xref: /qemu/target/alpha/helper.c (revision 9354e6947adcd0b74b9c7de875ab8635a4e7e947)
14c9649a9Sj_mayer /*
24c9649a9Sj_mayer  *  Alpha emulation cpu helpers for qemu.
34c9649a9Sj_mayer  *
44c9649a9Sj_mayer  *  Copyright (c) 2007 Jocelyn Mayer
54c9649a9Sj_mayer  *
64c9649a9Sj_mayer  * This library is free software; you can redistribute it and/or
74c9649a9Sj_mayer  * modify it under the terms of the GNU Lesser General Public
84c9649a9Sj_mayer  * License as published by the Free Software Foundation; either
9d6ea4236SChetan Pant  * version 2.1 of the License, or (at your option) any later version.
104c9649a9Sj_mayer  *
114c9649a9Sj_mayer  * This library is distributed in the hope that it will be useful,
124c9649a9Sj_mayer  * but WITHOUT ANY WARRANTY; without even the implied warranty of
134c9649a9Sj_mayer  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
144c9649a9Sj_mayer  * Lesser General Public License for more details.
154c9649a9Sj_mayer  *
164c9649a9Sj_mayer  * You should have received a copy of the GNU Lesser General Public
178167ee88SBlue Swirl  * License along with this library; if not, see <http://www.gnu.org/licenses/>.
184c9649a9Sj_mayer  */
194c9649a9Sj_mayer 
20e2e5e114SPeter Maydell #include "qemu/osdep.h"
214c9649a9Sj_mayer 
224c9649a9Sj_mayer #include "cpu.h"
2363c91552SPaolo Bonzini #include "exec/exec-all.h"
245f8ab000SAlex Bennée #include "fpu/softfloat-types.h"
252ef6175aSRichard Henderson #include "exec/helper-proto.h"
2690c84c56SMarkus Armbruster #include "qemu/qemu-print.h"
27ba0e276dSRichard Henderson 
28f3d3aad4SRichard Henderson 
29f3d3aad4SRichard Henderson #define CONVERT_BIT(X, SRC, DST) \
30f3d3aad4SRichard Henderson     (SRC > DST ? (X) / (SRC / DST) & (DST) : ((X) & SRC) * (DST / SRC))
31f3d3aad4SRichard Henderson 
324d5712f1SAndreas Färber uint64_t cpu_alpha_load_fpcr(CPUAlphaState *env)
33ba0e276dSRichard Henderson {
34f3d3aad4SRichard Henderson     return (uint64_t)env->fpcr << 32;
35ba0e276dSRichard Henderson }
36ba0e276dSRichard Henderson 
374d5712f1SAndreas Färber void cpu_alpha_store_fpcr(CPUAlphaState *env, uint64_t val)
38ba0e276dSRichard Henderson {
39ea937dedSRichard Henderson     static const uint8_t rm_map[] = {
40ea937dedSRichard Henderson         [FPCR_DYN_NORMAL >> FPCR_DYN_SHIFT] = float_round_nearest_even,
41ea937dedSRichard Henderson         [FPCR_DYN_CHOPPED >> FPCR_DYN_SHIFT] = float_round_to_zero,
42ea937dedSRichard Henderson         [FPCR_DYN_MINUS >> FPCR_DYN_SHIFT] = float_round_down,
43ea937dedSRichard Henderson         [FPCR_DYN_PLUS >> FPCR_DYN_SHIFT] = float_round_up,
44ea937dedSRichard Henderson     };
45ea937dedSRichard Henderson 
46f3d3aad4SRichard Henderson     uint32_t fpcr = val >> 32;
47f3d3aad4SRichard Henderson     uint32_t t = 0;
48ba0e276dSRichard Henderson 
49106e1319SRichard Henderson     /* Record the raw value before adjusting for linux-user.  */
50f3d3aad4SRichard Henderson     env->fpcr = fpcr;
5121ba8564SRichard Henderson 
5221ba8564SRichard Henderson #ifdef CONFIG_USER_ONLY
5321ba8564SRichard Henderson     /*
5421ba8564SRichard Henderson      * Override some of these bits with the contents of ENV->SWCR.
5521ba8564SRichard Henderson      * In system mode, some of these would trap to the kernel, at
5621ba8564SRichard Henderson      * which point the kernel's handler would emulate and apply
5721ba8564SRichard Henderson      * the software exception mask.
5821ba8564SRichard Henderson      */
59106e1319SRichard Henderson     uint32_t soft_fpcr = alpha_ieee_swcr_to_fpcr(env->swcr) >> 32;
608cd99905SRichard Henderson     fpcr |= soft_fpcr & (FPCR_STATUS_MASK | FPCR_DNZ);
6180093070SRichard Henderson 
6280093070SRichard Henderson     /*
6380093070SRichard Henderson      * The IOV exception is disabled by the kernel with SWCR_TRAP_ENABLE_INV,
6480093070SRichard Henderson      * which got mapped by alpha_ieee_swcr_to_fpcr to FPCR_INVD.
6580093070SRichard Henderson      * Add FPCR_IOV to fpcr_exc_enable so that it is handled identically.
6680093070SRichard Henderson      */
6780093070SRichard Henderson     t |= CONVERT_BIT(soft_fpcr, FPCR_INVD, FPCR_IOV);
68106e1319SRichard Henderson #endif
69106e1319SRichard Henderson 
70106e1319SRichard Henderson     t |= CONVERT_BIT(fpcr, FPCR_INED, FPCR_INE);
71106e1319SRichard Henderson     t |= CONVERT_BIT(fpcr, FPCR_UNFD, FPCR_UNF);
72106e1319SRichard Henderson     t |= CONVERT_BIT(fpcr, FPCR_OVFD, FPCR_OVF);
73106e1319SRichard Henderson     t |= CONVERT_BIT(fpcr, FPCR_DZED, FPCR_DZE);
74106e1319SRichard Henderson     t |= CONVERT_BIT(fpcr, FPCR_INVD, FPCR_INV);
75106e1319SRichard Henderson 
76106e1319SRichard Henderson     env->fpcr_exc_enable = ~t & FPCR_STATUS_MASK;
77106e1319SRichard Henderson 
78106e1319SRichard Henderson     env->fpcr_dyn_round = rm_map[(fpcr & FPCR_DYN_MASK) >> FPCR_DYN_SHIFT];
79106e1319SRichard Henderson     env->fp_status.flush_inputs_to_zero = (fpcr & FPCR_DNZ) != 0;
80a8938e5fSRichard Henderson 
81a8938e5fSRichard Henderson     t = (fpcr & FPCR_UNFD) && (fpcr & FPCR_UNDZ);
82106e1319SRichard Henderson #ifdef CONFIG_USER_ONLY
83a8938e5fSRichard Henderson     t |= (env->swcr & SWCR_MAP_UMZ) != 0;
8421ba8564SRichard Henderson #endif
85a8938e5fSRichard Henderson     env->fpcr_flush_to_zero = t;
86ba0e276dSRichard Henderson }
874c9649a9Sj_mayer 
88a44a2777SRichard Henderson uint64_t helper_load_fpcr(CPUAlphaState *env)
89a44a2777SRichard Henderson {
90a44a2777SRichard Henderson     return cpu_alpha_load_fpcr(env);
91a44a2777SRichard Henderson }
92a44a2777SRichard Henderson 
93a44a2777SRichard Henderson void helper_store_fpcr(CPUAlphaState *env, uint64_t val)
94a44a2777SRichard Henderson {
95a44a2777SRichard Henderson     cpu_alpha_store_fpcr(env, val);
96a44a2777SRichard Henderson }
97a44a2777SRichard Henderson 
9859124384SRichard Henderson static uint64_t *cpu_alpha_addr_gr(CPUAlphaState *env, unsigned reg)
9959124384SRichard Henderson {
10059124384SRichard Henderson #ifndef CONFIG_USER_ONLY
101bcd2625dSRichard Henderson     if (env->flags & ENV_FLAG_PAL_MODE) {
10259124384SRichard Henderson         if (reg >= 8 && reg <= 14) {
10359124384SRichard Henderson             return &env->shadow[reg - 8];
10459124384SRichard Henderson         } else if (reg == 25) {
10559124384SRichard Henderson             return &env->shadow[7];
10659124384SRichard Henderson         }
10759124384SRichard Henderson     }
10859124384SRichard Henderson #endif
10959124384SRichard Henderson     return &env->ir[reg];
11059124384SRichard Henderson }
11159124384SRichard Henderson 
11259124384SRichard Henderson uint64_t cpu_alpha_load_gr(CPUAlphaState *env, unsigned reg)
11359124384SRichard Henderson {
11459124384SRichard Henderson     return *cpu_alpha_addr_gr(env, reg);
11559124384SRichard Henderson }
11659124384SRichard Henderson 
11759124384SRichard Henderson void cpu_alpha_store_gr(CPUAlphaState *env, unsigned reg, uint64_t val)
11859124384SRichard Henderson {
11959124384SRichard Henderson     *cpu_alpha_addr_gr(env, reg) = val;
12059124384SRichard Henderson }
12159124384SRichard Henderson 
1224c9649a9Sj_mayer #if defined(CONFIG_USER_ONLY)
123e41c9452SRichard Henderson bool alpha_cpu_tlb_fill(CPUState *cs, vaddr address, int size,
124e41c9452SRichard Henderson                         MMUAccessType access_type, int mmu_idx,
125e41c9452SRichard Henderson                         bool probe, uintptr_t retaddr)
1264c9649a9Sj_mayer {
1277510454eSAndreas Färber     AlphaCPU *cpu = ALPHA_CPU(cs);
1287510454eSAndreas Färber 
12927103424SAndreas Färber     cs->exception_index = EXCP_MMFAULT;
1307510454eSAndreas Färber     cpu->env.trap_arg0 = address;
131e41c9452SRichard Henderson     cpu_loop_exit_restore(cs, retaddr);
1324c9649a9Sj_mayer }
1334c9649a9Sj_mayer #else
134a3b9af16SRichard Henderson /* Returns the OSF/1 entMM failure indication, or -1 on success.  */
1354d5712f1SAndreas Färber static int get_physical_address(CPUAlphaState *env, target_ulong addr,
136a3b9af16SRichard Henderson                                 int prot_need, int mmu_idx,
137a3b9af16SRichard Henderson                                 target_ulong *pphys, int *pprot)
1384c9649a9Sj_mayer {
1391c7ad260SRichard Henderson     CPUState *cs = env_cpu(env);
140a3b9af16SRichard Henderson     target_long saddr = addr;
141a3b9af16SRichard Henderson     target_ulong phys = 0;
142a3b9af16SRichard Henderson     target_ulong L1pte, L2pte, L3pte;
143a3b9af16SRichard Henderson     target_ulong pt, index;
144a3b9af16SRichard Henderson     int prot = 0;
145a3b9af16SRichard Henderson     int ret = MM_K_ACV;
146a3b9af16SRichard Henderson 
1476a73ecf5SRichard Henderson     /* Handle physical accesses.  */
1486a73ecf5SRichard Henderson     if (mmu_idx == MMU_PHYS_IDX) {
1496a73ecf5SRichard Henderson         phys = addr;
1506a73ecf5SRichard Henderson         prot = PAGE_READ | PAGE_WRITE | PAGE_EXEC;
1516a73ecf5SRichard Henderson         ret = -1;
1526a73ecf5SRichard Henderson         goto exit;
1536a73ecf5SRichard Henderson     }
1546a73ecf5SRichard Henderson 
155a3b9af16SRichard Henderson     /* Ensure that the virtual address is properly sign-extended from
156a3b9af16SRichard Henderson        the last implemented virtual address bit.  */
157a3b9af16SRichard Henderson     if (saddr >> TARGET_VIRT_ADDR_SPACE_BITS != saddr >> 63) {
158a3b9af16SRichard Henderson         goto exit;
1594c9649a9Sj_mayer     }
1604c9649a9Sj_mayer 
161a3b9af16SRichard Henderson     /* Translate the superpage.  */
162a3b9af16SRichard Henderson     /* ??? When we do more than emulate Unix PALcode, we'll need to
163fa6e0a63SRichard Henderson        determine which KSEG is actually active.  */
164fa6e0a63SRichard Henderson     if (saddr < 0 && ((saddr >> 41) & 3) == 2) {
165fa6e0a63SRichard Henderson         /* User-space cannot access KSEG addresses.  */
166a3b9af16SRichard Henderson         if (mmu_idx != MMU_KERNEL_IDX) {
167a3b9af16SRichard Henderson             goto exit;
168a3b9af16SRichard Henderson         }
169a3b9af16SRichard Henderson 
170fa6e0a63SRichard Henderson         /* For the benefit of the Typhoon chipset, move bit 40 to bit 43.
171fa6e0a63SRichard Henderson            We would not do this if the 48-bit KSEG is enabled.  */
172a3b9af16SRichard Henderson         phys = saddr & ((1ull << 40) - 1);
173fa6e0a63SRichard Henderson         phys |= (saddr & (1ull << 40)) << 3;
174fa6e0a63SRichard Henderson 
175a3b9af16SRichard Henderson         prot = PAGE_READ | PAGE_WRITE | PAGE_EXEC;
176a3b9af16SRichard Henderson         ret = -1;
177a3b9af16SRichard Henderson         goto exit;
178a3b9af16SRichard Henderson     }
179a3b9af16SRichard Henderson 
180a3b9af16SRichard Henderson     /* Interpret the page table exactly like PALcode does.  */
181a3b9af16SRichard Henderson 
182a3b9af16SRichard Henderson     pt = env->ptbr;
183a3b9af16SRichard Henderson 
1846ad4d7eeSPeter Maydell     /* TODO: rather than using ldq_phys() to read the page table we should
1856ad4d7eeSPeter Maydell      * use address_space_ldq() so that we can handle the case when
1866ad4d7eeSPeter Maydell      * the page table read gives a bus fault, rather than ignoring it.
1876ad4d7eeSPeter Maydell      * For the existing code the zero data that ldq_phys will return for
1886ad4d7eeSPeter Maydell      * an access to invalid memory will result in our treating the page
1896ad4d7eeSPeter Maydell      * table as invalid, which may even be the right behaviour.
1906ad4d7eeSPeter Maydell      */
1916ad4d7eeSPeter Maydell 
192a3b9af16SRichard Henderson     /* L1 page table read.  */
193a3b9af16SRichard Henderson     index = (addr >> (TARGET_PAGE_BITS + 20)) & 0x3ff;
1942c17449bSEdgar E. Iglesias     L1pte = ldq_phys(cs->as, pt + index*8);
195a3b9af16SRichard Henderson 
196a3b9af16SRichard Henderson     if (unlikely((L1pte & PTE_VALID) == 0)) {
197a3b9af16SRichard Henderson         ret = MM_K_TNV;
198a3b9af16SRichard Henderson         goto exit;
199a3b9af16SRichard Henderson     }
200a3b9af16SRichard Henderson     if (unlikely((L1pte & PTE_KRE) == 0)) {
201a3b9af16SRichard Henderson         goto exit;
202a3b9af16SRichard Henderson     }
203a3b9af16SRichard Henderson     pt = L1pte >> 32 << TARGET_PAGE_BITS;
204a3b9af16SRichard Henderson 
205a3b9af16SRichard Henderson     /* L2 page table read.  */
206a3b9af16SRichard Henderson     index = (addr >> (TARGET_PAGE_BITS + 10)) & 0x3ff;
2072c17449bSEdgar E. Iglesias     L2pte = ldq_phys(cs->as, pt + index*8);
208a3b9af16SRichard Henderson 
209a3b9af16SRichard Henderson     if (unlikely((L2pte & PTE_VALID) == 0)) {
210a3b9af16SRichard Henderson         ret = MM_K_TNV;
211a3b9af16SRichard Henderson         goto exit;
212a3b9af16SRichard Henderson     }
213a3b9af16SRichard Henderson     if (unlikely((L2pte & PTE_KRE) == 0)) {
214a3b9af16SRichard Henderson         goto exit;
215a3b9af16SRichard Henderson     }
216a3b9af16SRichard Henderson     pt = L2pte >> 32 << TARGET_PAGE_BITS;
217a3b9af16SRichard Henderson 
218a3b9af16SRichard Henderson     /* L3 page table read.  */
219a3b9af16SRichard Henderson     index = (addr >> TARGET_PAGE_BITS) & 0x3ff;
2202c17449bSEdgar E. Iglesias     L3pte = ldq_phys(cs->as, pt + index*8);
221a3b9af16SRichard Henderson 
222a3b9af16SRichard Henderson     phys = L3pte >> 32 << TARGET_PAGE_BITS;
223a3b9af16SRichard Henderson     if (unlikely((L3pte & PTE_VALID) == 0)) {
224a3b9af16SRichard Henderson         ret = MM_K_TNV;
225a3b9af16SRichard Henderson         goto exit;
226a3b9af16SRichard Henderson     }
227a3b9af16SRichard Henderson 
228a3b9af16SRichard Henderson #if PAGE_READ != 1 || PAGE_WRITE != 2 || PAGE_EXEC != 4
229a3b9af16SRichard Henderson # error page bits out of date
230a3b9af16SRichard Henderson #endif
231a3b9af16SRichard Henderson 
232a3b9af16SRichard Henderson     /* Check access violations.  */
233a3b9af16SRichard Henderson     if (L3pte & (PTE_KRE << mmu_idx)) {
234a3b9af16SRichard Henderson         prot |= PAGE_READ | PAGE_EXEC;
235a3b9af16SRichard Henderson     }
236a3b9af16SRichard Henderson     if (L3pte & (PTE_KWE << mmu_idx)) {
237a3b9af16SRichard Henderson         prot |= PAGE_WRITE;
238a3b9af16SRichard Henderson     }
239a3b9af16SRichard Henderson     if (unlikely((prot & prot_need) == 0 && prot_need)) {
240a3b9af16SRichard Henderson         goto exit;
241a3b9af16SRichard Henderson     }
242a3b9af16SRichard Henderson 
243a3b9af16SRichard Henderson     /* Check fault-on-operation violations.  */
244a3b9af16SRichard Henderson     prot &= ~(L3pte >> 1);
245a3b9af16SRichard Henderson     ret = -1;
246a3b9af16SRichard Henderson     if (unlikely((prot & prot_need) == 0)) {
247a3b9af16SRichard Henderson         ret = (prot_need & PAGE_EXEC ? MM_K_FOE :
248a3b9af16SRichard Henderson                prot_need & PAGE_WRITE ? MM_K_FOW :
249a3b9af16SRichard Henderson                prot_need & PAGE_READ ? MM_K_FOR : -1);
250a3b9af16SRichard Henderson     }
251a3b9af16SRichard Henderson 
252a3b9af16SRichard Henderson  exit:
253a3b9af16SRichard Henderson     *pphys = phys;
254a3b9af16SRichard Henderson     *pprot = prot;
255a3b9af16SRichard Henderson     return ret;
256a3b9af16SRichard Henderson }
257a3b9af16SRichard Henderson 
25800b941e5SAndreas Färber hwaddr alpha_cpu_get_phys_page_debug(CPUState *cs, vaddr addr)
259a3b9af16SRichard Henderson {
26000b941e5SAndreas Färber     AlphaCPU *cpu = ALPHA_CPU(cs);
261a3b9af16SRichard Henderson     target_ulong phys;
262a3b9af16SRichard Henderson     int prot, fail;
263a3b9af16SRichard Henderson 
26400b941e5SAndreas Färber     fail = get_physical_address(&cpu->env, addr, 0, 0, &phys, &prot);
265a3b9af16SRichard Henderson     return (fail >= 0 ? -1 : phys);
266a3b9af16SRichard Henderson }
267a3b9af16SRichard Henderson 
268e41c9452SRichard Henderson bool alpha_cpu_tlb_fill(CPUState *cs, vaddr addr, int size,
269e41c9452SRichard Henderson                         MMUAccessType access_type, int mmu_idx,
270e41c9452SRichard Henderson                         bool probe, uintptr_t retaddr)
2714c9649a9Sj_mayer {
2727510454eSAndreas Färber     AlphaCPU *cpu = ALPHA_CPU(cs);
2737510454eSAndreas Färber     CPUAlphaState *env = &cpu->env;
274a3b9af16SRichard Henderson     target_ulong phys;
275a3b9af16SRichard Henderson     int prot, fail;
276a3b9af16SRichard Henderson 
277e41c9452SRichard Henderson     fail = get_physical_address(env, addr, 1 << access_type,
278e41c9452SRichard Henderson                                 mmu_idx, &phys, &prot);
279a3b9af16SRichard Henderson     if (unlikely(fail >= 0)) {
280e41c9452SRichard Henderson         if (probe) {
281e41c9452SRichard Henderson             return false;
282e41c9452SRichard Henderson         }
28327103424SAndreas Färber         cs->exception_index = EXCP_MMFAULT;
284a3b9af16SRichard Henderson         env->trap_arg0 = addr;
285a3b9af16SRichard Henderson         env->trap_arg1 = fail;
286cb1de55aSAurelien Jarno         env->trap_arg2 = (access_type == MMU_DATA_LOAD ? 0ull :
287cb1de55aSAurelien Jarno                           access_type == MMU_DATA_STORE ? 1ull :
288cb1de55aSAurelien Jarno                           /* access_type == MMU_INST_FETCH */ -1ull);
289e41c9452SRichard Henderson         cpu_loop_exit_restore(cs, retaddr);
290a3b9af16SRichard Henderson     }
291a3b9af16SRichard Henderson 
2920c591eb0SAndreas Färber     tlb_set_page(cs, addr & TARGET_PAGE_MASK, phys & TARGET_PAGE_MASK,
293a3b9af16SRichard Henderson                  prot, mmu_idx, TARGET_PAGE_SIZE);
294e41c9452SRichard Henderson     return true;
295e41c9452SRichard Henderson }
2964c9649a9Sj_mayer 
29797a8ea5aSAndreas Färber void alpha_cpu_do_interrupt(CPUState *cs)
2984c9649a9Sj_mayer {
29997a8ea5aSAndreas Färber     AlphaCPU *cpu = ALPHA_CPU(cs);
30097a8ea5aSAndreas Färber     CPUAlphaState *env = &cpu->env;
30127103424SAndreas Färber     int i = cs->exception_index;
3023a6fa678SRichard Henderson 
3033a6fa678SRichard Henderson     if (qemu_loglevel_mask(CPU_LOG_INT)) {
3043a6fa678SRichard Henderson         static int count;
3053a6fa678SRichard Henderson         const char *name = "<unknown>";
3063a6fa678SRichard Henderson 
3073a6fa678SRichard Henderson         switch (i) {
3083a6fa678SRichard Henderson         case EXCP_RESET:
3093a6fa678SRichard Henderson             name = "reset";
3103a6fa678SRichard Henderson             break;
3113a6fa678SRichard Henderson         case EXCP_MCHK:
3123a6fa678SRichard Henderson             name = "mchk";
3133a6fa678SRichard Henderson             break;
3143a6fa678SRichard Henderson         case EXCP_SMP_INTERRUPT:
3153a6fa678SRichard Henderson             name = "smp_interrupt";
3163a6fa678SRichard Henderson             break;
3173a6fa678SRichard Henderson         case EXCP_CLK_INTERRUPT:
3183a6fa678SRichard Henderson             name = "clk_interrupt";
3193a6fa678SRichard Henderson             break;
3203a6fa678SRichard Henderson         case EXCP_DEV_INTERRUPT:
3213a6fa678SRichard Henderson             name = "dev_interrupt";
3223a6fa678SRichard Henderson             break;
3233a6fa678SRichard Henderson         case EXCP_MMFAULT:
3243a6fa678SRichard Henderson             name = "mmfault";
3253a6fa678SRichard Henderson             break;
3263a6fa678SRichard Henderson         case EXCP_UNALIGN:
3273a6fa678SRichard Henderson             name = "unalign";
3283a6fa678SRichard Henderson             break;
3293a6fa678SRichard Henderson         case EXCP_OPCDEC:
3303a6fa678SRichard Henderson             name = "opcdec";
3313a6fa678SRichard Henderson             break;
3323a6fa678SRichard Henderson         case EXCP_ARITH:
3333a6fa678SRichard Henderson             name = "arith";
3343a6fa678SRichard Henderson             break;
3353a6fa678SRichard Henderson         case EXCP_FEN:
3363a6fa678SRichard Henderson             name = "fen";
3373a6fa678SRichard Henderson             break;
3383a6fa678SRichard Henderson         case EXCP_CALL_PAL:
3393a6fa678SRichard Henderson             name = "call_pal";
3403a6fa678SRichard Henderson             break;
3414c9649a9Sj_mayer         }
342022f52e0SRichard Henderson         qemu_log("INT %6d: %s(%#x) cpu=%d pc=%016"
343022f52e0SRichard Henderson                  PRIx64 " sp=%016" PRIx64 "\n",
344022f52e0SRichard Henderson                  ++count, name, env->error_code, cs->cpu_index,
345022f52e0SRichard Henderson                  env->pc, env->ir[IR_SP]);
3463a6fa678SRichard Henderson     }
3473a6fa678SRichard Henderson 
34827103424SAndreas Färber     cs->exception_index = -1;
3493a6fa678SRichard Henderson 
3503a6fa678SRichard Henderson     switch (i) {
3513a6fa678SRichard Henderson     case EXCP_RESET:
3523a6fa678SRichard Henderson         i = 0x0000;
3533a6fa678SRichard Henderson         break;
3543a6fa678SRichard Henderson     case EXCP_MCHK:
3553a6fa678SRichard Henderson         i = 0x0080;
3563a6fa678SRichard Henderson         break;
3573a6fa678SRichard Henderson     case EXCP_SMP_INTERRUPT:
3583a6fa678SRichard Henderson         i = 0x0100;
3593a6fa678SRichard Henderson         break;
3603a6fa678SRichard Henderson     case EXCP_CLK_INTERRUPT:
3613a6fa678SRichard Henderson         i = 0x0180;
3623a6fa678SRichard Henderson         break;
3633a6fa678SRichard Henderson     case EXCP_DEV_INTERRUPT:
3643a6fa678SRichard Henderson         i = 0x0200;
3653a6fa678SRichard Henderson         break;
3663a6fa678SRichard Henderson     case EXCP_MMFAULT:
3673a6fa678SRichard Henderson         i = 0x0280;
3683a6fa678SRichard Henderson         break;
3693a6fa678SRichard Henderson     case EXCP_UNALIGN:
3703a6fa678SRichard Henderson         i = 0x0300;
3713a6fa678SRichard Henderson         break;
3723a6fa678SRichard Henderson     case EXCP_OPCDEC:
3733a6fa678SRichard Henderson         i = 0x0380;
3743a6fa678SRichard Henderson         break;
3753a6fa678SRichard Henderson     case EXCP_ARITH:
3763a6fa678SRichard Henderson         i = 0x0400;
3773a6fa678SRichard Henderson         break;
3783a6fa678SRichard Henderson     case EXCP_FEN:
3793a6fa678SRichard Henderson         i = 0x0480;
3803a6fa678SRichard Henderson         break;
3813a6fa678SRichard Henderson     case EXCP_CALL_PAL:
3823a6fa678SRichard Henderson         i = env->error_code;
3833a6fa678SRichard Henderson         /* There are 64 entry points for both privileged and unprivileged,
3843a6fa678SRichard Henderson            with bit 0x80 indicating unprivileged.  Each entry point gets
3853a6fa678SRichard Henderson            64 bytes to do its job.  */
3863a6fa678SRichard Henderson         if (i & 0x80) {
3873a6fa678SRichard Henderson             i = 0x2000 + (i - 0x80) * 64;
3883a6fa678SRichard Henderson         } else {
3893a6fa678SRichard Henderson             i = 0x1000 + i * 64;
3903a6fa678SRichard Henderson         }
3913a6fa678SRichard Henderson         break;
3923a6fa678SRichard Henderson     default:
393a47dddd7SAndreas Färber         cpu_abort(cs, "Unhandled CPU exception");
3943a6fa678SRichard Henderson     }
3953a6fa678SRichard Henderson 
3963a6fa678SRichard Henderson     /* Remember where the exception happened.  Emulate real hardware in
3973a6fa678SRichard Henderson        that the low bit of the PC indicates PALmode.  */
398bcd2625dSRichard Henderson     env->exc_addr = env->pc | (env->flags & ENV_FLAG_PAL_MODE);
3993a6fa678SRichard Henderson 
4003a6fa678SRichard Henderson     /* Continue execution at the PALcode entry point.  */
4013a6fa678SRichard Henderson     env->pc = env->palbr + i;
4023a6fa678SRichard Henderson 
4033a6fa678SRichard Henderson     /* Switch to PALmode.  */
404bcd2625dSRichard Henderson     env->flags |= ENV_FLAG_PAL_MODE;
4053a6fa678SRichard Henderson }
4064c9649a9Sj_mayer 
407dde7c241SRichard Henderson bool alpha_cpu_exec_interrupt(CPUState *cs, int interrupt_request)
408dde7c241SRichard Henderson {
409dde7c241SRichard Henderson     AlphaCPU *cpu = ALPHA_CPU(cs);
410dde7c241SRichard Henderson     CPUAlphaState *env = &cpu->env;
411dde7c241SRichard Henderson     int idx = -1;
412dde7c241SRichard Henderson 
413dde7c241SRichard Henderson     /* We never take interrupts while in PALmode.  */
414bcd2625dSRichard Henderson     if (env->flags & ENV_FLAG_PAL_MODE) {
415dde7c241SRichard Henderson         return false;
416dde7c241SRichard Henderson     }
417dde7c241SRichard Henderson 
418dde7c241SRichard Henderson     /* Fall through the switch, collecting the highest priority
419dde7c241SRichard Henderson        interrupt that isn't masked by the processor status IPL.  */
420dde7c241SRichard Henderson     /* ??? This hard-codes the OSF/1 interrupt levels.  */
421bcd2625dSRichard Henderson     switch ((env->flags >> ENV_FLAG_PS_SHIFT) & PS_INT_MASK) {
422dde7c241SRichard Henderson     case 0 ... 3:
423dde7c241SRichard Henderson         if (interrupt_request & CPU_INTERRUPT_HARD) {
424dde7c241SRichard Henderson             idx = EXCP_DEV_INTERRUPT;
425dde7c241SRichard Henderson         }
426dde7c241SRichard Henderson         /* FALLTHRU */
427dde7c241SRichard Henderson     case 4:
428dde7c241SRichard Henderson         if (interrupt_request & CPU_INTERRUPT_TIMER) {
429dde7c241SRichard Henderson             idx = EXCP_CLK_INTERRUPT;
430dde7c241SRichard Henderson         }
431dde7c241SRichard Henderson         /* FALLTHRU */
432dde7c241SRichard Henderson     case 5:
433dde7c241SRichard Henderson         if (interrupt_request & CPU_INTERRUPT_SMP) {
434dde7c241SRichard Henderson             idx = EXCP_SMP_INTERRUPT;
435dde7c241SRichard Henderson         }
436dde7c241SRichard Henderson         /* FALLTHRU */
437dde7c241SRichard Henderson     case 6:
438dde7c241SRichard Henderson         if (interrupt_request & CPU_INTERRUPT_MCHK) {
439dde7c241SRichard Henderson             idx = EXCP_MCHK;
440dde7c241SRichard Henderson         }
441dde7c241SRichard Henderson     }
442dde7c241SRichard Henderson     if (idx >= 0) {
443dde7c241SRichard Henderson         cs->exception_index = idx;
444dde7c241SRichard Henderson         env->error_code = 0;
445dde7c241SRichard Henderson         alpha_cpu_do_interrupt(cs);
446dde7c241SRichard Henderson         return true;
447dde7c241SRichard Henderson     }
448dde7c241SRichard Henderson     return false;
449dde7c241SRichard Henderson }
450dde7c241SRichard Henderson 
451*9354e694SPhilippe Mathieu-Daudé #endif /* !CONFIG_USER_ONLY */
452*9354e694SPhilippe Mathieu-Daudé 
45390c84c56SMarkus Armbruster void alpha_cpu_dump_state(CPUState *cs, FILE *f, int flags)
4544c9649a9Sj_mayer {
4554a247932SRichard Henderson     static const char linux_reg_names[31][4] = {
4564c9649a9Sj_mayer         "v0",  "t0",  "t1", "t2",  "t3", "t4", "t5", "t6",
4574c9649a9Sj_mayer         "t7",  "s0",  "s1", "s2",  "s3", "s4", "s5", "fp",
4584c9649a9Sj_mayer         "a0",  "a1",  "a2", "a3",  "a4", "a5", "t8", "t9",
4594a247932SRichard Henderson         "t10", "t11", "ra", "t12", "at", "gp", "sp"
4604c9649a9Sj_mayer     };
461878096eeSAndreas Färber     AlphaCPU *cpu = ALPHA_CPU(cs);
462878096eeSAndreas Färber     CPUAlphaState *env = &cpu->env;
4634c9649a9Sj_mayer     int i;
4644c9649a9Sj_mayer 
46590c84c56SMarkus Armbruster     qemu_fprintf(f, "PC      " TARGET_FMT_lx " PS      %02x\n",
466bcd2625dSRichard Henderson                  env->pc, extract32(env->flags, ENV_FLAG_PS_SHIFT, 8));
4674c9649a9Sj_mayer     for (i = 0; i < 31; i++) {
4684a247932SRichard Henderson         qemu_fprintf(f, "%-8s" TARGET_FMT_lx "%c",
469a68d82b8SRichard Henderson                      linux_reg_names[i], cpu_alpha_load_gr(env, i),
470a68d82b8SRichard Henderson                      (i % 3) == 2 ? '\n' : ' ');
4714c9649a9Sj_mayer     }
4726910b8f6SRichard Henderson 
47390c84c56SMarkus Armbruster     qemu_fprintf(f, "lock_a  " TARGET_FMT_lx " lock_v  " TARGET_FMT_lx "\n",
4746910b8f6SRichard Henderson                  env->lock_addr, env->lock_value);
4756910b8f6SRichard Henderson 
476a68d82b8SRichard Henderson     if (flags & CPU_DUMP_FPU) {
4774c9649a9Sj_mayer         for (i = 0; i < 31; i++) {
4784a247932SRichard Henderson             qemu_fprintf(f, "f%-7d%016" PRIx64 "%c", i, env->fir[i],
479a68d82b8SRichard Henderson                          (i % 3) == 2 ? '\n' : ' ');
480a68d82b8SRichard Henderson         }
4814a247932SRichard Henderson         qemu_fprintf(f, "fpcr    %016" PRIx64 "\n", cpu_alpha_load_fpcr(env));
4824c9649a9Sj_mayer     }
48390c84c56SMarkus Armbruster     qemu_fprintf(f, "\n");
4844c9649a9Sj_mayer }
485b9f0923eSRichard Henderson 
486b9f0923eSRichard Henderson /* This should only be called from translate, via gen_excp.
487b9f0923eSRichard Henderson    We expect that ENV->PC has already been updated.  */
488b9f0923eSRichard Henderson void QEMU_NORETURN helper_excp(CPUAlphaState *env, int excp, int error)
489b9f0923eSRichard Henderson {
4901c7ad260SRichard Henderson     CPUState *cs = env_cpu(env);
49127103424SAndreas Färber 
49227103424SAndreas Färber     cs->exception_index = excp;
493b9f0923eSRichard Henderson     env->error_code = error;
4945638d180SAndreas Färber     cpu_loop_exit(cs);
495b9f0923eSRichard Henderson }
496b9f0923eSRichard Henderson 
497b9f0923eSRichard Henderson /* This may be called from any of the helpers to set up EXCEPTION_INDEX.  */
49820503968SBlue Swirl void QEMU_NORETURN dynamic_excp(CPUAlphaState *env, uintptr_t retaddr,
499b9f0923eSRichard Henderson                                 int excp, int error)
500b9f0923eSRichard Henderson {
5011c7ad260SRichard Henderson     CPUState *cs = env_cpu(env);
50227103424SAndreas Färber 
50327103424SAndreas Färber     cs->exception_index = excp;
504b9f0923eSRichard Henderson     env->error_code = error;
505a8a826a3SBlue Swirl     if (retaddr) {
506afd46fcaSPavel Dovgalyuk         cpu_restore_state(cs, retaddr, true);
507ba9c5de5SRichard Henderson         /* Floating-point exceptions (our only users) point to the next PC.  */
508ba9c5de5SRichard Henderson         env->pc += 4;
509a8a826a3SBlue Swirl     }
5105638d180SAndreas Färber     cpu_loop_exit(cs);
511b9f0923eSRichard Henderson }
512b9f0923eSRichard Henderson 
51320503968SBlue Swirl void QEMU_NORETURN arith_excp(CPUAlphaState *env, uintptr_t retaddr,
514b9f0923eSRichard Henderson                               int exc, uint64_t mask)
515b9f0923eSRichard Henderson {
516b9f0923eSRichard Henderson     env->trap_arg0 = exc;
517b9f0923eSRichard Henderson     env->trap_arg1 = mask;
518b9f0923eSRichard Henderson     dynamic_excp(env, retaddr, EXCP_ARITH, 0);
519b9f0923eSRichard Henderson }
520