mirror of
https://github.com/radareorg/radare2.git
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263 lines
6.1 KiB
C
263 lines
6.1 KiB
C
/* radare - LGPL - Copyright 2010-2016 - pancake, nibble */
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#include <r_anal.h>
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#include <r_util.h>
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#include <r_list.h>
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#include <limits.h>
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#define DFLT_NINSTR 3
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R_API RAnalBlock *r_anal_bb_new() {
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RAnalBlock *bb = R_NEW0 (RAnalBlock);
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if (!bb) {
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return NULL;
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}
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bb->addr = UT64_MAX;
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bb->jump = UT64_MAX;
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bb->fail = UT64_MAX;
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bb->switch_op = NULL;
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bb->type = R_ANAL_BB_TYPE_NULL;
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bb->cond = NULL;
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bb->fingerprint = NULL;
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bb->diff = NULL; //r_anal_diff_new ();
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bb->label = NULL;
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bb->op_pos = R_NEWS0 (ut16, DFLT_NINSTR);
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bb->op_pos_size = DFLT_NINSTR;
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bb->parent_reg_arena = NULL;
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bb->stackptr = 0;
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bb->parent_stackptr = INT_MAX;
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return bb;
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}
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R_API void r_anal_bb_free(RAnalBlock *bb) {
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if (!bb) {
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return;
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}
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r_anal_cond_free (bb->cond);
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R_FREE (bb->fingerprint);
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r_anal_diff_free (bb->diff);
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bb->diff = NULL;
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R_FREE (bb->op_bytes);
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r_anal_switch_op_free (bb->switch_op);
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bb->switch_op = NULL;
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bb->fingerprint = NULL;
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bb->cond = NULL;
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R_FREE (bb->label);
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R_FREE (bb->op_pos);
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R_FREE (bb->parent_reg_arena);
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if (bb->prev) {
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if (bb->prev->jumpbb == bb) {
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bb->prev->jumpbb = NULL;
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}
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if (bb->prev->failbb == bb) {
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bb->prev->failbb = NULL;
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}
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bb->prev = NULL;
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}
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if (bb->jumpbb) {
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bb->jumpbb->prev = NULL;
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bb->jumpbb = NULL;
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}
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if (bb->failbb) {
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bb->failbb->prev = NULL;
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bb->failbb = NULL;
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}
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R_FREE (bb);
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}
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R_API RList *r_anal_bb_list_new() {
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RList *list = r_list_newf ((RListFree)r_anal_bb_free);
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if (!list) {
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return NULL;
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}
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return list;
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}
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R_API int r_anal_bb(RAnal *anal, RAnalBlock *bb, ut64 addr, ut8 *buf, ut64 len, int head) {
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RAnalOp *op = NULL;
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int oplen, idx = 0;
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if (bb->addr == -1) {
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bb->addr = addr;
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}
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len -= 16; // XXX: hack to avoid segfault by x86im
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while (idx < len) {
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// TODO: too slow object construction
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if (!(op = r_anal_op_new ())) {
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eprintf ("Error: new (op)\n");
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return R_ANAL_RET_ERROR;
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}
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if ((oplen = r_anal_op (anal, op, addr + idx, buf + idx, len - idx)) == 0) {
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r_anal_op_free (op);
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op = NULL;
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if (idx == 0) {
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VERBOSE_ANAL eprintf ("Unknown opcode at 0x%08"PFMT64x"\n", addr+idx);
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return R_ANAL_RET_END;
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}
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break;
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}
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if (oplen < 1) {
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goto beach;
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}
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r_anal_bb_set_offset (bb, bb->ninstr++, addr + idx - bb->addr);
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idx += oplen;
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bb->size += oplen;
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if (head) {
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bb->type = R_ANAL_BB_TYPE_HEAD;
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}
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switch (op->type) {
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case R_ANAL_OP_TYPE_CMP:
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r_anal_cond_free (bb->cond);
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bb->cond = r_anal_cond_new_from_op (op);
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break;
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case R_ANAL_OP_TYPE_CJMP:
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if (bb->cond) {
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// TODO: get values from anal backend
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bb->cond->type = R_ANAL_COND_EQ;
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} else VERBOSE_ANAL eprintf ("Unknown conditional for block 0x%"PFMT64x"\n", bb->addr);
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bb->conditional = 1;
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bb->fail = op->fail;
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bb->jump = op->jump;
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bb->type |= R_ANAL_BB_TYPE_BODY;
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goto beach;
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case R_ANAL_OP_TYPE_JMP:
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bb->jump = op->jump;
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bb->type |= R_ANAL_BB_TYPE_BODY;
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goto beach;
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case R_ANAL_OP_TYPE_UJMP:
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case R_ANAL_OP_TYPE_IJMP:
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case R_ANAL_OP_TYPE_RJMP:
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case R_ANAL_OP_TYPE_IRJMP:
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bb->type |= R_ANAL_BB_TYPE_FOOT;
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goto beach;
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case R_ANAL_OP_TYPE_RET:
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bb->type |= R_ANAL_BB_TYPE_LAST;
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goto beach;
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case R_ANAL_OP_TYPE_LEA:
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{
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RAnalValue *src = op->src[0];
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if (src && src->reg && anal->reg) {
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const char *pc = anal->reg->name[R_REG_NAME_PC];
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RAnalValue *dst = op->dst;
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if (dst && dst->reg && !strcmp (src->reg->name, pc)) {
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int memref = anal->bits/8;
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ut8 b[8];
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ut64 ptr = idx+addr+src->delta;
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anal->iob.read_at (anal->iob.io, ptr, b, memref);
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r_anal_ref_add (anal, ptr, addr+idx-op->size, 'd');
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}
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}
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}
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}
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r_anal_op_free (op);
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}
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return bb->size;
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beach:
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r_anal_op_free (op);
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return R_ANAL_RET_END;
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}
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R_API inline int r_anal_bb_is_in_offset (RAnalBlock *bb, ut64 off) {
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return (off >= bb->addr && off < bb->addr + bb->size);
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}
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R_API RAnalBlock *r_anal_bb_from_offset(RAnal *anal, ut64 off) {
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RListIter *iter, *iter2;
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RAnalFunction *fcn;
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RAnalBlock *bb;
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r_list_foreach (anal->fcns, iter, fcn) {
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r_list_foreach (fcn->bbs, iter2, bb) {
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if (r_anal_bb_is_in_offset (bb, off)) {
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return bb;
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}
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}
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}
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return NULL;
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}
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R_API RAnalBlock *r_anal_bb_get_jumpbb(RAnalFunction *fcn, RAnalBlock *bb) {
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if (bb->jump == UT64_MAX) {
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return NULL;
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}
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if (bb->jumpbb) {
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return bb->jumpbb;
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}
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RListIter *iter;
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RAnalBlock *b;
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r_list_foreach (fcn->bbs, iter, b) {
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if (b->addr == bb->jump) {
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bb->jumpbb = b;
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b->prev = bb;
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return b;
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}
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}
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return NULL;
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}
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R_API RAnalBlock *r_anal_bb_get_failbb(RAnalFunction *fcn, RAnalBlock *bb) {
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RListIter *iter;
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RAnalBlock *b;
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if (bb->fail == UT64_MAX) {
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return NULL;
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}
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if (bb->failbb) {
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return bb->failbb;
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}
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r_list_foreach (fcn->bbs, iter, b) {
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if (b->addr == bb->fail) {
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bb->failbb = b;
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b->prev = bb;
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return b;
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}
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}
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return NULL;
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}
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/* return the offset of the i-th instruction in the basicblock bb.
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* If the index of the instruction is not valid, it returns UT16_MAX */
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R_API ut16 r_anal_bb_offset_inst(RAnalBlock *bb, int i) {
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if (i < 0 || i >= bb->ninstr) return UT16_MAX;
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return (i > 0 && (i - 1) < bb->op_pos_size) ? bb->op_pos[i - 1] : 0;
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}
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/* set the offset of the i-th instruction in the basicblock bb */
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R_API bool r_anal_bb_set_offset(RAnalBlock *bb, int i, ut16 v) {
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// the offset 0 of the instruction 0 is not stored because always 0
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if (i > 0 && v > 0) {
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if (i >= bb->op_pos_size) {
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int new_pos_size = i * 2;
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ut16 *tmp_op_pos = realloc (bb->op_pos, new_pos_size * sizeof (*bb->op_pos));
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if (!tmp_op_pos) {
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return false;
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}
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bb->op_pos_size = new_pos_size;
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bb->op_pos = tmp_op_pos;
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}
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bb->op_pos[i - 1] = v;
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return true;
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}
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return true;
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}
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/* return the address of the instruction that occupy a given offset.
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* If the offset is not part of the given basicblock, UT64_MAX is returned. */
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R_API ut64 r_anal_bb_opaddr_at(RAnalBlock *bb, ut64 off) {
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ut16 delta, delta_off, last_delta;
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int i;
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if (!r_anal_bb_is_in_offset (bb, off)) {
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return UT64_MAX;
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}
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last_delta = 0;
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delta_off = off - bb->addr;
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for (i = 0; i < bb->ninstr; i++) {
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delta = r_anal_bb_offset_inst (bb, i);
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if (delta > delta_off) {
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return bb->addr + last_delta;
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}
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last_delta = delta;
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}
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return UT64_MAX;
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}
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