xref: /openbmc/qemu/target/ppc/mmu-hash64.c (revision 18aa49ecf40b002dcaad9ea5491923358f512e72)
1fcf5ef2aSThomas Huth /*
2fcf5ef2aSThomas Huth  *  PowerPC MMU, TLB, SLB and BAT emulation helpers for QEMU.
3fcf5ef2aSThomas Huth  *
4fcf5ef2aSThomas Huth  *  Copyright (c) 2003-2007 Jocelyn Mayer
5fcf5ef2aSThomas Huth  *  Copyright (c) 2013 David Gibson, IBM Corporation
6fcf5ef2aSThomas Huth  *
7fcf5ef2aSThomas Huth  * This library is free software; you can redistribute it and/or
8fcf5ef2aSThomas Huth  * modify it under the terms of the GNU Lesser General Public
9fcf5ef2aSThomas Huth  * License as published by the Free Software Foundation; either
10fcf5ef2aSThomas Huth  * version 2 of the License, or (at your option) any later version.
11fcf5ef2aSThomas Huth  *
12fcf5ef2aSThomas Huth  * This library is distributed in the hope that it will be useful,
13fcf5ef2aSThomas Huth  * but WITHOUT ANY WARRANTY; without even the implied warranty of
14fcf5ef2aSThomas Huth  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
15fcf5ef2aSThomas Huth  * Lesser General Public License for more details.
16fcf5ef2aSThomas Huth  *
17fcf5ef2aSThomas Huth  * You should have received a copy of the GNU Lesser General Public
18fcf5ef2aSThomas Huth  * License along with this library; if not, see <http://www.gnu.org/licenses/>.
19fcf5ef2aSThomas Huth  */
20fcf5ef2aSThomas Huth #include "qemu/osdep.h"
21fcf5ef2aSThomas Huth #include "qapi/error.h"
22fcf5ef2aSThomas Huth #include "cpu.h"
23fcf5ef2aSThomas Huth #include "exec/exec-all.h"
24fcf5ef2aSThomas Huth #include "exec/helper-proto.h"
25fcf5ef2aSThomas Huth #include "qemu/error-report.h"
26b3946626SVincent Palatin #include "sysemu/hw_accel.h"
27fcf5ef2aSThomas Huth #include "kvm_ppc.h"
28fcf5ef2aSThomas Huth #include "mmu-hash64.h"
29fcf5ef2aSThomas Huth #include "exec/log.h"
30fcf5ef2aSThomas Huth 
31fcf5ef2aSThomas Huth //#define DEBUG_SLB
32fcf5ef2aSThomas Huth 
33fcf5ef2aSThomas Huth #ifdef DEBUG_SLB
34fcf5ef2aSThomas Huth #  define LOG_SLB(...) qemu_log_mask(CPU_LOG_MMU, __VA_ARGS__)
35fcf5ef2aSThomas Huth #else
36fcf5ef2aSThomas Huth #  define LOG_SLB(...) do { } while (0)
37fcf5ef2aSThomas Huth #endif
38fcf5ef2aSThomas Huth 
39fcf5ef2aSThomas Huth /*
40fcf5ef2aSThomas Huth  * Used to indicate that a CPU has its hash page table (HPT) managed
41fcf5ef2aSThomas Huth  * within the host kernel
42fcf5ef2aSThomas Huth  */
43fcf5ef2aSThomas Huth #define MMU_HASH64_KVM_MANAGED_HPT      ((void *)-1)
44fcf5ef2aSThomas Huth 
45fcf5ef2aSThomas Huth /*
46fcf5ef2aSThomas Huth  * SLB handling
47fcf5ef2aSThomas Huth  */
48fcf5ef2aSThomas Huth 
49fcf5ef2aSThomas Huth static ppc_slb_t *slb_lookup(PowerPCCPU *cpu, target_ulong eaddr)
50fcf5ef2aSThomas Huth {
51fcf5ef2aSThomas Huth     CPUPPCState *env = &cpu->env;
52fcf5ef2aSThomas Huth     uint64_t esid_256M, esid_1T;
53fcf5ef2aSThomas Huth     int n;
54fcf5ef2aSThomas Huth 
55fcf5ef2aSThomas Huth     LOG_SLB("%s: eaddr " TARGET_FMT_lx "\n", __func__, eaddr);
56fcf5ef2aSThomas Huth 
57fcf5ef2aSThomas Huth     esid_256M = (eaddr & SEGMENT_MASK_256M) | SLB_ESID_V;
58fcf5ef2aSThomas Huth     esid_1T = (eaddr & SEGMENT_MASK_1T) | SLB_ESID_V;
59fcf5ef2aSThomas Huth 
60fcf5ef2aSThomas Huth     for (n = 0; n < env->slb_nr; n++) {
61fcf5ef2aSThomas Huth         ppc_slb_t *slb = &env->slb[n];
62fcf5ef2aSThomas Huth 
63fcf5ef2aSThomas Huth         LOG_SLB("%s: slot %d %016" PRIx64 " %016"
64fcf5ef2aSThomas Huth                     PRIx64 "\n", __func__, n, slb->esid, slb->vsid);
65fcf5ef2aSThomas Huth         /* We check for 1T matches on all MMUs here - if the MMU
66fcf5ef2aSThomas Huth          * doesn't have 1T segment support, we will have prevented 1T
67fcf5ef2aSThomas Huth          * entries from being inserted in the slbmte code. */
68fcf5ef2aSThomas Huth         if (((slb->esid == esid_256M) &&
69fcf5ef2aSThomas Huth              ((slb->vsid & SLB_VSID_B) == SLB_VSID_B_256M))
70fcf5ef2aSThomas Huth             || ((slb->esid == esid_1T) &&
71fcf5ef2aSThomas Huth                 ((slb->vsid & SLB_VSID_B) == SLB_VSID_B_1T))) {
72fcf5ef2aSThomas Huth             return slb;
73fcf5ef2aSThomas Huth         }
74fcf5ef2aSThomas Huth     }
75fcf5ef2aSThomas Huth 
76fcf5ef2aSThomas Huth     return NULL;
77fcf5ef2aSThomas Huth }
78fcf5ef2aSThomas Huth 
79fcf5ef2aSThomas Huth void dump_slb(FILE *f, fprintf_function cpu_fprintf, PowerPCCPU *cpu)
80fcf5ef2aSThomas Huth {
81fcf5ef2aSThomas Huth     CPUPPCState *env = &cpu->env;
82fcf5ef2aSThomas Huth     int i;
83fcf5ef2aSThomas Huth     uint64_t slbe, slbv;
84fcf5ef2aSThomas Huth 
85fcf5ef2aSThomas Huth     cpu_synchronize_state(CPU(cpu));
86fcf5ef2aSThomas Huth 
87fcf5ef2aSThomas Huth     cpu_fprintf(f, "SLB\tESID\t\t\tVSID\n");
88fcf5ef2aSThomas Huth     for (i = 0; i < env->slb_nr; i++) {
89fcf5ef2aSThomas Huth         slbe = env->slb[i].esid;
90fcf5ef2aSThomas Huth         slbv = env->slb[i].vsid;
91fcf5ef2aSThomas Huth         if (slbe == 0 && slbv == 0) {
92fcf5ef2aSThomas Huth             continue;
93fcf5ef2aSThomas Huth         }
94fcf5ef2aSThomas Huth         cpu_fprintf(f, "%d\t0x%016" PRIx64 "\t0x%016" PRIx64 "\n",
95fcf5ef2aSThomas Huth                     i, slbe, slbv);
96fcf5ef2aSThomas Huth     }
97fcf5ef2aSThomas Huth }
98fcf5ef2aSThomas Huth 
99fcf5ef2aSThomas Huth void helper_slbia(CPUPPCState *env)
100fcf5ef2aSThomas Huth {
101fcf5ef2aSThomas Huth     int n;
102fcf5ef2aSThomas Huth 
103fcf5ef2aSThomas Huth     /* XXX: Warning: slbia never invalidates the first segment */
104fcf5ef2aSThomas Huth     for (n = 1; n < env->slb_nr; n++) {
105fcf5ef2aSThomas Huth         ppc_slb_t *slb = &env->slb[n];
106fcf5ef2aSThomas Huth 
107fcf5ef2aSThomas Huth         if (slb->esid & SLB_ESID_V) {
108fcf5ef2aSThomas Huth             slb->esid &= ~SLB_ESID_V;
109fcf5ef2aSThomas Huth             /* XXX: given the fact that segment size is 256 MB or 1TB,
110fcf5ef2aSThomas Huth              *      and we still don't have a tlb_flush_mask(env, n, mask)
111fcf5ef2aSThomas Huth              *      in QEMU, we just invalidate all TLBs
112fcf5ef2aSThomas Huth              */
113fcf5ef2aSThomas Huth             env->tlb_need_flush |= TLB_NEED_LOCAL_FLUSH;
114fcf5ef2aSThomas Huth         }
115fcf5ef2aSThomas Huth     }
116fcf5ef2aSThomas Huth }
117fcf5ef2aSThomas Huth 
118a63f1dfcSNikunj A Dadhania static void __helper_slbie(CPUPPCState *env, target_ulong addr,
119a63f1dfcSNikunj A Dadhania                            target_ulong global)
120fcf5ef2aSThomas Huth {
121fcf5ef2aSThomas Huth     PowerPCCPU *cpu = ppc_env_get_cpu(env);
122fcf5ef2aSThomas Huth     ppc_slb_t *slb;
123fcf5ef2aSThomas Huth 
124fcf5ef2aSThomas Huth     slb = slb_lookup(cpu, addr);
125fcf5ef2aSThomas Huth     if (!slb) {
126fcf5ef2aSThomas Huth         return;
127fcf5ef2aSThomas Huth     }
128fcf5ef2aSThomas Huth 
129fcf5ef2aSThomas Huth     if (slb->esid & SLB_ESID_V) {
130fcf5ef2aSThomas Huth         slb->esid &= ~SLB_ESID_V;
131fcf5ef2aSThomas Huth 
132fcf5ef2aSThomas Huth         /* XXX: given the fact that segment size is 256 MB or 1TB,
133fcf5ef2aSThomas Huth          *      and we still don't have a tlb_flush_mask(env, n, mask)
134fcf5ef2aSThomas Huth          *      in QEMU, we just invalidate all TLBs
135fcf5ef2aSThomas Huth          */
136a63f1dfcSNikunj A Dadhania         env->tlb_need_flush |=
137a63f1dfcSNikunj A Dadhania             (global == false ? TLB_NEED_LOCAL_FLUSH : TLB_NEED_GLOBAL_FLUSH);
138fcf5ef2aSThomas Huth     }
139fcf5ef2aSThomas Huth }
140fcf5ef2aSThomas Huth 
141a63f1dfcSNikunj A Dadhania void helper_slbie(CPUPPCState *env, target_ulong addr)
142a63f1dfcSNikunj A Dadhania {
143a63f1dfcSNikunj A Dadhania     __helper_slbie(env, addr, false);
144a63f1dfcSNikunj A Dadhania }
145a63f1dfcSNikunj A Dadhania 
146a63f1dfcSNikunj A Dadhania void helper_slbieg(CPUPPCState *env, target_ulong addr)
147a63f1dfcSNikunj A Dadhania {
148a63f1dfcSNikunj A Dadhania     __helper_slbie(env, addr, true);
149a63f1dfcSNikunj A Dadhania }
150a63f1dfcSNikunj A Dadhania 
151fcf5ef2aSThomas Huth int ppc_store_slb(PowerPCCPU *cpu, target_ulong slot,
152fcf5ef2aSThomas Huth                   target_ulong esid, target_ulong vsid)
153fcf5ef2aSThomas Huth {
154fcf5ef2aSThomas Huth     CPUPPCState *env = &cpu->env;
155fcf5ef2aSThomas Huth     ppc_slb_t *slb = &env->slb[slot];
156fcf5ef2aSThomas Huth     const struct ppc_one_seg_page_size *sps = NULL;
157fcf5ef2aSThomas Huth     int i;
158fcf5ef2aSThomas Huth 
159fcf5ef2aSThomas Huth     if (slot >= env->slb_nr) {
160fcf5ef2aSThomas Huth         return -1; /* Bad slot number */
161fcf5ef2aSThomas Huth     }
162fcf5ef2aSThomas Huth     if (esid & ~(SLB_ESID_ESID | SLB_ESID_V)) {
163fcf5ef2aSThomas Huth         return -1; /* Reserved bits set */
164fcf5ef2aSThomas Huth     }
165fcf5ef2aSThomas Huth     if (vsid & (SLB_VSID_B & ~SLB_VSID_B_1T)) {
166fcf5ef2aSThomas Huth         return -1; /* Bad segment size */
167fcf5ef2aSThomas Huth     }
168fcf5ef2aSThomas Huth     if ((vsid & SLB_VSID_B) && !(env->mmu_model & POWERPC_MMU_1TSEG)) {
169fcf5ef2aSThomas Huth         return -1; /* 1T segment on MMU that doesn't support it */
170fcf5ef2aSThomas Huth     }
171fcf5ef2aSThomas Huth 
172fcf5ef2aSThomas Huth     for (i = 0; i < PPC_PAGE_SIZES_MAX_SZ; i++) {
173fcf5ef2aSThomas Huth         const struct ppc_one_seg_page_size *sps1 = &env->sps.sps[i];
174fcf5ef2aSThomas Huth 
175fcf5ef2aSThomas Huth         if (!sps1->page_shift) {
176fcf5ef2aSThomas Huth             break;
177fcf5ef2aSThomas Huth         }
178fcf5ef2aSThomas Huth 
179fcf5ef2aSThomas Huth         if ((vsid & SLB_VSID_LLP_MASK) == sps1->slb_enc) {
180fcf5ef2aSThomas Huth             sps = sps1;
181fcf5ef2aSThomas Huth             break;
182fcf5ef2aSThomas Huth         }
183fcf5ef2aSThomas Huth     }
184fcf5ef2aSThomas Huth 
185fcf5ef2aSThomas Huth     if (!sps) {
186fcf5ef2aSThomas Huth         error_report("Bad page size encoding in SLB store: slot "TARGET_FMT_lu
187fcf5ef2aSThomas Huth                      " esid 0x"TARGET_FMT_lx" vsid 0x"TARGET_FMT_lx,
188fcf5ef2aSThomas Huth                      slot, esid, vsid);
189fcf5ef2aSThomas Huth         return -1;
190fcf5ef2aSThomas Huth     }
191fcf5ef2aSThomas Huth 
192fcf5ef2aSThomas Huth     slb->esid = esid;
193fcf5ef2aSThomas Huth     slb->vsid = vsid;
194fcf5ef2aSThomas Huth     slb->sps = sps;
195fcf5ef2aSThomas Huth 
19676134d48SSuraj Jitindar Singh     LOG_SLB("%s: " TARGET_FMT_lu " " TARGET_FMT_lx " - " TARGET_FMT_lx
19776134d48SSuraj Jitindar Singh             " => %016" PRIx64 " %016" PRIx64 "\n", __func__, slot, esid, vsid,
198fcf5ef2aSThomas Huth             slb->esid, slb->vsid);
199fcf5ef2aSThomas Huth 
200fcf5ef2aSThomas Huth     return 0;
201fcf5ef2aSThomas Huth }
202fcf5ef2aSThomas Huth 
203fcf5ef2aSThomas Huth static int ppc_load_slb_esid(PowerPCCPU *cpu, target_ulong rb,
204fcf5ef2aSThomas Huth                              target_ulong *rt)
205fcf5ef2aSThomas Huth {
206fcf5ef2aSThomas Huth     CPUPPCState *env = &cpu->env;
207fcf5ef2aSThomas Huth     int slot = rb & 0xfff;
208fcf5ef2aSThomas Huth     ppc_slb_t *slb = &env->slb[slot];
209fcf5ef2aSThomas Huth 
210fcf5ef2aSThomas Huth     if (slot >= env->slb_nr) {
211fcf5ef2aSThomas Huth         return -1;
212fcf5ef2aSThomas Huth     }
213fcf5ef2aSThomas Huth 
214fcf5ef2aSThomas Huth     *rt = slb->esid;
215fcf5ef2aSThomas Huth     return 0;
216fcf5ef2aSThomas Huth }
217fcf5ef2aSThomas Huth 
218fcf5ef2aSThomas Huth static int ppc_load_slb_vsid(PowerPCCPU *cpu, target_ulong rb,
219fcf5ef2aSThomas Huth                              target_ulong *rt)
220fcf5ef2aSThomas Huth {
221fcf5ef2aSThomas Huth     CPUPPCState *env = &cpu->env;
222fcf5ef2aSThomas Huth     int slot = rb & 0xfff;
223fcf5ef2aSThomas Huth     ppc_slb_t *slb = &env->slb[slot];
224fcf5ef2aSThomas Huth 
225fcf5ef2aSThomas Huth     if (slot >= env->slb_nr) {
226fcf5ef2aSThomas Huth         return -1;
227fcf5ef2aSThomas Huth     }
228fcf5ef2aSThomas Huth 
229fcf5ef2aSThomas Huth     *rt = slb->vsid;
230fcf5ef2aSThomas Huth     return 0;
231fcf5ef2aSThomas Huth }
232fcf5ef2aSThomas Huth 
233fcf5ef2aSThomas Huth static int ppc_find_slb_vsid(PowerPCCPU *cpu, target_ulong rb,
234fcf5ef2aSThomas Huth                              target_ulong *rt)
235fcf5ef2aSThomas Huth {
236fcf5ef2aSThomas Huth     CPUPPCState *env = &cpu->env;
237fcf5ef2aSThomas Huth     ppc_slb_t *slb;
238fcf5ef2aSThomas Huth 
239fcf5ef2aSThomas Huth     if (!msr_is_64bit(env, env->msr)) {
240fcf5ef2aSThomas Huth         rb &= 0xffffffff;
241fcf5ef2aSThomas Huth     }
242fcf5ef2aSThomas Huth     slb = slb_lookup(cpu, rb);
243fcf5ef2aSThomas Huth     if (slb == NULL) {
244fcf5ef2aSThomas Huth         *rt = (target_ulong)-1ul;
245fcf5ef2aSThomas Huth     } else {
246fcf5ef2aSThomas Huth         *rt = slb->vsid;
247fcf5ef2aSThomas Huth     }
248fcf5ef2aSThomas Huth     return 0;
249fcf5ef2aSThomas Huth }
250fcf5ef2aSThomas Huth 
251fcf5ef2aSThomas Huth void helper_store_slb(CPUPPCState *env, target_ulong rb, target_ulong rs)
252fcf5ef2aSThomas Huth {
253fcf5ef2aSThomas Huth     PowerPCCPU *cpu = ppc_env_get_cpu(env);
254fcf5ef2aSThomas Huth 
255fcf5ef2aSThomas Huth     if (ppc_store_slb(cpu, rb & 0xfff, rb & ~0xfffULL, rs) < 0) {
256fcf5ef2aSThomas Huth         raise_exception_err_ra(env, POWERPC_EXCP_PROGRAM,
257fcf5ef2aSThomas Huth                                POWERPC_EXCP_INVAL, GETPC());
258fcf5ef2aSThomas Huth     }
259fcf5ef2aSThomas Huth }
260fcf5ef2aSThomas Huth 
261fcf5ef2aSThomas Huth target_ulong helper_load_slb_esid(CPUPPCState *env, target_ulong rb)
262fcf5ef2aSThomas Huth {
263fcf5ef2aSThomas Huth     PowerPCCPU *cpu = ppc_env_get_cpu(env);
264fcf5ef2aSThomas Huth     target_ulong rt = 0;
265fcf5ef2aSThomas Huth 
266fcf5ef2aSThomas Huth     if (ppc_load_slb_esid(cpu, rb, &rt) < 0) {
267fcf5ef2aSThomas Huth         raise_exception_err_ra(env, POWERPC_EXCP_PROGRAM,
268fcf5ef2aSThomas Huth                                POWERPC_EXCP_INVAL, GETPC());
269fcf5ef2aSThomas Huth     }
270fcf5ef2aSThomas Huth     return rt;
271fcf5ef2aSThomas Huth }
272fcf5ef2aSThomas Huth 
273fcf5ef2aSThomas Huth target_ulong helper_find_slb_vsid(CPUPPCState *env, target_ulong rb)
274fcf5ef2aSThomas Huth {
275fcf5ef2aSThomas Huth     PowerPCCPU *cpu = ppc_env_get_cpu(env);
276fcf5ef2aSThomas Huth     target_ulong rt = 0;
277fcf5ef2aSThomas Huth 
278fcf5ef2aSThomas Huth     if (ppc_find_slb_vsid(cpu, rb, &rt) < 0) {
279fcf5ef2aSThomas Huth         raise_exception_err_ra(env, POWERPC_EXCP_PROGRAM,
280fcf5ef2aSThomas Huth                                POWERPC_EXCP_INVAL, GETPC());
281fcf5ef2aSThomas Huth     }
282fcf5ef2aSThomas Huth     return rt;
283fcf5ef2aSThomas Huth }
284fcf5ef2aSThomas Huth 
285fcf5ef2aSThomas Huth target_ulong helper_load_slb_vsid(CPUPPCState *env, target_ulong rb)
286fcf5ef2aSThomas Huth {
287fcf5ef2aSThomas Huth     PowerPCCPU *cpu = ppc_env_get_cpu(env);
288fcf5ef2aSThomas Huth     target_ulong rt = 0;
289fcf5ef2aSThomas Huth 
290fcf5ef2aSThomas Huth     if (ppc_load_slb_vsid(cpu, rb, &rt) < 0) {
291fcf5ef2aSThomas Huth         raise_exception_err_ra(env, POWERPC_EXCP_PROGRAM,
292fcf5ef2aSThomas Huth                                POWERPC_EXCP_INVAL, GETPC());
293fcf5ef2aSThomas Huth     }
294fcf5ef2aSThomas Huth     return rt;
295fcf5ef2aSThomas Huth }
296fcf5ef2aSThomas Huth 
297fcf5ef2aSThomas Huth /*
298fcf5ef2aSThomas Huth  * 64-bit hash table MMU handling
299fcf5ef2aSThomas Huth  */
300fcf5ef2aSThomas Huth void ppc_hash64_set_sdr1(PowerPCCPU *cpu, target_ulong value,
301fcf5ef2aSThomas Huth                          Error **errp)
302fcf5ef2aSThomas Huth {
303fcf5ef2aSThomas Huth     CPUPPCState *env = &cpu->env;
304fcf5ef2aSThomas Huth     target_ulong htabsize = value & SDR_64_HTABSIZE;
305fcf5ef2aSThomas Huth 
306fcf5ef2aSThomas Huth     env->spr[SPR_SDR1] = value;
307fcf5ef2aSThomas Huth     if (htabsize > 28) {
308fcf5ef2aSThomas Huth         error_setg(errp,
309fcf5ef2aSThomas Huth                    "Invalid HTABSIZE 0x" TARGET_FMT_lx" stored in SDR1",
310fcf5ef2aSThomas Huth                    htabsize);
311fcf5ef2aSThomas Huth         htabsize = 28;
312fcf5ef2aSThomas Huth     }
313fcf5ef2aSThomas Huth     env->htab_mask = (1ULL << (htabsize + 18 - 7)) - 1;
314fcf5ef2aSThomas Huth     env->htab_base = value & SDR_64_HTABORG;
315fcf5ef2aSThomas Huth }
316fcf5ef2aSThomas Huth 
317fcf5ef2aSThomas Huth void ppc_hash64_set_external_hpt(PowerPCCPU *cpu, void *hpt, int shift,
318fcf5ef2aSThomas Huth                                  Error **errp)
319fcf5ef2aSThomas Huth {
320fcf5ef2aSThomas Huth     CPUPPCState *env = &cpu->env;
321fcf5ef2aSThomas Huth     Error *local_err = NULL;
322fcf5ef2aSThomas Huth 
323fcf5ef2aSThomas Huth     if (hpt) {
324fcf5ef2aSThomas Huth         env->external_htab = hpt;
325fcf5ef2aSThomas Huth     } else {
326fcf5ef2aSThomas Huth         env->external_htab = MMU_HASH64_KVM_MANAGED_HPT;
327fcf5ef2aSThomas Huth     }
328fcf5ef2aSThomas Huth     ppc_hash64_set_sdr1(cpu, (target_ulong)(uintptr_t)hpt | (shift - 18),
329fcf5ef2aSThomas Huth                         &local_err);
330fcf5ef2aSThomas Huth     if (local_err) {
331fcf5ef2aSThomas Huth         error_propagate(errp, local_err);
332fcf5ef2aSThomas Huth         return;
333fcf5ef2aSThomas Huth     }
334fcf5ef2aSThomas Huth 
335fcf5ef2aSThomas Huth     /* Not strictly necessary, but makes it clearer that an external
336fcf5ef2aSThomas Huth      * htab is in use when debugging */
337fcf5ef2aSThomas Huth     env->htab_base = -1;
338fcf5ef2aSThomas Huth 
339fcf5ef2aSThomas Huth     if (kvm_enabled()) {
340fcf5ef2aSThomas Huth         if (kvmppc_put_books_sregs(cpu) < 0) {
341fcf5ef2aSThomas Huth             error_setg(errp, "Unable to update SDR1 in KVM");
342fcf5ef2aSThomas Huth         }
343fcf5ef2aSThomas Huth     }
344fcf5ef2aSThomas Huth }
345fcf5ef2aSThomas Huth 
346fcf5ef2aSThomas Huth static int ppc_hash64_pte_prot(PowerPCCPU *cpu,
347fcf5ef2aSThomas Huth                                ppc_slb_t *slb, ppc_hash_pte64_t pte)
348fcf5ef2aSThomas Huth {
349fcf5ef2aSThomas Huth     CPUPPCState *env = &cpu->env;
350fcf5ef2aSThomas Huth     unsigned pp, key;
351fcf5ef2aSThomas Huth     /* Some pp bit combinations have undefined behaviour, so default
352fcf5ef2aSThomas Huth      * to no access in those cases */
353fcf5ef2aSThomas Huth     int prot = 0;
354fcf5ef2aSThomas Huth 
355fcf5ef2aSThomas Huth     key = !!(msr_pr ? (slb->vsid & SLB_VSID_KP)
356fcf5ef2aSThomas Huth              : (slb->vsid & SLB_VSID_KS));
357fcf5ef2aSThomas Huth     pp = (pte.pte1 & HPTE64_R_PP) | ((pte.pte1 & HPTE64_R_PP0) >> 61);
358fcf5ef2aSThomas Huth 
359fcf5ef2aSThomas Huth     if (key == 0) {
360fcf5ef2aSThomas Huth         switch (pp) {
361fcf5ef2aSThomas Huth         case 0x0:
362fcf5ef2aSThomas Huth         case 0x1:
363fcf5ef2aSThomas Huth         case 0x2:
364fcf5ef2aSThomas Huth             prot = PAGE_READ | PAGE_WRITE;
365fcf5ef2aSThomas Huth             break;
366fcf5ef2aSThomas Huth 
367fcf5ef2aSThomas Huth         case 0x3:
368fcf5ef2aSThomas Huth         case 0x6:
369fcf5ef2aSThomas Huth             prot = PAGE_READ;
370fcf5ef2aSThomas Huth             break;
371fcf5ef2aSThomas Huth         }
372fcf5ef2aSThomas Huth     } else {
373fcf5ef2aSThomas Huth         switch (pp) {
374fcf5ef2aSThomas Huth         case 0x0:
375fcf5ef2aSThomas Huth         case 0x6:
376fcf5ef2aSThomas Huth             prot = 0;
377fcf5ef2aSThomas Huth             break;
378fcf5ef2aSThomas Huth 
379fcf5ef2aSThomas Huth         case 0x1:
380fcf5ef2aSThomas Huth         case 0x3:
381fcf5ef2aSThomas Huth             prot = PAGE_READ;
382fcf5ef2aSThomas Huth             break;
383fcf5ef2aSThomas Huth 
384fcf5ef2aSThomas Huth         case 0x2:
385fcf5ef2aSThomas Huth             prot = PAGE_READ | PAGE_WRITE;
386fcf5ef2aSThomas Huth             break;
387fcf5ef2aSThomas Huth         }
388fcf5ef2aSThomas Huth     }
389fcf5ef2aSThomas Huth 
390fcf5ef2aSThomas Huth     /* No execute if either noexec or guarded bits set */
391fcf5ef2aSThomas Huth     if (!(pte.pte1 & HPTE64_R_N) || (pte.pte1 & HPTE64_R_G)
392fcf5ef2aSThomas Huth         || (slb->vsid & SLB_VSID_N)) {
393fcf5ef2aSThomas Huth         prot |= PAGE_EXEC;
394fcf5ef2aSThomas Huth     }
395fcf5ef2aSThomas Huth 
396fcf5ef2aSThomas Huth     return prot;
397fcf5ef2aSThomas Huth }
398fcf5ef2aSThomas Huth 
399fcf5ef2aSThomas Huth static int ppc_hash64_amr_prot(PowerPCCPU *cpu, ppc_hash_pte64_t pte)
400fcf5ef2aSThomas Huth {
401fcf5ef2aSThomas Huth     CPUPPCState *env = &cpu->env;
402fcf5ef2aSThomas Huth     int key, amrbits;
403fcf5ef2aSThomas Huth     int prot = PAGE_READ | PAGE_WRITE | PAGE_EXEC;
404fcf5ef2aSThomas Huth 
405fcf5ef2aSThomas Huth     /* Only recent MMUs implement Virtual Page Class Key Protection */
406fcf5ef2aSThomas Huth     if (!(env->mmu_model & POWERPC_MMU_AMR)) {
407fcf5ef2aSThomas Huth         return prot;
408fcf5ef2aSThomas Huth     }
409fcf5ef2aSThomas Huth 
410fcf5ef2aSThomas Huth     key = HPTE64_R_KEY(pte.pte1);
411fcf5ef2aSThomas Huth     amrbits = (env->spr[SPR_AMR] >> 2*(31 - key)) & 0x3;
412fcf5ef2aSThomas Huth 
413fcf5ef2aSThomas Huth     /* fprintf(stderr, "AMR protection: key=%d AMR=0x%" PRIx64 "\n", key, */
414fcf5ef2aSThomas Huth     /*         env->spr[SPR_AMR]); */
415fcf5ef2aSThomas Huth 
416fcf5ef2aSThomas Huth     /*
417fcf5ef2aSThomas Huth      * A store is permitted if the AMR bit is 0. Remove write
418fcf5ef2aSThomas Huth      * protection if it is set.
419fcf5ef2aSThomas Huth      */
420fcf5ef2aSThomas Huth     if (amrbits & 0x2) {
421fcf5ef2aSThomas Huth         prot &= ~PAGE_WRITE;
422fcf5ef2aSThomas Huth     }
423fcf5ef2aSThomas Huth     /*
424fcf5ef2aSThomas Huth      * A load is permitted if the AMR bit is 0. Remove read
425fcf5ef2aSThomas Huth      * protection if it is set.
426fcf5ef2aSThomas Huth      */
427fcf5ef2aSThomas Huth     if (amrbits & 0x1) {
428fcf5ef2aSThomas Huth         prot &= ~PAGE_READ;
429fcf5ef2aSThomas Huth     }
430fcf5ef2aSThomas Huth 
431fcf5ef2aSThomas Huth     return prot;
432fcf5ef2aSThomas Huth }
433fcf5ef2aSThomas Huth 
434fcf5ef2aSThomas Huth uint64_t ppc_hash64_start_access(PowerPCCPU *cpu, target_ulong pte_index)
435fcf5ef2aSThomas Huth {
436fcf5ef2aSThomas Huth     uint64_t token = 0;
437fcf5ef2aSThomas Huth     hwaddr pte_offset;
438fcf5ef2aSThomas Huth 
439fcf5ef2aSThomas Huth     pte_offset = pte_index * HASH_PTE_SIZE_64;
440fcf5ef2aSThomas Huth     if (cpu->env.external_htab == MMU_HASH64_KVM_MANAGED_HPT) {
441fcf5ef2aSThomas Huth         /*
442fcf5ef2aSThomas Huth          * HTAB is controlled by KVM. Fetch the PTEG into a new buffer.
443fcf5ef2aSThomas Huth          */
444fcf5ef2aSThomas Huth         token = kvmppc_hash64_read_pteg(cpu, pte_index);
445fcf5ef2aSThomas Huth     } else if (cpu->env.external_htab) {
446fcf5ef2aSThomas Huth         /*
447fcf5ef2aSThomas Huth          * HTAB is controlled by QEMU. Just point to the internally
448fcf5ef2aSThomas Huth          * accessible PTEG.
449fcf5ef2aSThomas Huth          */
450fcf5ef2aSThomas Huth         token = (uint64_t)(uintptr_t) cpu->env.external_htab + pte_offset;
451fcf5ef2aSThomas Huth     } else if (cpu->env.htab_base) {
452fcf5ef2aSThomas Huth         token = cpu->env.htab_base + pte_offset;
453fcf5ef2aSThomas Huth     }
454fcf5ef2aSThomas Huth     return token;
455fcf5ef2aSThomas Huth }
456fcf5ef2aSThomas Huth 
457fcf5ef2aSThomas Huth void ppc_hash64_stop_access(PowerPCCPU *cpu, uint64_t token)
458fcf5ef2aSThomas Huth {
459fcf5ef2aSThomas Huth     if (cpu->env.external_htab == MMU_HASH64_KVM_MANAGED_HPT) {
460fcf5ef2aSThomas Huth         kvmppc_hash64_free_pteg(token);
461fcf5ef2aSThomas Huth     }
462fcf5ef2aSThomas Huth }
463fcf5ef2aSThomas Huth 
464fcf5ef2aSThomas Huth static unsigned hpte_page_shift(const struct ppc_one_seg_page_size *sps,
465fcf5ef2aSThomas Huth     uint64_t pte0, uint64_t pte1)
466fcf5ef2aSThomas Huth {
467fcf5ef2aSThomas Huth     int i;
468fcf5ef2aSThomas Huth 
469fcf5ef2aSThomas Huth     if (!(pte0 & HPTE64_V_LARGE)) {
470fcf5ef2aSThomas Huth         if (sps->page_shift != 12) {
471fcf5ef2aSThomas Huth             /* 4kiB page in a non 4kiB segment */
472fcf5ef2aSThomas Huth             return 0;
473fcf5ef2aSThomas Huth         }
474fcf5ef2aSThomas Huth         /* Normal 4kiB page */
475fcf5ef2aSThomas Huth         return 12;
476fcf5ef2aSThomas Huth     }
477fcf5ef2aSThomas Huth 
478fcf5ef2aSThomas Huth     for (i = 0; i < PPC_PAGE_SIZES_MAX_SZ; i++) {
479fcf5ef2aSThomas Huth         const struct ppc_one_page_size *ps = &sps->enc[i];
480fcf5ef2aSThomas Huth         uint64_t mask;
481fcf5ef2aSThomas Huth 
482fcf5ef2aSThomas Huth         if (!ps->page_shift) {
483fcf5ef2aSThomas Huth             break;
484fcf5ef2aSThomas Huth         }
485fcf5ef2aSThomas Huth 
486fcf5ef2aSThomas Huth         if (ps->page_shift == 12) {
487fcf5ef2aSThomas Huth             /* L bit is set so this can't be a 4kiB page */
488fcf5ef2aSThomas Huth             continue;
489fcf5ef2aSThomas Huth         }
490fcf5ef2aSThomas Huth 
491fcf5ef2aSThomas Huth         mask = ((1ULL << ps->page_shift) - 1) & HPTE64_R_RPN;
492fcf5ef2aSThomas Huth 
493fcf5ef2aSThomas Huth         if ((pte1 & mask) == ((uint64_t)ps->pte_enc << HPTE64_R_RPN_SHIFT)) {
494fcf5ef2aSThomas Huth             return ps->page_shift;
495fcf5ef2aSThomas Huth         }
496fcf5ef2aSThomas Huth     }
497fcf5ef2aSThomas Huth 
498fcf5ef2aSThomas Huth     return 0; /* Bad page size encoding */
499fcf5ef2aSThomas Huth }
500fcf5ef2aSThomas Huth 
501fcf5ef2aSThomas Huth static hwaddr ppc_hash64_pteg_search(PowerPCCPU *cpu, hwaddr hash,
502fcf5ef2aSThomas Huth                                      const struct ppc_one_seg_page_size *sps,
503fcf5ef2aSThomas Huth                                      target_ulong ptem,
504fcf5ef2aSThomas Huth                                      ppc_hash_pte64_t *pte, unsigned *pshift)
505fcf5ef2aSThomas Huth {
506fcf5ef2aSThomas Huth     CPUPPCState *env = &cpu->env;
507fcf5ef2aSThomas Huth     int i;
508fcf5ef2aSThomas Huth     uint64_t token;
509fcf5ef2aSThomas Huth     target_ulong pte0, pte1;
510fcf5ef2aSThomas Huth     target_ulong pte_index;
511fcf5ef2aSThomas Huth 
512fcf5ef2aSThomas Huth     pte_index = (hash & env->htab_mask) * HPTES_PER_GROUP;
513fcf5ef2aSThomas Huth     token = ppc_hash64_start_access(cpu, pte_index);
514fcf5ef2aSThomas Huth     if (!token) {
515fcf5ef2aSThomas Huth         return -1;
516fcf5ef2aSThomas Huth     }
517fcf5ef2aSThomas Huth     for (i = 0; i < HPTES_PER_GROUP; i++) {
518fcf5ef2aSThomas Huth         pte0 = ppc_hash64_load_hpte0(cpu, token, i);
519fcf5ef2aSThomas Huth         pte1 = ppc_hash64_load_hpte1(cpu, token, i);
520fcf5ef2aSThomas Huth 
521fcf5ef2aSThomas Huth         /* This compares V, B, H (secondary) and the AVPN */
522fcf5ef2aSThomas Huth         if (HPTE64_V_COMPARE(pte0, ptem)) {
523fcf5ef2aSThomas Huth             *pshift = hpte_page_shift(sps, pte0, pte1);
524fcf5ef2aSThomas Huth             /*
525fcf5ef2aSThomas Huth              * If there is no match, ignore the PTE, it could simply
526fcf5ef2aSThomas Huth              * be for a different segment size encoding and the
527fcf5ef2aSThomas Huth              * architecture specifies we should not match. Linux will
528fcf5ef2aSThomas Huth              * potentially leave behind PTEs for the wrong base page
529fcf5ef2aSThomas Huth              * size when demoting segments.
530fcf5ef2aSThomas Huth              */
531fcf5ef2aSThomas Huth             if (*pshift == 0) {
532fcf5ef2aSThomas Huth                 continue;
533fcf5ef2aSThomas Huth             }
534fcf5ef2aSThomas Huth             /* We don't do anything with pshift yet as qemu TLB only deals
535fcf5ef2aSThomas Huth              * with 4K pages anyway
536fcf5ef2aSThomas Huth              */
537fcf5ef2aSThomas Huth             pte->pte0 = pte0;
538fcf5ef2aSThomas Huth             pte->pte1 = pte1;
539fcf5ef2aSThomas Huth             ppc_hash64_stop_access(cpu, token);
540fcf5ef2aSThomas Huth             return (pte_index + i) * HASH_PTE_SIZE_64;
541fcf5ef2aSThomas Huth         }
542fcf5ef2aSThomas Huth     }
543fcf5ef2aSThomas Huth     ppc_hash64_stop_access(cpu, token);
544fcf5ef2aSThomas Huth     /*
545fcf5ef2aSThomas Huth      * We didn't find a valid entry.
546fcf5ef2aSThomas Huth      */
547fcf5ef2aSThomas Huth     return -1;
548fcf5ef2aSThomas Huth }
549fcf5ef2aSThomas Huth 
550fcf5ef2aSThomas Huth static hwaddr ppc_hash64_htab_lookup(PowerPCCPU *cpu,
551fcf5ef2aSThomas Huth                                      ppc_slb_t *slb, target_ulong eaddr,
552fcf5ef2aSThomas Huth                                      ppc_hash_pte64_t *pte, unsigned *pshift)
553fcf5ef2aSThomas Huth {
554fcf5ef2aSThomas Huth     CPUPPCState *env = &cpu->env;
555fcf5ef2aSThomas Huth     hwaddr pte_offset;
556fcf5ef2aSThomas Huth     hwaddr hash;
557fcf5ef2aSThomas Huth     uint64_t vsid, epnmask, epn, ptem;
558fcf5ef2aSThomas Huth     const struct ppc_one_seg_page_size *sps = slb->sps;
559fcf5ef2aSThomas Huth 
560fcf5ef2aSThomas Huth     /* The SLB store path should prevent any bad page size encodings
561fcf5ef2aSThomas Huth      * getting in there, so: */
562fcf5ef2aSThomas Huth     assert(sps);
563fcf5ef2aSThomas Huth 
564fcf5ef2aSThomas Huth     /* If ISL is set in LPCR we need to clamp the page size to 4K */
565fcf5ef2aSThomas Huth     if (env->spr[SPR_LPCR] & LPCR_ISL) {
566fcf5ef2aSThomas Huth         /* We assume that when using TCG, 4k is first entry of SPS */
567fcf5ef2aSThomas Huth         sps = &env->sps.sps[0];
568fcf5ef2aSThomas Huth         assert(sps->page_shift == 12);
569fcf5ef2aSThomas Huth     }
570fcf5ef2aSThomas Huth 
571fcf5ef2aSThomas Huth     epnmask = ~((1ULL << sps->page_shift) - 1);
572fcf5ef2aSThomas Huth 
573fcf5ef2aSThomas Huth     if (slb->vsid & SLB_VSID_B) {
574fcf5ef2aSThomas Huth         /* 1TB segment */
575fcf5ef2aSThomas Huth         vsid = (slb->vsid & SLB_VSID_VSID) >> SLB_VSID_SHIFT_1T;
576fcf5ef2aSThomas Huth         epn = (eaddr & ~SEGMENT_MASK_1T) & epnmask;
577fcf5ef2aSThomas Huth         hash = vsid ^ (vsid << 25) ^ (epn >> sps->page_shift);
578fcf5ef2aSThomas Huth     } else {
579fcf5ef2aSThomas Huth         /* 256M segment */
580fcf5ef2aSThomas Huth         vsid = (slb->vsid & SLB_VSID_VSID) >> SLB_VSID_SHIFT;
581fcf5ef2aSThomas Huth         epn = (eaddr & ~SEGMENT_MASK_256M) & epnmask;
582fcf5ef2aSThomas Huth         hash = vsid ^ (epn >> sps->page_shift);
583fcf5ef2aSThomas Huth     }
584fcf5ef2aSThomas Huth     ptem = (slb->vsid & SLB_VSID_PTEM) | ((epn >> 16) & HPTE64_V_AVPN);
585fcf5ef2aSThomas Huth     ptem |= HPTE64_V_VALID;
586fcf5ef2aSThomas Huth 
587fcf5ef2aSThomas Huth     /* Page address translation */
588fcf5ef2aSThomas Huth     qemu_log_mask(CPU_LOG_MMU,
589fcf5ef2aSThomas Huth             "htab_base " TARGET_FMT_plx " htab_mask " TARGET_FMT_plx
590fcf5ef2aSThomas Huth             " hash " TARGET_FMT_plx "\n",
591fcf5ef2aSThomas Huth             env->htab_base, env->htab_mask, hash);
592fcf5ef2aSThomas Huth 
593fcf5ef2aSThomas Huth     /* Primary PTEG lookup */
594fcf5ef2aSThomas Huth     qemu_log_mask(CPU_LOG_MMU,
595fcf5ef2aSThomas Huth             "0 htab=" TARGET_FMT_plx "/" TARGET_FMT_plx
596fcf5ef2aSThomas Huth             " vsid=" TARGET_FMT_lx " ptem=" TARGET_FMT_lx
597fcf5ef2aSThomas Huth             " hash=" TARGET_FMT_plx "\n",
598fcf5ef2aSThomas Huth             env->htab_base, env->htab_mask, vsid, ptem,  hash);
599fcf5ef2aSThomas Huth     pte_offset = ppc_hash64_pteg_search(cpu, hash, sps, ptem, pte, pshift);
600fcf5ef2aSThomas Huth 
601fcf5ef2aSThomas Huth     if (pte_offset == -1) {
602fcf5ef2aSThomas Huth         /* Secondary PTEG lookup */
603fcf5ef2aSThomas Huth         ptem |= HPTE64_V_SECONDARY;
604fcf5ef2aSThomas Huth         qemu_log_mask(CPU_LOG_MMU,
605fcf5ef2aSThomas Huth                 "1 htab=" TARGET_FMT_plx "/" TARGET_FMT_plx
606fcf5ef2aSThomas Huth                 " vsid=" TARGET_FMT_lx " api=" TARGET_FMT_lx
607fcf5ef2aSThomas Huth                 " hash=" TARGET_FMT_plx "\n", env->htab_base,
608fcf5ef2aSThomas Huth                 env->htab_mask, vsid, ptem, ~hash);
609fcf5ef2aSThomas Huth 
610fcf5ef2aSThomas Huth         pte_offset = ppc_hash64_pteg_search(cpu, ~hash, sps, ptem, pte, pshift);
611fcf5ef2aSThomas Huth     }
612fcf5ef2aSThomas Huth 
613fcf5ef2aSThomas Huth     return pte_offset;
614fcf5ef2aSThomas Huth }
615fcf5ef2aSThomas Huth 
616fcf5ef2aSThomas Huth unsigned ppc_hash64_hpte_page_shift_noslb(PowerPCCPU *cpu,
617fcf5ef2aSThomas Huth                                           uint64_t pte0, uint64_t pte1)
618fcf5ef2aSThomas Huth {
619fcf5ef2aSThomas Huth     CPUPPCState *env = &cpu->env;
620fcf5ef2aSThomas Huth     int i;
621fcf5ef2aSThomas Huth 
622fcf5ef2aSThomas Huth     if (!(pte0 & HPTE64_V_LARGE)) {
623fcf5ef2aSThomas Huth         return 12;
624fcf5ef2aSThomas Huth     }
625fcf5ef2aSThomas Huth 
626fcf5ef2aSThomas Huth     /*
627fcf5ef2aSThomas Huth      * The encodings in env->sps need to be carefully chosen so that
628fcf5ef2aSThomas Huth      * this gives an unambiguous result.
629fcf5ef2aSThomas Huth      */
630fcf5ef2aSThomas Huth     for (i = 0; i < PPC_PAGE_SIZES_MAX_SZ; i++) {
631fcf5ef2aSThomas Huth         const struct ppc_one_seg_page_size *sps = &env->sps.sps[i];
632fcf5ef2aSThomas Huth         unsigned shift;
633fcf5ef2aSThomas Huth 
634fcf5ef2aSThomas Huth         if (!sps->page_shift) {
635fcf5ef2aSThomas Huth             break;
636fcf5ef2aSThomas Huth         }
637fcf5ef2aSThomas Huth 
638fcf5ef2aSThomas Huth         shift = hpte_page_shift(sps, pte0, pte1);
639fcf5ef2aSThomas Huth         if (shift) {
640fcf5ef2aSThomas Huth             return shift;
641fcf5ef2aSThomas Huth         }
642fcf5ef2aSThomas Huth     }
643fcf5ef2aSThomas Huth 
644fcf5ef2aSThomas Huth     return 0;
645fcf5ef2aSThomas Huth }
646fcf5ef2aSThomas Huth 
647fcf5ef2aSThomas Huth static void ppc_hash64_set_isi(CPUState *cs, CPUPPCState *env,
648fcf5ef2aSThomas Huth                                uint64_t error_code)
649fcf5ef2aSThomas Huth {
650fcf5ef2aSThomas Huth     bool vpm;
651fcf5ef2aSThomas Huth 
652fcf5ef2aSThomas Huth     if (msr_ir) {
653fcf5ef2aSThomas Huth         vpm = !!(env->spr[SPR_LPCR] & LPCR_VPM1);
654fcf5ef2aSThomas Huth     } else {
655fcf5ef2aSThomas Huth         vpm = !!(env->spr[SPR_LPCR] & LPCR_VPM0);
656fcf5ef2aSThomas Huth     }
657fcf5ef2aSThomas Huth     if (vpm && !msr_hv) {
658fcf5ef2aSThomas Huth         cs->exception_index = POWERPC_EXCP_HISI;
659fcf5ef2aSThomas Huth     } else {
660fcf5ef2aSThomas Huth         cs->exception_index = POWERPC_EXCP_ISI;
661fcf5ef2aSThomas Huth     }
662fcf5ef2aSThomas Huth     env->error_code = error_code;
663fcf5ef2aSThomas Huth }
664fcf5ef2aSThomas Huth 
665fcf5ef2aSThomas Huth static void ppc_hash64_set_dsi(CPUState *cs, CPUPPCState *env, uint64_t dar,
666fcf5ef2aSThomas Huth                                uint64_t dsisr)
667fcf5ef2aSThomas Huth {
668fcf5ef2aSThomas Huth     bool vpm;
669fcf5ef2aSThomas Huth 
670fcf5ef2aSThomas Huth     if (msr_dr) {
671fcf5ef2aSThomas Huth         vpm = !!(env->spr[SPR_LPCR] & LPCR_VPM1);
672fcf5ef2aSThomas Huth     } else {
673fcf5ef2aSThomas Huth         vpm = !!(env->spr[SPR_LPCR] & LPCR_VPM0);
674fcf5ef2aSThomas Huth     }
675fcf5ef2aSThomas Huth     if (vpm && !msr_hv) {
676fcf5ef2aSThomas Huth         cs->exception_index = POWERPC_EXCP_HDSI;
677fcf5ef2aSThomas Huth         env->spr[SPR_HDAR] = dar;
678fcf5ef2aSThomas Huth         env->spr[SPR_HDSISR] = dsisr;
679fcf5ef2aSThomas Huth     } else {
680fcf5ef2aSThomas Huth         cs->exception_index = POWERPC_EXCP_DSI;
681fcf5ef2aSThomas Huth         env->spr[SPR_DAR] = dar;
682fcf5ef2aSThomas Huth         env->spr[SPR_DSISR] = dsisr;
683fcf5ef2aSThomas Huth    }
684fcf5ef2aSThomas Huth     env->error_code = 0;
685fcf5ef2aSThomas Huth }
686fcf5ef2aSThomas Huth 
687fcf5ef2aSThomas Huth 
688fcf5ef2aSThomas Huth int ppc_hash64_handle_mmu_fault(PowerPCCPU *cpu, vaddr eaddr,
689fcf5ef2aSThomas Huth                                 int rwx, int mmu_idx)
690fcf5ef2aSThomas Huth {
691fcf5ef2aSThomas Huth     CPUState *cs = CPU(cpu);
692fcf5ef2aSThomas Huth     CPUPPCState *env = &cpu->env;
693fcf5ef2aSThomas Huth     ppc_slb_t *slb;
694fcf5ef2aSThomas Huth     unsigned apshift;
695fcf5ef2aSThomas Huth     hwaddr pte_offset;
696fcf5ef2aSThomas Huth     ppc_hash_pte64_t pte;
697fcf5ef2aSThomas Huth     int pp_prot, amr_prot, prot;
698fcf5ef2aSThomas Huth     uint64_t new_pte1, dsisr;
699fcf5ef2aSThomas Huth     const int need_prot[] = {PAGE_READ, PAGE_WRITE, PAGE_EXEC};
700fcf5ef2aSThomas Huth     hwaddr raddr;
701fcf5ef2aSThomas Huth 
702fcf5ef2aSThomas Huth     assert((rwx == 0) || (rwx == 1) || (rwx == 2));
703fcf5ef2aSThomas Huth 
704fcf5ef2aSThomas Huth     /* Note on LPCR usage: 970 uses HID4, but our special variant
705fcf5ef2aSThomas Huth      * of store_spr copies relevant fields into env->spr[SPR_LPCR].
706fcf5ef2aSThomas Huth      * Similarily we filter unimplemented bits when storing into
707fcf5ef2aSThomas Huth      * LPCR depending on the MMU version. This code can thus just
708fcf5ef2aSThomas Huth      * use the LPCR "as-is".
709fcf5ef2aSThomas Huth      */
710fcf5ef2aSThomas Huth 
711fcf5ef2aSThomas Huth     /* 1. Handle real mode accesses */
712fcf5ef2aSThomas Huth     if (((rwx == 2) && (msr_ir == 0)) || ((rwx != 2) && (msr_dr == 0))) {
713fcf5ef2aSThomas Huth         /* Translation is supposedly "off"  */
714fcf5ef2aSThomas Huth         /* In real mode the top 4 effective address bits are (mostly) ignored */
715fcf5ef2aSThomas Huth         raddr = eaddr & 0x0FFFFFFFFFFFFFFFULL;
716fcf5ef2aSThomas Huth 
717fcf5ef2aSThomas Huth         /* In HV mode, add HRMOR if top EA bit is clear */
718fcf5ef2aSThomas Huth         if (msr_hv || !env->has_hv_mode) {
719fcf5ef2aSThomas Huth             if (!(eaddr >> 63)) {
720fcf5ef2aSThomas Huth                 raddr |= env->spr[SPR_HRMOR];
721fcf5ef2aSThomas Huth             }
722fcf5ef2aSThomas Huth         } else {
723fcf5ef2aSThomas Huth             /* Otherwise, check VPM for RMA vs VRMA */
724fcf5ef2aSThomas Huth             if (env->spr[SPR_LPCR] & LPCR_VPM0) {
725fcf5ef2aSThomas Huth                 slb = &env->vrma_slb;
726fcf5ef2aSThomas Huth                 if (slb->sps) {
727fcf5ef2aSThomas Huth                     goto skip_slb_search;
728fcf5ef2aSThomas Huth                 }
729fcf5ef2aSThomas Huth                 /* Not much else to do here */
730fcf5ef2aSThomas Huth                 cs->exception_index = POWERPC_EXCP_MCHECK;
731fcf5ef2aSThomas Huth                 env->error_code = 0;
732fcf5ef2aSThomas Huth                 return 1;
733fcf5ef2aSThomas Huth             } else if (raddr < env->rmls) {
734fcf5ef2aSThomas Huth                 /* RMA. Check bounds in RMLS */
735fcf5ef2aSThomas Huth                 raddr |= env->spr[SPR_RMOR];
736fcf5ef2aSThomas Huth             } else {
737fcf5ef2aSThomas Huth                 /* The access failed, generate the approriate interrupt */
738fcf5ef2aSThomas Huth                 if (rwx == 2) {
739fcf5ef2aSThomas Huth                     ppc_hash64_set_isi(cs, env, 0x08000000);
740fcf5ef2aSThomas Huth                 } else {
741fcf5ef2aSThomas Huth                     dsisr = 0x08000000;
742fcf5ef2aSThomas Huth                     if (rwx == 1) {
743fcf5ef2aSThomas Huth                         dsisr |= 0x02000000;
744fcf5ef2aSThomas Huth                     }
745fcf5ef2aSThomas Huth                     ppc_hash64_set_dsi(cs, env, eaddr, dsisr);
746fcf5ef2aSThomas Huth                 }
747fcf5ef2aSThomas Huth                 return 1;
748fcf5ef2aSThomas Huth             }
749fcf5ef2aSThomas Huth         }
750fcf5ef2aSThomas Huth         tlb_set_page(cs, eaddr & TARGET_PAGE_MASK, raddr & TARGET_PAGE_MASK,
751fcf5ef2aSThomas Huth                      PAGE_READ | PAGE_WRITE | PAGE_EXEC, mmu_idx,
752fcf5ef2aSThomas Huth                      TARGET_PAGE_SIZE);
753fcf5ef2aSThomas Huth         return 0;
754fcf5ef2aSThomas Huth     }
755fcf5ef2aSThomas Huth 
756fcf5ef2aSThomas Huth     /* 2. Translation is on, so look up the SLB */
757fcf5ef2aSThomas Huth     slb = slb_lookup(cpu, eaddr);
758fcf5ef2aSThomas Huth     if (!slb) {
759fcf5ef2aSThomas Huth         if (rwx == 2) {
760fcf5ef2aSThomas Huth             cs->exception_index = POWERPC_EXCP_ISEG;
761fcf5ef2aSThomas Huth             env->error_code = 0;
762fcf5ef2aSThomas Huth         } else {
763fcf5ef2aSThomas Huth             cs->exception_index = POWERPC_EXCP_DSEG;
764fcf5ef2aSThomas Huth             env->error_code = 0;
765fcf5ef2aSThomas Huth             env->spr[SPR_DAR] = eaddr;
766fcf5ef2aSThomas Huth         }
767fcf5ef2aSThomas Huth         return 1;
768fcf5ef2aSThomas Huth     }
769fcf5ef2aSThomas Huth 
770fcf5ef2aSThomas Huth skip_slb_search:
771fcf5ef2aSThomas Huth 
772fcf5ef2aSThomas Huth     /* 3. Check for segment level no-execute violation */
773fcf5ef2aSThomas Huth     if ((rwx == 2) && (slb->vsid & SLB_VSID_N)) {
774fcf5ef2aSThomas Huth         ppc_hash64_set_isi(cs, env, 0x10000000);
775fcf5ef2aSThomas Huth         return 1;
776fcf5ef2aSThomas Huth     }
777fcf5ef2aSThomas Huth 
778fcf5ef2aSThomas Huth     /* 4. Locate the PTE in the hash table */
779fcf5ef2aSThomas Huth     pte_offset = ppc_hash64_htab_lookup(cpu, slb, eaddr, &pte, &apshift);
780fcf5ef2aSThomas Huth     if (pte_offset == -1) {
781fcf5ef2aSThomas Huth         dsisr = 0x40000000;
782fcf5ef2aSThomas Huth         if (rwx == 2) {
783fcf5ef2aSThomas Huth             ppc_hash64_set_isi(cs, env, dsisr);
784fcf5ef2aSThomas Huth         } else {
785fcf5ef2aSThomas Huth             if (rwx == 1) {
786fcf5ef2aSThomas Huth                 dsisr |= 0x02000000;
787fcf5ef2aSThomas Huth             }
788fcf5ef2aSThomas Huth             ppc_hash64_set_dsi(cs, env, eaddr, dsisr);
789fcf5ef2aSThomas Huth         }
790fcf5ef2aSThomas Huth         return 1;
791fcf5ef2aSThomas Huth     }
792fcf5ef2aSThomas Huth     qemu_log_mask(CPU_LOG_MMU,
793fcf5ef2aSThomas Huth                 "found PTE at offset %08" HWADDR_PRIx "\n", pte_offset);
794fcf5ef2aSThomas Huth 
795fcf5ef2aSThomas Huth     /* 5. Check access permissions */
796fcf5ef2aSThomas Huth 
797fcf5ef2aSThomas Huth     pp_prot = ppc_hash64_pte_prot(cpu, slb, pte);
798fcf5ef2aSThomas Huth     amr_prot = ppc_hash64_amr_prot(cpu, pte);
799fcf5ef2aSThomas Huth     prot = pp_prot & amr_prot;
800fcf5ef2aSThomas Huth 
801fcf5ef2aSThomas Huth     if ((need_prot[rwx] & ~prot) != 0) {
802fcf5ef2aSThomas Huth         /* Access right violation */
803fcf5ef2aSThomas Huth         qemu_log_mask(CPU_LOG_MMU, "PTE access rejected\n");
804fcf5ef2aSThomas Huth         if (rwx == 2) {
805fcf5ef2aSThomas Huth             ppc_hash64_set_isi(cs, env, 0x08000000);
806fcf5ef2aSThomas Huth         } else {
807fcf5ef2aSThomas Huth             dsisr = 0;
808fcf5ef2aSThomas Huth             if (need_prot[rwx] & ~pp_prot) {
809fcf5ef2aSThomas Huth                 dsisr |= 0x08000000;
810fcf5ef2aSThomas Huth             }
811fcf5ef2aSThomas Huth             if (rwx == 1) {
812fcf5ef2aSThomas Huth                 dsisr |= 0x02000000;
813fcf5ef2aSThomas Huth             }
814fcf5ef2aSThomas Huth             if (need_prot[rwx] & ~amr_prot) {
815fcf5ef2aSThomas Huth                 dsisr |= 0x00200000;
816fcf5ef2aSThomas Huth             }
817fcf5ef2aSThomas Huth             ppc_hash64_set_dsi(cs, env, eaddr, dsisr);
818fcf5ef2aSThomas Huth         }
819fcf5ef2aSThomas Huth         return 1;
820fcf5ef2aSThomas Huth     }
821fcf5ef2aSThomas Huth 
822fcf5ef2aSThomas Huth     qemu_log_mask(CPU_LOG_MMU, "PTE access granted !\n");
823fcf5ef2aSThomas Huth 
824fcf5ef2aSThomas Huth     /* 6. Update PTE referenced and changed bits if necessary */
825fcf5ef2aSThomas Huth 
826fcf5ef2aSThomas Huth     new_pte1 = pte.pte1 | HPTE64_R_R; /* set referenced bit */
827fcf5ef2aSThomas Huth     if (rwx == 1) {
828fcf5ef2aSThomas Huth         new_pte1 |= HPTE64_R_C; /* set changed (dirty) bit */
829fcf5ef2aSThomas Huth     } else {
830fcf5ef2aSThomas Huth         /* Treat the page as read-only for now, so that a later write
831fcf5ef2aSThomas Huth          * will pass through this function again to set the C bit */
832fcf5ef2aSThomas Huth         prot &= ~PAGE_WRITE;
833fcf5ef2aSThomas Huth     }
834fcf5ef2aSThomas Huth 
835fcf5ef2aSThomas Huth     if (new_pte1 != pte.pte1) {
836fcf5ef2aSThomas Huth         ppc_hash64_store_hpte(cpu, pte_offset / HASH_PTE_SIZE_64,
837fcf5ef2aSThomas Huth                               pte.pte0, new_pte1);
838fcf5ef2aSThomas Huth     }
839fcf5ef2aSThomas Huth 
840fcf5ef2aSThomas Huth     /* 7. Determine the real address from the PTE */
841fcf5ef2aSThomas Huth 
842fcf5ef2aSThomas Huth     raddr = deposit64(pte.pte1 & HPTE64_R_RPN, 0, apshift, eaddr);
843fcf5ef2aSThomas Huth 
844fcf5ef2aSThomas Huth     tlb_set_page(cs, eaddr & TARGET_PAGE_MASK, raddr & TARGET_PAGE_MASK,
845fcf5ef2aSThomas Huth                  prot, mmu_idx, 1ULL << apshift);
846fcf5ef2aSThomas Huth 
847fcf5ef2aSThomas Huth     return 0;
848fcf5ef2aSThomas Huth }
849fcf5ef2aSThomas Huth 
850fcf5ef2aSThomas Huth hwaddr ppc_hash64_get_phys_page_debug(PowerPCCPU *cpu, target_ulong addr)
851fcf5ef2aSThomas Huth {
852fcf5ef2aSThomas Huth     CPUPPCState *env = &cpu->env;
853fcf5ef2aSThomas Huth     ppc_slb_t *slb;
854fcf5ef2aSThomas Huth     hwaddr pte_offset, raddr;
855fcf5ef2aSThomas Huth     ppc_hash_pte64_t pte;
856fcf5ef2aSThomas Huth     unsigned apshift;
857fcf5ef2aSThomas Huth 
858fcf5ef2aSThomas Huth     /* Handle real mode */
859fcf5ef2aSThomas Huth     if (msr_dr == 0) {
860fcf5ef2aSThomas Huth         /* In real mode the top 4 effective address bits are ignored */
861fcf5ef2aSThomas Huth         raddr = addr & 0x0FFFFFFFFFFFFFFFULL;
862fcf5ef2aSThomas Huth 
863fcf5ef2aSThomas Huth         /* In HV mode, add HRMOR if top EA bit is clear */
864fcf5ef2aSThomas Huth         if ((msr_hv || !env->has_hv_mode) && !(addr >> 63)) {
865fcf5ef2aSThomas Huth             return raddr | env->spr[SPR_HRMOR];
866fcf5ef2aSThomas Huth         }
867fcf5ef2aSThomas Huth 
868fcf5ef2aSThomas Huth         /* Otherwise, check VPM for RMA vs VRMA */
869fcf5ef2aSThomas Huth         if (env->spr[SPR_LPCR] & LPCR_VPM0) {
870fcf5ef2aSThomas Huth             slb = &env->vrma_slb;
871fcf5ef2aSThomas Huth             if (!slb->sps) {
872fcf5ef2aSThomas Huth                 return -1;
873fcf5ef2aSThomas Huth             }
874fcf5ef2aSThomas Huth         } else if (raddr < env->rmls) {
875fcf5ef2aSThomas Huth             /* RMA. Check bounds in RMLS */
876fcf5ef2aSThomas Huth             return raddr | env->spr[SPR_RMOR];
877fcf5ef2aSThomas Huth         } else {
878fcf5ef2aSThomas Huth             return -1;
879fcf5ef2aSThomas Huth         }
880fcf5ef2aSThomas Huth     } else {
881fcf5ef2aSThomas Huth         slb = slb_lookup(cpu, addr);
882fcf5ef2aSThomas Huth         if (!slb) {
883fcf5ef2aSThomas Huth             return -1;
884fcf5ef2aSThomas Huth         }
885fcf5ef2aSThomas Huth     }
886fcf5ef2aSThomas Huth 
887fcf5ef2aSThomas Huth     pte_offset = ppc_hash64_htab_lookup(cpu, slb, addr, &pte, &apshift);
888fcf5ef2aSThomas Huth     if (pte_offset == -1) {
889fcf5ef2aSThomas Huth         return -1;
890fcf5ef2aSThomas Huth     }
891fcf5ef2aSThomas Huth 
892fcf5ef2aSThomas Huth     return deposit64(pte.pte1 & HPTE64_R_RPN, 0, apshift, addr)
893fcf5ef2aSThomas Huth         & TARGET_PAGE_MASK;
894fcf5ef2aSThomas Huth }
895fcf5ef2aSThomas Huth 
896fcf5ef2aSThomas Huth void ppc_hash64_store_hpte(PowerPCCPU *cpu,
897fcf5ef2aSThomas Huth                            target_ulong pte_index,
898fcf5ef2aSThomas Huth                            target_ulong pte0, target_ulong pte1)
899fcf5ef2aSThomas Huth {
900fcf5ef2aSThomas Huth     CPUPPCState *env = &cpu->env;
901fcf5ef2aSThomas Huth 
902fcf5ef2aSThomas Huth     if (env->external_htab == MMU_HASH64_KVM_MANAGED_HPT) {
903fcf5ef2aSThomas Huth         kvmppc_hash64_write_pte(env, pte_index, pte0, pte1);
904fcf5ef2aSThomas Huth         return;
905fcf5ef2aSThomas Huth     }
906fcf5ef2aSThomas Huth 
907fcf5ef2aSThomas Huth     pte_index *= HASH_PTE_SIZE_64;
908fcf5ef2aSThomas Huth     if (env->external_htab) {
909fcf5ef2aSThomas Huth         stq_p(env->external_htab + pte_index, pte0);
910fcf5ef2aSThomas Huth         stq_p(env->external_htab + pte_index + HASH_PTE_SIZE_64 / 2, pte1);
911fcf5ef2aSThomas Huth     } else {
912fcf5ef2aSThomas Huth         stq_phys(CPU(cpu)->as, env->htab_base + pte_index, pte0);
913fcf5ef2aSThomas Huth         stq_phys(CPU(cpu)->as,
914fcf5ef2aSThomas Huth                  env->htab_base + pte_index + HASH_PTE_SIZE_64 / 2, pte1);
915fcf5ef2aSThomas Huth     }
916fcf5ef2aSThomas Huth }
917fcf5ef2aSThomas Huth 
918fcf5ef2aSThomas Huth void ppc_hash64_tlb_flush_hpte(PowerPCCPU *cpu,
919fcf5ef2aSThomas Huth                                target_ulong pte_index,
920fcf5ef2aSThomas Huth                                target_ulong pte0, target_ulong pte1)
921fcf5ef2aSThomas Huth {
922fcf5ef2aSThomas Huth     /*
923fcf5ef2aSThomas Huth      * XXX: given the fact that there are too many segments to
924fcf5ef2aSThomas Huth      * invalidate, and we still don't have a tlb_flush_mask(env, n,
925fcf5ef2aSThomas Huth      * mask) in QEMU, we just invalidate all TLBs
926fcf5ef2aSThomas Huth      */
927fcf5ef2aSThomas Huth     cpu->env.tlb_need_flush = TLB_NEED_GLOBAL_FLUSH | TLB_NEED_LOCAL_FLUSH;
928fcf5ef2aSThomas Huth }
929fcf5ef2aSThomas Huth 
930fcf5ef2aSThomas Huth void ppc_hash64_update_rmls(CPUPPCState *env)
931fcf5ef2aSThomas Huth {
932fcf5ef2aSThomas Huth     uint64_t lpcr = env->spr[SPR_LPCR];
933fcf5ef2aSThomas Huth 
934fcf5ef2aSThomas Huth     /*
935fcf5ef2aSThomas Huth      * This is the full 4 bits encoding of POWER8. Previous
936fcf5ef2aSThomas Huth      * CPUs only support a subset of these but the filtering
937fcf5ef2aSThomas Huth      * is done when writing LPCR
938fcf5ef2aSThomas Huth      */
939fcf5ef2aSThomas Huth     switch ((lpcr & LPCR_RMLS) >> LPCR_RMLS_SHIFT) {
940fcf5ef2aSThomas Huth     case 0x8: /* 32MB */
941fcf5ef2aSThomas Huth         env->rmls = 0x2000000ull;
942fcf5ef2aSThomas Huth         break;
943fcf5ef2aSThomas Huth     case 0x3: /* 64MB */
944fcf5ef2aSThomas Huth         env->rmls = 0x4000000ull;
945fcf5ef2aSThomas Huth         break;
946fcf5ef2aSThomas Huth     case 0x7: /* 128MB */
947fcf5ef2aSThomas Huth         env->rmls = 0x8000000ull;
948fcf5ef2aSThomas Huth         break;
949fcf5ef2aSThomas Huth     case 0x4: /* 256MB */
950fcf5ef2aSThomas Huth         env->rmls = 0x10000000ull;
951fcf5ef2aSThomas Huth         break;
952fcf5ef2aSThomas Huth     case 0x2: /* 1GB */
953fcf5ef2aSThomas Huth         env->rmls = 0x40000000ull;
954fcf5ef2aSThomas Huth         break;
955fcf5ef2aSThomas Huth     case 0x1: /* 16GB */
956fcf5ef2aSThomas Huth         env->rmls = 0x400000000ull;
957fcf5ef2aSThomas Huth         break;
958fcf5ef2aSThomas Huth     default:
959fcf5ef2aSThomas Huth         /* What to do here ??? */
960fcf5ef2aSThomas Huth         env->rmls = 0;
961fcf5ef2aSThomas Huth     }
962fcf5ef2aSThomas Huth }
963fcf5ef2aSThomas Huth 
964fcf5ef2aSThomas Huth void ppc_hash64_update_vrma(CPUPPCState *env)
965fcf5ef2aSThomas Huth {
966fcf5ef2aSThomas Huth     const struct ppc_one_seg_page_size *sps = NULL;
967fcf5ef2aSThomas Huth     target_ulong esid, vsid, lpcr;
968fcf5ef2aSThomas Huth     ppc_slb_t *slb = &env->vrma_slb;
969fcf5ef2aSThomas Huth     uint32_t vrmasd;
970fcf5ef2aSThomas Huth     int i;
971fcf5ef2aSThomas Huth 
972fcf5ef2aSThomas Huth     /* First clear it */
973fcf5ef2aSThomas Huth     slb->esid = slb->vsid = 0;
974fcf5ef2aSThomas Huth     slb->sps = NULL;
975fcf5ef2aSThomas Huth 
976fcf5ef2aSThomas Huth     /* Is VRMA enabled ? */
977fcf5ef2aSThomas Huth     lpcr = env->spr[SPR_LPCR];
978fcf5ef2aSThomas Huth     if (!(lpcr & LPCR_VPM0)) {
979fcf5ef2aSThomas Huth         return;
980fcf5ef2aSThomas Huth     }
981fcf5ef2aSThomas Huth 
982fcf5ef2aSThomas Huth     /* Make one up. Mostly ignore the ESID which will not be
983fcf5ef2aSThomas Huth      * needed for translation
984fcf5ef2aSThomas Huth      */
985fcf5ef2aSThomas Huth     vsid = SLB_VSID_VRMA;
986fcf5ef2aSThomas Huth     vrmasd = (lpcr & LPCR_VRMASD) >> LPCR_VRMASD_SHIFT;
987fcf5ef2aSThomas Huth     vsid |= (vrmasd << 4) & (SLB_VSID_L | SLB_VSID_LP);
988fcf5ef2aSThomas Huth     esid = SLB_ESID_V;
989fcf5ef2aSThomas Huth 
990fcf5ef2aSThomas Huth    for (i = 0; i < PPC_PAGE_SIZES_MAX_SZ; i++) {
991fcf5ef2aSThomas Huth         const struct ppc_one_seg_page_size *sps1 = &env->sps.sps[i];
992fcf5ef2aSThomas Huth 
993fcf5ef2aSThomas Huth         if (!sps1->page_shift) {
994fcf5ef2aSThomas Huth             break;
995fcf5ef2aSThomas Huth         }
996fcf5ef2aSThomas Huth 
997fcf5ef2aSThomas Huth         if ((vsid & SLB_VSID_LLP_MASK) == sps1->slb_enc) {
998fcf5ef2aSThomas Huth             sps = sps1;
999fcf5ef2aSThomas Huth             break;
1000fcf5ef2aSThomas Huth         }
1001fcf5ef2aSThomas Huth     }
1002fcf5ef2aSThomas Huth 
1003fcf5ef2aSThomas Huth     if (!sps) {
1004fcf5ef2aSThomas Huth         error_report("Bad page size encoding esid 0x"TARGET_FMT_lx
1005fcf5ef2aSThomas Huth                      " vsid 0x"TARGET_FMT_lx, esid, vsid);
1006fcf5ef2aSThomas Huth         return;
1007fcf5ef2aSThomas Huth     }
1008fcf5ef2aSThomas Huth 
1009fcf5ef2aSThomas Huth     slb->vsid = vsid;
1010fcf5ef2aSThomas Huth     slb->esid = esid;
1011fcf5ef2aSThomas Huth     slb->sps = sps;
1012fcf5ef2aSThomas Huth }
1013fcf5ef2aSThomas Huth 
1014fcf5ef2aSThomas Huth void helper_store_lpcr(CPUPPCState *env, target_ulong val)
1015fcf5ef2aSThomas Huth {
1016fcf5ef2aSThomas Huth     uint64_t lpcr = 0;
1017fcf5ef2aSThomas Huth 
1018fcf5ef2aSThomas Huth     /* Filter out bits */
1019fcf5ef2aSThomas Huth     switch (env->mmu_model) {
1020fcf5ef2aSThomas Huth     case POWERPC_MMU_64B: /* 970 */
1021fcf5ef2aSThomas Huth         if (val & 0x40) {
1022fcf5ef2aSThomas Huth             lpcr |= LPCR_LPES0;
1023fcf5ef2aSThomas Huth         }
1024fcf5ef2aSThomas Huth         if (val & 0x8000000000000000ull) {
1025fcf5ef2aSThomas Huth             lpcr |= LPCR_LPES1;
1026fcf5ef2aSThomas Huth         }
1027fcf5ef2aSThomas Huth         if (val & 0x20) {
1028fcf5ef2aSThomas Huth             lpcr |= (0x4ull << LPCR_RMLS_SHIFT);
1029fcf5ef2aSThomas Huth         }
1030fcf5ef2aSThomas Huth         if (val & 0x4000000000000000ull) {
1031fcf5ef2aSThomas Huth             lpcr |= (0x2ull << LPCR_RMLS_SHIFT);
1032fcf5ef2aSThomas Huth         }
1033fcf5ef2aSThomas Huth         if (val & 0x2000000000000000ull) {
1034fcf5ef2aSThomas Huth             lpcr |= (0x1ull << LPCR_RMLS_SHIFT);
1035fcf5ef2aSThomas Huth         }
1036fcf5ef2aSThomas Huth         env->spr[SPR_RMOR] = ((lpcr >> 41) & 0xffffull) << 26;
1037fcf5ef2aSThomas Huth 
1038fcf5ef2aSThomas Huth         /* XXX We could also write LPID from HID4 here
1039fcf5ef2aSThomas Huth          * but since we don't tag any translation on it
1040fcf5ef2aSThomas Huth          * it doesn't actually matter
1041fcf5ef2aSThomas Huth          */
1042fcf5ef2aSThomas Huth         /* XXX For proper emulation of 970 we also need
1043fcf5ef2aSThomas Huth          * to dig HRMOR out of HID5
1044fcf5ef2aSThomas Huth          */
1045fcf5ef2aSThomas Huth         break;
1046fcf5ef2aSThomas Huth     case POWERPC_MMU_2_03: /* P5p */
1047fcf5ef2aSThomas Huth         lpcr = val & (LPCR_RMLS | LPCR_ILE |
1048fcf5ef2aSThomas Huth                       LPCR_LPES0 | LPCR_LPES1 |
1049fcf5ef2aSThomas Huth                       LPCR_RMI | LPCR_HDICE);
1050fcf5ef2aSThomas Huth         break;
1051fcf5ef2aSThomas Huth     case POWERPC_MMU_2_06: /* P7 */
1052fcf5ef2aSThomas Huth         lpcr = val & (LPCR_VPM0 | LPCR_VPM1 | LPCR_ISL | LPCR_DPFD |
1053fcf5ef2aSThomas Huth                       LPCR_VRMASD | LPCR_RMLS | LPCR_ILE |
1054fcf5ef2aSThomas Huth                       LPCR_P7_PECE0 | LPCR_P7_PECE1 | LPCR_P7_PECE2 |
1055fcf5ef2aSThomas Huth                       LPCR_MER | LPCR_TC |
1056fcf5ef2aSThomas Huth                       LPCR_LPES0 | LPCR_LPES1 | LPCR_HDICE);
1057fcf5ef2aSThomas Huth         break;
1058fcf5ef2aSThomas Huth     case POWERPC_MMU_2_07: /* P8 */
1059fcf5ef2aSThomas Huth         lpcr = val & (LPCR_VPM0 | LPCR_VPM1 | LPCR_ISL | LPCR_KBV |
1060fcf5ef2aSThomas Huth                       LPCR_DPFD | LPCR_VRMASD | LPCR_RMLS | LPCR_ILE |
1061fcf5ef2aSThomas Huth                       LPCR_AIL | LPCR_ONL | LPCR_P8_PECE0 | LPCR_P8_PECE1 |
1062fcf5ef2aSThomas Huth                       LPCR_P8_PECE2 | LPCR_P8_PECE3 | LPCR_P8_PECE4 |
1063fcf5ef2aSThomas Huth                       LPCR_MER | LPCR_TC | LPCR_LPES0 | LPCR_HDICE);
1064fcf5ef2aSThomas Huth         break;
1065*18aa49ecSSuraj Jitindar Singh     case POWERPC_MMU_3_00: /* P9 */
1066*18aa49ecSSuraj Jitindar Singh         lpcr = val & (LPCR_VPM1 | LPCR_ISL | LPCR_KBV | LPCR_DPFD |
1067*18aa49ecSSuraj Jitindar Singh                       (LPCR_PECE_U_MASK & LPCR_HVEE) | LPCR_ILE | LPCR_AIL |
1068*18aa49ecSSuraj Jitindar Singh                       LPCR_UPRT | LPCR_EVIRT | LPCR_ONL |
1069*18aa49ecSSuraj Jitindar Singh                       (LPCR_PECE_L_MASK & (LPCR_PDEE | LPCR_HDEE | LPCR_EEE |
1070*18aa49ecSSuraj Jitindar Singh                       LPCR_DEE | LPCR_OEE)) | LPCR_MER | LPCR_GTSE | LPCR_TC |
1071*18aa49ecSSuraj Jitindar Singh                       LPCR_HEIC | LPCR_LPES0 | LPCR_HVICE | LPCR_HDICE);
1072*18aa49ecSSuraj Jitindar Singh         break;
1073fcf5ef2aSThomas Huth     default:
1074fcf5ef2aSThomas Huth         ;
1075fcf5ef2aSThomas Huth     }
1076fcf5ef2aSThomas Huth     env->spr[SPR_LPCR] = lpcr;
1077fcf5ef2aSThomas Huth     ppc_hash64_update_rmls(env);
1078fcf5ef2aSThomas Huth     ppc_hash64_update_vrma(env);
1079fcf5ef2aSThomas Huth }
1080