xref: /openbmc/qemu/hw/i386/intel_iommu.c (revision bf33cc75ad5bf117cb080572a04a79182520c434)
11da12ec4SLe Tan /*
21da12ec4SLe Tan  * QEMU emulation of an Intel IOMMU (VT-d)
31da12ec4SLe Tan  *   (DMA Remapping device)
41da12ec4SLe Tan  *
51da12ec4SLe Tan  * Copyright (C) 2013 Knut Omang, Oracle <knut.omang@oracle.com>
61da12ec4SLe Tan  * Copyright (C) 2014 Le Tan, <tamlokveer@gmail.com>
71da12ec4SLe Tan  *
81da12ec4SLe Tan  * This program is free software; you can redistribute it and/or modify
91da12ec4SLe Tan  * it under the terms of the GNU General Public License as published by
101da12ec4SLe Tan  * the Free Software Foundation; either version 2 of the License, or
111da12ec4SLe Tan  * (at your option) any later version.
121da12ec4SLe Tan 
131da12ec4SLe Tan  * This program is distributed in the hope that it will be useful,
141da12ec4SLe Tan  * but WITHOUT ANY WARRANTY; without even the implied warranty of
151da12ec4SLe Tan  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
161da12ec4SLe Tan  * GNU General Public License for more details.
171da12ec4SLe Tan 
181da12ec4SLe Tan  * You should have received a copy of the GNU General Public License along
191da12ec4SLe Tan  * with this program; if not, see <http://www.gnu.org/licenses/>.
201da12ec4SLe Tan  */
211da12ec4SLe Tan 
22b6a0aa05SPeter Maydell #include "qemu/osdep.h"
234684a204SPeter Xu #include "qemu/error-report.h"
246333e93cSRadim Krčmář #include "qapi/error.h"
251da12ec4SLe Tan #include "hw/sysbus.h"
261da12ec4SLe Tan #include "exec/address-spaces.h"
271da12ec4SLe Tan #include "intel_iommu_internal.h"
287df953bdSKnut Omang #include "hw/pci/pci.h"
293cb3b154SAlex Williamson #include "hw/pci/pci_bus.h"
30621d983aSMarcel Apfelbaum #include "hw/i386/pc.h"
31dea651a9SFeng Wu #include "hw/i386/apic-msidef.h"
3204af0e18SPeter Xu #include "hw/boards.h"
3304af0e18SPeter Xu #include "hw/i386/x86-iommu.h"
34cb135f59SPeter Xu #include "hw/pci-host/q35.h"
354684a204SPeter Xu #include "sysemu/kvm.h"
3632946019SRadim Krčmář #include "hw/i386/apic_internal.h"
37fb506e70SRadim Krčmář #include "kvm_i386.h"
38bc535e59SPeter Xu #include "trace.h"
391da12ec4SLe Tan 
401da12ec4SLe Tan static void vtd_define_quad(IntelIOMMUState *s, hwaddr addr, uint64_t val,
411da12ec4SLe Tan                             uint64_t wmask, uint64_t w1cmask)
421da12ec4SLe Tan {
431da12ec4SLe Tan     stq_le_p(&s->csr[addr], val);
441da12ec4SLe Tan     stq_le_p(&s->wmask[addr], wmask);
451da12ec4SLe Tan     stq_le_p(&s->w1cmask[addr], w1cmask);
461da12ec4SLe Tan }
471da12ec4SLe Tan 
481da12ec4SLe Tan static void vtd_define_quad_wo(IntelIOMMUState *s, hwaddr addr, uint64_t mask)
491da12ec4SLe Tan {
501da12ec4SLe Tan     stq_le_p(&s->womask[addr], mask);
511da12ec4SLe Tan }
521da12ec4SLe Tan 
531da12ec4SLe Tan static void vtd_define_long(IntelIOMMUState *s, hwaddr addr, uint32_t val,
541da12ec4SLe Tan                             uint32_t wmask, uint32_t w1cmask)
551da12ec4SLe Tan {
561da12ec4SLe Tan     stl_le_p(&s->csr[addr], val);
571da12ec4SLe Tan     stl_le_p(&s->wmask[addr], wmask);
581da12ec4SLe Tan     stl_le_p(&s->w1cmask[addr], w1cmask);
591da12ec4SLe Tan }
601da12ec4SLe Tan 
611da12ec4SLe Tan static void vtd_define_long_wo(IntelIOMMUState *s, hwaddr addr, uint32_t mask)
621da12ec4SLe Tan {
631da12ec4SLe Tan     stl_le_p(&s->womask[addr], mask);
641da12ec4SLe Tan }
651da12ec4SLe Tan 
661da12ec4SLe Tan /* "External" get/set operations */
671da12ec4SLe Tan static void vtd_set_quad(IntelIOMMUState *s, hwaddr addr, uint64_t val)
681da12ec4SLe Tan {
691da12ec4SLe Tan     uint64_t oldval = ldq_le_p(&s->csr[addr]);
701da12ec4SLe Tan     uint64_t wmask = ldq_le_p(&s->wmask[addr]);
711da12ec4SLe Tan     uint64_t w1cmask = ldq_le_p(&s->w1cmask[addr]);
721da12ec4SLe Tan     stq_le_p(&s->csr[addr],
731da12ec4SLe Tan              ((oldval & ~wmask) | (val & wmask)) & ~(w1cmask & val));
741da12ec4SLe Tan }
751da12ec4SLe Tan 
761da12ec4SLe Tan static void vtd_set_long(IntelIOMMUState *s, hwaddr addr, uint32_t val)
771da12ec4SLe Tan {
781da12ec4SLe Tan     uint32_t oldval = ldl_le_p(&s->csr[addr]);
791da12ec4SLe Tan     uint32_t wmask = ldl_le_p(&s->wmask[addr]);
801da12ec4SLe Tan     uint32_t w1cmask = ldl_le_p(&s->w1cmask[addr]);
811da12ec4SLe Tan     stl_le_p(&s->csr[addr],
821da12ec4SLe Tan              ((oldval & ~wmask) | (val & wmask)) & ~(w1cmask & val));
831da12ec4SLe Tan }
841da12ec4SLe Tan 
851da12ec4SLe Tan static uint64_t vtd_get_quad(IntelIOMMUState *s, hwaddr addr)
861da12ec4SLe Tan {
871da12ec4SLe Tan     uint64_t val = ldq_le_p(&s->csr[addr]);
881da12ec4SLe Tan     uint64_t womask = ldq_le_p(&s->womask[addr]);
891da12ec4SLe Tan     return val & ~womask;
901da12ec4SLe Tan }
911da12ec4SLe Tan 
921da12ec4SLe Tan static uint32_t vtd_get_long(IntelIOMMUState *s, hwaddr addr)
931da12ec4SLe Tan {
941da12ec4SLe Tan     uint32_t val = ldl_le_p(&s->csr[addr]);
951da12ec4SLe Tan     uint32_t womask = ldl_le_p(&s->womask[addr]);
961da12ec4SLe Tan     return val & ~womask;
971da12ec4SLe Tan }
981da12ec4SLe Tan 
991da12ec4SLe Tan /* "Internal" get/set operations */
1001da12ec4SLe Tan static uint64_t vtd_get_quad_raw(IntelIOMMUState *s, hwaddr addr)
1011da12ec4SLe Tan {
1021da12ec4SLe Tan     return ldq_le_p(&s->csr[addr]);
1031da12ec4SLe Tan }
1041da12ec4SLe Tan 
1051da12ec4SLe Tan static uint32_t vtd_get_long_raw(IntelIOMMUState *s, hwaddr addr)
1061da12ec4SLe Tan {
1071da12ec4SLe Tan     return ldl_le_p(&s->csr[addr]);
1081da12ec4SLe Tan }
1091da12ec4SLe Tan 
1101da12ec4SLe Tan static void vtd_set_quad_raw(IntelIOMMUState *s, hwaddr addr, uint64_t val)
1111da12ec4SLe Tan {
1121da12ec4SLe Tan     stq_le_p(&s->csr[addr], val);
1131da12ec4SLe Tan }
1141da12ec4SLe Tan 
1151da12ec4SLe Tan static uint32_t vtd_set_clear_mask_long(IntelIOMMUState *s, hwaddr addr,
1161da12ec4SLe Tan                                         uint32_t clear, uint32_t mask)
1171da12ec4SLe Tan {
1181da12ec4SLe Tan     uint32_t new_val = (ldl_le_p(&s->csr[addr]) & ~clear) | mask;
1191da12ec4SLe Tan     stl_le_p(&s->csr[addr], new_val);
1201da12ec4SLe Tan     return new_val;
1211da12ec4SLe Tan }
1221da12ec4SLe Tan 
1231da12ec4SLe Tan static uint64_t vtd_set_clear_mask_quad(IntelIOMMUState *s, hwaddr addr,
1241da12ec4SLe Tan                                         uint64_t clear, uint64_t mask)
1251da12ec4SLe Tan {
1261da12ec4SLe Tan     uint64_t new_val = (ldq_le_p(&s->csr[addr]) & ~clear) | mask;
1271da12ec4SLe Tan     stq_le_p(&s->csr[addr], new_val);
1281da12ec4SLe Tan     return new_val;
1291da12ec4SLe Tan }
1301da12ec4SLe Tan 
131b5a280c0SLe Tan /* GHashTable functions */
132b5a280c0SLe Tan static gboolean vtd_uint64_equal(gconstpointer v1, gconstpointer v2)
133b5a280c0SLe Tan {
134b5a280c0SLe Tan     return *((const uint64_t *)v1) == *((const uint64_t *)v2);
135b5a280c0SLe Tan }
136b5a280c0SLe Tan 
137b5a280c0SLe Tan static guint vtd_uint64_hash(gconstpointer v)
138b5a280c0SLe Tan {
139b5a280c0SLe Tan     return (guint)*(const uint64_t *)v;
140b5a280c0SLe Tan }
141b5a280c0SLe Tan 
142b5a280c0SLe Tan static gboolean vtd_hash_remove_by_domain(gpointer key, gpointer value,
143b5a280c0SLe Tan                                           gpointer user_data)
144b5a280c0SLe Tan {
145b5a280c0SLe Tan     VTDIOTLBEntry *entry = (VTDIOTLBEntry *)value;
146b5a280c0SLe Tan     uint16_t domain_id = *(uint16_t *)user_data;
147b5a280c0SLe Tan     return entry->domain_id == domain_id;
148b5a280c0SLe Tan }
149b5a280c0SLe Tan 
150d66b969bSJason Wang /* The shift of an addr for a certain level of paging structure */
151d66b969bSJason Wang static inline uint32_t vtd_slpt_level_shift(uint32_t level)
152d66b969bSJason Wang {
1537e58326aSPeter Xu     assert(level != 0);
154d66b969bSJason Wang     return VTD_PAGE_SHIFT_4K + (level - 1) * VTD_SL_LEVEL_BITS;
155d66b969bSJason Wang }
156d66b969bSJason Wang 
157d66b969bSJason Wang static inline uint64_t vtd_slpt_level_page_mask(uint32_t level)
158d66b969bSJason Wang {
159d66b969bSJason Wang     return ~((1ULL << vtd_slpt_level_shift(level)) - 1);
160d66b969bSJason Wang }
161d66b969bSJason Wang 
162b5a280c0SLe Tan static gboolean vtd_hash_remove_by_page(gpointer key, gpointer value,
163b5a280c0SLe Tan                                         gpointer user_data)
164b5a280c0SLe Tan {
165b5a280c0SLe Tan     VTDIOTLBEntry *entry = (VTDIOTLBEntry *)value;
166b5a280c0SLe Tan     VTDIOTLBPageInvInfo *info = (VTDIOTLBPageInvInfo *)user_data;
167d66b969bSJason Wang     uint64_t gfn = (info->addr >> VTD_PAGE_SHIFT_4K) & info->mask;
168d66b969bSJason Wang     uint64_t gfn_tlb = (info->addr & entry->mask) >> VTD_PAGE_SHIFT_4K;
169b5a280c0SLe Tan     return (entry->domain_id == info->domain_id) &&
170d66b969bSJason Wang             (((entry->gfn & info->mask) == gfn) ||
171d66b969bSJason Wang              (entry->gfn == gfn_tlb));
172b5a280c0SLe Tan }
173b5a280c0SLe Tan 
174d92fa2dcSLe Tan /* Reset all the gen of VTDAddressSpace to zero and set the gen of
175d92fa2dcSLe Tan  * IntelIOMMUState to 1.
176d92fa2dcSLe Tan  */
177d92fa2dcSLe Tan static void vtd_reset_context_cache(IntelIOMMUState *s)
178d92fa2dcSLe Tan {
179d92fa2dcSLe Tan     VTDAddressSpace *vtd_as;
1807df953bdSKnut Omang     VTDBus *vtd_bus;
1817df953bdSKnut Omang     GHashTableIter bus_it;
182d92fa2dcSLe Tan     uint32_t devfn_it;
183d92fa2dcSLe Tan 
1847feb51b7SPeter Xu     trace_vtd_context_cache_reset();
1857feb51b7SPeter Xu 
1867df953bdSKnut Omang     g_hash_table_iter_init(&bus_it, s->vtd_as_by_busptr);
1877df953bdSKnut Omang 
1887df953bdSKnut Omang     while (g_hash_table_iter_next (&bus_it, NULL, (void**)&vtd_bus)) {
189*bf33cc75SPeter Xu         for (devfn_it = 0; devfn_it < PCI_DEVFN_MAX; ++devfn_it) {
1907df953bdSKnut Omang             vtd_as = vtd_bus->dev_as[devfn_it];
191d92fa2dcSLe Tan             if (!vtd_as) {
192d92fa2dcSLe Tan                 continue;
193d92fa2dcSLe Tan             }
194d92fa2dcSLe Tan             vtd_as->context_cache_entry.context_cache_gen = 0;
195d92fa2dcSLe Tan         }
196d92fa2dcSLe Tan     }
197d92fa2dcSLe Tan     s->context_cache_gen = 1;
198d92fa2dcSLe Tan }
199d92fa2dcSLe Tan 
200b5a280c0SLe Tan static void vtd_reset_iotlb(IntelIOMMUState *s)
201b5a280c0SLe Tan {
202b5a280c0SLe Tan     assert(s->iotlb);
203b5a280c0SLe Tan     g_hash_table_remove_all(s->iotlb);
204b5a280c0SLe Tan }
205b5a280c0SLe Tan 
206bacabb0aSJason Wang static uint64_t vtd_get_iotlb_key(uint64_t gfn, uint16_t source_id,
207d66b969bSJason Wang                                   uint32_t level)
208d66b969bSJason Wang {
209d66b969bSJason Wang     return gfn | ((uint64_t)(source_id) << VTD_IOTLB_SID_SHIFT) |
210d66b969bSJason Wang            ((uint64_t)(level) << VTD_IOTLB_LVL_SHIFT);
211d66b969bSJason Wang }
212d66b969bSJason Wang 
213d66b969bSJason Wang static uint64_t vtd_get_iotlb_gfn(hwaddr addr, uint32_t level)
214d66b969bSJason Wang {
215d66b969bSJason Wang     return (addr & vtd_slpt_level_page_mask(level)) >> VTD_PAGE_SHIFT_4K;
216d66b969bSJason Wang }
217d66b969bSJason Wang 
218b5a280c0SLe Tan static VTDIOTLBEntry *vtd_lookup_iotlb(IntelIOMMUState *s, uint16_t source_id,
219b5a280c0SLe Tan                                        hwaddr addr)
220b5a280c0SLe Tan {
221d66b969bSJason Wang     VTDIOTLBEntry *entry;
222b5a280c0SLe Tan     uint64_t key;
223d66b969bSJason Wang     int level;
224b5a280c0SLe Tan 
225d66b969bSJason Wang     for (level = VTD_SL_PT_LEVEL; level < VTD_SL_PML4_LEVEL; level++) {
226d66b969bSJason Wang         key = vtd_get_iotlb_key(vtd_get_iotlb_gfn(addr, level),
227d66b969bSJason Wang                                 source_id, level);
228d66b969bSJason Wang         entry = g_hash_table_lookup(s->iotlb, &key);
229d66b969bSJason Wang         if (entry) {
230d66b969bSJason Wang             goto out;
231d66b969bSJason Wang         }
232d66b969bSJason Wang     }
233b5a280c0SLe Tan 
234d66b969bSJason Wang out:
235d66b969bSJason Wang     return entry;
236b5a280c0SLe Tan }
237b5a280c0SLe Tan 
238b5a280c0SLe Tan static void vtd_update_iotlb(IntelIOMMUState *s, uint16_t source_id,
239b5a280c0SLe Tan                              uint16_t domain_id, hwaddr addr, uint64_t slpte,
24007f7b733SPeter Xu                              uint8_t access_flags, uint32_t level)
241b5a280c0SLe Tan {
242b5a280c0SLe Tan     VTDIOTLBEntry *entry = g_malloc(sizeof(*entry));
243b5a280c0SLe Tan     uint64_t *key = g_malloc(sizeof(*key));
244d66b969bSJason Wang     uint64_t gfn = vtd_get_iotlb_gfn(addr, level);
245b5a280c0SLe Tan 
2466c441e1dSPeter Xu     trace_vtd_iotlb_page_update(source_id, addr, slpte, domain_id);
247b5a280c0SLe Tan     if (g_hash_table_size(s->iotlb) >= VTD_IOTLB_MAX_SIZE) {
2486c441e1dSPeter Xu         trace_vtd_iotlb_reset("iotlb exceeds size limit");
249b5a280c0SLe Tan         vtd_reset_iotlb(s);
250b5a280c0SLe Tan     }
251b5a280c0SLe Tan 
252b5a280c0SLe Tan     entry->gfn = gfn;
253b5a280c0SLe Tan     entry->domain_id = domain_id;
254b5a280c0SLe Tan     entry->slpte = slpte;
25507f7b733SPeter Xu     entry->access_flags = access_flags;
256d66b969bSJason Wang     entry->mask = vtd_slpt_level_page_mask(level);
257d66b969bSJason Wang     *key = vtd_get_iotlb_key(gfn, source_id, level);
258b5a280c0SLe Tan     g_hash_table_replace(s->iotlb, key, entry);
259b5a280c0SLe Tan }
260b5a280c0SLe Tan 
2611da12ec4SLe Tan /* Given the reg addr of both the message data and address, generate an
2621da12ec4SLe Tan  * interrupt via MSI.
2631da12ec4SLe Tan  */
2641da12ec4SLe Tan static void vtd_generate_interrupt(IntelIOMMUState *s, hwaddr mesg_addr_reg,
2651da12ec4SLe Tan                                    hwaddr mesg_data_reg)
2661da12ec4SLe Tan {
26732946019SRadim Krčmář     MSIMessage msi;
2681da12ec4SLe Tan 
2691da12ec4SLe Tan     assert(mesg_data_reg < DMAR_REG_SIZE);
2701da12ec4SLe Tan     assert(mesg_addr_reg < DMAR_REG_SIZE);
2711da12ec4SLe Tan 
27232946019SRadim Krčmář     msi.address = vtd_get_long_raw(s, mesg_addr_reg);
27332946019SRadim Krčmář     msi.data = vtd_get_long_raw(s, mesg_data_reg);
2741da12ec4SLe Tan 
2757feb51b7SPeter Xu     trace_vtd_irq_generate(msi.address, msi.data);
2767feb51b7SPeter Xu 
27732946019SRadim Krčmář     apic_get_class()->send_msi(&msi);
2781da12ec4SLe Tan }
2791da12ec4SLe Tan 
2801da12ec4SLe Tan /* Generate a fault event to software via MSI if conditions are met.
2811da12ec4SLe Tan  * Notice that the value of FSTS_REG being passed to it should be the one
2821da12ec4SLe Tan  * before any update.
2831da12ec4SLe Tan  */
2841da12ec4SLe Tan static void vtd_generate_fault_event(IntelIOMMUState *s, uint32_t pre_fsts)
2851da12ec4SLe Tan {
2861da12ec4SLe Tan     if (pre_fsts & VTD_FSTS_PPF || pre_fsts & VTD_FSTS_PFO ||
2871da12ec4SLe Tan         pre_fsts & VTD_FSTS_IQE) {
2887feb51b7SPeter Xu         trace_vtd_err("There are previous interrupt conditions "
2897feb51b7SPeter Xu                       "to be serviced by software, fault event "
2907feb51b7SPeter Xu                       "is not generated.");
2911da12ec4SLe Tan         return;
2921da12ec4SLe Tan     }
2931da12ec4SLe Tan     vtd_set_clear_mask_long(s, DMAR_FECTL_REG, 0, VTD_FECTL_IP);
2941da12ec4SLe Tan     if (vtd_get_long_raw(s, DMAR_FECTL_REG) & VTD_FECTL_IM) {
2957feb51b7SPeter Xu         trace_vtd_err("Interrupt Mask set, irq is not generated.");
2961da12ec4SLe Tan     } else {
2971da12ec4SLe Tan         vtd_generate_interrupt(s, DMAR_FEADDR_REG, DMAR_FEDATA_REG);
2981da12ec4SLe Tan         vtd_set_clear_mask_long(s, DMAR_FECTL_REG, VTD_FECTL_IP, 0);
2991da12ec4SLe Tan     }
3001da12ec4SLe Tan }
3011da12ec4SLe Tan 
3021da12ec4SLe Tan /* Check if the Fault (F) field of the Fault Recording Register referenced by
3031da12ec4SLe Tan  * @index is Set.
3041da12ec4SLe Tan  */
3051da12ec4SLe Tan static bool vtd_is_frcd_set(IntelIOMMUState *s, uint16_t index)
3061da12ec4SLe Tan {
3071da12ec4SLe Tan     /* Each reg is 128-bit */
3081da12ec4SLe Tan     hwaddr addr = DMAR_FRCD_REG_OFFSET + (((uint64_t)index) << 4);
3091da12ec4SLe Tan     addr += 8; /* Access the high 64-bit half */
3101da12ec4SLe Tan 
3111da12ec4SLe Tan     assert(index < DMAR_FRCD_REG_NR);
3121da12ec4SLe Tan 
3131da12ec4SLe Tan     return vtd_get_quad_raw(s, addr) & VTD_FRCD_F;
3141da12ec4SLe Tan }
3151da12ec4SLe Tan 
3161da12ec4SLe Tan /* Update the PPF field of Fault Status Register.
3171da12ec4SLe Tan  * Should be called whenever change the F field of any fault recording
3181da12ec4SLe Tan  * registers.
3191da12ec4SLe Tan  */
3201da12ec4SLe Tan static void vtd_update_fsts_ppf(IntelIOMMUState *s)
3211da12ec4SLe Tan {
3221da12ec4SLe Tan     uint32_t i;
3231da12ec4SLe Tan     uint32_t ppf_mask = 0;
3241da12ec4SLe Tan 
3251da12ec4SLe Tan     for (i = 0; i < DMAR_FRCD_REG_NR; i++) {
3261da12ec4SLe Tan         if (vtd_is_frcd_set(s, i)) {
3271da12ec4SLe Tan             ppf_mask = VTD_FSTS_PPF;
3281da12ec4SLe Tan             break;
3291da12ec4SLe Tan         }
3301da12ec4SLe Tan     }
3311da12ec4SLe Tan     vtd_set_clear_mask_long(s, DMAR_FSTS_REG, VTD_FSTS_PPF, ppf_mask);
3327feb51b7SPeter Xu     trace_vtd_fsts_ppf(!!ppf_mask);
3331da12ec4SLe Tan }
3341da12ec4SLe Tan 
3351da12ec4SLe Tan static void vtd_set_frcd_and_update_ppf(IntelIOMMUState *s, uint16_t index)
3361da12ec4SLe Tan {
3371da12ec4SLe Tan     /* Each reg is 128-bit */
3381da12ec4SLe Tan     hwaddr addr = DMAR_FRCD_REG_OFFSET + (((uint64_t)index) << 4);
3391da12ec4SLe Tan     addr += 8; /* Access the high 64-bit half */
3401da12ec4SLe Tan 
3411da12ec4SLe Tan     assert(index < DMAR_FRCD_REG_NR);
3421da12ec4SLe Tan 
3431da12ec4SLe Tan     vtd_set_clear_mask_quad(s, addr, 0, VTD_FRCD_F);
3441da12ec4SLe Tan     vtd_update_fsts_ppf(s);
3451da12ec4SLe Tan }
3461da12ec4SLe Tan 
3471da12ec4SLe Tan /* Must not update F field now, should be done later */
3481da12ec4SLe Tan static void vtd_record_frcd(IntelIOMMUState *s, uint16_t index,
3491da12ec4SLe Tan                             uint16_t source_id, hwaddr addr,
3501da12ec4SLe Tan                             VTDFaultReason fault, bool is_write)
3511da12ec4SLe Tan {
3521da12ec4SLe Tan     uint64_t hi = 0, lo;
3531da12ec4SLe Tan     hwaddr frcd_reg_addr = DMAR_FRCD_REG_OFFSET + (((uint64_t)index) << 4);
3541da12ec4SLe Tan 
3551da12ec4SLe Tan     assert(index < DMAR_FRCD_REG_NR);
3561da12ec4SLe Tan 
3571da12ec4SLe Tan     lo = VTD_FRCD_FI(addr);
3581da12ec4SLe Tan     hi = VTD_FRCD_SID(source_id) | VTD_FRCD_FR(fault);
3591da12ec4SLe Tan     if (!is_write) {
3601da12ec4SLe Tan         hi |= VTD_FRCD_T;
3611da12ec4SLe Tan     }
3621da12ec4SLe Tan     vtd_set_quad_raw(s, frcd_reg_addr, lo);
3631da12ec4SLe Tan     vtd_set_quad_raw(s, frcd_reg_addr + 8, hi);
3647feb51b7SPeter Xu 
3657feb51b7SPeter Xu     trace_vtd_frr_new(index, hi, lo);
3661da12ec4SLe Tan }
3671da12ec4SLe Tan 
3681da12ec4SLe Tan /* Try to collapse multiple pending faults from the same requester */
3691da12ec4SLe Tan static bool vtd_try_collapse_fault(IntelIOMMUState *s, uint16_t source_id)
3701da12ec4SLe Tan {
3711da12ec4SLe Tan     uint32_t i;
3721da12ec4SLe Tan     uint64_t frcd_reg;
3731da12ec4SLe Tan     hwaddr addr = DMAR_FRCD_REG_OFFSET + 8; /* The high 64-bit half */
3741da12ec4SLe Tan 
3751da12ec4SLe Tan     for (i = 0; i < DMAR_FRCD_REG_NR; i++) {
3761da12ec4SLe Tan         frcd_reg = vtd_get_quad_raw(s, addr);
3771da12ec4SLe Tan         if ((frcd_reg & VTD_FRCD_F) &&
3781da12ec4SLe Tan             ((frcd_reg & VTD_FRCD_SID_MASK) == source_id)) {
3791da12ec4SLe Tan             return true;
3801da12ec4SLe Tan         }
3811da12ec4SLe Tan         addr += 16; /* 128-bit for each */
3821da12ec4SLe Tan     }
3831da12ec4SLe Tan     return false;
3841da12ec4SLe Tan }
3851da12ec4SLe Tan 
3861da12ec4SLe Tan /* Log and report an DMAR (address translation) fault to software */
3871da12ec4SLe Tan static void vtd_report_dmar_fault(IntelIOMMUState *s, uint16_t source_id,
3881da12ec4SLe Tan                                   hwaddr addr, VTDFaultReason fault,
3891da12ec4SLe Tan                                   bool is_write)
3901da12ec4SLe Tan {
3911da12ec4SLe Tan     uint32_t fsts_reg = vtd_get_long_raw(s, DMAR_FSTS_REG);
3921da12ec4SLe Tan 
3931da12ec4SLe Tan     assert(fault < VTD_FR_MAX);
3941da12ec4SLe Tan 
3951da12ec4SLe Tan     if (fault == VTD_FR_RESERVED_ERR) {
3961da12ec4SLe Tan         /* This is not a normal fault reason case. Drop it. */
3971da12ec4SLe Tan         return;
3981da12ec4SLe Tan     }
3997feb51b7SPeter Xu 
4007feb51b7SPeter Xu     trace_vtd_dmar_fault(source_id, fault, addr, is_write);
4017feb51b7SPeter Xu 
4021da12ec4SLe Tan     if (fsts_reg & VTD_FSTS_PFO) {
4037feb51b7SPeter Xu         trace_vtd_err("New fault is not recorded due to "
4047feb51b7SPeter Xu                       "Primary Fault Overflow.");
4051da12ec4SLe Tan         return;
4061da12ec4SLe Tan     }
4077feb51b7SPeter Xu 
4081da12ec4SLe Tan     if (vtd_try_collapse_fault(s, source_id)) {
4097feb51b7SPeter Xu         trace_vtd_err("New fault is not recorded due to "
4107feb51b7SPeter Xu                       "compression of faults.");
4111da12ec4SLe Tan         return;
4121da12ec4SLe Tan     }
4137feb51b7SPeter Xu 
4141da12ec4SLe Tan     if (vtd_is_frcd_set(s, s->next_frcd_reg)) {
4157feb51b7SPeter Xu         trace_vtd_err("Next Fault Recording Reg is used, "
4167feb51b7SPeter Xu                       "new fault is not recorded, set PFO field.");
4171da12ec4SLe Tan         vtd_set_clear_mask_long(s, DMAR_FSTS_REG, 0, VTD_FSTS_PFO);
4181da12ec4SLe Tan         return;
4191da12ec4SLe Tan     }
4201da12ec4SLe Tan 
4211da12ec4SLe Tan     vtd_record_frcd(s, s->next_frcd_reg, source_id, addr, fault, is_write);
4221da12ec4SLe Tan 
4231da12ec4SLe Tan     if (fsts_reg & VTD_FSTS_PPF) {
4247feb51b7SPeter Xu         trace_vtd_err("There are pending faults already, "
4257feb51b7SPeter Xu                       "fault event is not generated.");
4261da12ec4SLe Tan         vtd_set_frcd_and_update_ppf(s, s->next_frcd_reg);
4271da12ec4SLe Tan         s->next_frcd_reg++;
4281da12ec4SLe Tan         if (s->next_frcd_reg == DMAR_FRCD_REG_NR) {
4291da12ec4SLe Tan             s->next_frcd_reg = 0;
4301da12ec4SLe Tan         }
4311da12ec4SLe Tan     } else {
4321da12ec4SLe Tan         vtd_set_clear_mask_long(s, DMAR_FSTS_REG, VTD_FSTS_FRI_MASK,
4331da12ec4SLe Tan                                 VTD_FSTS_FRI(s->next_frcd_reg));
4341da12ec4SLe Tan         vtd_set_frcd_and_update_ppf(s, s->next_frcd_reg); /* Will set PPF */
4351da12ec4SLe Tan         s->next_frcd_reg++;
4361da12ec4SLe Tan         if (s->next_frcd_reg == DMAR_FRCD_REG_NR) {
4371da12ec4SLe Tan             s->next_frcd_reg = 0;
4381da12ec4SLe Tan         }
4391da12ec4SLe Tan         /* This case actually cause the PPF to be Set.
4401da12ec4SLe Tan          * So generate fault event (interrupt).
4411da12ec4SLe Tan          */
4421da12ec4SLe Tan          vtd_generate_fault_event(s, fsts_reg);
4431da12ec4SLe Tan     }
4441da12ec4SLe Tan }
4451da12ec4SLe Tan 
446ed7b8fbcSLe Tan /* Handle Invalidation Queue Errors of queued invalidation interface error
447ed7b8fbcSLe Tan  * conditions.
448ed7b8fbcSLe Tan  */
449ed7b8fbcSLe Tan static void vtd_handle_inv_queue_error(IntelIOMMUState *s)
450ed7b8fbcSLe Tan {
451ed7b8fbcSLe Tan     uint32_t fsts_reg = vtd_get_long_raw(s, DMAR_FSTS_REG);
452ed7b8fbcSLe Tan 
453ed7b8fbcSLe Tan     vtd_set_clear_mask_long(s, DMAR_FSTS_REG, 0, VTD_FSTS_IQE);
454ed7b8fbcSLe Tan     vtd_generate_fault_event(s, fsts_reg);
455ed7b8fbcSLe Tan }
456ed7b8fbcSLe Tan 
457ed7b8fbcSLe Tan /* Set the IWC field and try to generate an invalidation completion interrupt */
458ed7b8fbcSLe Tan static void vtd_generate_completion_event(IntelIOMMUState *s)
459ed7b8fbcSLe Tan {
460ed7b8fbcSLe Tan     if (vtd_get_long_raw(s, DMAR_ICS_REG) & VTD_ICS_IWC) {
461bc535e59SPeter Xu         trace_vtd_inv_desc_wait_irq("One pending, skip current");
462ed7b8fbcSLe Tan         return;
463ed7b8fbcSLe Tan     }
464ed7b8fbcSLe Tan     vtd_set_clear_mask_long(s, DMAR_ICS_REG, 0, VTD_ICS_IWC);
465ed7b8fbcSLe Tan     vtd_set_clear_mask_long(s, DMAR_IECTL_REG, 0, VTD_IECTL_IP);
466ed7b8fbcSLe Tan     if (vtd_get_long_raw(s, DMAR_IECTL_REG) & VTD_IECTL_IM) {
467bc535e59SPeter Xu         trace_vtd_inv_desc_wait_irq("IM in IECTL_REG is set, "
468bc535e59SPeter Xu                                     "new event not generated");
469ed7b8fbcSLe Tan         return;
470ed7b8fbcSLe Tan     } else {
471ed7b8fbcSLe Tan         /* Generate the interrupt event */
472bc535e59SPeter Xu         trace_vtd_inv_desc_wait_irq("Generating complete event");
473ed7b8fbcSLe Tan         vtd_generate_interrupt(s, DMAR_IEADDR_REG, DMAR_IEDATA_REG);
474ed7b8fbcSLe Tan         vtd_set_clear_mask_long(s, DMAR_IECTL_REG, VTD_IECTL_IP, 0);
475ed7b8fbcSLe Tan     }
476ed7b8fbcSLe Tan }
477ed7b8fbcSLe Tan 
4781da12ec4SLe Tan static inline bool vtd_root_entry_present(VTDRootEntry *root)
4791da12ec4SLe Tan {
4801da12ec4SLe Tan     return root->val & VTD_ROOT_ENTRY_P;
4811da12ec4SLe Tan }
4821da12ec4SLe Tan 
4831da12ec4SLe Tan static int vtd_get_root_entry(IntelIOMMUState *s, uint8_t index,
4841da12ec4SLe Tan                               VTDRootEntry *re)
4851da12ec4SLe Tan {
4861da12ec4SLe Tan     dma_addr_t addr;
4871da12ec4SLe Tan 
4881da12ec4SLe Tan     addr = s->root + index * sizeof(*re);
4891da12ec4SLe Tan     if (dma_memory_read(&address_space_memory, addr, re, sizeof(*re))) {
4906c441e1dSPeter Xu         trace_vtd_re_invalid(re->rsvd, re->val);
4911da12ec4SLe Tan         re->val = 0;
4921da12ec4SLe Tan         return -VTD_FR_ROOT_TABLE_INV;
4931da12ec4SLe Tan     }
4941da12ec4SLe Tan     re->val = le64_to_cpu(re->val);
4951da12ec4SLe Tan     return 0;
4961da12ec4SLe Tan }
4971da12ec4SLe Tan 
4988f7d7161SPeter Xu static inline bool vtd_ce_present(VTDContextEntry *context)
4991da12ec4SLe Tan {
5001da12ec4SLe Tan     return context->lo & VTD_CONTEXT_ENTRY_P;
5011da12ec4SLe Tan }
5021da12ec4SLe Tan 
5031da12ec4SLe Tan static int vtd_get_context_entry_from_root(VTDRootEntry *root, uint8_t index,
5041da12ec4SLe Tan                                            VTDContextEntry *ce)
5051da12ec4SLe Tan {
5061da12ec4SLe Tan     dma_addr_t addr;
5071da12ec4SLe Tan 
5086c441e1dSPeter Xu     /* we have checked that root entry is present */
5091da12ec4SLe Tan     addr = (root->val & VTD_ROOT_ENTRY_CTP) + index * sizeof(*ce);
5101da12ec4SLe Tan     if (dma_memory_read(&address_space_memory, addr, ce, sizeof(*ce))) {
5116c441e1dSPeter Xu         trace_vtd_re_invalid(root->rsvd, root->val);
5121da12ec4SLe Tan         return -VTD_FR_CONTEXT_TABLE_INV;
5131da12ec4SLe Tan     }
5141da12ec4SLe Tan     ce->lo = le64_to_cpu(ce->lo);
5151da12ec4SLe Tan     ce->hi = le64_to_cpu(ce->hi);
5161da12ec4SLe Tan     return 0;
5171da12ec4SLe Tan }
5181da12ec4SLe Tan 
5198f7d7161SPeter Xu static inline dma_addr_t vtd_ce_get_slpt_base(VTDContextEntry *ce)
5201da12ec4SLe Tan {
5211da12ec4SLe Tan     return ce->lo & VTD_CONTEXT_ENTRY_SLPTPTR;
5221da12ec4SLe Tan }
5231da12ec4SLe Tan 
5241da12ec4SLe Tan static inline uint64_t vtd_get_slpte_addr(uint64_t slpte)
5251da12ec4SLe Tan {
5261da12ec4SLe Tan     return slpte & VTD_SL_PT_BASE_ADDR_MASK;
5271da12ec4SLe Tan }
5281da12ec4SLe Tan 
5291da12ec4SLe Tan /* Whether the pte indicates the address of the page frame */
5301da12ec4SLe Tan static inline bool vtd_is_last_slpte(uint64_t slpte, uint32_t level)
5311da12ec4SLe Tan {
5321da12ec4SLe Tan     return level == VTD_SL_PT_LEVEL || (slpte & VTD_SL_PT_PAGE_SIZE_MASK);
5331da12ec4SLe Tan }
5341da12ec4SLe Tan 
5351da12ec4SLe Tan /* Get the content of a spte located in @base_addr[@index] */
5361da12ec4SLe Tan static uint64_t vtd_get_slpte(dma_addr_t base_addr, uint32_t index)
5371da12ec4SLe Tan {
5381da12ec4SLe Tan     uint64_t slpte;
5391da12ec4SLe Tan 
5401da12ec4SLe Tan     assert(index < VTD_SL_PT_ENTRY_NR);
5411da12ec4SLe Tan 
5421da12ec4SLe Tan     if (dma_memory_read(&address_space_memory,
5431da12ec4SLe Tan                         base_addr + index * sizeof(slpte), &slpte,
5441da12ec4SLe Tan                         sizeof(slpte))) {
5451da12ec4SLe Tan         slpte = (uint64_t)-1;
5461da12ec4SLe Tan         return slpte;
5471da12ec4SLe Tan     }
5481da12ec4SLe Tan     slpte = le64_to_cpu(slpte);
5491da12ec4SLe Tan     return slpte;
5501da12ec4SLe Tan }
5511da12ec4SLe Tan 
5526e905564SPeter Xu /* Given an iova and the level of paging structure, return the offset
5536e905564SPeter Xu  * of current level.
5541da12ec4SLe Tan  */
5556e905564SPeter Xu static inline uint32_t vtd_iova_level_offset(uint64_t iova, uint32_t level)
5561da12ec4SLe Tan {
5576e905564SPeter Xu     return (iova >> vtd_slpt_level_shift(level)) &
5581da12ec4SLe Tan             ((1ULL << VTD_SL_LEVEL_BITS) - 1);
5591da12ec4SLe Tan }
5601da12ec4SLe Tan 
5611da12ec4SLe Tan /* Check Capability Register to see if the @level of page-table is supported */
5621da12ec4SLe Tan static inline bool vtd_is_level_supported(IntelIOMMUState *s, uint32_t level)
5631da12ec4SLe Tan {
5641da12ec4SLe Tan     return VTD_CAP_SAGAW_MASK & s->cap &
5651da12ec4SLe Tan            (1ULL << (level - 2 + VTD_CAP_SAGAW_SHIFT));
5661da12ec4SLe Tan }
5671da12ec4SLe Tan 
5681da12ec4SLe Tan /* Get the page-table level that hardware should use for the second-level
5691da12ec4SLe Tan  * page-table walk from the Address Width field of context-entry.
5701da12ec4SLe Tan  */
5718f7d7161SPeter Xu static inline uint32_t vtd_ce_get_level(VTDContextEntry *ce)
5721da12ec4SLe Tan {
5731da12ec4SLe Tan     return 2 + (ce->hi & VTD_CONTEXT_ENTRY_AW);
5741da12ec4SLe Tan }
5751da12ec4SLe Tan 
5768f7d7161SPeter Xu static inline uint32_t vtd_ce_get_agaw(VTDContextEntry *ce)
5771da12ec4SLe Tan {
5781da12ec4SLe Tan     return 30 + (ce->hi & VTD_CONTEXT_ENTRY_AW) * 9;
5791da12ec4SLe Tan }
5801da12ec4SLe Tan 
581127ff5c3SPeter Xu static inline uint32_t vtd_ce_get_type(VTDContextEntry *ce)
582127ff5c3SPeter Xu {
583127ff5c3SPeter Xu     return ce->lo & VTD_CONTEXT_ENTRY_TT;
584127ff5c3SPeter Xu }
585127ff5c3SPeter Xu 
586f80c9874SPeter Xu /* Return true if check passed, otherwise false */
587f80c9874SPeter Xu static inline bool vtd_ce_type_check(X86IOMMUState *x86_iommu,
588f80c9874SPeter Xu                                      VTDContextEntry *ce)
589f80c9874SPeter Xu {
590f80c9874SPeter Xu     switch (vtd_ce_get_type(ce)) {
591f80c9874SPeter Xu     case VTD_CONTEXT_TT_MULTI_LEVEL:
592f80c9874SPeter Xu         /* Always supported */
593f80c9874SPeter Xu         break;
594f80c9874SPeter Xu     case VTD_CONTEXT_TT_DEV_IOTLB:
595f80c9874SPeter Xu         if (!x86_iommu->dt_supported) {
596f80c9874SPeter Xu             return false;
597f80c9874SPeter Xu         }
598f80c9874SPeter Xu         break;
599dbaabb25SPeter Xu     case VTD_CONTEXT_TT_PASS_THROUGH:
600dbaabb25SPeter Xu         if (!x86_iommu->pt_supported) {
601dbaabb25SPeter Xu             return false;
602dbaabb25SPeter Xu         }
603dbaabb25SPeter Xu         break;
604f80c9874SPeter Xu     default:
605f80c9874SPeter Xu         /* Unknwon type */
606f80c9874SPeter Xu         return false;
607f80c9874SPeter Xu     }
608f80c9874SPeter Xu     return true;
609f80c9874SPeter Xu }
610f80c9874SPeter Xu 
611f06a696dSPeter Xu static inline uint64_t vtd_iova_limit(VTDContextEntry *ce)
612f06a696dSPeter Xu {
6138f7d7161SPeter Xu     uint32_t ce_agaw = vtd_ce_get_agaw(ce);
614f06a696dSPeter Xu     return 1ULL << MIN(ce_agaw, VTD_MGAW);
615f06a696dSPeter Xu }
616f06a696dSPeter Xu 
617f06a696dSPeter Xu /* Return true if IOVA passes range check, otherwise false. */
618f06a696dSPeter Xu static inline bool vtd_iova_range_check(uint64_t iova, VTDContextEntry *ce)
619f06a696dSPeter Xu {
620f06a696dSPeter Xu     /*
621f06a696dSPeter Xu      * Check if @iova is above 2^X-1, where X is the minimum of MGAW
622f06a696dSPeter Xu      * in CAP_REG and AW in context-entry.
623f06a696dSPeter Xu      */
624f06a696dSPeter Xu     return !(iova & ~(vtd_iova_limit(ce) - 1));
625f06a696dSPeter Xu }
626f06a696dSPeter Xu 
6271da12ec4SLe Tan static const uint64_t vtd_paging_entry_rsvd_field[] = {
6281da12ec4SLe Tan     [0] = ~0ULL,
6291da12ec4SLe Tan     /* For not large page */
6301da12ec4SLe Tan     [1] = 0x800ULL | ~(VTD_HAW_MASK | VTD_SL_IGN_COM),
6311da12ec4SLe Tan     [2] = 0x800ULL | ~(VTD_HAW_MASK | VTD_SL_IGN_COM),
6321da12ec4SLe Tan     [3] = 0x800ULL | ~(VTD_HAW_MASK | VTD_SL_IGN_COM),
6331da12ec4SLe Tan     [4] = 0x880ULL | ~(VTD_HAW_MASK | VTD_SL_IGN_COM),
6341da12ec4SLe Tan     /* For large page */
6351da12ec4SLe Tan     [5] = 0x800ULL | ~(VTD_HAW_MASK | VTD_SL_IGN_COM),
6361da12ec4SLe Tan     [6] = 0x1ff800ULL | ~(VTD_HAW_MASK | VTD_SL_IGN_COM),
6371da12ec4SLe Tan     [7] = 0x3ffff800ULL | ~(VTD_HAW_MASK | VTD_SL_IGN_COM),
6381da12ec4SLe Tan     [8] = 0x880ULL | ~(VTD_HAW_MASK | VTD_SL_IGN_COM),
6391da12ec4SLe Tan };
6401da12ec4SLe Tan 
6411da12ec4SLe Tan static bool vtd_slpte_nonzero_rsvd(uint64_t slpte, uint32_t level)
6421da12ec4SLe Tan {
6431da12ec4SLe Tan     if (slpte & VTD_SL_PT_PAGE_SIZE_MASK) {
6441da12ec4SLe Tan         /* Maybe large page */
6451da12ec4SLe Tan         return slpte & vtd_paging_entry_rsvd_field[level + 4];
6461da12ec4SLe Tan     } else {
6471da12ec4SLe Tan         return slpte & vtd_paging_entry_rsvd_field[level];
6481da12ec4SLe Tan     }
6491da12ec4SLe Tan }
6501da12ec4SLe Tan 
651dbaabb25SPeter Xu /* Find the VTD address space associated with a given bus number */
652dbaabb25SPeter Xu static VTDBus *vtd_find_as_from_bus_num(IntelIOMMUState *s, uint8_t bus_num)
653dbaabb25SPeter Xu {
654dbaabb25SPeter Xu     VTDBus *vtd_bus = s->vtd_as_by_bus_num[bus_num];
655dbaabb25SPeter Xu     if (!vtd_bus) {
656dbaabb25SPeter Xu         /*
657dbaabb25SPeter Xu          * Iterate over the registered buses to find the one which
658dbaabb25SPeter Xu          * currently hold this bus number, and update the bus_num
659dbaabb25SPeter Xu          * lookup table:
660dbaabb25SPeter Xu          */
661dbaabb25SPeter Xu         GHashTableIter iter;
662dbaabb25SPeter Xu 
663dbaabb25SPeter Xu         g_hash_table_iter_init(&iter, s->vtd_as_by_busptr);
664dbaabb25SPeter Xu         while (g_hash_table_iter_next(&iter, NULL, (void **)&vtd_bus)) {
665dbaabb25SPeter Xu             if (pci_bus_num(vtd_bus->bus) == bus_num) {
666dbaabb25SPeter Xu                 s->vtd_as_by_bus_num[bus_num] = vtd_bus;
667dbaabb25SPeter Xu                 return vtd_bus;
668dbaabb25SPeter Xu             }
669dbaabb25SPeter Xu         }
670dbaabb25SPeter Xu     }
671dbaabb25SPeter Xu     return vtd_bus;
672dbaabb25SPeter Xu }
673dbaabb25SPeter Xu 
6746e905564SPeter Xu /* Given the @iova, get relevant @slptep. @slpte_level will be the last level
6751da12ec4SLe Tan  * of the translation, can be used for deciding the size of large page.
6761da12ec4SLe Tan  */
6776e905564SPeter Xu static int vtd_iova_to_slpte(VTDContextEntry *ce, uint64_t iova, bool is_write,
6781da12ec4SLe Tan                              uint64_t *slptep, uint32_t *slpte_level,
6791da12ec4SLe Tan                              bool *reads, bool *writes)
6801da12ec4SLe Tan {
6818f7d7161SPeter Xu     dma_addr_t addr = vtd_ce_get_slpt_base(ce);
6828f7d7161SPeter Xu     uint32_t level = vtd_ce_get_level(ce);
6831da12ec4SLe Tan     uint32_t offset;
6841da12ec4SLe Tan     uint64_t slpte;
6851da12ec4SLe Tan     uint64_t access_right_check;
6861da12ec4SLe Tan 
687f06a696dSPeter Xu     if (!vtd_iova_range_check(iova, ce)) {
6887feb51b7SPeter Xu         trace_vtd_err_dmar_iova_overflow(iova);
6891da12ec4SLe Tan         return -VTD_FR_ADDR_BEYOND_MGAW;
6901da12ec4SLe Tan     }
6911da12ec4SLe Tan 
6921da12ec4SLe Tan     /* FIXME: what is the Atomics request here? */
6931da12ec4SLe Tan     access_right_check = is_write ? VTD_SL_W : VTD_SL_R;
6941da12ec4SLe Tan 
6951da12ec4SLe Tan     while (true) {
6966e905564SPeter Xu         offset = vtd_iova_level_offset(iova, level);
6971da12ec4SLe Tan         slpte = vtd_get_slpte(addr, offset);
6981da12ec4SLe Tan 
6991da12ec4SLe Tan         if (slpte == (uint64_t)-1) {
7007feb51b7SPeter Xu             trace_vtd_err_dmar_slpte_read_error(iova, level);
7018f7d7161SPeter Xu             if (level == vtd_ce_get_level(ce)) {
7021da12ec4SLe Tan                 /* Invalid programming of context-entry */
7031da12ec4SLe Tan                 return -VTD_FR_CONTEXT_ENTRY_INV;
7041da12ec4SLe Tan             } else {
7051da12ec4SLe Tan                 return -VTD_FR_PAGING_ENTRY_INV;
7061da12ec4SLe Tan             }
7071da12ec4SLe Tan         }
7081da12ec4SLe Tan         *reads = (*reads) && (slpte & VTD_SL_R);
7091da12ec4SLe Tan         *writes = (*writes) && (slpte & VTD_SL_W);
7101da12ec4SLe Tan         if (!(slpte & access_right_check)) {
7117feb51b7SPeter Xu             trace_vtd_err_dmar_slpte_perm_error(iova, level, slpte, is_write);
7121da12ec4SLe Tan             return is_write ? -VTD_FR_WRITE : -VTD_FR_READ;
7131da12ec4SLe Tan         }
7141da12ec4SLe Tan         if (vtd_slpte_nonzero_rsvd(slpte, level)) {
7157feb51b7SPeter Xu             trace_vtd_err_dmar_slpte_resv_error(iova, level, slpte);
7161da12ec4SLe Tan             return -VTD_FR_PAGING_ENTRY_RSVD;
7171da12ec4SLe Tan         }
7181da12ec4SLe Tan 
7191da12ec4SLe Tan         if (vtd_is_last_slpte(slpte, level)) {
7201da12ec4SLe Tan             *slptep = slpte;
7211da12ec4SLe Tan             *slpte_level = level;
7221da12ec4SLe Tan             return 0;
7231da12ec4SLe Tan         }
7241da12ec4SLe Tan         addr = vtd_get_slpte_addr(slpte);
7251da12ec4SLe Tan         level--;
7261da12ec4SLe Tan     }
7271da12ec4SLe Tan }
7281da12ec4SLe Tan 
729f06a696dSPeter Xu typedef int (*vtd_page_walk_hook)(IOMMUTLBEntry *entry, void *private);
730f06a696dSPeter Xu 
731f06a696dSPeter Xu /**
732f06a696dSPeter Xu  * vtd_page_walk_level - walk over specific level for IOVA range
733f06a696dSPeter Xu  *
734f06a696dSPeter Xu  * @addr: base GPA addr to start the walk
735f06a696dSPeter Xu  * @start: IOVA range start address
736f06a696dSPeter Xu  * @end: IOVA range end address (start <= addr < end)
737f06a696dSPeter Xu  * @hook_fn: hook func to be called when detected page
738f06a696dSPeter Xu  * @private: private data to be passed into hook func
739f06a696dSPeter Xu  * @read: whether parent level has read permission
740f06a696dSPeter Xu  * @write: whether parent level has write permission
741f06a696dSPeter Xu  * @notify_unmap: whether we should notify invalid entries
742f06a696dSPeter Xu  */
743f06a696dSPeter Xu static int vtd_page_walk_level(dma_addr_t addr, uint64_t start,
744f06a696dSPeter Xu                                uint64_t end, vtd_page_walk_hook hook_fn,
745f06a696dSPeter Xu                                void *private, uint32_t level,
746f06a696dSPeter Xu                                bool read, bool write, bool notify_unmap)
747f06a696dSPeter Xu {
748f06a696dSPeter Xu     bool read_cur, write_cur, entry_valid;
749f06a696dSPeter Xu     uint32_t offset;
750f06a696dSPeter Xu     uint64_t slpte;
751f06a696dSPeter Xu     uint64_t subpage_size, subpage_mask;
752f06a696dSPeter Xu     IOMMUTLBEntry entry;
753f06a696dSPeter Xu     uint64_t iova = start;
754f06a696dSPeter Xu     uint64_t iova_next;
755f06a696dSPeter Xu     int ret = 0;
756f06a696dSPeter Xu 
757f06a696dSPeter Xu     trace_vtd_page_walk_level(addr, level, start, end);
758f06a696dSPeter Xu 
759f06a696dSPeter Xu     subpage_size = 1ULL << vtd_slpt_level_shift(level);
760f06a696dSPeter Xu     subpage_mask = vtd_slpt_level_page_mask(level);
761f06a696dSPeter Xu 
762f06a696dSPeter Xu     while (iova < end) {
763f06a696dSPeter Xu         iova_next = (iova & subpage_mask) + subpage_size;
764f06a696dSPeter Xu 
765f06a696dSPeter Xu         offset = vtd_iova_level_offset(iova, level);
766f06a696dSPeter Xu         slpte = vtd_get_slpte(addr, offset);
767f06a696dSPeter Xu 
768f06a696dSPeter Xu         if (slpte == (uint64_t)-1) {
769f06a696dSPeter Xu             trace_vtd_page_walk_skip_read(iova, iova_next);
770f06a696dSPeter Xu             goto next;
771f06a696dSPeter Xu         }
772f06a696dSPeter Xu 
773f06a696dSPeter Xu         if (vtd_slpte_nonzero_rsvd(slpte, level)) {
774f06a696dSPeter Xu             trace_vtd_page_walk_skip_reserve(iova, iova_next);
775f06a696dSPeter Xu             goto next;
776f06a696dSPeter Xu         }
777f06a696dSPeter Xu 
778f06a696dSPeter Xu         /* Permissions are stacked with parents' */
779f06a696dSPeter Xu         read_cur = read && (slpte & VTD_SL_R);
780f06a696dSPeter Xu         write_cur = write && (slpte & VTD_SL_W);
781f06a696dSPeter Xu 
782f06a696dSPeter Xu         /*
783f06a696dSPeter Xu          * As long as we have either read/write permission, this is a
784f06a696dSPeter Xu          * valid entry. The rule works for both page entries and page
785f06a696dSPeter Xu          * table entries.
786f06a696dSPeter Xu          */
787f06a696dSPeter Xu         entry_valid = read_cur | write_cur;
788f06a696dSPeter Xu 
789f06a696dSPeter Xu         if (vtd_is_last_slpte(slpte, level)) {
790f06a696dSPeter Xu             entry.target_as = &address_space_memory;
791f06a696dSPeter Xu             entry.iova = iova & subpage_mask;
792f06a696dSPeter Xu             /* NOTE: this is only meaningful if entry_valid == true */
793f06a696dSPeter Xu             entry.translated_addr = vtd_get_slpte_addr(slpte);
794f06a696dSPeter Xu             entry.addr_mask = ~subpage_mask;
795f06a696dSPeter Xu             entry.perm = IOMMU_ACCESS_FLAG(read_cur, write_cur);
796f06a696dSPeter Xu             if (!entry_valid && !notify_unmap) {
797f06a696dSPeter Xu                 trace_vtd_page_walk_skip_perm(iova, iova_next);
798f06a696dSPeter Xu                 goto next;
799f06a696dSPeter Xu             }
800f06a696dSPeter Xu             trace_vtd_page_walk_one(level, entry.iova, entry.translated_addr,
801f06a696dSPeter Xu                                     entry.addr_mask, entry.perm);
802f06a696dSPeter Xu             if (hook_fn) {
803f06a696dSPeter Xu                 ret = hook_fn(&entry, private);
804f06a696dSPeter Xu                 if (ret < 0) {
805f06a696dSPeter Xu                     return ret;
806f06a696dSPeter Xu                 }
807f06a696dSPeter Xu             }
808f06a696dSPeter Xu         } else {
809f06a696dSPeter Xu             if (!entry_valid) {
810f06a696dSPeter Xu                 trace_vtd_page_walk_skip_perm(iova, iova_next);
811f06a696dSPeter Xu                 goto next;
812f06a696dSPeter Xu             }
813f06a696dSPeter Xu             ret = vtd_page_walk_level(vtd_get_slpte_addr(slpte), iova,
814f06a696dSPeter Xu                                       MIN(iova_next, end), hook_fn, private,
815f06a696dSPeter Xu                                       level - 1, read_cur, write_cur,
816f06a696dSPeter Xu                                       notify_unmap);
817f06a696dSPeter Xu             if (ret < 0) {
818f06a696dSPeter Xu                 return ret;
819f06a696dSPeter Xu             }
820f06a696dSPeter Xu         }
821f06a696dSPeter Xu 
822f06a696dSPeter Xu next:
823f06a696dSPeter Xu         iova = iova_next;
824f06a696dSPeter Xu     }
825f06a696dSPeter Xu 
826f06a696dSPeter Xu     return 0;
827f06a696dSPeter Xu }
828f06a696dSPeter Xu 
829f06a696dSPeter Xu /**
830f06a696dSPeter Xu  * vtd_page_walk - walk specific IOVA range, and call the hook
831f06a696dSPeter Xu  *
832f06a696dSPeter Xu  * @ce: context entry to walk upon
833f06a696dSPeter Xu  * @start: IOVA address to start the walk
834f06a696dSPeter Xu  * @end: IOVA range end address (start <= addr < end)
835f06a696dSPeter Xu  * @hook_fn: the hook that to be called for each detected area
836f06a696dSPeter Xu  * @private: private data for the hook function
837f06a696dSPeter Xu  */
838f06a696dSPeter Xu static int vtd_page_walk(VTDContextEntry *ce, uint64_t start, uint64_t end,
839dd4d607eSPeter Xu                          vtd_page_walk_hook hook_fn, void *private,
840dd4d607eSPeter Xu                          bool notify_unmap)
841f06a696dSPeter Xu {
8428f7d7161SPeter Xu     dma_addr_t addr = vtd_ce_get_slpt_base(ce);
8438f7d7161SPeter Xu     uint32_t level = vtd_ce_get_level(ce);
844f06a696dSPeter Xu 
845f06a696dSPeter Xu     if (!vtd_iova_range_check(start, ce)) {
846f06a696dSPeter Xu         return -VTD_FR_ADDR_BEYOND_MGAW;
847f06a696dSPeter Xu     }
848f06a696dSPeter Xu 
849f06a696dSPeter Xu     if (!vtd_iova_range_check(end, ce)) {
850f06a696dSPeter Xu         /* Fix end so that it reaches the maximum */
851f06a696dSPeter Xu         end = vtd_iova_limit(ce);
852f06a696dSPeter Xu     }
853f06a696dSPeter Xu 
854f06a696dSPeter Xu     return vtd_page_walk_level(addr, start, end, hook_fn, private,
855dd4d607eSPeter Xu                                level, true, true, notify_unmap);
856f06a696dSPeter Xu }
857f06a696dSPeter Xu 
8581da12ec4SLe Tan /* Map a device to its corresponding domain (context-entry) */
8591da12ec4SLe Tan static int vtd_dev_to_context_entry(IntelIOMMUState *s, uint8_t bus_num,
8601da12ec4SLe Tan                                     uint8_t devfn, VTDContextEntry *ce)
8611da12ec4SLe Tan {
8621da12ec4SLe Tan     VTDRootEntry re;
8631da12ec4SLe Tan     int ret_fr;
864f80c9874SPeter Xu     X86IOMMUState *x86_iommu = X86_IOMMU_DEVICE(s);
8651da12ec4SLe Tan 
8661da12ec4SLe Tan     ret_fr = vtd_get_root_entry(s, bus_num, &re);
8671da12ec4SLe Tan     if (ret_fr) {
8681da12ec4SLe Tan         return ret_fr;
8691da12ec4SLe Tan     }
8701da12ec4SLe Tan 
8711da12ec4SLe Tan     if (!vtd_root_entry_present(&re)) {
8726c441e1dSPeter Xu         /* Not error - it's okay we don't have root entry. */
8736c441e1dSPeter Xu         trace_vtd_re_not_present(bus_num);
8741da12ec4SLe Tan         return -VTD_FR_ROOT_ENTRY_P;
875f80c9874SPeter Xu     }
876f80c9874SPeter Xu 
877f80c9874SPeter Xu     if (re.rsvd || (re.val & VTD_ROOT_ENTRY_RSVD)) {
8786c441e1dSPeter Xu         trace_vtd_re_invalid(re.rsvd, re.val);
8791da12ec4SLe Tan         return -VTD_FR_ROOT_ENTRY_RSVD;
8801da12ec4SLe Tan     }
8811da12ec4SLe Tan 
8821da12ec4SLe Tan     ret_fr = vtd_get_context_entry_from_root(&re, devfn, ce);
8831da12ec4SLe Tan     if (ret_fr) {
8841da12ec4SLe Tan         return ret_fr;
8851da12ec4SLe Tan     }
8861da12ec4SLe Tan 
8878f7d7161SPeter Xu     if (!vtd_ce_present(ce)) {
8886c441e1dSPeter Xu         /* Not error - it's okay we don't have context entry. */
8896c441e1dSPeter Xu         trace_vtd_ce_not_present(bus_num, devfn);
8901da12ec4SLe Tan         return -VTD_FR_CONTEXT_ENTRY_P;
891f80c9874SPeter Xu     }
892f80c9874SPeter Xu 
893f80c9874SPeter Xu     if ((ce->hi & VTD_CONTEXT_ENTRY_RSVD_HI) ||
8941da12ec4SLe Tan         (ce->lo & VTD_CONTEXT_ENTRY_RSVD_LO)) {
8956c441e1dSPeter Xu         trace_vtd_ce_invalid(ce->hi, ce->lo);
8961da12ec4SLe Tan         return -VTD_FR_CONTEXT_ENTRY_RSVD;
8971da12ec4SLe Tan     }
898f80c9874SPeter Xu 
8991da12ec4SLe Tan     /* Check if the programming of context-entry is valid */
9008f7d7161SPeter Xu     if (!vtd_is_level_supported(s, vtd_ce_get_level(ce))) {
9016c441e1dSPeter Xu         trace_vtd_ce_invalid(ce->hi, ce->lo);
9021da12ec4SLe Tan         return -VTD_FR_CONTEXT_ENTRY_INV;
903f80c9874SPeter Xu     }
904f80c9874SPeter Xu 
905f80c9874SPeter Xu     /* Do translation type check */
906f80c9874SPeter Xu     if (!vtd_ce_type_check(x86_iommu, ce)) {
9076c441e1dSPeter Xu         trace_vtd_ce_invalid(ce->hi, ce->lo);
9081da12ec4SLe Tan         return -VTD_FR_CONTEXT_ENTRY_INV;
9091da12ec4SLe Tan     }
910f80c9874SPeter Xu 
9111da12ec4SLe Tan     return 0;
9121da12ec4SLe Tan }
9131da12ec4SLe Tan 
914dbaabb25SPeter Xu /*
915dbaabb25SPeter Xu  * Fetch translation type for specific device. Returns <0 if error
916dbaabb25SPeter Xu  * happens, otherwise return the shifted type to check against
917dbaabb25SPeter Xu  * VTD_CONTEXT_TT_*.
918dbaabb25SPeter Xu  */
919dbaabb25SPeter Xu static int vtd_dev_get_trans_type(VTDAddressSpace *as)
920dbaabb25SPeter Xu {
921dbaabb25SPeter Xu     IntelIOMMUState *s;
922dbaabb25SPeter Xu     VTDContextEntry ce;
923dbaabb25SPeter Xu     int ret;
924dbaabb25SPeter Xu 
925dbaabb25SPeter Xu     s = as->iommu_state;
926dbaabb25SPeter Xu 
927dbaabb25SPeter Xu     ret = vtd_dev_to_context_entry(s, pci_bus_num(as->bus),
928dbaabb25SPeter Xu                                    as->devfn, &ce);
929dbaabb25SPeter Xu     if (ret) {
930dbaabb25SPeter Xu         return ret;
931dbaabb25SPeter Xu     }
932dbaabb25SPeter Xu 
933dbaabb25SPeter Xu     return vtd_ce_get_type(&ce);
934dbaabb25SPeter Xu }
935dbaabb25SPeter Xu 
936dbaabb25SPeter Xu static bool vtd_dev_pt_enabled(VTDAddressSpace *as)
937dbaabb25SPeter Xu {
938dbaabb25SPeter Xu     int ret;
939dbaabb25SPeter Xu 
940dbaabb25SPeter Xu     assert(as);
941dbaabb25SPeter Xu 
942dbaabb25SPeter Xu     ret = vtd_dev_get_trans_type(as);
943dbaabb25SPeter Xu     if (ret < 0) {
944dbaabb25SPeter Xu         /*
945dbaabb25SPeter Xu          * Possibly failed to parse the context entry for some reason
946dbaabb25SPeter Xu          * (e.g., during init, or any guest configuration errors on
947dbaabb25SPeter Xu          * context entries). We should assume PT not enabled for
948dbaabb25SPeter Xu          * safety.
949dbaabb25SPeter Xu          */
950dbaabb25SPeter Xu         return false;
951dbaabb25SPeter Xu     }
952dbaabb25SPeter Xu 
953dbaabb25SPeter Xu     return ret == VTD_CONTEXT_TT_PASS_THROUGH;
954dbaabb25SPeter Xu }
955dbaabb25SPeter Xu 
956dbaabb25SPeter Xu /* Return whether the device is using IOMMU translation. */
957dbaabb25SPeter Xu static bool vtd_switch_address_space(VTDAddressSpace *as)
958dbaabb25SPeter Xu {
959dbaabb25SPeter Xu     bool use_iommu;
96066a4a031SPeter Xu     /* Whether we need to take the BQL on our own */
96166a4a031SPeter Xu     bool take_bql = !qemu_mutex_iothread_locked();
962dbaabb25SPeter Xu 
963dbaabb25SPeter Xu     assert(as);
964dbaabb25SPeter Xu 
965dbaabb25SPeter Xu     use_iommu = as->iommu_state->dmar_enabled & !vtd_dev_pt_enabled(as);
966dbaabb25SPeter Xu 
967dbaabb25SPeter Xu     trace_vtd_switch_address_space(pci_bus_num(as->bus),
968dbaabb25SPeter Xu                                    VTD_PCI_SLOT(as->devfn),
969dbaabb25SPeter Xu                                    VTD_PCI_FUNC(as->devfn),
970dbaabb25SPeter Xu                                    use_iommu);
971dbaabb25SPeter Xu 
97266a4a031SPeter Xu     /*
97366a4a031SPeter Xu      * It's possible that we reach here without BQL, e.g., when called
97466a4a031SPeter Xu      * from vtd_pt_enable_fast_path(). However the memory APIs need
97566a4a031SPeter Xu      * it. We'd better make sure we have had it already, or, take it.
97666a4a031SPeter Xu      */
97766a4a031SPeter Xu     if (take_bql) {
97866a4a031SPeter Xu         qemu_mutex_lock_iothread();
97966a4a031SPeter Xu     }
98066a4a031SPeter Xu 
981dbaabb25SPeter Xu     /* Turn off first then on the other */
982dbaabb25SPeter Xu     if (use_iommu) {
983dbaabb25SPeter Xu         memory_region_set_enabled(&as->sys_alias, false);
9843df9d748SAlexey Kardashevskiy         memory_region_set_enabled(MEMORY_REGION(&as->iommu), true);
985dbaabb25SPeter Xu     } else {
9863df9d748SAlexey Kardashevskiy         memory_region_set_enabled(MEMORY_REGION(&as->iommu), false);
987dbaabb25SPeter Xu         memory_region_set_enabled(&as->sys_alias, true);
988dbaabb25SPeter Xu     }
989dbaabb25SPeter Xu 
99066a4a031SPeter Xu     if (take_bql) {
99166a4a031SPeter Xu         qemu_mutex_unlock_iothread();
99266a4a031SPeter Xu     }
99366a4a031SPeter Xu 
994dbaabb25SPeter Xu     return use_iommu;
995dbaabb25SPeter Xu }
996dbaabb25SPeter Xu 
997dbaabb25SPeter Xu static void vtd_switch_address_space_all(IntelIOMMUState *s)
998dbaabb25SPeter Xu {
999dbaabb25SPeter Xu     GHashTableIter iter;
1000dbaabb25SPeter Xu     VTDBus *vtd_bus;
1001dbaabb25SPeter Xu     int i;
1002dbaabb25SPeter Xu 
1003dbaabb25SPeter Xu     g_hash_table_iter_init(&iter, s->vtd_as_by_busptr);
1004dbaabb25SPeter Xu     while (g_hash_table_iter_next(&iter, NULL, (void **)&vtd_bus)) {
1005*bf33cc75SPeter Xu         for (i = 0; i < PCI_DEVFN_MAX; i++) {
1006dbaabb25SPeter Xu             if (!vtd_bus->dev_as[i]) {
1007dbaabb25SPeter Xu                 continue;
1008dbaabb25SPeter Xu             }
1009dbaabb25SPeter Xu             vtd_switch_address_space(vtd_bus->dev_as[i]);
1010dbaabb25SPeter Xu         }
1011dbaabb25SPeter Xu     }
1012dbaabb25SPeter Xu }
1013dbaabb25SPeter Xu 
10141da12ec4SLe Tan static inline uint16_t vtd_make_source_id(uint8_t bus_num, uint8_t devfn)
10151da12ec4SLe Tan {
10161da12ec4SLe Tan     return ((bus_num & 0xffUL) << 8) | (devfn & 0xffUL);
10171da12ec4SLe Tan }
10181da12ec4SLe Tan 
10191da12ec4SLe Tan static const bool vtd_qualified_faults[] = {
10201da12ec4SLe Tan     [VTD_FR_RESERVED] = false,
10211da12ec4SLe Tan     [VTD_FR_ROOT_ENTRY_P] = false,
10221da12ec4SLe Tan     [VTD_FR_CONTEXT_ENTRY_P] = true,
10231da12ec4SLe Tan     [VTD_FR_CONTEXT_ENTRY_INV] = true,
10241da12ec4SLe Tan     [VTD_FR_ADDR_BEYOND_MGAW] = true,
10251da12ec4SLe Tan     [VTD_FR_WRITE] = true,
10261da12ec4SLe Tan     [VTD_FR_READ] = true,
10271da12ec4SLe Tan     [VTD_FR_PAGING_ENTRY_INV] = true,
10281da12ec4SLe Tan     [VTD_FR_ROOT_TABLE_INV] = false,
10291da12ec4SLe Tan     [VTD_FR_CONTEXT_TABLE_INV] = false,
10301da12ec4SLe Tan     [VTD_FR_ROOT_ENTRY_RSVD] = false,
10311da12ec4SLe Tan     [VTD_FR_PAGING_ENTRY_RSVD] = true,
10321da12ec4SLe Tan     [VTD_FR_CONTEXT_ENTRY_TT] = true,
10331da12ec4SLe Tan     [VTD_FR_RESERVED_ERR] = false,
10341da12ec4SLe Tan     [VTD_FR_MAX] = false,
10351da12ec4SLe Tan };
10361da12ec4SLe Tan 
10371da12ec4SLe Tan /* To see if a fault condition is "qualified", which is reported to software
10381da12ec4SLe Tan  * only if the FPD field in the context-entry used to process the faulting
10391da12ec4SLe Tan  * request is 0.
10401da12ec4SLe Tan  */
10411da12ec4SLe Tan static inline bool vtd_is_qualified_fault(VTDFaultReason fault)
10421da12ec4SLe Tan {
10431da12ec4SLe Tan     return vtd_qualified_faults[fault];
10441da12ec4SLe Tan }
10451da12ec4SLe Tan 
10461da12ec4SLe Tan static inline bool vtd_is_interrupt_addr(hwaddr addr)
10471da12ec4SLe Tan {
10481da12ec4SLe Tan     return VTD_INTERRUPT_ADDR_FIRST <= addr && addr <= VTD_INTERRUPT_ADDR_LAST;
10491da12ec4SLe Tan }
10501da12ec4SLe Tan 
1051dbaabb25SPeter Xu static void vtd_pt_enable_fast_path(IntelIOMMUState *s, uint16_t source_id)
1052dbaabb25SPeter Xu {
1053dbaabb25SPeter Xu     VTDBus *vtd_bus;
1054dbaabb25SPeter Xu     VTDAddressSpace *vtd_as;
1055dbaabb25SPeter Xu     bool success = false;
1056dbaabb25SPeter Xu 
1057dbaabb25SPeter Xu     vtd_bus = vtd_find_as_from_bus_num(s, VTD_SID_TO_BUS(source_id));
1058dbaabb25SPeter Xu     if (!vtd_bus) {
1059dbaabb25SPeter Xu         goto out;
1060dbaabb25SPeter Xu     }
1061dbaabb25SPeter Xu 
1062dbaabb25SPeter Xu     vtd_as = vtd_bus->dev_as[VTD_SID_TO_DEVFN(source_id)];
1063dbaabb25SPeter Xu     if (!vtd_as) {
1064dbaabb25SPeter Xu         goto out;
1065dbaabb25SPeter Xu     }
1066dbaabb25SPeter Xu 
1067dbaabb25SPeter Xu     if (vtd_switch_address_space(vtd_as) == false) {
1068dbaabb25SPeter Xu         /* We switched off IOMMU region successfully. */
1069dbaabb25SPeter Xu         success = true;
1070dbaabb25SPeter Xu     }
1071dbaabb25SPeter Xu 
1072dbaabb25SPeter Xu out:
1073dbaabb25SPeter Xu     trace_vtd_pt_enable_fast_path(source_id, success);
1074dbaabb25SPeter Xu }
1075dbaabb25SPeter Xu 
10761da12ec4SLe Tan /* Map dev to context-entry then do a paging-structures walk to do a iommu
10771da12ec4SLe Tan  * translation.
107879e2b9aeSPaolo Bonzini  *
107979e2b9aeSPaolo Bonzini  * Called from RCU critical section.
108079e2b9aeSPaolo Bonzini  *
10811da12ec4SLe Tan  * @bus_num: The bus number
10821da12ec4SLe Tan  * @devfn: The devfn, which is the  combined of device and function number
10831da12ec4SLe Tan  * @is_write: The access is a write operation
10841da12ec4SLe Tan  * @entry: IOMMUTLBEntry that contain the addr to be translated and result
1085b9313021SPeter Xu  *
1086b9313021SPeter Xu  * Returns true if translation is successful, otherwise false.
10871da12ec4SLe Tan  */
1088b9313021SPeter Xu static bool vtd_do_iommu_translate(VTDAddressSpace *vtd_as, PCIBus *bus,
10891da12ec4SLe Tan                                    uint8_t devfn, hwaddr addr, bool is_write,
10901da12ec4SLe Tan                                    IOMMUTLBEntry *entry)
10911da12ec4SLe Tan {
1092d92fa2dcSLe Tan     IntelIOMMUState *s = vtd_as->iommu_state;
10931da12ec4SLe Tan     VTDContextEntry ce;
10947df953bdSKnut Omang     uint8_t bus_num = pci_bus_num(bus);
1095d92fa2dcSLe Tan     VTDContextCacheEntry *cc_entry = &vtd_as->context_cache_entry;
1096d66b969bSJason Wang     uint64_t slpte, page_mask;
10971da12ec4SLe Tan     uint32_t level;
10981da12ec4SLe Tan     uint16_t source_id = vtd_make_source_id(bus_num, devfn);
10991da12ec4SLe Tan     int ret_fr;
11001da12ec4SLe Tan     bool is_fpd_set = false;
11011da12ec4SLe Tan     bool reads = true;
11021da12ec4SLe Tan     bool writes = true;
110307f7b733SPeter Xu     uint8_t access_flags;
1104b5a280c0SLe Tan     VTDIOTLBEntry *iotlb_entry;
11051da12ec4SLe Tan 
1106046ab7e9SPeter Xu     /*
1107046ab7e9SPeter Xu      * We have standalone memory region for interrupt addresses, we
1108046ab7e9SPeter Xu      * should never receive translation requests in this region.
11091da12ec4SLe Tan      */
1110046ab7e9SPeter Xu     assert(!vtd_is_interrupt_addr(addr));
1111046ab7e9SPeter Xu 
1112b5a280c0SLe Tan     /* Try to fetch slpte form IOTLB */
1113b5a280c0SLe Tan     iotlb_entry = vtd_lookup_iotlb(s, source_id, addr);
1114b5a280c0SLe Tan     if (iotlb_entry) {
11156c441e1dSPeter Xu         trace_vtd_iotlb_page_hit(source_id, addr, iotlb_entry->slpte,
11166c441e1dSPeter Xu                                  iotlb_entry->domain_id);
1117b5a280c0SLe Tan         slpte = iotlb_entry->slpte;
111807f7b733SPeter Xu         access_flags = iotlb_entry->access_flags;
1119d66b969bSJason Wang         page_mask = iotlb_entry->mask;
1120b5a280c0SLe Tan         goto out;
1121b5a280c0SLe Tan     }
1122b9313021SPeter Xu 
1123d92fa2dcSLe Tan     /* Try to fetch context-entry from cache first */
1124d92fa2dcSLe Tan     if (cc_entry->context_cache_gen == s->context_cache_gen) {
11256c441e1dSPeter Xu         trace_vtd_iotlb_cc_hit(bus_num, devfn, cc_entry->context_entry.hi,
11266c441e1dSPeter Xu                                cc_entry->context_entry.lo,
11276c441e1dSPeter Xu                                cc_entry->context_cache_gen);
1128d92fa2dcSLe Tan         ce = cc_entry->context_entry;
1129d92fa2dcSLe Tan         is_fpd_set = ce.lo & VTD_CONTEXT_ENTRY_FPD;
1130d92fa2dcSLe Tan     } else {
11311da12ec4SLe Tan         ret_fr = vtd_dev_to_context_entry(s, bus_num, devfn, &ce);
11321da12ec4SLe Tan         is_fpd_set = ce.lo & VTD_CONTEXT_ENTRY_FPD;
11331da12ec4SLe Tan         if (ret_fr) {
11341da12ec4SLe Tan             ret_fr = -ret_fr;
11351da12ec4SLe Tan             if (is_fpd_set && vtd_is_qualified_fault(ret_fr)) {
11366c441e1dSPeter Xu                 trace_vtd_fault_disabled();
11371da12ec4SLe Tan             } else {
11381da12ec4SLe Tan                 vtd_report_dmar_fault(s, source_id, addr, ret_fr, is_write);
11391da12ec4SLe Tan             }
1140b9313021SPeter Xu             goto error;
11411da12ec4SLe Tan         }
1142d92fa2dcSLe Tan         /* Update context-cache */
11436c441e1dSPeter Xu         trace_vtd_iotlb_cc_update(bus_num, devfn, ce.hi, ce.lo,
11446c441e1dSPeter Xu                                   cc_entry->context_cache_gen,
11456c441e1dSPeter Xu                                   s->context_cache_gen);
1146d92fa2dcSLe Tan         cc_entry->context_entry = ce;
1147d92fa2dcSLe Tan         cc_entry->context_cache_gen = s->context_cache_gen;
1148d92fa2dcSLe Tan     }
11491da12ec4SLe Tan 
1150dbaabb25SPeter Xu     /*
1151dbaabb25SPeter Xu      * We don't need to translate for pass-through context entries.
1152dbaabb25SPeter Xu      * Also, let's ignore IOTLB caching as well for PT devices.
1153dbaabb25SPeter Xu      */
1154dbaabb25SPeter Xu     if (vtd_ce_get_type(&ce) == VTD_CONTEXT_TT_PASS_THROUGH) {
1155892721d9SPeter Xu         entry->iova = addr & VTD_PAGE_MASK_4K;
1156dbaabb25SPeter Xu         entry->translated_addr = entry->iova;
1157892721d9SPeter Xu         entry->addr_mask = ~VTD_PAGE_MASK_4K;
1158dbaabb25SPeter Xu         entry->perm = IOMMU_RW;
1159dbaabb25SPeter Xu         trace_vtd_translate_pt(source_id, entry->iova);
1160dbaabb25SPeter Xu 
1161dbaabb25SPeter Xu         /*
1162dbaabb25SPeter Xu          * When this happens, it means firstly caching-mode is not
1163dbaabb25SPeter Xu          * enabled, and this is the first passthrough translation for
1164dbaabb25SPeter Xu          * the device. Let's enable the fast path for passthrough.
1165dbaabb25SPeter Xu          *
1166dbaabb25SPeter Xu          * When passthrough is disabled again for the device, we can
1167dbaabb25SPeter Xu          * capture it via the context entry invalidation, then the
1168dbaabb25SPeter Xu          * IOMMU region can be swapped back.
1169dbaabb25SPeter Xu          */
1170dbaabb25SPeter Xu         vtd_pt_enable_fast_path(s, source_id);
1171dbaabb25SPeter Xu 
1172b9313021SPeter Xu         return true;
1173dbaabb25SPeter Xu     }
1174dbaabb25SPeter Xu 
11756e905564SPeter Xu     ret_fr = vtd_iova_to_slpte(&ce, addr, is_write, &slpte, &level,
11761da12ec4SLe Tan                                &reads, &writes);
11771da12ec4SLe Tan     if (ret_fr) {
11781da12ec4SLe Tan         ret_fr = -ret_fr;
11791da12ec4SLe Tan         if (is_fpd_set && vtd_is_qualified_fault(ret_fr)) {
11806c441e1dSPeter Xu             trace_vtd_fault_disabled();
11811da12ec4SLe Tan         } else {
11821da12ec4SLe Tan             vtd_report_dmar_fault(s, source_id, addr, ret_fr, is_write);
11831da12ec4SLe Tan         }
1184b9313021SPeter Xu         goto error;
11851da12ec4SLe Tan     }
11861da12ec4SLe Tan 
1187d66b969bSJason Wang     page_mask = vtd_slpt_level_page_mask(level);
118807f7b733SPeter Xu     access_flags = IOMMU_ACCESS_FLAG(reads, writes);
1189b5a280c0SLe Tan     vtd_update_iotlb(s, source_id, VTD_CONTEXT_ENTRY_DID(ce.hi), addr, slpte,
119007f7b733SPeter Xu                      access_flags, level);
1191b5a280c0SLe Tan out:
1192d66b969bSJason Wang     entry->iova = addr & page_mask;
1193d66b969bSJason Wang     entry->translated_addr = vtd_get_slpte_addr(slpte) & page_mask;
1194d66b969bSJason Wang     entry->addr_mask = ~page_mask;
119507f7b733SPeter Xu     entry->perm = access_flags;
1196b9313021SPeter Xu     return true;
1197b9313021SPeter Xu 
1198b9313021SPeter Xu error:
1199b9313021SPeter Xu     entry->iova = 0;
1200b9313021SPeter Xu     entry->translated_addr = 0;
1201b9313021SPeter Xu     entry->addr_mask = 0;
1202b9313021SPeter Xu     entry->perm = IOMMU_NONE;
1203b9313021SPeter Xu     return false;
12041da12ec4SLe Tan }
12051da12ec4SLe Tan 
12061da12ec4SLe Tan static void vtd_root_table_setup(IntelIOMMUState *s)
12071da12ec4SLe Tan {
12081da12ec4SLe Tan     s->root = vtd_get_quad_raw(s, DMAR_RTADDR_REG);
12091da12ec4SLe Tan     s->root_extended = s->root & VTD_RTADDR_RTT;
12101da12ec4SLe Tan     s->root &= VTD_RTADDR_ADDR_MASK;
12111da12ec4SLe Tan 
12127feb51b7SPeter Xu     trace_vtd_reg_dmar_root(s->root, s->root_extended);
12131da12ec4SLe Tan }
12141da12ec4SLe Tan 
121502a2cbc8SPeter Xu static void vtd_iec_notify_all(IntelIOMMUState *s, bool global,
121602a2cbc8SPeter Xu                                uint32_t index, uint32_t mask)
121702a2cbc8SPeter Xu {
121802a2cbc8SPeter Xu     x86_iommu_iec_notify_all(X86_IOMMU_DEVICE(s), global, index, mask);
121902a2cbc8SPeter Xu }
122002a2cbc8SPeter Xu 
1221a5861439SPeter Xu static void vtd_interrupt_remap_table_setup(IntelIOMMUState *s)
1222a5861439SPeter Xu {
1223a5861439SPeter Xu     uint64_t value = 0;
1224a5861439SPeter Xu     value = vtd_get_quad_raw(s, DMAR_IRTA_REG);
1225a5861439SPeter Xu     s->intr_size = 1UL << ((value & VTD_IRTA_SIZE_MASK) + 1);
1226a5861439SPeter Xu     s->intr_root = value & VTD_IRTA_ADDR_MASK;
122728589311SJan Kiszka     s->intr_eime = value & VTD_IRTA_EIME;
1228a5861439SPeter Xu 
122902a2cbc8SPeter Xu     /* Notify global invalidation */
123002a2cbc8SPeter Xu     vtd_iec_notify_all(s, true, 0, 0);
1231a5861439SPeter Xu 
12327feb51b7SPeter Xu     trace_vtd_reg_ir_root(s->intr_root, s->intr_size);
1233a5861439SPeter Xu }
1234a5861439SPeter Xu 
1235dd4d607eSPeter Xu static void vtd_iommu_replay_all(IntelIOMMUState *s)
1236dd4d607eSPeter Xu {
1237dd4d607eSPeter Xu     IntelIOMMUNotifierNode *node;
1238dd4d607eSPeter Xu 
1239dd4d607eSPeter Xu     QLIST_FOREACH(node, &s->notifiers_list, next) {
1240dd4d607eSPeter Xu         memory_region_iommu_replay_all(&node->vtd_as->iommu);
1241dd4d607eSPeter Xu     }
1242dd4d607eSPeter Xu }
1243dd4d607eSPeter Xu 
1244d92fa2dcSLe Tan static void vtd_context_global_invalidate(IntelIOMMUState *s)
1245d92fa2dcSLe Tan {
1246bc535e59SPeter Xu     trace_vtd_inv_desc_cc_global();
1247d92fa2dcSLe Tan     s->context_cache_gen++;
1248d92fa2dcSLe Tan     if (s->context_cache_gen == VTD_CONTEXT_CACHE_GEN_MAX) {
1249d92fa2dcSLe Tan         vtd_reset_context_cache(s);
1250d92fa2dcSLe Tan     }
1251dbaabb25SPeter Xu     vtd_switch_address_space_all(s);
1252dd4d607eSPeter Xu     /*
1253dd4d607eSPeter Xu      * From VT-d spec 6.5.2.1, a global context entry invalidation
1254dd4d607eSPeter Xu      * should be followed by a IOTLB global invalidation, so we should
1255dd4d607eSPeter Xu      * be safe even without this. Hoewever, let's replay the region as
1256dd4d607eSPeter Xu      * well to be safer, and go back here when we need finer tunes for
1257dd4d607eSPeter Xu      * VT-d emulation codes.
1258dd4d607eSPeter Xu      */
1259dd4d607eSPeter Xu     vtd_iommu_replay_all(s);
1260d92fa2dcSLe Tan }
1261d92fa2dcSLe Tan 
1262d92fa2dcSLe Tan /* Do a context-cache device-selective invalidation.
1263d92fa2dcSLe Tan  * @func_mask: FM field after shifting
1264d92fa2dcSLe Tan  */
1265d92fa2dcSLe Tan static void vtd_context_device_invalidate(IntelIOMMUState *s,
1266d92fa2dcSLe Tan                                           uint16_t source_id,
1267d92fa2dcSLe Tan                                           uint16_t func_mask)
1268d92fa2dcSLe Tan {
1269d92fa2dcSLe Tan     uint16_t mask;
12707df953bdSKnut Omang     VTDBus *vtd_bus;
1271d92fa2dcSLe Tan     VTDAddressSpace *vtd_as;
1272bc535e59SPeter Xu     uint8_t bus_n, devfn;
1273d92fa2dcSLe Tan     uint16_t devfn_it;
1274d92fa2dcSLe Tan 
1275bc535e59SPeter Xu     trace_vtd_inv_desc_cc_devices(source_id, func_mask);
1276bc535e59SPeter Xu 
1277d92fa2dcSLe Tan     switch (func_mask & 3) {
1278d92fa2dcSLe Tan     case 0:
1279d92fa2dcSLe Tan         mask = 0;   /* No bits in the SID field masked */
1280d92fa2dcSLe Tan         break;
1281d92fa2dcSLe Tan     case 1:
1282d92fa2dcSLe Tan         mask = 4;   /* Mask bit 2 in the SID field */
1283d92fa2dcSLe Tan         break;
1284d92fa2dcSLe Tan     case 2:
1285d92fa2dcSLe Tan         mask = 6;   /* Mask bit 2:1 in the SID field */
1286d92fa2dcSLe Tan         break;
1287d92fa2dcSLe Tan     case 3:
1288d92fa2dcSLe Tan         mask = 7;   /* Mask bit 2:0 in the SID field */
1289d92fa2dcSLe Tan         break;
1290d92fa2dcSLe Tan     }
12916cb99accSPeter Xu     mask = ~mask;
1292bc535e59SPeter Xu 
1293bc535e59SPeter Xu     bus_n = VTD_SID_TO_BUS(source_id);
1294bc535e59SPeter Xu     vtd_bus = vtd_find_as_from_bus_num(s, bus_n);
12957df953bdSKnut Omang     if (vtd_bus) {
1296d92fa2dcSLe Tan         devfn = VTD_SID_TO_DEVFN(source_id);
1297*bf33cc75SPeter Xu         for (devfn_it = 0; devfn_it < PCI_DEVFN_MAX; ++devfn_it) {
12987df953bdSKnut Omang             vtd_as = vtd_bus->dev_as[devfn_it];
1299d92fa2dcSLe Tan             if (vtd_as && ((devfn_it & mask) == (devfn & mask))) {
1300bc535e59SPeter Xu                 trace_vtd_inv_desc_cc_device(bus_n, VTD_PCI_SLOT(devfn_it),
1301bc535e59SPeter Xu                                              VTD_PCI_FUNC(devfn_it));
1302d92fa2dcSLe Tan                 vtd_as->context_cache_entry.context_cache_gen = 0;
1303dd4d607eSPeter Xu                 /*
1304dbaabb25SPeter Xu                  * Do switch address space when needed, in case if the
1305dbaabb25SPeter Xu                  * device passthrough bit is switched.
1306dbaabb25SPeter Xu                  */
1307dbaabb25SPeter Xu                 vtd_switch_address_space(vtd_as);
1308dbaabb25SPeter Xu                 /*
1309dd4d607eSPeter Xu                  * So a device is moving out of (or moving into) a
1310dd4d607eSPeter Xu                  * domain, a replay() suites here to notify all the
1311dd4d607eSPeter Xu                  * IOMMU_NOTIFIER_MAP registers about this change.
1312dd4d607eSPeter Xu                  * This won't bring bad even if we have no such
1313dd4d607eSPeter Xu                  * notifier registered - the IOMMU notification
1314dd4d607eSPeter Xu                  * framework will skip MAP notifications if that
1315dd4d607eSPeter Xu                  * happened.
1316dd4d607eSPeter Xu                  */
1317dd4d607eSPeter Xu                 memory_region_iommu_replay_all(&vtd_as->iommu);
1318d92fa2dcSLe Tan             }
1319d92fa2dcSLe Tan         }
1320d92fa2dcSLe Tan     }
1321d92fa2dcSLe Tan }
1322d92fa2dcSLe Tan 
13231da12ec4SLe Tan /* Context-cache invalidation
13241da12ec4SLe Tan  * Returns the Context Actual Invalidation Granularity.
13251da12ec4SLe Tan  * @val: the content of the CCMD_REG
13261da12ec4SLe Tan  */
13271da12ec4SLe Tan static uint64_t vtd_context_cache_invalidate(IntelIOMMUState *s, uint64_t val)
13281da12ec4SLe Tan {
13291da12ec4SLe Tan     uint64_t caig;
13301da12ec4SLe Tan     uint64_t type = val & VTD_CCMD_CIRG_MASK;
13311da12ec4SLe Tan 
13321da12ec4SLe Tan     switch (type) {
13331da12ec4SLe Tan     case VTD_CCMD_DOMAIN_INVL:
1334d92fa2dcSLe Tan         /* Fall through */
1335d92fa2dcSLe Tan     case VTD_CCMD_GLOBAL_INVL:
1336d92fa2dcSLe Tan         caig = VTD_CCMD_GLOBAL_INVL_A;
1337d92fa2dcSLe Tan         vtd_context_global_invalidate(s);
13381da12ec4SLe Tan         break;
13391da12ec4SLe Tan 
13401da12ec4SLe Tan     case VTD_CCMD_DEVICE_INVL:
13411da12ec4SLe Tan         caig = VTD_CCMD_DEVICE_INVL_A;
1342d92fa2dcSLe Tan         vtd_context_device_invalidate(s, VTD_CCMD_SID(val), VTD_CCMD_FM(val));
13431da12ec4SLe Tan         break;
13441da12ec4SLe Tan 
13451da12ec4SLe Tan     default:
13467feb51b7SPeter Xu         trace_vtd_err("Context cache invalidate type error.");
13471da12ec4SLe Tan         caig = 0;
13481da12ec4SLe Tan     }
13491da12ec4SLe Tan     return caig;
13501da12ec4SLe Tan }
13511da12ec4SLe Tan 
1352b5a280c0SLe Tan static void vtd_iotlb_global_invalidate(IntelIOMMUState *s)
1353b5a280c0SLe Tan {
13547feb51b7SPeter Xu     trace_vtd_inv_desc_iotlb_global();
1355b5a280c0SLe Tan     vtd_reset_iotlb(s);
1356dd4d607eSPeter Xu     vtd_iommu_replay_all(s);
1357b5a280c0SLe Tan }
1358b5a280c0SLe Tan 
1359b5a280c0SLe Tan static void vtd_iotlb_domain_invalidate(IntelIOMMUState *s, uint16_t domain_id)
1360b5a280c0SLe Tan {
1361dd4d607eSPeter Xu     IntelIOMMUNotifierNode *node;
1362dd4d607eSPeter Xu     VTDContextEntry ce;
1363dd4d607eSPeter Xu     VTDAddressSpace *vtd_as;
1364dd4d607eSPeter Xu 
13657feb51b7SPeter Xu     trace_vtd_inv_desc_iotlb_domain(domain_id);
13667feb51b7SPeter Xu 
1367b5a280c0SLe Tan     g_hash_table_foreach_remove(s->iotlb, vtd_hash_remove_by_domain,
1368b5a280c0SLe Tan                                 &domain_id);
1369dd4d607eSPeter Xu 
1370dd4d607eSPeter Xu     QLIST_FOREACH(node, &s->notifiers_list, next) {
1371dd4d607eSPeter Xu         vtd_as = node->vtd_as;
1372dd4d607eSPeter Xu         if (!vtd_dev_to_context_entry(s, pci_bus_num(vtd_as->bus),
1373dd4d607eSPeter Xu                                       vtd_as->devfn, &ce) &&
1374dd4d607eSPeter Xu             domain_id == VTD_CONTEXT_ENTRY_DID(ce.hi)) {
1375dd4d607eSPeter Xu             memory_region_iommu_replay_all(&vtd_as->iommu);
1376dd4d607eSPeter Xu         }
1377dd4d607eSPeter Xu     }
1378dd4d607eSPeter Xu }
1379dd4d607eSPeter Xu 
1380dd4d607eSPeter Xu static int vtd_page_invalidate_notify_hook(IOMMUTLBEntry *entry,
1381dd4d607eSPeter Xu                                            void *private)
1382dd4d607eSPeter Xu {
13833df9d748SAlexey Kardashevskiy     memory_region_notify_iommu((IOMMUMemoryRegion *)private, *entry);
1384dd4d607eSPeter Xu     return 0;
1385dd4d607eSPeter Xu }
1386dd4d607eSPeter Xu 
1387dd4d607eSPeter Xu static void vtd_iotlb_page_invalidate_notify(IntelIOMMUState *s,
1388dd4d607eSPeter Xu                                            uint16_t domain_id, hwaddr addr,
1389dd4d607eSPeter Xu                                            uint8_t am)
1390dd4d607eSPeter Xu {
1391dd4d607eSPeter Xu     IntelIOMMUNotifierNode *node;
1392dd4d607eSPeter Xu     VTDContextEntry ce;
1393dd4d607eSPeter Xu     int ret;
1394dd4d607eSPeter Xu 
1395dd4d607eSPeter Xu     QLIST_FOREACH(node, &(s->notifiers_list), next) {
1396dd4d607eSPeter Xu         VTDAddressSpace *vtd_as = node->vtd_as;
1397dd4d607eSPeter Xu         ret = vtd_dev_to_context_entry(s, pci_bus_num(vtd_as->bus),
1398dd4d607eSPeter Xu                                        vtd_as->devfn, &ce);
1399dd4d607eSPeter Xu         if (!ret && domain_id == VTD_CONTEXT_ENTRY_DID(ce.hi)) {
1400dd4d607eSPeter Xu             vtd_page_walk(&ce, addr, addr + (1 << am) * VTD_PAGE_SIZE,
1401dd4d607eSPeter Xu                           vtd_page_invalidate_notify_hook,
1402dd4d607eSPeter Xu                           (void *)&vtd_as->iommu, true);
1403dd4d607eSPeter Xu         }
1404dd4d607eSPeter Xu     }
1405b5a280c0SLe Tan }
1406b5a280c0SLe Tan 
1407b5a280c0SLe Tan static void vtd_iotlb_page_invalidate(IntelIOMMUState *s, uint16_t domain_id,
1408b5a280c0SLe Tan                                       hwaddr addr, uint8_t am)
1409b5a280c0SLe Tan {
1410b5a280c0SLe Tan     VTDIOTLBPageInvInfo info;
1411b5a280c0SLe Tan 
14127feb51b7SPeter Xu     trace_vtd_inv_desc_iotlb_pages(domain_id, addr, am);
14137feb51b7SPeter Xu 
1414b5a280c0SLe Tan     assert(am <= VTD_MAMV);
1415b5a280c0SLe Tan     info.domain_id = domain_id;
1416d66b969bSJason Wang     info.addr = addr;
1417b5a280c0SLe Tan     info.mask = ~((1 << am) - 1);
1418b5a280c0SLe Tan     g_hash_table_foreach_remove(s->iotlb, vtd_hash_remove_by_page, &info);
1419dd4d607eSPeter Xu     vtd_iotlb_page_invalidate_notify(s, domain_id, addr, am);
1420b5a280c0SLe Tan }
1421b5a280c0SLe Tan 
14221da12ec4SLe Tan /* Flush IOTLB
14231da12ec4SLe Tan  * Returns the IOTLB Actual Invalidation Granularity.
14241da12ec4SLe Tan  * @val: the content of the IOTLB_REG
14251da12ec4SLe Tan  */
14261da12ec4SLe Tan static uint64_t vtd_iotlb_flush(IntelIOMMUState *s, uint64_t val)
14271da12ec4SLe Tan {
14281da12ec4SLe Tan     uint64_t iaig;
14291da12ec4SLe Tan     uint64_t type = val & VTD_TLB_FLUSH_GRANU_MASK;
1430b5a280c0SLe Tan     uint16_t domain_id;
1431b5a280c0SLe Tan     hwaddr addr;
1432b5a280c0SLe Tan     uint8_t am;
14331da12ec4SLe Tan 
14341da12ec4SLe Tan     switch (type) {
14351da12ec4SLe Tan     case VTD_TLB_GLOBAL_FLUSH:
14361da12ec4SLe Tan         iaig = VTD_TLB_GLOBAL_FLUSH_A;
1437b5a280c0SLe Tan         vtd_iotlb_global_invalidate(s);
14381da12ec4SLe Tan         break;
14391da12ec4SLe Tan 
14401da12ec4SLe Tan     case VTD_TLB_DSI_FLUSH:
1441b5a280c0SLe Tan         domain_id = VTD_TLB_DID(val);
14421da12ec4SLe Tan         iaig = VTD_TLB_DSI_FLUSH_A;
1443b5a280c0SLe Tan         vtd_iotlb_domain_invalidate(s, domain_id);
14441da12ec4SLe Tan         break;
14451da12ec4SLe Tan 
14461da12ec4SLe Tan     case VTD_TLB_PSI_FLUSH:
1447b5a280c0SLe Tan         domain_id = VTD_TLB_DID(val);
1448b5a280c0SLe Tan         addr = vtd_get_quad_raw(s, DMAR_IVA_REG);
1449b5a280c0SLe Tan         am = VTD_IVA_AM(addr);
1450b5a280c0SLe Tan         addr = VTD_IVA_ADDR(addr);
1451b5a280c0SLe Tan         if (am > VTD_MAMV) {
14527feb51b7SPeter Xu             trace_vtd_err("IOTLB PSI flush: address mask overflow.");
1453b5a280c0SLe Tan             iaig = 0;
1454b5a280c0SLe Tan             break;
1455b5a280c0SLe Tan         }
14561da12ec4SLe Tan         iaig = VTD_TLB_PSI_FLUSH_A;
1457b5a280c0SLe Tan         vtd_iotlb_page_invalidate(s, domain_id, addr, am);
14581da12ec4SLe Tan         break;
14591da12ec4SLe Tan 
14601da12ec4SLe Tan     default:
14617feb51b7SPeter Xu         trace_vtd_err("IOTLB flush: invalid granularity.");
14621da12ec4SLe Tan         iaig = 0;
14631da12ec4SLe Tan     }
14641da12ec4SLe Tan     return iaig;
14651da12ec4SLe Tan }
14661da12ec4SLe Tan 
14678991c460SLadi Prosek static void vtd_fetch_inv_desc(IntelIOMMUState *s);
1468ed7b8fbcSLe Tan 
1469ed7b8fbcSLe Tan static inline bool vtd_queued_inv_disable_check(IntelIOMMUState *s)
1470ed7b8fbcSLe Tan {
1471ed7b8fbcSLe Tan     return s->qi_enabled && (s->iq_tail == s->iq_head) &&
1472ed7b8fbcSLe Tan            (s->iq_last_desc_type == VTD_INV_DESC_WAIT);
1473ed7b8fbcSLe Tan }
1474ed7b8fbcSLe Tan 
1475ed7b8fbcSLe Tan static void vtd_handle_gcmd_qie(IntelIOMMUState *s, bool en)
1476ed7b8fbcSLe Tan {
1477ed7b8fbcSLe Tan     uint64_t iqa_val = vtd_get_quad_raw(s, DMAR_IQA_REG);
1478ed7b8fbcSLe Tan 
14797feb51b7SPeter Xu     trace_vtd_inv_qi_enable(en);
14807feb51b7SPeter Xu 
1481ed7b8fbcSLe Tan     if (en) {
1482ed7b8fbcSLe Tan         s->iq = iqa_val & VTD_IQA_IQA_MASK;
1483ed7b8fbcSLe Tan         /* 2^(x+8) entries */
1484ed7b8fbcSLe Tan         s->iq_size = 1UL << ((iqa_val & VTD_IQA_QS) + 8);
1485ed7b8fbcSLe Tan         s->qi_enabled = true;
14867feb51b7SPeter Xu         trace_vtd_inv_qi_setup(s->iq, s->iq_size);
1487ed7b8fbcSLe Tan         /* Ok - report back to driver */
1488ed7b8fbcSLe Tan         vtd_set_clear_mask_long(s, DMAR_GSTS_REG, 0, VTD_GSTS_QIES);
14898991c460SLadi Prosek 
14908991c460SLadi Prosek         if (s->iq_tail != 0) {
14918991c460SLadi Prosek             /*
14928991c460SLadi Prosek              * This is a spec violation but Windows guests are known to set up
14938991c460SLadi Prosek              * Queued Invalidation this way so we allow the write and process
14948991c460SLadi Prosek              * Invalidation Descriptors right away.
14958991c460SLadi Prosek              */
14968991c460SLadi Prosek             trace_vtd_warn_invalid_qi_tail(s->iq_tail);
14978991c460SLadi Prosek             if (!(vtd_get_long_raw(s, DMAR_FSTS_REG) & VTD_FSTS_IQE)) {
14988991c460SLadi Prosek                 vtd_fetch_inv_desc(s);
14998991c460SLadi Prosek             }
1500ed7b8fbcSLe Tan         }
1501ed7b8fbcSLe Tan     } else {
1502ed7b8fbcSLe Tan         if (vtd_queued_inv_disable_check(s)) {
1503ed7b8fbcSLe Tan             /* disable Queued Invalidation */
1504ed7b8fbcSLe Tan             vtd_set_quad_raw(s, DMAR_IQH_REG, 0);
1505ed7b8fbcSLe Tan             s->iq_head = 0;
1506ed7b8fbcSLe Tan             s->qi_enabled = false;
1507ed7b8fbcSLe Tan             /* Ok - report back to driver */
1508ed7b8fbcSLe Tan             vtd_set_clear_mask_long(s, DMAR_GSTS_REG, VTD_GSTS_QIES, 0);
1509ed7b8fbcSLe Tan         } else {
15107feb51b7SPeter Xu             trace_vtd_err_qi_disable(s->iq_head, s->iq_tail, s->iq_last_desc_type);
1511ed7b8fbcSLe Tan         }
1512ed7b8fbcSLe Tan     }
1513ed7b8fbcSLe Tan }
1514ed7b8fbcSLe Tan 
15151da12ec4SLe Tan /* Set Root Table Pointer */
15161da12ec4SLe Tan static void vtd_handle_gcmd_srtp(IntelIOMMUState *s)
15171da12ec4SLe Tan {
15181da12ec4SLe Tan     vtd_root_table_setup(s);
15191da12ec4SLe Tan     /* Ok - report back to driver */
15201da12ec4SLe Tan     vtd_set_clear_mask_long(s, DMAR_GSTS_REG, 0, VTD_GSTS_RTPS);
15211da12ec4SLe Tan }
15221da12ec4SLe Tan 
1523a5861439SPeter Xu /* Set Interrupt Remap Table Pointer */
1524a5861439SPeter Xu static void vtd_handle_gcmd_sirtp(IntelIOMMUState *s)
1525a5861439SPeter Xu {
1526a5861439SPeter Xu     vtd_interrupt_remap_table_setup(s);
1527a5861439SPeter Xu     /* Ok - report back to driver */
1528a5861439SPeter Xu     vtd_set_clear_mask_long(s, DMAR_GSTS_REG, 0, VTD_GSTS_IRTPS);
1529a5861439SPeter Xu }
1530a5861439SPeter Xu 
15311da12ec4SLe Tan /* Handle Translation Enable/Disable */
15321da12ec4SLe Tan static void vtd_handle_gcmd_te(IntelIOMMUState *s, bool en)
15331da12ec4SLe Tan {
1534558e0024SPeter Xu     if (s->dmar_enabled == en) {
1535558e0024SPeter Xu         return;
1536558e0024SPeter Xu     }
1537558e0024SPeter Xu 
15387feb51b7SPeter Xu     trace_vtd_dmar_enable(en);
15391da12ec4SLe Tan 
15401da12ec4SLe Tan     if (en) {
15411da12ec4SLe Tan         s->dmar_enabled = true;
15421da12ec4SLe Tan         /* Ok - report back to driver */
15431da12ec4SLe Tan         vtd_set_clear_mask_long(s, DMAR_GSTS_REG, 0, VTD_GSTS_TES);
15441da12ec4SLe Tan     } else {
15451da12ec4SLe Tan         s->dmar_enabled = false;
15461da12ec4SLe Tan 
15471da12ec4SLe Tan         /* Clear the index of Fault Recording Register */
15481da12ec4SLe Tan         s->next_frcd_reg = 0;
15491da12ec4SLe Tan         /* Ok - report back to driver */
15501da12ec4SLe Tan         vtd_set_clear_mask_long(s, DMAR_GSTS_REG, VTD_GSTS_TES, 0);
15511da12ec4SLe Tan     }
1552558e0024SPeter Xu 
1553558e0024SPeter Xu     vtd_switch_address_space_all(s);
15541da12ec4SLe Tan }
15551da12ec4SLe Tan 
155680de52baSPeter Xu /* Handle Interrupt Remap Enable/Disable */
155780de52baSPeter Xu static void vtd_handle_gcmd_ire(IntelIOMMUState *s, bool en)
155880de52baSPeter Xu {
15597feb51b7SPeter Xu     trace_vtd_ir_enable(en);
156080de52baSPeter Xu 
156180de52baSPeter Xu     if (en) {
156280de52baSPeter Xu         s->intr_enabled = true;
156380de52baSPeter Xu         /* Ok - report back to driver */
156480de52baSPeter Xu         vtd_set_clear_mask_long(s, DMAR_GSTS_REG, 0, VTD_GSTS_IRES);
156580de52baSPeter Xu     } else {
156680de52baSPeter Xu         s->intr_enabled = false;
156780de52baSPeter Xu         /* Ok - report back to driver */
156880de52baSPeter Xu         vtd_set_clear_mask_long(s, DMAR_GSTS_REG, VTD_GSTS_IRES, 0);
156980de52baSPeter Xu     }
157080de52baSPeter Xu }
157180de52baSPeter Xu 
15721da12ec4SLe Tan /* Handle write to Global Command Register */
15731da12ec4SLe Tan static void vtd_handle_gcmd_write(IntelIOMMUState *s)
15741da12ec4SLe Tan {
15751da12ec4SLe Tan     uint32_t status = vtd_get_long_raw(s, DMAR_GSTS_REG);
15761da12ec4SLe Tan     uint32_t val = vtd_get_long_raw(s, DMAR_GCMD_REG);
15771da12ec4SLe Tan     uint32_t changed = status ^ val;
15781da12ec4SLe Tan 
15797feb51b7SPeter Xu     trace_vtd_reg_write_gcmd(status, val);
15801da12ec4SLe Tan     if (changed & VTD_GCMD_TE) {
15811da12ec4SLe Tan         /* Translation enable/disable */
15821da12ec4SLe Tan         vtd_handle_gcmd_te(s, val & VTD_GCMD_TE);
15831da12ec4SLe Tan     }
15841da12ec4SLe Tan     if (val & VTD_GCMD_SRTP) {
15851da12ec4SLe Tan         /* Set/update the root-table pointer */
15861da12ec4SLe Tan         vtd_handle_gcmd_srtp(s);
15871da12ec4SLe Tan     }
1588ed7b8fbcSLe Tan     if (changed & VTD_GCMD_QIE) {
1589ed7b8fbcSLe Tan         /* Queued Invalidation Enable */
1590ed7b8fbcSLe Tan         vtd_handle_gcmd_qie(s, val & VTD_GCMD_QIE);
1591ed7b8fbcSLe Tan     }
1592a5861439SPeter Xu     if (val & VTD_GCMD_SIRTP) {
1593a5861439SPeter Xu         /* Set/update the interrupt remapping root-table pointer */
1594a5861439SPeter Xu         vtd_handle_gcmd_sirtp(s);
1595a5861439SPeter Xu     }
159680de52baSPeter Xu     if (changed & VTD_GCMD_IRE) {
159780de52baSPeter Xu         /* Interrupt remap enable/disable */
159880de52baSPeter Xu         vtd_handle_gcmd_ire(s, val & VTD_GCMD_IRE);
159980de52baSPeter Xu     }
16001da12ec4SLe Tan }
16011da12ec4SLe Tan 
16021da12ec4SLe Tan /* Handle write to Context Command Register */
16031da12ec4SLe Tan static void vtd_handle_ccmd_write(IntelIOMMUState *s)
16041da12ec4SLe Tan {
16051da12ec4SLe Tan     uint64_t ret;
16061da12ec4SLe Tan     uint64_t val = vtd_get_quad_raw(s, DMAR_CCMD_REG);
16071da12ec4SLe Tan 
16081da12ec4SLe Tan     /* Context-cache invalidation request */
16091da12ec4SLe Tan     if (val & VTD_CCMD_ICC) {
1610ed7b8fbcSLe Tan         if (s->qi_enabled) {
16117feb51b7SPeter Xu             trace_vtd_err("Queued Invalidation enabled, "
1612ed7b8fbcSLe Tan                           "should not use register-based invalidation");
1613ed7b8fbcSLe Tan             return;
1614ed7b8fbcSLe Tan         }
16151da12ec4SLe Tan         ret = vtd_context_cache_invalidate(s, val);
16161da12ec4SLe Tan         /* Invalidation completed. Change something to show */
16171da12ec4SLe Tan         vtd_set_clear_mask_quad(s, DMAR_CCMD_REG, VTD_CCMD_ICC, 0ULL);
16181da12ec4SLe Tan         ret = vtd_set_clear_mask_quad(s, DMAR_CCMD_REG, VTD_CCMD_CAIG_MASK,
16191da12ec4SLe Tan                                       ret);
16201da12ec4SLe Tan     }
16211da12ec4SLe Tan }
16221da12ec4SLe Tan 
16231da12ec4SLe Tan /* Handle write to IOTLB Invalidation Register */
16241da12ec4SLe Tan static void vtd_handle_iotlb_write(IntelIOMMUState *s)
16251da12ec4SLe Tan {
16261da12ec4SLe Tan     uint64_t ret;
16271da12ec4SLe Tan     uint64_t val = vtd_get_quad_raw(s, DMAR_IOTLB_REG);
16281da12ec4SLe Tan 
16291da12ec4SLe Tan     /* IOTLB invalidation request */
16301da12ec4SLe Tan     if (val & VTD_TLB_IVT) {
1631ed7b8fbcSLe Tan         if (s->qi_enabled) {
16327feb51b7SPeter Xu             trace_vtd_err("Queued Invalidation enabled, "
16337feb51b7SPeter Xu                           "should not use register-based invalidation.");
1634ed7b8fbcSLe Tan             return;
1635ed7b8fbcSLe Tan         }
16361da12ec4SLe Tan         ret = vtd_iotlb_flush(s, val);
16371da12ec4SLe Tan         /* Invalidation completed. Change something to show */
16381da12ec4SLe Tan         vtd_set_clear_mask_quad(s, DMAR_IOTLB_REG, VTD_TLB_IVT, 0ULL);
16391da12ec4SLe Tan         ret = vtd_set_clear_mask_quad(s, DMAR_IOTLB_REG,
16401da12ec4SLe Tan                                       VTD_TLB_FLUSH_GRANU_MASK_A, ret);
16411da12ec4SLe Tan     }
16421da12ec4SLe Tan }
16431da12ec4SLe Tan 
1644ed7b8fbcSLe Tan /* Fetch an Invalidation Descriptor from the Invalidation Queue */
1645ed7b8fbcSLe Tan static bool vtd_get_inv_desc(dma_addr_t base_addr, uint32_t offset,
1646ed7b8fbcSLe Tan                              VTDInvDesc *inv_desc)
1647ed7b8fbcSLe Tan {
1648ed7b8fbcSLe Tan     dma_addr_t addr = base_addr + offset * sizeof(*inv_desc);
1649ed7b8fbcSLe Tan     if (dma_memory_read(&address_space_memory, addr, inv_desc,
1650ed7b8fbcSLe Tan         sizeof(*inv_desc))) {
16517feb51b7SPeter Xu         trace_vtd_err("Read INV DESC failed.");
1652ed7b8fbcSLe Tan         inv_desc->lo = 0;
1653ed7b8fbcSLe Tan         inv_desc->hi = 0;
1654ed7b8fbcSLe Tan         return false;
1655ed7b8fbcSLe Tan     }
1656ed7b8fbcSLe Tan     inv_desc->lo = le64_to_cpu(inv_desc->lo);
1657ed7b8fbcSLe Tan     inv_desc->hi = le64_to_cpu(inv_desc->hi);
1658ed7b8fbcSLe Tan     return true;
1659ed7b8fbcSLe Tan }
1660ed7b8fbcSLe Tan 
1661ed7b8fbcSLe Tan static bool vtd_process_wait_desc(IntelIOMMUState *s, VTDInvDesc *inv_desc)
1662ed7b8fbcSLe Tan {
1663ed7b8fbcSLe Tan     if ((inv_desc->hi & VTD_INV_DESC_WAIT_RSVD_HI) ||
1664ed7b8fbcSLe Tan         (inv_desc->lo & VTD_INV_DESC_WAIT_RSVD_LO)) {
1665bc535e59SPeter Xu         trace_vtd_inv_desc_wait_invalid(inv_desc->hi, inv_desc->lo);
1666ed7b8fbcSLe Tan         return false;
1667ed7b8fbcSLe Tan     }
1668ed7b8fbcSLe Tan     if (inv_desc->lo & VTD_INV_DESC_WAIT_SW) {
1669ed7b8fbcSLe Tan         /* Status Write */
1670ed7b8fbcSLe Tan         uint32_t status_data = (uint32_t)(inv_desc->lo >>
1671ed7b8fbcSLe Tan                                VTD_INV_DESC_WAIT_DATA_SHIFT);
1672ed7b8fbcSLe Tan 
1673ed7b8fbcSLe Tan         assert(!(inv_desc->lo & VTD_INV_DESC_WAIT_IF));
1674ed7b8fbcSLe Tan 
1675ed7b8fbcSLe Tan         /* FIXME: need to be masked with HAW? */
1676ed7b8fbcSLe Tan         dma_addr_t status_addr = inv_desc->hi;
1677bc535e59SPeter Xu         trace_vtd_inv_desc_wait_sw(status_addr, status_data);
1678ed7b8fbcSLe Tan         status_data = cpu_to_le32(status_data);
1679ed7b8fbcSLe Tan         if (dma_memory_write(&address_space_memory, status_addr, &status_data,
1680ed7b8fbcSLe Tan                              sizeof(status_data))) {
1681bc535e59SPeter Xu             trace_vtd_inv_desc_wait_write_fail(inv_desc->hi, inv_desc->lo);
1682ed7b8fbcSLe Tan             return false;
1683ed7b8fbcSLe Tan         }
1684ed7b8fbcSLe Tan     } else if (inv_desc->lo & VTD_INV_DESC_WAIT_IF) {
1685ed7b8fbcSLe Tan         /* Interrupt flag */
1686ed7b8fbcSLe Tan         vtd_generate_completion_event(s);
1687ed7b8fbcSLe Tan     } else {
1688bc535e59SPeter Xu         trace_vtd_inv_desc_wait_invalid(inv_desc->hi, inv_desc->lo);
1689ed7b8fbcSLe Tan         return false;
1690ed7b8fbcSLe Tan     }
1691ed7b8fbcSLe Tan     return true;
1692ed7b8fbcSLe Tan }
1693ed7b8fbcSLe Tan 
1694d92fa2dcSLe Tan static bool vtd_process_context_cache_desc(IntelIOMMUState *s,
1695d92fa2dcSLe Tan                                            VTDInvDesc *inv_desc)
1696d92fa2dcSLe Tan {
1697bc535e59SPeter Xu     uint16_t sid, fmask;
1698bc535e59SPeter Xu 
1699d92fa2dcSLe Tan     if ((inv_desc->lo & VTD_INV_DESC_CC_RSVD) || inv_desc->hi) {
1700bc535e59SPeter Xu         trace_vtd_inv_desc_cc_invalid(inv_desc->hi, inv_desc->lo);
1701d92fa2dcSLe Tan         return false;
1702d92fa2dcSLe Tan     }
1703d92fa2dcSLe Tan     switch (inv_desc->lo & VTD_INV_DESC_CC_G) {
1704d92fa2dcSLe Tan     case VTD_INV_DESC_CC_DOMAIN:
1705bc535e59SPeter Xu         trace_vtd_inv_desc_cc_domain(
1706d92fa2dcSLe Tan             (uint16_t)VTD_INV_DESC_CC_DID(inv_desc->lo));
1707d92fa2dcSLe Tan         /* Fall through */
1708d92fa2dcSLe Tan     case VTD_INV_DESC_CC_GLOBAL:
1709d92fa2dcSLe Tan         vtd_context_global_invalidate(s);
1710d92fa2dcSLe Tan         break;
1711d92fa2dcSLe Tan 
1712d92fa2dcSLe Tan     case VTD_INV_DESC_CC_DEVICE:
1713bc535e59SPeter Xu         sid = VTD_INV_DESC_CC_SID(inv_desc->lo);
1714bc535e59SPeter Xu         fmask = VTD_INV_DESC_CC_FM(inv_desc->lo);
1715bc535e59SPeter Xu         vtd_context_device_invalidate(s, sid, fmask);
1716d92fa2dcSLe Tan         break;
1717d92fa2dcSLe Tan 
1718d92fa2dcSLe Tan     default:
1719bc535e59SPeter Xu         trace_vtd_inv_desc_cc_invalid(inv_desc->hi, inv_desc->lo);
1720d92fa2dcSLe Tan         return false;
1721d92fa2dcSLe Tan     }
1722d92fa2dcSLe Tan     return true;
1723d92fa2dcSLe Tan }
1724d92fa2dcSLe Tan 
1725b5a280c0SLe Tan static bool vtd_process_iotlb_desc(IntelIOMMUState *s, VTDInvDesc *inv_desc)
1726b5a280c0SLe Tan {
1727b5a280c0SLe Tan     uint16_t domain_id;
1728b5a280c0SLe Tan     uint8_t am;
1729b5a280c0SLe Tan     hwaddr addr;
1730b5a280c0SLe Tan 
1731b5a280c0SLe Tan     if ((inv_desc->lo & VTD_INV_DESC_IOTLB_RSVD_LO) ||
1732b5a280c0SLe Tan         (inv_desc->hi & VTD_INV_DESC_IOTLB_RSVD_HI)) {
1733bc535e59SPeter Xu         trace_vtd_inv_desc_iotlb_invalid(inv_desc->hi, inv_desc->lo);
1734b5a280c0SLe Tan         return false;
1735b5a280c0SLe Tan     }
1736b5a280c0SLe Tan 
1737b5a280c0SLe Tan     switch (inv_desc->lo & VTD_INV_DESC_IOTLB_G) {
1738b5a280c0SLe Tan     case VTD_INV_DESC_IOTLB_GLOBAL:
1739b5a280c0SLe Tan         vtd_iotlb_global_invalidate(s);
1740b5a280c0SLe Tan         break;
1741b5a280c0SLe Tan 
1742b5a280c0SLe Tan     case VTD_INV_DESC_IOTLB_DOMAIN:
1743b5a280c0SLe Tan         domain_id = VTD_INV_DESC_IOTLB_DID(inv_desc->lo);
1744b5a280c0SLe Tan         vtd_iotlb_domain_invalidate(s, domain_id);
1745b5a280c0SLe Tan         break;
1746b5a280c0SLe Tan 
1747b5a280c0SLe Tan     case VTD_INV_DESC_IOTLB_PAGE:
1748b5a280c0SLe Tan         domain_id = VTD_INV_DESC_IOTLB_DID(inv_desc->lo);
1749b5a280c0SLe Tan         addr = VTD_INV_DESC_IOTLB_ADDR(inv_desc->hi);
1750b5a280c0SLe Tan         am = VTD_INV_DESC_IOTLB_AM(inv_desc->hi);
1751b5a280c0SLe Tan         if (am > VTD_MAMV) {
1752bc535e59SPeter Xu             trace_vtd_inv_desc_iotlb_invalid(inv_desc->hi, inv_desc->lo);
1753b5a280c0SLe Tan             return false;
1754b5a280c0SLe Tan         }
1755b5a280c0SLe Tan         vtd_iotlb_page_invalidate(s, domain_id, addr, am);
1756b5a280c0SLe Tan         break;
1757b5a280c0SLe Tan 
1758b5a280c0SLe Tan     default:
1759bc535e59SPeter Xu         trace_vtd_inv_desc_iotlb_invalid(inv_desc->hi, inv_desc->lo);
1760b5a280c0SLe Tan         return false;
1761b5a280c0SLe Tan     }
1762b5a280c0SLe Tan     return true;
1763b5a280c0SLe Tan }
1764b5a280c0SLe Tan 
176502a2cbc8SPeter Xu static bool vtd_process_inv_iec_desc(IntelIOMMUState *s,
176602a2cbc8SPeter Xu                                      VTDInvDesc *inv_desc)
176702a2cbc8SPeter Xu {
17687feb51b7SPeter Xu     trace_vtd_inv_desc_iec(inv_desc->iec.granularity,
176902a2cbc8SPeter Xu                            inv_desc->iec.index,
177002a2cbc8SPeter Xu                            inv_desc->iec.index_mask);
177102a2cbc8SPeter Xu 
177202a2cbc8SPeter Xu     vtd_iec_notify_all(s, !inv_desc->iec.granularity,
177302a2cbc8SPeter Xu                        inv_desc->iec.index,
177402a2cbc8SPeter Xu                        inv_desc->iec.index_mask);
1775554f5e16SJason Wang     return true;
1776554f5e16SJason Wang }
177702a2cbc8SPeter Xu 
1778554f5e16SJason Wang static bool vtd_process_device_iotlb_desc(IntelIOMMUState *s,
1779554f5e16SJason Wang                                           VTDInvDesc *inv_desc)
1780554f5e16SJason Wang {
1781554f5e16SJason Wang     VTDAddressSpace *vtd_dev_as;
1782554f5e16SJason Wang     IOMMUTLBEntry entry;
1783554f5e16SJason Wang     struct VTDBus *vtd_bus;
1784554f5e16SJason Wang     hwaddr addr;
1785554f5e16SJason Wang     uint64_t sz;
1786554f5e16SJason Wang     uint16_t sid;
1787554f5e16SJason Wang     uint8_t devfn;
1788554f5e16SJason Wang     bool size;
1789554f5e16SJason Wang     uint8_t bus_num;
1790554f5e16SJason Wang 
1791554f5e16SJason Wang     addr = VTD_INV_DESC_DEVICE_IOTLB_ADDR(inv_desc->hi);
1792554f5e16SJason Wang     sid = VTD_INV_DESC_DEVICE_IOTLB_SID(inv_desc->lo);
1793554f5e16SJason Wang     devfn = sid & 0xff;
1794554f5e16SJason Wang     bus_num = sid >> 8;
1795554f5e16SJason Wang     size = VTD_INV_DESC_DEVICE_IOTLB_SIZE(inv_desc->hi);
1796554f5e16SJason Wang 
1797554f5e16SJason Wang     if ((inv_desc->lo & VTD_INV_DESC_DEVICE_IOTLB_RSVD_LO) ||
1798554f5e16SJason Wang         (inv_desc->hi & VTD_INV_DESC_DEVICE_IOTLB_RSVD_HI)) {
17997feb51b7SPeter Xu         trace_vtd_inv_desc_iotlb_invalid(inv_desc->hi, inv_desc->lo);
1800554f5e16SJason Wang         return false;
1801554f5e16SJason Wang     }
1802554f5e16SJason Wang 
1803554f5e16SJason Wang     vtd_bus = vtd_find_as_from_bus_num(s, bus_num);
1804554f5e16SJason Wang     if (!vtd_bus) {
1805554f5e16SJason Wang         goto done;
1806554f5e16SJason Wang     }
1807554f5e16SJason Wang 
1808554f5e16SJason Wang     vtd_dev_as = vtd_bus->dev_as[devfn];
1809554f5e16SJason Wang     if (!vtd_dev_as) {
1810554f5e16SJason Wang         goto done;
1811554f5e16SJason Wang     }
1812554f5e16SJason Wang 
181304eb6247SJason Wang     /* According to ATS spec table 2.4:
181404eb6247SJason Wang      * S = 0, bits 15:12 = xxxx     range size: 4K
181504eb6247SJason Wang      * S = 1, bits 15:12 = xxx0     range size: 8K
181604eb6247SJason Wang      * S = 1, bits 15:12 = xx01     range size: 16K
181704eb6247SJason Wang      * S = 1, bits 15:12 = x011     range size: 32K
181804eb6247SJason Wang      * S = 1, bits 15:12 = 0111     range size: 64K
181904eb6247SJason Wang      * ...
182004eb6247SJason Wang      */
1821554f5e16SJason Wang     if (size) {
182204eb6247SJason Wang         sz = (VTD_PAGE_SIZE * 2) << cto64(addr >> VTD_PAGE_SHIFT);
1823554f5e16SJason Wang         addr &= ~(sz - 1);
1824554f5e16SJason Wang     } else {
1825554f5e16SJason Wang         sz = VTD_PAGE_SIZE;
1826554f5e16SJason Wang     }
1827554f5e16SJason Wang 
1828554f5e16SJason Wang     entry.target_as = &vtd_dev_as->as;
1829554f5e16SJason Wang     entry.addr_mask = sz - 1;
1830554f5e16SJason Wang     entry.iova = addr;
1831554f5e16SJason Wang     entry.perm = IOMMU_NONE;
1832554f5e16SJason Wang     entry.translated_addr = 0;
183310315b9bSJason Wang     memory_region_notify_iommu(&vtd_dev_as->iommu, entry);
1834554f5e16SJason Wang 
1835554f5e16SJason Wang done:
183602a2cbc8SPeter Xu     return true;
183702a2cbc8SPeter Xu }
183802a2cbc8SPeter Xu 
1839ed7b8fbcSLe Tan static bool vtd_process_inv_desc(IntelIOMMUState *s)
1840ed7b8fbcSLe Tan {
1841ed7b8fbcSLe Tan     VTDInvDesc inv_desc;
1842ed7b8fbcSLe Tan     uint8_t desc_type;
1843ed7b8fbcSLe Tan 
18447feb51b7SPeter Xu     trace_vtd_inv_qi_head(s->iq_head);
1845ed7b8fbcSLe Tan     if (!vtd_get_inv_desc(s->iq, s->iq_head, &inv_desc)) {
1846ed7b8fbcSLe Tan         s->iq_last_desc_type = VTD_INV_DESC_NONE;
1847ed7b8fbcSLe Tan         return false;
1848ed7b8fbcSLe Tan     }
1849ed7b8fbcSLe Tan     desc_type = inv_desc.lo & VTD_INV_DESC_TYPE;
1850ed7b8fbcSLe Tan     /* FIXME: should update at first or at last? */
1851ed7b8fbcSLe Tan     s->iq_last_desc_type = desc_type;
1852ed7b8fbcSLe Tan 
1853ed7b8fbcSLe Tan     switch (desc_type) {
1854ed7b8fbcSLe Tan     case VTD_INV_DESC_CC:
1855bc535e59SPeter Xu         trace_vtd_inv_desc("context-cache", inv_desc.hi, inv_desc.lo);
1856d92fa2dcSLe Tan         if (!vtd_process_context_cache_desc(s, &inv_desc)) {
1857d92fa2dcSLe Tan             return false;
1858d92fa2dcSLe Tan         }
1859ed7b8fbcSLe Tan         break;
1860ed7b8fbcSLe Tan 
1861ed7b8fbcSLe Tan     case VTD_INV_DESC_IOTLB:
1862bc535e59SPeter Xu         trace_vtd_inv_desc("iotlb", inv_desc.hi, inv_desc.lo);
1863b5a280c0SLe Tan         if (!vtd_process_iotlb_desc(s, &inv_desc)) {
1864b5a280c0SLe Tan             return false;
1865b5a280c0SLe Tan         }
1866ed7b8fbcSLe Tan         break;
1867ed7b8fbcSLe Tan 
1868ed7b8fbcSLe Tan     case VTD_INV_DESC_WAIT:
1869bc535e59SPeter Xu         trace_vtd_inv_desc("wait", inv_desc.hi, inv_desc.lo);
1870ed7b8fbcSLe Tan         if (!vtd_process_wait_desc(s, &inv_desc)) {
1871ed7b8fbcSLe Tan             return false;
1872ed7b8fbcSLe Tan         }
1873ed7b8fbcSLe Tan         break;
1874ed7b8fbcSLe Tan 
1875b7910472SPeter Xu     case VTD_INV_DESC_IEC:
1876bc535e59SPeter Xu         trace_vtd_inv_desc("iec", inv_desc.hi, inv_desc.lo);
187702a2cbc8SPeter Xu         if (!vtd_process_inv_iec_desc(s, &inv_desc)) {
187802a2cbc8SPeter Xu             return false;
187902a2cbc8SPeter Xu         }
1880b7910472SPeter Xu         break;
1881b7910472SPeter Xu 
1882554f5e16SJason Wang     case VTD_INV_DESC_DEVICE:
18837feb51b7SPeter Xu         trace_vtd_inv_desc("device", inv_desc.hi, inv_desc.lo);
1884554f5e16SJason Wang         if (!vtd_process_device_iotlb_desc(s, &inv_desc)) {
1885554f5e16SJason Wang             return false;
1886554f5e16SJason Wang         }
1887554f5e16SJason Wang         break;
1888554f5e16SJason Wang 
1889ed7b8fbcSLe Tan     default:
1890bc535e59SPeter Xu         trace_vtd_inv_desc_invalid(inv_desc.hi, inv_desc.lo);
1891ed7b8fbcSLe Tan         return false;
1892ed7b8fbcSLe Tan     }
1893ed7b8fbcSLe Tan     s->iq_head++;
1894ed7b8fbcSLe Tan     if (s->iq_head == s->iq_size) {
1895ed7b8fbcSLe Tan         s->iq_head = 0;
1896ed7b8fbcSLe Tan     }
1897ed7b8fbcSLe Tan     return true;
1898ed7b8fbcSLe Tan }
1899ed7b8fbcSLe Tan 
1900ed7b8fbcSLe Tan /* Try to fetch and process more Invalidation Descriptors */
1901ed7b8fbcSLe Tan static void vtd_fetch_inv_desc(IntelIOMMUState *s)
1902ed7b8fbcSLe Tan {
19037feb51b7SPeter Xu     trace_vtd_inv_qi_fetch();
19047feb51b7SPeter Xu 
1905ed7b8fbcSLe Tan     if (s->iq_tail >= s->iq_size) {
1906ed7b8fbcSLe Tan         /* Detects an invalid Tail pointer */
19077feb51b7SPeter Xu         trace_vtd_err_qi_tail(s->iq_tail, s->iq_size);
1908ed7b8fbcSLe Tan         vtd_handle_inv_queue_error(s);
1909ed7b8fbcSLe Tan         return;
1910ed7b8fbcSLe Tan     }
1911ed7b8fbcSLe Tan     while (s->iq_head != s->iq_tail) {
1912ed7b8fbcSLe Tan         if (!vtd_process_inv_desc(s)) {
1913ed7b8fbcSLe Tan             /* Invalidation Queue Errors */
1914ed7b8fbcSLe Tan             vtd_handle_inv_queue_error(s);
1915ed7b8fbcSLe Tan             break;
1916ed7b8fbcSLe Tan         }
1917ed7b8fbcSLe Tan         /* Must update the IQH_REG in time */
1918ed7b8fbcSLe Tan         vtd_set_quad_raw(s, DMAR_IQH_REG,
1919ed7b8fbcSLe Tan                          (((uint64_t)(s->iq_head)) << VTD_IQH_QH_SHIFT) &
1920ed7b8fbcSLe Tan                          VTD_IQH_QH_MASK);
1921ed7b8fbcSLe Tan     }
1922ed7b8fbcSLe Tan }
1923ed7b8fbcSLe Tan 
1924ed7b8fbcSLe Tan /* Handle write to Invalidation Queue Tail Register */
1925ed7b8fbcSLe Tan static void vtd_handle_iqt_write(IntelIOMMUState *s)
1926ed7b8fbcSLe Tan {
1927ed7b8fbcSLe Tan     uint64_t val = vtd_get_quad_raw(s, DMAR_IQT_REG);
1928ed7b8fbcSLe Tan 
1929ed7b8fbcSLe Tan     s->iq_tail = VTD_IQT_QT(val);
19307feb51b7SPeter Xu     trace_vtd_inv_qi_tail(s->iq_tail);
19317feb51b7SPeter Xu 
1932ed7b8fbcSLe Tan     if (s->qi_enabled && !(vtd_get_long_raw(s, DMAR_FSTS_REG) & VTD_FSTS_IQE)) {
1933ed7b8fbcSLe Tan         /* Process Invalidation Queue here */
1934ed7b8fbcSLe Tan         vtd_fetch_inv_desc(s);
1935ed7b8fbcSLe Tan     }
1936ed7b8fbcSLe Tan }
1937ed7b8fbcSLe Tan 
19381da12ec4SLe Tan static void vtd_handle_fsts_write(IntelIOMMUState *s)
19391da12ec4SLe Tan {
19401da12ec4SLe Tan     uint32_t fsts_reg = vtd_get_long_raw(s, DMAR_FSTS_REG);
19411da12ec4SLe Tan     uint32_t fectl_reg = vtd_get_long_raw(s, DMAR_FECTL_REG);
19421da12ec4SLe Tan     uint32_t status_fields = VTD_FSTS_PFO | VTD_FSTS_PPF | VTD_FSTS_IQE;
19431da12ec4SLe Tan 
19441da12ec4SLe Tan     if ((fectl_reg & VTD_FECTL_IP) && !(fsts_reg & status_fields)) {
19451da12ec4SLe Tan         vtd_set_clear_mask_long(s, DMAR_FECTL_REG, VTD_FECTL_IP, 0);
19467feb51b7SPeter Xu         trace_vtd_fsts_clear_ip();
19471da12ec4SLe Tan     }
1948ed7b8fbcSLe Tan     /* FIXME: when IQE is Clear, should we try to fetch some Invalidation
1949ed7b8fbcSLe Tan      * Descriptors if there are any when Queued Invalidation is enabled?
1950ed7b8fbcSLe Tan      */
19511da12ec4SLe Tan }
19521da12ec4SLe Tan 
19531da12ec4SLe Tan static void vtd_handle_fectl_write(IntelIOMMUState *s)
19541da12ec4SLe Tan {
19551da12ec4SLe Tan     uint32_t fectl_reg;
19561da12ec4SLe Tan     /* FIXME: when software clears the IM field, check the IP field. But do we
19571da12ec4SLe Tan      * need to compare the old value and the new value to conclude that
19581da12ec4SLe Tan      * software clears the IM field? Or just check if the IM field is zero?
19591da12ec4SLe Tan      */
19601da12ec4SLe Tan     fectl_reg = vtd_get_long_raw(s, DMAR_FECTL_REG);
19617feb51b7SPeter Xu 
19627feb51b7SPeter Xu     trace_vtd_reg_write_fectl(fectl_reg);
19637feb51b7SPeter Xu 
19641da12ec4SLe Tan     if ((fectl_reg & VTD_FECTL_IP) && !(fectl_reg & VTD_FECTL_IM)) {
19651da12ec4SLe Tan         vtd_generate_interrupt(s, DMAR_FEADDR_REG, DMAR_FEDATA_REG);
19661da12ec4SLe Tan         vtd_set_clear_mask_long(s, DMAR_FECTL_REG, VTD_FECTL_IP, 0);
19671da12ec4SLe Tan     }
19681da12ec4SLe Tan }
19691da12ec4SLe Tan 
1970ed7b8fbcSLe Tan static void vtd_handle_ics_write(IntelIOMMUState *s)
1971ed7b8fbcSLe Tan {
1972ed7b8fbcSLe Tan     uint32_t ics_reg = vtd_get_long_raw(s, DMAR_ICS_REG);
1973ed7b8fbcSLe Tan     uint32_t iectl_reg = vtd_get_long_raw(s, DMAR_IECTL_REG);
1974ed7b8fbcSLe Tan 
1975ed7b8fbcSLe Tan     if ((iectl_reg & VTD_IECTL_IP) && !(ics_reg & VTD_ICS_IWC)) {
19767feb51b7SPeter Xu         trace_vtd_reg_ics_clear_ip();
1977ed7b8fbcSLe Tan         vtd_set_clear_mask_long(s, DMAR_IECTL_REG, VTD_IECTL_IP, 0);
1978ed7b8fbcSLe Tan     }
1979ed7b8fbcSLe Tan }
1980ed7b8fbcSLe Tan 
1981ed7b8fbcSLe Tan static void vtd_handle_iectl_write(IntelIOMMUState *s)
1982ed7b8fbcSLe Tan {
1983ed7b8fbcSLe Tan     uint32_t iectl_reg;
1984ed7b8fbcSLe Tan     /* FIXME: when software clears the IM field, check the IP field. But do we
1985ed7b8fbcSLe Tan      * need to compare the old value and the new value to conclude that
1986ed7b8fbcSLe Tan      * software clears the IM field? Or just check if the IM field is zero?
1987ed7b8fbcSLe Tan      */
1988ed7b8fbcSLe Tan     iectl_reg = vtd_get_long_raw(s, DMAR_IECTL_REG);
19897feb51b7SPeter Xu 
19907feb51b7SPeter Xu     trace_vtd_reg_write_iectl(iectl_reg);
19917feb51b7SPeter Xu 
1992ed7b8fbcSLe Tan     if ((iectl_reg & VTD_IECTL_IP) && !(iectl_reg & VTD_IECTL_IM)) {
1993ed7b8fbcSLe Tan         vtd_generate_interrupt(s, DMAR_IEADDR_REG, DMAR_IEDATA_REG);
1994ed7b8fbcSLe Tan         vtd_set_clear_mask_long(s, DMAR_IECTL_REG, VTD_IECTL_IP, 0);
1995ed7b8fbcSLe Tan     }
1996ed7b8fbcSLe Tan }
1997ed7b8fbcSLe Tan 
19981da12ec4SLe Tan static uint64_t vtd_mem_read(void *opaque, hwaddr addr, unsigned size)
19991da12ec4SLe Tan {
20001da12ec4SLe Tan     IntelIOMMUState *s = opaque;
20011da12ec4SLe Tan     uint64_t val;
20021da12ec4SLe Tan 
20037feb51b7SPeter Xu     trace_vtd_reg_read(addr, size);
20047feb51b7SPeter Xu 
20051da12ec4SLe Tan     if (addr + size > DMAR_REG_SIZE) {
20067feb51b7SPeter Xu         trace_vtd_err("Read MMIO over range.");
20071da12ec4SLe Tan         return (uint64_t)-1;
20081da12ec4SLe Tan     }
20091da12ec4SLe Tan 
20101da12ec4SLe Tan     switch (addr) {
20111da12ec4SLe Tan     /* Root Table Address Register, 64-bit */
20121da12ec4SLe Tan     case DMAR_RTADDR_REG:
20131da12ec4SLe Tan         if (size == 4) {
20141da12ec4SLe Tan             val = s->root & ((1ULL << 32) - 1);
20151da12ec4SLe Tan         } else {
20161da12ec4SLe Tan             val = s->root;
20171da12ec4SLe Tan         }
20181da12ec4SLe Tan         break;
20191da12ec4SLe Tan 
20201da12ec4SLe Tan     case DMAR_RTADDR_REG_HI:
20211da12ec4SLe Tan         assert(size == 4);
20221da12ec4SLe Tan         val = s->root >> 32;
20231da12ec4SLe Tan         break;
20241da12ec4SLe Tan 
2025ed7b8fbcSLe Tan     /* Invalidation Queue Address Register, 64-bit */
2026ed7b8fbcSLe Tan     case DMAR_IQA_REG:
2027ed7b8fbcSLe Tan         val = s->iq | (vtd_get_quad(s, DMAR_IQA_REG) & VTD_IQA_QS);
2028ed7b8fbcSLe Tan         if (size == 4) {
2029ed7b8fbcSLe Tan             val = val & ((1ULL << 32) - 1);
2030ed7b8fbcSLe Tan         }
2031ed7b8fbcSLe Tan         break;
2032ed7b8fbcSLe Tan 
2033ed7b8fbcSLe Tan     case DMAR_IQA_REG_HI:
2034ed7b8fbcSLe Tan         assert(size == 4);
2035ed7b8fbcSLe Tan         val = s->iq >> 32;
2036ed7b8fbcSLe Tan         break;
2037ed7b8fbcSLe Tan 
20381da12ec4SLe Tan     default:
20391da12ec4SLe Tan         if (size == 4) {
20401da12ec4SLe Tan             val = vtd_get_long(s, addr);
20411da12ec4SLe Tan         } else {
20421da12ec4SLe Tan             val = vtd_get_quad(s, addr);
20431da12ec4SLe Tan         }
20441da12ec4SLe Tan     }
20457feb51b7SPeter Xu 
20461da12ec4SLe Tan     return val;
20471da12ec4SLe Tan }
20481da12ec4SLe Tan 
20491da12ec4SLe Tan static void vtd_mem_write(void *opaque, hwaddr addr,
20501da12ec4SLe Tan                           uint64_t val, unsigned size)
20511da12ec4SLe Tan {
20521da12ec4SLe Tan     IntelIOMMUState *s = opaque;
20531da12ec4SLe Tan 
20547feb51b7SPeter Xu     trace_vtd_reg_write(addr, size, val);
20557feb51b7SPeter Xu 
20561da12ec4SLe Tan     if (addr + size > DMAR_REG_SIZE) {
20577feb51b7SPeter Xu         trace_vtd_err("Write MMIO over range.");
20581da12ec4SLe Tan         return;
20591da12ec4SLe Tan     }
20601da12ec4SLe Tan 
20611da12ec4SLe Tan     switch (addr) {
20621da12ec4SLe Tan     /* Global Command Register, 32-bit */
20631da12ec4SLe Tan     case DMAR_GCMD_REG:
20641da12ec4SLe Tan         vtd_set_long(s, addr, val);
20651da12ec4SLe Tan         vtd_handle_gcmd_write(s);
20661da12ec4SLe Tan         break;
20671da12ec4SLe Tan 
20681da12ec4SLe Tan     /* Context Command Register, 64-bit */
20691da12ec4SLe Tan     case DMAR_CCMD_REG:
20701da12ec4SLe Tan         if (size == 4) {
20711da12ec4SLe Tan             vtd_set_long(s, addr, val);
20721da12ec4SLe Tan         } else {
20731da12ec4SLe Tan             vtd_set_quad(s, addr, val);
20741da12ec4SLe Tan             vtd_handle_ccmd_write(s);
20751da12ec4SLe Tan         }
20761da12ec4SLe Tan         break;
20771da12ec4SLe Tan 
20781da12ec4SLe Tan     case DMAR_CCMD_REG_HI:
20791da12ec4SLe Tan         assert(size == 4);
20801da12ec4SLe Tan         vtd_set_long(s, addr, val);
20811da12ec4SLe Tan         vtd_handle_ccmd_write(s);
20821da12ec4SLe Tan         break;
20831da12ec4SLe Tan 
20841da12ec4SLe Tan     /* IOTLB Invalidation Register, 64-bit */
20851da12ec4SLe Tan     case DMAR_IOTLB_REG:
20861da12ec4SLe Tan         if (size == 4) {
20871da12ec4SLe Tan             vtd_set_long(s, addr, val);
20881da12ec4SLe Tan         } else {
20891da12ec4SLe Tan             vtd_set_quad(s, addr, val);
20901da12ec4SLe Tan             vtd_handle_iotlb_write(s);
20911da12ec4SLe Tan         }
20921da12ec4SLe Tan         break;
20931da12ec4SLe Tan 
20941da12ec4SLe Tan     case DMAR_IOTLB_REG_HI:
20951da12ec4SLe Tan         assert(size == 4);
20961da12ec4SLe Tan         vtd_set_long(s, addr, val);
20971da12ec4SLe Tan         vtd_handle_iotlb_write(s);
20981da12ec4SLe Tan         break;
20991da12ec4SLe Tan 
2100b5a280c0SLe Tan     /* Invalidate Address Register, 64-bit */
2101b5a280c0SLe Tan     case DMAR_IVA_REG:
2102b5a280c0SLe Tan         if (size == 4) {
2103b5a280c0SLe Tan             vtd_set_long(s, addr, val);
2104b5a280c0SLe Tan         } else {
2105b5a280c0SLe Tan             vtd_set_quad(s, addr, val);
2106b5a280c0SLe Tan         }
2107b5a280c0SLe Tan         break;
2108b5a280c0SLe Tan 
2109b5a280c0SLe Tan     case DMAR_IVA_REG_HI:
2110b5a280c0SLe Tan         assert(size == 4);
2111b5a280c0SLe Tan         vtd_set_long(s, addr, val);
2112b5a280c0SLe Tan         break;
2113b5a280c0SLe Tan 
21141da12ec4SLe Tan     /* Fault Status Register, 32-bit */
21151da12ec4SLe Tan     case DMAR_FSTS_REG:
21161da12ec4SLe Tan         assert(size == 4);
21171da12ec4SLe Tan         vtd_set_long(s, addr, val);
21181da12ec4SLe Tan         vtd_handle_fsts_write(s);
21191da12ec4SLe Tan         break;
21201da12ec4SLe Tan 
21211da12ec4SLe Tan     /* Fault Event Control Register, 32-bit */
21221da12ec4SLe Tan     case DMAR_FECTL_REG:
21231da12ec4SLe Tan         assert(size == 4);
21241da12ec4SLe Tan         vtd_set_long(s, addr, val);
21251da12ec4SLe Tan         vtd_handle_fectl_write(s);
21261da12ec4SLe Tan         break;
21271da12ec4SLe Tan 
21281da12ec4SLe Tan     /* Fault Event Data Register, 32-bit */
21291da12ec4SLe Tan     case DMAR_FEDATA_REG:
21301da12ec4SLe Tan         assert(size == 4);
21311da12ec4SLe Tan         vtd_set_long(s, addr, val);
21321da12ec4SLe Tan         break;
21331da12ec4SLe Tan 
21341da12ec4SLe Tan     /* Fault Event Address Register, 32-bit */
21351da12ec4SLe Tan     case DMAR_FEADDR_REG:
21361da12ec4SLe Tan         assert(size == 4);
21371da12ec4SLe Tan         vtd_set_long(s, addr, val);
21381da12ec4SLe Tan         break;
21391da12ec4SLe Tan 
21401da12ec4SLe Tan     /* Fault Event Upper Address Register, 32-bit */
21411da12ec4SLe Tan     case DMAR_FEUADDR_REG:
21421da12ec4SLe Tan         assert(size == 4);
21431da12ec4SLe Tan         vtd_set_long(s, addr, val);
21441da12ec4SLe Tan         break;
21451da12ec4SLe Tan 
21461da12ec4SLe Tan     /* Protected Memory Enable Register, 32-bit */
21471da12ec4SLe Tan     case DMAR_PMEN_REG:
21481da12ec4SLe Tan         assert(size == 4);
21491da12ec4SLe Tan         vtd_set_long(s, addr, val);
21501da12ec4SLe Tan         break;
21511da12ec4SLe Tan 
21521da12ec4SLe Tan     /* Root Table Address Register, 64-bit */
21531da12ec4SLe Tan     case DMAR_RTADDR_REG:
21541da12ec4SLe Tan         if (size == 4) {
21551da12ec4SLe Tan             vtd_set_long(s, addr, val);
21561da12ec4SLe Tan         } else {
21571da12ec4SLe Tan             vtd_set_quad(s, addr, val);
21581da12ec4SLe Tan         }
21591da12ec4SLe Tan         break;
21601da12ec4SLe Tan 
21611da12ec4SLe Tan     case DMAR_RTADDR_REG_HI:
21621da12ec4SLe Tan         assert(size == 4);
21631da12ec4SLe Tan         vtd_set_long(s, addr, val);
21641da12ec4SLe Tan         break;
21651da12ec4SLe Tan 
2166ed7b8fbcSLe Tan     /* Invalidation Queue Tail Register, 64-bit */
2167ed7b8fbcSLe Tan     case DMAR_IQT_REG:
2168ed7b8fbcSLe Tan         if (size == 4) {
2169ed7b8fbcSLe Tan             vtd_set_long(s, addr, val);
2170ed7b8fbcSLe Tan         } else {
2171ed7b8fbcSLe Tan             vtd_set_quad(s, addr, val);
2172ed7b8fbcSLe Tan         }
2173ed7b8fbcSLe Tan         vtd_handle_iqt_write(s);
2174ed7b8fbcSLe Tan         break;
2175ed7b8fbcSLe Tan 
2176ed7b8fbcSLe Tan     case DMAR_IQT_REG_HI:
2177ed7b8fbcSLe Tan         assert(size == 4);
2178ed7b8fbcSLe Tan         vtd_set_long(s, addr, val);
2179ed7b8fbcSLe Tan         /* 19:63 of IQT_REG is RsvdZ, do nothing here */
2180ed7b8fbcSLe Tan         break;
2181ed7b8fbcSLe Tan 
2182ed7b8fbcSLe Tan     /* Invalidation Queue Address Register, 64-bit */
2183ed7b8fbcSLe Tan     case DMAR_IQA_REG:
2184ed7b8fbcSLe Tan         if (size == 4) {
2185ed7b8fbcSLe Tan             vtd_set_long(s, addr, val);
2186ed7b8fbcSLe Tan         } else {
2187ed7b8fbcSLe Tan             vtd_set_quad(s, addr, val);
2188ed7b8fbcSLe Tan         }
2189ed7b8fbcSLe Tan         break;
2190ed7b8fbcSLe Tan 
2191ed7b8fbcSLe Tan     case DMAR_IQA_REG_HI:
2192ed7b8fbcSLe Tan         assert(size == 4);
2193ed7b8fbcSLe Tan         vtd_set_long(s, addr, val);
2194ed7b8fbcSLe Tan         break;
2195ed7b8fbcSLe Tan 
2196ed7b8fbcSLe Tan     /* Invalidation Completion Status Register, 32-bit */
2197ed7b8fbcSLe Tan     case DMAR_ICS_REG:
2198ed7b8fbcSLe Tan         assert(size == 4);
2199ed7b8fbcSLe Tan         vtd_set_long(s, addr, val);
2200ed7b8fbcSLe Tan         vtd_handle_ics_write(s);
2201ed7b8fbcSLe Tan         break;
2202ed7b8fbcSLe Tan 
2203ed7b8fbcSLe Tan     /* Invalidation Event Control Register, 32-bit */
2204ed7b8fbcSLe Tan     case DMAR_IECTL_REG:
2205ed7b8fbcSLe Tan         assert(size == 4);
2206ed7b8fbcSLe Tan         vtd_set_long(s, addr, val);
2207ed7b8fbcSLe Tan         vtd_handle_iectl_write(s);
2208ed7b8fbcSLe Tan         break;
2209ed7b8fbcSLe Tan 
2210ed7b8fbcSLe Tan     /* Invalidation Event Data Register, 32-bit */
2211ed7b8fbcSLe Tan     case DMAR_IEDATA_REG:
2212ed7b8fbcSLe Tan         assert(size == 4);
2213ed7b8fbcSLe Tan         vtd_set_long(s, addr, val);
2214ed7b8fbcSLe Tan         break;
2215ed7b8fbcSLe Tan 
2216ed7b8fbcSLe Tan     /* Invalidation Event Address Register, 32-bit */
2217ed7b8fbcSLe Tan     case DMAR_IEADDR_REG:
2218ed7b8fbcSLe Tan         assert(size == 4);
2219ed7b8fbcSLe Tan         vtd_set_long(s, addr, val);
2220ed7b8fbcSLe Tan         break;
2221ed7b8fbcSLe Tan 
2222ed7b8fbcSLe Tan     /* Invalidation Event Upper Address Register, 32-bit */
2223ed7b8fbcSLe Tan     case DMAR_IEUADDR_REG:
2224ed7b8fbcSLe Tan         assert(size == 4);
2225ed7b8fbcSLe Tan         vtd_set_long(s, addr, val);
2226ed7b8fbcSLe Tan         break;
2227ed7b8fbcSLe Tan 
22281da12ec4SLe Tan     /* Fault Recording Registers, 128-bit */
22291da12ec4SLe Tan     case DMAR_FRCD_REG_0_0:
22301da12ec4SLe Tan         if (size == 4) {
22311da12ec4SLe Tan             vtd_set_long(s, addr, val);
22321da12ec4SLe Tan         } else {
22331da12ec4SLe Tan             vtd_set_quad(s, addr, val);
22341da12ec4SLe Tan         }
22351da12ec4SLe Tan         break;
22361da12ec4SLe Tan 
22371da12ec4SLe Tan     case DMAR_FRCD_REG_0_1:
22381da12ec4SLe Tan         assert(size == 4);
22391da12ec4SLe Tan         vtd_set_long(s, addr, val);
22401da12ec4SLe Tan         break;
22411da12ec4SLe Tan 
22421da12ec4SLe Tan     case DMAR_FRCD_REG_0_2:
22431da12ec4SLe Tan         if (size == 4) {
22441da12ec4SLe Tan             vtd_set_long(s, addr, val);
22451da12ec4SLe Tan         } else {
22461da12ec4SLe Tan             vtd_set_quad(s, addr, val);
22471da12ec4SLe Tan             /* May clear bit 127 (Fault), update PPF */
22481da12ec4SLe Tan             vtd_update_fsts_ppf(s);
22491da12ec4SLe Tan         }
22501da12ec4SLe Tan         break;
22511da12ec4SLe Tan 
22521da12ec4SLe Tan     case DMAR_FRCD_REG_0_3:
22531da12ec4SLe Tan         assert(size == 4);
22541da12ec4SLe Tan         vtd_set_long(s, addr, val);
22551da12ec4SLe Tan         /* May clear bit 127 (Fault), update PPF */
22561da12ec4SLe Tan         vtd_update_fsts_ppf(s);
22571da12ec4SLe Tan         break;
22581da12ec4SLe Tan 
2259a5861439SPeter Xu     case DMAR_IRTA_REG:
2260a5861439SPeter Xu         if (size == 4) {
2261a5861439SPeter Xu             vtd_set_long(s, addr, val);
2262a5861439SPeter Xu         } else {
2263a5861439SPeter Xu             vtd_set_quad(s, addr, val);
2264a5861439SPeter Xu         }
2265a5861439SPeter Xu         break;
2266a5861439SPeter Xu 
2267a5861439SPeter Xu     case DMAR_IRTA_REG_HI:
2268a5861439SPeter Xu         assert(size == 4);
2269a5861439SPeter Xu         vtd_set_long(s, addr, val);
2270a5861439SPeter Xu         break;
2271a5861439SPeter Xu 
22721da12ec4SLe Tan     default:
22731da12ec4SLe Tan         if (size == 4) {
22741da12ec4SLe Tan             vtd_set_long(s, addr, val);
22751da12ec4SLe Tan         } else {
22761da12ec4SLe Tan             vtd_set_quad(s, addr, val);
22771da12ec4SLe Tan         }
22781da12ec4SLe Tan     }
22791da12ec4SLe Tan }
22801da12ec4SLe Tan 
22813df9d748SAlexey Kardashevskiy static IOMMUTLBEntry vtd_iommu_translate(IOMMUMemoryRegion *iommu, hwaddr addr,
2282bf55b7afSPeter Xu                                          IOMMUAccessFlags flag)
22831da12ec4SLe Tan {
22841da12ec4SLe Tan     VTDAddressSpace *vtd_as = container_of(iommu, VTDAddressSpace, iommu);
22851da12ec4SLe Tan     IntelIOMMUState *s = vtd_as->iommu_state;
2286b9313021SPeter Xu     IOMMUTLBEntry iotlb = {
2287b9313021SPeter Xu         /* We'll fill in the rest later. */
22881da12ec4SLe Tan         .target_as = &address_space_memory,
22891da12ec4SLe Tan     };
2290b9313021SPeter Xu     bool success;
22911da12ec4SLe Tan 
2292b9313021SPeter Xu     if (likely(s->dmar_enabled)) {
2293b9313021SPeter Xu         success = vtd_do_iommu_translate(vtd_as, vtd_as->bus, vtd_as->devfn,
2294b9313021SPeter Xu                                          addr, flag & IOMMU_WO, &iotlb);
2295b9313021SPeter Xu     } else {
22961da12ec4SLe Tan         /* DMAR disabled, passthrough, use 4k-page*/
2297b9313021SPeter Xu         iotlb.iova = addr & VTD_PAGE_MASK_4K;
2298b9313021SPeter Xu         iotlb.translated_addr = addr & VTD_PAGE_MASK_4K;
2299b9313021SPeter Xu         iotlb.addr_mask = ~VTD_PAGE_MASK_4K;
2300b9313021SPeter Xu         iotlb.perm = IOMMU_RW;
2301b9313021SPeter Xu         success = true;
23021da12ec4SLe Tan     }
23031da12ec4SLe Tan 
2304b9313021SPeter Xu     if (likely(success)) {
23057feb51b7SPeter Xu         trace_vtd_dmar_translate(pci_bus_num(vtd_as->bus),
23067feb51b7SPeter Xu                                  VTD_PCI_SLOT(vtd_as->devfn),
23077feb51b7SPeter Xu                                  VTD_PCI_FUNC(vtd_as->devfn),
2308b9313021SPeter Xu                                  iotlb.iova, iotlb.translated_addr,
2309b9313021SPeter Xu                                  iotlb.addr_mask);
2310b9313021SPeter Xu     } else {
2311b9313021SPeter Xu         trace_vtd_err_dmar_translate(pci_bus_num(vtd_as->bus),
2312b9313021SPeter Xu                                      VTD_PCI_SLOT(vtd_as->devfn),
2313b9313021SPeter Xu                                      VTD_PCI_FUNC(vtd_as->devfn),
2314b9313021SPeter Xu                                      iotlb.iova);
2315b9313021SPeter Xu     }
23167feb51b7SPeter Xu 
2317b9313021SPeter Xu     return iotlb;
23181da12ec4SLe Tan }
23191da12ec4SLe Tan 
23203df9d748SAlexey Kardashevskiy static void vtd_iommu_notify_flag_changed(IOMMUMemoryRegion *iommu,
23215bf3d319SPeter Xu                                           IOMMUNotifierFlag old,
23225bf3d319SPeter Xu                                           IOMMUNotifierFlag new)
23233cb3b154SAlex Williamson {
23243cb3b154SAlex Williamson     VTDAddressSpace *vtd_as = container_of(iommu, VTDAddressSpace, iommu);
2325dd4d607eSPeter Xu     IntelIOMMUState *s = vtd_as->iommu_state;
2326dd4d607eSPeter Xu     IntelIOMMUNotifierNode *node = NULL;
2327dd4d607eSPeter Xu     IntelIOMMUNotifierNode *next_node = NULL;
23283cb3b154SAlex Williamson 
2329dd4d607eSPeter Xu     if (!s->caching_mode && new & IOMMU_NOTIFIER_MAP) {
2330dd4d607eSPeter Xu         error_report("We need to set cache_mode=1 for intel-iommu to enable "
2331dd4d607eSPeter Xu                      "device assignment with IOMMU protection.");
2332a3276f78SPeter Xu         exit(1);
2333a3276f78SPeter Xu     }
2334dd4d607eSPeter Xu 
2335dd4d607eSPeter Xu     if (old == IOMMU_NOTIFIER_NONE) {
2336dd4d607eSPeter Xu         node = g_malloc0(sizeof(*node));
2337dd4d607eSPeter Xu         node->vtd_as = vtd_as;
2338dd4d607eSPeter Xu         QLIST_INSERT_HEAD(&s->notifiers_list, node, next);
2339dd4d607eSPeter Xu         return;
2340dd4d607eSPeter Xu     }
2341dd4d607eSPeter Xu 
2342dd4d607eSPeter Xu     /* update notifier node with new flags */
2343dd4d607eSPeter Xu     QLIST_FOREACH_SAFE(node, &s->notifiers_list, next, next_node) {
2344dd4d607eSPeter Xu         if (node->vtd_as == vtd_as) {
2345dd4d607eSPeter Xu             if (new == IOMMU_NOTIFIER_NONE) {
2346dd4d607eSPeter Xu                 QLIST_REMOVE(node, next);
2347dd4d607eSPeter Xu                 g_free(node);
2348dd4d607eSPeter Xu             }
2349dd4d607eSPeter Xu             return;
2350dd4d607eSPeter Xu         }
2351dd4d607eSPeter Xu     }
23523cb3b154SAlex Williamson }
23533cb3b154SAlex Williamson 
2354552a1e01SPeter Xu static int vtd_post_load(void *opaque, int version_id)
2355552a1e01SPeter Xu {
2356552a1e01SPeter Xu     IntelIOMMUState *iommu = opaque;
2357552a1e01SPeter Xu 
2358552a1e01SPeter Xu     /*
2359552a1e01SPeter Xu      * Memory regions are dynamically turned on/off depending on
2360552a1e01SPeter Xu      * context entry configurations from the guest. After migration,
2361552a1e01SPeter Xu      * we need to make sure the memory regions are still correct.
2362552a1e01SPeter Xu      */
2363552a1e01SPeter Xu     vtd_switch_address_space_all(iommu);
2364552a1e01SPeter Xu 
2365552a1e01SPeter Xu     return 0;
2366552a1e01SPeter Xu }
2367552a1e01SPeter Xu 
23681da12ec4SLe Tan static const VMStateDescription vtd_vmstate = {
23691da12ec4SLe Tan     .name = "iommu-intel",
23708cdcf3c1SPeter Xu     .version_id = 1,
23718cdcf3c1SPeter Xu     .minimum_version_id = 1,
23728cdcf3c1SPeter Xu     .priority = MIG_PRI_IOMMU,
2373552a1e01SPeter Xu     .post_load = vtd_post_load,
23748cdcf3c1SPeter Xu     .fields = (VMStateField[]) {
23758cdcf3c1SPeter Xu         VMSTATE_UINT64(root, IntelIOMMUState),
23768cdcf3c1SPeter Xu         VMSTATE_UINT64(intr_root, IntelIOMMUState),
23778cdcf3c1SPeter Xu         VMSTATE_UINT64(iq, IntelIOMMUState),
23788cdcf3c1SPeter Xu         VMSTATE_UINT32(intr_size, IntelIOMMUState),
23798cdcf3c1SPeter Xu         VMSTATE_UINT16(iq_head, IntelIOMMUState),
23808cdcf3c1SPeter Xu         VMSTATE_UINT16(iq_tail, IntelIOMMUState),
23818cdcf3c1SPeter Xu         VMSTATE_UINT16(iq_size, IntelIOMMUState),
23828cdcf3c1SPeter Xu         VMSTATE_UINT16(next_frcd_reg, IntelIOMMUState),
23838cdcf3c1SPeter Xu         VMSTATE_UINT8_ARRAY(csr, IntelIOMMUState, DMAR_REG_SIZE),
23848cdcf3c1SPeter Xu         VMSTATE_UINT8(iq_last_desc_type, IntelIOMMUState),
23858cdcf3c1SPeter Xu         VMSTATE_BOOL(root_extended, IntelIOMMUState),
23868cdcf3c1SPeter Xu         VMSTATE_BOOL(dmar_enabled, IntelIOMMUState),
23878cdcf3c1SPeter Xu         VMSTATE_BOOL(qi_enabled, IntelIOMMUState),
23888cdcf3c1SPeter Xu         VMSTATE_BOOL(intr_enabled, IntelIOMMUState),
23898cdcf3c1SPeter Xu         VMSTATE_BOOL(intr_eime, IntelIOMMUState),
23908cdcf3c1SPeter Xu         VMSTATE_END_OF_LIST()
23918cdcf3c1SPeter Xu     }
23921da12ec4SLe Tan };
23931da12ec4SLe Tan 
23941da12ec4SLe Tan static const MemoryRegionOps vtd_mem_ops = {
23951da12ec4SLe Tan     .read = vtd_mem_read,
23961da12ec4SLe Tan     .write = vtd_mem_write,
23971da12ec4SLe Tan     .endianness = DEVICE_LITTLE_ENDIAN,
23981da12ec4SLe Tan     .impl = {
23991da12ec4SLe Tan         .min_access_size = 4,
24001da12ec4SLe Tan         .max_access_size = 8,
24011da12ec4SLe Tan     },
24021da12ec4SLe Tan     .valid = {
24031da12ec4SLe Tan         .min_access_size = 4,
24041da12ec4SLe Tan         .max_access_size = 8,
24051da12ec4SLe Tan     },
24061da12ec4SLe Tan };
24071da12ec4SLe Tan 
24081da12ec4SLe Tan static Property vtd_properties[] = {
24091da12ec4SLe Tan     DEFINE_PROP_UINT32("version", IntelIOMMUState, version, 0),
2410e6b6af05SRadim Krčmář     DEFINE_PROP_ON_OFF_AUTO("eim", IntelIOMMUState, intr_eim,
2411e6b6af05SRadim Krčmář                             ON_OFF_AUTO_AUTO),
2412fb506e70SRadim Krčmář     DEFINE_PROP_BOOL("x-buggy-eim", IntelIOMMUState, buggy_eim, false),
24133b40f0e5SAviv Ben-David     DEFINE_PROP_BOOL("caching-mode", IntelIOMMUState, caching_mode, FALSE),
24141da12ec4SLe Tan     DEFINE_PROP_END_OF_LIST(),
24151da12ec4SLe Tan };
24161da12ec4SLe Tan 
2417651e4cefSPeter Xu /* Read IRTE entry with specific index */
2418651e4cefSPeter Xu static int vtd_irte_get(IntelIOMMUState *iommu, uint16_t index,
2419bc38ee10SMichael S. Tsirkin                         VTD_IR_TableEntry *entry, uint16_t sid)
2420651e4cefSPeter Xu {
2421ede9c94aSPeter Xu     static const uint16_t vtd_svt_mask[VTD_SQ_MAX] = \
2422ede9c94aSPeter Xu         {0xffff, 0xfffb, 0xfff9, 0xfff8};
2423651e4cefSPeter Xu     dma_addr_t addr = 0x00;
2424ede9c94aSPeter Xu     uint16_t mask, source_id;
2425ede9c94aSPeter Xu     uint8_t bus, bus_max, bus_min;
2426651e4cefSPeter Xu 
2427651e4cefSPeter Xu     addr = iommu->intr_root + index * sizeof(*entry);
2428651e4cefSPeter Xu     if (dma_memory_read(&address_space_memory, addr, entry,
2429651e4cefSPeter Xu                         sizeof(*entry))) {
24307feb51b7SPeter Xu         trace_vtd_err("Memory read failed for IRTE.");
2431651e4cefSPeter Xu         return -VTD_FR_IR_ROOT_INVAL;
2432651e4cefSPeter Xu     }
2433651e4cefSPeter Xu 
24347feb51b7SPeter Xu     trace_vtd_ir_irte_get(index, le64_to_cpu(entry->data[1]),
24357feb51b7SPeter Xu                           le64_to_cpu(entry->data[0]));
24367feb51b7SPeter Xu 
2437bc38ee10SMichael S. Tsirkin     if (!entry->irte.present) {
24387feb51b7SPeter Xu         trace_vtd_err_irte(index, le64_to_cpu(entry->data[1]),
2439651e4cefSPeter Xu                            le64_to_cpu(entry->data[0]));
2440651e4cefSPeter Xu         return -VTD_FR_IR_ENTRY_P;
2441651e4cefSPeter Xu     }
2442651e4cefSPeter Xu 
2443bc38ee10SMichael S. Tsirkin     if (entry->irte.__reserved_0 || entry->irte.__reserved_1 ||
2444bc38ee10SMichael S. Tsirkin         entry->irte.__reserved_2) {
24457feb51b7SPeter Xu         trace_vtd_err_irte(index, le64_to_cpu(entry->data[1]),
2446651e4cefSPeter Xu                            le64_to_cpu(entry->data[0]));
2447651e4cefSPeter Xu         return -VTD_FR_IR_IRTE_RSVD;
2448651e4cefSPeter Xu     }
2449651e4cefSPeter Xu 
2450ede9c94aSPeter Xu     if (sid != X86_IOMMU_SID_INVALID) {
2451ede9c94aSPeter Xu         /* Validate IRTE SID */
2452bc38ee10SMichael S. Tsirkin         source_id = le32_to_cpu(entry->irte.source_id);
2453bc38ee10SMichael S. Tsirkin         switch (entry->irte.sid_vtype) {
2454ede9c94aSPeter Xu         case VTD_SVT_NONE:
2455ede9c94aSPeter Xu             break;
2456ede9c94aSPeter Xu 
2457ede9c94aSPeter Xu         case VTD_SVT_ALL:
2458bc38ee10SMichael S. Tsirkin             mask = vtd_svt_mask[entry->irte.sid_q];
2459ede9c94aSPeter Xu             if ((source_id & mask) != (sid & mask)) {
24607feb51b7SPeter Xu                 trace_vtd_err_irte_sid(index, sid, source_id);
2461ede9c94aSPeter Xu                 return -VTD_FR_IR_SID_ERR;
2462ede9c94aSPeter Xu             }
2463ede9c94aSPeter Xu             break;
2464ede9c94aSPeter Xu 
2465ede9c94aSPeter Xu         case VTD_SVT_BUS:
2466ede9c94aSPeter Xu             bus_max = source_id >> 8;
2467ede9c94aSPeter Xu             bus_min = source_id & 0xff;
2468ede9c94aSPeter Xu             bus = sid >> 8;
2469ede9c94aSPeter Xu             if (bus > bus_max || bus < bus_min) {
24707feb51b7SPeter Xu                 trace_vtd_err_irte_sid_bus(index, bus, bus_min, bus_max);
2471ede9c94aSPeter Xu                 return -VTD_FR_IR_SID_ERR;
2472ede9c94aSPeter Xu             }
2473ede9c94aSPeter Xu             break;
2474ede9c94aSPeter Xu 
2475ede9c94aSPeter Xu         default:
24767feb51b7SPeter Xu             trace_vtd_err_irte_svt(index, entry->irte.sid_vtype);
2477ede9c94aSPeter Xu             /* Take this as verification failure. */
2478ede9c94aSPeter Xu             return -VTD_FR_IR_SID_ERR;
2479ede9c94aSPeter Xu             break;
2480ede9c94aSPeter Xu         }
2481ede9c94aSPeter Xu     }
2482651e4cefSPeter Xu 
2483651e4cefSPeter Xu     return 0;
2484651e4cefSPeter Xu }
2485651e4cefSPeter Xu 
2486651e4cefSPeter Xu /* Fetch IRQ information of specific IR index */
2487ede9c94aSPeter Xu static int vtd_remap_irq_get(IntelIOMMUState *iommu, uint16_t index,
2488ede9c94aSPeter Xu                              VTDIrq *irq, uint16_t sid)
2489651e4cefSPeter Xu {
2490bc38ee10SMichael S. Tsirkin     VTD_IR_TableEntry irte = {};
2491651e4cefSPeter Xu     int ret = 0;
2492651e4cefSPeter Xu 
2493ede9c94aSPeter Xu     ret = vtd_irte_get(iommu, index, &irte, sid);
2494651e4cefSPeter Xu     if (ret) {
2495651e4cefSPeter Xu         return ret;
2496651e4cefSPeter Xu     }
2497651e4cefSPeter Xu 
2498bc38ee10SMichael S. Tsirkin     irq->trigger_mode = irte.irte.trigger_mode;
2499bc38ee10SMichael S. Tsirkin     irq->vector = irte.irte.vector;
2500bc38ee10SMichael S. Tsirkin     irq->delivery_mode = irte.irte.delivery_mode;
2501bc38ee10SMichael S. Tsirkin     irq->dest = le32_to_cpu(irte.irte.dest_id);
250228589311SJan Kiszka     if (!iommu->intr_eime) {
2503651e4cefSPeter Xu #define  VTD_IR_APIC_DEST_MASK         (0xff00ULL)
2504651e4cefSPeter Xu #define  VTD_IR_APIC_DEST_SHIFT        (8)
250528589311SJan Kiszka         irq->dest = (irq->dest & VTD_IR_APIC_DEST_MASK) >>
2506651e4cefSPeter Xu             VTD_IR_APIC_DEST_SHIFT;
250728589311SJan Kiszka     }
2508bc38ee10SMichael S. Tsirkin     irq->dest_mode = irte.irte.dest_mode;
2509bc38ee10SMichael S. Tsirkin     irq->redir_hint = irte.irte.redir_hint;
2510651e4cefSPeter Xu 
25117feb51b7SPeter Xu     trace_vtd_ir_remap(index, irq->trigger_mode, irq->vector,
25127feb51b7SPeter Xu                        irq->delivery_mode, irq->dest, irq->dest_mode);
2513651e4cefSPeter Xu 
2514651e4cefSPeter Xu     return 0;
2515651e4cefSPeter Xu }
2516651e4cefSPeter Xu 
2517651e4cefSPeter Xu /* Generate one MSI message from VTDIrq info */
2518651e4cefSPeter Xu static void vtd_generate_msi_message(VTDIrq *irq, MSIMessage *msg_out)
2519651e4cefSPeter Xu {
2520651e4cefSPeter Xu     VTD_MSIMessage msg = {};
2521651e4cefSPeter Xu 
2522651e4cefSPeter Xu     /* Generate address bits */
2523651e4cefSPeter Xu     msg.dest_mode = irq->dest_mode;
2524651e4cefSPeter Xu     msg.redir_hint = irq->redir_hint;
2525651e4cefSPeter Xu     msg.dest = irq->dest;
252632946019SRadim Krčmář     msg.__addr_hi = irq->dest & 0xffffff00;
2527651e4cefSPeter Xu     msg.__addr_head = cpu_to_le32(0xfee);
2528651e4cefSPeter Xu     /* Keep this from original MSI address bits */
2529651e4cefSPeter Xu     msg.__not_used = irq->msi_addr_last_bits;
2530651e4cefSPeter Xu 
2531651e4cefSPeter Xu     /* Generate data bits */
2532651e4cefSPeter Xu     msg.vector = irq->vector;
2533651e4cefSPeter Xu     msg.delivery_mode = irq->delivery_mode;
2534651e4cefSPeter Xu     msg.level = 1;
2535651e4cefSPeter Xu     msg.trigger_mode = irq->trigger_mode;
2536651e4cefSPeter Xu 
2537651e4cefSPeter Xu     msg_out->address = msg.msi_addr;
2538651e4cefSPeter Xu     msg_out->data = msg.msi_data;
2539651e4cefSPeter Xu }
2540651e4cefSPeter Xu 
2541651e4cefSPeter Xu /* Interrupt remapping for MSI/MSI-X entry */
2542651e4cefSPeter Xu static int vtd_interrupt_remap_msi(IntelIOMMUState *iommu,
2543651e4cefSPeter Xu                                    MSIMessage *origin,
2544ede9c94aSPeter Xu                                    MSIMessage *translated,
2545ede9c94aSPeter Xu                                    uint16_t sid)
2546651e4cefSPeter Xu {
2547651e4cefSPeter Xu     int ret = 0;
2548651e4cefSPeter Xu     VTD_IR_MSIAddress addr;
2549651e4cefSPeter Xu     uint16_t index;
255009cd058aSMichael S. Tsirkin     VTDIrq irq = {};
2551651e4cefSPeter Xu 
2552651e4cefSPeter Xu     assert(origin && translated);
2553651e4cefSPeter Xu 
25547feb51b7SPeter Xu     trace_vtd_ir_remap_msi_req(origin->address, origin->data);
25557feb51b7SPeter Xu 
2556651e4cefSPeter Xu     if (!iommu || !iommu->intr_enabled) {
2557e7a3b91fSPeter Xu         memcpy(translated, origin, sizeof(*origin));
2558e7a3b91fSPeter Xu         goto out;
2559651e4cefSPeter Xu     }
2560651e4cefSPeter Xu 
2561651e4cefSPeter Xu     if (origin->address & VTD_MSI_ADDR_HI_MASK) {
25627feb51b7SPeter Xu         trace_vtd_err("MSI address high 32 bits non-zero when "
25637feb51b7SPeter Xu                       "Interrupt Remapping enabled.");
2564651e4cefSPeter Xu         return -VTD_FR_IR_REQ_RSVD;
2565651e4cefSPeter Xu     }
2566651e4cefSPeter Xu 
2567651e4cefSPeter Xu     addr.data = origin->address & VTD_MSI_ADDR_LO_MASK;
25681a43713bSPeter Xu     if (addr.addr.__head != 0xfee) {
25697feb51b7SPeter Xu         trace_vtd_err("MSI addr low 32 bit invalid.");
2570651e4cefSPeter Xu         return -VTD_FR_IR_REQ_RSVD;
2571651e4cefSPeter Xu     }
2572651e4cefSPeter Xu 
2573651e4cefSPeter Xu     /* This is compatible mode. */
2574bc38ee10SMichael S. Tsirkin     if (addr.addr.int_mode != VTD_IR_INT_FORMAT_REMAP) {
2575e7a3b91fSPeter Xu         memcpy(translated, origin, sizeof(*origin));
2576e7a3b91fSPeter Xu         goto out;
2577651e4cefSPeter Xu     }
2578651e4cefSPeter Xu 
2579bc38ee10SMichael S. Tsirkin     index = addr.addr.index_h << 15 | le16_to_cpu(addr.addr.index_l);
2580651e4cefSPeter Xu 
2581651e4cefSPeter Xu #define  VTD_IR_MSI_DATA_SUBHANDLE       (0x0000ffff)
2582651e4cefSPeter Xu #define  VTD_IR_MSI_DATA_RESERVED        (0xffff0000)
2583651e4cefSPeter Xu 
2584bc38ee10SMichael S. Tsirkin     if (addr.addr.sub_valid) {
2585651e4cefSPeter Xu         /* See VT-d spec 5.1.2.2 and 5.1.3 on subhandle */
2586651e4cefSPeter Xu         index += origin->data & VTD_IR_MSI_DATA_SUBHANDLE;
2587651e4cefSPeter Xu     }
2588651e4cefSPeter Xu 
2589ede9c94aSPeter Xu     ret = vtd_remap_irq_get(iommu, index, &irq, sid);
2590651e4cefSPeter Xu     if (ret) {
2591651e4cefSPeter Xu         return ret;
2592651e4cefSPeter Xu     }
2593651e4cefSPeter Xu 
2594bc38ee10SMichael S. Tsirkin     if (addr.addr.sub_valid) {
25957feb51b7SPeter Xu         trace_vtd_ir_remap_type("MSI");
2596651e4cefSPeter Xu         if (origin->data & VTD_IR_MSI_DATA_RESERVED) {
25977feb51b7SPeter Xu             trace_vtd_err_ir_msi_invalid(sid, origin->address, origin->data);
2598651e4cefSPeter Xu             return -VTD_FR_IR_REQ_RSVD;
2599651e4cefSPeter Xu         }
2600651e4cefSPeter Xu     } else {
2601651e4cefSPeter Xu         uint8_t vector = origin->data & 0xff;
2602dea651a9SFeng Wu         uint8_t trigger_mode = (origin->data >> MSI_DATA_TRIGGER_SHIFT) & 0x1;
2603dea651a9SFeng Wu 
26047feb51b7SPeter Xu         trace_vtd_ir_remap_type("IOAPIC");
2605651e4cefSPeter Xu         /* IOAPIC entry vector should be aligned with IRTE vector
2606651e4cefSPeter Xu          * (see vt-d spec 5.1.5.1). */
2607651e4cefSPeter Xu         if (vector != irq.vector) {
26087feb51b7SPeter Xu             trace_vtd_warn_ir_vector(sid, index, vector, irq.vector);
2609651e4cefSPeter Xu         }
2610dea651a9SFeng Wu 
2611dea651a9SFeng Wu         /* The Trigger Mode field must match the Trigger Mode in the IRTE.
2612dea651a9SFeng Wu          * (see vt-d spec 5.1.5.1). */
2613dea651a9SFeng Wu         if (trigger_mode != irq.trigger_mode) {
26147feb51b7SPeter Xu             trace_vtd_warn_ir_trigger(sid, index, trigger_mode,
26157feb51b7SPeter Xu                                       irq.trigger_mode);
2616dea651a9SFeng Wu         }
2617651e4cefSPeter Xu     }
2618651e4cefSPeter Xu 
2619651e4cefSPeter Xu     /*
2620651e4cefSPeter Xu      * We'd better keep the last two bits, assuming that guest OS
2621651e4cefSPeter Xu      * might modify it. Keep it does not hurt after all.
2622651e4cefSPeter Xu      */
2623bc38ee10SMichael S. Tsirkin     irq.msi_addr_last_bits = addr.addr.__not_care;
2624651e4cefSPeter Xu 
2625651e4cefSPeter Xu     /* Translate VTDIrq to MSI message */
2626651e4cefSPeter Xu     vtd_generate_msi_message(&irq, translated);
2627651e4cefSPeter Xu 
2628e7a3b91fSPeter Xu out:
26297feb51b7SPeter Xu     trace_vtd_ir_remap_msi(origin->address, origin->data,
2630651e4cefSPeter Xu                            translated->address, translated->data);
2631651e4cefSPeter Xu     return 0;
2632651e4cefSPeter Xu }
2633651e4cefSPeter Xu 
26348b5ed7dfSPeter Xu static int vtd_int_remap(X86IOMMUState *iommu, MSIMessage *src,
26358b5ed7dfSPeter Xu                          MSIMessage *dst, uint16_t sid)
26368b5ed7dfSPeter Xu {
2637ede9c94aSPeter Xu     return vtd_interrupt_remap_msi(INTEL_IOMMU_DEVICE(iommu),
2638ede9c94aSPeter Xu                                    src, dst, sid);
26398b5ed7dfSPeter Xu }
26408b5ed7dfSPeter Xu 
2641651e4cefSPeter Xu static MemTxResult vtd_mem_ir_read(void *opaque, hwaddr addr,
2642651e4cefSPeter Xu                                    uint64_t *data, unsigned size,
2643651e4cefSPeter Xu                                    MemTxAttrs attrs)
2644651e4cefSPeter Xu {
2645651e4cefSPeter Xu     return MEMTX_OK;
2646651e4cefSPeter Xu }
2647651e4cefSPeter Xu 
2648651e4cefSPeter Xu static MemTxResult vtd_mem_ir_write(void *opaque, hwaddr addr,
2649651e4cefSPeter Xu                                     uint64_t value, unsigned size,
2650651e4cefSPeter Xu                                     MemTxAttrs attrs)
2651651e4cefSPeter Xu {
2652651e4cefSPeter Xu     int ret = 0;
265309cd058aSMichael S. Tsirkin     MSIMessage from = {}, to = {};
2654ede9c94aSPeter Xu     uint16_t sid = X86_IOMMU_SID_INVALID;
2655651e4cefSPeter Xu 
2656651e4cefSPeter Xu     from.address = (uint64_t) addr + VTD_INTERRUPT_ADDR_FIRST;
2657651e4cefSPeter Xu     from.data = (uint32_t) value;
2658651e4cefSPeter Xu 
2659ede9c94aSPeter Xu     if (!attrs.unspecified) {
2660ede9c94aSPeter Xu         /* We have explicit Source ID */
2661ede9c94aSPeter Xu         sid = attrs.requester_id;
2662ede9c94aSPeter Xu     }
2663ede9c94aSPeter Xu 
2664ede9c94aSPeter Xu     ret = vtd_interrupt_remap_msi(opaque, &from, &to, sid);
2665651e4cefSPeter Xu     if (ret) {
2666651e4cefSPeter Xu         /* TODO: report error */
2667651e4cefSPeter Xu         /* Drop this interrupt */
2668651e4cefSPeter Xu         return MEMTX_ERROR;
2669651e4cefSPeter Xu     }
2670651e4cefSPeter Xu 
267132946019SRadim Krčmář     apic_get_class()->send_msi(&to);
2672651e4cefSPeter Xu 
2673651e4cefSPeter Xu     return MEMTX_OK;
2674651e4cefSPeter Xu }
2675651e4cefSPeter Xu 
2676651e4cefSPeter Xu static const MemoryRegionOps vtd_mem_ir_ops = {
2677651e4cefSPeter Xu     .read_with_attrs = vtd_mem_ir_read,
2678651e4cefSPeter Xu     .write_with_attrs = vtd_mem_ir_write,
2679651e4cefSPeter Xu     .endianness = DEVICE_LITTLE_ENDIAN,
2680651e4cefSPeter Xu     .impl = {
2681651e4cefSPeter Xu         .min_access_size = 4,
2682651e4cefSPeter Xu         .max_access_size = 4,
2683651e4cefSPeter Xu     },
2684651e4cefSPeter Xu     .valid = {
2685651e4cefSPeter Xu         .min_access_size = 4,
2686651e4cefSPeter Xu         .max_access_size = 4,
2687651e4cefSPeter Xu     },
2688651e4cefSPeter Xu };
26897df953bdSKnut Omang 
26907df953bdSKnut Omang VTDAddressSpace *vtd_find_add_as(IntelIOMMUState *s, PCIBus *bus, int devfn)
26917df953bdSKnut Omang {
26927df953bdSKnut Omang     uintptr_t key = (uintptr_t)bus;
26937df953bdSKnut Omang     VTDBus *vtd_bus = g_hash_table_lookup(s->vtd_as_by_busptr, &key);
26947df953bdSKnut Omang     VTDAddressSpace *vtd_dev_as;
2695e0a3c8ccSJason Wang     char name[128];
26967df953bdSKnut Omang 
26977df953bdSKnut Omang     if (!vtd_bus) {
26982d3fc581SJason Wang         uintptr_t *new_key = g_malloc(sizeof(*new_key));
26992d3fc581SJason Wang         *new_key = (uintptr_t)bus;
27007df953bdSKnut Omang         /* No corresponding free() */
270104af0e18SPeter Xu         vtd_bus = g_malloc0(sizeof(VTDBus) + sizeof(VTDAddressSpace *) * \
2702*bf33cc75SPeter Xu                             PCI_DEVFN_MAX);
27037df953bdSKnut Omang         vtd_bus->bus = bus;
27042d3fc581SJason Wang         g_hash_table_insert(s->vtd_as_by_busptr, new_key, vtd_bus);
27057df953bdSKnut Omang     }
27067df953bdSKnut Omang 
27077df953bdSKnut Omang     vtd_dev_as = vtd_bus->dev_as[devfn];
27087df953bdSKnut Omang 
27097df953bdSKnut Omang     if (!vtd_dev_as) {
2710e0a3c8ccSJason Wang         snprintf(name, sizeof(name), "intel_iommu_devfn_%d", devfn);
27117df953bdSKnut Omang         vtd_bus->dev_as[devfn] = vtd_dev_as = g_malloc0(sizeof(VTDAddressSpace));
27127df953bdSKnut Omang 
27137df953bdSKnut Omang         vtd_dev_as->bus = bus;
27147df953bdSKnut Omang         vtd_dev_as->devfn = (uint8_t)devfn;
27157df953bdSKnut Omang         vtd_dev_as->iommu_state = s;
27167df953bdSKnut Omang         vtd_dev_as->context_cache_entry.context_cache_gen = 0;
2717558e0024SPeter Xu 
2718558e0024SPeter Xu         /*
2719558e0024SPeter Xu          * Memory region relationships looks like (Address range shows
2720558e0024SPeter Xu          * only lower 32 bits to make it short in length...):
2721558e0024SPeter Xu          *
2722558e0024SPeter Xu          * |-----------------+-------------------+----------|
2723558e0024SPeter Xu          * | Name            | Address range     | Priority |
2724558e0024SPeter Xu          * |-----------------+-------------------+----------+
2725558e0024SPeter Xu          * | vtd_root        | 00000000-ffffffff |        0 |
2726558e0024SPeter Xu          * |  intel_iommu    | 00000000-ffffffff |        1 |
2727558e0024SPeter Xu          * |  vtd_sys_alias  | 00000000-ffffffff |        1 |
2728558e0024SPeter Xu          * |  intel_iommu_ir | fee00000-feefffff |       64 |
2729558e0024SPeter Xu          * |-----------------+-------------------+----------|
2730558e0024SPeter Xu          *
2731558e0024SPeter Xu          * We enable/disable DMAR by switching enablement for
2732558e0024SPeter Xu          * vtd_sys_alias and intel_iommu regions. IR region is always
2733558e0024SPeter Xu          * enabled.
2734558e0024SPeter Xu          */
27351221a474SAlexey Kardashevskiy         memory_region_init_iommu(&vtd_dev_as->iommu, sizeof(vtd_dev_as->iommu),
27361221a474SAlexey Kardashevskiy                                  TYPE_INTEL_IOMMU_MEMORY_REGION, OBJECT(s),
27371221a474SAlexey Kardashevskiy                                  "intel_iommu_dmar",
2738558e0024SPeter Xu                                  UINT64_MAX);
2739558e0024SPeter Xu         memory_region_init_alias(&vtd_dev_as->sys_alias, OBJECT(s),
2740558e0024SPeter Xu                                  "vtd_sys_alias", get_system_memory(),
2741558e0024SPeter Xu                                  0, memory_region_size(get_system_memory()));
2742651e4cefSPeter Xu         memory_region_init_io(&vtd_dev_as->iommu_ir, OBJECT(s),
2743651e4cefSPeter Xu                               &vtd_mem_ir_ops, s, "intel_iommu_ir",
2744651e4cefSPeter Xu                               VTD_INTERRUPT_ADDR_SIZE);
2745558e0024SPeter Xu         memory_region_init(&vtd_dev_as->root, OBJECT(s),
2746558e0024SPeter Xu                            "vtd_root", UINT64_MAX);
2747558e0024SPeter Xu         memory_region_add_subregion_overlap(&vtd_dev_as->root,
2748558e0024SPeter Xu                                             VTD_INTERRUPT_ADDR_FIRST,
2749558e0024SPeter Xu                                             &vtd_dev_as->iommu_ir, 64);
2750558e0024SPeter Xu         address_space_init(&vtd_dev_as->as, &vtd_dev_as->root, name);
2751558e0024SPeter Xu         memory_region_add_subregion_overlap(&vtd_dev_as->root, 0,
2752558e0024SPeter Xu                                             &vtd_dev_as->sys_alias, 1);
2753558e0024SPeter Xu         memory_region_add_subregion_overlap(&vtd_dev_as->root, 0,
27543df9d748SAlexey Kardashevskiy                                             MEMORY_REGION(&vtd_dev_as->iommu),
27553df9d748SAlexey Kardashevskiy                                             1);
2756558e0024SPeter Xu         vtd_switch_address_space(vtd_dev_as);
27577df953bdSKnut Omang     }
27587df953bdSKnut Omang     return vtd_dev_as;
27597df953bdSKnut Omang }
27607df953bdSKnut Omang 
2761dd4d607eSPeter Xu /* Unmap the whole range in the notifier's scope. */
2762dd4d607eSPeter Xu static void vtd_address_space_unmap(VTDAddressSpace *as, IOMMUNotifier *n)
2763dd4d607eSPeter Xu {
2764dd4d607eSPeter Xu     IOMMUTLBEntry entry;
2765dd4d607eSPeter Xu     hwaddr size;
2766dd4d607eSPeter Xu     hwaddr start = n->start;
2767dd4d607eSPeter Xu     hwaddr end = n->end;
2768dd4d607eSPeter Xu 
2769dd4d607eSPeter Xu     /*
2770dd4d607eSPeter Xu      * Note: all the codes in this function has a assumption that IOVA
2771dd4d607eSPeter Xu      * bits are no more than VTD_MGAW bits (which is restricted by
2772dd4d607eSPeter Xu      * VT-d spec), otherwise we need to consider overflow of 64 bits.
2773dd4d607eSPeter Xu      */
2774dd4d607eSPeter Xu 
2775dd4d607eSPeter Xu     if (end > VTD_ADDRESS_SIZE) {
2776dd4d607eSPeter Xu         /*
2777dd4d607eSPeter Xu          * Don't need to unmap regions that is bigger than the whole
2778dd4d607eSPeter Xu          * VT-d supported address space size
2779dd4d607eSPeter Xu          */
2780dd4d607eSPeter Xu         end = VTD_ADDRESS_SIZE;
2781dd4d607eSPeter Xu     }
2782dd4d607eSPeter Xu 
2783dd4d607eSPeter Xu     assert(start <= end);
2784dd4d607eSPeter Xu     size = end - start;
2785dd4d607eSPeter Xu 
2786dd4d607eSPeter Xu     if (ctpop64(size) != 1) {
2787dd4d607eSPeter Xu         /*
2788dd4d607eSPeter Xu          * This size cannot format a correct mask. Let's enlarge it to
2789dd4d607eSPeter Xu          * suite the minimum available mask.
2790dd4d607eSPeter Xu          */
2791dd4d607eSPeter Xu         int n = 64 - clz64(size);
2792dd4d607eSPeter Xu         if (n > VTD_MGAW) {
2793dd4d607eSPeter Xu             /* should not happen, but in case it happens, limit it */
2794dd4d607eSPeter Xu             n = VTD_MGAW;
2795dd4d607eSPeter Xu         }
2796dd4d607eSPeter Xu         size = 1ULL << n;
2797dd4d607eSPeter Xu     }
2798dd4d607eSPeter Xu 
2799dd4d607eSPeter Xu     entry.target_as = &address_space_memory;
2800dd4d607eSPeter Xu     /* Adjust iova for the size */
2801dd4d607eSPeter Xu     entry.iova = n->start & ~(size - 1);
2802dd4d607eSPeter Xu     /* This field is meaningless for unmap */
2803dd4d607eSPeter Xu     entry.translated_addr = 0;
2804dd4d607eSPeter Xu     entry.perm = IOMMU_NONE;
2805dd4d607eSPeter Xu     entry.addr_mask = size - 1;
2806dd4d607eSPeter Xu 
2807dd4d607eSPeter Xu     trace_vtd_as_unmap_whole(pci_bus_num(as->bus),
2808dd4d607eSPeter Xu                              VTD_PCI_SLOT(as->devfn),
2809dd4d607eSPeter Xu                              VTD_PCI_FUNC(as->devfn),
2810dd4d607eSPeter Xu                              entry.iova, size);
2811dd4d607eSPeter Xu 
2812dd4d607eSPeter Xu     memory_region_notify_one(n, &entry);
2813dd4d607eSPeter Xu }
2814dd4d607eSPeter Xu 
2815dd4d607eSPeter Xu static void vtd_address_space_unmap_all(IntelIOMMUState *s)
2816dd4d607eSPeter Xu {
2817dd4d607eSPeter Xu     IntelIOMMUNotifierNode *node;
2818dd4d607eSPeter Xu     VTDAddressSpace *vtd_as;
2819dd4d607eSPeter Xu     IOMMUNotifier *n;
2820dd4d607eSPeter Xu 
2821dd4d607eSPeter Xu     QLIST_FOREACH(node, &s->notifiers_list, next) {
2822dd4d607eSPeter Xu         vtd_as = node->vtd_as;
2823dd4d607eSPeter Xu         IOMMU_NOTIFIER_FOREACH(n, &vtd_as->iommu) {
2824dd4d607eSPeter Xu             vtd_address_space_unmap(vtd_as, n);
2825dd4d607eSPeter Xu         }
2826dd4d607eSPeter Xu     }
2827dd4d607eSPeter Xu }
2828dd4d607eSPeter Xu 
2829f06a696dSPeter Xu static int vtd_replay_hook(IOMMUTLBEntry *entry, void *private)
2830f06a696dSPeter Xu {
2831f06a696dSPeter Xu     memory_region_notify_one((IOMMUNotifier *)private, entry);
2832f06a696dSPeter Xu     return 0;
2833f06a696dSPeter Xu }
2834f06a696dSPeter Xu 
28353df9d748SAlexey Kardashevskiy static void vtd_iommu_replay(IOMMUMemoryRegion *iommu_mr, IOMMUNotifier *n)
2836f06a696dSPeter Xu {
28373df9d748SAlexey Kardashevskiy     VTDAddressSpace *vtd_as = container_of(iommu_mr, VTDAddressSpace, iommu);
2838f06a696dSPeter Xu     IntelIOMMUState *s = vtd_as->iommu_state;
2839f06a696dSPeter Xu     uint8_t bus_n = pci_bus_num(vtd_as->bus);
2840f06a696dSPeter Xu     VTDContextEntry ce;
2841f06a696dSPeter Xu 
2842f06a696dSPeter Xu     /*
2843dd4d607eSPeter Xu      * The replay can be triggered by either a invalidation or a newly
2844dd4d607eSPeter Xu      * created entry. No matter what, we release existing mappings
2845dd4d607eSPeter Xu      * (it means flushing caches for UNMAP-only registers).
2846f06a696dSPeter Xu      */
2847dd4d607eSPeter Xu     vtd_address_space_unmap(vtd_as, n);
2848dd4d607eSPeter Xu 
2849dd4d607eSPeter Xu     if (vtd_dev_to_context_entry(s, bus_n, vtd_as->devfn, &ce) == 0) {
2850f06a696dSPeter Xu         trace_vtd_replay_ce_valid(bus_n, PCI_SLOT(vtd_as->devfn),
2851f06a696dSPeter Xu                                   PCI_FUNC(vtd_as->devfn),
2852f06a696dSPeter Xu                                   VTD_CONTEXT_ENTRY_DID(ce.hi),
2853f06a696dSPeter Xu                                   ce.hi, ce.lo);
2854dd4d607eSPeter Xu         vtd_page_walk(&ce, 0, ~0ULL, vtd_replay_hook, (void *)n, false);
2855f06a696dSPeter Xu     } else {
2856f06a696dSPeter Xu         trace_vtd_replay_ce_invalid(bus_n, PCI_SLOT(vtd_as->devfn),
2857f06a696dSPeter Xu                                     PCI_FUNC(vtd_as->devfn));
2858f06a696dSPeter Xu     }
2859f06a696dSPeter Xu 
2860f06a696dSPeter Xu     return;
2861f06a696dSPeter Xu }
2862f06a696dSPeter Xu 
28631da12ec4SLe Tan /* Do the initialization. It will also be called when reset, so pay
28641da12ec4SLe Tan  * attention when adding new initialization stuff.
28651da12ec4SLe Tan  */
28661da12ec4SLe Tan static void vtd_init(IntelIOMMUState *s)
28671da12ec4SLe Tan {
2868d54bd7f8SPeter Xu     X86IOMMUState *x86_iommu = X86_IOMMU_DEVICE(s);
2869d54bd7f8SPeter Xu 
28701da12ec4SLe Tan     memset(s->csr, 0, DMAR_REG_SIZE);
28711da12ec4SLe Tan     memset(s->wmask, 0, DMAR_REG_SIZE);
28721da12ec4SLe Tan     memset(s->w1cmask, 0, DMAR_REG_SIZE);
28731da12ec4SLe Tan     memset(s->womask, 0, DMAR_REG_SIZE);
28741da12ec4SLe Tan 
28751da12ec4SLe Tan     s->root = 0;
28761da12ec4SLe Tan     s->root_extended = false;
28771da12ec4SLe Tan     s->dmar_enabled = false;
28781da12ec4SLe Tan     s->iq_head = 0;
28791da12ec4SLe Tan     s->iq_tail = 0;
28801da12ec4SLe Tan     s->iq = 0;
28811da12ec4SLe Tan     s->iq_size = 0;
28821da12ec4SLe Tan     s->qi_enabled = false;
28831da12ec4SLe Tan     s->iq_last_desc_type = VTD_INV_DESC_NONE;
28841da12ec4SLe Tan     s->next_frcd_reg = 0;
28851da12ec4SLe Tan     s->cap = VTD_CAP_FRO | VTD_CAP_NFR | VTD_CAP_ND | VTD_CAP_MGAW |
2886d66b969bSJason Wang              VTD_CAP_SAGAW | VTD_CAP_MAMV | VTD_CAP_PSI | VTD_CAP_SLLPS;
2887ed7b8fbcSLe Tan     s->ecap = VTD_ECAP_QI | VTD_ECAP_IRO;
28881da12ec4SLe Tan 
2889d54bd7f8SPeter Xu     if (x86_iommu->intr_supported) {
2890e6b6af05SRadim Krčmář         s->ecap |= VTD_ECAP_IR | VTD_ECAP_MHMV;
2891e6b6af05SRadim Krčmář         if (s->intr_eim == ON_OFF_AUTO_ON) {
2892e6b6af05SRadim Krčmář             s->ecap |= VTD_ECAP_EIM;
2893e6b6af05SRadim Krčmář         }
2894e6b6af05SRadim Krčmář         assert(s->intr_eim != ON_OFF_AUTO_AUTO);
2895d54bd7f8SPeter Xu     }
2896d54bd7f8SPeter Xu 
2897554f5e16SJason Wang     if (x86_iommu->dt_supported) {
2898554f5e16SJason Wang         s->ecap |= VTD_ECAP_DT;
2899554f5e16SJason Wang     }
2900554f5e16SJason Wang 
2901dbaabb25SPeter Xu     if (x86_iommu->pt_supported) {
2902dbaabb25SPeter Xu         s->ecap |= VTD_ECAP_PT;
2903dbaabb25SPeter Xu     }
2904dbaabb25SPeter Xu 
29053b40f0e5SAviv Ben-David     if (s->caching_mode) {
29063b40f0e5SAviv Ben-David         s->cap |= VTD_CAP_CM;
29073b40f0e5SAviv Ben-David     }
29083b40f0e5SAviv Ben-David 
2909d92fa2dcSLe Tan     vtd_reset_context_cache(s);
2910b5a280c0SLe Tan     vtd_reset_iotlb(s);
2911d92fa2dcSLe Tan 
29121da12ec4SLe Tan     /* Define registers with default values and bit semantics */
29131da12ec4SLe Tan     vtd_define_long(s, DMAR_VER_REG, 0x10UL, 0, 0);
29141da12ec4SLe Tan     vtd_define_quad(s, DMAR_CAP_REG, s->cap, 0, 0);
29151da12ec4SLe Tan     vtd_define_quad(s, DMAR_ECAP_REG, s->ecap, 0, 0);
29161da12ec4SLe Tan     vtd_define_long(s, DMAR_GCMD_REG, 0, 0xff800000UL, 0);
29171da12ec4SLe Tan     vtd_define_long_wo(s, DMAR_GCMD_REG, 0xff800000UL);
29181da12ec4SLe Tan     vtd_define_long(s, DMAR_GSTS_REG, 0, 0, 0);
29191da12ec4SLe Tan     vtd_define_quad(s, DMAR_RTADDR_REG, 0, 0xfffffffffffff000ULL, 0);
29201da12ec4SLe Tan     vtd_define_quad(s, DMAR_CCMD_REG, 0, 0xe0000003ffffffffULL, 0);
29211da12ec4SLe Tan     vtd_define_quad_wo(s, DMAR_CCMD_REG, 0x3ffff0000ULL);
29221da12ec4SLe Tan 
29231da12ec4SLe Tan     /* Advanced Fault Logging not supported */
29241da12ec4SLe Tan     vtd_define_long(s, DMAR_FSTS_REG, 0, 0, 0x11UL);
29251da12ec4SLe Tan     vtd_define_long(s, DMAR_FECTL_REG, 0x80000000UL, 0x80000000UL, 0);
29261da12ec4SLe Tan     vtd_define_long(s, DMAR_FEDATA_REG, 0, 0x0000ffffUL, 0);
29271da12ec4SLe Tan     vtd_define_long(s, DMAR_FEADDR_REG, 0, 0xfffffffcUL, 0);
29281da12ec4SLe Tan 
29291da12ec4SLe Tan     /* Treated as RsvdZ when EIM in ECAP_REG is not supported
29301da12ec4SLe Tan      * vtd_define_long(s, DMAR_FEUADDR_REG, 0, 0xffffffffUL, 0);
29311da12ec4SLe Tan      */
29321da12ec4SLe Tan     vtd_define_long(s, DMAR_FEUADDR_REG, 0, 0, 0);
29331da12ec4SLe Tan 
29341da12ec4SLe Tan     /* Treated as RO for implementations that PLMR and PHMR fields reported
29351da12ec4SLe Tan      * as Clear in the CAP_REG.
29361da12ec4SLe Tan      * vtd_define_long(s, DMAR_PMEN_REG, 0, 0x80000000UL, 0);
29371da12ec4SLe Tan      */
29381da12ec4SLe Tan     vtd_define_long(s, DMAR_PMEN_REG, 0, 0, 0);
29391da12ec4SLe Tan 
2940ed7b8fbcSLe Tan     vtd_define_quad(s, DMAR_IQH_REG, 0, 0, 0);
2941ed7b8fbcSLe Tan     vtd_define_quad(s, DMAR_IQT_REG, 0, 0x7fff0ULL, 0);
2942ed7b8fbcSLe Tan     vtd_define_quad(s, DMAR_IQA_REG, 0, 0xfffffffffffff007ULL, 0);
2943ed7b8fbcSLe Tan     vtd_define_long(s, DMAR_ICS_REG, 0, 0, 0x1UL);
2944ed7b8fbcSLe Tan     vtd_define_long(s, DMAR_IECTL_REG, 0x80000000UL, 0x80000000UL, 0);
2945ed7b8fbcSLe Tan     vtd_define_long(s, DMAR_IEDATA_REG, 0, 0xffffffffUL, 0);
2946ed7b8fbcSLe Tan     vtd_define_long(s, DMAR_IEADDR_REG, 0, 0xfffffffcUL, 0);
2947ed7b8fbcSLe Tan     /* Treadted as RsvdZ when EIM in ECAP_REG is not supported */
2948ed7b8fbcSLe Tan     vtd_define_long(s, DMAR_IEUADDR_REG, 0, 0, 0);
2949ed7b8fbcSLe Tan 
29501da12ec4SLe Tan     /* IOTLB registers */
29511da12ec4SLe Tan     vtd_define_quad(s, DMAR_IOTLB_REG, 0, 0Xb003ffff00000000ULL, 0);
29521da12ec4SLe Tan     vtd_define_quad(s, DMAR_IVA_REG, 0, 0xfffffffffffff07fULL, 0);
29531da12ec4SLe Tan     vtd_define_quad_wo(s, DMAR_IVA_REG, 0xfffffffffffff07fULL);
29541da12ec4SLe Tan 
29551da12ec4SLe Tan     /* Fault Recording Registers, 128-bit */
29561da12ec4SLe Tan     vtd_define_quad(s, DMAR_FRCD_REG_0_0, 0, 0, 0);
29571da12ec4SLe Tan     vtd_define_quad(s, DMAR_FRCD_REG_0_2, 0, 0, 0x8000000000000000ULL);
2958a5861439SPeter Xu 
2959a5861439SPeter Xu     /*
296028589311SJan Kiszka      * Interrupt remapping registers.
2961a5861439SPeter Xu      */
296228589311SJan Kiszka     vtd_define_quad(s, DMAR_IRTA_REG, 0, 0xfffffffffffff80fULL, 0);
29631da12ec4SLe Tan }
29641da12ec4SLe Tan 
29651da12ec4SLe Tan /* Should not reset address_spaces when reset because devices will still use
29661da12ec4SLe Tan  * the address space they got at first (won't ask the bus again).
29671da12ec4SLe Tan  */
29681da12ec4SLe Tan static void vtd_reset(DeviceState *dev)
29691da12ec4SLe Tan {
29701da12ec4SLe Tan     IntelIOMMUState *s = INTEL_IOMMU_DEVICE(dev);
29711da12ec4SLe Tan 
29721da12ec4SLe Tan     vtd_init(s);
2973dd4d607eSPeter Xu 
2974dd4d607eSPeter Xu     /*
2975dd4d607eSPeter Xu      * When device reset, throw away all mappings and external caches
2976dd4d607eSPeter Xu      */
2977dd4d607eSPeter Xu     vtd_address_space_unmap_all(s);
29781da12ec4SLe Tan }
29791da12ec4SLe Tan 
2980621d983aSMarcel Apfelbaum static AddressSpace *vtd_host_dma_iommu(PCIBus *bus, void *opaque, int devfn)
2981621d983aSMarcel Apfelbaum {
2982621d983aSMarcel Apfelbaum     IntelIOMMUState *s = opaque;
2983621d983aSMarcel Apfelbaum     VTDAddressSpace *vtd_as;
2984621d983aSMarcel Apfelbaum 
2985*bf33cc75SPeter Xu     assert(0 <= devfn && devfn < PCI_DEVFN_MAX);
2986621d983aSMarcel Apfelbaum 
2987621d983aSMarcel Apfelbaum     vtd_as = vtd_find_add_as(s, bus, devfn);
2988621d983aSMarcel Apfelbaum     return &vtd_as->as;
2989621d983aSMarcel Apfelbaum }
2990621d983aSMarcel Apfelbaum 
2991e6b6af05SRadim Krčmář static bool vtd_decide_config(IntelIOMMUState *s, Error **errp)
29926333e93cSRadim Krčmář {
2993e6b6af05SRadim Krčmář     X86IOMMUState *x86_iommu = X86_IOMMU_DEVICE(s);
2994e6b6af05SRadim Krčmář 
29956333e93cSRadim Krčmář     /* Currently Intel IOMMU IR only support "kernel-irqchip={off|split}" */
29966333e93cSRadim Krčmář     if (x86_iommu->intr_supported && kvm_irqchip_in_kernel() &&
29976333e93cSRadim Krčmář         !kvm_irqchip_is_split()) {
29986333e93cSRadim Krčmář         error_setg(errp, "Intel Interrupt Remapping cannot work with "
29996333e93cSRadim Krčmář                          "kernel-irqchip=on, please use 'split|off'.");
30006333e93cSRadim Krčmář         return false;
30016333e93cSRadim Krčmář     }
3002e6b6af05SRadim Krčmář     if (s->intr_eim == ON_OFF_AUTO_ON && !x86_iommu->intr_supported) {
3003e6b6af05SRadim Krčmář         error_setg(errp, "eim=on cannot be selected without intremap=on");
3004e6b6af05SRadim Krčmář         return false;
3005e6b6af05SRadim Krčmář     }
3006e6b6af05SRadim Krčmář 
3007e6b6af05SRadim Krčmář     if (s->intr_eim == ON_OFF_AUTO_AUTO) {
3008fb506e70SRadim Krčmář         s->intr_eim = (kvm_irqchip_in_kernel() || s->buggy_eim)
3009fb506e70SRadim Krčmář                       && x86_iommu->intr_supported ?
3010e6b6af05SRadim Krčmář                                               ON_OFF_AUTO_ON : ON_OFF_AUTO_OFF;
3011e6b6af05SRadim Krčmář     }
3012fb506e70SRadim Krčmář     if (s->intr_eim == ON_OFF_AUTO_ON && !s->buggy_eim) {
3013fb506e70SRadim Krčmář         if (!kvm_irqchip_in_kernel()) {
3014fb506e70SRadim Krčmář             error_setg(errp, "eim=on requires accel=kvm,kernel-irqchip=split");
3015fb506e70SRadim Krčmář             return false;
3016fb506e70SRadim Krčmář         }
3017fb506e70SRadim Krčmář         if (!kvm_enable_x2apic()) {
3018fb506e70SRadim Krčmář             error_setg(errp, "eim=on requires support on the KVM side"
3019fb506e70SRadim Krčmář                              "(X2APIC_API, first shipped in v4.7)");
3020fb506e70SRadim Krčmář             return false;
3021fb506e70SRadim Krčmář         }
3022fb506e70SRadim Krčmář     }
3023e6b6af05SRadim Krčmář 
30246333e93cSRadim Krčmář     return true;
30256333e93cSRadim Krčmář }
30266333e93cSRadim Krčmář 
30271da12ec4SLe Tan static void vtd_realize(DeviceState *dev, Error **errp)
30281da12ec4SLe Tan {
3029ef0e8fc7SEduardo Habkost     MachineState *ms = MACHINE(qdev_get_machine());
3030ef0e8fc7SEduardo Habkost     MachineClass *mc = MACHINE_GET_CLASS(ms);
3031ef0e8fc7SEduardo Habkost     PCMachineState *pcms =
3032ef0e8fc7SEduardo Habkost         PC_MACHINE(object_dynamic_cast(OBJECT(ms), TYPE_PC_MACHINE));
3033ef0e8fc7SEduardo Habkost     PCIBus *bus;
30341da12ec4SLe Tan     IntelIOMMUState *s = INTEL_IOMMU_DEVICE(dev);
30354684a204SPeter Xu     X86IOMMUState *x86_iommu = X86_IOMMU_DEVICE(dev);
30361da12ec4SLe Tan 
3037ef0e8fc7SEduardo Habkost     if (!pcms) {
3038ef0e8fc7SEduardo Habkost         error_setg(errp, "Machine-type '%s' not supported by intel-iommu",
3039ef0e8fc7SEduardo Habkost                    mc->name);
3040ef0e8fc7SEduardo Habkost         return;
3041ef0e8fc7SEduardo Habkost     }
3042ef0e8fc7SEduardo Habkost 
3043ef0e8fc7SEduardo Habkost     bus = pcms->bus;
3044fb9f5926SDavid Kiarie     x86_iommu->type = TYPE_INTEL;
30456333e93cSRadim Krčmář 
3046e6b6af05SRadim Krčmář     if (!vtd_decide_config(s, errp)) {
30476333e93cSRadim Krčmář         return;
30486333e93cSRadim Krčmář     }
30496333e93cSRadim Krčmář 
3050dd4d607eSPeter Xu     QLIST_INIT(&s->notifiers_list);
30517df953bdSKnut Omang     memset(s->vtd_as_by_bus_num, 0, sizeof(s->vtd_as_by_bus_num));
30521da12ec4SLe Tan     memory_region_init_io(&s->csrmem, OBJECT(s), &vtd_mem_ops, s,
30531da12ec4SLe Tan                           "intel_iommu", DMAR_REG_SIZE);
30541da12ec4SLe Tan     sysbus_init_mmio(SYS_BUS_DEVICE(s), &s->csrmem);
3055b5a280c0SLe Tan     /* No corresponding destroy */
3056b5a280c0SLe Tan     s->iotlb = g_hash_table_new_full(vtd_uint64_hash, vtd_uint64_equal,
3057b5a280c0SLe Tan                                      g_free, g_free);
30587df953bdSKnut Omang     s->vtd_as_by_busptr = g_hash_table_new_full(vtd_uint64_hash, vtd_uint64_equal,
30597df953bdSKnut Omang                                               g_free, g_free);
30601da12ec4SLe Tan     vtd_init(s);
3061621d983aSMarcel Apfelbaum     sysbus_mmio_map(SYS_BUS_DEVICE(s), 0, Q35_HOST_BRIDGE_IOMMU_ADDR);
3062621d983aSMarcel Apfelbaum     pci_setup_iommu(bus, vtd_host_dma_iommu, dev);
3063cb135f59SPeter Xu     /* Pseudo address space under root PCI bus. */
3064cb135f59SPeter Xu     pcms->ioapic_as = vtd_host_dma_iommu(bus, s, Q35_PSEUDO_DEVFN_IOAPIC);
30651da12ec4SLe Tan }
30661da12ec4SLe Tan 
30671da12ec4SLe Tan static void vtd_class_init(ObjectClass *klass, void *data)
30681da12ec4SLe Tan {
30691da12ec4SLe Tan     DeviceClass *dc = DEVICE_CLASS(klass);
30701c7955c4SPeter Xu     X86IOMMUClass *x86_class = X86_IOMMU_CLASS(klass);
30711da12ec4SLe Tan 
30721da12ec4SLe Tan     dc->reset = vtd_reset;
30731da12ec4SLe Tan     dc->vmsd = &vtd_vmstate;
30741da12ec4SLe Tan     dc->props = vtd_properties;
3075621d983aSMarcel Apfelbaum     dc->hotpluggable = false;
30761c7955c4SPeter Xu     x86_class->realize = vtd_realize;
30778b5ed7dfSPeter Xu     x86_class->int_remap = vtd_int_remap;
30788ab5700cSEduardo Habkost     /* Supported by the pc-q35-* machine types */
3079e4f4fb1eSEduardo Habkost     dc->user_creatable = true;
30801da12ec4SLe Tan }
30811da12ec4SLe Tan 
30821da12ec4SLe Tan static const TypeInfo vtd_info = {
30831da12ec4SLe Tan     .name          = TYPE_INTEL_IOMMU_DEVICE,
30841c7955c4SPeter Xu     .parent        = TYPE_X86_IOMMU_DEVICE,
30851da12ec4SLe Tan     .instance_size = sizeof(IntelIOMMUState),
30861da12ec4SLe Tan     .class_init    = vtd_class_init,
30871da12ec4SLe Tan };
30881da12ec4SLe Tan 
30891221a474SAlexey Kardashevskiy static void vtd_iommu_memory_region_class_init(ObjectClass *klass,
30901221a474SAlexey Kardashevskiy                                                      void *data)
30911221a474SAlexey Kardashevskiy {
30921221a474SAlexey Kardashevskiy     IOMMUMemoryRegionClass *imrc = IOMMU_MEMORY_REGION_CLASS(klass);
30931221a474SAlexey Kardashevskiy 
30941221a474SAlexey Kardashevskiy     imrc->translate = vtd_iommu_translate;
30951221a474SAlexey Kardashevskiy     imrc->notify_flag_changed = vtd_iommu_notify_flag_changed;
30961221a474SAlexey Kardashevskiy     imrc->replay = vtd_iommu_replay;
30971221a474SAlexey Kardashevskiy }
30981221a474SAlexey Kardashevskiy 
30991221a474SAlexey Kardashevskiy static const TypeInfo vtd_iommu_memory_region_info = {
31001221a474SAlexey Kardashevskiy     .parent = TYPE_IOMMU_MEMORY_REGION,
31011221a474SAlexey Kardashevskiy     .name = TYPE_INTEL_IOMMU_MEMORY_REGION,
31021221a474SAlexey Kardashevskiy     .class_init = vtd_iommu_memory_region_class_init,
31031221a474SAlexey Kardashevskiy };
31041221a474SAlexey Kardashevskiy 
31051da12ec4SLe Tan static void vtd_register_types(void)
31061da12ec4SLe Tan {
31071da12ec4SLe Tan     type_register_static(&vtd_info);
31081221a474SAlexey Kardashevskiy     type_register_static(&vtd_iommu_memory_region_info);
31091da12ec4SLe Tan }
31101da12ec4SLe Tan 
31111da12ec4SLe Tan type_init(vtd_register_types)
3112