unicorn/qemu/target/tricore/cpu.c
Eric Poole cfee2139a0
TriCore Support (#1568)
* TriCore Support

python sample

* Update sample_tricore.py

Correct attribution

* Update sample_tricore.py

Fixed byte code to execute properly.

* Update sample_tricore.py

Removed testing artifact

* Added tricore msvc config-file.h

* Added STATIC to tricore config and added helper methods to symbol file generation.

* Update op_helper.c

Use built in crc32

* Fix tricore samples and small code blocks are now handled properly

* Add CPU types

* Generate bindings

* Format code

Co-authored-by: lazymio <mio@lazym.io>
2022-04-29 23:11:34 +02:00

206 lines
4.9 KiB
C

/*
* TriCore emulation for qemu: main translation routines.
*
* Copyright (c) 2012-2014 Bastian Koppelmann C-Lab/University Paderborn
*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2.1 of the License, or (at your option) any later version.
*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with this library; if not, see <http://www.gnu.org/licenses/>.
*/
/*
Modified for Unicorn Engine by Eric Poole <eric.poole@aptiv.com>, 2022
Copyright 2022 Aptiv
*/
#include "qemu/osdep.h"
#include "cpu.h"
#include "cpu-qom.h"
#include "exec/exec-all.h"
#include <uc_priv.h>
static inline void set_feature(CPUTriCoreState *env, int feature)
{
env->features |= 1ULL << feature;
}
static void tricore_cpu_set_pc(CPUState *cs, vaddr value)
{
TriCoreCPU *cpu = TRICORE_CPU(cs);
CPUTriCoreState *env = &cpu->env;
env->PC = value & ~(target_ulong)1;
}
static void tricore_cpu_synchronize_from_tb(CPUState *cs, TranslationBlock *tb)
{
TriCoreCPU *cpu = TRICORE_CPU(cs);
CPUTriCoreState *env = &cpu->env;
env->PC = tb->pc;
}
static void tricore_cpu_reset(CPUState *dev)
{
CPUState *s = CPU(dev);
TriCoreCPU *cpu = TRICORE_CPU(s);
TriCoreCPUClass *tcc = TRICORE_CPU_GET_CLASS(cpu);
CPUTriCoreState *env = &cpu->env;
tcc->parent_reset(dev);
memset(env, 0, offsetof(CPUTriCoreState, end_reset_fields));
cpu_state_reset(env);
}
static bool tricore_cpu_has_work(CPUState *cs)
{
return true;
}
static void tricore_cpu_realizefn(CPUState *dev)
{
CPUState *cs = CPU(dev);
TriCoreCPU *cpu = TRICORE_CPU(dev);
CPUTriCoreState *env = &cpu->env;
cpu_exec_realizefn(cs);
/* Some features automatically imply others */
if (tricore_feature(env, TRICORE_FEATURE_161)) {
set_feature(env, TRICORE_FEATURE_16);
}
if (tricore_feature(env, TRICORE_FEATURE_16)) {
set_feature(env, TRICORE_FEATURE_131);
}
if (tricore_feature(env, TRICORE_FEATURE_131)) {
set_feature(env, TRICORE_FEATURE_13);
}
cpu_reset(cs);
}
static void tricore_cpu_initfn(struct uc_struct *uc, CPUState *obj)
{
TriCoreCPU *cpu = TRICORE_CPU(obj);
CPUTriCoreState *env = &cpu->env;
env->uc = uc;
cpu_set_cpustate_pointers(cpu);
}
static void tc1796_initfn(CPUState *obj)
{
TriCoreCPU *cpu = TRICORE_CPU(obj);
set_feature(&cpu->env, TRICORE_FEATURE_13);
}
static void tc1797_initfn(CPUState *obj)
{
TriCoreCPU *cpu = TRICORE_CPU(obj);
set_feature(&cpu->env, TRICORE_FEATURE_131);
}
static void tc27x_initfn(CPUState *obj)
{
TriCoreCPU *cpu = TRICORE_CPU(obj);
set_feature(&cpu->env, TRICORE_FEATURE_161);
}
static void tricore_cpu_class_init(CPUClass *c)
{
TriCoreCPUClass *mcc = TRICORE_CPU_CLASS(c);
CPUClass *cc = CPU_CLASS(c);
/* parent class is CPUClass, parent_reset() is cpu_common_reset(). */
mcc->parent_reset = cc->reset;
cc->reset = tricore_cpu_reset;
cc->has_work = tricore_cpu_has_work;
cc->set_pc = tricore_cpu_set_pc;
cc->synchronize_from_tb = tricore_cpu_synchronize_from_tb;
cc->get_phys_page_debug = tricore_cpu_get_phys_page_debug;
cc->tlb_fill = tricore_cpu_tlb_fill;
cc->tcg_initialize = tricore_tcg_init;
}
#define DEFINE_TRICORE_CPU_TYPE(cpu_model, initfn) \
{ \
.parent = TYPE_TRICORE_CPU, \
.initfn = initfn, \
.name = TRICORE_CPU_TYPE_NAME(cpu_model), \
}
struct TriCoreCPUInfo {
const char *name;
void (*initfn)(CPUState *obj);
};
static struct TriCoreCPUInfo tricore_cpus_type_infos[] = {
{ "tc1796", tc1796_initfn },
{ "tc1797", tc1797_initfn },
{ "tc27x", tc27x_initfn },
};
TriCoreCPU *cpu_tricore_init(struct uc_struct *uc)
{
TriCoreCPU *cpu;
CPUState *cs;
CPUClass *cc;
cpu = calloc(1, sizeof(*cpu));
if (cpu == NULL) {
return NULL;
}
if (uc->cpu_model == INT_MAX) {
uc->cpu_model = 2; // tc27x
} else if (uc->cpu_model >= ARRAY_SIZE(tricore_cpus_type_infos)) {
free(cpu);
return NULL;
}
cs = (CPUState *)cpu;
cc = (CPUClass *)&cpu->cc;
cs->cc = cc;
cs->uc = uc;
uc->cpu = cs;
cpu_class_init(uc, cc);
tricore_cpu_class_init(cc);
cpu_common_initfn(uc, cs);
tricore_cpu_initfn(uc, cs);
tricore_cpus_type_infos[uc->cpu_model].initfn(cs);
tricore_cpu_realizefn(cs);
// init address space
cpu_address_space_init(cs, 0, cs->memory);
qemu_init_vcpu(cs);
return cpu;
}