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CommitLineData
dc5bd18f
MC
1/*
2 * QEMU RISC-V CPU
3 *
4 * Copyright (c) 2016-2017 Sagar Karandikar, sagark@eecs.berkeley.edu
5 * Copyright (c) 2017-2018 SiFive, Inc.
6 *
7 * This program is free software; you can redistribute it and/or modify it
8 * under the terms and conditions of the GNU General Public License,
9 * version 2 or later, as published by the Free Software Foundation.
10 *
11 * This program is distributed in the hope it will be useful, but WITHOUT
12 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
13 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
14 * more details.
15 *
16 * You should have received a copy of the GNU General Public License along with
17 * this program. If not, see <http://www.gnu.org/licenses/>.
18 */
19
20#ifndef RISCV_CPU_H
21#define RISCV_CPU_H
22
2e5b09fd 23#include "hw/core/cpu.h"
2b7168fc 24#include "hw/registerfields.h"
dc5bd18f 25#include "exec/cpu-defs.h"
69242e7e 26#include "qemu/cpu-float.h"
db1015e9 27#include "qom/object.h"
961738ff 28#include "qemu/int128.h"
e91a7227 29#include "cpu_bits.h"
dc5bd18f 30
74433bf0
RH
31#define TCG_GUEST_DEFAULT_MO 0
32
62cf0245
AP
33/*
34 * RISC-V-specific extra insn start words:
35 * 1: Original instruction opcode
36 */
37#define TARGET_INSN_START_EXTRA_WORDS 1
38
dc5bd18f
MC
39#define TYPE_RISCV_CPU "riscv-cpu"
40
41#define RISCV_CPU_TYPE_SUFFIX "-" TYPE_RISCV_CPU
42#define RISCV_CPU_TYPE_NAME(name) (name RISCV_CPU_TYPE_SUFFIX)
0dacec87 43#define CPU_RESOLVING_TYPE TYPE_RISCV_CPU
dc5bd18f
MC
44
45#define TYPE_RISCV_CPU_ANY RISCV_CPU_TYPE_NAME("any")
8903bf6e
AF
46#define TYPE_RISCV_CPU_BASE32 RISCV_CPU_TYPE_NAME("rv32")
47#define TYPE_RISCV_CPU_BASE64 RISCV_CPU_TYPE_NAME("rv64")
332dab68 48#define TYPE_RISCV_CPU_BASE128 RISCV_CPU_TYPE_NAME("x-rv128")
36b80ad9 49#define TYPE_RISCV_CPU_IBEX RISCV_CPU_TYPE_NAME("lowrisc-ibex")
6ddc7069 50#define TYPE_RISCV_CPU_SHAKTI_C RISCV_CPU_TYPE_NAME("shakti-c")
dc5bd18f 51#define TYPE_RISCV_CPU_SIFIVE_E31 RISCV_CPU_TYPE_NAME("sifive-e31")
d784733b 52#define TYPE_RISCV_CPU_SIFIVE_E34 RISCV_CPU_TYPE_NAME("sifive-e34")
dc5bd18f
MC
53#define TYPE_RISCV_CPU_SIFIVE_E51 RISCV_CPU_TYPE_NAME("sifive-e51")
54#define TYPE_RISCV_CPU_SIFIVE_U34 RISCV_CPU_TYPE_NAME("sifive-u34")
55#define TYPE_RISCV_CPU_SIFIVE_U54 RISCV_CPU_TYPE_NAME("sifive-u54")
10f1ca27 56#define TYPE_RISCV_CPU_HOST RISCV_CPU_TYPE_NAME("host")
dc5bd18f 57
c0a635f3
AF
58#if defined(TARGET_RISCV32)
59# define TYPE_RISCV_CPU_BASE TYPE_RISCV_CPU_BASE32
60#elif defined(TARGET_RISCV64)
61# define TYPE_RISCV_CPU_BASE TYPE_RISCV_CPU_BASE64
62#endif
63
dc5bd18f
MC
64#define RV(x) ((target_ulong)1 << (x - 'A'))
65
66#define RVI RV('I')
79f86934 67#define RVE RV('E') /* E and I are mutually exclusive */
dc5bd18f
MC
68#define RVM RV('M')
69#define RVA RV('A')
70#define RVF RV('F')
71#define RVD RV('D')
ad9e5aa2 72#define RVV RV('V')
dc5bd18f
MC
73#define RVC RV('C')
74#define RVS RV('S')
75#define RVU RV('U')
af1fa003 76#define RVH RV('H')
53dcea58 77#define RVJ RV('J')
dc5bd18f
MC
78
79/* S extension denotes that Supervisor mode exists, however it is possible
80 to have a core that support S mode but does not have an MMU and there
81 is currently no bit in misa to indicate whether an MMU exists or not
a88365c1 82 so a cpu features bitfield is required, likewise for optional PMP support */
dc5bd18f 83enum {
a88365c1 84 RISCV_FEATURE_MMU,
f18637cd 85 RISCV_FEATURE_PMP,
4a345b2a 86 RISCV_FEATURE_EPMP,
32b0ada0 87 RISCV_FEATURE_MISA,
1acdb3b0
BM
88 RISCV_FEATURE_AIA,
89 RISCV_FEATURE_DEBUG
dc5bd18f
MC
90};
91
a46d410c
AP
92/* Privileged specification version */
93enum {
94 PRIV_VERSION_1_10_0 = 0,
95 PRIV_VERSION_1_11_0,
3a4af26d 96 PRIV_VERSION_1_12_0,
a46d410c 97};
dc5bd18f 98
9ec6622d 99#define VEXT_VERSION_1_00_0 0x00010000
32931383 100
33a9a57d
YJ
101enum {
102 TRANSLATE_SUCCESS,
103 TRANSLATE_FAIL,
104 TRANSLATE_PMP_FAIL,
105 TRANSLATE_G_STAGE_FAIL
106};
107
dc5bd18f
MC
108#define MMU_USER_IDX 3
109
110#define MAX_RISCV_PMPS (16)
111
1ea4a06a 112typedef struct CPUArchState CPURISCVState;
dc5bd18f 113
bbf3d1b4 114#if !defined(CONFIG_USER_ONLY)
dc5bd18f 115#include "pmp.h"
95799e36 116#include "debug.h"
bbf3d1b4 117#endif
dc5bd18f 118
8a4b5257 119#define RV_VLEN_MAX 1024
3780e337 120#define RV_MAX_MHPMEVENTS 32
621f35bb 121#define RV_MAX_MHPMCOUNTERS 32
ad9e5aa2 122
33f1beaf
FC
123FIELD(VTYPE, VLMUL, 0, 3)
124FIELD(VTYPE, VSEW, 3, 3)
3479a814
FC
125FIELD(VTYPE, VTA, 6, 1)
126FIELD(VTYPE, VMA, 7, 1)
33f1beaf
FC
127FIELD(VTYPE, VEDIV, 8, 2)
128FIELD(VTYPE, RESERVED, 10, sizeof(target_ulong) * 8 - 11)
2b7168fc 129
3780e337
AP
130typedef struct PMUCTRState {
131 /* Current value of a counter */
132 target_ulong mhpmcounter_val;
133 /* Current value of a counter in RV32*/
134 target_ulong mhpmcounterh_val;
135 /* Snapshot values of counter */
136 target_ulong mhpmcounter_prev;
137 /* Snapshort value of a counter in RV32 */
138 target_ulong mhpmcounterh_prev;
139 bool started;
140} PMUCTRState;
141
1ea4a06a 142struct CPUArchState {
dc5bd18f 143 target_ulong gpr[32];
2b547084 144 target_ulong gprh[32]; /* 64 top bits of the 128-bit registers */
dc5bd18f 145 uint64_t fpr[32]; /* assume both F and D extensions */
ad9e5aa2
LZ
146
147 /* vector coprocessor state. */
148 uint64_t vreg[32 * RV_VLEN_MAX / 64] QEMU_ALIGNED(16);
149 target_ulong vxrm;
150 target_ulong vxsat;
151 target_ulong vl;
152 target_ulong vstart;
153 target_ulong vtype;
d96a271a 154 bool vill;
ad9e5aa2 155
dc5bd18f
MC
156 target_ulong pc;
157 target_ulong load_res;
158 target_ulong load_val;
159
160 target_ulong frm;
161
162 target_ulong badaddr;
62cf0245 163 target_ulong bins;
48eaeb56 164
36a18664 165 target_ulong guest_phys_fault_addr;
dc5bd18f 166
dc5bd18f 167 target_ulong priv_ver;
d2c1a177 168 target_ulong bext_ver;
32931383 169 target_ulong vext_ver;
e91a7227
RH
170
171 /* RISCVMXL, but uint32_t for vmstate migration */
172 uint32_t misa_mxl; /* current mxl */
173 uint32_t misa_mxl_max; /* max mxl for this cpu */
174 uint32_t misa_ext; /* current extensions */
175 uint32_t misa_ext_mask; /* max ext for this cpu */
440544e1 176 uint32_t xl; /* current xlen */
dc5bd18f 177
b3a5d1fb
FP
178 /* 128-bit helpers upper part return value */
179 target_ulong retxh;
180
dc5bd18f
MC
181 uint32_t features;
182
5836c3ec
KC
183#ifdef CONFIG_USER_ONLY
184 uint32_t elf_flags;
185#endif
186
dc5bd18f
MC
187#ifndef CONFIG_USER_ONLY
188 target_ulong priv;
ef6bb7b6
AF
189 /* This contains QEMU specific information about the virt state. */
190 target_ulong virt;
cd032fe7 191 target_ulong geilen;
dc5bd18f
MC
192 target_ulong resetvec;
193
194 target_ulong mhartid;
284d697c
YJ
195 /*
196 * For RV32 this is 32-bit mstatus and 32-bit mstatush.
197 * For RV64 this is a 64-bit mstatus.
198 */
199 uint64_t mstatus;
85ba724f 200
d028ac75 201 uint64_t mip;
33fe584f
AF
202 /*
203 * MIP contains the software writable version of SEIP ORed with the
204 * external interrupt value. The MIP register is always up-to-date.
205 * To keep track of the current source, we also save booleans of the values
206 * here.
207 */
208 bool external_seip;
209 bool software_seip;
66e594f2 210
d028ac75 211 uint64_t miclaim;
85ba724f 212
d028ac75
AP
213 uint64_t mie;
214 uint64_t mideleg;
dc5bd18f 215
dc5bd18f 216 target_ulong satp; /* since: priv-1.10.0 */
ac12b601 217 target_ulong stval;
dc5bd18f
MC
218 target_ulong medeleg;
219
220 target_ulong stvec;
221 target_ulong sepc;
222 target_ulong scause;
223
224 target_ulong mtvec;
225 target_ulong mepc;
226 target_ulong mcause;
227 target_ulong mtval; /* since: priv-1.10.0 */
228
43dc93af
AP
229 /* Machine and Supervisor interrupt priorities */
230 uint8_t miprio[64];
231 uint8_t siprio[64];
232
d1ceff40
AP
233 /* AIA CSRs */
234 target_ulong miselect;
235 target_ulong siselect;
236
bd023ce3
AF
237 /* Hypervisor CSRs */
238 target_ulong hstatus;
239 target_ulong hedeleg;
d028ac75 240 uint64_t hideleg;
bd023ce3
AF
241 target_ulong hcounteren;
242 target_ulong htval;
243 target_ulong htinst;
244 target_ulong hgatp;
cd032fe7
AP
245 target_ulong hgeie;
246 target_ulong hgeip;
c6957248 247 uint64_t htimedelta;
bd023ce3 248
43dc93af 249 /* Hypervisor controlled virtual interrupt priorities */
2b602398 250 target_ulong hvictl;
43dc93af
AP
251 uint8_t hviprio[64];
252
2c64ab66
FP
253 /* Upper 64-bits of 128-bit CSRs */
254 uint64_t mscratchh;
255 uint64_t sscratchh;
256
bd023ce3 257 /* Virtual CSRs */
284d697c
YJ
258 /*
259 * For RV32 this is 32-bit vsstatus and 32-bit vsstatush.
260 * For RV64 this is a 64-bit vsstatus.
261 */
262 uint64_t vsstatus;
bd023ce3
AF
263 target_ulong vstvec;
264 target_ulong vsscratch;
265 target_ulong vsepc;
266 target_ulong vscause;
267 target_ulong vstval;
268 target_ulong vsatp;
269
d1ceff40
AP
270 /* AIA VS-mode CSRs */
271 target_ulong vsiselect;
272
bd023ce3
AF
273 target_ulong mtval2;
274 target_ulong mtinst;
275
66e594f2
AF
276 /* HS Backup CSRs */
277 target_ulong stvec_hs;
278 target_ulong sscratch_hs;
279 target_ulong sepc_hs;
280 target_ulong scause_hs;
281 target_ulong stval_hs;
282 target_ulong satp_hs;
284d697c 283 uint64_t mstatus_hs;
66e594f2 284
ec352d0c
GK
285 /* Signals whether the current exception occurred with two-stage address
286 translation active. */
287 bool two_stage_lookup;
8e2aa21b
AP
288 /*
289 * Signals whether the current exception occurred while doing two-stage
290 * address translation for the VS-stage page table walk.
291 */
292 bool two_stage_indirect_lookup;
ec352d0c 293
8c59f5c1
MC
294 target_ulong scounteren;
295 target_ulong mcounteren;
dc5bd18f 296
b1675eeb
AP
297 target_ulong mcountinhibit;
298
3780e337
AP
299 /* PMU counter state */
300 PMUCTRState pmu_ctrs[RV_MAX_MHPMCOUNTERS];
621f35bb 301
3780e337 302 /* PMU event selector configured values. First three are unused*/
621f35bb
AP
303 target_ulong mhpmevent_val[RV_MAX_MHPMEVENTS];
304
dc5bd18f
MC
305 target_ulong sscratch;
306 target_ulong mscratch;
307
308 /* temporary htif regs */
309 uint64_t mfromhost;
310 uint64_t mtohost;
311 uint64_t timecmp;
312
313 /* physical memory protection */
314 pmp_table_t pmp_state;
2582a95c 315 target_ulong mseccfg;
753e3fe2 316
95799e36
BM
317 /* trigger module */
318 target_ulong trigger_cur;
319 type2_trigger_t type2_trig[TRIGGER_TYPE2_NUM];
320
c6957248 321 /* machine specific rdtime callback */
e2f01f3c
FC
322 uint64_t (*rdtime_fn)(void *);
323 void *rdtime_fn_arg;
c6957248 324
69077dd6
AP
325 /* machine specific AIA ireg read-modify-write callback */
326#define AIA_MAKE_IREG(__isel, __priv, __virt, __vgein, __xlen) \
327 ((((__xlen) & 0xff) << 24) | \
328 (((__vgein) & 0x3f) << 20) | \
329 (((__virt) & 0x1) << 18) | \
330 (((__priv) & 0x3) << 16) | \
331 (__isel & 0xffff))
332#define AIA_IREG_ISEL(__ireg) ((__ireg) & 0xffff)
333#define AIA_IREG_PRIV(__ireg) (((__ireg) >> 16) & 0x3)
334#define AIA_IREG_VIRT(__ireg) (((__ireg) >> 18) & 0x1)
335#define AIA_IREG_VGEIN(__ireg) (((__ireg) >> 20) & 0x3f)
336#define AIA_IREG_XLEN(__ireg) (((__ireg) >> 24) & 0xff)
337 int (*aia_ireg_rmw_fn[4])(void *arg, target_ulong reg,
338 target_ulong *val, target_ulong new_val, target_ulong write_mask);
339 void *aia_ireg_rmw_fn_arg[4];
340
753e3fe2
JW
341 /* True if in debugger mode. */
342 bool debugger;
4bbe8033
AB
343
344 /*
345 * CSRs for PointerMasking extension
346 */
347 target_ulong mmte;
348 target_ulong mpmmask;
349 target_ulong mpmbase;
350 target_ulong spmmask;
351 target_ulong spmbase;
352 target_ulong upmmask;
353 target_ulong upmbase;
29a9ec9b
AP
354
355 /* CSRs for execution enviornment configuration */
356 uint64_t menvcfg;
357 target_ulong senvcfg;
358 uint64_t henvcfg;
dc5bd18f 359#endif
40bfa5f6
LZ
360 target_ulong cur_pmmask;
361 target_ulong cur_pmbase;
dc5bd18f
MC
362
363 float_status fp_status;
364
dc5bd18f
MC
365 /* Fields from here on are preserved across CPU reset. */
366 QEMUTimer *timer; /* Internal timer */
ad40be27
YJ
367
368 hwaddr kernel_addr;
369 hwaddr fdt_addr;
27abe66f
YJ
370
371 /* kvm timer */
372 bool kvm_timer_dirty;
373 uint64_t kvm_timer_time;
374 uint64_t kvm_timer_compare;
375 uint64_t kvm_timer_state;
376 uint64_t kvm_timer_frequency;
dc5bd18f
MC
377};
378
9295b1aa 379OBJECT_DECLARE_CPU_TYPE(RISCVCPU, RISCVCPUClass, RISCV_CPU)
dc5bd18f
MC
380
381/**
382 * RISCVCPUClass:
383 * @parent_realize: The parent class' realize handler.
384 * @parent_reset: The parent class' reset handler.
385 *
386 * A RISCV CPU model.
387 */
db1015e9 388struct RISCVCPUClass {
dc5bd18f
MC
389 /*< private >*/
390 CPUClass parent_class;
391 /*< public >*/
392 DeviceRealize parent_realize;
781c67ca 393 DeviceReset parent_reset;
db1015e9 394};
dc5bd18f 395
466292bd
PT
396struct RISCVCPUConfig {
397 bool ext_i;
398 bool ext_e;
399 bool ext_g;
400 bool ext_m;
401 bool ext_a;
402 bool ext_f;
403 bool ext_d;
404 bool ext_c;
405 bool ext_s;
406 bool ext_u;
407 bool ext_h;
408 bool ext_j;
409 bool ext_v;
410 bool ext_zba;
411 bool ext_zbb;
412 bool ext_zbc;
eef82872
WL
413 bool ext_zbkb;
414 bool ext_zbkc;
415 bool ext_zbkx;
466292bd 416 bool ext_zbs;
eef82872
WL
417 bool ext_zk;
418 bool ext_zkn;
419 bool ext_zknd;
420 bool ext_zkne;
421 bool ext_zknh;
422 bool ext_zkr;
423 bool ext_zks;
424 bool ext_zksed;
425 bool ext_zksh;
426 bool ext_zkt;
466292bd
PT
427 bool ext_ifencei;
428 bool ext_icsr;
c5d77ddd 429 bool ext_svinval;
05e6ca5e
GR
430 bool ext_svnapot;
431 bool ext_svpbmt;
89ffdcec 432 bool ext_zdinx;
466292bd
PT
433 bool ext_zfh;
434 bool ext_zfhmin;
89ffdcec
WL
435 bool ext_zfinx;
436 bool ext_zhinx;
437 bool ext_zhinxmin;
466292bd
PT
438 bool ext_zve32f;
439 bool ext_zve64f;
de799beb 440 bool ext_zmmul;
f1eed927 441 bool rvv_ta_all_1s;
466292bd 442
9951ba94
FC
443 uint32_t mvendorid;
444 uint64_t marchid;
075eeda9 445 uint64_t mimpid;
9951ba94 446
0d429bd2
PT
447 /* Vendor-specific custom extensions */
448 bool ext_XVentanaCondOps;
449
18d6d89e 450 uint8_t pmu_num;
466292bd
PT
451 char *priv_spec;
452 char *user_spec;
453 char *bext_spec;
454 char *vext_spec;
455 uint16_t vlen;
456 uint16_t elen;
457 bool mmu;
458 bool pmp;
459 bool epmp;
91870b51 460 bool aia;
1acdb3b0 461 bool debug;
466292bd 462 uint64_t resetvec;
a4a9a443
TO
463
464 bool short_isa_string;
466292bd
PT
465};
466
467typedef struct RISCVCPUConfig RISCVCPUConfig;
468
dc5bd18f
MC
469/**
470 * RISCVCPU:
471 * @env: #CPURISCVState
472 *
473 * A RISCV CPU.
474 */
b36e239e 475struct ArchCPU {
dc5bd18f
MC
476 /*< private >*/
477 CPUState parent_obj;
478 /*< public >*/
5b146dc7 479 CPUNegativeOffsetState neg;
dc5bd18f 480 CPURISCVState env;
c4e95030 481
b93777e1 482 char *dyn_csr_xml;
719d3561 483 char *dyn_vreg_xml;
b93777e1 484
c4e95030 485 /* Configuration Settings */
466292bd 486 RISCVCPUConfig cfg;
db1015e9 487};
dc5bd18f 488
dc5bd18f
MC
489static inline int riscv_has_ext(CPURISCVState *env, target_ulong ext)
490{
e91a7227 491 return (env->misa_ext & ext) != 0;
dc5bd18f
MC
492}
493
494static inline bool riscv_feature(CPURISCVState *env, int feature)
495{
496 return env->features & (1ULL << feature);
497}
498
f87adf23
AP
499static inline void riscv_set_feature(CPURISCVState *env, int feature)
500{
501 env->features |= (1ULL << feature);
502}
503
dc5bd18f 504#include "cpu_user.h"
dc5bd18f
MC
505
506extern const char * const riscv_int_regnames[];
2b547084 507extern const char * const riscv_int_regnamesh[];
dc5bd18f 508extern const char * const riscv_fpr_regnames[];
dc5bd18f 509
c51a3f5d 510const char *riscv_cpu_get_trap_name(target_ulong cause, bool async);
dc5bd18f 511void riscv_cpu_do_interrupt(CPUState *cpu);
43a96588
YJ
512int riscv_cpu_write_elf64_note(WriteCoreDumpFunction f, CPUState *cs,
513 int cpuid, void *opaque);
514int riscv_cpu_write_elf32_note(WriteCoreDumpFunction f, CPUState *cs,
515 int cpuid, void *opaque);
a010bdbe 516int riscv_cpu_gdb_read_register(CPUState *cpu, GByteArray *buf, int reg);
dc5bd18f 517int riscv_cpu_gdb_write_register(CPUState *cpu, uint8_t *buf, int reg);
43dc93af
AP
518int riscv_cpu_hviprio_index2irq(int index, int *out_irq, int *out_rdzero);
519uint8_t riscv_cpu_default_priority(int irq);
8f42415f 520uint64_t riscv_cpu_all_pending(CPURISCVState *env);
43dc93af
AP
521int riscv_cpu_mirq_pending(CPURISCVState *env);
522int riscv_cpu_sirq_pending(CPURISCVState *env);
523int riscv_cpu_vsirq_pending(CPURISCVState *env);
b345b480 524bool riscv_cpu_fp_enabled(CPURISCVState *env);
cd032fe7
AP
525target_ulong riscv_cpu_get_geilen(CPURISCVState *env);
526void riscv_cpu_set_geilen(CPURISCVState *env, target_ulong geilen);
61b4b69d 527bool riscv_cpu_vector_enabled(CPURISCVState *env);
ef6bb7b6
AF
528bool riscv_cpu_virt_enabled(CPURISCVState *env);
529void riscv_cpu_set_virt_enabled(CPURISCVState *env, bool enable);
1c1c060a 530bool riscv_cpu_two_stage_lookup(int mmu_idx);
dc5bd18f
MC
531int riscv_cpu_mmu_index(CPURISCVState *env, bool ifetch);
532hwaddr riscv_cpu_get_phys_page_debug(CPUState *cpu, vaddr addr);
8905770b
MAL
533G_NORETURN void riscv_cpu_do_unaligned_access(CPUState *cs, vaddr addr,
534 MMUAccessType access_type, int mmu_idx,
535 uintptr_t retaddr);
8a4ca3c1
RH
536bool riscv_cpu_tlb_fill(CPUState *cs, vaddr address, int size,
537 MMUAccessType access_type, int mmu_idx,
538 bool probe, uintptr_t retaddr);
37207e12
PD
539void riscv_cpu_do_transaction_failed(CPUState *cs, hwaddr physaddr,
540 vaddr addr, unsigned size,
541 MMUAccessType access_type,
542 int mmu_idx, MemTxAttrs attrs,
543 MemTxResult response, uintptr_t retaddr);
dc5bd18f 544char *riscv_isa_string(RISCVCPU *cpu);
0442428a 545void riscv_cpu_list(void);
dc5bd18f 546
dc5bd18f
MC
547#define cpu_list riscv_cpu_list
548#define cpu_mmu_index riscv_cpu_mmu_index
549
85ba724f 550#ifndef CONFIG_USER_ONLY
17b3c353 551bool riscv_cpu_exec_interrupt(CPUState *cs, int interrupt_request);
66e594f2 552void riscv_cpu_swap_hypervisor_regs(CPURISCVState *env);
d028ac75
AP
553int riscv_cpu_claim_interrupts(RISCVCPU *cpu, uint64_t interrupts);
554uint64_t riscv_cpu_update_mip(RISCVCPU *cpu, uint64_t mask, uint64_t value);
85ba724f 555#define BOOL_TO_MASK(x) (-!!(x)) /* helper for riscv_cpu_update_mip value */
e2f01f3c
FC
556void riscv_cpu_set_rdtime_fn(CPURISCVState *env, uint64_t (*fn)(void *),
557 void *arg);
69077dd6
AP
558void riscv_cpu_set_aia_ireg_rmw_fn(CPURISCVState *env, uint32_t priv,
559 int (*rmw_fn)(void *arg,
560 target_ulong reg,
561 target_ulong *val,
562 target_ulong new_val,
563 target_ulong write_mask),
564 void *rmw_fn_arg);
85ba724f 565#endif
fb738839 566void riscv_cpu_set_mode(CPURISCVState *env, target_ulong newpriv);
dc5bd18f
MC
567
568void riscv_translate_init(void);
8905770b
MAL
569G_NORETURN void riscv_raise_exception(CPURISCVState *env,
570 uint32_t exception, uintptr_t pc);
dc5bd18f 571
fb738839
MC
572target_ulong riscv_cpu_get_fflags(CPURISCVState *env);
573void riscv_cpu_set_fflags(CPURISCVState *env, target_ulong);
dc5bd18f 574
c445593d
AF
575#define TB_FLAGS_PRIV_MMU_MASK 3
576#define TB_FLAGS_PRIV_HYP_ACCESS_MASK (1 << 2)
83a71719 577#define TB_FLAGS_MSTATUS_FS MSTATUS_FS
61b4b69d 578#define TB_FLAGS_MSTATUS_VS MSTATUS_VS
dc5bd18f 579
2b7168fc
LZ
580#include "exec/cpu-all.h"
581
61d56494 582FIELD(TB_FLAGS, MEM_IDX, 0, 3)
33f1beaf 583FIELD(TB_FLAGS, LMUL, 3, 3)
61d56494 584FIELD(TB_FLAGS, SEW, 6, 3)
33f1beaf
FC
585/* Skip MSTATUS_VS (0x600) bits */
586FIELD(TB_FLAGS, VL_EQ_VLMAX, 11, 1)
587FIELD(TB_FLAGS, VILL, 12, 1)
588/* Skip MSTATUS_FS (0x6000) bits */
743077b3 589/* Is a Hypervisor instruction load/store allowed? */
33f1beaf
FC
590FIELD(TB_FLAGS, HLSX, 15, 1)
591FIELD(TB_FLAGS, MSTATUS_HS_FS, 16, 2)
592FIELD(TB_FLAGS, MSTATUS_HS_VS, 18, 2)
92371bd9 593/* The combination of MXL/SXL/UXL that applies to the current cpu mode. */
33f1beaf 594FIELD(TB_FLAGS, XL, 20, 2)
0774a7a1 595/* If PointerMasking should be applied */
4208dc7e
LZ
596FIELD(TB_FLAGS, PM_MASK_ENABLED, 22, 1)
597FIELD(TB_FLAGS, PM_BASE_ENABLED, 23, 1)
f1eed927 598FIELD(TB_FLAGS, VTA, 24, 1)
2b7168fc 599
db23e5d9
RH
600#ifdef TARGET_RISCV32
601#define riscv_cpu_mxl(env) ((void)(env), MXL_RV32)
602#else
603static inline RISCVMXL riscv_cpu_mxl(CPURISCVState *env)
604{
605 return env->misa_mxl;
606}
607#endif
2b602398 608#define riscv_cpu_mxl_bits(env) (1UL << (4 + riscv_cpu_mxl(env)))
51ae0cab 609
440544e1
LZ
610#if defined(TARGET_RISCV32)
611#define cpu_recompute_xl(env) ((void)(env), MXL_RV32)
612#else
613static inline RISCVMXL cpu_recompute_xl(CPURISCVState *env)
614{
615 RISCVMXL xl = env->misa_mxl;
616#if !defined(CONFIG_USER_ONLY)
617 /*
618 * When emulating a 32-bit-only cpu, use RV32.
619 * When emulating a 64-bit cpu, and MXL has been reduced to RV32,
620 * MSTATUSH doesn't have UXL/SXL, therefore XLEN cannot be widened
621 * back to RV64 for lower privs.
622 */
623 if (xl != MXL_RV32) {
624 switch (env->priv) {
625 case PRV_M:
626 break;
627 case PRV_U:
628 xl = get_field(env->mstatus, MSTATUS64_UXL);
629 break;
630 default: /* PRV_S | PRV_H */
631 xl = get_field(env->mstatus, MSTATUS64_SXL);
632 break;
633 }
634 }
635#endif
636 return xl;
637}
638#endif
639
31961cfe
LZ
640static inline int riscv_cpu_xlen(CPURISCVState *env)
641{
642 return 16 << env->xl;
643}
644
05e6ca5e
GR
645#ifdef TARGET_RISCV32
646#define riscv_cpu_sxl(env) ((void)(env), MXL_RV32)
647#else
648static inline RISCVMXL riscv_cpu_sxl(CPURISCVState *env)
649{
650#ifdef CONFIG_USER_ONLY
651 return env->misa_mxl;
652#else
653 return get_field(env->mstatus, MSTATUS64_SXL);
654#endif
655}
656#endif
657
2b7168fc 658/*
a689a82b
FC
659 * Encode LMUL to lmul as follows:
660 * LMUL vlmul lmul
661 * 1 000 0
662 * 2 001 1
663 * 4 010 2
664 * 8 011 3
665 * - 100 -
666 * 1/8 101 -3
667 * 1/4 110 -2
668 * 1/2 111 -1
669 *
670 * then, we can calculate VLMAX = vlen >> (vsew + 3 - lmul)
671 * e.g. vlen = 256 bits, SEW = 16, LMUL = 1/8
672 * => VLMAX = vlen >> (1 + 3 - (-3))
673 * = 256 >> 7
674 * = 2
2b7168fc
LZ
675 */
676static inline uint32_t vext_get_vlmax(RISCVCPU *cpu, target_ulong vtype)
677{
a689a82b
FC
678 uint8_t sew = FIELD_EX64(vtype, VTYPE, VSEW);
679 int8_t lmul = sextract32(FIELD_EX64(vtype, VTYPE, VLMUL), 0, 3);
2b7168fc
LZ
680 return cpu->cfg.vlen >> (sew + 3 - lmul);
681}
682
53677acf
RH
683void cpu_get_tb_cpu_state(CPURISCVState *env, target_ulong *pc,
684 target_ulong *cs_base, uint32_t *pflags);
dc5bd18f 685
40bfa5f6
LZ
686void riscv_cpu_update_mask(CPURISCVState *env);
687
533c91e8
AF
688RISCVException riscv_csrrw(CPURISCVState *env, int csrno,
689 target_ulong *ret_value,
690 target_ulong new_value, target_ulong write_mask);
691RISCVException riscv_csrrw_debug(CPURISCVState *env, int csrno,
692 target_ulong *ret_value,
693 target_ulong new_value,
694 target_ulong write_mask);
c7b95171 695
fb738839
MC
696static inline void riscv_csr_write(CPURISCVState *env, int csrno,
697 target_ulong val)
c7b95171
MC
698{
699 riscv_csrrw(env, csrno, NULL, val, MAKE_64BIT_MASK(0, TARGET_LONG_BITS));
700}
701
fb738839 702static inline target_ulong riscv_csr_read(CPURISCVState *env, int csrno)
c7b95171
MC
703{
704 target_ulong val = 0;
705 riscv_csrrw(env, csrno, &val, 0, 0);
706 return val;
707}
708
0e62f92e
AF
709typedef RISCVException (*riscv_csr_predicate_fn)(CPURISCVState *env,
710 int csrno);
605def6e
AF
711typedef RISCVException (*riscv_csr_read_fn)(CPURISCVState *env, int csrno,
712 target_ulong *ret_value);
713typedef RISCVException (*riscv_csr_write_fn)(CPURISCVState *env, int csrno,
714 target_ulong new_value);
715typedef RISCVException (*riscv_csr_op_fn)(CPURISCVState *env, int csrno,
716 target_ulong *ret_value,
717 target_ulong new_value,
718 target_ulong write_mask);
c7b95171 719
961738ff
FP
720RISCVException riscv_csrrw_i128(CPURISCVState *env, int csrno,
721 Int128 *ret_value,
722 Int128 new_value, Int128 write_mask);
723
457c360f
FP
724typedef RISCVException (*riscv_csr_read128_fn)(CPURISCVState *env, int csrno,
725 Int128 *ret_value);
726typedef RISCVException (*riscv_csr_write128_fn)(CPURISCVState *env, int csrno,
727 Int128 new_value);
728
c7b95171 729typedef struct {
8ceac5dc 730 const char *name;
a88365c1 731 riscv_csr_predicate_fn predicate;
c7b95171
MC
732 riscv_csr_read_fn read;
733 riscv_csr_write_fn write;
734 riscv_csr_op_fn op;
457c360f
FP
735 riscv_csr_read128_fn read128;
736 riscv_csr_write128_fn write128;
a4b2fa43
AP
737 /* The default priv spec version should be PRIV_VERSION_1_10_0 (i.e 0) */
738 uint32_t min_priv_ver;
c7b95171
MC
739} riscv_csr_operations;
740
56118ee8
BM
741/* CSR function table constants */
742enum {
743 CSR_TABLE_SIZE = 0x1000
744};
745
746/* CSR function table */
6f03770d 747extern riscv_csr_operations csr_ops[CSR_TABLE_SIZE];
56118ee8 748
c7b95171
MC
749void riscv_get_csr_ops(int csrno, riscv_csr_operations *ops);
750void riscv_set_csr_ops(int csrno, riscv_csr_operations *ops);
dc5bd18f 751
5371f5cd
JW
752void riscv_cpu_register_gdb_regs_for_features(CPUState *cs);
753
dc5bd18f 754#endif /* RISCV_CPU_H */