1 /* 2 * QEMU PowerPC pSeries Logical Partition (aka sPAPR) hardware System Emulator 3 * 4 * Hypercall based emulated RTAS 5 * 6 * Copyright (c) 2010-2011 David Gibson, IBM Corporation. 7 * 8 * Permission is hereby granted, free of charge, to any person obtaining a copy 9 * of this software and associated documentation files (the "Software"), to deal 10 * in the Software without restriction, including without limitation the rights 11 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell 12 * copies of the Software, and to permit persons to whom the Software is 13 * furnished to do so, subject to the following conditions: 14 * 15 * The above copyright notice and this permission notice shall be included in 16 * all copies or substantial portions of the Software. 17 * 18 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 19 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 20 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL 21 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER 22 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, 23 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN 24 * THE SOFTWARE. 25 * 26 */ 27 28 #include "qemu/osdep.h" 29 #include "qemu/log.h" 30 #include "qemu/error-report.h" 31 #include "sysemu/sysemu.h" 32 #include "sysemu/device_tree.h" 33 #include "sysemu/cpus.h" 34 #include "sysemu/hw_accel.h" 35 #include "sysemu/runstate.h" 36 #include "kvm_ppc.h" 37 38 #include "hw/ppc/spapr.h" 39 #include "hw/ppc/spapr_vio.h" 40 #include "hw/ppc/spapr_rtas.h" 41 #include "hw/ppc/spapr_cpu_core.h" 42 #include "hw/ppc/ppc.h" 43 44 #include <libfdt.h> 45 #include "hw/ppc/spapr_drc.h" 46 #include "qemu/cutils.h" 47 #include "trace.h" 48 #include "hw/ppc/fdt.h" 49 #include "target/ppc/mmu-hash64.h" 50 #include "target/ppc/mmu-book3s-v3.h" 51 #include "migration/blocker.h" 52 #include "helper_regs.h" 53 54 static void rtas_display_character(PowerPCCPU *cpu, SpaprMachineState *spapr, 55 uint32_t token, uint32_t nargs, 56 target_ulong args, 57 uint32_t nret, target_ulong rets) 58 { 59 uint8_t c = rtas_ld(args, 0); 60 SpaprVioDevice *sdev = vty_lookup(spapr, 0); 61 62 if (!sdev) { 63 rtas_st(rets, 0, RTAS_OUT_HW_ERROR); 64 } else { 65 vty_putchars(sdev, &c, sizeof(c)); 66 rtas_st(rets, 0, RTAS_OUT_SUCCESS); 67 } 68 } 69 70 static void rtas_power_off(PowerPCCPU *cpu, SpaprMachineState *spapr, 71 uint32_t token, uint32_t nargs, target_ulong args, 72 uint32_t nret, target_ulong rets) 73 { 74 if (nargs != 2 || nret != 1) { 75 rtas_st(rets, 0, RTAS_OUT_PARAM_ERROR); 76 return; 77 } 78 qemu_system_shutdown_request(SHUTDOWN_CAUSE_GUEST_SHUTDOWN); 79 cpu_stop_current(); 80 rtas_st(rets, 0, RTAS_OUT_SUCCESS); 81 } 82 83 static void rtas_system_reboot(PowerPCCPU *cpu, SpaprMachineState *spapr, 84 uint32_t token, uint32_t nargs, 85 target_ulong args, 86 uint32_t nret, target_ulong rets) 87 { 88 if (nargs != 0 || nret != 1) { 89 rtas_st(rets, 0, RTAS_OUT_PARAM_ERROR); 90 return; 91 } 92 qemu_system_reset_request(SHUTDOWN_CAUSE_GUEST_RESET); 93 rtas_st(rets, 0, RTAS_OUT_SUCCESS); 94 } 95 96 static void rtas_query_cpu_stopped_state(PowerPCCPU *cpu_, 97 SpaprMachineState *spapr, 98 uint32_t token, uint32_t nargs, 99 target_ulong args, 100 uint32_t nret, target_ulong rets) 101 { 102 target_ulong id; 103 PowerPCCPU *cpu; 104 105 if (nargs != 1 || nret != 2) { 106 rtas_st(rets, 0, RTAS_OUT_PARAM_ERROR); 107 return; 108 } 109 110 id = rtas_ld(args, 0); 111 cpu = spapr_find_cpu(id); 112 if (cpu != NULL) { 113 if (CPU(cpu)->halted) { 114 rtas_st(rets, 1, 0); 115 } else { 116 rtas_st(rets, 1, 2); 117 } 118 119 rtas_st(rets, 0, RTAS_OUT_SUCCESS); 120 return; 121 } 122 123 /* Didn't find a matching cpu */ 124 rtas_st(rets, 0, RTAS_OUT_PARAM_ERROR); 125 } 126 127 static void rtas_start_cpu(PowerPCCPU *callcpu, SpaprMachineState *spapr, 128 uint32_t token, uint32_t nargs, 129 target_ulong args, 130 uint32_t nret, target_ulong rets) 131 { 132 target_ulong id, start, r3; 133 PowerPCCPU *newcpu; 134 CPUPPCState *env; 135 PowerPCCPUClass *pcc; 136 target_ulong lpcr; 137 138 if (nargs != 3 || nret != 1) { 139 rtas_st(rets, 0, RTAS_OUT_PARAM_ERROR); 140 return; 141 } 142 143 id = rtas_ld(args, 0); 144 start = rtas_ld(args, 1); 145 r3 = rtas_ld(args, 2); 146 147 newcpu = spapr_find_cpu(id); 148 if (!newcpu) { 149 /* Didn't find a matching cpu */ 150 rtas_st(rets, 0, RTAS_OUT_PARAM_ERROR); 151 return; 152 } 153 154 env = &newcpu->env; 155 pcc = POWERPC_CPU_GET_CLASS(newcpu); 156 157 if (!CPU(newcpu)->halted) { 158 rtas_st(rets, 0, RTAS_OUT_HW_ERROR); 159 return; 160 } 161 162 cpu_synchronize_state(CPU(newcpu)); 163 164 env->msr = (1ULL << MSR_SF) | (1ULL << MSR_ME); 165 hreg_compute_hflags(env); 166 167 lpcr = env->spr[SPR_LPCR]; 168 if (!pcc->interrupts_big_endian(callcpu)) { 169 lpcr |= LPCR_ILE; 170 } 171 if (env->mmu_model == POWERPC_MMU_3_00) { 172 /* 173 * New cpus are expected to start in the same radix/hash mode 174 * as the existing CPUs 175 */ 176 if (ppc64_v3_radix(callcpu)) { 177 lpcr |= LPCR_UPRT | LPCR_GTSE | LPCR_HR; 178 } else { 179 lpcr &= ~(LPCR_UPRT | LPCR_GTSE | LPCR_HR); 180 } 181 env->spr[SPR_PSSCR] &= ~PSSCR_EC; 182 } 183 ppc_store_lpcr(newcpu, lpcr); 184 185 /* 186 * Set the timebase offset of the new CPU to that of the invoking 187 * CPU. This helps hotplugged CPU to have the correct timebase 188 * offset. 189 */ 190 newcpu->env.tb_env->tb_offset = callcpu->env.tb_env->tb_offset; 191 192 spapr_cpu_set_entry_state(newcpu, start, 0, r3, 0); 193 194 qemu_cpu_kick(CPU(newcpu)); 195 196 rtas_st(rets, 0, RTAS_OUT_SUCCESS); 197 } 198 199 static void rtas_stop_self(PowerPCCPU *cpu, SpaprMachineState *spapr, 200 uint32_t token, uint32_t nargs, 201 target_ulong args, 202 uint32_t nret, target_ulong rets) 203 { 204 CPUState *cs = CPU(cpu); 205 CPUPPCState *env = &cpu->env; 206 PowerPCCPUClass *pcc = POWERPC_CPU_GET_CLASS(cpu); 207 208 /* Disable Power-saving mode Exit Cause exceptions for the CPU. 209 * This could deliver an interrupt on a dying CPU and crash the 210 * guest. 211 * For the same reason, set PSSCR_EC. 212 */ 213 ppc_store_lpcr(cpu, env->spr[SPR_LPCR] & ~pcc->lpcr_pm); 214 env->spr[SPR_PSSCR] |= PSSCR_EC; 215 cs->halted = 1; 216 kvmppc_set_reg_ppc_online(cpu, 0); 217 qemu_cpu_kick(cs); 218 } 219 220 static void rtas_ibm_suspend_me(PowerPCCPU *cpu, SpaprMachineState *spapr, 221 uint32_t token, uint32_t nargs, 222 target_ulong args, 223 uint32_t nret, target_ulong rets) 224 { 225 CPUState *cs; 226 227 if (nargs != 0 || nret != 1) { 228 rtas_st(rets, 0, RTAS_OUT_PARAM_ERROR); 229 return; 230 } 231 232 CPU_FOREACH(cs) { 233 PowerPCCPU *c = POWERPC_CPU(cs); 234 CPUPPCState *e = &c->env; 235 if (c == cpu) { 236 continue; 237 } 238 239 /* See h_join */ 240 if (!cs->halted || (e->msr & (1ULL << MSR_EE))) { 241 rtas_st(rets, 0, H_MULTI_THREADS_ACTIVE); 242 return; 243 } 244 } 245 246 qemu_system_suspend_request(); 247 rtas_st(rets, 0, RTAS_OUT_SUCCESS); 248 } 249 250 static inline int sysparm_st(target_ulong addr, target_ulong len, 251 const void *val, uint16_t vallen) 252 { 253 hwaddr phys = ppc64_phys_to_real(addr); 254 255 if (len < 2) { 256 return RTAS_OUT_SYSPARM_PARAM_ERROR; 257 } 258 stw_be_phys(&address_space_memory, phys, vallen); 259 cpu_physical_memory_write(phys + 2, val, MIN(len - 2, vallen)); 260 return RTAS_OUT_SUCCESS; 261 } 262 263 static void rtas_ibm_get_system_parameter(PowerPCCPU *cpu, 264 SpaprMachineState *spapr, 265 uint32_t token, uint32_t nargs, 266 target_ulong args, 267 uint32_t nret, target_ulong rets) 268 { 269 PowerPCCPUClass *pcc = POWERPC_CPU_GET_CLASS(cpu); 270 MachineState *ms = MACHINE(spapr); 271 target_ulong parameter = rtas_ld(args, 0); 272 target_ulong buffer = rtas_ld(args, 1); 273 target_ulong length = rtas_ld(args, 2); 274 target_ulong ret; 275 276 switch (parameter) { 277 case RTAS_SYSPARM_SPLPAR_CHARACTERISTICS: { 278 char *param_val = g_strdup_printf("MaxEntCap=%d," 279 "DesMem=%" PRIu64 "," 280 "DesProcs=%d," 281 "MaxPlatProcs=%d", 282 ms->smp.max_cpus, 283 ms->ram_size / MiB, 284 ms->smp.cpus, 285 ms->smp.max_cpus); 286 if (pcc->n_host_threads > 0) { 287 char *hostthr_val, *old = param_val; 288 289 /* 290 * Add HostThrs property. This property is not present in PAPR but 291 * is expected by some guests to communicate the number of physical 292 * host threads per core on the system so that they can scale 293 * information which varies based on the thread configuration. 294 */ 295 hostthr_val = g_strdup_printf(",HostThrs=%d", pcc->n_host_threads); 296 param_val = g_strconcat(param_val, hostthr_val, NULL); 297 g_free(hostthr_val); 298 g_free(old); 299 } 300 ret = sysparm_st(buffer, length, param_val, strlen(param_val) + 1); 301 g_free(param_val); 302 break; 303 } 304 case RTAS_SYSPARM_DIAGNOSTICS_RUN_MODE: { 305 uint8_t param_val = DIAGNOSTICS_RUN_MODE_DISABLED; 306 307 ret = sysparm_st(buffer, length, ¶m_val, sizeof(param_val)); 308 break; 309 } 310 case RTAS_SYSPARM_UUID: 311 ret = sysparm_st(buffer, length, (unsigned char *)&qemu_uuid, 312 (qemu_uuid_set ? 16 : 0)); 313 break; 314 default: 315 ret = RTAS_OUT_NOT_SUPPORTED; 316 } 317 318 rtas_st(rets, 0, ret); 319 } 320 321 static void rtas_ibm_set_system_parameter(PowerPCCPU *cpu, 322 SpaprMachineState *spapr, 323 uint32_t token, uint32_t nargs, 324 target_ulong args, 325 uint32_t nret, target_ulong rets) 326 { 327 target_ulong parameter = rtas_ld(args, 0); 328 target_ulong ret = RTAS_OUT_NOT_SUPPORTED; 329 330 switch (parameter) { 331 case RTAS_SYSPARM_SPLPAR_CHARACTERISTICS: 332 case RTAS_SYSPARM_DIAGNOSTICS_RUN_MODE: 333 case RTAS_SYSPARM_UUID: 334 ret = RTAS_OUT_NOT_AUTHORIZED; 335 break; 336 } 337 338 rtas_st(rets, 0, ret); 339 } 340 341 static void rtas_ibm_os_term(PowerPCCPU *cpu, 342 SpaprMachineState *spapr, 343 uint32_t token, uint32_t nargs, 344 target_ulong args, 345 uint32_t nret, target_ulong rets) 346 { 347 target_ulong msgaddr = rtas_ld(args, 0); 348 char msg[512]; 349 350 cpu_physical_memory_read(msgaddr, msg, sizeof(msg) - 1); 351 msg[sizeof(msg) - 1] = 0; 352 353 error_report("OS terminated: %s", msg); 354 qemu_system_guest_panicked(NULL); 355 356 rtas_st(rets, 0, RTAS_OUT_SUCCESS); 357 } 358 359 static void rtas_set_power_level(PowerPCCPU *cpu, SpaprMachineState *spapr, 360 uint32_t token, uint32_t nargs, 361 target_ulong args, uint32_t nret, 362 target_ulong rets) 363 { 364 int32_t power_domain; 365 366 if (nargs != 2 || nret != 2) { 367 rtas_st(rets, 0, RTAS_OUT_PARAM_ERROR); 368 return; 369 } 370 371 /* we currently only use a single, "live insert" powerdomain for 372 * hotplugged/dlpar'd resources, so the power is always live/full (100) 373 */ 374 power_domain = rtas_ld(args, 0); 375 if (power_domain != -1) { 376 rtas_st(rets, 0, RTAS_OUT_NOT_SUPPORTED); 377 return; 378 } 379 380 rtas_st(rets, 0, RTAS_OUT_SUCCESS); 381 rtas_st(rets, 1, 100); 382 } 383 384 static void rtas_get_power_level(PowerPCCPU *cpu, SpaprMachineState *spapr, 385 uint32_t token, uint32_t nargs, 386 target_ulong args, uint32_t nret, 387 target_ulong rets) 388 { 389 int32_t power_domain; 390 391 if (nargs != 1 || nret != 2) { 392 rtas_st(rets, 0, RTAS_OUT_PARAM_ERROR); 393 return; 394 } 395 396 /* we currently only use a single, "live insert" powerdomain for 397 * hotplugged/dlpar'd resources, so the power is always live/full (100) 398 */ 399 power_domain = rtas_ld(args, 0); 400 if (power_domain != -1) { 401 rtas_st(rets, 0, RTAS_OUT_NOT_SUPPORTED); 402 return; 403 } 404 405 rtas_st(rets, 0, RTAS_OUT_SUCCESS); 406 rtas_st(rets, 1, 100); 407 } 408 409 static void rtas_ibm_nmi_register(PowerPCCPU *cpu, 410 SpaprMachineState *spapr, 411 uint32_t token, uint32_t nargs, 412 target_ulong args, 413 uint32_t nret, target_ulong rets) 414 { 415 hwaddr rtas_addr; 416 target_ulong sreset_addr, mce_addr; 417 418 if (spapr_get_cap(spapr, SPAPR_CAP_FWNMI) == SPAPR_CAP_OFF) { 419 rtas_st(rets, 0, RTAS_OUT_NOT_SUPPORTED); 420 return; 421 } 422 423 rtas_addr = spapr_get_rtas_addr(); 424 if (!rtas_addr) { 425 rtas_st(rets, 0, RTAS_OUT_NOT_SUPPORTED); 426 return; 427 } 428 429 sreset_addr = rtas_ld(args, 0); 430 mce_addr = rtas_ld(args, 1); 431 432 /* PAPR requires these are in the first 32M of memory and within RMA */ 433 if (sreset_addr >= 32 * MiB || sreset_addr >= spapr->rma_size || 434 mce_addr >= 32 * MiB || mce_addr >= spapr->rma_size) { 435 rtas_st(rets, 0, RTAS_OUT_PARAM_ERROR); 436 return; 437 } 438 439 if (kvm_enabled()) { 440 if (kvmppc_set_fwnmi(cpu) < 0) { 441 rtas_st(rets, 0, RTAS_OUT_NOT_SUPPORTED); 442 return; 443 } 444 } 445 446 spapr->fwnmi_system_reset_addr = sreset_addr; 447 spapr->fwnmi_machine_check_addr = mce_addr; 448 449 rtas_st(rets, 0, RTAS_OUT_SUCCESS); 450 } 451 452 static void rtas_ibm_nmi_interlock(PowerPCCPU *cpu, 453 SpaprMachineState *spapr, 454 uint32_t token, uint32_t nargs, 455 target_ulong args, 456 uint32_t nret, target_ulong rets) 457 { 458 if (spapr_get_cap(spapr, SPAPR_CAP_FWNMI) == SPAPR_CAP_OFF) { 459 rtas_st(rets, 0, RTAS_OUT_NOT_SUPPORTED); 460 return; 461 } 462 463 if (spapr->fwnmi_machine_check_addr == -1) { 464 qemu_log_mask(LOG_GUEST_ERROR, 465 "FWNMI: ibm,nmi-interlock RTAS called with FWNMI not registered.\n"); 466 467 /* NMI register not called */ 468 rtas_st(rets, 0, RTAS_OUT_PARAM_ERROR); 469 return; 470 } 471 472 if (spapr->fwnmi_machine_check_interlock != cpu->vcpu_id) { 473 /* 474 * The vCPU that hit the NMI should invoke "ibm,nmi-interlock" 475 * This should be PARAM_ERROR, but Linux calls "ibm,nmi-interlock" 476 * for system reset interrupts, despite them not being interlocked. 477 * PowerVM silently ignores this and returns success here. Returning 478 * failure causes Linux to print the error "FWNMI: nmi-interlock 479 * failed: -3", although no other apparent ill effects, this is a 480 * regression for the user when enabling FWNMI. So for now, match 481 * PowerVM. When most Linux clients are fixed, this could be 482 * changed. 483 */ 484 rtas_st(rets, 0, RTAS_OUT_SUCCESS); 485 return; 486 } 487 488 /* 489 * vCPU issuing "ibm,nmi-interlock" is done with NMI handling, 490 * hence unset fwnmi_machine_check_interlock. 491 */ 492 spapr->fwnmi_machine_check_interlock = -1; 493 qemu_cond_signal(&spapr->fwnmi_machine_check_interlock_cond); 494 rtas_st(rets, 0, RTAS_OUT_SUCCESS); 495 migrate_del_blocker(spapr->fwnmi_migration_blocker); 496 } 497 498 static struct rtas_call { 499 const char *name; 500 spapr_rtas_fn fn; 501 } rtas_table[RTAS_TOKEN_MAX - RTAS_TOKEN_BASE]; 502 503 target_ulong spapr_rtas_call(PowerPCCPU *cpu, SpaprMachineState *spapr, 504 uint32_t token, uint32_t nargs, target_ulong args, 505 uint32_t nret, target_ulong rets) 506 { 507 if ((token >= RTAS_TOKEN_BASE) && (token < RTAS_TOKEN_MAX)) { 508 struct rtas_call *call = rtas_table + (token - RTAS_TOKEN_BASE); 509 510 if (call->fn) { 511 call->fn(cpu, spapr, token, nargs, args, nret, rets); 512 return H_SUCCESS; 513 } 514 } 515 516 /* HACK: Some Linux early debug code uses RTAS display-character, 517 * but assumes the token value is 0xa (which it is on some real 518 * machines) without looking it up in the device tree. This 519 * special case makes this work */ 520 if (token == 0xa) { 521 rtas_display_character(cpu, spapr, 0xa, nargs, args, nret, rets); 522 return H_SUCCESS; 523 } 524 525 hcall_dprintf("Unknown RTAS token 0x%x\n", token); 526 rtas_st(rets, 0, RTAS_OUT_PARAM_ERROR); 527 return H_PARAMETER; 528 } 529 530 uint64_t qtest_rtas_call(char *cmd, uint32_t nargs, uint64_t args, 531 uint32_t nret, uint64_t rets) 532 { 533 int token; 534 535 for (token = 0; token < RTAS_TOKEN_MAX - RTAS_TOKEN_BASE; token++) { 536 if (strcmp(cmd, rtas_table[token].name) == 0) { 537 SpaprMachineState *spapr = SPAPR_MACHINE(qdev_get_machine()); 538 PowerPCCPU *cpu = POWERPC_CPU(first_cpu); 539 540 rtas_table[token].fn(cpu, spapr, token + RTAS_TOKEN_BASE, 541 nargs, args, nret, rets); 542 return H_SUCCESS; 543 } 544 } 545 return H_PARAMETER; 546 } 547 548 void spapr_rtas_register(int token, const char *name, spapr_rtas_fn fn) 549 { 550 assert((token >= RTAS_TOKEN_BASE) && (token < RTAS_TOKEN_MAX)); 551 552 token -= RTAS_TOKEN_BASE; 553 554 assert(!name || !rtas_table[token].name); 555 556 rtas_table[token].name = name; 557 rtas_table[token].fn = fn; 558 } 559 560 void spapr_dt_rtas_tokens(void *fdt, int rtas) 561 { 562 int i; 563 564 for (i = 0; i < RTAS_TOKEN_MAX - RTAS_TOKEN_BASE; i++) { 565 struct rtas_call *call = &rtas_table[i]; 566 567 if (!call->name) { 568 continue; 569 } 570 571 _FDT(fdt_setprop_cell(fdt, rtas, call->name, i + RTAS_TOKEN_BASE)); 572 } 573 } 574 575 hwaddr spapr_get_rtas_addr(void) 576 { 577 SpaprMachineState *spapr = SPAPR_MACHINE(qdev_get_machine()); 578 int rtas_node; 579 const fdt32_t *rtas_data; 580 void *fdt = spapr->fdt_blob; 581 582 /* fetch rtas addr from fdt */ 583 rtas_node = fdt_path_offset(fdt, "/rtas"); 584 if (rtas_node < 0) { 585 return 0; 586 } 587 588 rtas_data = fdt_getprop(fdt, rtas_node, "linux,rtas-base", NULL); 589 if (!rtas_data) { 590 return 0; 591 } 592 593 /* 594 * We assume that the OS called RTAS instantiate-rtas, but some other 595 * OS might call RTAS instantiate-rtas-64 instead. This fine as of now 596 * as SLOF only supports 32-bit variant. 597 */ 598 return (hwaddr)fdt32_to_cpu(*rtas_data); 599 } 600 601 static void core_rtas_register_types(void) 602 { 603 spapr_rtas_register(RTAS_DISPLAY_CHARACTER, "display-character", 604 rtas_display_character); 605 spapr_rtas_register(RTAS_POWER_OFF, "power-off", rtas_power_off); 606 spapr_rtas_register(RTAS_SYSTEM_REBOOT, "system-reboot", 607 rtas_system_reboot); 608 spapr_rtas_register(RTAS_QUERY_CPU_STOPPED_STATE, "query-cpu-stopped-state", 609 rtas_query_cpu_stopped_state); 610 spapr_rtas_register(RTAS_START_CPU, "start-cpu", rtas_start_cpu); 611 spapr_rtas_register(RTAS_STOP_SELF, "stop-self", rtas_stop_self); 612 spapr_rtas_register(RTAS_IBM_SUSPEND_ME, "ibm,suspend-me", 613 rtas_ibm_suspend_me); 614 spapr_rtas_register(RTAS_IBM_GET_SYSTEM_PARAMETER, 615 "ibm,get-system-parameter", 616 rtas_ibm_get_system_parameter); 617 spapr_rtas_register(RTAS_IBM_SET_SYSTEM_PARAMETER, 618 "ibm,set-system-parameter", 619 rtas_ibm_set_system_parameter); 620 spapr_rtas_register(RTAS_IBM_OS_TERM, "ibm,os-term", 621 rtas_ibm_os_term); 622 spapr_rtas_register(RTAS_SET_POWER_LEVEL, "set-power-level", 623 rtas_set_power_level); 624 spapr_rtas_register(RTAS_GET_POWER_LEVEL, "get-power-level", 625 rtas_get_power_level); 626 spapr_rtas_register(RTAS_IBM_NMI_REGISTER, "ibm,nmi-register", 627 rtas_ibm_nmi_register); 628 spapr_rtas_register(RTAS_IBM_NMI_INTERLOCK, "ibm,nmi-interlock", 629 rtas_ibm_nmi_interlock); 630 } 631 632 type_init(core_rtas_register_types) 633