355e6cfb94
Set the NaN propagation rule explicitly for the float_status word used in the openrisc target. Signed-off-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Philippe Mathieu-Daudé <philmd@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-id: 20241025141254.2141506-20-peter.maydell@linaro.org
299 lines
8.6 KiB
C
299 lines
8.6 KiB
C
/*
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* QEMU OpenRISC CPU
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*
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* Copyright (c) 2012 Jia Liu <proljc@gmail.com>
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, see <http://www.gnu.org/licenses/>.
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*/
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#include "qemu/osdep.h"
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#include "qapi/error.h"
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#include "qemu/qemu-print.h"
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#include "cpu.h"
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#include "exec/exec-all.h"
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#include "fpu/softfloat-helpers.h"
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#include "tcg/tcg.h"
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static void openrisc_cpu_set_pc(CPUState *cs, vaddr value)
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{
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OpenRISCCPU *cpu = OPENRISC_CPU(cs);
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cpu->env.pc = value;
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cpu->env.dflag = 0;
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}
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static vaddr openrisc_cpu_get_pc(CPUState *cs)
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{
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OpenRISCCPU *cpu = OPENRISC_CPU(cs);
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return cpu->env.pc;
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}
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static void openrisc_cpu_synchronize_from_tb(CPUState *cs,
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const TranslationBlock *tb)
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{
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OpenRISCCPU *cpu = OPENRISC_CPU(cs);
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tcg_debug_assert(!tcg_cflags_has(cs, CF_PCREL));
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cpu->env.pc = tb->pc;
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}
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static void openrisc_restore_state_to_opc(CPUState *cs,
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const TranslationBlock *tb,
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const uint64_t *data)
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{
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OpenRISCCPU *cpu = OPENRISC_CPU(cs);
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cpu->env.pc = data[0];
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cpu->env.dflag = data[1] & 1;
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if (data[1] & 2) {
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cpu->env.ppc = cpu->env.pc - 4;
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}
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}
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static bool openrisc_cpu_has_work(CPUState *cs)
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{
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return cs->interrupt_request & (CPU_INTERRUPT_HARD |
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CPU_INTERRUPT_TIMER);
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}
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static int openrisc_cpu_mmu_index(CPUState *cs, bool ifetch)
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{
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CPUOpenRISCState *env = cpu_env(cs);
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if (env->sr & (ifetch ? SR_IME : SR_DME)) {
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/* The mmu is enabled; test supervisor state. */
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return env->sr & SR_SM ? MMU_SUPERVISOR_IDX : MMU_USER_IDX;
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}
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return MMU_NOMMU_IDX; /* mmu is disabled */
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}
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static void openrisc_disas_set_info(CPUState *cpu, disassemble_info *info)
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{
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info->print_insn = print_insn_or1k;
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}
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static void openrisc_cpu_reset_hold(Object *obj, ResetType type)
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{
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CPUState *cs = CPU(obj);
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OpenRISCCPU *cpu = OPENRISC_CPU(cs);
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OpenRISCCPUClass *occ = OPENRISC_CPU_GET_CLASS(obj);
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if (occ->parent_phases.hold) {
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occ->parent_phases.hold(obj, type);
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}
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memset(&cpu->env, 0, offsetof(CPUOpenRISCState, end_reset_fields));
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cpu->env.pc = 0x100;
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cpu->env.sr = SR_FO | SR_SM;
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cpu->env.lock_addr = -1;
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cs->exception_index = -1;
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cpu_set_fpcsr(&cpu->env, 0);
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set_float_detect_tininess(float_tininess_before_rounding,
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&cpu->env.fp_status);
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/*
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* TODO: this is probably not the correct NaN propagation rule for
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* this architecture.
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*/
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set_float_2nan_prop_rule(float_2nan_prop_x87, &cpu->env.fp_status);
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#ifndef CONFIG_USER_ONLY
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cpu->env.picmr = 0x00000000;
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cpu->env.picsr = 0x00000000;
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cpu->env.ttmr = 0x00000000;
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#endif
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}
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#ifndef CONFIG_USER_ONLY
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static void openrisc_cpu_set_irq(void *opaque, int irq, int level)
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{
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OpenRISCCPU *cpu = (OpenRISCCPU *)opaque;
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CPUState *cs = CPU(cpu);
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uint32_t irq_bit;
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if (irq > 31 || irq < 0) {
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return;
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}
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irq_bit = 1U << irq;
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if (level) {
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cpu->env.picsr |= irq_bit;
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} else {
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cpu->env.picsr &= ~irq_bit;
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}
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if (cpu->env.picsr & cpu->env.picmr) {
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cpu_interrupt(cs, CPU_INTERRUPT_HARD);
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} else {
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cpu_reset_interrupt(cs, CPU_INTERRUPT_HARD);
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}
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}
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#endif
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static void openrisc_cpu_realizefn(DeviceState *dev, Error **errp)
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{
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CPUState *cs = CPU(dev);
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OpenRISCCPUClass *occ = OPENRISC_CPU_GET_CLASS(dev);
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Error *local_err = NULL;
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cpu_exec_realizefn(cs, &local_err);
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if (local_err != NULL) {
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error_propagate(errp, local_err);
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return;
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}
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qemu_init_vcpu(cs);
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cpu_reset(cs);
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occ->parent_realize(dev, errp);
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}
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static void openrisc_cpu_initfn(Object *obj)
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{
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#ifndef CONFIG_USER_ONLY
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qdev_init_gpio_in_named(DEVICE(obj), openrisc_cpu_set_irq, "IRQ", NR_IRQS);
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#endif
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}
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/* CPU models */
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static ObjectClass *openrisc_cpu_class_by_name(const char *cpu_model)
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{
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ObjectClass *oc;
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char *typename;
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typename = g_strdup_printf(OPENRISC_CPU_TYPE_NAME("%s"), cpu_model);
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oc = object_class_by_name(typename);
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g_free(typename);
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return oc;
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}
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static void or1200_initfn(Object *obj)
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{
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OpenRISCCPU *cpu = OPENRISC_CPU(obj);
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cpu->env.vr = 0x13000008;
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cpu->env.upr = UPR_UP | UPR_DMP | UPR_IMP | UPR_PICP | UPR_TTP | UPR_PMP;
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cpu->env.cpucfgr = CPUCFGR_NSGF | CPUCFGR_OB32S | CPUCFGR_OF32S |
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CPUCFGR_EVBARP;
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/* 1Way, TLB_SIZE entries. */
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cpu->env.dmmucfgr = (DMMUCFGR_NTW & (0 << 2))
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| (DMMUCFGR_NTS & (ctz32(TLB_SIZE) << 2));
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cpu->env.immucfgr = (IMMUCFGR_NTW & (0 << 2))
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| (IMMUCFGR_NTS & (ctz32(TLB_SIZE) << 2));
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}
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static void openrisc_any_initfn(Object *obj)
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{
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OpenRISCCPU *cpu = OPENRISC_CPU(obj);
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cpu->env.vr = 0x13000040; /* Obsolete VER + UVRP for new SPRs */
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cpu->env.vr2 = 0; /* No version specific id */
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cpu->env.avr = 0x01030000; /* Architecture v1.3 */
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cpu->env.upr = UPR_UP | UPR_DMP | UPR_IMP | UPR_PICP | UPR_TTP | UPR_PMP;
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cpu->env.cpucfgr = CPUCFGR_NSGF | CPUCFGR_OB32S | CPUCFGR_OF32S |
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CPUCFGR_AVRP | CPUCFGR_EVBARP | CPUCFGR_OF64A32S;
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/* 1Way, TLB_SIZE entries. */
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cpu->env.dmmucfgr = (DMMUCFGR_NTW & (0 << 2))
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| (DMMUCFGR_NTS & (ctz32(TLB_SIZE) << 2));
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cpu->env.immucfgr = (IMMUCFGR_NTW & (0 << 2))
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| (IMMUCFGR_NTS & (ctz32(TLB_SIZE) << 2));
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}
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#ifndef CONFIG_USER_ONLY
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#include "hw/core/sysemu-cpu-ops.h"
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static const struct SysemuCPUOps openrisc_sysemu_ops = {
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.get_phys_page_debug = openrisc_cpu_get_phys_page_debug,
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};
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#endif
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#include "hw/core/tcg-cpu-ops.h"
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static const TCGCPUOps openrisc_tcg_ops = {
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.initialize = openrisc_translate_init,
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.synchronize_from_tb = openrisc_cpu_synchronize_from_tb,
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.restore_state_to_opc = openrisc_restore_state_to_opc,
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#ifndef CONFIG_USER_ONLY
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.tlb_fill = openrisc_cpu_tlb_fill,
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.cpu_exec_interrupt = openrisc_cpu_exec_interrupt,
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.cpu_exec_halt = openrisc_cpu_has_work,
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.do_interrupt = openrisc_cpu_do_interrupt,
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#endif /* !CONFIG_USER_ONLY */
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};
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static void openrisc_cpu_class_init(ObjectClass *oc, void *data)
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{
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OpenRISCCPUClass *occ = OPENRISC_CPU_CLASS(oc);
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CPUClass *cc = CPU_CLASS(occ);
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DeviceClass *dc = DEVICE_CLASS(oc);
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ResettableClass *rc = RESETTABLE_CLASS(oc);
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device_class_set_parent_realize(dc, openrisc_cpu_realizefn,
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&occ->parent_realize);
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resettable_class_set_parent_phases(rc, NULL, openrisc_cpu_reset_hold, NULL,
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&occ->parent_phases);
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cc->class_by_name = openrisc_cpu_class_by_name;
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cc->has_work = openrisc_cpu_has_work;
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cc->mmu_index = openrisc_cpu_mmu_index;
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cc->dump_state = openrisc_cpu_dump_state;
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cc->set_pc = openrisc_cpu_set_pc;
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cc->get_pc = openrisc_cpu_get_pc;
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cc->gdb_read_register = openrisc_cpu_gdb_read_register;
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cc->gdb_write_register = openrisc_cpu_gdb_write_register;
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#ifndef CONFIG_USER_ONLY
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dc->vmsd = &vmstate_openrisc_cpu;
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cc->sysemu_ops = &openrisc_sysemu_ops;
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#endif
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cc->gdb_num_core_regs = 32 + 3;
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cc->disas_set_info = openrisc_disas_set_info;
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cc->tcg_ops = &openrisc_tcg_ops;
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}
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#define DEFINE_OPENRISC_CPU_TYPE(cpu_model, initfn) \
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{ \
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.parent = TYPE_OPENRISC_CPU, \
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.instance_init = initfn, \
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.name = OPENRISC_CPU_TYPE_NAME(cpu_model), \
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}
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static const TypeInfo openrisc_cpus_type_infos[] = {
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{ /* base class should be registered first */
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.name = TYPE_OPENRISC_CPU,
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.parent = TYPE_CPU,
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.instance_size = sizeof(OpenRISCCPU),
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.instance_align = __alignof(OpenRISCCPU),
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.instance_init = openrisc_cpu_initfn,
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.abstract = true,
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.class_size = sizeof(OpenRISCCPUClass),
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.class_init = openrisc_cpu_class_init,
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},
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DEFINE_OPENRISC_CPU_TYPE("or1200", or1200_initfn),
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DEFINE_OPENRISC_CPU_TYPE("any", openrisc_any_initfn),
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};
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DEFINE_TYPES(openrisc_cpus_type_infos)
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