xref: /qemu/accel/tcg/user-exec.c (revision 177a8cb83bcf2c8eb013b997173a25339a7ce86f)
142a623c7SBlue Swirl /*
242a623c7SBlue Swirl  *  User emulator execution
342a623c7SBlue Swirl  *
442a623c7SBlue Swirl  *  Copyright (c) 2003-2005 Fabrice Bellard
542a623c7SBlue Swirl  *
642a623c7SBlue Swirl  * This library is free software; you can redistribute it and/or
742a623c7SBlue Swirl  * modify it under the terms of the GNU Lesser General Public
842a623c7SBlue Swirl  * License as published by the Free Software Foundation; either
9fb0343d5SThomas Huth  * version 2.1 of the License, or (at your option) any later version.
1042a623c7SBlue Swirl  *
1142a623c7SBlue Swirl  * This library is distributed in the hope that it will be useful,
1242a623c7SBlue Swirl  * but WITHOUT ANY WARRANTY; without even the implied warranty of
1342a623c7SBlue Swirl  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
1442a623c7SBlue Swirl  * Lesser General Public License for more details.
1542a623c7SBlue Swirl  *
1642a623c7SBlue Swirl  * You should have received a copy of the GNU Lesser General Public
1742a623c7SBlue Swirl  * License along with this library; if not, see <http://www.gnu.org/licenses/>.
1842a623c7SBlue Swirl  */
19d38ea87aSPeter Maydell #include "qemu/osdep.h"
2078271684SClaudio Fontana #include "hw/core/tcg-cpu-ops.h"
2176cad711SPaolo Bonzini #include "disas/disas.h"
2263c91552SPaolo Bonzini #include "exec/exec-all.h"
23dcb32f1dSPhilippe Mathieu-Daudé #include "tcg/tcg.h"
24023b0ae3SPeter Maydell #include "qemu/bitops.h"
25*177a8cb8SRichard Henderson #include "qemu/rcu.h"
26f08b6170SPaolo Bonzini #include "exec/cpu_ldst.h"
273b9bd3f4SPaolo Bonzini #include "exec/translate-all.h"
28a411d296SPhilippe Mathieu-Daudé #include "exec/helper-proto.h"
29e6cd4bb5SRichard Henderson #include "qemu/atomic128.h"
30243af022SPaolo Bonzini #include "trace/trace-root.h"
3137e891e3SRichard Henderson #include "tcg/tcg-ldst.h"
320583f775SRichard Henderson #include "internal.h"
3342a623c7SBlue Swirl 
34ec603b55SRichard Henderson __thread uintptr_t helper_retaddr;
35ec603b55SRichard Henderson 
3642a623c7SBlue Swirl //#define DEBUG_SIGNAL
3742a623c7SBlue Swirl 
380fdbb7d2SRichard Henderson /*
390fdbb7d2SRichard Henderson  * Adjust the pc to pass to cpu_restore_state; return the memop type.
400fdbb7d2SRichard Henderson  */
410fdbb7d2SRichard Henderson MMUAccessType adjust_signal_pc(uintptr_t *pc, bool is_write)
4242a623c7SBlue Swirl {
4352ba13f0SRichard Henderson     switch (helper_retaddr) {
4452ba13f0SRichard Henderson     default:
4552ba13f0SRichard Henderson         /*
4652ba13f0SRichard Henderson          * Fault during host memory operation within a helper function.
4752ba13f0SRichard Henderson          * The helper's host return address, saved here, gives us a
4852ba13f0SRichard Henderson          * pointer into the generated code that will unwind to the
4952ba13f0SRichard Henderson          * correct guest pc.
50ec603b55SRichard Henderson          */
510fdbb7d2SRichard Henderson         *pc = helper_retaddr;
5252ba13f0SRichard Henderson         break;
5352ba13f0SRichard Henderson 
5452ba13f0SRichard Henderson     case 0:
5552ba13f0SRichard Henderson         /*
5652ba13f0SRichard Henderson          * Fault during host memory operation within generated code.
5752ba13f0SRichard Henderson          * (Or, a unrelated bug within qemu, but we can't tell from here).
5852ba13f0SRichard Henderson          *
5952ba13f0SRichard Henderson          * We take the host pc from the signal frame.  However, we cannot
6052ba13f0SRichard Henderson          * use that value directly.  Within cpu_restore_state_from_tb, we
6152ba13f0SRichard Henderson          * assume PC comes from GETPC(), as used by the helper functions,
6252ba13f0SRichard Henderson          * so we adjust the address by -GETPC_ADJ to form an address that
63e3a6e0daSzhaolichang          * is within the call insn, so that the address does not accidentally
6452ba13f0SRichard Henderson          * match the beginning of the next guest insn.  However, when the
6552ba13f0SRichard Henderson          * pc comes from the signal frame it points to the actual faulting
6652ba13f0SRichard Henderson          * host memory insn and not the return from a call insn.
6752ba13f0SRichard Henderson          *
6852ba13f0SRichard Henderson          * Therefore, adjust to compensate for what will be done later
6952ba13f0SRichard Henderson          * by cpu_restore_state_from_tb.
7052ba13f0SRichard Henderson          */
710fdbb7d2SRichard Henderson         *pc += GETPC_ADJ;
7252ba13f0SRichard Henderson         break;
7352ba13f0SRichard Henderson 
7452ba13f0SRichard Henderson     case 1:
7552ba13f0SRichard Henderson         /*
7652ba13f0SRichard Henderson          * Fault during host read for translation, or loosely, "execution".
7752ba13f0SRichard Henderson          *
7852ba13f0SRichard Henderson          * The guest pc is already pointing to the start of the TB for which
7952ba13f0SRichard Henderson          * code is being generated.  If the guest translator manages the
8052ba13f0SRichard Henderson          * page crossings correctly, this is exactly the correct address
8152ba13f0SRichard Henderson          * (and if the translator doesn't handle page boundaries correctly
8252ba13f0SRichard Henderson          * there's little we can do about that here).  Therefore, do not
8352ba13f0SRichard Henderson          * trigger the unwinder.
8452ba13f0SRichard Henderson          */
850fdbb7d2SRichard Henderson         *pc = 0;
860fdbb7d2SRichard Henderson         return MMU_INST_FETCH;
87ec603b55SRichard Henderson     }
88ec603b55SRichard Henderson 
890fdbb7d2SRichard Henderson     return is_write ? MMU_DATA_STORE : MMU_DATA_LOAD;
900fdbb7d2SRichard Henderson }
910fdbb7d2SRichard Henderson 
925e38ba7dSRichard Henderson /**
935e38ba7dSRichard Henderson  * handle_sigsegv_accerr_write:
945e38ba7dSRichard Henderson  * @cpu: the cpu context
955e38ba7dSRichard Henderson  * @old_set: the sigset_t from the signal ucontext_t
965e38ba7dSRichard Henderson  * @host_pc: the host pc, adjusted for the signal
975e38ba7dSRichard Henderson  * @guest_addr: the guest address of the fault
985e38ba7dSRichard Henderson  *
995e38ba7dSRichard Henderson  * Return true if the write fault has been handled, and should be re-tried.
1005e38ba7dSRichard Henderson  *
1015e38ba7dSRichard Henderson  * Note that it is important that we don't call page_unprotect() unless
1029323e79fSPeter Maydell  * this is really a "write to nonwritable page" fault, because
1035e38ba7dSRichard Henderson  * page_unprotect() assumes that if it is called for an access to
1049323e79fSPeter Maydell  * a page that's writable this means we had two threads racing and
1059323e79fSPeter Maydell  * another thread got there first and already made the page writable;
1065e38ba7dSRichard Henderson  * so we will retry the access. If we were to call page_unprotect()
1075e38ba7dSRichard Henderson  * for some other kind of fault that should really be passed to the
1085e38ba7dSRichard Henderson  * guest, we'd end up in an infinite loop of retrying the faulting access.
1095e38ba7dSRichard Henderson  */
1105e38ba7dSRichard Henderson bool handle_sigsegv_accerr_write(CPUState *cpu, sigset_t *old_set,
1115e38ba7dSRichard Henderson                                  uintptr_t host_pc, abi_ptr guest_addr)
1125e38ba7dSRichard Henderson {
1135e38ba7dSRichard Henderson     switch (page_unprotect(guest_addr, host_pc)) {
1145e38ba7dSRichard Henderson     case 0:
1155e38ba7dSRichard Henderson         /*
1165e38ba7dSRichard Henderson          * Fault not caused by a page marked unwritable to protect
1175e38ba7dSRichard Henderson          * cached translations, must be the guest binary's problem.
1185e38ba7dSRichard Henderson          */
1195e38ba7dSRichard Henderson         return false;
1205e38ba7dSRichard Henderson     case 1:
1215e38ba7dSRichard Henderson         /*
1225e38ba7dSRichard Henderson          * Fault caused by protection of cached translation; TBs
1235e38ba7dSRichard Henderson          * invalidated, so resume execution.
1245e38ba7dSRichard Henderson          */
1255e38ba7dSRichard Henderson         return true;
1265e38ba7dSRichard Henderson     case 2:
1275e38ba7dSRichard Henderson         /*
1285e38ba7dSRichard Henderson          * Fault caused by protection of cached translation, and the
1295e38ba7dSRichard Henderson          * currently executing TB was modified and must be exited immediately.
1305e38ba7dSRichard Henderson          */
131940b3090SRichard Henderson         sigprocmask(SIG_SETMASK, old_set, NULL);
132940b3090SRichard Henderson         cpu_loop_exit_noexc(cpu);
1335e38ba7dSRichard Henderson         /* NORETURN */
1345e38ba7dSRichard Henderson     default:
1355e38ba7dSRichard Henderson         g_assert_not_reached();
1365e38ba7dSRichard Henderson     }
1375e38ba7dSRichard Henderson }
1385e38ba7dSRichard Henderson 
13967ff2186SRichard Henderson typedef struct PageFlagsNode {
140*177a8cb8SRichard Henderson     struct rcu_head rcu;
14167ff2186SRichard Henderson     IntervalTreeNode itree;
14267ff2186SRichard Henderson     int flags;
14367ff2186SRichard Henderson } PageFlagsNode;
144d941c086SRichard Henderson 
14567ff2186SRichard Henderson static IntervalTreeRoot pageflags_root;
14667ff2186SRichard Henderson 
14767ff2186SRichard Henderson static PageFlagsNode *pageflags_find(target_ulong start, target_long last)
148d941c086SRichard Henderson {
14967ff2186SRichard Henderson     IntervalTreeNode *n;
15067ff2186SRichard Henderson 
15167ff2186SRichard Henderson     n = interval_tree_iter_first(&pageflags_root, start, last);
15267ff2186SRichard Henderson     return n ? container_of(n, PageFlagsNode, itree) : NULL;
153d941c086SRichard Henderson }
154d941c086SRichard Henderson 
15567ff2186SRichard Henderson static PageFlagsNode *pageflags_next(PageFlagsNode *p, target_ulong start,
15667ff2186SRichard Henderson                                      target_long last)
157d941c086SRichard Henderson {
15867ff2186SRichard Henderson     IntervalTreeNode *n;
159d941c086SRichard Henderson 
16067ff2186SRichard Henderson     n = interval_tree_iter_next(&p->itree, start, last);
16167ff2186SRichard Henderson     return n ? container_of(n, PageFlagsNode, itree) : NULL;
162d941c086SRichard Henderson }
163d941c086SRichard Henderson 
164d941c086SRichard Henderson int walk_memory_regions(void *priv, walk_memory_regions_fn fn)
165d941c086SRichard Henderson {
16667ff2186SRichard Henderson     IntervalTreeNode *n;
16767ff2186SRichard Henderson     int rc = 0;
168d941c086SRichard Henderson 
16967ff2186SRichard Henderson     mmap_lock();
17067ff2186SRichard Henderson     for (n = interval_tree_iter_first(&pageflags_root, 0, -1);
17167ff2186SRichard Henderson          n != NULL;
17267ff2186SRichard Henderson          n = interval_tree_iter_next(n, 0, -1)) {
17367ff2186SRichard Henderson         PageFlagsNode *p = container_of(n, PageFlagsNode, itree);
174d941c086SRichard Henderson 
17567ff2186SRichard Henderson         rc = fn(priv, n->start, n->last + 1, p->flags);
176d941c086SRichard Henderson         if (rc != 0) {
17767ff2186SRichard Henderson             break;
178d941c086SRichard Henderson         }
179d941c086SRichard Henderson     }
18067ff2186SRichard Henderson     mmap_unlock();
181d941c086SRichard Henderson 
18267ff2186SRichard Henderson     return rc;
183d941c086SRichard Henderson }
184d941c086SRichard Henderson 
185d941c086SRichard Henderson static int dump_region(void *priv, target_ulong start,
186d941c086SRichard Henderson                        target_ulong end, unsigned long prot)
187d941c086SRichard Henderson {
188d941c086SRichard Henderson     FILE *f = (FILE *)priv;
189d941c086SRichard Henderson 
19067ff2186SRichard Henderson     fprintf(f, TARGET_FMT_lx"-"TARGET_FMT_lx" "TARGET_FMT_lx" %c%c%c\n",
191d941c086SRichard Henderson             start, end, end - start,
192d941c086SRichard Henderson             ((prot & PAGE_READ) ? 'r' : '-'),
193d941c086SRichard Henderson             ((prot & PAGE_WRITE) ? 'w' : '-'),
194d941c086SRichard Henderson             ((prot & PAGE_EXEC) ? 'x' : '-'));
195d941c086SRichard Henderson     return 0;
196d941c086SRichard Henderson }
197d941c086SRichard Henderson 
198d941c086SRichard Henderson /* dump memory mappings */
199d941c086SRichard Henderson void page_dump(FILE *f)
200d941c086SRichard Henderson {
201d941c086SRichard Henderson     const int length = sizeof(target_ulong) * 2;
20267ff2186SRichard Henderson 
20367ff2186SRichard Henderson     fprintf(f, "%-*s %-*s %-*s %s\n",
204d941c086SRichard Henderson             length, "start", length, "end", length, "size", "prot");
205d941c086SRichard Henderson     walk_memory_regions(f, dump_region);
206d941c086SRichard Henderson }
207d941c086SRichard Henderson 
208d941c086SRichard Henderson int page_get_flags(target_ulong address)
209d941c086SRichard Henderson {
21067ff2186SRichard Henderson     PageFlagsNode *p = pageflags_find(address, address);
211d941c086SRichard Henderson 
21267ff2186SRichard Henderson     /*
21367ff2186SRichard Henderson      * See util/interval-tree.c re lockless lookups: no false positives but
21467ff2186SRichard Henderson      * there are false negatives.  If we find nothing, retry with the mmap
21567ff2186SRichard Henderson      * lock acquired.
21667ff2186SRichard Henderson      */
21767ff2186SRichard Henderson     if (p) {
21867ff2186SRichard Henderson         return p->flags;
21967ff2186SRichard Henderson     }
22067ff2186SRichard Henderson     if (have_mmap_lock()) {
221d941c086SRichard Henderson         return 0;
222d941c086SRichard Henderson     }
22367ff2186SRichard Henderson 
22467ff2186SRichard Henderson     mmap_lock();
22567ff2186SRichard Henderson     p = pageflags_find(address, address);
22667ff2186SRichard Henderson     mmap_unlock();
22767ff2186SRichard Henderson     return p ? p->flags : 0;
22867ff2186SRichard Henderson }
22967ff2186SRichard Henderson 
23067ff2186SRichard Henderson /* A subroutine of page_set_flags: insert a new node for [start,last]. */
23167ff2186SRichard Henderson static void pageflags_create(target_ulong start, target_ulong last, int flags)
23267ff2186SRichard Henderson {
23367ff2186SRichard Henderson     PageFlagsNode *p = g_new(PageFlagsNode, 1);
23467ff2186SRichard Henderson 
23567ff2186SRichard Henderson     p->itree.start = start;
23667ff2186SRichard Henderson     p->itree.last = last;
23767ff2186SRichard Henderson     p->flags = flags;
23867ff2186SRichard Henderson     interval_tree_insert(&p->itree, &pageflags_root);
23967ff2186SRichard Henderson }
24067ff2186SRichard Henderson 
24167ff2186SRichard Henderson /* A subroutine of page_set_flags: remove everything in [start,last]. */
24267ff2186SRichard Henderson static bool pageflags_unset(target_ulong start, target_ulong last)
24367ff2186SRichard Henderson {
24467ff2186SRichard Henderson     bool inval_tb = false;
24567ff2186SRichard Henderson 
24667ff2186SRichard Henderson     while (true) {
24767ff2186SRichard Henderson         PageFlagsNode *p = pageflags_find(start, last);
24867ff2186SRichard Henderson         target_ulong p_last;
24967ff2186SRichard Henderson 
25067ff2186SRichard Henderson         if (!p) {
25167ff2186SRichard Henderson             break;
25267ff2186SRichard Henderson         }
25367ff2186SRichard Henderson 
25467ff2186SRichard Henderson         if (p->flags & PAGE_EXEC) {
25567ff2186SRichard Henderson             inval_tb = true;
25667ff2186SRichard Henderson         }
25767ff2186SRichard Henderson 
25867ff2186SRichard Henderson         interval_tree_remove(&p->itree, &pageflags_root);
25967ff2186SRichard Henderson         p_last = p->itree.last;
26067ff2186SRichard Henderson 
26167ff2186SRichard Henderson         if (p->itree.start < start) {
26267ff2186SRichard Henderson             /* Truncate the node from the end, or split out the middle. */
26367ff2186SRichard Henderson             p->itree.last = start - 1;
26467ff2186SRichard Henderson             interval_tree_insert(&p->itree, &pageflags_root);
26567ff2186SRichard Henderson             if (last < p_last) {
26667ff2186SRichard Henderson                 pageflags_create(last + 1, p_last, p->flags);
26767ff2186SRichard Henderson                 break;
26867ff2186SRichard Henderson             }
26967ff2186SRichard Henderson         } else if (p_last <= last) {
27067ff2186SRichard Henderson             /* Range completely covers node -- remove it. */
271*177a8cb8SRichard Henderson             g_free_rcu(p, rcu);
27267ff2186SRichard Henderson         } else {
27367ff2186SRichard Henderson             /* Truncate the node from the start. */
27467ff2186SRichard Henderson             p->itree.start = last + 1;
27567ff2186SRichard Henderson             interval_tree_insert(&p->itree, &pageflags_root);
27667ff2186SRichard Henderson             break;
27767ff2186SRichard Henderson         }
27867ff2186SRichard Henderson     }
27967ff2186SRichard Henderson 
28067ff2186SRichard Henderson     return inval_tb;
28167ff2186SRichard Henderson }
28267ff2186SRichard Henderson 
28367ff2186SRichard Henderson /*
28467ff2186SRichard Henderson  * A subroutine of page_set_flags: nothing overlaps [start,last],
28567ff2186SRichard Henderson  * but check adjacent mappings and maybe merge into a single range.
28667ff2186SRichard Henderson  */
28767ff2186SRichard Henderson static void pageflags_create_merge(target_ulong start, target_ulong last,
28867ff2186SRichard Henderson                                    int flags)
28967ff2186SRichard Henderson {
29067ff2186SRichard Henderson     PageFlagsNode *next = NULL, *prev = NULL;
29167ff2186SRichard Henderson 
29267ff2186SRichard Henderson     if (start > 0) {
29367ff2186SRichard Henderson         prev = pageflags_find(start - 1, start - 1);
29467ff2186SRichard Henderson         if (prev) {
29567ff2186SRichard Henderson             if (prev->flags == flags) {
29667ff2186SRichard Henderson                 interval_tree_remove(&prev->itree, &pageflags_root);
29767ff2186SRichard Henderson             } else {
29867ff2186SRichard Henderson                 prev = NULL;
29967ff2186SRichard Henderson             }
30067ff2186SRichard Henderson         }
30167ff2186SRichard Henderson     }
30267ff2186SRichard Henderson     if (last + 1 != 0) {
30367ff2186SRichard Henderson         next = pageflags_find(last + 1, last + 1);
30467ff2186SRichard Henderson         if (next) {
30567ff2186SRichard Henderson             if (next->flags == flags) {
30667ff2186SRichard Henderson                 interval_tree_remove(&next->itree, &pageflags_root);
30767ff2186SRichard Henderson             } else {
30867ff2186SRichard Henderson                 next = NULL;
30967ff2186SRichard Henderson             }
31067ff2186SRichard Henderson         }
31167ff2186SRichard Henderson     }
31267ff2186SRichard Henderson 
31367ff2186SRichard Henderson     if (prev) {
31467ff2186SRichard Henderson         if (next) {
31567ff2186SRichard Henderson             prev->itree.last = next->itree.last;
316*177a8cb8SRichard Henderson             g_free_rcu(next, rcu);
31767ff2186SRichard Henderson         } else {
31867ff2186SRichard Henderson             prev->itree.last = last;
31967ff2186SRichard Henderson         }
32067ff2186SRichard Henderson         interval_tree_insert(&prev->itree, &pageflags_root);
32167ff2186SRichard Henderson     } else if (next) {
32267ff2186SRichard Henderson         next->itree.start = start;
32367ff2186SRichard Henderson         interval_tree_insert(&next->itree, &pageflags_root);
32467ff2186SRichard Henderson     } else {
32567ff2186SRichard Henderson         pageflags_create(start, last, flags);
32667ff2186SRichard Henderson     }
327d941c086SRichard Henderson }
328d941c086SRichard Henderson 
329d941c086SRichard Henderson /*
330d941c086SRichard Henderson  * Allow the target to decide if PAGE_TARGET_[12] may be reset.
331d941c086SRichard Henderson  * By default, they are not kept.
332d941c086SRichard Henderson  */
333d941c086SRichard Henderson #ifndef PAGE_TARGET_STICKY
334d941c086SRichard Henderson #define PAGE_TARGET_STICKY  0
335d941c086SRichard Henderson #endif
336d941c086SRichard Henderson #define PAGE_STICKY  (PAGE_ANON | PAGE_PASSTHROUGH | PAGE_TARGET_STICKY)
337d941c086SRichard Henderson 
33867ff2186SRichard Henderson /* A subroutine of page_set_flags: add flags to [start,last]. */
33967ff2186SRichard Henderson static bool pageflags_set_clear(target_ulong start, target_ulong last,
34067ff2186SRichard Henderson                                 int set_flags, int clear_flags)
34167ff2186SRichard Henderson {
34267ff2186SRichard Henderson     PageFlagsNode *p;
34367ff2186SRichard Henderson     target_ulong p_start, p_last;
34467ff2186SRichard Henderson     int p_flags, merge_flags;
34567ff2186SRichard Henderson     bool inval_tb = false;
34667ff2186SRichard Henderson 
34767ff2186SRichard Henderson  restart:
34867ff2186SRichard Henderson     p = pageflags_find(start, last);
34967ff2186SRichard Henderson     if (!p) {
35067ff2186SRichard Henderson         if (set_flags) {
35167ff2186SRichard Henderson             pageflags_create_merge(start, last, set_flags);
35267ff2186SRichard Henderson         }
35367ff2186SRichard Henderson         goto done;
35467ff2186SRichard Henderson     }
35567ff2186SRichard Henderson 
35667ff2186SRichard Henderson     p_start = p->itree.start;
35767ff2186SRichard Henderson     p_last = p->itree.last;
35867ff2186SRichard Henderson     p_flags = p->flags;
35967ff2186SRichard Henderson     /* Using mprotect on a page does not change sticky bits. */
36067ff2186SRichard Henderson     merge_flags = (p_flags & ~clear_flags) | set_flags;
36167ff2186SRichard Henderson 
36267ff2186SRichard Henderson     /*
36367ff2186SRichard Henderson      * Need to flush if an overlapping executable region
36467ff2186SRichard Henderson      * removes exec, or adds write.
36567ff2186SRichard Henderson      */
36667ff2186SRichard Henderson     if ((p_flags & PAGE_EXEC)
36767ff2186SRichard Henderson         && (!(merge_flags & PAGE_EXEC)
36867ff2186SRichard Henderson             || (merge_flags & ~p_flags & PAGE_WRITE))) {
36967ff2186SRichard Henderson         inval_tb = true;
37067ff2186SRichard Henderson     }
37167ff2186SRichard Henderson 
37267ff2186SRichard Henderson     /*
37367ff2186SRichard Henderson      * If there is an exact range match, update and return without
37467ff2186SRichard Henderson      * attempting to merge with adjacent regions.
37567ff2186SRichard Henderson      */
37667ff2186SRichard Henderson     if (start == p_start && last == p_last) {
37767ff2186SRichard Henderson         if (merge_flags) {
37867ff2186SRichard Henderson             p->flags = merge_flags;
37967ff2186SRichard Henderson         } else {
38067ff2186SRichard Henderson             interval_tree_remove(&p->itree, &pageflags_root);
381*177a8cb8SRichard Henderson             g_free_rcu(p, rcu);
38267ff2186SRichard Henderson         }
38367ff2186SRichard Henderson         goto done;
38467ff2186SRichard Henderson     }
38567ff2186SRichard Henderson 
38667ff2186SRichard Henderson     /*
38767ff2186SRichard Henderson      * If sticky bits affect the original mapping, then we must be more
38867ff2186SRichard Henderson      * careful about the existing intervals and the separate flags.
38967ff2186SRichard Henderson      */
39067ff2186SRichard Henderson     if (set_flags != merge_flags) {
39167ff2186SRichard Henderson         if (p_start < start) {
39267ff2186SRichard Henderson             interval_tree_remove(&p->itree, &pageflags_root);
39367ff2186SRichard Henderson             p->itree.last = start - 1;
39467ff2186SRichard Henderson             interval_tree_insert(&p->itree, &pageflags_root);
39567ff2186SRichard Henderson 
39667ff2186SRichard Henderson             if (last < p_last) {
39767ff2186SRichard Henderson                 if (merge_flags) {
39867ff2186SRichard Henderson                     pageflags_create(start, last, merge_flags);
39967ff2186SRichard Henderson                 }
40067ff2186SRichard Henderson                 pageflags_create(last + 1, p_last, p_flags);
40167ff2186SRichard Henderson             } else {
40267ff2186SRichard Henderson                 if (merge_flags) {
40367ff2186SRichard Henderson                     pageflags_create(start, p_last, merge_flags);
40467ff2186SRichard Henderson                 }
40567ff2186SRichard Henderson                 if (p_last < last) {
40667ff2186SRichard Henderson                     start = p_last + 1;
40767ff2186SRichard Henderson                     goto restart;
40867ff2186SRichard Henderson                 }
40967ff2186SRichard Henderson             }
41067ff2186SRichard Henderson         } else {
41167ff2186SRichard Henderson             if (start < p_start && set_flags) {
41267ff2186SRichard Henderson                 pageflags_create(start, p_start - 1, set_flags);
41367ff2186SRichard Henderson             }
41467ff2186SRichard Henderson             if (last < p_last) {
41567ff2186SRichard Henderson                 interval_tree_remove(&p->itree, &pageflags_root);
41667ff2186SRichard Henderson                 p->itree.start = last + 1;
41767ff2186SRichard Henderson                 interval_tree_insert(&p->itree, &pageflags_root);
41867ff2186SRichard Henderson                 if (merge_flags) {
41967ff2186SRichard Henderson                     pageflags_create(start, last, merge_flags);
42067ff2186SRichard Henderson                 }
42167ff2186SRichard Henderson             } else {
42267ff2186SRichard Henderson                 if (merge_flags) {
42367ff2186SRichard Henderson                     p->flags = merge_flags;
42467ff2186SRichard Henderson                 } else {
42567ff2186SRichard Henderson                     interval_tree_remove(&p->itree, &pageflags_root);
426*177a8cb8SRichard Henderson                     g_free_rcu(p, rcu);
42767ff2186SRichard Henderson                 }
42867ff2186SRichard Henderson                 if (p_last < last) {
42967ff2186SRichard Henderson                     start = p_last + 1;
43067ff2186SRichard Henderson                     goto restart;
43167ff2186SRichard Henderson                 }
43267ff2186SRichard Henderson             }
43367ff2186SRichard Henderson         }
43467ff2186SRichard Henderson         goto done;
43567ff2186SRichard Henderson     }
43667ff2186SRichard Henderson 
43767ff2186SRichard Henderson     /* If flags are not changing for this range, incorporate it. */
43867ff2186SRichard Henderson     if (set_flags == p_flags) {
43967ff2186SRichard Henderson         if (start < p_start) {
44067ff2186SRichard Henderson             interval_tree_remove(&p->itree, &pageflags_root);
44167ff2186SRichard Henderson             p->itree.start = start;
44267ff2186SRichard Henderson             interval_tree_insert(&p->itree, &pageflags_root);
44367ff2186SRichard Henderson         }
44467ff2186SRichard Henderson         if (p_last < last) {
44567ff2186SRichard Henderson             start = p_last + 1;
44667ff2186SRichard Henderson             goto restart;
44767ff2186SRichard Henderson         }
44867ff2186SRichard Henderson         goto done;
44967ff2186SRichard Henderson     }
45067ff2186SRichard Henderson 
45167ff2186SRichard Henderson     /* Maybe split out head and/or tail ranges with the original flags. */
45267ff2186SRichard Henderson     interval_tree_remove(&p->itree, &pageflags_root);
45367ff2186SRichard Henderson     if (p_start < start) {
45467ff2186SRichard Henderson         p->itree.last = start - 1;
45567ff2186SRichard Henderson         interval_tree_insert(&p->itree, &pageflags_root);
45667ff2186SRichard Henderson 
45767ff2186SRichard Henderson         if (p_last < last) {
45867ff2186SRichard Henderson             goto restart;
45967ff2186SRichard Henderson         }
46067ff2186SRichard Henderson         if (last < p_last) {
46167ff2186SRichard Henderson             pageflags_create(last + 1, p_last, p_flags);
46267ff2186SRichard Henderson         }
46367ff2186SRichard Henderson     } else if (last < p_last) {
46467ff2186SRichard Henderson         p->itree.start = last + 1;
46567ff2186SRichard Henderson         interval_tree_insert(&p->itree, &pageflags_root);
46667ff2186SRichard Henderson     } else {
467*177a8cb8SRichard Henderson         g_free_rcu(p, rcu);
46867ff2186SRichard Henderson         goto restart;
46967ff2186SRichard Henderson     }
47067ff2186SRichard Henderson     if (set_flags) {
47167ff2186SRichard Henderson         pageflags_create(start, last, set_flags);
47267ff2186SRichard Henderson     }
47367ff2186SRichard Henderson 
47467ff2186SRichard Henderson  done:
47567ff2186SRichard Henderson     return inval_tb;
47667ff2186SRichard Henderson }
47767ff2186SRichard Henderson 
478d941c086SRichard Henderson /*
479d941c086SRichard Henderson  * Modify the flags of a page and invalidate the code if necessary.
480d941c086SRichard Henderson  * The flag PAGE_WRITE_ORG is positioned automatically depending
481d941c086SRichard Henderson  * on PAGE_WRITE.  The mmap_lock should already be held.
482d941c086SRichard Henderson  */
483d941c086SRichard Henderson void page_set_flags(target_ulong start, target_ulong end, int flags)
484d941c086SRichard Henderson {
48567ff2186SRichard Henderson     target_ulong last;
48667ff2186SRichard Henderson     bool reset = false;
48767ff2186SRichard Henderson     bool inval_tb = false;
488d941c086SRichard Henderson 
489d941c086SRichard Henderson     /* This function should never be called with addresses outside the
490d941c086SRichard Henderson        guest address space.  If this assert fires, it probably indicates
491d941c086SRichard Henderson        a missing call to h2g_valid.  */
492d941c086SRichard Henderson     assert(start < end);
49367ff2186SRichard Henderson     assert(end - 1 <= GUEST_ADDR_MAX);
494d941c086SRichard Henderson     /* Only set PAGE_ANON with new mappings. */
495d941c086SRichard Henderson     assert(!(flags & PAGE_ANON) || (flags & PAGE_RESET));
496d941c086SRichard Henderson     assert_memory_lock();
497d941c086SRichard Henderson 
498d941c086SRichard Henderson     start = start & TARGET_PAGE_MASK;
499d941c086SRichard Henderson     end = TARGET_PAGE_ALIGN(end);
50067ff2186SRichard Henderson     last = end - 1;
501d941c086SRichard Henderson 
50267ff2186SRichard Henderson     if (!(flags & PAGE_VALID)) {
50367ff2186SRichard Henderson         flags = 0;
50467ff2186SRichard Henderson     } else {
50567ff2186SRichard Henderson         reset = flags & PAGE_RESET;
50667ff2186SRichard Henderson         flags &= ~PAGE_RESET;
507d941c086SRichard Henderson         if (flags & PAGE_WRITE) {
508d941c086SRichard Henderson             flags |= PAGE_WRITE_ORG;
509d941c086SRichard Henderson         }
51067ff2186SRichard Henderson     }
51167ff2186SRichard Henderson 
51267ff2186SRichard Henderson     if (!flags || reset) {
513d941c086SRichard Henderson         page_reset_target_data(start, end);
51467ff2186SRichard Henderson         inval_tb |= pageflags_unset(start, last);
515d941c086SRichard Henderson     }
51667ff2186SRichard Henderson     if (flags) {
51767ff2186SRichard Henderson         inval_tb |= pageflags_set_clear(start, last, flags,
51867ff2186SRichard Henderson                                         ~(reset ? 0 : PAGE_STICKY));
519d941c086SRichard Henderson     }
520d941c086SRichard Henderson     if (inval_tb) {
521d941c086SRichard Henderson         tb_invalidate_phys_range(start, end);
522d941c086SRichard Henderson     }
523d941c086SRichard Henderson }
524d941c086SRichard Henderson 
525d941c086SRichard Henderson int page_check_range(target_ulong start, target_ulong len, int flags)
526d941c086SRichard Henderson {
52767ff2186SRichard Henderson     target_ulong last;
528d941c086SRichard Henderson 
529d941c086SRichard Henderson     if (len == 0) {
53067ff2186SRichard Henderson         return 0;  /* trivial length */
531d941c086SRichard Henderson     }
532d941c086SRichard Henderson 
53367ff2186SRichard Henderson     last = start + len - 1;
53467ff2186SRichard Henderson     if (last < start) {
53567ff2186SRichard Henderson         return -1; /* wrap around */
53667ff2186SRichard Henderson     }
537d941c086SRichard Henderson 
53867ff2186SRichard Henderson     while (true) {
53967ff2186SRichard Henderson         PageFlagsNode *p = pageflags_find(start, last);
54067ff2186SRichard Henderson         int missing;
54167ff2186SRichard Henderson 
542d941c086SRichard Henderson         if (!p) {
54367ff2186SRichard Henderson             return -1; /* entire region invalid */
544d941c086SRichard Henderson         }
54567ff2186SRichard Henderson         if (start < p->itree.start) {
54667ff2186SRichard Henderson             return -1; /* initial bytes invalid */
547d941c086SRichard Henderson         }
548d941c086SRichard Henderson 
54967ff2186SRichard Henderson         missing = flags & ~p->flags;
55067ff2186SRichard Henderson         if (missing & PAGE_READ) {
55167ff2186SRichard Henderson             return -1; /* page not readable */
552d941c086SRichard Henderson         }
55367ff2186SRichard Henderson         if (missing & PAGE_WRITE) {
554d941c086SRichard Henderson             if (!(p->flags & PAGE_WRITE_ORG)) {
55567ff2186SRichard Henderson                 return -1; /* page not writable */
55667ff2186SRichard Henderson             }
55767ff2186SRichard Henderson             /* Asking about writable, but has been protected: undo. */
55867ff2186SRichard Henderson             if (!page_unprotect(start, 0)) {
559d941c086SRichard Henderson                 return -1;
560d941c086SRichard Henderson             }
56167ff2186SRichard Henderson             /* TODO: page_unprotect should take a range, not a single page. */
56267ff2186SRichard Henderson             if (last - start < TARGET_PAGE_SIZE) {
56367ff2186SRichard Henderson                 return 0; /* ok */
564d941c086SRichard Henderson             }
56567ff2186SRichard Henderson             start += TARGET_PAGE_SIZE;
566d941c086SRichard Henderson             continue;
567d941c086SRichard Henderson         }
56867ff2186SRichard Henderson 
56967ff2186SRichard Henderson         if (last <= p->itree.last) {
57067ff2186SRichard Henderson             return 0; /* ok */
571d941c086SRichard Henderson         }
57267ff2186SRichard Henderson         start = p->itree.last + 1;
57367ff2186SRichard Henderson     }
57467ff2186SRichard Henderson }
57567ff2186SRichard Henderson 
57667ff2186SRichard Henderson void page_protect(tb_page_addr_t address)
57767ff2186SRichard Henderson {
57867ff2186SRichard Henderson     PageFlagsNode *p;
57967ff2186SRichard Henderson     target_ulong start, last;
58067ff2186SRichard Henderson     int prot;
58167ff2186SRichard Henderson 
58267ff2186SRichard Henderson     assert_memory_lock();
58367ff2186SRichard Henderson 
58467ff2186SRichard Henderson     if (qemu_host_page_size <= TARGET_PAGE_SIZE) {
58567ff2186SRichard Henderson         start = address & TARGET_PAGE_MASK;
58667ff2186SRichard Henderson         last = start + TARGET_PAGE_SIZE - 1;
58767ff2186SRichard Henderson     } else {
58867ff2186SRichard Henderson         start = address & qemu_host_page_mask;
58967ff2186SRichard Henderson         last = start + qemu_host_page_size - 1;
59067ff2186SRichard Henderson     }
59167ff2186SRichard Henderson 
59267ff2186SRichard Henderson     p = pageflags_find(start, last);
59367ff2186SRichard Henderson     if (!p) {
59467ff2186SRichard Henderson         return;
59567ff2186SRichard Henderson     }
59667ff2186SRichard Henderson     prot = p->flags;
59767ff2186SRichard Henderson 
59867ff2186SRichard Henderson     if (unlikely(p->itree.last < last)) {
59967ff2186SRichard Henderson         /* More than one protection region covers the one host page. */
60067ff2186SRichard Henderson         assert(TARGET_PAGE_SIZE < qemu_host_page_size);
60167ff2186SRichard Henderson         while ((p = pageflags_next(p, start, last)) != NULL) {
60267ff2186SRichard Henderson             prot |= p->flags;
60367ff2186SRichard Henderson         }
60467ff2186SRichard Henderson     }
60567ff2186SRichard Henderson 
60667ff2186SRichard Henderson     if (prot & PAGE_WRITE) {
60767ff2186SRichard Henderson         pageflags_set_clear(start, last, 0, PAGE_WRITE);
60867ff2186SRichard Henderson         mprotect(g2h_untagged(start), qemu_host_page_size,
60967ff2186SRichard Henderson                  prot & (PAGE_READ | PAGE_EXEC) ? PROT_READ : PROT_NONE);
610d941c086SRichard Henderson     }
611d941c086SRichard Henderson }
612d941c086SRichard Henderson 
613d941c086SRichard Henderson /*
614d941c086SRichard Henderson  * Called from signal handler: invalidate the code and unprotect the
615d941c086SRichard Henderson  * page. Return 0 if the fault was not handled, 1 if it was handled,
616d941c086SRichard Henderson  * and 2 if it was handled but the caller must cause the TB to be
617d941c086SRichard Henderson  * immediately exited. (We can only return 2 if the 'pc' argument is
618d941c086SRichard Henderson  * non-zero.)
619d941c086SRichard Henderson  */
620d941c086SRichard Henderson int page_unprotect(target_ulong address, uintptr_t pc)
621d941c086SRichard Henderson {
62267ff2186SRichard Henderson     PageFlagsNode *p;
623d941c086SRichard Henderson     bool current_tb_invalidated;
624d941c086SRichard Henderson 
625d941c086SRichard Henderson     /*
626d941c086SRichard Henderson      * Technically this isn't safe inside a signal handler.  However we
627d941c086SRichard Henderson      * know this only ever happens in a synchronous SEGV handler, so in
628d941c086SRichard Henderson      * practice it seems to be ok.
629d941c086SRichard Henderson      */
630d941c086SRichard Henderson     mmap_lock();
631d941c086SRichard Henderson 
63267ff2186SRichard Henderson     p = pageflags_find(address, address);
63367ff2186SRichard Henderson 
63467ff2186SRichard Henderson     /* If this address was not really writable, nothing to do. */
63567ff2186SRichard Henderson     if (!p || !(p->flags & PAGE_WRITE_ORG)) {
636d941c086SRichard Henderson         mmap_unlock();
637d941c086SRichard Henderson         return 0;
638d941c086SRichard Henderson     }
639d941c086SRichard Henderson 
640d941c086SRichard Henderson     current_tb_invalidated = false;
641d941c086SRichard Henderson     if (p->flags & PAGE_WRITE) {
642d941c086SRichard Henderson         /*
643d941c086SRichard Henderson          * If the page is actually marked WRITE then assume this is because
644d941c086SRichard Henderson          * this thread raced with another one which got here first and
645d941c086SRichard Henderson          * set the page to PAGE_WRITE and did the TB invalidate for us.
646d941c086SRichard Henderson          */
647d941c086SRichard Henderson #ifdef TARGET_HAS_PRECISE_SMC
648d941c086SRichard Henderson         TranslationBlock *current_tb = tcg_tb_lookup(pc);
649d941c086SRichard Henderson         if (current_tb) {
650d941c086SRichard Henderson             current_tb_invalidated = tb_cflags(current_tb) & CF_INVALID;
651d941c086SRichard Henderson         }
652d941c086SRichard Henderson #endif
653d941c086SRichard Henderson     } else {
65467ff2186SRichard Henderson         target_ulong start, len, i;
65567ff2186SRichard Henderson         int prot;
656d941c086SRichard Henderson 
65767ff2186SRichard Henderson         if (qemu_host_page_size <= TARGET_PAGE_SIZE) {
65867ff2186SRichard Henderson             start = address & TARGET_PAGE_MASK;
65967ff2186SRichard Henderson             len = TARGET_PAGE_SIZE;
66067ff2186SRichard Henderson             prot = p->flags | PAGE_WRITE;
66167ff2186SRichard Henderson             pageflags_set_clear(start, start + len - 1, PAGE_WRITE, 0);
66267ff2186SRichard Henderson             current_tb_invalidated = tb_invalidate_phys_page_unwind(start, pc);
66367ff2186SRichard Henderson         } else {
66467ff2186SRichard Henderson             start = address & qemu_host_page_mask;
66567ff2186SRichard Henderson             len = qemu_host_page_size;
666d941c086SRichard Henderson             prot = 0;
667d941c086SRichard Henderson 
66867ff2186SRichard Henderson             for (i = 0; i < len; i += TARGET_PAGE_SIZE) {
66967ff2186SRichard Henderson                 target_ulong addr = start + i;
67067ff2186SRichard Henderson 
67167ff2186SRichard Henderson                 p = pageflags_find(addr, addr);
67267ff2186SRichard Henderson                 if (p) {
67367ff2186SRichard Henderson                     prot |= p->flags;
67467ff2186SRichard Henderson                     if (p->flags & PAGE_WRITE_ORG) {
67567ff2186SRichard Henderson                         prot |= PAGE_WRITE;
67667ff2186SRichard Henderson                         pageflags_set_clear(addr, addr + TARGET_PAGE_SIZE - 1,
67767ff2186SRichard Henderson                                             PAGE_WRITE, 0);
67867ff2186SRichard Henderson                     }
67967ff2186SRichard Henderson                 }
680d941c086SRichard Henderson                 /*
681d941c086SRichard Henderson                  * Since the content will be modified, we must invalidate
682d941c086SRichard Henderson                  * the corresponding translated code.
683d941c086SRichard Henderson                  */
684d941c086SRichard Henderson                 current_tb_invalidated |=
685d941c086SRichard Henderson                     tb_invalidate_phys_page_unwind(addr, pc);
686d941c086SRichard Henderson             }
68767ff2186SRichard Henderson         }
68867ff2186SRichard Henderson         if (prot & PAGE_EXEC) {
68967ff2186SRichard Henderson             prot = (prot & ~PAGE_EXEC) | PAGE_READ;
69067ff2186SRichard Henderson         }
69167ff2186SRichard Henderson         mprotect((void *)g2h_untagged(start), len, prot & PAGE_BITS);
692d941c086SRichard Henderson     }
693d941c086SRichard Henderson     mmap_unlock();
69467ff2186SRichard Henderson 
695d941c086SRichard Henderson     /* If current TB was invalidated return to main loop */
696d941c086SRichard Henderson     return current_tb_invalidated ? 2 : 1;
697d941c086SRichard Henderson }
698d941c086SRichard Henderson 
699069cfe77SRichard Henderson static int probe_access_internal(CPUArchState *env, target_ulong addr,
700069cfe77SRichard Henderson                                  int fault_size, MMUAccessType access_type,
701069cfe77SRichard Henderson                                  bool nonfault, uintptr_t ra)
70259e96ac6SDavid Hildenbrand {
70372d2bbf9SRichard Henderson     int acc_flag;
70472d2bbf9SRichard Henderson     bool maperr;
705c25c283dSDavid Hildenbrand 
706c25c283dSDavid Hildenbrand     switch (access_type) {
707c25c283dSDavid Hildenbrand     case MMU_DATA_STORE:
70872d2bbf9SRichard Henderson         acc_flag = PAGE_WRITE_ORG;
709c25c283dSDavid Hildenbrand         break;
710c25c283dSDavid Hildenbrand     case MMU_DATA_LOAD:
71172d2bbf9SRichard Henderson         acc_flag = PAGE_READ;
712c25c283dSDavid Hildenbrand         break;
713c25c283dSDavid Hildenbrand     case MMU_INST_FETCH:
71472d2bbf9SRichard Henderson         acc_flag = PAGE_EXEC;
715c25c283dSDavid Hildenbrand         break;
716c25c283dSDavid Hildenbrand     default:
717c25c283dSDavid Hildenbrand         g_assert_not_reached();
718c25c283dSDavid Hildenbrand     }
719c25c283dSDavid Hildenbrand 
72072d2bbf9SRichard Henderson     if (guest_addr_valid_untagged(addr)) {
72172d2bbf9SRichard Henderson         int page_flags = page_get_flags(addr);
72272d2bbf9SRichard Henderson         if (page_flags & acc_flag) {
72372d2bbf9SRichard Henderson             return 0; /* success */
72472d2bbf9SRichard Henderson         }
72572d2bbf9SRichard Henderson         maperr = !(page_flags & PAGE_VALID);
72672d2bbf9SRichard Henderson     } else {
72772d2bbf9SRichard Henderson         maperr = true;
72872d2bbf9SRichard Henderson     }
72972d2bbf9SRichard Henderson 
730069cfe77SRichard Henderson     if (nonfault) {
731069cfe77SRichard Henderson         return TLB_INVALID_MASK;
73259e96ac6SDavid Hildenbrand     }
73372d2bbf9SRichard Henderson 
73472d2bbf9SRichard Henderson     cpu_loop_exit_sigsegv(env_cpu(env), addr, access_type, maperr, ra);
735069cfe77SRichard Henderson }
736069cfe77SRichard Henderson 
737069cfe77SRichard Henderson int probe_access_flags(CPUArchState *env, target_ulong addr,
738069cfe77SRichard Henderson                        MMUAccessType access_type, int mmu_idx,
739069cfe77SRichard Henderson                        bool nonfault, void **phost, uintptr_t ra)
740069cfe77SRichard Henderson {
741069cfe77SRichard Henderson     int flags;
742069cfe77SRichard Henderson 
743069cfe77SRichard Henderson     flags = probe_access_internal(env, addr, 0, access_type, nonfault, ra);
7443e8f1628SRichard Henderson     *phost = flags ? NULL : g2h(env_cpu(env), addr);
745069cfe77SRichard Henderson     return flags;
746069cfe77SRichard Henderson }
747069cfe77SRichard Henderson 
748069cfe77SRichard Henderson void *probe_access(CPUArchState *env, target_ulong addr, int size,
749069cfe77SRichard Henderson                    MMUAccessType access_type, int mmu_idx, uintptr_t ra)
750069cfe77SRichard Henderson {
751069cfe77SRichard Henderson     int flags;
752069cfe77SRichard Henderson 
753069cfe77SRichard Henderson     g_assert(-(addr | TARGET_PAGE_MASK) >= size);
754069cfe77SRichard Henderson     flags = probe_access_internal(env, addr, size, access_type, false, ra);
755069cfe77SRichard Henderson     g_assert(flags == 0);
756fef39ccdSDavid Hildenbrand 
7573e8f1628SRichard Henderson     return size ? g2h(env_cpu(env), addr) : NULL;
75859e96ac6SDavid Hildenbrand }
75959e96ac6SDavid Hildenbrand 
760cdf71308SRichard Henderson tb_page_addr_t get_page_addr_code_hostp(CPUArchState *env, target_ulong addr,
761cdf71308SRichard Henderson                                         void **hostp)
762cdf71308SRichard Henderson {
763cdf71308SRichard Henderson     int flags;
764cdf71308SRichard Henderson 
765cdf71308SRichard Henderson     flags = probe_access_internal(env, addr, 1, MMU_INST_FETCH, false, 0);
766cdf71308SRichard Henderson     g_assert(flags == 0);
767cdf71308SRichard Henderson 
768cdf71308SRichard Henderson     if (hostp) {
769cdf71308SRichard Henderson         *hostp = g2h_untagged(addr);
770cdf71308SRichard Henderson     }
771cdf71308SRichard Henderson     return addr;
772cdf71308SRichard Henderson }
773cdf71308SRichard Henderson 
774f88f3ac9SRichard Henderson #ifdef TARGET_PAGE_DATA_SIZE
775f88f3ac9SRichard Henderson /*
776f88f3ac9SRichard Henderson  * Allocate chunks of target data together.  For the only current user,
777f88f3ac9SRichard Henderson  * if we allocate one hunk per page, we have overhead of 40/128 or 40%.
778f88f3ac9SRichard Henderson  * Therefore, allocate memory for 64 pages at a time for overhead < 1%.
779f88f3ac9SRichard Henderson  */
780f88f3ac9SRichard Henderson #define TPD_PAGES  64
781f88f3ac9SRichard Henderson #define TBD_MASK   (TARGET_PAGE_MASK * TPD_PAGES)
782f88f3ac9SRichard Henderson 
783f88f3ac9SRichard Henderson typedef struct TargetPageDataNode {
784*177a8cb8SRichard Henderson     struct rcu_head rcu;
785f88f3ac9SRichard Henderson     IntervalTreeNode itree;
786f88f3ac9SRichard Henderson     char data[TPD_PAGES][TARGET_PAGE_DATA_SIZE] __attribute__((aligned));
787f88f3ac9SRichard Henderson } TargetPageDataNode;
788f88f3ac9SRichard Henderson 
789f88f3ac9SRichard Henderson static IntervalTreeRoot targetdata_root;
790f88f3ac9SRichard Henderson 
7910fe61084SRichard Henderson void page_reset_target_data(target_ulong start, target_ulong end)
7920fe61084SRichard Henderson {
793f88f3ac9SRichard Henderson     IntervalTreeNode *n, *next;
794f88f3ac9SRichard Henderson     target_ulong last;
7950fe61084SRichard Henderson 
7960fe61084SRichard Henderson     assert_memory_lock();
7970fe61084SRichard Henderson 
7980fe61084SRichard Henderson     start = start & TARGET_PAGE_MASK;
799f88f3ac9SRichard Henderson     last = TARGET_PAGE_ALIGN(end) - 1;
8000fe61084SRichard Henderson 
801f88f3ac9SRichard Henderson     for (n = interval_tree_iter_first(&targetdata_root, start, last),
802f88f3ac9SRichard Henderson          next = n ? interval_tree_iter_next(n, start, last) : NULL;
803f88f3ac9SRichard Henderson          n != NULL;
804f88f3ac9SRichard Henderson          n = next,
805f88f3ac9SRichard Henderson          next = next ? interval_tree_iter_next(n, start, last) : NULL) {
806f88f3ac9SRichard Henderson         target_ulong n_start, n_last, p_ofs, p_len;
807*177a8cb8SRichard Henderson         TargetPageDataNode *t = container_of(n, TargetPageDataNode, itree);
8080fe61084SRichard Henderson 
809f88f3ac9SRichard Henderson         if (n->start >= start && n->last <= last) {
810f88f3ac9SRichard Henderson             interval_tree_remove(n, &targetdata_root);
811*177a8cb8SRichard Henderson             g_free_rcu(t, rcu);
812f88f3ac9SRichard Henderson             continue;
8130fe61084SRichard Henderson         }
8140fe61084SRichard Henderson 
815f88f3ac9SRichard Henderson         if (n->start < start) {
816f88f3ac9SRichard Henderson             n_start = start;
817f88f3ac9SRichard Henderson             p_ofs = (start - n->start) >> TARGET_PAGE_BITS;
818f88f3ac9SRichard Henderson         } else {
819f88f3ac9SRichard Henderson             n_start = n->start;
820f88f3ac9SRichard Henderson             p_ofs = 0;
821f88f3ac9SRichard Henderson         }
822f88f3ac9SRichard Henderson         n_last = MIN(last, n->last);
823f88f3ac9SRichard Henderson         p_len = (n_last + 1 - n_start) >> TARGET_PAGE_BITS;
824f88f3ac9SRichard Henderson 
825f88f3ac9SRichard Henderson         memset(t->data[p_ofs], 0, p_len * TARGET_PAGE_DATA_SIZE);
826f88f3ac9SRichard Henderson     }
827f88f3ac9SRichard Henderson }
828f88f3ac9SRichard Henderson 
8290fe61084SRichard Henderson void *page_get_target_data(target_ulong address)
8300fe61084SRichard Henderson {
831f88f3ac9SRichard Henderson     IntervalTreeNode *n;
832f88f3ac9SRichard Henderson     TargetPageDataNode *t;
833f88f3ac9SRichard Henderson     target_ulong page, region;
8340fe61084SRichard Henderson 
835f88f3ac9SRichard Henderson     page = address & TARGET_PAGE_MASK;
836f88f3ac9SRichard Henderson     region = address & TBD_MASK;
837f88f3ac9SRichard Henderson 
838f88f3ac9SRichard Henderson     n = interval_tree_iter_first(&targetdata_root, page, page);
839f88f3ac9SRichard Henderson     if (!n) {
840f88f3ac9SRichard Henderson         /*
841f88f3ac9SRichard Henderson          * See util/interval-tree.c re lockless lookups: no false positives
842f88f3ac9SRichard Henderson          * but there are false negatives.  If we find nothing, retry with
843f88f3ac9SRichard Henderson          * the mmap lock acquired.  We also need the lock for the
844f88f3ac9SRichard Henderson          * allocation + insert.
845f88f3ac9SRichard Henderson          */
846f88f3ac9SRichard Henderson         mmap_lock();
847f88f3ac9SRichard Henderson         n = interval_tree_iter_first(&targetdata_root, page, page);
848f88f3ac9SRichard Henderson         if (!n) {
849f88f3ac9SRichard Henderson             t = g_new0(TargetPageDataNode, 1);
850f88f3ac9SRichard Henderson             n = &t->itree;
851f88f3ac9SRichard Henderson             n->start = region;
852f88f3ac9SRichard Henderson             n->last = region | ~TBD_MASK;
853f88f3ac9SRichard Henderson             interval_tree_insert(n, &targetdata_root);
8540fe61084SRichard Henderson         }
855f88f3ac9SRichard Henderson         mmap_unlock();
8560fe61084SRichard Henderson     }
857f88f3ac9SRichard Henderson 
858f88f3ac9SRichard Henderson     t = container_of(n, TargetPageDataNode, itree);
859f88f3ac9SRichard Henderson     return t->data[(page - region) >> TARGET_PAGE_BITS];
860f88f3ac9SRichard Henderson }
861f88f3ac9SRichard Henderson #else
862f88f3ac9SRichard Henderson void page_reset_target_data(target_ulong start, target_ulong end) { }
863f88f3ac9SRichard Henderson #endif /* TARGET_PAGE_DATA_SIZE */
8640fe61084SRichard Henderson 
865a411d296SPhilippe Mathieu-Daudé /* The softmmu versions of these helpers are in cputlb.c.  */
866a411d296SPhilippe Mathieu-Daudé 
867f83bcecbSRichard Henderson /*
868f83bcecbSRichard Henderson  * Verify that we have passed the correct MemOp to the correct function.
869f83bcecbSRichard Henderson  *
870f83bcecbSRichard Henderson  * We could present one function to target code, and dispatch based on
871f83bcecbSRichard Henderson  * the MemOp, but so far we have worked hard to avoid an indirect function
872f83bcecbSRichard Henderson  * call along the memory path.
873f83bcecbSRichard Henderson  */
874f83bcecbSRichard Henderson static void validate_memop(MemOpIdx oi, MemOp expected)
875ed4cfbcdSRichard Henderson {
876f83bcecbSRichard Henderson #ifdef CONFIG_DEBUG_TCG
877f83bcecbSRichard Henderson     MemOp have = get_memop(oi) & (MO_SIZE | MO_BSWAP);
878f83bcecbSRichard Henderson     assert(have == expected);
879f83bcecbSRichard Henderson #endif
880f83bcecbSRichard Henderson }
881ed4cfbcdSRichard Henderson 
88237e891e3SRichard Henderson void helper_unaligned_ld(CPUArchState *env, target_ulong addr)
88337e891e3SRichard Henderson {
88437e891e3SRichard Henderson     cpu_loop_exit_sigbus(env_cpu(env), addr, MMU_DATA_LOAD, GETPC());
88537e891e3SRichard Henderson }
88637e891e3SRichard Henderson 
88737e891e3SRichard Henderson void helper_unaligned_st(CPUArchState *env, target_ulong addr)
88837e891e3SRichard Henderson {
88937e891e3SRichard Henderson     cpu_loop_exit_sigbus(env_cpu(env), addr, MMU_DATA_STORE, GETPC());
89037e891e3SRichard Henderson }
89137e891e3SRichard Henderson 
892f83bcecbSRichard Henderson static void *cpu_mmu_lookup(CPUArchState *env, target_ulong addr,
893f83bcecbSRichard Henderson                             MemOpIdx oi, uintptr_t ra, MMUAccessType type)
894f83bcecbSRichard Henderson {
8959395cd0aSRichard Henderson     MemOp mop = get_memop(oi);
8969395cd0aSRichard Henderson     int a_bits = get_alignment_bits(mop);
897f83bcecbSRichard Henderson     void *ret;
898f83bcecbSRichard Henderson 
8999395cd0aSRichard Henderson     /* Enforce guest required alignment.  */
9009395cd0aSRichard Henderson     if (unlikely(addr & ((1 << a_bits) - 1))) {
9019395cd0aSRichard Henderson         cpu_loop_exit_sigbus(env_cpu(env), addr, type, ra);
9029395cd0aSRichard Henderson     }
903f83bcecbSRichard Henderson 
904f83bcecbSRichard Henderson     ret = g2h(env_cpu(env), addr);
905f83bcecbSRichard Henderson     set_helper_retaddr(ra);
906ed4cfbcdSRichard Henderson     return ret;
907ed4cfbcdSRichard Henderson }
908ed4cfbcdSRichard Henderson 
909f83bcecbSRichard Henderson uint8_t cpu_ldb_mmu(CPUArchState *env, abi_ptr addr,
910f83bcecbSRichard Henderson                     MemOpIdx oi, uintptr_t ra)
911ed4cfbcdSRichard Henderson {
912f83bcecbSRichard Henderson     void *haddr;
913f83bcecbSRichard Henderson     uint8_t ret;
914ed4cfbcdSRichard Henderson 
915f83bcecbSRichard Henderson     validate_memop(oi, MO_UB);
916f83bcecbSRichard Henderson     haddr = cpu_mmu_lookup(env, addr, oi, ra, MMU_DATA_LOAD);
917f83bcecbSRichard Henderson     ret = ldub_p(haddr);
918f83bcecbSRichard Henderson     clear_helper_retaddr();
919f83bcecbSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), addr, oi, QEMU_PLUGIN_MEM_R);
920ed4cfbcdSRichard Henderson     return ret;
921ed4cfbcdSRichard Henderson }
922ed4cfbcdSRichard Henderson 
923f83bcecbSRichard Henderson uint16_t cpu_ldw_be_mmu(CPUArchState *env, abi_ptr addr,
924f83bcecbSRichard Henderson                         MemOpIdx oi, uintptr_t ra)
925ed4cfbcdSRichard Henderson {
926f83bcecbSRichard Henderson     void *haddr;
927f83bcecbSRichard Henderson     uint16_t ret;
928ed4cfbcdSRichard Henderson 
929f83bcecbSRichard Henderson     validate_memop(oi, MO_BEUW);
930f83bcecbSRichard Henderson     haddr = cpu_mmu_lookup(env, addr, oi, ra, MMU_DATA_LOAD);
931f83bcecbSRichard Henderson     ret = lduw_be_p(haddr);
932f83bcecbSRichard Henderson     clear_helper_retaddr();
933f83bcecbSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), addr, oi, QEMU_PLUGIN_MEM_R);
934ed4cfbcdSRichard Henderson     return ret;
935ed4cfbcdSRichard Henderson }
936ed4cfbcdSRichard Henderson 
937f83bcecbSRichard Henderson uint32_t cpu_ldl_be_mmu(CPUArchState *env, abi_ptr addr,
938f83bcecbSRichard Henderson                         MemOpIdx oi, uintptr_t ra)
939ed4cfbcdSRichard Henderson {
940f83bcecbSRichard Henderson     void *haddr;
941f83bcecbSRichard Henderson     uint32_t ret;
942f83bcecbSRichard Henderson 
943f83bcecbSRichard Henderson     validate_memop(oi, MO_BEUL);
944f83bcecbSRichard Henderson     haddr = cpu_mmu_lookup(env, addr, oi, ra, MMU_DATA_LOAD);
945f83bcecbSRichard Henderson     ret = ldl_be_p(haddr);
946f83bcecbSRichard Henderson     clear_helper_retaddr();
947f83bcecbSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), addr, oi, QEMU_PLUGIN_MEM_R);
948f83bcecbSRichard Henderson     return ret;
949f83bcecbSRichard Henderson }
950f83bcecbSRichard Henderson 
951f83bcecbSRichard Henderson uint64_t cpu_ldq_be_mmu(CPUArchState *env, abi_ptr addr,
952f83bcecbSRichard Henderson                         MemOpIdx oi, uintptr_t ra)
953f83bcecbSRichard Henderson {
954f83bcecbSRichard Henderson     void *haddr;
955ed4cfbcdSRichard Henderson     uint64_t ret;
956ed4cfbcdSRichard Henderson 
957fc313c64SFrédéric Pétrot     validate_memop(oi, MO_BEUQ);
958f83bcecbSRichard Henderson     haddr = cpu_mmu_lookup(env, addr, oi, ra, MMU_DATA_LOAD);
959f83bcecbSRichard Henderson     ret = ldq_be_p(haddr);
960f83bcecbSRichard Henderson     clear_helper_retaddr();
961f83bcecbSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), addr, oi, QEMU_PLUGIN_MEM_R);
962b9e60257SRichard Henderson     return ret;
963b9e60257SRichard Henderson }
964b9e60257SRichard Henderson 
965f83bcecbSRichard Henderson uint16_t cpu_ldw_le_mmu(CPUArchState *env, abi_ptr addr,
966f83bcecbSRichard Henderson                         MemOpIdx oi, uintptr_t ra)
967b9e60257SRichard Henderson {
968f83bcecbSRichard Henderson     void *haddr;
969f83bcecbSRichard Henderson     uint16_t ret;
970f83bcecbSRichard Henderson 
971f83bcecbSRichard Henderson     validate_memop(oi, MO_LEUW);
972f83bcecbSRichard Henderson     haddr = cpu_mmu_lookup(env, addr, oi, ra, MMU_DATA_LOAD);
973f83bcecbSRichard Henderson     ret = lduw_le_p(haddr);
974f83bcecbSRichard Henderson     clear_helper_retaddr();
975f83bcecbSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), addr, oi, QEMU_PLUGIN_MEM_R);
976f83bcecbSRichard Henderson     return ret;
977f83bcecbSRichard Henderson }
978f83bcecbSRichard Henderson 
979f83bcecbSRichard Henderson uint32_t cpu_ldl_le_mmu(CPUArchState *env, abi_ptr addr,
980f83bcecbSRichard Henderson                         MemOpIdx oi, uintptr_t ra)
981f83bcecbSRichard Henderson {
982f83bcecbSRichard Henderson     void *haddr;
983b9e60257SRichard Henderson     uint32_t ret;
984b9e60257SRichard Henderson 
985f83bcecbSRichard Henderson     validate_memop(oi, MO_LEUL);
986f83bcecbSRichard Henderson     haddr = cpu_mmu_lookup(env, addr, oi, ra, MMU_DATA_LOAD);
987f83bcecbSRichard Henderson     ret = ldl_le_p(haddr);
988f83bcecbSRichard Henderson     clear_helper_retaddr();
989f83bcecbSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), addr, oi, QEMU_PLUGIN_MEM_R);
990b9e60257SRichard Henderson     return ret;
991b9e60257SRichard Henderson }
992b9e60257SRichard Henderson 
993f83bcecbSRichard Henderson uint64_t cpu_ldq_le_mmu(CPUArchState *env, abi_ptr addr,
994f83bcecbSRichard Henderson                         MemOpIdx oi, uintptr_t ra)
995b9e60257SRichard Henderson {
996f83bcecbSRichard Henderson     void *haddr;
997b9e60257SRichard Henderson     uint64_t ret;
998b9e60257SRichard Henderson 
999fc313c64SFrédéric Pétrot     validate_memop(oi, MO_LEUQ);
1000f83bcecbSRichard Henderson     haddr = cpu_mmu_lookup(env, addr, oi, ra, MMU_DATA_LOAD);
1001f83bcecbSRichard Henderson     ret = ldq_le_p(haddr);
1002f83bcecbSRichard Henderson     clear_helper_retaddr();
1003f83bcecbSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), addr, oi, QEMU_PLUGIN_MEM_R);
1004ed4cfbcdSRichard Henderson     return ret;
1005ed4cfbcdSRichard Henderson }
1006ed4cfbcdSRichard Henderson 
1007f83bcecbSRichard Henderson void cpu_stb_mmu(CPUArchState *env, abi_ptr addr, uint8_t val,
1008f83bcecbSRichard Henderson                  MemOpIdx oi, uintptr_t ra)
1009ed4cfbcdSRichard Henderson {
1010f83bcecbSRichard Henderson     void *haddr;
1011ed4cfbcdSRichard Henderson 
1012f83bcecbSRichard Henderson     validate_memop(oi, MO_UB);
1013f83bcecbSRichard Henderson     haddr = cpu_mmu_lookup(env, addr, oi, ra, MMU_DATA_STORE);
1014f83bcecbSRichard Henderson     stb_p(haddr, val);
1015ed4cfbcdSRichard Henderson     clear_helper_retaddr();
1016f83bcecbSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), addr, oi, QEMU_PLUGIN_MEM_W);
1017ed4cfbcdSRichard Henderson }
1018ed4cfbcdSRichard Henderson 
1019f83bcecbSRichard Henderson void cpu_stw_be_mmu(CPUArchState *env, abi_ptr addr, uint16_t val,
1020f83bcecbSRichard Henderson                     MemOpIdx oi, uintptr_t ra)
1021ed4cfbcdSRichard Henderson {
1022f83bcecbSRichard Henderson     void *haddr;
1023ed4cfbcdSRichard Henderson 
1024f83bcecbSRichard Henderson     validate_memop(oi, MO_BEUW);
1025f83bcecbSRichard Henderson     haddr = cpu_mmu_lookup(env, addr, oi, ra, MMU_DATA_STORE);
1026f83bcecbSRichard Henderson     stw_be_p(haddr, val);
1027ed4cfbcdSRichard Henderson     clear_helper_retaddr();
1028f83bcecbSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), addr, oi, QEMU_PLUGIN_MEM_W);
1029ed4cfbcdSRichard Henderson }
1030ed4cfbcdSRichard Henderson 
1031f83bcecbSRichard Henderson void cpu_stl_be_mmu(CPUArchState *env, abi_ptr addr, uint32_t val,
1032f83bcecbSRichard Henderson                     MemOpIdx oi, uintptr_t ra)
1033ed4cfbcdSRichard Henderson {
1034f83bcecbSRichard Henderson     void *haddr;
1035ed4cfbcdSRichard Henderson 
1036f83bcecbSRichard Henderson     validate_memop(oi, MO_BEUL);
1037f83bcecbSRichard Henderson     haddr = cpu_mmu_lookup(env, addr, oi, ra, MMU_DATA_STORE);
1038f83bcecbSRichard Henderson     stl_be_p(haddr, val);
1039ed4cfbcdSRichard Henderson     clear_helper_retaddr();
1040f83bcecbSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), addr, oi, QEMU_PLUGIN_MEM_W);
1041ed4cfbcdSRichard Henderson }
1042ed4cfbcdSRichard Henderson 
1043f83bcecbSRichard Henderson void cpu_stq_be_mmu(CPUArchState *env, abi_ptr addr, uint64_t val,
1044f83bcecbSRichard Henderson                     MemOpIdx oi, uintptr_t ra)
1045ed4cfbcdSRichard Henderson {
1046f83bcecbSRichard Henderson     void *haddr;
1047ed4cfbcdSRichard Henderson 
1048fc313c64SFrédéric Pétrot     validate_memop(oi, MO_BEUQ);
1049f83bcecbSRichard Henderson     haddr = cpu_mmu_lookup(env, addr, oi, ra, MMU_DATA_STORE);
1050f83bcecbSRichard Henderson     stq_be_p(haddr, val);
1051b9e60257SRichard Henderson     clear_helper_retaddr();
1052f83bcecbSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), addr, oi, QEMU_PLUGIN_MEM_W);
1053b9e60257SRichard Henderson }
1054b9e60257SRichard Henderson 
1055f83bcecbSRichard Henderson void cpu_stw_le_mmu(CPUArchState *env, abi_ptr addr, uint16_t val,
1056f83bcecbSRichard Henderson                     MemOpIdx oi, uintptr_t ra)
1057b9e60257SRichard Henderson {
1058f83bcecbSRichard Henderson     void *haddr;
1059b9e60257SRichard Henderson 
1060f83bcecbSRichard Henderson     validate_memop(oi, MO_LEUW);
1061f83bcecbSRichard Henderson     haddr = cpu_mmu_lookup(env, addr, oi, ra, MMU_DATA_STORE);
1062f83bcecbSRichard Henderson     stw_le_p(haddr, val);
1063b9e60257SRichard Henderson     clear_helper_retaddr();
1064f83bcecbSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), addr, oi, QEMU_PLUGIN_MEM_W);
1065b9e60257SRichard Henderson }
1066b9e60257SRichard Henderson 
1067f83bcecbSRichard Henderson void cpu_stl_le_mmu(CPUArchState *env, abi_ptr addr, uint32_t val,
1068f83bcecbSRichard Henderson                     MemOpIdx oi, uintptr_t ra)
1069b9e60257SRichard Henderson {
1070f83bcecbSRichard Henderson     void *haddr;
1071b9e60257SRichard Henderson 
1072f83bcecbSRichard Henderson     validate_memop(oi, MO_LEUL);
1073f83bcecbSRichard Henderson     haddr = cpu_mmu_lookup(env, addr, oi, ra, MMU_DATA_STORE);
1074f83bcecbSRichard Henderson     stl_le_p(haddr, val);
1075b9e60257SRichard Henderson     clear_helper_retaddr();
1076f83bcecbSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), addr, oi, QEMU_PLUGIN_MEM_W);
1077b9e60257SRichard Henderson }
1078b9e60257SRichard Henderson 
1079f83bcecbSRichard Henderson void cpu_stq_le_mmu(CPUArchState *env, abi_ptr addr, uint64_t val,
1080f83bcecbSRichard Henderson                     MemOpIdx oi, uintptr_t ra)
1081b9e60257SRichard Henderson {
1082f83bcecbSRichard Henderson     void *haddr;
1083b9e60257SRichard Henderson 
1084fc313c64SFrédéric Pétrot     validate_memop(oi, MO_LEUQ);
1085f83bcecbSRichard Henderson     haddr = cpu_mmu_lookup(env, addr, oi, ra, MMU_DATA_STORE);
1086f83bcecbSRichard Henderson     stq_le_p(haddr, val);
1087ed4cfbcdSRichard Henderson     clear_helper_retaddr();
1088f83bcecbSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), addr, oi, QEMU_PLUGIN_MEM_W);
1089ed4cfbcdSRichard Henderson }
1090ed4cfbcdSRichard Henderson 
1091ed4cfbcdSRichard Henderson uint32_t cpu_ldub_code(CPUArchState *env, abi_ptr ptr)
1092ed4cfbcdSRichard Henderson {
1093ed4cfbcdSRichard Henderson     uint32_t ret;
1094ed4cfbcdSRichard Henderson 
1095ed4cfbcdSRichard Henderson     set_helper_retaddr(1);
10963e8f1628SRichard Henderson     ret = ldub_p(g2h_untagged(ptr));
1097ed4cfbcdSRichard Henderson     clear_helper_retaddr();
1098ed4cfbcdSRichard Henderson     return ret;
1099ed4cfbcdSRichard Henderson }
1100ed4cfbcdSRichard Henderson 
1101ed4cfbcdSRichard Henderson uint32_t cpu_lduw_code(CPUArchState *env, abi_ptr ptr)
1102ed4cfbcdSRichard Henderson {
1103ed4cfbcdSRichard Henderson     uint32_t ret;
1104ed4cfbcdSRichard Henderson 
1105ed4cfbcdSRichard Henderson     set_helper_retaddr(1);
11063e8f1628SRichard Henderson     ret = lduw_p(g2h_untagged(ptr));
1107ed4cfbcdSRichard Henderson     clear_helper_retaddr();
1108ed4cfbcdSRichard Henderson     return ret;
1109ed4cfbcdSRichard Henderson }
1110ed4cfbcdSRichard Henderson 
1111ed4cfbcdSRichard Henderson uint32_t cpu_ldl_code(CPUArchState *env, abi_ptr ptr)
1112ed4cfbcdSRichard Henderson {
1113ed4cfbcdSRichard Henderson     uint32_t ret;
1114ed4cfbcdSRichard Henderson 
1115ed4cfbcdSRichard Henderson     set_helper_retaddr(1);
11163e8f1628SRichard Henderson     ret = ldl_p(g2h_untagged(ptr));
1117ed4cfbcdSRichard Henderson     clear_helper_retaddr();
1118ed4cfbcdSRichard Henderson     return ret;
1119ed4cfbcdSRichard Henderson }
1120ed4cfbcdSRichard Henderson 
1121ed4cfbcdSRichard Henderson uint64_t cpu_ldq_code(CPUArchState *env, abi_ptr ptr)
1122ed4cfbcdSRichard Henderson {
1123ed4cfbcdSRichard Henderson     uint64_t ret;
1124ed4cfbcdSRichard Henderson 
1125ed4cfbcdSRichard Henderson     set_helper_retaddr(1);
11263e8f1628SRichard Henderson     ret = ldq_p(g2h_untagged(ptr));
1127ed4cfbcdSRichard Henderson     clear_helper_retaddr();
1128ed4cfbcdSRichard Henderson     return ret;
1129ed4cfbcdSRichard Henderson }
1130ed4cfbcdSRichard Henderson 
1131f83bcecbSRichard Henderson #include "ldst_common.c.inc"
1132f83bcecbSRichard Henderson 
1133a754f7f3SRichard Henderson /*
1134a754f7f3SRichard Henderson  * Do not allow unaligned operations to proceed.  Return the host address.
1135a754f7f3SRichard Henderson  *
1136a754f7f3SRichard Henderson  * @prot may be PAGE_READ, PAGE_WRITE, or PAGE_READ|PAGE_WRITE.
1137a754f7f3SRichard Henderson  */
1138a411d296SPhilippe Mathieu-Daudé static void *atomic_mmu_lookup(CPUArchState *env, target_ulong addr,
11399002ffcbSRichard Henderson                                MemOpIdx oi, int size, int prot,
1140a754f7f3SRichard Henderson                                uintptr_t retaddr)
1141a411d296SPhilippe Mathieu-Daudé {
1142fce3f474SRichard Henderson     MemOp mop = get_memop(oi);
1143fce3f474SRichard Henderson     int a_bits = get_alignment_bits(mop);
1144fce3f474SRichard Henderson     void *ret;
1145fce3f474SRichard Henderson 
1146fce3f474SRichard Henderson     /* Enforce guest required alignment.  */
1147fce3f474SRichard Henderson     if (unlikely(addr & ((1 << a_bits) - 1))) {
1148fce3f474SRichard Henderson         MMUAccessType t = prot == PAGE_READ ? MMU_DATA_LOAD : MMU_DATA_STORE;
1149fce3f474SRichard Henderson         cpu_loop_exit_sigbus(env_cpu(env), addr, t, retaddr);
1150fce3f474SRichard Henderson     }
1151fce3f474SRichard Henderson 
1152a411d296SPhilippe Mathieu-Daudé     /* Enforce qemu required alignment.  */
1153a411d296SPhilippe Mathieu-Daudé     if (unlikely(addr & (size - 1))) {
115429a0af61SRichard Henderson         cpu_loop_exit_atomic(env_cpu(env), retaddr);
1155a411d296SPhilippe Mathieu-Daudé     }
1156fce3f474SRichard Henderson 
1157fce3f474SRichard Henderson     ret = g2h(env_cpu(env), addr);
115808b97f7fSRichard Henderson     set_helper_retaddr(retaddr);
115908b97f7fSRichard Henderson     return ret;
1160a411d296SPhilippe Mathieu-Daudé }
1161a411d296SPhilippe Mathieu-Daudé 
1162be9568b4SRichard Henderson #include "atomic_common.c.inc"
1163be9568b4SRichard Henderson 
1164be9568b4SRichard Henderson /*
1165be9568b4SRichard Henderson  * First set of functions passes in OI and RETADDR.
1166be9568b4SRichard Henderson  * This makes them callable from other helpers.
1167be9568b4SRichard Henderson  */
1168be9568b4SRichard Henderson 
1169be9568b4SRichard Henderson #define ATOMIC_NAME(X) \
1170be9568b4SRichard Henderson     glue(glue(glue(cpu_atomic_ ## X, SUFFIX), END), _mmu)
117108b97f7fSRichard Henderson #define ATOMIC_MMU_CLEANUP do { clear_helper_retaddr(); } while (0)
1172a411d296SPhilippe Mathieu-Daudé 
1173a411d296SPhilippe Mathieu-Daudé #define DATA_SIZE 1
1174a411d296SPhilippe Mathieu-Daudé #include "atomic_template.h"
1175a411d296SPhilippe Mathieu-Daudé 
1176a411d296SPhilippe Mathieu-Daudé #define DATA_SIZE 2
1177a411d296SPhilippe Mathieu-Daudé #include "atomic_template.h"
1178a411d296SPhilippe Mathieu-Daudé 
1179a411d296SPhilippe Mathieu-Daudé #define DATA_SIZE 4
1180a411d296SPhilippe Mathieu-Daudé #include "atomic_template.h"
1181a411d296SPhilippe Mathieu-Daudé 
1182a411d296SPhilippe Mathieu-Daudé #ifdef CONFIG_ATOMIC64
1183a411d296SPhilippe Mathieu-Daudé #define DATA_SIZE 8
1184a411d296SPhilippe Mathieu-Daudé #include "atomic_template.h"
1185a411d296SPhilippe Mathieu-Daudé #endif
1186a411d296SPhilippe Mathieu-Daudé 
1187e6cd4bb5SRichard Henderson #if HAVE_ATOMIC128 || HAVE_CMPXCHG128
1188be9568b4SRichard Henderson #define DATA_SIZE 16
1189be9568b4SRichard Henderson #include "atomic_template.h"
1190be9568b4SRichard Henderson #endif
1191