rizin/libr/parse/p/parse_arm_pseudo.c
2016-04-22 10:15:22 +02:00

332 lines
8.1 KiB
C

/* radare - LGPL - Copyright 2015-2016 - pancake */
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <r_lib.h>
#include <r_util.h>
#include <r_flags.h>
#include <r_anal.h>
#include <r_parse.h>
static int replace(int argc, const char *argv[], char *newstr) {
int i,j,k;
struct {
int narg;
char *op;
char *str;
} ops[] = {
{ 0, "abs", "1 = abs(1)"},
{ 0, "adc", "1 = 2 + 3"},
{ 3, "add", "1 = 2 + 3"},
{ 2, "add", "1 += 2"},
{ 3, "adds", "1 = 2 + 3"},
{ 3, "addw", "1 = 2 + 3"},
{ 3, "add.w", "1 = 2 + 3"},
{ 0, "adf", "1 = 2 + 3"},
{ 0, "adrp", "1 = 2"},
{ 0, "and", "1 = 2 & 3"},
{ 0, "ands", "1 &= 2"},
{ 0, "asl", "1 = 2 << 3"},
{ 0, "asr", "1 = 2 >> 3"},
{ 0, "b", "jmp 1"},
{ 0, "cbz", "if !1 jmp 2"},
{ 0, "cbnz", "if 1 jmp 2"},
{ 0, "b.w", "jmp 1"},
{ 0, "b.gt", "jmp ifgt 1"},
{ 0, "b.le", "jmp ifle 1"},
{ 0, "beq lr", "ifeq ret"},
{ 0, "beq", "je 1"},
{ 0, "call", "1()"},
{ 0, "bl", "1()"},
{ 0, "blx", "1()"},
{ 0, "bx lr", "ret"},
{ 0, "bxeq", "je 1"},
{ 0, "cmf", "if (1 == 2)"},
{ 0, "cmp", "if (1 == 2)"},
{ 0, "tst", "if (1 == 2)"},
{ 0, "dvf", "1 = 2 / 3"},
{ 0, "eor", "1 = 2 ^ 3"},
{ 0, "fdv", "1 = 2 / 3"},
{ 0, "fml", "1 = 2 * 3"},
{ 0, "ldr", "1 = 2"},
{ 0, "ldrb", "1 = 2"},
{ 0, "ldr.w", "1 = 2"},
{ 0, "ldrsw", "1 = 2 + 3"},
{ 0, "lsl", "1 = 2 << 3"},
{ 0, "lsr", "1 = 2 >> 3"},
{ 0, "mov", "1 = 2"},
{ 0, "mvn", "1 = 2"},
{ 0, "movz", "1 = 2"},
{ 0, "movk", "1 = 2"},
{ 0, "movn", "1 = 2"},
{ 0, "vmov.i32", "1 = 2"},
{ 0, "muf", "1 = 2 * 3"},
{ 0, "mul", "1 = 2 * 3"},
{ 0, "orr", "1 = 2 | 3"},
{ 0, "rmf", "1 = 2 % 3"},
{ 0, "bge", "(>=) goto 1"},
{ 0, "sbc", "1 = 2 - 3"},
{ 0, "sqt", "1 = sqrt(2)"},
{ 0, "str", "2 + 3 = 1"},
{ 0, "lsrs", "1 = 2 >> 3"},
{ 0, "lsls", "1 = 2 << 3"},
{ 0, "lsr", "1 = 2 >> 3"},
{ 0, "lsl", "1 = 2 << 3"},
{ 0, "strb", "2 =(byte) 1"},
{ 0, "strh", "2 =(halt) 1"},
{ 0, "strh.w", "2 + 3 = 1"},
{ 3, "sub", "1 = 2 - 3"},
{ 3, "subs", "1 = 2 - 3"},
{ 2, "sub", "1 -= 2"}, // THUMB
{ 2, "subs", "1 -= 2"}, // THUMB
{ 0, "swp", "swap(1, 2)"},
/* arm thumb */
{ 0, "movs", "1 = 2"},
{ 0, "movw", "1 = 2"},
{ 0, "movt", "1 |= 2 << 16"},
{ 0, "vmov", "1 = (float) 2 . 3"},
{ 0, "vdiv.f64", "1 = (float) 2 / 3" },
{ 0, "addw", "1 = 2 + 3"},
{ 0, "sub.w", "1 = 2 - 3"},
{ 0, "tst.w", "if (1 == 2)"},
{ 0, "lsr.w", "1 = 2 >> 3"},
{ 0, "lsl.w", "1 = 2 << 3"},
{ 0, "pop.w", "pop 1"},
{ 0, "vpop", "pop 1"},
{ 0, "vpush", "push 1"},
{ 0, "push.w", "push 1"},
{ 0, NULL }
};
if (!newstr) {
return false;
}
for (i = 0; ops[i].op != NULL; i++) {
if (ops[i].narg) {
if (argc-1 != ops[i].narg) {
continue;
}
}
if (!strcmp (ops[i].op, argv[0])) {
for (j=k=0; ops[i].str[j]!='\0'; j++, k++) {
if (ops[i].str[j]>='0' && ops[i].str[j]<='9') {
int idx = ops[i].str[j]-'0';
if (idx<argc) {
const char *w = argv[idx];
if (w) {
strcpy (newstr + k, w);
k += strlen (w) - 1;
}
}
} else newstr[k] = ops[i].str[j];
}
newstr[k]='\0';
if (argc == 4 && argv[2][0] == '[') {
strcat (newstr+k, " + ");
strcat (newstr+k+3, argv[3]);
}
r_str_replace_char (newstr, '{', '(');
r_str_replace_char (newstr, '}', ')');
return true;
}
}
/* TODO: this is slow */
newstr[0] = '\0';
for (i=0; i<argc; i++) {
strcat (newstr, argv[i]);
strcat (newstr, (i == 0 || i == argc - 1)?" ":",");
}
r_str_replace_char (newstr, '{', '(');
r_str_replace_char (newstr, '}', ')');
return false;
}
static int parse(RParse *p, const char *data, char *str) {
char w0[256], w1[256], w2[256], w3[256];
int i, len = strlen (data);
char *buf, *ptr, *optr;
if (len>=sizeof (w0))
return false;
// malloc can be slow here :?
if ((buf = malloc (len+1)) == NULL)
return false;
memcpy (buf, data, len+1);
if (*buf) {
*w0 = *w1 = *w2 = *w3 = '\0';
ptr = strchr (buf, ' ');
if (ptr == NULL)
ptr = strchr (buf, '\t');
if (ptr) {
*ptr = '\0';
for (++ptr; *ptr==' '; ptr++);
strncpy (w0, buf, sizeof (w0) - 1);
strncpy (w1, ptr, sizeof (w1) - 1);
optr = ptr;
if (*ptr == '(') { ptr = strchr (ptr+1, ')'); }
if (ptr && *ptr == '[') { ptr = strchr (ptr+1, ']'); }
if (ptr && *ptr == '{') { ptr = strchr (ptr+1, '}'); }
if (!ptr) {
eprintf ("Unbalanced bracket\n");
free(buf);
return false;
}
ptr = strchr (ptr, ',');
if (ptr) {
*ptr = '\0';
for (++ptr; *ptr==' '; ptr++);
strncpy (w1, optr, sizeof (w1) - 1);
strncpy (w2, ptr, sizeof (w2) - 1);
optr = ptr;
ptr = strchr (ptr, ',');
if (ptr) {
*ptr = '\0';
for (++ptr; *ptr==' '; ptr++);
strncpy (w2, optr, sizeof (w2) - 1);
strncpy (w3, ptr, sizeof (w3) - 1);
}
}
}
{
const char *wa[] = { w0, w1, w2, w3 };
int nw = 0;
for (i=0; i<4; i++) {
if (wa[i][0]) {
nw++;
}
}
replace (nw, wa, str);
}
}
{
char *s = strdup (str);
s = r_str_replace (s, "+ -", "- ", 1);
s = r_str_replace (s, "- -", "+ ", 1);
strcpy (str, s);
free (s);
}
free (buf);
return true;
}
static bool varsub(RParse *p, RAnalFunction *f, ut64 addr, int oplen, char *data, char *str, int len) {
RAnalVar *var;
RListIter *iter;
char oldstr[64], newstr[64];
char *tstr = strdup (data);
RList *vars, *args;
if (!p->varlist) {
free (tstr);
return false;
}
vars = p->varlist (p->anal, f, 'v');
args = p->varlist (p->anal, f, 'a');
r_list_join (vars, args);
switch (p->anal->bits) {
case 64:
r_list_foreach (vars, iter, var) {
if (var->delta < 10) snprintf (oldstr, sizeof (oldstr)-1,
"[%s, %d]",
p->anal->reg->name[R_REG_NAME_BP],
var->delta);
else snprintf (oldstr, sizeof (oldstr)-1,
"[%s, 0x%x]",
p->anal->reg->name[R_REG_NAME_BP],
var->delta);
snprintf (newstr, sizeof (newstr)-1, "[%s + %s]",
p->anal->reg->name[R_REG_NAME_BP],
var->name);
if (strstr (tstr, oldstr) != NULL) {
tstr = r_str_replace (tstr, oldstr, newstr, 1);
break;
}
// Try with no spaces
snprintf (oldstr, sizeof (oldstr)-1, "[%s + 0x%x]",
p->anal->reg->name[R_REG_NAME_BP],
var->delta);
if (strstr (tstr, oldstr) != NULL) {
tstr = r_str_replace (tstr, oldstr, newstr, 1);
break;
}
}
break;
case 32:
r_list_foreach (vars, iter, var) {
if (var->delta < 10) snprintf (oldstr, sizeof (oldstr)-1,
"[%s, -%d]",
p->anal->reg->name[R_REG_NAME_BP],
var->delta);
else snprintf (oldstr, sizeof (oldstr)-1,
"[%s, -0x%x]",
p->anal->reg->name[R_REG_NAME_BP],
var->delta);
if (strstr (tstr, oldstr) != NULL) {
snprintf (newstr, sizeof (newstr)-1, "[%s - %s]",
p->anal->reg->name[R_REG_NAME_BP],
var->name);
tstr = r_str_replace (tstr, oldstr, newstr, 1);
break;
}
// asm.pseudo
if (var->delta < 10) snprintf (oldstr, sizeof (oldstr)-1,
"[%s - %d]",
p->anal->reg->name[R_REG_NAME_BP],
var->delta);
else snprintf (oldstr, sizeof (oldstr)-1,
"[%s - 0x%x]",
p->anal->reg->name[R_REG_NAME_BP],
var->delta);
snprintf (newstr, sizeof (newstr)-1, "[%s - %s]",
p->anal->reg->name[R_REG_NAME_BP],
var->name);
if (strstr (tstr, oldstr) != NULL) {
tstr = r_str_replace (tstr, oldstr, newstr, 1);
break;
}
// Try with no spaces
snprintf (oldstr, sizeof (oldstr)-1, "[%s-0x%x]",
p->anal->reg->name[R_REG_NAME_BP],
var->delta);
if (strstr (tstr, oldstr) != NULL) {
tstr = r_str_replace (tstr, oldstr, newstr, 1);
break;
}
}
break;
case 16:
//
break;
}
if (len > strlen (tstr)) {
strncpy (str, tstr, strlen (tstr));
str[strlen (tstr)] = 0;
} else {
// TOO BIG STRING CANNOT REPLACE HERE
free (tstr);
return false;
}
free (tstr);
return true;
}
RParsePlugin r_parse_plugin_arm_pseudo = {
.name = "arm.pseudo",
.desc = "ARM/ARM64 pseudo syntax",
.parse = parse,
.varsub = &varsub,
};
#ifndef CORELIB
struct r_lib_struct_t radare_plugin = {
.type = R_LIB_TYPE_PARSE,
.data = &r_parse_plugin_arm_pseudo,
.version = R2_VERSION
};
#endif