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17 Commits

Author SHA1 Message Date
angt
81cab007d0 Resend packet on partial tun_write() 2016-01-14 10:25:37 +01:00
angt
606396839f Don't update sa->base with old acks 2016-01-14 09:27:15 +01:00
angt
a8e37bafb9 Use realloc(): easier, better, faster, stronger 2016-01-13 16:19:58 +01:00
angt
87a38012cd Don't forget to free() seq_elem 2016-01-13 16:16:05 +01:00
angt
f04816e9a5 Try to detect TCP retransmission 2016-01-12 18:07:58 +01:00
angt
7107d036b1 Code cleanup 2016-01-07 08:30:21 +01:00
angt
30502e05ec Print state info in stdout if no statefile 2016-01-06 18:41:39 +01:00
angt
905673ecec Add timeout option 2016-01-06 18:33:59 +01:00
angt
cfbb77c710 Code cleanup 2016-01-06 17:57:12 +01:00
angt
13dcdc5afb Reduce GT_BUFFER_SIZE 2016-01-06 16:03:42 +01:00
angt
56ec81bf92 Fix last commit 2016-01-06 12:15:28 +01:00
angt
f1024381e0 Remove old code from qos 2016-01-06 11:29:13 +01:00
angt
3f3b21f08d Update Makefile.am 2016-01-05 14:16:30 +01:00
angt
40dd5ce18a Code cleanup 2016-01-05 14:07:18 +01:00
angt
5efb379251 Remove byte_*() as we don't use freestanding anymore 2016-01-05 12:26:38 +01:00
angt
2eb6521f9c Add a simple tcp tracker in debug mode 2016-01-05 08:24:03 +01:00
angt
bfd81e9666 Code cleanup 2016-01-04 20:07:11 +01:00
11 changed files with 616 additions and 357 deletions

View File

@@ -6,9 +6,10 @@ glorytun_CFLAGS = $(libsodium_CFLAGS)
glorytun_LDADD = $(libsodium_LIBS)
glorytun_SOURCES = \
src/common.h \
src/common-static.h \
src/common.c \
src/ip-static.h \
src/buffer.h \
src/ip.h \
src/str.h \
src/main.c \
src/option.c \
src/option.h \

63
src/buffer.h Normal file
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@@ -0,0 +1,63 @@
#pragma once
#include "common.h"
typedef struct buffer buffer_t;
struct buffer {
uint8_t *data;
uint8_t *read;
uint8_t *write;
uint8_t *end;
};
static inline void buffer_setup (buffer_t *buffer, void *data, size_t size)
{
if (!data)
data = malloc(ALIGN(size));
buffer->data = data;
buffer->read = data;
buffer->write = data;
buffer->end = data;
buffer->end += size;
}
static inline void buffer_format (buffer_t *buffer)
{
buffer->write = buffer->data;
buffer->read = buffer->data;
}
_pure_
static inline size_t buffer_size (buffer_t *buffer)
{
return buffer->end-buffer->data;
}
_pure_
static inline size_t buffer_write_size (buffer_t *buffer)
{
return buffer->end-buffer->write;
}
_pure_
static inline size_t buffer_read_size (buffer_t *buffer)
{
return buffer->write-buffer->read;
}
static inline void buffer_shift (buffer_t *buffer)
{
if (buffer->read==buffer->write) {
buffer_format(buffer);
} else {
const uint8_t *src = PALIGN_DOWN(buffer->read);
const size_t size = ALIGN(buffer->write-src);
if (buffer->data+size<src) {
memcpy(buffer->data, src, size);
buffer->read -= src-buffer->data;
buffer->write -= src-buffer->data;
}
}
}

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@@ -1,155 +0,0 @@
#pragma once
#include "common.h"
#include <unistd.h>
#include <errno.h>
static inline void byte_set (void *dst, const char value, size_t size)
{
if (!dst)
return;
char *restrict d = dst;
while (size--)
*d++ = value;
}
static inline void byte_cpy (void *dst, const void *src, size_t size)
{
if (!dst)
return;
char *restrict d = dst;
const char *restrict s = src;
while (size--)
*d++ = *s++;
}
static inline size_t str_cpy (char *restrict dst, const char *restrict src, size_t len)
{
if (!dst || !src)
return 0;
size_t i;
for (i=0; i<len && src[i]; i++)
dst[i] = src[i];
dst[i] = 0;
return i;
}
_pure_
static inline int str_empty (const char *restrict str)
{
return !str || !str[0];
}
_pure_
static inline size_t str_cmp (const char *restrict sa, const char *restrict sb)
{
if (!sa || !sb)
return 1;
size_t i = 0;
while (sa[i]==sb[i])
if (!sa[i++])
return 0;
return i+1;
}
_pure_
static inline size_t str_len (const char *restrict str)
{
if (!str)
return 0;
size_t i = 0;
while (str[i])
i++;
return i;
}
static inline char *str_cat (const char *const strs[], size_t count)
{
size_t size = 1;
for (size_t i=0; i<count; i++)
size += str_len(strs[i]);
char *str = malloc(size);
if (!str)
return NULL;
char *p = str;
for (size_t i=0; i<count; i++) {
size_t len = str_len(strs[i]);
byte_cpy(p, strs[i], len);
p += len;
}
p[0] = 0;
return str;
}
static inline void buffer_setup (buffer_t *buffer, void *data, size_t size)
{
if (!data)
data = malloc(ALIGN(size));
buffer->data = data;
buffer->read = data;
buffer->write = data;
buffer->end = data;
buffer->end += size;
}
static inline void buffer_format (buffer_t *buffer)
{
buffer->write = buffer->data;
buffer->read = buffer->data;
}
_pure_
static inline size_t buffer_size (buffer_t *buffer)
{
return buffer->end-buffer->data;
}
_pure_
static inline size_t buffer_write_size (buffer_t *buffer)
{
return buffer->end-buffer->write;
}
_pure_
static inline size_t buffer_read_size (buffer_t *buffer)
{
return buffer->write-buffer->read;
}
static inline void buffer_shift (buffer_t *buffer)
{
if (buffer->read==buffer->write) {
buffer_format(buffer);
} else {
const uint8_t *src = PALIGN_DOWN(buffer->read);
const size_t size = ALIGN(buffer->write-src);
if (buffer->data+size<src) {
byte_cpy(buffer->data, src, size);
buffer->read -= src-buffer->data;
buffer->write -= src-buffer->data;
}
}
}

View File

@@ -2,6 +2,9 @@
#include <stdlib.h>
#include <stdint.h>
#include <string.h>
#include <unistd.h>
#include <errno.h>
#define COUNT(x) (sizeof(x)/sizeof(x[0]))
@@ -26,15 +29,6 @@
#define _const_ __attribute__ ((const))
#define _align_(...) __attribute__ ((aligned(__VA_ARGS__)))
typedef struct buffer buffer_t;
struct buffer {
uint8_t *data;
uint8_t *read;
uint8_t *write;
uint8_t *end;
};
int gt_print (const char *, ...) _printf_(1,2);
void gt_log (const char *, ...) _printf_(1,2);
void gt_fatal (const char *, ...) _printf_(1,2) _noreturn_;

View File

@@ -1,5 +1,7 @@
#include "common.h"
#include "db.h"
#include "common-static.h"
#include "str.h"
#define CBIT(X) (1&(intptr_t)(X))
#define CBIT_PTR(X) (uint8_t *)(1|(intptr_t)(X))

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@@ -1,57 +0,0 @@
#pragma once
#include <stdint.h>
_pure_
static inline int ip_get_version (const uint8_t *data, size_t size)
{
if (size<20) // XXX
return -1; // XXX
return data[0]>>4;
}
_pure_
static inline ssize_t ip_get_size (const int ip_version, const uint8_t *data, size_t size)
{
switch (ip_version) {
case 4:
return ((data[2]<<8)|data[3]);
case 6:
return ((data[4]<<8)|data[5])+40;
case -1:
return -1;
}
return 0;
}
_pure_
static inline ssize_t ip_get_proto (const int ip_version, const uint8_t *data, size_t size)
{
switch (ip_version) {
case 4:
return data[9];
case 6:
return data[6];
case -1:
return -1;
}
return 0;
}
_pure_
static inline ssize_t ip_get_hdr_size (const int ip_version, const uint8_t *data, size_t size)
{
switch (ip_version) {
case 4:
return (data[0]&0xF)<<2;
case 6:
return 40;
case -1:
return -1;
}
return 0;
}

39
src/ip.h Normal file
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@@ -0,0 +1,39 @@
#pragma once
#include <stdint.h>
struct ip_common {
uint8_t version;
uint8_t proto;
uint8_t hdr_size;
uint16_t size;
};
_pure_
static inline uint8_t ip_get_version (const uint8_t *data, size_t size)
{
if (size<20)
return 0;
return data[0]>>4;
}
static inline int ip_get_common (struct ip_common *ic, const uint8_t *data, size_t size)
{
ic->version = ip_get_version(data, size);
switch (ic->version) {
case 4:
ic->proto = data[9];
ic->hdr_size = (data[0]&0xF)<<2;
ic->size = ((data[2]<<8)|data[3]);
return 0;
case 6:
ic->proto = data[6];
ic->hdr_size = 40;
ic->size = ((data[4]<<8)|data[5])+40;
return 0;
}
return -1;
}

View File

@@ -1,11 +1,19 @@
#include "common.h"
#include "buffer.h"
#include "ip.h"
#include "str.h"
#include "option.h"
#include "tun.h"
#include "db.h"
#include <inttypes.h>
#include <limits.h>
#include <stdio.h>
#include <signal.h>
#include <string.h>
#include <poll.h>
#include <fcntl.h>
#include <sys/time.h>
#include <sys/fcntl.h>
#include <sys/stat.h>
#ifndef __FAVOR_BSD
@@ -27,17 +35,11 @@
#include <sodium.h>
#include "common-static.h"
#include "ip-static.h"
#include "option.h"
#include "tun.h"
#ifndef O_CLOEXEC
#define O_CLOEXEC 0
#endif
#define GT_BUFFER_SIZE (4*1024*1024)
#define GT_BUFFER_SIZE (64*1024)
#define GT_TIMEOUT (5000)
#define GT_MTU_MAX (1500)
#define GT_TUNR_SIZE (0x7FFF-16)
@@ -49,11 +51,6 @@ struct fdbuf {
buffer_t write;
};
struct blk {
size_t size;
uint8_t data[GT_MTU_MAX] _align_(16);
};
struct crypto_ctx {
struct {
crypto_aead_aes256gcm_state state;
@@ -102,6 +99,7 @@ enum sk_opt {
sk_defer_accept,
sk_acceptfilter,
sk_quickack,
sk_user_timeout,
};
static void sk_set (int fd, enum sk_opt opt, const void *val, socklen_t len)
@@ -151,6 +149,11 @@ static void sk_set (int fd, enum sk_opt opt, const void *val, socklen_t len)
[sk_acceptfilter] = { "SO_ACCEPTFILTER",
#ifdef SO_ACCEPTFILTER
1, SOL_SOCKET, SO_ACCEPTFILTER,
#endif
},
[sk_user_timeout] = { "TCP_USER_TIMEOUT",
#ifdef TCP_USER_TIMEOUT
1, IPPROTO_TCP, TCP_USER_TIMEOUT,
#endif
},
};
@@ -186,8 +189,7 @@ static int sk_listen (int fd, struct addrinfo *ai)
#ifdef __linux__
sk_set_int(fd, sk_defer_accept, GT_TIMEOUT/1000);
#else
char data[256] = {0};
str_cpy(data, "dataready", sizeof(data)-1);
char data[256] = "dataready";
sk_set(fd, sk_acceptfilter, &data, sizeof(data));
#endif
@@ -271,7 +273,7 @@ static char *sk_get_name (int fd)
static struct addrinfo *ai_create (const char *host, const char *port, int listener)
{
if (!port || !port[0]) {
if (str_empty(port)) {
gt_log("port is not valid\n");
return NULL;
}
@@ -384,9 +386,13 @@ static ssize_t fd_write (int fd, const void *data, size_t size)
return ret;
}
static ssize_t fd_write_str (int fd, const char *str)
static void state_write (int fd, const char *str)
{
return fd_write(fd, str, str_len(str));
if (fd==-1) {
gt_print("state: %s", str);
} else {
fd_write(fd, str, str_len(str));
}
}
static size_t fd_read_all (int fd, void *data, size_t size)
@@ -533,20 +539,256 @@ static inline uint16_t sum16_final (uint32_t sum)
return ~(sum+(sum>>16));
}
static void gt_print_hdr (const int ip_version, uint8_t *data, size_t ip_size)
{
const ssize_t ip_proto = ip_get_proto(ip_version, data, ip_size);
const ssize_t ip_hdr_size = ip_get_hdr_size(ip_version, data, ip_size);
struct seq_elem {
uint32_t seq;
uint32_t size;
};
if (ip_proto<0 || ip_hdr_size<=0)
struct seq_array {
struct seq_elem *elem;
uint32_t count;
uint32_t base;
};
struct tcp_entry {
uint8_t key[37];
struct {
struct seq_array sa;
size_t retrans;
} data[2];
};
void tcp_entry_free (struct tcp_entry *te)
{
free(te->data[0].sa.elem);
free(te->data[1].sa.elem);
free(te);
}
void sa_insert_elem (struct seq_array *sa, uint32_t i, uint32_t seq, uint32_t size)
{
if (sa->count<i)
return;
uint32_t sum = (size_t)ip_proto+ip_size-(size_t)ip_hdr_size;
if (!(sa->count&7)) {
struct seq_elem *tmp = realloc(sa->elem, (sa->count+8)*sizeof(struct seq_elem));
if (!tmp) {
gt_log("couldn't realloc!\n");
return;
}
sa->elem = tmp;
}
memmove(&sa->elem[i+1], &sa->elem[i], (sa->count-i)*sizeof(struct seq_elem));
sa->elem[i].seq = seq;
sa->elem[i].size = size;
sa->count++;
}
void sa_remove_elem (struct seq_array *sa, uint32_t i)
{
if (sa->count<i+1)
return;
sa->count--;
memmove(&sa->elem[i], &sa->elem[i+1], (sa->count-i)*sizeof(struct seq_elem));
}
int sa_have (struct seq_array *sa, uint32_t seq, uint32_t size)
{
uint32_t i;
uint32_t seqa = seq-sa->base;
for (i=0; i<sa->count; i++) {
uint32_t seqb = sa->elem[i].seq-sa->base;
if (seqb>=seqa) {
uint32_t d = seqb-seqa;
if (d>size)
return 0;
} else {
uint32_t d = seqa-seqb;
if (d>=sa->elem[i].size)
continue;
if (d+size>sa->elem[i].size) {
gt_print("sa_have:part\n");
return 1; // XXX 0
}
}
return 1;
}
return 0;
}
void sa_rebase (struct seq_array *sa, uint32_t seq)
{
if (!sa->count)
return;
if (seq==sa->base)
return;
uint32_t size = seq-sa->elem[0].seq;
if (size==sa->elem[0].size) {
sa_remove_elem(sa, 0);
} else {
if (size>sa->elem[0].size)
return;
sa->elem[0].seq = seq;
sa->elem[0].size -= size;
}
sa->base = seq;
}
void sa_insert (struct seq_array *sa, uint32_t seq, uint32_t size)
{
uint32_t i;
uint32_t seqa = seq-sa->base;
for (i=0; i<sa->count; i++) {
uint32_t seqb = sa->elem[i].seq-sa->base;
if (seqb>=seqa) {
uint32_t d = seqb-seqa;
if (d>size)
break;
sa->elem[i].seq = seq;
uint32_t new_size = sa->elem[i].size+d;
if (new_size>size) {
sa->elem[i].size = new_size;
} else {
sa->elem[i].size = size;
}
} else {
uint32_t d = seqa-seqb;
if (d>sa->elem[i].size)
continue;
uint32_t new_size = size+d;
if (new_size>sa->elem[i].size)
sa->elem[i].size = new_size;
}
if (i+1<sa->count) {
if (seqb+sa->elem[i].size==sa->elem[i+1].seq-sa->base) {
sa->elem[i].size += sa->elem[i+1].size;
sa_remove_elem(sa, i+1);
}
}
return;
}
sa_insert_elem(sa, i, seq, size);
}
static int tcp_entry_set_key (struct tcp_entry *te, struct ip_common *ic, uint8_t *data)
{
uint8_t *key = &te->key[1];
size_t size = 0;
switch (ic->version) {
case 4:
size = 8;
memcpy(key, &data[12], 8);
break;
case 6:
size = 32;
memcpy(key, &data[9], 32);
break;
}
memcpy(&key[size], &data[ic->hdr_size], 4);
te->key[0] = size+4;
return 0;
}
static int tcp_entry_set_key_rev (struct tcp_entry *te, struct ip_common *ic, uint8_t *data)
{
uint8_t *key = &te->key[1];
size_t size = 0;
switch (ic->version) {
case 4:
size = 8;
memcpy(key, &data[12+4], 4);
memcpy(key+4, &data[12], 4);
break;
case 6:
size = 32;
memcpy(key, &data[9+16], 16);
memcpy(key+16, &data[9], 16);
break;
}
memcpy(&key[size], &data[ic->hdr_size+2], 2);
memcpy(&key[size+2], &data[ic->hdr_size], 2);
te->key[0] = size+4;
return 0;
}
static void gt_print_entry (struct tcp_entry *te)
{
uint8_t *key = &te->key[1];
size_t size = te->key[0];
char ip0[INET6_ADDRSTRLEN];
char ip1[INET6_ADDRSTRLEN];
uint16_t port0, port1;
switch (size) {
case 8+4:
inet_ntop(AF_INET, key, ip0, sizeof(ip0));
inet_ntop(AF_INET, key+4, ip1, sizeof(ip1));
port0 = (key[8]<<8)|key[9];
port1 = (key[10]<<8)|key[11];
break;
case 32+4:
inet_ntop(AF_INET6, key, ip0, sizeof(ip0));
inet_ntop(AF_INET6, key+16, ip1, sizeof(ip1));
port0 = (key[32]<<8)|key[33];
port1 = (key[34]<<8)|key[35];
break;
}
gt_print("connection:%s.%hu-%s.%hu\t"
"retrans:%zu, %zu\n",
ip0, port0, ip1, port1,
te->data[0].retrans,
te->data[1].retrans);
}
static void gt_print_hdr (struct ip_common *ic, uint8_t *data)
{
if (!ic->hdr_size)
return;
uint32_t sum = ic->proto+ic->size-ic->hdr_size;
char ip_src[INET6_ADDRSTRLEN];
char ip_dst[INET6_ADDRSTRLEN];
switch (ip_version) {
switch (ic->version) {
case 4:
inet_ntop(AF_INET, &data[12], ip_src, sizeof(ip_src));
inet_ntop(AF_INET, &data[16], ip_dst, sizeof(ip_dst));
@@ -559,16 +801,18 @@ static void gt_print_hdr (const int ip_version, uint8_t *data, size_t ip_size)
break;
}
if (ip_proto==IPPROTO_TCP) {
uint8_t *const packet = &data[ic->hdr_size];
if (ic->proto==IPPROTO_TCP) {
struct tcphdr tcp;
byte_cpy(&tcp, &data[ip_hdr_size], sizeof(tcp));
memcpy(&tcp, packet, sizeof(tcp));
uint16_t tcp_sum = ntohs(tcp.th_sum);
tcp.th_sum = 0;
sum = sum16(sum, (uint8_t *)&tcp, sizeof(tcp));
sum = sum16(sum, &data[ip_hdr_size+sizeof(tcp)], ip_size-ip_hdr_size-sizeof(tcp));
sum = sum16(sum, &packet[sizeof(tcp)], ic->size-ic->hdr_size-sizeof(tcp));
uint16_t computed_sum = sum16_final(sum);
tcp.th_sport = ntohs(tcp.th_sport);
@@ -577,9 +821,9 @@ static void gt_print_hdr (const int ip_version, uint8_t *data, size_t ip_size)
tcp.th_ack = ntohl(tcp.th_ack);
tcp.th_win = ntohs(tcp.th_win);
gt_print("proto:%zi\tsrc:%s.%u\tdst:%s.%u\tseq:%u\tack:%u\twin:%u\tsize:%zu\tflags:%c%c%c%c%c%c\tsum:%i\n",
ip_proto, ip_src, tcp.th_sport, ip_dst, tcp.th_dport,
tcp.th_seq, tcp.th_ack, tcp.th_win, ip_size-ip_hdr_size+tcp.th_off*4,
gt_print("proto:%hhu\tsrc:%s.%u\tdst:%s.%u\tseq:%u\tack:%u\twin:%u\tsize:%u\tflags:%c%c%c%c%c%c\tsum:%i\n",
ic->proto, ip_src, tcp.th_sport, ip_dst, tcp.th_dport,
tcp.th_seq, tcp.th_ack, tcp.th_win, ic->size-ic->hdr_size-tcp.th_off*4,
(tcp.th_flags&TH_FIN) ?'F':'.',
(tcp.th_flags&TH_SYN) ?'S':'.',
(tcp.th_flags&TH_RST) ?'R':'.',
@@ -588,28 +832,97 @@ static void gt_print_hdr (const int ip_version, uint8_t *data, size_t ip_size)
(tcp.th_flags&TH_URG) ?'U':'.',
(computed_sum==tcp_sum));
} else if (ip_proto==IPPROTO_UDP) {
} else if (ic->proto==IPPROTO_UDP) {
struct udphdr udp;
byte_cpy(&udp, &data[ip_hdr_size], sizeof(udp));
memcpy(&udp, packet, sizeof(udp));
udp.uh_sport = ntohs(udp.uh_sport);
udp.uh_dport = ntohs(udp.uh_dport);
udp.uh_ulen = ntohs(udp.uh_ulen);
gt_print("proto:%zi\tsrc:%s.%u\tdst:%s.%u\tsize:%u\n",
ip_proto, ip_src, udp.uh_sport, ip_dst, udp.uh_dport, udp.uh_ulen-8);
gt_print("proto:%hhu\tsrc:%s.%u\tdst:%s.%u\tsize:%u\n",
ic->proto, ip_src, udp.uh_sport, ip_dst, udp.uh_dport, udp.uh_ulen-8);
} else {
gt_print("proto:%zi\tsrc:%s\tdst:%s\tsize:%zu\n",
ip_proto, ip_src, ip_dst, ip_size);
gt_print("proto:%hhu\tsrc:%s\tdst:%s\tsize:%hu\n",
ic->proto, ip_src, ip_dst, ic->size);
}
}
static int gt_track (uint8_t **db, struct ip_common *ic, uint8_t *data, int rev)
{
if (ic->proto!=IPPROTO_TCP)
return 0;
if (!ic->hdr_size)
return 1;
struct tcp_entry entry;
if (rev) {
tcp_entry_set_key_rev(&entry, ic, data);
} else {
tcp_entry_set_key(&entry, ic, data);
}
struct tcphdr tcp;
memcpy(&tcp, &data[ic->hdr_size], sizeof(tcp));
tcp.th_seq = ntohl(tcp.th_seq);
tcp.th_ack = ntohl(tcp.th_ack);
struct tcp_entry *r_entry = (void *)db_search(db, entry.key);
if (tcp.th_flags&(TH_FIN|TH_RST)) {
if (r_entry) {
gt_print_entry(r_entry);
db_remove(db, entry.key);
tcp_entry_free(r_entry);
}
return 0;
}
uint32_t size = ic->size-ic->hdr_size-tcp.th_off*4;
if (size && !r_entry) {
r_entry = calloc(1, sizeof(entry));
if (!r_entry)
return 0;
memcpy(r_entry->key, entry.key, sizeof(entry.key));
if (!db_insert(db, r_entry->key)) {
free(r_entry);
return 0;
}
}
if (!r_entry)
return 0;
if (r_entry->data[1-rev].sa.count && (tcp.th_flags&TH_ACK))
sa_rebase(&r_entry->data[1-rev].sa, tcp.th_ack);
if (!size)
return 0;
if (r_entry->data[rev].sa.count) {
if (sa_have(&r_entry->data[rev].sa, tcp.th_seq, size))
r_entry->data[rev].retrans++;
} else {
r_entry->data[rev].sa.base = tcp.th_seq;
}
sa_insert(&r_entry->data[rev].sa, tcp.th_seq, size);
return 0;
}
static int gt_setup_secretkey (struct crypto_ctx *ctx, char *keyfile)
{
const size_t size = sizeof(ctx->skey);
if (!keyfile) {
if (str_empty(keyfile)) {
char buf[2*size+1];
randombytes_buf(ctx->skey, size);
@@ -669,13 +982,13 @@ static int gt_setup_crypto (struct crypto_ctx *ctx, int fd, int listener)
crypto_generichash_state state;
byte_set(data_w, 0, size);
memset(data_w, 0, size);
randombytes_buf(data_w, nonce_size);
randombytes_buf(secret, sizeof(secret));
crypto_scalarmult_base(&data_w[nonce_size], secret);
byte_cpy(&data_w[size-hash_size-sizeof(gt)], gt, sizeof(gt));
memcpy(&data_w[size-hash_size-sizeof(gt)], gt, sizeof(gt));
crypto_generichash(&data_w[size-hash_size], hash_size,
data_w, size-hash_size, ctx->skey, sizeof(ctx->skey));
@@ -734,8 +1047,8 @@ static int gt_setup_crypto (struct crypto_ctx *ctx, int fd, int listener)
sodium_memzero(shared, sizeof(shared));
sodium_memzero(key, sizeof(key));
byte_cpy(ctx->read.nonce, data_r, nonce_size);
byte_cpy(ctx->write.nonce, data_w, nonce_size);
memcpy(ctx->read.nonce, data_r, nonce_size);
memcpy(ctx->write.nonce, data_w, nonce_size);
return 0;
}
@@ -762,6 +1075,8 @@ int main (int argc, char **argv)
long retry_const = 0;
long retry_limit = 1000000;
long user_timeout = 0;
struct option ka_opts[] = {
{ "count", &ka_count, option_long },
{ "idle", &ka_idle, option_long },
@@ -792,6 +1107,7 @@ int main (int argc, char **argv)
{ "retry", &retry_opts, option_option },
{ "daemon", NULL, option_option },
{ "statefile", &statefile, option_str },
{ "timeout", &user_timeout, option_long },
{ "debug", NULL, option_option },
{ "version", NULL, option_option },
{ NULL },
@@ -856,14 +1172,6 @@ int main (int argc, char **argv)
return 1;
}
struct blk *blks = calloc(256, sizeof(struct blk));
size_t blk_count = 0;
uint8_t blk_read = 0;
uint8_t blk_write = 0;
if (!blks)
return 1;
fd_set_nonblock(tun.fd);
buffer_setup(&tun.write, NULL, GT_TUNW_SIZE);
@@ -927,8 +1235,9 @@ int main (int argc, char **argv)
}
long retry = 0;
uint8_t *db = NULL;
fd_write_str(state_fd, "INITIALIZED\n");
state_write(state_fd, "INITIALIZED\n");
while (!gt_close) {
if (retry_count>=0 && retry>=retry_count+1) {
@@ -957,7 +1266,7 @@ int main (int argc, char **argv)
char *sockname = sk_get_name(sock.fd);
if (!sockname) {
if (str_empty(sockname)) {
close(sock.fd);
continue;
}
@@ -980,6 +1289,9 @@ int main (int argc, char **argv)
sk_set_int(sock.fd, sk_keepintvl, ka_interval);
}
if (user_timeout>0 && user_timeout<=INT_MAX)
sk_set_int(sock.fd, sk_user_timeout, user_timeout);
sk_set(sock.fd, sk_congestion, congestion, str_len(congestion));
switch (gt_setup_crypto(&ctx, sock.fd, listener)) {
@@ -995,7 +1307,7 @@ int main (int argc, char **argv)
retry = 0;
fd_write_str(state_fd, "STARTED\n");
state_write(state_fd, "STARTED\n");
fd_set rfds;
FD_ZERO(&rfds);
@@ -1015,7 +1327,9 @@ int main (int argc, char **argv)
goto restart;
FD_CLR(tun.fd, &rfds);
} else {
if (!blks[blk_write].size) {
buffer_shift(&tun.read);
if (buffer_write_size(&tun.read)>=GT_MTU_MAX) {
FD_SET(tun.fd, &rfds);
} else {
FD_CLR(tun.fd, &rfds);
@@ -1046,68 +1360,51 @@ int main (int argc, char **argv)
// gettimeofday(&now, NULL);
if (FD_ISSET(tun.fd, &rfds)) {
while (!blks[blk_write].size) {
uint8_t *data = blks[blk_write].data;
const ssize_t r = tun_read(tun.fd, data, GT_MTU_MAX);
while (1) {
const size_t size = buffer_write_size(&tun.read);
if (size<GT_MTU_MAX)
break;
const ssize_t r = tun_read(tun.fd, tun.read.write, GT_MTU_MAX);
if (r<=0) {
gt_close |= !r;
break;
}
const int ip_version = ip_get_version(data, GT_MTU_MAX);
const ssize_t ip_size = ip_get_size(ip_version, data, GT_MTU_MAX);
struct ip_common ic;
if _0_(ip_size<=0)
if (ip_get_common(&ic, tun.read.write, GT_MTU_MAX))
continue;
if _0_(ip_size!=r) {
if _0_(ic.size!=r) {
char tmp[2*GT_MTU_MAX+1];
gt_tohex(tmp, sizeof(tmp), data, r);
gt_tohex(tmp, sizeof(tmp), tun.read.write, r);
gt_log("%s: DUMP %zi %s\n", sockname, r, tmp);
continue;
}
if _0_(debug)
gt_print_hdr(ip_version, data, ip_size);
if _0_(debug) {
if (gt_track(&db, &ic, tun.read.write, 0))
continue;
}
blks[blk_write++].size = r;
blk_count++;
tun.read.write += r;
}
}
while (1) {
buffer_shift(&tun.read);
if _0_(!stop_loop) {
for (; blk_count; blk_read++) {
const size_t size = blks[blk_read].size;
if (!size || buffer_write_size(&tun.read)<size)
break;
byte_cpy(tun.read.write, blks[blk_read].data, size);
tun.read.write += size;
blks[blk_read].size = 0;
blk_count--;
}
if _1_(!stop_loop)
gt_encrypt(&ctx, &sock.write, &tun.read);
}
if (!buffer_read_size(&sock.write))
break;
if (buffer_read_size(&sock.write)) {
const ssize_t r = fd_write(sock.fd, sock.write.read,
buffer_read_size(&sock.write));
if (r>0) {
sock.write.read += r;
} else {
if (!r)
} else if (!r) {
stop_loop |= (1<<2);
break;
}
}
@@ -1145,22 +1442,27 @@ int main (int argc, char **argv)
size_t size = buffer_read_size(&tun.write);
const int ip_version = ip_get_version(tun.write.read, size);
ssize_t ip_size = ip_get_size(ip_version, tun.write.read, size);
if (!size)
break;
if _0_(!ip_size) {
struct ip_common ic;
if (ip_get_common(&ic, tun.write.read, size) || ic.size>size) {
gt_log("%s: bad packet!\n", sockname);
goto restart;
}
if (ip_size<0 || (size_t)ip_size>size)
break;
if _0_(debug) {
if (gt_track(&db, &ic, tun.write.read, 1)) {
tun.write.read += ic.size;
continue;
}
}
ssize_t r = tun_write(tun.fd, tun.write.read, ip_size);
ssize_t r = tun_write(tun.fd, tun.write.read, ic.size);
if (r>0) {
if _0_(debug)
gt_print_hdr(ip_version, tun.write.read, ip_size);
if (r==ic.size)
tun.write.read += r;
} else {
gt_close |= !r;
@@ -1180,13 +1482,11 @@ int main (int argc, char **argv)
sock.fd = -1;
}
fd_write_str(state_fd, "STOPPED\n");
state_write(state_fd, "STOPPED\n");
}
freeaddrinfo(ai);
free(blks);
free(sock.write.data);
free(sock.read.data);

View File

@@ -1,25 +1,23 @@
#include "common-static.h"
#include <stdio.h>
#include <stdlib.h>
#include "common.h"
#include "option.h"
#include "str.h"
int option_str (void *data, int argc, char **argv)
{
if (argc<2 || !argv[1]) {
if (argc<2 || str_empty(argv[1])) {
gt_print("option `%s' need a string argument\n", argv[0]);
return -1;
}
byte_cpy(data, &argv[1], sizeof(argv[1]));
memcpy(data, &argv[1], sizeof(argv[1]));
return 1;
}
int option_long (void *data, int argc, char **argv)
{
if (argc<2 || !argv[1]) {
if (argc<2 || str_empty(argv[1])) {
gt_print("option `%s' need an integer argument\n", argv[0]);
return -1;
}
@@ -33,7 +31,7 @@ int option_long (void *data, int argc, char **argv)
return -1;
}
byte_cpy(data, &val, sizeof(val));
memcpy(data, &val, sizeof(val));
return 1;
}

73
src/str.h Normal file
View File

@@ -0,0 +1,73 @@
#pragma once
#include "common.h"
static inline size_t str_cpy (char *restrict dst, const char *restrict src, size_t len)
{
if (!dst || !src)
return 0;
size_t i;
for (i=0; i<len && src[i]; i++)
dst[i] = src[i];
dst[i] = 0;
return i;
}
_pure_
static inline int str_empty (const char *restrict str)
{
return !str || !str[0];
}
_pure_
static inline size_t str_cmp (const char *restrict sa, const char *restrict sb)
{
if (!sa || !sb)
return 1;
size_t i = 0;
while (sa[i]==sb[i])
if (!sa[i++])
return 0;
return i+1;
}
_pure_
static inline size_t str_len (const char *restrict str)
{
if (!str)
return 0;
return strlen(str);
}
static inline char *str_cat (const char *const strs[], size_t count)
{
size_t size = 1;
for (size_t i=0; i<count; i++)
size += str_len(strs[i]);
char *str = malloc(size);
if (!str)
return NULL;
char *p = str;
for (size_t i=0; i<count; i++) {
size_t len = str_len(strs[i]);
memcpy(p, strs[i], len);
p += len;
}
p[0] = 0;
return str;
}

View File

@@ -1,7 +1,8 @@
#include "common-static.h"
#include "ip-static.h"
#include "common.h"
#include "tun.h"
#include "str.h"
#include "ip.h"
#include <stdio.h>
#include <fcntl.h>
@@ -36,7 +37,7 @@ static int tun_create_by_id (char *name, size_t size, unsigned id, _unused_ int
struct ctl_info ci;
byte_set(&ci, 0, sizeof(ci));
memset(&ci, 0, sizeof(ci));
str_cpy(ci.ctl_name, UTUN_CONTROL_NAME, sizeof(ci.ctl_name)-1);
if (ioctl(fd, CTLIOCGINFO, &ci)) {