1fcf5ef2aSThomas Huth /* 2fcf5ef2aSThomas Huth * Miscellaneous PowerPC emulation helpers for QEMU. 3fcf5ef2aSThomas Huth * 4fcf5ef2aSThomas Huth * Copyright (c) 2003-2007 Jocelyn Mayer 5fcf5ef2aSThomas Huth * 6fcf5ef2aSThomas Huth * This library is free software; you can redistribute it and/or 7fcf5ef2aSThomas Huth * modify it under the terms of the GNU Lesser General Public 8fcf5ef2aSThomas Huth * License as published by the Free Software Foundation; either 96bd039cdSChetan Pant * version 2.1 of the License, or (at your option) any later version. 10fcf5ef2aSThomas Huth * 11fcf5ef2aSThomas Huth * This library is distributed in the hope that it will be useful, 12fcf5ef2aSThomas Huth * but WITHOUT ANY WARRANTY; without even the implied warranty of 13fcf5ef2aSThomas Huth * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 14fcf5ef2aSThomas Huth * Lesser General Public License for more details. 15fcf5ef2aSThomas Huth * 16fcf5ef2aSThomas Huth * You should have received a copy of the GNU Lesser General Public 17fcf5ef2aSThomas Huth * License along with this library; if not, see <http://www.gnu.org/licenses/>. 18fcf5ef2aSThomas Huth */ 19db725815SMarkus Armbruster 20fcf5ef2aSThomas Huth #include "qemu/osdep.h" 21cd617484SPhilippe Mathieu-Daudé #include "qemu/log.h" 22fcf5ef2aSThomas Huth #include "cpu.h" 23fcf5ef2aSThomas Huth #include "exec/exec-all.h" 24fcf5ef2aSThomas Huth #include "exec/helper-proto.h" 256b375544SJoel Stanley #include "qemu/error-report.h" 26db725815SMarkus Armbruster #include "qemu/main-loop.h" 2722adb61fSBruno Larsen (billionai) #include "mmu-book3s-v3.h" 287b694df6SMatheus Ferst #include "hw/ppc/ppc.h" 29fcf5ef2aSThomas Huth 30fcf5ef2aSThomas Huth #include "helper_regs.h" 31fcf5ef2aSThomas Huth 32fcf5ef2aSThomas Huth /*****************************************************************************/ 33fcf5ef2aSThomas Huth /* SPR accesses */ 34fcf5ef2aSThomas Huth void helper_load_dump_spr(CPUPPCState *env, uint32_t sprn) 35fcf5ef2aSThomas Huth { 36fcf5ef2aSThomas Huth qemu_log("Read SPR %d %03x => " TARGET_FMT_lx "\n", sprn, sprn, 37fcf5ef2aSThomas Huth env->spr[sprn]); 38fcf5ef2aSThomas Huth } 39fcf5ef2aSThomas Huth 40fcf5ef2aSThomas Huth void helper_store_dump_spr(CPUPPCState *env, uint32_t sprn) 41fcf5ef2aSThomas Huth { 42fcf5ef2aSThomas Huth qemu_log("Write SPR %d %03x <= " TARGET_FMT_lx "\n", sprn, sprn, 43fcf5ef2aSThomas Huth env->spr[sprn]); 44fcf5ef2aSThomas Huth } 45fcf5ef2aSThomas Huth 469cdfd1b9SNicholas Piggin void helper_spr_core_write_generic(CPUPPCState *env, uint32_t sprn, 479cdfd1b9SNicholas Piggin target_ulong val) 489cdfd1b9SNicholas Piggin { 499cdfd1b9SNicholas Piggin CPUState *cs = env_cpu(env); 509cdfd1b9SNicholas Piggin CPUState *ccs; 519cdfd1b9SNicholas Piggin 52*50d8cfb9SNicholas Piggin if (ppc_cpu_core_single_threaded(cs)) { 539cdfd1b9SNicholas Piggin env->spr[sprn] = val; 549cdfd1b9SNicholas Piggin return; 559cdfd1b9SNicholas Piggin } 569cdfd1b9SNicholas Piggin 579cdfd1b9SNicholas Piggin THREAD_SIBLING_FOREACH(cs, ccs) { 589cdfd1b9SNicholas Piggin CPUPPCState *cenv = &POWERPC_CPU(ccs)->env; 599cdfd1b9SNicholas Piggin cenv->spr[sprn] = val; 609cdfd1b9SNicholas Piggin } 619cdfd1b9SNicholas Piggin } 629cdfd1b9SNicholas Piggin 63c5d98a7bSNicholas Piggin void helper_spr_write_CTRL(CPUPPCState *env, uint32_t sprn, 64c5d98a7bSNicholas Piggin target_ulong val) 65c5d98a7bSNicholas Piggin { 66c5d98a7bSNicholas Piggin CPUState *cs = env_cpu(env); 67c5d98a7bSNicholas Piggin CPUState *ccs; 68c5d98a7bSNicholas Piggin uint32_t run = val & 1; 69c5d98a7bSNicholas Piggin uint32_t ts, ts_mask; 70c5d98a7bSNicholas Piggin 71c5d98a7bSNicholas Piggin assert(sprn == SPR_CTRL); 72c5d98a7bSNicholas Piggin 73c5d98a7bSNicholas Piggin env->spr[sprn] &= ~1U; 74c5d98a7bSNicholas Piggin env->spr[sprn] |= run; 75c5d98a7bSNicholas Piggin 76c5d98a7bSNicholas Piggin ts_mask = ~(1U << (8 + env->spr[SPR_TIR])); 77c5d98a7bSNicholas Piggin ts = run << (8 + env->spr[SPR_TIR]); 78c5d98a7bSNicholas Piggin 79c5d98a7bSNicholas Piggin THREAD_SIBLING_FOREACH(cs, ccs) { 80c5d98a7bSNicholas Piggin CPUPPCState *cenv = &POWERPC_CPU(ccs)->env; 81c5d98a7bSNicholas Piggin 82c5d98a7bSNicholas Piggin cenv->spr[sprn] &= ts_mask; 83c5d98a7bSNicholas Piggin cenv->spr[sprn] |= ts; 84c5d98a7bSNicholas Piggin } 85c5d98a7bSNicholas Piggin } 86c5d98a7bSNicholas Piggin 87c5d98a7bSNicholas Piggin 88fcf5ef2aSThomas Huth #ifdef TARGET_PPC64 89493028d8SCédric Le Goater static void raise_hv_fu_exception(CPUPPCState *env, uint32_t bit, 90493028d8SCédric Le Goater const char *caller, uint32_t cause, 91493028d8SCédric Le Goater uintptr_t raddr) 92493028d8SCédric Le Goater { 93493028d8SCédric Le Goater qemu_log_mask(CPU_LOG_INT, "HV Facility %d is unavailable (%s)\n", 94493028d8SCédric Le Goater bit, caller); 95493028d8SCédric Le Goater 96493028d8SCédric Le Goater env->spr[SPR_HFSCR] &= ~((target_ulong)FSCR_IC_MASK << FSCR_IC_POS); 97493028d8SCédric Le Goater 98493028d8SCédric Le Goater raise_exception_err_ra(env, POWERPC_EXCP_HV_FU, cause, raddr); 99493028d8SCédric Le Goater } 100493028d8SCédric Le Goater 101fcf5ef2aSThomas Huth static void raise_fu_exception(CPUPPCState *env, uint32_t bit, 102fcf5ef2aSThomas Huth uint32_t sprn, uint32_t cause, 103fcf5ef2aSThomas Huth uintptr_t raddr) 104fcf5ef2aSThomas Huth { 105fcf5ef2aSThomas Huth qemu_log("Facility SPR %d is unavailable (SPR FSCR:%d)\n", sprn, bit); 106fcf5ef2aSThomas Huth 107fcf5ef2aSThomas Huth env->spr[SPR_FSCR] &= ~((target_ulong)FSCR_IC_MASK << FSCR_IC_POS); 108fcf5ef2aSThomas Huth cause &= FSCR_IC_MASK; 109fcf5ef2aSThomas Huth env->spr[SPR_FSCR] |= (target_ulong)cause << FSCR_IC_POS; 110fcf5ef2aSThomas Huth 111fcf5ef2aSThomas Huth raise_exception_err_ra(env, POWERPC_EXCP_FU, 0, raddr); 112fcf5ef2aSThomas Huth } 113fcf5ef2aSThomas Huth #endif 114fcf5ef2aSThomas Huth 115493028d8SCédric Le Goater void helper_hfscr_facility_check(CPUPPCState *env, uint32_t bit, 116493028d8SCédric Le Goater const char *caller, uint32_t cause) 117493028d8SCédric Le Goater { 118493028d8SCédric Le Goater #ifdef TARGET_PPC64 1199de754d3SVíctor Colombo if ((env->msr_mask & MSR_HVB) && !FIELD_EX64(env->msr, MSR, HV) && 120493028d8SCédric Le Goater !(env->spr[SPR_HFSCR] & (1UL << bit))) { 121493028d8SCédric Le Goater raise_hv_fu_exception(env, bit, caller, cause, GETPC()); 122493028d8SCédric Le Goater } 123493028d8SCédric Le Goater #endif 124493028d8SCédric Le Goater } 125493028d8SCédric Le Goater 126fcf5ef2aSThomas Huth void helper_fscr_facility_check(CPUPPCState *env, uint32_t bit, 127fcf5ef2aSThomas Huth uint32_t sprn, uint32_t cause) 128fcf5ef2aSThomas Huth { 129fcf5ef2aSThomas Huth #ifdef TARGET_PPC64 130fcf5ef2aSThomas Huth if (env->spr[SPR_FSCR] & (1ULL << bit)) { 131fcf5ef2aSThomas Huth /* Facility is enabled, continue */ 132fcf5ef2aSThomas Huth return; 133fcf5ef2aSThomas Huth } 134fcf5ef2aSThomas Huth raise_fu_exception(env, bit, sprn, cause, GETPC()); 135fcf5ef2aSThomas Huth #endif 136fcf5ef2aSThomas Huth } 137fcf5ef2aSThomas Huth 138fcf5ef2aSThomas Huth void helper_msr_facility_check(CPUPPCState *env, uint32_t bit, 139fcf5ef2aSThomas Huth uint32_t sprn, uint32_t cause) 140fcf5ef2aSThomas Huth { 141fcf5ef2aSThomas Huth #ifdef TARGET_PPC64 142fcf5ef2aSThomas Huth if (env->msr & (1ULL << bit)) { 143fcf5ef2aSThomas Huth /* Facility is enabled, continue */ 144fcf5ef2aSThomas Huth return; 145fcf5ef2aSThomas Huth } 146fcf5ef2aSThomas Huth raise_fu_exception(env, bit, sprn, cause, GETPC()); 147fcf5ef2aSThomas Huth #endif 148fcf5ef2aSThomas Huth } 149fcf5ef2aSThomas Huth 150fcf5ef2aSThomas Huth #if !defined(CONFIG_USER_ONLY) 151fcf5ef2aSThomas Huth 1526bfcf1dcSGlenn Miles #ifdef TARGET_PPC64 1536bfcf1dcSGlenn Miles static void helper_mmcr0_facility_check(CPUPPCState *env, uint32_t bit, 1546bfcf1dcSGlenn Miles uint32_t sprn, uint32_t cause) 1556bfcf1dcSGlenn Miles { 1566bfcf1dcSGlenn Miles if (FIELD_EX64(env->msr, MSR, PR) && 1576bfcf1dcSGlenn Miles !(env->spr[SPR_POWER_MMCR0] & (1ULL << bit))) { 1586bfcf1dcSGlenn Miles raise_fu_exception(env, bit, sprn, cause, GETPC()); 1596bfcf1dcSGlenn Miles } 1606bfcf1dcSGlenn Miles } 1616bfcf1dcSGlenn Miles #endif 1626bfcf1dcSGlenn Miles 163fcf5ef2aSThomas Huth void helper_store_sdr1(CPUPPCState *env, target_ulong val) 164fcf5ef2aSThomas Huth { 165fcf5ef2aSThomas Huth if (env->spr[SPR_SDR1] != val) { 166fcf5ef2aSThomas Huth ppc_store_sdr1(env, val); 167db70b311SRichard Henderson tlb_flush(env_cpu(env)); 168fcf5ef2aSThomas Huth } 169fcf5ef2aSThomas Huth } 170fcf5ef2aSThomas Huth 1714a7518e0SCédric Le Goater #if defined(TARGET_PPC64) 1724a7518e0SCédric Le Goater void helper_store_ptcr(CPUPPCState *env, target_ulong val) 1734a7518e0SCédric Le Goater { 1744a7518e0SCédric Le Goater if (env->spr[SPR_PTCR] != val) { 1754d2b0ad3SNicholas Piggin CPUState *cs = env_cpu(env); 17622adb61fSBruno Larsen (billionai) PowerPCCPU *cpu = env_archcpu(env); 17722adb61fSBruno Larsen (billionai) target_ulong ptcr_mask = PTCR_PATB | PTCR_PATS; 17822adb61fSBruno Larsen (billionai) target_ulong patbsize = val & PTCR_PATS; 17922adb61fSBruno Larsen (billionai) 18022adb61fSBruno Larsen (billionai) qemu_log_mask(CPU_LOG_MMU, "%s: " TARGET_FMT_lx "\n", __func__, val); 18122adb61fSBruno Larsen (billionai) 18222adb61fSBruno Larsen (billionai) assert(!cpu->vhyp); 18322adb61fSBruno Larsen (billionai) assert(env->mmu_model & POWERPC_MMU_3_00); 18422adb61fSBruno Larsen (billionai) 18522adb61fSBruno Larsen (billionai) if (val & ~ptcr_mask) { 18622adb61fSBruno Larsen (billionai) error_report("Invalid bits 0x"TARGET_FMT_lx" set in PTCR", 18722adb61fSBruno Larsen (billionai) val & ~ptcr_mask); 18822adb61fSBruno Larsen (billionai) val &= ptcr_mask; 18922adb61fSBruno Larsen (billionai) } 19022adb61fSBruno Larsen (billionai) 19122adb61fSBruno Larsen (billionai) if (patbsize > 24) { 19222adb61fSBruno Larsen (billionai) error_report("Invalid Partition Table size 0x" TARGET_FMT_lx 19322adb61fSBruno Larsen (billionai) " stored in PTCR", patbsize); 19422adb61fSBruno Larsen (billionai) return; 19522adb61fSBruno Larsen (billionai) } 19622adb61fSBruno Larsen (billionai) 197*50d8cfb9SNicholas Piggin if (ppc_cpu_lpar_single_threaded(cs)) { 19822adb61fSBruno Larsen (billionai) env->spr[SPR_PTCR] = val; 1994d2b0ad3SNicholas Piggin tlb_flush(cs); 2004d2b0ad3SNicholas Piggin } else { 2014d2b0ad3SNicholas Piggin CPUState *ccs; 2024d2b0ad3SNicholas Piggin 2034d2b0ad3SNicholas Piggin THREAD_SIBLING_FOREACH(cs, ccs) { 2044d2b0ad3SNicholas Piggin PowerPCCPU *ccpu = POWERPC_CPU(ccs); 2054d2b0ad3SNicholas Piggin CPUPPCState *cenv = &ccpu->env; 2064d2b0ad3SNicholas Piggin cenv->spr[SPR_PTCR] = val; 2074d2b0ad3SNicholas Piggin tlb_flush(ccs); 2084d2b0ad3SNicholas Piggin } 2094d2b0ad3SNicholas Piggin } 2104a7518e0SCédric Le Goater } 2114a7518e0SCédric Le Goater } 2126b375544SJoel Stanley 2136b375544SJoel Stanley void helper_store_pcr(CPUPPCState *env, target_ulong value) 2146b375544SJoel Stanley { 215db70b311SRichard Henderson PowerPCCPU *cpu = env_archcpu(env); 2166b375544SJoel Stanley PowerPCCPUClass *pcc = POWERPC_CPU_GET_CLASS(cpu); 2176b375544SJoel Stanley 2186b375544SJoel Stanley env->spr[SPR_PCR] = value & pcc->pcr_mask; 2196b375544SJoel Stanley } 2205ba7ba1dSCédric Le Goater 22114192307SNicholas Piggin void helper_store_ciabr(CPUPPCState *env, target_ulong value) 22214192307SNicholas Piggin { 22314192307SNicholas Piggin ppc_store_ciabr(env, value); 22414192307SNicholas Piggin } 22514192307SNicholas Piggin 226d5ee641cSNicholas Piggin void helper_store_dawr0(CPUPPCState *env, target_ulong value) 227d5ee641cSNicholas Piggin { 228d5ee641cSNicholas Piggin ppc_store_dawr0(env, value); 229d5ee641cSNicholas Piggin } 230d5ee641cSNicholas Piggin 231d5ee641cSNicholas Piggin void helper_store_dawrx0(CPUPPCState *env, target_ulong value) 232d5ee641cSNicholas Piggin { 233d5ee641cSNicholas Piggin ppc_store_dawrx0(env, value); 234d5ee641cSNicholas Piggin } 235d5ee641cSNicholas Piggin 2365ba7ba1dSCédric Le Goater /* 2375ba7ba1dSCédric Le Goater * DPDES register is shared. Each bit reflects the state of the 2385ba7ba1dSCédric Le Goater * doorbell interrupt of a thread of the same core. 2395ba7ba1dSCédric Le Goater */ 2405ba7ba1dSCédric Le Goater target_ulong helper_load_dpdes(CPUPPCState *env) 2415ba7ba1dSCédric Le Goater { 242d24e80b2SNicholas Piggin CPUState *cs = env_cpu(env); 243d24e80b2SNicholas Piggin CPUState *ccs; 2445ba7ba1dSCédric Le Goater target_ulong dpdes = 0; 2455ba7ba1dSCédric Le Goater 246493028d8SCédric Le Goater helper_hfscr_facility_check(env, HFSCR_MSGP, "load DPDES", HFSCR_IC_MSGP); 247493028d8SCédric Le Goater 248*50d8cfb9SNicholas Piggin /* DPDES behaves as 1-thread in LPAR-per-thread mode */ 249*50d8cfb9SNicholas Piggin if (ppc_cpu_lpar_single_threaded(cs)) { 250f003109fSMatheus Ferst if (env->pending_interrupts & PPC_INTERRUPT_DOORBELL) { 2515ba7ba1dSCédric Le Goater dpdes = 1; 2525ba7ba1dSCédric Le Goater } 253d24e80b2SNicholas Piggin return dpdes; 254d24e80b2SNicholas Piggin } 255d24e80b2SNicholas Piggin 256195801d7SStefan Hajnoczi bql_lock(); 257d24e80b2SNicholas Piggin THREAD_SIBLING_FOREACH(cs, ccs) { 258d24e80b2SNicholas Piggin PowerPCCPU *ccpu = POWERPC_CPU(ccs); 259d24e80b2SNicholas Piggin CPUPPCState *cenv = &ccpu->env; 260d24e80b2SNicholas Piggin uint32_t thread_id = ppc_cpu_tir(ccpu); 261d24e80b2SNicholas Piggin 262d24e80b2SNicholas Piggin if (cenv->pending_interrupts & PPC_INTERRUPT_DOORBELL) { 263d24e80b2SNicholas Piggin dpdes |= (0x1 << thread_id); 264d24e80b2SNicholas Piggin } 265d24e80b2SNicholas Piggin } 266195801d7SStefan Hajnoczi bql_unlock(); 2675ba7ba1dSCédric Le Goater 2685ba7ba1dSCédric Le Goater return dpdes; 2695ba7ba1dSCédric Le Goater } 2705ba7ba1dSCédric Le Goater 2715ba7ba1dSCédric Le Goater void helper_store_dpdes(CPUPPCState *env, target_ulong val) 2725ba7ba1dSCédric Le Goater { 2735ba7ba1dSCédric Le Goater PowerPCCPU *cpu = env_archcpu(env); 274d24e80b2SNicholas Piggin CPUState *cs = env_cpu(env); 275d24e80b2SNicholas Piggin CPUState *ccs; 2765ba7ba1dSCédric Le Goater 277493028d8SCédric Le Goater helper_hfscr_facility_check(env, HFSCR_MSGP, "store DPDES", HFSCR_IC_MSGP); 278493028d8SCédric Le Goater 279*50d8cfb9SNicholas Piggin /* DPDES behaves as 1-thread in LPAR-per-thread mode */ 280*50d8cfb9SNicholas Piggin if (ppc_cpu_lpar_single_threaded(cs)) { 281d24e80b2SNicholas Piggin ppc_set_irq(cpu, PPC_INTERRUPT_DOORBELL, val & 0x1); 2825ba7ba1dSCédric Le Goater return; 2835ba7ba1dSCédric Le Goater } 2845ba7ba1dSCédric Le Goater 285d24e80b2SNicholas Piggin /* Does iothread need to be locked for walking CPU list? */ 286195801d7SStefan Hajnoczi bql_lock(); 287d24e80b2SNicholas Piggin THREAD_SIBLING_FOREACH(cs, ccs) { 288d24e80b2SNicholas Piggin PowerPCCPU *ccpu = POWERPC_CPU(ccs); 289d24e80b2SNicholas Piggin uint32_t thread_id = ppc_cpu_tir(ccpu); 290d24e80b2SNicholas Piggin 291d24e80b2SNicholas Piggin ppc_set_irq(cpu, PPC_INTERRUPT_DOORBELL, val & (0x1 << thread_id)); 292d24e80b2SNicholas Piggin } 293195801d7SStefan Hajnoczi bql_unlock(); 2945ba7ba1dSCédric Le Goater } 2952736432fSNicholas Piggin 29660d30cffSNicholas Piggin /* 29760d30cffSNicholas Piggin * qemu-user breaks with pnv headers, so they go under ifdefs for now. 29860d30cffSNicholas Piggin * A clean up may be to move powernv specific registers and helpers into 29960d30cffSNicholas Piggin * target/ppc/pnv_helper.c 30060d30cffSNicholas Piggin */ 30160d30cffSNicholas Piggin #include "hw/ppc/pnv_core.h" 30260d30cffSNicholas Piggin 3032736432fSNicholas Piggin /* Indirect SCOM (SPRC/SPRD) access to SCRATCH0-7 are implemented. */ 3042736432fSNicholas Piggin void helper_store_sprc(CPUPPCState *env, target_ulong val) 3052736432fSNicholas Piggin { 3062736432fSNicholas Piggin if (val & ~0x3f8ULL) { 3072736432fSNicholas Piggin qemu_log_mask(LOG_GUEST_ERROR, "Invalid SPRC register value " 3082736432fSNicholas Piggin TARGET_FMT_lx"\n", val); 3092736432fSNicholas Piggin return; 3102736432fSNicholas Piggin } 3112736432fSNicholas Piggin env->spr[SPR_POWER_SPRC] = val; 3122736432fSNicholas Piggin } 3132736432fSNicholas Piggin 3142736432fSNicholas Piggin target_ulong helper_load_sprd(CPUPPCState *env) 3152736432fSNicholas Piggin { 31660d30cffSNicholas Piggin /* 31760d30cffSNicholas Piggin * SPRD is a HV-only register for Power CPUs, so this will only be 31860d30cffSNicholas Piggin * accessed by powernv machines. 31960d30cffSNicholas Piggin */ 32060d30cffSNicholas Piggin PowerPCCPU *cpu = env_archcpu(env); 32160d30cffSNicholas Piggin PnvCore *pc = pnv_cpu_state(cpu)->pnv_core; 3222736432fSNicholas Piggin target_ulong sprc = env->spr[SPR_POWER_SPRC]; 3232736432fSNicholas Piggin 32460d30cffSNicholas Piggin switch (sprc & 0x3e0) { 32560d30cffSNicholas Piggin case 0: /* SCRATCH0-3 */ 32660d30cffSNicholas Piggin case 1: /* SCRATCH4-7 */ 32760d30cffSNicholas Piggin return pc->scratch[(sprc >> 3) & 0x7]; 3282736432fSNicholas Piggin default: 3292736432fSNicholas Piggin qemu_log_mask(LOG_UNIMP, "mfSPRD: Unimplemented SPRC:0x" 3302736432fSNicholas Piggin TARGET_FMT_lx"\n", sprc); 3312736432fSNicholas Piggin break; 3322736432fSNicholas Piggin } 3332736432fSNicholas Piggin return 0; 3342736432fSNicholas Piggin } 3352736432fSNicholas Piggin 3362736432fSNicholas Piggin void helper_store_sprd(CPUPPCState *env, target_ulong val) 3372736432fSNicholas Piggin { 3382736432fSNicholas Piggin target_ulong sprc = env->spr[SPR_POWER_SPRC]; 33960d30cffSNicholas Piggin PowerPCCPU *cpu = env_archcpu(env); 34060d30cffSNicholas Piggin PnvCore *pc = pnv_cpu_state(cpu)->pnv_core; 34160d30cffSNicholas Piggin int nr; 3422736432fSNicholas Piggin 34360d30cffSNicholas Piggin switch (sprc & 0x3e0) { 34460d30cffSNicholas Piggin case 0: /* SCRATCH0-3 */ 34560d30cffSNicholas Piggin case 1: /* SCRATCH4-7 */ 34660d30cffSNicholas Piggin /* 34760d30cffSNicholas Piggin * Log stores to SCRATCH, because some firmware uses these for 34860d30cffSNicholas Piggin * debugging and logging, but they would normally be read by the BMC, 34960d30cffSNicholas Piggin * which is not implemented in QEMU yet. This gives a way to get at the 35060d30cffSNicholas Piggin * information. Could also dump these upon checkstop. 35160d30cffSNicholas Piggin */ 35260d30cffSNicholas Piggin nr = (sprc >> 3) & 0x7; 35360d30cffSNicholas Piggin qemu_log("SPRD write 0x" TARGET_FMT_lx " to SCRATCH%d\n", val, nr); 35460d30cffSNicholas Piggin pc->scratch[nr] = val; 3552736432fSNicholas Piggin break; 3562736432fSNicholas Piggin default: 35760d30cffSNicholas Piggin qemu_log_mask(LOG_UNIMP, "mtSPRD: Unimplemented SPRC:0x" 3582736432fSNicholas Piggin TARGET_FMT_lx"\n", sprc); 3592736432fSNicholas Piggin break; 3602736432fSNicholas Piggin } 3612736432fSNicholas Piggin } 3624a7518e0SCédric Le Goater #endif /* defined(TARGET_PPC64) */ 3634a7518e0SCédric Le Goater 36431b2b0f8SSuraj Jitindar Singh void helper_store_pidr(CPUPPCState *env, target_ulong val) 36531b2b0f8SSuraj Jitindar Singh { 366fbda88f7SNicholas Piggin env->spr[SPR_BOOKS_PID] = (uint32_t)val; 367db70b311SRichard Henderson tlb_flush(env_cpu(env)); 36831b2b0f8SSuraj Jitindar Singh } 36931b2b0f8SSuraj Jitindar Singh 370c4dae9cdSBenjamin Herrenschmidt void helper_store_lpidr(CPUPPCState *env, target_ulong val) 371c4dae9cdSBenjamin Herrenschmidt { 372fbda88f7SNicholas Piggin env->spr[SPR_LPIDR] = (uint32_t)val; 373c4dae9cdSBenjamin Herrenschmidt 374c4dae9cdSBenjamin Herrenschmidt /* 375c4dae9cdSBenjamin Herrenschmidt * We need to flush the TLB on LPID changes as we only tag HV vs 376c4dae9cdSBenjamin Herrenschmidt * guest in TCG TLB. Also the quadrants means the HV will 377c4dae9cdSBenjamin Herrenschmidt * potentially access and cache entries for the current LPID as 378c4dae9cdSBenjamin Herrenschmidt * well. 379c4dae9cdSBenjamin Herrenschmidt */ 380db70b311SRichard Henderson tlb_flush(env_cpu(env)); 381c4dae9cdSBenjamin Herrenschmidt } 382c4dae9cdSBenjamin Herrenschmidt 383fcf5ef2aSThomas Huth void helper_store_40x_dbcr0(CPUPPCState *env, target_ulong val) 384fcf5ef2aSThomas Huth { 3857da31f26SRichard Henderson /* Bits 26 & 27 affect single-stepping. */ 3867da31f26SRichard Henderson hreg_compute_hflags(env); 3877da31f26SRichard Henderson /* Bits 28 & 29 affect reset or shutdown. */ 388fcf5ef2aSThomas Huth store_40x_dbcr0(env, val); 389fcf5ef2aSThomas Huth } 390fcf5ef2aSThomas Huth 391fcf5ef2aSThomas Huth void helper_store_40x_sler(CPUPPCState *env, target_ulong val) 392fcf5ef2aSThomas Huth { 393fcf5ef2aSThomas Huth store_40x_sler(env, val); 394fcf5ef2aSThomas Huth } 395fcf5ef2aSThomas Huth #endif 396fcf5ef2aSThomas Huth 397fcf5ef2aSThomas Huth /*****************************************************************************/ 398fcf5ef2aSThomas Huth /* Special registers manipulation */ 399fcf5ef2aSThomas Huth 400d81b4327SDavid Gibson /* 401d81b4327SDavid Gibson * This code is lifted from MacOnLinux. It is called whenever THRM1,2 402d81b4327SDavid Gibson * or 3 is read an fixes up the values in such a way that will make 403d81b4327SDavid Gibson * MacOS not hang. These registers exist on some 75x and 74xx 404d81b4327SDavid Gibson * processors. 405fcf5ef2aSThomas Huth */ 406fcf5ef2aSThomas Huth void helper_fixup_thrm(CPUPPCState *env) 407fcf5ef2aSThomas Huth { 408fcf5ef2aSThomas Huth target_ulong v, t; 409fcf5ef2aSThomas Huth int i; 410fcf5ef2aSThomas Huth 411fcf5ef2aSThomas Huth #define THRM1_TIN (1 << 31) 412fcf5ef2aSThomas Huth #define THRM1_TIV (1 << 30) 413fcf5ef2aSThomas Huth #define THRM1_THRES(x) (((x) & 0x7f) << 23) 414fcf5ef2aSThomas Huth #define THRM1_TID (1 << 2) 415fcf5ef2aSThomas Huth #define THRM1_TIE (1 << 1) 416fcf5ef2aSThomas Huth #define THRM1_V (1 << 0) 417fcf5ef2aSThomas Huth #define THRM3_E (1 << 0) 418fcf5ef2aSThomas Huth 419fcf5ef2aSThomas Huth if (!(env->spr[SPR_THRM3] & THRM3_E)) { 420fcf5ef2aSThomas Huth return; 421fcf5ef2aSThomas Huth } 422fcf5ef2aSThomas Huth 423fcf5ef2aSThomas Huth /* Note: Thermal interrupts are unimplemented */ 424fcf5ef2aSThomas Huth for (i = SPR_THRM1; i <= SPR_THRM2; i++) { 425fcf5ef2aSThomas Huth v = env->spr[i]; 426fcf5ef2aSThomas Huth if (!(v & THRM1_V)) { 427fcf5ef2aSThomas Huth continue; 428fcf5ef2aSThomas Huth } 429fcf5ef2aSThomas Huth v |= THRM1_TIV; 430fcf5ef2aSThomas Huth v &= ~THRM1_TIN; 431fcf5ef2aSThomas Huth t = v & THRM1_THRES(127); 432fcf5ef2aSThomas Huth if ((v & THRM1_TID) && t < THRM1_THRES(24)) { 433fcf5ef2aSThomas Huth v |= THRM1_TIN; 434fcf5ef2aSThomas Huth } 435fcf5ef2aSThomas Huth if (!(v & THRM1_TID) && t > THRM1_THRES(24)) { 436fcf5ef2aSThomas Huth v |= THRM1_TIN; 437fcf5ef2aSThomas Huth } 438fcf5ef2aSThomas Huth env->spr[i] = v; 439fcf5ef2aSThomas Huth } 440fcf5ef2aSThomas Huth } 4416bfcf1dcSGlenn Miles 4426bfcf1dcSGlenn Miles #if !defined(CONFIG_USER_ONLY) 4436bfcf1dcSGlenn Miles #if defined(TARGET_PPC64) 4446bfcf1dcSGlenn Miles void helper_clrbhrb(CPUPPCState *env) 4456bfcf1dcSGlenn Miles { 4466bfcf1dcSGlenn Miles helper_hfscr_facility_check(env, HFSCR_BHRB, "clrbhrb", FSCR_IC_BHRB); 4476bfcf1dcSGlenn Miles 4486bfcf1dcSGlenn Miles helper_mmcr0_facility_check(env, MMCR0_BHRBA_NR, 0, FSCR_IC_BHRB); 4496bfcf1dcSGlenn Miles 4506bfcf1dcSGlenn Miles if (env->flags & POWERPC_FLAG_BHRB) { 4516bfcf1dcSGlenn Miles memset(env->bhrb, 0, sizeof(env->bhrb)); 4526bfcf1dcSGlenn Miles } 4536bfcf1dcSGlenn Miles } 4546bfcf1dcSGlenn Miles 4556bfcf1dcSGlenn Miles uint64_t helper_mfbhrbe(CPUPPCState *env, uint32_t bhrbe) 4566bfcf1dcSGlenn Miles { 4576bfcf1dcSGlenn Miles unsigned int index; 4586bfcf1dcSGlenn Miles 4596bfcf1dcSGlenn Miles helper_hfscr_facility_check(env, HFSCR_BHRB, "mfbhrbe", FSCR_IC_BHRB); 4606bfcf1dcSGlenn Miles 4616bfcf1dcSGlenn Miles helper_mmcr0_facility_check(env, MMCR0_BHRBA_NR, 0, FSCR_IC_BHRB); 4626bfcf1dcSGlenn Miles 4636bfcf1dcSGlenn Miles if (!(env->flags & POWERPC_FLAG_BHRB) || 4646bfcf1dcSGlenn Miles (bhrbe >= env->bhrb_num_entries) || 4656bfcf1dcSGlenn Miles (env->spr[SPR_POWER_MMCR0] & MMCR0_PMAE)) { 4666bfcf1dcSGlenn Miles return 0; 4676bfcf1dcSGlenn Miles } 4686bfcf1dcSGlenn Miles 4696bfcf1dcSGlenn Miles /* 4706bfcf1dcSGlenn Miles * Note: bhrb_offset is the byte offset for writing the 4716bfcf1dcSGlenn Miles * next entry (over the oldest entry), which is why we 4726bfcf1dcSGlenn Miles * must offset bhrbe by 1 to get to the 0th entry. 4736bfcf1dcSGlenn Miles */ 4746bfcf1dcSGlenn Miles index = ((env->bhrb_offset / sizeof(uint64_t)) - (bhrbe + 1)) % 4756bfcf1dcSGlenn Miles env->bhrb_num_entries; 4766bfcf1dcSGlenn Miles return env->bhrb[index]; 4776bfcf1dcSGlenn Miles } 4786bfcf1dcSGlenn Miles #endif 4796bfcf1dcSGlenn Miles #endif 480