rizin/librz/arch/p-asm/asm_sparc_gnu.c
2024-03-07 18:38:49 +08:00

115 lines
2.9 KiB
C

// SPDX-FileCopyrightText: 2009-2014 nibble <nibble.ds@gmail.com>
// SPDX-License-Identifier: LGPL-3.0-only
#include <stdio.h>
#include <stdarg.h>
#include <string.h>
#include <rz_types.h>
#include <rz_lib.h>
#include <rz_util.h>
#include <rz_asm.h>
#include "disas-asm.h"
#include <mybfd.h>
static unsigned long Offset = 0;
static RzStrBuf *buf_global = NULL;
static unsigned char bytes[4];
static int sparc_buffer_read_memory(bfd_vma memaddr, bfd_byte *myaddr, unsigned int length, struct disassemble_info *info) {
int delta = (memaddr - Offset);
if (delta < 0) {
return -1; // disable backward reads
}
if ((delta + length) > 4) {
return -1;
}
memcpy(myaddr, bytes, length);
return 0;
}
static int symbol_at_address(bfd_vma addr, struct disassemble_info *info) {
return 0;
}
static void memory_error_func(int status, bfd_vma memaddr, struct disassemble_info *info) {
//--
}
DECLARE_GENERIC_PRINT_ADDRESS_FUNC()
DECLARE_GENERIC_FPRINTF_FUNC()
typedef struct {
struct disassemble_info disasm_obj;
} SparcGnuContext;
static int disassemble(RzAsm *a, RzAsmOp *op, const ut8 *buf, int len) {
SparcGnuContext *ctx = (SparcGnuContext *)a->plugin_data;
if (len < 4) {
return -1;
}
buf_global = &op->buf_asm;
Offset = a->pc;
// disasm inverted
ut32 newbuf = rz_swap_ut32(*(ut32 *)buf);
memcpy(bytes, &newbuf, 4); // TODO handle thumb
rz_strbuf_set(&op->buf_asm, "");
/* prepare disassembler */
memset(&ctx->disasm_obj, '\0', sizeof(struct disassemble_info));
ctx->disasm_obj.buffer = bytes;
ctx->disasm_obj.read_memory_func = &sparc_buffer_read_memory;
ctx->disasm_obj.symbol_at_address_func = &symbol_at_address;
ctx->disasm_obj.memory_error_func = &memory_error_func;
ctx->disasm_obj.print_address_func = &generic_print_address_func;
ctx->disasm_obj.endian = a->big_endian;
ctx->disasm_obj.fprintf_func = &generic_fprintf_func;
ctx->disasm_obj.stream = stdout;
ctx->disasm_obj.mach = ((a->bits == 64)
? bfd_mach_sparc_v9b
: 0);
op->size = print_insn_sparc((bfd_vma)Offset, &ctx->disasm_obj);
if (!strncmp(rz_strbuf_get(&op->buf_asm), "unknown", 7)) {
rz_asm_op_set_asm(op, "invalid");
}
if (op->size == -1) {
rz_asm_op_set_asm(op, "(data)");
}
return op->size;
}
static bool sparc_gnu_init(void **user) {
SparcGnuContext *ctx = RZ_NEW0(SparcGnuContext);
rz_return_val_if_fail(ctx, false);
*user = ctx;
return true;
}
static bool sparc_gnu_fini(void *user) {
SparcGnuContext *ctx = (SparcGnuContext *)user;
if (ctx) {
RZ_FREE(ctx);
}
return true;
}
RzAsmPlugin rz_asm_plugin_sparc_gnu = {
.name = "sparc.gnu",
.arch = "sparc",
.bits = 32 | 64,
.endian = RZ_SYS_ENDIAN_BIG | RZ_SYS_ENDIAN_LITTLE,
.license = "GPL3",
.init = sparc_gnu_init,
.fini = sparc_gnu_fini,
.desc = "Scalable Processor Architecture",
.disassemble = &disassemble,
};
#ifndef RZ_PLUGIN_INCORE
RZ_API RzLibStruct rizin_plugin = {
.type = RZ_LIB_TYPE_ASM,
.data = &rz_asm_plugin_sparc_gnu,
.version = RZ_VERSION
};
#endif