1fcf5ef2aSThomas Huth /* 2fcf5ef2aSThomas Huth * QEMU ARM CPU 3fcf5ef2aSThomas Huth * 4fcf5ef2aSThomas Huth * Copyright (c) 2012 SUSE LINUX Products GmbH 5fcf5ef2aSThomas Huth * 6fcf5ef2aSThomas Huth * This program is free software; you can redistribute it and/or 7fcf5ef2aSThomas Huth * modify it under the terms of the GNU General Public License 8fcf5ef2aSThomas Huth * as published by the Free Software Foundation; either version 2 9fcf5ef2aSThomas Huth * of the License, or (at your option) any later version. 10fcf5ef2aSThomas Huth * 11fcf5ef2aSThomas Huth * This program 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 14fcf5ef2aSThomas Huth * GNU General Public License for more details. 15fcf5ef2aSThomas Huth * 16fcf5ef2aSThomas Huth * You should have received a copy of the GNU General Public License 17fcf5ef2aSThomas Huth * along with this program; if not, see 18fcf5ef2aSThomas Huth * <http://www.gnu.org/licenses/gpl-2.0.html> 19fcf5ef2aSThomas Huth */ 20fcf5ef2aSThomas Huth 21fcf5ef2aSThomas Huth #include "qemu/osdep.h" 2286480615SPhilippe Mathieu-Daudé #include "qemu/qemu-print.h" 23a8d25326SMarkus Armbruster #include "qemu-common.h" 24181962fdSPeter Maydell #include "target/arm/idau.h" 250b8fa32fSMarkus Armbruster #include "qemu/module.h" 26fcf5ef2aSThomas Huth #include "qapi/error.h" 27f9f62e4cSPeter Maydell #include "qapi/visitor.h" 28fcf5ef2aSThomas Huth #include "cpu.h" 29fcf5ef2aSThomas Huth #include "internals.h" 30fcf5ef2aSThomas Huth #include "exec/exec-all.h" 31fcf5ef2aSThomas Huth #include "hw/qdev-properties.h" 32fcf5ef2aSThomas Huth #if !defined(CONFIG_USER_ONLY) 33fcf5ef2aSThomas Huth #include "hw/loader.h" 34cc7d44c2SLike Xu #include "hw/boards.h" 35fcf5ef2aSThomas Huth #endif 36fcf5ef2aSThomas Huth #include "sysemu/sysemu.h" 3714a48c1dSMarkus Armbruster #include "sysemu/tcg.h" 38b3946626SVincent Palatin #include "sysemu/hw_accel.h" 39fcf5ef2aSThomas Huth #include "kvm_arm.h" 40110f6c70SRichard Henderson #include "disas/capstone.h" 4124f91e81SAlex Bennée #include "fpu/softfloat.h" 42fcf5ef2aSThomas Huth 43fcf5ef2aSThomas Huth static void arm_cpu_set_pc(CPUState *cs, vaddr value) 44fcf5ef2aSThomas Huth { 45fcf5ef2aSThomas Huth ARMCPU *cpu = ARM_CPU(cs); 4642f6ed91SJulia Suvorova CPUARMState *env = &cpu->env; 47fcf5ef2aSThomas Huth 4842f6ed91SJulia Suvorova if (is_a64(env)) { 4942f6ed91SJulia Suvorova env->pc = value; 5042f6ed91SJulia Suvorova env->thumb = 0; 5142f6ed91SJulia Suvorova } else { 5242f6ed91SJulia Suvorova env->regs[15] = value & ~1; 5342f6ed91SJulia Suvorova env->thumb = value & 1; 5442f6ed91SJulia Suvorova } 5542f6ed91SJulia Suvorova } 5642f6ed91SJulia Suvorova 57*04a37d4cSRichard Henderson static void arm_cpu_synchronize_from_tb(CPUState *cs, 58*04a37d4cSRichard Henderson const TranslationBlock *tb) 5942f6ed91SJulia Suvorova { 6042f6ed91SJulia Suvorova ARMCPU *cpu = ARM_CPU(cs); 6142f6ed91SJulia Suvorova CPUARMState *env = &cpu->env; 6242f6ed91SJulia Suvorova 6342f6ed91SJulia Suvorova /* 6442f6ed91SJulia Suvorova * It's OK to look at env for the current mode here, because it's 6542f6ed91SJulia Suvorova * never possible for an AArch64 TB to chain to an AArch32 TB. 6642f6ed91SJulia Suvorova */ 6742f6ed91SJulia Suvorova if (is_a64(env)) { 6842f6ed91SJulia Suvorova env->pc = tb->pc; 6942f6ed91SJulia Suvorova } else { 7042f6ed91SJulia Suvorova env->regs[15] = tb->pc; 7142f6ed91SJulia Suvorova } 72fcf5ef2aSThomas Huth } 73fcf5ef2aSThomas Huth 74fcf5ef2aSThomas Huth static bool arm_cpu_has_work(CPUState *cs) 75fcf5ef2aSThomas Huth { 76fcf5ef2aSThomas Huth ARMCPU *cpu = ARM_CPU(cs); 77fcf5ef2aSThomas Huth 78062ba099SAlex Bennée return (cpu->power_state != PSCI_OFF) 79fcf5ef2aSThomas Huth && cs->interrupt_request & 80fcf5ef2aSThomas Huth (CPU_INTERRUPT_FIQ | CPU_INTERRUPT_HARD 81fcf5ef2aSThomas Huth | CPU_INTERRUPT_VFIQ | CPU_INTERRUPT_VIRQ 82fcf5ef2aSThomas Huth | CPU_INTERRUPT_EXITTB); 83fcf5ef2aSThomas Huth } 84fcf5ef2aSThomas Huth 85b5c53d1bSAaron Lindsay void arm_register_pre_el_change_hook(ARMCPU *cpu, ARMELChangeHookFn *hook, 86b5c53d1bSAaron Lindsay void *opaque) 87b5c53d1bSAaron Lindsay { 88b5c53d1bSAaron Lindsay ARMELChangeHook *entry = g_new0(ARMELChangeHook, 1); 89b5c53d1bSAaron Lindsay 90b5c53d1bSAaron Lindsay entry->hook = hook; 91b5c53d1bSAaron Lindsay entry->opaque = opaque; 92b5c53d1bSAaron Lindsay 93b5c53d1bSAaron Lindsay QLIST_INSERT_HEAD(&cpu->pre_el_change_hooks, entry, node); 94b5c53d1bSAaron Lindsay } 95b5c53d1bSAaron Lindsay 9608267487SAaron Lindsay void arm_register_el_change_hook(ARMCPU *cpu, ARMELChangeHookFn *hook, 97fcf5ef2aSThomas Huth void *opaque) 98fcf5ef2aSThomas Huth { 9908267487SAaron Lindsay ARMELChangeHook *entry = g_new0(ARMELChangeHook, 1); 10008267487SAaron Lindsay 10108267487SAaron Lindsay entry->hook = hook; 10208267487SAaron Lindsay entry->opaque = opaque; 10308267487SAaron Lindsay 10408267487SAaron Lindsay QLIST_INSERT_HEAD(&cpu->el_change_hooks, entry, node); 105fcf5ef2aSThomas Huth } 106fcf5ef2aSThomas Huth 107fcf5ef2aSThomas Huth static void cp_reg_reset(gpointer key, gpointer value, gpointer opaque) 108fcf5ef2aSThomas Huth { 109fcf5ef2aSThomas Huth /* Reset a single ARMCPRegInfo register */ 110fcf5ef2aSThomas Huth ARMCPRegInfo *ri = value; 111fcf5ef2aSThomas Huth ARMCPU *cpu = opaque; 112fcf5ef2aSThomas Huth 113fcf5ef2aSThomas Huth if (ri->type & (ARM_CP_SPECIAL | ARM_CP_ALIAS)) { 114fcf5ef2aSThomas Huth return; 115fcf5ef2aSThomas Huth } 116fcf5ef2aSThomas Huth 117fcf5ef2aSThomas Huth if (ri->resetfn) { 118fcf5ef2aSThomas Huth ri->resetfn(&cpu->env, ri); 119fcf5ef2aSThomas Huth return; 120fcf5ef2aSThomas Huth } 121fcf5ef2aSThomas Huth 122fcf5ef2aSThomas Huth /* A zero offset is never possible as it would be regs[0] 123fcf5ef2aSThomas Huth * so we use it to indicate that reset is being handled elsewhere. 124fcf5ef2aSThomas Huth * This is basically only used for fields in non-core coprocessors 125fcf5ef2aSThomas Huth * (like the pxa2xx ones). 126fcf5ef2aSThomas Huth */ 127fcf5ef2aSThomas Huth if (!ri->fieldoffset) { 128fcf5ef2aSThomas Huth return; 129fcf5ef2aSThomas Huth } 130fcf5ef2aSThomas Huth 131fcf5ef2aSThomas Huth if (cpreg_field_is_64bit(ri)) { 132fcf5ef2aSThomas Huth CPREG_FIELD64(&cpu->env, ri) = ri->resetvalue; 133fcf5ef2aSThomas Huth } else { 134fcf5ef2aSThomas Huth CPREG_FIELD32(&cpu->env, ri) = ri->resetvalue; 135fcf5ef2aSThomas Huth } 136fcf5ef2aSThomas Huth } 137fcf5ef2aSThomas Huth 138fcf5ef2aSThomas Huth static void cp_reg_check_reset(gpointer key, gpointer value, gpointer opaque) 139fcf5ef2aSThomas Huth { 140fcf5ef2aSThomas Huth /* Purely an assertion check: we've already done reset once, 141fcf5ef2aSThomas Huth * so now check that running the reset for the cpreg doesn't 142fcf5ef2aSThomas Huth * change its value. This traps bugs where two different cpregs 143fcf5ef2aSThomas Huth * both try to reset the same state field but to different values. 144fcf5ef2aSThomas Huth */ 145fcf5ef2aSThomas Huth ARMCPRegInfo *ri = value; 146fcf5ef2aSThomas Huth ARMCPU *cpu = opaque; 147fcf5ef2aSThomas Huth uint64_t oldvalue, newvalue; 148fcf5ef2aSThomas Huth 149fcf5ef2aSThomas Huth if (ri->type & (ARM_CP_SPECIAL | ARM_CP_ALIAS | ARM_CP_NO_RAW)) { 150fcf5ef2aSThomas Huth return; 151fcf5ef2aSThomas Huth } 152fcf5ef2aSThomas Huth 153fcf5ef2aSThomas Huth oldvalue = read_raw_cp_reg(&cpu->env, ri); 154fcf5ef2aSThomas Huth cp_reg_reset(key, value, opaque); 155fcf5ef2aSThomas Huth newvalue = read_raw_cp_reg(&cpu->env, ri); 156fcf5ef2aSThomas Huth assert(oldvalue == newvalue); 157fcf5ef2aSThomas Huth } 158fcf5ef2aSThomas Huth 159781c67caSPeter Maydell static void arm_cpu_reset(DeviceState *dev) 160fcf5ef2aSThomas Huth { 161781c67caSPeter Maydell CPUState *s = CPU(dev); 162fcf5ef2aSThomas Huth ARMCPU *cpu = ARM_CPU(s); 163fcf5ef2aSThomas Huth ARMCPUClass *acc = ARM_CPU_GET_CLASS(cpu); 164fcf5ef2aSThomas Huth CPUARMState *env = &cpu->env; 165fcf5ef2aSThomas Huth 166781c67caSPeter Maydell acc->parent_reset(dev); 167fcf5ef2aSThomas Huth 1681f5c00cfSAlex Bennée memset(env, 0, offsetof(CPUARMState, end_reset_fields)); 1691f5c00cfSAlex Bennée 170fcf5ef2aSThomas Huth g_hash_table_foreach(cpu->cp_regs, cp_reg_reset, cpu); 171fcf5ef2aSThomas Huth g_hash_table_foreach(cpu->cp_regs, cp_reg_check_reset, cpu); 172fcf5ef2aSThomas Huth 173fcf5ef2aSThomas Huth env->vfp.xregs[ARM_VFP_FPSID] = cpu->reset_fpsid; 17447576b94SRichard Henderson env->vfp.xregs[ARM_VFP_MVFR0] = cpu->isar.mvfr0; 17547576b94SRichard Henderson env->vfp.xregs[ARM_VFP_MVFR1] = cpu->isar.mvfr1; 17647576b94SRichard Henderson env->vfp.xregs[ARM_VFP_MVFR2] = cpu->isar.mvfr2; 177fcf5ef2aSThomas Huth 178c1b70158SThiago Jung Bauermann cpu->power_state = s->start_powered_off ? PSCI_OFF : PSCI_ON; 179fcf5ef2aSThomas Huth 180fcf5ef2aSThomas Huth if (arm_feature(env, ARM_FEATURE_IWMMXT)) { 181fcf5ef2aSThomas Huth env->iwmmxt.cregs[ARM_IWMMXT_wCID] = 0x69051000 | 'Q'; 182fcf5ef2aSThomas Huth } 183fcf5ef2aSThomas Huth 184fcf5ef2aSThomas Huth if (arm_feature(env, ARM_FEATURE_AARCH64)) { 185fcf5ef2aSThomas Huth /* 64 bit CPUs always start in 64 bit mode */ 186fcf5ef2aSThomas Huth env->aarch64 = 1; 187fcf5ef2aSThomas Huth #if defined(CONFIG_USER_ONLY) 188fcf5ef2aSThomas Huth env->pstate = PSTATE_MODE_EL0t; 189fcf5ef2aSThomas Huth /* Userspace expects access to DC ZVA, CTL_EL0 and the cache ops */ 190fcf5ef2aSThomas Huth env->cp15.sctlr_el[1] |= SCTLR_UCT | SCTLR_UCI | SCTLR_DZE; 191276c6e81SRichard Henderson /* Enable all PAC keys. */ 192276c6e81SRichard Henderson env->cp15.sctlr_el[1] |= (SCTLR_EnIA | SCTLR_EnIB | 193276c6e81SRichard Henderson SCTLR_EnDA | SCTLR_EnDB); 194fcf5ef2aSThomas Huth /* and to the FP/Neon instructions */ 195fcf5ef2aSThomas Huth env->cp15.cpacr_el1 = deposit64(env->cp15.cpacr_el1, 20, 2, 3); 196802ac0e1SRichard Henderson /* and to the SVE instructions */ 197802ac0e1SRichard Henderson env->cp15.cpacr_el1 = deposit64(env->cp15.cpacr_el1, 16, 2, 3); 1987b6a2198SAlex Bennée /* with reasonable vector length */ 1997b6a2198SAlex Bennée if (cpu_isar_feature(aa64_sve, cpu)) { 2007b6a2198SAlex Bennée env->vfp.zcr_el[1] = MIN(cpu->sve_max_vq - 1, 3); 2017b6a2198SAlex Bennée } 202f6a148feSRichard Henderson /* 203f6a148feSRichard Henderson * Enable TBI0 and TBI1. While the real kernel only enables TBI0, 204f6a148feSRichard Henderson * turning on both here will produce smaller code and otherwise 205f6a148feSRichard Henderson * make no difference to the user-level emulation. 206c4af8ba1SRichard Henderson * 207c4af8ba1SRichard Henderson * In sve_probe_page, we assume that this is set. 208c4af8ba1SRichard Henderson * Do not modify this without other changes. 209f6a148feSRichard Henderson */ 210f6a148feSRichard Henderson env->cp15.tcr_el[1].raw_tcr = (3ULL << 37); 211fcf5ef2aSThomas Huth #else 212fcf5ef2aSThomas Huth /* Reset into the highest available EL */ 213fcf5ef2aSThomas Huth if (arm_feature(env, ARM_FEATURE_EL3)) { 214fcf5ef2aSThomas Huth env->pstate = PSTATE_MODE_EL3h; 215fcf5ef2aSThomas Huth } else if (arm_feature(env, ARM_FEATURE_EL2)) { 216fcf5ef2aSThomas Huth env->pstate = PSTATE_MODE_EL2h; 217fcf5ef2aSThomas Huth } else { 218fcf5ef2aSThomas Huth env->pstate = PSTATE_MODE_EL1h; 219fcf5ef2aSThomas Huth } 220fcf5ef2aSThomas Huth env->pc = cpu->rvbar; 221fcf5ef2aSThomas Huth #endif 222fcf5ef2aSThomas Huth } else { 223fcf5ef2aSThomas Huth #if defined(CONFIG_USER_ONLY) 224fcf5ef2aSThomas Huth /* Userspace expects access to cp10 and cp11 for FP/Neon */ 225fcf5ef2aSThomas Huth env->cp15.cpacr_el1 = deposit64(env->cp15.cpacr_el1, 20, 4, 0xf); 226fcf5ef2aSThomas Huth #endif 227fcf5ef2aSThomas Huth } 228fcf5ef2aSThomas Huth 229fcf5ef2aSThomas Huth #if defined(CONFIG_USER_ONLY) 230fcf5ef2aSThomas Huth env->uncached_cpsr = ARM_CPU_MODE_USR; 231fcf5ef2aSThomas Huth /* For user mode we must enable access to coprocessors */ 232fcf5ef2aSThomas Huth env->vfp.xregs[ARM_VFP_FPEXC] = 1 << 30; 233fcf5ef2aSThomas Huth if (arm_feature(env, ARM_FEATURE_IWMMXT)) { 234fcf5ef2aSThomas Huth env->cp15.c15_cpar = 3; 235fcf5ef2aSThomas Huth } else if (arm_feature(env, ARM_FEATURE_XSCALE)) { 236fcf5ef2aSThomas Huth env->cp15.c15_cpar = 1; 237fcf5ef2aSThomas Huth } 238fcf5ef2aSThomas Huth #else 239060a65dfSPeter Maydell 240060a65dfSPeter Maydell /* 241060a65dfSPeter Maydell * If the highest available EL is EL2, AArch32 will start in Hyp 242060a65dfSPeter Maydell * mode; otherwise it starts in SVC. Note that if we start in 243060a65dfSPeter Maydell * AArch64 then these values in the uncached_cpsr will be ignored. 244060a65dfSPeter Maydell */ 245060a65dfSPeter Maydell if (arm_feature(env, ARM_FEATURE_EL2) && 246060a65dfSPeter Maydell !arm_feature(env, ARM_FEATURE_EL3)) { 247060a65dfSPeter Maydell env->uncached_cpsr = ARM_CPU_MODE_HYP; 248060a65dfSPeter Maydell } else { 249fcf5ef2aSThomas Huth env->uncached_cpsr = ARM_CPU_MODE_SVC; 250060a65dfSPeter Maydell } 251fcf5ef2aSThomas Huth env->daif = PSTATE_D | PSTATE_A | PSTATE_I | PSTATE_F; 252dc7abe4dSMichael Davidsaver 253531c60a9SPeter Maydell if (arm_feature(env, ARM_FEATURE_M)) { 254fcf5ef2aSThomas Huth uint32_t initial_msp; /* Loaded from 0x0 */ 255fcf5ef2aSThomas Huth uint32_t initial_pc; /* Loaded from 0x4 */ 256fcf5ef2aSThomas Huth uint8_t *rom; 25738e2a77cSPeter Maydell uint32_t vecbase; 258fcf5ef2aSThomas Huth 2598128c8e8SPeter Maydell if (cpu_isar_feature(aa32_lob, cpu)) { 2608128c8e8SPeter Maydell /* 2618128c8e8SPeter Maydell * LTPSIZE is constant 4 if MVE not implemented, and resets 2628128c8e8SPeter Maydell * to an UNKNOWN value if MVE is implemented. We choose to 2638128c8e8SPeter Maydell * always reset to 4. 2648128c8e8SPeter Maydell */ 2658128c8e8SPeter Maydell env->v7m.ltpsize = 4; 26699c7834fSPeter Maydell /* The LTPSIZE field in FPDSCR is constant and reads as 4. */ 26799c7834fSPeter Maydell env->v7m.fpdscr[M_REG_NS] = 4 << FPCR_LTPSIZE_SHIFT; 26899c7834fSPeter Maydell env->v7m.fpdscr[M_REG_S] = 4 << FPCR_LTPSIZE_SHIFT; 2698128c8e8SPeter Maydell } 2708128c8e8SPeter Maydell 2711e577cc7SPeter Maydell if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { 2721e577cc7SPeter Maydell env->v7m.secure = true; 2733b2e9344SPeter Maydell } else { 2743b2e9344SPeter Maydell /* This bit resets to 0 if security is supported, but 1 if 2753b2e9344SPeter Maydell * it is not. The bit is not present in v7M, but we set it 2763b2e9344SPeter Maydell * here so we can avoid having to make checks on it conditional 2773b2e9344SPeter Maydell * on ARM_FEATURE_V8 (we don't let the guest see the bit). 2783b2e9344SPeter Maydell */ 2793b2e9344SPeter Maydell env->v7m.aircr = R_V7M_AIRCR_BFHFNMINS_MASK; 28002ac2f7fSPeter Maydell /* 28102ac2f7fSPeter Maydell * Set NSACR to indicate "NS access permitted to everything"; 28202ac2f7fSPeter Maydell * this avoids having to have all the tests of it being 28302ac2f7fSPeter Maydell * conditional on ARM_FEATURE_M_SECURITY. Note also that from 28402ac2f7fSPeter Maydell * v8.1M the guest-visible value of NSACR in a CPU without the 28502ac2f7fSPeter Maydell * Security Extension is 0xcff. 28602ac2f7fSPeter Maydell */ 28702ac2f7fSPeter Maydell env->v7m.nsacr = 0xcff; 2881e577cc7SPeter Maydell } 2891e577cc7SPeter Maydell 2909d40cd8aSPeter Maydell /* In v7M the reset value of this bit is IMPDEF, but ARM recommends 2912c4da50dSPeter Maydell * that it resets to 1, so QEMU always does that rather than making 2929d40cd8aSPeter Maydell * it dependent on CPU model. In v8M it is RES1. 2932c4da50dSPeter Maydell */ 2949d40cd8aSPeter Maydell env->v7m.ccr[M_REG_NS] = R_V7M_CCR_STKALIGN_MASK; 2959d40cd8aSPeter Maydell env->v7m.ccr[M_REG_S] = R_V7M_CCR_STKALIGN_MASK; 2969d40cd8aSPeter Maydell if (arm_feature(env, ARM_FEATURE_V8)) { 2979d40cd8aSPeter Maydell /* in v8M the NONBASETHRDENA bit [0] is RES1 */ 2989d40cd8aSPeter Maydell env->v7m.ccr[M_REG_NS] |= R_V7M_CCR_NONBASETHRDENA_MASK; 2999d40cd8aSPeter Maydell env->v7m.ccr[M_REG_S] |= R_V7M_CCR_NONBASETHRDENA_MASK; 3009d40cd8aSPeter Maydell } 30122ab3460SJulia Suvorova if (!arm_feature(env, ARM_FEATURE_M_MAIN)) { 30222ab3460SJulia Suvorova env->v7m.ccr[M_REG_NS] |= R_V7M_CCR_UNALIGN_TRP_MASK; 30322ab3460SJulia Suvorova env->v7m.ccr[M_REG_S] |= R_V7M_CCR_UNALIGN_TRP_MASK; 30422ab3460SJulia Suvorova } 3052c4da50dSPeter Maydell 3067fbc6a40SRichard Henderson if (cpu_isar_feature(aa32_vfp_simd, cpu)) { 307d33abe82SPeter Maydell env->v7m.fpccr[M_REG_NS] = R_V7M_FPCCR_ASPEN_MASK; 308d33abe82SPeter Maydell env->v7m.fpccr[M_REG_S] = R_V7M_FPCCR_ASPEN_MASK | 309d33abe82SPeter Maydell R_V7M_FPCCR_LSPEN_MASK | R_V7M_FPCCR_S_MASK; 310d33abe82SPeter Maydell } 311056f43dfSPeter Maydell /* Unlike A/R profile, M profile defines the reset LR value */ 312056f43dfSPeter Maydell env->regs[14] = 0xffffffff; 313056f43dfSPeter Maydell 31438e2a77cSPeter Maydell env->v7m.vecbase[M_REG_S] = cpu->init_svtor & 0xffffff80; 31538e2a77cSPeter Maydell 31638e2a77cSPeter Maydell /* Load the initial SP and PC from offset 0 and 4 in the vector table */ 31738e2a77cSPeter Maydell vecbase = env->v7m.vecbase[env->v7m.secure]; 3180f0f8b61SThomas Huth rom = rom_ptr(vecbase, 8); 319fcf5ef2aSThomas Huth if (rom) { 320fcf5ef2aSThomas Huth /* Address zero is covered by ROM which hasn't yet been 321fcf5ef2aSThomas Huth * copied into physical memory. 322fcf5ef2aSThomas Huth */ 323fcf5ef2aSThomas Huth initial_msp = ldl_p(rom); 324fcf5ef2aSThomas Huth initial_pc = ldl_p(rom + 4); 325fcf5ef2aSThomas Huth } else { 326fcf5ef2aSThomas Huth /* Address zero not covered by a ROM blob, or the ROM blob 327fcf5ef2aSThomas Huth * is in non-modifiable memory and this is a second reset after 328fcf5ef2aSThomas Huth * it got copied into memory. In the latter case, rom_ptr 329fcf5ef2aSThomas Huth * will return a NULL pointer and we should use ldl_phys instead. 330fcf5ef2aSThomas Huth */ 33138e2a77cSPeter Maydell initial_msp = ldl_phys(s->as, vecbase); 33238e2a77cSPeter Maydell initial_pc = ldl_phys(s->as, vecbase + 4); 333fcf5ef2aSThomas Huth } 334fcf5ef2aSThomas Huth 335fcf5ef2aSThomas Huth env->regs[13] = initial_msp & 0xFFFFFFFC; 336fcf5ef2aSThomas Huth env->regs[15] = initial_pc & ~1; 337fcf5ef2aSThomas Huth env->thumb = initial_pc & 1; 338fcf5ef2aSThomas Huth } 339fcf5ef2aSThomas Huth 340fcf5ef2aSThomas Huth /* AArch32 has a hard highvec setting of 0xFFFF0000. If we are currently 341fcf5ef2aSThomas Huth * executing as AArch32 then check if highvecs are enabled and 342fcf5ef2aSThomas Huth * adjust the PC accordingly. 343fcf5ef2aSThomas Huth */ 344fcf5ef2aSThomas Huth if (A32_BANKED_CURRENT_REG_GET(env, sctlr) & SCTLR_V) { 345fcf5ef2aSThomas Huth env->regs[15] = 0xFFFF0000; 346fcf5ef2aSThomas Huth } 347fcf5ef2aSThomas Huth 348dc3c4c14SPeter Maydell /* M profile requires that reset clears the exclusive monitor; 349dc3c4c14SPeter Maydell * A profile does not, but clearing it makes more sense than having it 350dc3c4c14SPeter Maydell * set with an exclusive access on address zero. 351dc3c4c14SPeter Maydell */ 352dc3c4c14SPeter Maydell arm_clear_exclusive(env); 353dc3c4c14SPeter Maydell 354fcf5ef2aSThomas Huth env->vfp.xregs[ARM_VFP_FPEXC] = 0; 355fcf5ef2aSThomas Huth #endif 35669ceea64SPeter Maydell 3570e1a46bbSPeter Maydell if (arm_feature(env, ARM_FEATURE_PMSA)) { 35869ceea64SPeter Maydell if (cpu->pmsav7_dregion > 0) { 3590e1a46bbSPeter Maydell if (arm_feature(env, ARM_FEATURE_V8)) { 36062c58ee0SPeter Maydell memset(env->pmsav8.rbar[M_REG_NS], 0, 36162c58ee0SPeter Maydell sizeof(*env->pmsav8.rbar[M_REG_NS]) 36262c58ee0SPeter Maydell * cpu->pmsav7_dregion); 36362c58ee0SPeter Maydell memset(env->pmsav8.rlar[M_REG_NS], 0, 36462c58ee0SPeter Maydell sizeof(*env->pmsav8.rlar[M_REG_NS]) 36562c58ee0SPeter Maydell * cpu->pmsav7_dregion); 36662c58ee0SPeter Maydell if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { 36762c58ee0SPeter Maydell memset(env->pmsav8.rbar[M_REG_S], 0, 36862c58ee0SPeter Maydell sizeof(*env->pmsav8.rbar[M_REG_S]) 36962c58ee0SPeter Maydell * cpu->pmsav7_dregion); 37062c58ee0SPeter Maydell memset(env->pmsav8.rlar[M_REG_S], 0, 37162c58ee0SPeter Maydell sizeof(*env->pmsav8.rlar[M_REG_S]) 37262c58ee0SPeter Maydell * cpu->pmsav7_dregion); 37362c58ee0SPeter Maydell } 3740e1a46bbSPeter Maydell } else if (arm_feature(env, ARM_FEATURE_V7)) { 37569ceea64SPeter Maydell memset(env->pmsav7.drbar, 0, 37669ceea64SPeter Maydell sizeof(*env->pmsav7.drbar) * cpu->pmsav7_dregion); 37769ceea64SPeter Maydell memset(env->pmsav7.drsr, 0, 37869ceea64SPeter Maydell sizeof(*env->pmsav7.drsr) * cpu->pmsav7_dregion); 37969ceea64SPeter Maydell memset(env->pmsav7.dracr, 0, 38069ceea64SPeter Maydell sizeof(*env->pmsav7.dracr) * cpu->pmsav7_dregion); 38169ceea64SPeter Maydell } 3820e1a46bbSPeter Maydell } 3831bc04a88SPeter Maydell env->pmsav7.rnr[M_REG_NS] = 0; 3841bc04a88SPeter Maydell env->pmsav7.rnr[M_REG_S] = 0; 3854125e6feSPeter Maydell env->pmsav8.mair0[M_REG_NS] = 0; 3864125e6feSPeter Maydell env->pmsav8.mair0[M_REG_S] = 0; 3874125e6feSPeter Maydell env->pmsav8.mair1[M_REG_NS] = 0; 3884125e6feSPeter Maydell env->pmsav8.mair1[M_REG_S] = 0; 38969ceea64SPeter Maydell } 39069ceea64SPeter Maydell 3919901c576SPeter Maydell if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { 3929901c576SPeter Maydell if (cpu->sau_sregion > 0) { 3939901c576SPeter Maydell memset(env->sau.rbar, 0, sizeof(*env->sau.rbar) * cpu->sau_sregion); 3949901c576SPeter Maydell memset(env->sau.rlar, 0, sizeof(*env->sau.rlar) * cpu->sau_sregion); 3959901c576SPeter Maydell } 3969901c576SPeter Maydell env->sau.rnr = 0; 3979901c576SPeter Maydell /* SAU_CTRL reset value is IMPDEF; we choose 0, which is what 3989901c576SPeter Maydell * the Cortex-M33 does. 3999901c576SPeter Maydell */ 4009901c576SPeter Maydell env->sau.ctrl = 0; 4019901c576SPeter Maydell } 4029901c576SPeter Maydell 403fcf5ef2aSThomas Huth set_flush_to_zero(1, &env->vfp.standard_fp_status); 404fcf5ef2aSThomas Huth set_flush_inputs_to_zero(1, &env->vfp.standard_fp_status); 405fcf5ef2aSThomas Huth set_default_nan_mode(1, &env->vfp.standard_fp_status); 406aaae563bSPeter Maydell set_default_nan_mode(1, &env->vfp.standard_fp_status_f16); 407fcf5ef2aSThomas Huth set_float_detect_tininess(float_tininess_before_rounding, 408fcf5ef2aSThomas Huth &env->vfp.fp_status); 409fcf5ef2aSThomas Huth set_float_detect_tininess(float_tininess_before_rounding, 410fcf5ef2aSThomas Huth &env->vfp.standard_fp_status); 411bcc531f0SPeter Maydell set_float_detect_tininess(float_tininess_before_rounding, 412bcc531f0SPeter Maydell &env->vfp.fp_status_f16); 413aaae563bSPeter Maydell set_float_detect_tininess(float_tininess_before_rounding, 414aaae563bSPeter Maydell &env->vfp.standard_fp_status_f16); 415fcf5ef2aSThomas Huth #ifndef CONFIG_USER_ONLY 416fcf5ef2aSThomas Huth if (kvm_enabled()) { 417fcf5ef2aSThomas Huth kvm_arm_reset_vcpu(cpu); 418fcf5ef2aSThomas Huth } 419fcf5ef2aSThomas Huth #endif 420fcf5ef2aSThomas Huth 421fcf5ef2aSThomas Huth hw_breakpoint_update_all(cpu); 422fcf5ef2aSThomas Huth hw_watchpoint_update_all(cpu); 423a8a79c7aSRichard Henderson arm_rebuild_hflags(env); 424fcf5ef2aSThomas Huth } 425fcf5ef2aSThomas Huth 426310cedf3SRichard Henderson static inline bool arm_excp_unmasked(CPUState *cs, unsigned int excp_idx, 427be879556SRichard Henderson unsigned int target_el, 428be879556SRichard Henderson unsigned int cur_el, bool secure, 429be879556SRichard Henderson uint64_t hcr_el2) 430310cedf3SRichard Henderson { 431310cedf3SRichard Henderson CPUARMState *env = cs->env_ptr; 432310cedf3SRichard Henderson bool pstate_unmasked; 43316e07f78SRichard Henderson bool unmasked = false; 434310cedf3SRichard Henderson 435310cedf3SRichard Henderson /* 436310cedf3SRichard Henderson * Don't take exceptions if they target a lower EL. 437310cedf3SRichard Henderson * This check should catch any exceptions that would not be taken 438310cedf3SRichard Henderson * but left pending. 439310cedf3SRichard Henderson */ 440310cedf3SRichard Henderson if (cur_el > target_el) { 441310cedf3SRichard Henderson return false; 442310cedf3SRichard Henderson } 443310cedf3SRichard Henderson 444310cedf3SRichard Henderson switch (excp_idx) { 445310cedf3SRichard Henderson case EXCP_FIQ: 446310cedf3SRichard Henderson pstate_unmasked = !(env->daif & PSTATE_F); 447310cedf3SRichard Henderson break; 448310cedf3SRichard Henderson 449310cedf3SRichard Henderson case EXCP_IRQ: 450310cedf3SRichard Henderson pstate_unmasked = !(env->daif & PSTATE_I); 451310cedf3SRichard Henderson break; 452310cedf3SRichard Henderson 453310cedf3SRichard Henderson case EXCP_VFIQ: 454310cedf3SRichard Henderson if (secure || !(hcr_el2 & HCR_FMO) || (hcr_el2 & HCR_TGE)) { 455310cedf3SRichard Henderson /* VFIQs are only taken when hypervized and non-secure. */ 456310cedf3SRichard Henderson return false; 457310cedf3SRichard Henderson } 458310cedf3SRichard Henderson return !(env->daif & PSTATE_F); 459310cedf3SRichard Henderson case EXCP_VIRQ: 460310cedf3SRichard Henderson if (secure || !(hcr_el2 & HCR_IMO) || (hcr_el2 & HCR_TGE)) { 461310cedf3SRichard Henderson /* VIRQs are only taken when hypervized and non-secure. */ 462310cedf3SRichard Henderson return false; 463310cedf3SRichard Henderson } 464310cedf3SRichard Henderson return !(env->daif & PSTATE_I); 465310cedf3SRichard Henderson default: 466310cedf3SRichard Henderson g_assert_not_reached(); 467310cedf3SRichard Henderson } 468310cedf3SRichard Henderson 469310cedf3SRichard Henderson /* 470310cedf3SRichard Henderson * Use the target EL, current execution state and SCR/HCR settings to 471310cedf3SRichard Henderson * determine whether the corresponding CPSR bit is used to mask the 472310cedf3SRichard Henderson * interrupt. 473310cedf3SRichard Henderson */ 474310cedf3SRichard Henderson if ((target_el > cur_el) && (target_el != 1)) { 475310cedf3SRichard Henderson /* Exceptions targeting a higher EL may not be maskable */ 476310cedf3SRichard Henderson if (arm_feature(env, ARM_FEATURE_AARCH64)) { 477310cedf3SRichard Henderson /* 478310cedf3SRichard Henderson * 64-bit masking rules are simple: exceptions to EL3 479310cedf3SRichard Henderson * can't be masked, and exceptions to EL2 can only be 480310cedf3SRichard Henderson * masked from Secure state. The HCR and SCR settings 481310cedf3SRichard Henderson * don't affect the masking logic, only the interrupt routing. 482310cedf3SRichard Henderson */ 483310cedf3SRichard Henderson if (target_el == 3 || !secure) { 48416e07f78SRichard Henderson unmasked = true; 485310cedf3SRichard Henderson } 486310cedf3SRichard Henderson } else { 487310cedf3SRichard Henderson /* 488310cedf3SRichard Henderson * The old 32-bit-only environment has a more complicated 489310cedf3SRichard Henderson * masking setup. HCR and SCR bits not only affect interrupt 490310cedf3SRichard Henderson * routing but also change the behaviour of masking. 491310cedf3SRichard Henderson */ 492310cedf3SRichard Henderson bool hcr, scr; 493310cedf3SRichard Henderson 494310cedf3SRichard Henderson switch (excp_idx) { 495310cedf3SRichard Henderson case EXCP_FIQ: 496310cedf3SRichard Henderson /* 497310cedf3SRichard Henderson * If FIQs are routed to EL3 or EL2 then there are cases where 498310cedf3SRichard Henderson * we override the CPSR.F in determining if the exception is 499310cedf3SRichard Henderson * masked or not. If neither of these are set then we fall back 500310cedf3SRichard Henderson * to the CPSR.F setting otherwise we further assess the state 501310cedf3SRichard Henderson * below. 502310cedf3SRichard Henderson */ 503310cedf3SRichard Henderson hcr = hcr_el2 & HCR_FMO; 504310cedf3SRichard Henderson scr = (env->cp15.scr_el3 & SCR_FIQ); 505310cedf3SRichard Henderson 506310cedf3SRichard Henderson /* 507310cedf3SRichard Henderson * When EL3 is 32-bit, the SCR.FW bit controls whether the 508310cedf3SRichard Henderson * CPSR.F bit masks FIQ interrupts when taken in non-secure 509310cedf3SRichard Henderson * state. If SCR.FW is set then FIQs can be masked by CPSR.F 510310cedf3SRichard Henderson * when non-secure but only when FIQs are only routed to EL3. 511310cedf3SRichard Henderson */ 512310cedf3SRichard Henderson scr = scr && !((env->cp15.scr_el3 & SCR_FW) && !hcr); 513310cedf3SRichard Henderson break; 514310cedf3SRichard Henderson case EXCP_IRQ: 515310cedf3SRichard Henderson /* 516310cedf3SRichard Henderson * When EL3 execution state is 32-bit, if HCR.IMO is set then 517310cedf3SRichard Henderson * we may override the CPSR.I masking when in non-secure state. 518310cedf3SRichard Henderson * The SCR.IRQ setting has already been taken into consideration 519310cedf3SRichard Henderson * when setting the target EL, so it does not have a further 520310cedf3SRichard Henderson * affect here. 521310cedf3SRichard Henderson */ 522310cedf3SRichard Henderson hcr = hcr_el2 & HCR_IMO; 523310cedf3SRichard Henderson scr = false; 524310cedf3SRichard Henderson break; 525310cedf3SRichard Henderson default: 526310cedf3SRichard Henderson g_assert_not_reached(); 527310cedf3SRichard Henderson } 528310cedf3SRichard Henderson 529310cedf3SRichard Henderson if ((scr || hcr) && !secure) { 53016e07f78SRichard Henderson unmasked = true; 531310cedf3SRichard Henderson } 532310cedf3SRichard Henderson } 533310cedf3SRichard Henderson } 534310cedf3SRichard Henderson 535310cedf3SRichard Henderson /* 536310cedf3SRichard Henderson * The PSTATE bits only mask the interrupt if we have not overriden the 537310cedf3SRichard Henderson * ability above. 538310cedf3SRichard Henderson */ 539310cedf3SRichard Henderson return unmasked || pstate_unmasked; 540310cedf3SRichard Henderson } 541310cedf3SRichard Henderson 542fcf5ef2aSThomas Huth bool arm_cpu_exec_interrupt(CPUState *cs, int interrupt_request) 543fcf5ef2aSThomas Huth { 544fcf5ef2aSThomas Huth CPUClass *cc = CPU_GET_CLASS(cs); 545fcf5ef2aSThomas Huth CPUARMState *env = cs->env_ptr; 546fcf5ef2aSThomas Huth uint32_t cur_el = arm_current_el(env); 547fcf5ef2aSThomas Huth bool secure = arm_is_secure(env); 548be879556SRichard Henderson uint64_t hcr_el2 = arm_hcr_el2_eff(env); 549fcf5ef2aSThomas Huth uint32_t target_el; 550fcf5ef2aSThomas Huth uint32_t excp_idx; 551d63d0ec5SRichard Henderson 552d63d0ec5SRichard Henderson /* The prioritization of interrupts is IMPLEMENTATION DEFINED. */ 553fcf5ef2aSThomas Huth 554fcf5ef2aSThomas Huth if (interrupt_request & CPU_INTERRUPT_FIQ) { 555fcf5ef2aSThomas Huth excp_idx = EXCP_FIQ; 556fcf5ef2aSThomas Huth target_el = arm_phys_excp_target_el(cs, excp_idx, cur_el, secure); 557be879556SRichard Henderson if (arm_excp_unmasked(cs, excp_idx, target_el, 558be879556SRichard Henderson cur_el, secure, hcr_el2)) { 559d63d0ec5SRichard Henderson goto found; 560fcf5ef2aSThomas Huth } 561fcf5ef2aSThomas Huth } 562fcf5ef2aSThomas Huth if (interrupt_request & CPU_INTERRUPT_HARD) { 563fcf5ef2aSThomas Huth excp_idx = EXCP_IRQ; 564fcf5ef2aSThomas Huth target_el = arm_phys_excp_target_el(cs, excp_idx, cur_el, secure); 565be879556SRichard Henderson if (arm_excp_unmasked(cs, excp_idx, target_el, 566be879556SRichard Henderson cur_el, secure, hcr_el2)) { 567d63d0ec5SRichard Henderson goto found; 568fcf5ef2aSThomas Huth } 569fcf5ef2aSThomas Huth } 570fcf5ef2aSThomas Huth if (interrupt_request & CPU_INTERRUPT_VIRQ) { 571fcf5ef2aSThomas Huth excp_idx = EXCP_VIRQ; 572fcf5ef2aSThomas Huth target_el = 1; 573be879556SRichard Henderson if (arm_excp_unmasked(cs, excp_idx, target_el, 574be879556SRichard Henderson cur_el, secure, hcr_el2)) { 575d63d0ec5SRichard Henderson goto found; 576fcf5ef2aSThomas Huth } 577fcf5ef2aSThomas Huth } 578fcf5ef2aSThomas Huth if (interrupt_request & CPU_INTERRUPT_VFIQ) { 579fcf5ef2aSThomas Huth excp_idx = EXCP_VFIQ; 580fcf5ef2aSThomas Huth target_el = 1; 581be879556SRichard Henderson if (arm_excp_unmasked(cs, excp_idx, target_el, 582be879556SRichard Henderson cur_el, secure, hcr_el2)) { 583d63d0ec5SRichard Henderson goto found; 584d63d0ec5SRichard Henderson } 585d63d0ec5SRichard Henderson } 586d63d0ec5SRichard Henderson return false; 587d63d0ec5SRichard Henderson 588d63d0ec5SRichard Henderson found: 589fcf5ef2aSThomas Huth cs->exception_index = excp_idx; 590fcf5ef2aSThomas Huth env->exception.target_el = target_el; 591fcf5ef2aSThomas Huth cc->do_interrupt(cs); 592d63d0ec5SRichard Henderson return true; 593fcf5ef2aSThomas Huth } 594fcf5ef2aSThomas Huth 59589430fc6SPeter Maydell void arm_cpu_update_virq(ARMCPU *cpu) 59689430fc6SPeter Maydell { 59789430fc6SPeter Maydell /* 59889430fc6SPeter Maydell * Update the interrupt level for VIRQ, which is the logical OR of 59989430fc6SPeter Maydell * the HCR_EL2.VI bit and the input line level from the GIC. 60089430fc6SPeter Maydell */ 60189430fc6SPeter Maydell CPUARMState *env = &cpu->env; 60289430fc6SPeter Maydell CPUState *cs = CPU(cpu); 60389430fc6SPeter Maydell 60489430fc6SPeter Maydell bool new_state = (env->cp15.hcr_el2 & HCR_VI) || 60589430fc6SPeter Maydell (env->irq_line_state & CPU_INTERRUPT_VIRQ); 60689430fc6SPeter Maydell 60789430fc6SPeter Maydell if (new_state != ((cs->interrupt_request & CPU_INTERRUPT_VIRQ) != 0)) { 60889430fc6SPeter Maydell if (new_state) { 60989430fc6SPeter Maydell cpu_interrupt(cs, CPU_INTERRUPT_VIRQ); 61089430fc6SPeter Maydell } else { 61189430fc6SPeter Maydell cpu_reset_interrupt(cs, CPU_INTERRUPT_VIRQ); 61289430fc6SPeter Maydell } 61389430fc6SPeter Maydell } 61489430fc6SPeter Maydell } 61589430fc6SPeter Maydell 61689430fc6SPeter Maydell void arm_cpu_update_vfiq(ARMCPU *cpu) 61789430fc6SPeter Maydell { 61889430fc6SPeter Maydell /* 61989430fc6SPeter Maydell * Update the interrupt level for VFIQ, which is the logical OR of 62089430fc6SPeter Maydell * the HCR_EL2.VF bit and the input line level from the GIC. 62189430fc6SPeter Maydell */ 62289430fc6SPeter Maydell CPUARMState *env = &cpu->env; 62389430fc6SPeter Maydell CPUState *cs = CPU(cpu); 62489430fc6SPeter Maydell 62589430fc6SPeter Maydell bool new_state = (env->cp15.hcr_el2 & HCR_VF) || 62689430fc6SPeter Maydell (env->irq_line_state & CPU_INTERRUPT_VFIQ); 62789430fc6SPeter Maydell 62889430fc6SPeter Maydell if (new_state != ((cs->interrupt_request & CPU_INTERRUPT_VFIQ) != 0)) { 62989430fc6SPeter Maydell if (new_state) { 63089430fc6SPeter Maydell cpu_interrupt(cs, CPU_INTERRUPT_VFIQ); 63189430fc6SPeter Maydell } else { 63289430fc6SPeter Maydell cpu_reset_interrupt(cs, CPU_INTERRUPT_VFIQ); 63389430fc6SPeter Maydell } 63489430fc6SPeter Maydell } 63589430fc6SPeter Maydell } 63689430fc6SPeter Maydell 637fcf5ef2aSThomas Huth #ifndef CONFIG_USER_ONLY 638fcf5ef2aSThomas Huth static void arm_cpu_set_irq(void *opaque, int irq, int level) 639fcf5ef2aSThomas Huth { 640fcf5ef2aSThomas Huth ARMCPU *cpu = opaque; 641fcf5ef2aSThomas Huth CPUARMState *env = &cpu->env; 642fcf5ef2aSThomas Huth CPUState *cs = CPU(cpu); 643fcf5ef2aSThomas Huth static const int mask[] = { 644fcf5ef2aSThomas Huth [ARM_CPU_IRQ] = CPU_INTERRUPT_HARD, 645fcf5ef2aSThomas Huth [ARM_CPU_FIQ] = CPU_INTERRUPT_FIQ, 646fcf5ef2aSThomas Huth [ARM_CPU_VIRQ] = CPU_INTERRUPT_VIRQ, 647fcf5ef2aSThomas Huth [ARM_CPU_VFIQ] = CPU_INTERRUPT_VFIQ 648fcf5ef2aSThomas Huth }; 649fcf5ef2aSThomas Huth 650ed89f078SPeter Maydell if (level) { 651ed89f078SPeter Maydell env->irq_line_state |= mask[irq]; 652ed89f078SPeter Maydell } else { 653ed89f078SPeter Maydell env->irq_line_state &= ~mask[irq]; 654ed89f078SPeter Maydell } 655ed89f078SPeter Maydell 656fcf5ef2aSThomas Huth switch (irq) { 657fcf5ef2aSThomas Huth case ARM_CPU_VIRQ: 65889430fc6SPeter Maydell assert(arm_feature(env, ARM_FEATURE_EL2)); 65989430fc6SPeter Maydell arm_cpu_update_virq(cpu); 66089430fc6SPeter Maydell break; 661fcf5ef2aSThomas Huth case ARM_CPU_VFIQ: 662fcf5ef2aSThomas Huth assert(arm_feature(env, ARM_FEATURE_EL2)); 66389430fc6SPeter Maydell arm_cpu_update_vfiq(cpu); 66489430fc6SPeter Maydell break; 665fcf5ef2aSThomas Huth case ARM_CPU_IRQ: 666fcf5ef2aSThomas Huth case ARM_CPU_FIQ: 667fcf5ef2aSThomas Huth if (level) { 668fcf5ef2aSThomas Huth cpu_interrupt(cs, mask[irq]); 669fcf5ef2aSThomas Huth } else { 670fcf5ef2aSThomas Huth cpu_reset_interrupt(cs, mask[irq]); 671fcf5ef2aSThomas Huth } 672fcf5ef2aSThomas Huth break; 673fcf5ef2aSThomas Huth default: 674fcf5ef2aSThomas Huth g_assert_not_reached(); 675fcf5ef2aSThomas Huth } 676fcf5ef2aSThomas Huth } 677fcf5ef2aSThomas Huth 678fcf5ef2aSThomas Huth static void arm_cpu_kvm_set_irq(void *opaque, int irq, int level) 679fcf5ef2aSThomas Huth { 680fcf5ef2aSThomas Huth #ifdef CONFIG_KVM 681fcf5ef2aSThomas Huth ARMCPU *cpu = opaque; 682ed89f078SPeter Maydell CPUARMState *env = &cpu->env; 683fcf5ef2aSThomas Huth CPUState *cs = CPU(cpu); 684ed89f078SPeter Maydell uint32_t linestate_bit; 685f6530926SEric Auger int irq_id; 686fcf5ef2aSThomas Huth 687fcf5ef2aSThomas Huth switch (irq) { 688fcf5ef2aSThomas Huth case ARM_CPU_IRQ: 689f6530926SEric Auger irq_id = KVM_ARM_IRQ_CPU_IRQ; 690ed89f078SPeter Maydell linestate_bit = CPU_INTERRUPT_HARD; 691fcf5ef2aSThomas Huth break; 692fcf5ef2aSThomas Huth case ARM_CPU_FIQ: 693f6530926SEric Auger irq_id = KVM_ARM_IRQ_CPU_FIQ; 694ed89f078SPeter Maydell linestate_bit = CPU_INTERRUPT_FIQ; 695fcf5ef2aSThomas Huth break; 696fcf5ef2aSThomas Huth default: 697fcf5ef2aSThomas Huth g_assert_not_reached(); 698fcf5ef2aSThomas Huth } 699ed89f078SPeter Maydell 700ed89f078SPeter Maydell if (level) { 701ed89f078SPeter Maydell env->irq_line_state |= linestate_bit; 702ed89f078SPeter Maydell } else { 703ed89f078SPeter Maydell env->irq_line_state &= ~linestate_bit; 704ed89f078SPeter Maydell } 705f6530926SEric Auger kvm_arm_set_irq(cs->cpu_index, KVM_ARM_IRQ_TYPE_CPU, irq_id, !!level); 706fcf5ef2aSThomas Huth #endif 707fcf5ef2aSThomas Huth } 708fcf5ef2aSThomas Huth 709fcf5ef2aSThomas Huth static bool arm_cpu_virtio_is_big_endian(CPUState *cs) 710fcf5ef2aSThomas Huth { 711fcf5ef2aSThomas Huth ARMCPU *cpu = ARM_CPU(cs); 712fcf5ef2aSThomas Huth CPUARMState *env = &cpu->env; 713fcf5ef2aSThomas Huth 714fcf5ef2aSThomas Huth cpu_synchronize_state(cs); 715fcf5ef2aSThomas Huth return arm_cpu_data_is_big_endian(env); 716fcf5ef2aSThomas Huth } 717fcf5ef2aSThomas Huth 718fcf5ef2aSThomas Huth #endif 719fcf5ef2aSThomas Huth 720fcf5ef2aSThomas Huth static int 721fcf5ef2aSThomas Huth print_insn_thumb1(bfd_vma pc, disassemble_info *info) 722fcf5ef2aSThomas Huth { 723fcf5ef2aSThomas Huth return print_insn_arm(pc | 1, info); 724fcf5ef2aSThomas Huth } 725fcf5ef2aSThomas Huth 726fcf5ef2aSThomas Huth static void arm_disas_set_info(CPUState *cpu, disassemble_info *info) 727fcf5ef2aSThomas Huth { 728fcf5ef2aSThomas Huth ARMCPU *ac = ARM_CPU(cpu); 729fcf5ef2aSThomas Huth CPUARMState *env = &ac->env; 7307bcdbf51SRichard Henderson bool sctlr_b; 731fcf5ef2aSThomas Huth 732fcf5ef2aSThomas Huth if (is_a64(env)) { 733fcf5ef2aSThomas Huth /* We might not be compiled with the A64 disassembler 734fcf5ef2aSThomas Huth * because it needs a C++ compiler. Leave print_insn 735fcf5ef2aSThomas Huth * unset in this case to use the caller default behaviour. 736fcf5ef2aSThomas Huth */ 737fcf5ef2aSThomas Huth #if defined(CONFIG_ARM_A64_DIS) 738fcf5ef2aSThomas Huth info->print_insn = print_insn_arm_a64; 739fcf5ef2aSThomas Huth #endif 740110f6c70SRichard Henderson info->cap_arch = CS_ARCH_ARM64; 74115fa1a0aSRichard Henderson info->cap_insn_unit = 4; 74215fa1a0aSRichard Henderson info->cap_insn_split = 4; 743110f6c70SRichard Henderson } else { 744110f6c70SRichard Henderson int cap_mode; 745110f6c70SRichard Henderson if (env->thumb) { 746fcf5ef2aSThomas Huth info->print_insn = print_insn_thumb1; 74715fa1a0aSRichard Henderson info->cap_insn_unit = 2; 74815fa1a0aSRichard Henderson info->cap_insn_split = 4; 749110f6c70SRichard Henderson cap_mode = CS_MODE_THUMB; 750fcf5ef2aSThomas Huth } else { 751fcf5ef2aSThomas Huth info->print_insn = print_insn_arm; 75215fa1a0aSRichard Henderson info->cap_insn_unit = 4; 75315fa1a0aSRichard Henderson info->cap_insn_split = 4; 754110f6c70SRichard Henderson cap_mode = CS_MODE_ARM; 755fcf5ef2aSThomas Huth } 756110f6c70SRichard Henderson if (arm_feature(env, ARM_FEATURE_V8)) { 757110f6c70SRichard Henderson cap_mode |= CS_MODE_V8; 758110f6c70SRichard Henderson } 759110f6c70SRichard Henderson if (arm_feature(env, ARM_FEATURE_M)) { 760110f6c70SRichard Henderson cap_mode |= CS_MODE_MCLASS; 761110f6c70SRichard Henderson } 762110f6c70SRichard Henderson info->cap_arch = CS_ARCH_ARM; 763110f6c70SRichard Henderson info->cap_mode = cap_mode; 764fcf5ef2aSThomas Huth } 7657bcdbf51SRichard Henderson 7667bcdbf51SRichard Henderson sctlr_b = arm_sctlr_b(env); 7677bcdbf51SRichard Henderson if (bswap_code(sctlr_b)) { 768fcf5ef2aSThomas Huth #ifdef TARGET_WORDS_BIGENDIAN 769fcf5ef2aSThomas Huth info->endian = BFD_ENDIAN_LITTLE; 770fcf5ef2aSThomas Huth #else 771fcf5ef2aSThomas Huth info->endian = BFD_ENDIAN_BIG; 772fcf5ef2aSThomas Huth #endif 773fcf5ef2aSThomas Huth } 774f7478a92SJulian Brown info->flags &= ~INSN_ARM_BE32; 7757bcdbf51SRichard Henderson #ifndef CONFIG_USER_ONLY 7767bcdbf51SRichard Henderson if (sctlr_b) { 777f7478a92SJulian Brown info->flags |= INSN_ARM_BE32; 778f7478a92SJulian Brown } 7797bcdbf51SRichard Henderson #endif 780fcf5ef2aSThomas Huth } 781fcf5ef2aSThomas Huth 78286480615SPhilippe Mathieu-Daudé #ifdef TARGET_AARCH64 78386480615SPhilippe Mathieu-Daudé 78486480615SPhilippe Mathieu-Daudé static void aarch64_cpu_dump_state(CPUState *cs, FILE *f, int flags) 78586480615SPhilippe Mathieu-Daudé { 78686480615SPhilippe Mathieu-Daudé ARMCPU *cpu = ARM_CPU(cs); 78786480615SPhilippe Mathieu-Daudé CPUARMState *env = &cpu->env; 78886480615SPhilippe Mathieu-Daudé uint32_t psr = pstate_read(env); 78986480615SPhilippe Mathieu-Daudé int i; 79086480615SPhilippe Mathieu-Daudé int el = arm_current_el(env); 79186480615SPhilippe Mathieu-Daudé const char *ns_status; 79286480615SPhilippe Mathieu-Daudé 79386480615SPhilippe Mathieu-Daudé qemu_fprintf(f, " PC=%016" PRIx64 " ", env->pc); 79486480615SPhilippe Mathieu-Daudé for (i = 0; i < 32; i++) { 79586480615SPhilippe Mathieu-Daudé if (i == 31) { 79686480615SPhilippe Mathieu-Daudé qemu_fprintf(f, " SP=%016" PRIx64 "\n", env->xregs[i]); 79786480615SPhilippe Mathieu-Daudé } else { 79886480615SPhilippe Mathieu-Daudé qemu_fprintf(f, "X%02d=%016" PRIx64 "%s", i, env->xregs[i], 79986480615SPhilippe Mathieu-Daudé (i + 2) % 3 ? " " : "\n"); 80086480615SPhilippe Mathieu-Daudé } 80186480615SPhilippe Mathieu-Daudé } 80286480615SPhilippe Mathieu-Daudé 80386480615SPhilippe Mathieu-Daudé if (arm_feature(env, ARM_FEATURE_EL3) && el != 3) { 80486480615SPhilippe Mathieu-Daudé ns_status = env->cp15.scr_el3 & SCR_NS ? "NS " : "S "; 80586480615SPhilippe Mathieu-Daudé } else { 80686480615SPhilippe Mathieu-Daudé ns_status = ""; 80786480615SPhilippe Mathieu-Daudé } 80886480615SPhilippe Mathieu-Daudé qemu_fprintf(f, "PSTATE=%08x %c%c%c%c %sEL%d%c", 80986480615SPhilippe Mathieu-Daudé psr, 81086480615SPhilippe Mathieu-Daudé psr & PSTATE_N ? 'N' : '-', 81186480615SPhilippe Mathieu-Daudé psr & PSTATE_Z ? 'Z' : '-', 81286480615SPhilippe Mathieu-Daudé psr & PSTATE_C ? 'C' : '-', 81386480615SPhilippe Mathieu-Daudé psr & PSTATE_V ? 'V' : '-', 81486480615SPhilippe Mathieu-Daudé ns_status, 81586480615SPhilippe Mathieu-Daudé el, 81686480615SPhilippe Mathieu-Daudé psr & PSTATE_SP ? 'h' : 't'); 81786480615SPhilippe Mathieu-Daudé 81886480615SPhilippe Mathieu-Daudé if (cpu_isar_feature(aa64_bti, cpu)) { 81986480615SPhilippe Mathieu-Daudé qemu_fprintf(f, " BTYPE=%d", (psr & PSTATE_BTYPE) >> 10); 82086480615SPhilippe Mathieu-Daudé } 82186480615SPhilippe Mathieu-Daudé if (!(flags & CPU_DUMP_FPU)) { 82286480615SPhilippe Mathieu-Daudé qemu_fprintf(f, "\n"); 82386480615SPhilippe Mathieu-Daudé return; 82486480615SPhilippe Mathieu-Daudé } 82586480615SPhilippe Mathieu-Daudé if (fp_exception_el(env, el) != 0) { 82686480615SPhilippe Mathieu-Daudé qemu_fprintf(f, " FPU disabled\n"); 82786480615SPhilippe Mathieu-Daudé return; 82886480615SPhilippe Mathieu-Daudé } 82986480615SPhilippe Mathieu-Daudé qemu_fprintf(f, " FPCR=%08x FPSR=%08x\n", 83086480615SPhilippe Mathieu-Daudé vfp_get_fpcr(env), vfp_get_fpsr(env)); 83186480615SPhilippe Mathieu-Daudé 83286480615SPhilippe Mathieu-Daudé if (cpu_isar_feature(aa64_sve, cpu) && sve_exception_el(env, el) == 0) { 83386480615SPhilippe Mathieu-Daudé int j, zcr_len = sve_zcr_len_for_el(env, el); 83486480615SPhilippe Mathieu-Daudé 83586480615SPhilippe Mathieu-Daudé for (i = 0; i <= FFR_PRED_NUM; i++) { 83686480615SPhilippe Mathieu-Daudé bool eol; 83786480615SPhilippe Mathieu-Daudé if (i == FFR_PRED_NUM) { 83886480615SPhilippe Mathieu-Daudé qemu_fprintf(f, "FFR="); 83986480615SPhilippe Mathieu-Daudé /* It's last, so end the line. */ 84086480615SPhilippe Mathieu-Daudé eol = true; 84186480615SPhilippe Mathieu-Daudé } else { 84286480615SPhilippe Mathieu-Daudé qemu_fprintf(f, "P%02d=", i); 84386480615SPhilippe Mathieu-Daudé switch (zcr_len) { 84486480615SPhilippe Mathieu-Daudé case 0: 84586480615SPhilippe Mathieu-Daudé eol = i % 8 == 7; 84686480615SPhilippe Mathieu-Daudé break; 84786480615SPhilippe Mathieu-Daudé case 1: 84886480615SPhilippe Mathieu-Daudé eol = i % 6 == 5; 84986480615SPhilippe Mathieu-Daudé break; 85086480615SPhilippe Mathieu-Daudé case 2: 85186480615SPhilippe Mathieu-Daudé case 3: 85286480615SPhilippe Mathieu-Daudé eol = i % 3 == 2; 85386480615SPhilippe Mathieu-Daudé break; 85486480615SPhilippe Mathieu-Daudé default: 85586480615SPhilippe Mathieu-Daudé /* More than one quadword per predicate. */ 85686480615SPhilippe Mathieu-Daudé eol = true; 85786480615SPhilippe Mathieu-Daudé break; 85886480615SPhilippe Mathieu-Daudé } 85986480615SPhilippe Mathieu-Daudé } 86086480615SPhilippe Mathieu-Daudé for (j = zcr_len / 4; j >= 0; j--) { 86186480615SPhilippe Mathieu-Daudé int digits; 86286480615SPhilippe Mathieu-Daudé if (j * 4 + 4 <= zcr_len + 1) { 86386480615SPhilippe Mathieu-Daudé digits = 16; 86486480615SPhilippe Mathieu-Daudé } else { 86586480615SPhilippe Mathieu-Daudé digits = (zcr_len % 4 + 1) * 4; 86686480615SPhilippe Mathieu-Daudé } 86786480615SPhilippe Mathieu-Daudé qemu_fprintf(f, "%0*" PRIx64 "%s", digits, 86886480615SPhilippe Mathieu-Daudé env->vfp.pregs[i].p[j], 86986480615SPhilippe Mathieu-Daudé j ? ":" : eol ? "\n" : " "); 87086480615SPhilippe Mathieu-Daudé } 87186480615SPhilippe Mathieu-Daudé } 87286480615SPhilippe Mathieu-Daudé 87386480615SPhilippe Mathieu-Daudé for (i = 0; i < 32; i++) { 87486480615SPhilippe Mathieu-Daudé if (zcr_len == 0) { 87586480615SPhilippe Mathieu-Daudé qemu_fprintf(f, "Z%02d=%016" PRIx64 ":%016" PRIx64 "%s", 87686480615SPhilippe Mathieu-Daudé i, env->vfp.zregs[i].d[1], 87786480615SPhilippe Mathieu-Daudé env->vfp.zregs[i].d[0], i & 1 ? "\n" : " "); 87886480615SPhilippe Mathieu-Daudé } else if (zcr_len == 1) { 87986480615SPhilippe Mathieu-Daudé qemu_fprintf(f, "Z%02d=%016" PRIx64 ":%016" PRIx64 88086480615SPhilippe Mathieu-Daudé ":%016" PRIx64 ":%016" PRIx64 "\n", 88186480615SPhilippe Mathieu-Daudé i, env->vfp.zregs[i].d[3], env->vfp.zregs[i].d[2], 88286480615SPhilippe Mathieu-Daudé env->vfp.zregs[i].d[1], env->vfp.zregs[i].d[0]); 88386480615SPhilippe Mathieu-Daudé } else { 88486480615SPhilippe Mathieu-Daudé for (j = zcr_len; j >= 0; j--) { 88586480615SPhilippe Mathieu-Daudé bool odd = (zcr_len - j) % 2 != 0; 88686480615SPhilippe Mathieu-Daudé if (j == zcr_len) { 88786480615SPhilippe Mathieu-Daudé qemu_fprintf(f, "Z%02d[%x-%x]=", i, j, j - 1); 88886480615SPhilippe Mathieu-Daudé } else if (!odd) { 88986480615SPhilippe Mathieu-Daudé if (j > 0) { 89086480615SPhilippe Mathieu-Daudé qemu_fprintf(f, " [%x-%x]=", j, j - 1); 89186480615SPhilippe Mathieu-Daudé } else { 89286480615SPhilippe Mathieu-Daudé qemu_fprintf(f, " [%x]=", j); 89386480615SPhilippe Mathieu-Daudé } 89486480615SPhilippe Mathieu-Daudé } 89586480615SPhilippe Mathieu-Daudé qemu_fprintf(f, "%016" PRIx64 ":%016" PRIx64 "%s", 89686480615SPhilippe Mathieu-Daudé env->vfp.zregs[i].d[j * 2 + 1], 89786480615SPhilippe Mathieu-Daudé env->vfp.zregs[i].d[j * 2], 89886480615SPhilippe Mathieu-Daudé odd || j == 0 ? "\n" : ":"); 89986480615SPhilippe Mathieu-Daudé } 90086480615SPhilippe Mathieu-Daudé } 90186480615SPhilippe Mathieu-Daudé } 90286480615SPhilippe Mathieu-Daudé } else { 90386480615SPhilippe Mathieu-Daudé for (i = 0; i < 32; i++) { 90486480615SPhilippe Mathieu-Daudé uint64_t *q = aa64_vfp_qreg(env, i); 90586480615SPhilippe Mathieu-Daudé qemu_fprintf(f, "Q%02d=%016" PRIx64 ":%016" PRIx64 "%s", 90686480615SPhilippe Mathieu-Daudé i, q[1], q[0], (i & 1 ? "\n" : " ")); 90786480615SPhilippe Mathieu-Daudé } 90886480615SPhilippe Mathieu-Daudé } 90986480615SPhilippe Mathieu-Daudé } 91086480615SPhilippe Mathieu-Daudé 91186480615SPhilippe Mathieu-Daudé #else 91286480615SPhilippe Mathieu-Daudé 91386480615SPhilippe Mathieu-Daudé static inline void aarch64_cpu_dump_state(CPUState *cs, FILE *f, int flags) 91486480615SPhilippe Mathieu-Daudé { 91586480615SPhilippe Mathieu-Daudé g_assert_not_reached(); 91686480615SPhilippe Mathieu-Daudé } 91786480615SPhilippe Mathieu-Daudé 91886480615SPhilippe Mathieu-Daudé #endif 91986480615SPhilippe Mathieu-Daudé 92086480615SPhilippe Mathieu-Daudé static void arm_cpu_dump_state(CPUState *cs, FILE *f, int flags) 92186480615SPhilippe Mathieu-Daudé { 92286480615SPhilippe Mathieu-Daudé ARMCPU *cpu = ARM_CPU(cs); 92386480615SPhilippe Mathieu-Daudé CPUARMState *env = &cpu->env; 92486480615SPhilippe Mathieu-Daudé int i; 92586480615SPhilippe Mathieu-Daudé 92686480615SPhilippe Mathieu-Daudé if (is_a64(env)) { 92786480615SPhilippe Mathieu-Daudé aarch64_cpu_dump_state(cs, f, flags); 92886480615SPhilippe Mathieu-Daudé return; 92986480615SPhilippe Mathieu-Daudé } 93086480615SPhilippe Mathieu-Daudé 93186480615SPhilippe Mathieu-Daudé for (i = 0; i < 16; i++) { 93286480615SPhilippe Mathieu-Daudé qemu_fprintf(f, "R%02d=%08x", i, env->regs[i]); 93386480615SPhilippe Mathieu-Daudé if ((i % 4) == 3) { 93486480615SPhilippe Mathieu-Daudé qemu_fprintf(f, "\n"); 93586480615SPhilippe Mathieu-Daudé } else { 93686480615SPhilippe Mathieu-Daudé qemu_fprintf(f, " "); 93786480615SPhilippe Mathieu-Daudé } 93886480615SPhilippe Mathieu-Daudé } 93986480615SPhilippe Mathieu-Daudé 94086480615SPhilippe Mathieu-Daudé if (arm_feature(env, ARM_FEATURE_M)) { 94186480615SPhilippe Mathieu-Daudé uint32_t xpsr = xpsr_read(env); 94286480615SPhilippe Mathieu-Daudé const char *mode; 94386480615SPhilippe Mathieu-Daudé const char *ns_status = ""; 94486480615SPhilippe Mathieu-Daudé 94586480615SPhilippe Mathieu-Daudé if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { 94686480615SPhilippe Mathieu-Daudé ns_status = env->v7m.secure ? "S " : "NS "; 94786480615SPhilippe Mathieu-Daudé } 94886480615SPhilippe Mathieu-Daudé 94986480615SPhilippe Mathieu-Daudé if (xpsr & XPSR_EXCP) { 95086480615SPhilippe Mathieu-Daudé mode = "handler"; 95186480615SPhilippe Mathieu-Daudé } else { 95286480615SPhilippe Mathieu-Daudé if (env->v7m.control[env->v7m.secure] & R_V7M_CONTROL_NPRIV_MASK) { 95386480615SPhilippe Mathieu-Daudé mode = "unpriv-thread"; 95486480615SPhilippe Mathieu-Daudé } else { 95586480615SPhilippe Mathieu-Daudé mode = "priv-thread"; 95686480615SPhilippe Mathieu-Daudé } 95786480615SPhilippe Mathieu-Daudé } 95886480615SPhilippe Mathieu-Daudé 95986480615SPhilippe Mathieu-Daudé qemu_fprintf(f, "XPSR=%08x %c%c%c%c %c %s%s\n", 96086480615SPhilippe Mathieu-Daudé xpsr, 96186480615SPhilippe Mathieu-Daudé xpsr & XPSR_N ? 'N' : '-', 96286480615SPhilippe Mathieu-Daudé xpsr & XPSR_Z ? 'Z' : '-', 96386480615SPhilippe Mathieu-Daudé xpsr & XPSR_C ? 'C' : '-', 96486480615SPhilippe Mathieu-Daudé xpsr & XPSR_V ? 'V' : '-', 96586480615SPhilippe Mathieu-Daudé xpsr & XPSR_T ? 'T' : 'A', 96686480615SPhilippe Mathieu-Daudé ns_status, 96786480615SPhilippe Mathieu-Daudé mode); 96886480615SPhilippe Mathieu-Daudé } else { 96986480615SPhilippe Mathieu-Daudé uint32_t psr = cpsr_read(env); 97086480615SPhilippe Mathieu-Daudé const char *ns_status = ""; 97186480615SPhilippe Mathieu-Daudé 97286480615SPhilippe Mathieu-Daudé if (arm_feature(env, ARM_FEATURE_EL3) && 97386480615SPhilippe Mathieu-Daudé (psr & CPSR_M) != ARM_CPU_MODE_MON) { 97486480615SPhilippe Mathieu-Daudé ns_status = env->cp15.scr_el3 & SCR_NS ? "NS " : "S "; 97586480615SPhilippe Mathieu-Daudé } 97686480615SPhilippe Mathieu-Daudé 97786480615SPhilippe Mathieu-Daudé qemu_fprintf(f, "PSR=%08x %c%c%c%c %c %s%s%d\n", 97886480615SPhilippe Mathieu-Daudé psr, 97986480615SPhilippe Mathieu-Daudé psr & CPSR_N ? 'N' : '-', 98086480615SPhilippe Mathieu-Daudé psr & CPSR_Z ? 'Z' : '-', 98186480615SPhilippe Mathieu-Daudé psr & CPSR_C ? 'C' : '-', 98286480615SPhilippe Mathieu-Daudé psr & CPSR_V ? 'V' : '-', 98386480615SPhilippe Mathieu-Daudé psr & CPSR_T ? 'T' : 'A', 98486480615SPhilippe Mathieu-Daudé ns_status, 98586480615SPhilippe Mathieu-Daudé aarch32_mode_name(psr), (psr & 0x10) ? 32 : 26); 98686480615SPhilippe Mathieu-Daudé } 98786480615SPhilippe Mathieu-Daudé 98886480615SPhilippe Mathieu-Daudé if (flags & CPU_DUMP_FPU) { 98986480615SPhilippe Mathieu-Daudé int numvfpregs = 0; 990a6627f5fSRichard Henderson if (cpu_isar_feature(aa32_simd_r32, cpu)) { 991a6627f5fSRichard Henderson numvfpregs = 32; 9927fbc6a40SRichard Henderson } else if (cpu_isar_feature(aa32_vfp_simd, cpu)) { 993a6627f5fSRichard Henderson numvfpregs = 16; 99486480615SPhilippe Mathieu-Daudé } 99586480615SPhilippe Mathieu-Daudé for (i = 0; i < numvfpregs; i++) { 99686480615SPhilippe Mathieu-Daudé uint64_t v = *aa32_vfp_dreg(env, i); 99786480615SPhilippe Mathieu-Daudé qemu_fprintf(f, "s%02d=%08x s%02d=%08x d%02d=%016" PRIx64 "\n", 99886480615SPhilippe Mathieu-Daudé i * 2, (uint32_t)v, 99986480615SPhilippe Mathieu-Daudé i * 2 + 1, (uint32_t)(v >> 32), 100086480615SPhilippe Mathieu-Daudé i, v); 100186480615SPhilippe Mathieu-Daudé } 100286480615SPhilippe Mathieu-Daudé qemu_fprintf(f, "FPSCR: %08x\n", vfp_get_fpscr(env)); 100386480615SPhilippe Mathieu-Daudé } 100486480615SPhilippe Mathieu-Daudé } 100586480615SPhilippe Mathieu-Daudé 100646de5913SIgor Mammedov uint64_t arm_cpu_mp_affinity(int idx, uint8_t clustersz) 100746de5913SIgor Mammedov { 100846de5913SIgor Mammedov uint32_t Aff1 = idx / clustersz; 100946de5913SIgor Mammedov uint32_t Aff0 = idx % clustersz; 101046de5913SIgor Mammedov return (Aff1 << ARM_AFF1_SHIFT) | Aff0; 101146de5913SIgor Mammedov } 101246de5913SIgor Mammedov 1013ac87e507SPeter Maydell static void cpreg_hashtable_data_destroy(gpointer data) 1014ac87e507SPeter Maydell { 1015ac87e507SPeter Maydell /* 1016ac87e507SPeter Maydell * Destroy function for cpu->cp_regs hashtable data entries. 1017ac87e507SPeter Maydell * We must free the name string because it was g_strdup()ed in 1018ac87e507SPeter Maydell * add_cpreg_to_hashtable(). It's OK to cast away the 'const' 1019ac87e507SPeter Maydell * from r->name because we know we definitely allocated it. 1020ac87e507SPeter Maydell */ 1021ac87e507SPeter Maydell ARMCPRegInfo *r = data; 1022ac87e507SPeter Maydell 1023ac87e507SPeter Maydell g_free((void *)r->name); 1024ac87e507SPeter Maydell g_free(r); 1025ac87e507SPeter Maydell } 1026ac87e507SPeter Maydell 1027fcf5ef2aSThomas Huth static void arm_cpu_initfn(Object *obj) 1028fcf5ef2aSThomas Huth { 1029fcf5ef2aSThomas Huth ARMCPU *cpu = ARM_CPU(obj); 1030fcf5ef2aSThomas Huth 10317506ed90SRichard Henderson cpu_set_cpustate_pointers(cpu); 1032fcf5ef2aSThomas Huth cpu->cp_regs = g_hash_table_new_full(g_int_hash, g_int_equal, 1033ac87e507SPeter Maydell g_free, cpreg_hashtable_data_destroy); 1034fcf5ef2aSThomas Huth 1035b5c53d1bSAaron Lindsay QLIST_INIT(&cpu->pre_el_change_hooks); 103608267487SAaron Lindsay QLIST_INIT(&cpu->el_change_hooks); 103708267487SAaron Lindsay 1038fcf5ef2aSThomas Huth #ifndef CONFIG_USER_ONLY 1039fcf5ef2aSThomas Huth /* Our inbound IRQ and FIQ lines */ 1040fcf5ef2aSThomas Huth if (kvm_enabled()) { 1041fcf5ef2aSThomas Huth /* VIRQ and VFIQ are unused with KVM but we add them to maintain 1042fcf5ef2aSThomas Huth * the same interface as non-KVM CPUs. 1043fcf5ef2aSThomas Huth */ 1044fcf5ef2aSThomas Huth qdev_init_gpio_in(DEVICE(cpu), arm_cpu_kvm_set_irq, 4); 1045fcf5ef2aSThomas Huth } else { 1046fcf5ef2aSThomas Huth qdev_init_gpio_in(DEVICE(cpu), arm_cpu_set_irq, 4); 1047fcf5ef2aSThomas Huth } 1048fcf5ef2aSThomas Huth 1049fcf5ef2aSThomas Huth qdev_init_gpio_out(DEVICE(cpu), cpu->gt_timer_outputs, 1050fcf5ef2aSThomas Huth ARRAY_SIZE(cpu->gt_timer_outputs)); 1051aa1b3111SPeter Maydell 1052aa1b3111SPeter Maydell qdev_init_gpio_out_named(DEVICE(cpu), &cpu->gicv3_maintenance_interrupt, 1053aa1b3111SPeter Maydell "gicv3-maintenance-interrupt", 1); 105407f48730SAndrew Jones qdev_init_gpio_out_named(DEVICE(cpu), &cpu->pmu_interrupt, 105507f48730SAndrew Jones "pmu-interrupt", 1); 1056fcf5ef2aSThomas Huth #endif 1057fcf5ef2aSThomas Huth 1058fcf5ef2aSThomas Huth /* DTB consumers generally don't in fact care what the 'compatible' 1059fcf5ef2aSThomas Huth * string is, so always provide some string and trust that a hypothetical 1060fcf5ef2aSThomas Huth * picky DTB consumer will also provide a helpful error message. 1061fcf5ef2aSThomas Huth */ 1062fcf5ef2aSThomas Huth cpu->dtb_compatible = "qemu,unknown"; 1063fcf5ef2aSThomas Huth cpu->psci_version = 1; /* By default assume PSCI v0.1 */ 1064fcf5ef2aSThomas Huth cpu->kvm_target = QEMU_KVM_ARM_TARGET_NONE; 1065fcf5ef2aSThomas Huth 1066fcf5ef2aSThomas Huth if (tcg_enabled()) { 1067fcf5ef2aSThomas Huth cpu->psci_version = 2; /* TCG implements PSCI 0.2 */ 1068fcf5ef2aSThomas Huth } 1069fcf5ef2aSThomas Huth } 1070fcf5ef2aSThomas Huth 107196eec6b2SAndrew Jeffery static Property arm_cpu_gt_cntfrq_property = 107296eec6b2SAndrew Jeffery DEFINE_PROP_UINT64("cntfrq", ARMCPU, gt_cntfrq_hz, 107396eec6b2SAndrew Jeffery NANOSECONDS_PER_SECOND / GTIMER_SCALE); 107496eec6b2SAndrew Jeffery 1075fcf5ef2aSThomas Huth static Property arm_cpu_reset_cbar_property = 1076fcf5ef2aSThomas Huth DEFINE_PROP_UINT64("reset-cbar", ARMCPU, reset_cbar, 0); 1077fcf5ef2aSThomas Huth 1078fcf5ef2aSThomas Huth static Property arm_cpu_reset_hivecs_property = 1079fcf5ef2aSThomas Huth DEFINE_PROP_BOOL("reset-hivecs", ARMCPU, reset_hivecs, false); 1080fcf5ef2aSThomas Huth 1081fcf5ef2aSThomas Huth static Property arm_cpu_rvbar_property = 1082fcf5ef2aSThomas Huth DEFINE_PROP_UINT64("rvbar", ARMCPU, rvbar, 0); 1083fcf5ef2aSThomas Huth 108445ca3a14SRichard Henderson #ifndef CONFIG_USER_ONLY 1085c25bd18aSPeter Maydell static Property arm_cpu_has_el2_property = 1086c25bd18aSPeter Maydell DEFINE_PROP_BOOL("has_el2", ARMCPU, has_el2, true); 1087c25bd18aSPeter Maydell 1088fcf5ef2aSThomas Huth static Property arm_cpu_has_el3_property = 1089fcf5ef2aSThomas Huth DEFINE_PROP_BOOL("has_el3", ARMCPU, has_el3, true); 109045ca3a14SRichard Henderson #endif 1091fcf5ef2aSThomas Huth 10923a062d57SJulian Brown static Property arm_cpu_cfgend_property = 10933a062d57SJulian Brown DEFINE_PROP_BOOL("cfgend", ARMCPU, cfgend, false); 10943a062d57SJulian Brown 109597a28b0eSPeter Maydell static Property arm_cpu_has_vfp_property = 109697a28b0eSPeter Maydell DEFINE_PROP_BOOL("vfp", ARMCPU, has_vfp, true); 109797a28b0eSPeter Maydell 109897a28b0eSPeter Maydell static Property arm_cpu_has_neon_property = 109997a28b0eSPeter Maydell DEFINE_PROP_BOOL("neon", ARMCPU, has_neon, true); 110097a28b0eSPeter Maydell 1101ea90db0aSPeter Maydell static Property arm_cpu_has_dsp_property = 1102ea90db0aSPeter Maydell DEFINE_PROP_BOOL("dsp", ARMCPU, has_dsp, true); 1103ea90db0aSPeter Maydell 1104fcf5ef2aSThomas Huth static Property arm_cpu_has_mpu_property = 1105fcf5ef2aSThomas Huth DEFINE_PROP_BOOL("has-mpu", ARMCPU, has_mpu, true); 1106fcf5ef2aSThomas Huth 11078d92e26bSPeter Maydell /* This is like DEFINE_PROP_UINT32 but it doesn't set the default value, 11088d92e26bSPeter Maydell * because the CPU initfn will have already set cpu->pmsav7_dregion to 11098d92e26bSPeter Maydell * the right value for that particular CPU type, and we don't want 11108d92e26bSPeter Maydell * to override that with an incorrect constant value. 11118d92e26bSPeter Maydell */ 1112fcf5ef2aSThomas Huth static Property arm_cpu_pmsav7_dregion_property = 11138d92e26bSPeter Maydell DEFINE_PROP_UNSIGNED_NODEFAULT("pmsav7-dregion", ARMCPU, 11148d92e26bSPeter Maydell pmsav7_dregion, 11158d92e26bSPeter Maydell qdev_prop_uint32, uint32_t); 1116fcf5ef2aSThomas Huth 1117ae502508SAndrew Jones static bool arm_get_pmu(Object *obj, Error **errp) 1118ae502508SAndrew Jones { 1119ae502508SAndrew Jones ARMCPU *cpu = ARM_CPU(obj); 1120ae502508SAndrew Jones 1121ae502508SAndrew Jones return cpu->has_pmu; 1122ae502508SAndrew Jones } 1123ae502508SAndrew Jones 1124ae502508SAndrew Jones static void arm_set_pmu(Object *obj, bool value, Error **errp) 1125ae502508SAndrew Jones { 1126ae502508SAndrew Jones ARMCPU *cpu = ARM_CPU(obj); 1127ae502508SAndrew Jones 1128ae502508SAndrew Jones if (value) { 11297d20e681SPhilippe Mathieu-Daudé if (kvm_enabled() && !kvm_arm_pmu_supported()) { 1130ae502508SAndrew Jones error_setg(errp, "'pmu' feature not supported by KVM on this host"); 1131ae502508SAndrew Jones return; 1132ae502508SAndrew Jones } 1133ae502508SAndrew Jones set_feature(&cpu->env, ARM_FEATURE_PMU); 1134ae502508SAndrew Jones } else { 1135ae502508SAndrew Jones unset_feature(&cpu->env, ARM_FEATURE_PMU); 1136ae502508SAndrew Jones } 1137ae502508SAndrew Jones cpu->has_pmu = value; 1138ae502508SAndrew Jones } 1139ae502508SAndrew Jones 11407def8754SAndrew Jeffery unsigned int gt_cntfrq_period_ns(ARMCPU *cpu) 11417def8754SAndrew Jeffery { 114296eec6b2SAndrew Jeffery /* 114396eec6b2SAndrew Jeffery * The exact approach to calculating guest ticks is: 114496eec6b2SAndrew Jeffery * 114596eec6b2SAndrew Jeffery * muldiv64(qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL), cpu->gt_cntfrq_hz, 114696eec6b2SAndrew Jeffery * NANOSECONDS_PER_SECOND); 114796eec6b2SAndrew Jeffery * 114896eec6b2SAndrew Jeffery * We don't do that. Rather we intentionally use integer division 114996eec6b2SAndrew Jeffery * truncation below and in the caller for the conversion of host monotonic 115096eec6b2SAndrew Jeffery * time to guest ticks to provide the exact inverse for the semantics of 115196eec6b2SAndrew Jeffery * the QEMUTimer scale factor. QEMUTimer's scale facter is an integer, so 115296eec6b2SAndrew Jeffery * it loses precision when representing frequencies where 115396eec6b2SAndrew Jeffery * `(NANOSECONDS_PER_SECOND % cpu->gt_cntfrq) > 0` holds. Failing to 115496eec6b2SAndrew Jeffery * provide an exact inverse leads to scheduling timers with negative 115596eec6b2SAndrew Jeffery * periods, which in turn leads to sticky behaviour in the guest. 115696eec6b2SAndrew Jeffery * 115796eec6b2SAndrew Jeffery * Finally, CNTFRQ is effectively capped at 1GHz to ensure our scale factor 115896eec6b2SAndrew Jeffery * cannot become zero. 115996eec6b2SAndrew Jeffery */ 11607def8754SAndrew Jeffery return NANOSECONDS_PER_SECOND > cpu->gt_cntfrq_hz ? 11617def8754SAndrew Jeffery NANOSECONDS_PER_SECOND / cpu->gt_cntfrq_hz : 1; 11627def8754SAndrew Jeffery } 11637def8754SAndrew Jeffery 116451e5ef45SMarc-André Lureau void arm_cpu_post_init(Object *obj) 1165fcf5ef2aSThomas Huth { 1166fcf5ef2aSThomas Huth ARMCPU *cpu = ARM_CPU(obj); 1167fcf5ef2aSThomas Huth 1168790a1150SPeter Maydell /* M profile implies PMSA. We have to do this here rather than 1169790a1150SPeter Maydell * in realize with the other feature-implication checks because 1170790a1150SPeter Maydell * we look at the PMSA bit to see if we should add some properties. 1171790a1150SPeter Maydell */ 1172790a1150SPeter Maydell if (arm_feature(&cpu->env, ARM_FEATURE_M)) { 1173790a1150SPeter Maydell set_feature(&cpu->env, ARM_FEATURE_PMSA); 1174790a1150SPeter Maydell } 1175790a1150SPeter Maydell 1176fcf5ef2aSThomas Huth if (arm_feature(&cpu->env, ARM_FEATURE_CBAR) || 1177fcf5ef2aSThomas Huth arm_feature(&cpu->env, ARM_FEATURE_CBAR_RO)) { 117894d912d1SMarc-André Lureau qdev_property_add_static(DEVICE(obj), &arm_cpu_reset_cbar_property); 1179fcf5ef2aSThomas Huth } 1180fcf5ef2aSThomas Huth 1181fcf5ef2aSThomas Huth if (!arm_feature(&cpu->env, ARM_FEATURE_M)) { 118294d912d1SMarc-André Lureau qdev_property_add_static(DEVICE(obj), &arm_cpu_reset_hivecs_property); 1183fcf5ef2aSThomas Huth } 1184fcf5ef2aSThomas Huth 1185fcf5ef2aSThomas Huth if (arm_feature(&cpu->env, ARM_FEATURE_AARCH64)) { 118694d912d1SMarc-André Lureau qdev_property_add_static(DEVICE(obj), &arm_cpu_rvbar_property); 1187fcf5ef2aSThomas Huth } 1188fcf5ef2aSThomas Huth 118945ca3a14SRichard Henderson #ifndef CONFIG_USER_ONLY 1190fcf5ef2aSThomas Huth if (arm_feature(&cpu->env, ARM_FEATURE_EL3)) { 1191fcf5ef2aSThomas Huth /* Add the has_el3 state CPU property only if EL3 is allowed. This will 1192fcf5ef2aSThomas Huth * prevent "has_el3" from existing on CPUs which cannot support EL3. 1193fcf5ef2aSThomas Huth */ 119494d912d1SMarc-André Lureau qdev_property_add_static(DEVICE(obj), &arm_cpu_has_el3_property); 1195fcf5ef2aSThomas Huth 1196fcf5ef2aSThomas Huth object_property_add_link(obj, "secure-memory", 1197fcf5ef2aSThomas Huth TYPE_MEMORY_REGION, 1198fcf5ef2aSThomas Huth (Object **)&cpu->secure_memory, 1199fcf5ef2aSThomas Huth qdev_prop_allow_set_link_before_realize, 1200d2623129SMarkus Armbruster OBJ_PROP_LINK_STRONG); 1201fcf5ef2aSThomas Huth } 1202fcf5ef2aSThomas Huth 1203c25bd18aSPeter Maydell if (arm_feature(&cpu->env, ARM_FEATURE_EL2)) { 120494d912d1SMarc-André Lureau qdev_property_add_static(DEVICE(obj), &arm_cpu_has_el2_property); 1205c25bd18aSPeter Maydell } 120645ca3a14SRichard Henderson #endif 1207c25bd18aSPeter Maydell 1208fcf5ef2aSThomas Huth if (arm_feature(&cpu->env, ARM_FEATURE_PMU)) { 1209ae502508SAndrew Jones cpu->has_pmu = true; 1210d2623129SMarkus Armbruster object_property_add_bool(obj, "pmu", arm_get_pmu, arm_set_pmu); 1211fcf5ef2aSThomas Huth } 1212fcf5ef2aSThomas Huth 121397a28b0eSPeter Maydell /* 121497a28b0eSPeter Maydell * Allow user to turn off VFP and Neon support, but only for TCG -- 121597a28b0eSPeter Maydell * KVM does not currently allow us to lie to the guest about its 121697a28b0eSPeter Maydell * ID/feature registers, so the guest always sees what the host has. 121797a28b0eSPeter Maydell */ 12187d63183fSRichard Henderson if (arm_feature(&cpu->env, ARM_FEATURE_AARCH64) 12197d63183fSRichard Henderson ? cpu_isar_feature(aa64_fp_simd, cpu) 12207d63183fSRichard Henderson : cpu_isar_feature(aa32_vfp, cpu)) { 122197a28b0eSPeter Maydell cpu->has_vfp = true; 122297a28b0eSPeter Maydell if (!kvm_enabled()) { 122394d912d1SMarc-André Lureau qdev_property_add_static(DEVICE(obj), &arm_cpu_has_vfp_property); 122497a28b0eSPeter Maydell } 122597a28b0eSPeter Maydell } 122697a28b0eSPeter Maydell 122797a28b0eSPeter Maydell if (arm_feature(&cpu->env, ARM_FEATURE_NEON)) { 122897a28b0eSPeter Maydell cpu->has_neon = true; 122997a28b0eSPeter Maydell if (!kvm_enabled()) { 123094d912d1SMarc-André Lureau qdev_property_add_static(DEVICE(obj), &arm_cpu_has_neon_property); 123197a28b0eSPeter Maydell } 123297a28b0eSPeter Maydell } 123397a28b0eSPeter Maydell 1234ea90db0aSPeter Maydell if (arm_feature(&cpu->env, ARM_FEATURE_M) && 1235ea90db0aSPeter Maydell arm_feature(&cpu->env, ARM_FEATURE_THUMB_DSP)) { 123694d912d1SMarc-André Lureau qdev_property_add_static(DEVICE(obj), &arm_cpu_has_dsp_property); 1237ea90db0aSPeter Maydell } 1238ea90db0aSPeter Maydell 1239452a0955SPeter Maydell if (arm_feature(&cpu->env, ARM_FEATURE_PMSA)) { 124094d912d1SMarc-André Lureau qdev_property_add_static(DEVICE(obj), &arm_cpu_has_mpu_property); 1241fcf5ef2aSThomas Huth if (arm_feature(&cpu->env, ARM_FEATURE_V7)) { 1242fcf5ef2aSThomas Huth qdev_property_add_static(DEVICE(obj), 124394d912d1SMarc-André Lureau &arm_cpu_pmsav7_dregion_property); 1244fcf5ef2aSThomas Huth } 1245fcf5ef2aSThomas Huth } 1246fcf5ef2aSThomas Huth 1247181962fdSPeter Maydell if (arm_feature(&cpu->env, ARM_FEATURE_M_SECURITY)) { 1248181962fdSPeter Maydell object_property_add_link(obj, "idau", TYPE_IDAU_INTERFACE, &cpu->idau, 1249181962fdSPeter Maydell qdev_prop_allow_set_link_before_realize, 1250d2623129SMarkus Armbruster OBJ_PROP_LINK_STRONG); 1251f9f62e4cSPeter Maydell /* 1252f9f62e4cSPeter Maydell * M profile: initial value of the Secure VTOR. We can't just use 1253f9f62e4cSPeter Maydell * a simple DEFINE_PROP_UINT32 for this because we want to permit 1254f9f62e4cSPeter Maydell * the property to be set after realize. 1255f9f62e4cSPeter Maydell */ 125664a7b8deSFelipe Franciosi object_property_add_uint32_ptr(obj, "init-svtor", 125764a7b8deSFelipe Franciosi &cpu->init_svtor, 1258d2623129SMarkus Armbruster OBJ_PROP_FLAG_READWRITE); 1259181962fdSPeter Maydell } 1260181962fdSPeter Maydell 126194d912d1SMarc-André Lureau qdev_property_add_static(DEVICE(obj), &arm_cpu_cfgend_property); 126296eec6b2SAndrew Jeffery 126396eec6b2SAndrew Jeffery if (arm_feature(&cpu->env, ARM_FEATURE_GENERIC_TIMER)) { 126494d912d1SMarc-André Lureau qdev_property_add_static(DEVICE(cpu), &arm_cpu_gt_cntfrq_property); 126596eec6b2SAndrew Jeffery } 12669e6f8d8aSfangying 12679e6f8d8aSfangying if (kvm_enabled()) { 12689e6f8d8aSfangying kvm_arm_add_vcpu_properties(obj); 12699e6f8d8aSfangying } 12708bce44a2SRichard Henderson 12718bce44a2SRichard Henderson #ifndef CONFIG_USER_ONLY 12728bce44a2SRichard Henderson if (arm_feature(&cpu->env, ARM_FEATURE_AARCH64) && 12738bce44a2SRichard Henderson cpu_isar_feature(aa64_mte, cpu)) { 12748bce44a2SRichard Henderson object_property_add_link(obj, "tag-memory", 12758bce44a2SRichard Henderson TYPE_MEMORY_REGION, 12768bce44a2SRichard Henderson (Object **)&cpu->tag_memory, 12778bce44a2SRichard Henderson qdev_prop_allow_set_link_before_realize, 12788bce44a2SRichard Henderson OBJ_PROP_LINK_STRONG); 12798bce44a2SRichard Henderson 12808bce44a2SRichard Henderson if (arm_feature(&cpu->env, ARM_FEATURE_EL3)) { 12818bce44a2SRichard Henderson object_property_add_link(obj, "secure-tag-memory", 12828bce44a2SRichard Henderson TYPE_MEMORY_REGION, 12838bce44a2SRichard Henderson (Object **)&cpu->secure_tag_memory, 12848bce44a2SRichard Henderson qdev_prop_allow_set_link_before_realize, 12858bce44a2SRichard Henderson OBJ_PROP_LINK_STRONG); 12868bce44a2SRichard Henderson } 12878bce44a2SRichard Henderson } 12888bce44a2SRichard Henderson #endif 1289fcf5ef2aSThomas Huth } 1290fcf5ef2aSThomas Huth 1291fcf5ef2aSThomas Huth static void arm_cpu_finalizefn(Object *obj) 1292fcf5ef2aSThomas Huth { 1293fcf5ef2aSThomas Huth ARMCPU *cpu = ARM_CPU(obj); 129408267487SAaron Lindsay ARMELChangeHook *hook, *next; 129508267487SAaron Lindsay 1296fcf5ef2aSThomas Huth g_hash_table_destroy(cpu->cp_regs); 129708267487SAaron Lindsay 1298b5c53d1bSAaron Lindsay QLIST_FOREACH_SAFE(hook, &cpu->pre_el_change_hooks, node, next) { 1299b5c53d1bSAaron Lindsay QLIST_REMOVE(hook, node); 1300b5c53d1bSAaron Lindsay g_free(hook); 1301b5c53d1bSAaron Lindsay } 130208267487SAaron Lindsay QLIST_FOREACH_SAFE(hook, &cpu->el_change_hooks, node, next) { 130308267487SAaron Lindsay QLIST_REMOVE(hook, node); 130408267487SAaron Lindsay g_free(hook); 130508267487SAaron Lindsay } 13064e7beb0cSAaron Lindsay OS #ifndef CONFIG_USER_ONLY 13074e7beb0cSAaron Lindsay OS if (cpu->pmu_timer) { 13084e7beb0cSAaron Lindsay OS timer_del(cpu->pmu_timer); 13094e7beb0cSAaron Lindsay OS timer_deinit(cpu->pmu_timer); 13104e7beb0cSAaron Lindsay OS timer_free(cpu->pmu_timer); 13114e7beb0cSAaron Lindsay OS } 13124e7beb0cSAaron Lindsay OS #endif 1313fcf5ef2aSThomas Huth } 1314fcf5ef2aSThomas Huth 13150df9142dSAndrew Jones void arm_cpu_finalize_features(ARMCPU *cpu, Error **errp) 13160df9142dSAndrew Jones { 13170df9142dSAndrew Jones Error *local_err = NULL; 13180df9142dSAndrew Jones 13190df9142dSAndrew Jones if (arm_feature(&cpu->env, ARM_FEATURE_AARCH64)) { 13200df9142dSAndrew Jones arm_cpu_sve_finalize(cpu, &local_err); 13210df9142dSAndrew Jones if (local_err != NULL) { 13220df9142dSAndrew Jones error_propagate(errp, local_err); 13230df9142dSAndrew Jones return; 13240df9142dSAndrew Jones } 13250df9142dSAndrew Jones } 132668970d1eSAndrew Jones 132768970d1eSAndrew Jones if (kvm_enabled()) { 132868970d1eSAndrew Jones kvm_arm_steal_time_finalize(cpu, &local_err); 132968970d1eSAndrew Jones if (local_err != NULL) { 133068970d1eSAndrew Jones error_propagate(errp, local_err); 133168970d1eSAndrew Jones return; 133268970d1eSAndrew Jones } 133368970d1eSAndrew Jones } 13340df9142dSAndrew Jones } 13350df9142dSAndrew Jones 1336fcf5ef2aSThomas Huth static void arm_cpu_realizefn(DeviceState *dev, Error **errp) 1337fcf5ef2aSThomas Huth { 1338fcf5ef2aSThomas Huth CPUState *cs = CPU(dev); 1339fcf5ef2aSThomas Huth ARMCPU *cpu = ARM_CPU(dev); 1340fcf5ef2aSThomas Huth ARMCPUClass *acc = ARM_CPU_GET_CLASS(dev); 1341fcf5ef2aSThomas Huth CPUARMState *env = &cpu->env; 1342fcf5ef2aSThomas Huth int pagebits; 1343fcf5ef2aSThomas Huth Error *local_err = NULL; 13440f8d06f1SRichard Henderson bool no_aa32 = false; 1345fcf5ef2aSThomas Huth 1346c4487d76SPeter Maydell /* If we needed to query the host kernel for the CPU features 1347c4487d76SPeter Maydell * then it's possible that might have failed in the initfn, but 1348c4487d76SPeter Maydell * this is the first point where we can report it. 1349c4487d76SPeter Maydell */ 1350c4487d76SPeter Maydell if (cpu->host_cpu_probe_failed) { 1351c4487d76SPeter Maydell if (!kvm_enabled()) { 1352c4487d76SPeter Maydell error_setg(errp, "The 'host' CPU type can only be used with KVM"); 1353c4487d76SPeter Maydell } else { 1354c4487d76SPeter Maydell error_setg(errp, "Failed to retrieve host CPU features"); 1355c4487d76SPeter Maydell } 1356c4487d76SPeter Maydell return; 1357c4487d76SPeter Maydell } 1358c4487d76SPeter Maydell 135995f87565SPeter Maydell #ifndef CONFIG_USER_ONLY 136095f87565SPeter Maydell /* The NVIC and M-profile CPU are two halves of a single piece of 136195f87565SPeter Maydell * hardware; trying to use one without the other is a command line 136295f87565SPeter Maydell * error and will result in segfaults if not caught here. 136395f87565SPeter Maydell */ 136495f87565SPeter Maydell if (arm_feature(env, ARM_FEATURE_M)) { 136595f87565SPeter Maydell if (!env->nvic) { 136695f87565SPeter Maydell error_setg(errp, "This board cannot be used with Cortex-M CPUs"); 136795f87565SPeter Maydell return; 136895f87565SPeter Maydell } 136995f87565SPeter Maydell } else { 137095f87565SPeter Maydell if (env->nvic) { 137195f87565SPeter Maydell error_setg(errp, "This board can only be used with Cortex-M CPUs"); 137295f87565SPeter Maydell return; 137395f87565SPeter Maydell } 137495f87565SPeter Maydell } 1375397cd31fSPeter Maydell 137696eec6b2SAndrew Jeffery { 137796eec6b2SAndrew Jeffery uint64_t scale; 137896eec6b2SAndrew Jeffery 137996eec6b2SAndrew Jeffery if (arm_feature(env, ARM_FEATURE_GENERIC_TIMER)) { 138096eec6b2SAndrew Jeffery if (!cpu->gt_cntfrq_hz) { 138196eec6b2SAndrew Jeffery error_setg(errp, "Invalid CNTFRQ: %"PRId64"Hz", 138296eec6b2SAndrew Jeffery cpu->gt_cntfrq_hz); 138396eec6b2SAndrew Jeffery return; 138496eec6b2SAndrew Jeffery } 138596eec6b2SAndrew Jeffery scale = gt_cntfrq_period_ns(cpu); 138696eec6b2SAndrew Jeffery } else { 138796eec6b2SAndrew Jeffery scale = GTIMER_SCALE; 138896eec6b2SAndrew Jeffery } 138996eec6b2SAndrew Jeffery 139096eec6b2SAndrew Jeffery cpu->gt_timer[GTIMER_PHYS] = timer_new(QEMU_CLOCK_VIRTUAL, scale, 1391397cd31fSPeter Maydell arm_gt_ptimer_cb, cpu); 139296eec6b2SAndrew Jeffery cpu->gt_timer[GTIMER_VIRT] = timer_new(QEMU_CLOCK_VIRTUAL, scale, 1393397cd31fSPeter Maydell arm_gt_vtimer_cb, cpu); 139496eec6b2SAndrew Jeffery cpu->gt_timer[GTIMER_HYP] = timer_new(QEMU_CLOCK_VIRTUAL, scale, 1395397cd31fSPeter Maydell arm_gt_htimer_cb, cpu); 139696eec6b2SAndrew Jeffery cpu->gt_timer[GTIMER_SEC] = timer_new(QEMU_CLOCK_VIRTUAL, scale, 1397397cd31fSPeter Maydell arm_gt_stimer_cb, cpu); 13988c94b071SRichard Henderson cpu->gt_timer[GTIMER_HYPVIRT] = timer_new(QEMU_CLOCK_VIRTUAL, scale, 13998c94b071SRichard Henderson arm_gt_hvtimer_cb, cpu); 140096eec6b2SAndrew Jeffery } 140195f87565SPeter Maydell #endif 140295f87565SPeter Maydell 1403fcf5ef2aSThomas Huth cpu_exec_realizefn(cs, &local_err); 1404fcf5ef2aSThomas Huth if (local_err != NULL) { 1405fcf5ef2aSThomas Huth error_propagate(errp, local_err); 1406fcf5ef2aSThomas Huth return; 1407fcf5ef2aSThomas Huth } 1408fcf5ef2aSThomas Huth 14090df9142dSAndrew Jones arm_cpu_finalize_features(cpu, &local_err); 14100df9142dSAndrew Jones if (local_err != NULL) { 14110df9142dSAndrew Jones error_propagate(errp, local_err); 14120df9142dSAndrew Jones return; 14130df9142dSAndrew Jones } 14140df9142dSAndrew Jones 141597a28b0eSPeter Maydell if (arm_feature(env, ARM_FEATURE_AARCH64) && 141697a28b0eSPeter Maydell cpu->has_vfp != cpu->has_neon) { 141797a28b0eSPeter Maydell /* 141897a28b0eSPeter Maydell * This is an architectural requirement for AArch64; AArch32 is 141997a28b0eSPeter Maydell * more flexible and permits VFP-no-Neon and Neon-no-VFP. 142097a28b0eSPeter Maydell */ 142197a28b0eSPeter Maydell error_setg(errp, 142297a28b0eSPeter Maydell "AArch64 CPUs must have both VFP and Neon or neither"); 142397a28b0eSPeter Maydell return; 142497a28b0eSPeter Maydell } 142597a28b0eSPeter Maydell 142697a28b0eSPeter Maydell if (!cpu->has_vfp) { 142797a28b0eSPeter Maydell uint64_t t; 142897a28b0eSPeter Maydell uint32_t u; 142997a28b0eSPeter Maydell 143097a28b0eSPeter Maydell t = cpu->isar.id_aa64isar1; 143197a28b0eSPeter Maydell t = FIELD_DP64(t, ID_AA64ISAR1, JSCVT, 0); 143297a28b0eSPeter Maydell cpu->isar.id_aa64isar1 = t; 143397a28b0eSPeter Maydell 143497a28b0eSPeter Maydell t = cpu->isar.id_aa64pfr0; 143597a28b0eSPeter Maydell t = FIELD_DP64(t, ID_AA64PFR0, FP, 0xf); 143697a28b0eSPeter Maydell cpu->isar.id_aa64pfr0 = t; 143797a28b0eSPeter Maydell 143897a28b0eSPeter Maydell u = cpu->isar.id_isar6; 143997a28b0eSPeter Maydell u = FIELD_DP32(u, ID_ISAR6, JSCVT, 0); 144097a28b0eSPeter Maydell cpu->isar.id_isar6 = u; 144197a28b0eSPeter Maydell 144297a28b0eSPeter Maydell u = cpu->isar.mvfr0; 144397a28b0eSPeter Maydell u = FIELD_DP32(u, MVFR0, FPSP, 0); 144497a28b0eSPeter Maydell u = FIELD_DP32(u, MVFR0, FPDP, 0); 144597a28b0eSPeter Maydell u = FIELD_DP32(u, MVFR0, FPDIVIDE, 0); 144697a28b0eSPeter Maydell u = FIELD_DP32(u, MVFR0, FPSQRT, 0); 144797a28b0eSPeter Maydell u = FIELD_DP32(u, MVFR0, FPROUND, 0); 1448532a3af5SPeter Maydell if (!arm_feature(env, ARM_FEATURE_M)) { 1449532a3af5SPeter Maydell u = FIELD_DP32(u, MVFR0, FPTRAP, 0); 1450532a3af5SPeter Maydell u = FIELD_DP32(u, MVFR0, FPSHVEC, 0); 1451532a3af5SPeter Maydell } 145297a28b0eSPeter Maydell cpu->isar.mvfr0 = u; 145397a28b0eSPeter Maydell 145497a28b0eSPeter Maydell u = cpu->isar.mvfr1; 145597a28b0eSPeter Maydell u = FIELD_DP32(u, MVFR1, FPFTZ, 0); 145697a28b0eSPeter Maydell u = FIELD_DP32(u, MVFR1, FPDNAN, 0); 145797a28b0eSPeter Maydell u = FIELD_DP32(u, MVFR1, FPHP, 0); 1458532a3af5SPeter Maydell if (arm_feature(env, ARM_FEATURE_M)) { 1459532a3af5SPeter Maydell u = FIELD_DP32(u, MVFR1, FP16, 0); 1460532a3af5SPeter Maydell } 146197a28b0eSPeter Maydell cpu->isar.mvfr1 = u; 146297a28b0eSPeter Maydell 146397a28b0eSPeter Maydell u = cpu->isar.mvfr2; 146497a28b0eSPeter Maydell u = FIELD_DP32(u, MVFR2, FPMISC, 0); 146597a28b0eSPeter Maydell cpu->isar.mvfr2 = u; 146697a28b0eSPeter Maydell } 146797a28b0eSPeter Maydell 146897a28b0eSPeter Maydell if (!cpu->has_neon) { 146997a28b0eSPeter Maydell uint64_t t; 147097a28b0eSPeter Maydell uint32_t u; 147197a28b0eSPeter Maydell 147297a28b0eSPeter Maydell unset_feature(env, ARM_FEATURE_NEON); 147397a28b0eSPeter Maydell 147497a28b0eSPeter Maydell t = cpu->isar.id_aa64isar0; 147597a28b0eSPeter Maydell t = FIELD_DP64(t, ID_AA64ISAR0, DP, 0); 147697a28b0eSPeter Maydell cpu->isar.id_aa64isar0 = t; 147797a28b0eSPeter Maydell 147897a28b0eSPeter Maydell t = cpu->isar.id_aa64isar1; 147997a28b0eSPeter Maydell t = FIELD_DP64(t, ID_AA64ISAR1, FCMA, 0); 148097a28b0eSPeter Maydell cpu->isar.id_aa64isar1 = t; 148197a28b0eSPeter Maydell 148297a28b0eSPeter Maydell t = cpu->isar.id_aa64pfr0; 148397a28b0eSPeter Maydell t = FIELD_DP64(t, ID_AA64PFR0, ADVSIMD, 0xf); 148497a28b0eSPeter Maydell cpu->isar.id_aa64pfr0 = t; 148597a28b0eSPeter Maydell 148697a28b0eSPeter Maydell u = cpu->isar.id_isar5; 148797a28b0eSPeter Maydell u = FIELD_DP32(u, ID_ISAR5, RDM, 0); 148897a28b0eSPeter Maydell u = FIELD_DP32(u, ID_ISAR5, VCMA, 0); 148997a28b0eSPeter Maydell cpu->isar.id_isar5 = u; 149097a28b0eSPeter Maydell 149197a28b0eSPeter Maydell u = cpu->isar.id_isar6; 149297a28b0eSPeter Maydell u = FIELD_DP32(u, ID_ISAR6, DP, 0); 149397a28b0eSPeter Maydell u = FIELD_DP32(u, ID_ISAR6, FHM, 0); 149497a28b0eSPeter Maydell cpu->isar.id_isar6 = u; 149597a28b0eSPeter Maydell 1496532a3af5SPeter Maydell if (!arm_feature(env, ARM_FEATURE_M)) { 149797a28b0eSPeter Maydell u = cpu->isar.mvfr1; 149897a28b0eSPeter Maydell u = FIELD_DP32(u, MVFR1, SIMDLS, 0); 149997a28b0eSPeter Maydell u = FIELD_DP32(u, MVFR1, SIMDINT, 0); 150097a28b0eSPeter Maydell u = FIELD_DP32(u, MVFR1, SIMDSP, 0); 150197a28b0eSPeter Maydell u = FIELD_DP32(u, MVFR1, SIMDHP, 0); 150297a28b0eSPeter Maydell cpu->isar.mvfr1 = u; 150397a28b0eSPeter Maydell 150497a28b0eSPeter Maydell u = cpu->isar.mvfr2; 150597a28b0eSPeter Maydell u = FIELD_DP32(u, MVFR2, SIMDMISC, 0); 150697a28b0eSPeter Maydell cpu->isar.mvfr2 = u; 150797a28b0eSPeter Maydell } 1508532a3af5SPeter Maydell } 150997a28b0eSPeter Maydell 151097a28b0eSPeter Maydell if (!cpu->has_neon && !cpu->has_vfp) { 151197a28b0eSPeter Maydell uint64_t t; 151297a28b0eSPeter Maydell uint32_t u; 151397a28b0eSPeter Maydell 151497a28b0eSPeter Maydell t = cpu->isar.id_aa64isar0; 151597a28b0eSPeter Maydell t = FIELD_DP64(t, ID_AA64ISAR0, FHM, 0); 151697a28b0eSPeter Maydell cpu->isar.id_aa64isar0 = t; 151797a28b0eSPeter Maydell 151897a28b0eSPeter Maydell t = cpu->isar.id_aa64isar1; 151997a28b0eSPeter Maydell t = FIELD_DP64(t, ID_AA64ISAR1, FRINTTS, 0); 152097a28b0eSPeter Maydell cpu->isar.id_aa64isar1 = t; 152197a28b0eSPeter Maydell 152297a28b0eSPeter Maydell u = cpu->isar.mvfr0; 152397a28b0eSPeter Maydell u = FIELD_DP32(u, MVFR0, SIMDREG, 0); 152497a28b0eSPeter Maydell cpu->isar.mvfr0 = u; 1525c52881bbSRichard Henderson 1526c52881bbSRichard Henderson /* Despite the name, this field covers both VFP and Neon */ 1527c52881bbSRichard Henderson u = cpu->isar.mvfr1; 1528c52881bbSRichard Henderson u = FIELD_DP32(u, MVFR1, SIMDFMAC, 0); 1529c52881bbSRichard Henderson cpu->isar.mvfr1 = u; 153097a28b0eSPeter Maydell } 153197a28b0eSPeter Maydell 1532ea90db0aSPeter Maydell if (arm_feature(env, ARM_FEATURE_M) && !cpu->has_dsp) { 1533ea90db0aSPeter Maydell uint32_t u; 1534ea90db0aSPeter Maydell 1535ea90db0aSPeter Maydell unset_feature(env, ARM_FEATURE_THUMB_DSP); 1536ea90db0aSPeter Maydell 1537ea90db0aSPeter Maydell u = cpu->isar.id_isar1; 1538ea90db0aSPeter Maydell u = FIELD_DP32(u, ID_ISAR1, EXTEND, 1); 1539ea90db0aSPeter Maydell cpu->isar.id_isar1 = u; 1540ea90db0aSPeter Maydell 1541ea90db0aSPeter Maydell u = cpu->isar.id_isar2; 1542ea90db0aSPeter Maydell u = FIELD_DP32(u, ID_ISAR2, MULTU, 1); 1543ea90db0aSPeter Maydell u = FIELD_DP32(u, ID_ISAR2, MULTS, 1); 1544ea90db0aSPeter Maydell cpu->isar.id_isar2 = u; 1545ea90db0aSPeter Maydell 1546ea90db0aSPeter Maydell u = cpu->isar.id_isar3; 1547ea90db0aSPeter Maydell u = FIELD_DP32(u, ID_ISAR3, SIMD, 1); 1548ea90db0aSPeter Maydell u = FIELD_DP32(u, ID_ISAR3, SATURATE, 0); 1549ea90db0aSPeter Maydell cpu->isar.id_isar3 = u; 1550ea90db0aSPeter Maydell } 1551ea90db0aSPeter Maydell 1552fcf5ef2aSThomas Huth /* Some features automatically imply others: */ 1553fcf5ef2aSThomas Huth if (arm_feature(env, ARM_FEATURE_V8)) { 15545256df88SRichard Henderson if (arm_feature(env, ARM_FEATURE_M)) { 15555256df88SRichard Henderson set_feature(env, ARM_FEATURE_V7); 15565256df88SRichard Henderson } else { 15575110e683SAaron Lindsay set_feature(env, ARM_FEATURE_V7VE); 15585110e683SAaron Lindsay } 15595256df88SRichard Henderson } 15600f8d06f1SRichard Henderson 15610f8d06f1SRichard Henderson /* 15620f8d06f1SRichard Henderson * There exist AArch64 cpus without AArch32 support. When KVM 15630f8d06f1SRichard Henderson * queries ID_ISAR0_EL1 on such a host, the value is UNKNOWN. 15640f8d06f1SRichard Henderson * Similarly, we cannot check ID_AA64PFR0 without AArch64 support. 15658f4821d7SPeter Maydell * As a general principle, we also do not make ID register 15668f4821d7SPeter Maydell * consistency checks anywhere unless using TCG, because only 15678f4821d7SPeter Maydell * for TCG would a consistency-check failure be a QEMU bug. 15680f8d06f1SRichard Henderson */ 15690f8d06f1SRichard Henderson if (arm_feature(&cpu->env, ARM_FEATURE_AARCH64)) { 15700f8d06f1SRichard Henderson no_aa32 = !cpu_isar_feature(aa64_aa32, cpu); 15710f8d06f1SRichard Henderson } 15720f8d06f1SRichard Henderson 15735110e683SAaron Lindsay if (arm_feature(env, ARM_FEATURE_V7VE)) { 15745110e683SAaron Lindsay /* v7 Virtualization Extensions. In real hardware this implies 15755110e683SAaron Lindsay * EL2 and also the presence of the Security Extensions. 15765110e683SAaron Lindsay * For QEMU, for backwards-compatibility we implement some 15775110e683SAaron Lindsay * CPUs or CPU configs which have no actual EL2 or EL3 but do 15785110e683SAaron Lindsay * include the various other features that V7VE implies. 15795110e683SAaron Lindsay * Presence of EL2 itself is ARM_FEATURE_EL2, and of the 15805110e683SAaron Lindsay * Security Extensions is ARM_FEATURE_EL3. 15815110e683SAaron Lindsay */ 1582873b73c0SPeter Maydell assert(!tcg_enabled() || no_aa32 || 1583873b73c0SPeter Maydell cpu_isar_feature(aa32_arm_div, cpu)); 1584fcf5ef2aSThomas Huth set_feature(env, ARM_FEATURE_LPAE); 15855110e683SAaron Lindsay set_feature(env, ARM_FEATURE_V7); 1586fcf5ef2aSThomas Huth } 1587fcf5ef2aSThomas Huth if (arm_feature(env, ARM_FEATURE_V7)) { 1588fcf5ef2aSThomas Huth set_feature(env, ARM_FEATURE_VAPA); 1589fcf5ef2aSThomas Huth set_feature(env, ARM_FEATURE_THUMB2); 1590fcf5ef2aSThomas Huth set_feature(env, ARM_FEATURE_MPIDR); 1591fcf5ef2aSThomas Huth if (!arm_feature(env, ARM_FEATURE_M)) { 1592fcf5ef2aSThomas Huth set_feature(env, ARM_FEATURE_V6K); 1593fcf5ef2aSThomas Huth } else { 1594fcf5ef2aSThomas Huth set_feature(env, ARM_FEATURE_V6); 1595fcf5ef2aSThomas Huth } 159691db4642SCédric Le Goater 159791db4642SCédric Le Goater /* Always define VBAR for V7 CPUs even if it doesn't exist in 159891db4642SCédric Le Goater * non-EL3 configs. This is needed by some legacy boards. 159991db4642SCédric Le Goater */ 160091db4642SCédric Le Goater set_feature(env, ARM_FEATURE_VBAR); 1601fcf5ef2aSThomas Huth } 1602fcf5ef2aSThomas Huth if (arm_feature(env, ARM_FEATURE_V6K)) { 1603fcf5ef2aSThomas Huth set_feature(env, ARM_FEATURE_V6); 1604fcf5ef2aSThomas Huth set_feature(env, ARM_FEATURE_MVFR); 1605fcf5ef2aSThomas Huth } 1606fcf5ef2aSThomas Huth if (arm_feature(env, ARM_FEATURE_V6)) { 1607fcf5ef2aSThomas Huth set_feature(env, ARM_FEATURE_V5); 1608fcf5ef2aSThomas Huth if (!arm_feature(env, ARM_FEATURE_M)) { 1609873b73c0SPeter Maydell assert(!tcg_enabled() || no_aa32 || 1610873b73c0SPeter Maydell cpu_isar_feature(aa32_jazelle, cpu)); 1611fcf5ef2aSThomas Huth set_feature(env, ARM_FEATURE_AUXCR); 1612fcf5ef2aSThomas Huth } 1613fcf5ef2aSThomas Huth } 1614fcf5ef2aSThomas Huth if (arm_feature(env, ARM_FEATURE_V5)) { 1615fcf5ef2aSThomas Huth set_feature(env, ARM_FEATURE_V4T); 1616fcf5ef2aSThomas Huth } 1617fcf5ef2aSThomas Huth if (arm_feature(env, ARM_FEATURE_LPAE)) { 1618fcf5ef2aSThomas Huth set_feature(env, ARM_FEATURE_V7MP); 1619fcf5ef2aSThomas Huth } 1620fcf5ef2aSThomas Huth if (arm_feature(env, ARM_FEATURE_CBAR_RO)) { 1621fcf5ef2aSThomas Huth set_feature(env, ARM_FEATURE_CBAR); 1622fcf5ef2aSThomas Huth } 1623fcf5ef2aSThomas Huth if (arm_feature(env, ARM_FEATURE_THUMB2) && 1624fcf5ef2aSThomas Huth !arm_feature(env, ARM_FEATURE_M)) { 1625fcf5ef2aSThomas Huth set_feature(env, ARM_FEATURE_THUMB_DSP); 1626fcf5ef2aSThomas Huth } 1627fcf5ef2aSThomas Huth 1628ea7ac69dSPeter Maydell /* 1629ea7ac69dSPeter Maydell * We rely on no XScale CPU having VFP so we can use the same bits in the 1630ea7ac69dSPeter Maydell * TB flags field for VECSTRIDE and XSCALE_CPAR. 1631ea7ac69dSPeter Maydell */ 16327d63183fSRichard Henderson assert(arm_feature(&cpu->env, ARM_FEATURE_AARCH64) || 16337d63183fSRichard Henderson !cpu_isar_feature(aa32_vfp_simd, cpu) || 16347d63183fSRichard Henderson !arm_feature(env, ARM_FEATURE_XSCALE)); 1635ea7ac69dSPeter Maydell 1636fcf5ef2aSThomas Huth if (arm_feature(env, ARM_FEATURE_V7) && 1637fcf5ef2aSThomas Huth !arm_feature(env, ARM_FEATURE_M) && 1638452a0955SPeter Maydell !arm_feature(env, ARM_FEATURE_PMSA)) { 1639fcf5ef2aSThomas Huth /* v7VMSA drops support for the old ARMv5 tiny pages, so we 1640fcf5ef2aSThomas Huth * can use 4K pages. 1641fcf5ef2aSThomas Huth */ 1642fcf5ef2aSThomas Huth pagebits = 12; 1643fcf5ef2aSThomas Huth } else { 1644fcf5ef2aSThomas Huth /* For CPUs which might have tiny 1K pages, or which have an 1645fcf5ef2aSThomas Huth * MPU and might have small region sizes, stick with 1K pages. 1646fcf5ef2aSThomas Huth */ 1647fcf5ef2aSThomas Huth pagebits = 10; 1648fcf5ef2aSThomas Huth } 1649fcf5ef2aSThomas Huth if (!set_preferred_target_page_bits(pagebits)) { 1650fcf5ef2aSThomas Huth /* This can only ever happen for hotplugging a CPU, or if 1651fcf5ef2aSThomas Huth * the board code incorrectly creates a CPU which it has 1652fcf5ef2aSThomas Huth * promised via minimum_page_size that it will not. 1653fcf5ef2aSThomas Huth */ 1654fcf5ef2aSThomas Huth error_setg(errp, "This CPU requires a smaller page size than the " 1655fcf5ef2aSThomas Huth "system is using"); 1656fcf5ef2aSThomas Huth return; 1657fcf5ef2aSThomas Huth } 1658fcf5ef2aSThomas Huth 1659fcf5ef2aSThomas Huth /* This cpu-id-to-MPIDR affinity is used only for TCG; KVM will override it. 1660fcf5ef2aSThomas Huth * We don't support setting cluster ID ([16..23]) (known as Aff2 1661fcf5ef2aSThomas Huth * in later ARM ARM versions), or any of the higher affinity level fields, 1662fcf5ef2aSThomas Huth * so these bits always RAZ. 1663fcf5ef2aSThomas Huth */ 1664fcf5ef2aSThomas Huth if (cpu->mp_affinity == ARM64_AFFINITY_INVALID) { 166546de5913SIgor Mammedov cpu->mp_affinity = arm_cpu_mp_affinity(cs->cpu_index, 166646de5913SIgor Mammedov ARM_DEFAULT_CPUS_PER_CLUSTER); 1667fcf5ef2aSThomas Huth } 1668fcf5ef2aSThomas Huth 1669fcf5ef2aSThomas Huth if (cpu->reset_hivecs) { 1670fcf5ef2aSThomas Huth cpu->reset_sctlr |= (1 << 13); 1671fcf5ef2aSThomas Huth } 1672fcf5ef2aSThomas Huth 16733a062d57SJulian Brown if (cpu->cfgend) { 16743a062d57SJulian Brown if (arm_feature(&cpu->env, ARM_FEATURE_V7)) { 16753a062d57SJulian Brown cpu->reset_sctlr |= SCTLR_EE; 16763a062d57SJulian Brown } else { 16773a062d57SJulian Brown cpu->reset_sctlr |= SCTLR_B; 16783a062d57SJulian Brown } 16793a062d57SJulian Brown } 16803a062d57SJulian Brown 168140188188SPeter Maydell if (!arm_feature(env, ARM_FEATURE_M) && !cpu->has_el3) { 1682fcf5ef2aSThomas Huth /* If the has_el3 CPU property is disabled then we need to disable the 1683fcf5ef2aSThomas Huth * feature. 1684fcf5ef2aSThomas Huth */ 1685fcf5ef2aSThomas Huth unset_feature(env, ARM_FEATURE_EL3); 1686fcf5ef2aSThomas Huth 1687fcf5ef2aSThomas Huth /* Disable the security extension feature bits in the processor feature 1688fcf5ef2aSThomas Huth * registers as well. These are id_pfr1[7:4] and id_aa64pfr0[15:12]. 1689fcf5ef2aSThomas Huth */ 16908a130a7bSPeter Maydell cpu->isar.id_pfr1 &= ~0xf0; 169147576b94SRichard Henderson cpu->isar.id_aa64pfr0 &= ~0xf000; 1692fcf5ef2aSThomas Huth } 1693fcf5ef2aSThomas Huth 1694c25bd18aSPeter Maydell if (!cpu->has_el2) { 1695c25bd18aSPeter Maydell unset_feature(env, ARM_FEATURE_EL2); 1696c25bd18aSPeter Maydell } 1697c25bd18aSPeter Maydell 1698d6f02ce3SWei Huang if (!cpu->has_pmu) { 1699fcf5ef2aSThomas Huth unset_feature(env, ARM_FEATURE_PMU); 170057a4a11bSAaron Lindsay } 170157a4a11bSAaron Lindsay if (arm_feature(env, ARM_FEATURE_PMU)) { 1702bf8d0969SAaron Lindsay OS pmu_init(cpu); 170357a4a11bSAaron Lindsay 170457a4a11bSAaron Lindsay if (!kvm_enabled()) { 1705033614c4SAaron Lindsay arm_register_pre_el_change_hook(cpu, &pmu_pre_el_change, 0); 1706033614c4SAaron Lindsay arm_register_el_change_hook(cpu, &pmu_post_el_change, 0); 1707fcf5ef2aSThomas Huth } 17084e7beb0cSAaron Lindsay OS 17094e7beb0cSAaron Lindsay OS #ifndef CONFIG_USER_ONLY 17104e7beb0cSAaron Lindsay OS cpu->pmu_timer = timer_new_ns(QEMU_CLOCK_VIRTUAL, arm_pmu_timer_cb, 17114e7beb0cSAaron Lindsay OS cpu); 17124e7beb0cSAaron Lindsay OS #endif 171357a4a11bSAaron Lindsay } else { 17142a609df8SPeter Maydell cpu->isar.id_aa64dfr0 = 17152a609df8SPeter Maydell FIELD_DP64(cpu->isar.id_aa64dfr0, ID_AA64DFR0, PMUVER, 0); 1716a6179538SPeter Maydell cpu->isar.id_dfr0 = FIELD_DP32(cpu->isar.id_dfr0, ID_DFR0, PERFMON, 0); 171757a4a11bSAaron Lindsay cpu->pmceid0 = 0; 171857a4a11bSAaron Lindsay cpu->pmceid1 = 0; 171957a4a11bSAaron Lindsay } 1720fcf5ef2aSThomas Huth 1721fcf5ef2aSThomas Huth if (!arm_feature(env, ARM_FEATURE_EL2)) { 1722fcf5ef2aSThomas Huth /* Disable the hypervisor feature bits in the processor feature 1723fcf5ef2aSThomas Huth * registers if we don't have EL2. These are id_pfr1[15:12] and 1724fcf5ef2aSThomas Huth * id_aa64pfr0_el1[11:8]. 1725fcf5ef2aSThomas Huth */ 172647576b94SRichard Henderson cpu->isar.id_aa64pfr0 &= ~0xf00; 17278a130a7bSPeter Maydell cpu->isar.id_pfr1 &= ~0xf000; 1728fcf5ef2aSThomas Huth } 1729fcf5ef2aSThomas Huth 17306f4e1405SRichard Henderson #ifndef CONFIG_USER_ONLY 17316f4e1405SRichard Henderson if (cpu->tag_memory == NULL && cpu_isar_feature(aa64_mte, cpu)) { 17326f4e1405SRichard Henderson /* 17336f4e1405SRichard Henderson * Disable the MTE feature bits if we do not have tag-memory 17346f4e1405SRichard Henderson * provided by the machine. 17356f4e1405SRichard Henderson */ 17366f4e1405SRichard Henderson cpu->isar.id_aa64pfr1 = 17376f4e1405SRichard Henderson FIELD_DP64(cpu->isar.id_aa64pfr1, ID_AA64PFR1, MTE, 0); 17386f4e1405SRichard Henderson } 17396f4e1405SRichard Henderson #endif 17406f4e1405SRichard Henderson 1741f50cd314SPeter Maydell /* MPU can be configured out of a PMSA CPU either by setting has-mpu 1742f50cd314SPeter Maydell * to false or by setting pmsav7-dregion to 0. 1743f50cd314SPeter Maydell */ 1744fcf5ef2aSThomas Huth if (!cpu->has_mpu) { 1745f50cd314SPeter Maydell cpu->pmsav7_dregion = 0; 1746f50cd314SPeter Maydell } 1747f50cd314SPeter Maydell if (cpu->pmsav7_dregion == 0) { 1748f50cd314SPeter Maydell cpu->has_mpu = false; 1749fcf5ef2aSThomas Huth } 1750fcf5ef2aSThomas Huth 1751452a0955SPeter Maydell if (arm_feature(env, ARM_FEATURE_PMSA) && 1752fcf5ef2aSThomas Huth arm_feature(env, ARM_FEATURE_V7)) { 1753fcf5ef2aSThomas Huth uint32_t nr = cpu->pmsav7_dregion; 1754fcf5ef2aSThomas Huth 1755fcf5ef2aSThomas Huth if (nr > 0xff) { 1756fcf5ef2aSThomas Huth error_setg(errp, "PMSAv7 MPU #regions invalid %" PRIu32, nr); 1757fcf5ef2aSThomas Huth return; 1758fcf5ef2aSThomas Huth } 1759fcf5ef2aSThomas Huth 1760fcf5ef2aSThomas Huth if (nr) { 17610e1a46bbSPeter Maydell if (arm_feature(env, ARM_FEATURE_V8)) { 17620e1a46bbSPeter Maydell /* PMSAv8 */ 176362c58ee0SPeter Maydell env->pmsav8.rbar[M_REG_NS] = g_new0(uint32_t, nr); 176462c58ee0SPeter Maydell env->pmsav8.rlar[M_REG_NS] = g_new0(uint32_t, nr); 176562c58ee0SPeter Maydell if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { 176662c58ee0SPeter Maydell env->pmsav8.rbar[M_REG_S] = g_new0(uint32_t, nr); 176762c58ee0SPeter Maydell env->pmsav8.rlar[M_REG_S] = g_new0(uint32_t, nr); 176862c58ee0SPeter Maydell } 17690e1a46bbSPeter Maydell } else { 1770fcf5ef2aSThomas Huth env->pmsav7.drbar = g_new0(uint32_t, nr); 1771fcf5ef2aSThomas Huth env->pmsav7.drsr = g_new0(uint32_t, nr); 1772fcf5ef2aSThomas Huth env->pmsav7.dracr = g_new0(uint32_t, nr); 1773fcf5ef2aSThomas Huth } 1774fcf5ef2aSThomas Huth } 17750e1a46bbSPeter Maydell } 1776fcf5ef2aSThomas Huth 17779901c576SPeter Maydell if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { 17789901c576SPeter Maydell uint32_t nr = cpu->sau_sregion; 17799901c576SPeter Maydell 17809901c576SPeter Maydell if (nr > 0xff) { 17819901c576SPeter Maydell error_setg(errp, "v8M SAU #regions invalid %" PRIu32, nr); 17829901c576SPeter Maydell return; 17839901c576SPeter Maydell } 17849901c576SPeter Maydell 17859901c576SPeter Maydell if (nr) { 17869901c576SPeter Maydell env->sau.rbar = g_new0(uint32_t, nr); 17879901c576SPeter Maydell env->sau.rlar = g_new0(uint32_t, nr); 17889901c576SPeter Maydell } 17899901c576SPeter Maydell } 17909901c576SPeter Maydell 179191db4642SCédric Le Goater if (arm_feature(env, ARM_FEATURE_EL3)) { 179291db4642SCédric Le Goater set_feature(env, ARM_FEATURE_VBAR); 179391db4642SCédric Le Goater } 179491db4642SCédric Le Goater 1795fcf5ef2aSThomas Huth register_cp_regs_for_features(cpu); 1796fcf5ef2aSThomas Huth arm_cpu_register_gdb_regs_for_features(cpu); 1797fcf5ef2aSThomas Huth 1798fcf5ef2aSThomas Huth init_cpreg_list(cpu); 1799fcf5ef2aSThomas Huth 1800fcf5ef2aSThomas Huth #ifndef CONFIG_USER_ONLY 1801cc7d44c2SLike Xu MachineState *ms = MACHINE(qdev_get_machine()); 1802cc7d44c2SLike Xu unsigned int smp_cpus = ms->smp.cpus; 18038bce44a2SRichard Henderson bool has_secure = cpu->has_el3 || arm_feature(env, ARM_FEATURE_M_SECURITY); 1804cc7d44c2SLike Xu 18058bce44a2SRichard Henderson /* 18068bce44a2SRichard Henderson * We must set cs->num_ases to the final value before 18078bce44a2SRichard Henderson * the first call to cpu_address_space_init. 18088bce44a2SRichard Henderson */ 18098bce44a2SRichard Henderson if (cpu->tag_memory != NULL) { 18108bce44a2SRichard Henderson cs->num_ases = 3 + has_secure; 18118bce44a2SRichard Henderson } else { 18128bce44a2SRichard Henderson cs->num_ases = 1 + has_secure; 18138bce44a2SRichard Henderson } 18141d2091bcSPeter Maydell 18158bce44a2SRichard Henderson if (has_secure) { 1816fcf5ef2aSThomas Huth if (!cpu->secure_memory) { 1817fcf5ef2aSThomas Huth cpu->secure_memory = cs->memory; 1818fcf5ef2aSThomas Huth } 181980ceb07aSPeter Xu cpu_address_space_init(cs, ARMASIdx_S, "cpu-secure-memory", 182080ceb07aSPeter Xu cpu->secure_memory); 1821fcf5ef2aSThomas Huth } 18228bce44a2SRichard Henderson 18238bce44a2SRichard Henderson if (cpu->tag_memory != NULL) { 18248bce44a2SRichard Henderson cpu_address_space_init(cs, ARMASIdx_TagNS, "cpu-tag-memory", 18258bce44a2SRichard Henderson cpu->tag_memory); 18268bce44a2SRichard Henderson if (has_secure) { 18278bce44a2SRichard Henderson cpu_address_space_init(cs, ARMASIdx_TagS, "cpu-tag-memory", 18288bce44a2SRichard Henderson cpu->secure_tag_memory); 18298bce44a2SRichard Henderson } 18308bce44a2SRichard Henderson } 18318bce44a2SRichard Henderson 183280ceb07aSPeter Xu cpu_address_space_init(cs, ARMASIdx_NS, "cpu-memory", cs->memory); 1833f9a69711SAlistair Francis 1834f9a69711SAlistair Francis /* No core_count specified, default to smp_cpus. */ 1835f9a69711SAlistair Francis if (cpu->core_count == -1) { 1836f9a69711SAlistair Francis cpu->core_count = smp_cpus; 1837f9a69711SAlistair Francis } 1838fcf5ef2aSThomas Huth #endif 1839fcf5ef2aSThomas Huth 1840a4157b80SRichard Henderson if (tcg_enabled()) { 1841a4157b80SRichard Henderson int dcz_blocklen = 4 << cpu->dcz_blocksize; 1842a4157b80SRichard Henderson 1843a4157b80SRichard Henderson /* 1844a4157b80SRichard Henderson * We only support DCZ blocklen that fits on one page. 1845a4157b80SRichard Henderson * 1846a4157b80SRichard Henderson * Architectually this is always true. However TARGET_PAGE_SIZE 1847a4157b80SRichard Henderson * is variable and, for compatibility with -machine virt-2.7, 1848a4157b80SRichard Henderson * is only 1KiB, as an artifact of legacy ARMv5 subpage support. 1849a4157b80SRichard Henderson * But even then, while the largest architectural DCZ blocklen 1850a4157b80SRichard Henderson * is 2KiB, no cpu actually uses such a large blocklen. 1851a4157b80SRichard Henderson */ 1852a4157b80SRichard Henderson assert(dcz_blocklen <= TARGET_PAGE_SIZE); 1853a4157b80SRichard Henderson 1854a4157b80SRichard Henderson /* 1855a4157b80SRichard Henderson * We only support DCZ blocksize >= 2*TAG_GRANULE, which is to say 1856a4157b80SRichard Henderson * both nibbles of each byte storing tag data may be written at once. 1857a4157b80SRichard Henderson * Since TAG_GRANULE is 16, this means that blocklen must be >= 32. 1858a4157b80SRichard Henderson */ 1859a4157b80SRichard Henderson if (cpu_isar_feature(aa64_mte, cpu)) { 1860a4157b80SRichard Henderson assert(dcz_blocklen >= 2 * TAG_GRANULE); 1861a4157b80SRichard Henderson } 1862a4157b80SRichard Henderson } 1863a4157b80SRichard Henderson 1864fcf5ef2aSThomas Huth qemu_init_vcpu(cs); 1865fcf5ef2aSThomas Huth cpu_reset(cs); 1866fcf5ef2aSThomas Huth 1867fcf5ef2aSThomas Huth acc->parent_realize(dev, errp); 1868fcf5ef2aSThomas Huth } 1869fcf5ef2aSThomas Huth 1870fcf5ef2aSThomas Huth static ObjectClass *arm_cpu_class_by_name(const char *cpu_model) 1871fcf5ef2aSThomas Huth { 1872fcf5ef2aSThomas Huth ObjectClass *oc; 1873fcf5ef2aSThomas Huth char *typename; 1874fcf5ef2aSThomas Huth char **cpuname; 1875a0032cc5SPeter Maydell const char *cpunamestr; 1876fcf5ef2aSThomas Huth 1877fcf5ef2aSThomas Huth cpuname = g_strsplit(cpu_model, ",", 1); 1878a0032cc5SPeter Maydell cpunamestr = cpuname[0]; 1879a0032cc5SPeter Maydell #ifdef CONFIG_USER_ONLY 1880a0032cc5SPeter Maydell /* For backwards compatibility usermode emulation allows "-cpu any", 1881a0032cc5SPeter Maydell * which has the same semantics as "-cpu max". 1882a0032cc5SPeter Maydell */ 1883a0032cc5SPeter Maydell if (!strcmp(cpunamestr, "any")) { 1884a0032cc5SPeter Maydell cpunamestr = "max"; 1885a0032cc5SPeter Maydell } 1886a0032cc5SPeter Maydell #endif 1887a0032cc5SPeter Maydell typename = g_strdup_printf(ARM_CPU_TYPE_NAME("%s"), cpunamestr); 1888fcf5ef2aSThomas Huth oc = object_class_by_name(typename); 1889fcf5ef2aSThomas Huth g_strfreev(cpuname); 1890fcf5ef2aSThomas Huth g_free(typename); 1891fcf5ef2aSThomas Huth if (!oc || !object_class_dynamic_cast(oc, TYPE_ARM_CPU) || 1892fcf5ef2aSThomas Huth object_class_is_abstract(oc)) { 1893fcf5ef2aSThomas Huth return NULL; 1894fcf5ef2aSThomas Huth } 1895fcf5ef2aSThomas Huth return oc; 1896fcf5ef2aSThomas Huth } 1897fcf5ef2aSThomas Huth 1898fcf5ef2aSThomas Huth /* CPU models. These are not needed for the AArch64 linux-user build. */ 1899fcf5ef2aSThomas Huth #if !defined(CONFIG_USER_ONLY) || !defined(TARGET_AARCH64) 1900fcf5ef2aSThomas Huth 1901fcf5ef2aSThomas Huth static const ARMCPRegInfo cortexa8_cp_reginfo[] = { 1902fcf5ef2aSThomas Huth { .name = "L2LOCKDOWN", .cp = 15, .crn = 9, .crm = 0, .opc1 = 1, .opc2 = 0, 1903fcf5ef2aSThomas Huth .access = PL1_RW, .type = ARM_CP_CONST, .resetvalue = 0 }, 1904fcf5ef2aSThomas Huth { .name = "L2AUXCR", .cp = 15, .crn = 9, .crm = 0, .opc1 = 1, .opc2 = 2, 1905fcf5ef2aSThomas Huth .access = PL1_RW, .type = ARM_CP_CONST, .resetvalue = 0 }, 1906fcf5ef2aSThomas Huth REGINFO_SENTINEL 1907fcf5ef2aSThomas Huth }; 1908fcf5ef2aSThomas Huth 1909fcf5ef2aSThomas Huth static void cortex_a8_initfn(Object *obj) 1910fcf5ef2aSThomas Huth { 1911fcf5ef2aSThomas Huth ARMCPU *cpu = ARM_CPU(obj); 1912fcf5ef2aSThomas Huth 1913fcf5ef2aSThomas Huth cpu->dtb_compatible = "arm,cortex-a8"; 1914fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_V7); 1915fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_NEON); 1916fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_THUMB2EE); 1917fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_DUMMY_C15_REGS); 1918fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_EL3); 1919fcf5ef2aSThomas Huth cpu->midr = 0x410fc080; 1920fcf5ef2aSThomas Huth cpu->reset_fpsid = 0x410330c0; 192147576b94SRichard Henderson cpu->isar.mvfr0 = 0x11110222; 192247576b94SRichard Henderson cpu->isar.mvfr1 = 0x00011111; 1923fcf5ef2aSThomas Huth cpu->ctr = 0x82048004; 1924fcf5ef2aSThomas Huth cpu->reset_sctlr = 0x00c50078; 19258a130a7bSPeter Maydell cpu->isar.id_pfr0 = 0x1031; 19268a130a7bSPeter Maydell cpu->isar.id_pfr1 = 0x11; 1927a6179538SPeter Maydell cpu->isar.id_dfr0 = 0x400; 1928fcf5ef2aSThomas Huth cpu->id_afr0 = 0; 192910054016SPeter Maydell cpu->isar.id_mmfr0 = 0x31100003; 193010054016SPeter Maydell cpu->isar.id_mmfr1 = 0x20000000; 193110054016SPeter Maydell cpu->isar.id_mmfr2 = 0x01202000; 193210054016SPeter Maydell cpu->isar.id_mmfr3 = 0x11; 193347576b94SRichard Henderson cpu->isar.id_isar0 = 0x00101111; 193447576b94SRichard Henderson cpu->isar.id_isar1 = 0x12112111; 193547576b94SRichard Henderson cpu->isar.id_isar2 = 0x21232031; 193647576b94SRichard Henderson cpu->isar.id_isar3 = 0x11112131; 193747576b94SRichard Henderson cpu->isar.id_isar4 = 0x00111142; 19384426d361SPeter Maydell cpu->isar.dbgdidr = 0x15141000; 1939fcf5ef2aSThomas Huth cpu->clidr = (1 << 27) | (2 << 24) | 3; 1940fcf5ef2aSThomas Huth cpu->ccsidr[0] = 0xe007e01a; /* 16k L1 dcache. */ 1941fcf5ef2aSThomas Huth cpu->ccsidr[1] = 0x2007e01a; /* 16k L1 icache. */ 1942fcf5ef2aSThomas Huth cpu->ccsidr[2] = 0xf0000000; /* No L2 icache. */ 1943fcf5ef2aSThomas Huth cpu->reset_auxcr = 2; 1944fcf5ef2aSThomas Huth define_arm_cp_regs(cpu, cortexa8_cp_reginfo); 1945fcf5ef2aSThomas Huth } 1946fcf5ef2aSThomas Huth 1947fcf5ef2aSThomas Huth static const ARMCPRegInfo cortexa9_cp_reginfo[] = { 1948fcf5ef2aSThomas Huth /* power_control should be set to maximum latency. Again, 1949fcf5ef2aSThomas Huth * default to 0 and set by private hook 1950fcf5ef2aSThomas Huth */ 1951fcf5ef2aSThomas Huth { .name = "A9_PWRCTL", .cp = 15, .crn = 15, .crm = 0, .opc1 = 0, .opc2 = 0, 1952fcf5ef2aSThomas Huth .access = PL1_RW, .resetvalue = 0, 1953fcf5ef2aSThomas Huth .fieldoffset = offsetof(CPUARMState, cp15.c15_power_control) }, 1954fcf5ef2aSThomas Huth { .name = "A9_DIAG", .cp = 15, .crn = 15, .crm = 0, .opc1 = 0, .opc2 = 1, 1955fcf5ef2aSThomas Huth .access = PL1_RW, .resetvalue = 0, 1956fcf5ef2aSThomas Huth .fieldoffset = offsetof(CPUARMState, cp15.c15_diagnostic) }, 1957fcf5ef2aSThomas Huth { .name = "A9_PWRDIAG", .cp = 15, .crn = 15, .crm = 0, .opc1 = 0, .opc2 = 2, 1958fcf5ef2aSThomas Huth .access = PL1_RW, .resetvalue = 0, 1959fcf5ef2aSThomas Huth .fieldoffset = offsetof(CPUARMState, cp15.c15_power_diagnostic) }, 1960fcf5ef2aSThomas Huth { .name = "NEONBUSY", .cp = 15, .crn = 15, .crm = 1, .opc1 = 0, .opc2 = 0, 1961fcf5ef2aSThomas Huth .access = PL1_RW, .resetvalue = 0, .type = ARM_CP_CONST }, 1962fcf5ef2aSThomas Huth /* TLB lockdown control */ 1963fcf5ef2aSThomas Huth { .name = "TLB_LOCKR", .cp = 15, .crn = 15, .crm = 4, .opc1 = 5, .opc2 = 2, 1964fcf5ef2aSThomas Huth .access = PL1_W, .resetvalue = 0, .type = ARM_CP_NOP }, 1965fcf5ef2aSThomas Huth { .name = "TLB_LOCKW", .cp = 15, .crn = 15, .crm = 4, .opc1 = 5, .opc2 = 4, 1966fcf5ef2aSThomas Huth .access = PL1_W, .resetvalue = 0, .type = ARM_CP_NOP }, 1967fcf5ef2aSThomas Huth { .name = "TLB_VA", .cp = 15, .crn = 15, .crm = 5, .opc1 = 5, .opc2 = 2, 1968fcf5ef2aSThomas Huth .access = PL1_RW, .resetvalue = 0, .type = ARM_CP_CONST }, 1969fcf5ef2aSThomas Huth { .name = "TLB_PA", .cp = 15, .crn = 15, .crm = 6, .opc1 = 5, .opc2 = 2, 1970fcf5ef2aSThomas Huth .access = PL1_RW, .resetvalue = 0, .type = ARM_CP_CONST }, 1971fcf5ef2aSThomas Huth { .name = "TLB_ATTR", .cp = 15, .crn = 15, .crm = 7, .opc1 = 5, .opc2 = 2, 1972fcf5ef2aSThomas Huth .access = PL1_RW, .resetvalue = 0, .type = ARM_CP_CONST }, 1973fcf5ef2aSThomas Huth REGINFO_SENTINEL 1974fcf5ef2aSThomas Huth }; 1975fcf5ef2aSThomas Huth 1976fcf5ef2aSThomas Huth static void cortex_a9_initfn(Object *obj) 1977fcf5ef2aSThomas Huth { 1978fcf5ef2aSThomas Huth ARMCPU *cpu = ARM_CPU(obj); 1979fcf5ef2aSThomas Huth 1980fcf5ef2aSThomas Huth cpu->dtb_compatible = "arm,cortex-a9"; 1981fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_V7); 1982fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_NEON); 1983fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_THUMB2EE); 1984fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_EL3); 1985fcf5ef2aSThomas Huth /* Note that A9 supports the MP extensions even for 1986fcf5ef2aSThomas Huth * A9UP and single-core A9MP (which are both different 1987fcf5ef2aSThomas Huth * and valid configurations; we don't model A9UP). 1988fcf5ef2aSThomas Huth */ 1989fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_V7MP); 1990fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_CBAR); 1991fcf5ef2aSThomas Huth cpu->midr = 0x410fc090; 1992fcf5ef2aSThomas Huth cpu->reset_fpsid = 0x41033090; 199347576b94SRichard Henderson cpu->isar.mvfr0 = 0x11110222; 199447576b94SRichard Henderson cpu->isar.mvfr1 = 0x01111111; 1995fcf5ef2aSThomas Huth cpu->ctr = 0x80038003; 1996fcf5ef2aSThomas Huth cpu->reset_sctlr = 0x00c50078; 19978a130a7bSPeter Maydell cpu->isar.id_pfr0 = 0x1031; 19988a130a7bSPeter Maydell cpu->isar.id_pfr1 = 0x11; 1999a6179538SPeter Maydell cpu->isar.id_dfr0 = 0x000; 2000fcf5ef2aSThomas Huth cpu->id_afr0 = 0; 200110054016SPeter Maydell cpu->isar.id_mmfr0 = 0x00100103; 200210054016SPeter Maydell cpu->isar.id_mmfr1 = 0x20000000; 200310054016SPeter Maydell cpu->isar.id_mmfr2 = 0x01230000; 200410054016SPeter Maydell cpu->isar.id_mmfr3 = 0x00002111; 200547576b94SRichard Henderson cpu->isar.id_isar0 = 0x00101111; 200647576b94SRichard Henderson cpu->isar.id_isar1 = 0x13112111; 200747576b94SRichard Henderson cpu->isar.id_isar2 = 0x21232041; 200847576b94SRichard Henderson cpu->isar.id_isar3 = 0x11112131; 200947576b94SRichard Henderson cpu->isar.id_isar4 = 0x00111142; 20104426d361SPeter Maydell cpu->isar.dbgdidr = 0x35141000; 2011fcf5ef2aSThomas Huth cpu->clidr = (1 << 27) | (1 << 24) | 3; 2012fcf5ef2aSThomas Huth cpu->ccsidr[0] = 0xe00fe019; /* 16k L1 dcache. */ 2013fcf5ef2aSThomas Huth cpu->ccsidr[1] = 0x200fe019; /* 16k L1 icache. */ 2014fcf5ef2aSThomas Huth define_arm_cp_regs(cpu, cortexa9_cp_reginfo); 2015fcf5ef2aSThomas Huth } 2016fcf5ef2aSThomas Huth 2017fcf5ef2aSThomas Huth #ifndef CONFIG_USER_ONLY 2018fcf5ef2aSThomas Huth static uint64_t a15_l2ctlr_read(CPUARMState *env, const ARMCPRegInfo *ri) 2019fcf5ef2aSThomas Huth { 2020cc7d44c2SLike Xu MachineState *ms = MACHINE(qdev_get_machine()); 2021cc7d44c2SLike Xu 2022fcf5ef2aSThomas Huth /* Linux wants the number of processors from here. 2023fcf5ef2aSThomas Huth * Might as well set the interrupt-controller bit too. 2024fcf5ef2aSThomas Huth */ 2025cc7d44c2SLike Xu return ((ms->smp.cpus - 1) << 24) | (1 << 23); 2026fcf5ef2aSThomas Huth } 2027fcf5ef2aSThomas Huth #endif 2028fcf5ef2aSThomas Huth 2029fcf5ef2aSThomas Huth static const ARMCPRegInfo cortexa15_cp_reginfo[] = { 2030fcf5ef2aSThomas Huth #ifndef CONFIG_USER_ONLY 2031fcf5ef2aSThomas Huth { .name = "L2CTLR", .cp = 15, .crn = 9, .crm = 0, .opc1 = 1, .opc2 = 2, 2032fcf5ef2aSThomas Huth .access = PL1_RW, .resetvalue = 0, .readfn = a15_l2ctlr_read, 2033fcf5ef2aSThomas Huth .writefn = arm_cp_write_ignore, }, 2034fcf5ef2aSThomas Huth #endif 2035fcf5ef2aSThomas Huth { .name = "L2ECTLR", .cp = 15, .crn = 9, .crm = 0, .opc1 = 1, .opc2 = 3, 2036fcf5ef2aSThomas Huth .access = PL1_RW, .type = ARM_CP_CONST, .resetvalue = 0 }, 2037fcf5ef2aSThomas Huth REGINFO_SENTINEL 2038fcf5ef2aSThomas Huth }; 2039fcf5ef2aSThomas Huth 2040fcf5ef2aSThomas Huth static void cortex_a7_initfn(Object *obj) 2041fcf5ef2aSThomas Huth { 2042fcf5ef2aSThomas Huth ARMCPU *cpu = ARM_CPU(obj); 2043fcf5ef2aSThomas Huth 2044fcf5ef2aSThomas Huth cpu->dtb_compatible = "arm,cortex-a7"; 20455110e683SAaron Lindsay set_feature(&cpu->env, ARM_FEATURE_V7VE); 2046fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_NEON); 2047fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_THUMB2EE); 2048fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_GENERIC_TIMER); 2049fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_DUMMY_C15_REGS); 2050fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_CBAR_RO); 2051436c0cbbSPeter Maydell set_feature(&cpu->env, ARM_FEATURE_EL2); 2052fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_EL3); 2053a46118fcSAndrew Jones set_feature(&cpu->env, ARM_FEATURE_PMU); 2054fcf5ef2aSThomas Huth cpu->kvm_target = QEMU_KVM_ARM_TARGET_CORTEX_A7; 2055fcf5ef2aSThomas Huth cpu->midr = 0x410fc075; 2056fcf5ef2aSThomas Huth cpu->reset_fpsid = 0x41023075; 205747576b94SRichard Henderson cpu->isar.mvfr0 = 0x10110222; 205847576b94SRichard Henderson cpu->isar.mvfr1 = 0x11111111; 2059fcf5ef2aSThomas Huth cpu->ctr = 0x84448003; 2060fcf5ef2aSThomas Huth cpu->reset_sctlr = 0x00c50078; 20618a130a7bSPeter Maydell cpu->isar.id_pfr0 = 0x00001131; 20628a130a7bSPeter Maydell cpu->isar.id_pfr1 = 0x00011011; 2063a6179538SPeter Maydell cpu->isar.id_dfr0 = 0x02010555; 2064fcf5ef2aSThomas Huth cpu->id_afr0 = 0x00000000; 206510054016SPeter Maydell cpu->isar.id_mmfr0 = 0x10101105; 206610054016SPeter Maydell cpu->isar.id_mmfr1 = 0x40000000; 206710054016SPeter Maydell cpu->isar.id_mmfr2 = 0x01240000; 206810054016SPeter Maydell cpu->isar.id_mmfr3 = 0x02102211; 206937bdda89SRichard Henderson /* a7_mpcore_r0p5_trm, page 4-4 gives 0x01101110; but 207037bdda89SRichard Henderson * table 4-41 gives 0x02101110, which includes the arm div insns. 207137bdda89SRichard Henderson */ 207247576b94SRichard Henderson cpu->isar.id_isar0 = 0x02101110; 207347576b94SRichard Henderson cpu->isar.id_isar1 = 0x13112111; 207447576b94SRichard Henderson cpu->isar.id_isar2 = 0x21232041; 207547576b94SRichard Henderson cpu->isar.id_isar3 = 0x11112131; 207647576b94SRichard Henderson cpu->isar.id_isar4 = 0x10011142; 20774426d361SPeter Maydell cpu->isar.dbgdidr = 0x3515f005; 2078fcf5ef2aSThomas Huth cpu->clidr = 0x0a200023; 2079fcf5ef2aSThomas Huth cpu->ccsidr[0] = 0x701fe00a; /* 32K L1 dcache */ 2080fcf5ef2aSThomas Huth cpu->ccsidr[1] = 0x201fe00a; /* 32K L1 icache */ 2081fcf5ef2aSThomas Huth cpu->ccsidr[2] = 0x711fe07a; /* 4096K L2 unified cache */ 2082fcf5ef2aSThomas Huth define_arm_cp_regs(cpu, cortexa15_cp_reginfo); /* Same as A15 */ 2083fcf5ef2aSThomas Huth } 2084fcf5ef2aSThomas Huth 2085fcf5ef2aSThomas Huth static void cortex_a15_initfn(Object *obj) 2086fcf5ef2aSThomas Huth { 2087fcf5ef2aSThomas Huth ARMCPU *cpu = ARM_CPU(obj); 2088fcf5ef2aSThomas Huth 2089fcf5ef2aSThomas Huth cpu->dtb_compatible = "arm,cortex-a15"; 20905110e683SAaron Lindsay set_feature(&cpu->env, ARM_FEATURE_V7VE); 2091fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_NEON); 2092fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_THUMB2EE); 2093fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_GENERIC_TIMER); 2094fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_DUMMY_C15_REGS); 2095fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_CBAR_RO); 2096436c0cbbSPeter Maydell set_feature(&cpu->env, ARM_FEATURE_EL2); 2097fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_EL3); 2098a46118fcSAndrew Jones set_feature(&cpu->env, ARM_FEATURE_PMU); 2099fcf5ef2aSThomas Huth cpu->kvm_target = QEMU_KVM_ARM_TARGET_CORTEX_A15; 2100fcf5ef2aSThomas Huth cpu->midr = 0x412fc0f1; 2101fcf5ef2aSThomas Huth cpu->reset_fpsid = 0x410430f0; 210247576b94SRichard Henderson cpu->isar.mvfr0 = 0x10110222; 210347576b94SRichard Henderson cpu->isar.mvfr1 = 0x11111111; 2104fcf5ef2aSThomas Huth cpu->ctr = 0x8444c004; 2105fcf5ef2aSThomas Huth cpu->reset_sctlr = 0x00c50078; 21068a130a7bSPeter Maydell cpu->isar.id_pfr0 = 0x00001131; 21078a130a7bSPeter Maydell cpu->isar.id_pfr1 = 0x00011011; 2108a6179538SPeter Maydell cpu->isar.id_dfr0 = 0x02010555; 2109fcf5ef2aSThomas Huth cpu->id_afr0 = 0x00000000; 211010054016SPeter Maydell cpu->isar.id_mmfr0 = 0x10201105; 211110054016SPeter Maydell cpu->isar.id_mmfr1 = 0x20000000; 211210054016SPeter Maydell cpu->isar.id_mmfr2 = 0x01240000; 211310054016SPeter Maydell cpu->isar.id_mmfr3 = 0x02102211; 211447576b94SRichard Henderson cpu->isar.id_isar0 = 0x02101110; 211547576b94SRichard Henderson cpu->isar.id_isar1 = 0x13112111; 211647576b94SRichard Henderson cpu->isar.id_isar2 = 0x21232041; 211747576b94SRichard Henderson cpu->isar.id_isar3 = 0x11112131; 211847576b94SRichard Henderson cpu->isar.id_isar4 = 0x10011142; 21194426d361SPeter Maydell cpu->isar.dbgdidr = 0x3515f021; 2120fcf5ef2aSThomas Huth cpu->clidr = 0x0a200023; 2121fcf5ef2aSThomas Huth cpu->ccsidr[0] = 0x701fe00a; /* 32K L1 dcache */ 2122fcf5ef2aSThomas Huth cpu->ccsidr[1] = 0x201fe00a; /* 32K L1 icache */ 2123fcf5ef2aSThomas Huth cpu->ccsidr[2] = 0x711fe07a; /* 4096K L2 unified cache */ 2124fcf5ef2aSThomas Huth define_arm_cp_regs(cpu, cortexa15_cp_reginfo); 2125fcf5ef2aSThomas Huth } 2126fcf5ef2aSThomas Huth 2127bab52d4bSPeter Maydell #ifndef TARGET_AARCH64 2128e9b2bfaaSPeter Maydell /* 2129e9b2bfaaSPeter Maydell * -cpu max: a CPU with as many features enabled as our emulation supports. 2130bab52d4bSPeter Maydell * The version of '-cpu max' for qemu-system-aarch64 is defined in cpu64.c; 2131e9b2bfaaSPeter Maydell * this only needs to handle 32 bits, and need not care about KVM. 2132bab52d4bSPeter Maydell */ 2133bab52d4bSPeter Maydell static void arm_max_initfn(Object *obj) 2134bab52d4bSPeter Maydell { 2135bab52d4bSPeter Maydell ARMCPU *cpu = ARM_CPU(obj); 2136bab52d4bSPeter Maydell 2137bab52d4bSPeter Maydell cortex_a15_initfn(obj); 2138973751fdSPeter Maydell 2139973751fdSPeter Maydell /* old-style VFP short-vector support */ 2140973751fdSPeter Maydell cpu->isar.mvfr0 = FIELD_DP32(cpu->isar.mvfr0, MVFR0, FPSHVEC, 1); 2141973751fdSPeter Maydell 2142fcf5ef2aSThomas Huth #ifdef CONFIG_USER_ONLY 2143e9b2bfaaSPeter Maydell /* 2144e9b2bfaaSPeter Maydell * We don't set these in system emulation mode for the moment, 2145962fcbf2SRichard Henderson * since we don't correctly set (all of) the ID registers to 2146962fcbf2SRichard Henderson * advertise them. 2147a0032cc5SPeter Maydell */ 2148fcf5ef2aSThomas Huth set_feature(&cpu->env, ARM_FEATURE_V8); 2149962fcbf2SRichard Henderson { 2150962fcbf2SRichard Henderson uint32_t t; 2151962fcbf2SRichard Henderson 2152962fcbf2SRichard Henderson t = cpu->isar.id_isar5; 2153962fcbf2SRichard Henderson t = FIELD_DP32(t, ID_ISAR5, AES, 2); 2154962fcbf2SRichard Henderson t = FIELD_DP32(t, ID_ISAR5, SHA1, 1); 2155962fcbf2SRichard Henderson t = FIELD_DP32(t, ID_ISAR5, SHA2, 1); 2156962fcbf2SRichard Henderson t = FIELD_DP32(t, ID_ISAR5, CRC32, 1); 2157962fcbf2SRichard Henderson t = FIELD_DP32(t, ID_ISAR5, RDM, 1); 2158962fcbf2SRichard Henderson t = FIELD_DP32(t, ID_ISAR5, VCMA, 1); 2159962fcbf2SRichard Henderson cpu->isar.id_isar5 = t; 2160962fcbf2SRichard Henderson 2161962fcbf2SRichard Henderson t = cpu->isar.id_isar6; 21626c1f6f27SRichard Henderson t = FIELD_DP32(t, ID_ISAR6, JSCVT, 1); 2163962fcbf2SRichard Henderson t = FIELD_DP32(t, ID_ISAR6, DP, 1); 2164991c0599SRichard Henderson t = FIELD_DP32(t, ID_ISAR6, FHM, 1); 21659888bd1eSRichard Henderson t = FIELD_DP32(t, ID_ISAR6, SB, 1); 2166cb570bd3SRichard Henderson t = FIELD_DP32(t, ID_ISAR6, SPECRES, 1); 2167962fcbf2SRichard Henderson cpu->isar.id_isar6 = t; 2168ab638a32SRichard Henderson 216945b1a243SAlex Bennée t = cpu->isar.mvfr1; 21705f07817eSPeter Maydell t = FIELD_DP32(t, MVFR1, FPHP, 3); /* v8.2-FP16 */ 21715f07817eSPeter Maydell t = FIELD_DP32(t, MVFR1, SIMDHP, 2); /* v8.2-FP16 */ 217245b1a243SAlex Bennée cpu->isar.mvfr1 = t; 217345b1a243SAlex Bennée 2174c8877d0fSRichard Henderson t = cpu->isar.mvfr2; 2175c8877d0fSRichard Henderson t = FIELD_DP32(t, MVFR2, SIMDMISC, 3); /* SIMD MaxNum */ 2176c8877d0fSRichard Henderson t = FIELD_DP32(t, MVFR2, FPMISC, 4); /* FP MaxNum */ 2177c8877d0fSRichard Henderson cpu->isar.mvfr2 = t; 2178c8877d0fSRichard Henderson 217910054016SPeter Maydell t = cpu->isar.id_mmfr3; 2180e0fe7309SRichard Henderson t = FIELD_DP32(t, ID_MMFR3, PAN, 2); /* ATS1E1 */ 218110054016SPeter Maydell cpu->isar.id_mmfr3 = t; 2182e0fe7309SRichard Henderson 218310054016SPeter Maydell t = cpu->isar.id_mmfr4; 2184ab638a32SRichard Henderson t = FIELD_DP32(t, ID_MMFR4, HPDS, 1); /* AA32HPD */ 2185f6287c24SPeter Maydell t = FIELD_DP32(t, ID_MMFR4, AC2, 1); /* ACTLR2, HACTLR2 */ 218641a4bf1fSPeter Maydell t = FIELD_DP32(t, ID_MMFR4, CNP, 1); /* TTCNP */ 2187ce3125beSPeter Maydell t = FIELD_DP32(t, ID_MMFR4, XNX, 1); /* TTS2UXN */ 218810054016SPeter Maydell cpu->isar.id_mmfr4 = t; 2189962fcbf2SRichard Henderson } 2190a0032cc5SPeter Maydell #endif 2191a0032cc5SPeter Maydell } 2192fcf5ef2aSThomas Huth #endif 2193fcf5ef2aSThomas Huth 2194fcf5ef2aSThomas Huth #endif /* !defined(CONFIG_USER_ONLY) || !defined(TARGET_AARCH64) */ 2195fcf5ef2aSThomas Huth 2196fcf5ef2aSThomas Huth static const ARMCPUInfo arm_cpus[] = { 2197fcf5ef2aSThomas Huth #if !defined(CONFIG_USER_ONLY) || !defined(TARGET_AARCH64) 2198fcf5ef2aSThomas Huth { .name = "cortex-a7", .initfn = cortex_a7_initfn }, 2199fcf5ef2aSThomas Huth { .name = "cortex-a8", .initfn = cortex_a8_initfn }, 2200fcf5ef2aSThomas Huth { .name = "cortex-a9", .initfn = cortex_a9_initfn }, 2201fcf5ef2aSThomas Huth { .name = "cortex-a15", .initfn = cortex_a15_initfn }, 2202bab52d4bSPeter Maydell #ifndef TARGET_AARCH64 2203bab52d4bSPeter Maydell { .name = "max", .initfn = arm_max_initfn }, 2204bab52d4bSPeter Maydell #endif 2205fcf5ef2aSThomas Huth #ifdef CONFIG_USER_ONLY 2206a0032cc5SPeter Maydell { .name = "any", .initfn = arm_max_initfn }, 2207fcf5ef2aSThomas Huth #endif 2208fcf5ef2aSThomas Huth #endif 2209fcf5ef2aSThomas Huth }; 2210fcf5ef2aSThomas Huth 2211fcf5ef2aSThomas Huth static Property arm_cpu_properties[] = { 2212fcf5ef2aSThomas Huth DEFINE_PROP_UINT32("psci-conduit", ARMCPU, psci_conduit, 0), 2213e544f800SPhilippe Mathieu-Daudé DEFINE_PROP_UINT64("midr", ARMCPU, midr, 0), 2214fcf5ef2aSThomas Huth DEFINE_PROP_UINT64("mp-affinity", ARMCPU, 2215fcf5ef2aSThomas Huth mp_affinity, ARM64_AFFINITY_INVALID), 221615f8b142SIgor Mammedov DEFINE_PROP_INT32("node-id", ARMCPU, node_id, CPU_UNSET_NUMA_NODE_ID), 2217f9a69711SAlistair Francis DEFINE_PROP_INT32("core-count", ARMCPU, core_count, -1), 2218fcf5ef2aSThomas Huth DEFINE_PROP_END_OF_LIST() 2219fcf5ef2aSThomas Huth }; 2220fcf5ef2aSThomas Huth 2221fcf5ef2aSThomas Huth static gchar *arm_gdb_arch_name(CPUState *cs) 2222fcf5ef2aSThomas Huth { 2223fcf5ef2aSThomas Huth ARMCPU *cpu = ARM_CPU(cs); 2224fcf5ef2aSThomas Huth CPUARMState *env = &cpu->env; 2225fcf5ef2aSThomas Huth 2226fcf5ef2aSThomas Huth if (arm_feature(env, ARM_FEATURE_IWMMXT)) { 2227fcf5ef2aSThomas Huth return g_strdup("iwmmxt"); 2228fcf5ef2aSThomas Huth } 2229fcf5ef2aSThomas Huth return g_strdup("arm"); 2230fcf5ef2aSThomas Huth } 2231fcf5ef2aSThomas Huth 2232fcf5ef2aSThomas Huth static void arm_cpu_class_init(ObjectClass *oc, void *data) 2233fcf5ef2aSThomas Huth { 2234fcf5ef2aSThomas Huth ARMCPUClass *acc = ARM_CPU_CLASS(oc); 2235fcf5ef2aSThomas Huth CPUClass *cc = CPU_CLASS(acc); 2236fcf5ef2aSThomas Huth DeviceClass *dc = DEVICE_CLASS(oc); 2237fcf5ef2aSThomas Huth 2238bf853881SPhilippe Mathieu-Daudé device_class_set_parent_realize(dc, arm_cpu_realizefn, 2239bf853881SPhilippe Mathieu-Daudé &acc->parent_realize); 2240fcf5ef2aSThomas Huth 22414f67d30bSMarc-André Lureau device_class_set_props(dc, arm_cpu_properties); 2242781c67caSPeter Maydell device_class_set_parent_reset(dc, arm_cpu_reset, &acc->parent_reset); 2243fcf5ef2aSThomas Huth 2244fcf5ef2aSThomas Huth cc->class_by_name = arm_cpu_class_by_name; 2245fcf5ef2aSThomas Huth cc->has_work = arm_cpu_has_work; 2246fcf5ef2aSThomas Huth cc->cpu_exec_interrupt = arm_cpu_exec_interrupt; 2247fcf5ef2aSThomas Huth cc->dump_state = arm_cpu_dump_state; 2248fcf5ef2aSThomas Huth cc->set_pc = arm_cpu_set_pc; 224942f6ed91SJulia Suvorova cc->synchronize_from_tb = arm_cpu_synchronize_from_tb; 2250fcf5ef2aSThomas Huth cc->gdb_read_register = arm_cpu_gdb_read_register; 2251fcf5ef2aSThomas Huth cc->gdb_write_register = arm_cpu_gdb_write_register; 22527350d553SRichard Henderson #ifndef CONFIG_USER_ONLY 2253fcf5ef2aSThomas Huth cc->do_interrupt = arm_cpu_do_interrupt; 2254fcf5ef2aSThomas Huth cc->get_phys_page_attrs_debug = arm_cpu_get_phys_page_attrs_debug; 2255fcf5ef2aSThomas Huth cc->asidx_from_attrs = arm_asidx_from_attrs; 2256fcf5ef2aSThomas Huth cc->vmsd = &vmstate_arm_cpu; 2257fcf5ef2aSThomas Huth cc->virtio_is_big_endian = arm_cpu_virtio_is_big_endian; 2258fcf5ef2aSThomas Huth cc->write_elf64_note = arm_cpu_write_elf64_note; 2259fcf5ef2aSThomas Huth cc->write_elf32_note = arm_cpu_write_elf32_note; 2260fcf5ef2aSThomas Huth #endif 2261fcf5ef2aSThomas Huth cc->gdb_num_core_regs = 26; 2262fcf5ef2aSThomas Huth cc->gdb_core_xml_file = "arm-core.xml"; 2263fcf5ef2aSThomas Huth cc->gdb_arch_name = arm_gdb_arch_name; 2264200bf5b7SAbdallah Bouassida cc->gdb_get_dynamic_xml = arm_gdb_get_dynamic_xml; 2265fcf5ef2aSThomas Huth cc->gdb_stop_before_watchpoint = true; 2266fcf5ef2aSThomas Huth cc->disas_set_info = arm_disas_set_info; 226774d7fc7fSRichard Henderson #ifdef CONFIG_TCG 226855c3ceefSRichard Henderson cc->tcg_initialize = arm_translate_init; 22697350d553SRichard Henderson cc->tlb_fill = arm_cpu_tlb_fill; 22709dd5cca4SPhilippe Mathieu-Daudé cc->debug_excp_handler = arm_debug_excp_handler; 22719dd5cca4SPhilippe Mathieu-Daudé cc->debug_check_watchpoint = arm_debug_check_watchpoint; 2272e21b551cSPhilippe Mathieu-Daudé cc->do_unaligned_access = arm_cpu_do_unaligned_access; 22730d1762e9SRichard Henderson #if !defined(CONFIG_USER_ONLY) 2274e21b551cSPhilippe Mathieu-Daudé cc->do_transaction_failed = arm_cpu_do_transaction_failed; 22759dd5cca4SPhilippe Mathieu-Daudé cc->adjust_watchpoint_address = arm_adjust_watchpoint_address; 2276e21b551cSPhilippe Mathieu-Daudé #endif /* CONFIG_TCG && !CONFIG_USER_ONLY */ 227774d7fc7fSRichard Henderson #endif 2278fcf5ef2aSThomas Huth } 2279fcf5ef2aSThomas Huth 228086f0a186SPeter Maydell #ifdef CONFIG_KVM 228186f0a186SPeter Maydell static void arm_host_initfn(Object *obj) 228286f0a186SPeter Maydell { 228386f0a186SPeter Maydell ARMCPU *cpu = ARM_CPU(obj); 228486f0a186SPeter Maydell 228586f0a186SPeter Maydell kvm_arm_set_cpu_features_from_host(cpu); 228687014c6bSAndrew Jones if (arm_feature(&cpu->env, ARM_FEATURE_AARCH64)) { 228787014c6bSAndrew Jones aarch64_add_sve_properties(obj); 228887014c6bSAndrew Jones } 228951e5ef45SMarc-André Lureau arm_cpu_post_init(obj); 229086f0a186SPeter Maydell } 229186f0a186SPeter Maydell 229286f0a186SPeter Maydell static const TypeInfo host_arm_cpu_type_info = { 229386f0a186SPeter Maydell .name = TYPE_ARM_HOST_CPU, 229486f0a186SPeter Maydell .parent = TYPE_AARCH64_CPU, 229586f0a186SPeter Maydell .instance_init = arm_host_initfn, 229686f0a186SPeter Maydell }; 229786f0a186SPeter Maydell 229886f0a186SPeter Maydell #endif 229986f0a186SPeter Maydell 230051e5ef45SMarc-André Lureau static void arm_cpu_instance_init(Object *obj) 230151e5ef45SMarc-André Lureau { 230251e5ef45SMarc-André Lureau ARMCPUClass *acc = ARM_CPU_GET_CLASS(obj); 230351e5ef45SMarc-André Lureau 230451e5ef45SMarc-André Lureau acc->info->initfn(obj); 230551e5ef45SMarc-André Lureau arm_cpu_post_init(obj); 230651e5ef45SMarc-André Lureau } 230751e5ef45SMarc-André Lureau 230851e5ef45SMarc-André Lureau static void cpu_register_class_init(ObjectClass *oc, void *data) 230951e5ef45SMarc-André Lureau { 231051e5ef45SMarc-André Lureau ARMCPUClass *acc = ARM_CPU_CLASS(oc); 231151e5ef45SMarc-André Lureau 231251e5ef45SMarc-André Lureau acc->info = data; 231351e5ef45SMarc-André Lureau } 231451e5ef45SMarc-André Lureau 231537bcf244SThomas Huth void arm_cpu_register(const ARMCPUInfo *info) 2316fcf5ef2aSThomas Huth { 2317fcf5ef2aSThomas Huth TypeInfo type_info = { 2318fcf5ef2aSThomas Huth .parent = TYPE_ARM_CPU, 2319fcf5ef2aSThomas Huth .instance_size = sizeof(ARMCPU), 2320d03087bdSRichard Henderson .instance_align = __alignof__(ARMCPU), 232151e5ef45SMarc-André Lureau .instance_init = arm_cpu_instance_init, 2322fcf5ef2aSThomas Huth .class_size = sizeof(ARMCPUClass), 232351e5ef45SMarc-André Lureau .class_init = info->class_init ?: cpu_register_class_init, 232451e5ef45SMarc-André Lureau .class_data = (void *)info, 2325fcf5ef2aSThomas Huth }; 2326fcf5ef2aSThomas Huth 2327fcf5ef2aSThomas Huth type_info.name = g_strdup_printf("%s-" TYPE_ARM_CPU, info->name); 2328fcf5ef2aSThomas Huth type_register(&type_info); 2329fcf5ef2aSThomas Huth g_free((void *)type_info.name); 2330fcf5ef2aSThomas Huth } 2331fcf5ef2aSThomas Huth 2332fcf5ef2aSThomas Huth static const TypeInfo arm_cpu_type_info = { 2333fcf5ef2aSThomas Huth .name = TYPE_ARM_CPU, 2334fcf5ef2aSThomas Huth .parent = TYPE_CPU, 2335fcf5ef2aSThomas Huth .instance_size = sizeof(ARMCPU), 2336d03087bdSRichard Henderson .instance_align = __alignof__(ARMCPU), 2337fcf5ef2aSThomas Huth .instance_init = arm_cpu_initfn, 2338fcf5ef2aSThomas Huth .instance_finalize = arm_cpu_finalizefn, 2339fcf5ef2aSThomas Huth .abstract = true, 2340fcf5ef2aSThomas Huth .class_size = sizeof(ARMCPUClass), 2341fcf5ef2aSThomas Huth .class_init = arm_cpu_class_init, 2342fcf5ef2aSThomas Huth }; 2343fcf5ef2aSThomas Huth 2344181962fdSPeter Maydell static const TypeInfo idau_interface_type_info = { 2345181962fdSPeter Maydell .name = TYPE_IDAU_INTERFACE, 2346181962fdSPeter Maydell .parent = TYPE_INTERFACE, 2347181962fdSPeter Maydell .class_size = sizeof(IDAUInterfaceClass), 2348181962fdSPeter Maydell }; 2349181962fdSPeter Maydell 2350fcf5ef2aSThomas Huth static void arm_cpu_register_types(void) 2351fcf5ef2aSThomas Huth { 235292b6a659SPhilippe Mathieu-Daudé const size_t cpu_count = ARRAY_SIZE(arm_cpus); 2353fcf5ef2aSThomas Huth 2354fcf5ef2aSThomas Huth type_register_static(&arm_cpu_type_info); 2355fcf5ef2aSThomas Huth 235686f0a186SPeter Maydell #ifdef CONFIG_KVM 235786f0a186SPeter Maydell type_register_static(&host_arm_cpu_type_info); 235886f0a186SPeter Maydell #endif 235992b6a659SPhilippe Mathieu-Daudé 236092b6a659SPhilippe Mathieu-Daudé if (cpu_count) { 236192b6a659SPhilippe Mathieu-Daudé size_t i; 236292b6a659SPhilippe Mathieu-Daudé 2363fcdf0a90SPhilippe Mathieu-Daudé type_register_static(&idau_interface_type_info); 236492b6a659SPhilippe Mathieu-Daudé for (i = 0; i < cpu_count; ++i) { 236592b6a659SPhilippe Mathieu-Daudé arm_cpu_register(&arm_cpus[i]); 236692b6a659SPhilippe Mathieu-Daudé } 236792b6a659SPhilippe Mathieu-Daudé } 2368fcf5ef2aSThomas Huth } 2369fcf5ef2aSThomas Huth 2370fcf5ef2aSThomas Huth type_init(arm_cpu_register_types) 2371