mirror of
https://github.com/capstone-engine/capstone.git
synced 2024-11-27 07:20:33 +00:00
194 lines
5.3 KiB
C
194 lines
5.3 KiB
C
/* Capstone Disassembly Engine */
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/* TMS320C64x Backend by Fotis Loukos <me@fotisl.com> 2016 */
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#include <stdio.h>
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#include <capstone/capstone.h>
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struct platform {
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cs_arch arch;
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cs_mode mode;
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unsigned char *code;
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size_t size;
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const char *comment;
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};
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static csh handle;
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static void print_string_hex(const char *comment, unsigned char *str, size_t len)
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{
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unsigned char *c;
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printf("%s", comment);
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for (c = str; c < str + len; c++) {
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printf("0x%02x ", *c & 0xff);
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}
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printf("\n");
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}
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static void print_insn_detail(cs_insn *ins)
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{
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cs_tms320c64x *tms320c64x;
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int i;
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// detail can be NULL on "data" instruction if SKIPDATA option is turned ON
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if (ins->detail == NULL)
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return;
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tms320c64x = &(ins->detail->tms320c64x);
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if (tms320c64x->op_count)
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printf("\top_count: %u\n", tms320c64x->op_count);
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for (i = 0; i < tms320c64x->op_count; i++) {
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cs_tms320c64x_op *op = &(tms320c64x->operands[i]);
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switch((int)op->type) {
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default:
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break;
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case TMS320C64X_OP_REG:
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printf("\t\toperands[%u].type: REG = %s\n", i, cs_reg_name(handle, op->reg));
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break;
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case TMS320C64X_OP_IMM:
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printf("\t\toperands[%u].type: IMM = 0x%x\n", i, op->imm);
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break;
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case TMS320C64X_OP_MEM:
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printf("\t\toperands[%u].type: MEM\n", i);
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if (op->mem.base != TMS320C64X_REG_INVALID)
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printf("\t\t\toperands[%u].mem.base: REG = %s\n",
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i, cs_reg_name(handle, op->mem.base));
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printf("\t\t\toperands[%u].mem.disptype: ", i);
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if(op->mem.disptype == TMS320C64X_MEM_DISP_INVALID) {
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printf("Invalid\n");
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printf("\t\t\toperands[%u].mem.disp: %u\n", i, op->mem.disp);
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}
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if(op->mem.disptype == TMS320C64X_MEM_DISP_CONSTANT) {
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printf("Constant\n");
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printf("\t\t\toperands[%u].mem.disp: %u\n", i, op->mem.disp);
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}
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if(op->mem.disptype == TMS320C64X_MEM_DISP_REGISTER) {
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printf("Register\n");
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printf("\t\t\toperands[%u].mem.disp: %s\n", i, cs_reg_name(handle, op->mem.disp));
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}
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printf("\t\t\toperands[%u].mem.unit: %u\n", i, op->mem.unit);
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printf("\t\t\toperands[%u].mem.direction: ", i);
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if(op->mem.direction == TMS320C64X_MEM_DIR_INVALID)
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printf("Invalid\n");
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if(op->mem.direction == TMS320C64X_MEM_DIR_FW)
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printf("Forward\n");
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if(op->mem.direction == TMS320C64X_MEM_DIR_BW)
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printf("Backward\n");
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printf("\t\t\toperands[%u].mem.modify: ", i);
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if(op->mem.modify == TMS320C64X_MEM_MOD_INVALID)
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printf("Invalid\n");
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if(op->mem.modify == TMS320C64X_MEM_MOD_NO)
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printf("No\n");
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if(op->mem.modify == TMS320C64X_MEM_MOD_PRE)
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printf("Pre\n");
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if(op->mem.modify == TMS320C64X_MEM_MOD_POST)
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printf("Post\n");
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printf("\t\t\toperands[%u].mem.scaled: %u\n", i, op->mem.scaled);
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break;
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case TMS320C64X_OP_REGPAIR:
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printf("\t\toperands[%u].type: REGPAIR = %s:%s\n", i, cs_reg_name(handle, op->reg + 1), cs_reg_name(handle, op->reg));
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break;
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}
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}
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printf("\tFunctional unit: ");
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switch(tms320c64x->funit.unit) {
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case TMS320C64X_FUNIT_D:
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printf("D%u\n", tms320c64x->funit.side);
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break;
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case TMS320C64X_FUNIT_L:
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printf("L%u\n", tms320c64x->funit.side);
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break;
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case TMS320C64X_FUNIT_M:
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printf("M%u\n", tms320c64x->funit.side);
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break;
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case TMS320C64X_FUNIT_S:
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printf("S%u\n", tms320c64x->funit.side);
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break;
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case TMS320C64X_FUNIT_NO:
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printf("No Functional Unit\n");
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break;
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default:
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printf("Unknown (Unit %u, Side %u)\n", tms320c64x->funit.unit, tms320c64x->funit.side);
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break;
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}
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if(tms320c64x->funit.crosspath == 1)
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printf("\tCrosspath: 1\n");
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if(tms320c64x->condition.reg != TMS320C64X_REG_INVALID)
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printf("\tCondition: [%c%s]\n", (tms320c64x->condition.zero == 1) ? '!' : ' ', cs_reg_name(handle, tms320c64x->condition.reg));
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printf("\tParallel: %s\n", (tms320c64x->parallel == 1) ? "true" : "false");
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printf("\n");
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}
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static void test()
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{
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#define TMS320C64X_CODE "\x01\xac\x88\x40\x81\xac\x88\x43\x00\x00\x00\x00\x02\x90\x32\x96\x02\x80\x46\x9e\x05\x3c\x83\xe6\x0b\x0c\x8b\x24"
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struct platform platforms[] = {
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{
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CS_ARCH_TMS320C64X,
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CS_MODE_BIG_ENDIAN,
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(unsigned char*)TMS320C64X_CODE,
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sizeof(TMS320C64X_CODE) - 1,
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"TMS320C64x",
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},
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};
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uint64_t address = 0x1000;
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cs_insn *insn;
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int i;
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size_t count;
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for (i = 0; i < sizeof(platforms)/sizeof(platforms[0]); i++) {
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cs_err err = cs_open(platforms[i].arch, platforms[i].mode, &handle);
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if (err) {
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printf("Failed on cs_open() with error returned: %u\n", err);
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continue;
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}
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cs_option(handle, CS_OPT_DETAIL, CS_OPT_ON);
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count = cs_disasm(handle, platforms[i].code, platforms[i].size, address, 0, &insn);
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if (count) {
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size_t j;
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printf("****************\n");
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printf("Platform: %s\n", platforms[i].comment);
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print_string_hex("Code:", platforms[i].code, platforms[i].size);
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printf("Disasm:\n");
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for (j = 0; j < count; j++) {
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printf("0x%"PRIx64":\t%s\t%s\n", insn[j].address, insn[j].mnemonic, insn[j].op_str);
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print_insn_detail(&insn[j]);
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}
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printf("0x%"PRIx64":\n", insn[j-1].address + insn[j-1].size);
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// free memory allocated by cs_disasm()
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cs_free(insn, count);
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} else {
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printf("****************\n");
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printf("Platform: %s\n", platforms[i].comment);
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print_string_hex("Code:", platforms[i].code, platforms[i].size);
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printf("ERROR: Failed to disasm given code!\n");
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}
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printf("\n");
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cs_close(&handle);
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}
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}
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int main()
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{
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test();
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return 0;
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}
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