xref: /qemu/accel/tcg/user-exec.c (revision e3a6e0daf47f43cdb02b42c4dd3694a8f00063d5)
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"
203e457172SBlue Swirl #include "cpu.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"
25f08b6170SPaolo Bonzini #include "exec/cpu_ldst.h"
261652b974SPaolo Bonzini #include "translate-all.h"
27a411d296SPhilippe Mathieu-Daudé #include "exec/helper-proto.h"
28e6cd4bb5SRichard Henderson #include "qemu/atomic128.h"
29243af022SPaolo Bonzini #include "trace/trace-root.h"
30ed4cfbcdSRichard Henderson #include "trace/mem.h"
3142a623c7SBlue Swirl 
3242a623c7SBlue Swirl #undef EAX
3342a623c7SBlue Swirl #undef ECX
3442a623c7SBlue Swirl #undef EDX
3542a623c7SBlue Swirl #undef EBX
3642a623c7SBlue Swirl #undef ESP
3742a623c7SBlue Swirl #undef EBP
3842a623c7SBlue Swirl #undef ESI
3942a623c7SBlue Swirl #undef EDI
4042a623c7SBlue Swirl #undef EIP
4142a623c7SBlue Swirl #ifdef __linux__
4242a623c7SBlue Swirl #include <sys/ucontext.h>
4342a623c7SBlue Swirl #endif
4442a623c7SBlue Swirl 
45ec603b55SRichard Henderson __thread uintptr_t helper_retaddr;
46ec603b55SRichard Henderson 
4742a623c7SBlue Swirl //#define DEBUG_SIGNAL
4842a623c7SBlue Swirl 
4942a623c7SBlue Swirl /* exit the current TB from a signal handler. The host registers are
5042a623c7SBlue Swirl    restored in a state compatible with the CPU emulator
5142a623c7SBlue Swirl  */
52a5852dc5SPeter Maydell static void cpu_exit_tb_from_sighandler(CPUState *cpu, sigset_t *old_set)
5342a623c7SBlue Swirl {
5442a623c7SBlue Swirl     /* XXX: use siglongjmp ? */
55a5852dc5SPeter Maydell     sigprocmask(SIG_SETMASK, old_set, NULL);
566886b980SPeter Maydell     cpu_loop_exit_noexc(cpu);
5742a623c7SBlue Swirl }
5842a623c7SBlue Swirl 
5942a623c7SBlue Swirl /* 'pc' is the host PC at which the exception was raised. 'address' is
6042a623c7SBlue Swirl    the effective address of the memory exception. 'is_write' is 1 if a
6142a623c7SBlue Swirl    write caused the exception and otherwise 0'. 'old_set' is the
6242a623c7SBlue Swirl    signal set which should be restored */
63a78b1299SPeter Maydell static inline int handle_cpu_signal(uintptr_t pc, siginfo_t *info,
64a5852dc5SPeter Maydell                                     int is_write, sigset_t *old_set)
6542a623c7SBlue Swirl {
6602bed6bdSAlex Bennée     CPUState *cpu = current_cpu;
677510454eSAndreas Färber     CPUClass *cc;
68a78b1299SPeter Maydell     unsigned long address = (unsigned long)info->si_addr;
6952ba13f0SRichard Henderson     MMUAccessType access_type = is_write ? MMU_DATA_STORE : MMU_DATA_LOAD;
7042a623c7SBlue Swirl 
7152ba13f0SRichard Henderson     switch (helper_retaddr) {
7252ba13f0SRichard Henderson     default:
7352ba13f0SRichard Henderson         /*
7452ba13f0SRichard Henderson          * Fault during host memory operation within a helper function.
7552ba13f0SRichard Henderson          * The helper's host return address, saved here, gives us a
7652ba13f0SRichard Henderson          * pointer into the generated code that will unwind to the
7752ba13f0SRichard Henderson          * correct guest pc.
78ec603b55SRichard Henderson          */
79ec603b55SRichard Henderson         pc = helper_retaddr;
8052ba13f0SRichard Henderson         break;
8152ba13f0SRichard Henderson 
8252ba13f0SRichard Henderson     case 0:
8352ba13f0SRichard Henderson         /*
8452ba13f0SRichard Henderson          * Fault during host memory operation within generated code.
8552ba13f0SRichard Henderson          * (Or, a unrelated bug within qemu, but we can't tell from here).
8652ba13f0SRichard Henderson          *
8752ba13f0SRichard Henderson          * We take the host pc from the signal frame.  However, we cannot
8852ba13f0SRichard Henderson          * use that value directly.  Within cpu_restore_state_from_tb, we
8952ba13f0SRichard Henderson          * assume PC comes from GETPC(), as used by the helper functions,
9052ba13f0SRichard Henderson          * so we adjust the address by -GETPC_ADJ to form an address that
91*e3a6e0daSzhaolichang          * is within the call insn, so that the address does not accidentally
9252ba13f0SRichard Henderson          * match the beginning of the next guest insn.  However, when the
9352ba13f0SRichard Henderson          * pc comes from the signal frame it points to the actual faulting
9452ba13f0SRichard Henderson          * host memory insn and not the return from a call insn.
9552ba13f0SRichard Henderson          *
9652ba13f0SRichard Henderson          * Therefore, adjust to compensate for what will be done later
9752ba13f0SRichard Henderson          * by cpu_restore_state_from_tb.
9852ba13f0SRichard Henderson          */
99ec603b55SRichard Henderson         pc += GETPC_ADJ;
10052ba13f0SRichard Henderson         break;
10152ba13f0SRichard Henderson 
10252ba13f0SRichard Henderson     case 1:
10352ba13f0SRichard Henderson         /*
10452ba13f0SRichard Henderson          * Fault during host read for translation, or loosely, "execution".
10552ba13f0SRichard Henderson          *
10652ba13f0SRichard Henderson          * The guest pc is already pointing to the start of the TB for which
10752ba13f0SRichard Henderson          * code is being generated.  If the guest translator manages the
10852ba13f0SRichard Henderson          * page crossings correctly, this is exactly the correct address
10952ba13f0SRichard Henderson          * (and if the translator doesn't handle page boundaries correctly
11052ba13f0SRichard Henderson          * there's little we can do about that here).  Therefore, do not
11152ba13f0SRichard Henderson          * trigger the unwinder.
11252ba13f0SRichard Henderson          *
11352ba13f0SRichard Henderson          * Like tb_gen_code, release the memory lock before cpu_loop_exit.
11452ba13f0SRichard Henderson          */
11552ba13f0SRichard Henderson         pc = 0;
11652ba13f0SRichard Henderson         access_type = MMU_INST_FETCH;
11752ba13f0SRichard Henderson         mmap_unlock();
11852ba13f0SRichard Henderson         break;
119ec603b55SRichard Henderson     }
120ec603b55SRichard Henderson 
12102bed6bdSAlex Bennée     /* For synchronous signals we expect to be coming from the vCPU
12202bed6bdSAlex Bennée      * thread (so current_cpu should be valid) and either from running
12302bed6bdSAlex Bennée      * code or during translation which can fault as we cross pages.
12402bed6bdSAlex Bennée      *
12502bed6bdSAlex Bennée      * If neither is true then something has gone wrong and we should
12602bed6bdSAlex Bennée      * abort rather than try and restart the vCPU execution.
12702bed6bdSAlex Bennée      */
12802bed6bdSAlex Bennée     if (!cpu || !cpu->running) {
12902bed6bdSAlex Bennée         printf("qemu:%s received signal outside vCPU context @ pc=0x%"
13002bed6bdSAlex Bennée                PRIxPTR "\n",  __func__, pc);
13102bed6bdSAlex Bennée         abort();
13202bed6bdSAlex Bennée     }
13302bed6bdSAlex Bennée 
13442a623c7SBlue Swirl #if defined(DEBUG_SIGNAL)
13571baf787SPeter Maydell     printf("qemu: SIGSEGV pc=0x%08lx address=%08lx w=%d oldset=0x%08lx\n",
13642a623c7SBlue Swirl            pc, address, is_write, *(unsigned long *)old_set);
13742a623c7SBlue Swirl #endif
13842a623c7SBlue Swirl     /* XXX: locking issue */
1399c4bbee9SPeter Maydell     /* Note that it is important that we don't call page_unprotect() unless
1409c4bbee9SPeter Maydell      * this is really a "write to nonwriteable page" fault, because
1419c4bbee9SPeter Maydell      * page_unprotect() assumes that if it is called for an access to
1429c4bbee9SPeter Maydell      * a page that's writeable this means we had two threads racing and
1439c4bbee9SPeter Maydell      * another thread got there first and already made the page writeable;
1449c4bbee9SPeter Maydell      * so we will retry the access. If we were to call page_unprotect()
1459c4bbee9SPeter Maydell      * for some other kind of fault that should really be passed to the
1469c4bbee9SPeter Maydell      * guest, we'd end up in an infinite loop of retrying the faulting
1479c4bbee9SPeter Maydell      * access.
1489c4bbee9SPeter Maydell      */
1499c4bbee9SPeter Maydell     if (is_write && info->si_signo == SIGSEGV && info->si_code == SEGV_ACCERR &&
1509c4bbee9SPeter Maydell         h2g_valid(address)) {
151f213e72fSPeter Maydell         switch (page_unprotect(h2g(address), pc)) {
152f213e72fSPeter Maydell         case 0:
153f213e72fSPeter Maydell             /* Fault not caused by a page marked unwritable to protect
154ec603b55SRichard Henderson              * cached translations, must be the guest binary's problem.
155f213e72fSPeter Maydell              */
156f213e72fSPeter Maydell             break;
157f213e72fSPeter Maydell         case 1:
158f213e72fSPeter Maydell             /* Fault caused by protection of cached translation; TBs
159ec603b55SRichard Henderson              * invalidated, so resume execution.  Retain helper_retaddr
160ec603b55SRichard Henderson              * for a possible second fault.
161f213e72fSPeter Maydell              */
16242a623c7SBlue Swirl             return 1;
163f213e72fSPeter Maydell         case 2:
164f213e72fSPeter Maydell             /* Fault caused by protection of cached translation, and the
165f213e72fSPeter Maydell              * currently executing TB was modified and must be exited
166ec603b55SRichard Henderson              * immediately.  Clear helper_retaddr for next execution.
167f213e72fSPeter Maydell              */
16808b97f7fSRichard Henderson             clear_helper_retaddr();
16902bed6bdSAlex Bennée             cpu_exit_tb_from_sighandler(cpu, old_set);
170ec603b55SRichard Henderson             /* NORETURN */
171ec603b55SRichard Henderson 
172f213e72fSPeter Maydell         default:
173f213e72fSPeter Maydell             g_assert_not_reached();
174f213e72fSPeter Maydell         }
17542a623c7SBlue Swirl     }
17642a623c7SBlue Swirl 
177732f9e89SAlexander Graf     /* Convert forcefully to guest address space, invalid addresses
178732f9e89SAlexander Graf        are still valid segv ones */
179732f9e89SAlexander Graf     address = h2g_nocheck(address);
180732f9e89SAlexander Graf 
181da6bbf85SRichard Henderson     /*
182da6bbf85SRichard Henderson      * There is no way the target can handle this other than raising
183da6bbf85SRichard Henderson      * an exception.  Undo signal and retaddr state prior to longjmp.
184ec603b55SRichard Henderson      */
185da6bbf85SRichard Henderson     sigprocmask(SIG_SETMASK, old_set, NULL);
18608b97f7fSRichard Henderson     clear_helper_retaddr();
187ec603b55SRichard Henderson 
188da6bbf85SRichard Henderson     cc = CPU_GET_CLASS(cpu);
189da6bbf85SRichard Henderson     cc->tlb_fill(cpu, address, 0, access_type, MMU_USER_IDX, false, pc);
190da6bbf85SRichard Henderson     g_assert_not_reached();
19142a623c7SBlue Swirl }
19242a623c7SBlue Swirl 
193069cfe77SRichard Henderson static int probe_access_internal(CPUArchState *env, target_ulong addr,
194069cfe77SRichard Henderson                                  int fault_size, MMUAccessType access_type,
195069cfe77SRichard Henderson                                  bool nonfault, uintptr_t ra)
19659e96ac6SDavid Hildenbrand {
197c25c283dSDavid Hildenbrand     int flags;
198c25c283dSDavid Hildenbrand 
199c25c283dSDavid Hildenbrand     switch (access_type) {
200c25c283dSDavid Hildenbrand     case MMU_DATA_STORE:
201c25c283dSDavid Hildenbrand         flags = PAGE_WRITE;
202c25c283dSDavid Hildenbrand         break;
203c25c283dSDavid Hildenbrand     case MMU_DATA_LOAD:
204c25c283dSDavid Hildenbrand         flags = PAGE_READ;
205c25c283dSDavid Hildenbrand         break;
206c25c283dSDavid Hildenbrand     case MMU_INST_FETCH:
207c25c283dSDavid Hildenbrand         flags = PAGE_EXEC;
208c25c283dSDavid Hildenbrand         break;
209c25c283dSDavid Hildenbrand     default:
210c25c283dSDavid Hildenbrand         g_assert_not_reached();
211c25c283dSDavid Hildenbrand     }
212c25c283dSDavid Hildenbrand 
2137a1bfee6SRichard Henderson     if (!guest_addr_valid(addr) || page_check_range(addr, 1, flags) < 0) {
214069cfe77SRichard Henderson         if (nonfault) {
215069cfe77SRichard Henderson             return TLB_INVALID_MASK;
216069cfe77SRichard Henderson         } else {
21759e96ac6SDavid Hildenbrand             CPUState *cpu = env_cpu(env);
21859e96ac6SDavid Hildenbrand             CPUClass *cc = CPU_GET_CLASS(cpu);
219069cfe77SRichard Henderson             cc->tlb_fill(cpu, addr, fault_size, access_type,
220069cfe77SRichard Henderson                          MMU_USER_IDX, false, ra);
22159e96ac6SDavid Hildenbrand             g_assert_not_reached();
22259e96ac6SDavid Hildenbrand         }
223069cfe77SRichard Henderson     }
224069cfe77SRichard Henderson     return 0;
225069cfe77SRichard Henderson }
226069cfe77SRichard Henderson 
227069cfe77SRichard Henderson int probe_access_flags(CPUArchState *env, target_ulong addr,
228069cfe77SRichard Henderson                        MMUAccessType access_type, int mmu_idx,
229069cfe77SRichard Henderson                        bool nonfault, void **phost, uintptr_t ra)
230069cfe77SRichard Henderson {
231069cfe77SRichard Henderson     int flags;
232069cfe77SRichard Henderson 
233069cfe77SRichard Henderson     flags = probe_access_internal(env, addr, 0, access_type, nonfault, ra);
234069cfe77SRichard Henderson     *phost = flags ? NULL : g2h(addr);
235069cfe77SRichard Henderson     return flags;
236069cfe77SRichard Henderson }
237069cfe77SRichard Henderson 
238069cfe77SRichard Henderson void *probe_access(CPUArchState *env, target_ulong addr, int size,
239069cfe77SRichard Henderson                    MMUAccessType access_type, int mmu_idx, uintptr_t ra)
240069cfe77SRichard Henderson {
241069cfe77SRichard Henderson     int flags;
242069cfe77SRichard Henderson 
243069cfe77SRichard Henderson     g_assert(-(addr | TARGET_PAGE_MASK) >= size);
244069cfe77SRichard Henderson     flags = probe_access_internal(env, addr, size, access_type, false, ra);
245069cfe77SRichard Henderson     g_assert(flags == 0);
246fef39ccdSDavid Hildenbrand 
247fef39ccdSDavid Hildenbrand     return size ? g2h(addr) : NULL;
24859e96ac6SDavid Hildenbrand }
24959e96ac6SDavid Hildenbrand 
25042a623c7SBlue Swirl #if defined(__i386__)
25142a623c7SBlue Swirl 
252c5679026SPeter Maydell #if defined(__NetBSD__)
25342a623c7SBlue Swirl #include <ucontext.h>
25442a623c7SBlue Swirl 
25542a623c7SBlue Swirl #define EIP_sig(context)     ((context)->uc_mcontext.__gregs[_REG_EIP])
25642a623c7SBlue Swirl #define TRAP_sig(context)    ((context)->uc_mcontext.__gregs[_REG_TRAPNO])
25742a623c7SBlue Swirl #define ERROR_sig(context)   ((context)->uc_mcontext.__gregs[_REG_ERR])
25842a623c7SBlue Swirl #define MASK_sig(context)    ((context)->uc_sigmask)
25942a623c7SBlue Swirl #elif defined(__FreeBSD__) || defined(__DragonFly__)
26042a623c7SBlue Swirl #include <ucontext.h>
26142a623c7SBlue Swirl 
26242a623c7SBlue Swirl #define EIP_sig(context)  (*((unsigned long *)&(context)->uc_mcontext.mc_eip))
26342a623c7SBlue Swirl #define TRAP_sig(context)    ((context)->uc_mcontext.mc_trapno)
26442a623c7SBlue Swirl #define ERROR_sig(context)   ((context)->uc_mcontext.mc_err)
26542a623c7SBlue Swirl #define MASK_sig(context)    ((context)->uc_sigmask)
26642a623c7SBlue Swirl #elif defined(__OpenBSD__)
26742a623c7SBlue Swirl #define EIP_sig(context)     ((context)->sc_eip)
26842a623c7SBlue Swirl #define TRAP_sig(context)    ((context)->sc_trapno)
26942a623c7SBlue Swirl #define ERROR_sig(context)   ((context)->sc_err)
27042a623c7SBlue Swirl #define MASK_sig(context)    ((context)->sc_mask)
27142a623c7SBlue Swirl #else
27242a623c7SBlue Swirl #define EIP_sig(context)     ((context)->uc_mcontext.gregs[REG_EIP])
27342a623c7SBlue Swirl #define TRAP_sig(context)    ((context)->uc_mcontext.gregs[REG_TRAPNO])
27442a623c7SBlue Swirl #define ERROR_sig(context)   ((context)->uc_mcontext.gregs[REG_ERR])
27542a623c7SBlue Swirl #define MASK_sig(context)    ((context)->uc_sigmask)
27642a623c7SBlue Swirl #endif
27742a623c7SBlue Swirl 
27842a623c7SBlue Swirl int cpu_signal_handler(int host_signum, void *pinfo,
27942a623c7SBlue Swirl                        void *puc)
28042a623c7SBlue Swirl {
28142a623c7SBlue Swirl     siginfo_t *info = pinfo;
28242a623c7SBlue Swirl #if defined(__NetBSD__) || defined(__FreeBSD__) || defined(__DragonFly__)
28342a623c7SBlue Swirl     ucontext_t *uc = puc;
28442a623c7SBlue Swirl #elif defined(__OpenBSD__)
28542a623c7SBlue Swirl     struct sigcontext *uc = puc;
28642a623c7SBlue Swirl #else
28704b33e21SKhem Raj     ucontext_t *uc = puc;
28842a623c7SBlue Swirl #endif
28942a623c7SBlue Swirl     unsigned long pc;
29042a623c7SBlue Swirl     int trapno;
29142a623c7SBlue Swirl 
29242a623c7SBlue Swirl #ifndef REG_EIP
29342a623c7SBlue Swirl /* for glibc 2.1 */
29442a623c7SBlue Swirl #define REG_EIP    EIP
29542a623c7SBlue Swirl #define REG_ERR    ERR
29642a623c7SBlue Swirl #define REG_TRAPNO TRAPNO
29742a623c7SBlue Swirl #endif
29842a623c7SBlue Swirl     pc = EIP_sig(uc);
29942a623c7SBlue Swirl     trapno = TRAP_sig(uc);
300a78b1299SPeter Maydell     return handle_cpu_signal(pc, info,
301a78b1299SPeter Maydell                              trapno == 0xe ? (ERROR_sig(uc) >> 1) & 1 : 0,
302a5852dc5SPeter Maydell                              &MASK_sig(uc));
30342a623c7SBlue Swirl }
30442a623c7SBlue Swirl 
30542a623c7SBlue Swirl #elif defined(__x86_64__)
30642a623c7SBlue Swirl 
30742a623c7SBlue Swirl #ifdef __NetBSD__
30842a623c7SBlue Swirl #define PC_sig(context)       _UC_MACHINE_PC(context)
30942a623c7SBlue Swirl #define TRAP_sig(context)     ((context)->uc_mcontext.__gregs[_REG_TRAPNO])
31042a623c7SBlue Swirl #define ERROR_sig(context)    ((context)->uc_mcontext.__gregs[_REG_ERR])
31142a623c7SBlue Swirl #define MASK_sig(context)     ((context)->uc_sigmask)
31242a623c7SBlue Swirl #elif defined(__OpenBSD__)
31342a623c7SBlue Swirl #define PC_sig(context)       ((context)->sc_rip)
31442a623c7SBlue Swirl #define TRAP_sig(context)     ((context)->sc_trapno)
31542a623c7SBlue Swirl #define ERROR_sig(context)    ((context)->sc_err)
31642a623c7SBlue Swirl #define MASK_sig(context)     ((context)->sc_mask)
31742a623c7SBlue Swirl #elif defined(__FreeBSD__) || defined(__DragonFly__)
31842a623c7SBlue Swirl #include <ucontext.h>
31942a623c7SBlue Swirl 
32042a623c7SBlue Swirl #define PC_sig(context)  (*((unsigned long *)&(context)->uc_mcontext.mc_rip))
32142a623c7SBlue Swirl #define TRAP_sig(context)     ((context)->uc_mcontext.mc_trapno)
32242a623c7SBlue Swirl #define ERROR_sig(context)    ((context)->uc_mcontext.mc_err)
32342a623c7SBlue Swirl #define MASK_sig(context)     ((context)->uc_sigmask)
32442a623c7SBlue Swirl #else
32542a623c7SBlue Swirl #define PC_sig(context)       ((context)->uc_mcontext.gregs[REG_RIP])
32642a623c7SBlue Swirl #define TRAP_sig(context)     ((context)->uc_mcontext.gregs[REG_TRAPNO])
32742a623c7SBlue Swirl #define ERROR_sig(context)    ((context)->uc_mcontext.gregs[REG_ERR])
32842a623c7SBlue Swirl #define MASK_sig(context)     ((context)->uc_sigmask)
32942a623c7SBlue Swirl #endif
33042a623c7SBlue Swirl 
33142a623c7SBlue Swirl int cpu_signal_handler(int host_signum, void *pinfo,
33242a623c7SBlue Swirl                        void *puc)
33342a623c7SBlue Swirl {
33442a623c7SBlue Swirl     siginfo_t *info = pinfo;
33542a623c7SBlue Swirl     unsigned long pc;
33642a623c7SBlue Swirl #if defined(__NetBSD__) || defined(__FreeBSD__) || defined(__DragonFly__)
33742a623c7SBlue Swirl     ucontext_t *uc = puc;
33842a623c7SBlue Swirl #elif defined(__OpenBSD__)
33942a623c7SBlue Swirl     struct sigcontext *uc = puc;
34042a623c7SBlue Swirl #else
34104b33e21SKhem Raj     ucontext_t *uc = puc;
34242a623c7SBlue Swirl #endif
34342a623c7SBlue Swirl 
34442a623c7SBlue Swirl     pc = PC_sig(uc);
345a78b1299SPeter Maydell     return handle_cpu_signal(pc, info,
346a78b1299SPeter Maydell                              TRAP_sig(uc) == 0xe ? (ERROR_sig(uc) >> 1) & 1 : 0,
347a5852dc5SPeter Maydell                              &MASK_sig(uc));
34842a623c7SBlue Swirl }
34942a623c7SBlue Swirl 
35042a623c7SBlue Swirl #elif defined(_ARCH_PPC)
35142a623c7SBlue Swirl 
35242a623c7SBlue Swirl /***********************************************************************
35342a623c7SBlue Swirl  * signal context platform-specific definitions
35442a623c7SBlue Swirl  * From Wine
35542a623c7SBlue Swirl  */
35642a623c7SBlue Swirl #ifdef linux
35742a623c7SBlue Swirl /* All Registers access - only for local access */
35842a623c7SBlue Swirl #define REG_sig(reg_name, context)              \
35942a623c7SBlue Swirl     ((context)->uc_mcontext.regs->reg_name)
36042a623c7SBlue Swirl /* Gpr Registers access  */
36142a623c7SBlue Swirl #define GPR_sig(reg_num, context)              REG_sig(gpr[reg_num], context)
36242a623c7SBlue Swirl /* Program counter */
36342a623c7SBlue Swirl #define IAR_sig(context)                       REG_sig(nip, context)
36442a623c7SBlue Swirl /* Machine State Register (Supervisor) */
36542a623c7SBlue Swirl #define MSR_sig(context)                       REG_sig(msr, context)
36642a623c7SBlue Swirl /* Count register */
36742a623c7SBlue Swirl #define CTR_sig(context)                       REG_sig(ctr, context)
36842a623c7SBlue Swirl /* User's integer exception register */
36942a623c7SBlue Swirl #define XER_sig(context)                       REG_sig(xer, context)
37042a623c7SBlue Swirl /* Link register */
37142a623c7SBlue Swirl #define LR_sig(context)                        REG_sig(link, context)
37242a623c7SBlue Swirl /* Condition register */
37342a623c7SBlue Swirl #define CR_sig(context)                        REG_sig(ccr, context)
37442a623c7SBlue Swirl 
37542a623c7SBlue Swirl /* Float Registers access  */
37642a623c7SBlue Swirl #define FLOAT_sig(reg_num, context)                                     \
37742a623c7SBlue Swirl     (((double *)((char *)((context)->uc_mcontext.regs + 48 * 4)))[reg_num])
37842a623c7SBlue Swirl #define FPSCR_sig(context) \
37942a623c7SBlue Swirl     (*(int *)((char *)((context)->uc_mcontext.regs + (48 + 32 * 2) * 4)))
38042a623c7SBlue Swirl /* Exception Registers access */
38142a623c7SBlue Swirl #define DAR_sig(context)                       REG_sig(dar, context)
38242a623c7SBlue Swirl #define DSISR_sig(context)                     REG_sig(dsisr, context)
38342a623c7SBlue Swirl #define TRAP_sig(context)                      REG_sig(trap, context)
38442a623c7SBlue Swirl #endif /* linux */
38542a623c7SBlue Swirl 
38642a623c7SBlue Swirl #if defined(__FreeBSD__) || defined(__FreeBSD_kernel__)
38742a623c7SBlue Swirl #include <ucontext.h>
38842a623c7SBlue Swirl #define IAR_sig(context)               ((context)->uc_mcontext.mc_srr0)
38942a623c7SBlue Swirl #define MSR_sig(context)               ((context)->uc_mcontext.mc_srr1)
39042a623c7SBlue Swirl #define CTR_sig(context)               ((context)->uc_mcontext.mc_ctr)
39142a623c7SBlue Swirl #define XER_sig(context)               ((context)->uc_mcontext.mc_xer)
39242a623c7SBlue Swirl #define LR_sig(context)                ((context)->uc_mcontext.mc_lr)
39342a623c7SBlue Swirl #define CR_sig(context)                ((context)->uc_mcontext.mc_cr)
39442a623c7SBlue Swirl /* Exception Registers access */
39542a623c7SBlue Swirl #define DAR_sig(context)               ((context)->uc_mcontext.mc_dar)
39642a623c7SBlue Swirl #define DSISR_sig(context)             ((context)->uc_mcontext.mc_dsisr)
39742a623c7SBlue Swirl #define TRAP_sig(context)              ((context)->uc_mcontext.mc_exc)
39842a623c7SBlue Swirl #endif /* __FreeBSD__|| __FreeBSD_kernel__ */
39942a623c7SBlue Swirl 
40042a623c7SBlue Swirl int cpu_signal_handler(int host_signum, void *pinfo,
40142a623c7SBlue Swirl                        void *puc)
40242a623c7SBlue Swirl {
40342a623c7SBlue Swirl     siginfo_t *info = pinfo;
40442a623c7SBlue Swirl #if defined(__FreeBSD__) || defined(__FreeBSD_kernel__)
40542a623c7SBlue Swirl     ucontext_t *uc = puc;
40642a623c7SBlue Swirl #else
40704b33e21SKhem Raj     ucontext_t *uc = puc;
40842a623c7SBlue Swirl #endif
40942a623c7SBlue Swirl     unsigned long pc;
41042a623c7SBlue Swirl     int is_write;
41142a623c7SBlue Swirl 
41242a623c7SBlue Swirl     pc = IAR_sig(uc);
41342a623c7SBlue Swirl     is_write = 0;
41442a623c7SBlue Swirl #if 0
41542a623c7SBlue Swirl     /* ppc 4xx case */
41642a623c7SBlue Swirl     if (DSISR_sig(uc) & 0x00800000) {
41742a623c7SBlue Swirl         is_write = 1;
41842a623c7SBlue Swirl     }
41942a623c7SBlue Swirl #else
42042a623c7SBlue Swirl     if (TRAP_sig(uc) != 0x400 && (DSISR_sig(uc) & 0x02000000)) {
42142a623c7SBlue Swirl         is_write = 1;
42242a623c7SBlue Swirl     }
42342a623c7SBlue Swirl #endif
424a78b1299SPeter Maydell     return handle_cpu_signal(pc, info, is_write, &uc->uc_sigmask);
42542a623c7SBlue Swirl }
42642a623c7SBlue Swirl 
42742a623c7SBlue Swirl #elif defined(__alpha__)
42842a623c7SBlue Swirl 
42942a623c7SBlue Swirl int cpu_signal_handler(int host_signum, void *pinfo,
43042a623c7SBlue Swirl                            void *puc)
43142a623c7SBlue Swirl {
43242a623c7SBlue Swirl     siginfo_t *info = pinfo;
43304b33e21SKhem Raj     ucontext_t *uc = puc;
43442a623c7SBlue Swirl     uint32_t *pc = uc->uc_mcontext.sc_pc;
43542a623c7SBlue Swirl     uint32_t insn = *pc;
43642a623c7SBlue Swirl     int is_write = 0;
43742a623c7SBlue Swirl 
43842a623c7SBlue Swirl     /* XXX: need kernel patch to get write flag faster */
43942a623c7SBlue Swirl     switch (insn >> 26) {
44042a623c7SBlue Swirl     case 0x0d: /* stw */
44142a623c7SBlue Swirl     case 0x0e: /* stb */
44242a623c7SBlue Swirl     case 0x0f: /* stq_u */
44342a623c7SBlue Swirl     case 0x24: /* stf */
44442a623c7SBlue Swirl     case 0x25: /* stg */
44542a623c7SBlue Swirl     case 0x26: /* sts */
44642a623c7SBlue Swirl     case 0x27: /* stt */
44742a623c7SBlue Swirl     case 0x2c: /* stl */
44842a623c7SBlue Swirl     case 0x2d: /* stq */
44942a623c7SBlue Swirl     case 0x2e: /* stl_c */
45042a623c7SBlue Swirl     case 0x2f: /* stq_c */
45142a623c7SBlue Swirl         is_write = 1;
45242a623c7SBlue Swirl     }
45342a623c7SBlue Swirl 
454a78b1299SPeter Maydell     return handle_cpu_signal(pc, info, is_write, &uc->uc_sigmask);
45542a623c7SBlue Swirl }
45642a623c7SBlue Swirl #elif defined(__sparc__)
45742a623c7SBlue Swirl 
45842a623c7SBlue Swirl int cpu_signal_handler(int host_signum, void *pinfo,
45942a623c7SBlue Swirl                        void *puc)
46042a623c7SBlue Swirl {
46142a623c7SBlue Swirl     siginfo_t *info = pinfo;
46242a623c7SBlue Swirl     int is_write;
46342a623c7SBlue Swirl     uint32_t insn;
46442a623c7SBlue Swirl #if !defined(__arch64__) || defined(CONFIG_SOLARIS)
46542a623c7SBlue Swirl     uint32_t *regs = (uint32_t *)(info + 1);
46642a623c7SBlue Swirl     void *sigmask = (regs + 20);
46742a623c7SBlue Swirl     /* XXX: is there a standard glibc define ? */
46842a623c7SBlue Swirl     unsigned long pc = regs[1];
46942a623c7SBlue Swirl #else
47042a623c7SBlue Swirl #ifdef __linux__
47142a623c7SBlue Swirl     struct sigcontext *sc = puc;
47242a623c7SBlue Swirl     unsigned long pc = sc->sigc_regs.tpc;
47342a623c7SBlue Swirl     void *sigmask = (void *)sc->sigc_mask;
47442a623c7SBlue Swirl #elif defined(__OpenBSD__)
47542a623c7SBlue Swirl     struct sigcontext *uc = puc;
47642a623c7SBlue Swirl     unsigned long pc = uc->sc_pc;
47742a623c7SBlue Swirl     void *sigmask = (void *)(long)uc->sc_mask;
4787ccfb495STobias Nygren #elif defined(__NetBSD__)
4797ccfb495STobias Nygren     ucontext_t *uc = puc;
4807ccfb495STobias Nygren     unsigned long pc = _UC_MACHINE_PC(uc);
4817ccfb495STobias Nygren     void *sigmask = (void *)&uc->uc_sigmask;
48242a623c7SBlue Swirl #endif
48342a623c7SBlue Swirl #endif
48442a623c7SBlue Swirl 
48542a623c7SBlue Swirl     /* XXX: need kernel patch to get write flag faster */
48642a623c7SBlue Swirl     is_write = 0;
48742a623c7SBlue Swirl     insn = *(uint32_t *)pc;
48842a623c7SBlue Swirl     if ((insn >> 30) == 3) {
48942a623c7SBlue Swirl         switch ((insn >> 19) & 0x3f) {
49042a623c7SBlue Swirl         case 0x05: /* stb */
49142a623c7SBlue Swirl         case 0x15: /* stba */
49242a623c7SBlue Swirl         case 0x06: /* sth */
49342a623c7SBlue Swirl         case 0x16: /* stha */
49442a623c7SBlue Swirl         case 0x04: /* st */
49542a623c7SBlue Swirl         case 0x14: /* sta */
49642a623c7SBlue Swirl         case 0x07: /* std */
49742a623c7SBlue Swirl         case 0x17: /* stda */
49842a623c7SBlue Swirl         case 0x0e: /* stx */
49942a623c7SBlue Swirl         case 0x1e: /* stxa */
50042a623c7SBlue Swirl         case 0x24: /* stf */
50142a623c7SBlue Swirl         case 0x34: /* stfa */
50242a623c7SBlue Swirl         case 0x27: /* stdf */
50342a623c7SBlue Swirl         case 0x37: /* stdfa */
50442a623c7SBlue Swirl         case 0x26: /* stqf */
50542a623c7SBlue Swirl         case 0x36: /* stqfa */
50642a623c7SBlue Swirl         case 0x25: /* stfsr */
50742a623c7SBlue Swirl         case 0x3c: /* casa */
50842a623c7SBlue Swirl         case 0x3e: /* casxa */
50942a623c7SBlue Swirl             is_write = 1;
51042a623c7SBlue Swirl             break;
51142a623c7SBlue Swirl         }
51242a623c7SBlue Swirl     }
513a78b1299SPeter Maydell     return handle_cpu_signal(pc, info, is_write, sigmask);
51442a623c7SBlue Swirl }
51542a623c7SBlue Swirl 
51642a623c7SBlue Swirl #elif defined(__arm__)
51742a623c7SBlue Swirl 
5187ccfb495STobias Nygren #if defined(__NetBSD__)
5197ccfb495STobias Nygren #include <ucontext.h>
520853d9a4bSNick Hudson #include <sys/siginfo.h>
5217ccfb495STobias Nygren #endif
5227ccfb495STobias Nygren 
52342a623c7SBlue Swirl int cpu_signal_handler(int host_signum, void *pinfo,
52442a623c7SBlue Swirl                        void *puc)
52542a623c7SBlue Swirl {
52642a623c7SBlue Swirl     siginfo_t *info = pinfo;
5277ccfb495STobias Nygren #if defined(__NetBSD__)
5287ccfb495STobias Nygren     ucontext_t *uc = puc;
529853d9a4bSNick Hudson     siginfo_t *si = pinfo;
5307ccfb495STobias Nygren #else
53104b33e21SKhem Raj     ucontext_t *uc = puc;
5327ccfb495STobias Nygren #endif
53342a623c7SBlue Swirl     unsigned long pc;
534853d9a4bSNick Hudson     uint32_t fsr;
53542a623c7SBlue Swirl     int is_write;
53642a623c7SBlue Swirl 
5377ccfb495STobias Nygren #if defined(__NetBSD__)
5387ccfb495STobias Nygren     pc = uc->uc_mcontext.__gregs[_REG_R15];
5397ccfb495STobias Nygren #elif defined(__GLIBC__) && (__GLIBC__ < 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ <= 3))
54042a623c7SBlue Swirl     pc = uc->uc_mcontext.gregs[R15];
54142a623c7SBlue Swirl #else
54242a623c7SBlue Swirl     pc = uc->uc_mcontext.arm_pc;
54342a623c7SBlue Swirl #endif
544023b0ae3SPeter Maydell 
545853d9a4bSNick Hudson #ifdef __NetBSD__
546853d9a4bSNick Hudson     fsr = si->si_trap;
547853d9a4bSNick Hudson #else
548853d9a4bSNick Hudson     fsr = uc->uc_mcontext.error_code;
549853d9a4bSNick Hudson #endif
550853d9a4bSNick Hudson     /*
551853d9a4bSNick Hudson      * In the FSR, bit 11 is WnR, assuming a v6 or
552853d9a4bSNick Hudson      * later processor.  On v5 we will always report
553853d9a4bSNick Hudson      * this as a read, which will fail later.
554023b0ae3SPeter Maydell      */
555853d9a4bSNick Hudson     is_write = extract32(fsr, 11, 1);
556a78b1299SPeter Maydell     return handle_cpu_signal(pc, info, is_write, &uc->uc_sigmask);
55742a623c7SBlue Swirl }
55842a623c7SBlue Swirl 
559f129061cSClaudio Fontana #elif defined(__aarch64__)
560f129061cSClaudio Fontana 
56171b04329SNick Hudson #if defined(__NetBSD__)
56271b04329SNick Hudson 
56371b04329SNick Hudson #include <ucontext.h>
56471b04329SNick Hudson #include <sys/siginfo.h>
56571b04329SNick Hudson 
56671b04329SNick Hudson int cpu_signal_handler(int host_signum, void *pinfo, void *puc)
56771b04329SNick Hudson {
56871b04329SNick Hudson     ucontext_t *uc = puc;
56971b04329SNick Hudson     siginfo_t *si = pinfo;
57071b04329SNick Hudson     unsigned long pc;
57171b04329SNick Hudson     int is_write;
57271b04329SNick Hudson     uint32_t esr;
57371b04329SNick Hudson 
57471b04329SNick Hudson     pc = uc->uc_mcontext.__gregs[_REG_PC];
57571b04329SNick Hudson     esr = si->si_trap;
57671b04329SNick Hudson 
57771b04329SNick Hudson     /*
57871b04329SNick Hudson      * siginfo_t::si_trap is the ESR value, for data aborts ESR.EC
57971b04329SNick Hudson      * is 0b10010x: then bit 6 is the WnR bit
58071b04329SNick Hudson      */
58171b04329SNick Hudson     is_write = extract32(esr, 27, 5) == 0x12 && extract32(esr, 6, 1) == 1;
58271b04329SNick Hudson     return handle_cpu_signal(pc, si, is_write, &uc->uc_sigmask);
58371b04329SNick Hudson }
58471b04329SNick Hudson 
58571b04329SNick Hudson #else
58671b04329SNick Hudson 
587f454a54fSPeter Maydell #ifndef ESR_MAGIC
588f454a54fSPeter Maydell /* Pre-3.16 kernel headers don't have these, so provide fallback definitions */
589f454a54fSPeter Maydell #define ESR_MAGIC 0x45535201
590f454a54fSPeter Maydell struct esr_context {
591f454a54fSPeter Maydell     struct _aarch64_ctx head;
592f454a54fSPeter Maydell     uint64_t esr;
593f454a54fSPeter Maydell };
594f454a54fSPeter Maydell #endif
595f454a54fSPeter Maydell 
596f454a54fSPeter Maydell static inline struct _aarch64_ctx *first_ctx(ucontext_t *uc)
597f454a54fSPeter Maydell {
598f454a54fSPeter Maydell     return (struct _aarch64_ctx *)&uc->uc_mcontext.__reserved;
599f454a54fSPeter Maydell }
600f454a54fSPeter Maydell 
601f454a54fSPeter Maydell static inline struct _aarch64_ctx *next_ctx(struct _aarch64_ctx *hdr)
602f454a54fSPeter Maydell {
603f454a54fSPeter Maydell     return (struct _aarch64_ctx *)((char *)hdr + hdr->size);
604f454a54fSPeter Maydell }
605f454a54fSPeter Maydell 
606661f7fa4SRichard Henderson int cpu_signal_handler(int host_signum, void *pinfo, void *puc)
607f129061cSClaudio Fontana {
608f129061cSClaudio Fontana     siginfo_t *info = pinfo;
60904b33e21SKhem Raj     ucontext_t *uc = puc;
610661f7fa4SRichard Henderson     uintptr_t pc = uc->uc_mcontext.pc;
611661f7fa4SRichard Henderson     bool is_write;
612f454a54fSPeter Maydell     struct _aarch64_ctx *hdr;
613f454a54fSPeter Maydell     struct esr_context const *esrctx = NULL;
614f129061cSClaudio Fontana 
615f454a54fSPeter Maydell     /* Find the esr_context, which has the WnR bit in it */
616f454a54fSPeter Maydell     for (hdr = first_ctx(uc); hdr->magic; hdr = next_ctx(hdr)) {
617f454a54fSPeter Maydell         if (hdr->magic == ESR_MAGIC) {
618f454a54fSPeter Maydell             esrctx = (struct esr_context const *)hdr;
619f454a54fSPeter Maydell             break;
620f454a54fSPeter Maydell         }
621f454a54fSPeter Maydell     }
622f454a54fSPeter Maydell 
623f454a54fSPeter Maydell     if (esrctx) {
624f454a54fSPeter Maydell         /* For data aborts ESR.EC is 0b10010x: then bit 6 is the WnR bit */
625f454a54fSPeter Maydell         uint64_t esr = esrctx->esr;
626f454a54fSPeter Maydell         is_write = extract32(esr, 27, 5) == 0x12 && extract32(esr, 6, 1) == 1;
627f454a54fSPeter Maydell     } else {
628f454a54fSPeter Maydell         /*
629f454a54fSPeter Maydell          * Fall back to parsing instructions; will only be needed
630f454a54fSPeter Maydell          * for really ancient (pre-3.16) kernels.
631f454a54fSPeter Maydell          */
632f454a54fSPeter Maydell         uint32_t insn = *(uint32_t *)pc;
633f454a54fSPeter Maydell 
634661f7fa4SRichard Henderson         is_write = ((insn & 0xbfff0000) == 0x0c000000   /* C3.3.1 */
635661f7fa4SRichard Henderson                     || (insn & 0xbfe00000) == 0x0c800000   /* C3.3.2 */
636661f7fa4SRichard Henderson                     || (insn & 0xbfdf0000) == 0x0d000000   /* C3.3.3 */
637661f7fa4SRichard Henderson                     || (insn & 0xbfc00000) == 0x0d800000   /* C3.3.4 */
638661f7fa4SRichard Henderson                     || (insn & 0x3f400000) == 0x08000000   /* C3.3.6 */
639661f7fa4SRichard Henderson                     || (insn & 0x3bc00000) == 0x39000000   /* C3.3.13 */
640661f7fa4SRichard Henderson                     || (insn & 0x3fc00000) == 0x3d800000   /* ... 128bit */
641f454a54fSPeter Maydell                     /* Ignore bits 10, 11 & 21, controlling indexing.  */
642661f7fa4SRichard Henderson                     || (insn & 0x3bc00000) == 0x38000000   /* C3.3.8-12 */
643661f7fa4SRichard Henderson                     || (insn & 0x3fe00000) == 0x3c800000   /* ... 128bit */
644661f7fa4SRichard Henderson                     /* Ignore bits 23 & 24, controlling indexing.  */
645661f7fa4SRichard Henderson                     || (insn & 0x3a400000) == 0x28000000); /* C3.3.7,14-16 */
646f454a54fSPeter Maydell     }
647a78b1299SPeter Maydell     return handle_cpu_signal(pc, info, is_write, &uc->uc_sigmask);
648f129061cSClaudio Fontana }
64971b04329SNick Hudson #endif
650f129061cSClaudio Fontana 
65142a623c7SBlue Swirl #elif defined(__s390__)
65242a623c7SBlue Swirl 
65342a623c7SBlue Swirl int cpu_signal_handler(int host_signum, void *pinfo,
65442a623c7SBlue Swirl                        void *puc)
65542a623c7SBlue Swirl {
65642a623c7SBlue Swirl     siginfo_t *info = pinfo;
65704b33e21SKhem Raj     ucontext_t *uc = puc;
65842a623c7SBlue Swirl     unsigned long pc;
65942a623c7SBlue Swirl     uint16_t *pinsn;
66042a623c7SBlue Swirl     int is_write = 0;
66142a623c7SBlue Swirl 
66242a623c7SBlue Swirl     pc = uc->uc_mcontext.psw.addr;
66342a623c7SBlue Swirl 
66442a623c7SBlue Swirl     /* ??? On linux, the non-rt signal handler has 4 (!) arguments instead
66542a623c7SBlue Swirl        of the normal 2 arguments.  The 3rd argument contains the "int_code"
66642a623c7SBlue Swirl        from the hardware which does in fact contain the is_write value.
66742a623c7SBlue Swirl        The rt signal handler, as far as I can tell, does not give this value
66842a623c7SBlue Swirl        at all.  Not that we could get to it from here even if it were.  */
66942a623c7SBlue Swirl     /* ??? This is not even close to complete, since it ignores all
67042a623c7SBlue Swirl        of the read-modify-write instructions.  */
67142a623c7SBlue Swirl     pinsn = (uint16_t *)pc;
67242a623c7SBlue Swirl     switch (pinsn[0] >> 8) {
67342a623c7SBlue Swirl     case 0x50: /* ST */
67442a623c7SBlue Swirl     case 0x42: /* STC */
67542a623c7SBlue Swirl     case 0x40: /* STH */
67642a623c7SBlue Swirl         is_write = 1;
67742a623c7SBlue Swirl         break;
67842a623c7SBlue Swirl     case 0xc4: /* RIL format insns */
67942a623c7SBlue Swirl         switch (pinsn[0] & 0xf) {
68042a623c7SBlue Swirl         case 0xf: /* STRL */
68142a623c7SBlue Swirl         case 0xb: /* STGRL */
68242a623c7SBlue Swirl         case 0x7: /* STHRL */
68342a623c7SBlue Swirl             is_write = 1;
68442a623c7SBlue Swirl         }
68542a623c7SBlue Swirl         break;
68642a623c7SBlue Swirl     case 0xe3: /* RXY format insns */
68742a623c7SBlue Swirl         switch (pinsn[2] & 0xff) {
68842a623c7SBlue Swirl         case 0x50: /* STY */
68942a623c7SBlue Swirl         case 0x24: /* STG */
69042a623c7SBlue Swirl         case 0x72: /* STCY */
69142a623c7SBlue Swirl         case 0x70: /* STHY */
69242a623c7SBlue Swirl         case 0x8e: /* STPQ */
69342a623c7SBlue Swirl         case 0x3f: /* STRVH */
69442a623c7SBlue Swirl         case 0x3e: /* STRV */
69542a623c7SBlue Swirl         case 0x2f: /* STRVG */
69642a623c7SBlue Swirl             is_write = 1;
69742a623c7SBlue Swirl         }
69842a623c7SBlue Swirl         break;
69942a623c7SBlue Swirl     }
700a78b1299SPeter Maydell     return handle_cpu_signal(pc, info, is_write, &uc->uc_sigmask);
70142a623c7SBlue Swirl }
70242a623c7SBlue Swirl 
70342a623c7SBlue Swirl #elif defined(__mips__)
70442a623c7SBlue Swirl 
70542a623c7SBlue Swirl int cpu_signal_handler(int host_signum, void *pinfo,
70642a623c7SBlue Swirl                        void *puc)
70742a623c7SBlue Swirl {
70842a623c7SBlue Swirl     siginfo_t *info = pinfo;
70904b33e21SKhem Raj     ucontext_t *uc = puc;
71042a623c7SBlue Swirl     greg_t pc = uc->uc_mcontext.pc;
71142a623c7SBlue Swirl     int is_write;
71242a623c7SBlue Swirl 
71342a623c7SBlue Swirl     /* XXX: compute is_write */
71442a623c7SBlue Swirl     is_write = 0;
715a78b1299SPeter Maydell     return handle_cpu_signal(pc, info, is_write, &uc->uc_sigmask);
71642a623c7SBlue Swirl }
71742a623c7SBlue Swirl 
718464e447aSAlistair Francis #elif defined(__riscv)
719464e447aSAlistair Francis 
720464e447aSAlistair Francis int cpu_signal_handler(int host_signum, void *pinfo,
721464e447aSAlistair Francis                        void *puc)
722464e447aSAlistair Francis {
723464e447aSAlistair Francis     siginfo_t *info = pinfo;
724464e447aSAlistair Francis     ucontext_t *uc = puc;
725464e447aSAlistair Francis     greg_t pc = uc->uc_mcontext.__gregs[REG_PC];
726464e447aSAlistair Francis     uint32_t insn = *(uint32_t *)pc;
727464e447aSAlistair Francis     int is_write = 0;
728464e447aSAlistair Francis 
729464e447aSAlistair Francis     /* Detect store by reading the instruction at the program
730464e447aSAlistair Francis        counter. Note: we currently only generate 32-bit
731464e447aSAlistair Francis        instructions so we thus only detect 32-bit stores */
732464e447aSAlistair Francis     switch (((insn >> 0) & 0b11)) {
733464e447aSAlistair Francis     case 3:
734464e447aSAlistair Francis         switch (((insn >> 2) & 0b11111)) {
735464e447aSAlistair Francis         case 8:
736464e447aSAlistair Francis             switch (((insn >> 12) & 0b111)) {
737464e447aSAlistair Francis             case 0: /* sb */
738464e447aSAlistair Francis             case 1: /* sh */
739464e447aSAlistair Francis             case 2: /* sw */
740464e447aSAlistair Francis             case 3: /* sd */
741464e447aSAlistair Francis             case 4: /* sq */
742464e447aSAlistair Francis                 is_write = 1;
743464e447aSAlistair Francis                 break;
744464e447aSAlistair Francis             default:
745464e447aSAlistair Francis                 break;
746464e447aSAlistair Francis             }
747464e447aSAlistair Francis             break;
748464e447aSAlistair Francis         case 9:
749464e447aSAlistair Francis             switch (((insn >> 12) & 0b111)) {
750464e447aSAlistair Francis             case 2: /* fsw */
751464e447aSAlistair Francis             case 3: /* fsd */
752464e447aSAlistair Francis             case 4: /* fsq */
753464e447aSAlistair Francis                 is_write = 1;
754464e447aSAlistair Francis                 break;
755464e447aSAlistair Francis             default:
756464e447aSAlistair Francis                 break;
757464e447aSAlistair Francis             }
758464e447aSAlistair Francis             break;
759464e447aSAlistair Francis         default:
760464e447aSAlistair Francis             break;
761464e447aSAlistair Francis         }
762464e447aSAlistair Francis     }
763464e447aSAlistair Francis 
764464e447aSAlistair Francis     /* Check for compressed instructions */
765464e447aSAlistair Francis     switch (((insn >> 13) & 0b111)) {
766464e447aSAlistair Francis     case 7:
767464e447aSAlistair Francis         switch (insn & 0b11) {
768464e447aSAlistair Francis         case 0: /*c.sd */
769464e447aSAlistair Francis         case 2: /* c.sdsp */
770464e447aSAlistair Francis             is_write = 1;
771464e447aSAlistair Francis             break;
772464e447aSAlistair Francis         default:
773464e447aSAlistair Francis             break;
774464e447aSAlistair Francis         }
775464e447aSAlistair Francis         break;
776464e447aSAlistair Francis     case 6:
777464e447aSAlistair Francis         switch (insn & 0b11) {
778464e447aSAlistair Francis         case 0: /* c.sw */
779464e447aSAlistair Francis         case 3: /* c.swsp */
780464e447aSAlistair Francis             is_write = 1;
781464e447aSAlistair Francis             break;
782464e447aSAlistair Francis         default:
783464e447aSAlistair Francis             break;
784464e447aSAlistair Francis         }
785464e447aSAlistair Francis         break;
786464e447aSAlistair Francis     default:
787464e447aSAlistair Francis         break;
788464e447aSAlistair Francis     }
789464e447aSAlistair Francis 
790464e447aSAlistair Francis     return handle_cpu_signal(pc, info, is_write, &uc->uc_sigmask);
791464e447aSAlistair Francis }
792464e447aSAlistair Francis 
79342a623c7SBlue Swirl #else
79442a623c7SBlue Swirl 
79542a623c7SBlue Swirl #error host CPU specific signal handler needed
79642a623c7SBlue Swirl 
79742a623c7SBlue Swirl #endif
798a411d296SPhilippe Mathieu-Daudé 
799a411d296SPhilippe Mathieu-Daudé /* The softmmu versions of these helpers are in cputlb.c.  */
800a411d296SPhilippe Mathieu-Daudé 
801ed4cfbcdSRichard Henderson uint32_t cpu_ldub_data(CPUArchState *env, abi_ptr ptr)
802ed4cfbcdSRichard Henderson {
803ed4cfbcdSRichard Henderson     uint32_t ret;
804ed4cfbcdSRichard Henderson     uint16_t meminfo = trace_mem_get_info(MO_UB, MMU_USER_IDX, false);
805ed4cfbcdSRichard Henderson 
806ed4cfbcdSRichard Henderson     trace_guest_mem_before_exec(env_cpu(env), ptr, meminfo);
807ed4cfbcdSRichard Henderson     ret = ldub_p(g2h(ptr));
808ed4cfbcdSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), ptr, meminfo);
809ed4cfbcdSRichard Henderson     return ret;
810ed4cfbcdSRichard Henderson }
811ed4cfbcdSRichard Henderson 
812ed4cfbcdSRichard Henderson int cpu_ldsb_data(CPUArchState *env, abi_ptr ptr)
813ed4cfbcdSRichard Henderson {
814ed4cfbcdSRichard Henderson     int ret;
815ed4cfbcdSRichard Henderson     uint16_t meminfo = trace_mem_get_info(MO_SB, MMU_USER_IDX, false);
816ed4cfbcdSRichard Henderson 
817ed4cfbcdSRichard Henderson     trace_guest_mem_before_exec(env_cpu(env), ptr, meminfo);
818ed4cfbcdSRichard Henderson     ret = ldsb_p(g2h(ptr));
819ed4cfbcdSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), ptr, meminfo);
820ed4cfbcdSRichard Henderson     return ret;
821ed4cfbcdSRichard Henderson }
822ed4cfbcdSRichard Henderson 
823b9e60257SRichard Henderson uint32_t cpu_lduw_be_data(CPUArchState *env, abi_ptr ptr)
824ed4cfbcdSRichard Henderson {
825ed4cfbcdSRichard Henderson     uint32_t ret;
826b9e60257SRichard Henderson     uint16_t meminfo = trace_mem_get_info(MO_BEUW, MMU_USER_IDX, false);
827ed4cfbcdSRichard Henderson 
828ed4cfbcdSRichard Henderson     trace_guest_mem_before_exec(env_cpu(env), ptr, meminfo);
829b9e60257SRichard Henderson     ret = lduw_be_p(g2h(ptr));
830ed4cfbcdSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), ptr, meminfo);
831ed4cfbcdSRichard Henderson     return ret;
832ed4cfbcdSRichard Henderson }
833ed4cfbcdSRichard Henderson 
834b9e60257SRichard Henderson int cpu_ldsw_be_data(CPUArchState *env, abi_ptr ptr)
835ed4cfbcdSRichard Henderson {
836ed4cfbcdSRichard Henderson     int ret;
837b9e60257SRichard Henderson     uint16_t meminfo = trace_mem_get_info(MO_BESW, MMU_USER_IDX, false);
838ed4cfbcdSRichard Henderson 
839ed4cfbcdSRichard Henderson     trace_guest_mem_before_exec(env_cpu(env), ptr, meminfo);
840b9e60257SRichard Henderson     ret = ldsw_be_p(g2h(ptr));
841ed4cfbcdSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), ptr, meminfo);
842ed4cfbcdSRichard Henderson     return ret;
843ed4cfbcdSRichard Henderson }
844ed4cfbcdSRichard Henderson 
845b9e60257SRichard Henderson uint32_t cpu_ldl_be_data(CPUArchState *env, abi_ptr ptr)
846ed4cfbcdSRichard Henderson {
847ed4cfbcdSRichard Henderson     uint32_t ret;
848b9e60257SRichard Henderson     uint16_t meminfo = trace_mem_get_info(MO_BEUL, MMU_USER_IDX, false);
849ed4cfbcdSRichard Henderson 
850ed4cfbcdSRichard Henderson     trace_guest_mem_before_exec(env_cpu(env), ptr, meminfo);
851b9e60257SRichard Henderson     ret = ldl_be_p(g2h(ptr));
852ed4cfbcdSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), ptr, meminfo);
853ed4cfbcdSRichard Henderson     return ret;
854ed4cfbcdSRichard Henderson }
855ed4cfbcdSRichard Henderson 
856b9e60257SRichard Henderson uint64_t cpu_ldq_be_data(CPUArchState *env, abi_ptr ptr)
857ed4cfbcdSRichard Henderson {
858ed4cfbcdSRichard Henderson     uint64_t ret;
859b9e60257SRichard Henderson     uint16_t meminfo = trace_mem_get_info(MO_BEQ, MMU_USER_IDX, false);
860ed4cfbcdSRichard Henderson 
861ed4cfbcdSRichard Henderson     trace_guest_mem_before_exec(env_cpu(env), ptr, meminfo);
862b9e60257SRichard Henderson     ret = ldq_be_p(g2h(ptr));
863b9e60257SRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), ptr, meminfo);
864b9e60257SRichard Henderson     return ret;
865b9e60257SRichard Henderson }
866b9e60257SRichard Henderson 
867b9e60257SRichard Henderson uint32_t cpu_lduw_le_data(CPUArchState *env, abi_ptr ptr)
868b9e60257SRichard Henderson {
869b9e60257SRichard Henderson     uint32_t ret;
870b9e60257SRichard Henderson     uint16_t meminfo = trace_mem_get_info(MO_LEUW, MMU_USER_IDX, false);
871b9e60257SRichard Henderson 
872b9e60257SRichard Henderson     trace_guest_mem_before_exec(env_cpu(env), ptr, meminfo);
873b9e60257SRichard Henderson     ret = lduw_le_p(g2h(ptr));
874b9e60257SRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), ptr, meminfo);
875b9e60257SRichard Henderson     return ret;
876b9e60257SRichard Henderson }
877b9e60257SRichard Henderson 
878b9e60257SRichard Henderson int cpu_ldsw_le_data(CPUArchState *env, abi_ptr ptr)
879b9e60257SRichard Henderson {
880b9e60257SRichard Henderson     int ret;
881b9e60257SRichard Henderson     uint16_t meminfo = trace_mem_get_info(MO_LESW, MMU_USER_IDX, false);
882b9e60257SRichard Henderson 
883b9e60257SRichard Henderson     trace_guest_mem_before_exec(env_cpu(env), ptr, meminfo);
884b9e60257SRichard Henderson     ret = ldsw_le_p(g2h(ptr));
885b9e60257SRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), ptr, meminfo);
886b9e60257SRichard Henderson     return ret;
887b9e60257SRichard Henderson }
888b9e60257SRichard Henderson 
889b9e60257SRichard Henderson uint32_t cpu_ldl_le_data(CPUArchState *env, abi_ptr ptr)
890b9e60257SRichard Henderson {
891b9e60257SRichard Henderson     uint32_t ret;
892b9e60257SRichard Henderson     uint16_t meminfo = trace_mem_get_info(MO_LEUL, MMU_USER_IDX, false);
893b9e60257SRichard Henderson 
894b9e60257SRichard Henderson     trace_guest_mem_before_exec(env_cpu(env), ptr, meminfo);
895b9e60257SRichard Henderson     ret = ldl_le_p(g2h(ptr));
896b9e60257SRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), ptr, meminfo);
897b9e60257SRichard Henderson     return ret;
898b9e60257SRichard Henderson }
899b9e60257SRichard Henderson 
900b9e60257SRichard Henderson uint64_t cpu_ldq_le_data(CPUArchState *env, abi_ptr ptr)
901b9e60257SRichard Henderson {
902b9e60257SRichard Henderson     uint64_t ret;
903b9e60257SRichard Henderson     uint16_t meminfo = trace_mem_get_info(MO_LEQ, MMU_USER_IDX, false);
904b9e60257SRichard Henderson 
905b9e60257SRichard Henderson     trace_guest_mem_before_exec(env_cpu(env), ptr, meminfo);
906b9e60257SRichard Henderson     ret = ldq_le_p(g2h(ptr));
907ed4cfbcdSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), ptr, meminfo);
908ed4cfbcdSRichard Henderson     return ret;
909ed4cfbcdSRichard Henderson }
910ed4cfbcdSRichard Henderson 
911ed4cfbcdSRichard Henderson uint32_t cpu_ldub_data_ra(CPUArchState *env, abi_ptr ptr, uintptr_t retaddr)
912ed4cfbcdSRichard Henderson {
913ed4cfbcdSRichard Henderson     uint32_t ret;
914ed4cfbcdSRichard Henderson 
915ed4cfbcdSRichard Henderson     set_helper_retaddr(retaddr);
916ed4cfbcdSRichard Henderson     ret = cpu_ldub_data(env, ptr);
917ed4cfbcdSRichard Henderson     clear_helper_retaddr();
918ed4cfbcdSRichard Henderson     return ret;
919ed4cfbcdSRichard Henderson }
920ed4cfbcdSRichard Henderson 
921ed4cfbcdSRichard Henderson int cpu_ldsb_data_ra(CPUArchState *env, abi_ptr ptr, uintptr_t retaddr)
922ed4cfbcdSRichard Henderson {
923ed4cfbcdSRichard Henderson     int ret;
924ed4cfbcdSRichard Henderson 
925ed4cfbcdSRichard Henderson     set_helper_retaddr(retaddr);
926ed4cfbcdSRichard Henderson     ret = cpu_ldsb_data(env, ptr);
927ed4cfbcdSRichard Henderson     clear_helper_retaddr();
928ed4cfbcdSRichard Henderson     return ret;
929ed4cfbcdSRichard Henderson }
930ed4cfbcdSRichard Henderson 
931b9e60257SRichard Henderson uint32_t cpu_lduw_be_data_ra(CPUArchState *env, abi_ptr ptr, uintptr_t retaddr)
932ed4cfbcdSRichard Henderson {
933ed4cfbcdSRichard Henderson     uint32_t ret;
934ed4cfbcdSRichard Henderson 
935ed4cfbcdSRichard Henderson     set_helper_retaddr(retaddr);
936b9e60257SRichard Henderson     ret = cpu_lduw_be_data(env, ptr);
937ed4cfbcdSRichard Henderson     clear_helper_retaddr();
938ed4cfbcdSRichard Henderson     return ret;
939ed4cfbcdSRichard Henderson }
940ed4cfbcdSRichard Henderson 
941b9e60257SRichard Henderson int cpu_ldsw_be_data_ra(CPUArchState *env, abi_ptr ptr, uintptr_t retaddr)
942ed4cfbcdSRichard Henderson {
943ed4cfbcdSRichard Henderson     int ret;
944ed4cfbcdSRichard Henderson 
945ed4cfbcdSRichard Henderson     set_helper_retaddr(retaddr);
946b9e60257SRichard Henderson     ret = cpu_ldsw_be_data(env, ptr);
947ed4cfbcdSRichard Henderson     clear_helper_retaddr();
948ed4cfbcdSRichard Henderson     return ret;
949ed4cfbcdSRichard Henderson }
950ed4cfbcdSRichard Henderson 
951b9e60257SRichard Henderson uint32_t cpu_ldl_be_data_ra(CPUArchState *env, abi_ptr ptr, uintptr_t retaddr)
952ed4cfbcdSRichard Henderson {
953ed4cfbcdSRichard Henderson     uint32_t ret;
954ed4cfbcdSRichard Henderson 
955ed4cfbcdSRichard Henderson     set_helper_retaddr(retaddr);
956b9e60257SRichard Henderson     ret = cpu_ldl_be_data(env, ptr);
957ed4cfbcdSRichard Henderson     clear_helper_retaddr();
958ed4cfbcdSRichard Henderson     return ret;
959ed4cfbcdSRichard Henderson }
960ed4cfbcdSRichard Henderson 
961b9e60257SRichard Henderson uint64_t cpu_ldq_be_data_ra(CPUArchState *env, abi_ptr ptr, uintptr_t retaddr)
962ed4cfbcdSRichard Henderson {
963ed4cfbcdSRichard Henderson     uint64_t ret;
964ed4cfbcdSRichard Henderson 
965ed4cfbcdSRichard Henderson     set_helper_retaddr(retaddr);
966b9e60257SRichard Henderson     ret = cpu_ldq_be_data(env, ptr);
967b9e60257SRichard Henderson     clear_helper_retaddr();
968b9e60257SRichard Henderson     return ret;
969b9e60257SRichard Henderson }
970b9e60257SRichard Henderson 
971b9e60257SRichard Henderson uint32_t cpu_lduw_le_data_ra(CPUArchState *env, abi_ptr ptr, uintptr_t retaddr)
972b9e60257SRichard Henderson {
973b9e60257SRichard Henderson     uint32_t ret;
974b9e60257SRichard Henderson 
975b9e60257SRichard Henderson     set_helper_retaddr(retaddr);
976b9e60257SRichard Henderson     ret = cpu_lduw_le_data(env, ptr);
977b9e60257SRichard Henderson     clear_helper_retaddr();
978b9e60257SRichard Henderson     return ret;
979b9e60257SRichard Henderson }
980b9e60257SRichard Henderson 
981b9e60257SRichard Henderson int cpu_ldsw_le_data_ra(CPUArchState *env, abi_ptr ptr, uintptr_t retaddr)
982b9e60257SRichard Henderson {
983b9e60257SRichard Henderson     int ret;
984b9e60257SRichard Henderson 
985b9e60257SRichard Henderson     set_helper_retaddr(retaddr);
986b9e60257SRichard Henderson     ret = cpu_ldsw_le_data(env, ptr);
987b9e60257SRichard Henderson     clear_helper_retaddr();
988b9e60257SRichard Henderson     return ret;
989b9e60257SRichard Henderson }
990b9e60257SRichard Henderson 
991b9e60257SRichard Henderson uint32_t cpu_ldl_le_data_ra(CPUArchState *env, abi_ptr ptr, uintptr_t retaddr)
992b9e60257SRichard Henderson {
993b9e60257SRichard Henderson     uint32_t ret;
994b9e60257SRichard Henderson 
995b9e60257SRichard Henderson     set_helper_retaddr(retaddr);
996b9e60257SRichard Henderson     ret = cpu_ldl_le_data(env, ptr);
997b9e60257SRichard Henderson     clear_helper_retaddr();
998b9e60257SRichard Henderson     return ret;
999b9e60257SRichard Henderson }
1000b9e60257SRichard Henderson 
1001b9e60257SRichard Henderson uint64_t cpu_ldq_le_data_ra(CPUArchState *env, abi_ptr ptr, uintptr_t retaddr)
1002b9e60257SRichard Henderson {
1003b9e60257SRichard Henderson     uint64_t ret;
1004b9e60257SRichard Henderson 
1005b9e60257SRichard Henderson     set_helper_retaddr(retaddr);
1006b9e60257SRichard Henderson     ret = cpu_ldq_le_data(env, ptr);
1007ed4cfbcdSRichard Henderson     clear_helper_retaddr();
1008ed4cfbcdSRichard Henderson     return ret;
1009ed4cfbcdSRichard Henderson }
1010ed4cfbcdSRichard Henderson 
1011ed4cfbcdSRichard Henderson void cpu_stb_data(CPUArchState *env, abi_ptr ptr, uint32_t val)
1012ed4cfbcdSRichard Henderson {
1013ed4cfbcdSRichard Henderson     uint16_t meminfo = trace_mem_get_info(MO_UB, MMU_USER_IDX, true);
1014ed4cfbcdSRichard Henderson 
1015ed4cfbcdSRichard Henderson     trace_guest_mem_before_exec(env_cpu(env), ptr, meminfo);
1016ed4cfbcdSRichard Henderson     stb_p(g2h(ptr), val);
1017ed4cfbcdSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), ptr, meminfo);
1018ed4cfbcdSRichard Henderson }
1019ed4cfbcdSRichard Henderson 
1020b9e60257SRichard Henderson void cpu_stw_be_data(CPUArchState *env, abi_ptr ptr, uint32_t val)
1021ed4cfbcdSRichard Henderson {
1022b9e60257SRichard Henderson     uint16_t meminfo = trace_mem_get_info(MO_BEUW, MMU_USER_IDX, true);
1023ed4cfbcdSRichard Henderson 
1024ed4cfbcdSRichard Henderson     trace_guest_mem_before_exec(env_cpu(env), ptr, meminfo);
1025b9e60257SRichard Henderson     stw_be_p(g2h(ptr), val);
1026ed4cfbcdSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), ptr, meminfo);
1027ed4cfbcdSRichard Henderson }
1028ed4cfbcdSRichard Henderson 
1029b9e60257SRichard Henderson void cpu_stl_be_data(CPUArchState *env, abi_ptr ptr, uint32_t val)
1030ed4cfbcdSRichard Henderson {
1031b9e60257SRichard Henderson     uint16_t meminfo = trace_mem_get_info(MO_BEUL, MMU_USER_IDX, true);
1032ed4cfbcdSRichard Henderson 
1033ed4cfbcdSRichard Henderson     trace_guest_mem_before_exec(env_cpu(env), ptr, meminfo);
1034b9e60257SRichard Henderson     stl_be_p(g2h(ptr), val);
1035ed4cfbcdSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), ptr, meminfo);
1036ed4cfbcdSRichard Henderson }
1037ed4cfbcdSRichard Henderson 
1038b9e60257SRichard Henderson void cpu_stq_be_data(CPUArchState *env, abi_ptr ptr, uint64_t val)
1039ed4cfbcdSRichard Henderson {
1040b9e60257SRichard Henderson     uint16_t meminfo = trace_mem_get_info(MO_BEQ, MMU_USER_IDX, true);
1041ed4cfbcdSRichard Henderson 
1042ed4cfbcdSRichard Henderson     trace_guest_mem_before_exec(env_cpu(env), ptr, meminfo);
1043b9e60257SRichard Henderson     stq_be_p(g2h(ptr), val);
1044b9e60257SRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), ptr, meminfo);
1045b9e60257SRichard Henderson }
1046b9e60257SRichard Henderson 
1047b9e60257SRichard Henderson void cpu_stw_le_data(CPUArchState *env, abi_ptr ptr, uint32_t val)
1048b9e60257SRichard Henderson {
1049b9e60257SRichard Henderson     uint16_t meminfo = trace_mem_get_info(MO_LEUW, MMU_USER_IDX, true);
1050b9e60257SRichard Henderson 
1051b9e60257SRichard Henderson     trace_guest_mem_before_exec(env_cpu(env), ptr, meminfo);
1052b9e60257SRichard Henderson     stw_le_p(g2h(ptr), val);
1053b9e60257SRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), ptr, meminfo);
1054b9e60257SRichard Henderson }
1055b9e60257SRichard Henderson 
1056b9e60257SRichard Henderson void cpu_stl_le_data(CPUArchState *env, abi_ptr ptr, uint32_t val)
1057b9e60257SRichard Henderson {
1058b9e60257SRichard Henderson     uint16_t meminfo = trace_mem_get_info(MO_LEUL, MMU_USER_IDX, true);
1059b9e60257SRichard Henderson 
1060b9e60257SRichard Henderson     trace_guest_mem_before_exec(env_cpu(env), ptr, meminfo);
1061b9e60257SRichard Henderson     stl_le_p(g2h(ptr), val);
1062b9e60257SRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), ptr, meminfo);
1063b9e60257SRichard Henderson }
1064b9e60257SRichard Henderson 
1065b9e60257SRichard Henderson void cpu_stq_le_data(CPUArchState *env, abi_ptr ptr, uint64_t val)
1066b9e60257SRichard Henderson {
1067b9e60257SRichard Henderson     uint16_t meminfo = trace_mem_get_info(MO_LEQ, MMU_USER_IDX, true);
1068b9e60257SRichard Henderson 
1069b9e60257SRichard Henderson     trace_guest_mem_before_exec(env_cpu(env), ptr, meminfo);
1070b9e60257SRichard Henderson     stq_le_p(g2h(ptr), val);
1071ed4cfbcdSRichard Henderson     qemu_plugin_vcpu_mem_cb(env_cpu(env), ptr, meminfo);
1072ed4cfbcdSRichard Henderson }
1073ed4cfbcdSRichard Henderson 
1074ed4cfbcdSRichard Henderson void cpu_stb_data_ra(CPUArchState *env, abi_ptr ptr,
1075ed4cfbcdSRichard Henderson                      uint32_t val, uintptr_t retaddr)
1076ed4cfbcdSRichard Henderson {
1077ed4cfbcdSRichard Henderson     set_helper_retaddr(retaddr);
1078ed4cfbcdSRichard Henderson     cpu_stb_data(env, ptr, val);
1079ed4cfbcdSRichard Henderson     clear_helper_retaddr();
1080ed4cfbcdSRichard Henderson }
1081ed4cfbcdSRichard Henderson 
1082b9e60257SRichard Henderson void cpu_stw_be_data_ra(CPUArchState *env, abi_ptr ptr,
1083ed4cfbcdSRichard Henderson                         uint32_t val, uintptr_t retaddr)
1084ed4cfbcdSRichard Henderson {
1085ed4cfbcdSRichard Henderson     set_helper_retaddr(retaddr);
1086b9e60257SRichard Henderson     cpu_stw_be_data(env, ptr, val);
1087ed4cfbcdSRichard Henderson     clear_helper_retaddr();
1088ed4cfbcdSRichard Henderson }
1089ed4cfbcdSRichard Henderson 
1090b9e60257SRichard Henderson void cpu_stl_be_data_ra(CPUArchState *env, abi_ptr ptr,
1091ed4cfbcdSRichard Henderson                         uint32_t val, uintptr_t retaddr)
1092ed4cfbcdSRichard Henderson {
1093ed4cfbcdSRichard Henderson     set_helper_retaddr(retaddr);
1094b9e60257SRichard Henderson     cpu_stl_be_data(env, ptr, val);
1095ed4cfbcdSRichard Henderson     clear_helper_retaddr();
1096ed4cfbcdSRichard Henderson }
1097ed4cfbcdSRichard Henderson 
1098b9e60257SRichard Henderson void cpu_stq_be_data_ra(CPUArchState *env, abi_ptr ptr,
1099ed4cfbcdSRichard Henderson                         uint64_t val, uintptr_t retaddr)
1100ed4cfbcdSRichard Henderson {
1101ed4cfbcdSRichard Henderson     set_helper_retaddr(retaddr);
1102b9e60257SRichard Henderson     cpu_stq_be_data(env, ptr, val);
1103b9e60257SRichard Henderson     clear_helper_retaddr();
1104b9e60257SRichard Henderson }
1105b9e60257SRichard Henderson 
1106b9e60257SRichard Henderson void cpu_stw_le_data_ra(CPUArchState *env, abi_ptr ptr,
1107b9e60257SRichard Henderson                         uint32_t val, uintptr_t retaddr)
1108b9e60257SRichard Henderson {
1109b9e60257SRichard Henderson     set_helper_retaddr(retaddr);
1110b9e60257SRichard Henderson     cpu_stw_le_data(env, ptr, val);
1111b9e60257SRichard Henderson     clear_helper_retaddr();
1112b9e60257SRichard Henderson }
1113b9e60257SRichard Henderson 
1114b9e60257SRichard Henderson void cpu_stl_le_data_ra(CPUArchState *env, abi_ptr ptr,
1115b9e60257SRichard Henderson                         uint32_t val, uintptr_t retaddr)
1116b9e60257SRichard Henderson {
1117b9e60257SRichard Henderson     set_helper_retaddr(retaddr);
1118b9e60257SRichard Henderson     cpu_stl_le_data(env, ptr, val);
1119b9e60257SRichard Henderson     clear_helper_retaddr();
1120b9e60257SRichard Henderson }
1121b9e60257SRichard Henderson 
1122b9e60257SRichard Henderson void cpu_stq_le_data_ra(CPUArchState *env, abi_ptr ptr,
1123b9e60257SRichard Henderson                         uint64_t val, uintptr_t retaddr)
1124b9e60257SRichard Henderson {
1125b9e60257SRichard Henderson     set_helper_retaddr(retaddr);
1126b9e60257SRichard Henderson     cpu_stq_le_data(env, ptr, val);
1127ed4cfbcdSRichard Henderson     clear_helper_retaddr();
1128ed4cfbcdSRichard Henderson }
1129ed4cfbcdSRichard Henderson 
1130ed4cfbcdSRichard Henderson uint32_t cpu_ldub_code(CPUArchState *env, abi_ptr ptr)
1131ed4cfbcdSRichard Henderson {
1132ed4cfbcdSRichard Henderson     uint32_t ret;
1133ed4cfbcdSRichard Henderson 
1134ed4cfbcdSRichard Henderson     set_helper_retaddr(1);
1135ed4cfbcdSRichard Henderson     ret = ldub_p(g2h(ptr));
1136ed4cfbcdSRichard Henderson     clear_helper_retaddr();
1137ed4cfbcdSRichard Henderson     return ret;
1138ed4cfbcdSRichard Henderson }
1139ed4cfbcdSRichard Henderson 
1140ed4cfbcdSRichard Henderson uint32_t cpu_lduw_code(CPUArchState *env, abi_ptr ptr)
1141ed4cfbcdSRichard Henderson {
1142ed4cfbcdSRichard Henderson     uint32_t ret;
1143ed4cfbcdSRichard Henderson 
1144ed4cfbcdSRichard Henderson     set_helper_retaddr(1);
1145ed4cfbcdSRichard Henderson     ret = lduw_p(g2h(ptr));
1146ed4cfbcdSRichard Henderson     clear_helper_retaddr();
1147ed4cfbcdSRichard Henderson     return ret;
1148ed4cfbcdSRichard Henderson }
1149ed4cfbcdSRichard Henderson 
1150ed4cfbcdSRichard Henderson uint32_t cpu_ldl_code(CPUArchState *env, abi_ptr ptr)
1151ed4cfbcdSRichard Henderson {
1152ed4cfbcdSRichard Henderson     uint32_t ret;
1153ed4cfbcdSRichard Henderson 
1154ed4cfbcdSRichard Henderson     set_helper_retaddr(1);
1155ed4cfbcdSRichard Henderson     ret = ldl_p(g2h(ptr));
1156ed4cfbcdSRichard Henderson     clear_helper_retaddr();
1157ed4cfbcdSRichard Henderson     return ret;
1158ed4cfbcdSRichard Henderson }
1159ed4cfbcdSRichard Henderson 
1160ed4cfbcdSRichard Henderson uint64_t cpu_ldq_code(CPUArchState *env, abi_ptr ptr)
1161ed4cfbcdSRichard Henderson {
1162ed4cfbcdSRichard Henderson     uint64_t ret;
1163ed4cfbcdSRichard Henderson 
1164ed4cfbcdSRichard Henderson     set_helper_retaddr(1);
1165ed4cfbcdSRichard Henderson     ret = ldq_p(g2h(ptr));
1166ed4cfbcdSRichard Henderson     clear_helper_retaddr();
1167ed4cfbcdSRichard Henderson     return ret;
1168ed4cfbcdSRichard Henderson }
1169ed4cfbcdSRichard Henderson 
1170a411d296SPhilippe Mathieu-Daudé /* Do not allow unaligned operations to proceed.  Return the host address.  */
1171a411d296SPhilippe Mathieu-Daudé static void *atomic_mmu_lookup(CPUArchState *env, target_ulong addr,
1172a411d296SPhilippe Mathieu-Daudé                                int size, uintptr_t retaddr)
1173a411d296SPhilippe Mathieu-Daudé {
1174a411d296SPhilippe Mathieu-Daudé     /* Enforce qemu required alignment.  */
1175a411d296SPhilippe Mathieu-Daudé     if (unlikely(addr & (size - 1))) {
117629a0af61SRichard Henderson         cpu_loop_exit_atomic(env_cpu(env), retaddr);
1177a411d296SPhilippe Mathieu-Daudé     }
117808b97f7fSRichard Henderson     void *ret = g2h(addr);
117908b97f7fSRichard Henderson     set_helper_retaddr(retaddr);
118008b97f7fSRichard Henderson     return ret;
1181a411d296SPhilippe Mathieu-Daudé }
1182a411d296SPhilippe Mathieu-Daudé 
1183a411d296SPhilippe Mathieu-Daudé /* Macro to call the above, with local variables from the use context.  */
118434d49937SPeter Maydell #define ATOMIC_MMU_DECLS do {} while (0)
1185a411d296SPhilippe Mathieu-Daudé #define ATOMIC_MMU_LOOKUP  atomic_mmu_lookup(env, addr, DATA_SIZE, GETPC())
118608b97f7fSRichard Henderson #define ATOMIC_MMU_CLEANUP do { clear_helper_retaddr(); } while (0)
1187504f73f7SAlex Bennée #define ATOMIC_MMU_IDX MMU_USER_IDX
1188a411d296SPhilippe Mathieu-Daudé 
1189a411d296SPhilippe Mathieu-Daudé #define ATOMIC_NAME(X)   HELPER(glue(glue(atomic_ ## X, SUFFIX), END))
1190a411d296SPhilippe Mathieu-Daudé #define EXTRA_ARGS
1191a411d296SPhilippe Mathieu-Daudé 
1192139c1837SPaolo Bonzini #include "atomic_common.c.inc"
1193cfec3885SEmilio G. Cota 
1194a411d296SPhilippe Mathieu-Daudé #define DATA_SIZE 1
1195a411d296SPhilippe Mathieu-Daudé #include "atomic_template.h"
1196a411d296SPhilippe Mathieu-Daudé 
1197a411d296SPhilippe Mathieu-Daudé #define DATA_SIZE 2
1198a411d296SPhilippe Mathieu-Daudé #include "atomic_template.h"
1199a411d296SPhilippe Mathieu-Daudé 
1200a411d296SPhilippe Mathieu-Daudé #define DATA_SIZE 4
1201a411d296SPhilippe Mathieu-Daudé #include "atomic_template.h"
1202a411d296SPhilippe Mathieu-Daudé 
1203a411d296SPhilippe Mathieu-Daudé #ifdef CONFIG_ATOMIC64
1204a411d296SPhilippe Mathieu-Daudé #define DATA_SIZE 8
1205a411d296SPhilippe Mathieu-Daudé #include "atomic_template.h"
1206a411d296SPhilippe Mathieu-Daudé #endif
1207a411d296SPhilippe Mathieu-Daudé 
1208a411d296SPhilippe Mathieu-Daudé /* The following is only callable from other helpers, and matches up
1209a411d296SPhilippe Mathieu-Daudé    with the softmmu version.  */
1210a411d296SPhilippe Mathieu-Daudé 
1211e6cd4bb5SRichard Henderson #if HAVE_ATOMIC128 || HAVE_CMPXCHG128
1212a411d296SPhilippe Mathieu-Daudé 
1213a411d296SPhilippe Mathieu-Daudé #undef EXTRA_ARGS
1214a411d296SPhilippe Mathieu-Daudé #undef ATOMIC_NAME
1215a411d296SPhilippe Mathieu-Daudé #undef ATOMIC_MMU_LOOKUP
1216a411d296SPhilippe Mathieu-Daudé 
1217a411d296SPhilippe Mathieu-Daudé #define EXTRA_ARGS     , TCGMemOpIdx oi, uintptr_t retaddr
1218a411d296SPhilippe Mathieu-Daudé #define ATOMIC_NAME(X) \
1219a411d296SPhilippe Mathieu-Daudé     HELPER(glue(glue(glue(atomic_ ## X, SUFFIX), END), _mmu))
1220a411d296SPhilippe Mathieu-Daudé #define ATOMIC_MMU_LOOKUP  atomic_mmu_lookup(env, addr, DATA_SIZE, retaddr)
1221a411d296SPhilippe Mathieu-Daudé 
1222a411d296SPhilippe Mathieu-Daudé #define DATA_SIZE 16
1223a411d296SPhilippe Mathieu-Daudé #include "atomic_template.h"
1224e6cd4bb5SRichard Henderson #endif
1225