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iscsid_driverif.c revision 1.5
      1 /*	$NetBSD: iscsid_driverif.c,v 1.5 2012/05/27 20:05:04 christos Exp $	*/
      2 
      3 /*-
      4  * Copyright (c) 2005,2006,2011 The NetBSD Foundation, Inc.
      5  * All rights reserved.
      6  *
      7  * This code is derived from software contributed to The NetBSD Foundation
      8  * by Wasabi Systems, Inc.
      9  *
     10  * Redistribution and use in source and binary forms, with or without
     11  * modification, are permitted provided that the following conditions
     12  * are met:
     13  * 1. Redistributions of source code must retain the above copyright
     14  *    notice, this list of conditions and the following disclaimer.
     15  * 2. Redistributions in binary form must reproduce the above copyright
     16  *    notice, this list of conditions and the following disclaimer in the
     17  *    documentation and/or other materials provided with the distribution.
     18  *
     19  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29  * POSSIBILITY OF SUCH DAMAGE.
     30  */
     31 #include "iscsid_globals.h"
     32 
     33 #include <sys/socket.h>
     34 #include <netinet/in.h>
     35 #include <netinet/tcp.h>
     36 #include <netdb.h>
     37 
     38 
     39 /* Global node name (Initiator Name and Alias) */
     40 iscsid_set_node_name_req_t node_name;
     41 
     42 /* -------------------------------------------------------------------------- */
     43 
     44 /*
     45  * set_node_name:
     46  *    Handle set_node_name request. Copy names into our own buffers and
     47  *    set the driver's info as well.
     48  *
     49  *    Parameter:
     50  *          par         The request parameter
     51  *
     52  *    Returns: Status.
     53  */
     54 
     55 uint32_t
     56 set_node_name(iscsid_set_node_name_req_t * par)
     57 {
     58 	iscsi_set_node_name_parameters_t snp;
     59 
     60 	(void) memset(&snp, 0x0, sizeof(snp));
     61 	if (!par->InitiatorName[0])
     62 		return ISCSID_STATUS_NO_INITIATOR_NAME;
     63 
     64 	if (strlen((char *)par->InitiatorName) > ISCSI_STRING_LENGTH
     65 		|| strlen((char *)par->InitiatorAlias) > ISCSI_STRING_LENGTH)
     66 		return ISCSID_STATUS_PARAMETER_INVALID;
     67 
     68 	if (!par->InitiatorAlias[0])
     69 		gethostname((char *)node_name.InitiatorAlias, sizeof(node_name.InitiatorAlias));
     70 
     71 	node_name = *par;
     72 
     73 #ifdef ISCSI_DEBUG				/* DEBUG ONLY: Allow op without driver present */
     74 	if (driver < 0)
     75 		return ISCSID_STATUS_SUCCESS;
     76 #endif
     77 
     78 	strlcpy((char *)snp.InitiatorName, (char *)par->InitiatorName,
     79 		sizeof(snp.InitiatorName));
     80 	strlcpy((char *)snp.InitiatorAlias, (char *)par->InitiatorAlias,
     81 		sizeof(snp.InitiatorAlias));
     82 	memcpy(snp.ISID, par->ISID, 6);
     83 
     84 	DEB(10, ("Setting Node Name: %s (%s)\n",
     85 			 snp.InitiatorName, snp.InitiatorAlias));
     86 	(void)ioctl(driver, ISCSI_SET_NODE_NAME, &snp);
     87 	return snp.status;
     88 }
     89 
     90 
     91 /*
     92  * bind_socket:
     93  *    Bind socket to initiator portal.
     94  *
     95  *    Parameter:
     96  *       sock     The socket
     97  *       addr     The initiator portal address
     98  *
     99  *    Returns:
    100  *       TRUE on success, FALSE on error.
    101  */
    102 
    103 static int
    104 bind_socket(int sock, uint8_t * addr)
    105 {
    106 	struct sockaddr_in serverAddress;
    107 	struct hostent *host;
    108 
    109 	DEB(8, ("Binding to <%s>\n", addr));
    110 	(void) memset(&serverAddress, 0x0, sizeof(serverAddress));
    111 	host = gethostbyname((char *)addr);
    112 	if (host == NULL)
    113 		return FALSE;
    114 	if (host->h_length > (int)sizeof(serverAddress.sin_addr))
    115 		return FALSE;
    116 	serverAddress.sin_family = host->h_addrtype;
    117 	serverAddress.sin_port = 0;
    118 	serverAddress.sin_len = host->h_length;
    119 	memcpy(&serverAddress.sin_addr, host->h_addr_list[0], host->h_length);
    120 
    121 	return bind(sock, (struct sockaddr *)(void *)&serverAddress,
    122 				(socklen_t)sizeof(serverAddress)) >= 0;
    123 }
    124 
    125 
    126 /* -------------------------------------------------------------------------- */
    127 
    128 /*
    129  * find_free_portal:
    130  *    Find the Portal with the least number of connections.
    131  *
    132  *    Parameter:  the portal group
    133  *
    134  *    Returns:    The pointer to the first free portal (or NULL if none found)
    135  */
    136 
    137 static portal_t *
    138 find_free_portal(portal_group_t * group)
    139 {
    140 	portal_t *curr, *m;
    141 	uint32_t n;
    142 
    143 	if ((curr = TAILQ_FIRST(&group->portals)) == NULL)
    144 		return NULL;
    145 
    146 	m = curr;
    147 	n = curr->active_connections;
    148 
    149 	while ((curr = TAILQ_NEXT(curr, group_list)) != NULL)
    150 		if (curr->active_connections < n) {
    151 			m = curr;
    152 			n = curr->active_connections;
    153 		}
    154 
    155 	return m;
    156 }
    157 
    158 
    159 /*
    160  * make_connection:
    161  *    Common routine for login and add_connection. Creates the connection
    162  *    structure, connects the socket, and executes the login.
    163  *
    164  *    Parameter:
    165  *          sess        The associated session. NULL for a send_targets request.
    166  *          req         The request parameters. NULL for send_targets.
    167  *          res         The response buffer. For SendTargets, only the status
    168  *                      is set. For a "real" login, the login response
    169  *                      is filled in.
    170  *          stid        Send target request only, else NULL. Pointer to uint32:
    171  *                         On Input, contains send target ID
    172  *                         On Output, receives session ID
    173  *
    174  *    Returns:    The connection structure on successful login, else NULL.
    175  *
    176  *    NOTE: Session list must be locked on entry.
    177  */
    178 
    179 static connection_t *
    180 make_connection(session_t * sess, iscsid_login_req_t * req,
    181 				iscsid_response_t * res, uint32_t * stid)
    182 {
    183 	connection_t *conn;
    184 	iscsi_login_parameters_t loginp;
    185 	int sock;
    186 	int ret;
    187 	int yes = 1;
    188 	target_t *target;
    189 	portal_t *portal = NULL;
    190 	iscsi_portal_address_t *addr;
    191 	struct sockaddr_in serverAddress;
    192 	struct hostent *host;
    193 	initiator_t *init;
    194 
    195 	DEB(9, ("Make Connection sess=%p, req=%p, res=%p, stid=%p\n",
    196 			 sess, req, res, stid));
    197 	(void) memset(&loginp, 0x0, sizeof(loginp));
    198 	(void) memset(&serverAddress, 0x0, sizeof(serverAddress));
    199 
    200 	/* find the target portal */
    201 	if (stid != NULL) {
    202 		send_target_t *starget;
    203 
    204 		if ((starget = find_send_target_id(*stid)) == NULL) {
    205 			res->status = ISCSID_STATUS_INVALID_TARGET_ID;
    206 			return NULL;
    207 		}
    208 		addr = &starget->addr;
    209 		target = (target_t *)(void *)starget;
    210 	} else {
    211 		if (NO_ID(&req->portal_id)
    212 			|| (portal = find_portal(&req->portal_id)) == NULL) {
    213 			portal_group_t *group;
    214 
    215 			/* if no ID was specified, use target from existing session */
    216 			if (NO_ID(&req->portal_id)) {
    217 				if (!sess->num_connections ||
    218 					((target = find_target_id(TARGET_LIST,
    219 					sess->target.sid.id)) == NULL)) {
    220 					res->status = ISCSID_STATUS_INVALID_PORTAL_ID;
    221 					return NULL;
    222 				}
    223 			}
    224 			/* if a target was given instead, use it */
    225 			else if ((target =
    226 							  find_target(TARGET_LIST, &req->portal_id)) == NULL) {
    227 				res->status = ISCSID_STATUS_INVALID_PORTAL_ID;
    228 				return NULL;
    229 			}
    230 			/* now get from target to portal - if this is the first connection, */
    231 			/* just use the first portal group. */
    232 			if (!sess->num_connections) {
    233 				group = TAILQ_FIRST(&target->group_list);
    234 			}
    235 			/* if it's a second connection, use an available portal in the same */
    236 			/* portal group */
    237 			else {
    238 				conn = (connection_t *)(void *)
    239 				    TAILQ_FIRST(&sess->connections);
    240 
    241 				if (conn == NULL ||
    242 					(portal = find_portal_id(conn->portal.sid.id)) == NULL) {
    243 					res->status = ISCSID_STATUS_INVALID_PORTAL_ID;
    244 					return NULL;
    245 				}
    246 				group = portal->group;
    247 			}
    248 
    249 			if ((portal = find_free_portal(group)) == NULL) {
    250 				res->status = ISCSID_STATUS_INVALID_PORTAL_ID;
    251 				return NULL;
    252 			}
    253 			DEB(1, ("find_free_portal returns pid=%d\n", portal->entry.sid.id));
    254 		} else
    255 			target = portal->target;
    256 
    257 		addr = &portal->addr;
    258 
    259 		/* symbolic name for connection? check for duplicates */
    260 		if (req->sym_name[0]) {
    261 			void *p;
    262 
    263 			if (sess->num_connections)
    264 				p = find_connection_name(sess, req->sym_name);
    265 			else
    266 				p = find_session_name(req->sym_name);
    267 			if (p) {
    268 				res->status = ISCSID_STATUS_DUPLICATE_NAME;
    269 				return NULL;
    270 			}
    271 		}
    272 	}
    273 
    274 	if (req != NULL && !NO_ID(&req->initiator_id)) {
    275 		if ((init = find_initiator(&req->initiator_id)) == NULL) {
    276 			res->status = ISCSID_STATUS_INVALID_INITIATOR_ID;
    277 			return NULL;
    278 		}
    279 	} else
    280 		init = select_initiator();
    281 
    282 	/* translate target address */
    283 	DEB(8, ("Connecting to <%s>, port %d\n", addr->address, addr->port));
    284 
    285 	host = gethostbyname((char *)addr->address);
    286 	if (host == NULL) {
    287 		switch (h_errno) {
    288 		case HOST_NOT_FOUND:
    289 			res->status = ISCSID_STATUS_HOST_NOT_FOUND;
    290 			break;
    291 		case TRY_AGAIN:
    292 			res->status = ISCSID_STATUS_HOST_TRY_AGAIN;
    293 			break;
    294 		default:
    295 			res->status = ISCSID_STATUS_HOST_ERROR;
    296 			break;
    297 		}
    298 		return NULL;
    299 	}
    300 	if (host->h_length > (int)sizeof(serverAddress.sin_addr)) {
    301 		res->status = ISCSID_STATUS_HOST_ERROR;
    302 		return NULL;
    303 	}
    304 	DEB(8, ("Gethostbyname OK, addrtype %d, len %d, addr %x\n",
    305 			host->h_addrtype, host->h_length, *((int *) host->h_addr_list[0])));
    306 	serverAddress.sin_family = host->h_addrtype;
    307 	serverAddress.sin_port = htons((addr->port)
    308 		? addr->port : ISCSI_DEFAULT_PORT);
    309 	serverAddress.sin_len = host->h_length;
    310 	memcpy(&serverAddress.sin_addr, host->h_addr_list[0], host->h_length);
    311 
    312 	/* alloc the connection structure */
    313 	conn = calloc(1, sizeof(*conn));
    314 	if (conn == NULL) {
    315 		res->status = ISCSID_STATUS_NO_RESOURCES;
    316 		return NULL;
    317 	}
    318 	/* create and connect the socket */
    319 	sock = socket(AF_INET, SOCK_STREAM, 0);
    320 	if (sock < 0) {
    321 		free(conn);
    322 		res->status = ISCSID_STATUS_SOCKET_ERROR;
    323 		return NULL;
    324 	}
    325 
    326 	if (init) {
    327 		if (!bind_socket(sock, init->address)) {
    328 			close(sock);
    329 			free(conn);
    330 			res->status = ISCSID_STATUS_INITIATOR_BIND_ERROR;
    331 			return NULL;
    332 		}
    333 	}
    334 
    335 	DEB(8, ("Connecting socket\n"));
    336 	if (connect(sock, (struct sockaddr *)(void *)&serverAddress,
    337 		(socklen_t)sizeof(serverAddress)) < 0) {
    338 		close(sock);
    339 		free(conn);
    340 		res->status = ISCSID_STATUS_CONNECT_ERROR;
    341 		DEB(1, ("Connecting to socket failed (error %d), returning %d\n",
    342 				errno, res->status));
    343 		return NULL;
    344 	}
    345 	/* speed up socket processing */
    346 	setsockopt(sock, IPPROTO_TCP, TCP_NODELAY, &yes, (socklen_t)sizeof(yes));
    347 
    348 	/* setup login parameter structure */
    349 	loginp.socket = sock;
    350 	if (target->TargetName[0]) {
    351 		loginp.is_present.TargetName = 1;
    352 		loginp.TargetName = target->TargetName;
    353 	}
    354 	if (target->options.is_present.MaxConnections) {
    355 		loginp.is_present.MaxConnections = 1;
    356 		loginp.MaxConnections = target->options.MaxConnections;
    357 	}
    358 	if (target->options.is_present.DataDigest) {
    359 		loginp.is_present.DataDigest = 1;
    360 		loginp.DataDigest = target->options.DataDigest;
    361 	}
    362 	if (target->options.is_present.HeaderDigest) {
    363 		loginp.is_present.HeaderDigest = 1;
    364 		loginp.HeaderDigest = target->options.HeaderDigest;
    365 	}
    366 	if (target->options.is_present.DefaultTime2Retain) {
    367 		loginp.is_present.DefaultTime2Retain = 1;
    368 		loginp.DefaultTime2Retain = target->options.DefaultTime2Retain;
    369 	}
    370 	if (target->options.is_present.DefaultTime2Wait) {
    371 		loginp.is_present.DefaultTime2Wait = 1;
    372 		loginp.DefaultTime2Wait = target->options.DefaultTime2Wait;
    373 	}
    374 	if (target->options.is_present.ErrorRecoveryLevel) {
    375 		loginp.is_present.ErrorRecoveryLevel = 1;
    376 		loginp.ErrorRecoveryLevel = target->options.ErrorRecoveryLevel;
    377 	}
    378 	if (target->options.is_present.MaxRecvDataSegmentLength) {
    379 		loginp.is_present.MaxRecvDataSegmentLength = 1;
    380 		loginp.MaxRecvDataSegmentLength =
    381 			target->options.MaxRecvDataSegmentLength;
    382 	}
    383 	if (target->auth.auth_info.auth_number) {
    384 		loginp.is_present.auth_info = 1;
    385 		loginp.auth_info = target->auth.auth_info;
    386 		if (target->auth.password[0]) {
    387 			loginp.is_present.password = 1;
    388 			loginp.password = target->auth.password;
    389 		}
    390 		if (target->auth.target_password[0]) {
    391 			loginp.is_present.target_password = 1;
    392 			loginp.target_password = target->auth.target_password;
    393 		}
    394 		if (target->auth.user_name[0]) {
    395 			loginp.is_present.user_name = 1;
    396 			loginp.user_name = target->auth.user_name;
    397 		}
    398 	}
    399 	loginp.is_present.TargetAlias = 1;
    400 	loginp.TargetAlias = target->TargetAlias;
    401 
    402 	if (portal != NULL) {
    403 		/* override general target options with portal options (if specified) */
    404 		if (portal->options.is_present.DataDigest) {
    405 			loginp.is_present.DataDigest = 1;
    406 			loginp.DataDigest = portal->options.DataDigest;
    407 		}
    408 		if (portal->options.is_present.HeaderDigest) {
    409 			loginp.is_present.HeaderDigest = 1;
    410 			loginp.HeaderDigest = portal->options.HeaderDigest;
    411 		}
    412 		if (portal->options.is_present.MaxRecvDataSegmentLength) {
    413 			loginp.is_present.MaxRecvDataSegmentLength = 1;
    414 			loginp.MaxRecvDataSegmentLength =
    415 				portal->options.MaxRecvDataSegmentLength;
    416 		}
    417 	}
    418 
    419 	if (req != NULL) {
    420 		loginp.session_id = get_id(&list[SESSION_LIST].list, &req->session_id);
    421 		loginp.login_type = req->login_type;
    422 	} else
    423 		loginp.login_type = ISCSI_LOGINTYPE_DISCOVERY;
    424 
    425 	DEB(5, ("Calling Login...\n"));
    426 
    427 	ret = ioctl(driver, (sess != NULL && sess->num_connections)
    428 				? ISCSI_ADD_CONNECTION : ISCSI_LOGIN, &loginp);
    429 
    430 	res->status = loginp.status;
    431 
    432 	if (ret)
    433 		close(sock);
    434 
    435 	if (ret || loginp.status) {
    436 		free(conn);
    437 		if (!res->status)
    438 			res->status = ISCSID_STATUS_GENERAL_ERROR;
    439 		return NULL;
    440 	}
    441 	/* connection established! link connection into session and return IDs */
    442 
    443 	conn->loginp = loginp;
    444 	conn->entry.sid.id = loginp.connection_id;
    445 	if (req != NULL) {
    446 		strlcpy((char *)conn->entry.sid.name, (char *)req->sym_name,
    447 			sizeof(conn->entry.sid.name));
    448 	}
    449 
    450 	/*
    451 	   Copy important target information
    452 	 */
    453 	conn->target.sid = target->entry.sid;
    454 	strlcpy((char *)conn->target.TargetName, (char *)target->TargetName,
    455 		sizeof(conn->target.TargetName));
    456 	strlcpy((char *)conn->target.TargetAlias, (char *)target->TargetAlias,
    457 		sizeof(conn->target.TargetAlias));
    458 	conn->target.options = target->options;
    459 	conn->target.auth = target->auth;
    460 	conn->portal.addr = *addr;
    461 
    462 	conn->session = sess;
    463 
    464 	if (stid == NULL) {
    465 		iscsid_login_rsp_t *rsp = (iscsid_login_rsp_t *)(void *)
    466 		    res->parameter;
    467 
    468 		sess->entry.sid.id = loginp.session_id;
    469 		TAILQ_INSERT_TAIL(&sess->connections, &conn->entry, link);
    470 		sess->num_connections++;
    471 
    472 		res->parameter_length = sizeof(*rsp);
    473 		rsp->connection_id = conn->entry.sid;
    474 		rsp->session_id = sess->entry.sid;
    475 
    476 		if (init != NULL) {
    477 			conn->initiator_id = init->entry.sid.id;
    478 			init->active_connections++;
    479 		}
    480 	} else
    481 		*stid = loginp.session_id;
    482 
    483 	/*
    484 	   Copy important portal information
    485 	 */
    486 	if (portal != NULL) {
    487 		conn->portal.sid = portal->entry.sid;
    488 		portal->active_connections++;
    489 	}
    490 
    491 	return conn;
    492 }
    493 
    494 
    495 /*
    496  * event_recover_connection:
    497  *    Handle RECOVER_CONNECTION event: Attempt to re-establish connection.
    498  *
    499  *    Parameter:
    500  *          sid         Session ID
    501  *          cid         Connection ID
    502  */
    503 
    504 static void
    505 event_recover_connection(uint32_t sid, uint32_t cid)
    506 {
    507 	int sock, ret;
    508 	int yes = 1;
    509 	session_t *sess;
    510 	connection_t *conn;
    511 	portal_t *portal;
    512 	initiator_t *init;
    513 	iscsi_portal_address_t *addr;
    514 	struct sockaddr_in serverAddress;
    515 	struct hostent *host;
    516 
    517 	DEB(1, ("Event_Recover_Connection sid=%d, cid=%d\n", sid, cid));
    518 	(void) memset(&serverAddress, 0x0, sizeof(serverAddress));
    519 
    520 	LOCK_SESSIONS;
    521 
    522 	sess = find_session_id(sid);
    523 	if (sess == NULL) {
    524 		UNLOCK_SESSIONS;
    525 		return;
    526 	}
    527 
    528 	conn = find_connection_id(sess, cid);
    529 	if (conn == NULL) {
    530 		UNLOCK_SESSIONS;
    531 		return;
    532 	}
    533 
    534 	UNLOCK_SESSIONS;
    535 
    536 	conn->loginp.status = ISCSI_STATUS_CONNECTION_FAILED;
    537 
    538 	/* If we can't find the portal to connect to, abort. */
    539 
    540 	if ((portal = find_portal_id(conn->portal.sid.id)) == NULL)
    541 		return;
    542 
    543 	init = find_initiator_id(conn->initiator_id);
    544 	addr = &portal->addr;
    545 	conn->portal.addr = *addr;
    546 
    547 	/* translate target address */
    548 	DEB(1, ("Event_Recover_Connection Connecting to <%s>, port %d\n",
    549 			addr->address, addr->port));
    550 
    551 	if ((host = gethostbyname((char *)addr->address)) == NULL) {
    552 		DEB(1, ("GetHostByName failed (error %d)\n", h_errno));
    553 		return;
    554 	}
    555 	if (host->h_length > (int)sizeof(serverAddress.sin_addr)) {
    556 		DEB(1, ("Host address length invalid (%d)\n", host->h_length));
    557 		return;
    558 	}
    559 
    560 	serverAddress.sin_family = host->h_addrtype;
    561 	serverAddress.sin_port = htons((addr->port)
    562 									? addr->port : ISCSI_DEFAULT_PORT);
    563 	serverAddress.sin_len = host->h_length;
    564 	memcpy(&serverAddress.sin_addr, host->h_addr_list[0], host->h_length);
    565 
    566 	/* create and connect the socket */
    567 	sock = socket(AF_INET, SOCK_STREAM, 0);
    568 	if (sock < 0) {
    569 		DEB(1, ("Creating socket failed (error %d)\n", errno));
    570 		return;
    571 	}
    572 
    573 	DEB(1, ("recover_connection: Socket = %d\n", sock));
    574 
    575 	if (init) {
    576 		if (!bind_socket(sock, init->address)) {
    577 			DEB(1, ("Binding to interface failed (error %d)\n", errno));
    578 			close(sock);
    579 			return;
    580 		}
    581 	}
    582 
    583 	if (connect(sock, (struct sockaddr *)(void *)&serverAddress,
    584 		(socklen_t)sizeof(serverAddress)) < 0) {
    585 		DEB(1, ("Connecting to socket failed (error %d)\n", errno));
    586 		close(sock);
    587 		return;
    588 	}
    589 	/* speed up socket processing */
    590 	setsockopt(sock, IPPROTO_TCP, TCP_NODELAY, &yes, (socklen_t)sizeof(yes));
    591 
    592 	conn->loginp.socket = sock;
    593 	conn->loginp.status = 0;
    594 	ret = ioctl(driver, ISCSI_RESTORE_CONNECTION, &conn->loginp);
    595 
    596 	if (ret)
    597 		close(sock);
    598 }
    599 
    600 
    601 /*
    602  * login:
    603  *    Handle LOGIN request: Log into given portal. Create session, then
    604  *    let make_connection do the rest.
    605  *
    606  *    Parameter:
    607  *          req         The request parameters
    608  *          res         The response buffer
    609  */
    610 
    611 void
    612 login(iscsid_login_req_t * req, iscsid_response_t * res)
    613 {
    614 	session_t *sess;
    615 	connection_t *conn;
    616 
    617 	sess = calloc(1, sizeof(*sess));
    618 	if (sess == NULL) {
    619 		res->status = ISCSID_STATUS_NO_RESOURCES;
    620 		return;
    621 	}
    622 	TAILQ_INIT(&sess->connections);
    623 	strlcpy((char *)sess->entry.sid.name, (char *)req->sym_name,
    624 			sizeof(sess->entry.sid.name));
    625 
    626 	LOCK_SESSIONS;
    627 	conn = make_connection(sess, req, res, 0);
    628 
    629 	if (conn == NULL)
    630 		free(sess);
    631 	else {
    632 		sess->target = conn->target;
    633 		TAILQ_INSERT_TAIL(&list[SESSION_LIST].list, &sess->entry, link);
    634 		list[SESSION_LIST].num_entries++;
    635 	}
    636 	UNLOCK_SESSIONS;
    637 }
    638 
    639 
    640 /*
    641  * add_connection:
    642  *    Handle ADD_CONNECTION request: Log secondary connection into given portal.
    643  *    Find the session, then let make_connection do the rest.
    644  *
    645  *    Parameter:
    646  *          req         The request parameters
    647  *          res         The response buffer
    648  */
    649 
    650 void
    651 add_connection(iscsid_login_req_t * req, iscsid_response_t * res)
    652 {
    653 	session_t *sess;
    654 
    655 	LOCK_SESSIONS;
    656 	sess = find_session(&req->session_id);
    657 	if (sess == NULL) {
    658 		UNLOCK_SESSIONS;
    659 		res->status = ISCSID_STATUS_INVALID_SESSION_ID;
    660 		return;
    661 	}
    662 
    663 	make_connection(sess, req, res, 0);
    664 	UNLOCK_SESSIONS;
    665 }
    666 
    667 
    668 /*
    669  * logout:
    670  *    Handle LOGOUT request: Log out the given session.
    671  *
    672  *    Parameter:
    673  *          req         The request parameters
    674  *
    675  *    Returns: Response status
    676  */
    677 
    678 uint32_t
    679 logout(iscsid_sym_id_t * req)
    680 {
    681 	iscsi_logout_parameters_t logoutp;
    682 	session_t *sess;
    683 	int ret;
    684 
    685 	(void) memset(&logoutp, 0x0, sizeof(logoutp));
    686 	LOCK_SESSIONS;
    687 	sess = find_session(req);
    688 	if (sess == NULL) {
    689 		UNLOCK_SESSIONS;
    690 		return ISCSID_STATUS_INVALID_SESSION_ID;
    691 	}
    692 
    693 	logoutp.session_id = sess->entry.sid.id;
    694 	UNLOCK_SESSIONS;
    695 
    696 	ret = ioctl(driver, ISCSI_LOGOUT, &logoutp);
    697 	DEB(9, ("Logout returns %d, status = %d\n", ret, logoutp.status));
    698 
    699 	return logoutp.status;
    700 }
    701 
    702 
    703 /*
    704  * remove_connection:
    705  *    Handle REMOVE_CONNECTION request: Log out the given connection.
    706  *
    707  *    Parameter:
    708  *          req         The request parameters
    709  *
    710  *    Returns: Response status
    711  */
    712 
    713 uint32_t
    714 remove_connection(iscsid_remove_connection_req_t * req)
    715 {
    716 	iscsi_remove_parameters_t removep;
    717 	session_t *sess;
    718 	connection_t *conn;
    719 	int ret;
    720 
    721 	LOCK_SESSIONS;
    722 	sess = find_session(&req->session_id);
    723 	if (sess == NULL) {
    724 		UNLOCK_SESSIONS;
    725 		return ISCSID_STATUS_INVALID_SESSION_ID;
    726 	}
    727 	conn = find_connection(sess, &req->connection_id);
    728 	if (conn == NULL) {
    729 		UNLOCK_SESSIONS;
    730 		return ISCSID_STATUS_INVALID_CONNECTION_ID;
    731 	}
    732 
    733 	removep.session_id = sess->entry.sid.id;
    734 	removep.connection_id = conn->entry.sid.id;
    735 	UNLOCK_SESSIONS;
    736 
    737 	ret = ioctl(driver, ISCSI_REMOVE_CONNECTION, &removep);
    738 	DEB(9, ("Remove Connection returns %d, status=%d\n", ret, removep.status));
    739 
    740 	return removep.status;
    741 }
    742 
    743 /*
    744  * send_targets:
    745  *    Handle SEND_TARGETS request:
    746  *       First login with type = discovery.
    747  *       Then send the SendTargets iSCSI request to the target, which will
    748  *       return a list of target portals.
    749  *       Then logout.
    750  *
    751  *    Parameter:
    752  *          stid              The send target ID
    753  *          response_buffer   Pointer to pointer to buffer containing response
    754  *                            The response contains the list of the target
    755  *							  portals. The caller frees the buffer after it
    756  *							  is done with it.
    757  *          response_size     Pointer to variable which upon return will hold
    758  *							  the size of the response buffer.
    759  *
    760  *    Returns: Response status
    761  */
    762 
    763 uint32_t
    764 send_targets(uint32_t stid, uint8_t **response_buffer, uint32_t *response_size)
    765 {
    766 	iscsi_send_targets_parameters_t sendt;
    767 	iscsi_logout_parameters_t logoutp;
    768 	int ret;
    769 	connection_t *conn;
    770 	iscsid_response_t res;
    771 	uint32_t rc = ISCSID_STATUS_SUCCESS;
    772 
    773 	(void) memset(&sendt, 0x0, sizeof(sendt));
    774 	(void) memset(&logoutp, 0x0, sizeof(logoutp));
    775 	(void) memset(&res, 0x0, sizeof(res));
    776 	conn = make_connection(NULL, NULL, &res, &stid);
    777 	DEB(9, ("Make connection returns, status = %d\n", res.status));
    778 
    779 	if (conn == NULL)
    780 		return res.status;
    781 
    782 	sendt.session_id = stid;
    783 	sendt.response_buffer = NULL;
    784 	sendt.response_size = 0;
    785 	sendt.response_used = sendt.response_total = 0;
    786 	strlcpy((char *)sendt.key, "All", sizeof(sendt.key));
    787 
    788 	/*Call once to get the size of the buffer necessary */
    789 	ret = ioctl(driver, ISCSI_SEND_TARGETS, &sendt);
    790 
    791 	if (!ret && !sendt.status) {
    792 		/* Allocate buffer required and call again to retrieve data */
    793 		/* We allocate one extra byte so we can place a terminating 0 */
    794 		/* at the end of the buffer. */
    795 
    796 		sendt.response_size = sendt.response_total;
    797 		sendt.response_buffer = calloc(1, sendt.response_size + 1);
    798 		if (sendt.response_buffer == NULL)
    799 			rc = ISCSID_STATUS_NO_RESOURCES;
    800 		else {
    801 			ret = ioctl(driver, ISCSI_SEND_TARGETS, &sendt);
    802 			((uint8_t *)sendt.response_buffer)[sendt.response_size] = 0;
    803 
    804 			if (ret || sendt.status) {
    805 				free(sendt.response_buffer);
    806 				sendt.response_buffer = NULL;
    807 				sendt.response_used = 0;
    808 				if ((rc = sendt.status) == 0)
    809 					rc = ISCSID_STATUS_GENERAL_ERROR;
    810 			}
    811 		}
    812 	} else if ((rc = sendt.status) == 0)
    813 		rc = ISCSID_STATUS_GENERAL_ERROR;
    814 
    815 	*response_buffer = sendt.response_buffer;
    816 	*response_size = sendt.response_used;
    817 
    818 	logoutp.session_id = stid;
    819 	ret = ioctl(driver, ISCSI_LOGOUT, &logoutp);
    820 	/* ignore logout status */
    821 
    822 	free(conn);
    823 
    824 	return rc;
    825 }
    826 
    827 
    828 
    829 /*
    830  * get_version:
    831  *    Handle GET_VERSION request.
    832  *
    833  *    Returns: Filled get_version_rsp structure.
    834  */
    835 
    836 void
    837 get_version(iscsid_response_t ** prsp, int *prsp_temp)
    838 {
    839 	iscsid_response_t *rsp = *prsp;
    840 	iscsid_get_version_rsp_t *ver;
    841 	iscsi_get_version_parameters_t drv_ver;
    842 
    843 	rsp = make_rsp(sizeof(iscsid_get_version_rsp_t), prsp, prsp_temp);
    844 	if (rsp == NULL)
    845 		return;
    846 	ver = (iscsid_get_version_rsp_t *)(void *)rsp->parameter;
    847 
    848 	ver->interface_version = INTERFACE_VERSION;
    849 	ver->major = VERSION_MAJOR;
    850 	ver->minor = VERSION_MINOR;
    851 	strlcpy ((char *)ver->version_string, VERSION_STRING, sizeof(ver->version_string));
    852 
    853 #ifdef ISCSI_DEBUG				/* DEBUG ONLY: Allow op without driver present */
    854 	if (driver < 0)
    855 		return;
    856 #endif
    857 	ioctl(driver, ISCSI_GET_VERSION, &drv_ver);
    858 	ver->driver_interface_version = drv_ver.interface_version;
    859 	ver->driver_major = drv_ver.major;
    860 	ver->driver_minor = drv_ver.minor;
    861 	strlcpy ((char *)ver->driver_version_string, (char *)drv_ver.version_string,
    862 			 sizeof (ver->driver_version_string));
    863 }
    864 
    865 
    866 /* -------------------------------------------------------------------------- */
    867 
    868 iscsi_register_event_parameters_t event_reg;	/* registered event ID */
    869 
    870 
    871 /*
    872  * register_event_handler:
    873  *    Call driver to register the event handler.
    874  *
    875  *    Returns:
    876  *       TRUE on success.
    877  */
    878 
    879 boolean_t
    880 register_event_handler(void)
    881 {
    882 	ioctl(driver, ISCSI_REGISTER_EVENT, &event_reg);
    883 	return event_reg.event_id != 0;
    884 }
    885 
    886 
    887 /*
    888  * deregister_event_handler:
    889  *    Call driver to deregister the event handler. If the event handler thread
    890  *    is waiting for an event, this will wake it up and cause it to exit.
    891  */
    892 
    893 void
    894 deregister_event_handler(void)
    895 {
    896 	if (event_reg.event_id) {
    897 		ioctl(driver, ISCSI_DEREGISTER_EVENT, &event_reg);
    898 		event_reg.event_id = 0;
    899 	}
    900 }
    901 
    902 
    903 /*
    904  * event_handler:
    905  *    Event handler thread. Wait for the driver to generate an event and
    906  *    process it appropriately. Exits when the driver terminates or the
    907  *    handler is deregistered because the daemon is terminating.
    908  *
    909  *    Parameter:
    910  *          par         Not used.
    911  */
    912 
    913 void *
    914 /*ARGSUSED*/
    915 event_handler(void *par)
    916 {
    917 	iscsi_wait_event_parameters_t evtp;
    918 	int rc;
    919 
    920 	DEB(99, ("Event handler starts\n"));
    921 	(void) memset(&evtp, 0x0, sizeof(evtp));
    922 
    923 	evtp.event_id = event_reg.event_id;
    924 
    925 	do {
    926 		if (nothreads)
    927 			rc = ioctl(driver, ISCSI_POLL_EVENT, &evtp);
    928 		else
    929 			rc = ioctl(driver, ISCSI_WAIT_EVENT, &evtp);
    930 		if (rc || evtp.status)
    931 			break;
    932 
    933 		DEB(1, ("Got Event: kind %d, status %d, sid %d, cid %d, reason %d\n",
    934 				evtp.event_kind, evtp.status, evtp.session_id,
    935 				evtp.connection_id, evtp.reason));
    936 
    937 		switch (evtp.event_kind) {
    938 		case ISCSI_SESSION_TERMINATED:
    939 			event_kill_session(evtp.session_id);
    940 			break;
    941 
    942 		case ISCSI_CONNECTION_TERMINATED:
    943 			event_kill_connection(evtp.session_id, evtp.connection_id);
    944 			break;
    945 
    946 		case ISCSI_RECOVER_CONNECTION:
    947 			event_recover_connection(evtp.session_id, evtp.connection_id);
    948 			break;
    949 
    950 		default:
    951 			break;
    952 		}
    953 	} while (evtp.event_kind != ISCSI_DRIVER_TERMINATING);
    954 
    955 	if (nothreads && evtp.event_kind == ISCSI_DRIVER_TERMINATING)
    956 		exit_daemon();
    957 
    958 	return NULL;
    959 }
    960 
    961 #if 0
    962 /*
    963  * verify_connection:
    964  *    Verify that a specific connection still exists, delete it if not.
    965  *
    966  * Parameter:  The connection pointer.
    967  *
    968  * Returns:    The status returned by the driver.
    969  */
    970 
    971 uint32_t
    972 verify_connection(connection_t * conn)
    973 {
    974 	iscsi_conn_status_parameters_t req;
    975 	session_t *sess = conn->session;
    976 
    977 	req.connection_id = conn->entry.sid.id;
    978 	req.session_id = sess->entry.sid.id;
    979 
    980 	ioctl(driver, ISCSI_CONNECTION_STATUS, &req);
    981 
    982 	if (req.status) {
    983 		TAILQ_REMOVE(&sess->connections, &conn->entry, link);
    984 		sess->num_connections--;
    985 		free(conn);
    986 	}
    987 	DEB(9, ("Verify connection returns status %d\n", req.status));
    988 	return req.status;
    989 }
    990 
    991 #endif
    992