Index: user/brooks/openssh-hpn/buffer.c =================================================================== --- user/brooks/openssh-hpn/buffer.c (revision 222586) +++ user/brooks/openssh-hpn/buffer.c (revision 222587) @@ -1,252 +1,251 @@ /* $OpenBSD: buffer.c,v 1.32 2010/02/09 03:56:28 djm Exp $ */ /* * Author: Tatu Ylonen * Copyright (c) 1995 Tatu Ylonen , Espoo, Finland * All rights reserved * Functions for manipulating fifo buffers (that can grow if needed). * * As far as I am concerned, the code I have written for this software * can be used freely for any purpose. Any derived versions of this * software must be clearly marked as such, and if the derived work is * incompatible with the protocol description in the RFC file, it must be * called by a name other than "ssh" or "Secure Shell". */ #include "includes.h" #include #include #include #include #include "xmalloc.h" #include "buffer.h" #include "log.h" #define BUFFER_MAX_CHUNK 0x100000 -#define BUFFER_MAX_LEN 0xa00000 #define BUFFER_ALLOCSZ 0x008000 /* Initializes the buffer structure. */ void buffer_init(Buffer *buffer) { const u_int len = 4096; buffer->alloc = 0; buffer->buf = xmalloc(len); buffer->alloc = len; buffer->offset = 0; buffer->end = 0; } /* Frees any memory used for the buffer. */ void buffer_free(Buffer *buffer) { if (buffer->alloc > 0) { memset(buffer->buf, 0, buffer->alloc); buffer->alloc = 0; xfree(buffer->buf); } } /* * Clears any data from the buffer, making it empty. This does not actually * zero the memory. */ void buffer_clear(Buffer *buffer) { buffer->offset = 0; buffer->end = 0; } /* Appends data to the buffer, expanding it if necessary. */ void buffer_append(Buffer *buffer, const void *data, u_int len) { void *p; p = buffer_append_space(buffer, len); memcpy(p, data, len); } static int buffer_compact(Buffer *buffer) { /* * If the buffer is quite empty, but all data is at the end, move the * data to the beginning. */ if (buffer->offset > MIN(buffer->alloc, BUFFER_MAX_CHUNK)) { memmove(buffer->buf, buffer->buf + buffer->offset, buffer->end - buffer->offset); buffer->end -= buffer->offset; buffer->offset = 0; return (1); } return (0); } /* * Appends space to the buffer, expanding the buffer if necessary. This does * not actually copy the data into the buffer, but instead returns a pointer * to the allocated region. */ void * buffer_append_space(Buffer *buffer, u_int len) { u_int newlen; void *p; if (len > BUFFER_MAX_CHUNK) fatal("buffer_append_space: len %u not supported", len); /* If the buffer is empty, start using it from the beginning. */ if (buffer->offset == buffer->end) { buffer->offset = 0; buffer->end = 0; } restart: /* If there is enough space to store all data, store it now. */ if (buffer->end + len < buffer->alloc) { p = buffer->buf + buffer->end; buffer->end += len; return p; } /* Compact data back to the start of the buffer if necessary */ if (buffer_compact(buffer)) goto restart; /* Increase the size of the buffer and retry. */ newlen = roundup(buffer->alloc + len, BUFFER_ALLOCSZ); - if (newlen > BUFFER_MAX_LEN_HPN) + if (newlen > BUFFER_MAX_LEN) fatal("buffer_append_space: alloc %u not supported", newlen); buffer->buf = xrealloc(buffer->buf, 1, newlen); buffer->alloc = newlen; goto restart; /* NOTREACHED */ } /* * Check whether an allocation of 'len' will fit in the buffer * This must follow the same math as buffer_append_space */ int buffer_check_alloc(Buffer *buffer, u_int len) { if (buffer->offset == buffer->end) { buffer->offset = 0; buffer->end = 0; } restart: if (buffer->end + len < buffer->alloc) return (1); if (buffer_compact(buffer)) goto restart; if (roundup(buffer->alloc + len, BUFFER_ALLOCSZ) <= BUFFER_MAX_LEN) return (1); return (0); } /* Returns the number of bytes of data in the buffer. */ u_int buffer_len(const Buffer *buffer) { return buffer->end - buffer->offset; } /* Gets data from the beginning of the buffer. */ int buffer_get_ret(Buffer *buffer, void *buf, u_int len) { if (len > buffer->end - buffer->offset) { error("buffer_get_ret: trying to get more bytes %d than in buffer %d", len, buffer->end - buffer->offset); return (-1); } memcpy(buf, buffer->buf + buffer->offset, len); buffer->offset += len; return (0); } void buffer_get(Buffer *buffer, void *buf, u_int len) { if (buffer_get_ret(buffer, buf, len) == -1) fatal("buffer_get: buffer error"); } /* Consumes the given number of bytes from the beginning of the buffer. */ int buffer_consume_ret(Buffer *buffer, u_int bytes) { if (bytes > buffer->end - buffer->offset) { error("buffer_consume_ret: trying to get more bytes than in buffer"); return (-1); } buffer->offset += bytes; return (0); } void buffer_consume(Buffer *buffer, u_int bytes) { if (buffer_consume_ret(buffer, bytes) == -1) fatal("buffer_consume: buffer error"); } /* Consumes the given number of bytes from the end of the buffer. */ int buffer_consume_end_ret(Buffer *buffer, u_int bytes) { if (bytes > buffer->end - buffer->offset) return (-1); buffer->end -= bytes; return (0); } void buffer_consume_end(Buffer *buffer, u_int bytes) { if (buffer_consume_end_ret(buffer, bytes) == -1) fatal("buffer_consume_end: trying to get more bytes than in buffer"); } /* Returns a pointer to the first used byte in the buffer. */ void * buffer_ptr(const Buffer *buffer) { return buffer->buf + buffer->offset; } /* Dumps the contents of the buffer to stderr. */ void buffer_dump(const Buffer *buffer) { u_int i; u_char *ucp = buffer->buf; for (i = buffer->offset; i < buffer->end; i++) { fprintf(stderr, "%02x", ucp[i]); if ((i-buffer->offset)%16==15) fprintf(stderr, "\r\n"); else if ((i-buffer->offset)%2==1) fprintf(stderr, " "); } fprintf(stderr, "\r\n"); } Index: user/brooks/openssh-hpn/buffer.h =================================================================== --- user/brooks/openssh-hpn/buffer.h (revision 222586) +++ user/brooks/openssh-hpn/buffer.h (revision 222587) @@ -1,101 +1,100 @@ /* $OpenBSD: buffer.h,v 1.21 2010/08/31 11:54:45 djm Exp $ */ /* * Author: Tatu Ylonen * Copyright (c) 1995 Tatu Ylonen , Espoo, Finland * All rights reserved * Code for manipulating FIFO buffers. * * As far as I am concerned, the code I have written for this software * can be used freely for any purpose. Any derived versions of this * software must be clearly marked as such, and if the derived work is * incompatible with the protocol description in the RFC file, it must be * called by a name other than "ssh" or "Secure Shell". */ #ifndef BUFFER_H #define BUFFER_H -/* move the following to a more appropriate place and name */ -#define BUFFER_MAX_LEN_HPN 0x4000000 /* 64MB */ +#define BUFFER_MAX_LEN 0x4000000 /* 64MB */ typedef struct { u_char *buf; /* Buffer for data. */ u_int alloc; /* Number of bytes allocated for data. */ u_int offset; /* Offset of first byte containing data. */ u_int end; /* Offset of last byte containing data. */ } Buffer; void buffer_init(Buffer *); void buffer_clear(Buffer *); void buffer_free(Buffer *); u_int buffer_len(const Buffer *); void *buffer_ptr(const Buffer *); void buffer_append(Buffer *, const void *, u_int); void *buffer_append_space(Buffer *, u_int); int buffer_check_alloc(Buffer *, u_int); void buffer_get(Buffer *, void *, u_int); void buffer_consume(Buffer *, u_int); void buffer_consume_end(Buffer *, u_int); void buffer_dump(const Buffer *); int buffer_get_ret(Buffer *, void *, u_int); int buffer_consume_ret(Buffer *, u_int); int buffer_consume_end_ret(Buffer *, u_int); #include void buffer_put_bignum(Buffer *, const BIGNUM *); void buffer_put_bignum2(Buffer *, const BIGNUM *); void buffer_get_bignum(Buffer *, BIGNUM *); void buffer_get_bignum2(Buffer *, BIGNUM *); u_short buffer_get_short(Buffer *); void buffer_put_short(Buffer *, u_short); u_int buffer_get_int(Buffer *); void buffer_put_int(Buffer *, u_int); u_int64_t buffer_get_int64(Buffer *); void buffer_put_int64(Buffer *, u_int64_t); int buffer_get_char(Buffer *); void buffer_put_char(Buffer *, int); void *buffer_get_string(Buffer *, u_int *); void *buffer_get_string_ptr(Buffer *, u_int *); void buffer_put_string(Buffer *, const void *, u_int); char *buffer_get_cstring(Buffer *, u_int *); void buffer_put_cstring(Buffer *, const char *); #define buffer_skip_string(b) \ do { u_int l = buffer_get_int(b); buffer_consume(b, l); } while (0) int buffer_put_bignum_ret(Buffer *, const BIGNUM *); int buffer_get_bignum_ret(Buffer *, BIGNUM *); int buffer_put_bignum2_ret(Buffer *, const BIGNUM *); int buffer_get_bignum2_ret(Buffer *, BIGNUM *); int buffer_get_short_ret(u_short *, Buffer *); int buffer_get_int_ret(u_int *, Buffer *); int buffer_get_int64_ret(u_int64_t *, Buffer *); void *buffer_get_string_ret(Buffer *, u_int *); char *buffer_get_cstring_ret(Buffer *, u_int *); void *buffer_get_string_ptr_ret(Buffer *, u_int *); int buffer_get_char_ret(char *, Buffer *); #ifdef OPENSSL_HAS_ECC #include int buffer_put_ecpoint_ret(Buffer *, const EC_GROUP *, const EC_POINT *); void buffer_put_ecpoint(Buffer *, const EC_GROUP *, const EC_POINT *); int buffer_get_ecpoint_ret(Buffer *, const EC_GROUP *, EC_POINT *); void buffer_get_ecpoint(Buffer *, const EC_GROUP *, EC_POINT *); #endif #endif /* BUFFER_H */ Index: user/brooks/openssh-hpn/channels.c =================================================================== --- user/brooks/openssh-hpn/channels.c (revision 222586) +++ user/brooks/openssh-hpn/channels.c (revision 222587) @@ -1,3705 +1,3704 @@ /* $OpenBSD: channels.c,v 1.310 2010/11/24 01:24:14 djm Exp $ */ /* * Author: Tatu Ylonen * Copyright (c) 1995 Tatu Ylonen , Espoo, Finland * All rights reserved * This file contains functions for generic socket connection forwarding. * There is also code for initiating connection forwarding for X11 connections, * arbitrary tcp/ip connections, and the authentication agent connection. * * As far as I am concerned, the code I have written for this software * can be used freely for any purpose. Any derived versions of this * software must be clearly marked as such, and if the derived work is * incompatible with the protocol description in the RFC file, it must be * called by a name other than "ssh" or "Secure Shell". * * SSH2 support added by Markus Friedl. * Copyright (c) 1999, 2000, 2001, 2002 Markus Friedl. All rights reserved. * Copyright (c) 1999 Dug Song. All rights reserved. * Copyright (c) 1999 Theo de Raadt. All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * 1. Redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution. * * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. */ #include "includes.h" #include #include #include #include #ifdef HAVE_SYS_TIME_H # include #endif #include #include #include #include #include #include #include #include #include #include #include #include "openbsd-compat/sys-queue.h" #include "xmalloc.h" #include "ssh.h" #include "ssh1.h" #include "ssh2.h" #include "packet.h" #include "log.h" #include "misc.h" #include "buffer.h" #include "channels.h" #include "compat.h" #include "canohost.h" #include "key.h" #include "authfd.h" #include "pathnames.h" /* -- channel core */ /* * Pointer to an array containing all allocated channels. The array is * dynamically extended as needed. */ static Channel **channels = NULL; /* * Size of the channel array. All slots of the array must always be * initialized (at least the type field); unused slots set to NULL */ static u_int channels_alloc = 0; /* * Maximum file descriptor value used in any of the channels. This is * updated in channel_new. */ static int channel_max_fd = 0; /* -- tcp forwarding */ /* * Data structure for storing which hosts are permitted for forward requests. * The local sides of any remote forwards are stored in this array to prevent * a corrupt remote server from accessing arbitrary TCP/IP ports on our local * network (which might be behind a firewall). */ typedef struct { char *host_to_connect; /* Connect to 'host'. */ u_short port_to_connect; /* Connect to 'port'. */ u_short listen_port; /* Remote side should listen port number. */ } ForwardPermission; /* List of all permitted host/port pairs to connect by the user. */ static ForwardPermission *permitted_opens = NULL; /* List of all permitted host/port pairs to connect by the admin. */ static ForwardPermission *permitted_adm_opens = NULL; /* Number of permitted host/port pairs in the array permitted by the user. */ static int num_permitted_opens = 0; /* Number of permitted host/port pair in the array permitted by the admin. */ static int num_adm_permitted_opens = 0; /* * If this is true, all opens are permitted. This is the case on the server * on which we have to trust the client anyway, and the user could do * anything after logging in anyway. */ static int all_opens_permitted = 0; /* -- X11 forwarding */ /* Maximum number of fake X11 displays to try. */ #define MAX_DISPLAYS 1000 /* Saved X11 local (client) display. */ static char *x11_saved_display = NULL; /* Saved X11 authentication protocol name. */ static char *x11_saved_proto = NULL; /* Saved X11 authentication data. This is the real data. */ static char *x11_saved_data = NULL; static u_int x11_saved_data_len = 0; /* * Fake X11 authentication data. This is what the server will be sending us; * we should replace any occurrences of this by the real data. */ static u_char *x11_fake_data = NULL; static u_int x11_fake_data_len; /* -- agent forwarding */ #define NUM_SOCKS 10 /* AF_UNSPEC or AF_INET or AF_INET6 */ static int IPv4or6 = AF_UNSPEC; /* helper */ static void port_open_helper(Channel *c, char *rtype); /* non-blocking connect helpers */ static int connect_next(struct channel_connect *); static void channel_connect_ctx_free(struct channel_connect *); static int hpn_disabled = 0; static int hpn_buffer_size = 2 * 1024 * 1024; /* -- channel core */ Channel * channel_by_id(int id) { Channel *c; if (id < 0 || (u_int)id >= channels_alloc) { logit("channel_by_id: %d: bad id", id); return NULL; } c = channels[id]; if (c == NULL) { logit("channel_by_id: %d: bad id: channel free", id); return NULL; } return c; } /* * Returns the channel if it is allowed to receive protocol messages. * Private channels, like listening sockets, may not receive messages. */ Channel * channel_lookup(int id) { Channel *c; if ((c = channel_by_id(id)) == NULL) return (NULL); switch (c->type) { case SSH_CHANNEL_X11_OPEN: case SSH_CHANNEL_LARVAL: case SSH_CHANNEL_CONNECTING: case SSH_CHANNEL_DYNAMIC: case SSH_CHANNEL_OPENING: case SSH_CHANNEL_OPEN: case SSH_CHANNEL_INPUT_DRAINING: case SSH_CHANNEL_OUTPUT_DRAINING: return (c); } logit("Non-public channel %d, type %d.", id, c->type); return (NULL); } /* * Register filedescriptors for a channel, used when allocating a channel or * when the channel consumer/producer is ready, e.g. shell exec'd */ static void channel_register_fds(Channel *c, int rfd, int wfd, int efd, int extusage, int nonblock, int is_tty) { /* Update the maximum file descriptor value. */ channel_max_fd = MAX(channel_max_fd, rfd); channel_max_fd = MAX(channel_max_fd, wfd); channel_max_fd = MAX(channel_max_fd, efd); if (rfd != -1) fcntl(rfd, F_SETFD, FD_CLOEXEC); if (wfd != -1 && wfd != rfd) fcntl(wfd, F_SETFD, FD_CLOEXEC); if (efd != -1 && efd != rfd && efd != wfd) fcntl(efd, F_SETFD, FD_CLOEXEC); c->rfd = rfd; c->wfd = wfd; c->sock = (rfd == wfd) ? rfd : -1; c->efd = efd; c->extended_usage = extusage; if ((c->isatty = is_tty) != 0) debug2("channel %d: rfd %d isatty", c->self, c->rfd); c->wfd_isatty = is_tty || isatty(c->wfd); /* enable nonblocking mode */ if (nonblock) { if (rfd != -1) set_nonblock(rfd); if (wfd != -1) set_nonblock(wfd); if (efd != -1) set_nonblock(efd); } } /* * Allocate a new channel object and set its type and socket. This will cause * remote_name to be freed. */ Channel * channel_new(char *ctype, int type, int rfd, int wfd, int efd, u_int window, u_int maxpack, int extusage, char *remote_name, int nonblock) { int found; u_int i; Channel *c; /* Do initial allocation if this is the first call. */ if (channels_alloc == 0) { channels_alloc = 10; channels = xcalloc(channels_alloc, sizeof(Channel *)); for (i = 0; i < channels_alloc; i++) channels[i] = NULL; } /* Try to find a free slot where to put the new channel. */ for (found = -1, i = 0; i < channels_alloc; i++) if (channels[i] == NULL) { /* Found a free slot. */ found = (int)i; break; } if (found < 0) { /* There are no free slots. Take last+1 slot and expand the array. */ found = channels_alloc; if (channels_alloc > 10000) fatal("channel_new: internal error: channels_alloc %d " "too big.", channels_alloc); channels = xrealloc(channels, channels_alloc + 10, sizeof(Channel *)); channels_alloc += 10; debug2("channel: expanding %d", channels_alloc); for (i = found; i < channels_alloc; i++) channels[i] = NULL; } /* Initialize and return new channel. */ c = channels[found] = xcalloc(1, sizeof(Channel)); buffer_init(&c->input); buffer_init(&c->output); buffer_init(&c->extended); c->path = NULL; c->ostate = CHAN_OUTPUT_OPEN; c->istate = CHAN_INPUT_OPEN; c->flags = 0; channel_register_fds(c, rfd, wfd, efd, extusage, nonblock, 0); c->self = found; c->type = type; c->ctype = ctype; c->local_window = window; c->local_window_max = window; c->local_consumed = 0; c->local_maxpacket = maxpack; c->dynamic_window = 0; c->remote_id = -1; c->remote_name = xstrdup(remote_name); c->remote_window = 0; c->remote_maxpacket = 0; c->force_drain = 0; c->single_connection = 0; c->detach_user = NULL; c->detach_close = 0; c->open_confirm = NULL; c->open_confirm_ctx = NULL; c->input_filter = NULL; c->output_filter = NULL; c->filter_ctx = NULL; c->filter_cleanup = NULL; c->ctl_chan = -1; c->mux_rcb = NULL; c->mux_ctx = NULL; c->mux_pause = 0; c->delayed = 1; /* prevent call to channel_post handler */ TAILQ_INIT(&c->status_confirms); debug("channel %d: new [%s]", found, remote_name); return c; } static int channel_find_maxfd(void) { u_int i; int max = 0; Channel *c; for (i = 0; i < channels_alloc; i++) { c = channels[i]; if (c != NULL) { max = MAX(max, c->rfd); max = MAX(max, c->wfd); max = MAX(max, c->efd); } } return max; } int channel_close_fd(int *fdp) { int ret = 0, fd = *fdp; if (fd != -1) { ret = close(fd); *fdp = -1; if (fd == channel_max_fd) channel_max_fd = channel_find_maxfd(); } return ret; } /* Close all channel fd/socket. */ static void channel_close_fds(Channel *c) { channel_close_fd(&c->sock); channel_close_fd(&c->rfd); channel_close_fd(&c->wfd); channel_close_fd(&c->efd); } /* Free the channel and close its fd/socket. */ void channel_free(Channel *c) { char *s; u_int i, n; struct channel_confirm *cc; for (n = 0, i = 0; i < channels_alloc; i++) if (channels[i]) n++; debug("channel %d: free: %s, nchannels %u", c->self, c->remote_name ? c->remote_name : "???", n); s = channel_open_message(); debug3("channel %d: status: %s", c->self, s); xfree(s); if (c->sock != -1) shutdown(c->sock, SHUT_RDWR); channel_close_fds(c); buffer_free(&c->input); buffer_free(&c->output); buffer_free(&c->extended); if (c->remote_name) { xfree(c->remote_name); c->remote_name = NULL; } if (c->path) { xfree(c->path); c->path = NULL; } while ((cc = TAILQ_FIRST(&c->status_confirms)) != NULL) { if (cc->abandon_cb != NULL) cc->abandon_cb(c, cc->ctx); TAILQ_REMOVE(&c->status_confirms, cc, entry); bzero(cc, sizeof(*cc)); xfree(cc); } if (c->filter_cleanup != NULL && c->filter_ctx != NULL) c->filter_cleanup(c->self, c->filter_ctx); channels[c->self] = NULL; xfree(c); } void channel_free_all(void) { u_int i; for (i = 0; i < channels_alloc; i++) if (channels[i] != NULL) channel_free(channels[i]); } /* * Closes the sockets/fds of all channels. This is used to close extra file * descriptors after a fork. */ void channel_close_all(void) { u_int i; for (i = 0; i < channels_alloc; i++) if (channels[i] != NULL) channel_close_fds(channels[i]); } /* * Stop listening to channels. */ void channel_stop_listening(void) { u_int i; Channel *c; for (i = 0; i < channels_alloc; i++) { c = channels[i]; if (c != NULL) { switch (c->type) { case SSH_CHANNEL_AUTH_SOCKET: case SSH_CHANNEL_PORT_LISTENER: case SSH_CHANNEL_RPORT_LISTENER: case SSH_CHANNEL_X11_LISTENER: channel_close_fd(&c->sock); channel_free(c); break; } } } } /* * Returns true if no channel has too much buffered data, and false if one or * more channel is overfull. */ int channel_not_very_much_buffered_data(void) { u_int i; Channel *c; for (i = 0; i < channels_alloc; i++) { c = channels[i]; if (c != NULL && c->type == SSH_CHANNEL_OPEN) { #if 0 if (!compat20 && buffer_len(&c->input) > packet_get_maxsize()) { debug2("channel %d: big input buffer %d", c->self, buffer_len(&c->input)); return 0; } #endif if (buffer_len(&c->output) > packet_get_maxsize()) { debug2("channel %d: big output buffer %u > %u", c->self, buffer_len(&c->output), packet_get_maxsize()); return 0; } } } return 1; } /* Returns true if any channel is still open. */ int channel_still_open(void) { u_int i; Channel *c; for (i = 0; i < channels_alloc; i++) { c = channels[i]; if (c == NULL) continue; switch (c->type) { case SSH_CHANNEL_X11_LISTENER: case SSH_CHANNEL_PORT_LISTENER: case SSH_CHANNEL_RPORT_LISTENER: case SSH_CHANNEL_MUX_LISTENER: case SSH_CHANNEL_CLOSED: case SSH_CHANNEL_AUTH_SOCKET: case SSH_CHANNEL_DYNAMIC: case SSH_CHANNEL_CONNECTING: case SSH_CHANNEL_ZOMBIE: continue; case SSH_CHANNEL_LARVAL: if (!compat20) fatal("cannot happen: SSH_CHANNEL_LARVAL"); continue; case SSH_CHANNEL_OPENING: case SSH_CHANNEL_OPEN: case SSH_CHANNEL_X11_OPEN: case SSH_CHANNEL_MUX_CLIENT: return 1; case SSH_CHANNEL_INPUT_DRAINING: case SSH_CHANNEL_OUTPUT_DRAINING: if (!compat13) fatal("cannot happen: OUT_DRAIN"); return 1; default: fatal("channel_still_open: bad channel type %d", c->type); /* NOTREACHED */ } } return 0; } /* Returns the id of an open channel suitable for keepaliving */ int channel_find_open(void) { u_int i; Channel *c; for (i = 0; i < channels_alloc; i++) { c = channels[i]; if (c == NULL || c->remote_id < 0) continue; switch (c->type) { case SSH_CHANNEL_CLOSED: case SSH_CHANNEL_DYNAMIC: case SSH_CHANNEL_X11_LISTENER: case SSH_CHANNEL_PORT_LISTENER: case SSH_CHANNEL_RPORT_LISTENER: case SSH_CHANNEL_MUX_LISTENER: case SSH_CHANNEL_MUX_CLIENT: case SSH_CHANNEL_OPENING: case SSH_CHANNEL_CONNECTING: case SSH_CHANNEL_ZOMBIE: continue; case SSH_CHANNEL_LARVAL: case SSH_CHANNEL_AUTH_SOCKET: case SSH_CHANNEL_OPEN: case SSH_CHANNEL_X11_OPEN: return i; case SSH_CHANNEL_INPUT_DRAINING: case SSH_CHANNEL_OUTPUT_DRAINING: if (!compat13) fatal("cannot happen: OUT_DRAIN"); return i; default: fatal("channel_find_open: bad channel type %d", c->type); /* NOTREACHED */ } } return -1; } /* * Returns a message describing the currently open forwarded connections, * suitable for sending to the client. The message contains crlf pairs for * newlines. */ char * channel_open_message(void) { Buffer buffer; Channel *c; char buf[1024], *cp; u_int i; buffer_init(&buffer); snprintf(buf, sizeof buf, "The following connections are open:\r\n"); buffer_append(&buffer, buf, strlen(buf)); for (i = 0; i < channels_alloc; i++) { c = channels[i]; if (c == NULL) continue; switch (c->type) { case SSH_CHANNEL_X11_LISTENER: case SSH_CHANNEL_PORT_LISTENER: case SSH_CHANNEL_RPORT_LISTENER: case SSH_CHANNEL_CLOSED: case SSH_CHANNEL_AUTH_SOCKET: case SSH_CHANNEL_ZOMBIE: case SSH_CHANNEL_MUX_CLIENT: case SSH_CHANNEL_MUX_LISTENER: continue; case SSH_CHANNEL_LARVAL: case SSH_CHANNEL_OPENING: case SSH_CHANNEL_CONNECTING: case SSH_CHANNEL_DYNAMIC: case SSH_CHANNEL_OPEN: case SSH_CHANNEL_X11_OPEN: case SSH_CHANNEL_INPUT_DRAINING: case SSH_CHANNEL_OUTPUT_DRAINING: snprintf(buf, sizeof buf, " #%d %.300s (t%d r%d i%d/%d o%d/%d fd %d/%d cc %d)\r\n", c->self, c->remote_name, c->type, c->remote_id, c->istate, buffer_len(&c->input), c->ostate, buffer_len(&c->output), c->rfd, c->wfd, c->ctl_chan); buffer_append(&buffer, buf, strlen(buf)); continue; default: fatal("channel_open_message: bad channel type %d", c->type); /* NOTREACHED */ } } buffer_append(&buffer, "\0", 1); cp = xstrdup(buffer_ptr(&buffer)); buffer_free(&buffer); return cp; } void channel_send_open(int id) { Channel *c = channel_lookup(id); if (c == NULL) { logit("channel_send_open: %d: bad id", id); return; } debug2("channel %d: send open", id); packet_start(SSH2_MSG_CHANNEL_OPEN); packet_put_cstring(c->ctype); packet_put_int(c->self); packet_put_int(c->local_window); packet_put_int(c->local_maxpacket); packet_send(); } void channel_request_start(int id, char *service, int wantconfirm) { Channel *c = channel_lookup(id); if (c == NULL) { logit("channel_request_start: %d: unknown channel id", id); return; } debug2("channel %d: request %s confirm %d", id, service, wantconfirm); packet_start(SSH2_MSG_CHANNEL_REQUEST); packet_put_int(c->remote_id); packet_put_cstring(service); packet_put_char(wantconfirm); } void channel_register_status_confirm(int id, channel_confirm_cb *cb, channel_confirm_abandon_cb *abandon_cb, void *ctx) { struct channel_confirm *cc; Channel *c; if ((c = channel_lookup(id)) == NULL) fatal("channel_register_expect: %d: bad id", id); cc = xmalloc(sizeof(*cc)); cc->cb = cb; cc->abandon_cb = abandon_cb; cc->ctx = ctx; TAILQ_INSERT_TAIL(&c->status_confirms, cc, entry); } void channel_register_open_confirm(int id, channel_open_fn *fn, void *ctx) { Channel *c = channel_lookup(id); if (c == NULL) { logit("channel_register_open_confirm: %d: bad id", id); return; } c->open_confirm = fn; c->open_confirm_ctx = ctx; } void channel_register_cleanup(int id, channel_callback_fn *fn, int do_close) { Channel *c = channel_by_id(id); if (c == NULL) { logit("channel_register_cleanup: %d: bad id", id); return; } c->detach_user = fn; c->detach_close = do_close; } void channel_cancel_cleanup(int id) { Channel *c = channel_by_id(id); if (c == NULL) { logit("channel_cancel_cleanup: %d: bad id", id); return; } c->detach_user = NULL; c->detach_close = 0; } void channel_register_filter(int id, channel_infilter_fn *ifn, channel_outfilter_fn *ofn, channel_filter_cleanup_fn *cfn, void *ctx) { Channel *c = channel_lookup(id); if (c == NULL) { logit("channel_register_filter: %d: bad id", id); return; } c->input_filter = ifn; c->output_filter = ofn; c->filter_ctx = ctx; c->filter_cleanup = cfn; } void channel_set_fds(int id, int rfd, int wfd, int efd, int extusage, int nonblock, int is_tty, u_int window_max) { Channel *c = channel_lookup(id); if (c == NULL || c->type != SSH_CHANNEL_LARVAL) fatal("channel_activate for non-larval channel %d.", id); channel_register_fds(c, rfd, wfd, efd, extusage, nonblock, is_tty); c->type = SSH_CHANNEL_OPEN; c->local_window = c->local_window_max = window_max; packet_start(SSH2_MSG_CHANNEL_WINDOW_ADJUST); packet_put_int(c->remote_id); packet_put_int(c->local_window); packet_send(); } /* * 'channel_pre*' are called just before select() to add any bits relevant to * channels in the select bitmasks. */ /* * 'channel_post*': perform any appropriate operations for channels which * have events pending. */ typedef void chan_fn(Channel *c, fd_set *readset, fd_set *writeset); chan_fn *channel_pre[SSH_CHANNEL_MAX_TYPE]; chan_fn *channel_post[SSH_CHANNEL_MAX_TYPE]; /* ARGSUSED */ static void channel_pre_listener(Channel *c, fd_set *readset, fd_set *writeset) { FD_SET(c->sock, readset); } /* ARGSUSED */ static void channel_pre_connecting(Channel *c, fd_set *readset, fd_set *writeset) { debug3("channel %d: waiting for connection", c->self); FD_SET(c->sock, writeset); } static void channel_pre_open_13(Channel *c, fd_set *readset, fd_set *writeset) { if (buffer_len(&c->input) < packet_get_maxsize()) FD_SET(c->sock, readset); if (buffer_len(&c->output) > 0) FD_SET(c->sock, writeset); } int channel_tcpwinsz () { u_int32_t tcpwinsz = 0; socklen_t optsz = sizeof(tcpwinsz); int ret = -1; /* if we aren't on a socket return 128KB*/ if (!packet_connection_is_on_socket()) return(128*1024); ret = getsockopt(packet_get_connection_in(), - SOL_SOCKET, SO_RCVBUF, &tcpwinsz, &optsz); + SOL_SOCKET, SO_RCVBUF, &tcpwinsz, &optsz); /* return no more than 64MB */ - if ((ret == 0) && tcpwinsz > BUFFER_MAX_LEN_HPN) - tcpwinsz = BUFFER_MAX_LEN_HPN; + if ((ret == 0) && tcpwinsz > BUFFER_MAX_LEN) + tcpwinsz = BUFFER_MAX_LEN; debug2("tcpwinsz: %d for connection: %d", tcpwinsz, - packet_get_connection_in()); + packet_get_connection_in()); return(tcpwinsz); } static void channel_pre_open(Channel *c, fd_set *readset, fd_set *writeset) { u_int limit = compat20 ? c->remote_window : packet_get_maxsize(); /* check buffer limits */ if ((!c->tcpwinsz) || (c->dynamic_window > 0)) c->tcpwinsz = channel_tcpwinsz(); limit = MIN(limit, 2 * c->tcpwinsz); if (c->istate == CHAN_INPUT_OPEN && limit > 0 && buffer_len(&c->input) < limit && buffer_check_alloc(&c->input, CHAN_RBUF)) FD_SET(c->rfd, readset); if (c->ostate == CHAN_OUTPUT_OPEN || c->ostate == CHAN_OUTPUT_WAIT_DRAIN) { if (buffer_len(&c->output) > 0) { FD_SET(c->wfd, writeset); } else if (c->ostate == CHAN_OUTPUT_WAIT_DRAIN) { if (CHANNEL_EFD_OUTPUT_ACTIVE(c)) debug2("channel %d: obuf_empty delayed efd %d/(%d)", c->self, c->efd, buffer_len(&c->extended)); else chan_obuf_empty(c); } } /** XXX check close conditions, too */ if (compat20 && c->efd != -1 && !(c->istate == CHAN_INPUT_CLOSED && c->ostate == CHAN_OUTPUT_CLOSED)) { if (c->extended_usage == CHAN_EXTENDED_WRITE && buffer_len(&c->extended) > 0) FD_SET(c->efd, writeset); else if (c->efd != -1 && !(c->flags & CHAN_EOF_SENT) && (c->extended_usage == CHAN_EXTENDED_READ || c->extended_usage == CHAN_EXTENDED_IGNORE) && buffer_len(&c->extended) < c->remote_window) FD_SET(c->efd, readset); } /* XXX: What about efd? races? */ } /* ARGSUSED */ static void channel_pre_input_draining(Channel *c, fd_set *readset, fd_set *writeset) { if (buffer_len(&c->input) == 0) { packet_start(SSH_MSG_CHANNEL_CLOSE); packet_put_int(c->remote_id); packet_send(); c->type = SSH_CHANNEL_CLOSED; debug2("channel %d: closing after input drain.", c->self); } } /* ARGSUSED */ static void channel_pre_output_draining(Channel *c, fd_set *readset, fd_set *writeset) { if (buffer_len(&c->output) == 0) chan_mark_dead(c); else FD_SET(c->sock, writeset); } /* * This is a special state for X11 authentication spoofing. An opened X11 * connection (when authentication spoofing is being done) remains in this * state until the first packet has been completely read. The authentication * data in that packet is then substituted by the real data if it matches the * fake data, and the channel is put into normal mode. * XXX All this happens at the client side. * Returns: 0 = need more data, -1 = wrong cookie, 1 = ok */ static int x11_open_helper(Buffer *b) { u_char *ucp; u_int proto_len, data_len; /* Check if the fixed size part of the packet is in buffer. */ if (buffer_len(b) < 12) return 0; /* Parse the lengths of variable-length fields. */ ucp = buffer_ptr(b); if (ucp[0] == 0x42) { /* Byte order MSB first. */ proto_len = 256 * ucp[6] + ucp[7]; data_len = 256 * ucp[8] + ucp[9]; } else if (ucp[0] == 0x6c) { /* Byte order LSB first. */ proto_len = ucp[6] + 256 * ucp[7]; data_len = ucp[8] + 256 * ucp[9]; } else { debug2("Initial X11 packet contains bad byte order byte: 0x%x", ucp[0]); return -1; } /* Check if the whole packet is in buffer. */ if (buffer_len(b) < 12 + ((proto_len + 3) & ~3) + ((data_len + 3) & ~3)) return 0; /* Check if authentication protocol matches. */ if (proto_len != strlen(x11_saved_proto) || memcmp(ucp + 12, x11_saved_proto, proto_len) != 0) { debug2("X11 connection uses different authentication protocol."); return -1; } /* Check if authentication data matches our fake data. */ if (data_len != x11_fake_data_len || timingsafe_bcmp(ucp + 12 + ((proto_len + 3) & ~3), x11_fake_data, x11_fake_data_len) != 0) { debug2("X11 auth data does not match fake data."); return -1; } /* Check fake data length */ if (x11_fake_data_len != x11_saved_data_len) { error("X11 fake_data_len %d != saved_data_len %d", x11_fake_data_len, x11_saved_data_len); return -1; } /* * Received authentication protocol and data match * our fake data. Substitute the fake data with real * data. */ memcpy(ucp + 12 + ((proto_len + 3) & ~3), x11_saved_data, x11_saved_data_len); return 1; } static void channel_pre_x11_open_13(Channel *c, fd_set *readset, fd_set *writeset) { int ret = x11_open_helper(&c->output); if (ret == 1) { /* Start normal processing for the channel. */ c->type = SSH_CHANNEL_OPEN; channel_pre_open_13(c, readset, writeset); } else if (ret == -1) { /* * We have received an X11 connection that has bad * authentication information. */ logit("X11 connection rejected because of wrong authentication."); buffer_clear(&c->input); buffer_clear(&c->output); channel_close_fd(&c->sock); c->sock = -1; c->type = SSH_CHANNEL_CLOSED; packet_start(SSH_MSG_CHANNEL_CLOSE); packet_put_int(c->remote_id); packet_send(); } } static void channel_pre_x11_open(Channel *c, fd_set *readset, fd_set *writeset) { int ret = x11_open_helper(&c->output); /* c->force_drain = 1; */ if (ret == 1) { c->type = SSH_CHANNEL_OPEN; channel_pre_open(c, readset, writeset); } else if (ret == -1) { logit("X11 connection rejected because of wrong authentication."); debug2("X11 rejected %d i%d/o%d", c->self, c->istate, c->ostate); chan_read_failed(c); buffer_clear(&c->input); chan_ibuf_empty(c); buffer_clear(&c->output); /* for proto v1, the peer will send an IEOF */ if (compat20) chan_write_failed(c); else c->type = SSH_CHANNEL_OPEN; debug2("X11 closed %d i%d/o%d", c->self, c->istate, c->ostate); } } static void channel_pre_mux_client(Channel *c, fd_set *readset, fd_set *writeset) { if (c->istate == CHAN_INPUT_OPEN && !c->mux_pause && buffer_check_alloc(&c->input, CHAN_RBUF)) FD_SET(c->rfd, readset); if (c->istate == CHAN_INPUT_WAIT_DRAIN) { /* clear buffer immediately (discard any partial packet) */ buffer_clear(&c->input); chan_ibuf_empty(c); /* Start output drain. XXX just kill chan? */ chan_rcvd_oclose(c); } if (c->ostate == CHAN_OUTPUT_OPEN || c->ostate == CHAN_OUTPUT_WAIT_DRAIN) { if (buffer_len(&c->output) > 0) FD_SET(c->wfd, writeset); else if (c->ostate == CHAN_OUTPUT_WAIT_DRAIN) chan_obuf_empty(c); } } /* try to decode a socks4 header */ /* ARGSUSED */ static int channel_decode_socks4(Channel *c, fd_set *readset, fd_set *writeset) { char *p, *host; u_int len, have, i, found, need; char username[256]; struct { u_int8_t version; u_int8_t command; u_int16_t dest_port; struct in_addr dest_addr; } s4_req, s4_rsp; debug2("channel %d: decode socks4", c->self); have = buffer_len(&c->input); len = sizeof(s4_req); if (have < len) return 0; p = buffer_ptr(&c->input); need = 1; /* SOCKS4A uses an invalid IP address 0.0.0.x */ if (p[4] == 0 && p[5] == 0 && p[6] == 0 && p[7] != 0) { debug2("channel %d: socks4a request", c->self); /* ... and needs an extra string (the hostname) */ need = 2; } /* Check for terminating NUL on the string(s) */ for (found = 0, i = len; i < have; i++) { if (p[i] == '\0') { found++; if (found == need) break; } if (i > 1024) { /* the peer is probably sending garbage */ debug("channel %d: decode socks4: too long", c->self); return -1; } } if (found < need) return 0; buffer_get(&c->input, (char *)&s4_req.version, 1); buffer_get(&c->input, (char *)&s4_req.command, 1); buffer_get(&c->input, (char *)&s4_req.dest_port, 2); buffer_get(&c->input, (char *)&s4_req.dest_addr, 4); have = buffer_len(&c->input); p = buffer_ptr(&c->input); len = strlen(p); debug2("channel %d: decode socks4: user %s/%d", c->self, p, len); len++; /* trailing '\0' */ if (len > have) fatal("channel %d: decode socks4: len %d > have %d", c->self, len, have); strlcpy(username, p, sizeof(username)); buffer_consume(&c->input, len); if (c->path != NULL) { xfree(c->path); c->path = NULL; } if (need == 1) { /* SOCKS4: one string */ host = inet_ntoa(s4_req.dest_addr); c->path = xstrdup(host); } else { /* SOCKS4A: two strings */ have = buffer_len(&c->input); p = buffer_ptr(&c->input); len = strlen(p); debug2("channel %d: decode socks4a: host %s/%d", c->self, p, len); len++; /* trailing '\0' */ if (len > have) fatal("channel %d: decode socks4a: len %d > have %d", c->self, len, have); if (len > NI_MAXHOST) { error("channel %d: hostname \"%.100s\" too long", c->self, p); return -1; } c->path = xstrdup(p); buffer_consume(&c->input, len); } c->host_port = ntohs(s4_req.dest_port); debug2("channel %d: dynamic request: socks4 host %s port %u command %u", c->self, c->path, c->host_port, s4_req.command); if (s4_req.command != 1) { debug("channel %d: cannot handle: %s cn %d", c->self, need == 1 ? "SOCKS4" : "SOCKS4A", s4_req.command); return -1; } s4_rsp.version = 0; /* vn: 0 for reply */ s4_rsp.command = 90; /* cd: req granted */ s4_rsp.dest_port = 0; /* ignored */ s4_rsp.dest_addr.s_addr = INADDR_ANY; /* ignored */ buffer_append(&c->output, &s4_rsp, sizeof(s4_rsp)); return 1; } /* try to decode a socks5 header */ #define SSH_SOCKS5_AUTHDONE 0x1000 #define SSH_SOCKS5_NOAUTH 0x00 #define SSH_SOCKS5_IPV4 0x01 #define SSH_SOCKS5_DOMAIN 0x03 #define SSH_SOCKS5_IPV6 0x04 #define SSH_SOCKS5_CONNECT 0x01 #define SSH_SOCKS5_SUCCESS 0x00 /* ARGSUSED */ static int channel_decode_socks5(Channel *c, fd_set *readset, fd_set *writeset) { struct { u_int8_t version; u_int8_t command; u_int8_t reserved; u_int8_t atyp; } s5_req, s5_rsp; u_int16_t dest_port; u_char *p, dest_addr[255+1], ntop[INET6_ADDRSTRLEN]; u_int have, need, i, found, nmethods, addrlen, af; debug2("channel %d: decode socks5", c->self); p = buffer_ptr(&c->input); if (p[0] != 0x05) return -1; have = buffer_len(&c->input); if (!(c->flags & SSH_SOCKS5_AUTHDONE)) { /* format: ver | nmethods | methods */ if (have < 2) return 0; nmethods = p[1]; if (have < nmethods + 2) return 0; /* look for method: "NO AUTHENTICATION REQUIRED" */ for (found = 0, i = 2; i < nmethods + 2; i++) { if (p[i] == SSH_SOCKS5_NOAUTH) { found = 1; break; } } if (!found) { debug("channel %d: method SSH_SOCKS5_NOAUTH not found", c->self); return -1; } buffer_consume(&c->input, nmethods + 2); buffer_put_char(&c->output, 0x05); /* version */ buffer_put_char(&c->output, SSH_SOCKS5_NOAUTH); /* method */ FD_SET(c->sock, writeset); c->flags |= SSH_SOCKS5_AUTHDONE; debug2("channel %d: socks5 auth done", c->self); return 0; /* need more */ } debug2("channel %d: socks5 post auth", c->self); if (have < sizeof(s5_req)+1) return 0; /* need more */ memcpy(&s5_req, p, sizeof(s5_req)); if (s5_req.version != 0x05 || s5_req.command != SSH_SOCKS5_CONNECT || s5_req.reserved != 0x00) { debug2("channel %d: only socks5 connect supported", c->self); return -1; } switch (s5_req.atyp){ case SSH_SOCKS5_IPV4: addrlen = 4; af = AF_INET; break; case SSH_SOCKS5_DOMAIN: addrlen = p[sizeof(s5_req)]; af = -1; break; case SSH_SOCKS5_IPV6: addrlen = 16; af = AF_INET6; break; default: debug2("channel %d: bad socks5 atyp %d", c->self, s5_req.atyp); return -1; } need = sizeof(s5_req) + addrlen + 2; if (s5_req.atyp == SSH_SOCKS5_DOMAIN) need++; if (have < need) return 0; buffer_consume(&c->input, sizeof(s5_req)); if (s5_req.atyp == SSH_SOCKS5_DOMAIN) buffer_consume(&c->input, 1); /* host string length */ buffer_get(&c->input, (char *)&dest_addr, addrlen); buffer_get(&c->input, (char *)&dest_port, 2); dest_addr[addrlen] = '\0'; if (c->path != NULL) { xfree(c->path); c->path = NULL; } if (s5_req.atyp == SSH_SOCKS5_DOMAIN) { if (addrlen >= NI_MAXHOST) { error("channel %d: dynamic request: socks5 hostname " "\"%.100s\" too long", c->self, dest_addr); return -1; } c->path = xstrdup(dest_addr); } else { if (inet_ntop(af, dest_addr, ntop, sizeof(ntop)) == NULL) return -1; c->path = xstrdup(ntop); } c->host_port = ntohs(dest_port); debug2("channel %d: dynamic request: socks5 host %s port %u command %u", c->self, c->path, c->host_port, s5_req.command); s5_rsp.version = 0x05; s5_rsp.command = SSH_SOCKS5_SUCCESS; s5_rsp.reserved = 0; /* ignored */ s5_rsp.atyp = SSH_SOCKS5_IPV4; ((struct in_addr *)&dest_addr)->s_addr = INADDR_ANY; dest_port = 0; /* ignored */ buffer_append(&c->output, &s5_rsp, sizeof(s5_rsp)); buffer_append(&c->output, &dest_addr, sizeof(struct in_addr)); buffer_append(&c->output, &dest_port, sizeof(dest_port)); return 1; } Channel * channel_connect_stdio_fwd(const char *host_to_connect, u_short port_to_connect, int in, int out) { Channel *c; debug("channel_connect_stdio_fwd %s:%d", host_to_connect, port_to_connect); c = channel_new("stdio-forward", SSH_CHANNEL_OPENING, in, out, -1, CHAN_TCP_WINDOW_DEFAULT, CHAN_TCP_PACKET_DEFAULT, 0, "stdio-forward", /*nonblock*/0); c->path = xstrdup(host_to_connect); c->host_port = port_to_connect; c->listening_port = 0; c->force_drain = 1; channel_register_fds(c, in, out, -1, 0, 1, 0); port_open_helper(c, "direct-tcpip"); return c; } /* dynamic port forwarding */ static void channel_pre_dynamic(Channel *c, fd_set *readset, fd_set *writeset) { u_char *p; u_int have; int ret; have = buffer_len(&c->input); debug2("channel %d: pre_dynamic: have %d", c->self, have); /* buffer_dump(&c->input); */ /* check if the fixed size part of the packet is in buffer. */ if (have < 3) { /* need more */ FD_SET(c->sock, readset); return; } /* try to guess the protocol */ p = buffer_ptr(&c->input); switch (p[0]) { case 0x04: ret = channel_decode_socks4(c, readset, writeset); break; case 0x05: ret = channel_decode_socks5(c, readset, writeset); break; default: ret = -1; break; } if (ret < 0) { chan_mark_dead(c); } else if (ret == 0) { debug2("channel %d: pre_dynamic: need more", c->self); /* need more */ FD_SET(c->sock, readset); } else { /* switch to the next state */ c->type = SSH_CHANNEL_OPENING; port_open_helper(c, "direct-tcpip"); } } /* This is our fake X11 server socket. */ /* ARGSUSED */ static void channel_post_x11_listener(Channel *c, fd_set *readset, fd_set *writeset) { Channel *nc; struct sockaddr_storage addr; int newsock; socklen_t addrlen; char buf[16384], *remote_ipaddr; int remote_port; if (FD_ISSET(c->sock, readset)) { debug("X11 connection requested."); addrlen = sizeof(addr); newsock = accept(c->sock, (struct sockaddr *)&addr, &addrlen); if (c->single_connection) { debug2("single_connection: closing X11 listener."); channel_close_fd(&c->sock); chan_mark_dead(c); } if (newsock < 0) { error("accept: %.100s", strerror(errno)); return; } set_nodelay(newsock); remote_ipaddr = get_peer_ipaddr(newsock); remote_port = get_peer_port(newsock); snprintf(buf, sizeof buf, "X11 connection from %.200s port %d", remote_ipaddr, remote_port); nc = channel_new("accepted x11 socket", SSH_CHANNEL_OPENING, newsock, newsock, -1, c->local_window_max, c->local_maxpacket, 0, buf, 1); if (compat20) { packet_start(SSH2_MSG_CHANNEL_OPEN); packet_put_cstring("x11"); packet_put_int(nc->self); packet_put_int(nc->local_window_max); packet_put_int(nc->local_maxpacket); /* originator ipaddr and port */ packet_put_cstring(remote_ipaddr); if (datafellows & SSH_BUG_X11FWD) { debug2("ssh2 x11 bug compat mode"); } else { packet_put_int(remote_port); } packet_send(); } else { packet_start(SSH_SMSG_X11_OPEN); packet_put_int(nc->self); if (packet_get_protocol_flags() & SSH_PROTOFLAG_HOST_IN_FWD_OPEN) packet_put_cstring(buf); packet_send(); } xfree(remote_ipaddr); } } static void port_open_helper(Channel *c, char *rtype) { int direct; char buf[1024]; char *remote_ipaddr = get_peer_ipaddr(c->sock); int remote_port = get_peer_port(c->sock); if (remote_port == -1) { /* Fake addr/port to appease peers that validate it (Tectia) */ xfree(remote_ipaddr); remote_ipaddr = xstrdup("127.0.0.1"); remote_port = 65535; } direct = (strcmp(rtype, "direct-tcpip") == 0); snprintf(buf, sizeof buf, "%s: listening port %d for %.100s port %d, " "connect from %.200s port %d", rtype, c->listening_port, c->path, c->host_port, remote_ipaddr, remote_port); xfree(c->remote_name); c->remote_name = xstrdup(buf); if (compat20) { packet_start(SSH2_MSG_CHANNEL_OPEN); packet_put_cstring(rtype); packet_put_int(c->self); packet_put_int(c->local_window_max); packet_put_int(c->local_maxpacket); if (direct) { /* target host, port */ packet_put_cstring(c->path); packet_put_int(c->host_port); } else { /* listen address, port */ packet_put_cstring(c->path); packet_put_int(c->listening_port); } /* originator host and port */ packet_put_cstring(remote_ipaddr); packet_put_int((u_int)remote_port); packet_send(); } else { packet_start(SSH_MSG_PORT_OPEN); packet_put_int(c->self); packet_put_cstring(c->path); packet_put_int(c->host_port); if (packet_get_protocol_flags() & SSH_PROTOFLAG_HOST_IN_FWD_OPEN) packet_put_cstring(c->remote_name); packet_send(); } xfree(remote_ipaddr); } static void channel_set_reuseaddr(int fd) { int on = 1; /* * Set socket options. * Allow local port reuse in TIME_WAIT. */ if (setsockopt(fd, SOL_SOCKET, SO_REUSEADDR, &on, sizeof(on)) == -1) error("setsockopt SO_REUSEADDR fd %d: %s", fd, strerror(errno)); } /* * This socket is listening for connections to a forwarded TCP/IP port. */ /* ARGSUSED */ static void channel_post_port_listener(Channel *c, fd_set *readset, fd_set *writeset) { Channel *nc; struct sockaddr_storage addr; int newsock, nextstate; socklen_t addrlen; char *rtype; if (FD_ISSET(c->sock, readset)) { debug("Connection to port %d forwarding " "to %.100s port %d requested.", c->listening_port, c->path, c->host_port); if (c->type == SSH_CHANNEL_RPORT_LISTENER) { nextstate = SSH_CHANNEL_OPENING; rtype = "forwarded-tcpip"; } else { if (c->host_port == 0) { nextstate = SSH_CHANNEL_DYNAMIC; rtype = "dynamic-tcpip"; } else { nextstate = SSH_CHANNEL_OPENING; rtype = "direct-tcpip"; } } addrlen = sizeof(addr); newsock = accept(c->sock, (struct sockaddr *)&addr, &addrlen); if (newsock < 0) { error("accept: %.100s", strerror(errno)); return; } set_nodelay(newsock); nc = channel_new(rtype, nextstate, newsock, newsock, -1, c->local_window_max, c->local_maxpacket, 0, rtype, 1); nc->listening_port = c->listening_port; nc->host_port = c->host_port; if (c->path != NULL) nc->path = xstrdup(c->path); if (nextstate != SSH_CHANNEL_DYNAMIC) port_open_helper(nc, rtype); } } /* * This is the authentication agent socket listening for connections from * clients. */ /* ARGSUSED */ static void channel_post_auth_listener(Channel *c, fd_set *readset, fd_set *writeset) { Channel *nc; int newsock; struct sockaddr_storage addr; socklen_t addrlen; if (FD_ISSET(c->sock, readset)) { addrlen = sizeof(addr); newsock = accept(c->sock, (struct sockaddr *)&addr, &addrlen); if (newsock < 0) { error("accept from auth socket: %.100s", strerror(errno)); return; } nc = channel_new("accepted auth socket", SSH_CHANNEL_OPENING, newsock, newsock, -1, c->local_window_max, c->local_maxpacket, 0, "accepted auth socket", 1); if (compat20) { packet_start(SSH2_MSG_CHANNEL_OPEN); packet_put_cstring("auth-agent@openssh.com"); packet_put_int(nc->self); packet_put_int(c->local_window_max); packet_put_int(c->local_maxpacket); } else { packet_start(SSH_SMSG_AGENT_OPEN); packet_put_int(nc->self); } packet_send(); } } /* ARGSUSED */ static void channel_post_connecting(Channel *c, fd_set *readset, fd_set *writeset) { int err = 0, sock; socklen_t sz = sizeof(err); if (FD_ISSET(c->sock, writeset)) { if (getsockopt(c->sock, SOL_SOCKET, SO_ERROR, &err, &sz) < 0) { err = errno; error("getsockopt SO_ERROR failed"); } if (err == 0) { debug("channel %d: connected to %s port %d", c->self, c->connect_ctx.host, c->connect_ctx.port); channel_connect_ctx_free(&c->connect_ctx); c->type = SSH_CHANNEL_OPEN; if (compat20) { packet_start(SSH2_MSG_CHANNEL_OPEN_CONFIRMATION); packet_put_int(c->remote_id); packet_put_int(c->self); packet_put_int(c->local_window); packet_put_int(c->local_maxpacket); } else { packet_start(SSH_MSG_CHANNEL_OPEN_CONFIRMATION); packet_put_int(c->remote_id); packet_put_int(c->self); } } else { debug("channel %d: connection failed: %s", c->self, strerror(err)); /* Try next address, if any */ if ((sock = connect_next(&c->connect_ctx)) > 0) { close(c->sock); c->sock = c->rfd = c->wfd = sock; channel_max_fd = channel_find_maxfd(); return; } /* Exhausted all addresses */ error("connect_to %.100s port %d: failed.", c->connect_ctx.host, c->connect_ctx.port); channel_connect_ctx_free(&c->connect_ctx); if (compat20) { packet_start(SSH2_MSG_CHANNEL_OPEN_FAILURE); packet_put_int(c->remote_id); packet_put_int(SSH2_OPEN_CONNECT_FAILED); if (!(datafellows & SSH_BUG_OPENFAILURE)) { packet_put_cstring(strerror(err)); packet_put_cstring(""); } } else { packet_start(SSH_MSG_CHANNEL_OPEN_FAILURE); packet_put_int(c->remote_id); } chan_mark_dead(c); } packet_send(); } } /* ARGSUSED */ static int channel_handle_rfd(Channel *c, fd_set *readset, fd_set *writeset) { char buf[CHAN_RBUF]; int len, force; force = c->isatty && c->detach_close && c->istate != CHAN_INPUT_CLOSED; if (c->rfd != -1 && (force || FD_ISSET(c->rfd, readset))) { errno = 0; len = read(c->rfd, buf, sizeof(buf)); if (len < 0 && (errno == EINTR || ((errno == EAGAIN || errno == EWOULDBLOCK) && !force))) return 1; #ifndef PTY_ZEROREAD if (len <= 0) { #else if ((!c->isatty && len <= 0) || (c->isatty && (len < 0 || (len == 0 && errno != 0)))) { #endif debug2("channel %d: read<=0 rfd %d len %d", c->self, c->rfd, len); if (c->type != SSH_CHANNEL_OPEN) { debug2("channel %d: not open", c->self); chan_mark_dead(c); return -1; } else if (compat13) { buffer_clear(&c->output); c->type = SSH_CHANNEL_INPUT_DRAINING; debug2("channel %d: input draining.", c->self); } else { chan_read_failed(c); } return -1; } if (c->input_filter != NULL) { if (c->input_filter(c, buf, len) == -1) { debug2("channel %d: filter stops", c->self); chan_read_failed(c); } } else if (c->datagram) { buffer_put_string(&c->input, buf, len); } else { buffer_append(&c->input, buf, len); } } return 1; } /* ARGSUSED */ static int channel_handle_wfd(Channel *c, fd_set *readset, fd_set *writeset) { struct termios tio; u_char *data = NULL, *buf; u_int dlen, olen = 0; int len; /* Send buffered output data to the socket. */ if (c->wfd != -1 && FD_ISSET(c->wfd, writeset) && buffer_len(&c->output) > 0) { olen = buffer_len(&c->output); if (c->output_filter != NULL) { if ((buf = c->output_filter(c, &data, &dlen)) == NULL) { debug2("channel %d: filter stops", c->self); if (c->type != SSH_CHANNEL_OPEN) chan_mark_dead(c); else chan_write_failed(c); return -1; } } else if (c->datagram) { buf = data = buffer_get_string(&c->output, &dlen); } else { buf = data = buffer_ptr(&c->output); dlen = buffer_len(&c->output); } if (c->datagram) { /* ignore truncated writes, datagrams might get lost */ len = write(c->wfd, buf, dlen); xfree(data); if (len < 0 && (errno == EINTR || errno == EAGAIN || errno == EWOULDBLOCK)) return 1; if (len <= 0) { if (c->type != SSH_CHANNEL_OPEN) chan_mark_dead(c); else chan_write_failed(c); return -1; } goto out; } #ifdef _AIX /* XXX: Later AIX versions can't push as much data to tty */ if (compat20 && c->wfd_isatty) dlen = MIN(dlen, 8*1024); #endif len = write(c->wfd, buf, dlen); if (len < 0 && (errno == EINTR || errno == EAGAIN || errno == EWOULDBLOCK)) return 1; if (len <= 0) { if (c->type != SSH_CHANNEL_OPEN) { debug2("channel %d: not open", c->self); chan_mark_dead(c); return -1; } else if (compat13) { buffer_clear(&c->output); debug2("channel %d: input draining.", c->self); c->type = SSH_CHANNEL_INPUT_DRAINING; } else { chan_write_failed(c); } return -1; } #ifndef BROKEN_TCGETATTR_ICANON if (compat20 && c->isatty && dlen >= 1 && buf[0] != '\r') { if (tcgetattr(c->wfd, &tio) == 0 && !(tio.c_lflag & ECHO) && (tio.c_lflag & ICANON)) { /* * Simulate echo to reduce the impact of * traffic analysis. We need to match the * size of a SSH2_MSG_CHANNEL_DATA message * (4 byte channel id + buf) */ packet_send_ignore(4 + len); packet_send(); } } #endif buffer_consume(&c->output, len); } out: if (compat20 && olen > 0) c->local_consumed += olen - buffer_len(&c->output); return 1; } static int channel_handle_efd(Channel *c, fd_set *readset, fd_set *writeset) { char buf[CHAN_RBUF]; int len; /** XXX handle drain efd, too */ if (c->efd != -1) { if (c->extended_usage == CHAN_EXTENDED_WRITE && FD_ISSET(c->efd, writeset) && buffer_len(&c->extended) > 0) { len = write(c->efd, buffer_ptr(&c->extended), buffer_len(&c->extended)); debug2("channel %d: written %d to efd %d", c->self, len, c->efd); if (len < 0 && (errno == EINTR || errno == EAGAIN || errno == EWOULDBLOCK)) return 1; if (len <= 0) { debug2("channel %d: closing write-efd %d", c->self, c->efd); channel_close_fd(&c->efd); } else { buffer_consume(&c->extended, len); c->local_consumed += len; } } else if (c->efd != -1 && (c->extended_usage == CHAN_EXTENDED_READ || c->extended_usage == CHAN_EXTENDED_IGNORE) && (c->detach_close || FD_ISSET(c->efd, readset))) { len = read(c->efd, buf, sizeof(buf)); debug2("channel %d: read %d from efd %d", c->self, len, c->efd); if (len < 0 && (errno == EINTR || ((errno == EAGAIN || errno == EWOULDBLOCK) && !c->detach_close))) return 1; if (len <= 0) { debug2("channel %d: closing read-efd %d", c->self, c->efd); channel_close_fd(&c->efd); } else { if (c->extended_usage == CHAN_EXTENDED_IGNORE) { debug3("channel %d: discard efd", c->self); } else buffer_append(&c->extended, buf, len); } } } return 1; } static int channel_check_window(Channel *c) { if (c->type == SSH_CHANNEL_OPEN && !(c->flags & (CHAN_CLOSE_SENT|CHAN_CLOSE_RCVD)) && ((c->local_window_max - c->local_window > c->local_maxpacket*3) || c->local_window < c->local_window_max/2) && c->local_consumed > 0) { u_int addition = 0; /* adjust max window size if we are in a dynamic environment */ if (c->dynamic_window && (c->tcpwinsz > c->local_window_max)) { /* * Grow the window somewhat aggressively to * maintain pressure. */ addition = 1.5*(c->tcpwinsz - c->local_window_max); c->local_window_max += addition; } packet_start(SSH2_MSG_CHANNEL_WINDOW_ADJUST); packet_put_int(c->remote_id); packet_put_int(c->local_consumed + addition); packet_send(); debug2("channel %d: window %d sent adjust %d", c->self, c->local_window, c->local_consumed); c->local_window += c->local_consumed + addition; c->local_consumed = 0; } return 1; } static void channel_post_open(Channel *c, fd_set *readset, fd_set *writeset) { channel_handle_rfd(c, readset, writeset); channel_handle_wfd(c, readset, writeset); if (!compat20) return; channel_handle_efd(c, readset, writeset); channel_check_window(c); } static u_int read_mux(Channel *c, u_int need) { char buf[CHAN_RBUF]; int len; u_int rlen; if (buffer_len(&c->input) < need) { rlen = need - buffer_len(&c->input); len = read(c->rfd, buf, MIN(rlen, CHAN_RBUF)); if (len <= 0) { if (errno != EINTR && errno != EAGAIN) { debug2("channel %d: ctl read<=0 rfd %d len %d", c->self, c->rfd, len); chan_read_failed(c); return 0; } } else buffer_append(&c->input, buf, len); } return buffer_len(&c->input); } static void channel_post_mux_client(Channel *c, fd_set *readset, fd_set *writeset) { u_int need; ssize_t len; if (!compat20) fatal("%s: entered with !compat20", __func__); if (c->rfd != -1 && !c->mux_pause && FD_ISSET(c->rfd, readset) && (c->istate == CHAN_INPUT_OPEN || c->istate == CHAN_INPUT_WAIT_DRAIN)) { /* * Don't not read past the precise end of packets to * avoid disrupting fd passing. */ if (read_mux(c, 4) < 4) /* read header */ return; need = get_u32(buffer_ptr(&c->input)); #define CHANNEL_MUX_MAX_PACKET (256 * 1024) if (need > CHANNEL_MUX_MAX_PACKET) { debug2("channel %d: packet too big %u > %u", c->self, CHANNEL_MUX_MAX_PACKET, need); chan_rcvd_oclose(c); return; } if (read_mux(c, need + 4) < need + 4) /* read body */ return; if (c->mux_rcb(c) != 0) { debug("channel %d: mux_rcb failed", c->self); chan_mark_dead(c); return; } } if (c->wfd != -1 && FD_ISSET(c->wfd, writeset) && buffer_len(&c->output) > 0) { len = write(c->wfd, buffer_ptr(&c->output), buffer_len(&c->output)); if (len < 0 && (errno == EINTR || errno == EAGAIN)) return; if (len <= 0) { chan_mark_dead(c); return; } buffer_consume(&c->output, len); } } static void channel_post_mux_listener(Channel *c, fd_set *readset, fd_set *writeset) { Channel *nc; struct sockaddr_storage addr; socklen_t addrlen; int newsock; uid_t euid; gid_t egid; if (!FD_ISSET(c->sock, readset)) return; debug("multiplexing control connection"); /* * Accept connection on control socket */ memset(&addr, 0, sizeof(addr)); addrlen = sizeof(addr); if ((newsock = accept(c->sock, (struct sockaddr*)&addr, &addrlen)) == -1) { error("%s accept: %s", __func__, strerror(errno)); return; } if (getpeereid(newsock, &euid, &egid) < 0) { error("%s getpeereid failed: %s", __func__, strerror(errno)); close(newsock); return; } if ((euid != 0) && (getuid() != euid)) { error("multiplex uid mismatch: peer euid %u != uid %u", (u_int)euid, (u_int)getuid()); close(newsock); return; } nc = channel_new("multiplex client", SSH_CHANNEL_MUX_CLIENT, newsock, newsock, -1, c->local_window_max, c->local_maxpacket, 0, "mux-control", 1); nc->mux_rcb = c->mux_rcb; debug3("%s: new mux channel %d fd %d", __func__, nc->self, nc->sock); /* establish state */ nc->mux_rcb(nc); /* mux state transitions must not elicit protocol messages */ nc->flags |= CHAN_LOCAL; } /* ARGSUSED */ static void channel_post_output_drain_13(Channel *c, fd_set *readset, fd_set *writeset) { int len; /* Send buffered output data to the socket. */ if (FD_ISSET(c->sock, writeset) && buffer_len(&c->output) > 0) { len = write(c->sock, buffer_ptr(&c->output), buffer_len(&c->output)); if (len <= 0) buffer_clear(&c->output); else buffer_consume(&c->output, len); } } static void channel_handler_init_20(void) { channel_pre[SSH_CHANNEL_OPEN] = &channel_pre_open; channel_pre[SSH_CHANNEL_X11_OPEN] = &channel_pre_x11_open; channel_pre[SSH_CHANNEL_PORT_LISTENER] = &channel_pre_listener; channel_pre[SSH_CHANNEL_RPORT_LISTENER] = &channel_pre_listener; channel_pre[SSH_CHANNEL_X11_LISTENER] = &channel_pre_listener; channel_pre[SSH_CHANNEL_AUTH_SOCKET] = &channel_pre_listener; channel_pre[SSH_CHANNEL_CONNECTING] = &channel_pre_connecting; channel_pre[SSH_CHANNEL_DYNAMIC] = &channel_pre_dynamic; channel_pre[SSH_CHANNEL_MUX_LISTENER] = &channel_pre_listener; channel_pre[SSH_CHANNEL_MUX_CLIENT] = &channel_pre_mux_client; channel_post[SSH_CHANNEL_OPEN] = &channel_post_open; channel_post[SSH_CHANNEL_PORT_LISTENER] = &channel_post_port_listener; channel_post[SSH_CHANNEL_RPORT_LISTENER] = &channel_post_port_listener; channel_post[SSH_CHANNEL_X11_LISTENER] = &channel_post_x11_listener; channel_post[SSH_CHANNEL_AUTH_SOCKET] = &channel_post_auth_listener; channel_post[SSH_CHANNEL_CONNECTING] = &channel_post_connecting; channel_post[SSH_CHANNEL_DYNAMIC] = &channel_post_open; channel_post[SSH_CHANNEL_MUX_LISTENER] = &channel_post_mux_listener; channel_post[SSH_CHANNEL_MUX_CLIENT] = &channel_post_mux_client; } static void channel_handler_init_13(void) { channel_pre[SSH_CHANNEL_OPEN] = &channel_pre_open_13; channel_pre[SSH_CHANNEL_X11_OPEN] = &channel_pre_x11_open_13; channel_pre[SSH_CHANNEL_X11_LISTENER] = &channel_pre_listener; channel_pre[SSH_CHANNEL_PORT_LISTENER] = &channel_pre_listener; channel_pre[SSH_CHANNEL_AUTH_SOCKET] = &channel_pre_listener; channel_pre[SSH_CHANNEL_INPUT_DRAINING] = &channel_pre_input_draining; channel_pre[SSH_CHANNEL_OUTPUT_DRAINING] = &channel_pre_output_draining; channel_pre[SSH_CHANNEL_CONNECTING] = &channel_pre_connecting; channel_pre[SSH_CHANNEL_DYNAMIC] = &channel_pre_dynamic; channel_post[SSH_CHANNEL_OPEN] = &channel_post_open; channel_post[SSH_CHANNEL_X11_LISTENER] = &channel_post_x11_listener; channel_post[SSH_CHANNEL_PORT_LISTENER] = &channel_post_port_listener; channel_post[SSH_CHANNEL_AUTH_SOCKET] = &channel_post_auth_listener; channel_post[SSH_CHANNEL_OUTPUT_DRAINING] = &channel_post_output_drain_13; channel_post[SSH_CHANNEL_CONNECTING] = &channel_post_connecting; channel_post[SSH_CHANNEL_DYNAMIC] = &channel_post_open; } static void channel_handler_init_15(void) { channel_pre[SSH_CHANNEL_OPEN] = &channel_pre_open; channel_pre[SSH_CHANNEL_X11_OPEN] = &channel_pre_x11_open; channel_pre[SSH_CHANNEL_X11_LISTENER] = &channel_pre_listener; channel_pre[SSH_CHANNEL_PORT_LISTENER] = &channel_pre_listener; channel_pre[SSH_CHANNEL_AUTH_SOCKET] = &channel_pre_listener; channel_pre[SSH_CHANNEL_CONNECTING] = &channel_pre_connecting; channel_pre[SSH_CHANNEL_DYNAMIC] = &channel_pre_dynamic; channel_post[SSH_CHANNEL_X11_LISTENER] = &channel_post_x11_listener; channel_post[SSH_CHANNEL_PORT_LISTENER] = &channel_post_port_listener; channel_post[SSH_CHANNEL_AUTH_SOCKET] = &channel_post_auth_listener; channel_post[SSH_CHANNEL_OPEN] = &channel_post_open; channel_post[SSH_CHANNEL_CONNECTING] = &channel_post_connecting; channel_post[SSH_CHANNEL_DYNAMIC] = &channel_post_open; } static void channel_handler_init(void) { int i; for (i = 0; i < SSH_CHANNEL_MAX_TYPE; i++) { channel_pre[i] = NULL; channel_post[i] = NULL; } if (compat20) channel_handler_init_20(); else if (compat13) channel_handler_init_13(); else channel_handler_init_15(); } /* gc dead channels */ static void channel_garbage_collect(Channel *c) { if (c == NULL) return; if (c->detach_user != NULL) { if (!chan_is_dead(c, c->detach_close)) return; debug2("channel %d: gc: notify user", c->self); c->detach_user(c->self, NULL); /* if we still have a callback */ if (c->detach_user != NULL) return; debug2("channel %d: gc: user detached", c->self); } if (!chan_is_dead(c, 1)) return; debug2("channel %d: garbage collecting", c->self); channel_free(c); } static void channel_handler(chan_fn *ftab[], fd_set *readset, fd_set *writeset) { static int did_init = 0; u_int i, oalloc; Channel *c; if (!did_init) { channel_handler_init(); did_init = 1; } for (i = 0, oalloc = channels_alloc; i < oalloc; i++) { c = channels[i]; if (c == NULL) continue; if (c->delayed) { if (ftab == channel_pre) c->delayed = 0; else continue; } if (ftab[c->type] != NULL) (*ftab[c->type])(c, readset, writeset); channel_garbage_collect(c); } } /* * Allocate/update select bitmasks and add any bits relevant to channels in * select bitmasks. */ void channel_prepare_select(fd_set **readsetp, fd_set **writesetp, int *maxfdp, u_int *nallocp, int rekeying) { u_int n, sz, nfdset; n = MAX(*maxfdp, channel_max_fd); nfdset = howmany(n+1, NFDBITS); /* Explicitly test here, because xrealloc isn't always called */ if (nfdset && SIZE_T_MAX / nfdset < sizeof(fd_mask)) fatal("channel_prepare_select: max_fd (%d) is too large", n); sz = nfdset * sizeof(fd_mask); /* perhaps check sz < nalloc/2 and shrink? */ if (*readsetp == NULL || sz > *nallocp) { *readsetp = xrealloc(*readsetp, nfdset, sizeof(fd_mask)); *writesetp = xrealloc(*writesetp, nfdset, sizeof(fd_mask)); *nallocp = sz; } *maxfdp = n; memset(*readsetp, 0, sz); memset(*writesetp, 0, sz); if (!rekeying) channel_handler(channel_pre, *readsetp, *writesetp); } /* * After select, perform any appropriate operations for channels which have * events pending. */ void channel_after_select(fd_set *readset, fd_set *writeset) { channel_handler(channel_post, readset, writeset); } /* If there is data to send to the connection, enqueue some of it now. */ int channel_output_poll(void) { Channel *c; u_int i, len; int packet_length = 0; for (i = 0; i < channels_alloc; i++) { c = channels[i]; if (c == NULL) continue; /* * We are only interested in channels that can have buffered * incoming data. */ if (compat13) { if (c->type != SSH_CHANNEL_OPEN && c->type != SSH_CHANNEL_INPUT_DRAINING) continue; } else { if (c->type != SSH_CHANNEL_OPEN) continue; } if (compat20 && (c->flags & (CHAN_CLOSE_SENT|CHAN_CLOSE_RCVD))) { /* XXX is this true? */ debug3("channel %d: will not send data after close", c->self); continue; } /* Get the amount of buffered data for this channel. */ if ((c->istate == CHAN_INPUT_OPEN || c->istate == CHAN_INPUT_WAIT_DRAIN) && (len = buffer_len(&c->input)) > 0) { if (c->datagram) { if (len > 0) { u_char *data; u_int dlen; data = buffer_get_string(&c->input, &dlen); if (dlen > c->remote_window || dlen > c->remote_maxpacket) { debug("channel %d: datagram " "too big for channel", c->self); xfree(data); continue; } packet_start(SSH2_MSG_CHANNEL_DATA); packet_put_int(c->remote_id); packet_put_string(data, dlen); packet_length = packet_send(); c->remote_window -= dlen + 4; xfree(data); } continue; } /* * Send some data for the other side over the secure * connection. */ if (compat20) { if (len > c->remote_window) len = c->remote_window; if (len > c->remote_maxpacket) len = c->remote_maxpacket; } else { if (packet_is_interactive()) { if (len > 1024) len = 512; } else { /* Keep the packets at reasonable size. */ if (len > packet_get_maxsize()/2) len = packet_get_maxsize()/2; } } if (len > 0) { packet_start(compat20 ? SSH2_MSG_CHANNEL_DATA : SSH_MSG_CHANNEL_DATA); packet_put_int(c->remote_id); packet_put_string(buffer_ptr(&c->input), len); packet_length = packet_send(); buffer_consume(&c->input, len); c->remote_window -= len; } } else if (c->istate == CHAN_INPUT_WAIT_DRAIN) { if (compat13) fatal("cannot happen: istate == INPUT_WAIT_DRAIN for proto 1.3"); /* * input-buffer is empty and read-socket shutdown: * tell peer, that we will not send more data: send IEOF. * hack for extended data: delay EOF if EFD still in use. */ if (CHANNEL_EFD_INPUT_ACTIVE(c)) debug2("channel %d: ibuf_empty delayed efd %d/(%d)", c->self, c->efd, buffer_len(&c->extended)); else chan_ibuf_empty(c); } /* Send extended data, i.e. stderr */ if (compat20 && !(c->flags & CHAN_EOF_SENT) && c->remote_window > 0 && (len = buffer_len(&c->extended)) > 0 && c->extended_usage == CHAN_EXTENDED_READ) { debug2("channel %d: rwin %u elen %u euse %d", c->self, c->remote_window, buffer_len(&c->extended), c->extended_usage); if (len > c->remote_window) len = c->remote_window; if (len > c->remote_maxpacket) len = c->remote_maxpacket; packet_start(SSH2_MSG_CHANNEL_EXTENDED_DATA); packet_put_int(c->remote_id); packet_put_int(SSH2_EXTENDED_DATA_STDERR); packet_put_string(buffer_ptr(&c->extended), len); packet_length = packet_send(); buffer_consume(&c->extended, len); c->remote_window -= len; debug2("channel %d: sent ext data %d", c->self, len); } } return (packet_length); } /* -- protocol input */ /* ARGSUSED */ void channel_input_data(int type, u_int32_t seq, void *ctxt) { int id; char *data; u_int data_len, win_len; Channel *c; /* Get the channel number and verify it. */ id = packet_get_int(); c = channel_lookup(id); if (c == NULL) packet_disconnect("Received data for nonexistent channel %d.", id); /* Ignore any data for non-open channels (might happen on close) */ if (c->type != SSH_CHANNEL_OPEN && c->type != SSH_CHANNEL_X11_OPEN) return; /* Get the data. */ data = packet_get_string_ptr(&data_len); win_len = data_len; if (c->datagram) win_len += 4; /* string length header */ /* * Ignore data for protocol > 1.3 if output end is no longer open. * For protocol 2 the sending side is reducing its window as it sends * data, so we must 'fake' consumption of the data in order to ensure * that window updates are sent back. Otherwise the connection might * deadlock. */ if (!compat13 && c->ostate != CHAN_OUTPUT_OPEN) { if (compat20) { c->local_window -= win_len; c->local_consumed += win_len; } return; } if (compat20) { if (win_len > c->local_maxpacket) { logit("channel %d: rcvd big packet %d, maxpack %d", c->self, win_len, c->local_maxpacket); } if (win_len > c->local_window) { logit("channel %d: rcvd too much data %d, win %d", c->self, win_len, c->local_window); return; } c->local_window -= win_len; } if (c->datagram) buffer_put_string(&c->output, data, data_len); else buffer_append(&c->output, data, data_len); packet_check_eom(); } /* ARGSUSED */ void channel_input_extended_data(int type, u_int32_t seq, void *ctxt) { int id; char *data; u_int data_len, tcode; Channel *c; /* Get the channel number and verify it. */ id = packet_get_int(); c = channel_lookup(id); if (c == NULL) packet_disconnect("Received extended_data for bad channel %d.", id); if (c->type != SSH_CHANNEL_OPEN) { logit("channel %d: ext data for non open", id); return; } if (c->flags & CHAN_EOF_RCVD) { if (datafellows & SSH_BUG_EXTEOF) debug("channel %d: accepting ext data after eof", id); else packet_disconnect("Received extended_data after EOF " "on channel %d.", id); } tcode = packet_get_int(); if (c->efd == -1 || c->extended_usage != CHAN_EXTENDED_WRITE || tcode != SSH2_EXTENDED_DATA_STDERR) { logit("channel %d: bad ext data", c->self); return; } data = packet_get_string(&data_len); packet_check_eom(); if (data_len > c->local_window) { logit("channel %d: rcvd too much extended_data %d, win %d", c->self, data_len, c->local_window); xfree(data); return; } debug2("channel %d: rcvd ext data %d", c->self, data_len); c->local_window -= data_len; buffer_append(&c->extended, data, data_len); xfree(data); } /* ARGSUSED */ void channel_input_ieof(int type, u_int32_t seq, void *ctxt) { int id; Channel *c; id = packet_get_int(); packet_check_eom(); c = channel_lookup(id); if (c == NULL) packet_disconnect("Received ieof for nonexistent channel %d.", id); chan_rcvd_ieof(c); /* XXX force input close */ if (c->force_drain && c->istate == CHAN_INPUT_OPEN) { debug("channel %d: FORCE input drain", c->self); c->istate = CHAN_INPUT_WAIT_DRAIN; if (buffer_len(&c->input) == 0) chan_ibuf_empty(c); } } /* ARGSUSED */ void channel_input_close(int type, u_int32_t seq, void *ctxt) { int id; Channel *c; id = packet_get_int(); packet_check_eom(); c = channel_lookup(id); if (c == NULL) packet_disconnect("Received close for nonexistent channel %d.", id); /* * Send a confirmation that we have closed the channel and no more * data is coming for it. */ packet_start(SSH_MSG_CHANNEL_CLOSE_CONFIRMATION); packet_put_int(c->remote_id); packet_send(); /* * If the channel is in closed state, we have sent a close request, * and the other side will eventually respond with a confirmation. * Thus, we cannot free the channel here, because then there would be * no-one to receive the confirmation. The channel gets freed when * the confirmation arrives. */ if (c->type != SSH_CHANNEL_CLOSED) { /* * Not a closed channel - mark it as draining, which will * cause it to be freed later. */ buffer_clear(&c->input); c->type = SSH_CHANNEL_OUTPUT_DRAINING; } } /* proto version 1.5 overloads CLOSE_CONFIRMATION with OCLOSE */ /* ARGSUSED */ void channel_input_oclose(int type, u_int32_t seq, void *ctxt) { int id = packet_get_int(); Channel *c = channel_lookup(id); packet_check_eom(); if (c == NULL) packet_disconnect("Received oclose for nonexistent channel %d.", id); chan_rcvd_oclose(c); } /* ARGSUSED */ void channel_input_close_confirmation(int type, u_int32_t seq, void *ctxt) { int id = packet_get_int(); Channel *c = channel_lookup(id); packet_check_eom(); if (c == NULL) packet_disconnect("Received close confirmation for " "out-of-range channel %d.", id); if (c->type != SSH_CHANNEL_CLOSED) packet_disconnect("Received close confirmation for " "non-closed channel %d (type %d).", id, c->type); channel_free(c); } /* ARGSUSED */ void channel_input_open_confirmation(int type, u_int32_t seq, void *ctxt) { int id, remote_id; Channel *c; id = packet_get_int(); c = channel_lookup(id); if (c==NULL || c->type != SSH_CHANNEL_OPENING) packet_disconnect("Received open confirmation for " "non-opening channel %d.", id); remote_id = packet_get_int(); /* Record the remote channel number and mark that the channel is now open. */ c->remote_id = remote_id; c->type = SSH_CHANNEL_OPEN; if (compat20) { c->remote_window = packet_get_int(); c->remote_maxpacket = packet_get_int(); if (c->open_confirm) { debug2("callback start"); c->open_confirm(c->self, 1, c->open_confirm_ctx); debug2("callback done"); } debug2("channel %d: open confirm rwindow %u rmax %u", c->self, c->remote_window, c->remote_maxpacket); } packet_check_eom(); } static char * reason2txt(int reason) { switch (reason) { case SSH2_OPEN_ADMINISTRATIVELY_PROHIBITED: return "administratively prohibited"; case SSH2_OPEN_CONNECT_FAILED: return "connect failed"; case SSH2_OPEN_UNKNOWN_CHANNEL_TYPE: return "unknown channel type"; case SSH2_OPEN_RESOURCE_SHORTAGE: return "resource shortage"; } return "unknown reason"; } /* ARGSUSED */ void channel_input_open_failure(int type, u_int32_t seq, void *ctxt) { int id, reason; char *msg = NULL, *lang = NULL; Channel *c; id = packet_get_int(); c = channel_lookup(id); if (c==NULL || c->type != SSH_CHANNEL_OPENING) packet_disconnect("Received open failure for " "non-opening channel %d.", id); if (compat20) { reason = packet_get_int(); if (!(datafellows & SSH_BUG_OPENFAILURE)) { msg = packet_get_string(NULL); lang = packet_get_string(NULL); } logit("channel %d: open failed: %s%s%s", id, reason2txt(reason), msg ? ": ": "", msg ? msg : ""); if (msg != NULL) xfree(msg); if (lang != NULL) xfree(lang); if (c->open_confirm) { debug2("callback start"); c->open_confirm(c->self, 0, c->open_confirm_ctx); debug2("callback done"); } } packet_check_eom(); /* Schedule the channel for cleanup/deletion. */ chan_mark_dead(c); } /* ARGSUSED */ void channel_input_window_adjust(int type, u_int32_t seq, void *ctxt) { Channel *c; int id; u_int adjust; if (!compat20) return; /* Get the channel number and verify it. */ id = packet_get_int(); c = channel_lookup(id); if (c == NULL) { logit("Received window adjust for non-open channel %d.", id); return; } adjust = packet_get_int(); packet_check_eom(); debug2("channel %d: rcvd adjust %u", id, adjust); c->remote_window += adjust; } /* ARGSUSED */ void channel_input_port_open(int type, u_int32_t seq, void *ctxt) { Channel *c = NULL; u_short host_port; char *host, *originator_string; int remote_id; remote_id = packet_get_int(); host = packet_get_string(NULL); host_port = packet_get_int(); if (packet_get_protocol_flags() & SSH_PROTOFLAG_HOST_IN_FWD_OPEN) { originator_string = packet_get_string(NULL); } else { originator_string = xstrdup("unknown (remote did not supply name)"); } packet_check_eom(); c = channel_connect_to(host, host_port, "connected socket", originator_string); xfree(originator_string); xfree(host); if (c == NULL) { packet_start(SSH_MSG_CHANNEL_OPEN_FAILURE); packet_put_int(remote_id); packet_send(); } else c->remote_id = remote_id; } /* ARGSUSED */ void channel_input_status_confirm(int type, u_int32_t seq, void *ctxt) { Channel *c; struct channel_confirm *cc; int id; /* Reset keepalive timeout */ packet_set_alive_timeouts(0); id = packet_get_int(); packet_check_eom(); debug2("channel_input_status_confirm: type %d id %d", type, id); if ((c = channel_lookup(id)) == NULL) { logit("channel_input_status_confirm: %d: unknown", id); return; } ; if ((cc = TAILQ_FIRST(&c->status_confirms)) == NULL) return; cc->cb(type, c, cc->ctx); TAILQ_REMOVE(&c->status_confirms, cc, entry); bzero(cc, sizeof(*cc)); xfree(cc); } /* -- tcp forwarding */ void channel_set_af(int af) { IPv4or6 = af; } void channel_set_hpn(int external_hpn_disabled, int external_hpn_buffer_size) { hpn_disabled = external_hpn_disabled; hpn_buffer_size = external_hpn_buffer_size; - debug("HPN Disabled: %d, HPN Buffer Size: %d", hpn_disabled, hpn_buffer_size); + debug("HPN Disabled: %d, HPN Buffer Size: %d", + hpn_disabled, hpn_buffer_size); } static int channel_setup_fwd_listener(int type, const char *listen_addr, u_short listen_port, int *allocated_listen_port, const char *host_to_connect, u_short port_to_connect, int gateway_ports) { Channel *c; int sock, r, success = 0, wildcard = 0, is_client; struct addrinfo hints, *ai, *aitop; const char *host, *addr; char ntop[NI_MAXHOST], strport[NI_MAXSERV]; in_port_t *lport_p; host = (type == SSH_CHANNEL_RPORT_LISTENER) ? listen_addr : host_to_connect; is_client = (type == SSH_CHANNEL_PORT_LISTENER); if (host == NULL) { error("No forward host name."); return 0; } if (strlen(host) >= NI_MAXHOST) { error("Forward host name too long."); return 0; } /* * Determine whether or not a port forward listens to loopback, * specified address or wildcard. On the client, a specified bind * address will always override gateway_ports. On the server, a * gateway_ports of 1 (``yes'') will override the client's * specification and force a wildcard bind, whereas a value of 2 * (``clientspecified'') will bind to whatever address the client * asked for. * * Special-case listen_addrs are: * * "0.0.0.0" -> wildcard v4/v6 if SSH_OLD_FORWARD_ADDR * "" (empty string), "*" -> wildcard v4/v6 * "localhost" -> loopback v4/v6 */ addr = NULL; if (listen_addr == NULL) { /* No address specified: default to gateway_ports setting */ if (gateway_ports) wildcard = 1; } else if (gateway_ports || is_client) { if (((datafellows & SSH_OLD_FORWARD_ADDR) && strcmp(listen_addr, "0.0.0.0") == 0 && is_client == 0) || *listen_addr == '\0' || strcmp(listen_addr, "*") == 0 || (!is_client && gateway_ports == 1)) wildcard = 1; else if (strcmp(listen_addr, "localhost") != 0) addr = listen_addr; } debug3("channel_setup_fwd_listener: type %d wildcard %d addr %s", type, wildcard, (addr == NULL) ? "NULL" : addr); /* * getaddrinfo returns a loopback address if the hostname is * set to NULL and hints.ai_flags is not AI_PASSIVE */ memset(&hints, 0, sizeof(hints)); hints.ai_family = IPv4or6; hints.ai_flags = wildcard ? AI_PASSIVE : 0; hints.ai_socktype = SOCK_STREAM; snprintf(strport, sizeof strport, "%d", listen_port); if ((r = getaddrinfo(addr, strport, &hints, &aitop)) != 0) { if (addr == NULL) { /* This really shouldn't happen */ packet_disconnect("getaddrinfo: fatal error: %s", ssh_gai_strerror(r)); } else { error("channel_setup_fwd_listener: " "getaddrinfo(%.64s): %s", addr, ssh_gai_strerror(r)); } return 0; } if (allocated_listen_port != NULL) *allocated_listen_port = 0; for (ai = aitop; ai; ai = ai->ai_next) { switch (ai->ai_family) { case AF_INET: lport_p = &((struct sockaddr_in *)ai->ai_addr)-> sin_port; break; case AF_INET6: lport_p = &((struct sockaddr_in6 *)ai->ai_addr)-> sin6_port; break; default: continue; } /* * If allocating a port for -R forwards, then use the * same port for all address families. */ if (type == SSH_CHANNEL_RPORT_LISTENER && listen_port == 0 && allocated_listen_port != NULL && *allocated_listen_port > 0) *lport_p = htons(*allocated_listen_port); if (getnameinfo(ai->ai_addr, ai->ai_addrlen, ntop, sizeof(ntop), strport, sizeof(strport), NI_NUMERICHOST|NI_NUMERICSERV) != 0) { error("channel_setup_fwd_listener: getnameinfo failed"); continue; } /* Create a port to listen for the host. */ sock = socket(ai->ai_family, ai->ai_socktype, ai->ai_protocol); if (sock < 0) { /* this is no error since kernel may not support ipv6 */ verbose("socket: %.100s", strerror(errno)); continue; } channel_set_reuseaddr(sock); if (ai->ai_family == AF_INET6) sock_set_v6only(sock); debug("Local forwarding listening on %s port %s.", ntop, strport); /* Bind the socket to the address. */ if (bind(sock, ai->ai_addr, ai->ai_addrlen) < 0) { /* address can be in use ipv6 address is already bound */ if (!ai->ai_next) error("bind: %.100s", strerror(errno)); else verbose("bind: %.100s", strerror(errno)); close(sock); continue; } /* Start listening for connections on the socket. */ if (listen(sock, SSH_LISTEN_BACKLOG) < 0) { error("listen: %.100s", strerror(errno)); close(sock); continue; } /* * listen_port == 0 requests a dynamically allocated port - * record what we got. */ if (type == SSH_CHANNEL_RPORT_LISTENER && listen_port == 0 && allocated_listen_port != NULL && *allocated_listen_port == 0) { *allocated_listen_port = get_sock_port(sock, 1); debug("Allocated listen port %d", *allocated_listen_port); } /* Allocate a channel number for the socket. */ - /* explicitly test for hpn disabled option. if true use smaller window size */ if (hpn_disabled) { c = channel_new("port listener", type, sock, sock, -1, CHAN_TCP_WINDOW_DEFAULT, CHAN_TCP_PACKET_DEFAULT, 0, "port listener", 1); } else { c = channel_new("port listener", type, sock, sock, -1, hpn_buffer_size, CHAN_TCP_PACKET_DEFAULT, 0, "port listener", 1); } c->path = xstrdup(host); c->host_port = port_to_connect; c->listening_port = listen_port; success = 1; } if (success == 0) error("channel_setup_fwd_listener: cannot listen to port: %d", listen_port); freeaddrinfo(aitop); return success; } int channel_cancel_rport_listener(const char *host, u_short port) { u_int i; int found = 0; for (i = 0; i < channels_alloc; i++) { Channel *c = channels[i]; if (c != NULL && c->type == SSH_CHANNEL_RPORT_LISTENER && strcmp(c->path, host) == 0 && c->listening_port == port) { debug2("%s: close channel %d", __func__, i); channel_free(c); found = 1; } } return (found); } /* protocol local port fwd, used by ssh (and sshd in v1) */ int channel_setup_local_fwd_listener(const char *listen_host, u_short listen_port, const char *host_to_connect, u_short port_to_connect, int gateway_ports) { return channel_setup_fwd_listener(SSH_CHANNEL_PORT_LISTENER, listen_host, listen_port, NULL, host_to_connect, port_to_connect, gateway_ports); } /* protocol v2 remote port fwd, used by sshd */ int channel_setup_remote_fwd_listener(const char *listen_address, u_short listen_port, int *allocated_listen_port, int gateway_ports) { return channel_setup_fwd_listener(SSH_CHANNEL_RPORT_LISTENER, listen_address, listen_port, allocated_listen_port, NULL, 0, gateway_ports); } /* * Initiate forwarding of connections to port "port" on remote host through * the secure channel to host:port from local side. */ int channel_request_remote_forwarding(const char *listen_host, u_short listen_port, const char *host_to_connect, u_short port_to_connect) { int type, success = 0; /* Send the forward request to the remote side. */ if (compat20) { const char *address_to_bind; if (listen_host == NULL) { if (datafellows & SSH_BUG_RFWD_ADDR) address_to_bind = "127.0.0.1"; else address_to_bind = "localhost"; } else if (*listen_host == '\0' || strcmp(listen_host, "*") == 0) { if (datafellows & SSH_BUG_RFWD_ADDR) address_to_bind = "0.0.0.0"; else address_to_bind = ""; } else address_to_bind = listen_host; packet_start(SSH2_MSG_GLOBAL_REQUEST); packet_put_cstring("tcpip-forward"); packet_put_char(1); /* boolean: want reply */ packet_put_cstring(address_to_bind); packet_put_int(listen_port); packet_send(); packet_write_wait(); /* Assume that server accepts the request */ success = 1; } else { packet_start(SSH_CMSG_PORT_FORWARD_REQUEST); packet_put_int(listen_port); packet_put_cstring(host_to_connect); packet_put_int(port_to_connect); packet_send(); packet_write_wait(); /* Wait for response from the remote side. */ type = packet_read(); switch (type) { case SSH_SMSG_SUCCESS: success = 1; break; case SSH_SMSG_FAILURE: break; default: /* Unknown packet */ packet_disconnect("Protocol error for port forward request:" "received packet type %d.", type); } } if (success) { /* Record that connection to this host/port is permitted. */ permitted_opens = xrealloc(permitted_opens, num_permitted_opens + 1, sizeof(*permitted_opens)); permitted_opens[num_permitted_opens].host_to_connect = xstrdup(host_to_connect); permitted_opens[num_permitted_opens].port_to_connect = port_to_connect; permitted_opens[num_permitted_opens].listen_port = listen_port; num_permitted_opens++; } return (success ? 0 : -1); } /* * Request cancellation of remote forwarding of connection host:port from * local side. */ void channel_request_rforward_cancel(const char *host, u_short port) { int i; if (!compat20) return; for (i = 0; i < num_permitted_opens; i++) { if (permitted_opens[i].host_to_connect != NULL && permitted_opens[i].listen_port == port) break; } if (i >= num_permitted_opens) { debug("%s: requested forward not found", __func__); return; } packet_start(SSH2_MSG_GLOBAL_REQUEST); packet_put_cstring("cancel-tcpip-forward"); packet_put_char(0); packet_put_cstring(host == NULL ? "" : host); packet_put_int(port); packet_send(); permitted_opens[i].listen_port = 0; permitted_opens[i].port_to_connect = 0; xfree(permitted_opens[i].host_to_connect); permitted_opens[i].host_to_connect = NULL; } /* * This is called after receiving CHANNEL_FORWARDING_REQUEST. This initates * listening for the port, and sends back a success reply (or disconnect * message if there was an error). */ int channel_input_port_forward_request(int is_root, int gateway_ports) { u_short port, host_port; int success = 0; char *hostname; /* Get arguments from the packet. */ port = packet_get_int(); hostname = packet_get_string(NULL); host_port = packet_get_int(); #ifndef HAVE_CYGWIN /* * Check that an unprivileged user is not trying to forward a * privileged port. */ if (port < IPPORT_RESERVED && !is_root) packet_disconnect( "Requested forwarding of port %d but user is not root.", port); if (host_port == 0) packet_disconnect("Dynamic forwarding denied."); #endif /* Initiate forwarding */ success = channel_setup_local_fwd_listener(NULL, port, hostname, host_port, gateway_ports); /* Free the argument string. */ xfree(hostname); return (success ? 0 : -1); } /* * Permits opening to any host/port if permitted_opens[] is empty. This is * usually called by the server, because the user could connect to any port * anyway, and the server has no way to know but to trust the client anyway. */ void channel_permit_all_opens(void) { if (num_permitted_opens == 0) all_opens_permitted = 1; } void channel_add_permitted_opens(char *host, int port) { debug("allow port forwarding to host %s port %d", host, port); permitted_opens = xrealloc(permitted_opens, num_permitted_opens + 1, sizeof(*permitted_opens)); permitted_opens[num_permitted_opens].host_to_connect = xstrdup(host); permitted_opens[num_permitted_opens].port_to_connect = port; num_permitted_opens++; all_opens_permitted = 0; } int channel_add_adm_permitted_opens(char *host, int port) { debug("config allows port forwarding to host %s port %d", host, port); permitted_adm_opens = xrealloc(permitted_adm_opens, num_adm_permitted_opens + 1, sizeof(*permitted_adm_opens)); permitted_adm_opens[num_adm_permitted_opens].host_to_connect = xstrdup(host); permitted_adm_opens[num_adm_permitted_opens].port_to_connect = port; return ++num_adm_permitted_opens; } void channel_clear_permitted_opens(void) { int i; for (i = 0; i < num_permitted_opens; i++) if (permitted_opens[i].host_to_connect != NULL) xfree(permitted_opens[i].host_to_connect); if (num_permitted_opens > 0) { xfree(permitted_opens); permitted_opens = NULL; } num_permitted_opens = 0; } void channel_clear_adm_permitted_opens(void) { int i; for (i = 0; i < num_adm_permitted_opens; i++) if (permitted_adm_opens[i].host_to_connect != NULL) xfree(permitted_adm_opens[i].host_to_connect); if (num_adm_permitted_opens > 0) { xfree(permitted_adm_opens); permitted_adm_opens = NULL; } num_adm_permitted_opens = 0; } void channel_print_adm_permitted_opens(void) { int i; printf("permitopen"); if (num_adm_permitted_opens == 0) { printf(" any\n"); return; } for (i = 0; i < num_adm_permitted_opens; i++) if (permitted_adm_opens[i].host_to_connect != NULL) printf(" %s:%d", permitted_adm_opens[i].host_to_connect, permitted_adm_opens[i].port_to_connect); printf("\n"); } /* Try to start non-blocking connect to next host in cctx list */ static int connect_next(struct channel_connect *cctx) { int sock, saved_errno; char ntop[NI_MAXHOST], strport[NI_MAXSERV]; for (; cctx->ai; cctx->ai = cctx->ai->ai_next) { if (cctx->ai->ai_family != AF_INET && cctx->ai->ai_family != AF_INET6) continue; if (getnameinfo(cctx->ai->ai_addr, cctx->ai->ai_addrlen, ntop, sizeof(ntop), strport, sizeof(strport), NI_NUMERICHOST|NI_NUMERICSERV) != 0) { error("connect_next: getnameinfo failed"); continue; } if ((sock = socket(cctx->ai->ai_family, cctx->ai->ai_socktype, cctx->ai->ai_protocol)) == -1) { if (cctx->ai->ai_next == NULL) error("socket: %.100s", strerror(errno)); else verbose("socket: %.100s", strerror(errno)); continue; } if (set_nonblock(sock) == -1) fatal("%s: set_nonblock(%d)", __func__, sock); if (connect(sock, cctx->ai->ai_addr, cctx->ai->ai_addrlen) == -1 && errno != EINPROGRESS) { debug("connect_next: host %.100s ([%.100s]:%s): " "%.100s", cctx->host, ntop, strport, strerror(errno)); saved_errno = errno; close(sock); errno = saved_errno; continue; /* fail -- try next */ } debug("connect_next: host %.100s ([%.100s]:%s) " "in progress, fd=%d", cctx->host, ntop, strport, sock); cctx->ai = cctx->ai->ai_next; set_nodelay(sock); return sock; } return -1; } static void channel_connect_ctx_free(struct channel_connect *cctx) { xfree(cctx->host); if (cctx->aitop) freeaddrinfo(cctx->aitop); bzero(cctx, sizeof(*cctx)); cctx->host = NULL; cctx->ai = cctx->aitop = NULL; } /* Return CONNECTING channel to remote host, port */ static Channel * connect_to(const char *host, u_short port, char *ctype, char *rname) { struct addrinfo hints; int gaierr; int sock = -1; char strport[NI_MAXSERV]; struct channel_connect cctx; Channel *c; memset(&cctx, 0, sizeof(cctx)); memset(&hints, 0, sizeof(hints)); hints.ai_family = IPv4or6; hints.ai_socktype = SOCK_STREAM; snprintf(strport, sizeof strport, "%d", port); if ((gaierr = getaddrinfo(host, strport, &hints, &cctx.aitop)) != 0) { error("connect_to %.100s: unknown host (%s)", host, ssh_gai_strerror(gaierr)); return NULL; } cctx.host = xstrdup(host); cctx.port = port; cctx.ai = cctx.aitop; if ((sock = connect_next(&cctx)) == -1) { error("connect to %.100s port %d failed: %s", host, port, strerror(errno)); channel_connect_ctx_free(&cctx); return NULL; } c = channel_new(ctype, SSH_CHANNEL_CONNECTING, sock, sock, -1, CHAN_TCP_WINDOW_DEFAULT, CHAN_TCP_PACKET_DEFAULT, 0, rname, 1); c->connect_ctx = cctx; return c; } Channel * channel_connect_by_listen_address(u_short listen_port, char *ctype, char *rname) { int i; for (i = 0; i < num_permitted_opens; i++) { if (permitted_opens[i].host_to_connect != NULL && permitted_opens[i].listen_port == listen_port) { return connect_to( permitted_opens[i].host_to_connect, permitted_opens[i].port_to_connect, ctype, rname); } } error("WARNING: Server requests forwarding for unknown listen_port %d", listen_port); return NULL; } /* Check if connecting to that port is permitted and connect. */ Channel * channel_connect_to(const char *host, u_short port, char *ctype, char *rname) { int i, permit, permit_adm = 1; permit = all_opens_permitted; if (!permit) { for (i = 0; i < num_permitted_opens; i++) if (permitted_opens[i].host_to_connect != NULL && permitted_opens[i].port_to_connect == port && strcmp(permitted_opens[i].host_to_connect, host) == 0) permit = 1; } if (num_adm_permitted_opens > 0) { permit_adm = 0; for (i = 0; i < num_adm_permitted_opens; i++) if (permitted_adm_opens[i].host_to_connect != NULL && permitted_adm_opens[i].port_to_connect == port && strcmp(permitted_adm_opens[i].host_to_connect, host) == 0) permit_adm = 1; } if (!permit || !permit_adm) { logit("Received request to connect to host %.100s port %d, " "but the request was denied.", host, port); return NULL; } return connect_to(host, port, ctype, rname); } void channel_send_window_changes(void) { u_int i; struct winsize ws; for (i = 0; i < channels_alloc; i++) { if (channels[i] == NULL || !channels[i]->client_tty || channels[i]->type != SSH_CHANNEL_OPEN) continue; if (ioctl(channels[i]->rfd, TIOCGWINSZ, &ws) < 0) continue; channel_request_start(i, "window-change", 0); packet_put_int((u_int)ws.ws_col); packet_put_int((u_int)ws.ws_row); packet_put_int((u_int)ws.ws_xpixel); packet_put_int((u_int)ws.ws_ypixel); packet_send(); } } /* -- X11 forwarding */ /* * Creates an internet domain socket for listening for X11 connections. * Returns 0 and a suitable display number for the DISPLAY variable * stored in display_numberp , or -1 if an error occurs. */ int x11_create_display_inet(int x11_display_offset, int x11_use_localhost, int single_connection, u_int *display_numberp, int **chanids) { Channel *nc = NULL; int display_number, sock; u_short port; struct addrinfo hints, *ai, *aitop; char strport[NI_MAXSERV]; int gaierr, n, num_socks = 0, socks[NUM_SOCKS]; if (chanids == NULL) return -1; for (display_number = x11_display_offset; display_number < MAX_DISPLAYS; display_number++) { port = 6000 + display_number; memset(&hints, 0, sizeof(hints)); hints.ai_family = IPv4or6; hints.ai_flags = x11_use_localhost ? 0: AI_PASSIVE; hints.ai_socktype = SOCK_STREAM; snprintf(strport, sizeof strport, "%d", port); if ((gaierr = getaddrinfo(NULL, strport, &hints, &aitop)) != 0) { error("getaddrinfo: %.100s", ssh_gai_strerror(gaierr)); return -1; } for (ai = aitop; ai; ai = ai->ai_next) { if (ai->ai_family != AF_INET && ai->ai_family != AF_INET6) continue; sock = socket(ai->ai_family, ai->ai_socktype, ai->ai_protocol); if (sock < 0) { if ((errno != EINVAL) && (errno != EAFNOSUPPORT) #ifdef EPFNOSUPPORT && (errno != EPFNOSUPPORT) #endif ) { error("socket: %.100s", strerror(errno)); freeaddrinfo(aitop); return -1; } else { debug("x11_create_display_inet: Socket family %d not supported", ai->ai_family); continue; } } if (ai->ai_family == AF_INET6) sock_set_v6only(sock); if (x11_use_localhost) channel_set_reuseaddr(sock); if (bind(sock, ai->ai_addr, ai->ai_addrlen) < 0) { debug2("bind port %d: %.100s", port, strerror(errno)); close(sock); for (n = 0; n < num_socks; n++) { close(socks[n]); } num_socks = 0; break; } socks[num_socks++] = sock; if (num_socks == NUM_SOCKS) break; } freeaddrinfo(aitop); if (num_socks > 0) break; } if (display_number >= MAX_DISPLAYS) { error("Failed to allocate internet-domain X11 display socket."); return -1; } /* Start listening for connections on the socket. */ for (n = 0; n < num_socks; n++) { sock = socks[n]; if (listen(sock, SSH_LISTEN_BACKLOG) < 0) { error("listen: %.100s", strerror(errno)); close(sock); return -1; } } /* Allocate a channel for each socket. */ *chanids = xcalloc(num_socks + 1, sizeof(**chanids)); for (n = 0; n < num_socks; n++) { sock = socks[n]; - /* Is this really necassary? */ if (hpn_disabled) { nc = channel_new("x11 listener", SSH_CHANNEL_X11_LISTENER, sock, sock, -1, CHAN_X11_WINDOW_DEFAULT, CHAN_X11_PACKET_DEFAULT, 0, "X11 inet listener", 1); } else { nc = channel_new("x11 listener", SSH_CHANNEL_X11_LISTENER, sock, sock, -1, hpn_buffer_size, CHAN_X11_PACKET_DEFAULT, 0, "X11 inet listener", 1); } nc->single_connection = single_connection; (*chanids)[n] = nc->self; } (*chanids)[n] = -1; /* Return the display number for the DISPLAY environment variable. */ *display_numberp = display_number; return (0); } static int connect_local_xsocket_path(const char *pathname) { int sock; struct sockaddr_un addr; sock = socket(AF_UNIX, SOCK_STREAM, 0); if (sock < 0) error("socket: %.100s", strerror(errno)); memset(&addr, 0, sizeof(addr)); addr.sun_family = AF_UNIX; strlcpy(addr.sun_path, pathname, sizeof addr.sun_path); if (connect(sock, (struct sockaddr *)&addr, sizeof(addr)) == 0) return sock; close(sock); error("connect %.100s: %.100s", addr.sun_path, strerror(errno)); return -1; } static int connect_local_xsocket(u_int dnr) { char buf[1024]; snprintf(buf, sizeof buf, _PATH_UNIX_X, dnr); return connect_local_xsocket_path(buf); } int x11_connect_display(void) { u_int display_number; const char *display; char buf[1024], *cp; struct addrinfo hints, *ai, *aitop; char strport[NI_MAXSERV]; int gaierr, sock = 0; /* Try to open a socket for the local X server. */ display = getenv("DISPLAY"); if (!display) { error("DISPLAY not set."); return -1; } /* * Now we decode the value of the DISPLAY variable and make a * connection to the real X server. */ /* Check if the display is from launchd. */ #ifdef __APPLE__ if (strncmp(display, "/tmp/launch", 11) == 0) { sock = connect_local_xsocket_path(display); if (sock < 0) return -1; /* OK, we now have a connection to the display. */ return sock; } #endif /* * Check if it is a unix domain socket. Unix domain displays are in * one of the following formats: unix:d[.s], :d[.s], ::d[.s] */ if (strncmp(display, "unix:", 5) == 0 || display[0] == ':') { /* Connect to the unix domain socket. */ if (sscanf(strrchr(display, ':') + 1, "%u", &display_number) != 1) { error("Could not parse display number from DISPLAY: %.100s", display); return -1; } /* Create a socket. */ sock = connect_local_xsocket(display_number); if (sock < 0) return -1; /* OK, we now have a connection to the display. */ return sock; } /* * Connect to an inet socket. The DISPLAY value is supposedly * hostname:d[.s], where hostname may also be numeric IP address. */ strlcpy(buf, display, sizeof(buf)); cp = strchr(buf, ':'); if (!cp) { error("Could not find ':' in DISPLAY: %.100s", display); return -1; } *cp = 0; /* buf now contains the host name. But first we parse the display number. */ if (sscanf(cp + 1, "%u", &display_number) != 1) { error("Could not parse display number from DISPLAY: %.100s", display); return -1; } /* Look up the host address */ memset(&hints, 0, sizeof(hints)); hints.ai_family = IPv4or6; hints.ai_socktype = SOCK_STREAM; snprintf(strport, sizeof strport, "%u", 6000 + display_number); if ((gaierr = getaddrinfo(buf, strport, &hints, &aitop)) != 0) { error("%.100s: unknown host. (%s)", buf, ssh_gai_strerror(gaierr)); return -1; } for (ai = aitop; ai; ai = ai->ai_next) { /* Create a socket. */ sock = socket(ai->ai_family, ai->ai_socktype, ai->ai_protocol); if (sock < 0) { debug2("socket: %.100s", strerror(errno)); continue; } /* Connect it to the display. */ if (connect(sock, ai->ai_addr, ai->ai_addrlen) < 0) { debug2("connect %.100s port %u: %.100s", buf, 6000 + display_number, strerror(errno)); close(sock); continue; } /* Success */ break; } freeaddrinfo(aitop); if (!ai) { error("connect %.100s port %u: %.100s", buf, 6000 + display_number, strerror(errno)); return -1; } set_nodelay(sock); return sock; } /* * This is called when SSH_SMSG_X11_OPEN is received. The packet contains * the remote channel number. We should do whatever we want, and respond * with either SSH_MSG_OPEN_CONFIRMATION or SSH_MSG_OPEN_FAILURE. */ /* ARGSUSED */ void x11_input_open(int type, u_int32_t seq, void *ctxt) { Channel *c = NULL; int remote_id, sock = 0; char *remote_host; debug("Received X11 open request."); remote_id = packet_get_int(); if (packet_get_protocol_flags() & SSH_PROTOFLAG_HOST_IN_FWD_OPEN) { remote_host = packet_get_string(NULL); } else { remote_host = xstrdup("unknown (remote did not supply name)"); } packet_check_eom(); /* Obtain a connection to the real X display. */ sock = x11_connect_display(); if (sock != -1) { /* Allocate a channel for this connection. */ c = channel_new("connected x11 socket", SSH_CHANNEL_X11_OPEN, sock, sock, -1, 0, 0, 0, remote_host, 1); c->remote_id = remote_id; c->force_drain = 1; } xfree(remote_host); if (c == NULL) { /* Send refusal to the remote host. */ packet_start(SSH_MSG_CHANNEL_OPEN_FAILURE); packet_put_int(remote_id); } else { /* Send a confirmation to the remote host. */ packet_start(SSH_MSG_CHANNEL_OPEN_CONFIRMATION); packet_put_int(remote_id); packet_put_int(c->self); } packet_send(); } /* dummy protocol handler that denies SSH-1 requests (agent/x11) */ /* ARGSUSED */ void deny_input_open(int type, u_int32_t seq, void *ctxt) { int rchan = packet_get_int(); switch (type) { case SSH_SMSG_AGENT_OPEN: error("Warning: ssh server tried agent forwarding."); break; case SSH_SMSG_X11_OPEN: error("Warning: ssh server tried X11 forwarding."); break; default: error("deny_input_open: type %d", type); break; } error("Warning: this is probably a break-in attempt by a malicious server."); packet_start(SSH_MSG_CHANNEL_OPEN_FAILURE); packet_put_int(rchan); packet_send(); } /* * Requests forwarding of X11 connections, generates fake authentication * data, and enables authentication spoofing. * This should be called in the client only. */ void x11_request_forwarding_with_spoofing(int client_session_id, const char *disp, const char *proto, const char *data) { u_int data_len = (u_int) strlen(data) / 2; u_int i, value; char *new_data; int screen_number; const char *cp; u_int32_t rnd = 0; if (x11_saved_display == NULL) x11_saved_display = xstrdup(disp); else if (strcmp(disp, x11_saved_display) != 0) { error("x11_request_forwarding_with_spoofing: different " "$DISPLAY already forwarded"); return; } cp = strchr(disp, ':'); if (cp) cp = strchr(cp, '.'); if (cp) screen_number = (u_int)strtonum(cp + 1, 0, 400, NULL); else screen_number = 0; if (x11_saved_proto == NULL) { /* Save protocol name. */ x11_saved_proto = xstrdup(proto); /* * Extract real authentication data and generate fake data * of the same length. */ x11_saved_data = xmalloc(data_len); x11_fake_data = xmalloc(data_len); for (i = 0; i < data_len; i++) { if (sscanf(data + 2 * i, "%2x", &value) != 1) fatal("x11_request_forwarding: bad " "authentication data: %.100s", data); if (i % 4 == 0) rnd = arc4random(); x11_saved_data[i] = value; x11_fake_data[i] = rnd & 0xff; rnd >>= 8; } x11_saved_data_len = data_len; x11_fake_data_len = data_len; } /* Convert the fake data into hex. */ new_data = tohex(x11_fake_data, data_len); /* Send the request packet. */ if (compat20) { channel_request_start(client_session_id, "x11-req", 0); packet_put_char(0); /* XXX bool single connection */ } else { packet_start(SSH_CMSG_X11_REQUEST_FORWARDING); } packet_put_cstring(proto); packet_put_cstring(new_data); packet_put_int(screen_number); packet_send(); packet_write_wait(); xfree(new_data); } /* -- agent forwarding */ /* Sends a message to the server to request authentication fd forwarding. */ void auth_request_forwarding(void) { packet_start(SSH_CMSG_AGENT_REQUEST_FORWARDING); packet_send(); packet_write_wait(); } Index: user/brooks/openssh-hpn/kex.c =================================================================== --- user/brooks/openssh-hpn/kex.c (revision 222586) +++ user/brooks/openssh-hpn/kex.c (revision 222587) @@ -1,645 +1,644 @@ /* $OpenBSD: kex.c,v 1.86 2010/09/22 05:01:29 djm Exp $ */ /* * Copyright (c) 2000, 2001 Markus Friedl. All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * 1. Redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution. * * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. */ #include "includes.h" #include #include #include #include #include #include #include #include "xmalloc.h" #include "ssh2.h" #include "buffer.h" #include "packet.h" #include "compat.h" #include "cipher.h" #include "key.h" #include "kex.h" #include "log.h" #include "mac.h" #include "match.h" #include "dispatch.h" #include "monitor.h" #include "roaming.h" #include "canohost.h" #if OPENSSL_VERSION_NUMBER >= 0x00907000L # if defined(HAVE_EVP_SHA256) # define evp_ssh_sha256 EVP_sha256 # else extern const EVP_MD *evp_ssh_sha256(void); # endif #endif /* prototype */ static void kex_kexinit_finish(Kex *); static void kex_choose_conf(Kex *); /* Validate KEX method name list */ int kex_names_valid(const char *names) { char *s, *cp, *p; if (names == NULL || strcmp(names, "") == 0) return 0; s = cp = xstrdup(names); for ((p = strsep(&cp, ",")); p && *p != '\0'; (p = strsep(&cp, ","))) { if (strcmp(p, KEX_DHGEX_SHA256) != 0 && strcmp(p, KEX_DHGEX_SHA1) != 0 && strcmp(p, KEX_DH14) != 0 && strcmp(p, KEX_DH1) != 0 && (strncmp(p, KEX_ECDH_SHA2_STEM, sizeof(KEX_ECDH_SHA2_STEM) - 1) != 0 || kex_ecdh_name_to_nid(p) == -1)) { error("Unsupported KEX algorithm \"%.100s\"", p); xfree(s); return 0; } } debug3("kex names ok: [%s]", names); xfree(s); return 1; } /* put algorithm proposal into buffer */ /* used in sshconnect.c as well as kex.c */ void kex_prop2buf(Buffer *b, char *proposal[PROPOSAL_MAX]) { u_int i; buffer_clear(b); /* * add a dummy cookie, the cookie will be overwritten by * kex_send_kexinit(), each time a kexinit is set */ for (i = 0; i < KEX_COOKIE_LEN; i++) buffer_put_char(b, 0); for (i = 0; i < PROPOSAL_MAX; i++) buffer_put_cstring(b, proposal[i]); buffer_put_char(b, 0); /* first_kex_packet_follows */ buffer_put_int(b, 0); /* uint32 reserved */ } /* parse buffer and return algorithm proposal */ static char ** kex_buf2prop(Buffer *raw, int *first_kex_follows) { Buffer b; u_int i; char **proposal; proposal = xcalloc(PROPOSAL_MAX, sizeof(char *)); buffer_init(&b); buffer_append(&b, buffer_ptr(raw), buffer_len(raw)); /* skip cookie */ for (i = 0; i < KEX_COOKIE_LEN; i++) buffer_get_char(&b); /* extract kex init proposal strings */ for (i = 0; i < PROPOSAL_MAX; i++) { proposal[i] = buffer_get_cstring(&b,NULL); debug2("kex_parse_kexinit: %s", proposal[i]); } /* first kex follows / reserved */ i = buffer_get_char(&b); if (first_kex_follows != NULL) *first_kex_follows = i; debug2("kex_parse_kexinit: first_kex_follows %d ", i); i = buffer_get_int(&b); debug2("kex_parse_kexinit: reserved %u ", i); buffer_free(&b); return proposal; } static void kex_prop_free(char **proposal) { u_int i; for (i = 0; i < PROPOSAL_MAX; i++) xfree(proposal[i]); xfree(proposal); } /* ARGSUSED */ static void kex_protocol_error(int type, u_int32_t seq, void *ctxt) { error("Hm, kex protocol error: type %d seq %u", type, seq); } static void kex_reset_dispatch(void) { dispatch_range(SSH2_MSG_TRANSPORT_MIN, SSH2_MSG_TRANSPORT_MAX, &kex_protocol_error); dispatch_set(SSH2_MSG_KEXINIT, &kex_input_kexinit); } void kex_finish(Kex *kex) { kex_reset_dispatch(); packet_start(SSH2_MSG_NEWKEYS); packet_send(); /* packet_write_wait(); */ debug("SSH2_MSG_NEWKEYS sent"); debug("expecting SSH2_MSG_NEWKEYS"); packet_read_expect(SSH2_MSG_NEWKEYS); packet_check_eom(); debug("SSH2_MSG_NEWKEYS received"); kex->done = 1; buffer_clear(&kex->peer); /* buffer_clear(&kex->my); */ kex->flags &= ~KEX_INIT_SENT; xfree(kex->name); kex->name = NULL; } void kex_send_kexinit(Kex *kex) { u_int32_t rnd = 0; u_char *cookie; u_int i; if (kex == NULL) { error("kex_send_kexinit: no kex, cannot rekey"); return; } if (kex->flags & KEX_INIT_SENT) { debug("KEX_INIT_SENT"); return; } kex->done = 0; /* generate a random cookie */ if (buffer_len(&kex->my) < KEX_COOKIE_LEN) fatal("kex_send_kexinit: kex proposal too short"); cookie = buffer_ptr(&kex->my); for (i = 0; i < KEX_COOKIE_LEN; i++) { if (i % 4 == 0) rnd = arc4random(); cookie[i] = rnd; rnd >>= 8; } packet_start(SSH2_MSG_KEXINIT); packet_put_raw(buffer_ptr(&kex->my), buffer_len(&kex->my)); packet_send(); debug("SSH2_MSG_KEXINIT sent"); kex->flags |= KEX_INIT_SENT; } /* ARGSUSED */ void kex_input_kexinit(int type, u_int32_t seq, void *ctxt) { char *ptr; u_int i, dlen; Kex *kex = (Kex *)ctxt; debug("SSH2_MSG_KEXINIT received"); if (kex == NULL) fatal("kex_input_kexinit: no kex, cannot rekey"); ptr = packet_get_raw(&dlen); buffer_append(&kex->peer, ptr, dlen); /* discard packet */ for (i = 0; i < KEX_COOKIE_LEN; i++) packet_get_char(); for (i = 0; i < PROPOSAL_MAX; i++) xfree(packet_get_string(NULL)); (void) packet_get_char(); (void) packet_get_int(); packet_check_eom(); kex_kexinit_finish(kex); } Kex * kex_setup(char *proposal[PROPOSAL_MAX]) { Kex *kex; kex = xcalloc(1, sizeof(*kex)); buffer_init(&kex->peer); buffer_init(&kex->my); kex_prop2buf(&kex->my, proposal); kex->done = 0; kex_send_kexinit(kex); /* we start */ kex_reset_dispatch(); return kex; } static void kex_kexinit_finish(Kex *kex) { if (!(kex->flags & KEX_INIT_SENT)) kex_send_kexinit(kex); kex_choose_conf(kex); if (kex->kex_type >= 0 && kex->kex_type < KEX_MAX && kex->kex[kex->kex_type] != NULL) { (kex->kex[kex->kex_type])(kex); } else { fatal("Unsupported key exchange %d", kex->kex_type); } } static void choose_enc(Enc *enc, char *client, char *server) { char *name = match_list(client, server, NULL); if (name == NULL) fatal("no matching cipher found: client %s server %s", client, server); if ((enc->cipher = cipher_by_name(name)) == NULL) fatal("matching cipher is not supported: %s", name); enc->name = name; enc->enabled = 0; enc->iv = NULL; enc->key = NULL; enc->key_len = cipher_keylen(enc->cipher); enc->block_size = cipher_blocksize(enc->cipher); } static void choose_mac(Mac *mac, char *client, char *server) { char *name = match_list(client, server, NULL); if (name == NULL) fatal("no matching mac found: client %s server %s", client, server); if (mac_setup(mac, name) < 0) fatal("unsupported mac %s", name); /* truncate the key */ if (datafellows & SSH_BUG_HMAC) mac->key_len = 16; mac->name = name; mac->key = NULL; mac->enabled = 0; } static void choose_comp(Comp *comp, char *client, char *server) { char *name = match_list(client, server, NULL); if (name == NULL) fatal("no matching comp found: client %s server %s", client, server); if (strcmp(name, "zlib@openssh.com") == 0) { comp->type = COMP_DELAYED; } else if (strcmp(name, "zlib") == 0) { comp->type = COMP_ZLIB; } else if (strcmp(name, "none") == 0) { comp->type = COMP_NONE; } else { fatal("unsupported comp %s", name); } comp->name = name; } static void choose_kex(Kex *k, char *client, char *server) { k->name = match_list(client, server, NULL); if (k->name == NULL) fatal("Unable to negotiate a key exchange method"); if (strcmp(k->name, KEX_DH1) == 0) { k->kex_type = KEX_DH_GRP1_SHA1; k->evp_md = EVP_sha1(); } else if (strcmp(k->name, KEX_DH14) == 0) { k->kex_type = KEX_DH_GRP14_SHA1; k->evp_md = EVP_sha1(); } else if (strcmp(k->name, KEX_DHGEX_SHA1) == 0) { k->kex_type = KEX_DH_GEX_SHA1; k->evp_md = EVP_sha1(); #if OPENSSL_VERSION_NUMBER >= 0x00907000L } else if (strcmp(k->name, KEX_DHGEX_SHA256) == 0) { k->kex_type = KEX_DH_GEX_SHA256; k->evp_md = evp_ssh_sha256(); } else if (strncmp(k->name, KEX_ECDH_SHA2_STEM, sizeof(KEX_ECDH_SHA2_STEM) - 1) == 0) { k->kex_type = KEX_ECDH_SHA2; k->evp_md = kex_ecdh_name_to_evpmd(k->name); #endif } else fatal("bad kex alg %s", k->name); } static void choose_hostkeyalg(Kex *k, char *client, char *server) { char *hostkeyalg = match_list(client, server, NULL); if (hostkeyalg == NULL) fatal("no hostkey alg"); k->hostkey_type = key_type_from_name(hostkeyalg); if (k->hostkey_type == KEY_UNSPEC) fatal("bad hostkey alg '%s'", hostkeyalg); xfree(hostkeyalg); } static int proposals_match(char *my[PROPOSAL_MAX], char *peer[PROPOSAL_MAX]) { static int check[] = { PROPOSAL_KEX_ALGS, PROPOSAL_SERVER_HOST_KEY_ALGS, -1 }; int *idx; char *p; for (idx = &check[0]; *idx != -1; idx++) { if ((p = strchr(my[*idx], ',')) != NULL) *p = '\0'; if ((p = strchr(peer[*idx], ',')) != NULL) *p = '\0'; if (strcmp(my[*idx], peer[*idx]) != 0) { debug2("proposal mismatch: my %s peer %s", my[*idx], peer[*idx]); return (0); } } debug2("proposals match"); return (1); } static void kex_choose_conf(Kex *kex) { Newkeys *newkeys; char **my, **peer; char **cprop, **sprop; int nenc, nmac, ncomp; u_int mode, ctos, need; int first_kex_follows, type; int log_flag = 0; int auth_flag; auth_flag = packet_authentication_state(); debug ("AUTH STATE IS %d", auth_flag); my = kex_buf2prop(&kex->my, NULL); peer = kex_buf2prop(&kex->peer, &first_kex_follows); if (kex->server) { cprop=peer; sprop=my; } else { cprop=my; sprop=peer; } /* Check whether server offers roaming */ if (!kex->server) { char *roaming; roaming = match_list(KEX_RESUME, peer[PROPOSAL_KEX_ALGS], NULL); if (roaming) { kex->roaming = 1; xfree(roaming); } } /* Algorithm Negotiation */ for (mode = 0; mode < MODE_MAX; mode++) { newkeys = xcalloc(1, sizeof(*newkeys)); kex->newkeys[mode] = newkeys; ctos = (!kex->server && mode == MODE_OUT) || (kex->server && mode == MODE_IN); nenc = ctos ? PROPOSAL_ENC_ALGS_CTOS : PROPOSAL_ENC_ALGS_STOC; nmac = ctos ? PROPOSAL_MAC_ALGS_CTOS : PROPOSAL_MAC_ALGS_STOC; ncomp = ctos ? PROPOSAL_COMP_ALGS_CTOS : PROPOSAL_COMP_ALGS_STOC; choose_enc (&newkeys->enc, cprop[nenc], sprop[nenc]); choose_mac (&newkeys->mac, cprop[nmac], sprop[nmac]); choose_comp(&newkeys->comp, cprop[ncomp], sprop[ncomp]); - debug("REQUESTED ENC.NAME is '%s'", newkeys->enc.name); if (strcmp(newkeys->enc.name, "none") == 0) { debug("Requesting NONE. Authflag is %d", auth_flag); if (auth_flag == 1) debug("None requested post authentication."); else fatal("Pre-authentication none cipher " "requests are not allowed."); } debug("kex: %s %s %s %s", ctos ? "client->server" : "server->client", newkeys->enc.name, newkeys->mac.name, newkeys->comp.name); /* * client starts withctos = 0 && log flag = 0 and no log * 2nd client pass ctos=1 and flag = 1 so no log * server starts with ctos =1 && log_flag = 0 so log * 2nd sever pass ctos = 1 && log flag = 1 so no log * -cjr */ if (ctos && !log_flag) { logit("SSH: Server;Ltype: Kex;Remote: %s-%d;" "Enc: %s;MAC: %s;Comp: %s", get_remote_ipaddr(), get_remote_port(), newkeys->enc.name, newkeys->mac.name, newkeys->comp.name); } log_flag = 1; } choose_kex(kex, cprop[PROPOSAL_KEX_ALGS], sprop[PROPOSAL_KEX_ALGS]); choose_hostkeyalg(kex, cprop[PROPOSAL_SERVER_HOST_KEY_ALGS], sprop[PROPOSAL_SERVER_HOST_KEY_ALGS]); need = 0; for (mode = 0; mode < MODE_MAX; mode++) { newkeys = kex->newkeys[mode]; if (need < newkeys->enc.key_len) need = newkeys->enc.key_len; if (need < newkeys->enc.block_size) need = newkeys->enc.block_size; if (need < newkeys->mac.key_len) need = newkeys->mac.key_len; } /* XXX need runden? */ kex->we_need = need; /* ignore the next message if the proposals do not match */ if (first_kex_follows && !proposals_match(my, peer) && !(datafellows & SSH_BUG_FIRSTKEX)) { type = packet_read(); debug2("skipping next packet (type %u)", type); } kex_prop_free(my); kex_prop_free(peer); } static u_char * derive_key(Kex *kex, int id, u_int need, u_char *hash, u_int hashlen, BIGNUM *shared_secret) { Buffer b; EVP_MD_CTX md; char c = id; u_int have; int mdsz; u_char *digest; if ((mdsz = EVP_MD_size(kex->evp_md)) <= 0) fatal("bad kex md size %d", mdsz); digest = xmalloc(roundup(need, mdsz)); buffer_init(&b); buffer_put_bignum2(&b, shared_secret); /* K1 = HASH(K || H || "A" || session_id) */ EVP_DigestInit(&md, kex->evp_md); if (!(datafellows & SSH_BUG_DERIVEKEY)) EVP_DigestUpdate(&md, buffer_ptr(&b), buffer_len(&b)); EVP_DigestUpdate(&md, hash, hashlen); EVP_DigestUpdate(&md, &c, 1); EVP_DigestUpdate(&md, kex->session_id, kex->session_id_len); EVP_DigestFinal(&md, digest, NULL); /* * expand key: * Kn = HASH(K || H || K1 || K2 || ... || Kn-1) * Key = K1 || K2 || ... || Kn */ for (have = mdsz; need > have; have += mdsz) { EVP_DigestInit(&md, kex->evp_md); if (!(datafellows & SSH_BUG_DERIVEKEY)) EVP_DigestUpdate(&md, buffer_ptr(&b), buffer_len(&b)); EVP_DigestUpdate(&md, hash, hashlen); EVP_DigestUpdate(&md, digest, have); EVP_DigestFinal(&md, digest + have, NULL); } buffer_free(&b); #ifdef DEBUG_KEX fprintf(stderr, "key '%c'== ", c); dump_digest("key", digest, need); #endif return digest; } Newkeys *current_keys[MODE_MAX]; #define NKEYS 6 void kex_derive_keys(Kex *kex, u_char *hash, u_int hashlen, BIGNUM *shared_secret) { u_char *keys[NKEYS]; u_int i, mode, ctos; for (i = 0; i < NKEYS; i++) { keys[i] = derive_key(kex, 'A'+i, kex->we_need, hash, hashlen, shared_secret); } debug2("kex_derive_keys"); for (mode = 0; mode < MODE_MAX; mode++) { current_keys[mode] = kex->newkeys[mode]; kex->newkeys[mode] = NULL; ctos = (!kex->server && mode == MODE_OUT) || (kex->server && mode == MODE_IN); current_keys[mode]->enc.iv = keys[ctos ? 0 : 1]; current_keys[mode]->enc.key = keys[ctos ? 2 : 3]; current_keys[mode]->mac.key = keys[ctos ? 4 : 5]; } } Newkeys * kex_get_newkeys(int mode) { Newkeys *ret; ret = current_keys[mode]; current_keys[mode] = NULL; return ret; } void derive_ssh1_session_id(BIGNUM *host_modulus, BIGNUM *server_modulus, u_int8_t cookie[8], u_int8_t id[16]) { const EVP_MD *evp_md = EVP_md5(); EVP_MD_CTX md; u_int8_t nbuf[2048], obuf[EVP_MAX_MD_SIZE]; int len; EVP_DigestInit(&md, evp_md); len = BN_num_bytes(host_modulus); if (len < (512 / 8) || (u_int)len > sizeof(nbuf)) fatal("%s: bad host modulus (len %d)", __func__, len); BN_bn2bin(host_modulus, nbuf); EVP_DigestUpdate(&md, nbuf, len); len = BN_num_bytes(server_modulus); if (len < (512 / 8) || (u_int)len > sizeof(nbuf)) fatal("%s: bad server modulus (len %d)", __func__, len); BN_bn2bin(server_modulus, nbuf); EVP_DigestUpdate(&md, nbuf, len); EVP_DigestUpdate(&md, cookie, 8); EVP_DigestFinal(&md, obuf, NULL); memcpy(id, obuf, 16); memset(nbuf, 0, sizeof(nbuf)); memset(obuf, 0, sizeof(obuf)); memset(&md, 0, sizeof(md)); } #if defined(DEBUG_KEX) || defined(DEBUG_KEXDH) || defined(DEBUG_KEXECDH) void dump_digest(char *msg, u_char *digest, int len) { int i; fprintf(stderr, "%s\n", msg); for (i = 0; i < len; i++) { fprintf(stderr, "%02x", digest[i]); if (i%32 == 31) fprintf(stderr, "\n"); else if (i%8 == 7) fprintf(stderr, " "); } fprintf(stderr, "\n"); } #endif Index: user/brooks/openssh-hpn/readconf.c =================================================================== --- user/brooks/openssh-hpn/readconf.c (revision 222586) +++ user/brooks/openssh-hpn/readconf.c (revision 222587) @@ -1,1498 +1,1494 @@ /* $OpenBSD: readconf.c,v 1.190 2010/11/13 23:27:50 djm Exp $ */ /* * Author: Tatu Ylonen * Copyright (c) 1995 Tatu Ylonen , Espoo, Finland * All rights reserved * Functions for reading the configuration files. * * As far as I am concerned, the code I have written for this software * can be used freely for any purpose. Any derived versions of this * software must be clearly marked as such, and if the derived work is * incompatible with the protocol description in the RFC file, it must be * called by a name other than "ssh" or "Secure Shell". */ #include "includes.h" #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include "xmalloc.h" #include "ssh.h" #include "compat.h" #include "cipher.h" #include "pathnames.h" #include "log.h" #include "key.h" #include "readconf.h" #include "match.h" #include "misc.h" #include "buffer.h" #include "kex.h" #include "mac.h" /* Format of the configuration file: # Configuration data is parsed as follows: # 1. command line options # 2. user-specific file # 3. system-wide file # Any configuration value is only changed the first time it is set. # Thus, host-specific definitions should be at the beginning of the # configuration file, and defaults at the end. # Host-specific declarations. These may override anything above. A single # host may match multiple declarations; these are processed in the order # that they are given in. Host *.ngs.fi ngs.fi User foo Host fake.com HostName another.host.name.real.org User blaah Port 34289 ForwardX11 no ForwardAgent no Host books.com RemoteForward 9999 shadows.cs.hut.fi:9999 Cipher 3des Host fascist.blob.com Port 23123 User tylonen PasswordAuthentication no Host puukko.hut.fi User t35124p ProxyCommand ssh-proxy %h %p Host *.fr PublicKeyAuthentication no Host *.su Cipher none PasswordAuthentication no Host vpn.fake.com Tunnel yes TunnelDevice 3 # Defaults for various options Host * ForwardAgent no ForwardX11 no PasswordAuthentication yes RSAAuthentication yes RhostsRSAAuthentication yes StrictHostKeyChecking yes TcpKeepAlive no IdentityFile ~/.ssh/identity Port 22 EscapeChar ~ */ /* Keyword tokens. */ typedef enum { oBadOption, oForwardAgent, oForwardX11, oForwardX11Trusted, oForwardX11Timeout, oGatewayPorts, oExitOnForwardFailure, oPasswordAuthentication, oRSAAuthentication, oChallengeResponseAuthentication, oXAuthLocation, oIdentityFile, oHostName, oPort, oCipher, oRemoteForward, oLocalForward, oUser, oHost, oEscapeChar, oRhostsRSAAuthentication, oProxyCommand, oGlobalKnownHostsFile, oUserKnownHostsFile, oConnectionAttempts, oBatchMode, oCheckHostIP, oStrictHostKeyChecking, oCompression, oCompressionLevel, oTCPKeepAlive, oNumberOfPasswordPrompts, oUsePrivilegedPort, oLogLevel, oCiphers, oProtocol, oMacs, oGlobalKnownHostsFile2, oUserKnownHostsFile2, oPubkeyAuthentication, oKbdInteractiveAuthentication, oKbdInteractiveDevices, oHostKeyAlias, oDynamicForward, oPreferredAuthentications, oHostbasedAuthentication, oHostKeyAlgorithms, oBindAddress, oPKCS11Provider, oClearAllForwardings, oNoHostAuthenticationForLocalhost, oEnableSSHKeysign, oRekeyLimit, oVerifyHostKeyDNS, oConnectTimeout, oAddressFamily, oGssAuthentication, oGssDelegateCreds, oServerAliveInterval, oServerAliveCountMax, oIdentitiesOnly, oSendEnv, oControlPath, oControlMaster, oControlPersist, oHashKnownHosts, oTunnel, oTunnelDevice, oLocalCommand, oPermitLocalCommand, oVisualHostKey, oUseRoaming, oZeroKnowledgePasswordAuthentication, oKexAlgorithms, oIPQoS, oNoneEnabled, oNoneSwitch, oTcpRcvBufPoll, oTcpRcvBuf, oHPNDisabled, oHPNBufferSize, oDeprecated, oUnsupported } OpCodes; /* Textual representations of the tokens. */ static struct { const char *name; OpCodes opcode; } keywords[] = { { "forwardagent", oForwardAgent }, { "forwardx11", oForwardX11 }, { "forwardx11trusted", oForwardX11Trusted }, { "forwardx11timeout", oForwardX11Timeout }, { "exitonforwardfailure", oExitOnForwardFailure }, { "xauthlocation", oXAuthLocation }, { "gatewayports", oGatewayPorts }, { "useprivilegedport", oUsePrivilegedPort }, { "rhostsauthentication", oDeprecated }, { "passwordauthentication", oPasswordAuthentication }, { "kbdinteractiveauthentication", oKbdInteractiveAuthentication }, { "kbdinteractivedevices", oKbdInteractiveDevices }, { "rsaauthentication", oRSAAuthentication }, { "pubkeyauthentication", oPubkeyAuthentication }, { "dsaauthentication", oPubkeyAuthentication }, /* alias */ { "rhostsrsaauthentication", oRhostsRSAAuthentication }, { "hostbasedauthentication", oHostbasedAuthentication }, { "challengeresponseauthentication", oChallengeResponseAuthentication }, { "skeyauthentication", oChallengeResponseAuthentication }, /* alias */ { "tisauthentication", oChallengeResponseAuthentication }, /* alias */ { "kerberosauthentication", oUnsupported }, { "kerberostgtpassing", oUnsupported }, { "afstokenpassing", oUnsupported }, #if defined(GSSAPI) { "gssapiauthentication", oGssAuthentication }, { "gssapidelegatecredentials", oGssDelegateCreds }, #else { "gssapiauthentication", oUnsupported }, { "gssapidelegatecredentials", oUnsupported }, #endif { "fallbacktorsh", oDeprecated }, { "usersh", oDeprecated }, { "identityfile", oIdentityFile }, { "identityfile2", oIdentityFile }, /* obsolete */ { "identitiesonly", oIdentitiesOnly }, { "hostname", oHostName }, { "hostkeyalias", oHostKeyAlias }, { "proxycommand", oProxyCommand }, { "port", oPort }, { "cipher", oCipher }, { "ciphers", oCiphers }, { "macs", oMacs }, { "protocol", oProtocol }, { "remoteforward", oRemoteForward }, { "localforward", oLocalForward }, { "user", oUser }, { "host", oHost }, { "escapechar", oEscapeChar }, { "globalknownhostsfile", oGlobalKnownHostsFile }, { "globalknownhostsfile2", oGlobalKnownHostsFile2 }, /* obsolete */ { "userknownhostsfile", oUserKnownHostsFile }, { "userknownhostsfile2", oUserKnownHostsFile2 }, /* obsolete */ { "connectionattempts", oConnectionAttempts }, { "batchmode", oBatchMode }, { "checkhostip", oCheckHostIP }, { "stricthostkeychecking", oStrictHostKeyChecking }, { "compression", oCompression }, { "compressionlevel", oCompressionLevel }, { "tcpkeepalive", oTCPKeepAlive }, { "keepalive", oTCPKeepAlive }, /* obsolete */ { "numberofpasswordprompts", oNumberOfPasswordPrompts }, { "loglevel", oLogLevel }, { "dynamicforward", oDynamicForward }, { "preferredauthentications", oPreferredAuthentications }, { "hostkeyalgorithms", oHostKeyAlgorithms }, { "bindaddress", oBindAddress }, #ifdef ENABLE_PKCS11 { "smartcarddevice", oPKCS11Provider }, { "pkcs11provider", oPKCS11Provider }, #else { "smartcarddevice", oUnsupported }, { "pkcs11provider", oUnsupported }, #endif { "clearallforwardings", oClearAllForwardings }, { "enablesshkeysign", oEnableSSHKeysign }, { "verifyhostkeydns", oVerifyHostKeyDNS }, { "nohostauthenticationforlocalhost", oNoHostAuthenticationForLocalhost }, { "rekeylimit", oRekeyLimit }, { "connecttimeout", oConnectTimeout }, { "addressfamily", oAddressFamily }, { "serveraliveinterval", oServerAliveInterval }, { "serveralivecountmax", oServerAliveCountMax }, { "sendenv", oSendEnv }, { "controlpath", oControlPath }, { "controlmaster", oControlMaster }, { "controlpersist", oControlPersist }, { "hashknownhosts", oHashKnownHosts }, { "tunnel", oTunnel }, { "tunneldevice", oTunnelDevice }, { "localcommand", oLocalCommand }, { "permitlocalcommand", oPermitLocalCommand }, { "visualhostkey", oVisualHostKey }, { "useroaming", oUseRoaming }, #ifdef JPAKE { "zeroknowledgepasswordauthentication", oZeroKnowledgePasswordAuthentication }, #else { "zeroknowledgepasswordauthentication", oUnsupported }, #endif { "kexalgorithms", oKexAlgorithms }, { "ipqos", oIPQoS }, { "noneenabled", oNoneEnabled }, { "noneswitch", oNoneSwitch }, { "tcprcvbufpoll", oTcpRcvBufPoll }, { "tcprcvbuf", oTcpRcvBuf }, { "hpndisabled", oHPNDisabled }, { "hpnbuffersize", oHPNBufferSize }, { NULL, oBadOption } }; /* * Adds a local TCP/IP port forward to options. Never returns if there is an * error. */ void add_local_forward(Options *options, const Forward *newfwd) { Forward *fwd; #ifndef NO_IPPORT_RESERVED_CONCEPT extern uid_t original_real_uid; if (newfwd->listen_port < IPPORT_RESERVED && original_real_uid != 0) fatal("Privileged ports can only be forwarded by root."); #endif options->local_forwards = xrealloc(options->local_forwards, options->num_local_forwards + 1, sizeof(*options->local_forwards)); fwd = &options->local_forwards[options->num_local_forwards++]; fwd->listen_host = newfwd->listen_host; fwd->listen_port = newfwd->listen_port; fwd->connect_host = newfwd->connect_host; fwd->connect_port = newfwd->connect_port; } /* * Adds a remote TCP/IP port forward to options. Never returns if there is * an error. */ void add_remote_forward(Options *options, const Forward *newfwd) { Forward *fwd; options->remote_forwards = xrealloc(options->remote_forwards, options->num_remote_forwards + 1, sizeof(*options->remote_forwards)); fwd = &options->remote_forwards[options->num_remote_forwards++]; fwd->listen_host = newfwd->listen_host; fwd->listen_port = newfwd->listen_port; fwd->connect_host = newfwd->connect_host; fwd->connect_port = newfwd->connect_port; fwd->allocated_port = 0; } static void clear_forwardings(Options *options) { int i; for (i = 0; i < options->num_local_forwards; i++) { if (options->local_forwards[i].listen_host != NULL) xfree(options->local_forwards[i].listen_host); xfree(options->local_forwards[i].connect_host); } if (options->num_local_forwards > 0) { xfree(options->local_forwards); options->local_forwards = NULL; } options->num_local_forwards = 0; for (i = 0; i < options->num_remote_forwards; i++) { if (options->remote_forwards[i].listen_host != NULL) xfree(options->remote_forwards[i].listen_host); xfree(options->remote_forwards[i].connect_host); } if (options->num_remote_forwards > 0) { xfree(options->remote_forwards); options->remote_forwards = NULL; } options->num_remote_forwards = 0; options->tun_open = SSH_TUNMODE_NO; } /* * Returns the number of the token pointed to by cp or oBadOption. */ static OpCodes parse_token(const char *cp, const char *filename, int linenum) { u_int i; for (i = 0; keywords[i].name; i++) if (strcasecmp(cp, keywords[i].name) == 0) return keywords[i].opcode; error("%s: line %d: Bad configuration option: %s", filename, linenum, cp); return oBadOption; } /* * Processes a single option line as used in the configuration files. This * only sets those values that have not already been set. */ #define WHITESPACE " \t\r\n" int process_config_line(Options *options, const char *host, char *line, const char *filename, int linenum, int *activep) { char *s, **charptr, *endofnumber, *keyword, *arg, *arg2, fwdarg[256]; int opcode, *intptr, value, value2, scale; LogLevel *log_level_ptr; long long orig, val64; size_t len; Forward fwd; /* Strip trailing whitespace */ for (len = strlen(line) - 1; len > 0; len--) { if (strchr(WHITESPACE, line[len]) == NULL) break; line[len] = '\0'; } s = line; /* Get the keyword. (Each line is supposed to begin with a keyword). */ if ((keyword = strdelim(&s)) == NULL) return 0; /* Ignore leading whitespace. */ if (*keyword == '\0') keyword = strdelim(&s); if (keyword == NULL || !*keyword || *keyword == '\n' || *keyword == '#') return 0; opcode = parse_token(keyword, filename, linenum); switch (opcode) { case oBadOption: /* don't panic, but count bad options */ return -1; /* NOTREACHED */ case oConnectTimeout: intptr = &options->connection_timeout; parse_time: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%s line %d: missing time value.", filename, linenum); if ((value = convtime(arg)) == -1) fatal("%s line %d: invalid time value.", filename, linenum); if (*activep && *intptr == -1) *intptr = value; break; case oForwardAgent: intptr = &options->forward_agent; parse_flag: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing yes/no argument.", filename, linenum); value = 0; /* To avoid compiler warning... */ if (strcmp(arg, "yes") == 0 || strcmp(arg, "true") == 0) value = 1; else if (strcmp(arg, "no") == 0 || strcmp(arg, "false") == 0) value = 0; else fatal("%.200s line %d: Bad yes/no argument.", filename, linenum); if (*activep && *intptr == -1) *intptr = value; break; case oForwardX11: intptr = &options->forward_x11; goto parse_flag; case oForwardX11Trusted: intptr = &options->forward_x11_trusted; goto parse_flag; case oForwardX11Timeout: intptr = &options->forward_x11_timeout; goto parse_time; case oGatewayPorts: intptr = &options->gateway_ports; goto parse_flag; case oExitOnForwardFailure: intptr = &options->exit_on_forward_failure; goto parse_flag; case oUsePrivilegedPort: intptr = &options->use_privileged_port; goto parse_flag; case oPasswordAuthentication: intptr = &options->password_authentication; goto parse_flag; case oZeroKnowledgePasswordAuthentication: intptr = &options->zero_knowledge_password_authentication; goto parse_flag; case oKbdInteractiveAuthentication: intptr = &options->kbd_interactive_authentication; goto parse_flag; case oKbdInteractiveDevices: charptr = &options->kbd_interactive_devices; goto parse_string; case oPubkeyAuthentication: intptr = &options->pubkey_authentication; goto parse_flag; case oRSAAuthentication: intptr = &options->rsa_authentication; goto parse_flag; case oRhostsRSAAuthentication: intptr = &options->rhosts_rsa_authentication; goto parse_flag; case oHostbasedAuthentication: intptr = &options->hostbased_authentication; goto parse_flag; case oChallengeResponseAuthentication: intptr = &options->challenge_response_authentication; goto parse_flag; case oGssAuthentication: intptr = &options->gss_authentication; goto parse_flag; case oGssDelegateCreds: intptr = &options->gss_deleg_creds; goto parse_flag; case oBatchMode: intptr = &options->batch_mode; goto parse_flag; case oCheckHostIP: intptr = &options->check_host_ip; goto parse_flag; case oNoneEnabled: intptr = &options->none_enabled; goto parse_flag; /* * We check to see if the command comes from the command line or * not. If it does then enable it otherwise fail. NONE should * never be a default configuration. */ case oNoneSwitch: if(strcmp(filename,"command-line")==0) { intptr = &options->none_switch; goto parse_flag; } else { error("NoneSwitch is found in %.200s.\n" "You may only use this configuration option " "from the command line", filename); error("Continuing..."); debug("NoneSwitch directive found in %.200s.", filename); return 0; } case oHPNDisabled: intptr = &options->hpn_disabled; goto parse_flag; case oHPNBufferSize: intptr = &options->hpn_buffer_size; goto parse_int; case oTcpRcvBufPoll: intptr = &options->tcp_rcv_buf_poll; goto parse_flag; + case oTcpRcvBuf: + intptr = &options->tcp_rcv_buf; + goto parse_int; + case oVerifyHostKeyDNS: intptr = &options->verify_host_key_dns; goto parse_yesnoask; case oStrictHostKeyChecking: intptr = &options->strict_host_key_checking; parse_yesnoask: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing yes/no/ask argument.", filename, linenum); value = 0; /* To avoid compiler warning... */ if (strcmp(arg, "yes") == 0 || strcmp(arg, "true") == 0) value = 1; else if (strcmp(arg, "no") == 0 || strcmp(arg, "false") == 0) value = 0; else if (strcmp(arg, "ask") == 0) value = 2; else fatal("%.200s line %d: Bad yes/no/ask argument.", filename, linenum); if (*activep && *intptr == -1) *intptr = value; break; case oCompression: intptr = &options->compression; goto parse_flag; case oTCPKeepAlive: intptr = &options->tcp_keep_alive; goto parse_flag; case oNoHostAuthenticationForLocalhost: intptr = &options->no_host_authentication_for_localhost; goto parse_flag; case oNumberOfPasswordPrompts: intptr = &options->number_of_password_prompts; goto parse_int; case oCompressionLevel: intptr = &options->compression_level; goto parse_int; case oRekeyLimit: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (arg[0] < '0' || arg[0] > '9') fatal("%.200s line %d: Bad number.", filename, linenum); orig = val64 = strtoll(arg, &endofnumber, 10); if (arg == endofnumber) fatal("%.200s line %d: Bad number.", filename, linenum); switch (toupper(*endofnumber)) { case '\0': scale = 1; break; case 'K': scale = 1<<10; break; case 'M': scale = 1<<20; break; case 'G': scale = 1<<30; break; default: fatal("%.200s line %d: Invalid RekeyLimit suffix", filename, linenum); } val64 *= scale; /* detect integer wrap and too-large limits */ if ((val64 / scale) != orig || val64 > UINT_MAX) fatal("%.200s line %d: RekeyLimit too large", filename, linenum); if (val64 < 16) fatal("%.200s line %d: RekeyLimit too small", filename, linenum); if (*activep && options->rekey_limit == -1) options->rekey_limit = (u_int32_t)val64; break; case oIdentityFile: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (*activep) { intptr = &options->num_identity_files; if (*intptr >= SSH_MAX_IDENTITY_FILES) fatal("%.200s line %d: Too many identity files specified (max %d).", filename, linenum, SSH_MAX_IDENTITY_FILES); charptr = &options->identity_files[*intptr]; *charptr = xstrdup(arg); *intptr = *intptr + 1; } break; case oXAuthLocation: charptr=&options->xauth_location; goto parse_string; case oUser: charptr = &options->user; parse_string: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (*activep && *charptr == NULL) *charptr = xstrdup(arg); break; case oGlobalKnownHostsFile: charptr = &options->system_hostfile; goto parse_string; case oUserKnownHostsFile: charptr = &options->user_hostfile; goto parse_string; case oGlobalKnownHostsFile2: charptr = &options->system_hostfile2; goto parse_string; case oUserKnownHostsFile2: charptr = &options->user_hostfile2; goto parse_string; case oHostName: charptr = &options->hostname; goto parse_string; case oHostKeyAlias: charptr = &options->host_key_alias; goto parse_string; case oPreferredAuthentications: charptr = &options->preferred_authentications; goto parse_string; case oBindAddress: charptr = &options->bind_address; goto parse_string; case oPKCS11Provider: charptr = &options->pkcs11_provider; goto parse_string; case oProxyCommand: charptr = &options->proxy_command; parse_command: if (s == NULL) fatal("%.200s line %d: Missing argument.", filename, linenum); len = strspn(s, WHITESPACE "="); if (*activep && *charptr == NULL) *charptr = xstrdup(s + len); return 0; case oPort: intptr = &options->port; parse_int: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (arg[0] < '0' || arg[0] > '9') fatal("%.200s line %d: Bad number.", filename, linenum); /* Octal, decimal, or hex format? */ value = strtol(arg, &endofnumber, 0); if (arg == endofnumber) fatal("%.200s line %d: Bad number.", filename, linenum); if (*activep && *intptr == -1) *intptr = value; break; case oConnectionAttempts: intptr = &options->connection_attempts; goto parse_int; - case oTcpRcvBuf: - intptr = &options->tcp_rcv_buf; - goto parse_int; - case oCipher: intptr = &options->cipher; arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); value = cipher_number(arg); if (value == -1) fatal("%.200s line %d: Bad cipher '%s'.", filename, linenum, arg ? arg : ""); if (*activep && *intptr == -1) *intptr = value; break; case oCiphers: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (!ciphers_valid(arg)) fatal("%.200s line %d: Bad SSH2 cipher spec '%s'.", filename, linenum, arg ? arg : ""); if (*activep && options->ciphers == NULL) options->ciphers = xstrdup(arg); break; case oMacs: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (!mac_valid(arg)) fatal("%.200s line %d: Bad SSH2 Mac spec '%s'.", filename, linenum, arg ? arg : ""); if (*activep && options->macs == NULL) options->macs = xstrdup(arg); break; case oKexAlgorithms: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (!kex_names_valid(arg)) fatal("%.200s line %d: Bad SSH2 KexAlgorithms '%s'.", filename, linenum, arg ? arg : ""); if (*activep && options->kex_algorithms == NULL) options->kex_algorithms = xstrdup(arg); break; case oHostKeyAlgorithms: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (!key_names_valid2(arg)) fatal("%.200s line %d: Bad protocol 2 host key algorithms '%s'.", filename, linenum, arg ? arg : ""); if (*activep && options->hostkeyalgorithms == NULL) options->hostkeyalgorithms = xstrdup(arg); break; case oProtocol: intptr = &options->protocol; arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); value = proto_spec(arg); if (value == SSH_PROTO_UNKNOWN) fatal("%.200s line %d: Bad protocol spec '%s'.", filename, linenum, arg ? arg : ""); if (*activep && *intptr == SSH_PROTO_UNKNOWN) *intptr = value; break; case oLogLevel: log_level_ptr = &options->log_level; arg = strdelim(&s); value = log_level_number(arg); if (value == SYSLOG_LEVEL_NOT_SET) fatal("%.200s line %d: unsupported log level '%s'", filename, linenum, arg ? arg : ""); if (*activep && *log_level_ptr == SYSLOG_LEVEL_NOT_SET) *log_level_ptr = (LogLevel) value; break; case oLocalForward: case oRemoteForward: case oDynamicForward: arg = strdelim(&s); if (arg == NULL || *arg == '\0') fatal("%.200s line %d: Missing port argument.", filename, linenum); if (opcode == oLocalForward || opcode == oRemoteForward) { arg2 = strdelim(&s); if (arg2 == NULL || *arg2 == '\0') fatal("%.200s line %d: Missing target argument.", filename, linenum); /* construct a string for parse_forward */ snprintf(fwdarg, sizeof(fwdarg), "%s:%s", arg, arg2); } else if (opcode == oDynamicForward) { strlcpy(fwdarg, arg, sizeof(fwdarg)); } if (parse_forward(&fwd, fwdarg, opcode == oDynamicForward ? 1 : 0, opcode == oRemoteForward ? 1 : 0) == 0) fatal("%.200s line %d: Bad forwarding specification.", filename, linenum); if (*activep) { if (opcode == oLocalForward || opcode == oDynamicForward) add_local_forward(options, &fwd); else if (opcode == oRemoteForward) add_remote_forward(options, &fwd); } break; case oClearAllForwardings: intptr = &options->clear_forwardings; goto parse_flag; case oHost: *activep = 0; while ((arg = strdelim(&s)) != NULL && *arg != '\0') if (match_pattern(host, arg)) { debug("Applying options for %.100s", arg); *activep = 1; break; } /* Avoid garbage check below, as strdelim is done. */ return 0; case oEscapeChar: intptr = &options->escape_char; arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); if (arg[0] == '^' && arg[2] == 0 && (u_char) arg[1] >= 64 && (u_char) arg[1] < 128) value = (u_char) arg[1] & 31; else if (strlen(arg) == 1) value = (u_char) arg[0]; else if (strcmp(arg, "none") == 0) value = SSH_ESCAPECHAR_NONE; else { fatal("%.200s line %d: Bad escape character.", filename, linenum); /* NOTREACHED */ value = 0; /* Avoid compiler warning. */ } if (*activep && *intptr == -1) *intptr = value; break; case oAddressFamily: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%s line %d: missing address family.", filename, linenum); intptr = &options->address_family; if (strcasecmp(arg, "inet") == 0) value = AF_INET; else if (strcasecmp(arg, "inet6") == 0) value = AF_INET6; else if (strcasecmp(arg, "any") == 0) value = AF_UNSPEC; else fatal("Unsupported AddressFamily \"%s\"", arg); if (*activep && *intptr == -1) *intptr = value; break; case oEnableSSHKeysign: intptr = &options->enable_ssh_keysign; goto parse_flag; case oIdentitiesOnly: intptr = &options->identities_only; goto parse_flag; case oServerAliveInterval: intptr = &options->server_alive_interval; goto parse_time; case oServerAliveCountMax: intptr = &options->server_alive_count_max; goto parse_int; case oSendEnv: while ((arg = strdelim(&s)) != NULL && *arg != '\0') { if (strchr(arg, '=') != NULL) fatal("%s line %d: Invalid environment name.", filename, linenum); if (!*activep) continue; if (options->num_send_env >= MAX_SEND_ENV) fatal("%s line %d: too many send env.", filename, linenum); options->send_env[options->num_send_env++] = xstrdup(arg); } break; case oControlPath: charptr = &options->control_path; goto parse_string; case oControlMaster: intptr = &options->control_master; arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing ControlMaster argument.", filename, linenum); value = 0; /* To avoid compiler warning... */ if (strcmp(arg, "yes") == 0 || strcmp(arg, "true") == 0) value = SSHCTL_MASTER_YES; else if (strcmp(arg, "no") == 0 || strcmp(arg, "false") == 0) value = SSHCTL_MASTER_NO; else if (strcmp(arg, "auto") == 0) value = SSHCTL_MASTER_AUTO; else if (strcmp(arg, "ask") == 0) value = SSHCTL_MASTER_ASK; else if (strcmp(arg, "autoask") == 0) value = SSHCTL_MASTER_AUTO_ASK; else fatal("%.200s line %d: Bad ControlMaster argument.", filename, linenum); if (*activep && *intptr == -1) *intptr = value; break; case oControlPersist: /* no/false/yes/true, or a time spec */ intptr = &options->control_persist; arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing ControlPersist" " argument.", filename, linenum); value = 0; value2 = 0; /* timeout */ if (strcmp(arg, "no") == 0 || strcmp(arg, "false") == 0) value = 0; else if (strcmp(arg, "yes") == 0 || strcmp(arg, "true") == 0) value = 1; else if ((value2 = convtime(arg)) >= 0) value = 1; else fatal("%.200s line %d: Bad ControlPersist argument.", filename, linenum); if (*activep && *intptr == -1) { *intptr = value; options->control_persist_timeout = value2; } break; case oHashKnownHosts: intptr = &options->hash_known_hosts; goto parse_flag; case oTunnel: intptr = &options->tun_open; arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%s line %d: Missing yes/point-to-point/" "ethernet/no argument.", filename, linenum); value = 0; /* silence compiler */ if (strcasecmp(arg, "ethernet") == 0) value = SSH_TUNMODE_ETHERNET; else if (strcasecmp(arg, "point-to-point") == 0) value = SSH_TUNMODE_POINTOPOINT; else if (strcasecmp(arg, "yes") == 0) value = SSH_TUNMODE_DEFAULT; else if (strcasecmp(arg, "no") == 0) value = SSH_TUNMODE_NO; else fatal("%s line %d: Bad yes/point-to-point/ethernet/" "no argument: %s", filename, linenum, arg); if (*activep) *intptr = value; break; case oTunnelDevice: arg = strdelim(&s); if (!arg || *arg == '\0') fatal("%.200s line %d: Missing argument.", filename, linenum); value = a2tun(arg, &value2); if (value == SSH_TUNID_ERR) fatal("%.200s line %d: Bad tun device.", filename, linenum); if (*activep) { options->tun_local = value; options->tun_remote = value2; } break; case oLocalCommand: charptr = &options->local_command; goto parse_command; case oPermitLocalCommand: intptr = &options->permit_local_command; goto parse_flag; case oVisualHostKey: intptr = &options->visual_host_key; goto parse_flag; case oIPQoS: arg = strdelim(&s); if ((value = parse_ipqos(arg)) == -1) fatal("%s line %d: Bad IPQoS value: %s", filename, linenum, arg); arg = strdelim(&s); if (arg == NULL) value2 = value; else if ((value2 = parse_ipqos(arg)) == -1) fatal("%s line %d: Bad IPQoS value: %s", filename, linenum, arg); if (*activep) { options->ip_qos_interactive = value; options->ip_qos_bulk = value2; } break; case oUseRoaming: intptr = &options->use_roaming; goto parse_flag; case oDeprecated: debug("%s line %d: Deprecated option \"%s\"", filename, linenum, keyword); return 0; case oUnsupported: error("%s line %d: Unsupported option \"%s\"", filename, linenum, keyword); return 0; default: fatal("process_config_line: Unimplemented opcode %d", opcode); } /* Check that there is no garbage at end of line. */ if ((arg = strdelim(&s)) != NULL && *arg != '\0') { fatal("%.200s line %d: garbage at end of line; \"%.200s\".", filename, linenum, arg); } return 0; } /* * Reads the config file and modifies the options accordingly. Options * should already be initialized before this call. This never returns if * there is an error. If the file does not exist, this returns 0. */ int read_config_file(const char *filename, const char *host, Options *options, int checkperm) { FILE *f; char line[1024]; int active, linenum; int bad_options = 0; if ((f = fopen(filename, "r")) == NULL) return 0; if (checkperm) { struct stat sb; if (fstat(fileno(f), &sb) == -1) fatal("fstat %s: %s", filename, strerror(errno)); if (((sb.st_uid != 0 && sb.st_uid != getuid()) || (sb.st_mode & 022) != 0)) fatal("Bad owner or permissions on %s", filename); } debug("Reading configuration data %.200s", filename); /* * Mark that we are now processing the options. This flag is turned * on/off by Host specifications. */ active = 1; linenum = 0; while (fgets(line, sizeof(line), f)) { /* Update line number counter. */ linenum++; if (process_config_line(options, host, line, filename, linenum, &active) != 0) bad_options++; } fclose(f); if (bad_options > 0) fatal("%s: terminating, %d bad configuration options", filename, bad_options); return 1; } /* * Initializes options to special values that indicate that they have not yet * been set. Read_config_file will only set options with this value. Options * are processed in the following order: command line, user config file, * system config file. Last, fill_default_options is called. */ void initialize_options(Options * options) { memset(options, 'X', sizeof(*options)); options->forward_agent = -1; options->forward_x11 = -1; options->forward_x11_trusted = -1; options->forward_x11_timeout = -1; options->exit_on_forward_failure = -1; options->xauth_location = NULL; options->gateway_ports = -1; options->use_privileged_port = -1; options->rsa_authentication = -1; options->pubkey_authentication = -1; options->challenge_response_authentication = -1; options->gss_authentication = -1; options->gss_deleg_creds = -1; options->password_authentication = -1; options->kbd_interactive_authentication = -1; options->kbd_interactive_devices = NULL; options->rhosts_rsa_authentication = -1; options->hostbased_authentication = -1; options->batch_mode = -1; options->check_host_ip = -1; options->strict_host_key_checking = -1; options->compression = -1; options->tcp_keep_alive = -1; options->compression_level = -1; options->port = -1; options->address_family = -1; options->connection_attempts = -1; options->connection_timeout = -1; options->number_of_password_prompts = -1; options->cipher = -1; options->ciphers = NULL; options->macs = NULL; options->kex_algorithms = NULL; options->hostkeyalgorithms = NULL; options->protocol = SSH_PROTO_UNKNOWN; options->num_identity_files = 0; options->hostname = NULL; options->host_key_alias = NULL; options->proxy_command = NULL; options->user = NULL; options->escape_char = -1; options->system_hostfile = NULL; options->user_hostfile = NULL; options->system_hostfile2 = NULL; options->user_hostfile2 = NULL; options->local_forwards = NULL; options->num_local_forwards = 0; options->remote_forwards = NULL; options->num_remote_forwards = 0; options->clear_forwardings = -1; options->log_level = SYSLOG_LEVEL_NOT_SET; options->preferred_authentications = NULL; options->bind_address = NULL; options->pkcs11_provider = NULL; options->enable_ssh_keysign = - 1; options->no_host_authentication_for_localhost = - 1; options->identities_only = - 1; options->rekey_limit = - 1; options->verify_host_key_dns = -1; options->server_alive_interval = -1; options->server_alive_count_max = -1; options->num_send_env = 0; options->control_path = NULL; options->control_master = -1; options->control_persist = -1; options->control_persist_timeout = 0; options->hash_known_hosts = -1; options->tun_open = -1; options->tun_local = -1; options->tun_remote = -1; options->local_command = NULL; options->permit_local_command = -1; options->use_roaming = -1; options->visual_host_key = -1; options->zero_knowledge_password_authentication = -1; options->ip_qos_interactive = -1; options->ip_qos_bulk = -1; options->none_switch = -1; options->none_enabled = -1; options->hpn_disabled = -1; options->hpn_buffer_size = -1; options->tcp_rcv_buf_poll = -1; options->tcp_rcv_buf = -1; } /* * Called after processing other sources of option data, this fills those * options for which no value has been specified with their default values. */ void fill_default_options(Options * options) { int len; if (options->forward_agent == -1) options->forward_agent = 0; if (options->forward_x11 == -1) options->forward_x11 = 0; if (options->forward_x11_trusted == -1) options->forward_x11_trusted = 0; if (options->forward_x11_timeout == -1) options->forward_x11_timeout = 1200; if (options->exit_on_forward_failure == -1) options->exit_on_forward_failure = 0; if (options->xauth_location == NULL) options->xauth_location = _PATH_XAUTH; if (options->gateway_ports == -1) options->gateway_ports = 0; if (options->use_privileged_port == -1) options->use_privileged_port = 0; if (options->rsa_authentication == -1) options->rsa_authentication = 1; if (options->pubkey_authentication == -1) options->pubkey_authentication = 1; if (options->challenge_response_authentication == -1) options->challenge_response_authentication = 1; if (options->gss_authentication == -1) options->gss_authentication = 0; if (options->gss_deleg_creds == -1) options->gss_deleg_creds = 0; if (options->password_authentication == -1) options->password_authentication = 1; if (options->kbd_interactive_authentication == -1) options->kbd_interactive_authentication = 1; if (options->rhosts_rsa_authentication == -1) options->rhosts_rsa_authentication = 0; if (options->hostbased_authentication == -1) options->hostbased_authentication = 0; if (options->batch_mode == -1) options->batch_mode = 0; if (options->check_host_ip == -1) options->check_host_ip = 1; if (options->strict_host_key_checking == -1) options->strict_host_key_checking = 2; /* 2 is default */ if (options->compression == -1) options->compression = 0; if (options->tcp_keep_alive == -1) options->tcp_keep_alive = 1; if (options->compression_level == -1) options->compression_level = 6; if (options->port == -1) options->port = 0; /* Filled in ssh_connect. */ if (options->address_family == -1) options->address_family = AF_UNSPEC; if (options->connection_attempts == -1) options->connection_attempts = 1; if (options->number_of_password_prompts == -1) options->number_of_password_prompts = 3; /* Selected in ssh_login(). */ if (options->cipher == -1) options->cipher = SSH_CIPHER_NOT_SET; /* options->ciphers, default set in myproposals.h */ /* options->macs, default set in myproposals.h */ /* options->kex_algorithms, default set in myproposals.h */ /* options->hostkeyalgorithms, default set in myproposals.h */ if (options->protocol == SSH_PROTO_UNKNOWN) options->protocol = SSH_PROTO_2; if (options->num_identity_files == 0) { if (options->protocol & SSH_PROTO_1) { len = 2 + strlen(_PATH_SSH_CLIENT_IDENTITY) + 1; options->identity_files[options->num_identity_files] = xmalloc(len); snprintf(options->identity_files[options->num_identity_files++], len, "~/%.100s", _PATH_SSH_CLIENT_IDENTITY); } if (options->protocol & SSH_PROTO_2) { len = 2 + strlen(_PATH_SSH_CLIENT_ID_RSA) + 1; options->identity_files[options->num_identity_files] = xmalloc(len); snprintf(options->identity_files[options->num_identity_files++], len, "~/%.100s", _PATH_SSH_CLIENT_ID_RSA); len = 2 + strlen(_PATH_SSH_CLIENT_ID_DSA) + 1; options->identity_files[options->num_identity_files] = xmalloc(len); snprintf(options->identity_files[options->num_identity_files++], len, "~/%.100s", _PATH_SSH_CLIENT_ID_DSA); #ifdef OPENSSL_HAS_ECC len = 2 + strlen(_PATH_SSH_CLIENT_ID_ECDSA) + 1; options->identity_files[options->num_identity_files] = xmalloc(len); snprintf(options->identity_files[options->num_identity_files++], len, "~/%.100s", _PATH_SSH_CLIENT_ID_ECDSA); #endif } } if (options->escape_char == -1) options->escape_char = '~'; if (options->system_hostfile == NULL) options->system_hostfile = _PATH_SSH_SYSTEM_HOSTFILE; if (options->user_hostfile == NULL) options->user_hostfile = _PATH_SSH_USER_HOSTFILE; if (options->system_hostfile2 == NULL) options->system_hostfile2 = _PATH_SSH_SYSTEM_HOSTFILE2; if (options->user_hostfile2 == NULL) options->user_hostfile2 = _PATH_SSH_USER_HOSTFILE2; if (options->log_level == SYSLOG_LEVEL_NOT_SET) options->log_level = SYSLOG_LEVEL_INFO; if (options->clear_forwardings == 1) clear_forwardings(options); if (options->no_host_authentication_for_localhost == - 1) options->no_host_authentication_for_localhost = 0; if (options->identities_only == -1) options->identities_only = 0; if (options->enable_ssh_keysign == -1) options->enable_ssh_keysign = 0; if (options->rekey_limit == -1) options->rekey_limit = 0; if (options->verify_host_key_dns == -1) options->verify_host_key_dns = 0; if (options->server_alive_interval == -1) options->server_alive_interval = 0; if (options->server_alive_count_max == -1) options->server_alive_count_max = 3; if (options->none_switch == -1) options->none_switch = 0; if (options->hpn_disabled == -1) options->hpn_disabled = 0; if (options->hpn_buffer_size > -1) { /* if a user tries to set the size to 0 set it to 1KB */ if (options->hpn_buffer_size == 0) options->hpn_buffer_size = 1024; - /* XXX: BUFFER_SIZE */ - if (options->hpn_buffer_size > 65536) { - options->hpn_buffer_size = 65536*1024; - debug("User requested buffer larger than 64MB. " - "Request reverted to 64MB"); - } + if (options->hpn_buffer_size > BUFFER_MAX_LEN/1024) + options->hpn_buffer_size = BUFFER_MAX_LEN; debug("hpn_buffer_size set to %d", options->hpn_buffer_size); } if (options->tcp_rcv_buf == 0) options->tcp_rcv_buf = 1; if (options->tcp_rcv_buf > -1) options->tcp_rcv_buf *=1024; if (options->tcp_rcv_buf_poll == -1) options->tcp_rcv_buf_poll = 1; if (options->control_master == -1) options->control_master = 0; if (options->control_persist == -1) { options->control_persist = 0; options->control_persist_timeout = 0; } if (options->hash_known_hosts == -1) options->hash_known_hosts = 0; if (options->tun_open == -1) options->tun_open = SSH_TUNMODE_NO; if (options->tun_local == -1) options->tun_local = SSH_TUNID_ANY; if (options->tun_remote == -1) options->tun_remote = SSH_TUNID_ANY; if (options->permit_local_command == -1) options->permit_local_command = 0; if (options->use_roaming == -1) options->use_roaming = 1; if (options->visual_host_key == -1) options->visual_host_key = 0; if (options->zero_knowledge_password_authentication == -1) options->zero_knowledge_password_authentication = 0; if (options->ip_qos_interactive == -1) options->ip_qos_interactive = IPTOS_LOWDELAY; if (options->ip_qos_bulk == -1) options->ip_qos_bulk = IPTOS_THROUGHPUT; /* options->local_command should not be set by default */ /* options->proxy_command should not be set by default */ /* options->user will be set in the main program if appropriate */ /* options->hostname will be set in the main program if appropriate */ /* options->host_key_alias should not be set by default */ /* options->preferred_authentications will be set in ssh */ } /* * parse_forward * parses a string containing a port forwarding specification of the form: * dynamicfwd == 0 * [listenhost:]listenport:connecthost:connectport * dynamicfwd == 1 * [listenhost:]listenport * returns number of arguments parsed or zero on error */ int parse_forward(Forward *fwd, const char *fwdspec, int dynamicfwd, int remotefwd) { int i; char *p, *cp, *fwdarg[4]; memset(fwd, '\0', sizeof(*fwd)); cp = p = xstrdup(fwdspec); /* skip leading spaces */ while (isspace(*cp)) cp++; for (i = 0; i < 4; ++i) if ((fwdarg[i] = hpdelim(&cp)) == NULL) break; /* Check for trailing garbage */ if (cp != NULL) i = 0; /* failure */ switch (i) { case 1: fwd->listen_host = NULL; fwd->listen_port = a2port(fwdarg[0]); fwd->connect_host = xstrdup("socks"); break; case 2: fwd->listen_host = xstrdup(cleanhostname(fwdarg[0])); fwd->listen_port = a2port(fwdarg[1]); fwd->connect_host = xstrdup("socks"); break; case 3: fwd->listen_host = NULL; fwd->listen_port = a2port(fwdarg[0]); fwd->connect_host = xstrdup(cleanhostname(fwdarg[1])); fwd->connect_port = a2port(fwdarg[2]); break; case 4: fwd->listen_host = xstrdup(cleanhostname(fwdarg[0])); fwd->listen_port = a2port(fwdarg[1]); fwd->connect_host = xstrdup(cleanhostname(fwdarg[2])); fwd->connect_port = a2port(fwdarg[3]); break; default: i = 0; /* failure */ } xfree(p); if (dynamicfwd) { if (!(i == 1 || i == 2)) goto fail_free; } else { if (!(i == 3 || i == 4)) goto fail_free; if (fwd->connect_port <= 0) goto fail_free; } if (fwd->listen_port < 0 || (!remotefwd && fwd->listen_port == 0)) goto fail_free; if (fwd->connect_host != NULL && strlen(fwd->connect_host) >= NI_MAXHOST) goto fail_free; if (fwd->listen_host != NULL && strlen(fwd->listen_host) >= NI_MAXHOST) goto fail_free; return (i); fail_free: if (fwd->connect_host != NULL) { xfree(fwd->connect_host); fwd->connect_host = NULL; } if (fwd->listen_host != NULL) { xfree(fwd->listen_host); fwd->listen_host = NULL; } return (0); } Index: user/brooks/openssh-hpn/servconf.c =================================================================== --- user/brooks/openssh-hpn/servconf.c (revision 222586) +++ user/brooks/openssh-hpn/servconf.c (revision 222587) @@ -1,1849 +1,1848 @@ /* $OpenBSD: servconf.c,v 1.213 2010/11/13 23:27:50 djm Exp $ */ /* * Copyright (c) 1995 Tatu Ylonen , Espoo, Finland * All rights reserved * * As far as I am concerned, the code I have written for this software * can be used freely for any purpose. Any derived versions of this * software must be clearly marked as such, and if the derived work is * incompatible with the protocol description in the RFC file, it must be * called by a name other than "ssh" or "Secure Shell". */ #include "includes.h" #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include "openbsd-compat/sys-queue.h" #include "xmalloc.h" #include "ssh.h" #include "log.h" #include "buffer.h" #include "servconf.h" #include "compat.h" #include "pathnames.h" #include "misc.h" #include "cipher.h" #include "key.h" #include "kex.h" #include "mac.h" #include "match.h" #include "channels.h" #include "groupaccess.h" static void add_listen_addr(ServerOptions *, char *, int); static void add_one_listen_addr(ServerOptions *, char *, int); /* Use of privilege separation or not */ extern int use_privsep; extern Buffer cfg; /* Initializes the server options to their default values. */ void initialize_server_options(ServerOptions *options) { memset(options, 0, sizeof(*options)); /* Portable-specific options */ options->use_pam = -1; /* Standard Options */ options->num_ports = 0; options->ports_from_cmdline = 0; options->listen_addrs = NULL; options->address_family = -1; options->num_host_key_files = 0; options->num_host_cert_files = 0; options->pid_file = NULL; options->server_key_bits = -1; options->login_grace_time = -1; options->key_regeneration_time = -1; options->permit_root_login = PERMIT_NOT_SET; options->ignore_rhosts = -1; options->ignore_user_known_hosts = -1; options->print_motd = -1; options->print_lastlog = -1; options->x11_forwarding = -1; options->x11_display_offset = -1; options->x11_use_localhost = -1; options->xauth_location = NULL; options->strict_modes = -1; options->tcp_keep_alive = -1; options->log_facility = SYSLOG_FACILITY_NOT_SET; options->log_level = SYSLOG_LEVEL_NOT_SET; options->rhosts_rsa_authentication = -1; options->hostbased_authentication = -1; options->hostbased_uses_name_from_packet_only = -1; options->rsa_authentication = -1; options->pubkey_authentication = -1; options->kerberos_authentication = -1; options->kerberos_or_local_passwd = -1; options->kerberos_ticket_cleanup = -1; options->kerberos_get_afs_token = -1; options->gss_authentication=-1; options->gss_cleanup_creds = -1; options->password_authentication = -1; options->kbd_interactive_authentication = -1; options->challenge_response_authentication = -1; options->permit_empty_passwd = -1; options->permit_user_env = -1; options->use_login = -1; options->compression = -1; options->allow_tcp_forwarding = -1; options->allow_agent_forwarding = -1; options->num_allow_users = 0; options->num_deny_users = 0; options->num_allow_groups = 0; options->num_deny_groups = 0; options->ciphers = NULL; options->macs = NULL; options->kex_algorithms = NULL; options->protocol = SSH_PROTO_UNKNOWN; options->gateway_ports = -1; options->num_subsystems = 0; options->max_startups_begin = -1; options->max_startups_rate = -1; options->max_startups = -1; options->max_authtries = -1; options->max_sessions = -1; options->banner = NULL; options->use_dns = -1; options->client_alive_interval = -1; options->client_alive_count_max = -1; options->authorized_keys_file = NULL; options->authorized_keys_file2 = NULL; options->num_accept_env = 0; options->permit_tun = -1; options->num_permitted_opens = -1; options->adm_forced_command = NULL; options->chroot_directory = NULL; options->zero_knowledge_password_authentication = -1; options->revoked_keys_file = NULL; options->trusted_user_ca_keys = NULL; options->authorized_principals_file = NULL; options->none_enabled = -1; options->tcp_rcv_buf_poll = -1; options->hpn_disabled = -1; options->hpn_buffer_size = -1; options->ip_qos_interactive = -1; options->ip_qos_bulk = -1; } void fill_default_server_options(ServerOptions *options) { int sock; int socksize; int socksizelen = sizeof(int); /* Portable-specific options */ if (options->use_pam == -1) options->use_pam = 0; /* Standard Options */ if (options->protocol == SSH_PROTO_UNKNOWN) options->protocol = SSH_PROTO_2; if (options->num_host_key_files == 0) { /* fill default hostkeys for protocols */ if (options->protocol & SSH_PROTO_1) options->host_key_files[options->num_host_key_files++] = _PATH_HOST_KEY_FILE; if (options->protocol & SSH_PROTO_2) { options->host_key_files[options->num_host_key_files++] = _PATH_HOST_RSA_KEY_FILE; options->host_key_files[options->num_host_key_files++] = _PATH_HOST_DSA_KEY_FILE; #ifdef OPENSSL_HAS_ECC options->host_key_files[options->num_host_key_files++] = _PATH_HOST_ECDSA_KEY_FILE; #endif } } /* No certificates by default */ if (options->num_ports == 0) options->ports[options->num_ports++] = SSH_DEFAULT_PORT; if (options->listen_addrs == NULL) add_listen_addr(options, NULL, 0); if (options->pid_file == NULL) options->pid_file = _PATH_SSH_DAEMON_PID_FILE; if (options->server_key_bits == -1) options->server_key_bits = 1024; if (options->login_grace_time == -1) options->login_grace_time = 120; if (options->key_regeneration_time == -1) options->key_regeneration_time = 3600; if (options->permit_root_login == PERMIT_NOT_SET) options->permit_root_login = PERMIT_YES; if (options->ignore_rhosts == -1) options->ignore_rhosts = 1; if (options->ignore_user_known_hosts == -1) options->ignore_user_known_hosts = 0; if (options->print_motd == -1) options->print_motd = 1; if (options->print_lastlog == -1) options->print_lastlog = 1; if (options->x11_forwarding == -1) options->x11_forwarding = 0; if (options->x11_display_offset == -1) options->x11_display_offset = 10; if (options->x11_use_localhost == -1) options->x11_use_localhost = 1; if (options->xauth_location == NULL) options->xauth_location = _PATH_XAUTH; if (options->strict_modes == -1) options->strict_modes = 1; if (options->tcp_keep_alive == -1) options->tcp_keep_alive = 1; if (options->log_facility == SYSLOG_FACILITY_NOT_SET) options->log_facility = SYSLOG_FACILITY_AUTH; if (options->log_level == SYSLOG_LEVEL_NOT_SET) options->log_level = SYSLOG_LEVEL_INFO; if (options->rhosts_rsa_authentication == -1) options->rhosts_rsa_authentication = 0; if (options->hostbased_authentication == -1) options->hostbased_authentication = 0; if (options->hostbased_uses_name_from_packet_only == -1) options->hostbased_uses_name_from_packet_only = 0; if (options->rsa_authentication == -1) options->rsa_authentication = 1; if (options->pubkey_authentication == -1) options->pubkey_authentication = 1; if (options->kerberos_authentication == -1) options->kerberos_authentication = 0; if (options->kerberos_or_local_passwd == -1) options->kerberos_or_local_passwd = 1; if (options->kerberos_ticket_cleanup == -1) options->kerberos_ticket_cleanup = 1; if (options->kerberos_get_afs_token == -1) options->kerberos_get_afs_token = 0; if (options->gss_authentication == -1) options->gss_authentication = 0; if (options->gss_cleanup_creds == -1) options->gss_cleanup_creds = 1; if (options->password_authentication == -1) options->password_authentication = 1; if (options->kbd_interactive_authentication == -1) options->kbd_interactive_authentication = 0; if (options->challenge_response_authentication == -1) options->challenge_response_authentication = 1; if (options->permit_empty_passwd == -1) options->permit_empty_passwd = 0; if (options->permit_user_env == -1) options->permit_user_env = 0; if (options->use_login == -1) options->use_login = 0; if (options->compression == -1) options->compression = COMP_DELAYED; if (options->allow_tcp_forwarding == -1) options->allow_tcp_forwarding = 1; if (options->allow_agent_forwarding == -1) options->allow_agent_forwarding = 1; if (options->gateway_ports == -1) options->gateway_ports = 0; if (options->max_startups == -1) options->max_startups = 10; if (options->max_startups_rate == -1) options->max_startups_rate = 100; /* 100% */ if (options->max_startups_begin == -1) options->max_startups_begin = options->max_startups; if (options->max_authtries == -1) options->max_authtries = DEFAULT_AUTH_FAIL_MAX; if (options->max_sessions == -1) options->max_sessions = DEFAULT_SESSIONS_MAX; if (options->use_dns == -1) options->use_dns = 1; if (options->client_alive_interval == -1) options->client_alive_interval = 0; if (options->client_alive_count_max == -1) options->client_alive_count_max = 3; if (options->authorized_keys_file2 == NULL) { /* authorized_keys_file2 falls back to authorized_keys_file */ if (options->authorized_keys_file != NULL) options->authorized_keys_file2 = xstrdup(options->authorized_keys_file); else options->authorized_keys_file2 = xstrdup(_PATH_SSH_USER_PERMITTED_KEYS2); } if (options->authorized_keys_file == NULL) options->authorized_keys_file = xstrdup(_PATH_SSH_USER_PERMITTED_KEYS); if (options->permit_tun == -1) options->permit_tun = SSH_TUNMODE_NO; if (options->zero_knowledge_password_authentication == -1) options->zero_knowledge_password_authentication = 0; if (options->ip_qos_interactive == -1) options->ip_qos_interactive = IPTOS_LOWDELAY; if (options->ip_qos_bulk == -1) options->ip_qos_bulk = IPTOS_THROUGHPUT; if (options->hpn_disabled == -1) options->hpn_disabled = 0; if (options->hpn_buffer_size == -1) { /* * Option not explicitly set. Now we have to figure out * what value to use. */ if (options->hpn_disabled == 1) { options->hpn_buffer_size = CHAN_SES_WINDOW_DEFAULT; } else { /* Get the current RCV size and set it to that. */ sock = socket(AF_INET, SOCK_STREAM, 0); getsockopt(sock, SOL_SOCKET, SO_RCVBUF, &socksize, &socksizelen); close(sock); options->hpn_buffer_size = socksize; debug ("HPN Buffer Size: %d", options->hpn_buffer_size); } } else { /* - * In the case that the user sets both values in - * a contradictory manner hpn_disabled overrrides - * hpn_buffer_size. + * In the case that the user sets both values in + * a contradictory manner hpn_disabled overrrides + * hpn_buffer_size. */ if (options->hpn_disabled <= 0) { if (options->hpn_buffer_size == 0) options->hpn_buffer_size = 1; - /* XXX: MAX_BUFFER_SIZE */ /* limit the maximum buffer to 64MB */ - if (options->hpn_buffer_size > 64*1024) - options->hpn_buffer_size = 64*1024*1024; + if (options->hpn_buffer_size > BUFFER_MAX_LEN/1024) + options->hpn_buffer_size = BUFFER_MAX_LEN; else options->hpn_buffer_size *= 1024; } else options->hpn_buffer_size = CHAN_TCP_WINDOW_DEFAULT; } /* Turn privilege separation on by default */ if (use_privsep == -1) use_privsep = 1; #ifndef HAVE_MMAP if (use_privsep && options->compression == 1) { error("This platform does not support both privilege " "separation and compression"); error("Compression disabled"); options->compression = 0; } #endif } /* Keyword tokens. */ typedef enum { sBadOption, /* == unknown option */ /* Portable-specific options */ sUsePAM, /* Standard Options */ sPort, sHostKeyFile, sServerKeyBits, sLoginGraceTime, sKeyRegenerationTime, sPermitRootLogin, sLogFacility, sLogLevel, sRhostsRSAAuthentication, sRSAAuthentication, sKerberosAuthentication, sKerberosOrLocalPasswd, sKerberosTicketCleanup, sKerberosGetAFSToken, sKerberosTgtPassing, sChallengeResponseAuthentication, sPasswordAuthentication, sKbdInteractiveAuthentication, sListenAddress, sAddressFamily, sPrintMotd, sPrintLastLog, sIgnoreRhosts, sX11Forwarding, sX11DisplayOffset, sX11UseLocalhost, sStrictModes, sEmptyPasswd, sTCPKeepAlive, sPermitUserEnvironment, sUseLogin, sAllowTcpForwarding, sCompression, sAllowUsers, sDenyUsers, sAllowGroups, sDenyGroups, sIgnoreUserKnownHosts, sCiphers, sMacs, sProtocol, sPidFile, sGatewayPorts, sPubkeyAuthentication, sXAuthLocation, sSubsystem, sMaxStartups, sMaxAuthTries, sMaxSessions, sBanner, sUseDNS, sHostbasedAuthentication, sHostbasedUsesNameFromPacketOnly, sClientAliveInterval, sClientAliveCountMax, sAuthorizedKeysFile, sAuthorizedKeysFile2, sGssAuthentication, sGssCleanupCreds, sAcceptEnv, sPermitTunnel, sMatch, sPermitOpen, sForceCommand, sChrootDirectory, sUsePrivilegeSeparation, sAllowAgentForwarding, sZeroKnowledgePasswordAuthentication, sHostCertificate, sRevokedKeys, sTrustedUserCAKeys, sAuthorizedPrincipalsFile, sNoneEnabled, sTcpRcvBufPoll, sHPNDisabled, sHPNBufferSize, sKexAlgorithms, sIPQoS, sDeprecated, sUnsupported } ServerOpCodes; #define SSHCFG_GLOBAL 0x01 /* allowed in main section of sshd_config */ #define SSHCFG_MATCH 0x02 /* allowed inside a Match section */ #define SSHCFG_ALL (SSHCFG_GLOBAL|SSHCFG_MATCH) /* Textual representation of the tokens. */ static struct { const char *name; ServerOpCodes opcode; u_int flags; } keywords[] = { /* Portable-specific options */ #ifdef USE_PAM { "usepam", sUsePAM, SSHCFG_GLOBAL }, #else { "usepam", sUnsupported, SSHCFG_GLOBAL }, #endif { "pamauthenticationviakbdint", sDeprecated, SSHCFG_GLOBAL }, /* Standard Options */ { "port", sPort, SSHCFG_GLOBAL }, { "hostkey", sHostKeyFile, SSHCFG_GLOBAL }, { "hostdsakey", sHostKeyFile, SSHCFG_GLOBAL }, /* alias */ { "pidfile", sPidFile, SSHCFG_GLOBAL }, { "serverkeybits", sServerKeyBits, SSHCFG_GLOBAL }, { "logingracetime", sLoginGraceTime, SSHCFG_GLOBAL }, { "keyregenerationinterval", sKeyRegenerationTime, SSHCFG_GLOBAL }, { "permitrootlogin", sPermitRootLogin, SSHCFG_ALL }, { "syslogfacility", sLogFacility, SSHCFG_GLOBAL }, { "loglevel", sLogLevel, SSHCFG_GLOBAL }, { "rhostsauthentication", sDeprecated, SSHCFG_GLOBAL }, { "rhostsrsaauthentication", sRhostsRSAAuthentication, SSHCFG_ALL }, { "hostbasedauthentication", sHostbasedAuthentication, SSHCFG_ALL }, { "hostbasedusesnamefrompacketonly", sHostbasedUsesNameFromPacketOnly, SSHCFG_ALL }, { "rsaauthentication", sRSAAuthentication, SSHCFG_ALL }, { "pubkeyauthentication", sPubkeyAuthentication, SSHCFG_ALL }, { "dsaauthentication", sPubkeyAuthentication, SSHCFG_GLOBAL }, /* alias */ #ifdef KRB5 { "kerberosauthentication", sKerberosAuthentication, SSHCFG_ALL }, { "kerberosorlocalpasswd", sKerberosOrLocalPasswd, SSHCFG_GLOBAL }, { "kerberosticketcleanup", sKerberosTicketCleanup, SSHCFG_GLOBAL }, #ifdef USE_AFS { "kerberosgetafstoken", sKerberosGetAFSToken, SSHCFG_GLOBAL }, #else { "kerberosgetafstoken", sUnsupported, SSHCFG_GLOBAL }, #endif #else { "kerberosauthentication", sUnsupported, SSHCFG_ALL }, { "kerberosorlocalpasswd", sUnsupported, SSHCFG_GLOBAL }, { "kerberosticketcleanup", sUnsupported, SSHCFG_GLOBAL }, { "kerberosgetafstoken", sUnsupported, SSHCFG_GLOBAL }, #endif { "kerberostgtpassing", sUnsupported, SSHCFG_GLOBAL }, { "afstokenpassing", sUnsupported, SSHCFG_GLOBAL }, #ifdef GSSAPI { "gssapiauthentication", sGssAuthentication, SSHCFG_ALL }, { "gssapicleanupcredentials", sGssCleanupCreds, SSHCFG_GLOBAL }, #else { "gssapiauthentication", sUnsupported, SSHCFG_ALL }, { "gssapicleanupcredentials", sUnsupported, SSHCFG_GLOBAL }, #endif { "passwordauthentication", sPasswordAuthentication, SSHCFG_ALL }, { "kbdinteractiveauthentication", sKbdInteractiveAuthentication, SSHCFG_ALL }, { "challengeresponseauthentication", sChallengeResponseAuthentication, SSHCFG_GLOBAL }, { "skeyauthentication", sChallengeResponseAuthentication, SSHCFG_GLOBAL }, /* alias */ #ifdef JPAKE { "zeroknowledgepasswordauthentication", sZeroKnowledgePasswordAuthentication, SSHCFG_ALL }, #else { "zeroknowledgepasswordauthentication", sUnsupported, SSHCFG_ALL }, #endif { "checkmail", sDeprecated, SSHCFG_GLOBAL }, { "listenaddress", sListenAddress, SSHCFG_GLOBAL }, { "addressfamily", sAddressFamily, SSHCFG_GLOBAL }, { "printmotd", sPrintMotd, SSHCFG_GLOBAL }, { "printlastlog", sPrintLastLog, SSHCFG_GLOBAL }, { "ignorerhosts", sIgnoreRhosts, SSHCFG_GLOBAL }, { "ignoreuserknownhosts", sIgnoreUserKnownHosts, SSHCFG_GLOBAL }, { "x11forwarding", sX11Forwarding, SSHCFG_ALL }, { "x11displayoffset", sX11DisplayOffset, SSHCFG_ALL }, { "x11uselocalhost", sX11UseLocalhost, SSHCFG_ALL }, { "xauthlocation", sXAuthLocation, SSHCFG_GLOBAL }, { "strictmodes", sStrictModes, SSHCFG_GLOBAL }, { "permitemptypasswords", sEmptyPasswd, SSHCFG_ALL }, { "permituserenvironment", sPermitUserEnvironment, SSHCFG_GLOBAL }, { "uselogin", sUseLogin, SSHCFG_GLOBAL }, { "compression", sCompression, SSHCFG_GLOBAL }, { "tcpkeepalive", sTCPKeepAlive, SSHCFG_GLOBAL }, { "keepalive", sTCPKeepAlive, SSHCFG_GLOBAL }, /* obsolete alias */ { "allowtcpforwarding", sAllowTcpForwarding, SSHCFG_ALL }, { "allowagentforwarding", sAllowAgentForwarding, SSHCFG_ALL }, { "allowusers", sAllowUsers, SSHCFG_GLOBAL }, { "denyusers", sDenyUsers, SSHCFG_GLOBAL }, { "allowgroups", sAllowGroups, SSHCFG_GLOBAL }, { "denygroups", sDenyGroups, SSHCFG_GLOBAL }, { "ciphers", sCiphers, SSHCFG_GLOBAL }, { "macs", sMacs, SSHCFG_GLOBAL }, { "protocol", sProtocol, SSHCFG_GLOBAL }, { "gatewayports", sGatewayPorts, SSHCFG_ALL }, { "subsystem", sSubsystem, SSHCFG_GLOBAL }, { "maxstartups", sMaxStartups, SSHCFG_GLOBAL }, { "maxauthtries", sMaxAuthTries, SSHCFG_ALL }, { "maxsessions", sMaxSessions, SSHCFG_ALL }, { "banner", sBanner, SSHCFG_ALL }, { "usedns", sUseDNS, SSHCFG_GLOBAL }, { "verifyreversemapping", sDeprecated, SSHCFG_GLOBAL }, { "reversemappingcheck", sDeprecated, SSHCFG_GLOBAL }, { "clientaliveinterval", sClientAliveInterval, SSHCFG_GLOBAL }, { "clientalivecountmax", sClientAliveCountMax, SSHCFG_GLOBAL }, { "authorizedkeysfile", sAuthorizedKeysFile, SSHCFG_ALL }, { "authorizedkeysfile2", sAuthorizedKeysFile2, SSHCFG_ALL }, { "useprivilegeseparation", sUsePrivilegeSeparation, SSHCFG_GLOBAL}, { "acceptenv", sAcceptEnv, SSHCFG_GLOBAL }, { "permittunnel", sPermitTunnel, SSHCFG_ALL }, { "match", sMatch, SSHCFG_ALL }, { "permitopen", sPermitOpen, SSHCFG_ALL }, { "forcecommand", sForceCommand, SSHCFG_ALL }, { "chrootdirectory", sChrootDirectory, SSHCFG_ALL }, { "hostcertificate", sHostCertificate, SSHCFG_GLOBAL }, { "revokedkeys", sRevokedKeys, SSHCFG_ALL }, { "trustedusercakeys", sTrustedUserCAKeys, SSHCFG_ALL }, { "authorizedprincipalsfile", sAuthorizedPrincipalsFile, SSHCFG_ALL }, { "noneenabled", sNoneEnabled, SSHCFG_ALL }, { "hpndisabled", sHPNDisabled, SSHCFG_ALL }, { "hpnbuffersize", sHPNBufferSize, SSHCFG_ALL }, { "tcprcvbufpoll", sTcpRcvBufPoll, SSHCFG_ALL }, { "kexalgorithms", sKexAlgorithms, SSHCFG_GLOBAL }, { "ipqos", sIPQoS, SSHCFG_ALL }, { NULL, sBadOption, 0 } }; static struct { int val; char *text; } tunmode_desc[] = { { SSH_TUNMODE_NO, "no" }, { SSH_TUNMODE_POINTOPOINT, "point-to-point" }, { SSH_TUNMODE_ETHERNET, "ethernet" }, { SSH_TUNMODE_YES, "yes" }, { -1, NULL } }; /* * Returns the number of the token pointed to by cp or sBadOption. */ static ServerOpCodes parse_token(const char *cp, const char *filename, int linenum, u_int *flags) { u_int i; for (i = 0; keywords[i].name; i++) if (strcasecmp(cp, keywords[i].name) == 0) { *flags = keywords[i].flags; return keywords[i].opcode; } error("%s: line %d: Bad configuration option: %s", filename, linenum, cp); return sBadOption; } char * derelativise_path(const char *path) { char *expanded, *ret, cwd[MAXPATHLEN]; expanded = tilde_expand_filename(path, getuid()); if (*expanded == '/') return expanded; if (getcwd(cwd, sizeof(cwd)) == NULL) fatal("%s: getcwd: %s", __func__, strerror(errno)); xasprintf(&ret, "%s/%s", cwd, expanded); xfree(expanded); return ret; } static void add_listen_addr(ServerOptions *options, char *addr, int port) { u_int i; if (options->num_ports == 0) options->ports[options->num_ports++] = SSH_DEFAULT_PORT; if (options->address_family == -1) options->address_family = AF_UNSPEC; if (port == 0) for (i = 0; i < options->num_ports; i++) add_one_listen_addr(options, addr, options->ports[i]); else add_one_listen_addr(options, addr, port); } static void add_one_listen_addr(ServerOptions *options, char *addr, int port) { struct addrinfo hints, *ai, *aitop; char strport[NI_MAXSERV]; int gaierr; memset(&hints, 0, sizeof(hints)); hints.ai_family = options->address_family; hints.ai_socktype = SOCK_STREAM; hints.ai_flags = (addr == NULL) ? AI_PASSIVE : 0; snprintf(strport, sizeof strport, "%d", port); if ((gaierr = getaddrinfo(addr, strport, &hints, &aitop)) != 0) fatal("bad addr or host: %s (%s)", addr ? addr : "", ssh_gai_strerror(gaierr)); for (ai = aitop; ai->ai_next; ai = ai->ai_next) ; ai->ai_next = options->listen_addrs; options->listen_addrs = aitop; } /* * The strategy for the Match blocks is that the config file is parsed twice. * * The first time is at startup. activep is initialized to 1 and the * directives in the global context are processed and acted on. Hitting a * Match directive unsets activep and the directives inside the block are * checked for syntax only. * * The second time is after a connection has been established but before * authentication. activep is initialized to 2 and global config directives * are ignored since they have already been processed. If the criteria in a * Match block is met, activep is set and the subsequent directives * processed and actioned until EOF or another Match block unsets it. Any * options set are copied into the main server config. * * Potential additions/improvements: * - Add Match support for pre-kex directives, eg Protocol, Ciphers. * * - Add a Tag directive (idea from David Leonard) ala pf, eg: * Match Address 192.168.0.* * Tag trusted * Match Group wheel * Tag trusted * Match Tag trusted * AllowTcpForwarding yes * GatewayPorts clientspecified * [...] * * - Add a PermittedChannelRequests directive * Match Group shell * PermittedChannelRequests session,forwarded-tcpip */ static int match_cfg_line_group(const char *grps, int line, const char *user) { int result = 0; struct passwd *pw; if (user == NULL) goto out; if ((pw = getpwnam(user)) == NULL) { debug("Can't match group at line %d because user %.100s does " "not exist", line, user); } else if (ga_init(pw->pw_name, pw->pw_gid) == 0) { debug("Can't Match group because user %.100s not in any group " "at line %d", user, line); } else if (ga_match_pattern_list(grps) != 1) { debug("user %.100s does not match group list %.100s at line %d", user, grps, line); } else { debug("user %.100s matched group list %.100s at line %d", user, grps, line); result = 1; } out: ga_free(); return result; } static int match_cfg_line(char **condition, int line, const char *user, const char *host, const char *address) { int result = 1; char *arg, *attrib, *cp = *condition; size_t len; if (user == NULL) debug3("checking syntax for 'Match %s'", cp); else debug3("checking match for '%s' user %s host %s addr %s", cp, user ? user : "(null)", host ? host : "(null)", address ? address : "(null)"); while ((attrib = strdelim(&cp)) && *attrib != '\0') { if ((arg = strdelim(&cp)) == NULL || *arg == '\0') { error("Missing Match criteria for %s", attrib); return -1; } len = strlen(arg); if (strcasecmp(attrib, "user") == 0) { if (!user) { result = 0; continue; } if (match_pattern_list(user, arg, len, 0) != 1) result = 0; else debug("user %.100s matched 'User %.100s' at " "line %d", user, arg, line); } else if (strcasecmp(attrib, "group") == 0) { switch (match_cfg_line_group(arg, line, user)) { case -1: return -1; case 0: result = 0; } } else if (strcasecmp(attrib, "host") == 0) { if (!host) { result = 0; continue; } if (match_hostname(host, arg, len) != 1) result = 0; else debug("connection from %.100s matched 'Host " "%.100s' at line %d", host, arg, line); } else if (strcasecmp(attrib, "address") == 0) { switch (addr_match_list(address, arg)) { case 1: debug("connection from %.100s matched 'Address " "%.100s' at line %d", address, arg, line); break; case 0: case -1: result = 0; break; case -2: return -1; } } else { error("Unsupported Match attribute %s", attrib); return -1; } } if (user != NULL) debug3("match %sfound", result ? "" : "not "); *condition = cp; return result; } #define WHITESPACE " \t\r\n" int process_server_config_line(ServerOptions *options, char *line, const char *filename, int linenum, int *activep, const char *user, const char *host, const char *address) { char *cp, **charptr, *arg, *p; int cmdline = 0, *intptr, value, value2, n; SyslogFacility *log_facility_ptr; LogLevel *log_level_ptr; ServerOpCodes opcode; int port; u_int i, flags = 0; size_t len; cp = line; if ((arg = strdelim(&cp)) == NULL) return 0; /* Ignore leading whitespace */ if (*arg == '\0') arg = strdelim(&cp); if (!arg || !*arg || *arg == '#') return 0; intptr = NULL; charptr = NULL; opcode = parse_token(arg, filename, linenum, &flags); if (activep == NULL) { /* We are processing a command line directive */ cmdline = 1; activep = &cmdline; } if (*activep && opcode != sMatch) debug3("%s:%d setting %s %s", filename, linenum, arg, cp); if (*activep == 0 && !(flags & SSHCFG_MATCH)) { if (user == NULL) { fatal("%s line %d: Directive '%s' is not allowed " "within a Match block", filename, linenum, arg); } else { /* this is a directive we have already processed */ while (arg) arg = strdelim(&cp); return 0; } } switch (opcode) { /* Portable-specific options */ case sUsePAM: intptr = &options->use_pam; goto parse_flag; /* Standard Options */ case sBadOption: return -1; case sPort: /* ignore ports from configfile if cmdline specifies ports */ if (options->ports_from_cmdline) return 0; if (options->listen_addrs != NULL) fatal("%s line %d: ports must be specified before " "ListenAddress.", filename, linenum); if (options->num_ports >= MAX_PORTS) fatal("%s line %d: too many ports.", filename, linenum); arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing port number.", filename, linenum); options->ports[options->num_ports++] = a2port(arg); if (options->ports[options->num_ports-1] <= 0) fatal("%s line %d: Badly formatted port number.", filename, linenum); break; case sServerKeyBits: intptr = &options->server_key_bits; parse_int: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing integer value.", filename, linenum); value = atoi(arg); if (*activep && *intptr == -1) *intptr = value; break; case sLoginGraceTime: intptr = &options->login_grace_time; parse_time: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing time value.", filename, linenum); if ((value = convtime(arg)) == -1) fatal("%s line %d: invalid time value.", filename, linenum); if (*intptr == -1) *intptr = value; break; case sKeyRegenerationTime: intptr = &options->key_regeneration_time; goto parse_time; case sListenAddress: arg = strdelim(&cp); if (arg == NULL || *arg == '\0') fatal("%s line %d: missing address", filename, linenum); /* check for bare IPv6 address: no "[]" and 2 or more ":" */ if (strchr(arg, '[') == NULL && (p = strchr(arg, ':')) != NULL && strchr(p+1, ':') != NULL) { add_listen_addr(options, arg, 0); break; } p = hpdelim(&arg); if (p == NULL) fatal("%s line %d: bad address:port usage", filename, linenum); p = cleanhostname(p); if (arg == NULL) port = 0; else if ((port = a2port(arg)) <= 0) fatal("%s line %d: bad port number", filename, linenum); add_listen_addr(options, p, port); break; case sAddressFamily: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing address family.", filename, linenum); intptr = &options->address_family; if (options->listen_addrs != NULL) fatal("%s line %d: address family must be specified before " "ListenAddress.", filename, linenum); if (strcasecmp(arg, "inet") == 0) value = AF_INET; else if (strcasecmp(arg, "inet6") == 0) value = AF_INET6; else if (strcasecmp(arg, "any") == 0) value = AF_UNSPEC; else fatal("%s line %d: unsupported address family \"%s\".", filename, linenum, arg); if (*intptr == -1) *intptr = value; break; case sHostKeyFile: intptr = &options->num_host_key_files; if (*intptr >= MAX_HOSTKEYS) fatal("%s line %d: too many host keys specified (max %d).", filename, linenum, MAX_HOSTKEYS); charptr = &options->host_key_files[*intptr]; parse_filename: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing file name.", filename, linenum); if (*activep && *charptr == NULL) { *charptr = derelativise_path(arg); /* increase optional counter */ if (intptr != NULL) *intptr = *intptr + 1; } break; case sHostCertificate: intptr = &options->num_host_cert_files; if (*intptr >= MAX_HOSTKEYS) fatal("%s line %d: too many host certificates " "specified (max %d).", filename, linenum, MAX_HOSTCERTS); charptr = &options->host_cert_files[*intptr]; goto parse_filename; break; case sPidFile: charptr = &options->pid_file; goto parse_filename; case sPermitRootLogin: intptr = &options->permit_root_login; arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing yes/" "without-password/forced-commands-only/no " "argument.", filename, linenum); value = 0; /* silence compiler */ if (strcmp(arg, "without-password") == 0) value = PERMIT_NO_PASSWD; else if (strcmp(arg, "forced-commands-only") == 0) value = PERMIT_FORCED_ONLY; else if (strcmp(arg, "yes") == 0) value = PERMIT_YES; else if (strcmp(arg, "no") == 0) value = PERMIT_NO; else fatal("%s line %d: Bad yes/" "without-password/forced-commands-only/no " "argument: %s", filename, linenum, arg); if (*activep && *intptr == -1) *intptr = value; break; case sIgnoreRhosts: intptr = &options->ignore_rhosts; parse_flag: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing yes/no argument.", filename, linenum); value = 0; /* silence compiler */ if (strcmp(arg, "yes") == 0) value = 1; else if (strcmp(arg, "no") == 0) value = 0; else fatal("%s line %d: Bad yes/no argument: %s", filename, linenum, arg); if (*activep && *intptr == -1) *intptr = value; break; case sNoneEnabled: intptr = &options->none_enabled; goto parse_flag; case sTcpRcvBufPoll: intptr = &options->tcp_rcv_buf_poll; goto parse_flag; case sHPNDisabled: intptr = &options->hpn_disabled; goto parse_flag; case sHPNBufferSize: intptr = &options->hpn_buffer_size; goto parse_int; case sIgnoreUserKnownHosts: intptr = &options->ignore_user_known_hosts; goto parse_flag; case sRhostsRSAAuthentication: intptr = &options->rhosts_rsa_authentication; goto parse_flag; case sHostbasedAuthentication: intptr = &options->hostbased_authentication; goto parse_flag; case sHostbasedUsesNameFromPacketOnly: intptr = &options->hostbased_uses_name_from_packet_only; goto parse_flag; case sRSAAuthentication: intptr = &options->rsa_authentication; goto parse_flag; case sPubkeyAuthentication: intptr = &options->pubkey_authentication; goto parse_flag; case sKerberosAuthentication: intptr = &options->kerberos_authentication; goto parse_flag; case sKerberosOrLocalPasswd: intptr = &options->kerberos_or_local_passwd; goto parse_flag; case sKerberosTicketCleanup: intptr = &options->kerberos_ticket_cleanup; goto parse_flag; case sKerberosGetAFSToken: intptr = &options->kerberos_get_afs_token; goto parse_flag; case sGssAuthentication: intptr = &options->gss_authentication; goto parse_flag; case sGssCleanupCreds: intptr = &options->gss_cleanup_creds; goto parse_flag; case sPasswordAuthentication: intptr = &options->password_authentication; goto parse_flag; case sZeroKnowledgePasswordAuthentication: intptr = &options->zero_knowledge_password_authentication; goto parse_flag; case sKbdInteractiveAuthentication: intptr = &options->kbd_interactive_authentication; goto parse_flag; case sChallengeResponseAuthentication: intptr = &options->challenge_response_authentication; goto parse_flag; case sPrintMotd: intptr = &options->print_motd; goto parse_flag; case sPrintLastLog: intptr = &options->print_lastlog; goto parse_flag; case sX11Forwarding: intptr = &options->x11_forwarding; goto parse_flag; case sX11DisplayOffset: intptr = &options->x11_display_offset; goto parse_int; case sX11UseLocalhost: intptr = &options->x11_use_localhost; goto parse_flag; case sXAuthLocation: charptr = &options->xauth_location; goto parse_filename; case sStrictModes: intptr = &options->strict_modes; goto parse_flag; case sTCPKeepAlive: intptr = &options->tcp_keep_alive; goto parse_flag; case sEmptyPasswd: intptr = &options->permit_empty_passwd; goto parse_flag; case sPermitUserEnvironment: intptr = &options->permit_user_env; goto parse_flag; case sUseLogin: intptr = &options->use_login; goto parse_flag; case sCompression: intptr = &options->compression; arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing yes/no/delayed " "argument.", filename, linenum); value = 0; /* silence compiler */ if (strcmp(arg, "delayed") == 0) value = COMP_DELAYED; else if (strcmp(arg, "yes") == 0) value = COMP_ZLIB; else if (strcmp(arg, "no") == 0) value = COMP_NONE; else fatal("%s line %d: Bad yes/no/delayed " "argument: %s", filename, linenum, arg); if (*intptr == -1) *intptr = value; break; case sGatewayPorts: intptr = &options->gateway_ports; arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing yes/no/clientspecified " "argument.", filename, linenum); value = 0; /* silence compiler */ if (strcmp(arg, "clientspecified") == 0) value = 2; else if (strcmp(arg, "yes") == 0) value = 1; else if (strcmp(arg, "no") == 0) value = 0; else fatal("%s line %d: Bad yes/no/clientspecified " "argument: %s", filename, linenum, arg); if (*activep && *intptr == -1) *intptr = value; break; case sUseDNS: intptr = &options->use_dns; goto parse_flag; case sLogFacility: log_facility_ptr = &options->log_facility; arg = strdelim(&cp); value = log_facility_number(arg); if (value == SYSLOG_FACILITY_NOT_SET) fatal("%.200s line %d: unsupported log facility '%s'", filename, linenum, arg ? arg : ""); if (*log_facility_ptr == -1) *log_facility_ptr = (SyslogFacility) value; break; case sLogLevel: log_level_ptr = &options->log_level; arg = strdelim(&cp); value = log_level_number(arg); if (value == SYSLOG_LEVEL_NOT_SET) fatal("%.200s line %d: unsupported log level '%s'", filename, linenum, arg ? arg : ""); if (*log_level_ptr == -1) *log_level_ptr = (LogLevel) value; break; case sAllowTcpForwarding: intptr = &options->allow_tcp_forwarding; goto parse_flag; case sAllowAgentForwarding: intptr = &options->allow_agent_forwarding; goto parse_flag; case sUsePrivilegeSeparation: intptr = &use_privsep; goto parse_flag; case sAllowUsers: while ((arg = strdelim(&cp)) && *arg != '\0') { if (options->num_allow_users >= MAX_ALLOW_USERS) fatal("%s line %d: too many allow users.", filename, linenum); options->allow_users[options->num_allow_users++] = xstrdup(arg); } break; case sDenyUsers: while ((arg = strdelim(&cp)) && *arg != '\0') { if (options->num_deny_users >= MAX_DENY_USERS) fatal("%s line %d: too many deny users.", filename, linenum); options->deny_users[options->num_deny_users++] = xstrdup(arg); } break; case sAllowGroups: while ((arg = strdelim(&cp)) && *arg != '\0') { if (options->num_allow_groups >= MAX_ALLOW_GROUPS) fatal("%s line %d: too many allow groups.", filename, linenum); options->allow_groups[options->num_allow_groups++] = xstrdup(arg); } break; case sDenyGroups: while ((arg = strdelim(&cp)) && *arg != '\0') { if (options->num_deny_groups >= MAX_DENY_GROUPS) fatal("%s line %d: too many deny groups.", filename, linenum); options->deny_groups[options->num_deny_groups++] = xstrdup(arg); } break; case sCiphers: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: Missing argument.", filename, linenum); if (!ciphers_valid(arg)) fatal("%s line %d: Bad SSH2 cipher spec '%s'.", filename, linenum, arg ? arg : ""); if (options->ciphers == NULL) options->ciphers = xstrdup(arg); break; case sMacs: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: Missing argument.", filename, linenum); if (!mac_valid(arg)) fatal("%s line %d: Bad SSH2 mac spec '%s'.", filename, linenum, arg ? arg : ""); if (options->macs == NULL) options->macs = xstrdup(arg); break; case sKexAlgorithms: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: Missing argument.", filename, linenum); if (!kex_names_valid(arg)) fatal("%s line %d: Bad SSH2 KexAlgorithms '%s'.", filename, linenum, arg ? arg : ""); if (options->kex_algorithms == NULL) options->kex_algorithms = xstrdup(arg); break; case sProtocol: intptr = &options->protocol; arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: Missing argument.", filename, linenum); value = proto_spec(arg); if (value == SSH_PROTO_UNKNOWN) fatal("%s line %d: Bad protocol spec '%s'.", filename, linenum, arg ? arg : ""); if (*intptr == SSH_PROTO_UNKNOWN) *intptr = value; break; case sSubsystem: if (options->num_subsystems >= MAX_SUBSYSTEMS) { fatal("%s line %d: too many subsystems defined.", filename, linenum); } arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: Missing subsystem name.", filename, linenum); if (!*activep) { arg = strdelim(&cp); break; } for (i = 0; i < options->num_subsystems; i++) if (strcmp(arg, options->subsystem_name[i]) == 0) fatal("%s line %d: Subsystem '%s' already defined.", filename, linenum, arg); options->subsystem_name[options->num_subsystems] = xstrdup(arg); arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: Missing subsystem command.", filename, linenum); options->subsystem_command[options->num_subsystems] = xstrdup(arg); /* Collect arguments (separate to executable) */ p = xstrdup(arg); len = strlen(p) + 1; while ((arg = strdelim(&cp)) != NULL && *arg != '\0') { len += 1 + strlen(arg); p = xrealloc(p, 1, len); strlcat(p, " ", len); strlcat(p, arg, len); } options->subsystem_args[options->num_subsystems] = p; options->num_subsystems++; break; case sMaxStartups: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: Missing MaxStartups spec.", filename, linenum); if ((n = sscanf(arg, "%d:%d:%d", &options->max_startups_begin, &options->max_startups_rate, &options->max_startups)) == 3) { if (options->max_startups_begin > options->max_startups || options->max_startups_rate > 100 || options->max_startups_rate < 1) fatal("%s line %d: Illegal MaxStartups spec.", filename, linenum); } else if (n != 1) fatal("%s line %d: Illegal MaxStartups spec.", filename, linenum); else options->max_startups = options->max_startups_begin; break; case sMaxAuthTries: intptr = &options->max_authtries; goto parse_int; case sMaxSessions: intptr = &options->max_sessions; goto parse_int; case sBanner: charptr = &options->banner; goto parse_filename; /* * These options can contain %X options expanded at * connect time, so that you can specify paths like: * * AuthorizedKeysFile /etc/ssh_keys/%u */ case sAuthorizedKeysFile: charptr = &options->authorized_keys_file; goto parse_tilde_filename; case sAuthorizedKeysFile2: charptr = &options->authorized_keys_file2; goto parse_tilde_filename; case sAuthorizedPrincipalsFile: charptr = &options->authorized_principals_file; parse_tilde_filename: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing file name.", filename, linenum); if (*activep && *charptr == NULL) { *charptr = tilde_expand_filename(arg, getuid()); /* increase optional counter */ if (intptr != NULL) *intptr = *intptr + 1; } break; case sClientAliveInterval: intptr = &options->client_alive_interval; goto parse_time; case sClientAliveCountMax: intptr = &options->client_alive_count_max; goto parse_int; case sAcceptEnv: while ((arg = strdelim(&cp)) && *arg != '\0') { if (strchr(arg, '=') != NULL) fatal("%s line %d: Invalid environment name.", filename, linenum); if (options->num_accept_env >= MAX_ACCEPT_ENV) fatal("%s line %d: too many allow env.", filename, linenum); if (!*activep) break; options->accept_env[options->num_accept_env++] = xstrdup(arg); } break; case sPermitTunnel: intptr = &options->permit_tun; arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: Missing yes/point-to-point/" "ethernet/no argument.", filename, linenum); value = -1; for (i = 0; tunmode_desc[i].val != -1; i++) if (strcmp(tunmode_desc[i].text, arg) == 0) { value = tunmode_desc[i].val; break; } if (value == -1) fatal("%s line %d: Bad yes/point-to-point/ethernet/" "no argument: %s", filename, linenum, arg); if (*intptr == -1) *intptr = value; break; case sMatch: if (cmdline) fatal("Match directive not supported as a command-line " "option"); value = match_cfg_line(&cp, linenum, user, host, address); if (value < 0) fatal("%s line %d: Bad Match condition", filename, linenum); *activep = value; break; case sPermitOpen: arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing PermitOpen specification", filename, linenum); n = options->num_permitted_opens; /* modified later */ if (strcmp(arg, "any") == 0) { if (*activep && n == -1) { channel_clear_adm_permitted_opens(); options->num_permitted_opens = 0; } break; } if (*activep && n == -1) channel_clear_adm_permitted_opens(); for (; arg != NULL && *arg != '\0'; arg = strdelim(&cp)) { p = hpdelim(&arg); if (p == NULL) fatal("%s line %d: missing host in PermitOpen", filename, linenum); p = cleanhostname(p); if (arg == NULL || (port = a2port(arg)) <= 0) fatal("%s line %d: bad port number in " "PermitOpen", filename, linenum); if (*activep && n == -1) options->num_permitted_opens = channel_add_adm_permitted_opens(p, port); } break; case sForceCommand: if (cp == NULL) fatal("%.200s line %d: Missing argument.", filename, linenum); len = strspn(cp, WHITESPACE); if (*activep && options->adm_forced_command == NULL) options->adm_forced_command = xstrdup(cp + len); return 0; case sChrootDirectory: charptr = &options->chroot_directory; arg = strdelim(&cp); if (!arg || *arg == '\0') fatal("%s line %d: missing file name.", filename, linenum); if (*activep && *charptr == NULL) *charptr = xstrdup(arg); break; case sTrustedUserCAKeys: charptr = &options->trusted_user_ca_keys; goto parse_filename; case sRevokedKeys: charptr = &options->revoked_keys_file; goto parse_filename; case sIPQoS: arg = strdelim(&cp); if ((value = parse_ipqos(arg)) == -1) fatal("%s line %d: Bad IPQoS value: %s", filename, linenum, arg); arg = strdelim(&cp); if (arg == NULL) value2 = value; else if ((value2 = parse_ipqos(arg)) == -1) fatal("%s line %d: Bad IPQoS value: %s", filename, linenum, arg); if (*activep) { options->ip_qos_interactive = value; options->ip_qos_bulk = value2; } break; case sDeprecated: logit("%s line %d: Deprecated option %s", filename, linenum, arg); while (arg) arg = strdelim(&cp); break; case sUnsupported: logit("%s line %d: Unsupported option %s", filename, linenum, arg); while (arg) arg = strdelim(&cp); break; default: fatal("%s line %d: Missing handler for opcode %s (%d)", filename, linenum, arg, opcode); } if ((arg = strdelim(&cp)) != NULL && *arg != '\0') fatal("%s line %d: garbage at end of line; \"%.200s\".", filename, linenum, arg); return 0; } /* Reads the server configuration file. */ void load_server_config(const char *filename, Buffer *conf) { char line[1024], *cp; FILE *f; debug2("%s: filename %s", __func__, filename); if ((f = fopen(filename, "r")) == NULL) { perror(filename); exit(1); } buffer_clear(conf); while (fgets(line, sizeof(line), f)) { /* * Trim out comments and strip whitespace * NB - preserve newlines, they are needed to reproduce * line numbers later for error messages */ if ((cp = strchr(line, '#')) != NULL) memcpy(cp, "\n", 2); cp = line + strspn(line, " \t\r"); buffer_append(conf, cp, strlen(cp)); } buffer_append(conf, "\0", 1); fclose(f); debug2("%s: done config len = %d", __func__, buffer_len(conf)); } void parse_server_match_config(ServerOptions *options, const char *user, const char *host, const char *address) { ServerOptions mo; initialize_server_options(&mo); parse_server_config(&mo, "reprocess config", &cfg, user, host, address); copy_set_server_options(options, &mo, 0); } /* Helper macros */ #define M_CP_INTOPT(n) do {\ if (src->n != -1) \ dst->n = src->n; \ } while (0) #define M_CP_STROPT(n) do {\ if (src->n != NULL) { \ if (dst->n != NULL) \ xfree(dst->n); \ dst->n = src->n; \ } \ } while(0) /* * Copy any supported values that are set. * * If the preauth flag is set, we do not bother copying the string or * array values that are not used pre-authentication, because any that we * do use must be explictly sent in mm_getpwnamallow(). */ void copy_set_server_options(ServerOptions *dst, ServerOptions *src, int preauth) { M_CP_INTOPT(password_authentication); M_CP_INTOPT(gss_authentication); M_CP_INTOPT(rsa_authentication); M_CP_INTOPT(pubkey_authentication); M_CP_INTOPT(kerberos_authentication); M_CP_INTOPT(hostbased_authentication); M_CP_INTOPT(hostbased_uses_name_from_packet_only); M_CP_INTOPT(kbd_interactive_authentication); M_CP_INTOPT(zero_knowledge_password_authentication); M_CP_INTOPT(permit_root_login); M_CP_INTOPT(permit_empty_passwd); M_CP_INTOPT(allow_tcp_forwarding); M_CP_INTOPT(allow_agent_forwarding); M_CP_INTOPT(permit_tun); M_CP_INTOPT(gateway_ports); M_CP_INTOPT(x11_display_offset); M_CP_INTOPT(x11_forwarding); M_CP_INTOPT(x11_use_localhost); M_CP_INTOPT(max_sessions); M_CP_INTOPT(max_authtries); M_CP_INTOPT(ip_qos_interactive); M_CP_INTOPT(ip_qos_bulk); M_CP_STROPT(banner); if (preauth) return; M_CP_STROPT(adm_forced_command); M_CP_STROPT(chroot_directory); M_CP_STROPT(trusted_user_ca_keys); M_CP_STROPT(revoked_keys_file); M_CP_STROPT(authorized_keys_file); M_CP_STROPT(authorized_keys_file2); M_CP_STROPT(authorized_principals_file); } #undef M_CP_INTOPT #undef M_CP_STROPT void parse_server_config(ServerOptions *options, const char *filename, Buffer *conf, const char *user, const char *host, const char *address) { int active, linenum, bad_options = 0; char *cp, *obuf, *cbuf; debug2("%s: config %s len %d", __func__, filename, buffer_len(conf)); obuf = cbuf = xstrdup(buffer_ptr(conf)); active = user ? 0 : 1; linenum = 1; while ((cp = strsep(&cbuf, "\n")) != NULL) { if (process_server_config_line(options, cp, filename, linenum++, &active, user, host, address) != 0) bad_options++; } xfree(obuf); if (bad_options > 0) fatal("%s: terminating, %d bad configuration options", filename, bad_options); } static const char * fmt_intarg(ServerOpCodes code, int val) { if (code == sAddressFamily) { switch (val) { case AF_INET: return "inet"; case AF_INET6: return "inet6"; case AF_UNSPEC: return "any"; default: return "UNKNOWN"; } } if (code == sPermitRootLogin) { switch (val) { case PERMIT_NO_PASSWD: return "without-password"; case PERMIT_FORCED_ONLY: return "forced-commands-only"; case PERMIT_YES: return "yes"; } } if (code == sProtocol) { switch (val) { case SSH_PROTO_1: return "1"; case SSH_PROTO_2: return "2"; case (SSH_PROTO_1|SSH_PROTO_2): return "2,1"; default: return "UNKNOWN"; } } if (code == sGatewayPorts && val == 2) return "clientspecified"; if (code == sCompression && val == COMP_DELAYED) return "delayed"; switch (val) { case -1: return "unset"; case 0: return "no"; case 1: return "yes"; } return "UNKNOWN"; } static const char * lookup_opcode_name(ServerOpCodes code) { u_int i; for (i = 0; keywords[i].name != NULL; i++) if (keywords[i].opcode == code) return(keywords[i].name); return "UNKNOWN"; } static void dump_cfg_int(ServerOpCodes code, int val) { printf("%s %d\n", lookup_opcode_name(code), val); } static void dump_cfg_fmtint(ServerOpCodes code, int val) { printf("%s %s\n", lookup_opcode_name(code), fmt_intarg(code, val)); } static void dump_cfg_string(ServerOpCodes code, const char *val) { if (val == NULL) return; printf("%s %s\n", lookup_opcode_name(code), val); } static void dump_cfg_strarray(ServerOpCodes code, u_int count, char **vals) { u_int i; for (i = 0; i < count; i++) printf("%s %s\n", lookup_opcode_name(code), vals[i]); } void dump_config(ServerOptions *o) { u_int i; int ret; struct addrinfo *ai; char addr[NI_MAXHOST], port[NI_MAXSERV], *s = NULL; /* these are usually at the top of the config */ for (i = 0; i < o->num_ports; i++) printf("port %d\n", o->ports[i]); dump_cfg_fmtint(sProtocol, o->protocol); dump_cfg_fmtint(sAddressFamily, o->address_family); /* ListenAddress must be after Port */ for (ai = o->listen_addrs; ai; ai = ai->ai_next) { if ((ret = getnameinfo(ai->ai_addr, ai->ai_addrlen, addr, sizeof(addr), port, sizeof(port), NI_NUMERICHOST|NI_NUMERICSERV)) != 0) { error("getnameinfo failed: %.100s", (ret != EAI_SYSTEM) ? gai_strerror(ret) : strerror(errno)); } else { if (ai->ai_family == AF_INET6) printf("listenaddress [%s]:%s\n", addr, port); else printf("listenaddress %s:%s\n", addr, port); } } /* integer arguments */ #ifdef USE_PAM dump_cfg_int(sUsePAM, o->use_pam); #endif dump_cfg_int(sServerKeyBits, o->server_key_bits); dump_cfg_int(sLoginGraceTime, o->login_grace_time); dump_cfg_int(sKeyRegenerationTime, o->key_regeneration_time); dump_cfg_int(sX11DisplayOffset, o->x11_display_offset); dump_cfg_int(sMaxAuthTries, o->max_authtries); dump_cfg_int(sMaxSessions, o->max_sessions); dump_cfg_int(sClientAliveInterval, o->client_alive_interval); dump_cfg_int(sClientAliveCountMax, o->client_alive_count_max); /* formatted integer arguments */ dump_cfg_fmtint(sPermitRootLogin, o->permit_root_login); dump_cfg_fmtint(sIgnoreRhosts, o->ignore_rhosts); dump_cfg_fmtint(sIgnoreUserKnownHosts, o->ignore_user_known_hosts); dump_cfg_fmtint(sRhostsRSAAuthentication, o->rhosts_rsa_authentication); dump_cfg_fmtint(sHostbasedAuthentication, o->hostbased_authentication); dump_cfg_fmtint(sHostbasedUsesNameFromPacketOnly, o->hostbased_uses_name_from_packet_only); dump_cfg_fmtint(sRSAAuthentication, o->rsa_authentication); dump_cfg_fmtint(sPubkeyAuthentication, o->pubkey_authentication); #ifdef KRB5 dump_cfg_fmtint(sKerberosAuthentication, o->kerberos_authentication); dump_cfg_fmtint(sKerberosOrLocalPasswd, o->kerberos_or_local_passwd); dump_cfg_fmtint(sKerberosTicketCleanup, o->kerberos_ticket_cleanup); # ifdef USE_AFS dump_cfg_fmtint(sKerberosGetAFSToken, o->kerberos_get_afs_token); # endif #endif #ifdef GSSAPI dump_cfg_fmtint(sGssAuthentication, o->gss_authentication); dump_cfg_fmtint(sGssCleanupCreds, o->gss_cleanup_creds); #endif #ifdef JPAKE dump_cfg_fmtint(sZeroKnowledgePasswordAuthentication, o->zero_knowledge_password_authentication); #endif dump_cfg_fmtint(sPasswordAuthentication, o->password_authentication); dump_cfg_fmtint(sKbdInteractiveAuthentication, o->kbd_interactive_authentication); dump_cfg_fmtint(sChallengeResponseAuthentication, o->challenge_response_authentication); dump_cfg_fmtint(sPrintMotd, o->print_motd); dump_cfg_fmtint(sPrintLastLog, o->print_lastlog); dump_cfg_fmtint(sX11Forwarding, o->x11_forwarding); dump_cfg_fmtint(sX11UseLocalhost, o->x11_use_localhost); dump_cfg_fmtint(sStrictModes, o->strict_modes); dump_cfg_fmtint(sTCPKeepAlive, o->tcp_keep_alive); dump_cfg_fmtint(sEmptyPasswd, o->permit_empty_passwd); dump_cfg_fmtint(sPermitUserEnvironment, o->permit_user_env); dump_cfg_fmtint(sUseLogin, o->use_login); dump_cfg_fmtint(sCompression, o->compression); dump_cfg_fmtint(sGatewayPorts, o->gateway_ports); dump_cfg_fmtint(sUseDNS, o->use_dns); dump_cfg_fmtint(sAllowTcpForwarding, o->allow_tcp_forwarding); dump_cfg_fmtint(sUsePrivilegeSeparation, use_privsep); /* string arguments */ dump_cfg_string(sPidFile, o->pid_file); dump_cfg_string(sXAuthLocation, o->xauth_location); dump_cfg_string(sCiphers, o->ciphers); dump_cfg_string(sMacs, o->macs); dump_cfg_string(sBanner, o->banner); dump_cfg_string(sAuthorizedKeysFile, o->authorized_keys_file); dump_cfg_string(sAuthorizedKeysFile2, o->authorized_keys_file2); dump_cfg_string(sForceCommand, o->adm_forced_command); dump_cfg_string(sChrootDirectory, o->chroot_directory); dump_cfg_string(sTrustedUserCAKeys, o->trusted_user_ca_keys); dump_cfg_string(sRevokedKeys, o->revoked_keys_file); dump_cfg_string(sAuthorizedPrincipalsFile, o->authorized_principals_file); /* string arguments requiring a lookup */ dump_cfg_string(sLogLevel, log_level_name(o->log_level)); dump_cfg_string(sLogFacility, log_facility_name(o->log_facility)); /* string array arguments */ dump_cfg_strarray(sHostKeyFile, o->num_host_key_files, o->host_key_files); dump_cfg_strarray(sHostKeyFile, o->num_host_cert_files, o->host_cert_files); dump_cfg_strarray(sAllowUsers, o->num_allow_users, o->allow_users); dump_cfg_strarray(sDenyUsers, o->num_deny_users, o->deny_users); dump_cfg_strarray(sAllowGroups, o->num_allow_groups, o->allow_groups); dump_cfg_strarray(sDenyGroups, o->num_deny_groups, o->deny_groups); dump_cfg_strarray(sAcceptEnv, o->num_accept_env, o->accept_env); /* other arguments */ for (i = 0; i < o->num_subsystems; i++) printf("subsystem %s %s\n", o->subsystem_name[i], o->subsystem_args[i]); printf("maxstartups %d:%d:%d\n", o->max_startups_begin, o->max_startups_rate, o->max_startups); for (i = 0; tunmode_desc[i].val != -1; i++) if (tunmode_desc[i].val == o->permit_tun) { s = tunmode_desc[i].text; break; } dump_cfg_string(sPermitTunnel, s); printf("ipqos 0x%02x 0x%02x\n", o->ip_qos_interactive, o->ip_qos_bulk); channel_print_adm_permitted_opens(); } Index: user/brooks/openssh-hpn/ssh.c =================================================================== --- user/brooks/openssh-hpn/ssh.c (revision 222586) +++ user/brooks/openssh-hpn/ssh.c (revision 222587) @@ -1,1641 +1,1640 @@ /* $OpenBSD: ssh.c,v 1.356 2011/01/06 22:23:53 djm Exp $ */ /* * Author: Tatu Ylonen * Copyright (c) 1995 Tatu Ylonen , Espoo, Finland * All rights reserved * Ssh client program. This program can be used to log into a remote machine. * The software supports strong authentication, encryption, and forwarding * of X11, TCP/IP, and authentication connections. * * As far as I am concerned, the code I have written for this software * can be used freely for any purpose. Any derived versions of this * software must be clearly marked as such, and if the derived work is * incompatible with the protocol description in the RFC file, it must be * called by a name other than "ssh" or "Secure Shell". * * Copyright (c) 1999 Niels Provos. All rights reserved. * Copyright (c) 2000, 2001, 2002, 2003 Markus Friedl. All rights reserved. * * Modified to work with SSL by Niels Provos * in Canada (German citizen). * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * 1. Redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution. * * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. */ #include "includes.h" #include #ifdef HAVE_SYS_STAT_H # include #endif #include #include #include #include #include #include #include #include #include #ifdef HAVE_PATHS_H #include #endif #include #include #include #include #include #include #include #include #include #include #include #include #include "openbsd-compat/openssl-compat.h" #include "openbsd-compat/sys-queue.h" #include "xmalloc.h" #include "ssh.h" #include "ssh1.h" #include "ssh2.h" #include "canohost.h" #include "compat.h" #include "cipher.h" #include "packet.h" #include "buffer.h" #include "channels.h" #include "key.h" #include "authfd.h" #include "authfile.h" #include "pathnames.h" #include "dispatch.h" #include "clientloop.h" #include "log.h" #include "readconf.h" #include "sshconnect.h" #include "misc.h" #include "kex.h" #include "mac.h" #include "sshpty.h" #include "match.h" #include "msg.h" #include "uidswap.h" #include "roaming.h" #include "version.h" #ifdef ENABLE_PKCS11 #include "ssh-pkcs11.h" #endif extern char *__progname; /* Flag indicating whether debug mode is on. May be set on the command line. */ int debug_flag = 0; /* Flag indicating whether a tty should be allocated */ int tty_flag = 0; int no_tty_flag = 0; int force_tty_flag = 0; /* don't exec a shell */ int no_shell_flag = 0; /* * Flag indicating that nothing should be read from stdin. This can be set * on the command line. */ int stdin_null_flag = 0; /* * Flag indicating that the current process should be backgrounded and * a new slave launched in the foreground for ControlPersist. */ int need_controlpersist_detach = 0; /* Copies of flags for ControlPersist foreground slave */ int ostdin_null_flag, ono_shell_flag, ono_tty_flag, otty_flag; /* * Flag indicating that ssh should fork after authentication. This is useful * so that the passphrase can be entered manually, and then ssh goes to the * background. */ int fork_after_authentication_flag = 0; /* forward stdio to remote host and port */ char *stdio_forward_host = NULL; int stdio_forward_port = 0; /* * General data structure for command line options and options configurable * in configuration files. See readconf.h. */ Options options; /* optional user configfile */ char *config = NULL; /* * Name of the host we are connecting to. This is the name given on the * command line, or the HostName specified for the user-supplied name in a * configuration file. */ char *host; /* socket address the host resolves to */ struct sockaddr_storage hostaddr; /* Private host keys. */ Sensitive sensitive_data; /* Original real UID. */ uid_t original_real_uid; uid_t original_effective_uid; /* command to be executed */ Buffer command; /* Should we execute a command or invoke a subsystem? */ int subsystem_flag = 0; /* # of replies received for global requests */ static int remote_forward_confirms_received = 0; /* mux.c */ extern int muxserver_sock; extern u_int muxclient_command; /* Prints a help message to the user. This function never returns. */ static void usage(void) { fprintf(stderr, "usage: ssh [-1246AaCfgKkMNnqsTtVvXxYy] [-b bind_address] [-c cipher_spec]\n" " [-D [bind_address:]port] [-e escape_char] [-F configfile]\n" " [-I pkcs11] [-i identity_file]\n" " [-L [bind_address:]port:host:hostport]\n" " [-l login_name] [-m mac_spec] [-O ctl_cmd] [-o option] [-p port]\n" " [-R [bind_address:]port:host:hostport] [-S ctl_path]\n" " [-W host:port] [-w local_tun[:remote_tun]]\n" " [user@]hostname [command]\n" ); exit(255); } static int ssh_session(void); static int ssh_session2(void); static void load_public_identity_files(void); static void main_sigchld_handler(int); /* from muxclient.c */ void muxclient(const char *); void muxserver_listen(void); /* * Main program for the ssh client. */ int main(int ac, char **av) { int i, r, opt, exit_status, use_syslog; char *p, *cp, *line, *argv0, buf[MAXPATHLEN], *host_arg; struct stat st; struct passwd *pw; int dummy, timeout_ms; extern int optind, optreset; extern char *optarg; struct servent *sp; Forward fwd; /* Ensure that fds 0, 1 and 2 are open or directed to /dev/null */ sanitise_stdfd(); __progname = ssh_get_progname(av[0]); init_rng(); /* * Discard other fds that are hanging around. These can cause problem * with backgrounded ssh processes started by ControlPersist. */ closefrom(STDERR_FILENO + 1); /* * Save the original real uid. It will be needed later (uid-swapping * may clobber the real uid). */ original_real_uid = getuid(); original_effective_uid = geteuid(); /* * Use uid-swapping to give up root privileges for the duration of * option processing. We will re-instantiate the rights when we are * ready to create the privileged port, and will permanently drop * them when the port has been created (actually, when the connection * has been made, as we may need to create the port several times). */ PRIV_END; #ifdef HAVE_SETRLIMIT /* If we are installed setuid root be careful to not drop core. */ if (original_real_uid != original_effective_uid) { struct rlimit rlim; rlim.rlim_cur = rlim.rlim_max = 0; if (setrlimit(RLIMIT_CORE, &rlim) < 0) fatal("setrlimit failed: %.100s", strerror(errno)); } #endif /* Get user data. */ pw = getpwuid(original_real_uid); if (!pw) { logit("You don't exist, go away!"); exit(255); } /* Take a copy of the returned structure. */ pw = pwcopy(pw); /* * Set our umask to something reasonable, as some files are created * with the default umask. This will make them world-readable but * writable only by the owner, which is ok for all files for which we * don't set the modes explicitly. */ umask(022); /* * Initialize option structure to indicate that no values have been * set. */ initialize_options(&options); /* Parse command-line arguments. */ host = NULL; use_syslog = 0; argv0 = av[0]; again: while ((opt = getopt(ac, av, "1246ab:c:e:fgi:kl:m:no:p:qstvx" "ACD:F:I:KL:MNO:PR:S:TVw:W:XYy")) != -1) { switch (opt) { case '1': options.protocol = SSH_PROTO_1; break; case '2': options.protocol = SSH_PROTO_2; break; case '4': options.address_family = AF_INET; break; case '6': options.address_family = AF_INET6; break; case 'n': stdin_null_flag = 1; break; case 'f': fork_after_authentication_flag = 1; stdin_null_flag = 1; break; case 'x': options.forward_x11 = 0; break; case 'X': options.forward_x11 = 1; break; case 'y': use_syslog = 1; break; case 'Y': options.forward_x11 = 1; options.forward_x11_trusted = 1; break; case 'g': options.gateway_ports = 1; break; case 'O': if (stdio_forward_host != NULL) fatal("Cannot specify multiplexing " "command with -W"); else if (muxclient_command != 0) fatal("Multiplexing command already specified"); if (strcmp(optarg, "check") == 0) muxclient_command = SSHMUX_COMMAND_ALIVE_CHECK; else if (strcmp(optarg, "forward") == 0) muxclient_command = SSHMUX_COMMAND_FORWARD; else if (strcmp(optarg, "exit") == 0) muxclient_command = SSHMUX_COMMAND_TERMINATE; else fatal("Invalid multiplex command."); break; case 'P': /* deprecated */ options.use_privileged_port = 0; break; case 'a': options.forward_agent = 0; break; case 'A': options.forward_agent = 1; break; case 'k': options.gss_deleg_creds = 0; break; case 'K': options.gss_authentication = 1; options.gss_deleg_creds = 1; break; case 'i': if (stat(optarg, &st) < 0) { fprintf(stderr, "Warning: Identity file %s " "not accessible: %s.\n", optarg, strerror(errno)); break; } if (options.num_identity_files >= SSH_MAX_IDENTITY_FILES) fatal("Too many identity files specified " "(max %d)", SSH_MAX_IDENTITY_FILES); options.identity_files[options.num_identity_files++] = xstrdup(optarg); break; case 'I': #ifdef ENABLE_PKCS11 options.pkcs11_provider = xstrdup(optarg); #else fprintf(stderr, "no support for PKCS#11.\n"); #endif break; case 't': if (tty_flag) force_tty_flag = 1; tty_flag = 1; break; case 'v': if (debug_flag == 0) { debug_flag = 1; options.log_level = SYSLOG_LEVEL_DEBUG1; } else { if (options.log_level < SYSLOG_LEVEL_DEBUG3) options.log_level++; break; } /* FALLTHROUGH */ case 'V': fprintf(stderr, "%s, %s\n", SSH_RELEASE, SSLeay_version(SSLEAY_VERSION)); if (opt == 'V') exit(0); break; case 'w': if (options.tun_open == -1) options.tun_open = SSH_TUNMODE_DEFAULT; options.tun_local = a2tun(optarg, &options.tun_remote); if (options.tun_local == SSH_TUNID_ERR) { fprintf(stderr, "Bad tun device '%s'\n", optarg); exit(255); } break; case 'W': if (stdio_forward_host != NULL) fatal("stdio forward already specified"); if (muxclient_command != 0) fatal("Cannot specify stdio forward with -O"); if (parse_forward(&fwd, optarg, 1, 0)) { stdio_forward_host = fwd.listen_host; stdio_forward_port = fwd.listen_port; xfree(fwd.connect_host); } else { fprintf(stderr, "Bad stdio forwarding specification '%s'\n", optarg); exit(255); } no_tty_flag = 1; no_shell_flag = 1; options.clear_forwardings = 1; options.exit_on_forward_failure = 1; break; case 'q': options.log_level = SYSLOG_LEVEL_QUIET; break; case 'e': if (optarg[0] == '^' && optarg[2] == 0 && (u_char) optarg[1] >= 64 && (u_char) optarg[1] < 128) options.escape_char = (u_char) optarg[1] & 31; else if (strlen(optarg) == 1) options.escape_char = (u_char) optarg[0]; else if (strcmp(optarg, "none") == 0) options.escape_char = SSH_ESCAPECHAR_NONE; else { fprintf(stderr, "Bad escape character '%s'.\n", optarg); exit(255); } break; case 'c': if (ciphers_valid(optarg)) { /* SSH2 only */ options.ciphers = xstrdup(optarg); options.cipher = SSH_CIPHER_INVALID; } else { /* SSH1 only */ options.cipher = cipher_number(optarg); if (options.cipher == -1) { fprintf(stderr, "Unknown cipher type '%s'\n", optarg); exit(255); } if (options.cipher == SSH_CIPHER_3DES) options.ciphers = "3des-cbc"; else if (options.cipher == SSH_CIPHER_BLOWFISH) options.ciphers = "blowfish-cbc"; else options.ciphers = (char *)-1; } break; case 'm': if (mac_valid(optarg)) options.macs = xstrdup(optarg); else { fprintf(stderr, "Unknown mac type '%s'\n", optarg); exit(255); } break; case 'M': if (options.control_master == SSHCTL_MASTER_YES) options.control_master = SSHCTL_MASTER_ASK; else options.control_master = SSHCTL_MASTER_YES; break; case 'p': options.port = a2port(optarg); if (options.port <= 0) { fprintf(stderr, "Bad port '%s'\n", optarg); exit(255); } break; case 'l': options.user = optarg; break; case 'L': if (parse_forward(&fwd, optarg, 0, 0)) add_local_forward(&options, &fwd); else { fprintf(stderr, "Bad local forwarding specification '%s'\n", optarg); exit(255); } break; case 'R': if (parse_forward(&fwd, optarg, 0, 1)) { add_remote_forward(&options, &fwd); } else { fprintf(stderr, "Bad remote forwarding specification " "'%s'\n", optarg); exit(255); } break; case 'D': if (parse_forward(&fwd, optarg, 1, 0)) { add_local_forward(&options, &fwd); } else { fprintf(stderr, "Bad dynamic forwarding specification " "'%s'\n", optarg); exit(255); } break; case 'C': options.compression = 1; break; case 'N': no_shell_flag = 1; no_tty_flag = 1; break; case 'T': no_tty_flag = 1; /* * Ensure that the user does not try to backdoor * a null cipher switch on an interactive session - * so explicitly disable it if the user asks for + * by explicitly disabling it if the user asks for * a session without a tty. */ options.none_switch=0; break; case 'o': dummy = 1; line = xstrdup(optarg); if (process_config_line(&options, host ? host : "", line, "command-line", 0, &dummy) != 0) exit(255); xfree(line); break; case 's': subsystem_flag = 1; break; case 'S': if (options.control_path != NULL) free(options.control_path); options.control_path = xstrdup(optarg); break; case 'b': options.bind_address = optarg; break; case 'F': config = optarg; break; default: usage(); } } ac -= optind; av += optind; if (ac > 0 && !host) { if (strrchr(*av, '@')) { p = xstrdup(*av); cp = strrchr(p, '@'); if (cp == NULL || cp == p) usage(); options.user = p; *cp = '\0'; host = ++cp; } else host = *av; if (ac > 1) { optind = optreset = 1; goto again; } ac--, av++; } /* Check that we got a host name. */ if (!host) usage(); OpenSSL_add_all_algorithms(); ERR_load_crypto_strings(); /* Initialize the command to execute on remote host. */ buffer_init(&command); /* * Save the command to execute on the remote host in a buffer. There * is no limit on the length of the command, except by the maximum * packet size. Also sets the tty flag if there is no command. */ if (!ac) { /* No command specified - execute shell on a tty. */ tty_flag = 1; if (subsystem_flag) { fprintf(stderr, "You must specify a subsystem to invoke.\n"); usage(); } } else { /* A command has been specified. Store it into the buffer. */ for (i = 0; i < ac; i++) { if (i) buffer_append(&command, " ", 1); buffer_append(&command, av[i], strlen(av[i])); } } /* Cannot fork to background if no command. */ if (fork_after_authentication_flag && buffer_len(&command) == 0 && !no_shell_flag) fatal("Cannot fork into background without a command " "to execute."); /* Allocate a tty by default if no command specified. */ if (buffer_len(&command) == 0) tty_flag = 1; /* Force no tty */ if (no_tty_flag || muxclient_command != 0) tty_flag = 0; /* Do not allocate a tty if stdin is not a tty. */ if ((!isatty(fileno(stdin)) || stdin_null_flag) && !force_tty_flag) { if (tty_flag) logit("Pseudo-terminal will not be allocated because " "stdin is not a terminal."); tty_flag = 0; } /* * Initialize "log" output. Since we are the client all output * actually goes to stderr. */ log_init(argv0, options.log_level == -1 ? SYSLOG_LEVEL_INFO : options.log_level, SYSLOG_FACILITY_USER, !use_syslog); /* * Read per-user configuration file. Ignore the system wide config * file if the user specifies a config file on the command line. */ if (config != NULL) { if (!read_config_file(config, host, &options, 0)) fatal("Can't open user config file %.100s: " "%.100s", config, strerror(errno)); } else { r = snprintf(buf, sizeof buf, "%s/%s", pw->pw_dir, _PATH_SSH_USER_CONFFILE); if (r > 0 && (size_t)r < sizeof(buf)) (void)read_config_file(buf, host, &options, 1); /* Read systemwide configuration file after use config. */ (void)read_config_file(_PATH_HOST_CONFIG_FILE, host, &options, 0); } /* Fill configuration defaults. */ fill_default_options(&options); channel_set_af(options.address_family); /* reinit */ log_init(argv0, options.log_level, SYSLOG_FACILITY_USER, !use_syslog); seed_rng(); if (options.user == NULL) options.user = xstrdup(pw->pw_name); /* Get default port if port has not been set. */ if (options.port == 0) { sp = getservbyname(SSH_SERVICE_NAME, "tcp"); options.port = sp ? ntohs(sp->s_port) : SSH_DEFAULT_PORT; } /* preserve host name given on command line for %n expansion */ host_arg = host; if (options.hostname != NULL) { host = percent_expand(options.hostname, "h", host, (char *)NULL); } if (options.local_command != NULL) { char thishost[NI_MAXHOST]; if (gethostname(thishost, sizeof(thishost)) == -1) fatal("gethostname: %s", strerror(errno)); snprintf(buf, sizeof(buf), "%d", options.port); debug3("expanding LocalCommand: %s", options.local_command); cp = options.local_command; options.local_command = percent_expand(cp, "d", pw->pw_dir, "h", host, "l", thishost, "n", host_arg, "r", options.user, "p", buf, "u", pw->pw_name, (char *)NULL); debug3("expanded LocalCommand: %s", options.local_command); xfree(cp); } /* force lowercase for hostkey matching */ if (options.host_key_alias != NULL) { for (p = options.host_key_alias; *p; p++) if (isupper(*p)) *p = (char)tolower(*p); } if (options.proxy_command != NULL && strcmp(options.proxy_command, "none") == 0) { xfree(options.proxy_command); options.proxy_command = NULL; } if (options.control_path != NULL && strcmp(options.control_path, "none") == 0) { xfree(options.control_path); options.control_path = NULL; } if (options.control_path != NULL) { char thishost[NI_MAXHOST]; if (gethostname(thishost, sizeof(thishost)) == -1) fatal("gethostname: %s", strerror(errno)); snprintf(buf, sizeof(buf), "%d", options.port); cp = tilde_expand_filename(options.control_path, original_real_uid); xfree(options.control_path); options.control_path = percent_expand(cp, "p", buf, "h", host, "r", options.user, "l", thishost, (char *)NULL); xfree(cp); } if (muxclient_command != 0 && options.control_path == NULL) fatal("No ControlPath specified for \"-O\" command"); if (options.control_path != NULL) muxclient(options.control_path); timeout_ms = options.connection_timeout * 1000; /* Open a connection to the remote host. */ if (ssh_connect(host, &hostaddr, options.port, options.address_family, options.connection_attempts, &timeout_ms, options.tcp_keep_alive, #ifdef HAVE_CYGWIN options.use_privileged_port, #else original_effective_uid == 0 && options.use_privileged_port, #endif options.proxy_command) != 0) exit(255); if (timeout_ms > 0) debug3("timeout: %d ms remain after connect", timeout_ms); /* * If we successfully made the connection, load the host private key * in case we will need it later for combined rsa-rhosts * authentication. This must be done before releasing extra * privileges, because the file is only readable by root. * If we cannot access the private keys, load the public keys * instead and try to execute the ssh-keysign helper instead. */ sensitive_data.nkeys = 0; sensitive_data.keys = NULL; sensitive_data.external_keysign = 0; if (options.rhosts_rsa_authentication || options.hostbased_authentication) { sensitive_data.nkeys = 7; sensitive_data.keys = xcalloc(sensitive_data.nkeys, sizeof(Key)); for (i = 0; i < sensitive_data.nkeys; i++) sensitive_data.keys[i] = NULL; PRIV_START; sensitive_data.keys[0] = key_load_private_type(KEY_RSA1, _PATH_HOST_KEY_FILE, "", NULL, NULL); sensitive_data.keys[1] = key_load_private_cert(KEY_DSA, _PATH_HOST_DSA_KEY_FILE, "", NULL); #ifdef OPENSSL_HAS_ECC sensitive_data.keys[2] = key_load_private_cert(KEY_ECDSA, _PATH_HOST_ECDSA_KEY_FILE, "", NULL); #endif sensitive_data.keys[3] = key_load_private_cert(KEY_RSA, _PATH_HOST_RSA_KEY_FILE, "", NULL); sensitive_data.keys[4] = key_load_private_type(KEY_DSA, _PATH_HOST_DSA_KEY_FILE, "", NULL, NULL); #ifdef OPENSSL_HAS_ECC sensitive_data.keys[5] = key_load_private_type(KEY_ECDSA, _PATH_HOST_ECDSA_KEY_FILE, "", NULL, NULL); #endif sensitive_data.keys[6] = key_load_private_type(KEY_RSA, _PATH_HOST_RSA_KEY_FILE, "", NULL, NULL); PRIV_END; if (options.hostbased_authentication == 1 && sensitive_data.keys[0] == NULL && sensitive_data.keys[4] == NULL && sensitive_data.keys[5] == NULL && sensitive_data.keys[6] == NULL) { sensitive_data.keys[1] = key_load_cert( _PATH_HOST_DSA_KEY_FILE); #ifdef OPENSSL_HAS_ECC sensitive_data.keys[2] = key_load_cert( _PATH_HOST_ECDSA_KEY_FILE); #endif sensitive_data.keys[3] = key_load_cert( _PATH_HOST_RSA_KEY_FILE); sensitive_data.keys[4] = key_load_public( _PATH_HOST_DSA_KEY_FILE, NULL); #ifdef OPENSSL_HAS_ECC sensitive_data.keys[5] = key_load_public( _PATH_HOST_ECDSA_KEY_FILE, NULL); #endif sensitive_data.keys[6] = key_load_public( _PATH_HOST_RSA_KEY_FILE, NULL); sensitive_data.external_keysign = 1; } } /* * Get rid of any extra privileges that we may have. We will no * longer need them. Also, extra privileges could make it very hard * to read identity files and other non-world-readable files from the * user's home directory if it happens to be on a NFS volume where * root is mapped to nobody. */ if (original_effective_uid == 0) { PRIV_START; permanently_set_uid(pw); } /* * Now that we are back to our own permissions, create ~/.ssh * directory if it doesn't already exist. */ r = snprintf(buf, sizeof buf, "%s%s%s", pw->pw_dir, strcmp(pw->pw_dir, "/") ? "/" : "", _PATH_SSH_USER_DIR); if (r > 0 && (size_t)r < sizeof(buf) && stat(buf, &st) < 0) { #ifdef WITH_SELINUX ssh_selinux_setfscreatecon(buf); #endif if (mkdir(buf, 0700) < 0) error("Could not create directory '%.200s'.", buf); #ifdef WITH_SELINUX ssh_selinux_setfscreatecon(NULL); #endif } /* load options.identity_files */ load_public_identity_files(); /* Expand ~ in known host file names. */ /* XXX mem-leaks: */ options.system_hostfile = tilde_expand_filename(options.system_hostfile, original_real_uid); options.user_hostfile = tilde_expand_filename(options.user_hostfile, original_real_uid); options.system_hostfile2 = tilde_expand_filename(options.system_hostfile2, original_real_uid); options.user_hostfile2 = tilde_expand_filename(options.user_hostfile2, original_real_uid); signal(SIGPIPE, SIG_IGN); /* ignore SIGPIPE early */ signal(SIGCHLD, main_sigchld_handler); /* Log into the remote system. Never returns if the login fails. */ ssh_login(&sensitive_data, host, (struct sockaddr *)&hostaddr, options.port, pw, timeout_ms); if (packet_connection_is_on_socket()) { verbose("Authenticated to %s ([%s]:%d).", host, get_remote_ipaddr(), get_remote_port()); } else { verbose("Authenticated to %s (via proxy).", host); } /* We no longer need the private host keys. Clear them now. */ if (sensitive_data.nkeys != 0) { for (i = 0; i < sensitive_data.nkeys; i++) { if (sensitive_data.keys[i] != NULL) { /* Destroys contents safely */ debug3("clear hostkey %d", i); key_free(sensitive_data.keys[i]); sensitive_data.keys[i] = NULL; } } xfree(sensitive_data.keys); } for (i = 0; i < options.num_identity_files; i++) { if (options.identity_files[i]) { xfree(options.identity_files[i]); options.identity_files[i] = NULL; } if (options.identity_keys[i]) { key_free(options.identity_keys[i]); options.identity_keys[i] = NULL; } } exit_status = compat20 ? ssh_session2() : ssh_session(); packet_close(); if (options.control_path != NULL && muxserver_sock != -1) unlink(options.control_path); /* Kill ProxyCommand if it is running. */ ssh_kill_proxy_command(); return exit_status; } static void control_persist_detach(void) { pid_t pid; int devnull; debug("%s: backgrounding master process", __func__); /* * master (current process) into the background, and make the * foreground process a client of the backgrounded master. */ switch ((pid = fork())) { case -1: fatal("%s: fork: %s", __func__, strerror(errno)); case 0: /* Child: master process continues mainloop */ break; default: /* Parent: set up mux slave to connect to backgrounded master */ debug2("%s: background process is %ld", __func__, (long)pid); stdin_null_flag = ostdin_null_flag; no_shell_flag = ono_shell_flag; no_tty_flag = ono_tty_flag; tty_flag = otty_flag; close(muxserver_sock); muxserver_sock = -1; options.control_master = SSHCTL_MASTER_NO; muxclient(options.control_path); /* muxclient() doesn't return on success. */ fatal("Failed to connect to new control master"); } if ((devnull = open(_PATH_DEVNULL, O_RDWR)) == -1) { error("%s: open(\"/dev/null\"): %s", __func__, strerror(errno)); } else { if (dup2(devnull, STDIN_FILENO) == -1 || dup2(devnull, STDOUT_FILENO) == -1) error("%s: dup2: %s", __func__, strerror(errno)); if (devnull > STDERR_FILENO) close(devnull); } } /* Do fork() after authentication. Used by "ssh -f" */ static void fork_postauth(void) { if (need_controlpersist_detach) control_persist_detach(); debug("forking to background"); fork_after_authentication_flag = 0; if (daemon(1, 1) < 0) fatal("daemon() failed: %.200s", strerror(errno)); } /* Callback for remote forward global requests */ static void ssh_confirm_remote_forward(int type, u_int32_t seq, void *ctxt) { Forward *rfwd = (Forward *)ctxt; /* XXX verbose() on failure? */ debug("remote forward %s for: listen %d, connect %s:%d", type == SSH2_MSG_REQUEST_SUCCESS ? "success" : "failure", rfwd->listen_port, rfwd->connect_host, rfwd->connect_port); if (type == SSH2_MSG_REQUEST_SUCCESS && rfwd->listen_port == 0) { rfwd->allocated_port = packet_get_int(); logit("Allocated port %u for remote forward to %s:%d", rfwd->allocated_port, rfwd->connect_host, rfwd->connect_port); } if (type == SSH2_MSG_REQUEST_FAILURE) { if (options.exit_on_forward_failure) fatal("Error: remote port forwarding failed for " "listen port %d", rfwd->listen_port); else logit("Warning: remote port forwarding failed for " "listen port %d", rfwd->listen_port); } if (++remote_forward_confirms_received == options.num_remote_forwards) { debug("All remote forwarding requests processed"); if (fork_after_authentication_flag) fork_postauth(); } } static void client_cleanup_stdio_fwd(int id, void *arg) { debug("stdio forwarding: done"); cleanup_exit(0); } static int client_setup_stdio_fwd(const char *host_to_connect, u_short port_to_connect) { Channel *c; int in, out; debug3("client_setup_stdio_fwd %s:%d", host_to_connect, port_to_connect); in = dup(STDIN_FILENO); out = dup(STDOUT_FILENO); if (in < 0 || out < 0) fatal("channel_connect_stdio_fwd: dup() in/out failed"); if ((c = channel_connect_stdio_fwd(host_to_connect, port_to_connect, in, out)) == NULL) return 0; channel_register_cleanup(c->self, client_cleanup_stdio_fwd, 0); return 1; } static void ssh_init_forwarding(void) { int success = 0; int i; if (stdio_forward_host != NULL) { if (!compat20) { fatal("stdio forwarding require Protocol 2"); } if (!client_setup_stdio_fwd(stdio_forward_host, stdio_forward_port)) fatal("Failed to connect in stdio forward mode."); } /* Initiate local TCP/IP port forwardings. */ for (i = 0; i < options.num_local_forwards; i++) { debug("Local connections to %.200s:%d forwarded to remote " "address %.200s:%d", (options.local_forwards[i].listen_host == NULL) ? (options.gateway_ports ? "*" : "LOCALHOST") : options.local_forwards[i].listen_host, options.local_forwards[i].listen_port, options.local_forwards[i].connect_host, options.local_forwards[i].connect_port); success += channel_setup_local_fwd_listener( options.local_forwards[i].listen_host, options.local_forwards[i].listen_port, options.local_forwards[i].connect_host, options.local_forwards[i].connect_port, options.gateway_ports); } if (i > 0 && success != i && options.exit_on_forward_failure) fatal("Could not request local forwarding."); if (i > 0 && success == 0) error("Could not request local forwarding."); /* Initiate remote TCP/IP port forwardings. */ for (i = 0; i < options.num_remote_forwards; i++) { debug("Remote connections from %.200s:%d forwarded to " "local address %.200s:%d", (options.remote_forwards[i].listen_host == NULL) ? "LOCALHOST" : options.remote_forwards[i].listen_host, options.remote_forwards[i].listen_port, options.remote_forwards[i].connect_host, options.remote_forwards[i].connect_port); if (channel_request_remote_forwarding( options.remote_forwards[i].listen_host, options.remote_forwards[i].listen_port, options.remote_forwards[i].connect_host, options.remote_forwards[i].connect_port) < 0) { if (options.exit_on_forward_failure) fatal("Could not request remote forwarding."); else logit("Warning: Could not request remote " "forwarding."); } client_register_global_confirm(ssh_confirm_remote_forward, &options.remote_forwards[i]); } /* Initiate tunnel forwarding. */ if (options.tun_open != SSH_TUNMODE_NO) { if (client_request_tun_fwd(options.tun_open, options.tun_local, options.tun_remote) == -1) { if (options.exit_on_forward_failure) fatal("Could not request tunnel forwarding."); else error("Could not request tunnel forwarding."); } } } static void check_agent_present(void) { if (options.forward_agent) { /* Clear agent forwarding if we don't have an agent. */ if (!ssh_agent_present()) options.forward_agent = 0; } } static int ssh_session(void) { int type; int interactive = 0; int have_tty = 0; struct winsize ws; char *cp; const char *display; /* Enable compression if requested. */ if (options.compression) { debug("Requesting compression at level %d.", options.compression_level); if (options.compression_level < 1 || options.compression_level > 9) fatal("Compression level must be from 1 (fast) to " "9 (slow, best)."); /* Send the request. */ packet_start(SSH_CMSG_REQUEST_COMPRESSION); packet_put_int(options.compression_level); packet_send(); packet_write_wait(); type = packet_read(); if (type == SSH_SMSG_SUCCESS) packet_start_compression(options.compression_level); else if (type == SSH_SMSG_FAILURE) logit("Warning: Remote host refused compression."); else packet_disconnect("Protocol error waiting for " "compression response."); } /* Allocate a pseudo tty if appropriate. */ if (tty_flag) { debug("Requesting pty."); /* Start the packet. */ packet_start(SSH_CMSG_REQUEST_PTY); /* Store TERM in the packet. There is no limit on the length of the string. */ cp = getenv("TERM"); if (!cp) cp = ""; packet_put_cstring(cp); /* Store window size in the packet. */ if (ioctl(fileno(stdin), TIOCGWINSZ, &ws) < 0) memset(&ws, 0, sizeof(ws)); packet_put_int((u_int)ws.ws_row); packet_put_int((u_int)ws.ws_col); packet_put_int((u_int)ws.ws_xpixel); packet_put_int((u_int)ws.ws_ypixel); /* Store tty modes in the packet. */ tty_make_modes(fileno(stdin), NULL); /* Send the packet, and wait for it to leave. */ packet_send(); packet_write_wait(); /* Read response from the server. */ type = packet_read(); if (type == SSH_SMSG_SUCCESS) { interactive = 1; have_tty = 1; } else if (type == SSH_SMSG_FAILURE) logit("Warning: Remote host failed or refused to " "allocate a pseudo tty."); else packet_disconnect("Protocol error waiting for pty " "request response."); } /* Request X11 forwarding if enabled and DISPLAY is set. */ display = getenv("DISPLAY"); if (options.forward_x11 && display != NULL) { char *proto, *data; /* Get reasonable local authentication information. */ client_x11_get_proto(display, options.xauth_location, options.forward_x11_trusted, options.forward_x11_timeout, &proto, &data); /* Request forwarding with authentication spoofing. */ debug("Requesting X11 forwarding with authentication " "spoofing."); x11_request_forwarding_with_spoofing(0, display, proto, data); /* Read response from the server. */ type = packet_read(); if (type == SSH_SMSG_SUCCESS) { interactive = 1; } else if (type == SSH_SMSG_FAILURE) { logit("Warning: Remote host denied X11 forwarding."); } else { packet_disconnect("Protocol error waiting for X11 " "forwarding"); } } /* Tell the packet module whether this is an interactive session. */ packet_set_interactive(interactive, options.ip_qos_interactive, options.ip_qos_bulk); /* Request authentication agent forwarding if appropriate. */ check_agent_present(); if (options.forward_agent) { debug("Requesting authentication agent forwarding."); auth_request_forwarding(); /* Read response from the server. */ type = packet_read(); packet_check_eom(); if (type != SSH_SMSG_SUCCESS) logit("Warning: Remote host denied authentication agent forwarding."); } /* Initiate port forwardings. */ ssh_init_forwarding(); /* Execute a local command */ if (options.local_command != NULL && options.permit_local_command) ssh_local_cmd(options.local_command); /* * If requested and we are not interested in replies to remote * forwarding requests, then let ssh continue in the background. */ if (fork_after_authentication_flag) { if (options.exit_on_forward_failure && options.num_remote_forwards > 0) { debug("deferring postauth fork until remote forward " "confirmation received"); } else fork_postauth(); } /* * If a command was specified on the command line, execute the * command now. Otherwise request the server to start a shell. */ if (buffer_len(&command) > 0) { int len = buffer_len(&command); if (len > 900) len = 900; debug("Sending command: %.*s", len, (u_char *)buffer_ptr(&command)); packet_start(SSH_CMSG_EXEC_CMD); packet_put_string(buffer_ptr(&command), buffer_len(&command)); packet_send(); packet_write_wait(); } else { debug("Requesting shell."); packet_start(SSH_CMSG_EXEC_SHELL); packet_send(); packet_write_wait(); } /* Enter the interactive session. */ return client_loop(have_tty, tty_flag ? options.escape_char : SSH_ESCAPECHAR_NONE, 0); } /* request pty/x11/agent/tcpfwd/shell for channel */ static void ssh_session2_setup(int id, int success, void *arg) { extern char **environ; const char *display; int interactive = tty_flag; if (!success) return; /* No need for error message, channels code sens one */ display = getenv("DISPLAY"); if (options.forward_x11 && display != NULL) { char *proto, *data; /* Get reasonable local authentication information. */ client_x11_get_proto(display, options.xauth_location, options.forward_x11_trusted, options.forward_x11_timeout, &proto, &data); /* Request forwarding with authentication spoofing. */ debug("Requesting X11 forwarding with authentication " "spoofing."); x11_request_forwarding_with_spoofing(id, display, proto, data); interactive = 1; /* XXX wait for reply */ } check_agent_present(); if (options.forward_agent) { debug("Requesting authentication agent forwarding."); channel_request_start(id, "auth-agent-req@openssh.com", 0); packet_send(); } client_session2_setup(id, tty_flag, subsystem_flag, getenv("TERM"), NULL, fileno(stdin), &command, environ); } /* open new channel for a session */ static int ssh_session2_open(void) { Channel *c; int window, packetmax, in, out, err; int sock; int socksize; int socksizelen = sizeof(int); if (stdin_null_flag) { in = open(_PATH_DEVNULL, O_RDONLY); } else { in = dup(STDIN_FILENO); } out = dup(STDOUT_FILENO); err = dup(STDERR_FILENO); if (in < 0 || out < 0 || err < 0) fatal("dup() in/out/err failed"); /* enable nonblocking unless tty */ if (!isatty(in)) set_nonblock(in); if (!isatty(out)) set_nonblock(out); if (!isatty(err)) set_nonblock(err); /* * We need to check to see if what they want to do about buffer * sizes here. In a hpn to nonhpn connection we want to limit * the window size to something reasonable in case the far side * has the large window bug. In hpn to hpn connections we want * to use the max window size but allow the user to override it * lastly if they disabled hpn then use the ssh std window size. * * So why don't we just do a getsockopt() here and set the * ssh window to that? In the case of a autotuning receive * window the window would get stuck at the initial buffer size * (generally less than 96k.) Therefore we need to set the * maximum ssh window size to the maximum hpn buffer size unless * the user has specifically set the tcprcvbufpoll to no. In * which case we *can* just set the window to the minimum of the * hpn buffer size and tcp receive buffer size. */ if (tty_flag) options.hpn_buffer_size = CHAN_SES_WINDOW_DEFAULT; else options.hpn_buffer_size = 2*1024*1024; if (datafellows & SSH_BUG_LARGEWINDOW) { debug("HPN to Non-HPN Connection"); } else { if (options.tcp_rcv_buf_poll <= 0) { sock = socket(AF_INET, SOCK_STREAM, 0); getsockopt(sock, SOL_SOCKET, SO_RCVBUF, &socksize, &socksizelen); close(sock); debug("socksize %d", socksize); options.hpn_buffer_size = socksize; debug("HPNBufferSize set to TCP RWIN: %d", options.hpn_buffer_size); } else { if (options.tcp_rcv_buf > 0) { /* * Create a socket but don't connect it * we use that the get the rcv socket * size. */ sock = socket(AF_INET, SOCK_STREAM, 0); /* * If they are using the tcp_rcv_buf * option attempt to set the buffer size * to that. */ if (options.tcp_rcv_buf) { setsockopt(sock, SOL_SOCKET, SO_RCVBUF, (void *)&options.tcp_rcv_buf, sizeof(options.tcp_rcv_buf)); } getsockopt(sock, SOL_SOCKET, SO_RCVBUF, &socksize, &socksizelen); close(sock); debug("socksize %d", socksize); options.hpn_buffer_size = socksize; debug("HPNBufferSize set to user TCPRcvBuf: %d", options.hpn_buffer_size); } } - } debug("Final hpn_buffer_size = %d", options.hpn_buffer_size); window = options.hpn_buffer_size; channel_set_hpn(options.hpn_disabled, options.hpn_buffer_size); packetmax = CHAN_SES_PACKET_DEFAULT; if (tty_flag) { window = 4*CHAN_SES_PACKET_DEFAULT; window >>= 1; packetmax >>= 1; } c = channel_new( "session", SSH_CHANNEL_OPENING, in, out, err, window, packetmax, CHAN_EXTENDED_WRITE, "client-session", /*nonblock*/0); if ((options.tcp_rcv_buf_poll > 0) && (!options.hpn_disabled)) { c->dynamic_window = 1; debug ("Enabled Dynamic Window Scaling\n"); } debug3("ssh_session2_open: channel_new: %d", c->self); channel_send_open(c->self); if (!no_shell_flag) channel_register_open_confirm(c->self, ssh_session2_setup, NULL); return c->self; } static int ssh_session2(void) { int id = -1; /* XXX should be pre-session */ ssh_init_forwarding(); /* Start listening for multiplex clients */ muxserver_listen(); /* * If we are in control persist mode, then prepare to background * ourselves and have a foreground client attach as a control * slave. NB. we must save copies of the flags that we override for * the backgrounding, since we defer attachment of the slave until * after the connection is fully established (in particular, * async rfwd replies have been received for ExitOnForwardFailure). */ if (options.control_persist && muxserver_sock != -1) { ostdin_null_flag = stdin_null_flag; ono_shell_flag = no_shell_flag; ono_tty_flag = no_tty_flag; otty_flag = tty_flag; stdin_null_flag = 1; no_shell_flag = 1; no_tty_flag = 1; tty_flag = 0; if (!fork_after_authentication_flag) need_controlpersist_detach = 1; fork_after_authentication_flag = 1; } if (!no_shell_flag || (datafellows & SSH_BUG_DUMMYCHAN)) id = ssh_session2_open(); /* If we don't expect to open a new session, then disallow it */ if (options.control_master == SSHCTL_MASTER_NO && (datafellows & SSH_NEW_OPENSSH)) { debug("Requesting no-more-sessions@openssh.com"); packet_start(SSH2_MSG_GLOBAL_REQUEST); packet_put_cstring("no-more-sessions@openssh.com"); packet_put_char(0); packet_send(); } /* Execute a local command */ if (options.local_command != NULL && options.permit_local_command) ssh_local_cmd(options.local_command); /* * If requested and we are not interested in replies to remote * forwarding requests, then let ssh continue in the background. */ if (fork_after_authentication_flag) { if (options.exit_on_forward_failure && options.num_remote_forwards > 0) { debug("deferring postauth fork until remote forward " "confirmation received"); } else fork_postauth(); } if (options.use_roaming) request_roaming(); return client_loop(tty_flag, tty_flag ? options.escape_char : SSH_ESCAPECHAR_NONE, id); } static void load_public_identity_files(void) { char *filename, *cp, thishost[NI_MAXHOST]; char *pwdir = NULL, *pwname = NULL; int i = 0; Key *public; struct passwd *pw; u_int n_ids; char *identity_files[SSH_MAX_IDENTITY_FILES]; Key *identity_keys[SSH_MAX_IDENTITY_FILES]; #ifdef ENABLE_PKCS11 Key **keys; int nkeys; #endif /* PKCS11 */ n_ids = 0; bzero(identity_files, sizeof(identity_files)); bzero(identity_keys, sizeof(identity_keys)); #ifdef ENABLE_PKCS11 if (options.pkcs11_provider != NULL && options.num_identity_files < SSH_MAX_IDENTITY_FILES && (pkcs11_init(!options.batch_mode) == 0) && (nkeys = pkcs11_add_provider(options.pkcs11_provider, NULL, &keys)) > 0) { for (i = 0; i < nkeys; i++) { if (n_ids >= SSH_MAX_IDENTITY_FILES) { key_free(keys[i]); continue; } identity_keys[n_ids] = keys[i]; identity_files[n_ids] = xstrdup(options.pkcs11_provider); /* XXX */ n_ids++; } xfree(keys); } #endif /* ENABLE_PKCS11 */ if ((pw = getpwuid(original_real_uid)) == NULL) fatal("load_public_identity_files: getpwuid failed"); pwname = xstrdup(pw->pw_name); pwdir = xstrdup(pw->pw_dir); if (gethostname(thishost, sizeof(thishost)) == -1) fatal("load_public_identity_files: gethostname: %s", strerror(errno)); for (i = 0; i < options.num_identity_files; i++) { if (n_ids >= SSH_MAX_IDENTITY_FILES) { xfree(options.identity_files[i]); continue; } cp = tilde_expand_filename(options.identity_files[i], original_real_uid); filename = percent_expand(cp, "d", pwdir, "u", pwname, "l", thishost, "h", host, "r", options.user, (char *)NULL); xfree(cp); public = key_load_public(filename, NULL); debug("identity file %s type %d", filename, public ? public->type : -1); xfree(options.identity_files[i]); identity_files[n_ids] = filename; identity_keys[n_ids] = public; if (++n_ids >= SSH_MAX_IDENTITY_FILES) continue; /* Try to add the certificate variant too */ xasprintf(&cp, "%s-cert", filename); public = key_load_public(cp, NULL); debug("identity file %s type %d", cp, public ? public->type : -1); if (public == NULL) { xfree(cp); continue; } if (!key_is_cert(public)) { debug("%s: key %s type %s is not a certificate", __func__, cp, key_type(public)); key_free(public); xfree(cp); continue; } identity_keys[n_ids] = public; /* point to the original path, most likely the private key */ identity_files[n_ids] = xstrdup(filename); n_ids++; } options.num_identity_files = n_ids; memcpy(options.identity_files, identity_files, sizeof(identity_files)); memcpy(options.identity_keys, identity_keys, sizeof(identity_keys)); bzero(pwname, strlen(pwname)); xfree(pwname); bzero(pwdir, strlen(pwdir)); xfree(pwdir); } static void main_sigchld_handler(int sig) { int save_errno = errno; pid_t pid; int status; while ((pid = waitpid(-1, &status, WNOHANG)) > 0 || (pid < 0 && errno == EINTR)) ; signal(sig, main_sigchld_handler); errno = save_errno; } Index: user/brooks/openssh-hpn/sshconnect.c =================================================================== --- user/brooks/openssh-hpn/sshconnect.c (revision 222586) +++ user/brooks/openssh-hpn/sshconnect.c (revision 222587) @@ -1,1323 +1,1324 @@ /* $OpenBSD: sshconnect.c,v 1.232 2011/01/16 11:50:36 djm Exp $ */ /* * Author: Tatu Ylonen * Copyright (c) 1995 Tatu Ylonen , Espoo, Finland * All rights reserved * Code to connect to a remote host, and to perform the client side of the * login (authentication) dialog. * * As far as I am concerned, the code I have written for this software * can be used freely for any purpose. Any derived versions of this * software must be clearly marked as such, and if the derived work is * incompatible with the protocol description in the RFC file, it must be * called by a name other than "ssh" or "Secure Shell". */ #include "includes.h" #include #include #include #include #ifdef HAVE_SYS_TIME_H # include #endif #include #include #include #include #include #include #ifdef HAVE_PATHS_H #include #endif #include #include #include #include #include #include #include #include "xmalloc.h" #include "key.h" #include "hostfile.h" #include "ssh.h" #include "rsa.h" #include "buffer.h" #include "packet.h" #include "uidswap.h" #include "compat.h" #include "key.h" #include "sshconnect.h" #include "hostfile.h" #include "log.h" #include "readconf.h" #include "atomicio.h" #include "misc.h" #include "dns.h" #include "roaming.h" #include "ssh2.h" #include "version.h" char *client_version_string = NULL; char *server_version_string = NULL; static int matching_host_key_dns = 0; static pid_t proxy_command_pid = 0; /* import */ extern Options options; extern char *__progname; extern uid_t original_real_uid; extern uid_t original_effective_uid; static int show_other_keys(struct hostkeys *, Key *); static void warn_changed_key(Key *); /* * Connect to the given ssh server using a proxy command. */ static int ssh_proxy_connect(const char *host, u_short port, const char *proxy_command) { char *command_string, *tmp; int pin[2], pout[2]; pid_t pid; char *shell, strport[NI_MAXSERV]; if ((shell = getenv("SHELL")) == NULL || *shell == '\0') shell = _PATH_BSHELL; /* Convert the port number into a string. */ snprintf(strport, sizeof strport, "%hu", port); /* * Build the final command string in the buffer by making the * appropriate substitutions to the given proxy command. * * Use "exec" to avoid "sh -c" processes on some platforms * (e.g. Solaris) */ xasprintf(&tmp, "exec %s", proxy_command); command_string = percent_expand(tmp, "h", host, "p", strport, "r", options.user, (char *)NULL); xfree(tmp); /* Create pipes for communicating with the proxy. */ if (pipe(pin) < 0 || pipe(pout) < 0) fatal("Could not create pipes to communicate with the proxy: %.100s", strerror(errno)); debug("Executing proxy command: %.500s", command_string); /* Fork and execute the proxy command. */ if ((pid = fork()) == 0) { char *argv[10]; /* Child. Permanently give up superuser privileges. */ permanently_drop_suid(original_real_uid); /* Redirect stdin and stdout. */ close(pin[1]); if (pin[0] != 0) { if (dup2(pin[0], 0) < 0) perror("dup2 stdin"); close(pin[0]); } close(pout[0]); if (dup2(pout[1], 1) < 0) perror("dup2 stdout"); /* Cannot be 1 because pin allocated two descriptors. */ close(pout[1]); /* Stderr is left as it is so that error messages get printed on the user's terminal. */ argv[0] = shell; argv[1] = "-c"; argv[2] = command_string; argv[3] = NULL; /* Execute the proxy command. Note that we gave up any extra privileges above. */ signal(SIGPIPE, SIG_DFL); execv(argv[0], argv); perror(argv[0]); exit(1); } /* Parent. */ if (pid < 0) fatal("fork failed: %.100s", strerror(errno)); else proxy_command_pid = pid; /* save pid to clean up later */ /* Close child side of the descriptors. */ close(pin[0]); close(pout[1]); /* Free the command name. */ xfree(command_string); /* Set the connection file descriptors. */ packet_set_connection(pout[0], pin[1]); packet_set_timeout(options.server_alive_interval, options.server_alive_count_max); /* Indicate OK return */ return 0; } void ssh_kill_proxy_command(void) { /* * Send SIGHUP to proxy command if used. We don't wait() in * case it hangs and instead rely on init to reap the child */ if (proxy_command_pid > 1) kill(proxy_command_pid, SIGHUP); } /* * Set TCP receive buffer if requested. * Note: tuning needs to happen after the socket is * created but before the connection happens * so winscale is negotiated properly -cjr */ static void ssh_set_socket_recvbuf(int sock) { void *buf = (void *)&options.tcp_rcv_buf; int sz = sizeof(options.tcp_rcv_buf); int socksize; int socksizelen = sizeof(int); - debug("setsockopt Attempting to set SO_RCVBUF to %d", options.tcp_rcv_buf); + debug("setsockopt Attempting to set SO_RCVBUF to %d", + options.tcp_rcv_buf); if (setsockopt(sock, SOL_SOCKET, SO_RCVBUF, buf, sz) >= 0) { getsockopt(sock, SOL_SOCKET, SO_RCVBUF, &socksize, &socksizelen); debug("setsockopt SO_RCVBUF: %.100s %d", strerror(errno), socksize); } else { error("Couldn't set socket receive buffer to %d: %.100s", options.tcp_rcv_buf, strerror(errno)); } } /* * Creates a (possibly privileged) socket for use as the ssh connection. */ static int ssh_create_socket(int privileged, struct addrinfo *ai) { int sock, gaierr; struct addrinfo hints, *res; /* * If we are running as root and want to connect to a privileged * port, bind our own socket to a privileged port. */ if (privileged) { int p = IPPORT_RESERVED - 1; PRIV_START; sock = rresvport_af(&p, ai->ai_family); PRIV_END; if (sock < 0) error("rresvport: af=%d %.100s", ai->ai_family, strerror(errno)); else debug("Allocated local port %d.", p); if (options.tcp_rcv_buf > 0) ssh_set_socket_recvbuf(sock); return sock; } sock = socket(ai->ai_family, ai->ai_socktype, ai->ai_protocol); if (sock < 0) { error("socket: %.100s", strerror(errno)); return -1; } fcntl(sock, F_SETFD, FD_CLOEXEC); if (options.tcp_rcv_buf > 0) ssh_set_socket_recvbuf(sock); /* Bind the socket to an alternative local IP address */ if (options.bind_address == NULL) return sock; memset(&hints, 0, sizeof(hints)); hints.ai_family = ai->ai_family; hints.ai_socktype = ai->ai_socktype; hints.ai_protocol = ai->ai_protocol; hints.ai_flags = AI_PASSIVE; gaierr = getaddrinfo(options.bind_address, NULL, &hints, &res); if (gaierr) { error("getaddrinfo: %s: %s", options.bind_address, ssh_gai_strerror(gaierr)); close(sock); return -1; } if (bind(sock, res->ai_addr, res->ai_addrlen) < 0) { error("bind: %s: %s", options.bind_address, strerror(errno)); close(sock); freeaddrinfo(res); return -1; } freeaddrinfo(res); return sock; } static int timeout_connect(int sockfd, const struct sockaddr *serv_addr, socklen_t addrlen, int *timeoutp) { fd_set *fdset; struct timeval tv, t_start; socklen_t optlen; int optval, rc, result = -1; gettimeofday(&t_start, NULL); if (*timeoutp <= 0) { result = connect(sockfd, serv_addr, addrlen); goto done; } set_nonblock(sockfd); rc = connect(sockfd, serv_addr, addrlen); if (rc == 0) { unset_nonblock(sockfd); result = 0; goto done; } if (errno != EINPROGRESS) { result = -1; goto done; } fdset = (fd_set *)xcalloc(howmany(sockfd + 1, NFDBITS), sizeof(fd_mask)); FD_SET(sockfd, fdset); ms_to_timeval(&tv, *timeoutp); for (;;) { rc = select(sockfd + 1, NULL, fdset, NULL, &tv); if (rc != -1 || errno != EINTR) break; } switch (rc) { case 0: /* Timed out */ errno = ETIMEDOUT; break; case -1: /* Select error */ debug("select: %s", strerror(errno)); break; case 1: /* Completed or failed */ optval = 0; optlen = sizeof(optval); if (getsockopt(sockfd, SOL_SOCKET, SO_ERROR, &optval, &optlen) == -1) { debug("getsockopt: %s", strerror(errno)); break; } if (optval != 0) { errno = optval; break; } result = 0; unset_nonblock(sockfd); break; default: /* Should not occur */ fatal("Bogus return (%d) from select()", rc); } xfree(fdset); done: if (result == 0 && *timeoutp > 0) { ms_subtract_diff(&t_start, timeoutp); if (*timeoutp <= 0) { errno = ETIMEDOUT; result = -1; } } return (result); } /* * Opens a TCP/IP connection to the remote server on the given host. * The address of the remote host will be returned in hostaddr. * If port is 0, the default port will be used. If needpriv is true, * a privileged port will be allocated to make the connection. * This requires super-user privileges if needpriv is true. * Connection_attempts specifies the maximum number of tries (one per * second). If proxy_command is non-NULL, it specifies the command (with %h * and %p substituted for host and port, respectively) to use to contact * the daemon. */ int ssh_connect(const char *host, struct sockaddr_storage * hostaddr, u_short port, int family, int connection_attempts, int *timeout_ms, int want_keepalive, int needpriv, const char *proxy_command) { int gaierr; int on = 1; int sock = -1, attempt; char ntop[NI_MAXHOST], strport[NI_MAXSERV]; struct addrinfo hints, *ai, *aitop; debug2("ssh_connect: needpriv %d", needpriv); /* If a proxy command is given, connect using it. */ if (proxy_command != NULL) return ssh_proxy_connect(host, port, proxy_command); /* No proxy command. */ memset(&hints, 0, sizeof(hints)); hints.ai_family = family; hints.ai_socktype = SOCK_STREAM; snprintf(strport, sizeof strport, "%u", port); if ((gaierr = getaddrinfo(host, strport, &hints, &aitop)) != 0) fatal("%s: Could not resolve hostname %.100s: %s", __progname, host, ssh_gai_strerror(gaierr)); for (attempt = 0; attempt < connection_attempts; attempt++) { if (attempt > 0) { /* Sleep a moment before retrying. */ sleep(1); debug("Trying again..."); } /* * Loop through addresses for this host, and try each one in * sequence until the connection succeeds. */ for (ai = aitop; ai; ai = ai->ai_next) { if (ai->ai_family != AF_INET && ai->ai_family != AF_INET6) continue; if (getnameinfo(ai->ai_addr, ai->ai_addrlen, ntop, sizeof(ntop), strport, sizeof(strport), NI_NUMERICHOST|NI_NUMERICSERV) != 0) { error("ssh_connect: getnameinfo failed"); continue; } debug("Connecting to %.200s [%.100s] port %s.", host, ntop, strport); /* Create a socket for connecting. */ sock = ssh_create_socket(needpriv, ai); if (sock < 0) /* Any error is already output */ continue; if (timeout_connect(sock, ai->ai_addr, ai->ai_addrlen, timeout_ms) >= 0) { /* Successful connection. */ memcpy(hostaddr, ai->ai_addr, ai->ai_addrlen); break; } else { debug("connect to address %s port %s: %s", ntop, strport, strerror(errno)); close(sock); sock = -1; } } if (sock != -1) break; /* Successful connection. */ } freeaddrinfo(aitop); /* Return failure if we didn't get a successful connection. */ if (sock == -1) { error("ssh: connect to host %s port %s: %s", host, strport, strerror(errno)); return (-1); } debug("Connection established."); /* Set SO_KEEPALIVE if requested. */ if (want_keepalive && setsockopt(sock, SOL_SOCKET, SO_KEEPALIVE, (void *)&on, sizeof(on)) < 0) error("setsockopt SO_KEEPALIVE: %.100s", strerror(errno)); /* Set the connection. */ packet_set_connection(sock, sock); packet_set_timeout(options.server_alive_interval, options.server_alive_count_max); return 0; } /* * Waits for the server identification string, and sends our own * identification string. */ void ssh_exchange_identification(int timeout_ms) { char buf[256], remote_version[256]; /* must be same size! */ int remote_major, remote_minor, mismatch; int connection_in = packet_get_connection_in(); int connection_out = packet_get_connection_out(); int minor1 = PROTOCOL_MINOR_1; u_int i, n; size_t len; int fdsetsz, remaining, rc; struct timeval t_start, t_remaining; fd_set *fdset; fdsetsz = howmany(connection_in + 1, NFDBITS) * sizeof(fd_mask); fdset = xcalloc(1, fdsetsz); /* Read other side's version identification. */ remaining = timeout_ms; for (n = 0;;) { for (i = 0; i < sizeof(buf) - 1; i++) { if (timeout_ms > 0) { gettimeofday(&t_start, NULL); ms_to_timeval(&t_remaining, remaining); FD_SET(connection_in, fdset); rc = select(connection_in + 1, fdset, NULL, fdset, &t_remaining); ms_subtract_diff(&t_start, &remaining); if (rc == 0 || remaining <= 0) fatal("Connection timed out during " "banner exchange"); if (rc == -1) { if (errno == EINTR) continue; fatal("ssh_exchange_identification: " "select: %s", strerror(errno)); } } len = roaming_atomicio(read, connection_in, &buf[i], 1); if (len != 1 && errno == EPIPE) fatal("ssh_exchange_identification: " "Connection closed by remote host"); else if (len != 1) fatal("ssh_exchange_identification: " "read: %.100s", strerror(errno)); if (buf[i] == '\r') { buf[i] = '\n'; buf[i + 1] = 0; continue; /**XXX wait for \n */ } if (buf[i] == '\n') { buf[i + 1] = 0; break; } if (++n > 65536) fatal("ssh_exchange_identification: " "No banner received"); } buf[sizeof(buf) - 1] = 0; if (strncmp(buf, "SSH-", 4) == 0) break; debug("ssh_exchange_identification: %s", buf); } server_version_string = xstrdup(buf); xfree(fdset); /* * Check that the versions match. In future this might accept * several versions and set appropriate flags to handle them. */ if (sscanf(server_version_string, "SSH-%d.%d-%[^\n]\n", &remote_major, &remote_minor, remote_version) != 3) fatal("Bad remote protocol version identification: '%.100s'", buf); debug("Remote protocol version %d.%d, remote software version %.100s", remote_major, remote_minor, remote_version); compat_datafellows(remote_version); mismatch = 0; switch (remote_major) { case 1: if (remote_minor == 99 && (options.protocol & SSH_PROTO_2) && !(options.protocol & SSH_PROTO_1_PREFERRED)) { enable_compat20(); break; } if (!(options.protocol & SSH_PROTO_1)) { mismatch = 1; break; } if (remote_minor < 3) { fatal("Remote machine has too old SSH software version."); } else if (remote_minor == 3 || remote_minor == 4) { /* We speak 1.3, too. */ enable_compat13(); minor1 = 3; if (options.forward_agent) { logit("Agent forwarding disabled for protocol 1.3"); options.forward_agent = 0; } } break; case 2: if (options.protocol & SSH_PROTO_2) { enable_compat20(); break; } /* FALLTHROUGH */ default: mismatch = 1; break; } if (mismatch) fatal("Protocol major versions differ: %d vs. %d", (options.protocol & SSH_PROTO_2) ? PROTOCOL_MAJOR_2 : PROTOCOL_MAJOR_1, remote_major); /* Send our own protocol version identification. */ snprintf(buf, sizeof buf, "SSH-%d.%d-%.100s%s", compat20 ? PROTOCOL_MAJOR_2 : PROTOCOL_MAJOR_1, compat20 ? PROTOCOL_MINOR_2 : minor1, SSH_RELEASE, compat20 ? "\r\n" : "\n"); if (roaming_atomicio(vwrite, connection_out, buf, strlen(buf)) != strlen(buf)) fatal("write: %.100s", strerror(errno)); client_version_string = xstrdup(buf); chop(client_version_string); chop(server_version_string); debug("Local version string %.100s", client_version_string); } /* defaults to 'no' */ static int confirm(const char *prompt) { const char *msg, *again = "Please type 'yes' or 'no': "; char *p; int ret = -1; if (options.batch_mode) return 0; for (msg = prompt;;msg = again) { p = read_passphrase(msg, RP_ECHO); if (p == NULL || (p[0] == '\0') || (p[0] == '\n') || strncasecmp(p, "no", 2) == 0) ret = 0; if (p && strncasecmp(p, "yes", 3) == 0) ret = 1; if (p) xfree(p); if (ret != -1) return ret; } } static int check_host_cert(const char *host, const Key *host_key) { const char *reason; if (key_cert_check_authority(host_key, 1, 0, host, &reason) != 0) { error("%s", reason); return 0; } if (buffer_len(&host_key->cert->critical) != 0) { error("Certificate for %s contains unsupported " "critical options(s)", host); return 0; } return 1; } static int sockaddr_is_local(struct sockaddr *hostaddr) { switch (hostaddr->sa_family) { case AF_INET: return (ntohl(((struct sockaddr_in *)hostaddr)-> sin_addr.s_addr) >> 24) == IN_LOOPBACKNET; case AF_INET6: return IN6_IS_ADDR_LOOPBACK( &(((struct sockaddr_in6 *)hostaddr)->sin6_addr)); default: return 0; } } /* * Prepare the hostname and ip address strings that are used to lookup * host keys in known_hosts files. These may have a port number appended. */ void get_hostfile_hostname_ipaddr(char *hostname, struct sockaddr *hostaddr, u_short port, char **hostfile_hostname, char **hostfile_ipaddr) { char ntop[NI_MAXHOST]; socklen_t addrlen; switch (hostaddr == NULL ? -1 : hostaddr->sa_family) { case -1: addrlen = 0; break; case AF_INET: addrlen = sizeof(struct sockaddr_in); break; case AF_INET6: addrlen = sizeof(struct sockaddr_in6); break; default: addrlen = sizeof(struct sockaddr); break; } /* * We don't have the remote ip-address for connections * using a proxy command */ if (hostfile_ipaddr != NULL) { if (options.proxy_command == NULL) { if (getnameinfo(hostaddr, addrlen, ntop, sizeof(ntop), NULL, 0, NI_NUMERICHOST) != 0) fatal("check_host_key: getnameinfo failed"); *hostfile_ipaddr = put_host_port(ntop, port); } else { *hostfile_ipaddr = xstrdup(""); } } /* * Allow the user to record the key under a different name or * differentiate a non-standard port. This is useful for ssh * tunneling over forwarded connections or if you run multiple * sshd's on different ports on the same machine. */ if (hostfile_hostname != NULL) { if (options.host_key_alias != NULL) { *hostfile_hostname = xstrdup(options.host_key_alias); debug("using hostkeyalias: %s", *hostfile_hostname); } else { *hostfile_hostname = put_host_port(hostname, port); } } } /* * check whether the supplied host key is valid, return -1 if the key * is not valid. the user_hostfile will not be updated if 'readonly' is true. */ #define RDRW 0 #define RDONLY 1 #define ROQUIET 2 static int check_host_key(char *hostname, struct sockaddr *hostaddr, u_short port, Key *host_key, int readonly, char *user_hostfile, char *system_hostfile) { Key *raw_key = NULL; const char *type; char *ip = NULL, *host = NULL; char hostline[1000], *hostp, *fp, *ra; HostStatus host_status; HostStatus ip_status; int r, want_cert = key_is_cert(host_key), host_ip_differ = 0; int local = sockaddr_is_local(hostaddr); char msg[1024]; int len, cancelled_forwarding = 0; struct hostkeys *host_hostkeys, *ip_hostkeys; const struct hostkey_entry *host_found, *ip_found; /* * Force accepting of the host key for loopback/localhost. The * problem is that if the home directory is NFS-mounted to multiple * machines, localhost will refer to a different machine in each of * them, and the user will get bogus HOST_CHANGED warnings. This * essentially disables host authentication for localhost; however, * this is probably not a real problem. */ if (options.no_host_authentication_for_localhost == 1 && local && options.host_key_alias == NULL) { debug("Forcing accepting of host key for " "loopback/localhost."); return 0; } /* * Prepare the hostname and address strings used for hostkey lookup. * In some cases, these will have a port number appended. */ get_hostfile_hostname_ipaddr(hostname, hostaddr, port, &host, &ip); /* * Turn off check_host_ip if the connection is to localhost, via proxy * command or if we don't have a hostname to compare with */ if (options.check_host_ip && (local || strcmp(hostname, ip) == 0 || options.proxy_command != NULL)) options.check_host_ip = 0; host_hostkeys = init_hostkeys(); load_hostkeys(host_hostkeys, host, user_hostfile); load_hostkeys(host_hostkeys, host, system_hostfile); ip_hostkeys = NULL; if (!want_cert && options.check_host_ip) { ip_hostkeys = init_hostkeys(); load_hostkeys(ip_hostkeys, ip, user_hostfile); load_hostkeys(ip_hostkeys, ip, system_hostfile); } retry: /* Reload these as they may have changed on cert->key downgrade */ want_cert = key_is_cert(host_key); type = key_type(host_key); /* * Check if the host key is present in the user's list of known * hosts or in the systemwide list. */ host_status = check_key_in_hostkeys(host_hostkeys, host_key, &host_found); /* * Also perform check for the ip address, skip the check if we are * localhost, looking for a certificate, or the hostname was an ip * address to begin with. */ if (!want_cert && ip_hostkeys != NULL) { ip_status = check_key_in_hostkeys(ip_hostkeys, host_key, &ip_found); if (host_status == HOST_CHANGED && (ip_status != HOST_CHANGED || (ip_found != NULL && !key_equal(ip_found->key, host_found->key)))) host_ip_differ = 1; } else ip_status = host_status; switch (host_status) { case HOST_OK: /* The host is known and the key matches. */ debug("Host '%.200s' is known and matches the %s host %s.", host, type, want_cert ? "certificate" : "key"); debug("Found %s in %s:%lu", want_cert ? "CA key" : "key", host_found->file, host_found->line); if (want_cert && !check_host_cert(hostname, host_key)) goto fail; if (options.check_host_ip && ip_status == HOST_NEW) { if (readonly || want_cert) logit("%s host key for IP address " "'%.128s' not in list of known hosts.", type, ip); else if (!add_host_to_hostfile(user_hostfile, ip, host_key, options.hash_known_hosts)) logit("Failed to add the %s host key for IP " "address '%.128s' to the list of known " "hosts (%.30s).", type, ip, user_hostfile); else logit("Warning: Permanently added the %s host " "key for IP address '%.128s' to the list " "of known hosts.", type, ip); } else if (options.visual_host_key) { fp = key_fingerprint(host_key, SSH_FP_MD5, SSH_FP_HEX); ra = key_fingerprint(host_key, SSH_FP_MD5, SSH_FP_RANDOMART); logit("Host key fingerprint is %s\n%s\n", fp, ra); xfree(ra); xfree(fp); } break; case HOST_NEW: if (options.host_key_alias == NULL && port != 0 && port != SSH_DEFAULT_PORT) { debug("checking without port identifier"); if (check_host_key(hostname, hostaddr, 0, host_key, ROQUIET, user_hostfile, system_hostfile) == 0) { debug("found matching key w/out port"); break; } } if (readonly || want_cert) goto fail; /* The host is new. */ if (options.strict_host_key_checking == 1) { /* * User has requested strict host key checking. We * will not add the host key automatically. The only * alternative left is to abort. */ error("No %s host key is known for %.200s and you " "have requested strict checking.", type, host); goto fail; } else if (options.strict_host_key_checking == 2) { char msg1[1024], msg2[1024]; if (show_other_keys(host_hostkeys, host_key)) snprintf(msg1, sizeof(msg1), "\nbut keys of different type are already" " known for this host."); else snprintf(msg1, sizeof(msg1), "."); /* The default */ fp = key_fingerprint(host_key, SSH_FP_MD5, SSH_FP_HEX); ra = key_fingerprint(host_key, SSH_FP_MD5, SSH_FP_RANDOMART); msg2[0] = '\0'; if (options.verify_host_key_dns) { if (matching_host_key_dns) snprintf(msg2, sizeof(msg2), "Matching host key fingerprint" " found in DNS.\n"); else snprintf(msg2, sizeof(msg2), "No matching host key fingerprint" " found in DNS.\n"); } snprintf(msg, sizeof(msg), "The authenticity of host '%.200s (%s)' can't be " "established%s\n" "%s key fingerprint is %s.%s%s\n%s" "Are you sure you want to continue connecting " "(yes/no)? ", host, ip, msg1, type, fp, options.visual_host_key ? "\n" : "", options.visual_host_key ? ra : "", msg2); xfree(ra); xfree(fp); if (!confirm(msg)) goto fail; } /* * If not in strict mode, add the key automatically to the * local known_hosts file. */ if (options.check_host_ip && ip_status == HOST_NEW) { snprintf(hostline, sizeof(hostline), "%s,%s", host, ip); hostp = hostline; if (options.hash_known_hosts) { /* Add hash of host and IP separately */ r = add_host_to_hostfile(user_hostfile, host, host_key, options.hash_known_hosts) && add_host_to_hostfile(user_hostfile, ip, host_key, options.hash_known_hosts); } else { /* Add unhashed "host,ip" */ r = add_host_to_hostfile(user_hostfile, hostline, host_key, options.hash_known_hosts); } } else { r = add_host_to_hostfile(user_hostfile, host, host_key, options.hash_known_hosts); hostp = host; } if (!r) logit("Failed to add the host to the list of known " "hosts (%.500s).", user_hostfile); else logit("Warning: Permanently added '%.200s' (%s) to the " "list of known hosts.", hostp, type); break; case HOST_REVOKED: error("@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"); error("@ WARNING: REVOKED HOST KEY DETECTED! @"); error("@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"); error("The %s host key for %s is marked as revoked.", type, host); error("This could mean that a stolen key is being used to"); error("impersonate this host."); /* * If strict host key checking is in use, the user will have * to edit the key manually and we can only abort. */ if (options.strict_host_key_checking) { error("%s host key for %.200s was revoked and you have " "requested strict checking.", type, host); goto fail; } goto continue_unsafe; case HOST_CHANGED: if (want_cert) { /* * This is only a debug() since it is valid to have * CAs with wildcard DNS matches that don't match * all hosts that one might visit. */ debug("Host certificate authority does not " "match %s in %s:%lu", CA_MARKER, host_found->file, host_found->line); goto fail; } if (readonly == ROQUIET) goto fail; if (options.check_host_ip && host_ip_differ) { char *key_msg; if (ip_status == HOST_NEW) key_msg = "is unknown"; else if (ip_status == HOST_OK) key_msg = "is unchanged"; else key_msg = "has a different value"; error("@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"); error("@ WARNING: POSSIBLE DNS SPOOFING DETECTED! @"); error("@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"); error("The %s host key for %s has changed,", type, host); error("and the key for the corresponding IP address %s", ip); error("%s. This could either mean that", key_msg); error("DNS SPOOFING is happening or the IP address for the host"); error("and its host key have changed at the same time."); if (ip_status != HOST_NEW) error("Offending key for IP in %s:%lu", ip_found->file, ip_found->line); } /* The host key has changed. */ warn_changed_key(host_key); error("Add correct host key in %.100s to get rid of this message.", user_hostfile); error("Offending %s key in %s:%lu", key_type(host_found->key), host_found->file, host_found->line); /* * If strict host key checking is in use, the user will have * to edit the key manually and we can only abort. */ if (options.strict_host_key_checking) { error("%s host key for %.200s has changed and you have " "requested strict checking.", type, host); goto fail; } continue_unsafe: /* * If strict host key checking has not been requested, allow * the connection but without MITM-able authentication or * forwarding. */ if (options.password_authentication) { error("Password authentication is disabled to avoid " "man-in-the-middle attacks."); options.password_authentication = 0; cancelled_forwarding = 1; } if (options.kbd_interactive_authentication) { error("Keyboard-interactive authentication is disabled" " to avoid man-in-the-middle attacks."); options.kbd_interactive_authentication = 0; options.challenge_response_authentication = 0; cancelled_forwarding = 1; } if (options.challenge_response_authentication) { error("Challenge/response authentication is disabled" " to avoid man-in-the-middle attacks."); options.challenge_response_authentication = 0; cancelled_forwarding = 1; } if (options.forward_agent) { error("Agent forwarding is disabled to avoid " "man-in-the-middle attacks."); options.forward_agent = 0; cancelled_forwarding = 1; } if (options.forward_x11) { error("X11 forwarding is disabled to avoid " "man-in-the-middle attacks."); options.forward_x11 = 0; cancelled_forwarding = 1; } if (options.num_local_forwards > 0 || options.num_remote_forwards > 0) { error("Port forwarding is disabled to avoid " "man-in-the-middle attacks."); options.num_local_forwards = options.num_remote_forwards = 0; cancelled_forwarding = 1; } if (options.tun_open != SSH_TUNMODE_NO) { error("Tunnel forwarding is disabled to avoid " "man-in-the-middle attacks."); options.tun_open = SSH_TUNMODE_NO; cancelled_forwarding = 1; } if (options.exit_on_forward_failure && cancelled_forwarding) fatal("Error: forwarding disabled due to host key " "check failure"); /* * XXX Should permit the user to change to use the new id. * This could be done by converting the host key to an * identifying sentence, tell that the host identifies itself * by that sentence, and ask the user if he/she wishes to * accept the authentication. */ break; case HOST_FOUND: fatal("internal error"); break; } if (options.check_host_ip && host_status != HOST_CHANGED && ip_status == HOST_CHANGED) { snprintf(msg, sizeof(msg), "Warning: the %s host key for '%.200s' " "differs from the key for the IP address '%.128s'" "\nOffending key for IP in %s:%lu", type, host, ip, ip_found->file, ip_found->line); if (host_status == HOST_OK) { len = strlen(msg); snprintf(msg + len, sizeof(msg) - len, "\nMatching host key in %s:%lu", host_found->file, host_found->line); } if (options.strict_host_key_checking == 1) { logit("%s", msg); error("Exiting, you have requested strict checking."); goto fail; } else if (options.strict_host_key_checking == 2) { strlcat(msg, "\nAre you sure you want " "to continue connecting (yes/no)? ", sizeof(msg)); if (!confirm(msg)) goto fail; } else { logit("%s", msg); } } xfree(ip); xfree(host); if (host_hostkeys != NULL) free_hostkeys(host_hostkeys); if (ip_hostkeys != NULL) free_hostkeys(ip_hostkeys); return 0; fail: if (want_cert && host_status != HOST_REVOKED) { /* * No matching certificate. Downgrade cert to raw key and * search normally. */ debug("No matching CA found. Retry with plain key"); raw_key = key_from_private(host_key); if (key_drop_cert(raw_key) != 0) fatal("Couldn't drop certificate"); host_key = raw_key; goto retry; } if (raw_key != NULL) key_free(raw_key); xfree(ip); xfree(host); if (host_hostkeys != NULL) free_hostkeys(host_hostkeys); if (ip_hostkeys != NULL) free_hostkeys(ip_hostkeys); return -1; } /* returns 0 if key verifies or -1 if key does NOT verify */ int verify_host_key(char *host, struct sockaddr *hostaddr, Key *host_key) { struct stat st; int flags = 0; char *fp; fp = key_fingerprint(host_key, SSH_FP_MD5, SSH_FP_HEX); debug("Server host key: %s %s", key_type(host_key), fp); xfree(fp); /* XXX certs are not yet supported for DNS */ if (!key_is_cert(host_key) && options.verify_host_key_dns && verify_host_key_dns(host, hostaddr, host_key, &flags) == 0) { if (flags & DNS_VERIFY_FOUND) { if (options.verify_host_key_dns == 1 && flags & DNS_VERIFY_MATCH && flags & DNS_VERIFY_SECURE) return 0; if (flags & DNS_VERIFY_MATCH) { matching_host_key_dns = 1; } else { warn_changed_key(host_key); error("Update the SSHFP RR in DNS with the new " "host key to get rid of this message."); } } } /* return ok if the key can be found in an old keyfile */ if (stat(options.system_hostfile2, &st) == 0 || stat(options.user_hostfile2, &st) == 0) { if (check_host_key(host, hostaddr, options.port, host_key, RDONLY, options.user_hostfile2, options.system_hostfile2) == 0) return 0; } return check_host_key(host, hostaddr, options.port, host_key, RDRW, options.user_hostfile, options.system_hostfile); } /* * Starts a dialog with the server, and authenticates the current user on the * server. This does not need any extra privileges. The basic connection * to the server must already have been established before this is called. * If login fails, this function prints an error and never returns. * This function does not require super-user privileges. */ void ssh_login(Sensitive *sensitive, const char *orighost, struct sockaddr *hostaddr, u_short port, struct passwd *pw, int timeout_ms) { char *host, *cp; char *server_user, *local_user; local_user = xstrdup(pw->pw_name); server_user = options.user ? options.user : local_user; /* Convert the user-supplied hostname into all lowercase. */ host = xstrdup(orighost); for (cp = host; *cp; cp++) if (isupper(*cp)) *cp = (char)tolower(*cp); /* Exchange protocol version identification strings with the server. */ ssh_exchange_identification(timeout_ms); /* Put the connection into non-blocking mode. */ packet_set_nonblocking(); /* key exchange */ /* authenticate user */ if (compat20) { ssh_kex2(host, hostaddr, port); ssh_userauth2(local_user, server_user, host, sensitive); } else { ssh_kex(host, hostaddr); ssh_userauth1(local_user, server_user, host, sensitive); } xfree(local_user); } void ssh_put_password(char *password) { int size; char *padded; if (datafellows & SSH_BUG_PASSWORDPAD) { packet_put_cstring(password); return; } size = roundup(strlen(password) + 1, 32); padded = xcalloc(1, size); strlcpy(padded, password, size); packet_put_string(padded, size); memset(padded, 0, size); xfree(padded); } /* print all known host keys for a given host, but skip keys of given type */ static int show_other_keys(struct hostkeys *hostkeys, Key *key) { int type[] = { KEY_RSA1, KEY_RSA, KEY_DSA, KEY_ECDSA, -1}; int i, ret = 0; char *fp, *ra; const struct hostkey_entry *found; for (i = 0; type[i] != -1; i++) { if (type[i] == key->type) continue; if (!lookup_key_in_hostkeys_by_type(hostkeys, type[i], &found)) continue; fp = key_fingerprint(found->key, SSH_FP_MD5, SSH_FP_HEX); ra = key_fingerprint(found->key, SSH_FP_MD5, SSH_FP_RANDOMART); logit("WARNING: %s key found for host %s\n" "in %s:%lu\n" "%s key fingerprint %s.", key_type(found->key), found->host, found->file, found->line, key_type(found->key), fp); if (options.visual_host_key) logit("%s", ra); xfree(ra); xfree(fp); ret = 1; } return ret; } static void warn_changed_key(Key *host_key) { char *fp; fp = key_fingerprint(host_key, SSH_FP_MD5, SSH_FP_HEX); error("@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"); error("@ WARNING: REMOTE HOST IDENTIFICATION HAS CHANGED! @"); error("@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@@"); error("IT IS POSSIBLE THAT SOMEONE IS DOING SOMETHING NASTY!"); error("Someone could be eavesdropping on you right now (man-in-the-middle attack)!"); error("It is also possible that a host key has just been changed."); error("The fingerprint for the %s key sent by the remote host is\n%s.", key_type(host_key), fp); error("Please contact your system administrator."); xfree(fp); } /* * Execute a local command */ int ssh_local_cmd(const char *args) { char *shell; pid_t pid; int status; void (*osighand)(int); if (!options.permit_local_command || args == NULL || !*args) return (1); if ((shell = getenv("SHELL")) == NULL || *shell == '\0') shell = _PATH_BSHELL; osighand = signal(SIGCHLD, SIG_DFL); pid = fork(); if (pid == 0) { signal(SIGPIPE, SIG_DFL); debug3("Executing %s -c \"%s\"", shell, args); execl(shell, shell, "-c", args, (char *)NULL); error("Couldn't execute %s -c \"%s\": %s", shell, args, strerror(errno)); _exit(1); } else if (pid == -1) fatal("fork failed: %.100s", strerror(errno)); while (waitpid(pid, &status, 0) == -1) if (errno != EINTR) fatal("Couldn't wait for child: %s", strerror(errno)); signal(SIGCHLD, osighand); if (!WIFEXITED(status)) return (1); return (WEXITSTATUS(status)); } Index: user/brooks/openssh-hpn/sshconnect2.c =================================================================== --- user/brooks/openssh-hpn/sshconnect2.c (revision 222586) +++ user/brooks/openssh-hpn/sshconnect2.c (revision 222587) @@ -1,1943 +1,1943 @@ /* $OpenBSD: sshconnect2.c,v 1.186 2010/11/29 23:45:51 djm Exp $ */ /* * Copyright (c) 2000 Markus Friedl. All rights reserved. * Copyright (c) 2008 Damien Miller. All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * 1. Redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution. * * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. */ #include "includes.h" #include #include #include #include #include #include #include #include #include #include #include #include #include #if defined(HAVE_STRNVIS) && defined(HAVE_VIS_H) #include #endif #include "openbsd-compat/sys-queue.h" #include "xmalloc.h" #include "ssh.h" #include "ssh2.h" #include "buffer.h" #include "packet.h" #include "compat.h" #include "cipher.h" #include "key.h" #include "kex.h" #include "myproposal.h" #include "sshconnect.h" #include "authfile.h" #include "dh.h" #include "authfd.h" #include "log.h" #include "readconf.h" #include "misc.h" #include "match.h" #include "dispatch.h" #include "canohost.h" #include "msg.h" #include "pathnames.h" #include "uidswap.h" #include "hostfile.h" #include "schnorr.h" #include "jpake.h" #ifdef GSSAPI #include "ssh-gss.h" #endif /* import */ extern char *client_version_string; extern char *server_version_string; extern Options options; extern Kex *xxx_kex; /* * tty_flag is set in ssh.c. use this in ssh_userauth2. * If it is set then prevent the switch to the null cipher. */ extern int tty_flag; /* * SSH2 key exchange */ u_char *session_id2 = NULL; u_int session_id2_len = 0; char *xxx_host; struct sockaddr *xxx_hostaddr; Kex *xxx_kex = NULL; static int verify_host_key_callback(Key *hostkey) { if (verify_host_key(xxx_host, xxx_hostaddr, hostkey) == -1) fatal("Host key verification failed."); return 0; } static char * order_hostkeyalgs(char *host, struct sockaddr *hostaddr, u_short port) { char *oavail, *avail, *first, *last, *alg, *hostname, *ret; size_t maxlen; struct hostkeys *hostkeys; int ktype; /* Find all hostkeys for this hostname */ get_hostfile_hostname_ipaddr(host, hostaddr, port, &hostname, NULL); hostkeys = init_hostkeys(); load_hostkeys(hostkeys, hostname, options.user_hostfile2); load_hostkeys(hostkeys, hostname, options.system_hostfile2); load_hostkeys(hostkeys, hostname, options.user_hostfile); load_hostkeys(hostkeys, hostname, options.system_hostfile); oavail = avail = xstrdup(KEX_DEFAULT_PK_ALG); maxlen = strlen(avail) + 1; first = xmalloc(maxlen); last = xmalloc(maxlen); *first = *last = '\0'; #define ALG_APPEND(to, from) \ do { \ if (*to != '\0') \ strlcat(to, ",", maxlen); \ strlcat(to, from, maxlen); \ } while (0) while ((alg = strsep(&avail, ",")) && *alg != '\0') { if ((ktype = key_type_from_name(alg)) == KEY_UNSPEC) fatal("%s: unknown alg %s", __func__, alg); if (lookup_key_in_hostkeys_by_type(hostkeys, key_type_plain(ktype), NULL)) ALG_APPEND(first, alg); else ALG_APPEND(last, alg); } #undef ALG_APPEND xasprintf(&ret, "%s%s%s", first, *first == '\0' ? "" : ",", last); if (*first != '\0') debug3("%s: prefer hostkeyalgs: %s", __func__, first); xfree(first); xfree(last); xfree(hostname); xfree(oavail); free_hostkeys(hostkeys); return ret; } void ssh_kex2(char *host, struct sockaddr *hostaddr, u_short port) { Kex *kex; xxx_host = host; xxx_hostaddr = hostaddr; if (options.ciphers == (char *)-1) { logit("No valid ciphers for protocol version 2 given, using defaults."); options.ciphers = NULL; } if (options.ciphers != NULL) { myproposal[PROPOSAL_ENC_ALGS_CTOS] = myproposal[PROPOSAL_ENC_ALGS_STOC] = options.ciphers; } myproposal[PROPOSAL_ENC_ALGS_CTOS] = compat_cipher_proposal(myproposal[PROPOSAL_ENC_ALGS_CTOS]); myproposal[PROPOSAL_ENC_ALGS_STOC] = compat_cipher_proposal(myproposal[PROPOSAL_ENC_ALGS_STOC]); if (options.compression) { myproposal[PROPOSAL_COMP_ALGS_CTOS] = myproposal[PROPOSAL_COMP_ALGS_STOC] = "zlib@openssh.com,zlib,none"; } else { myproposal[PROPOSAL_COMP_ALGS_CTOS] = myproposal[PROPOSAL_COMP_ALGS_STOC] = "none,zlib@openssh.com,zlib"; } if (options.macs != NULL) { myproposal[PROPOSAL_MAC_ALGS_CTOS] = myproposal[PROPOSAL_MAC_ALGS_STOC] = options.macs; } if (options.hostkeyalgorithms != NULL) myproposal[PROPOSAL_SERVER_HOST_KEY_ALGS] = options.hostkeyalgorithms; else { /* Prefer algorithms that we already have keys for */ myproposal[PROPOSAL_SERVER_HOST_KEY_ALGS] = order_hostkeyalgs(host, hostaddr, port); } if (options.kex_algorithms != NULL) myproposal[PROPOSAL_KEX_ALGS] = options.kex_algorithms; if (options.rekey_limit) packet_set_rekey_limit((u_int32_t)options.rekey_limit); /* start key exchange */ kex = kex_setup(myproposal); kex->kex[KEX_DH_GRP1_SHA1] = kexdh_client; kex->kex[KEX_DH_GRP14_SHA1] = kexdh_client; kex->kex[KEX_DH_GEX_SHA1] = kexgex_client; kex->kex[KEX_DH_GEX_SHA256] = kexgex_client; kex->kex[KEX_ECDH_SHA2] = kexecdh_client; kex->client_version_string=client_version_string; kex->server_version_string=server_version_string; kex->verify_host_key=&verify_host_key_callback; xxx_kex = kex; dispatch_run(DISPATCH_BLOCK, &kex->done, kex); if (options.use_roaming && !kex->roaming) { debug("Roaming not allowed by server"); options.use_roaming = 0; } session_id2 = kex->session_id; session_id2_len = kex->session_id_len; #ifdef DEBUG_KEXDH /* send 1st encrypted/maced/compressed message */ packet_start(SSH2_MSG_IGNORE); packet_put_cstring("markus"); packet_send(); packet_write_wait(); #endif } /* * Authenticate user */ typedef struct Authctxt Authctxt; typedef struct Authmethod Authmethod; typedef struct identity Identity; typedef struct idlist Idlist; struct identity { TAILQ_ENTRY(identity) next; AuthenticationConnection *ac; /* set if agent supports key */ Key *key; /* public/private key */ char *filename; /* comment for agent-only keys */ int tried; int isprivate; /* key points to the private key */ }; TAILQ_HEAD(idlist, identity); struct Authctxt { const char *server_user; const char *local_user; const char *host; const char *service; Authmethod *method; sig_atomic_t success; char *authlist; /* pubkey */ Idlist keys; AuthenticationConnection *agent; /* hostbased */ Sensitive *sensitive; /* kbd-interactive */ int info_req_seen; /* generic */ void *methoddata; }; struct Authmethod { char *name; /* string to compare against server's list */ int (*userauth)(Authctxt *authctxt); void (*cleanup)(Authctxt *authctxt); int *enabled; /* flag in option struct that enables method */ int *batch_flag; /* flag in option struct that disables method */ }; void input_userauth_success(int, u_int32_t, void *); void input_userauth_success_unexpected(int, u_int32_t, void *); void input_userauth_failure(int, u_int32_t, void *); void input_userauth_banner(int, u_int32_t, void *); void input_userauth_error(int, u_int32_t, void *); void input_userauth_info_req(int, u_int32_t, void *); void input_userauth_pk_ok(int, u_int32_t, void *); void input_userauth_passwd_changereq(int, u_int32_t, void *); void input_userauth_jpake_server_step1(int, u_int32_t, void *); void input_userauth_jpake_server_step2(int, u_int32_t, void *); void input_userauth_jpake_server_confirm(int, u_int32_t, void *); int userauth_none(Authctxt *); int userauth_pubkey(Authctxt *); int userauth_passwd(Authctxt *); int userauth_kbdint(Authctxt *); int userauth_hostbased(Authctxt *); int userauth_jpake(Authctxt *); void userauth_jpake_cleanup(Authctxt *); #ifdef GSSAPI int userauth_gssapi(Authctxt *authctxt); void input_gssapi_response(int type, u_int32_t, void *); void input_gssapi_token(int type, u_int32_t, void *); void input_gssapi_hash(int type, u_int32_t, void *); void input_gssapi_error(int, u_int32_t, void *); void input_gssapi_errtok(int, u_int32_t, void *); #endif void userauth(Authctxt *, char *); static int sign_and_send_pubkey(Authctxt *, Identity *); static void pubkey_prepare(Authctxt *); static void pubkey_cleanup(Authctxt *); static Key *load_identity_file(char *); static Authmethod *authmethod_get(char *authlist); static Authmethod *authmethod_lookup(const char *name); static char *authmethods_get(void); Authmethod authmethods[] = { #ifdef GSSAPI {"gssapi-with-mic", userauth_gssapi, NULL, &options.gss_authentication, NULL}, #endif {"hostbased", userauth_hostbased, NULL, &options.hostbased_authentication, NULL}, {"publickey", userauth_pubkey, NULL, &options.pubkey_authentication, NULL}, #ifdef JPAKE {"jpake-01@openssh.com", userauth_jpake, userauth_jpake_cleanup, &options.zero_knowledge_password_authentication, &options.batch_mode}, #endif {"keyboard-interactive", userauth_kbdint, NULL, &options.kbd_interactive_authentication, &options.batch_mode}, {"password", userauth_passwd, NULL, &options.password_authentication, &options.batch_mode}, {"none", userauth_none, NULL, NULL, NULL}, {NULL, NULL, NULL, NULL, NULL} }; void ssh_userauth2(const char *local_user, const char *server_user, char *host, Sensitive *sensitive) { Authctxt authctxt; int type; if (options.challenge_response_authentication) options.kbd_interactive_authentication = 1; packet_start(SSH2_MSG_SERVICE_REQUEST); packet_put_cstring("ssh-userauth"); packet_send(); debug("SSH2_MSG_SERVICE_REQUEST sent"); packet_write_wait(); type = packet_read(); if (type != SSH2_MSG_SERVICE_ACCEPT) fatal("Server denied authentication request: %d", type); if (packet_remaining() > 0) { char *reply = packet_get_string(NULL); debug2("service_accept: %s", reply); xfree(reply); } else { debug2("buggy server: service_accept w/o service"); } packet_check_eom(); debug("SSH2_MSG_SERVICE_ACCEPT received"); if (options.preferred_authentications == NULL) options.preferred_authentications = authmethods_get(); /* setup authentication context */ memset(&authctxt, 0, sizeof(authctxt)); pubkey_prepare(&authctxt); authctxt.server_user = server_user; authctxt.local_user = local_user; authctxt.host = host; authctxt.service = "ssh-connection"; /* service name */ authctxt.success = 0; authctxt.method = authmethod_lookup("none"); authctxt.authlist = NULL; authctxt.methoddata = NULL; authctxt.sensitive = sensitive; authctxt.info_req_seen = 0; if (authctxt.method == NULL) fatal("ssh_userauth2: internal error: cannot send userauth none request"); /* initial userauth request */ userauth_none(&authctxt); dispatch_init(&input_userauth_error); dispatch_set(SSH2_MSG_USERAUTH_SUCCESS, &input_userauth_success); dispatch_set(SSH2_MSG_USERAUTH_FAILURE, &input_userauth_failure); dispatch_set(SSH2_MSG_USERAUTH_BANNER, &input_userauth_banner); dispatch_run(DISPATCH_BLOCK, &authctxt.success, &authctxt); /* loop until success */ pubkey_cleanup(&authctxt); dispatch_range(SSH2_MSG_USERAUTH_MIN, SSH2_MSG_USERAUTH_MAX, NULL); /* - * If the user wants to use the none cipher, do it post - * authentication and only if the right conditions are met. - * Both of the NONE commands must be true and there must be no - * tty allocated. + * If the user wants to use the none cipher, do it post + * authentication and only if the right conditions are met. + * Both of the NONE commands must be true and there must be no + * tty allocated. */ if ((options.none_switch == 1) && (options.none_enabled == 1)) { if (!tty_flag) /* no null on tty sessions */ { debug("Requesting none rekeying..."); myproposal[PROPOSAL_ENC_ALGS_STOC] = "none"; myproposal[PROPOSAL_ENC_ALGS_CTOS] = "none"; kex_prop2buf(&xxx_kex->my,myproposal); packet_request_rekeying(); fprintf(stderr, "WARNING: ENABLED NONE CIPHER\n"); } else { /* requested NONE cipher when in a tty */ debug("Cannot switch to NONE cipher with tty allocated"); fprintf(stderr, "NONE cipher switch disabled when a TTY is allocated\n"); } } debug("Authentication succeeded (%s).", authctxt.method->name); } void userauth(Authctxt *authctxt, char *authlist) { if (authctxt->method != NULL && authctxt->method->cleanup != NULL) authctxt->method->cleanup(authctxt); if (authctxt->methoddata) { xfree(authctxt->methoddata); authctxt->methoddata = NULL; } if (authlist == NULL) { authlist = authctxt->authlist; } else { if (authctxt->authlist) xfree(authctxt->authlist); authctxt->authlist = authlist; } for (;;) { Authmethod *method = authmethod_get(authlist); if (method == NULL) fatal("Permission denied (%s).", authlist); authctxt->method = method; /* reset the per method handler */ dispatch_range(SSH2_MSG_USERAUTH_PER_METHOD_MIN, SSH2_MSG_USERAUTH_PER_METHOD_MAX, NULL); /* and try new method */ if (method->userauth(authctxt) != 0) { debug2("we sent a %s packet, wait for reply", method->name); break; } else { debug2("we did not send a packet, disable method"); method->enabled = NULL; } } } /* ARGSUSED */ void input_userauth_error(int type, u_int32_t seq, void *ctxt) { fatal("input_userauth_error: bad message during authentication: " "type %d", type); } /* ARGSUSED */ void input_userauth_banner(int type, u_int32_t seq, void *ctxt) { char *msg, *raw, *lang; u_int len; debug3("input_userauth_banner"); raw = packet_get_string(&len); lang = packet_get_string(NULL); if (len > 0 && options.log_level >= SYSLOG_LEVEL_INFO) { if (len > 65536) len = 65536; msg = xmalloc(len * 4 + 1); /* max expansion from strnvis() */ strnvis(msg, raw, len * 4 + 1, VIS_SAFE|VIS_OCTAL|VIS_NOSLASH); fprintf(stderr, "%s", msg); xfree(msg); } xfree(raw); xfree(lang); } /* ARGSUSED */ void input_userauth_success(int type, u_int32_t seq, void *ctxt) { Authctxt *authctxt = ctxt; if (authctxt == NULL) fatal("input_userauth_success: no authentication context"); if (authctxt->authlist) { xfree(authctxt->authlist); authctxt->authlist = NULL; } if (authctxt->method != NULL && authctxt->method->cleanup != NULL) authctxt->method->cleanup(authctxt); if (authctxt->methoddata) { xfree(authctxt->methoddata); authctxt->methoddata = NULL; } authctxt->success = 1; /* break out */ } void input_userauth_success_unexpected(int type, u_int32_t seq, void *ctxt) { Authctxt *authctxt = ctxt; if (authctxt == NULL) fatal("%s: no authentication context", __func__); fatal("Unexpected authentication success during %s.", authctxt->method->name); } /* ARGSUSED */ void input_userauth_failure(int type, u_int32_t seq, void *ctxt) { Authctxt *authctxt = ctxt; char *authlist = NULL; int partial; if (authctxt == NULL) fatal("input_userauth_failure: no authentication context"); authlist = packet_get_string(NULL); partial = packet_get_char(); packet_check_eom(); if (partial != 0) logit("Authenticated with partial success."); debug("Authentications that can continue: %s", authlist); userauth(authctxt, authlist); } /* ARGSUSED */ void input_userauth_pk_ok(int type, u_int32_t seq, void *ctxt) { Authctxt *authctxt = ctxt; Key *key = NULL; Identity *id = NULL; Buffer b; int pktype, sent = 0; u_int alen, blen; char *pkalg, *fp; u_char *pkblob; if (authctxt == NULL) fatal("input_userauth_pk_ok: no authentication context"); if (datafellows & SSH_BUG_PKOK) { /* this is similar to SSH_BUG_PKAUTH */ debug2("input_userauth_pk_ok: SSH_BUG_PKOK"); pkblob = packet_get_string(&blen); buffer_init(&b); buffer_append(&b, pkblob, blen); pkalg = buffer_get_string(&b, &alen); buffer_free(&b); } else { pkalg = packet_get_string(&alen); pkblob = packet_get_string(&blen); } packet_check_eom(); debug("Server accepts key: pkalg %s blen %u", pkalg, blen); if ((pktype = key_type_from_name(pkalg)) == KEY_UNSPEC) { debug("unknown pkalg %s", pkalg); goto done; } if ((key = key_from_blob(pkblob, blen)) == NULL) { debug("no key from blob. pkalg %s", pkalg); goto done; } if (key->type != pktype) { error("input_userauth_pk_ok: type mismatch " "for decoded key (received %d, expected %d)", key->type, pktype); goto done; } fp = key_fingerprint(key, SSH_FP_MD5, SSH_FP_HEX); debug2("input_userauth_pk_ok: fp %s", fp); xfree(fp); /* * search keys in the reverse order, because last candidate has been * moved to the end of the queue. this also avoids confusion by * duplicate keys */ TAILQ_FOREACH_REVERSE(id, &authctxt->keys, idlist, next) { if (key_equal(key, id->key)) { sent = sign_and_send_pubkey(authctxt, id); break; } } done: if (key != NULL) key_free(key); xfree(pkalg); xfree(pkblob); /* try another method if we did not send a packet */ if (sent == 0) userauth(authctxt, NULL); } #ifdef GSSAPI int userauth_gssapi(Authctxt *authctxt) { Gssctxt *gssctxt = NULL; static gss_OID_set gss_supported = NULL; static u_int mech = 0; OM_uint32 min; int ok = 0; /* Try one GSSAPI method at a time, rather than sending them all at * once. */ if (gss_supported == NULL) gss_indicate_mechs(&min, &gss_supported); /* Check to see if the mechanism is usable before we offer it */ while (mech < gss_supported->count && !ok) { /* My DER encoding requires length<128 */ if (gss_supported->elements[mech].length < 128 && ssh_gssapi_check_mechanism(&gssctxt, &gss_supported->elements[mech], authctxt->host)) { ok = 1; /* Mechanism works */ } else { mech++; } } if (!ok) return 0; authctxt->methoddata=(void *)gssctxt; packet_start(SSH2_MSG_USERAUTH_REQUEST); packet_put_cstring(authctxt->server_user); packet_put_cstring(authctxt->service); packet_put_cstring(authctxt->method->name); packet_put_int(1); packet_put_int((gss_supported->elements[mech].length) + 2); packet_put_char(SSH_GSS_OIDTYPE); packet_put_char(gss_supported->elements[mech].length); packet_put_raw(gss_supported->elements[mech].elements, gss_supported->elements[mech].length); packet_send(); dispatch_set(SSH2_MSG_USERAUTH_GSSAPI_RESPONSE, &input_gssapi_response); dispatch_set(SSH2_MSG_USERAUTH_GSSAPI_TOKEN, &input_gssapi_token); dispatch_set(SSH2_MSG_USERAUTH_GSSAPI_ERROR, &input_gssapi_error); dispatch_set(SSH2_MSG_USERAUTH_GSSAPI_ERRTOK, &input_gssapi_errtok); mech++; /* Move along to next candidate */ return 1; } static OM_uint32 process_gssapi_token(void *ctxt, gss_buffer_t recv_tok) { Authctxt *authctxt = ctxt; Gssctxt *gssctxt = authctxt->methoddata; gss_buffer_desc send_tok = GSS_C_EMPTY_BUFFER; gss_buffer_desc mic = GSS_C_EMPTY_BUFFER; gss_buffer_desc gssbuf; OM_uint32 status, ms, flags; Buffer b; status = ssh_gssapi_init_ctx(gssctxt, options.gss_deleg_creds, recv_tok, &send_tok, &flags); if (send_tok.length > 0) { if (GSS_ERROR(status)) packet_start(SSH2_MSG_USERAUTH_GSSAPI_ERRTOK); else packet_start(SSH2_MSG_USERAUTH_GSSAPI_TOKEN); packet_put_string(send_tok.value, send_tok.length); packet_send(); gss_release_buffer(&ms, &send_tok); } if (status == GSS_S_COMPLETE) { /* send either complete or MIC, depending on mechanism */ if (!(flags & GSS_C_INTEG_FLAG)) { packet_start(SSH2_MSG_USERAUTH_GSSAPI_EXCHANGE_COMPLETE); packet_send(); } else { ssh_gssapi_buildmic(&b, authctxt->server_user, authctxt->service, "gssapi-with-mic"); gssbuf.value = buffer_ptr(&b); gssbuf.length = buffer_len(&b); status = ssh_gssapi_sign(gssctxt, &gssbuf, &mic); if (!GSS_ERROR(status)) { packet_start(SSH2_MSG_USERAUTH_GSSAPI_MIC); packet_put_string(mic.value, mic.length); packet_send(); } buffer_free(&b); gss_release_buffer(&ms, &mic); } } return status; } /* ARGSUSED */ void input_gssapi_response(int type, u_int32_t plen, void *ctxt) { Authctxt *authctxt = ctxt; Gssctxt *gssctxt; int oidlen; char *oidv; if (authctxt == NULL) fatal("input_gssapi_response: no authentication context"); gssctxt = authctxt->methoddata; /* Setup our OID */ oidv = packet_get_string(&oidlen); if (oidlen <= 2 || oidv[0] != SSH_GSS_OIDTYPE || oidv[1] != oidlen - 2) { xfree(oidv); debug("Badly encoded mechanism OID received"); userauth(authctxt, NULL); return; } if (!ssh_gssapi_check_oid(gssctxt, oidv + 2, oidlen - 2)) fatal("Server returned different OID than expected"); packet_check_eom(); xfree(oidv); if (GSS_ERROR(process_gssapi_token(ctxt, GSS_C_NO_BUFFER))) { /* Start again with next method on list */ debug("Trying to start again"); userauth(authctxt, NULL); return; } } /* ARGSUSED */ void input_gssapi_token(int type, u_int32_t plen, void *ctxt) { Authctxt *authctxt = ctxt; gss_buffer_desc recv_tok; OM_uint32 status; u_int slen; if (authctxt == NULL) fatal("input_gssapi_response: no authentication context"); recv_tok.value = packet_get_string(&slen); recv_tok.length = slen; /* safe typecast */ packet_check_eom(); status = process_gssapi_token(ctxt, &recv_tok); xfree(recv_tok.value); if (GSS_ERROR(status)) { /* Start again with the next method in the list */ userauth(authctxt, NULL); return; } } /* ARGSUSED */ void input_gssapi_errtok(int type, u_int32_t plen, void *ctxt) { Authctxt *authctxt = ctxt; Gssctxt *gssctxt; gss_buffer_desc send_tok = GSS_C_EMPTY_BUFFER; gss_buffer_desc recv_tok; OM_uint32 status, ms; u_int len; if (authctxt == NULL) fatal("input_gssapi_response: no authentication context"); gssctxt = authctxt->methoddata; recv_tok.value = packet_get_string(&len); recv_tok.length = len; packet_check_eom(); /* Stick it into GSSAPI and see what it says */ status = ssh_gssapi_init_ctx(gssctxt, options.gss_deleg_creds, &recv_tok, &send_tok, NULL); xfree(recv_tok.value); gss_release_buffer(&ms, &send_tok); /* Server will be returning a failed packet after this one */ } /* ARGSUSED */ void input_gssapi_error(int type, u_int32_t plen, void *ctxt) { OM_uint32 maj, min; char *msg; char *lang; maj=packet_get_int(); min=packet_get_int(); msg=packet_get_string(NULL); lang=packet_get_string(NULL); packet_check_eom(); debug("Server GSSAPI Error:\n%s", msg); xfree(msg); xfree(lang); } #endif /* GSSAPI */ int userauth_none(Authctxt *authctxt) { /* initial userauth request */ packet_start(SSH2_MSG_USERAUTH_REQUEST); packet_put_cstring(authctxt->server_user); packet_put_cstring(authctxt->service); packet_put_cstring(authctxt->method->name); packet_send(); return 1; } int userauth_passwd(Authctxt *authctxt) { static int attempt = 0; char prompt[150]; char *password; const char *host = options.host_key_alias ? options.host_key_alias : authctxt->host; if (attempt++ >= options.number_of_password_prompts) return 0; if (attempt != 1) error("Permission denied, please try again."); snprintf(prompt, sizeof(prompt), "%.30s@%.128s's password: ", authctxt->server_user, host); password = read_passphrase(prompt, 0); packet_start(SSH2_MSG_USERAUTH_REQUEST); packet_put_cstring(authctxt->server_user); packet_put_cstring(authctxt->service); packet_put_cstring(authctxt->method->name); packet_put_char(0); packet_put_cstring(password); memset(password, 0, strlen(password)); xfree(password); packet_add_padding(64); packet_send(); dispatch_set(SSH2_MSG_USERAUTH_PASSWD_CHANGEREQ, &input_userauth_passwd_changereq); return 1; } /* * parse PASSWD_CHANGEREQ, prompt user and send SSH2_MSG_USERAUTH_REQUEST */ /* ARGSUSED */ void input_userauth_passwd_changereq(int type, u_int32_t seqnr, void *ctxt) { Authctxt *authctxt = ctxt; char *info, *lang, *password = NULL, *retype = NULL; char prompt[150]; const char *host = options.host_key_alias ? options.host_key_alias : authctxt->host; debug2("input_userauth_passwd_changereq"); if (authctxt == NULL) fatal("input_userauth_passwd_changereq: " "no authentication context"); info = packet_get_string(NULL); lang = packet_get_string(NULL); if (strlen(info) > 0) logit("%s", info); xfree(info); xfree(lang); packet_start(SSH2_MSG_USERAUTH_REQUEST); packet_put_cstring(authctxt->server_user); packet_put_cstring(authctxt->service); packet_put_cstring(authctxt->method->name); packet_put_char(1); /* additional info */ snprintf(prompt, sizeof(prompt), "Enter %.30s@%.128s's old password: ", authctxt->server_user, host); password = read_passphrase(prompt, 0); packet_put_cstring(password); memset(password, 0, strlen(password)); xfree(password); password = NULL; while (password == NULL) { snprintf(prompt, sizeof(prompt), "Enter %.30s@%.128s's new password: ", authctxt->server_user, host); password = read_passphrase(prompt, RP_ALLOW_EOF); if (password == NULL) { /* bail out */ return; } snprintf(prompt, sizeof(prompt), "Retype %.30s@%.128s's new password: ", authctxt->server_user, host); retype = read_passphrase(prompt, 0); if (strcmp(password, retype) != 0) { memset(password, 0, strlen(password)); xfree(password); logit("Mismatch; try again, EOF to quit."); password = NULL; } memset(retype, 0, strlen(retype)); xfree(retype); } packet_put_cstring(password); memset(password, 0, strlen(password)); xfree(password); packet_add_padding(64); packet_send(); dispatch_set(SSH2_MSG_USERAUTH_PASSWD_CHANGEREQ, &input_userauth_passwd_changereq); } #ifdef JPAKE static char * pw_encrypt(const char *password, const char *crypt_scheme, const char *salt) { /* OpenBSD crypt(3) handles all of these */ if (strcmp(crypt_scheme, "crypt") == 0 || strcmp(crypt_scheme, "bcrypt") == 0 || strcmp(crypt_scheme, "md5crypt") == 0 || strcmp(crypt_scheme, "crypt-extended") == 0) return xstrdup(crypt(password, salt)); error("%s: unsupported password encryption scheme \"%.100s\"", __func__, crypt_scheme); return NULL; } static BIGNUM * jpake_password_to_secret(Authctxt *authctxt, const char *crypt_scheme, const char *salt) { char prompt[256], *password, *crypted; u_char *secret; u_int secret_len; BIGNUM *ret; snprintf(prompt, sizeof(prompt), "%.30s@%.128s's password (JPAKE): ", authctxt->server_user, authctxt->host); password = read_passphrase(prompt, 0); if ((crypted = pw_encrypt(password, crypt_scheme, salt)) == NULL) { logit("Disabling %s authentication", authctxt->method->name); authctxt->method->enabled = NULL; /* Continue with an empty password to fail gracefully */ crypted = xstrdup(""); } #ifdef JPAKE_DEBUG debug3("%s: salt = %s", __func__, salt); debug3("%s: scheme = %s", __func__, crypt_scheme); debug3("%s: crypted = %s", __func__, crypted); #endif if (hash_buffer(crypted, strlen(crypted), EVP_sha256(), &secret, &secret_len) != 0) fatal("%s: hash_buffer", __func__); bzero(password, strlen(password)); bzero(crypted, strlen(crypted)); xfree(password); xfree(crypted); if ((ret = BN_bin2bn(secret, secret_len, NULL)) == NULL) fatal("%s: BN_bin2bn (secret)", __func__); bzero(secret, secret_len); xfree(secret); return ret; } /* ARGSUSED */ void input_userauth_jpake_server_step1(int type, u_int32_t seq, void *ctxt) { Authctxt *authctxt = ctxt; struct jpake_ctx *pctx = authctxt->methoddata; u_char *x3_proof, *x4_proof, *x2_s_proof; u_int x3_proof_len, x4_proof_len, x2_s_proof_len; char *crypt_scheme, *salt; /* Disable this message */ dispatch_set(SSH2_MSG_USERAUTH_JPAKE_SERVER_STEP1, NULL); if ((pctx->g_x3 = BN_new()) == NULL || (pctx->g_x4 = BN_new()) == NULL) fatal("%s: BN_new", __func__); /* Fetch step 1 values */ crypt_scheme = packet_get_string(NULL); salt = packet_get_string(NULL); pctx->server_id = packet_get_string(&pctx->server_id_len); packet_get_bignum2(pctx->g_x3); packet_get_bignum2(pctx->g_x4); x3_proof = packet_get_string(&x3_proof_len); x4_proof = packet_get_string(&x4_proof_len); packet_check_eom(); JPAKE_DEBUG_CTX((pctx, "step 1 received in %s", __func__)); /* Obtain password and derive secret */ pctx->s = jpake_password_to_secret(authctxt, crypt_scheme, salt); bzero(crypt_scheme, strlen(crypt_scheme)); bzero(salt, strlen(salt)); xfree(crypt_scheme); xfree(salt); JPAKE_DEBUG_BN((pctx->s, "%s: s = ", __func__)); /* Calculate step 2 values */ jpake_step2(pctx->grp, pctx->s, pctx->g_x1, pctx->g_x3, pctx->g_x4, pctx->x2, pctx->server_id, pctx->server_id_len, pctx->client_id, pctx->client_id_len, x3_proof, x3_proof_len, x4_proof, x4_proof_len, &pctx->a, &x2_s_proof, &x2_s_proof_len); bzero(x3_proof, x3_proof_len); bzero(x4_proof, x4_proof_len); xfree(x3_proof); xfree(x4_proof); JPAKE_DEBUG_CTX((pctx, "step 2 sending in %s", __func__)); /* Send values for step 2 */ packet_start(SSH2_MSG_USERAUTH_JPAKE_CLIENT_STEP2); packet_put_bignum2(pctx->a); packet_put_string(x2_s_proof, x2_s_proof_len); packet_send(); bzero(x2_s_proof, x2_s_proof_len); xfree(x2_s_proof); /* Expect step 2 packet from peer */ dispatch_set(SSH2_MSG_USERAUTH_JPAKE_SERVER_STEP2, input_userauth_jpake_server_step2); } /* ARGSUSED */ void input_userauth_jpake_server_step2(int type, u_int32_t seq, void *ctxt) { Authctxt *authctxt = ctxt; struct jpake_ctx *pctx = authctxt->methoddata; u_char *x4_s_proof; u_int x4_s_proof_len; /* Disable this message */ dispatch_set(SSH2_MSG_USERAUTH_JPAKE_SERVER_STEP2, NULL); if ((pctx->b = BN_new()) == NULL) fatal("%s: BN_new", __func__); /* Fetch step 2 values */ packet_get_bignum2(pctx->b); x4_s_proof = packet_get_string(&x4_s_proof_len); packet_check_eom(); JPAKE_DEBUG_CTX((pctx, "step 2 received in %s", __func__)); /* Derive shared key and calculate confirmation hash */ jpake_key_confirm(pctx->grp, pctx->s, pctx->b, pctx->x2, pctx->g_x1, pctx->g_x2, pctx->g_x3, pctx->g_x4, pctx->client_id, pctx->client_id_len, pctx->server_id, pctx->server_id_len, session_id2, session_id2_len, x4_s_proof, x4_s_proof_len, &pctx->k, &pctx->h_k_cid_sessid, &pctx->h_k_cid_sessid_len); bzero(x4_s_proof, x4_s_proof_len); xfree(x4_s_proof); JPAKE_DEBUG_CTX((pctx, "confirm sending in %s", __func__)); /* Send key confirmation proof */ packet_start(SSH2_MSG_USERAUTH_JPAKE_CLIENT_CONFIRM); packet_put_string(pctx->h_k_cid_sessid, pctx->h_k_cid_sessid_len); packet_send(); /* Expect confirmation from peer */ dispatch_set(SSH2_MSG_USERAUTH_JPAKE_SERVER_CONFIRM, input_userauth_jpake_server_confirm); } /* ARGSUSED */ void input_userauth_jpake_server_confirm(int type, u_int32_t seq, void *ctxt) { Authctxt *authctxt = ctxt; struct jpake_ctx *pctx = authctxt->methoddata; /* Disable this message */ dispatch_set(SSH2_MSG_USERAUTH_JPAKE_SERVER_CONFIRM, NULL); pctx->h_k_sid_sessid = packet_get_string(&pctx->h_k_sid_sessid_len); packet_check_eom(); JPAKE_DEBUG_CTX((pctx, "confirm received in %s", __func__)); /* Verify expected confirmation hash */ if (jpake_check_confirm(pctx->k, pctx->server_id, pctx->server_id_len, session_id2, session_id2_len, pctx->h_k_sid_sessid, pctx->h_k_sid_sessid_len) == 1) debug("%s: %s success", __func__, authctxt->method->name); else { debug("%s: confirmation mismatch", __func__); /* XXX stash this so if auth succeeds then we can warn/kill */ } userauth_jpake_cleanup(authctxt); } #endif /* JPAKE */ static int identity_sign(Identity *id, u_char **sigp, u_int *lenp, u_char *data, u_int datalen) { Key *prv; int ret; /* the agent supports this key */ if (id->ac) return (ssh_agent_sign(id->ac, id->key, sigp, lenp, data, datalen)); /* * we have already loaded the private key or * the private key is stored in external hardware */ if (id->isprivate || (id->key->flags & KEY_FLAG_EXT)) return (key_sign(id->key, sigp, lenp, data, datalen)); /* load the private key from the file */ if ((prv = load_identity_file(id->filename)) == NULL) return (-1); ret = key_sign(prv, sigp, lenp, data, datalen); key_free(prv); return (ret); } static int sign_and_send_pubkey(Authctxt *authctxt, Identity *id) { Buffer b; u_char *blob, *signature; u_int bloblen, slen; u_int skip = 0; int ret = -1; int have_sig = 1; char *fp; fp = key_fingerprint(id->key, SSH_FP_MD5, SSH_FP_HEX); debug3("sign_and_send_pubkey: %s %s", key_type(id->key), fp); xfree(fp); if (key_to_blob(id->key, &blob, &bloblen) == 0) { /* we cannot handle this key */ debug3("sign_and_send_pubkey: cannot handle key"); return 0; } /* data to be signed */ buffer_init(&b); if (datafellows & SSH_OLD_SESSIONID) { buffer_append(&b, session_id2, session_id2_len); skip = session_id2_len; } else { buffer_put_string(&b, session_id2, session_id2_len); skip = buffer_len(&b); } buffer_put_char(&b, SSH2_MSG_USERAUTH_REQUEST); buffer_put_cstring(&b, authctxt->server_user); buffer_put_cstring(&b, datafellows & SSH_BUG_PKSERVICE ? "ssh-userauth" : authctxt->service); if (datafellows & SSH_BUG_PKAUTH) { buffer_put_char(&b, have_sig); } else { buffer_put_cstring(&b, authctxt->method->name); buffer_put_char(&b, have_sig); buffer_put_cstring(&b, key_ssh_name(id->key)); } buffer_put_string(&b, blob, bloblen); /* generate signature */ ret = identity_sign(id, &signature, &slen, buffer_ptr(&b), buffer_len(&b)); if (ret == -1) { xfree(blob); buffer_free(&b); return 0; } #ifdef DEBUG_PK buffer_dump(&b); #endif if (datafellows & SSH_BUG_PKSERVICE) { buffer_clear(&b); buffer_append(&b, session_id2, session_id2_len); skip = session_id2_len; buffer_put_char(&b, SSH2_MSG_USERAUTH_REQUEST); buffer_put_cstring(&b, authctxt->server_user); buffer_put_cstring(&b, authctxt->service); buffer_put_cstring(&b, authctxt->method->name); buffer_put_char(&b, have_sig); if (!(datafellows & SSH_BUG_PKAUTH)) buffer_put_cstring(&b, key_ssh_name(id->key)); buffer_put_string(&b, blob, bloblen); } xfree(blob); /* append signature */ buffer_put_string(&b, signature, slen); xfree(signature); /* skip session id and packet type */ if (buffer_len(&b) < skip + 1) fatal("userauth_pubkey: internal error"); buffer_consume(&b, skip + 1); /* put remaining data from buffer into packet */ packet_start(SSH2_MSG_USERAUTH_REQUEST); packet_put_raw(buffer_ptr(&b), buffer_len(&b)); buffer_free(&b); packet_send(); return 1; } static int send_pubkey_test(Authctxt *authctxt, Identity *id) { u_char *blob; u_int bloblen, have_sig = 0; debug3("send_pubkey_test"); if (key_to_blob(id->key, &blob, &bloblen) == 0) { /* we cannot handle this key */ debug3("send_pubkey_test: cannot handle key"); return 0; } /* register callback for USERAUTH_PK_OK message */ dispatch_set(SSH2_MSG_USERAUTH_PK_OK, &input_userauth_pk_ok); packet_start(SSH2_MSG_USERAUTH_REQUEST); packet_put_cstring(authctxt->server_user); packet_put_cstring(authctxt->service); packet_put_cstring(authctxt->method->name); packet_put_char(have_sig); if (!(datafellows & SSH_BUG_PKAUTH)) packet_put_cstring(key_ssh_name(id->key)); packet_put_string(blob, bloblen); xfree(blob); packet_send(); return 1; } static Key * load_identity_file(char *filename) { Key *private; char prompt[300], *passphrase; int perm_ok = 0, quit, i; struct stat st; if (stat(filename, &st) < 0) { debug3("no such identity: %s", filename); return NULL; } private = key_load_private_type(KEY_UNSPEC, filename, "", NULL, &perm_ok); if (!perm_ok) return NULL; if (private == NULL) { if (options.batch_mode) return NULL; snprintf(prompt, sizeof prompt, "Enter passphrase for key '%.100s': ", filename); for (i = 0; i < options.number_of_password_prompts; i++) { passphrase = read_passphrase(prompt, 0); if (strcmp(passphrase, "") != 0) { private = key_load_private_type(KEY_UNSPEC, filename, passphrase, NULL, NULL); quit = 0; } else { debug2("no passphrase given, try next key"); quit = 1; } memset(passphrase, 0, strlen(passphrase)); xfree(passphrase); if (private != NULL || quit) break; debug2("bad passphrase given, try again..."); } } return private; } /* * try keys in the following order: * 1. agent keys that are found in the config file * 2. other agent keys * 3. keys that are only listed in the config file */ static void pubkey_prepare(Authctxt *authctxt) { Identity *id; Idlist agent, files, *preferred; Key *key; AuthenticationConnection *ac; char *comment; int i, found; TAILQ_INIT(&agent); /* keys from the agent */ TAILQ_INIT(&files); /* keys from the config file */ preferred = &authctxt->keys; TAILQ_INIT(preferred); /* preferred order of keys */ /* list of keys stored in the filesystem */ for (i = 0; i < options.num_identity_files; i++) { key = options.identity_keys[i]; if (key && key->type == KEY_RSA1) continue; if (key && key->cert && key->cert->type != SSH2_CERT_TYPE_USER) continue; options.identity_keys[i] = NULL; id = xcalloc(1, sizeof(*id)); id->key = key; id->filename = xstrdup(options.identity_files[i]); TAILQ_INSERT_TAIL(&files, id, next); } /* list of keys supported by the agent */ if ((ac = ssh_get_authentication_connection())) { for (key = ssh_get_first_identity(ac, &comment, 2); key != NULL; key = ssh_get_next_identity(ac, &comment, 2)) { found = 0; TAILQ_FOREACH(id, &files, next) { /* agent keys from the config file are preferred */ if (key_equal(key, id->key)) { key_free(key); xfree(comment); TAILQ_REMOVE(&files, id, next); TAILQ_INSERT_TAIL(preferred, id, next); id->ac = ac; found = 1; break; } } if (!found && !options.identities_only) { id = xcalloc(1, sizeof(*id)); id->key = key; id->filename = comment; id->ac = ac; TAILQ_INSERT_TAIL(&agent, id, next); } } /* append remaining agent keys */ for (id = TAILQ_FIRST(&agent); id; id = TAILQ_FIRST(&agent)) { TAILQ_REMOVE(&agent, id, next); TAILQ_INSERT_TAIL(preferred, id, next); } authctxt->agent = ac; } /* append remaining keys from the config file */ for (id = TAILQ_FIRST(&files); id; id = TAILQ_FIRST(&files)) { TAILQ_REMOVE(&files, id, next); TAILQ_INSERT_TAIL(preferred, id, next); } TAILQ_FOREACH(id, preferred, next) { debug2("key: %s (%p)", id->filename, id->key); } } static void pubkey_cleanup(Authctxt *authctxt) { Identity *id; if (authctxt->agent != NULL) ssh_close_authentication_connection(authctxt->agent); for (id = TAILQ_FIRST(&authctxt->keys); id; id = TAILQ_FIRST(&authctxt->keys)) { TAILQ_REMOVE(&authctxt->keys, id, next); if (id->key) key_free(id->key); if (id->filename) xfree(id->filename); xfree(id); } } int userauth_pubkey(Authctxt *authctxt) { Identity *id; int sent = 0; while ((id = TAILQ_FIRST(&authctxt->keys))) { if (id->tried++) return (0); /* move key to the end of the queue */ TAILQ_REMOVE(&authctxt->keys, id, next); TAILQ_INSERT_TAIL(&authctxt->keys, id, next); /* * send a test message if we have the public key. for * encrypted keys we cannot do this and have to load the * private key instead */ if (id->key && id->key->type != KEY_RSA1) { debug("Offering %s public key: %s", key_type(id->key), id->filename); sent = send_pubkey_test(authctxt, id); } else if (id->key == NULL) { debug("Trying private key: %s", id->filename); id->key = load_identity_file(id->filename); if (id->key != NULL) { id->isprivate = 1; sent = sign_and_send_pubkey(authctxt, id); key_free(id->key); id->key = NULL; } } if (sent) return (sent); } return (0); } /* * Send userauth request message specifying keyboard-interactive method. */ int userauth_kbdint(Authctxt *authctxt) { static int attempt = 0; if (attempt++ >= options.number_of_password_prompts) return 0; /* disable if no SSH2_MSG_USERAUTH_INFO_REQUEST has been seen */ if (attempt > 1 && !authctxt->info_req_seen) { debug3("userauth_kbdint: disable: no info_req_seen"); dispatch_set(SSH2_MSG_USERAUTH_INFO_REQUEST, NULL); return 0; } debug2("userauth_kbdint"); packet_start(SSH2_MSG_USERAUTH_REQUEST); packet_put_cstring(authctxt->server_user); packet_put_cstring(authctxt->service); packet_put_cstring(authctxt->method->name); packet_put_cstring(""); /* lang */ packet_put_cstring(options.kbd_interactive_devices ? options.kbd_interactive_devices : ""); packet_send(); dispatch_set(SSH2_MSG_USERAUTH_INFO_REQUEST, &input_userauth_info_req); return 1; } /* * parse INFO_REQUEST, prompt user and send INFO_RESPONSE */ void input_userauth_info_req(int type, u_int32_t seq, void *ctxt) { Authctxt *authctxt = ctxt; char *name, *inst, *lang, *prompt, *response; u_int num_prompts, i; int echo = 0; debug2("input_userauth_info_req"); if (authctxt == NULL) fatal("input_userauth_info_req: no authentication context"); authctxt->info_req_seen = 1; name = packet_get_string(NULL); inst = packet_get_string(NULL); lang = packet_get_string(NULL); if (strlen(name) > 0) logit("%s", name); if (strlen(inst) > 0) logit("%s", inst); xfree(name); xfree(inst); xfree(lang); num_prompts = packet_get_int(); /* * Begin to build info response packet based on prompts requested. * We commit to providing the correct number of responses, so if * further on we run into a problem that prevents this, we have to * be sure and clean this up and send a correct error response. */ packet_start(SSH2_MSG_USERAUTH_INFO_RESPONSE); packet_put_int(num_prompts); debug2("input_userauth_info_req: num_prompts %d", num_prompts); for (i = 0; i < num_prompts; i++) { prompt = packet_get_string(NULL); echo = packet_get_char(); response = read_passphrase(prompt, echo ? RP_ECHO : 0); packet_put_cstring(response); memset(response, 0, strlen(response)); xfree(response); xfree(prompt); } packet_check_eom(); /* done with parsing incoming message. */ packet_add_padding(64); packet_send(); } static int ssh_keysign(Key *key, u_char **sigp, u_int *lenp, u_char *data, u_int datalen) { Buffer b; struct stat st; pid_t pid; int to[2], from[2], status, version = 2; debug2("ssh_keysign called"); if (stat(_PATH_SSH_KEY_SIGN, &st) < 0) { error("ssh_keysign: not installed: %s", strerror(errno)); return -1; } if (fflush(stdout) != 0) error("ssh_keysign: fflush: %s", strerror(errno)); if (pipe(to) < 0) { error("ssh_keysign: pipe: %s", strerror(errno)); return -1; } if (pipe(from) < 0) { error("ssh_keysign: pipe: %s", strerror(errno)); return -1; } if ((pid = fork()) < 0) { error("ssh_keysign: fork: %s", strerror(errno)); return -1; } if (pid == 0) { /* keep the socket on exec */ fcntl(packet_get_connection_in(), F_SETFD, 0); permanently_drop_suid(getuid()); close(from[0]); if (dup2(from[1], STDOUT_FILENO) < 0) fatal("ssh_keysign: dup2: %s", strerror(errno)); close(to[1]); if (dup2(to[0], STDIN_FILENO) < 0) fatal("ssh_keysign: dup2: %s", strerror(errno)); close(from[1]); close(to[0]); execl(_PATH_SSH_KEY_SIGN, _PATH_SSH_KEY_SIGN, (char *) 0); fatal("ssh_keysign: exec(%s): %s", _PATH_SSH_KEY_SIGN, strerror(errno)); } close(from[1]); close(to[0]); buffer_init(&b); buffer_put_int(&b, packet_get_connection_in()); /* send # of socket */ buffer_put_string(&b, data, datalen); if (ssh_msg_send(to[1], version, &b) == -1) fatal("ssh_keysign: couldn't send request"); if (ssh_msg_recv(from[0], &b) < 0) { error("ssh_keysign: no reply"); buffer_free(&b); return -1; } close(from[0]); close(to[1]); while (waitpid(pid, &status, 0) < 0) if (errno != EINTR) break; if (buffer_get_char(&b) != version) { error("ssh_keysign: bad version"); buffer_free(&b); return -1; } *sigp = buffer_get_string(&b, lenp); buffer_free(&b); return 0; } int userauth_hostbased(Authctxt *authctxt) { Key *private = NULL; Sensitive *sensitive = authctxt->sensitive; Buffer b; u_char *signature, *blob; char *chost, *pkalg, *p; const char *service; u_int blen, slen; int ok, i, found = 0; /* check for a useful key */ for (i = 0; i < sensitive->nkeys; i++) { private = sensitive->keys[i]; if (private && private->type != KEY_RSA1) { found = 1; /* we take and free the key */ sensitive->keys[i] = NULL; break; } } if (!found) { debug("No more client hostkeys for hostbased authentication."); return 0; } if (key_to_blob(private, &blob, &blen) == 0) { key_free(private); return 0; } /* figure out a name for the client host */ p = get_local_name(packet_get_connection_in()); if (p == NULL) { error("userauth_hostbased: cannot get local ipaddr/name"); key_free(private); xfree(blob); return 0; } xasprintf(&chost, "%s.", p); debug2("userauth_hostbased: chost %s", chost); xfree(p); service = datafellows & SSH_BUG_HBSERVICE ? "ssh-userauth" : authctxt->service; pkalg = xstrdup(key_ssh_name(private)); buffer_init(&b); /* construct data */ buffer_put_string(&b, session_id2, session_id2_len); buffer_put_char(&b, SSH2_MSG_USERAUTH_REQUEST); buffer_put_cstring(&b, authctxt->server_user); buffer_put_cstring(&b, service); buffer_put_cstring(&b, authctxt->method->name); buffer_put_cstring(&b, pkalg); buffer_put_string(&b, blob, blen); buffer_put_cstring(&b, chost); buffer_put_cstring(&b, authctxt->local_user); #ifdef DEBUG_PK buffer_dump(&b); #endif if (sensitive->external_keysign) ok = ssh_keysign(private, &signature, &slen, buffer_ptr(&b), buffer_len(&b)); else ok = key_sign(private, &signature, &slen, buffer_ptr(&b), buffer_len(&b)); key_free(private); buffer_free(&b); if (ok != 0) { error("key_sign failed"); xfree(chost); xfree(pkalg); xfree(blob); return 0; } packet_start(SSH2_MSG_USERAUTH_REQUEST); packet_put_cstring(authctxt->server_user); packet_put_cstring(authctxt->service); packet_put_cstring(authctxt->method->name); packet_put_cstring(pkalg); packet_put_string(blob, blen); packet_put_cstring(chost); packet_put_cstring(authctxt->local_user); packet_put_string(signature, slen); memset(signature, 's', slen); xfree(signature); xfree(chost); xfree(pkalg); xfree(blob); packet_send(); return 1; } #ifdef JPAKE int userauth_jpake(Authctxt *authctxt) { struct jpake_ctx *pctx; u_char *x1_proof, *x2_proof; u_int x1_proof_len, x2_proof_len; static int attempt = 0; /* XXX share with userauth_password's? */ if (attempt++ >= options.number_of_password_prompts) return 0; if (attempt != 1) error("Permission denied, please try again."); if (authctxt->methoddata != NULL) fatal("%s: authctxt->methoddata already set (%p)", __func__, authctxt->methoddata); authctxt->methoddata = pctx = jpake_new(); /* * Send request immediately, to get the protocol going while * we do the initial computations. */ packet_start(SSH2_MSG_USERAUTH_REQUEST); packet_put_cstring(authctxt->server_user); packet_put_cstring(authctxt->service); packet_put_cstring(authctxt->method->name); packet_send(); packet_write_wait(); jpake_step1(pctx->grp, &pctx->client_id, &pctx->client_id_len, &pctx->x1, &pctx->x2, &pctx->g_x1, &pctx->g_x2, &x1_proof, &x1_proof_len, &x2_proof, &x2_proof_len); JPAKE_DEBUG_CTX((pctx, "step 1 sending in %s", __func__)); packet_start(SSH2_MSG_USERAUTH_JPAKE_CLIENT_STEP1); packet_put_string(pctx->client_id, pctx->client_id_len); packet_put_bignum2(pctx->g_x1); packet_put_bignum2(pctx->g_x2); packet_put_string(x1_proof, x1_proof_len); packet_put_string(x2_proof, x2_proof_len); packet_send(); bzero(x1_proof, x1_proof_len); bzero(x2_proof, x2_proof_len); xfree(x1_proof); xfree(x2_proof); /* Expect step 1 packet from peer */ dispatch_set(SSH2_MSG_USERAUTH_JPAKE_SERVER_STEP1, input_userauth_jpake_server_step1); dispatch_set(SSH2_MSG_USERAUTH_SUCCESS, &input_userauth_success_unexpected); return 1; } void userauth_jpake_cleanup(Authctxt *authctxt) { debug3("%s: clean up", __func__); if (authctxt->methoddata != NULL) { jpake_free(authctxt->methoddata); authctxt->methoddata = NULL; } dispatch_set(SSH2_MSG_USERAUTH_SUCCESS, &input_userauth_success); } #endif /* JPAKE */ /* find auth method */ /* * given auth method name, if configurable options permit this method fill * in auth_ident field and return true, otherwise return false. */ static int authmethod_is_enabled(Authmethod *method) { if (method == NULL) return 0; /* return false if options indicate this method is disabled */ if (method->enabled == NULL || *method->enabled == 0) return 0; /* return false if batch mode is enabled but method needs interactive mode */ if (method->batch_flag != NULL && *method->batch_flag != 0) return 0; return 1; } static Authmethod * authmethod_lookup(const char *name) { Authmethod *method = NULL; if (name != NULL) for (method = authmethods; method->name != NULL; method++) if (strcmp(name, method->name) == 0) return method; debug2("Unrecognized authentication method name: %s", name ? name : "NULL"); return NULL; } /* XXX internal state */ static Authmethod *current = NULL; static char *supported = NULL; static char *preferred = NULL; /* * Given the authentication method list sent by the server, return the * next method we should try. If the server initially sends a nil list, * use a built-in default list. */ static Authmethod * authmethod_get(char *authlist) { char *name = NULL; u_int next; /* Use a suitable default if we're passed a nil list. */ if (authlist == NULL || strlen(authlist) == 0) authlist = options.preferred_authentications; if (supported == NULL || strcmp(authlist, supported) != 0) { debug3("start over, passed a different list %s", authlist); if (supported != NULL) xfree(supported); supported = xstrdup(authlist); preferred = options.preferred_authentications; debug3("preferred %s", preferred); current = NULL; } else if (current != NULL && authmethod_is_enabled(current)) return current; for (;;) { if ((name = match_list(preferred, supported, &next)) == NULL) { debug("No more authentication methods to try."); current = NULL; return NULL; } preferred += next; debug3("authmethod_lookup %s", name); debug3("remaining preferred: %s", preferred); if ((current = authmethod_lookup(name)) != NULL && authmethod_is_enabled(current)) { debug3("authmethod_is_enabled %s", name); debug("Next authentication method: %s", name); return current; } } } static char * authmethods_get(void) { Authmethod *method = NULL; Buffer b; char *list; buffer_init(&b); for (method = authmethods; method->name != NULL; method++) { if (authmethod_is_enabled(method)) { if (buffer_len(&b) > 0) buffer_append(&b, ",", 1); buffer_append(&b, method->name, strlen(method->name)); } } buffer_append(&b, "\0", 1); list = xstrdup(buffer_ptr(&b)); buffer_free(&b); return list; }