#include "elf.h"
#include "lm32_hwsetup.h"
#include "lm32.h"
+#include "exec-memory.h"
typedef struct {
- CPUState *env;
+ LM32CPU *cpu;
target_phys_addr_t bootstrap_pc;
target_phys_addr_t flash_base;
target_phys_addr_t hwsetup_base;
static void cpu_irq_handler(void *opaque, int irq, int level)
{
- CPUState *env = opaque;
+ CPULM32State *env = opaque;
if (level) {
cpu_interrupt(env, CPU_INTERRUPT_HARD);
static void main_cpu_reset(void *opaque)
{
ResetInfo *reset_info = opaque;
- CPUState *env = reset_info->env;
+ CPULM32State *env = &reset_info->cpu->env;
- cpu_reset(env);
+ cpu_reset(CPU(reset_info->cpu));
/* init defaults */
env->pc = (uint32_t)reset_info->bootstrap_pc;
env->deba = reset_info->flash_base;
}
-static void lm32_evr_init(ram_addr_t ram_size_not_used,
- const char *boot_device,
- const char *kernel_filename,
- const char *kernel_cmdline,
- const char *initrd_filename, const char *cpu_model)
+static void lm32_evr_init(QEMUMachineInitArgs *args)
{
- CPUState *env;
+ const char *cpu_model = args->cpu_model;
+ const char *kernel_filename = args->kernel_filename;
+ LM32CPU *cpu;
+ CPULM32State *env;
DriveInfo *dinfo;
- ram_addr_t phys_ram;
- ram_addr_t phys_flash;
+ MemoryRegion *address_space_mem = get_system_memory();
+ MemoryRegion *phys_ram = g_new(MemoryRegion, 1);
qemu_irq *cpu_irq, irq[32];
ResetInfo *reset_info;
int i;
if (cpu_model == NULL) {
cpu_model = "lm32-full";
}
- env = cpu_init(cpu_model);
- reset_info->env = env;
+ cpu = cpu_lm32_init(cpu_model);
+ env = &cpu->env;
+ reset_info->cpu = cpu;
reset_info->flash_base = flash_base;
- phys_ram = qemu_ram_alloc(NULL, "lm32_evr.sdram", ram_size);
- cpu_register_physical_memory(ram_base, ram_size, phys_ram | IO_MEM_RAM);
+ memory_region_init_ram(phys_ram, "lm32_evr.sdram", ram_size);
+ vmstate_register_ram_global(phys_ram);
+ memory_region_add_subregion(address_space_mem, ram_base, phys_ram);
- phys_flash = qemu_ram_alloc(NULL, "lm32_evr.flash", flash_size);
dinfo = drive_get(IF_PFLASH, 0, 0);
/* Spansion S29NS128P */
- pflash_cfi02_register(flash_base, phys_flash,
+ pflash_cfi02_register(flash_base, NULL, "lm32_evr.flash", flash_size,
dinfo ? dinfo->bdrv : NULL, flash_sector_size,
flash_size / flash_sector_size, 1, 2,
0x01, 0x7e, 0x43, 0x00, 0x555, 0x2aa, 1);
qemu_register_reset(main_cpu_reset, reset_info);
}
-static void lm32_uclinux_init(ram_addr_t ram_size_not_used,
- const char *boot_device,
- const char *kernel_filename,
- const char *kernel_cmdline,
- const char *initrd_filename, const char *cpu_model)
+static void lm32_uclinux_init(QEMUMachineInitArgs *args)
{
- CPUState *env;
+ const char *cpu_model = args->cpu_model;
+ const char *kernel_filename = args->kernel_filename;
+ const char *kernel_cmdline = args->kernel_cmdline;
+ const char *initrd_filename = args->initrd_filename;
+ LM32CPU *cpu;
+ CPULM32State *env;
DriveInfo *dinfo;
- ram_addr_t phys_ram;
- ram_addr_t phys_flash;
+ MemoryRegion *address_space_mem = get_system_memory();
+ MemoryRegion *phys_ram = g_new(MemoryRegion, 1);
qemu_irq *cpu_irq, irq[32];
HWSetup *hw;
ResetInfo *reset_info;
if (cpu_model == NULL) {
cpu_model = "lm32-full";
}
- env = cpu_init(cpu_model);
- reset_info->env = env;
+ cpu = cpu_lm32_init(cpu_model);
+ env = &cpu->env;
+ reset_info->cpu = cpu;
reset_info->flash_base = flash_base;
- phys_ram = qemu_ram_alloc(NULL, "lm32_uclinux.sdram", ram_size);
- cpu_register_physical_memory(ram_base, ram_size, phys_ram | IO_MEM_RAM);
+ memory_region_init_ram(phys_ram, "lm32_uclinux.sdram", ram_size);
+ vmstate_register_ram_global(phys_ram);
+ memory_region_add_subregion(address_space_mem, ram_base, phys_ram);
- phys_flash = qemu_ram_alloc(NULL, "lm32_uclinux.flash", flash_size);
dinfo = drive_get(IF_PFLASH, 0, 0);
/* Spansion S29NS128P */
- pflash_cfi02_register(flash_base, phys_flash,
+ pflash_cfi02_register(flash_base, NULL, "lm32_uclinux.flash", flash_size,
dinfo ? dinfo->bdrv : NULL, flash_sector_size,
flash_size / flash_sector_size, 1, 2,
0x01, 0x7e, 0x43, 0x00, 0x555, 0x2aa, 1);