rizin/libr/bin/format/dex/dex.c
2016-04-09 13:01:15 +02:00

176 lines
4.8 KiB
C

/* radare - LGPL - Copyright 2009-2015 - pancake */
#include <r_types.h>
#include <r_util.h>
#include "dex.h"
char* r_bin_dex_get_version(struct r_bin_dex_obj_t* bin) {
char *version;
if (!bin) return NULL;
version = malloc (8);
memset (version, 0, 8);
memcpy (version, bin->b->buf+4, 3);
return version;
}
#define FAIL(x) { eprintf(x"\n"); goto fail; }
struct r_bin_dex_obj_t* r_bin_dex_new_buf(RBuffer *buf) {
struct r_bin_dex_obj_t *bin = R_NEW0 (struct r_bin_dex_obj_t);
if (!bin) {
goto fail;
}
bin->size = buf->length;
bin->b = r_buf_new ();
if (!r_buf_set_bytes (bin->b, buf->buf, bin->size)){
goto fail;
}
// XXX: this is not endian safe
// XXX: no need to dup all data!! just pointers to the bin->b
// XXX: return value not checked
/* header */
//r_buf_read_at (bin->b, 0, (ut8*)&bin->header, sizeof (struct dex_header_t));
if (bin->size < sizeof(struct dex_header_t))
goto fail;
bin->header = (*(struct dex_header_t*)bin->b->buf);
/* strings */
//eprintf ("strings size: %d\n", bin->header.strings_size);
#define STRINGS_SIZE ((bin->header.strings_size+1)*sizeof(ut32))
bin->strings = (ut32 *) calloc (bin->header.strings_size +1, sizeof (ut32));
if (!bin->strings) {
goto fail;
}
//bin->strings = bin->b->buf + bin->header.strings_offset;
int left;
bin->strings = (ut32 *)r_buf_get_at (bin->b, bin->header.strings_offset, &left);
if (left< STRINGS_SIZE) {
FAIL ("Strings buffer is too small");
}
#if 0
r_buf_read_at (bin->b, bin->header.strings_offset, (ut8*)bin->strings,
bin->header.strings_size * sizeof (ut32));
#endif
/* classes */
int classes_size = bin->header.class_size * sizeof (struct dex_class_t);
if (bin->header.class_offset + classes_size >= bin->size) {
classes_size = bin->size - bin->header.class_offset;
}
if (classes_size<0) {
classes_size = 0;
}
bin->header.class_size = classes_size / sizeof (struct dex_class_t);
bin->classes = (struct dex_class_t *) malloc (classes_size);
r_buf_read_at (bin->b, bin->header.class_offset, (ut8*)bin->classes, classes_size);
//{ ut8 *b = (ut8*)&bin->methods; eprintf ("CLASS %02x %02x %02x %02x\n", b[0], b[1], b[2], b[3]); }
/* methods */
int methods_size = bin->header.method_size * sizeof (struct dex_method_t);
if (bin->header.method_offset + methods_size >= bin->size) {
methods_size = bin->size - bin->header.method_offset;
}
if (methods_size<0) {
methods_size = 0;
}
bin->header.method_size = methods_size / sizeof (struct dex_method_t);
bin->methods = (struct dex_method_t *) calloc (methods_size, 1);
r_buf_read_at (bin->b, bin->header.method_offset, (ut8*)bin->methods, methods_size);
/* types */
int types_size = bin->header.types_size * sizeof (struct dex_type_t);
if (bin->header.types_offset + types_size >= bin->size) {
types_size = bin->size - bin->header.types_offset;
}
if (types_size<0) {
types_size = 0;
}
bin->header.types_size = types_size / sizeof (struct dex_type_t);
bin->types = (struct dex_type_t *) calloc (types_size, 1);
r_buf_read_at (bin->b, bin->header.types_offset, (ut8*)bin->types, types_size);
/* fields */
int fields_size = bin->header.fields_size * sizeof (struct dex_type_t);
if (bin->header.fields_offset + fields_size >= bin->size) {
fields_size = bin->size - bin->header.fields_offset;
}
if (fields_size<0) {
fields_size = 0;
}
bin->header.fields_size = fields_size / sizeof (struct dex_field_t);
bin->fields = (struct dex_field_t *) calloc (fields_size, 1);
r_buf_read_at (bin->b, bin->header.fields_offset, (ut8*)bin->fields, fields_size);
return bin;
fail:
if (bin) {
r_buf_free (bin->b);
free (bin);
}
return NULL;
}
// Move to r_util ??
int dex_read_uleb128 (const ut8 *ptr) {
int cur, result = *(ptr++);
if (result > 0x7f) {
cur = *(ptr++);
result = (result & 0x7f) | ((cur & 0x7f) << 7);
if (cur > 0x7f) {
cur = *(ptr++);
result |= (cur & 0x7f) << 14;
if (cur > 0x7f) {
cur = *(ptr++);
result |= (cur & 0x7f) << 21;
if (cur > 0x7f) {
cur = *(ptr++);
result |= cur << 28;
}
}
}
}
return result;
}
#define LEB_MAX_SIZE 6
int dex_uleb128_len (const ut8 *ptr) {
int i=1, result = *(ptr++);
while (result > 0x7f && i <= LEB_MAX_SIZE) {
result = *(ptr++);
i++;
}
return i;
}
#define SIG_EXTEND(X,Y) X = (X << Y) >> Y
int dex_read_sleb128 (const char *ptr) {
int cur, result = *(ptr++);
if (result <= 0x7f) {
SIG_EXTEND (result, 25);
} else {
cur = *(ptr++);
result = (result & 0x7f) | ((cur & 0x7f) << 7);
if (cur <= 0x7f) {
SIG_EXTEND (result, 18);
} else {
cur = *(ptr++);
result |= (cur & 0x7f) << 14;
if (cur <= 0x7f) {
SIG_EXTEND (result, 11);
} else {
cur = *(ptr++);
result |= (cur & 0x7f) << 21;
if (cur <= 0x7f) {
SIG_EXTEND (result, 4);
} else {
cur = *(ptr++);
result |= cur << 28;
}
}
}
}
return result;
}