6dde5586af
* Reuse found keys when reading a card * Fix keys not being read if no newline at the end of the file * Actually read all keys from the dictionary * Support for furi_string * Check only for re-used key after the current sector * Declare the key attack function as static * nfc: change logs, check worker state Co-authored-by: gornekich <n.gorbadey@gmail.com> Co-authored-by: あく <alleteam@gmail.com>
333 lines
10 KiB
C
333 lines
10 KiB
C
#include "mf_classic_dict.h"
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#include <lib/toolbox/args.h>
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#include <lib/flipper_format/flipper_format.h>
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#define MF_CLASSIC_DICT_FLIPPER_PATH EXT_PATH("nfc/assets/mf_classic_dict.nfc")
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#define MF_CLASSIC_DICT_USER_PATH EXT_PATH("nfc/assets/mf_classic_dict_user.nfc")
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#define MF_CLASSIC_DICT_UNIT_TEST_PATH EXT_PATH("unit_tests/mf_classic_dict.nfc")
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#define TAG "MfClassicDict"
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#define NFC_MF_CLASSIC_KEY_LEN (13)
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struct MfClassicDict {
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Stream* stream;
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uint32_t total_keys;
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};
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bool mf_classic_dict_check_presence(MfClassicDictType dict_type) {
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Storage* storage = furi_record_open(RECORD_STORAGE);
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bool dict_present = false;
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if(dict_type == MfClassicDictTypeFlipper) {
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dict_present = storage_common_stat(storage, MF_CLASSIC_DICT_FLIPPER_PATH, NULL) == FSE_OK;
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} else if(dict_type == MfClassicDictTypeUser) {
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dict_present = storage_common_stat(storage, MF_CLASSIC_DICT_USER_PATH, NULL) == FSE_OK;
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} else if(dict_type == MfClassicDictTypeUnitTest) {
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dict_present = storage_common_stat(storage, MF_CLASSIC_DICT_UNIT_TEST_PATH, NULL) ==
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FSE_OK;
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}
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furi_record_close(RECORD_STORAGE);
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return dict_present;
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}
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MfClassicDict* mf_classic_dict_alloc(MfClassicDictType dict_type) {
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MfClassicDict* dict = malloc(sizeof(MfClassicDict));
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Storage* storage = furi_record_open(RECORD_STORAGE);
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dict->stream = buffered_file_stream_alloc(storage);
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furi_record_close(RECORD_STORAGE);
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bool dict_loaded = false;
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do {
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if(dict_type == MfClassicDictTypeFlipper) {
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if(!buffered_file_stream_open(
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dict->stream, MF_CLASSIC_DICT_FLIPPER_PATH, FSAM_READ, FSOM_OPEN_EXISTING)) {
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buffered_file_stream_close(dict->stream);
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break;
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}
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} else if(dict_type == MfClassicDictTypeUser) {
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if(!buffered_file_stream_open(
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dict->stream, MF_CLASSIC_DICT_USER_PATH, FSAM_READ_WRITE, FSOM_OPEN_ALWAYS)) {
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buffered_file_stream_close(dict->stream);
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break;
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}
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} else if(dict_type == MfClassicDictTypeUnitTest) {
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if(!buffered_file_stream_open(
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dict->stream,
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MF_CLASSIC_DICT_UNIT_TEST_PATH,
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FSAM_READ_WRITE,
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FSOM_CREATE_ALWAYS)) {
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buffered_file_stream_close(dict->stream);
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break;
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}
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}
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// Read total amount of keys
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FuriString* next_line;
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next_line = furi_string_alloc();
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while(true) {
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if(!stream_read_line(dict->stream, next_line)) {
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FURI_LOG_T(TAG, "No keys left in dict");
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break;
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}
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furi_string_trim(next_line);
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FURI_LOG_T(
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TAG,
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"Read line: %s, len: %d",
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furi_string_get_cstr(next_line),
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furi_string_size(next_line));
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if(furi_string_get_char(next_line, 0) == '#') continue;
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if(furi_string_size(next_line) != NFC_MF_CLASSIC_KEY_LEN - 1) continue;
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dict->total_keys++;
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}
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furi_string_free(next_line);
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stream_rewind(dict->stream);
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dict_loaded = true;
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FURI_LOG_I(TAG, "Loaded dictionary with %d keys", dict->total_keys);
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} while(false);
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if(!dict_loaded) {
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buffered_file_stream_close(dict->stream);
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free(dict);
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dict = NULL;
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}
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return dict;
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}
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void mf_classic_dict_free(MfClassicDict* dict) {
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furi_assert(dict);
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furi_assert(dict->stream);
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buffered_file_stream_close(dict->stream);
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stream_free(dict->stream);
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free(dict);
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}
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static void mf_classic_dict_int_to_str(uint8_t* key_int, FuriString* key_str) {
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furi_string_reset(key_str);
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for(size_t i = 0; i < 6; i++) {
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furi_string_cat_printf(key_str, "%02X", key_int[i]);
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}
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}
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static void mf_classic_dict_str_to_int(FuriString* key_str, uint64_t* key_int) {
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uint8_t key_byte_tmp;
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*key_int = 0ULL;
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for(uint8_t i = 0; i < 12; i += 2) {
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args_char_to_hex(
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furi_string_get_char(key_str, i), furi_string_get_char(key_str, i + 1), &key_byte_tmp);
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*key_int |= (uint64_t)key_byte_tmp << 8 * (5 - i / 2);
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}
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}
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uint32_t mf_classic_dict_get_total_keys(MfClassicDict* dict) {
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furi_assert(dict);
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return dict->total_keys;
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}
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bool mf_classic_dict_rewind(MfClassicDict* dict) {
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furi_assert(dict);
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furi_assert(dict->stream);
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return stream_rewind(dict->stream);
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}
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bool mf_classic_dict_get_next_key_str(MfClassicDict* dict, FuriString* key) {
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furi_assert(dict);
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furi_assert(dict->stream);
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bool key_read = false;
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furi_string_reset(key);
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while(!key_read) {
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if(!stream_read_line(dict->stream, key)) break;
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if(furi_string_get_char(key, 0) == '#') continue;
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if(furi_string_size(key) != NFC_MF_CLASSIC_KEY_LEN) continue;
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furi_string_left(key, 12);
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key_read = true;
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}
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return key_read;
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}
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bool mf_classic_dict_get_next_key(MfClassicDict* dict, uint64_t* key) {
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furi_assert(dict);
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furi_assert(dict->stream);
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FuriString* temp_key;
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temp_key = furi_string_alloc();
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bool key_read = mf_classic_dict_get_next_key_str(dict, temp_key);
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if(key_read) {
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mf_classic_dict_str_to_int(temp_key, key);
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}
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furi_string_free(temp_key);
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return key_read;
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}
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bool mf_classic_dict_is_key_present_str(MfClassicDict* dict, FuriString* key) {
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furi_assert(dict);
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furi_assert(dict->stream);
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FuriString* next_line;
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next_line = furi_string_alloc();
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bool key_found = false;
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stream_rewind(dict->stream);
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while(!key_found) {
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if(!stream_read_line(dict->stream, next_line)) break;
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if(furi_string_get_char(next_line, 0) == '#') continue;
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if(furi_string_size(next_line) != NFC_MF_CLASSIC_KEY_LEN) continue;
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furi_string_left(next_line, 12);
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if(!furi_string_equal(key, next_line)) continue;
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key_found = true;
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}
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furi_string_free(next_line);
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return key_found;
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}
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bool mf_classic_dict_is_key_present(MfClassicDict* dict, uint8_t* key) {
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FuriString* temp_key;
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temp_key = furi_string_alloc();
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mf_classic_dict_int_to_str(key, temp_key);
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bool key_found = mf_classic_dict_is_key_present_str(dict, temp_key);
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furi_string_free(temp_key);
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return key_found;
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}
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bool mf_classic_dict_add_key_str(MfClassicDict* dict, FuriString* key) {
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furi_assert(dict);
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furi_assert(dict->stream);
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furi_string_cat_printf(key, "\n");
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bool key_added = false;
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do {
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if(!stream_seek(dict->stream, 0, StreamOffsetFromEnd)) break;
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if(!stream_insert_string(dict->stream, key)) break;
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dict->total_keys++;
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key_added = true;
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} while(false);
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furi_string_left(key, 12);
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return key_added;
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}
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bool mf_classic_dict_add_key(MfClassicDict* dict, uint8_t* key) {
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furi_assert(dict);
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furi_assert(dict->stream);
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FuriString* temp_key;
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temp_key = furi_string_alloc();
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mf_classic_dict_int_to_str(key, temp_key);
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bool key_added = mf_classic_dict_add_key_str(dict, temp_key);
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furi_string_free(temp_key);
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return key_added;
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}
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bool mf_classic_dict_get_key_at_index_str(MfClassicDict* dict, FuriString* key, uint32_t target) {
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furi_assert(dict);
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furi_assert(dict->stream);
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FuriString* next_line;
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uint32_t index = 0;
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next_line = furi_string_alloc();
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furi_string_reset(key);
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bool key_found = false;
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while(!key_found) {
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if(!stream_read_line(dict->stream, next_line)) break;
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if(furi_string_get_char(next_line, 0) == '#') continue;
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if(furi_string_size(next_line) != NFC_MF_CLASSIC_KEY_LEN) continue;
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if(index++ != target) continue;
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furi_string_set_n(key, next_line, 0, 12);
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key_found = true;
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}
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furi_string_free(next_line);
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return key_found;
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}
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bool mf_classic_dict_get_key_at_index(MfClassicDict* dict, uint64_t* key, uint32_t target) {
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furi_assert(dict);
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furi_assert(dict->stream);
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FuriString* temp_key;
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temp_key = furi_string_alloc();
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bool key_found = mf_classic_dict_get_key_at_index_str(dict, temp_key, target);
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if(key_found) {
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mf_classic_dict_str_to_int(temp_key, key);
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}
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furi_string_free(temp_key);
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return key_found;
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}
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bool mf_classic_dict_find_index_str(MfClassicDict* dict, FuriString* key, uint32_t* target) {
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furi_assert(dict);
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furi_assert(dict->stream);
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FuriString* next_line;
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next_line = furi_string_alloc();
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bool key_found = false;
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uint32_t index = 0;
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stream_rewind(dict->stream);
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while(!key_found) {
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if(!stream_read_line(dict->stream, next_line)) break;
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if(furi_string_get_char(next_line, 0) == '#') continue;
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if(furi_string_size(next_line) != NFC_MF_CLASSIC_KEY_LEN) continue;
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furi_string_left(next_line, 12);
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if(!furi_string_equal(key, next_line)) continue;
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key_found = true;
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*target = index;
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}
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furi_string_free(next_line);
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return key_found;
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}
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bool mf_classic_dict_find_index(MfClassicDict* dict, uint8_t* key, uint32_t* target) {
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furi_assert(dict);
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furi_assert(dict->stream);
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FuriString* temp_key;
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temp_key = furi_string_alloc();
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mf_classic_dict_int_to_str(key, temp_key);
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bool key_found = mf_classic_dict_find_index_str(dict, temp_key, target);
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furi_string_free(temp_key);
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return key_found;
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}
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bool mf_classic_dict_delete_index(MfClassicDict* dict, uint32_t target) {
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furi_assert(dict);
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furi_assert(dict->stream);
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FuriString* next_line;
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next_line = furi_string_alloc();
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uint32_t index = 0;
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bool key_removed = false;
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while(!key_removed) {
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if(!stream_read_line(dict->stream, next_line)) break;
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if(furi_string_get_char(next_line, 0) == '#') continue;
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if(furi_string_size(next_line) != NFC_MF_CLASSIC_KEY_LEN) continue;
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if(index++ != target) continue;
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stream_seek(dict->stream, -NFC_MF_CLASSIC_KEY_LEN, StreamOffsetFromCurrent);
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if(!stream_delete(dict->stream, NFC_MF_CLASSIC_KEY_LEN)) break;
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dict->total_keys--;
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key_removed = true;
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}
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furi_string_free(next_line);
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return key_removed;
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}
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