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Andreas Färberae0f5e92012-02-14 01:16:17 +01001/*
2 * QEMU UniCore32 CPU
3 *
Guan Xuetaod48813d2012-08-10 14:42:23 +08004 * Copyright (c) 2010-2012 Guan Xuetao
Andreas Färberae0f5e92012-02-14 01:16:17 +01005 * Copyright (c) 2012 SUSE LINUX Products GmbH
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License version 2 as
9 * published by the Free Software Foundation.
10 *
11 * Contributions from 2012-04-01 on are considered under GPL version 2,
12 * or (at your option) any later version.
13 */
14
Andreas Färber3993c6b2012-05-03 06:43:49 +020015#include "cpu.h"
Andreas Färberae0f5e92012-02-14 01:16:17 +010016#include "qemu-common.h"
Andreas Färber88e28512013-01-20 11:43:30 +010017#include "migration/vmstate.h"
Andreas Färberae0f5e92012-02-14 01:16:17 +010018
Andreas Färberb42eab22013-06-28 19:41:07 +020019static void uc32_cpu_set_pc(CPUState *cs, vaddr value)
20{
21 UniCore32CPU *cpu = UNICORE32_CPU(cs);
22
23 cpu->env.regs[31] = value;
24}
25
Andreas Färber8df90822012-03-29 18:03:18 +020026static inline void set_feature(CPUUniCore32State *env, int feature)
27{
28 env->features |= feature;
29}
30
Andreas Färberae0f5e92012-02-14 01:16:17 +010031/* CPU models */
32
Andreas Färberd89e1212013-01-23 12:07:17 +010033static ObjectClass *uc32_cpu_class_by_name(const char *cpu_model)
34{
35 ObjectClass *oc;
Andreas Färbereeb266d2013-01-27 23:25:25 +010036 char *typename;
Andreas Färberd89e1212013-01-23 12:07:17 +010037
38 if (cpu_model == NULL) {
39 return NULL;
40 }
41
Andreas Färbereeb266d2013-01-27 23:25:25 +010042 typename = g_strdup_printf("%s-" TYPE_UNICORE32_CPU, cpu_model);
43 oc = object_class_by_name(typename);
44 g_free(typename);
Andreas Färber49339082013-01-23 12:41:38 +010045 if (oc != NULL && (!object_class_dynamic_cast(oc, TYPE_UNICORE32_CPU) ||
46 object_class_is_abstract(oc))) {
Andreas Färberd89e1212013-01-23 12:07:17 +010047 oc = NULL;
48 }
49 return oc;
50}
51
Andreas Färberae0f5e92012-02-14 01:16:17 +010052typedef struct UniCore32CPUInfo {
53 const char *name;
54 void (*instance_init)(Object *obj);
55} UniCore32CPUInfo;
56
57static void unicore_ii_cpu_initfn(Object *obj)
58{
59 UniCore32CPU *cpu = UNICORE32_CPU(obj);
60 CPUUniCore32State *env = &cpu->env;
61
Guan Xuetaod48813d2012-08-10 14:42:23 +080062 env->cp0.c0_cpuid = 0x4d000863;
63 env->cp0.c0_cachetype = 0x0d152152;
64 env->cp0.c1_sys = 0x2000;
65 env->cp0.c2_base = 0x0;
66 env->cp0.c3_faultstatus = 0x0;
67 env->cp0.c4_faultaddr = 0x0;
68 env->ucf64.xregs[UC32_UCF64_FPSCR] = 0;
Andreas Färber8df90822012-03-29 18:03:18 +020069
70 set_feature(env, UC32_HWCAP_CMOV);
71 set_feature(env, UC32_HWCAP_UCF64);
Andreas Färberae0f5e92012-02-14 01:16:17 +010072}
73
74static void uc32_any_cpu_initfn(Object *obj)
75{
76 UniCore32CPU *cpu = UNICORE32_CPU(obj);
77 CPUUniCore32State *env = &cpu->env;
78
79 env->cp0.c0_cpuid = 0xffffffff;
Guan Xuetaod48813d2012-08-10 14:42:23 +080080 env->ucf64.xregs[UC32_UCF64_FPSCR] = 0;
Andreas Färber8df90822012-03-29 18:03:18 +020081
82 set_feature(env, UC32_HWCAP_CMOV);
83 set_feature(env, UC32_HWCAP_UCF64);
Andreas Färberae0f5e92012-02-14 01:16:17 +010084}
85
86static const UniCore32CPUInfo uc32_cpus[] = {
87 { .name = "UniCore-II", .instance_init = unicore_ii_cpu_initfn },
88 { .name = "any", .instance_init = uc32_any_cpu_initfn },
89};
90
Andreas Färber088383e2013-01-05 14:38:30 +010091static void uc32_cpu_realizefn(DeviceState *dev, Error **errp)
92{
Andreas Färber088383e2013-01-05 14:38:30 +010093 UniCore32CPUClass *ucc = UNICORE32_CPU_GET_CLASS(dev);
94
Andreas Färber14a10fc2013-07-27 02:53:25 +020095 qemu_init_vcpu(CPU(dev));
96
Andreas Färber088383e2013-01-05 14:38:30 +010097 ucc->parent_realize(dev, errp);
98}
99
Andreas Färberae0f5e92012-02-14 01:16:17 +0100100static void uc32_cpu_initfn(Object *obj)
101{
Andreas Färberc05efcb2013-01-17 12:13:41 +0100102 CPUState *cs = CPU(obj);
Andreas Färberae0f5e92012-02-14 01:16:17 +0100103 UniCore32CPU *cpu = UNICORE32_CPU(obj);
104 CPUUniCore32State *env = &cpu->env;
Andreas Färberd9c27f02013-01-20 01:36:47 +0100105 static bool inited;
Andreas Färberae0f5e92012-02-14 01:16:17 +0100106
Andreas Färberc05efcb2013-01-17 12:13:41 +0100107 cs->env_ptr = env;
Andreas Färberae0f5e92012-02-14 01:16:17 +0100108 cpu_exec_init(env);
Andreas Färberae0f5e92012-02-14 01:16:17 +0100109
Guan Xuetaod48813d2012-08-10 14:42:23 +0800110#ifdef CONFIG_USER_ONLY
Andreas Färberae0f5e92012-02-14 01:16:17 +0100111 env->uncached_asr = ASR_MODE_USER;
112 env->regs[31] = 0;
Guan Xuetaod48813d2012-08-10 14:42:23 +0800113#else
114 env->uncached_asr = ASR_MODE_PRIV;
115 env->regs[31] = 0x03000000;
116#endif
Andreas Färberae0f5e92012-02-14 01:16:17 +0100117
118 tlb_flush(env, 1);
Andreas Färberd9c27f02013-01-20 01:36:47 +0100119
120 if (tcg_enabled() && !inited) {
121 inited = true;
122 uc32_translate_init();
123 }
Andreas Färberae0f5e92012-02-14 01:16:17 +0100124}
125
Andreas Färber88e28512013-01-20 11:43:30 +0100126static const VMStateDescription vmstate_uc32_cpu = {
127 .name = "cpu",
128 .unmigratable = 1,
129};
130
Andreas Färberd89e1212013-01-23 12:07:17 +0100131static void uc32_cpu_class_init(ObjectClass *oc, void *data)
132{
Andreas Färber88e28512013-01-20 11:43:30 +0100133 DeviceClass *dc = DEVICE_CLASS(oc);
Andreas Färberd89e1212013-01-23 12:07:17 +0100134 CPUClass *cc = CPU_CLASS(oc);
Andreas Färber088383e2013-01-05 14:38:30 +0100135 UniCore32CPUClass *ucc = UNICORE32_CPU_CLASS(oc);
136
137 ucc->parent_realize = dc->realize;
138 dc->realize = uc32_cpu_realizefn;
Andreas Färberd89e1212013-01-23 12:07:17 +0100139
140 cc->class_by_name = uc32_cpu_class_by_name;
Andreas Färber97a8ea52013-02-02 10:57:51 +0100141 cc->do_interrupt = uc32_cpu_do_interrupt;
Andreas Färber878096e2013-05-27 01:33:50 +0200142 cc->dump_state = uc32_cpu_dump_state;
Andreas Färberb42eab22013-06-28 19:41:07 +0200143 cc->set_pc = uc32_cpu_set_pc;
Andreas Färber00b941e2013-06-29 18:55:54 +0200144#ifndef CONFIG_USER_ONLY
145 cc->get_phys_page_debug = uc32_cpu_get_phys_page_debug;
146#endif
Andreas Färber88e28512013-01-20 11:43:30 +0100147 dc->vmsd = &vmstate_uc32_cpu;
Andreas Färberd89e1212013-01-23 12:07:17 +0100148}
149
Andreas Färberae0f5e92012-02-14 01:16:17 +0100150static void uc32_register_cpu_type(const UniCore32CPUInfo *info)
151{
152 TypeInfo type_info = {
Andreas Färberae0f5e92012-02-14 01:16:17 +0100153 .parent = TYPE_UNICORE32_CPU,
154 .instance_init = info->instance_init,
155 };
156
Andreas Färbereeb266d2013-01-27 23:25:25 +0100157 type_info.name = g_strdup_printf("%s-" TYPE_UNICORE32_CPU, info->name);
Andreas Färber87fb5812013-01-23 12:01:00 +0100158 type_register(&type_info);
Andreas Färbereeb266d2013-01-27 23:25:25 +0100159 g_free((void *)type_info.name);
Andreas Färberae0f5e92012-02-14 01:16:17 +0100160}
161
162static const TypeInfo uc32_cpu_type_info = {
163 .name = TYPE_UNICORE32_CPU,
164 .parent = TYPE_CPU,
165 .instance_size = sizeof(UniCore32CPU),
166 .instance_init = uc32_cpu_initfn,
167 .abstract = true,
168 .class_size = sizeof(UniCore32CPUClass),
Andreas Färberd89e1212013-01-23 12:07:17 +0100169 .class_init = uc32_cpu_class_init,
Andreas Färberae0f5e92012-02-14 01:16:17 +0100170};
171
172static void uc32_cpu_register_types(void)
173{
174 int i;
175
176 type_register_static(&uc32_cpu_type_info);
177 for (i = 0; i < ARRAY_SIZE(uc32_cpus); i++) {
178 uc32_register_cpu_type(&uc32_cpus[i]);
179 }
180}
181
182type_init(uc32_cpu_register_types)