#include <libfdt.h>
-#if defined(TARGET_RISCV32)
-#define fw_dynamic_info_data(__val) cpu_to_le32(__val)
-#else
-#define fw_dynamic_info_data(__val) cpu_to_le64(__val)
-#endif
-
bool riscv_is_32_bit(MachineState *machine)
{
/*
return fdt_addr;
}
-void riscv_rom_copy_firmware_info(hwaddr rom_base, hwaddr rom_size,
- uint32_t reset_vec_size, uint64_t kernel_entry)
+void riscv_rom_copy_firmware_info(MachineState *machine, hwaddr rom_base,
+ hwaddr rom_size, uint32_t reset_vec_size,
+ uint64_t kernel_entry)
{
struct fw_dynamic_info dinfo;
size_t dinfo_len;
- dinfo.magic = fw_dynamic_info_data(FW_DYNAMIC_INFO_MAGIC_VALUE);
- dinfo.version = fw_dynamic_info_data(FW_DYNAMIC_INFO_VERSION);
- dinfo.next_mode = fw_dynamic_info_data(FW_DYNAMIC_INFO_NEXT_MODE_S);
- dinfo.next_addr = fw_dynamic_info_data(kernel_entry);
+ if (sizeof(dinfo.magic) == 4) {
+ dinfo.magic = cpu_to_le32(FW_DYNAMIC_INFO_MAGIC_VALUE);
+ dinfo.version = cpu_to_le32(FW_DYNAMIC_INFO_VERSION);
+ dinfo.next_mode = cpu_to_le32(FW_DYNAMIC_INFO_NEXT_MODE_S);
+ dinfo.next_addr = cpu_to_le32(kernel_entry);
+ } else {
+ dinfo.magic = cpu_to_le64(FW_DYNAMIC_INFO_MAGIC_VALUE);
+ dinfo.version = cpu_to_le64(FW_DYNAMIC_INFO_VERSION);
+ dinfo.next_mode = cpu_to_le64(FW_DYNAMIC_INFO_NEXT_MODE_S);
+ dinfo.next_addr = cpu_to_le64(kernel_entry);
+ }
dinfo.options = 0;
dinfo.boot_hart = 0;
dinfo_len = sizeof(dinfo);
&address_space_memory);
}
-void riscv_setup_rom_reset_vec(hwaddr start_addr, hwaddr rom_base,
- hwaddr rom_size, uint64_t kernel_entry,
+void riscv_setup_rom_reset_vec(MachineState *machine, hwaddr start_addr,
+ hwaddr rom_base, hwaddr rom_size,
+ uint64_t kernel_entry,
uint32_t fdt_load_addr, void *fdt)
{
int i;
uint32_t start_addr_hi32 = 0x00000000;
- #if defined(TARGET_RISCV64)
- start_addr_hi32 = start_addr >> 32;
- #endif
+ if (!riscv_is_32_bit(machine)) {
+ start_addr_hi32 = start_addr >> 32;
+ }
/* reset vector */
uint32_t reset_vec[10] = {
0x00000297, /* 1: auipc t0, %pcrel_hi(fw_dyn) */
0x02828613, /* addi a2, t0, %pcrel_lo(1b) */
0xf1402573, /* csrr a0, mhartid */
-#if defined(TARGET_RISCV32)
- 0x0202a583, /* lw a1, 32(t0) */
- 0x0182a283, /* lw t0, 24(t0) */
-#elif defined(TARGET_RISCV64)
- 0x0202b583, /* ld a1, 32(t0) */
- 0x0182b283, /* ld t0, 24(t0) */
-#endif
+ 0,
+ 0,
0x00028067, /* jr t0 */
start_addr, /* start: .dword */
start_addr_hi32,
0x00000000,
/* fw_dyn: */
};
+ if (riscv_is_32_bit(machine)) {
+ reset_vec[3] = 0x0202a583; /* lw a1, 32(t0) */
+ reset_vec[4] = 0x0182a283; /* lw t0, 24(t0) */
+ } else {
+ reset_vec[3] = 0x0202b583; /* ld a1, 32(t0) */
+ reset_vec[4] = 0x0182b283; /* ld t0, 24(t0) */
+ }
/* copy in the reset vector in little_endian byte order */
for (i = 0; i < ARRAY_SIZE(reset_vec); i++) {
}
rom_add_blob_fixed_as("mrom.reset", reset_vec, sizeof(reset_vec),
rom_base, &address_space_memory);
- riscv_rom_copy_firmware_info(rom_base, rom_size, sizeof(reset_vec),
+ riscv_rom_copy_firmware_info(machine, rom_base, rom_size, sizeof(reset_vec),
kernel_entry);
return;
hwaddr riscv_load_initrd(const char *filename, uint64_t mem_size,
uint64_t kernel_entry, hwaddr *start);
uint32_t riscv_load_fdt(hwaddr dram_start, uint64_t dram_size, void *fdt);
-void riscv_setup_rom_reset_vec(hwaddr saddr, hwaddr rom_base,
- hwaddr rom_size, uint64_t kernel_entry,
+void riscv_setup_rom_reset_vec(MachineState *machine, hwaddr saddr,
+ hwaddr rom_base, hwaddr rom_size,
+ uint64_t kernel_entry,
uint32_t fdt_load_addr, void *fdt);
-void riscv_rom_copy_firmware_info(hwaddr rom_base, hwaddr rom_size,
+void riscv_rom_copy_firmware_info(MachineState *machine, hwaddr rom_base,
+ hwaddr rom_size,
uint32_t reset_vec_size,
uint64_t kernel_entry);