (uintmax_t)a->end)); 1283024e8afSRuslan Bukin KASSERT(b->start <= b->end, ("inverted entry %p (%jx, %jx)", 1293024e8afSRuslan Bukin b, (uintmax_t)b->start, (uintmax_t)b->end)); 1303024e8afSRuslan Bukin KASSERT(a->end <= b->start || b->end <= a->start || 1313024e8afSRuslan Bukin a->end == a->start || b->end == b->start, 1323024e8afSRuslan Bukin ("overlapping entries %p (%jx, %jx) %p (%jx, %jx)", 1333024e8afSRuslan Bukin a, (uintmax_t)a->start, (uintmax_t)a->end, 1343024e8afSRuslan Bukin b, (uintmax_t)b->start, (uintmax_t)b->end)); 1353024e8afSRuslan Bukin 1363024e8afSRuslan Bukin if (a->end < b->end) 1373024e8afSRuslan Bukin return (-1); 1383024e8afSRuslan Bukin else if (b->end < a->end) 1393024e8afSRuslan Bukin return (1); 1403024e8afSRuslan Bukin return (0); 1413024e8afSRuslan Bukin } 1423024e8afSRuslan Bukin 1433024e8afSRuslan Bukin static void 1443024e8afSRuslan Bukin iommu_gas_augment_entry(struct iommu_map_entry *entry) 1453024e8afSRuslan Bukin { 1463024e8afSRuslan Bukin struct iommu_map_entry *child; 1473024e8afSRuslan Bukin iommu_gaddr_t free_down; 1483024e8afSRuslan Bukin 1493024e8afSRuslan Bukin free_down = 0; 1503024e8afSRuslan Bukin if ((child = RB_LEFT(entry, rb_entry)) != NULL) { 1513024e8afSRuslan Bukin free_down = MAX(free_down, child->free_down); 1523024e8afSRuslan Bukin free_down = MAX(free_down, entry->start - child->last); 1533024e8afSRuslan Bukin entry->first = child->first; 1543024e8afSRuslan Bukin } else 1553024e8afSRuslan Bukin entry->first = entry->start; 1563024e8afSRuslan Bukin 1573024e8afSRuslan Bukin if ((child = RB_RIGHT(entry, rb_entry)) != NULL) { 1583024e8afSRuslan Bukin free_down = MAX(free_down, child->free_down); 1593024e8afSRuslan Bukin free_down = MAX(free_down, child->first - entry->end); 1603024e8afSRuslan Bukin entry->last = child->last; 1613024e8afSRuslan Bukin } else 1623024e8afSRuslan Bukin entry->last = entry->end; 1633024e8afSRuslan Bukin entry->free_down = free_down; 1643024e8afSRuslan Bukin } 1653024e8afSRuslan Bukin 1663024e8afSRuslan Bukin RB_GENERATE(iommu_gas_entries_tree, iommu_map_entry, rb_entry, 1673024e8afSRuslan Bukin iommu_gas_cmp_entries); 1683024e8afSRuslan Bukin 1693024e8afSRuslan Bukin #ifdef INVARIANTS 1703024e8afSRuslan Bukin static void 1713024e8afSRuslan Bukin iommu_gas_check_free(struct iommu_domain *domain) 1723024e8afSRuslan Bukin { 1733024e8afSRuslan Bukin struct iommu_map_entry *entry, *l, *r; 1743024e8afSRuslan Bukin iommu_gaddr_t v; 1753024e8afSRuslan Bukin 1763024e8afSRuslan Bukin RB_FOREACH(entry, iommu_gas_entries_tree, &domain->rb_root) { 177b64dca2bSRuslan Bukin KASSERT(domain == entry->domain, 1783024e8afSRuslan Bukin ("mismatched free domain %p entry %p entry->domain %p", 1793024e8afSRuslan Bukin domain, entry, entry->domain)); 1803024e8afSRuslan Bukin l = RB_LEFT(entry, rb_entry); 1813024e8afSRuslan Bukin r = RB_RIGHT(entry, rb_entry); 1823024e8afSRuslan Bukin v = 0; 1833024e8afSRuslan Bukin if (l != NULL) { 1843024e8afSRuslan Bukin v = MAX(v, l->free_down); 1853024e8afSRuslan Bukin v = MAX(v, entry->start - l->last); 1863024e8afSRuslan Bukin } 1873024e8afSRuslan Bukin if (r != NULL) { 1883024e8afSRuslan Bukin v = MAX(v, r->free_down); 1893024e8afSRuslan Bukin v = MAX(v, r->first - entry->end); 1903024e8afSRuslan Bukin } 1913024e8afSRuslan Bukin MPASS(entry->free_down == v); 1923024e8afSRuslan Bukin } 1933024e8afSRuslan Bukin } 1943024e8afSRuslan Bukin #endif 1953024e8afSRuslan Bukin 1963024e8afSRuslan Bukin static bool 1973024e8afSRuslan Bukin iommu_gas_rb_insert(struct iommu_domain *domain, struct iommu_map_entry *entry) 1983024e8afSRuslan Bukin { 1993024e8afSRuslan Bukin struct iommu_map_entry *found; 2003024e8afSRuslan Bukin 2013024e8afSRuslan Bukin found = RB_INSERT(iommu_gas_entries_tree, 2023024e8afSRuslan Bukin &domain->rb_root, entry); 2033024e8afSRuslan Bukin return (found == NULL); 2043024e8afSRuslan Bukin } 2053024e8afSRuslan Bukin 2063024e8afSRuslan Bukin static void 2073024e8afSRuslan Bukin iommu_gas_rb_remove(struct iommu_domain *domain, struct iommu_map_entry *entry) 2083024e8afSRuslan Bukin { 2093024e8afSRuslan Bukin 2103024e8afSRuslan Bukin RB_REMOVE(iommu_gas_entries_tree, &domain->rb_root, entry); 2113024e8afSRuslan Bukin } 2123024e8afSRuslan Bukin 213f5cafae1SRuslan Bukin struct iommu_domain * 214f5cafae1SRuslan Bukin iommu_get_ctx_domain(struct iommu_ctx *ctx) 215f5cafae1SRuslan Bukin { 216f5cafae1SRuslan Bukin 217f5cafae1SRuslan Bukin return (ctx->domain); 218f5cafae1SRuslan Bukin } 219f5cafae1SRuslan Bukin 2203024e8afSRuslan Bukin void 2213024e8afSRuslan Bukin iommu_gas_init_domain(struct iommu_domain *domain) 2223024e8afSRuslan Bukin { 2233024e8afSRuslan Bukin struct iommu_map_entry *begin, *end; 2243024e8afSRuslan Bukin 22515f6baf4SRuslan Bukin begin = iommu_gas_alloc_entry(domain, IOMMU_PGF_WAITOK); 22615f6baf4SRuslan Bukin end = iommu_gas_alloc_entry(domain, IOMMU_PGF_WAITOK); 2273024e8afSRuslan Bukin 2283024e8afSRuslan Bukin IOMMU_DOMAIN_LOCK(domain); 2293024e8afSRuslan Bukin KASSERT(domain->entries_cnt == 2, ("dirty domain %p", domain)); 2303024e8afSRuslan Bukin KASSERT(RB_EMPTY(&domain->rb_root), 2313024e8afSRuslan Bukin ("non-empty entries %p", domain)); 2323024e8afSRuslan Bukin 2333024e8afSRuslan Bukin begin->start = 0; 2343024e8afSRuslan Bukin begin->end = IOMMU_PAGE_SIZE; 2353024e8afSRuslan Bukin begin->flags = IOMMU_MAP_ENTRY_PLACE | IOMMU_MAP_ENTRY_UNMAPPED; 2363024e8afSRuslan Bukin iommu_gas_rb_insert(domain, begin); 2373024e8afSRuslan Bukin 2383024e8afSRuslan Bukin end->start = domain->end; 2393024e8afSRuslan Bukin end->end = domain->end; 2403024e8afSRuslan Bukin end->flags = IOMMU_MAP_ENTRY_PLACE | IOMMU_MAP_ENTRY_UNMAPPED; 2413024e8afSRuslan Bukin iommu_gas_rb_insert(domain, end); 2423024e8afSRuslan Bukin 2433024e8afSRuslan Bukin domain->first_place = begin; 2443024e8afSRuslan Bukin domain->last_place = end; 24515f6baf4SRuslan Bukin domain->flags |= IOMMU_DOMAIN_GAS_INITED; 2463024e8afSRuslan Bukin IOMMU_DOMAIN_UNLOCK(domain); 2473024e8afSRuslan Bukin } 2483024e8afSRuslan Bukin 2493024e8afSRuslan Bukin void 2503024e8afSRuslan Bukin iommu_gas_fini_domain(struct iommu_domain *domain) 2513024e8afSRuslan Bukin { 2523024e8afSRuslan Bukin struct iommu_map_entry *entry, *entry1; 2533024e8afSRuslan Bukin 2543024e8afSRuslan Bukin IOMMU_DOMAIN_ASSERT_LOCKED(domain); 2553024e8afSRuslan Bukin KASSERT(domain->entries_cnt == 2, 2563024e8afSRuslan Bukin ("domain still in use %p", domain)); 2573024e8afSRuslan Bukin 2583024e8afSRuslan Bukin entry = RB_MIN(iommu_gas_entries_tree, &domain->rb_root); 2593024e8afSRuslan Bukin KASSERT(entry->start == 0, ("start entry start %p", domain)); 2603024e8afSRuslan Bukin KASSERT(entry->end == IOMMU_PAGE_SIZE, ("start entry end %p", domain)); 2613024e8afSRuslan Bukin KASSERT(entry->flags == IOMMU_MAP_ENTRY_PLACE, 2623024e8afSRuslan Bukin ("start entry flags %p", domain)); 2633024e8afSRuslan Bukin RB_REMOVE(iommu_gas_entries_tree, &domain->rb_root, entry); 2643024e8afSRuslan Bukin iommu_gas_free_entry(domain, entry); 2653024e8afSRuslan Bukin 2663024e8afSRuslan Bukin entry = RB_MAX(iommu_gas_entries_tree, &domain->rb_root); 2673024e8afSRuslan Bukin KASSERT(entry->start == domain->end, ("end entry start %p", domain)); 2683024e8afSRuslan Bukin KASSERT(entry->end == domain->end, ("end entry end %p", domain)); 2693024e8afSRuslan Bukin KASSERT(entry->flags == IOMMU_MAP_ENTRY_PLACE, 2703024e8afSRuslan Bukin ("end entry flags %p", domain)); 2713024e8afSRuslan Bukin RB_REMOVE(iommu_gas_entries_tree, &domain->rb_root, entry); 2723024e8afSRuslan Bukin iommu_gas_free_entry(domain, entry); 2733024e8afSRuslan Bukin 2743024e8afSRuslan Bukin RB_FOREACH_SAFE(entry, iommu_gas_entries_tree, &domain->rb_root, 2753024e8afSRuslan Bukin entry1) { 2763024e8afSRuslan Bukin KASSERT((entry->flags & IOMMU_MAP_ENTRY_RMRR) != 0, 2773024e8afSRuslan Bukin ("non-RMRR entry left %p", domain)); 2783024e8afSRuslan Bukin RB_REMOVE(iommu_gas_entries_tree, &domain->rb_root, 2793024e8afSRuslan Bukin entry); 2803024e8afSRuslan Bukin iommu_gas_free_entry(domain, entry); 2813024e8afSRuslan Bukin } 2823024e8afSRuslan Bukin } 2833024e8afSRuslan Bukin 2843024e8afSRuslan Bukin struct iommu_gas_match_args { 2853024e8afSRuslan Bukin struct iommu_domain *domain; 2863024e8afSRuslan Bukin iommu_gaddr_t size; 2873024e8afSRuslan Bukin int offset; 2883024e8afSRuslan Bukin const struct bus_dma_tag_common *common; 2893024e8afSRuslan Bukin u_int gas_flags; 2903024e8afSRuslan Bukin struct iommu_map_entry *entry; 2913024e8afSRuslan Bukin }; 2923024e8afSRuslan Bukin 2933024e8afSRuslan Bukin /* 2943024e8afSRuslan Bukin * The interval [beg, end) is a free interval between two iommu_map_entries. 2953024e8afSRuslan Bukin * maxaddr is an upper bound on addresses that can be allocated. Try to 2963024e8afSRuslan Bukin * allocate space in the free interval, subject to the conditions expressed 2973024e8afSRuslan Bukin * by a, and return 'true' if and only if the allocation attempt succeeds. 2983024e8afSRuslan Bukin */ 2993024e8afSRuslan Bukin static bool 3003024e8afSRuslan Bukin iommu_gas_match_one(struct iommu_gas_match_args *a, iommu_gaddr_t beg, 3013024e8afSRuslan Bukin iommu_gaddr_t end, iommu_gaddr_t maxaddr) 3023024e8afSRuslan Bukin { 3033024e8afSRuslan Bukin iommu_gaddr_t bs, start; 3043024e8afSRuslan Bukin 3053024e8afSRuslan Bukin a->entry->start = roundup2(beg + IOMMU_PAGE_SIZE, 3063024e8afSRuslan Bukin a->common->alignment); 3073024e8afSRuslan Bukin if (a->entry->start + a->size > maxaddr) 3083024e8afSRuslan Bukin return (false); 3093024e8afSRuslan Bukin 3103024e8afSRuslan Bukin /* IOMMU_PAGE_SIZE to create gap after new entry. */ 3113024e8afSRuslan Bukin if (a->entry->start < beg + IOMMU_PAGE_SIZE || 3123024e8afSRuslan Bukin a->entry->start + a->size + a->offset + IOMMU_PAGE_SIZE > end) 3133024e8afSRuslan Bukin return (false); 3143024e8afSRuslan Bukin 3153024e8afSRuslan Bukin /* No boundary crossing. */ 3163024e8afSRuslan Bukin if (iommu_test_boundary(a->entry->start + a->offset, a->size, 3173024e8afSRuslan Bukin a->common->boundary)) 3183024e8afSRuslan Bukin return (true); 3193024e8afSRuslan Bukin 3203024e8afSRuslan Bukin /* 3213024e8afSRuslan Bukin * The start + offset to start + offset + size region crosses 3223024e8afSRuslan Bukin * the boundary. Check if there is enough space after the 3233024e8afSRuslan Bukin * next boundary after the beg. 3243024e8afSRuslan Bukin */ 3253024e8afSRuslan Bukin bs = rounddown2(a->entry->start + a->offset + a->common->boundary, 3263024e8afSRuslan Bukin a->common->boundary); 3273024e8afSRuslan Bukin start = roundup2(bs, a->common->alignment); 3283024e8afSRuslan Bukin /* IOMMU_PAGE_SIZE to create gap after new entry. */ 3293024e8afSRuslan Bukin if (start + a->offset + a->size + IOMMU_PAGE_SIZE <= end && 3303024e8afSRuslan Bukin start + a->offset + a->size <= maxaddr && 3313024e8afSRuslan Bukin iommu_test_boundary(start + a->offset, a->size, 3323024e8afSRuslan Bukin a->common->boundary)) { 3333024e8afSRuslan Bukin a->entry->start = start; 3343024e8afSRuslan Bukin return (true); 3353024e8afSRuslan Bukin } 3363024e8afSRuslan Bukin 3373024e8afSRuslan Bukin /* 3383024e8afSRuslan Bukin * Not enough space to align at the requested boundary, or 3393024e8afSRuslan Bukin * boundary is smaller than the size, but allowed to split. 3403024e8afSRuslan Bukin * We already checked that start + size does not overlap maxaddr. 3413024e8afSRuslan Bukin * 3423024e8afSRuslan Bukin * XXXKIB. It is possible that bs is exactly at the start of 3433024e8afSRuslan Bukin * the next entry, then we do not have gap. Ignore for now. 3443024e8afSRuslan Bukin */ 3453024e8afSRuslan Bukin if ((a->gas_flags & IOMMU_MF_CANSPLIT) != 0) { 3463024e8afSRuslan Bukin a->size = bs - a->entry->start; 3473024e8afSRuslan Bukin return (true); 3483024e8afSRuslan Bukin } 3493024e8afSRuslan Bukin 3503024e8afSRuslan Bukin return (false); 3513024e8afSRuslan Bukin } 3523024e8afSRuslan Bukin 3533024e8afSRuslan Bukin static void 3543024e8afSRuslan Bukin iommu_gas_match_insert(struct iommu_gas_match_args *a) 3553024e8afSRuslan Bukin { 3563024e8afSRuslan Bukin bool found; 3573024e8afSRuslan Bukin 3583024e8afSRuslan Bukin /* 3593024e8afSRuslan Bukin * The prev->end is always aligned on the page size, which 3603024e8afSRuslan Bukin * causes page alignment for the entry->start too. The size 3613024e8afSRuslan Bukin * is checked to be multiple of the page size. 3623024e8afSRuslan Bukin * 3633024e8afSRuslan Bukin * The page sized gap is created between consequent 3643024e8afSRuslan Bukin * allocations to ensure that out-of-bounds accesses fault. 3653024e8afSRuslan Bukin */ 3663024e8afSRuslan Bukin a->entry->end = a->entry->start + a->size; 3673024e8afSRuslan Bukin 3683024e8afSRuslan Bukin found = iommu_gas_rb_insert(a->domain, a->entry); 3693024e8afSRuslan Bukin KASSERT(found, ("found dup %p start %jx size %jx", 3703024e8afSRuslan Bukin a->domain, (uintmax_t)a->entry->start, (uintmax_t)a->size)); 3713024e8afSRuslan Bukin a->entry->flags = IOMMU_MAP_ENTRY_MAP; 3723024e8afSRuslan Bukin } 3733024e8afSRuslan Bukin 3743024e8afSRuslan Bukin static int 3753024e8afSRuslan Bukin iommu_gas_lowermatch(struct iommu_gas_match_args *a, struct iommu_map_entry *entry) 3763024e8afSRuslan Bukin { 3773024e8afSRuslan Bukin struct iommu_map_entry *child; 3783024e8afSRuslan Bukin 3793024e8afSRuslan Bukin child = RB_RIGHT(entry, rb_entry); 3803024e8afSRuslan Bukin if (child != NULL && entry->end < a->common->lowaddr && 3813024e8afSRuslan Bukin iommu_gas_match_one(a, entry->end, child->first, 3823024e8afSRuslan Bukin a->common->lowaddr)) { 3833024e8afSRuslan Bukin iommu_gas_match_insert(a); 3843024e8afSRuslan Bukin return (0); 3853024e8afSRuslan Bukin } 3863024e8afSRuslan Bukin if (entry->free_down < a->size + a->offset + IOMMU_PAGE_SIZE) 3873024e8afSRuslan Bukin return (ENOMEM); 3883024e8afSRuslan Bukin if (entry->first >= a->common->lowaddr) 3893024e8afSRuslan Bukin return (ENOMEM); 3903024e8afSRuslan Bukin child = RB_LEFT(entry, rb_entry); 3913024e8afSRuslan Bukin if (child != NULL && 0 == iommu_gas_lowermatch(a, child)) 3923024e8afSRuslan Bukin return (0); 3933024e8afSRuslan Bukin if (child != NULL && child->last < a->common->lowaddr && 3943024e8afSRuslan Bukin iommu_gas_match_one(a, child->last, entry->start, 3953024e8afSRuslan Bukin a->common->lowaddr)) { 3963024e8afSRuslan Bukin iommu_gas_match_insert(a); 3973024e8afSRuslan Bukin return (0); 3983024e8afSRuslan Bukin } 3993024e8afSRuslan Bukin child = RB_RIGHT(entry, rb_entry); 4003024e8afSRuslan Bukin if (child != NULL && 0 == iommu_gas_lowermatch(a, child)) 4013024e8afSRuslan Bukin return (0); 4023024e8afSRuslan Bukin return (ENOMEM); 4033024e8afSRuslan Bukin } 4043024e8afSRuslan Bukin 4053024e8afSRuslan Bukin static int 4063024e8afSRuslan Bukin iommu_gas_uppermatch(struct iommu_gas_match_args *a, struct iommu_map_entry *entry) 4073024e8afSRuslan Bukin { 4083024e8afSRuslan Bukin struct iommu_map_entry *child; 4093024e8afSRuslan Bukin 4103024e8afSRuslan Bukin if (entry->free_down < a->size + a->offset + IOMMU_PAGE_SIZE) 4113024e8afSRuslan Bukin return (ENOMEM); 4123024e8afSRuslan Bukin if (entry->last < a->common->highaddr) 4133024e8afSRuslan Bukin return (ENOMEM); 4143024e8afSRuslan Bukin child = RB_LEFT(entry, rb_entry); 4153024e8afSRuslan Bukin if (child != NULL && 0 == iommu_gas_uppermatch(a, child)) 4163024e8afSRuslan Bukin return (0); 4173024e8afSRuslan Bukin if (child != NULL && child->last >= a->common->highaddr && 4183024e8afSRuslan Bukin iommu_gas_match_one(a, child->last, entry->start, 4193024e8afSRuslan Bukin a->domain->end)) { 4203024e8afSRuslan Bukin iommu_gas_match_insert(a); 4213024e8afSRuslan Bukin return (0); 4223024e8afSRuslan Bukin } 4233024e8afSRuslan Bukin child = RB_RIGHT(entry, rb_entry); 4243024e8afSRuslan Bukin if (child != NULL && entry->end >= a->common->highaddr && 4253024e8afSRuslan Bukin iommu_gas_match_one(a, entry->end, child->first, 4263024e8afSRuslan Bukin a->domain->end)) { 4273024e8afSRuslan Bukin iommu_gas_match_insert(a); 4283024e8afSRuslan Bukin return (0); 4293024e8afSRuslan Bukin } 4303024e8afSRuslan Bukin if (child != NULL && 0 == iommu_gas_uppermatch(a, child)) 4313024e8afSRuslan Bukin return (0); 4323024e8afSRuslan Bukin return (ENOMEM); 4333024e8afSRuslan Bukin } 4343024e8afSRuslan Bukin 4353024e8afSRuslan Bukin static int 4363024e8afSRuslan Bukin iommu_gas_find_space(struct iommu_domain *domain, 4373024e8afSRuslan Bukin const struct bus_dma_tag_common *common, iommu_gaddr_t size, 4383024e8afSRuslan Bukin int offset, u_int flags, struct iommu_map_entry *entry) 4393024e8afSRuslan Bukin { 4403024e8afSRuslan Bukin struct iommu_gas_match_args a; 4413024e8afSRuslan Bukin int error; 4423024e8afSRuslan Bukin 4433024e8afSRuslan Bukin IOMMU_DOMAIN_ASSERT_LOCKED(domain); 4443024e8afSRuslan Bukin KASSERT(entry->flags == 0, ("dirty entry %p %p", domain, entry)); 4453024e8afSRuslan Bukin KASSERT((size & IOMMU_PAGE_MASK) == 0, ("size %jx", (uintmax_t)size)); 4463024e8afSRuslan Bukin 4473024e8afSRuslan Bukin a.domain = domain; 4483024e8afSRuslan Bukin a.size = size; 4493024e8afSRuslan Bukin a.offset = offset; 4503024e8afSRuslan Bukin a.common = common; 4513024e8afSRuslan Bukin a.gas_flags = flags; 4523024e8afSRuslan Bukin a.entry = entry; 4533024e8afSRuslan Bukin 4543024e8afSRuslan Bukin /* Handle lower region. */ 4553024e8afSRuslan Bukin if (common->lowaddr > 0) { 4563024e8afSRuslan Bukin error = iommu_gas_lowermatch(&a, 4573024e8afSRuslan Bukin RB_ROOT(&domain->rb_root)); 4583024e8afSRuslan Bukin if (error == 0) 4593024e8afSRuslan Bukin return (0); 4603024e8afSRuslan Bukin KASSERT(error == ENOMEM, 4613024e8afSRuslan Bukin ("error %d from iommu_gas_lowermatch", error)); 4623024e8afSRuslan Bukin } 4633024e8afSRuslan Bukin /* Handle upper region. */ 4643024e8afSRuslan Bukin if (common->highaddr >= domain->end) 4653024e8afSRuslan Bukin return (ENOMEM); 4663024e8afSRuslan Bukin error = iommu_gas_uppermatch(&a, RB_ROOT(&domain->rb_root)); 4673024e8afSRuslan Bukin KASSERT(error == ENOMEM, 4683024e8afSRuslan Bukin ("error %d from iommu_gas_uppermatch", error)); 4693024e8afSRuslan Bukin return (error); 4703024e8afSRuslan Bukin } 4713024e8afSRuslan Bukin 4723024e8afSRuslan Bukin static int 4733024e8afSRuslan Bukin iommu_gas_alloc_region(struct iommu_domain *domain, struct iommu_map_entry *entry, 4743024e8afSRuslan Bukin u_int flags) 4753024e8afSRuslan Bukin { 4763024e8afSRuslan Bukin struct iommu_map_entry *next, *prev; 4773024e8afSRuslan Bukin bool found; 4783024e8afSRuslan Bukin 4793024e8afSRuslan Bukin IOMMU_DOMAIN_ASSERT_LOCKED(domain); 4803024e8afSRuslan Bukin 4813024e8afSRuslan Bukin if ((entry->start & IOMMU_PAGE_MASK) != 0 || 4823024e8afSRuslan Bukin (entry->end & IOMMU_PAGE_MASK) != 0) 4833024e8afSRuslan Bukin return (EINVAL); 4843024e8afSRuslan Bukin if (entry->start >= entry->end) 4853024e8afSRuslan Bukin return (EINVAL); 4863024e8afSRuslan Bukin if (entry->end >= domain->end) 4873024e8afSRuslan Bukin return (EINVAL); 4883024e8afSRuslan Bukin 4893024e8afSRuslan Bukin next = RB_NFIND(iommu_gas_entries_tree, &domain->rb_root, entry); 4903024e8afSRuslan Bukin KASSERT(next != NULL, ("next must be non-null %p %jx", domain, 4913024e8afSRuslan Bukin (uintmax_t)entry->start)); 4923024e8afSRuslan Bukin prev = RB_PREV(iommu_gas_entries_tree, &domain->rb_root, next); 4933024e8afSRuslan Bukin /* prev could be NULL */ 4943024e8afSRuslan Bukin 4953024e8afSRuslan Bukin /* 4963024e8afSRuslan Bukin * Adapt to broken BIOSes which specify overlapping RMRR 4973024e8afSRuslan Bukin * entries. 4983024e8afSRuslan Bukin * 4993024e8afSRuslan Bukin * XXXKIB: this does not handle a case when prev or next 5003024e8afSRuslan Bukin * entries are completely covered by the current one, which 5013024e8afSRuslan Bukin * extends both ways. 5023024e8afSRuslan Bukin */ 5033024e8afSRuslan Bukin if (prev != NULL && prev->end > entry->start && 5043024e8afSRuslan Bukin (prev->flags & IOMMU_MAP_ENTRY_PLACE) == 0) { 5053024e8afSRuslan Bukin if ((flags & IOMMU_MF_RMRR) == 0 || 5063024e8afSRuslan Bukin (prev->flags & IOMMU_MAP_ENTRY_RMRR) == 0) 5073024e8afSRuslan Bukin return (EBUSY); 5083024e8afSRuslan Bukin entry->start = prev->end; 5093024e8afSRuslan Bukin } 5103024e8afSRuslan Bukin if (next->start < entry->end && 5113024e8afSRuslan Bukin (next->flags & IOMMU_MAP_ENTRY_PLACE) == 0) { 5123024e8afSRuslan Bukin if ((flags & IOMMU_MF_RMRR) == 0 || 5133024e8afSRuslan Bukin (next->flags & IOMMU_MAP_ENTRY_RMRR) == 0) 5143024e8afSRuslan Bukin return (EBUSY); 5153024e8afSRuslan Bukin entry->end = next->start; 5163024e8afSRuslan Bukin } 5173024e8afSRuslan Bukin if (entry->end == entry->start) 5183024e8afSRuslan Bukin return (0); 5193024e8afSRuslan Bukin 5203024e8afSRuslan Bukin if (prev != NULL && prev->end > entry->start) { 5213024e8afSRuslan Bukin /* This assumes that prev is the placeholder entry. */ 5223024e8afSRuslan Bukin iommu_gas_rb_remove(domain, prev); 5233024e8afSRuslan Bukin prev = NULL; 5243024e8afSRuslan Bukin } 5253024e8afSRuslan Bukin if (next->start < entry->end) { 5263024e8afSRuslan Bukin iommu_gas_rb_remove(domain, next); 5273024e8afSRuslan Bukin next = NULL; 5283024e8afSRuslan Bukin } 5293024e8afSRuslan Bukin 5303024e8afSRuslan Bukin found = iommu_gas_rb_insert(domain, entry); 5313024e8afSRuslan Bukin KASSERT(found, ("found RMRR dup %p start %jx end %jx", 5323024e8afSRuslan Bukin domain, (uintmax_t)entry->start, (uintmax_t)entry->end)); 5333024e8afSRuslan Bukin if ((flags & IOMMU_MF_RMRR) != 0) 5343024e8afSRuslan Bukin entry->flags = IOMMU_MAP_ENTRY_RMRR; 5353024e8afSRuslan Bukin 5363024e8afSRuslan Bukin #ifdef INVARIANTS 5373024e8afSRuslan Bukin struct iommu_map_entry *ip, *in; 5383024e8afSRuslan Bukin ip = RB_PREV(iommu_gas_entries_tree, &domain->rb_root, entry); 5393024e8afSRuslan Bukin in = RB_NEXT(iommu_gas_entries_tree, &domain->rb_root, entry); 5403024e8afSRuslan Bukin KASSERT(prev == NULL || ip == prev, 5413024e8afSRuslan Bukin ("RMRR %p (%jx %jx) prev %p (%jx %jx) ins prev %p (%jx %jx)", 5423024e8afSRuslan Bukin entry, entry->start, entry->end, prev, 5433024e8afSRuslan Bukin prev == NULL ? 0 : prev->start, prev == NULL ? 0 : prev->end, 5443024e8afSRuslan Bukin ip, ip == NULL ? 0 : ip->start, ip == NULL ? 0 : ip->end)); 5453024e8afSRuslan Bukin KASSERT(next == NULL || in == next, 5463024e8afSRuslan Bukin ("RMRR %p (%jx %jx) next %p (%jx %jx) ins next %p (%jx %jx)", 5473024e8afSRuslan Bukin entry, entry->start, entry->end, next, 5483024e8afSRuslan Bukin next == NULL ? 0 : next->start, next == NULL ? 0 : next->end, 5493024e8afSRuslan Bukin in, in == NULL ? 0 : in->start, in == NULL ? 0 : in->end)); 5503024e8afSRuslan Bukin #endif 5513024e8afSRuslan Bukin 5523024e8afSRuslan Bukin return (0); 5533024e8afSRuslan Bukin } 5543024e8afSRuslan Bukin 5553024e8afSRuslan Bukin void 5563024e8afSRuslan Bukin iommu_gas_free_space(struct iommu_domain *domain, struct iommu_map_entry *entry) 5573024e8afSRuslan Bukin { 5583024e8afSRuslan Bukin 5593024e8afSRuslan Bukin IOMMU_DOMAIN_ASSERT_LOCKED(domain); 5603024e8afSRuslan Bukin KASSERT((entry->flags & (IOMMU_MAP_ENTRY_PLACE | IOMMU_MAP_ENTRY_RMRR | 5613024e8afSRuslan Bukin IOMMU_MAP_ENTRY_MAP)) == IOMMU_MAP_ENTRY_MAP, 5623024e8afSRuslan Bukin ("permanent entry %p %p", domain, entry)); 5633024e8afSRuslan Bukin 5643024e8afSRuslan Bukin iommu_gas_rb_remove(domain, entry); 5653024e8afSRuslan Bukin entry->flags &= ~IOMMU_MAP_ENTRY_MAP; 5663024e8afSRuslan Bukin #ifdef INVARIANTS 5673024e8afSRuslan Bukin if (iommu_check_free) 5683024e8afSRuslan Bukin iommu_gas_check_free(domain); 5693024e8afSRuslan Bukin #endif 5703024e8afSRuslan Bukin } 5713024e8afSRuslan Bukin 5723024e8afSRuslan Bukin void 5733024e8afSRuslan Bukin iommu_gas_free_region(struct iommu_domain *domain, struct iommu_map_entry *entry) 5743024e8afSRuslan Bukin { 5753024e8afSRuslan Bukin struct iommu_map_entry *next, *prev; 5763024e8afSRuslan Bukin 5773024e8afSRuslan Bukin IOMMU_DOMAIN_ASSERT_LOCKED(domain); 5783024e8afSRuslan Bukin KASSERT((entry->flags & (IOMMU_MAP_ENTRY_PLACE | IOMMU_MAP_ENTRY_RMRR | 5793024e8afSRuslan Bukin IOMMU_MAP_ENTRY_MAP)) == IOMMU_MAP_ENTRY_RMRR, 5803024e8afSRuslan Bukin ("non-RMRR entry %p %p", domain, entry)); 5813024e8afSRuslan Bukin 5823024e8afSRuslan Bukin prev = RB_PREV(iommu_gas_entries_tree, &domain->rb_root, entry); 5833024e8afSRuslan Bukin next = RB_NEXT(iommu_gas_entries_tree, &domain->rb_root, entry); 5843024e8afSRuslan Bukin iommu_gas_rb_remove(domain, entry); 5853024e8afSRuslan Bukin entry->flags &= ~IOMMU_MAP_ENTRY_RMRR; 5863024e8afSRuslan Bukin 5873024e8afSRuslan Bukin if (prev == NULL) 5883024e8afSRuslan Bukin iommu_gas_rb_insert(domain, domain->first_place); 5893024e8afSRuslan Bukin if (next == NULL) 5903024e8afSRuslan Bukin iommu_gas_rb_insert(domain, domain->last_place); 5913024e8afSRuslan Bukin } 5923024e8afSRuslan Bukin 5933024e8afSRuslan Bukin int 5943024e8afSRuslan Bukin iommu_gas_map(struct iommu_domain *domain, 5953024e8afSRuslan Bukin const struct bus_dma_tag_common *common, iommu_gaddr_t size, int offset, 5963024e8afSRuslan Bukin u_int eflags, u_int flags, vm_page_t *ma, struct iommu_map_entry **res) 5973024e8afSRuslan Bukin { 5983024e8afSRuslan Bukin struct iommu_map_entry *entry; 5993024e8afSRuslan Bukin int error; 6003024e8afSRuslan Bukin 6013024e8afSRuslan Bukin KASSERT((flags & ~(IOMMU_MF_CANWAIT | IOMMU_MF_CANSPLIT)) == 0, 6023024e8afSRuslan Bukin ("invalid flags 0x%x", flags)); 6033024e8afSRuslan Bukin 6043024e8afSRuslan Bukin entry = iommu_gas_alloc_entry(domain, 60515f6baf4SRuslan Bukin (flags & IOMMU_MF_CANWAIT) != 0 ? IOMMU_PGF_WAITOK : 0); 6063024e8afSRuslan Bukin if (entry == NULL) 6073024e8afSRuslan Bukin return (ENOMEM); 6083024e8afSRuslan Bukin IOMMU_DOMAIN_LOCK(domain); 6093024e8afSRuslan Bukin error = iommu_gas_find_space(domain, common, size, offset, flags, 6103024e8afSRuslan Bukin entry); 6113024e8afSRuslan Bukin if (error == ENOMEM) { 6123024e8afSRuslan Bukin IOMMU_DOMAIN_UNLOCK(domain); 6133024e8afSRuslan Bukin iommu_gas_free_entry(domain, entry); 6143024e8afSRuslan Bukin return (error); 6153024e8afSRuslan Bukin } 6163024e8afSRuslan Bukin #ifdef INVARIANTS 6173024e8afSRuslan Bukin if (iommu_check_free) 6183024e8afSRuslan Bukin iommu_gas_check_free(domain); 6193024e8afSRuslan Bukin #endif 6203024e8afSRuslan Bukin KASSERT(error == 0, 6213024e8afSRuslan Bukin ("unexpected error %d from iommu_gas_find_entry", error)); 6223024e8afSRuslan Bukin KASSERT(entry->end < domain->end, ("allocated GPA %jx, max GPA %jx", 6233024e8afSRuslan Bukin (uintmax_t)entry->end, (uintmax_t)domain->end)); 6243024e8afSRuslan Bukin entry->flags |= eflags; 6253024e8afSRuslan Bukin IOMMU_DOMAIN_UNLOCK(domain); 6263024e8afSRuslan Bukin 6270eed04c8SRuslan Bukin error = domain->ops->map(domain, entry->start, 6280eed04c8SRuslan Bukin entry->end - entry->start, ma, eflags, 62915f6baf4SRuslan Bukin ((flags & IOMMU_MF_CANWAIT) != 0 ? IOMMU_PGF_WAITOK : 0)); 6303024e8afSRuslan Bukin if (error == ENOMEM) { 6313024e8afSRuslan Bukin iommu_domain_unload_entry(entry, true); 6323024e8afSRuslan Bukin return (error); 6333024e8afSRuslan Bukin } 6343024e8afSRuslan Bukin KASSERT(error == 0, 6353024e8afSRuslan Bukin ("unexpected error %d from domain_map_buf", error)); 6363024e8afSRuslan Bukin 6373024e8afSRuslan Bukin *res = entry; 6383024e8afSRuslan Bukin return (0); 6393024e8afSRuslan Bukin } 6403024e8afSRuslan Bukin 6413024e8afSRuslan Bukin int 6423024e8afSRuslan Bukin iommu_gas_map_region(struct iommu_domain *domain, struct iommu_map_entry *entry, 6433024e8afSRuslan Bukin u_int eflags, u_int flags, vm_page_t *ma) 6443024e8afSRuslan Bukin { 6453024e8afSRuslan Bukin iommu_gaddr_t start; 6463024e8afSRuslan Bukin int error; 6473024e8afSRuslan Bukin 6483024e8afSRuslan Bukin KASSERT(entry->flags == 0, ("used RMRR entry %p %p %x", domain, 6493024e8afSRuslan Bukin entry, entry->flags)); 6503024e8afSRuslan Bukin KASSERT((flags & ~(IOMMU_MF_CANWAIT | IOMMU_MF_RMRR)) == 0, 6513024e8afSRuslan Bukin ("invalid flags 0x%x", flags)); 6523024e8afSRuslan Bukin 6533024e8afSRuslan Bukin start = entry->start; 6543024e8afSRuslan Bukin IOMMU_DOMAIN_LOCK(domain); 6553024e8afSRuslan Bukin error = iommu_gas_alloc_region(domain, entry, flags); 6563024e8afSRuslan Bukin if (error != 0) { 6573024e8afSRuslan Bukin IOMMU_DOMAIN_UNLOCK(domain); 6583024e8afSRuslan Bukin return (error); 6593024e8afSRuslan Bukin } 6603024e8afSRuslan Bukin entry->flags |= eflags; 6613024e8afSRuslan Bukin IOMMU_DOMAIN_UNLOCK(domain); 6623024e8afSRuslan Bukin if (entry->end == entry->start) 6633024e8afSRuslan Bukin return (0); 6643024e8afSRuslan Bukin 6650eed04c8SRuslan Bukin error = domain->ops->map(domain, entry->start, 6660eed04c8SRuslan Bukin entry->end - entry->start, ma + OFF_TO_IDX(start - entry->start), 6670eed04c8SRuslan Bukin eflags, ((flags & IOMMU_MF_CANWAIT) != 0 ? IOMMU_PGF_WAITOK : 0)); 6683024e8afSRuslan Bukin if (error == ENOMEM) { 6693024e8afSRuslan Bukin iommu_domain_unload_entry(entry, false); 6703024e8afSRuslan Bukin return (error); 6713024e8afSRuslan Bukin } 6723024e8afSRuslan Bukin KASSERT(error == 0, 6733024e8afSRuslan Bukin ("unexpected error %d from domain_map_buf", error)); 6743024e8afSRuslan Bukin 6753024e8afSRuslan Bukin return (0); 6763024e8afSRuslan Bukin } 6773024e8afSRuslan Bukin 6783024e8afSRuslan Bukin int 6793024e8afSRuslan Bukin iommu_gas_reserve_region(struct iommu_domain *domain, iommu_gaddr_t start, 68094dfb28eSRuslan Bukin iommu_gaddr_t end, struct iommu_map_entry **entry0) 6813024e8afSRuslan Bukin { 6823024e8afSRuslan Bukin struct iommu_map_entry *entry; 6833024e8afSRuslan Bukin int error; 6843024e8afSRuslan Bukin 68515f6baf4SRuslan Bukin entry = iommu_gas_alloc_entry(domain, IOMMU_PGF_WAITOK); 6863024e8afSRuslan Bukin entry->start = start; 6873024e8afSRuslan Bukin entry->end = end; 6883024e8afSRuslan Bukin IOMMU_DOMAIN_LOCK(domain); 6893024e8afSRuslan Bukin error = iommu_gas_alloc_region(domain, entry, IOMMU_MF_CANWAIT); 6903024e8afSRuslan Bukin if (error == 0) 6913024e8afSRuslan Bukin entry->flags |= IOMMU_MAP_ENTRY_UNMAPPED; 6923024e8afSRuslan Bukin IOMMU_DOMAIN_UNLOCK(domain); 6933024e8afSRuslan Bukin if (error != 0) 6943024e8afSRuslan Bukin iommu_gas_free_entry(domain, entry); 69594dfb28eSRuslan Bukin else if (entry0 != NULL) 69694dfb28eSRuslan Bukin *entry0 = entry; 6973024e8afSRuslan Bukin return (error); 6983024e8afSRuslan Bukin } 6993024e8afSRuslan Bukin 7003024e8afSRuslan Bukin struct iommu_map_entry * 7013024e8afSRuslan Bukin iommu_map_alloc_entry(struct iommu_domain *domain, u_int flags) 7023024e8afSRuslan Bukin { 7033024e8afSRuslan Bukin struct iommu_map_entry *res; 7043024e8afSRuslan Bukin 7053024e8afSRuslan Bukin res = iommu_gas_alloc_entry(domain, flags); 7063024e8afSRuslan Bukin 7073024e8afSRuslan Bukin return (res); 7083024e8afSRuslan Bukin } 7093024e8afSRuslan Bukin 7103024e8afSRuslan Bukin void 7113024e8afSRuslan Bukin iommu_map_free_entry(struct iommu_domain *domain, struct iommu_map_entry *entry) 7123024e8afSRuslan Bukin { 7133024e8afSRuslan Bukin 7143024e8afSRuslan Bukin iommu_gas_free_entry(domain, entry); 7153024e8afSRuslan Bukin } 7163024e8afSRuslan Bukin 7173024e8afSRuslan Bukin int 7183024e8afSRuslan Bukin iommu_map(struct iommu_domain *domain, 7193024e8afSRuslan Bukin const struct bus_dma_tag_common *common, iommu_gaddr_t size, int offset, 7203024e8afSRuslan Bukin u_int eflags, u_int flags, vm_page_t *ma, struct iommu_map_entry **res) 7213024e8afSRuslan Bukin { 7223024e8afSRuslan Bukin int error; 7233024e8afSRuslan Bukin 7243024e8afSRuslan Bukin error = iommu_gas_map(domain, common, size, offset, eflags, flags, 7253024e8afSRuslan Bukin ma, res); 7263024e8afSRuslan Bukin 7273024e8afSRuslan Bukin return (error); 7283024e8afSRuslan Bukin } 7293024e8afSRuslan Bukin 730*f32f0095SRuslan Bukin void 731*f32f0095SRuslan Bukin iommu_unmap_msi(struct iommu_ctx *ctx) 732*f32f0095SRuslan Bukin { 733*f32f0095SRuslan Bukin struct iommu_map_entry *entry; 734*f32f0095SRuslan Bukin struct iommu_domain *domain; 735*f32f0095SRuslan Bukin 736*f32f0095SRuslan Bukin domain = ctx->domain; 737*f32f0095SRuslan Bukin entry = domain->msi_entry; 738*f32f0095SRuslan Bukin if (entry == NULL) 739*f32f0095SRuslan Bukin return; 740*f32f0095SRuslan Bukin 741*f32f0095SRuslan Bukin domain->ops->unmap(domain, entry->start, entry->end - 742*f32f0095SRuslan Bukin entry->start, IOMMU_PGF_WAITOK); 743*f32f0095SRuslan Bukin 744*f32f0095SRuslan Bukin IOMMU_DOMAIN_LOCK(domain); 745*f32f0095SRuslan Bukin iommu_gas_free_space(domain, entry); 746*f32f0095SRuslan Bukin IOMMU_DOMAIN_UNLOCK(domain); 747*f32f0095SRuslan Bukin 748*f32f0095SRuslan Bukin iommu_gas_free_entry(domain, entry); 749*f32f0095SRuslan Bukin 750*f32f0095SRuslan Bukin domain->msi_entry = NULL; 751*f32f0095SRuslan Bukin domain->msi_base = 0; 752*f32f0095SRuslan Bukin domain->msi_phys = 0; 753*f32f0095SRuslan Bukin } 754*f32f0095SRuslan Bukin 7553024e8afSRuslan Bukin int 756e707c8beSRuslan Bukin iommu_map_msi(struct iommu_ctx *ctx, iommu_gaddr_t size, int offset, 757e707c8beSRuslan Bukin u_int eflags, u_int flags, vm_page_t *ma) 758e707c8beSRuslan Bukin { 759e707c8beSRuslan Bukin struct iommu_domain *domain; 760e707c8beSRuslan Bukin struct iommu_map_entry *entry; 761e707c8beSRuslan Bukin int error; 762e707c8beSRuslan Bukin 763e707c8beSRuslan Bukin error = 0; 764e707c8beSRuslan Bukin domain = ctx->domain; 765e707c8beSRuslan Bukin 766e707c8beSRuslan Bukin /* Check if there is already an MSI page allocated */ 767e707c8beSRuslan Bukin IOMMU_DOMAIN_LOCK(domain); 768e707c8beSRuslan Bukin entry = domain->msi_entry; 769e707c8beSRuslan Bukin IOMMU_DOMAIN_UNLOCK(domain); 770e707c8beSRuslan Bukin 771e707c8beSRuslan Bukin if (entry == NULL) { 772e707c8beSRuslan Bukin error = iommu_gas_map(domain, &ctx->tag->common, size, offset, 773e707c8beSRuslan Bukin eflags, flags, ma, &entry); 774e707c8beSRuslan Bukin IOMMU_DOMAIN_LOCK(domain); 775e707c8beSRuslan Bukin if (error == 0) { 776e707c8beSRuslan Bukin if (domain->msi_entry == NULL) { 777e707c8beSRuslan Bukin MPASS(domain->msi_base == 0); 778e707c8beSRuslan Bukin MPASS(domain->msi_phys == 0); 779e707c8beSRuslan Bukin 780e707c8beSRuslan Bukin domain->msi_entry = entry; 781e707c8beSRuslan Bukin domain->msi_base = entry->start; 782e707c8beSRuslan Bukin domain->msi_phys = VM_PAGE_TO_PHYS(ma[0]); 783e707c8beSRuslan Bukin } else { 784e707c8beSRuslan Bukin /* 785e707c8beSRuslan Bukin * We lost the race and already have an 786e707c8beSRuslan Bukin * MSI page allocated. Free the unneeded entry. 787e707c8beSRuslan Bukin */ 788e707c8beSRuslan Bukin iommu_gas_free_entry(domain, entry); 789e707c8beSRuslan Bukin } 790e707c8beSRuslan Bukin } else if (domain->msi_entry != NULL) { 791e707c8beSRuslan Bukin /* 792e707c8beSRuslan Bukin * The allocation failed, but another succeeded. 793e707c8beSRuslan Bukin * Return success as there is a valid MSI page. 794e707c8beSRuslan Bukin */ 795e707c8beSRuslan Bukin error = 0; 796e707c8beSRuslan Bukin } 797e707c8beSRuslan Bukin IOMMU_DOMAIN_UNLOCK(domain); 798e707c8beSRuslan Bukin } 799e707c8beSRuslan Bukin 800e707c8beSRuslan Bukin return (error); 801e707c8beSRuslan Bukin } 802e707c8beSRuslan Bukin 803e707c8beSRuslan Bukin void 804e707c8beSRuslan Bukin iommu_translate_msi(struct iommu_domain *domain, uint64_t *addr) 805e707c8beSRuslan Bukin { 806e707c8beSRuslan Bukin 807e707c8beSRuslan Bukin *addr = (*addr - domain->msi_phys) + domain->msi_base; 808e707c8beSRuslan Bukin 809e707c8beSRuslan Bukin KASSERT(*addr >= domain->msi_entry->start, 810e707c8beSRuslan Bukin ("%s: Address is below the MSI entry start address (%jx < %jx)", 811e707c8beSRuslan Bukin __func__, (uintmax_t)*addr, (uintmax_t)domain->msi_entry->start)); 812e707c8beSRuslan Bukin 813e707c8beSRuslan Bukin KASSERT(*addr + sizeof(*addr) <= domain->msi_entry->end, 814e707c8beSRuslan Bukin ("%s: Address is above the MSI entry end address (%jx < %jx)", 815e707c8beSRuslan Bukin __func__, (uintmax_t)*addr, (uintmax_t)domain->msi_entry->end)); 816e707c8beSRuslan Bukin } 817e707c8beSRuslan Bukin 818e707c8beSRuslan Bukin int 8193024e8afSRuslan Bukin iommu_map_region(struct iommu_domain *domain, struct iommu_map_entry *entry, 8203024e8afSRuslan Bukin u_int eflags, u_int flags, vm_page_t *ma) 8213024e8afSRuslan Bukin { 8223024e8afSRuslan Bukin int error; 8233024e8afSRuslan Bukin 8243024e8afSRuslan Bukin error = iommu_gas_map_region(domain, entry, eflags, flags, ma); 8253024e8afSRuslan Bukin 8263024e8afSRuslan Bukin return (error); 8273024e8afSRuslan Bukin } 8289c843a40SRuslan Bukin 829357149f0SRuslan Bukin SYSCTL_NODE(_hw, OID_AUTO, iommu, CTLFLAG_RW | CTLFLAG_MPSAFE, NULL, ""); 830357149f0SRuslan Bukin 8319c843a40SRuslan Bukin #ifdef INVARIANTS 8329c843a40SRuslan Bukin SYSCTL_INT(_hw_iommu, OID_AUTO, check_free, CTLFLAG_RWTUN, 8339c843a40SRuslan Bukin &iommu_check_free, 0, 8349c843a40SRuslan Bukin "Check the GPA RBtree for free_down and free_after validity"); 8359c843a40SRuslan Bukin #endif 836