xref: /openbmc/qemu/target/rx/cpu.c (revision 38688fdbe9c5db9ca5ed22f9f6881ab444abcb1d)
127a4a30eSYoshinori Sato /*
227a4a30eSYoshinori Sato  * QEMU RX CPU
327a4a30eSYoshinori Sato  *
427a4a30eSYoshinori Sato  * Copyright (c) 2019 Yoshinori Sato
527a4a30eSYoshinori Sato  *
627a4a30eSYoshinori Sato  * This program is free software; you can redistribute it and/or modify it
727a4a30eSYoshinori Sato  * under the terms and conditions of the GNU General Public License,
827a4a30eSYoshinori Sato  * version 2 or later, as published by the Free Software Foundation.
927a4a30eSYoshinori Sato  *
1027a4a30eSYoshinori Sato  * This program is distributed in the hope it will be useful, but WITHOUT
1127a4a30eSYoshinori Sato  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
1227a4a30eSYoshinori Sato  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
1327a4a30eSYoshinori Sato  * more details.
1427a4a30eSYoshinori Sato  *
1527a4a30eSYoshinori Sato  * You should have received a copy of the GNU General Public License along with
1627a4a30eSYoshinori Sato  * this program.  If not, see <http://www.gnu.org/licenses/>.
1727a4a30eSYoshinori Sato  */
1827a4a30eSYoshinori Sato 
1927a4a30eSYoshinori Sato #include "qemu/osdep.h"
2027a4a30eSYoshinori Sato #include "qemu/qemu-print.h"
2127a4a30eSYoshinori Sato #include "qapi/error.h"
2227a4a30eSYoshinori Sato #include "cpu.h"
2327a4a30eSYoshinori Sato #include "qemu-common.h"
2427a4a30eSYoshinori Sato #include "migration/vmstate.h"
2527a4a30eSYoshinori Sato #include "exec/exec-all.h"
2627a4a30eSYoshinori Sato #include "hw/loader.h"
2727a4a30eSYoshinori Sato #include "fpu/softfloat.h"
2827a4a30eSYoshinori Sato 
2927a4a30eSYoshinori Sato static void rx_cpu_set_pc(CPUState *cs, vaddr value)
3027a4a30eSYoshinori Sato {
31*38688fdbSEduardo Habkost     RXCPU *cpu = RX_CPU(cs);
3227a4a30eSYoshinori Sato 
3327a4a30eSYoshinori Sato     cpu->env.pc = value;
3427a4a30eSYoshinori Sato }
3527a4a30eSYoshinori Sato 
3627a4a30eSYoshinori Sato static void rx_cpu_synchronize_from_tb(CPUState *cs, TranslationBlock *tb)
3727a4a30eSYoshinori Sato {
38*38688fdbSEduardo Habkost     RXCPU *cpu = RX_CPU(cs);
3927a4a30eSYoshinori Sato 
4027a4a30eSYoshinori Sato     cpu->env.pc = tb->pc;
4127a4a30eSYoshinori Sato }
4227a4a30eSYoshinori Sato 
4327a4a30eSYoshinori Sato static bool rx_cpu_has_work(CPUState *cs)
4427a4a30eSYoshinori Sato {
4527a4a30eSYoshinori Sato     return cs->interrupt_request &
4627a4a30eSYoshinori Sato         (CPU_INTERRUPT_HARD | CPU_INTERRUPT_FIR);
4727a4a30eSYoshinori Sato }
4827a4a30eSYoshinori Sato 
4927a4a30eSYoshinori Sato static void rx_cpu_reset(DeviceState *dev)
5027a4a30eSYoshinori Sato {
51*38688fdbSEduardo Habkost     RXCPU *cpu = RX_CPU(dev);
52*38688fdbSEduardo Habkost     RXCPUClass *rcc = RX_CPU_GET_CLASS(cpu);
5327a4a30eSYoshinori Sato     CPURXState *env = &cpu->env;
5427a4a30eSYoshinori Sato     uint32_t *resetvec;
5527a4a30eSYoshinori Sato 
5627a4a30eSYoshinori Sato     rcc->parent_reset(dev);
5727a4a30eSYoshinori Sato 
5827a4a30eSYoshinori Sato     memset(env, 0, offsetof(CPURXState, end_reset_fields));
5927a4a30eSYoshinori Sato 
6027a4a30eSYoshinori Sato     resetvec = rom_ptr(0xfffffffc, 4);
6127a4a30eSYoshinori Sato     if (resetvec) {
6227a4a30eSYoshinori Sato         /* In the case of kernel, it is ignored because it is not set. */
6327a4a30eSYoshinori Sato         env->pc = ldl_p(resetvec);
6427a4a30eSYoshinori Sato     }
6527a4a30eSYoshinori Sato     rx_cpu_unpack_psw(env, 0, 1);
6627a4a30eSYoshinori Sato     env->regs[0] = env->isp = env->usp = 0;
6727a4a30eSYoshinori Sato     env->fpsw = 0;
6827a4a30eSYoshinori Sato     set_flush_to_zero(1, &env->fp_status);
6927a4a30eSYoshinori Sato     set_flush_inputs_to_zero(1, &env->fp_status);
7027a4a30eSYoshinori Sato }
7127a4a30eSYoshinori Sato 
7227a4a30eSYoshinori Sato static void rx_cpu_list_entry(gpointer data, gpointer user_data)
7327a4a30eSYoshinori Sato {
7427a4a30eSYoshinori Sato     ObjectClass *oc = data;
7527a4a30eSYoshinori Sato 
7627a4a30eSYoshinori Sato     qemu_printf("  %s\n", object_class_get_name(oc));
7727a4a30eSYoshinori Sato }
7827a4a30eSYoshinori Sato 
7927a4a30eSYoshinori Sato void rx_cpu_list(void)
8027a4a30eSYoshinori Sato {
8127a4a30eSYoshinori Sato     GSList *list;
8227a4a30eSYoshinori Sato     list = object_class_get_list_sorted(TYPE_RX_CPU, false);
8327a4a30eSYoshinori Sato     qemu_printf("Available CPUs:\n");
8427a4a30eSYoshinori Sato     g_slist_foreach(list, rx_cpu_list_entry, NULL);
8527a4a30eSYoshinori Sato     g_slist_free(list);
8627a4a30eSYoshinori Sato }
8727a4a30eSYoshinori Sato 
8827a4a30eSYoshinori Sato static ObjectClass *rx_cpu_class_by_name(const char *cpu_model)
8927a4a30eSYoshinori Sato {
9027a4a30eSYoshinori Sato     ObjectClass *oc;
9127a4a30eSYoshinori Sato     char *typename;
9227a4a30eSYoshinori Sato 
9327a4a30eSYoshinori Sato     oc = object_class_by_name(cpu_model);
9427a4a30eSYoshinori Sato     if (oc != NULL && object_class_dynamic_cast(oc, TYPE_RX_CPU) != NULL &&
9527a4a30eSYoshinori Sato         !object_class_is_abstract(oc)) {
9627a4a30eSYoshinori Sato         return oc;
9727a4a30eSYoshinori Sato     }
9827a4a30eSYoshinori Sato     typename = g_strdup_printf(RX_CPU_TYPE_NAME("%s"), cpu_model);
9927a4a30eSYoshinori Sato     oc = object_class_by_name(typename);
10027a4a30eSYoshinori Sato     g_free(typename);
10127a4a30eSYoshinori Sato     if (oc != NULL && object_class_is_abstract(oc)) {
10227a4a30eSYoshinori Sato         oc = NULL;
10327a4a30eSYoshinori Sato     }
10427a4a30eSYoshinori Sato 
10527a4a30eSYoshinori Sato     return oc;
10627a4a30eSYoshinori Sato }
10727a4a30eSYoshinori Sato 
10827a4a30eSYoshinori Sato static void rx_cpu_realize(DeviceState *dev, Error **errp)
10927a4a30eSYoshinori Sato {
11027a4a30eSYoshinori Sato     CPUState *cs = CPU(dev);
111*38688fdbSEduardo Habkost     RXCPUClass *rcc = RX_CPU_GET_CLASS(dev);
11227a4a30eSYoshinori Sato     Error *local_err = NULL;
11327a4a30eSYoshinori Sato 
11427a4a30eSYoshinori Sato     cpu_exec_realizefn(cs, &local_err);
11527a4a30eSYoshinori Sato     if (local_err != NULL) {
11627a4a30eSYoshinori Sato         error_propagate(errp, local_err);
11727a4a30eSYoshinori Sato         return;
11827a4a30eSYoshinori Sato     }
11927a4a30eSYoshinori Sato 
12027a4a30eSYoshinori Sato     qemu_init_vcpu(cs);
12127a4a30eSYoshinori Sato     cpu_reset(cs);
12227a4a30eSYoshinori Sato 
12327a4a30eSYoshinori Sato     rcc->parent_realize(dev, errp);
12427a4a30eSYoshinori Sato }
12527a4a30eSYoshinori Sato 
12627a4a30eSYoshinori Sato static void rx_cpu_set_irq(void *opaque, int no, int request)
12727a4a30eSYoshinori Sato {
12827a4a30eSYoshinori Sato     RXCPU *cpu = opaque;
12927a4a30eSYoshinori Sato     CPUState *cs = CPU(cpu);
13027a4a30eSYoshinori Sato     int irq = request & 0xff;
13127a4a30eSYoshinori Sato 
13227a4a30eSYoshinori Sato     static const int mask[] = {
13327a4a30eSYoshinori Sato         [RX_CPU_IRQ] = CPU_INTERRUPT_HARD,
13427a4a30eSYoshinori Sato         [RX_CPU_FIR] = CPU_INTERRUPT_FIR,
13527a4a30eSYoshinori Sato     };
13627a4a30eSYoshinori Sato     if (irq) {
13727a4a30eSYoshinori Sato         cpu->env.req_irq = irq;
13827a4a30eSYoshinori Sato         cpu->env.req_ipl = (request >> 8) & 0x0f;
13927a4a30eSYoshinori Sato         cpu_interrupt(cs, mask[no]);
14027a4a30eSYoshinori Sato     } else {
14127a4a30eSYoshinori Sato         cpu_reset_interrupt(cs, mask[no]);
14227a4a30eSYoshinori Sato     }
14327a4a30eSYoshinori Sato }
14427a4a30eSYoshinori Sato 
14527a4a30eSYoshinori Sato static void rx_cpu_disas_set_info(CPUState *cpu, disassemble_info *info)
14627a4a30eSYoshinori Sato {
14727a4a30eSYoshinori Sato     info->mach = bfd_mach_rx;
14827a4a30eSYoshinori Sato     info->print_insn = print_insn_rx;
14927a4a30eSYoshinori Sato }
15027a4a30eSYoshinori Sato 
15127a4a30eSYoshinori Sato static bool rx_cpu_tlb_fill(CPUState *cs, vaddr addr, int size,
15227a4a30eSYoshinori Sato                             MMUAccessType access_type, int mmu_idx,
15327a4a30eSYoshinori Sato                             bool probe, uintptr_t retaddr)
15427a4a30eSYoshinori Sato {
15527a4a30eSYoshinori Sato     uint32_t address, physical, prot;
15627a4a30eSYoshinori Sato 
15727a4a30eSYoshinori Sato     /* Linear mapping */
15827a4a30eSYoshinori Sato     address = physical = addr & TARGET_PAGE_MASK;
15927a4a30eSYoshinori Sato     prot = PAGE_READ | PAGE_WRITE | PAGE_EXEC;
16027a4a30eSYoshinori Sato     tlb_set_page(cs, address, physical, prot, mmu_idx, TARGET_PAGE_SIZE);
16127a4a30eSYoshinori Sato     return true;
16227a4a30eSYoshinori Sato }
16327a4a30eSYoshinori Sato 
16427a4a30eSYoshinori Sato static void rx_cpu_init(Object *obj)
16527a4a30eSYoshinori Sato {
16627a4a30eSYoshinori Sato     CPUState *cs = CPU(obj);
167*38688fdbSEduardo Habkost     RXCPU *cpu = RX_CPU(obj);
16827a4a30eSYoshinori Sato     CPURXState *env = &cpu->env;
16927a4a30eSYoshinori Sato 
17027a4a30eSYoshinori Sato     cpu_set_cpustate_pointers(cpu);
17127a4a30eSYoshinori Sato     cs->env_ptr = env;
17227a4a30eSYoshinori Sato     qdev_init_gpio_in(DEVICE(cpu), rx_cpu_set_irq, 2);
17327a4a30eSYoshinori Sato }
17427a4a30eSYoshinori Sato 
17527a4a30eSYoshinori Sato static void rx_cpu_class_init(ObjectClass *klass, void *data)
17627a4a30eSYoshinori Sato {
17727a4a30eSYoshinori Sato     DeviceClass *dc = DEVICE_CLASS(klass);
17827a4a30eSYoshinori Sato     CPUClass *cc = CPU_CLASS(klass);
179*38688fdbSEduardo Habkost     RXCPUClass *rcc = RX_CPU_CLASS(klass);
18027a4a30eSYoshinori Sato 
18127a4a30eSYoshinori Sato     device_class_set_parent_realize(dc, rx_cpu_realize,
18227a4a30eSYoshinori Sato                                     &rcc->parent_realize);
18327a4a30eSYoshinori Sato     device_class_set_parent_reset(dc, rx_cpu_reset,
18427a4a30eSYoshinori Sato                                   &rcc->parent_reset);
18527a4a30eSYoshinori Sato 
18627a4a30eSYoshinori Sato     cc->class_by_name = rx_cpu_class_by_name;
18727a4a30eSYoshinori Sato     cc->has_work = rx_cpu_has_work;
18827a4a30eSYoshinori Sato     cc->do_interrupt = rx_cpu_do_interrupt;
18927a4a30eSYoshinori Sato     cc->cpu_exec_interrupt = rx_cpu_exec_interrupt;
19027a4a30eSYoshinori Sato     cc->dump_state = rx_cpu_dump_state;
19127a4a30eSYoshinori Sato     cc->set_pc = rx_cpu_set_pc;
19227a4a30eSYoshinori Sato     cc->synchronize_from_tb = rx_cpu_synchronize_from_tb;
19327a4a30eSYoshinori Sato     cc->gdb_read_register = rx_cpu_gdb_read_register;
19427a4a30eSYoshinori Sato     cc->gdb_write_register = rx_cpu_gdb_write_register;
19527a4a30eSYoshinori Sato     cc->get_phys_page_debug = rx_cpu_get_phys_page_debug;
19627a4a30eSYoshinori Sato     cc->disas_set_info = rx_cpu_disas_set_info;
19727a4a30eSYoshinori Sato     cc->tcg_initialize = rx_translate_init;
19827a4a30eSYoshinori Sato     cc->tlb_fill = rx_cpu_tlb_fill;
19927a4a30eSYoshinori Sato 
20027a4a30eSYoshinori Sato     cc->gdb_num_core_regs = 26;
20127a4a30eSYoshinori Sato     cc->gdb_core_xml_file = "rx-core.xml";
20227a4a30eSYoshinori Sato }
20327a4a30eSYoshinori Sato 
20427a4a30eSYoshinori Sato static const TypeInfo rx_cpu_info = {
20527a4a30eSYoshinori Sato     .name = TYPE_RX_CPU,
20627a4a30eSYoshinori Sato     .parent = TYPE_CPU,
20727a4a30eSYoshinori Sato     .instance_size = sizeof(RXCPU),
20827a4a30eSYoshinori Sato     .instance_init = rx_cpu_init,
20927a4a30eSYoshinori Sato     .abstract = true,
21027a4a30eSYoshinori Sato     .class_size = sizeof(RXCPUClass),
21127a4a30eSYoshinori Sato     .class_init = rx_cpu_class_init,
21227a4a30eSYoshinori Sato };
21327a4a30eSYoshinori Sato 
21427a4a30eSYoshinori Sato static const TypeInfo rx62n_rx_cpu_info = {
21527a4a30eSYoshinori Sato     .name = TYPE_RX62N_CPU,
21627a4a30eSYoshinori Sato     .parent = TYPE_RX_CPU,
21727a4a30eSYoshinori Sato };
21827a4a30eSYoshinori Sato 
21927a4a30eSYoshinori Sato static void rx_cpu_register_types(void)
22027a4a30eSYoshinori Sato {
22127a4a30eSYoshinori Sato     type_register_static(&rx_cpu_info);
22227a4a30eSYoshinori Sato     type_register_static(&rx62n_rx_cpu_info);
22327a4a30eSYoshinori Sato }
22427a4a30eSYoshinori Sato 
22527a4a30eSYoshinori Sato type_init(rx_cpu_register_types)
226