1 /* 2 * S/390 misc helper routines 3 * 4 * Copyright (c) 2009 Ulrich Hecht 5 * Copyright (c) 2009 Alexander Graf 6 * 7 * This library is free software; you can redistribute it and/or 8 * modify it under the terms of the GNU Lesser General Public 9 * License as published by the Free Software Foundation; either 10 * version 2.1 of the License, or (at your option) any later version. 11 * 12 * This library is distributed in the hope that it will be useful, 13 * but WITHOUT ANY WARRANTY; without even the implied warranty of 14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 15 * Lesser General Public License for more details. 16 * 17 * You should have received a copy of the GNU Lesser General Public 18 * License along with this library; if not, see <http://www.gnu.org/licenses/>. 19 */ 20 21 #include "qemu/osdep.h" 22 #include "qemu/cutils.h" 23 #include "qemu/log.h" 24 #include "cpu.h" 25 #include "s390x-internal.h" 26 #include "qemu/host-utils.h" 27 #include "exec/helper-proto.h" 28 #include "qemu/timer.h" 29 #include "exec/cputlb.h" 30 #include "accel/tcg/cpu-ldst.h" 31 #include "exec/target_page.h" 32 #include "qapi/error.h" 33 #include "tcg_s390x.h" 34 #include "s390-tod.h" 35 36 #if !defined(CONFIG_USER_ONLY) 37 #include "system/cpus.h" 38 #include "system/system.h" 39 #include "hw/s390x/ebcdic.h" 40 #include "hw/s390x/s390-hypercall.h" 41 #include "hw/s390x/sclp.h" 42 #include "hw/s390x/s390_flic.h" 43 #include "hw/s390x/ioinst.h" 44 #include "hw/s390x/s390-pci-inst.h" 45 #include "hw/boards.h" 46 #include "hw/s390x/tod.h" 47 #include CONFIG_DEVICES 48 #endif 49 50 /* #define DEBUG_HELPER */ 51 #ifdef DEBUG_HELPER 52 #define HELPER_LOG(x...) qemu_log(x) 53 #else 54 #define HELPER_LOG(x...) 55 #endif 56 57 /* Raise an exception statically from a TB. */ 58 void HELPER(exception)(CPUS390XState *env, uint32_t excp) 59 { 60 CPUState *cs = env_cpu(env); 61 62 HELPER_LOG("%s: exception %d\n", __func__, excp); 63 cs->exception_index = excp; 64 cpu_loop_exit(cs); 65 } 66 67 /* Store CPU Timer (also used for EXTRACT CPU TIME) */ 68 uint64_t HELPER(stpt)(CPUS390XState *env) 69 { 70 #if defined(CONFIG_USER_ONLY) 71 /* 72 * Fake a descending CPU timer. We could get negative values here, 73 * but we don't care as it is up to the OS when to process that 74 * interrupt and reset to > 0. 75 */ 76 return UINT64_MAX - (uint64_t)cpu_get_host_ticks(); 77 #else 78 return time2tod(env->cputm - qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL)); 79 #endif 80 } 81 82 /* Store Clock */ 83 uint64_t HELPER(stck)(CPUS390XState *env) 84 { 85 #ifdef CONFIG_USER_ONLY 86 struct timespec ts; 87 uint64_t ns; 88 89 clock_gettime(CLOCK_REALTIME, &ts); 90 ns = ts.tv_sec * NANOSECONDS_PER_SECOND + ts.tv_nsec; 91 92 return TOD_UNIX_EPOCH + time2tod(ns); 93 #else 94 S390TODState *td = s390_get_todstate(); 95 S390TODClass *tdc = S390_TOD_GET_CLASS(td); 96 S390TOD tod; 97 98 tdc->get(td, &tod, &error_abort); 99 return tod.low; 100 #endif 101 } 102 103 #ifndef CONFIG_USER_ONLY 104 /* SCLP service call */ 105 uint32_t HELPER(servc)(CPUS390XState *env, uint64_t r1, uint64_t r2) 106 { 107 bql_lock(); 108 int r = sclp_service_call(env_archcpu(env), r1, r2); 109 bql_unlock(); 110 if (r < 0) { 111 tcg_s390_program_interrupt(env, -r, GETPC()); 112 } 113 return r; 114 } 115 116 void HELPER(diag)(CPUS390XState *env, uint32_t r1, uint32_t r3, uint32_t num) 117 { 118 uint64_t r; 119 120 switch (num) { 121 #ifdef CONFIG_S390_CCW_VIRTIO 122 case 0x500: 123 /* QEMU/KVM hypercall */ 124 bql_lock(); 125 handle_diag_500(env_archcpu(env), GETPC()); 126 bql_unlock(); 127 r = 0; 128 break; 129 #endif /* CONFIG_S390_CCW_VIRTIO */ 130 case 0x44: 131 /* yield */ 132 r = 0; 133 break; 134 case 0x308: 135 /* ipl */ 136 bql_lock(); 137 handle_diag_308(env, r1, r3, GETPC()); 138 bql_unlock(); 139 r = 0; 140 break; 141 case 0x288: 142 /* time bomb (watchdog) */ 143 r = handle_diag_288(env, r1, r3); 144 break; 145 default: 146 r = -1; 147 break; 148 } 149 150 if (r) { 151 tcg_s390_program_interrupt(env, PGM_SPECIFICATION, GETPC()); 152 } 153 } 154 155 /* Set Prefix */ 156 void HELPER(spx)(CPUS390XState *env, uint64_t a1) 157 { 158 const uint32_t prefix = a1 & 0x7fffe000; 159 const uint32_t old_prefix = env->psa; 160 CPUState *cs = env_cpu(env); 161 162 if (prefix == old_prefix) { 163 return; 164 } 165 /* 166 * Since prefix got aligned to 8k and memory increments are a multiple of 167 * 8k checking the first page is sufficient 168 */ 169 if (!mmu_absolute_addr_valid(prefix, true)) { 170 tcg_s390_program_interrupt(env, PGM_ADDRESSING, GETPC()); 171 } 172 173 env->psa = prefix; 174 HELPER_LOG("prefix: %#x\n", prefix); 175 tlb_flush_page(cs, 0); 176 tlb_flush_page(cs, TARGET_PAGE_SIZE); 177 if (prefix != 0) { 178 tlb_flush_page(cs, prefix); 179 tlb_flush_page(cs, prefix + TARGET_PAGE_SIZE); 180 } 181 if (old_prefix != 0) { 182 tlb_flush_page(cs, old_prefix); 183 tlb_flush_page(cs, old_prefix + TARGET_PAGE_SIZE); 184 } 185 } 186 187 static void update_ckc_timer(CPUS390XState *env) 188 { 189 S390TODState *td = s390_get_todstate(); 190 uint64_t time; 191 192 /* stop the timer and remove pending CKC IRQs */ 193 timer_del(env->tod_timer); 194 g_assert(bql_locked()); 195 env->pending_int &= ~INTERRUPT_EXT_CLOCK_COMPARATOR; 196 197 /* the tod has to exceed the ckc, this can never happen if ckc is all 1's */ 198 if (env->ckc == -1ULL) { 199 return; 200 } 201 202 if (env->ckc < td->base.low) { 203 time = 0; 204 } else { 205 /* difference between origins */ 206 time = env->ckc - td->base.low; 207 208 /* nanoseconds */ 209 time = tod2time(time); 210 } 211 212 timer_mod(env->tod_timer, time); 213 } 214 215 /* Set Clock Comparator */ 216 void HELPER(sckc)(CPUS390XState *env, uint64_t ckc) 217 { 218 env->ckc = ckc; 219 220 bql_lock(); 221 update_ckc_timer(env); 222 bql_unlock(); 223 } 224 225 void tcg_s390_tod_updated(CPUState *cs, run_on_cpu_data opaque) 226 { 227 update_ckc_timer(cpu_env(cs)); 228 } 229 230 /* Set Clock */ 231 uint32_t HELPER(sck)(CPUS390XState *env, uint64_t tod_low) 232 { 233 S390TODState *td = s390_get_todstate(); 234 S390TODClass *tdc = S390_TOD_GET_CLASS(td); 235 S390TOD tod = { 236 .high = 0, 237 .low = tod_low, 238 }; 239 240 bql_lock(); 241 tdc->set(td, &tod, &error_abort); 242 bql_unlock(); 243 return 0; 244 } 245 246 /* Set Tod Programmable Field */ 247 void HELPER(sckpf)(CPUS390XState *env, uint64_t r0) 248 { 249 uint32_t val = r0; 250 251 if (val & 0xffff0000) { 252 tcg_s390_program_interrupt(env, PGM_SPECIFICATION, GETPC()); 253 } 254 env->todpr = val; 255 } 256 257 /* Store Clock Comparator */ 258 uint64_t HELPER(stckc)(CPUS390XState *env) 259 { 260 return env->ckc; 261 } 262 263 /* Set CPU Timer */ 264 void HELPER(spt)(CPUS390XState *env, uint64_t time) 265 { 266 if (time == -1ULL) { 267 return; 268 } 269 270 /* nanoseconds */ 271 time = tod2time(time); 272 273 env->cputm = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) + time; 274 275 timer_mod(env->cpu_timer, env->cputm); 276 } 277 278 /* Store System Information */ 279 uint32_t HELPER(stsi)(CPUS390XState *env, uint64_t a0, uint64_t r0, uint64_t r1) 280 { 281 const uintptr_t ra = GETPC(); 282 const uint32_t sel1 = r0 & STSI_R0_SEL1_MASK; 283 const uint32_t sel2 = r1 & STSI_R1_SEL2_MASK; 284 const MachineState *ms = MACHINE(qdev_get_machine()); 285 uint16_t total_cpus = 0, conf_cpus = 0, reserved_cpus = 0; 286 S390CPU *cpu = env_archcpu(env); 287 SysIB sysib = { }; 288 int i, cc = 0; 289 290 if ((r0 & STSI_R0_FC_MASK) > STSI_R0_FC_LEVEL_3) { 291 /* invalid function code: no other checks are performed */ 292 return 3; 293 } 294 295 if ((r0 & STSI_R0_RESERVED_MASK) || (r1 & STSI_R1_RESERVED_MASK)) { 296 tcg_s390_program_interrupt(env, PGM_SPECIFICATION, ra); 297 } 298 299 if ((r0 & STSI_R0_FC_MASK) == STSI_R0_FC_CURRENT) { 300 /* query the current level: no further checks are performed */ 301 env->regs[0] = STSI_R0_FC_LEVEL_3; 302 return 0; 303 } 304 305 if (a0 & ~TARGET_PAGE_MASK) { 306 tcg_s390_program_interrupt(env, PGM_SPECIFICATION, ra); 307 } 308 309 /* count the cpus and split them into configured and reserved ones */ 310 for (i = 0; i < ms->possible_cpus->len; i++) { 311 total_cpus++; 312 if (ms->possible_cpus->cpus[i].cpu) { 313 conf_cpus++; 314 } else { 315 reserved_cpus++; 316 } 317 } 318 319 /* 320 * In theory, we could report Level 1 / Level 2 as current. However, 321 * the Linux kernel will detect this as running under LPAR and assume 322 * that we have a sclp linemode console (which is always present on 323 * LPAR, but not the default for QEMU), therefore not displaying boot 324 * messages and making booting a Linux kernel under TCG harder. 325 * 326 * For now we fake the same SMP configuration on all levels. 327 * 328 * TODO: We could later make the level configurable via the machine 329 * and change defaults (linemode console) based on machine type 330 * and accelerator. 331 */ 332 switch (r0 & STSI_R0_FC_MASK) { 333 case STSI_R0_FC_LEVEL_1: 334 if ((sel1 == 1) && (sel2 == 1)) { 335 /* Basic Machine Configuration */ 336 char type[5] = {}; 337 338 ebcdic_put(sysib.sysib_111.manuf, "QEMU ", 16); 339 /* same as machine type number in STORE CPU ID, but in EBCDIC */ 340 snprintf(type, ARRAY_SIZE(type), "%X", cpu->model->def->type); 341 ebcdic_put(sysib.sysib_111.type, type, 4); 342 /* model number (not stored in STORE CPU ID for z/Architecture) */ 343 ebcdic_put(sysib.sysib_111.model, "QEMU ", 16); 344 ebcdic_put(sysib.sysib_111.sequence, "QEMU ", 16); 345 ebcdic_put(sysib.sysib_111.plant, "QEMU", 4); 346 } else if ((sel1 == 2) && (sel2 == 1)) { 347 /* Basic Machine CPU */ 348 ebcdic_put(sysib.sysib_121.sequence, "QEMUQEMUQEMUQEMU", 16); 349 ebcdic_put(sysib.sysib_121.plant, "QEMU", 4); 350 sysib.sysib_121.cpu_addr = cpu_to_be16(env->core_id); 351 } else if ((sel1 == 2) && (sel2 == 2)) { 352 /* Basic Machine CPUs */ 353 sysib.sysib_122.capability = cpu_to_be32(0x443afc29); 354 sysib.sysib_122.total_cpus = cpu_to_be16(total_cpus); 355 sysib.sysib_122.conf_cpus = cpu_to_be16(conf_cpus); 356 sysib.sysib_122.reserved_cpus = cpu_to_be16(reserved_cpus); 357 } else { 358 cc = 3; 359 } 360 break; 361 case STSI_R0_FC_LEVEL_2: 362 if ((sel1 == 2) && (sel2 == 1)) { 363 /* LPAR CPU */ 364 ebcdic_put(sysib.sysib_221.sequence, "QEMUQEMUQEMUQEMU", 16); 365 ebcdic_put(sysib.sysib_221.plant, "QEMU", 4); 366 sysib.sysib_221.cpu_addr = cpu_to_be16(env->core_id); 367 } else if ((sel1 == 2) && (sel2 == 2)) { 368 /* LPAR CPUs */ 369 sysib.sysib_222.lcpuc = 0x80; /* dedicated */ 370 sysib.sysib_222.total_cpus = cpu_to_be16(total_cpus); 371 sysib.sysib_222.conf_cpus = cpu_to_be16(conf_cpus); 372 sysib.sysib_222.reserved_cpus = cpu_to_be16(reserved_cpus); 373 ebcdic_put(sysib.sysib_222.name, "QEMU ", 8); 374 sysib.sysib_222.caf = cpu_to_be32(1000); 375 sysib.sysib_222.dedicated_cpus = cpu_to_be16(conf_cpus); 376 } else { 377 cc = 3; 378 } 379 break; 380 case STSI_R0_FC_LEVEL_3: 381 if ((sel1 == 2) && (sel2 == 2)) { 382 /* VM CPUs */ 383 sysib.sysib_322.count = 1; 384 sysib.sysib_322.vm[0].total_cpus = cpu_to_be16(total_cpus); 385 sysib.sysib_322.vm[0].conf_cpus = cpu_to_be16(conf_cpus); 386 sysib.sysib_322.vm[0].reserved_cpus = cpu_to_be16(reserved_cpus); 387 sysib.sysib_322.vm[0].caf = cpu_to_be32(1000); 388 /* Linux kernel uses this to distinguish us from z/VM */ 389 ebcdic_put(sysib.sysib_322.vm[0].cpi, "KVM/Linux ", 16); 390 sysib.sysib_322.vm[0].ext_name_encoding = 2; /* UTF-8 */ 391 392 /* If our VM has a name, use the real name */ 393 if (qemu_name) { 394 memset(sysib.sysib_322.vm[0].name, 0x40, 395 sizeof(sysib.sysib_322.vm[0].name)); 396 ebcdic_put(sysib.sysib_322.vm[0].name, qemu_name, 397 MIN(sizeof(sysib.sysib_322.vm[0].name), 398 strlen(qemu_name))); 399 strpadcpy((char *)sysib.sysib_322.ext_names[0], 400 sizeof(sysib.sysib_322.ext_names[0]), 401 qemu_name, '\0'); 402 403 } else { 404 ebcdic_put(sysib.sysib_322.vm[0].name, "TCGguest", 8); 405 strcpy((char *)sysib.sysib_322.ext_names[0], "TCGguest"); 406 } 407 408 /* add the uuid */ 409 memcpy(sysib.sysib_322.vm[0].uuid, &qemu_uuid, 410 sizeof(sysib.sysib_322.vm[0].uuid)); 411 } else { 412 cc = 3; 413 } 414 break; 415 } 416 417 if (cc == 0) { 418 if (s390_cpu_virt_mem_write(cpu, a0, 0, &sysib, sizeof(sysib))) { 419 s390_cpu_virt_mem_handle_exc(cpu, ra); 420 } 421 } 422 423 return cc; 424 } 425 426 uint32_t HELPER(sigp)(CPUS390XState *env, uint64_t order_code, uint32_t r1, 427 uint32_t r3) 428 { 429 int cc; 430 431 /* TODO: needed to inject interrupts - push further down */ 432 bql_lock(); 433 cc = handle_sigp(env, order_code & SIGP_ORDER_MASK, r1, r3); 434 bql_unlock(); 435 436 return cc; 437 } 438 #endif 439 440 #ifndef CONFIG_USER_ONLY 441 void HELPER(xsch)(CPUS390XState *env, uint64_t r1) 442 { 443 S390CPU *cpu = env_archcpu(env); 444 bql_lock(); 445 ioinst_handle_xsch(cpu, r1, GETPC()); 446 bql_unlock(); 447 } 448 449 void HELPER(csch)(CPUS390XState *env, uint64_t r1) 450 { 451 S390CPU *cpu = env_archcpu(env); 452 bql_lock(); 453 ioinst_handle_csch(cpu, r1, GETPC()); 454 bql_unlock(); 455 } 456 457 void HELPER(hsch)(CPUS390XState *env, uint64_t r1) 458 { 459 S390CPU *cpu = env_archcpu(env); 460 bql_lock(); 461 ioinst_handle_hsch(cpu, r1, GETPC()); 462 bql_unlock(); 463 } 464 465 void HELPER(msch)(CPUS390XState *env, uint64_t r1, uint64_t inst) 466 { 467 S390CPU *cpu = env_archcpu(env); 468 bql_lock(); 469 ioinst_handle_msch(cpu, r1, inst >> 16, GETPC()); 470 bql_unlock(); 471 } 472 473 void HELPER(rchp)(CPUS390XState *env, uint64_t r1) 474 { 475 S390CPU *cpu = env_archcpu(env); 476 bql_lock(); 477 ioinst_handle_rchp(cpu, r1, GETPC()); 478 bql_unlock(); 479 } 480 481 void HELPER(rsch)(CPUS390XState *env, uint64_t r1) 482 { 483 S390CPU *cpu = env_archcpu(env); 484 bql_lock(); 485 ioinst_handle_rsch(cpu, r1, GETPC()); 486 bql_unlock(); 487 } 488 489 void HELPER(sal)(CPUS390XState *env, uint64_t r1) 490 { 491 S390CPU *cpu = env_archcpu(env); 492 493 bql_lock(); 494 ioinst_handle_sal(cpu, r1, GETPC()); 495 bql_unlock(); 496 } 497 498 void HELPER(schm)(CPUS390XState *env, uint64_t r1, uint64_t r2, uint64_t inst) 499 { 500 S390CPU *cpu = env_archcpu(env); 501 502 bql_lock(); 503 ioinst_handle_schm(cpu, r1, r2, inst >> 16, GETPC()); 504 bql_unlock(); 505 } 506 507 void HELPER(ssch)(CPUS390XState *env, uint64_t r1, uint64_t inst) 508 { 509 S390CPU *cpu = env_archcpu(env); 510 bql_lock(); 511 ioinst_handle_ssch(cpu, r1, inst >> 16, GETPC()); 512 bql_unlock(); 513 } 514 515 void HELPER(stcrw)(CPUS390XState *env, uint64_t inst) 516 { 517 S390CPU *cpu = env_archcpu(env); 518 519 bql_lock(); 520 ioinst_handle_stcrw(cpu, inst >> 16, GETPC()); 521 bql_unlock(); 522 } 523 524 void HELPER(stsch)(CPUS390XState *env, uint64_t r1, uint64_t inst) 525 { 526 S390CPU *cpu = env_archcpu(env); 527 bql_lock(); 528 ioinst_handle_stsch(cpu, r1, inst >> 16, GETPC()); 529 bql_unlock(); 530 } 531 532 uint32_t HELPER(tpi)(CPUS390XState *env, uint64_t addr) 533 { 534 const uintptr_t ra = GETPC(); 535 S390CPU *cpu = env_archcpu(env); 536 QEMUS390FLICState *flic = s390_get_qemu_flic(s390_get_flic()); 537 QEMUS390FlicIO *io = NULL; 538 LowCore *lowcore; 539 540 if (addr & 0x3) { 541 tcg_s390_program_interrupt(env, PGM_SPECIFICATION, ra); 542 } 543 544 bql_lock(); 545 io = qemu_s390_flic_dequeue_io(flic, env->cregs[6]); 546 if (!io) { 547 bql_unlock(); 548 return 0; 549 } 550 551 if (addr) { 552 struct { 553 uint16_t id; 554 uint16_t nr; 555 uint32_t parm; 556 } intc = { 557 .id = cpu_to_be16(io->id), 558 .nr = cpu_to_be16(io->nr), 559 .parm = cpu_to_be32(io->parm), 560 }; 561 562 if (s390_cpu_virt_mem_write(cpu, addr, 0, &intc, sizeof(intc))) { 563 /* writing failed, reinject and properly clean up */ 564 s390_io_interrupt(io->id, io->nr, io->parm, io->word); 565 bql_unlock(); 566 g_free(io); 567 s390_cpu_virt_mem_handle_exc(cpu, ra); 568 return 0; 569 } 570 } else { 571 /* no protection applies */ 572 lowcore = cpu_map_lowcore(env); 573 lowcore->subchannel_id = cpu_to_be16(io->id); 574 lowcore->subchannel_nr = cpu_to_be16(io->nr); 575 lowcore->io_int_parm = cpu_to_be32(io->parm); 576 lowcore->io_int_word = cpu_to_be32(io->word); 577 cpu_unmap_lowcore(lowcore); 578 } 579 580 g_free(io); 581 bql_unlock(); 582 return 1; 583 } 584 585 void HELPER(tsch)(CPUS390XState *env, uint64_t r1, uint64_t inst) 586 { 587 S390CPU *cpu = env_archcpu(env); 588 bql_lock(); 589 ioinst_handle_tsch(cpu, r1, inst >> 16, GETPC()); 590 bql_unlock(); 591 } 592 593 void HELPER(chsc)(CPUS390XState *env, uint64_t inst) 594 { 595 S390CPU *cpu = env_archcpu(env); 596 bql_lock(); 597 ioinst_handle_chsc(cpu, inst >> 16, GETPC()); 598 bql_unlock(); 599 } 600 #endif 601 602 #ifndef CONFIG_USER_ONLY 603 static G_NORETURN void per_raise_exception(CPUS390XState *env) 604 { 605 trigger_pgm_exception(env, PGM_PER); 606 cpu_loop_exit(env_cpu(env)); 607 } 608 609 static G_NORETURN void per_raise_exception_log(CPUS390XState *env) 610 { 611 qemu_log_mask(CPU_LOG_INT, "PER interrupt after 0x%" PRIx64 "\n", 612 env->per_address); 613 per_raise_exception(env); 614 } 615 616 void HELPER(per_check_exception)(CPUS390XState *env) 617 { 618 /* psw_addr, per_address and int_pgm_ilen are already set. */ 619 if (unlikely(env->per_perc_atmid)) { 620 per_raise_exception_log(env); 621 } 622 } 623 624 /* Check if an address is within the PER starting address and the PER 625 ending address. The address range might loop. */ 626 static inline bool get_per_in_range(CPUS390XState *env, uint64_t addr) 627 { 628 if (env->cregs[10] <= env->cregs[11]) { 629 return env->cregs[10] <= addr && addr <= env->cregs[11]; 630 } else { 631 return env->cregs[10] <= addr || addr <= env->cregs[11]; 632 } 633 } 634 635 void HELPER(per_branch)(CPUS390XState *env, uint64_t dest, uint32_t ilen) 636 { 637 if ((env->cregs[9] & PER_CR9_CONTROL_BRANCH_ADDRESS) 638 && !get_per_in_range(env, dest)) { 639 return; 640 } 641 642 env->psw.addr = dest; 643 env->int_pgm_ilen = ilen; 644 env->per_address = env->gbea; 645 env->per_perc_atmid = PER_CODE_EVENT_BRANCH | get_per_atmid(env); 646 per_raise_exception_log(env); 647 } 648 649 void HELPER(per_ifetch)(CPUS390XState *env, uint32_t ilen) 650 { 651 if (get_per_in_range(env, env->psw.addr)) { 652 env->per_address = env->psw.addr; 653 env->int_pgm_ilen = ilen; 654 env->per_perc_atmid = PER_CODE_EVENT_IFETCH | get_per_atmid(env); 655 656 /* If the instruction has to be nullified, trigger the 657 exception immediately. */ 658 if (env->cregs[9] & PER_CR9_EVENT_IFETCH_NULLIFICATION) { 659 env->per_perc_atmid |= PER_CODE_EVENT_NULLIFICATION; 660 qemu_log_mask(CPU_LOG_INT, "PER interrupt before 0x%" PRIx64 "\n", 661 env->per_address); 662 per_raise_exception(env); 663 } 664 } 665 } 666 667 void HELPER(per_store_real)(CPUS390XState *env, uint32_t ilen) 668 { 669 /* PSW is saved just before calling the helper. */ 670 env->per_address = env->psw.addr; 671 env->int_pgm_ilen = ilen; 672 env->per_perc_atmid = PER_CODE_EVENT_STORE_REAL | get_per_atmid(env); 673 per_raise_exception_log(env); 674 } 675 #endif 676 677 static uint8_t stfl_bytes[2048]; 678 static unsigned int used_stfl_bytes; 679 680 static void prepare_stfl(void) 681 { 682 static bool initialized; 683 int i; 684 685 /* racy, but we don't care, the same values are always written */ 686 if (initialized) { 687 return; 688 } 689 690 s390_get_feat_block(S390_FEAT_TYPE_STFL, stfl_bytes); 691 for (i = 0; i < sizeof(stfl_bytes); i++) { 692 if (stfl_bytes[i]) { 693 used_stfl_bytes = i + 1; 694 } 695 } 696 initialized = true; 697 } 698 699 #ifndef CONFIG_USER_ONLY 700 void HELPER(stfl)(CPUS390XState *env) 701 { 702 LowCore *lowcore; 703 704 lowcore = cpu_map_lowcore(env); 705 prepare_stfl(); 706 memcpy(&lowcore->stfl_fac_list, stfl_bytes, sizeof(lowcore->stfl_fac_list)); 707 cpu_unmap_lowcore(lowcore); 708 } 709 #endif 710 711 uint32_t HELPER(stfle)(CPUS390XState *env, uint64_t addr) 712 { 713 const uintptr_t ra = GETPC(); 714 const int count_bytes = ((env->regs[0] & 0xff) + 1) * 8; 715 int max_bytes; 716 int i; 717 718 if (addr & 0x7) { 719 tcg_s390_program_interrupt(env, PGM_SPECIFICATION, ra); 720 } 721 722 prepare_stfl(); 723 max_bytes = ROUND_UP(used_stfl_bytes, 8); 724 725 /* 726 * The PoP says that doublewords beyond the highest-numbered facility 727 * bit may or may not be stored. However, existing hardware appears to 728 * not store the words, and existing software depend on that. 729 */ 730 for (i = 0; i < MIN(count_bytes, max_bytes); ++i) { 731 cpu_stb_data_ra(env, addr + i, stfl_bytes[i], ra); 732 } 733 734 env->regs[0] = deposit64(env->regs[0], 0, 8, (max_bytes / 8) - 1); 735 return count_bytes >= max_bytes ? 0 : 3; 736 } 737 738 #ifndef CONFIG_USER_ONLY 739 /* 740 * Note: we ignore any return code of the functions called for the pci 741 * instructions, as the only time they return !0 is when the stub is 742 * called, and in that case we didn't even offer the zpci facility. 743 * The only exception is SIC, where program checks need to be handled 744 * by the caller. 745 */ 746 void HELPER(clp)(CPUS390XState *env, uint32_t r2) 747 { 748 S390CPU *cpu = env_archcpu(env); 749 750 bql_lock(); 751 clp_service_call(cpu, r2, GETPC()); 752 bql_unlock(); 753 } 754 755 void HELPER(pcilg)(CPUS390XState *env, uint32_t r1, uint32_t r2) 756 { 757 S390CPU *cpu = env_archcpu(env); 758 759 bql_lock(); 760 pcilg_service_call(cpu, r1, r2, GETPC()); 761 bql_unlock(); 762 } 763 764 void HELPER(pcistg)(CPUS390XState *env, uint32_t r1, uint32_t r2) 765 { 766 S390CPU *cpu = env_archcpu(env); 767 768 bql_lock(); 769 pcistg_service_call(cpu, r1, r2, GETPC()); 770 bql_unlock(); 771 } 772 773 void HELPER(stpcifc)(CPUS390XState *env, uint32_t r1, uint64_t fiba, 774 uint32_t ar) 775 { 776 S390CPU *cpu = env_archcpu(env); 777 778 bql_lock(); 779 stpcifc_service_call(cpu, r1, fiba, ar, GETPC()); 780 bql_unlock(); 781 } 782 783 void HELPER(sic)(CPUS390XState *env, uint64_t r1, uint64_t r3) 784 { 785 S390CPU *cpu = env_archcpu(env); 786 int r; 787 788 bql_lock(); 789 r = css_do_sic(cpu, (r3 >> 27) & 0x7, r1 & 0xffff); 790 bql_unlock(); 791 /* css_do_sic() may actually return a PGM_xxx value to inject */ 792 if (r) { 793 tcg_s390_program_interrupt(env, -r, GETPC()); 794 } 795 } 796 797 void HELPER(rpcit)(CPUS390XState *env, uint32_t r1, uint32_t r2) 798 { 799 S390CPU *cpu = env_archcpu(env); 800 801 bql_lock(); 802 rpcit_service_call(cpu, r1, r2, GETPC()); 803 bql_unlock(); 804 } 805 806 void HELPER(pcistb)(CPUS390XState *env, uint32_t r1, uint32_t r3, 807 uint64_t gaddr, uint32_t ar) 808 { 809 S390CPU *cpu = env_archcpu(env); 810 811 bql_lock(); 812 pcistb_service_call(cpu, r1, r3, gaddr, ar, GETPC()); 813 bql_unlock(); 814 } 815 816 void HELPER(mpcifc)(CPUS390XState *env, uint32_t r1, uint64_t fiba, 817 uint32_t ar) 818 { 819 S390CPU *cpu = env_archcpu(env); 820 821 bql_lock(); 822 mpcifc_service_call(cpu, r1, fiba, ar, GETPC()); 823 bql_unlock(); 824 } 825 #endif 826