d2460a8a90
When using void pointers in calculations, the behaviour is undefined. Arithmetic operations on 'void *' is a GNU C extension, which defines the 'sizeof(void)' to be 1.
459 lines
11 KiB
C
459 lines
11 KiB
C
/*
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This file is part of telegram-client.
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Telegram-client is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 2 of the License, or
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(at your option) any later version.
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Telegram-client is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this telegram-client. If not, see <http://www.gnu.org/licenses/>.
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Copyright Nikolay Durov, Andrey Lopatin 2012-2013
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Copyright Vitaly Valtman 2013
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*/
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#ifndef __MTPROTO_COMMON_H__
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#define __MTPROTO_COMMON_H__
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#include <string.h>
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#include <openssl/rsa.h>
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#include <openssl/bn.h>
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#include <openssl/aes.h>
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#include <stdio.h>
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#include "interface.h"
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#include "tools.h"
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#include "constants.h"
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/* DH key exchange protocol data structures */
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#define CODE_req_pq 0x60469778
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#define CODE_resPQ 0x05162463
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#define CODE_req_DH_params 0xd712e4be
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#define CODE_p_q_inner_data 0x83c95aec
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#define CODE_server_DH_inner_data 0xb5890dba
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#define CODE_server_DH_params_fail 0x79cb045d
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#define CODE_server_DH_params_ok 0xd0e8075c
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#define CODE_set_client_DH_params 0xf5045f1f
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#define CODE_client_DH_inner_data 0x6643b654
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#define CODE_dh_gen_ok 0x3bcbf734
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#define CODE_dh_gen_retry 0x46dc1fb9
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#define CODE_dh_gen_fail 0xa69dae02
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/* service messages */
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#define CODE_rpc_result 0xf35c6d01
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#define CODE_rpc_error 0x2144ca19
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#define CODE_msg_container 0x73f1f8dc
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#define CODE_msg_copy 0xe06046b2
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#define CODE_msgs_ack 0x62d6b459
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#define CODE_bad_msg_notification 0xa7eff811
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#define CODE_bad_server_salt 0xedab447b
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#define CODE_msgs_state_req 0xda69fb52
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#define CODE_msgs_state_info 0x04deb57d
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#define CODE_msgs_all_info 0x8cc0d131
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#define CODE_new_session_created 0x9ec20908
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#define CODE_msg_resend_req 0x7d861a08
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#define CODE_ping 0x7abe77ec
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#define CODE_pong 0x347773c5
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#define CODE_destroy_session 0xe7512126
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#define CODE_destroy_session_ok 0xe22045fc
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#define CODE_destroy_session_none 0x62d350c9
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#define CODE_destroy_sessions 0x9a6face8
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#define CODE_destroy_sessions_res 0xa8164668
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#define CODE_get_future_salts 0xb921bd04
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#define CODE_future_salt 0x0949d9dc
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#define CODE_future_salts 0xae500895
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#define CODE_rpc_drop_answer 0x58e4a740
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#define CODE_rpc_answer_unknown 0x5e2ad36e
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#define CODE_rpc_answer_dropped_running 0xcd78e586
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#define CODE_rpc_answer_dropped 0xa43ad8b7
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#define CODE_msg_detailed_info 0x276d3ec6
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#define CODE_msg_new_detailed_info 0x809db6df
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#define CODE_ping_delay_disconnect 0xf3427b8c
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#define CODE_gzip_packed 0x3072cfa1
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#define CODE_input_peer_notify_settings_old 0x3cf4b1be
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#define CODE_peer_notify_settings_old 0xddbcd4a5
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#define CODE_user_profile_photo_old 0x990d1493
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#define CODE_msg_new_detailed_info 0x809db6df
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#define CODE_msg_detailed_info 0x276d3ec6
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/* not really a limit, for struct encrypted_message only */
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// #define MAX_MESSAGE_INTS 16384
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#define MAX_MESSAGE_INTS 1048576
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#define MAX_PROTO_MESSAGE_INTS 1048576
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#define PACKET_BUFFER_SIZE (16384 * 100 + 16) // temp fix
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#pragma pack(push,4)
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struct encrypted_message {
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// unencrypted header
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long long auth_key_id;
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char msg_key[16];
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// encrypted part, starts with encrypted header
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long long server_salt;
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long long session_id;
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// long long auth_key_id2; // removed
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// first message follows
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long long msg_id;
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int seq_no;
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int msg_len; // divisible by 4
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int message[MAX_MESSAGE_INTS];
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};
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struct worker_descr {
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int addr;
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int port;
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int pid;
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int start_time;
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int id;
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};
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struct rpc_ready_packet {
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int len;
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int seq_num;
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int type;
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struct worker_descr worker;
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int worker_ready_cnt;
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int crc32;
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};
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struct front_descr {
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int addr;
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int port;
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int pid;
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int start_time;
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int id;
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};
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struct rpc_front_packet {
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int len;
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int seq_num;
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int type;
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struct front_descr front;
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long long hash_mult;
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int rem, mod;
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int crc32;
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};
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struct middle_descr {
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int addr;
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int port;
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int pid;
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int start_time;
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int id;
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};
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struct rpc_front_ack {
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int len;
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int seq_num;
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int type;
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struct middle_descr middle;
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int crc32;
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};
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struct rpc_front_err {
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int len;
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int seq_num;
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int type;
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int errcode;
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struct middle_descr middle;
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long long hash_mult;
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int rem, mod;
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int crc32;
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};
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struct rpc_proxy_req {
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int len;
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int seq_num;
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int type;
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int flags;
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long long ext_conn_id;
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unsigned char remote_ipv6[16];
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int remote_port;
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unsigned char our_ipv6[16];
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int our_port;
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int data[];
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};
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#define PROXY_HDR(__x) ((struct rpc_proxy_req *)((__x) - offsetof(struct rpc_proxy_req, data)))
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struct rpc_proxy_ans {
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int len;
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int seq_num;
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int type;
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int flags; // +16 = small error packet, +8 = flush immediately
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long long ext_conn_id;
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int data[];
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};
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struct rpc_close_conn {
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int len;
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int seq_num;
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int type;
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long long ext_conn_id;
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int crc32;
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};
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struct rpc_close_ext {
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int len;
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int seq_num;
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int type;
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long long ext_conn_id;
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int crc32;
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};
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struct rpc_simple_ack {
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int len;
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int seq_num;
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int type;
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long long ext_conn_id;
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int confirm_key;
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int crc32;
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};
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#pragma pack(pop)
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BN_CTX *BN_ctx;
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void prng_seed (const char *password_filename, int password_length);
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int serialize_bignum (BIGNUM *b, char *buffer, int maxlen);
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long long compute_rsa_key_fingerprint (RSA *key);
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extern int *packet_buffer;
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extern int *packet_ptr;
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static inline void out_ints (const int *what, int len) {
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assert (packet_ptr + len <= packet_buffer + PACKET_BUFFER_SIZE);
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memcpy (packet_ptr, what, len * 4);
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packet_ptr += len;
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}
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static inline void out_int (int x) {
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assert (packet_ptr + 1 <= packet_buffer + PACKET_BUFFER_SIZE);
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*packet_ptr++ = x;
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}
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static inline void out_long (long long x) {
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assert (packet_ptr + 2 <= packet_buffer + PACKET_BUFFER_SIZE);
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*(long long *)packet_ptr = x;
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packet_ptr += 2;
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}
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static inline void clear_packet (void) {
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packet_ptr = packet_buffer;
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}
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void out_cstring (const char *str, long len);
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void out_cstring_careful (const char *str, long len);
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void out_data (const void *data, long len);
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static inline void out_string (const char *str) {
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out_cstring (str, strlen (str));
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}
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static inline void out_bignum (BIGNUM *n) {
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int l = serialize_bignum (n, (char *)packet_ptr, (PACKET_BUFFER_SIZE - (packet_ptr - packet_buffer)) * 4);
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assert (l > 0);
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packet_ptr += l >> 2;
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}
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extern int *in_ptr, *in_end;
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void fetch_pts (void);
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void fetch_qts (void);
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void fetch_date (void);
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void fetch_seq (void);
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static inline int prefetch_strlen (void) {
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if (in_ptr >= in_end) {
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return -1;
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}
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unsigned l = *in_ptr;
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if ((l & 0xff) < 0xfe) {
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l &= 0xff;
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return (in_end >= in_ptr + (l >> 2) + 1) ? (int)l : -1;
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} else if ((l & 0xff) == 0xfe) {
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l >>= 8;
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return (l >= 254 && in_end >= in_ptr + ((l + 7) >> 2)) ? (int)l : -1;
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} else {
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return -1;
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}
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}
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extern int verbosity;
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static inline char *fetch_str (int len) {
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assert (len >= 0);
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if (verbosity > 6) {
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logprintf ("fetch_string: len = %d\n", len);
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}
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if (len < 254) {
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char *str = (char *) in_ptr + 1;
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in_ptr += 1 + (len >> 2);
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return str;
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} else {
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char *str = (char *) in_ptr + 4;
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in_ptr += (len + 7) >> 2;
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return str;
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}
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}
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static inline char *fetch_str_dup (void) {
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int l = prefetch_strlen ();
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assert (l >= 0);
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char *s = talloc (l + 1);
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memcpy (s, fetch_str (l), l);
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s[l] = 0;
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return s;
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}
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static inline int fetch_update_str (char **s) {
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if (!*s) {
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*s = fetch_str_dup ();
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return 1;
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}
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int l = prefetch_strlen ();
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char *r = fetch_str (l);
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if (memcmp (*s, r, l) || (*s)[l]) {
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free (*s);
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*s = talloc (l + 1);
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memcpy (*s, r, l);
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(*s)[l] = 0;
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return 1;
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}
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return 0;
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}
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static inline int fetch_update_int (int *value) {
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if (*value == *in_ptr) {
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in_ptr ++;
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return 0;
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} else {
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*value = *(in_ptr ++);
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return 1;
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}
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}
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static inline int fetch_update_long (long long *value) {
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if (*value == *(long long *)in_ptr) {
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in_ptr += 2;
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return 0;
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} else {
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*value = *(long long *)(in_ptr);
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in_ptr += 2;
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return 1;
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}
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}
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static inline int set_update_int (int *value, int new_value) {
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if (*value == new_value) {
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return 0;
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} else {
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*value = new_value;
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return 1;
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}
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}
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static inline void fetch_skip (int n) {
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in_ptr += n;
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}
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static inline void fetch_skip_str (void) {
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int l = prefetch_strlen ();
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assert (l >= 0);
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fetch_str (l);
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}
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static __inline__ unsigned long long rdtsc(void) {
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unsigned hi, lo;
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__asm__ __volatile__ ("rdtsc" : "=a"(lo), "=d"(hi));
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return ( (unsigned long long)lo)|( ((unsigned long long)hi)<<32 );
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}
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static inline long have_prefetch_ints (void) {
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return in_end - in_ptr;
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}
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int fetch_bignum (BIGNUM *x);
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static inline int fetch_int (void) {
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if (verbosity > 6) {
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logprintf ("fetch_int: 0x%08x (%d)\n", *in_ptr, *in_ptr);
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}
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return *(in_ptr ++);
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}
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static inline int fetch_bool (void) {
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if (verbosity > 6) {
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logprintf ("fetch_bool: 0x%08x (%d)\n", *in_ptr, *in_ptr);
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}
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assert (*(in_ptr) == (int)CODE_bool_true || *(in_ptr) == (int)CODE_bool_false);
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return *(in_ptr ++) == (int)CODE_bool_true;
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}
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static inline int prefetch_int (void) {
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return *(in_ptr);
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}
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static inline void prefetch_data (void *data, int size) {
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memcpy (data, in_ptr, size);
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}
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static inline void fetch_data (void *data, int size) {
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memcpy (data, in_ptr, size);
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assert (!(size & 3));
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in_ptr += (size >> 2);
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}
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static inline long long fetch_long (void) {
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long long r = *(long long *)in_ptr;
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in_ptr += 2;
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return r;
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}
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static inline double fetch_double (void) {
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double r = *(double *)in_ptr;
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in_ptr += 2;
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return r;
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}
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static inline void fetch_ints (void *data, int count) {
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memcpy (data, in_ptr, 4 * count);
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in_ptr += count;
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}
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int get_random_bytes (unsigned char *buf, int n);
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int pad_rsa_encrypt (char *from, int from_len, char *to, int size, BIGNUM *N, BIGNUM *E);
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int pad_rsa_decrypt (char *from, int from_len, char *to, int size, BIGNUM *N, BIGNUM *D);
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extern long long rsa_encrypted_chunks, rsa_decrypted_chunks;
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extern unsigned char aes_key_raw[32], aes_iv[32];
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extern AES_KEY aes_key;
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void init_aes_unauth (const char server_nonce[16], const char hidden_client_nonce[32], int encrypt);
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void init_aes_auth (char auth_key[192], char msg_key[16], int encrypt);
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int pad_aes_encrypt (char *from, int from_len, char *to, int size);
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int pad_aes_decrypt (char *from, int from_len, char *to, int size);
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static inline void hexdump_in (void) {
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hexdump (in_ptr, in_end);
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}
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static inline void hexdump_out (void) {
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hexdump (packet_buffer, packet_ptr);
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}
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#ifdef __MACH__
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#define CLOCK_REALTIME 0
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#define CLOCK_MONOTONIC 1
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#endif
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void my_clock_gettime (int clock_id, struct timespec *T);
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#endif
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