13024e8afSRuslan Bukin /*-
24d846d26SWarner Losh * SPDX-License-Identifier: BSD-2-Clause
33024e8afSRuslan Bukin *
43024e8afSRuslan Bukin * Copyright (c) 2013 The FreeBSD Foundation
53024e8afSRuslan Bukin *
63024e8afSRuslan Bukin * This software was developed by Konstantin Belousov <kib@FreeBSD.org>
73024e8afSRuslan Bukin * under sponsorship from the FreeBSD Foundation.
83024e8afSRuslan Bukin *
93024e8afSRuslan Bukin * Redistribution and use in source and binary forms, with or without
103024e8afSRuslan Bukin * modification, are permitted provided that the following conditions
113024e8afSRuslan Bukin * are met:
123024e8afSRuslan Bukin * 1. Redistributions of source code must retain the above copyright
133024e8afSRuslan Bukin * notice, this list of conditions and the following disclaimer.
143024e8afSRuslan Bukin * 2. Redistributions in binary form must reproduce the above copyright
153024e8afSRuslan Bukin * notice, this list of conditions and the following disclaimer in the
163024e8afSRuslan Bukin * documentation and/or other materials provided with the distribution.
173024e8afSRuslan Bukin *
183024e8afSRuslan Bukin * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
193024e8afSRuslan Bukin * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
203024e8afSRuslan Bukin * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
213024e8afSRuslan Bukin * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
223024e8afSRuslan Bukin * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
233024e8afSRuslan Bukin * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
243024e8afSRuslan Bukin * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
253024e8afSRuslan Bukin * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
263024e8afSRuslan Bukin * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
273024e8afSRuslan Bukin * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
283024e8afSRuslan Bukin * SUCH DAMAGE.
293024e8afSRuslan Bukin */
303024e8afSRuslan Bukin
31b16f993eSDoug Moore #define RB_AUGMENT_CHECK(entry) iommu_gas_augment_entry(entry)
323024e8afSRuslan Bukin
333024e8afSRuslan Bukin #include <sys/param.h>
343024e8afSRuslan Bukin #include <sys/systm.h>
353024e8afSRuslan Bukin #include <sys/malloc.h>
363024e8afSRuslan Bukin #include <sys/bus.h>
373024e8afSRuslan Bukin #include <sys/interrupt.h>
383024e8afSRuslan Bukin #include <sys/kernel.h>
393024e8afSRuslan Bukin #include <sys/ktr.h>
403024e8afSRuslan Bukin #include <sys/lock.h>
413024e8afSRuslan Bukin #include <sys/proc.h>
423024e8afSRuslan Bukin #include <sys/rwlock.h>
433024e8afSRuslan Bukin #include <sys/memdesc.h>
443024e8afSRuslan Bukin #include <sys/mutex.h>
453024e8afSRuslan Bukin #include <sys/sysctl.h>
463024e8afSRuslan Bukin #include <sys/rman.h>
473024e8afSRuslan Bukin #include <sys/taskqueue.h>
483024e8afSRuslan Bukin #include <sys/tree.h>
493024e8afSRuslan Bukin #include <sys/uio.h>
503024e8afSRuslan Bukin #include <sys/vmem.h>
513024e8afSRuslan Bukin #include <vm/vm.h>
523024e8afSRuslan Bukin #include <vm/vm_extern.h>
533024e8afSRuslan Bukin #include <vm/vm_kern.h>
543024e8afSRuslan Bukin #include <vm/vm_object.h>
553024e8afSRuslan Bukin #include <vm/vm_page.h>
563024e8afSRuslan Bukin #include <vm/vm_map.h>
573024e8afSRuslan Bukin #include <vm/uma.h>
58c8597a1fSRuslan Bukin #include <dev/pci/pcireg.h>
59c8597a1fSRuslan Bukin #include <dev/pci/pcivar.h>
60c8597a1fSRuslan Bukin #include <dev/iommu/iommu.h>
61f23f7d3aSRuslan Bukin #include <dev/iommu/iommu_gas.h>
62e707c8beSRuslan Bukin #include <dev/iommu/iommu_msi.h>
633024e8afSRuslan Bukin #include <machine/atomic.h>
643024e8afSRuslan Bukin #include <machine/bus.h>
653024e8afSRuslan Bukin #include <machine/md_var.h>
66c4cd6990SRuslan Bukin #include <machine/iommu.h>
67c8597a1fSRuslan Bukin #include <dev/iommu/busdma_iommu.h>
683024e8afSRuslan Bukin
693024e8afSRuslan Bukin /*
703024e8afSRuslan Bukin * Guest Address Space management.
713024e8afSRuslan Bukin */
723024e8afSRuslan Bukin
733024e8afSRuslan Bukin static uma_zone_t iommu_map_entry_zone;
743024e8afSRuslan Bukin
759c843a40SRuslan Bukin #ifdef INVARIANTS
769c843a40SRuslan Bukin static int iommu_check_free;
779c843a40SRuslan Bukin #endif
789c843a40SRuslan Bukin
793024e8afSRuslan Bukin static void
intel_gas_init(void)803024e8afSRuslan Bukin intel_gas_init(void)
813024e8afSRuslan Bukin {
823024e8afSRuslan Bukin
833024e8afSRuslan Bukin iommu_map_entry_zone = uma_zcreate("IOMMU_MAP_ENTRY",
843024e8afSRuslan Bukin sizeof(struct iommu_map_entry), NULL, NULL,
853024e8afSRuslan Bukin NULL, NULL, UMA_ALIGN_PTR, UMA_ZONE_NODUMP);
863024e8afSRuslan Bukin }
873024e8afSRuslan Bukin SYSINIT(intel_gas, SI_SUB_DRIVERS, SI_ORDER_FIRST, intel_gas_init, NULL);
883024e8afSRuslan Bukin
893024e8afSRuslan Bukin struct iommu_map_entry *
iommu_gas_alloc_entry(struct iommu_domain * domain,u_int flags)903024e8afSRuslan Bukin iommu_gas_alloc_entry(struct iommu_domain *domain, u_int flags)
913024e8afSRuslan Bukin {
923024e8afSRuslan Bukin struct iommu_map_entry *res;
933024e8afSRuslan Bukin
9415f6baf4SRuslan Bukin KASSERT((flags & ~(IOMMU_PGF_WAITOK)) == 0,
953024e8afSRuslan Bukin ("unsupported flags %x", flags));
963024e8afSRuslan Bukin
9715f6baf4SRuslan Bukin res = uma_zalloc(iommu_map_entry_zone, ((flags & IOMMU_PGF_WAITOK) !=
983024e8afSRuslan Bukin 0 ? M_WAITOK : M_NOWAIT) | M_ZERO);
99f713ed66SKonstantin Belousov if (res != NULL) {
100f713ed66SKonstantin Belousov SLIST_INIT(&res->pgtbl_free);
101f713ed66SKonstantin Belousov if (domain != NULL) {
1023024e8afSRuslan Bukin res->domain = domain;
1033024e8afSRuslan Bukin atomic_add_int(&domain->entries_cnt, 1);
1043024e8afSRuslan Bukin }
105f713ed66SKonstantin Belousov }
1063024e8afSRuslan Bukin return (res);
1073024e8afSRuslan Bukin }
1083024e8afSRuslan Bukin
1093024e8afSRuslan Bukin void
iommu_gas_free_entry(struct iommu_map_entry * entry)1104670f908SAlan Cox iommu_gas_free_entry(struct iommu_map_entry *entry)
1113024e8afSRuslan Bukin {
1124670f908SAlan Cox struct iommu_domain *domain;
113f713ed66SKonstantin Belousov int n __unused;
1143024e8afSRuslan Bukin
115f713ed66SKonstantin Belousov n = vm_page_free_pages_toq(&entry->pgtbl_free, false);
116f713ed66SKonstantin Belousov #if defined(__i386__) || defined(__amd64__)
117f713ed66SKonstantin Belousov atomic_subtract_int(&iommu_tbl_pagecnt, n);
118f713ed66SKonstantin Belousov #endif
1194670f908SAlan Cox domain = entry->domain;
12042736dc4SAlan Cox if (domain != NULL)
1213024e8afSRuslan Bukin atomic_subtract_int(&domain->entries_cnt, 1);
1223024e8afSRuslan Bukin uma_zfree(iommu_map_entry_zone, entry);
1233024e8afSRuslan Bukin }
1243024e8afSRuslan Bukin
1253024e8afSRuslan Bukin static int
iommu_gas_cmp_entries(struct iommu_map_entry * a,struct iommu_map_entry * b)1263024e8afSRuslan Bukin iommu_gas_cmp_entries(struct iommu_map_entry *a, struct iommu_map_entry *b)
1273024e8afSRuslan Bukin {
1283024e8afSRuslan Bukin
129f5912877SKonstantin Belousov /* First and last entries have zero size, so <= */
1303024e8afSRuslan Bukin KASSERT(a->start <= a->end, ("inverted entry %p (%jx, %jx)",
1313024e8afSRuslan Bukin a, (uintmax_t)a->start, (uintmax_t)a->end));
1323024e8afSRuslan Bukin KASSERT(b->start <= b->end, ("inverted entry %p (%jx, %jx)",
1333024e8afSRuslan Bukin b, (uintmax_t)b->start, (uintmax_t)b->end));
134a59c2529SKonstantin Belousov KASSERT(((a->flags | b->flags) & IOMMU_MAP_ENTRY_FAKE) != 0 ||
135a59c2529SKonstantin Belousov a->end <= b->start || b->end <= a->start ||
1363024e8afSRuslan Bukin a->end == a->start || b->end == b->start,
137733da1ebSKonstantin Belousov ("overlapping entries %p (%jx, %jx) f %#x %p (%jx, %jx) f %#x"
138733da1ebSKonstantin Belousov " domain %p %p",
139733da1ebSKonstantin Belousov a, (uintmax_t)a->start, (uintmax_t)a->end, a->flags,
140733da1ebSKonstantin Belousov b, (uintmax_t)b->start, (uintmax_t)b->end, b->flags,
141733da1ebSKonstantin Belousov a->domain, b->domain));
1423024e8afSRuslan Bukin
1433024e8afSRuslan Bukin if (a->end < b->end)
1443024e8afSRuslan Bukin return (-1);
1453024e8afSRuslan Bukin else if (b->end < a->end)
1463024e8afSRuslan Bukin return (1);
1473024e8afSRuslan Bukin return (0);
1483024e8afSRuslan Bukin }
1493024e8afSRuslan Bukin
150b16f993eSDoug Moore /*
151b16f993eSDoug Moore * Update augmentation data based on data from children.
152b16f993eSDoug Moore * Return true if and only if the update changes the augmentation data.
153b16f993eSDoug Moore */
154b16f993eSDoug Moore static bool
iommu_gas_augment_entry(struct iommu_map_entry * entry)1553024e8afSRuslan Bukin iommu_gas_augment_entry(struct iommu_map_entry *entry)
1563024e8afSRuslan Bukin {
1573024e8afSRuslan Bukin struct iommu_map_entry *child;
158b16f993eSDoug Moore iommu_gaddr_t bound, delta, free_down;
1593024e8afSRuslan Bukin
1603024e8afSRuslan Bukin free_down = 0;
161b16f993eSDoug Moore bound = entry->start;
1623024e8afSRuslan Bukin if ((child = RB_LEFT(entry, rb_entry)) != NULL) {
163b16f993eSDoug Moore free_down = MAX(child->free_down, bound - child->last);
164b16f993eSDoug Moore bound = child->first;
165b16f993eSDoug Moore }
166b16f993eSDoug Moore delta = bound - entry->first;
167b16f993eSDoug Moore entry->first = bound;
168b16f993eSDoug Moore bound = entry->end;
1693024e8afSRuslan Bukin if ((child = RB_RIGHT(entry, rb_entry)) != NULL) {
1703024e8afSRuslan Bukin free_down = MAX(free_down, child->free_down);
171b16f993eSDoug Moore free_down = MAX(free_down, child->first - bound);
172b16f993eSDoug Moore bound = child->last;
173b16f993eSDoug Moore }
174b16f993eSDoug Moore delta += entry->last - bound;
175b16f993eSDoug Moore if (delta == 0)
176b16f993eSDoug Moore delta = entry->free_down - free_down;
177b16f993eSDoug Moore entry->last = bound;
1783024e8afSRuslan Bukin entry->free_down = free_down;
179b16f993eSDoug Moore
180b16f993eSDoug Moore /*
181b16f993eSDoug Moore * Return true either if the value of last-first changed,
182b16f993eSDoug Moore * or if free_down changed.
183b16f993eSDoug Moore */
184b16f993eSDoug Moore return (delta != 0);
1853024e8afSRuslan Bukin }
1863024e8afSRuslan Bukin
1873024e8afSRuslan Bukin RB_GENERATE(iommu_gas_entries_tree, iommu_map_entry, rb_entry,
1883024e8afSRuslan Bukin iommu_gas_cmp_entries);
1893024e8afSRuslan Bukin
1903024e8afSRuslan Bukin #ifdef INVARIANTS
1913024e8afSRuslan Bukin static void
iommu_gas_check_free(struct iommu_domain * domain)1923024e8afSRuslan Bukin iommu_gas_check_free(struct iommu_domain *domain)
1933024e8afSRuslan Bukin {
1943024e8afSRuslan Bukin struct iommu_map_entry *entry, *l, *r;
1953024e8afSRuslan Bukin iommu_gaddr_t v;
1963024e8afSRuslan Bukin
1973024e8afSRuslan Bukin RB_FOREACH(entry, iommu_gas_entries_tree, &domain->rb_root) {
198b64dca2bSRuslan Bukin KASSERT(domain == entry->domain,
1993024e8afSRuslan Bukin ("mismatched free domain %p entry %p entry->domain %p",
2003024e8afSRuslan Bukin domain, entry, entry->domain));
2013024e8afSRuslan Bukin l = RB_LEFT(entry, rb_entry);
2023024e8afSRuslan Bukin r = RB_RIGHT(entry, rb_entry);
2033024e8afSRuslan Bukin v = 0;
2043024e8afSRuslan Bukin if (l != NULL) {
2053024e8afSRuslan Bukin v = MAX(v, l->free_down);
2063024e8afSRuslan Bukin v = MAX(v, entry->start - l->last);
2073024e8afSRuslan Bukin }
2083024e8afSRuslan Bukin if (r != NULL) {
2093024e8afSRuslan Bukin v = MAX(v, r->free_down);
2103024e8afSRuslan Bukin v = MAX(v, r->first - entry->end);
2113024e8afSRuslan Bukin }
2123024e8afSRuslan Bukin MPASS(entry->free_down == v);
2133024e8afSRuslan Bukin }
2143024e8afSRuslan Bukin }
2153024e8afSRuslan Bukin #endif
2163024e8afSRuslan Bukin
2173024e8afSRuslan Bukin static void
iommu_gas_rb_remove(struct iommu_domain * domain,struct iommu_map_entry * entry)2183024e8afSRuslan Bukin iommu_gas_rb_remove(struct iommu_domain *domain, struct iommu_map_entry *entry)
2193024e8afSRuslan Bukin {
2208b221ca6SDoug Moore struct iommu_map_entry *nbr;
2213024e8afSRuslan Bukin
2228b221ca6SDoug Moore /* Removing entry may open a new free gap before domain->start_gap. */
2238b221ca6SDoug Moore if (entry->end <= domain->start_gap->end) {
2248b221ca6SDoug Moore if (RB_RIGHT(entry, rb_entry) != NULL)
2258b221ca6SDoug Moore nbr = iommu_gas_entries_tree_RB_NEXT(entry);
2268b221ca6SDoug Moore else if (RB_LEFT(entry, rb_entry) != NULL)
2278b221ca6SDoug Moore nbr = RB_LEFT(entry, rb_entry);
2288b221ca6SDoug Moore else
2298b221ca6SDoug Moore nbr = RB_PARENT(entry, rb_entry);
2308b221ca6SDoug Moore domain->start_gap = nbr;
2318b221ca6SDoug Moore }
2323024e8afSRuslan Bukin RB_REMOVE(iommu_gas_entries_tree, &domain->rb_root, entry);
2333024e8afSRuslan Bukin }
2343024e8afSRuslan Bukin
235f5cafae1SRuslan Bukin struct iommu_domain *
iommu_get_ctx_domain(struct iommu_ctx * ctx)236f5cafae1SRuslan Bukin iommu_get_ctx_domain(struct iommu_ctx *ctx)
237f5cafae1SRuslan Bukin {
238f5cafae1SRuslan Bukin
239f5cafae1SRuslan Bukin return (ctx->domain);
240f5cafae1SRuslan Bukin }
241f5cafae1SRuslan Bukin
2423024e8afSRuslan Bukin void
iommu_gas_init_domain(struct iommu_domain * domain)2433024e8afSRuslan Bukin iommu_gas_init_domain(struct iommu_domain *domain)
2443024e8afSRuslan Bukin {
2453024e8afSRuslan Bukin struct iommu_map_entry *begin, *end;
2463024e8afSRuslan Bukin
24715f6baf4SRuslan Bukin begin = iommu_gas_alloc_entry(domain, IOMMU_PGF_WAITOK);
24815f6baf4SRuslan Bukin end = iommu_gas_alloc_entry(domain, IOMMU_PGF_WAITOK);
2493024e8afSRuslan Bukin
2503024e8afSRuslan Bukin IOMMU_DOMAIN_LOCK(domain);
2513024e8afSRuslan Bukin KASSERT(domain->entries_cnt == 2, ("dirty domain %p", domain));
2523024e8afSRuslan Bukin KASSERT(RB_EMPTY(&domain->rb_root),
2533024e8afSRuslan Bukin ("non-empty entries %p", domain));
2543024e8afSRuslan Bukin
2553024e8afSRuslan Bukin end->start = domain->end;
2563024e8afSRuslan Bukin end->end = domain->end;
2573024e8afSRuslan Bukin end->flags = IOMMU_MAP_ENTRY_PLACE | IOMMU_MAP_ENTRY_UNMAPPED;
258368ee2f8SDoug Moore RB_INSERT(iommu_gas_entries_tree, &domain->rb_root, end);
2593024e8afSRuslan Bukin
260b16f993eSDoug Moore begin->start = 0;
261f5912877SKonstantin Belousov begin->end = 0;
262b16f993eSDoug Moore begin->flags = IOMMU_MAP_ENTRY_PLACE | IOMMU_MAP_ENTRY_UNMAPPED;
263368ee2f8SDoug Moore RB_INSERT_PREV(iommu_gas_entries_tree, &domain->rb_root, end, begin);
264f5912877SKonstantin Belousov iommu_gas_augment_entry(end);
265f5912877SKonstantin Belousov iommu_gas_augment_entry(begin);
266b16f993eSDoug Moore
26787d405eaSDoug Moore domain->start_gap = begin;
2683024e8afSRuslan Bukin domain->first_place = begin;
2693024e8afSRuslan Bukin domain->last_place = end;
27015f6baf4SRuslan Bukin domain->flags |= IOMMU_DOMAIN_GAS_INITED;
2713024e8afSRuslan Bukin IOMMU_DOMAIN_UNLOCK(domain);
2723024e8afSRuslan Bukin }
2733024e8afSRuslan Bukin
2743024e8afSRuslan Bukin void
iommu_gas_fini_domain(struct iommu_domain * domain)2753024e8afSRuslan Bukin iommu_gas_fini_domain(struct iommu_domain *domain)
2763024e8afSRuslan Bukin {
277a2c57c60SDoug Moore struct iommu_map_entry *entry;
2783024e8afSRuslan Bukin
2793024e8afSRuslan Bukin IOMMU_DOMAIN_ASSERT_LOCKED(domain);
2803024e8afSRuslan Bukin KASSERT(domain->entries_cnt == 2,
2813024e8afSRuslan Bukin ("domain still in use %p", domain));
2823024e8afSRuslan Bukin
2833024e8afSRuslan Bukin entry = RB_MIN(iommu_gas_entries_tree, &domain->rb_root);
2843024e8afSRuslan Bukin KASSERT(entry->start == 0, ("start entry start %p", domain));
2853024e8afSRuslan Bukin KASSERT(entry->end == IOMMU_PAGE_SIZE, ("start entry end %p", domain));
286dea8594fSRuslan Bukin KASSERT(entry->flags ==
287dea8594fSRuslan Bukin (IOMMU_MAP_ENTRY_PLACE | IOMMU_MAP_ENTRY_UNMAPPED),
2883024e8afSRuslan Bukin ("start entry flags %p", domain));
289368ee2f8SDoug Moore iommu_gas_rb_remove(domain, entry);
2904670f908SAlan Cox iommu_gas_free_entry(entry);
2913024e8afSRuslan Bukin
2923024e8afSRuslan Bukin entry = RB_MAX(iommu_gas_entries_tree, &domain->rb_root);
2933024e8afSRuslan Bukin KASSERT(entry->start == domain->end, ("end entry start %p", domain));
2943024e8afSRuslan Bukin KASSERT(entry->end == domain->end, ("end entry end %p", domain));
295dea8594fSRuslan Bukin KASSERT(entry->flags ==
296dea8594fSRuslan Bukin (IOMMU_MAP_ENTRY_PLACE | IOMMU_MAP_ENTRY_UNMAPPED),
2973024e8afSRuslan Bukin ("end entry flags %p", domain));
298368ee2f8SDoug Moore iommu_gas_rb_remove(domain, entry);
2994670f908SAlan Cox iommu_gas_free_entry(entry);
3003024e8afSRuslan Bukin }
3013024e8afSRuslan Bukin
3023024e8afSRuslan Bukin struct iommu_gas_match_args {
3033024e8afSRuslan Bukin iommu_gaddr_t size;
3043024e8afSRuslan Bukin int offset;
3053024e8afSRuslan Bukin const struct bus_dma_tag_common *common;
3063024e8afSRuslan Bukin u_int gas_flags;
3073024e8afSRuslan Bukin struct iommu_map_entry *entry;
3083024e8afSRuslan Bukin };
3093024e8afSRuslan Bukin
3103024e8afSRuslan Bukin /*
3113024e8afSRuslan Bukin * The interval [beg, end) is a free interval between two iommu_map_entries.
3125b9b55fbSDoug Moore * Addresses can be allocated only in the range [lbound, ubound]. Try to
313e0e8d0c8SDoug Moore * allocate space in the free interval, subject to the conditions expressed by
314e0e8d0c8SDoug Moore * a, and return 'true' if and only if the allocation attempt succeeds.
3153024e8afSRuslan Bukin */
3163024e8afSRuslan Bukin static bool
iommu_gas_match_one(struct iommu_gas_match_args * a,iommu_gaddr_t beg,iommu_gaddr_t end,iommu_gaddr_t lbound,iommu_gaddr_t ubound)3173024e8afSRuslan Bukin iommu_gas_match_one(struct iommu_gas_match_args *a, iommu_gaddr_t beg,
318e0e8d0c8SDoug Moore iommu_gaddr_t end, iommu_gaddr_t lbound, iommu_gaddr_t ubound)
3193024e8afSRuslan Bukin {
320e0e8d0c8SDoug Moore struct iommu_map_entry *entry;
321e0e8d0c8SDoug Moore iommu_gaddr_t first, size, start;
322e0e8d0c8SDoug Moore int offset;
3233024e8afSRuslan Bukin
324da33f6d7SAlan Cox /*
325da33f6d7SAlan Cox * The prev->end is always aligned on the page size, which
326da33f6d7SAlan Cox * causes page alignment for the entry->start too.
327da33f6d7SAlan Cox *
328e0e8d0c8SDoug Moore * Create IOMMU_PAGE_SIZE gaps before, after new entry
329e0e8d0c8SDoug Moore * to ensure that out-of-bounds accesses fault.
330da33f6d7SAlan Cox */
331e0e8d0c8SDoug Moore beg = MAX(beg + IOMMU_PAGE_SIZE, lbound);
332e0e8d0c8SDoug Moore start = roundup2(beg, a->common->alignment);
333e0e8d0c8SDoug Moore if (start < beg)
334e0e8d0c8SDoug Moore return (false);
335a869643eSKonstantin Belousov if (end < IOMMU_PAGE_SIZE + 1)
336a869643eSKonstantin Belousov return (false);
3375b9b55fbSDoug Moore end = MIN(end - IOMMU_PAGE_SIZE - 1, ubound);
338e0e8d0c8SDoug Moore offset = a->offset;
339e0e8d0c8SDoug Moore size = a->size;
3405b9b55fbSDoug Moore if (start + offset + size - 1 > end)
3413024e8afSRuslan Bukin return (false);
3423024e8afSRuslan Bukin
343e0e8d0c8SDoug Moore /* Check for and try to skip past boundary crossing. */
344e0e8d0c8SDoug Moore if (!vm_addr_bound_ok(start + offset, size, a->common->boundary)) {
3453024e8afSRuslan Bukin /*
3463024e8afSRuslan Bukin * The start + offset to start + offset + size region crosses
347e0e8d0c8SDoug Moore * the boundary. Check if there is enough space after the next
348e0e8d0c8SDoug Moore * boundary after the beg.
3493024e8afSRuslan Bukin */
350e0e8d0c8SDoug Moore first = start;
351e0e8d0c8SDoug Moore beg = roundup2(start + offset + 1, a->common->boundary);
352e0e8d0c8SDoug Moore start = roundup2(beg, a->common->alignment);
353e0e8d0c8SDoug Moore
3545b9b55fbSDoug Moore if (start + offset + size - 1 > end ||
355e0e8d0c8SDoug Moore !vm_addr_bound_ok(start + offset, size,
3563024e8afSRuslan Bukin a->common->boundary)) {
3573024e8afSRuslan Bukin /*
358e0e8d0c8SDoug Moore * Not enough space to align at the requested boundary,
359e0e8d0c8SDoug Moore * or boundary is smaller than the size, but allowed to
360e0e8d0c8SDoug Moore * split. We already checked that start + size does not
361e0e8d0c8SDoug Moore * overlap ubound.
3623024e8afSRuslan Bukin *
363e0e8d0c8SDoug Moore * XXXKIB. It is possible that beg is exactly at the
364e0e8d0c8SDoug Moore * start of the next entry, then we do not have gap.
365e0e8d0c8SDoug Moore * Ignore for now.
3663024e8afSRuslan Bukin */
367e0e8d0c8SDoug Moore if ((a->gas_flags & IOMMU_MF_CANSPLIT) == 0)
368e0e8d0c8SDoug Moore return (false);
369e0e8d0c8SDoug Moore size = beg - first - offset;
370e0e8d0c8SDoug Moore start = first;
371e0e8d0c8SDoug Moore }
372e0e8d0c8SDoug Moore }
373e0e8d0c8SDoug Moore entry = a->entry;
374e0e8d0c8SDoug Moore entry->start = start;
375e0e8d0c8SDoug Moore entry->end = start + roundup2(size + offset, IOMMU_PAGE_SIZE);
376e0e8d0c8SDoug Moore entry->flags = IOMMU_MAP_ENTRY_MAP;
3773024e8afSRuslan Bukin return (true);
3783024e8afSRuslan Bukin }
3793024e8afSRuslan Bukin
380e0e8d0c8SDoug Moore /* Find the next entry that might abut a big-enough range. */
381e0e8d0c8SDoug Moore static struct iommu_map_entry *
iommu_gas_next(struct iommu_map_entry * curr,iommu_gaddr_t min_free)382e0e8d0c8SDoug Moore iommu_gas_next(struct iommu_map_entry *curr, iommu_gaddr_t min_free)
3833024e8afSRuslan Bukin {
384e0e8d0c8SDoug Moore struct iommu_map_entry *next;
3853024e8afSRuslan Bukin
386e0e8d0c8SDoug Moore if ((next = RB_RIGHT(curr, rb_entry)) != NULL &&
387e0e8d0c8SDoug Moore next->free_down >= min_free) {
388e0e8d0c8SDoug Moore /* Find next entry in right subtree. */
389e0e8d0c8SDoug Moore do
390e0e8d0c8SDoug Moore curr = next;
391e0e8d0c8SDoug Moore while ((next = RB_LEFT(curr, rb_entry)) != NULL &&
392e0e8d0c8SDoug Moore next->free_down >= min_free);
393e0e8d0c8SDoug Moore } else {
394e0e8d0c8SDoug Moore /* Find next entry in a left-parent ancestor. */
395e0e8d0c8SDoug Moore while ((next = RB_PARENT(curr, rb_entry)) != NULL &&
396e0e8d0c8SDoug Moore curr == RB_RIGHT(next, rb_entry))
397e0e8d0c8SDoug Moore curr = next;
398e0e8d0c8SDoug Moore curr = next;
399e0e8d0c8SDoug Moore }
400e0e8d0c8SDoug Moore return (curr);
4013024e8afSRuslan Bukin }
4023024e8afSRuslan Bukin
4038b221ca6SDoug Moore /*
4048b221ca6SDoug Moore * Address-ordered first-fit search of 'domain' for free space satisfying the
4058b221ca6SDoug Moore * conditions of 'a'. The space allocated is at least one page big, and is
406a2c57c60SDoug Moore * bounded by guard pages to the left and right. The allocated space for
407a2c57c60SDoug Moore * 'domain' is described by an rb-tree of map entries at domain->rb_root, and
408a2c57c60SDoug Moore * domain->start_gap points to a map entry less than or adjacent to the first
4098b221ca6SDoug Moore * free-space of size at least 3 pages.
4108b221ca6SDoug Moore */
4113024e8afSRuslan Bukin static int
iommu_gas_find_space(struct iommu_domain * domain,struct iommu_gas_match_args * a)4128b221ca6SDoug Moore iommu_gas_find_space(struct iommu_domain *domain,
4138b221ca6SDoug Moore struct iommu_gas_match_args *a)
4143024e8afSRuslan Bukin {
415e0e8d0c8SDoug Moore struct iommu_map_entry *curr, *first;
416e0e8d0c8SDoug Moore iommu_gaddr_t addr, min_free;
417e0e8d0c8SDoug Moore
4188b221ca6SDoug Moore IOMMU_DOMAIN_ASSERT_LOCKED(domain);
419e0e8d0c8SDoug Moore KASSERT(a->entry->flags == 0,
4208b221ca6SDoug Moore ("dirty entry %p %p", domain, a->entry));
4218b221ca6SDoug Moore
4228b221ca6SDoug Moore /*
4238b221ca6SDoug Moore * start_gap may point to an entry adjacent to gaps too small for any
4248b221ca6SDoug Moore * new allocation. In that case, advance start_gap to the first free
4258b221ca6SDoug Moore * space big enough for a minimum allocation plus two guard pages.
4268b221ca6SDoug Moore */
4278b221ca6SDoug Moore min_free = 3 * IOMMU_PAGE_SIZE;
4288b221ca6SDoug Moore first = domain->start_gap;
4298b221ca6SDoug Moore while (first != NULL && first->free_down < min_free)
4308b221ca6SDoug Moore first = RB_PARENT(first, rb_entry);
4318b221ca6SDoug Moore for (curr = first; curr != NULL;
4328b221ca6SDoug Moore curr = iommu_gas_next(curr, min_free)) {
4338b221ca6SDoug Moore if ((first = RB_LEFT(curr, rb_entry)) != NULL &&
4348b221ca6SDoug Moore first->last + min_free <= curr->start)
4358b221ca6SDoug Moore break;
4368b221ca6SDoug Moore if ((first = RB_RIGHT(curr, rb_entry)) != NULL &&
4378b221ca6SDoug Moore curr->end + min_free <= first->first)
4388b221ca6SDoug Moore break;
4398b221ca6SDoug Moore }
4408b221ca6SDoug Moore domain->start_gap = curr;
4413024e8afSRuslan Bukin
442b831865fSDoug Moore /*
443b831865fSDoug Moore * If the subtree doesn't have free space for the requested allocation
444f979ad00SDoug Moore * plus two guard pages, skip it.
445b831865fSDoug Moore */
446f979ad00SDoug Moore min_free = 2 * IOMMU_PAGE_SIZE +
447f979ad00SDoug Moore roundup2(a->size + a->offset, IOMMU_PAGE_SIZE);
448f979ad00SDoug Moore
4498b221ca6SDoug Moore /* Climb to find a node in the subtree of big-enough ranges. */
450e0e8d0c8SDoug Moore first = curr;
4518b221ca6SDoug Moore while (first != NULL && first->free_down < min_free)
4528b221ca6SDoug Moore first = RB_PARENT(first, rb_entry);
453f979ad00SDoug Moore
454f979ad00SDoug Moore /*
4558b221ca6SDoug Moore * Walk the big-enough ranges tree until one satisfies alignment
456f979ad00SDoug Moore * requirements, or violates lowaddr address requirement.
457f979ad00SDoug Moore */
4585b9b55fbSDoug Moore addr = a->common->lowaddr;
459e0e8d0c8SDoug Moore for (curr = first; curr != NULL;
460e0e8d0c8SDoug Moore curr = iommu_gas_next(curr, min_free)) {
461e0e8d0c8SDoug Moore if ((first = RB_LEFT(curr, rb_entry)) != NULL &&
462e0e8d0c8SDoug Moore iommu_gas_match_one(a, first->last, curr->start,
463368ee2f8SDoug Moore 0, addr)) {
464368ee2f8SDoug Moore RB_INSERT_PREV(iommu_gas_entries_tree,
465368ee2f8SDoug Moore &domain->rb_root, curr, a->entry);
46630031172SDoug Moore return (0);
467368ee2f8SDoug Moore }
468e0e8d0c8SDoug Moore if (curr->end >= addr) {
4695b9b55fbSDoug Moore /* All remaining ranges > addr */
470f979ad00SDoug Moore break;
471f979ad00SDoug Moore }
472e0e8d0c8SDoug Moore if ((first = RB_RIGHT(curr, rb_entry)) != NULL &&
473e0e8d0c8SDoug Moore iommu_gas_match_one(a, curr->end, first->first,
474368ee2f8SDoug Moore 0, addr)) {
475368ee2f8SDoug Moore RB_INSERT_NEXT(iommu_gas_entries_tree,
476368ee2f8SDoug Moore &domain->rb_root, curr, a->entry);
4773024e8afSRuslan Bukin return (0);
4783024e8afSRuslan Bukin }
479368ee2f8SDoug Moore }
4803024e8afSRuslan Bukin
481b831865fSDoug Moore /*
482e0e8d0c8SDoug Moore * To resume the search at the start of the upper region, first climb to
483e0e8d0c8SDoug Moore * the nearest ancestor that spans highaddr. Then find the last entry
484e0e8d0c8SDoug Moore * before highaddr that could abut a big-enough range.
485b831865fSDoug Moore */
486e0e8d0c8SDoug Moore addr = a->common->highaddr;
487e0e8d0c8SDoug Moore while (curr != NULL && curr->last < addr)
488e0e8d0c8SDoug Moore curr = RB_PARENT(curr, rb_entry);
489e0e8d0c8SDoug Moore first = NULL;
490e0e8d0c8SDoug Moore while (curr != NULL && curr->free_down >= min_free) {
491e0e8d0c8SDoug Moore if (addr < curr->end)
492e0e8d0c8SDoug Moore curr = RB_LEFT(curr, rb_entry);
493e0e8d0c8SDoug Moore else {
494e0e8d0c8SDoug Moore first = curr;
495e0e8d0c8SDoug Moore curr = RB_RIGHT(curr, rb_entry);
4963024e8afSRuslan Bukin }
4973024e8afSRuslan Bukin }
4983024e8afSRuslan Bukin
499e0e8d0c8SDoug Moore /*
500e0e8d0c8SDoug Moore * Walk the remaining big-enough ranges until one satisfies alignment
501e0e8d0c8SDoug Moore * requirements.
502e0e8d0c8SDoug Moore */
503e0e8d0c8SDoug Moore for (curr = first; curr != NULL;
504e0e8d0c8SDoug Moore curr = iommu_gas_next(curr, min_free)) {
505e0e8d0c8SDoug Moore if ((first = RB_LEFT(curr, rb_entry)) != NULL &&
506e0e8d0c8SDoug Moore iommu_gas_match_one(a, first->last, curr->start,
5075b9b55fbSDoug Moore addr + 1, domain->end - 1)) {
508368ee2f8SDoug Moore RB_INSERT_PREV(iommu_gas_entries_tree,
509368ee2f8SDoug Moore &domain->rb_root, curr, a->entry);
5103024e8afSRuslan Bukin return (0);
511368ee2f8SDoug Moore }
512e0e8d0c8SDoug Moore if ((first = RB_RIGHT(curr, rb_entry)) != NULL &&
513e0e8d0c8SDoug Moore iommu_gas_match_one(a, curr->end, first->first,
5145b9b55fbSDoug Moore addr + 1, domain->end - 1)) {
515368ee2f8SDoug Moore RB_INSERT_NEXT(iommu_gas_entries_tree,
516368ee2f8SDoug Moore &domain->rb_root, curr, a->entry);
517e0e8d0c8SDoug Moore return (0);
5183024e8afSRuslan Bukin }
519368ee2f8SDoug Moore }
520e0e8d0c8SDoug Moore
5213024e8afSRuslan Bukin return (ENOMEM);
5223024e8afSRuslan Bukin }
5233024e8afSRuslan Bukin
5243024e8afSRuslan Bukin static int
iommu_gas_alloc_region(struct iommu_domain * domain,struct iommu_map_entry * entry,u_int flags)5253024e8afSRuslan Bukin iommu_gas_alloc_region(struct iommu_domain *domain, struct iommu_map_entry *entry,
5263024e8afSRuslan Bukin u_int flags)
5273024e8afSRuslan Bukin {
5283024e8afSRuslan Bukin struct iommu_map_entry *next, *prev;
5293024e8afSRuslan Bukin
5303024e8afSRuslan Bukin IOMMU_DOMAIN_ASSERT_LOCKED(domain);
5313024e8afSRuslan Bukin
5323024e8afSRuslan Bukin if ((entry->start & IOMMU_PAGE_MASK) != 0 ||
5333024e8afSRuslan Bukin (entry->end & IOMMU_PAGE_MASK) != 0)
5343024e8afSRuslan Bukin return (EINVAL);
5353024e8afSRuslan Bukin if (entry->start >= entry->end)
5363024e8afSRuslan Bukin return (EINVAL);
5373024e8afSRuslan Bukin if (entry->end >= domain->end)
5383024e8afSRuslan Bukin return (EINVAL);
5393024e8afSRuslan Bukin
540a59c2529SKonstantin Belousov entry->flags |= IOMMU_MAP_ENTRY_FAKE;
5413024e8afSRuslan Bukin next = RB_NFIND(iommu_gas_entries_tree, &domain->rb_root, entry);
5423024e8afSRuslan Bukin KASSERT(next != NULL, ("next must be non-null %p %jx", domain,
5433024e8afSRuslan Bukin (uintmax_t)entry->start));
5443024e8afSRuslan Bukin prev = RB_PREV(iommu_gas_entries_tree, &domain->rb_root, next);
5453024e8afSRuslan Bukin /* prev could be NULL */
546a59c2529SKonstantin Belousov entry->flags &= ~IOMMU_MAP_ENTRY_FAKE;
5473024e8afSRuslan Bukin
5483024e8afSRuslan Bukin /*
5493024e8afSRuslan Bukin * Adapt to broken BIOSes which specify overlapping RMRR
5503024e8afSRuslan Bukin * entries.
5513024e8afSRuslan Bukin *
5523024e8afSRuslan Bukin * XXXKIB: this does not handle a case when prev or next
5533024e8afSRuslan Bukin * entries are completely covered by the current one, which
5543024e8afSRuslan Bukin * extends both ways.
5553024e8afSRuslan Bukin */
5563024e8afSRuslan Bukin if (prev != NULL && prev->end > entry->start &&
5573024e8afSRuslan Bukin (prev->flags & IOMMU_MAP_ENTRY_PLACE) == 0) {
5583024e8afSRuslan Bukin if ((flags & IOMMU_MF_RMRR) == 0 ||
5593024e8afSRuslan Bukin (prev->flags & IOMMU_MAP_ENTRY_RMRR) == 0)
5603024e8afSRuslan Bukin return (EBUSY);
5613024e8afSRuslan Bukin entry->start = prev->end;
5623024e8afSRuslan Bukin }
5633024e8afSRuslan Bukin if (next->start < entry->end &&
5643024e8afSRuslan Bukin (next->flags & IOMMU_MAP_ENTRY_PLACE) == 0) {
5653024e8afSRuslan Bukin if ((flags & IOMMU_MF_RMRR) == 0 ||
5663024e8afSRuslan Bukin (next->flags & IOMMU_MAP_ENTRY_RMRR) == 0)
5673024e8afSRuslan Bukin return (EBUSY);
5683024e8afSRuslan Bukin entry->end = next->start;
5693024e8afSRuslan Bukin }
5703024e8afSRuslan Bukin if (entry->end == entry->start)
5713024e8afSRuslan Bukin return (0);
5723024e8afSRuslan Bukin
5733024e8afSRuslan Bukin if (prev != NULL && prev->end > entry->start) {
5743024e8afSRuslan Bukin /* This assumes that prev is the placeholder entry. */
5753024e8afSRuslan Bukin iommu_gas_rb_remove(domain, prev);
5763024e8afSRuslan Bukin prev = NULL;
5773024e8afSRuslan Bukin }
578368ee2f8SDoug Moore RB_INSERT_PREV(iommu_gas_entries_tree,
579368ee2f8SDoug Moore &domain->rb_root, next, entry);
5803024e8afSRuslan Bukin if (next->start < entry->end) {
5813024e8afSRuslan Bukin iommu_gas_rb_remove(domain, next);
5823024e8afSRuslan Bukin next = NULL;
5833024e8afSRuslan Bukin }
5843024e8afSRuslan Bukin
5853024e8afSRuslan Bukin if ((flags & IOMMU_MF_RMRR) != 0)
5863024e8afSRuslan Bukin entry->flags = IOMMU_MAP_ENTRY_RMRR;
5873024e8afSRuslan Bukin
5883024e8afSRuslan Bukin #ifdef INVARIANTS
5893024e8afSRuslan Bukin struct iommu_map_entry *ip, *in;
5903024e8afSRuslan Bukin ip = RB_PREV(iommu_gas_entries_tree, &domain->rb_root, entry);
5913024e8afSRuslan Bukin in = RB_NEXT(iommu_gas_entries_tree, &domain->rb_root, entry);
5923024e8afSRuslan Bukin KASSERT(prev == NULL || ip == prev,
5933024e8afSRuslan Bukin ("RMRR %p (%jx %jx) prev %p (%jx %jx) ins prev %p (%jx %jx)",
5943024e8afSRuslan Bukin entry, entry->start, entry->end, prev,
5953024e8afSRuslan Bukin prev == NULL ? 0 : prev->start, prev == NULL ? 0 : prev->end,
5963024e8afSRuslan Bukin ip, ip == NULL ? 0 : ip->start, ip == NULL ? 0 : ip->end));
5973024e8afSRuslan Bukin KASSERT(next == NULL || in == next,
5983024e8afSRuslan Bukin ("RMRR %p (%jx %jx) next %p (%jx %jx) ins next %p (%jx %jx)",
5993024e8afSRuslan Bukin entry, entry->start, entry->end, next,
6003024e8afSRuslan Bukin next == NULL ? 0 : next->start, next == NULL ? 0 : next->end,
6013024e8afSRuslan Bukin in, in == NULL ? 0 : in->start, in == NULL ? 0 : in->end));
6023024e8afSRuslan Bukin #endif
6033024e8afSRuslan Bukin
6043024e8afSRuslan Bukin return (0);
6053024e8afSRuslan Bukin }
6063024e8afSRuslan Bukin
6073024e8afSRuslan Bukin void
iommu_gas_free_space(struct iommu_map_entry * entry)6084670f908SAlan Cox iommu_gas_free_space(struct iommu_map_entry *entry)
6093024e8afSRuslan Bukin {
6104670f908SAlan Cox struct iommu_domain *domain;
6113024e8afSRuslan Bukin
6124670f908SAlan Cox domain = entry->domain;
6133024e8afSRuslan Bukin KASSERT((entry->flags & (IOMMU_MAP_ENTRY_PLACE | IOMMU_MAP_ENTRY_RMRR |
6143024e8afSRuslan Bukin IOMMU_MAP_ENTRY_MAP)) == IOMMU_MAP_ENTRY_MAP,
6153024e8afSRuslan Bukin ("permanent entry %p %p", domain, entry));
6163024e8afSRuslan Bukin
6174670f908SAlan Cox IOMMU_DOMAIN_LOCK(domain);
6183024e8afSRuslan Bukin iommu_gas_rb_remove(domain, entry);
6193024e8afSRuslan Bukin entry->flags &= ~IOMMU_MAP_ENTRY_MAP;
6203024e8afSRuslan Bukin #ifdef INVARIANTS
6213024e8afSRuslan Bukin if (iommu_check_free)
6223024e8afSRuslan Bukin iommu_gas_check_free(domain);
6233024e8afSRuslan Bukin #endif
6244670f908SAlan Cox IOMMU_DOMAIN_UNLOCK(domain);
6253024e8afSRuslan Bukin }
6263024e8afSRuslan Bukin
6273024e8afSRuslan Bukin void
iommu_gas_free_region(struct iommu_map_entry * entry)6284670f908SAlan Cox iommu_gas_free_region(struct iommu_map_entry *entry)
6293024e8afSRuslan Bukin {
6304670f908SAlan Cox struct iommu_domain *domain;
6313024e8afSRuslan Bukin
6324670f908SAlan Cox domain = entry->domain;
6333024e8afSRuslan Bukin KASSERT((entry->flags & (IOMMU_MAP_ENTRY_PLACE | IOMMU_MAP_ENTRY_RMRR |
6343024e8afSRuslan Bukin IOMMU_MAP_ENTRY_MAP)) == IOMMU_MAP_ENTRY_RMRR,
6353024e8afSRuslan Bukin ("non-RMRR entry %p %p", domain, entry));
6363024e8afSRuslan Bukin
6374670f908SAlan Cox IOMMU_DOMAIN_LOCK(domain);
63887cd087aSDoug Moore if (entry != domain->first_place &&
63987cd087aSDoug Moore entry != domain->last_place)
6403024e8afSRuslan Bukin iommu_gas_rb_remove(domain, entry);
6413024e8afSRuslan Bukin entry->flags &= ~IOMMU_MAP_ENTRY_RMRR;
6424670f908SAlan Cox IOMMU_DOMAIN_UNLOCK(domain);
6433024e8afSRuslan Bukin }
6443024e8afSRuslan Bukin
645c9e4d250SKonstantin Belousov static struct iommu_map_entry *
iommu_gas_remove_clip_left(struct iommu_domain * domain,iommu_gaddr_t start,iommu_gaddr_t end,struct iommu_map_entry ** r)646c9e4d250SKonstantin Belousov iommu_gas_remove_clip_left(struct iommu_domain *domain, iommu_gaddr_t start,
647c9e4d250SKonstantin Belousov iommu_gaddr_t end, struct iommu_map_entry **r)
648c9e4d250SKonstantin Belousov {
649c9e4d250SKonstantin Belousov struct iommu_map_entry *entry, *res, fentry;
650c9e4d250SKonstantin Belousov
651c9e4d250SKonstantin Belousov IOMMU_DOMAIN_ASSERT_LOCKED(domain);
652c9e4d250SKonstantin Belousov MPASS(start <= end);
65387cd087aSDoug Moore MPASS(end <= domain->end);
654c9e4d250SKonstantin Belousov
655c9e4d250SKonstantin Belousov /*
656c9e4d250SKonstantin Belousov * Find an entry which contains the supplied guest's address
657c9e4d250SKonstantin Belousov * start, or the first entry after the start. Since we
658c9e4d250SKonstantin Belousov * asserted that start is below domain end, entry should
659c9e4d250SKonstantin Belousov * exist. Then clip it if needed.
660c9e4d250SKonstantin Belousov */
661cb1d664bSKonstantin Belousov bzero(&fentry, sizeof(fentry));
662c9e4d250SKonstantin Belousov fentry.start = start + 1;
663c9e4d250SKonstantin Belousov fentry.end = start + 1;
664a59c2529SKonstantin Belousov fentry.flags = IOMMU_MAP_ENTRY_FAKE;
665c9e4d250SKonstantin Belousov entry = RB_NFIND(iommu_gas_entries_tree, &domain->rb_root, &fentry);
666c9e4d250SKonstantin Belousov
667c9e4d250SKonstantin Belousov if (entry->start >= start ||
668c9e4d250SKonstantin Belousov (entry->flags & IOMMU_MAP_ENTRY_RMRR) != 0)
669c9e4d250SKonstantin Belousov return (entry);
670c9e4d250SKonstantin Belousov
671c9e4d250SKonstantin Belousov res = *r;
672c9e4d250SKonstantin Belousov *r = NULL;
673c9e4d250SKonstantin Belousov *res = *entry;
674c9e4d250SKonstantin Belousov res->start = entry->end = start;
675c9e4d250SKonstantin Belousov RB_UPDATE_AUGMENT(entry, rb_entry);
676368ee2f8SDoug Moore RB_INSERT_NEXT(iommu_gas_entries_tree,
677368ee2f8SDoug Moore &domain->rb_root, entry, res);
678c9e4d250SKonstantin Belousov return (res);
679c9e4d250SKonstantin Belousov }
680c9e4d250SKonstantin Belousov
681c9e4d250SKonstantin Belousov static bool
iommu_gas_remove_clip_right(struct iommu_domain * domain,iommu_gaddr_t end,struct iommu_map_entry * entry,struct iommu_map_entry * r)682c9e4d250SKonstantin Belousov iommu_gas_remove_clip_right(struct iommu_domain *domain,
683c9e4d250SKonstantin Belousov iommu_gaddr_t end, struct iommu_map_entry *entry,
684c9e4d250SKonstantin Belousov struct iommu_map_entry *r)
685c9e4d250SKonstantin Belousov {
686c9e4d250SKonstantin Belousov if (entry->start >= end || (entry->flags & IOMMU_MAP_ENTRY_RMRR) != 0)
687c9e4d250SKonstantin Belousov return (false);
688c9e4d250SKonstantin Belousov
689c9e4d250SKonstantin Belousov *r = *entry;
690c9e4d250SKonstantin Belousov r->end = entry->start = end;
691c9e4d250SKonstantin Belousov RB_UPDATE_AUGMENT(entry, rb_entry);
692368ee2f8SDoug Moore RB_INSERT_PREV(iommu_gas_entries_tree,
693368ee2f8SDoug Moore &domain->rb_root, entry, r);
694c9e4d250SKonstantin Belousov return (true);
695c9e4d250SKonstantin Belousov }
696c9e4d250SKonstantin Belousov
697c9e4d250SKonstantin Belousov static void
iommu_gas_remove_unmap(struct iommu_domain * domain,struct iommu_map_entry * entry,struct iommu_map_entries_tailq * gcp)698c9e4d250SKonstantin Belousov iommu_gas_remove_unmap(struct iommu_domain *domain,
699c9e4d250SKonstantin Belousov struct iommu_map_entry *entry, struct iommu_map_entries_tailq *gcp)
700c9e4d250SKonstantin Belousov {
701c9e4d250SKonstantin Belousov IOMMU_DOMAIN_ASSERT_LOCKED(domain);
702c9e4d250SKonstantin Belousov
703c9e4d250SKonstantin Belousov if ((entry->flags & (IOMMU_MAP_ENTRY_UNMAPPED |
704c0047e7cSKonstantin Belousov IOMMU_MAP_ENTRY_RMRR |
705c9e4d250SKonstantin Belousov IOMMU_MAP_ENTRY_REMOVING)) != 0)
706c9e4d250SKonstantin Belousov return;
707c9e4d250SKonstantin Belousov MPASS((entry->flags & IOMMU_MAP_ENTRY_PLACE) == 0);
708c9e4d250SKonstantin Belousov entry->flags |= IOMMU_MAP_ENTRY_REMOVING;
709c9e4d250SKonstantin Belousov TAILQ_INSERT_TAIL(gcp, entry, dmamap_link);
710c9e4d250SKonstantin Belousov }
711c9e4d250SKonstantin Belousov
712273b4de3SKonstantin Belousov static void
iommu_gas_remove_locked(struct iommu_domain * domain,iommu_gaddr_t start,iommu_gaddr_t size,struct iommu_map_entries_tailq * gc,struct iommu_map_entry ** r1,struct iommu_map_entry ** r2)713273b4de3SKonstantin Belousov iommu_gas_remove_locked(struct iommu_domain *domain,
714273b4de3SKonstantin Belousov iommu_gaddr_t start, iommu_gaddr_t size,
715273b4de3SKonstantin Belousov struct iommu_map_entries_tailq *gc,
716273b4de3SKonstantin Belousov struct iommu_map_entry **r1, struct iommu_map_entry **r2)
717c9e4d250SKonstantin Belousov {
718273b4de3SKonstantin Belousov struct iommu_map_entry *entry, *nentry;
719c9e4d250SKonstantin Belousov iommu_gaddr_t end;
720c9e4d250SKonstantin Belousov
721273b4de3SKonstantin Belousov IOMMU_DOMAIN_ASSERT_LOCKED(domain);
722273b4de3SKonstantin Belousov
723c9e4d250SKonstantin Belousov end = start + size;
724c9e4d250SKonstantin Belousov
725273b4de3SKonstantin Belousov nentry = iommu_gas_remove_clip_left(domain, start, end, r1);
726c9e4d250SKonstantin Belousov RB_FOREACH_FROM(entry, iommu_gas_entries_tree, nentry) {
727c9e4d250SKonstantin Belousov if (entry->start >= end)
728c9e4d250SKonstantin Belousov break;
729c9e4d250SKonstantin Belousov KASSERT(start <= entry->start,
730c9e4d250SKonstantin Belousov ("iommu_gas_remove entry (%#jx, %#jx) start %#jx",
731c9e4d250SKonstantin Belousov entry->start, entry->end, start));
732273b4de3SKonstantin Belousov iommu_gas_remove_unmap(domain, entry, gc);
733c9e4d250SKonstantin Belousov }
734273b4de3SKonstantin Belousov if (iommu_gas_remove_clip_right(domain, end, entry, *r2)) {
735273b4de3SKonstantin Belousov iommu_gas_remove_unmap(domain, *r2, gc);
736273b4de3SKonstantin Belousov *r2 = NULL;
737c9e4d250SKonstantin Belousov }
738c9e4d250SKonstantin Belousov
739c9e4d250SKonstantin Belousov #ifdef INVARIANTS
740c9e4d250SKonstantin Belousov RB_FOREACH(entry, iommu_gas_entries_tree, &domain->rb_root) {
741f5912877SKonstantin Belousov if ((entry->flags & (IOMMU_MAP_ENTRY_RMRR |
742f5912877SKonstantin Belousov IOMMU_MAP_ENTRY_PLACE)) != 0)
743c9e4d250SKonstantin Belousov continue;
744c9e4d250SKonstantin Belousov KASSERT(entry->end <= start || entry->start >= end,
745c9e4d250SKonstantin Belousov ("iommu_gas_remove leftover entry (%#jx, %#jx) range "
746c9e4d250SKonstantin Belousov "(%#jx, %#jx)",
747c9e4d250SKonstantin Belousov entry->start, entry->end, start, end));
748c9e4d250SKonstantin Belousov }
749c9e4d250SKonstantin Belousov #endif
750273b4de3SKonstantin Belousov }
751c9e4d250SKonstantin Belousov
752273b4de3SKonstantin Belousov static void
iommu_gas_remove_init(struct iommu_domain * domain,struct iommu_map_entries_tailq * gc,struct iommu_map_entry ** r1,struct iommu_map_entry ** r2)753273b4de3SKonstantin Belousov iommu_gas_remove_init(struct iommu_domain *domain,
754273b4de3SKonstantin Belousov struct iommu_map_entries_tailq *gc, struct iommu_map_entry **r1,
755273b4de3SKonstantin Belousov struct iommu_map_entry **r2)
756273b4de3SKonstantin Belousov {
757273b4de3SKonstantin Belousov TAILQ_INIT(gc);
758273b4de3SKonstantin Belousov *r1 = iommu_gas_alloc_entry(domain, IOMMU_PGF_WAITOK);
759273b4de3SKonstantin Belousov *r2 = iommu_gas_alloc_entry(domain, IOMMU_PGF_WAITOK);
760273b4de3SKonstantin Belousov }
761273b4de3SKonstantin Belousov
762273b4de3SKonstantin Belousov static void
iommu_gas_remove_cleanup(struct iommu_domain * domain,struct iommu_map_entries_tailq * gc,struct iommu_map_entry ** r1,struct iommu_map_entry ** r2)763273b4de3SKonstantin Belousov iommu_gas_remove_cleanup(struct iommu_domain *domain,
764273b4de3SKonstantin Belousov struct iommu_map_entries_tailq *gc, struct iommu_map_entry **r1,
765273b4de3SKonstantin Belousov struct iommu_map_entry **r2)
766273b4de3SKonstantin Belousov {
767273b4de3SKonstantin Belousov if (*r1 != NULL) {
768273b4de3SKonstantin Belousov iommu_gas_free_entry(*r1);
769273b4de3SKonstantin Belousov *r1 = NULL;
770273b4de3SKonstantin Belousov }
771273b4de3SKonstantin Belousov if (*r2 != NULL) {
772273b4de3SKonstantin Belousov iommu_gas_free_entry(*r2);
773273b4de3SKonstantin Belousov *r2 = NULL;
774273b4de3SKonstantin Belousov }
775273b4de3SKonstantin Belousov iommu_domain_unload(domain, gc, true);
776273b4de3SKonstantin Belousov }
777273b4de3SKonstantin Belousov
778273b4de3SKonstantin Belousov /*
779273b4de3SKonstantin Belousov * Remove specified range from the GAS of the domain. Note that the
780273b4de3SKonstantin Belousov * removal is not guaranteed to occur upon the function return, it
781273b4de3SKonstantin Belousov * might be finalized some time after, when hardware reports that
782273b4de3SKonstantin Belousov * (queued) IOTLB invalidation was performed.
783273b4de3SKonstantin Belousov */
784273b4de3SKonstantin Belousov void
iommu_gas_remove(struct iommu_domain * domain,iommu_gaddr_t start,iommu_gaddr_t size)785273b4de3SKonstantin Belousov iommu_gas_remove(struct iommu_domain *domain, iommu_gaddr_t start,
786273b4de3SKonstantin Belousov iommu_gaddr_t size)
787273b4de3SKonstantin Belousov {
788273b4de3SKonstantin Belousov struct iommu_map_entry *r1, *r2;
789273b4de3SKonstantin Belousov struct iommu_map_entries_tailq gc;
790273b4de3SKonstantin Belousov
791273b4de3SKonstantin Belousov iommu_gas_remove_init(domain, &gc, &r1, &r2);
792273b4de3SKonstantin Belousov IOMMU_DOMAIN_LOCK(domain);
793273b4de3SKonstantin Belousov iommu_gas_remove_locked(domain, start, size, &gc, &r1, &r2);
794c9e4d250SKonstantin Belousov IOMMU_DOMAIN_UNLOCK(domain);
795273b4de3SKonstantin Belousov iommu_gas_remove_cleanup(domain, &gc, &r1, &r2);
796c9e4d250SKonstantin Belousov }
797c9e4d250SKonstantin Belousov
7983024e8afSRuslan Bukin int
iommu_gas_map(struct iommu_domain * domain,const struct bus_dma_tag_common * common,iommu_gaddr_t size,int offset,u_int eflags,u_int flags,vm_page_t * ma,struct iommu_map_entry ** res)7993024e8afSRuslan Bukin iommu_gas_map(struct iommu_domain *domain,
8003024e8afSRuslan Bukin const struct bus_dma_tag_common *common, iommu_gaddr_t size, int offset,
8013024e8afSRuslan Bukin u_int eflags, u_int flags, vm_page_t *ma, struct iommu_map_entry **res)
8023024e8afSRuslan Bukin {
803e0e8d0c8SDoug Moore struct iommu_gas_match_args a;
8043024e8afSRuslan Bukin struct iommu_map_entry *entry;
8053024e8afSRuslan Bukin int error;
8063024e8afSRuslan Bukin
8073024e8afSRuslan Bukin KASSERT((flags & ~(IOMMU_MF_CANWAIT | IOMMU_MF_CANSPLIT)) == 0,
8083024e8afSRuslan Bukin ("invalid flags 0x%x", flags));
8093024e8afSRuslan Bukin
810e0e8d0c8SDoug Moore a.size = size;
811e0e8d0c8SDoug Moore a.offset = offset;
812e0e8d0c8SDoug Moore a.common = common;
813e0e8d0c8SDoug Moore a.gas_flags = flags;
8143024e8afSRuslan Bukin entry = iommu_gas_alloc_entry(domain,
81515f6baf4SRuslan Bukin (flags & IOMMU_MF_CANWAIT) != 0 ? IOMMU_PGF_WAITOK : 0);
8163024e8afSRuslan Bukin if (entry == NULL)
8173024e8afSRuslan Bukin return (ENOMEM);
818e0e8d0c8SDoug Moore a.entry = entry;
8193024e8afSRuslan Bukin IOMMU_DOMAIN_LOCK(domain);
8208b221ca6SDoug Moore error = iommu_gas_find_space(domain, &a);
8213024e8afSRuslan Bukin if (error == ENOMEM) {
8223024e8afSRuslan Bukin IOMMU_DOMAIN_UNLOCK(domain);
8234670f908SAlan Cox iommu_gas_free_entry(entry);
8243024e8afSRuslan Bukin return (error);
8253024e8afSRuslan Bukin }
8263024e8afSRuslan Bukin #ifdef INVARIANTS
8273024e8afSRuslan Bukin if (iommu_check_free)
8283024e8afSRuslan Bukin iommu_gas_check_free(domain);
8293024e8afSRuslan Bukin #endif
8303024e8afSRuslan Bukin KASSERT(error == 0,
8313024e8afSRuslan Bukin ("unexpected error %d from iommu_gas_find_entry", error));
8323024e8afSRuslan Bukin KASSERT(entry->end < domain->end, ("allocated GPA %jx, max GPA %jx",
8333024e8afSRuslan Bukin (uintmax_t)entry->end, (uintmax_t)domain->end));
8343024e8afSRuslan Bukin entry->flags |= eflags;
8353024e8afSRuslan Bukin IOMMU_DOMAIN_UNLOCK(domain);
8363024e8afSRuslan Bukin
837bdd5eb33SKonstantin Belousov error = domain->ops->map(domain, entry, ma, eflags,
83815f6baf4SRuslan Bukin ((flags & IOMMU_MF_CANWAIT) != 0 ? IOMMU_PGF_WAITOK : 0));
8393024e8afSRuslan Bukin if (error == ENOMEM) {
8408bc36738SAlan Cox iommu_domain_unload_entry(entry, true,
8418bc36738SAlan Cox (flags & IOMMU_MF_CANWAIT) != 0);
8423024e8afSRuslan Bukin return (error);
8433024e8afSRuslan Bukin }
8443024e8afSRuslan Bukin KASSERT(error == 0,
8453024e8afSRuslan Bukin ("unexpected error %d from domain_map_buf", error));
8463024e8afSRuslan Bukin
8473024e8afSRuslan Bukin *res = entry;
8483024e8afSRuslan Bukin return (0);
8493024e8afSRuslan Bukin }
8503024e8afSRuslan Bukin
8513024e8afSRuslan Bukin int
iommu_gas_map_region(struct iommu_domain * domain,struct iommu_map_entry * entry,u_int eflags,u_int flags,vm_page_t * ma)8523024e8afSRuslan Bukin iommu_gas_map_region(struct iommu_domain *domain, struct iommu_map_entry *entry,
8533024e8afSRuslan Bukin u_int eflags, u_int flags, vm_page_t *ma)
8543024e8afSRuslan Bukin {
8553024e8afSRuslan Bukin iommu_gaddr_t start;
8563024e8afSRuslan Bukin int error;
8573024e8afSRuslan Bukin
8584670f908SAlan Cox KASSERT(entry->domain == domain,
8594670f908SAlan Cox ("mismatched domain %p entry %p entry->domain %p", domain,
8604670f908SAlan Cox entry, entry->domain));
8613024e8afSRuslan Bukin KASSERT(entry->flags == 0, ("used RMRR entry %p %p %x", domain,
8623024e8afSRuslan Bukin entry, entry->flags));
8633024e8afSRuslan Bukin KASSERT((flags & ~(IOMMU_MF_CANWAIT | IOMMU_MF_RMRR)) == 0,
8643024e8afSRuslan Bukin ("invalid flags 0x%x", flags));
8653024e8afSRuslan Bukin
8663024e8afSRuslan Bukin start = entry->start;
8673024e8afSRuslan Bukin IOMMU_DOMAIN_LOCK(domain);
8683024e8afSRuslan Bukin error = iommu_gas_alloc_region(domain, entry, flags);
8693024e8afSRuslan Bukin if (error != 0) {
8703024e8afSRuslan Bukin IOMMU_DOMAIN_UNLOCK(domain);
8713024e8afSRuslan Bukin return (error);
8723024e8afSRuslan Bukin }
8733024e8afSRuslan Bukin entry->flags |= eflags;
8743024e8afSRuslan Bukin IOMMU_DOMAIN_UNLOCK(domain);
8753024e8afSRuslan Bukin if (entry->end == entry->start)
8763024e8afSRuslan Bukin return (0);
8773024e8afSRuslan Bukin
878*45f70f98SKonstantin Belousov /*
879*45f70f98SKonstantin Belousov * iommu_gas_alloc_region() might clipped the entry start and
880*45f70f98SKonstantin Belousov * end positions. Adjust the beginning of the ma array to map
881*45f70f98SKonstantin Belousov * the pages at the requested relative positions.
882*45f70f98SKonstantin Belousov */
883bdd5eb33SKonstantin Belousov error = domain->ops->map(domain, entry,
884bdd5eb33SKonstantin Belousov ma + OFF_TO_IDX(start - entry->start), eflags,
885bdd5eb33SKonstantin Belousov ((flags & IOMMU_MF_CANWAIT) != 0 ? IOMMU_PGF_WAITOK : 0));
8863024e8afSRuslan Bukin if (error == ENOMEM) {
8878bc36738SAlan Cox iommu_domain_unload_entry(entry, false,
8888bc36738SAlan Cox (flags & IOMMU_MF_CANWAIT) != 0);
8893024e8afSRuslan Bukin return (error);
8903024e8afSRuslan Bukin }
8913024e8afSRuslan Bukin KASSERT(error == 0,
8923024e8afSRuslan Bukin ("unexpected error %d from domain_map_buf", error));
8933024e8afSRuslan Bukin
8943024e8afSRuslan Bukin return (0);
8953024e8afSRuslan Bukin }
8963024e8afSRuslan Bukin
897ee47a12aSRyan Libby static int
iommu_gas_reserve_region_locked(struct iommu_domain * domain,iommu_gaddr_t start,iommu_gaddr_t end,struct iommu_map_entry * entry)898ee47a12aSRyan Libby iommu_gas_reserve_region_locked(struct iommu_domain *domain,
899ee47a12aSRyan Libby iommu_gaddr_t start, iommu_gaddr_t end, struct iommu_map_entry *entry)
900ee47a12aSRyan Libby {
901ee47a12aSRyan Libby int error;
902ee47a12aSRyan Libby
903ee47a12aSRyan Libby IOMMU_DOMAIN_ASSERT_LOCKED(domain);
904ee47a12aSRyan Libby
905ee47a12aSRyan Libby entry->start = start;
906ee47a12aSRyan Libby entry->end = end;
907ee47a12aSRyan Libby error = iommu_gas_alloc_region(domain, entry, IOMMU_MF_CANWAIT);
908ee47a12aSRyan Libby if (error == 0)
909ee47a12aSRyan Libby entry->flags |= IOMMU_MAP_ENTRY_UNMAPPED;
910ee47a12aSRyan Libby return (error);
911ee47a12aSRyan Libby }
912ee47a12aSRyan Libby
9133024e8afSRuslan Bukin int
iommu_gas_reserve_region(struct iommu_domain * domain,iommu_gaddr_t start,iommu_gaddr_t end,struct iommu_map_entry ** entry0)9143024e8afSRuslan Bukin iommu_gas_reserve_region(struct iommu_domain *domain, iommu_gaddr_t start,
91594dfb28eSRuslan Bukin iommu_gaddr_t end, struct iommu_map_entry **entry0)
9163024e8afSRuslan Bukin {
9173024e8afSRuslan Bukin struct iommu_map_entry *entry;
9183024e8afSRuslan Bukin int error;
9193024e8afSRuslan Bukin
92015f6baf4SRuslan Bukin entry = iommu_gas_alloc_entry(domain, IOMMU_PGF_WAITOK);
9213024e8afSRuslan Bukin IOMMU_DOMAIN_LOCK(domain);
922ee47a12aSRyan Libby error = iommu_gas_reserve_region_locked(domain, start, end, entry);
9233024e8afSRuslan Bukin IOMMU_DOMAIN_UNLOCK(domain);
9243024e8afSRuslan Bukin if (error != 0)
9254670f908SAlan Cox iommu_gas_free_entry(entry);
92694dfb28eSRuslan Bukin else if (entry0 != NULL)
92794dfb28eSRuslan Bukin *entry0 = entry;
9283024e8afSRuslan Bukin return (error);
9293024e8afSRuslan Bukin }
9303024e8afSRuslan Bukin
931ee47a12aSRyan Libby /*
932ee47a12aSRyan Libby * As in iommu_gas_reserve_region, reserve [start, end), but allow for existing
933ee47a12aSRyan Libby * entries.
934ee47a12aSRyan Libby */
935ee47a12aSRyan Libby int
iommu_gas_reserve_region_extend(struct iommu_domain * domain,iommu_gaddr_t start,iommu_gaddr_t end)936ee47a12aSRyan Libby iommu_gas_reserve_region_extend(struct iommu_domain *domain,
937ee47a12aSRyan Libby iommu_gaddr_t start, iommu_gaddr_t end)
938ee47a12aSRyan Libby {
939ee47a12aSRyan Libby struct iommu_map_entry *entry, *next, *prev, key = {};
940ee47a12aSRyan Libby iommu_gaddr_t entry_start, entry_end;
941ee47a12aSRyan Libby int error;
942ee47a12aSRyan Libby
943ee47a12aSRyan Libby error = 0;
944ee47a12aSRyan Libby entry = NULL;
945ee47a12aSRyan Libby end = ummin(end, domain->end);
946ee47a12aSRyan Libby while (start < end) {
947ee47a12aSRyan Libby /* Preallocate an entry. */
948ee47a12aSRyan Libby if (entry == NULL)
949ee47a12aSRyan Libby entry = iommu_gas_alloc_entry(domain,
950ee47a12aSRyan Libby IOMMU_PGF_WAITOK);
951ee47a12aSRyan Libby /* Calculate the free region from here to the next entry. */
952ee47a12aSRyan Libby key.start = key.end = start;
953ee47a12aSRyan Libby IOMMU_DOMAIN_LOCK(domain);
954ee47a12aSRyan Libby next = RB_NFIND(iommu_gas_entries_tree, &domain->rb_root, &key);
955ee47a12aSRyan Libby KASSERT(next != NULL, ("domain %p with end %#jx has no entry "
956ee47a12aSRyan Libby "after %#jx", domain, (uintmax_t)domain->end,
957ee47a12aSRyan Libby (uintmax_t)start));
958ee47a12aSRyan Libby entry_end = ummin(end, next->start);
959ee47a12aSRyan Libby prev = RB_PREV(iommu_gas_entries_tree, &domain->rb_root, next);
960ee47a12aSRyan Libby if (prev != NULL)
961ee47a12aSRyan Libby entry_start = ummax(start, prev->end);
962ee47a12aSRyan Libby else
963ee47a12aSRyan Libby entry_start = start;
964ee47a12aSRyan Libby start = next->end;
965ee47a12aSRyan Libby /* Reserve the region if non-empty. */
966ee47a12aSRyan Libby if (entry_start != entry_end) {
967ee47a12aSRyan Libby error = iommu_gas_reserve_region_locked(domain,
968ee47a12aSRyan Libby entry_start, entry_end, entry);
9690ba1d860SAlan Cox if (error != 0) {
9700ba1d860SAlan Cox IOMMU_DOMAIN_UNLOCK(domain);
971ee47a12aSRyan Libby break;
9720ba1d860SAlan Cox }
973ee47a12aSRyan Libby entry = NULL;
974ee47a12aSRyan Libby }
975ee47a12aSRyan Libby IOMMU_DOMAIN_UNLOCK(domain);
976ee47a12aSRyan Libby }
977ee47a12aSRyan Libby /* Release a preallocated entry if it was not used. */
978ee47a12aSRyan Libby if (entry != NULL)
9794670f908SAlan Cox iommu_gas_free_entry(entry);
980ee47a12aSRyan Libby return (error);
981ee47a12aSRyan Libby }
982ee47a12aSRyan Libby
983f32f0095SRuslan Bukin void
iommu_unmap_msi(struct iommu_ctx * ctx)984f32f0095SRuslan Bukin iommu_unmap_msi(struct iommu_ctx *ctx)
985f32f0095SRuslan Bukin {
986f32f0095SRuslan Bukin struct iommu_map_entry *entry;
987f32f0095SRuslan Bukin struct iommu_domain *domain;
988f32f0095SRuslan Bukin
989f32f0095SRuslan Bukin domain = ctx->domain;
990f32f0095SRuslan Bukin entry = domain->msi_entry;
991f32f0095SRuslan Bukin if (entry == NULL)
992f32f0095SRuslan Bukin return;
993f32f0095SRuslan Bukin
994bdd5eb33SKonstantin Belousov domain->ops->unmap(domain, entry, IOMMU_PGF_WAITOK);
995f32f0095SRuslan Bukin
9964670f908SAlan Cox iommu_gas_free_space(entry);
997f32f0095SRuslan Bukin
9984670f908SAlan Cox iommu_gas_free_entry(entry);
999f32f0095SRuslan Bukin
1000f32f0095SRuslan Bukin domain->msi_entry = NULL;
1001f32f0095SRuslan Bukin domain->msi_base = 0;
1002f32f0095SRuslan Bukin domain->msi_phys = 0;
1003f32f0095SRuslan Bukin }
1004f32f0095SRuslan Bukin
10053024e8afSRuslan Bukin int
iommu_map_msi(struct iommu_ctx * ctx,iommu_gaddr_t size,int offset,u_int eflags,u_int flags,vm_page_t * ma)1006e707c8beSRuslan Bukin iommu_map_msi(struct iommu_ctx *ctx, iommu_gaddr_t size, int offset,
1007e707c8beSRuslan Bukin u_int eflags, u_int flags, vm_page_t *ma)
1008e707c8beSRuslan Bukin {
1009e707c8beSRuslan Bukin struct iommu_domain *domain;
1010e707c8beSRuslan Bukin struct iommu_map_entry *entry;
1011e707c8beSRuslan Bukin int error;
1012e707c8beSRuslan Bukin
1013e707c8beSRuslan Bukin error = 0;
1014e707c8beSRuslan Bukin domain = ctx->domain;
1015e707c8beSRuslan Bukin
1016e707c8beSRuslan Bukin /* Check if there is already an MSI page allocated */
1017e707c8beSRuslan Bukin IOMMU_DOMAIN_LOCK(domain);
1018e707c8beSRuslan Bukin entry = domain->msi_entry;
1019e707c8beSRuslan Bukin IOMMU_DOMAIN_UNLOCK(domain);
1020e707c8beSRuslan Bukin
1021e707c8beSRuslan Bukin if (entry == NULL) {
1022e707c8beSRuslan Bukin error = iommu_gas_map(domain, &ctx->tag->common, size, offset,
1023e707c8beSRuslan Bukin eflags, flags, ma, &entry);
1024e707c8beSRuslan Bukin IOMMU_DOMAIN_LOCK(domain);
1025e707c8beSRuslan Bukin if (error == 0) {
1026e707c8beSRuslan Bukin if (domain->msi_entry == NULL) {
1027e707c8beSRuslan Bukin MPASS(domain->msi_base == 0);
1028e707c8beSRuslan Bukin MPASS(domain->msi_phys == 0);
1029e707c8beSRuslan Bukin
1030e707c8beSRuslan Bukin domain->msi_entry = entry;
1031e707c8beSRuslan Bukin domain->msi_base = entry->start;
1032e707c8beSRuslan Bukin domain->msi_phys = VM_PAGE_TO_PHYS(ma[0]);
1033e707c8beSRuslan Bukin } else {
1034e707c8beSRuslan Bukin /*
1035e707c8beSRuslan Bukin * We lost the race and already have an
1036e707c8beSRuslan Bukin * MSI page allocated. Free the unneeded entry.
1037e707c8beSRuslan Bukin */
10384670f908SAlan Cox iommu_gas_free_entry(entry);
1039e707c8beSRuslan Bukin }
1040e707c8beSRuslan Bukin } else if (domain->msi_entry != NULL) {
1041e707c8beSRuslan Bukin /*
1042e707c8beSRuslan Bukin * The allocation failed, but another succeeded.
1043e707c8beSRuslan Bukin * Return success as there is a valid MSI page.
1044e707c8beSRuslan Bukin */
1045e707c8beSRuslan Bukin error = 0;
1046e707c8beSRuslan Bukin }
1047e707c8beSRuslan Bukin IOMMU_DOMAIN_UNLOCK(domain);
1048e707c8beSRuslan Bukin }
1049e707c8beSRuslan Bukin
1050e707c8beSRuslan Bukin return (error);
1051e707c8beSRuslan Bukin }
1052e707c8beSRuslan Bukin
1053e707c8beSRuslan Bukin void
iommu_translate_msi(struct iommu_domain * domain,uint64_t * addr)1054e707c8beSRuslan Bukin iommu_translate_msi(struct iommu_domain *domain, uint64_t *addr)
1055e707c8beSRuslan Bukin {
1056e707c8beSRuslan Bukin
1057e707c8beSRuslan Bukin *addr = (*addr - domain->msi_phys) + domain->msi_base;
1058e707c8beSRuslan Bukin
1059e707c8beSRuslan Bukin KASSERT(*addr >= domain->msi_entry->start,
1060e707c8beSRuslan Bukin ("%s: Address is below the MSI entry start address (%jx < %jx)",
1061e707c8beSRuslan Bukin __func__, (uintmax_t)*addr, (uintmax_t)domain->msi_entry->start));
1062e707c8beSRuslan Bukin
1063e707c8beSRuslan Bukin KASSERT(*addr + sizeof(*addr) <= domain->msi_entry->end,
1064e707c8beSRuslan Bukin ("%s: Address is above the MSI entry end address (%jx < %jx)",
1065e707c8beSRuslan Bukin __func__, (uintmax_t)*addr, (uintmax_t)domain->msi_entry->end));
1066e707c8beSRuslan Bukin }
1067e707c8beSRuslan Bukin
1068357149f0SRuslan Bukin SYSCTL_NODE(_hw, OID_AUTO, iommu, CTLFLAG_RW | CTLFLAG_MPSAFE, NULL, "");
1069357149f0SRuslan Bukin
10709c843a40SRuslan Bukin #ifdef INVARIANTS
10719c843a40SRuslan Bukin SYSCTL_INT(_hw_iommu, OID_AUTO, check_free, CTLFLAG_RWTUN,
10729c843a40SRuslan Bukin &iommu_check_free, 0,
10739c843a40SRuslan Bukin "Check the GPA RBtree for free_down and free_after validity");
10749c843a40SRuslan Bukin #endif
107530ce85caSKonstantin Belousov
107630ce85caSKonstantin Belousov #include "opt_ddb.h"
107730ce85caSKonstantin Belousov #ifdef DDB
107830ce85caSKonstantin Belousov
107930ce85caSKonstantin Belousov #include <ddb/ddb.h>
108030ce85caSKonstantin Belousov
108130ce85caSKonstantin Belousov static void
iommu_debug_dump_gas(struct iommu_domain * domain)108230ce85caSKonstantin Belousov iommu_debug_dump_gas(struct iommu_domain *domain)
108330ce85caSKonstantin Belousov {
108430ce85caSKonstantin Belousov struct iommu_map_entry *entry;
108530ce85caSKonstantin Belousov
108630ce85caSKonstantin Belousov db_printf("iommu_domain %p tree %p iommu %p fl %#x\n", domain,
108730ce85caSKonstantin Belousov &domain->rb_root, domain->iommu, domain->flags);
108830ce85caSKonstantin Belousov db_printf("iommu_domain %p tree %p\n", domain, &domain->rb_root);
108930ce85caSKonstantin Belousov RB_FOREACH(entry, iommu_gas_entries_tree, &domain->rb_root) {
109030ce85caSKonstantin Belousov db_printf(
109130ce85caSKonstantin Belousov " e %p [%#jx %#jx] fl %#x first %#jx last %#jx free_down %#jx",
109230ce85caSKonstantin Belousov entry, (uintmax_t)entry->start, (uintmax_t)entry->end,
109330ce85caSKonstantin Belousov entry->flags,
109430ce85caSKonstantin Belousov (uintmax_t)entry->first, (uintmax_t)entry->last,
109530ce85caSKonstantin Belousov (uintmax_t)entry->free_down);
109630ce85caSKonstantin Belousov if (entry == domain->start_gap)
109730ce85caSKonstantin Belousov db_printf(" start_gap");
109830ce85caSKonstantin Belousov if (entry == domain->first_place)
109930ce85caSKonstantin Belousov db_printf(" first_place");
110030ce85caSKonstantin Belousov if (entry == domain->last_place)
110130ce85caSKonstantin Belousov db_printf(" last_place");
110230ce85caSKonstantin Belousov db_printf("\n");
110330ce85caSKonstantin Belousov }
110430ce85caSKonstantin Belousov }
110530ce85caSKonstantin Belousov
DB_SHOW_COMMAND(iommu_domain,iommu_domain_show)110630ce85caSKonstantin Belousov DB_SHOW_COMMAND(iommu_domain, iommu_domain_show)
110730ce85caSKonstantin Belousov {
110830ce85caSKonstantin Belousov struct iommu_domain *domain;
110930ce85caSKonstantin Belousov
111030ce85caSKonstantin Belousov if (!have_addr) {
111130ce85caSKonstantin Belousov db_printf("show iommu_domain addr\n");
111230ce85caSKonstantin Belousov return;
111330ce85caSKonstantin Belousov }
111430ce85caSKonstantin Belousov
111530ce85caSKonstantin Belousov domain = (void *)addr;
111630ce85caSKonstantin Belousov iommu_debug_dump_gas(domain);
111730ce85caSKonstantin Belousov }
111830ce85caSKonstantin Belousov
111930ce85caSKonstantin Belousov #endif
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