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https://github.com/radareorg/radare2.git
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179 lines
4.1 KiB
C
179 lines
4.1 KiB
C
/* radare - LGPL - Copyright 2009-2014 - pancake */
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#include <r_sign.h>
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#include <r_anal.h>
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R_LIB_VERSION (r_sign);
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R_API RSign *r_sign_new() {
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RSign *sig = R_NEW0 (RSign);
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if (sig) {
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sig->s_byte = sig->s_anal = 0;
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sig->ns[0] = '\0';
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sig->printf = (PrintfCallback) printf;
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sig->items = r_list_new ();
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sig->items->free = r_sign_item_free;
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}
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return sig;
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}
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R_API void r_sign_ns(RSign *sig, const char *str) {
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/*Set namespace*/
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if (str) {
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strncpy (sig->ns, str, sizeof (sig->ns)-1);
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sig->ns[sizeof (sig->ns)-1] = '\0';
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} else sig->ns[0] = '\0';
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}
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R_API int r_sign_add(RSign *sig, RAnal *anal, int type, const char *name, const char *arg) {
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int len, ret = R_FALSE;
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char *data = NULL, *ptr;
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RSignItem *si; // TODO: like in r_search.. we need r_sign_item_new ()
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// TODO: but..we need to use a pool here..
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if (!name || !arg || !anal)
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return R_FALSE;
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if (!(si = R_NEW0 (RSignItem)))
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return R_FALSE;
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si->type = type;
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snprintf (si->name, sizeof (si->name), "%s.%c.%s",
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*sig->ns? sig->ns: "sign", type, name);
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switch (type) {
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case R_SIGN_FUNC: // function signature
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// FUNC FORMAT [addr] [function-signature]
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ptr = strchr (arg, ' ');
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if (ptr) {
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// TODO. matching must be done by sym/flag/function name
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// sig->addr =
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}
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sig->s_func++;
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r_list_append (sig->items, si);
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break;
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case R_SIGN_HEAD: // function prefix (push ebp..)
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case R_SIGN_BYTE: // function mask
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if (!(data = r_anal_strmask (anal, arg))) {
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r_sign_item_free (si);
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break;
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}
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len = strlen (data)+4; // \xf0
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si->bytes = (ut8 *)malloc (R_MAX (len, 4));
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si->mask = (ut8 *)malloc (R_MAX (len, 4));
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if (si->bytes == NULL || si->mask == NULL) {
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eprintf ("Cannot malloc\n");
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r_sign_item_free (si);
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break;
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}
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si->size = r_hex_str2binmask (data, si->bytes, si->mask);
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if (si->size<1) {
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r_sign_item_free (si);
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} else {
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r_list_append (sig->items, si);
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if (type==R_SIGN_HEAD)
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sig->s_head++;
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else if (type==R_SIGN_BYTE)
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sig->s_byte++;
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}
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break;
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default:
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case R_SIGN_ANAL:
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eprintf ("r_sign_add: TODO. unsupported signature type %d\n", type);
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r_sign_item_free (si);
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break;
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}
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free (data);
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return ret;
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}
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R_API void r_sign_list(RSign *sig, int rad) {
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if (rad) {
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int i;
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RListIter *iter;
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RSignItem *si;
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if (!r_list_empty (sig->items))
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sig->printf ("zp-\n");
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r_list_foreach (sig->items, iter, si) {
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sig->printf ("z%c %s ", si->type, si->name);
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for (i=0; i<si->size; i++){
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if (!si->mask[i]) // This is a mask
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sig->printf ("..");
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else
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sig->printf ("%02x", si->bytes[i]);
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}
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sig->printf ("\n");
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}
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} else {
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sig->printf ("Loaded %d signatures\n", sig->s_byte + sig->s_anal + sig->s_func);
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sig->printf (" %d byte signatures\n", sig->s_byte);
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sig->printf (" %d head signatures\n", sig->s_head);
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sig->printf (" %d func signatures\n", sig->s_func);
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}
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}
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R_API void r_sign_reset(RSign *sig) {
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if (!sig)
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return;
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r_list_free (sig->items);
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sig->items = r_list_new ();
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sig->s_anal = sig->s_byte = sig->s_head = sig->s_func = 0;
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}
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R_API int r_sign_remove_ns(RSign* sig, const char* ns) {
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/*Remove namespace*/
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RListIter* iter, *iter2;
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RSignItem* si;
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int plen, i = 0;
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if (!sig || !ns)
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return -1;
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plen = strlen (ns);
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r_list_foreach_safe (sig->items, iter, iter2, si) {
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if (!strncmp (si->name, ns, plen)) {
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if (si->type == R_SIGN_BYTE)
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sig->s_byte--;
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else if (si->type == R_SIGN_ANAL)
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sig->s_anal--;
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else if (si->type == R_SIGN_HEAD)
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sig->s_head--;
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r_list_delete (sig->items, iter);
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i++;
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}
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}
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return i;
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}
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R_API RSign *r_sign_free(RSign *sig) {
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if (!sig) return NULL;
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r_list_free (sig->items);
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free (sig);
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return NULL;
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}
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R_API void r_sign_item_free(void *_item) {
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if (_item) {
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RSignItem *item = _item;
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free (item->bytes);
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free (item->mask);
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free (item);
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}
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}
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R_API RSignItem *r_sign_check(RSign *sig, const ut8 *buf, int len) {
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RListIter *iter;
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RSignItem *si;
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if (!sig || !buf)
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return NULL;
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r_list_foreach (sig->items, iter, si) {
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if (si->type == R_SIGN_BYTE) {
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int l = (len>si->size)?si->size:len;
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if (!r_mem_cmp_mask (buf, si->bytes, si->mask, l))
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return si;
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}
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}
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return NULL;
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}
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