1 1.27 mlelstv /* $NetBSD: iscsi_rcv.c,v 1.27 2024/11/03 10:50:21 mlelstv Exp $ */ 2 1.1 agc 3 1.1 agc /*- 4 1.1 agc * Copyright (c) 2004,2005,2006,2011 The NetBSD Foundation, Inc. 5 1.1 agc * All rights reserved. 6 1.1 agc * 7 1.1 agc * This code is derived from software contributed to The NetBSD Foundation 8 1.1 agc * by Wasabi Systems, Inc. 9 1.1 agc * 10 1.1 agc * Redistribution and use in source and binary forms, with or without 11 1.1 agc * modification, are permitted provided that the following conditions 12 1.1 agc * are met: 13 1.1 agc * 1. Redistributions of source code must retain the above copyright 14 1.1 agc * notice, this list of conditions and the following disclaimer. 15 1.1 agc * 2. Redistributions in binary form must reproduce the above copyright 16 1.1 agc * notice, this list of conditions and the following disclaimer in the 17 1.1 agc * documentation and/or other materials provided with the distribution. 18 1.1 agc * 19 1.1 agc * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 20 1.1 agc * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 21 1.1 agc * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 22 1.1 agc * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 23 1.1 agc * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 24 1.1 agc * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 25 1.1 agc * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 26 1.1 agc * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 27 1.1 agc * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 28 1.1 agc * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 29 1.1 agc * POSSIBILITY OF SUCH DAMAGE. 30 1.1 agc */ 31 1.1 agc #include "iscsi_globals.h" 32 1.1 agc 33 1.1 agc #include <sys/file.h> 34 1.1 agc #include <sys/socket.h> 35 1.1 agc #include <sys/socketvar.h> 36 1.1 agc 37 1.1 agc /*****************************************************************************/ 38 1.1 agc 39 1.1 agc /* 40 1.1 agc * my_soo_read: 41 1.1 agc * Replacement for soo_read with flag handling. 42 1.1 agc * 43 1.1 agc * Parameter: 44 1.1 agc * conn The connection 45 1.1 agc * u The uio descriptor 46 1.1 agc * flags Read flags 47 1.1 agc * 48 1.1 agc * Returns: 0 on success, else 1 49 1.1 agc */ 50 1.1 agc 51 1.1 agc STATIC int 52 1.1 agc my_soo_read(connection_t *conn, struct uio *u, int flags) 53 1.1 agc { 54 1.26 mlelstv struct socket *so; 55 1.1 agc int ret; 56 1.1 agc #ifdef ISCSI_DEBUG 57 1.1 agc size_t resid = u->uio_resid; 58 1.1 agc #endif 59 1.1 agc 60 1.1 agc DEBC(conn, 99, ("soo_read req: %zu\n", resid)); 61 1.1 agc 62 1.26 mlelstv rw_enter(&conn->c_sock_rw, RW_READER); 63 1.26 mlelstv if (conn->c_sock == NULL) { 64 1.26 mlelstv ret = EIO; 65 1.26 mlelstv } else { 66 1.26 mlelstv so = conn->c_sock->f_socket; 67 1.26 mlelstv if (flags & MSG_WAITALL) { 68 1.26 mlelstv flags &= ~MSG_WAITALL; 69 1.26 mlelstv do { 70 1.26 mlelstv int oresid = u->uio_resid; 71 1.26 mlelstv ret = (*so->so_receive)(so, NULL, u, 72 1.26 mlelstv NULL, NULL, &flags); 73 1.26 mlelstv if (!ret && u->uio_resid == oresid) 74 1.26 mlelstv break; 75 1.26 mlelstv } while (!ret && u->uio_resid > 0); 76 1.26 mlelstv } else { 77 1.26 mlelstv ret = (*so->so_receive)(so, NULL, u, 78 1.26 mlelstv NULL, NULL, &flags); 79 1.26 mlelstv } 80 1.26 mlelstv } 81 1.26 mlelstv 82 1.26 mlelstv rw_exit(&conn->c_sock_rw); 83 1.1 agc 84 1.1 agc if (ret || (flags != MSG_DONTWAIT && u->uio_resid)) { 85 1.13 mlelstv DEBC(conn, 1, ("Read failed (ret: %d, req: %zu, out: %zu)\n", 86 1.13 mlelstv ret, resid, u->uio_resid)); 87 1.26 mlelstv if (ret) 88 1.26 mlelstv handle_connection_error(conn, ISCSI_STATUS_SOCKET_ERROR, 89 1.26 mlelstv RECOVER_CONNECTION); 90 1.1 agc return 1; 91 1.1 agc } 92 1.1 agc return 0; 93 1.1 agc } 94 1.1 agc 95 1.1 agc 96 1.1 agc /* 97 1.1 agc * try_resynch_receive: 98 1.1 agc * Skip over everything in the socket's receive buffer, in the hope of 99 1.1 agc * ending up at the start of a new PDU. 100 1.1 agc * 101 1.1 agc * Parameter: 102 1.1 agc * conn The connection 103 1.1 agc */ 104 1.1 agc 105 1.1 agc STATIC void 106 1.1 agc try_resynch_receive(connection_t *conn) 107 1.1 agc { 108 1.1 agc uint8_t buffer[64]; 109 1.1 agc struct uio uio; 110 1.1 agc struct iovec io_vec; 111 1.1 agc int rc; 112 1.1 agc 113 1.1 agc uio.uio_rw = UIO_READ; 114 1.1 agc UIO_SETUP_SYSSPACE(&uio); 115 1.1 agc 116 1.1 agc do { 117 1.1 agc io_vec.iov_base = buffer; 118 1.1 agc uio.uio_iov = &io_vec; 119 1.1 agc uio.uio_iovcnt = 1; 120 1.1 agc uio.uio_resid = io_vec.iov_len = sizeof(buffer); 121 1.1 agc 122 1.1 agc rc = my_soo_read(conn, &uio, MSG_DONTWAIT); 123 1.1 agc DEBC(conn, 9, ("try_resynch_receive: rc = %d, resid = %zu\n", 124 1.1 agc rc, uio.uio_resid)); 125 1.1 agc } while (!rc && !uio.uio_resid); 126 1.1 agc } 127 1.1 agc 128 1.1 agc 129 1.1 agc /* 130 1.1 agc * ccb_from_itt 131 1.1 agc * Translate ITT into CCB pointer. 132 1.1 agc * 133 1.1 agc * Parameter: 134 1.1 agc * conn The connection 135 1.1 agc * itt The Initiator Task Tag 136 1.1 agc * 137 1.1 agc * Returns: 138 1.1 agc * Pointer to CCB, or NULL if ITT is not a valid CCB index. 139 1.1 agc */ 140 1.1 agc 141 1.1 agc STATIC ccb_t * 142 1.1 agc ccb_from_itt(connection_t *conn, uint32_t itt) 143 1.1 agc { 144 1.1 agc ccb_t *ccb; 145 1.1 agc int cidx; 146 1.1 agc 147 1.14 mlelstv if (itt == 0xffffffff) 148 1.14 mlelstv return NULL; 149 1.14 mlelstv 150 1.1 agc cidx = itt & 0xff; 151 1.18 mlelstv if (cidx >= CCBS_PER_SESSION) 152 1.1 agc return NULL; 153 1.18 mlelstv 154 1.24 christos ccb = &conn->c_session->s_ccb[cidx]; 155 1.18 mlelstv 156 1.24 christos if (ccb->ccb_ITT != itt) { 157 1.13 mlelstv DEBC(conn, 0, 158 1.13 mlelstv ("ccb_from_itt: received invalid CCB itt %08x != %08x\n", 159 1.24 christos itt, ccb->ccb_ITT)); 160 1.1 agc return NULL; 161 1.1 agc } 162 1.18 mlelstv 163 1.24 christos if (ccb->ccb_disp <= CCBDISP_BUSY) { 164 1.19 mlelstv DEBC(conn, 0, 165 1.19 mlelstv ("ccb_from_itt: received CCB with invalid disp %d\n", 166 1.24 christos ccb->ccb_disp)); 167 1.19 mlelstv return NULL; 168 1.19 mlelstv } 169 1.19 mlelstv 170 1.1 agc return ccb; 171 1.1 agc } 172 1.1 agc 173 1.1 agc 174 1.1 agc /* 175 1.1 agc * read_pdu_data: 176 1.1 agc * Initialize the uio structure for receiving everything after the 177 1.1 agc * header, including data (if present), and padding. Read the data. 178 1.1 agc * 179 1.1 agc * Parameter: 180 1.1 agc * pdu The PDU 181 1.1 agc * data Pointer to data (may be NULL for auto-allocation) 182 1.1 agc * offset The offset into the data pointer 183 1.1 agc * 184 1.1 agc * Returns: 0 on success 185 1.1 agc * 1 if an error occurs during read 186 1.1 agc * -1 if the data digest was incorrect (PDU must be ignored) 187 1.1 agc */ 188 1.1 agc 189 1.1 agc STATIC int 190 1.1 agc read_pdu_data(pdu_t *pdu, uint8_t *data, uint32_t offset) 191 1.1 agc { 192 1.1 agc static uint8_t pad_bytes[4]; 193 1.1 agc uint32_t len, digest; 194 1.1 agc struct uio *uio; 195 1.1 agc int i, pad; 196 1.24 christos connection_t *conn = pdu->pdu_connection; 197 1.1 agc 198 1.13 mlelstv DEB(15, ("read_pdu_data: data segment length = %d\n", 199 1.24 christos ntoh3(pdu->pdu_hdr.pduh_DataSegmentLength))); 200 1.24 christos if (!(len = ntoh3(pdu->pdu_hdr.pduh_DataSegmentLength))) { 201 1.1 agc return 0; 202 1.1 agc } 203 1.1 agc pad = len & 0x03; 204 1.1 agc if (pad) { 205 1.1 agc pad = 4 - pad; 206 1.1 agc } 207 1.11 mlelstv 208 1.11 mlelstv KASSERT(data != NULL || offset == 0); 209 1.1 agc 210 1.1 agc if (data == NULL) { 211 1.1 agc /* 212 1.1 agc * NOTE: Always allocate 2 extra bytes when reading temp data, 213 1.1 agc * since temp data is mostly used for received text, and we can 214 1.1 agc * make sure there's a double zero at the end of the data to mark EOF. 215 1.1 agc */ 216 1.1 agc if ((data = (uint8_t *) malloc(len + 2, M_TEMP, M_WAITOK)) == NULL) { 217 1.1 agc DEBOUT(("ran out of mem on receive\n")); 218 1.24 christos handle_connection_error(pdu->pdu_connection, 219 1.1 agc ISCSI_STATUS_NO_RESOURCES, LOGOUT_SESSION); 220 1.1 agc return 1; 221 1.1 agc } 222 1.24 christos pdu->pdu_temp_data = data; 223 1.24 christos pdu->pdu_temp_data_len = len; 224 1.1 agc } 225 1.1 agc 226 1.24 christos pdu->pdu_io_vec[0].iov_base = data + offset; 227 1.24 christos pdu->pdu_io_vec[0].iov_len = len; 228 1.1 agc 229 1.24 christos uio = &pdu->pdu_uio; 230 1.1 agc 231 1.24 christos uio->uio_iov = pdu->pdu_io_vec; 232 1.1 agc uio->uio_iovcnt = 1; 233 1.1 agc uio->uio_rw = UIO_READ; 234 1.1 agc uio->uio_resid = len; 235 1.1 agc UIO_SETUP_SYSSPACE(uio); 236 1.1 agc 237 1.1 agc if (pad) { 238 1.1 agc uio->uio_iovcnt++; 239 1.1 agc uio->uio_iov[1].iov_base = pad_bytes; 240 1.1 agc uio->uio_iov[1].iov_len = pad; 241 1.1 agc uio->uio_resid += pad; 242 1.1 agc } 243 1.1 agc 244 1.24 christos if (conn->c_DataDigest) { 245 1.1 agc i = uio->uio_iovcnt++; 246 1.24 christos pdu->pdu_io_vec[i].iov_base = &pdu->pdu_data_digest; 247 1.24 christos pdu->pdu_io_vec[i].iov_len = 4; 248 1.1 agc uio->uio_resid += 4; 249 1.1 agc } 250 1.1 agc 251 1.1 agc /* get the data */ 252 1.24 christos if (my_soo_read(conn, &pdu->pdu_uio, MSG_WAITALL) != 0) { 253 1.1 agc return 1; 254 1.1 agc } 255 1.24 christos if (conn->c_DataDigest) { 256 1.1 agc digest = gen_digest_2(data, len, pad_bytes, pad); 257 1.1 agc 258 1.24 christos if (digest != pdu->pdu_data_digest) { 259 1.1 agc DEBOUT(("Data Digest Error: comp = %08x, rx = %08x\n", 260 1.24 christos digest, pdu->pdu_data_digest)); 261 1.24 christos switch (pdu->pdu_hdr.pduh_Opcode & OPCODE_MASK) { 262 1.1 agc case TOP_SCSI_Response: 263 1.1 agc case TOP_Text_Response: 264 1.24 christos send_snack(pdu->pdu_connection, pdu, NULL, SNACK_STATUS_NAK); 265 1.1 agc break; 266 1.1 agc 267 1.1 agc case TOP_SCSI_Data_in: 268 1.24 christos send_snack(pdu->pdu_connection, pdu, NULL, SNACK_DATA_NAK); 269 1.1 agc break; 270 1.1 agc 271 1.1 agc default: 272 1.1 agc /* ignore all others */ 273 1.1 agc break; 274 1.1 agc } 275 1.1 agc return -1; 276 1.1 agc } 277 1.1 agc } 278 1.1 agc return 0; 279 1.1 agc } 280 1.1 agc 281 1.1 agc 282 1.1 agc /* 283 1.1 agc * collect_text_data 284 1.1 agc * Handle text continuation in login and text response PDUs 285 1.1 agc * 286 1.1 agc * Parameter: 287 1.1 agc * pdu The received PDU 288 1.1 agc * req_CCB The CCB associated with the original request 289 1.1 agc * 290 1.1 agc * Returns: -1 if continue flag is set 291 1.1 agc * 0 if text is complete 292 1.1 agc * +1 if an error occurred (out of resources) 293 1.1 agc */ 294 1.1 agc STATIC int 295 1.1 agc collect_text_data(pdu_t *pdu, ccb_t *req_ccb) 296 1.1 agc { 297 1.1 agc 298 1.24 christos if (req_ccb->ccb_text_data) { 299 1.1 agc int nlen; 300 1.1 agc uint8_t *newp; 301 1.1 agc 302 1.24 christos nlen = req_ccb->ccb_text_len + pdu->pdu_temp_data_len; 303 1.1 agc /* Note: allocate extra 2 bytes for text terminator */ 304 1.1 agc if ((newp = malloc(nlen + 2, M_TEMP, M_WAITOK)) == NULL) { 305 1.4 mlelstv DEBOUT(("Collect Text Data: Out of Memory, ccb = %p\n", req_ccb)); 306 1.24 christos req_ccb->ccb_status = ISCSI_STATUS_NO_RESOURCES; 307 1.4 mlelstv /* XXX where is CCB freed? */ 308 1.1 agc return 1; 309 1.1 agc } 310 1.24 christos memcpy(newp, req_ccb->ccb_text_data, req_ccb->ccb_text_len); 311 1.24 christos memcpy(&newp[req_ccb->ccb_text_len], pdu->pdu_temp_data, pdu->pdu_temp_data_len); 312 1.1 agc 313 1.24 christos free(req_ccb->ccb_text_data, M_TEMP); 314 1.24 christos free(pdu->pdu_temp_data, M_TEMP); 315 1.1 agc 316 1.24 christos req_ccb->ccb_text_data = NULL; 317 1.24 christos pdu->pdu_temp_data = newp; 318 1.24 christos pdu->pdu_temp_data_len = nlen; 319 1.1 agc } 320 1.1 agc 321 1.24 christos if (pdu->pdu_hdr.pduh_Flags & FLAG_CONTINUE) { 322 1.24 christos req_ccb->ccb_text_data = pdu->pdu_temp_data; 323 1.24 christos req_ccb->ccb_text_len = pdu->pdu_temp_data_len; 324 1.24 christos pdu->pdu_temp_data = NULL; 325 1.1 agc 326 1.24 christos acknowledge_text(req_ccb->ccb_connection, pdu, req_ccb); 327 1.1 agc return -1; 328 1.1 agc } 329 1.1 agc return 0; 330 1.1 agc } 331 1.1 agc 332 1.1 agc 333 1.1 agc /* 334 1.1 agc * check_StatSN 335 1.1 agc * Check received vs. expected StatSN 336 1.1 agc * 337 1.1 agc * Parameter: 338 1.1 agc * conn The connection 339 1.1 agc * nw_sn The received StatSN in network byte order 340 1.1 agc * ack Acknowledge this SN if TRUE 341 1.1 agc */ 342 1.1 agc 343 1.1 agc STATIC int 344 1.1 agc check_StatSN(connection_t *conn, uint32_t nw_sn, bool ack) 345 1.1 agc { 346 1.1 agc int rc; 347 1.1 agc uint32_t sn = ntohl(nw_sn); 348 1.1 agc 349 1.24 christos rc = add_sernum(&conn->c_StatSN_buf, sn); 350 1.1 agc 351 1.1 agc if (ack) 352 1.24 christos ack_sernum(&conn->c_StatSN_buf, sn); 353 1.1 agc 354 1.1 agc if (rc != 1) { 355 1.3 mlelstv if (rc == 0) { 356 1.3 mlelstv DEBOUT(("Duplicate PDU, ExpSN %d, Recvd: %d\n", 357 1.24 christos conn->c_StatSN_buf.ExpSN, sn)); 358 1.1 agc return -1; 359 1.3 mlelstv } 360 1.1 agc 361 1.1 agc if (rc < 0) { 362 1.1 agc DEBOUT(("Excessive outstanding Status PDUs, ExpSN %d, Recvd: %d\n", 363 1.24 christos conn->c_StatSN_buf.ExpSN, sn)); 364 1.1 agc handle_connection_error(conn, ISCSI_STATUS_PDUS_LOST, 365 1.1 agc RECOVER_CONNECTION); 366 1.1 agc return rc; 367 1.1 agc } 368 1.1 agc 369 1.1 agc DEBOUT(("Missing Status PDUs: First %d, num: %d\n", 370 1.24 christos conn->c_StatSN_buf.ExpSN, rc - 1)); 371 1.24 christos if (conn->c_state == ST_FULL_FEATURE && 372 1.24 christos conn->c_session->s_ErrorRecoveryLevel) { 373 1.1 agc snack_missing(conn, NULL, SNACK_STATUS_NAK, 374 1.24 christos conn->c_StatSN_buf.ExpSN, rc - 1); 375 1.1 agc } else { 376 1.1 agc DEBOUT(("StatSN killing connection (State = %d, " 377 1.1 agc "ErrorRecoveryLevel = %d)\n", 378 1.24 christos conn->c_state, conn->c_session->s_ErrorRecoveryLevel)); 379 1.1 agc handle_connection_error(conn, ISCSI_STATUS_PDUS_LOST, 380 1.1 agc RECOVER_CONNECTION); 381 1.1 agc return -1; 382 1.1 agc } 383 1.1 agc } 384 1.1 agc return 0; 385 1.1 agc } 386 1.1 agc 387 1.1 agc 388 1.1 agc /* 389 1.1 agc * check_CmdSN 390 1.1 agc * Check received vs. expected CmdSN 391 1.1 agc * 392 1.1 agc * Parameter: 393 1.1 agc * conn The connection 394 1.1 agc * nw_sn The received ExpCmdSN in network byte order 395 1.1 agc */ 396 1.1 agc 397 1.1 agc STATIC void 398 1.1 agc check_CmdSN(connection_t *conn, uint32_t nw_sn) 399 1.1 agc { 400 1.1 agc uint32_t sn = ntohl(nw_sn); 401 1.1 agc ccb_t *ccb, *nxt; 402 1.1 agc 403 1.24 christos TAILQ_FOREACH_SAFE(ccb, &conn->c_ccbs_waiting, ccb_chain, nxt) { 404 1.1 agc DEBC(conn, 10, 405 1.1 agc ("CheckCmdSN - CmdSN=%d, ExpCmdSn=%d, waiting=%p, flags=%x\n", 406 1.24 christos ccb->ccb_CmdSN, sn, ccb->ccb_pdu_waiting, ccb->ccb_flags)); 407 1.24 christos if (ccb->ccb_pdu_waiting != NULL && 408 1.24 christos sn_a_lt_b(sn, ccb->ccb_CmdSN) && 409 1.24 christos !(ccb->ccb_flags & CCBF_GOT_RSP)) { 410 1.1 agc DEBC(conn, 1, ("CheckCmdSN resending - CmdSN=%d, ExpCmdSn=%d\n", 411 1.24 christos ccb->ccb_CmdSN, sn)); 412 1.1 agc 413 1.24 christos ccb->ccb_total_tries++; 414 1.1 agc 415 1.24 christos if (++ccb->ccb_num_timeouts > MAX_CCB_TIMEOUTS || 416 1.24 christos ccb->ccb_total_tries > MAX_CCB_TRIES) { 417 1.15 mlelstv handle_connection_error(conn, 418 1.15 mlelstv ISCSI_STATUS_TIMEOUT, 419 1.24 christos (ccb->ccb_total_tries <= MAX_CCB_TRIES) 420 1.15 mlelstv ? RECOVER_CONNECTION 421 1.15 mlelstv : LOGOUT_CONNECTION); 422 1.1 agc break; 423 1.1 agc } else { 424 1.1 agc resend_pdu(ccb); 425 1.1 agc } 426 1.1 agc } 427 1.15 mlelstv 428 1.15 mlelstv /* 429 1.15 mlelstv * The target can respond to a NOP-In before subsequent 430 1.15 mlelstv * commands are processed. So our CmdSN can exceed the 431 1.15 mlelstv * returned ExpCmdSN by the number of commands that are 432 1.15 mlelstv * in flight. Adjust the expected value accordingly. 433 1.15 mlelstv */ 434 1.15 mlelstv sn++; 435 1.1 agc } 436 1.1 agc } 437 1.1 agc 438 1.1 agc 439 1.1 agc /* 440 1.1 agc * receive_login_pdu 441 1.1 agc * Handle receipt of a login response PDU. 442 1.1 agc * 443 1.1 agc * Parameter: 444 1.1 agc * conn The connection 445 1.1 agc * pdu The PDU 446 1.1 agc * req_CCB The CCB associated with the original request (if any) 447 1.1 agc */ 448 1.1 agc 449 1.1 agc STATIC int 450 1.1 agc receive_login_pdu(connection_t *conn, pdu_t *pdu, ccb_t *req_ccb) 451 1.1 agc { 452 1.1 agc int rc; 453 1.1 agc 454 1.3 mlelstv DEBC(conn, 9, ("Received Login Response PDU, op=%x, flags=%x, sn=%u\n", 455 1.24 christos pdu->pdu_hdr.pduh_Opcode, pdu->pdu_hdr.pduh_Flags, 456 1.24 christos ntohl(pdu->pdu_hdr.pduh_p.login_rsp.StatSN))); 457 1.1 agc 458 1.1 agc if (req_ccb == NULL) { 459 1.1 agc /* Duplicate?? */ 460 1.1 agc DEBOUT(("Received duplicate login response (no associated CCB)\n")); 461 1.1 agc return -1; 462 1.1 agc } 463 1.1 agc 464 1.24 christos if (pdu->pdu_hdr.pduh_p.login_rsp.StatusClass) { 465 1.3 mlelstv DEBC(conn, 1, ("Login problem - Class = %x, Detail = %x\n", 466 1.24 christos pdu->pdu_hdr.pduh_p.login_rsp.StatusClass, 467 1.24 christos pdu->pdu_hdr.pduh_p.login_rsp.StatusDetail)); 468 1.4 mlelstv wake_ccb(req_ccb, ISCSI_STATUS_LOGIN_FAILED); 469 1.3 mlelstv return 0; 470 1.3 mlelstv } 471 1.3 mlelstv 472 1.24 christos if (!conn->c_StatSN_buf.next_sn) { 473 1.24 christos conn->c_StatSN_buf.next_sn = conn->c_StatSN_buf.ExpSN = 474 1.24 christos ntohl(pdu->pdu_hdr.pduh_p.login_rsp.StatSN) + 1; 475 1.24 christos } else if (check_StatSN(conn, pdu->pdu_hdr.pduh_p.login_rsp.StatSN, TRUE)) 476 1.1 agc return -1; 477 1.1 agc 478 1.24 christos if (pdu->pdu_temp_data_len) { 479 1.3 mlelstv if ((rc = collect_text_data(pdu, req_ccb)) != 0) 480 1.1 agc return max(rc, 0); 481 1.1 agc } 482 1.1 agc 483 1.3 mlelstv negotiate_login(conn, pdu, req_ccb); 484 1.1 agc 485 1.3 mlelstv /* negotiate_login will decide whether login is complete or not */ 486 1.1 agc return 0; 487 1.1 agc } 488 1.1 agc 489 1.1 agc 490 1.1 agc /* 491 1.1 agc * receive_text_response_pdu 492 1.1 agc * Handle receipt of a text response PDU. 493 1.1 agc * 494 1.1 agc * Parameter: 495 1.1 agc * conn The connection 496 1.1 agc * pdu The PDU 497 1.1 agc * req_CCB The CCB associated with the original request (if any) 498 1.1 agc */ 499 1.1 agc 500 1.1 agc STATIC int 501 1.1 agc receive_text_response_pdu(connection_t *conn, pdu_t *pdu, ccb_t *req_ccb) 502 1.1 agc { 503 1.1 agc int rc; 504 1.1 agc 505 1.1 agc DEBC(conn, 9, ("Received Text Response PDU, op=%x, flags=%x\n", 506 1.24 christos pdu->pdu_hdr.pduh_Opcode, pdu->pdu_hdr.pduh_Flags)); 507 1.1 agc 508 1.24 christos if (check_StatSN(conn, pdu->pdu_hdr.pduh_p.text_rsp.StatSN, TRUE)) { 509 1.1 agc return -1; 510 1.1 agc } 511 1.1 agc if (req_ccb == NULL) { 512 1.1 agc DEBOUT(("Received unsolicited text response\n")); 513 1.1 agc handle_connection_error(conn, ISCSI_STATUS_TARGET_ERROR, 514 1.1 agc LOGOUT_CONNECTION); 515 1.1 agc return -1; 516 1.1 agc } 517 1.1 agc 518 1.24 christos if (req_ccb->ccb_pdu_waiting != NULL) { 519 1.12 mlelstv ccb_timeout_start(req_ccb, COMMAND_TIMEOUT); 520 1.24 christos req_ccb->ccb_num_timeouts = 0; 521 1.1 agc } 522 1.1 agc 523 1.1 agc if ((rc = collect_text_data(pdu, req_ccb)) != 0) { 524 1.1 agc return max(0, rc); 525 1.1 agc } 526 1.1 agc negotiate_text(conn, pdu, req_ccb); 527 1.1 agc 528 1.1 agc return 0; 529 1.1 agc } 530 1.1 agc 531 1.1 agc 532 1.1 agc /* 533 1.1 agc * receive_logout_pdu 534 1.1 agc * Handle receipt of a logout response PDU. 535 1.1 agc * 536 1.1 agc * Parameter: 537 1.1 agc * conn The connection 538 1.1 agc * pdu The PDU 539 1.1 agc * req_CCB The CCB associated with the original request (if any) 540 1.1 agc */ 541 1.1 agc 542 1.1 agc STATIC int 543 1.1 agc receive_logout_pdu(connection_t *conn, pdu_t *pdu, ccb_t *req_ccb) 544 1.1 agc { 545 1.1 agc bool otherconn; 546 1.1 agc uint8_t response; 547 1.4 mlelstv uint32_t status; 548 1.1 agc 549 1.24 christos otherconn = (req_ccb != NULL) ? (req_ccb->ccb_flags & CCBF_OTHERCONN) != 0 : 1; 550 1.24 christos response = pdu->pdu_hdr.pduh_OpcodeSpecific [0]; 551 1.1 agc DEBC(conn, 1, 552 1.1 agc ("Received Logout PDU - CCB = %p, otherconn=%d, response=%d\n", 553 1.1 agc req_ccb, otherconn, response)); 554 1.1 agc 555 1.1 agc if (req_ccb == NULL) 556 1.1 agc return 0; 557 1.1 agc 558 1.24 christos if (otherconn && check_StatSN(conn, pdu->pdu_hdr.pduh_p.logout_rsp.StatSN, TRUE)) 559 1.1 agc return -1; 560 1.1 agc 561 1.1 agc switch (response) { 562 1.1 agc case 0: 563 1.4 mlelstv status = ISCSI_STATUS_SUCCESS; 564 1.1 agc break; 565 1.1 agc case 1: 566 1.4 mlelstv status = ISCSI_STATUS_LOGOUT_CID_NOT_FOUND; 567 1.1 agc break; 568 1.1 agc case 2: 569 1.4 mlelstv status = ISCSI_STATUS_LOGOUT_RECOVERY_NS; 570 1.1 agc break; 571 1.1 agc default: 572 1.4 mlelstv status = ISCSI_STATUS_LOGOUT_ERROR; 573 1.1 agc break; 574 1.1 agc } 575 1.1 agc 576 1.24 christos if (conn->c_session->s_ErrorRecoveryLevel >= 2 && response != 1) { 577 1.24 christos connection_t *refconn = (otherconn) ? req_ccb->ccb_par : conn; 578 1.1 agc 579 1.24 christos refconn->c_Time2Wait = ntohs(pdu->pdu_hdr.pduh_p.logout_rsp.Time2Wait); 580 1.24 christos refconn->c_Time2Retain = ntohs(pdu->pdu_hdr.pduh_p.logout_rsp.Time2Retain); 581 1.1 agc } 582 1.1 agc 583 1.4 mlelstv wake_ccb(req_ccb, status); 584 1.1 agc 585 1.27 mlelstv mutex_enter(&conn->c_lock); 586 1.24 christos if (!otherconn && conn->c_state == ST_LOGOUT_SENT) { 587 1.24 christos conn->c_terminating = ISCSI_STATUS_LOGOUT; 588 1.24 christos conn->c_state = ST_SETTLING; 589 1.24 christos conn->c_loggedout = (response) ? LOGOUT_FAILED : LOGOUT_SUCCESS; 590 1.27 mlelstv mutex_exit(&conn->c_lock); 591 1.1 agc 592 1.12 mlelstv connection_timeout_stop(conn); 593 1.1 agc 594 1.1 agc /* let send thread take over next step of cleanup */ 595 1.24 christos mutex_enter(&conn->c_lock); 596 1.24 christos cv_broadcast(&conn->c_conn_cv); 597 1.1 agc } 598 1.27 mlelstv mutex_exit(&conn->c_lock); 599 1.1 agc 600 1.1 agc return !otherconn; 601 1.1 agc } 602 1.1 agc 603 1.1 agc 604 1.1 agc /* 605 1.1 agc * receive_data_in_pdu 606 1.1 agc * Handle receipt of a data in PDU. 607 1.1 agc * 608 1.1 agc * Parameter: 609 1.1 agc * conn The connection 610 1.1 agc * pdu The PDU 611 1.1 agc * req_CCB The CCB associated with the original request (if any) 612 1.1 agc */ 613 1.1 agc 614 1.1 agc STATIC int 615 1.1 agc receive_data_in_pdu(connection_t *conn, pdu_t *pdu, ccb_t *req_ccb) 616 1.1 agc { 617 1.1 agc uint32_t dsl, sn; 618 1.1 agc bool done; 619 1.1 agc int rc; 620 1.1 agc 621 1.24 christos dsl = ntoh3(pdu->pdu_hdr.pduh_DataSegmentLength); 622 1.1 agc 623 1.24 christos if (req_ccb == NULL || !req_ccb->ccb_data_in || !req_ccb->ccb_data_len) { 624 1.1 agc DEBOUT(("Received Data In, but req_ccb not waiting for it, ignored\n")); 625 1.1 agc return 0; 626 1.1 agc } 627 1.24 christos req_ccb->ccb_flags |= CCBF_GOT_RSP; 628 1.1 agc 629 1.24 christos if (req_ccb->ccb_pdu_waiting != NULL) { 630 1.12 mlelstv ccb_timeout_start(req_ccb, COMMAND_TIMEOUT); 631 1.24 christos req_ccb->ccb_num_timeouts = 0; 632 1.1 agc } 633 1.1 agc 634 1.24 christos sn = ntohl(pdu->pdu_hdr.pduh_p.data_in.DataSN); 635 1.1 agc 636 1.24 christos if ((rc = add_sernum(&req_ccb->ccb_DataSN_buf, sn)) != 1) { 637 1.1 agc if (!rc) { 638 1.1 agc return -1; 639 1.1 agc } 640 1.1 agc if (rc < 0) { 641 1.1 agc DEBOUT(("Excessive outstanding Data PDUs\n")); 642 1.24 christos handle_connection_error(req_ccb->ccb_connection, 643 1.1 agc ISCSI_STATUS_PDUS_LOST, LOGOUT_CONNECTION); 644 1.1 agc return -1; 645 1.1 agc } 646 1.1 agc DEBOUT(("Missing Data PDUs: First %d, num: %d\n", 647 1.24 christos req_ccb->ccb_DataSN_buf.ExpSN, rc - 1)); 648 1.1 agc 649 1.24 christos if (conn->c_state == ST_FULL_FEATURE && 650 1.24 christos conn->c_session->s_ErrorRecoveryLevel) { 651 1.24 christos snack_missing(req_ccb->ccb_connection, req_ccb, 652 1.24 christos SNACK_DATA_NAK, req_ccb->ccb_DataSN_buf.ExpSN, 653 1.1 agc rc - 1); 654 1.1 agc } else { 655 1.1 agc DEBOUT(("Killing connection (State=%d, ErrorRecoveryLevel=%d)\n", 656 1.24 christos conn->c_state, conn->c_session->s_ErrorRecoveryLevel)); 657 1.1 agc handle_connection_error(conn, ISCSI_STATUS_PDUS_LOST, 658 1.1 agc LOGOUT_CONNECTION); 659 1.1 agc return -1; 660 1.1 agc } 661 1.1 agc } 662 1.1 agc 663 1.24 christos ack_sernum(&req_ccb->ccb_DataSN_buf, sn); 664 1.1 agc 665 1.24 christos req_ccb->ccb_xfer_len += dsl; 666 1.1 agc 667 1.24 christos if ((pdu->pdu_hdr.pduh_Flags & FLAG_ACK) && conn->c_session->s_ErrorRecoveryLevel) 668 1.1 agc send_snack(conn, pdu, req_ccb, SNACK_DATA_ACK); 669 1.1 agc 670 1.24 christos done = sn_empty(&req_ccb->ccb_DataSN_buf); 671 1.1 agc 672 1.24 christos if (pdu->pdu_hdr.pduh_Flags & FLAG_STATUS) { 673 1.21 mlelstv DEBC(conn, 10, ("Rx Data In %d, done = %d\n", 674 1.24 christos req_ccb->ccb_CmdSN, done)); 675 1.1 agc 676 1.24 christos req_ccb->ccb_flags |= CCBF_COMPLETE; 677 1.1 agc /* successful transfer, reset recover count */ 678 1.24 christos conn->c_recover = 0; 679 1.1 agc 680 1.4 mlelstv if (done) 681 1.4 mlelstv wake_ccb(req_ccb, ISCSI_STATUS_SUCCESS); 682 1.24 christos if (check_StatSN(conn, pdu->pdu_hdr.pduh_p.data_in.StatSN, done)) 683 1.1 agc return -1; 684 1.4 mlelstv 685 1.24 christos } else if (done && (req_ccb->ccb_flags & CCBF_COMPLETE)) { 686 1.4 mlelstv wake_ccb(req_ccb, ISCSI_STATUS_SUCCESS); 687 1.1 agc } 688 1.1 agc /* else wait for command response */ 689 1.1 agc 690 1.1 agc return 0; 691 1.1 agc } 692 1.1 agc 693 1.1 agc 694 1.1 agc /* 695 1.1 agc * receive_r2t_pdu 696 1.1 agc * Handle receipt of a R2T PDU. 697 1.1 agc * 698 1.1 agc * Parameter: 699 1.1 agc * conn The connection 700 1.1 agc * pdu The PDU 701 1.1 agc * req_CCB The CCB associated with the original request (if any) 702 1.1 agc */ 703 1.1 agc 704 1.1 agc STATIC int 705 1.1 agc receive_r2t_pdu(connection_t *conn, pdu_t *pdu, ccb_t *req_ccb) 706 1.1 agc { 707 1.1 agc 708 1.1 agc DEBC(conn, 10, ("Received R2T PDU - CCB = %p\n", req_ccb)); 709 1.1 agc 710 1.1 agc if (req_ccb != NULL) { 711 1.24 christos if (req_ccb->ccb_pdu_waiting != NULL) { 712 1.12 mlelstv ccb_timeout_start(req_ccb, COMMAND_TIMEOUT); 713 1.24 christos req_ccb->ccb_num_timeouts = 0; 714 1.1 agc } 715 1.1 agc send_data_out(conn, pdu, req_ccb, CCBDISP_NOWAIT, TRUE); 716 1.1 agc } 717 1.1 agc 718 1.1 agc return 0; 719 1.1 agc } 720 1.1 agc 721 1.1 agc 722 1.1 agc /* 723 1.1 agc * receive_command_response_pdu 724 1.1 agc * Handle receipt of a command response PDU. 725 1.1 agc * 726 1.1 agc * Parameter: 727 1.1 agc * conn The connection 728 1.1 agc * pdu The PDU 729 1.1 agc * req_CCB The CCB associated with the original request (if any) 730 1.1 agc */ 731 1.1 agc 732 1.1 agc STATIC int 733 1.1 agc receive_command_response_pdu(connection_t *conn, pdu_t *pdu, ccb_t *req_ccb) 734 1.1 agc { 735 1.1 agc int len, rc; 736 1.1 agc bool done; 737 1.4 mlelstv uint32_t status; 738 1.1 agc 739 1.1 agc /* Read any provided data */ 740 1.24 christos if (pdu->pdu_temp_data_len && req_ccb != NULL && req_ccb->ccb_sense_len_req) { 741 1.24 christos len = min(req_ccb->ccb_sense_len_req, 742 1.24 christos ntohs(*((uint16_t *) pdu->pdu_temp_data))); 743 1.24 christos memcpy(req_ccb->ccb_sense_ptr, ((uint16_t *) pdu->pdu_temp_data) + 1, 744 1.1 agc len); 745 1.24 christos req_ccb->ccb_sense_len_got = len; 746 1.1 agc } 747 1.1 agc 748 1.1 agc if (req_ccb == NULL) { 749 1.1 agc /* Assume duplicate... */ 750 1.1 agc DEBOUT(("Possibly duplicate command response (no associated CCB)\n")); 751 1.1 agc return -1; 752 1.1 agc } 753 1.1 agc 754 1.25 mlelstv if (req_ccb->ccb_flags & CCBF_COMPLETE) { 755 1.25 mlelstv DEBOUT(("Possibly duplicate command response (tagged as COMPLETE)\n")); 756 1.25 mlelstv return -1; 757 1.25 mlelstv } 758 1.25 mlelstv 759 1.24 christos if (req_ccb->ccb_pdu_waiting != NULL) { 760 1.12 mlelstv ccb_timeout_start(req_ccb, COMMAND_TIMEOUT); 761 1.24 christos req_ccb->ccb_num_timeouts = 0; 762 1.1 agc } 763 1.1 agc 764 1.24 christos req_ccb->ccb_flags |= CCBF_COMPLETE; 765 1.24 christos conn->c_recover = 0; /* successful transfer, reset recover count */ 766 1.1 agc 767 1.24 christos if (pdu->pdu_hdr.pduh_OpcodeSpecific[0]) { /* Response */ 768 1.4 mlelstv status = ISCSI_STATUS_TARGET_FAILURE; 769 1.1 agc } else { 770 1.24 christos switch (pdu->pdu_hdr.pduh_OpcodeSpecific[1]) { /* Status */ 771 1.1 agc case 0x00: 772 1.4 mlelstv status = ISCSI_STATUS_SUCCESS; 773 1.1 agc break; 774 1.1 agc 775 1.1 agc case 0x02: 776 1.4 mlelstv status = ISCSI_STATUS_CHECK_CONDITION; 777 1.1 agc break; 778 1.1 agc 779 1.1 agc case 0x08: 780 1.4 mlelstv status = ISCSI_STATUS_TARGET_BUSY; 781 1.1 agc break; 782 1.1 agc 783 1.1 agc default: 784 1.4 mlelstv status = ISCSI_STATUS_TARGET_ERROR; 785 1.1 agc break; 786 1.1 agc } 787 1.1 agc } 788 1.1 agc 789 1.24 christos if (pdu->pdu_hdr.pduh_Flags & (FLAG_OVERFLOW | FLAG_UNDERFLOW)) 790 1.24 christos req_ccb->ccb_residual = ntohl(pdu->pdu_hdr.pduh_p.response.ResidualCount); 791 1.1 agc 792 1.24 christos done = status || sn_empty(&req_ccb->ccb_DataSN_buf); 793 1.1 agc 794 1.21 mlelstv DEBC(conn, 10, ("Rx Response: CmdSN %d, rsp = %x, status = %x\n", 795 1.24 christos req_ccb->ccb_CmdSN, 796 1.24 christos pdu->pdu_hdr.pduh_OpcodeSpecific[0], 797 1.24 christos pdu->pdu_hdr.pduh_OpcodeSpecific[1])); 798 1.1 agc 799 1.24 christos rc = check_StatSN(conn, pdu->pdu_hdr.pduh_p.response.StatSN, done); 800 1.1 agc 801 1.1 agc if (done) 802 1.4 mlelstv wake_ccb(req_ccb, status); 803 1.1 agc 804 1.1 agc return rc; 805 1.1 agc } 806 1.1 agc 807 1.1 agc 808 1.1 agc /* 809 1.1 agc * receive_asynch_pdu 810 1.1 agc * Handle receipt of an asynchronous message PDU. 811 1.1 agc * 812 1.1 agc * Parameter: 813 1.1 agc * conn The connection 814 1.1 agc * pdu The PDU 815 1.1 agc */ 816 1.1 agc 817 1.1 agc STATIC int 818 1.1 agc receive_asynch_pdu(connection_t *conn, pdu_t *pdu) 819 1.1 agc { 820 1.1 agc 821 1.24 christos DEBOUT(("Received Asynch PDU, Event %d\n", pdu->pdu_hdr.pduh_p.asynch.AsyncEvent)); 822 1.1 agc 823 1.24 christos switch (pdu->pdu_hdr.pduh_p.asynch.AsyncEvent) { 824 1.1 agc case 0: /* SCSI Asynch event. Don't know what to do with it... */ 825 1.1 agc break; 826 1.1 agc 827 1.26 mlelstv case 1: /* Target requests logout. */ 828 1.24 christos if (conn->c_session->s_active_connections > 1) { 829 1.1 agc kill_connection(conn, ISCSI_STATUS_TARGET_LOGOUT, 830 1.1 agc LOGOUT_CONNECTION, FALSE); 831 1.1 agc } else { 832 1.26 mlelstv kill_session(conn->c_session->s_id, 833 1.26 mlelstv ISCSI_STATUS_TARGET_LOGOUT, LOGOUT_SESSION, 834 1.26 mlelstv FALSE); 835 1.1 agc } 836 1.1 agc break; 837 1.1 agc 838 1.26 mlelstv case 2: /* Target is dropping connection */ 839 1.24 christos conn = find_connection(conn->c_session, 840 1.26 mlelstv ntohs(pdu->pdu_hdr.pduh_p.asynch.Parameter1)); 841 1.1 agc if (conn != NULL) { 842 1.26 mlelstv conn->c_Time2Wait = 843 1.26 mlelstv ntohs(pdu->pdu_hdr.pduh_p.asynch.Parameter2); 844 1.26 mlelstv conn->c_Time2Retain = 845 1.26 mlelstv ntohs(pdu->pdu_hdr.pduh_p.asynch.Parameter3); 846 1.1 agc kill_connection(conn, ISCSI_STATUS_TARGET_DROP, 847 1.1 agc NO_LOGOUT, TRUE); 848 1.1 agc } 849 1.1 agc break; 850 1.1 agc 851 1.26 mlelstv case 3: /* Target is dropping all connections of session */ 852 1.26 mlelstv conn->c_session->s_DefaultTime2Wait = 853 1.26 mlelstv ntohs(pdu->pdu_hdr.pduh_p.asynch.Parameter2); 854 1.26 mlelstv conn->c_session->s_DefaultTime2Retain = 855 1.26 mlelstv ntohs(pdu->pdu_hdr.pduh_p.asynch.Parameter3); 856 1.26 mlelstv kill_session(conn->c_session->s_id, 857 1.26 mlelstv ISCSI_STATUS_TARGET_DROP, NO_LOGOUT, 858 1.26 mlelstv TRUE); 859 1.1 agc break; 860 1.1 agc 861 1.26 mlelstv case 4: /* Target requests parameter negotiation */ 862 1.1 agc start_text_negotiation(conn); 863 1.1 agc break; 864 1.1 agc 865 1.1 agc default: 866 1.1 agc /* ignore */ 867 1.1 agc break; 868 1.1 agc } 869 1.1 agc return 0; 870 1.1 agc } 871 1.1 agc 872 1.1 agc 873 1.1 agc /* 874 1.1 agc * receive_reject_pdu 875 1.1 agc * Handle receipt of a reject PDU. 876 1.1 agc * 877 1.1 agc * Parameter: 878 1.1 agc * conn The connection 879 1.1 agc * pdu The PDU 880 1.1 agc */ 881 1.1 agc 882 1.1 agc STATIC int 883 1.1 agc receive_reject_pdu(connection_t *conn, pdu_t *pdu) 884 1.1 agc { 885 1.1 agc pdu_header_t *hpdu; 886 1.1 agc ccb_t *req_ccb; 887 1.4 mlelstv uint32_t status; 888 1.1 agc 889 1.1 agc DEBOUT(("Received Reject PDU, reason = %x, data_len = %d\n", 890 1.24 christos pdu->pdu_hdr.pduh_OpcodeSpecific[0], pdu->pdu_temp_data_len)); 891 1.1 agc 892 1.24 christos if (pdu->pdu_temp_data_len >= BHS_SIZE) { 893 1.24 christos hpdu = (pdu_header_t *) pdu->pdu_temp_data; 894 1.24 christos req_ccb = ccb_from_itt(conn, hpdu->pduh_InitiatorTaskTag); 895 1.1 agc 896 1.1 agc DEBC(conn, 9, ("Reject PDU ITT (ccb)= %x (%p)\n", 897 1.24 christos hpdu->pduh_InitiatorTaskTag, req_ccb)); 898 1.1 agc if (!req_ccb) { 899 1.1 agc return 0; 900 1.1 agc } 901 1.24 christos switch (pdu->pdu_hdr.pduh_OpcodeSpecific[0]) { 902 1.1 agc case REJECT_DIGEST_ERROR: 903 1.1 agc /* don't retransmit data out */ 904 1.24 christos if ((hpdu->pduh_Opcode & OPCODE_MASK) == IOP_SCSI_Data_out) 905 1.1 agc return 0; 906 1.1 agc resend_pdu(req_ccb); 907 1.1 agc return 0; 908 1.1 agc 909 1.1 agc case REJECT_IMMED_COMMAND: 910 1.1 agc case REJECT_LONG_OPERATION: 911 1.1 agc resend_pdu(req_ccb); 912 1.1 agc return 0; 913 1.1 agc 914 1.1 agc case REJECT_SNACK: 915 1.1 agc case REJECT_PROTOCOL_ERROR: 916 1.4 mlelstv status = ISCSI_STATUS_PROTOCOL_ERROR; 917 1.1 agc break; 918 1.1 agc 919 1.1 agc case REJECT_CMD_NOT_SUPPORTED: 920 1.4 mlelstv status = ISCSI_STATUS_CMD_NOT_SUPPORTED; 921 1.1 agc break; 922 1.1 agc 923 1.1 agc case REJECT_INVALID_PDU_FIELD: 924 1.4 mlelstv status = ISCSI_STATUS_PDU_ERROR; 925 1.1 agc break; 926 1.1 agc 927 1.1 agc default: 928 1.4 mlelstv status = ISCSI_STATUS_GENERAL_ERROR; 929 1.1 agc break; 930 1.1 agc } 931 1.1 agc 932 1.4 mlelstv wake_ccb(req_ccb, status); 933 1.1 agc handle_connection_error(conn, ISCSI_STATUS_PROTOCOL_ERROR, 934 1.1 agc LOGOUT_CONNECTION); 935 1.1 agc } 936 1.1 agc return 0; 937 1.1 agc } 938 1.1 agc 939 1.1 agc 940 1.1 agc /* 941 1.1 agc * receive_task_management_pdu 942 1.1 agc * Handle receipt of a task management PDU. 943 1.1 agc * 944 1.1 agc * Parameter: 945 1.1 agc * conn The connection 946 1.1 agc * pdu The PDU 947 1.1 agc * req_CCB The CCB associated with the original request (if any) 948 1.1 agc */ 949 1.1 agc 950 1.1 agc STATIC int 951 1.1 agc receive_task_management_pdu(connection_t *conn, pdu_t *pdu, ccb_t *req_ccb) 952 1.1 agc { 953 1.4 mlelstv uint32_t status; 954 1.1 agc 955 1.1 agc DEBC(conn, 2, ("Received Task Management PDU, response %d, req_ccb %p\n", 956 1.24 christos pdu->pdu_hdr.pduh_OpcodeSpecific[0], req_ccb)); 957 1.1 agc 958 1.1 agc if (req_ccb != NULL) { 959 1.24 christos switch (pdu->pdu_hdr.pduh_OpcodeSpecific[0]) { /* Response */ 960 1.1 agc case 0: 961 1.4 mlelstv status = ISCSI_STATUS_SUCCESS; 962 1.1 agc break; 963 1.1 agc case 1: 964 1.4 mlelstv status = ISCSI_STATUS_TASK_NOT_FOUND; 965 1.1 agc break; 966 1.1 agc case 2: 967 1.4 mlelstv status = ISCSI_STATUS_LUN_NOT_FOUND; 968 1.1 agc break; 969 1.1 agc case 3: 970 1.4 mlelstv status = ISCSI_STATUS_TASK_ALLEGIANT; 971 1.1 agc break; 972 1.1 agc case 4: 973 1.4 mlelstv status = ISCSI_STATUS_CANT_REASSIGN; 974 1.1 agc break; 975 1.1 agc case 5: 976 1.4 mlelstv status = ISCSI_STATUS_FUNCTION_UNSUPPORTED; 977 1.1 agc break; 978 1.1 agc case 6: 979 1.4 mlelstv status = ISCSI_STATUS_FUNCTION_NOT_AUTHORIZED; 980 1.1 agc break; 981 1.1 agc case 255: 982 1.4 mlelstv status = ISCSI_STATUS_FUNCTION_REJECTED; 983 1.1 agc break; 984 1.1 agc default: 985 1.4 mlelstv status = ISCSI_STATUS_UNKNOWN_REASON; 986 1.1 agc break; 987 1.1 agc } 988 1.4 mlelstv wake_ccb(req_ccb, status); 989 1.1 agc } 990 1.1 agc 991 1.24 christos check_StatSN(conn, pdu->pdu_hdr.pduh_p.task_rsp.StatSN, TRUE); 992 1.1 agc 993 1.1 agc return 0; 994 1.1 agc } 995 1.1 agc 996 1.1 agc 997 1.1 agc /* 998 1.1 agc * receive_nop_in_pdu 999 1.1 agc * Handle receipt of a Nop-In PDU. 1000 1.1 agc * 1001 1.1 agc * Parameter: 1002 1.1 agc * conn The connection 1003 1.1 agc * pdu The PDU 1004 1.1 agc * req_CCB The CCB associated with the original request (if any) 1005 1.1 agc */ 1006 1.1 agc 1007 1.1 agc STATIC int 1008 1.1 agc receive_nop_in_pdu(connection_t *conn, pdu_t *pdu, ccb_t *req_ccb) 1009 1.1 agc { 1010 1.1 agc DEBC(conn, 10, 1011 1.21 mlelstv ("Received NOP_In PDU, req_ccb=%p, ITT=%x, TTT=%x, StatSN=%u\n", 1012 1.24 christos req_ccb, pdu->pdu_hdr.pduh_InitiatorTaskTag, 1013 1.24 christos pdu->pdu_hdr.pduh_p.nop_in.TargetTransferTag, 1014 1.24 christos ntohl(pdu->pdu_hdr.pduh_p.nop_in.StatSN))); 1015 1.1 agc 1016 1.24 christos if (pdu->pdu_hdr.pduh_InitiatorTaskTag == 0xffffffff) { 1017 1.1 agc /* this is a target ping - respond with a pong */ 1018 1.24 christos if (pdu->pdu_hdr.pduh_p.nop_in.TargetTransferTag != 0xffffffff) 1019 1.1 agc send_nop_out(conn, pdu); 1020 1.1 agc 1021 1.1 agc /* 1022 1.1 agc Any receive resets the connection timeout, but we got a ping, which 1023 1.1 agc means that it's likely the other side was waiting for something to 1024 1.1 agc happen on the connection. If we aren't idle, send a ping right 1025 1.1 agc away to synch counters (don't synch on this ping because other 1026 1.1 agc PDUs may be on the way). 1027 1.1 agc */ 1028 1.24 christos if (TAILQ_FIRST(&conn->c_ccbs_waiting) != NULL) 1029 1.1 agc send_nop_out(conn, NULL); 1030 1.1 agc } else if (req_ccb != NULL) { 1031 1.1 agc /* this is a solicited ping, check CmdSN for lost commands */ 1032 1.1 agc /* and advance StatSN */ 1033 1.24 christos check_CmdSN(conn, pdu->pdu_hdr.pduh_p.nop_in.ExpCmdSN); 1034 1.1 agc 1035 1.4 mlelstv wake_ccb(req_ccb, ISCSI_STATUS_SUCCESS); 1036 1.1 agc 1037 1.24 christos check_StatSN(conn, pdu->pdu_hdr.pduh_p.nop_in.StatSN, TRUE); 1038 1.13 mlelstv } else { 1039 1.13 mlelstv DEBC(conn, 0, ("Received unsolicted NOP_In, itt=%08x\n", 1040 1.24 christos pdu->pdu_hdr.pduh_InitiatorTaskTag)); 1041 1.1 agc } 1042 1.1 agc 1043 1.1 agc return 0; 1044 1.1 agc } 1045 1.1 agc 1046 1.1 agc 1047 1.1 agc /* 1048 1.1 agc * receive_pdu 1049 1.1 agc * Get parameters, call the appropriate handler for a received PDU. 1050 1.1 agc * 1051 1.1 agc * Parameter: 1052 1.1 agc * conn The connection 1053 1.1 agc * pdu The PDU 1054 1.1 agc * 1055 1.1 agc * Returns: 0 on success, nonzero if the connection is broken. 1056 1.1 agc */ 1057 1.1 agc 1058 1.1 agc STATIC int 1059 1.1 agc receive_pdu(connection_t *conn, pdu_t *pdu) 1060 1.1 agc { 1061 1.1 agc ccb_t *req_ccb; 1062 1.11 mlelstv int rc; 1063 1.16 mlelstv uint32_t MaxCmdSN, ExpCmdSN, digest; 1064 1.24 christos session_t *sess = conn->c_session; 1065 1.1 agc 1066 1.24 christos if (conn->c_HeaderDigest) { 1067 1.24 christos digest = gen_digest(&pdu->pdu_hdr, BHS_SIZE); 1068 1.24 christos if (digest != pdu->pdu_hdr.pduh_HeaderDigest) { 1069 1.1 agc DEBOUT(("Header Digest Error: comp = %08x, rx = %08x\n", 1070 1.24 christos digest, pdu->pdu_hdr.pduh_HeaderDigest)); 1071 1.1 agc /* try to skip to next PDU */ 1072 1.1 agc try_resynch_receive(conn); 1073 1.1 agc free_pdu(pdu); 1074 1.1 agc return 0; 1075 1.1 agc } 1076 1.1 agc } 1077 1.1 agc 1078 1.21 mlelstv DEBC(conn, 10, ("Received PDU StatSN=%u, ExpCmdSN=%u MaxCmdSN=%u ExpDataSN=%u\n", 1079 1.24 christos ntohl(pdu->pdu_hdr.pduh_p.response.StatSN), 1080 1.24 christos ntohl(pdu->pdu_hdr.pduh_p.response.ExpCmdSN), 1081 1.24 christos ntohl(pdu->pdu_hdr.pduh_p.response.MaxCmdSN), 1082 1.24 christos ntohl(pdu->pdu_hdr.pduh_p.response.ExpDataSN))); 1083 1.13 mlelstv 1084 1.24 christos req_ccb = ccb_from_itt(conn, pdu->pdu_hdr.pduh_InitiatorTaskTag); 1085 1.1 agc 1086 1.24 christos if (req_ccb != NULL && req_ccb->ccb_data_in && req_ccb->ccb_data_len && 1087 1.24 christos (pdu->pdu_hdr.pduh_Opcode & OPCODE_MASK) == TOP_SCSI_Data_in) { 1088 1.1 agc uint32_t dsl, offset; 1089 1.1 agc 1090 1.24 christos dsl = ntoh3(pdu->pdu_hdr.pduh_DataSegmentLength); 1091 1.24 christos offset = ntohl(pdu->pdu_hdr.pduh_p.data_in.BufferOffset); 1092 1.1 agc 1093 1.24 christos if ((offset + dsl) > req_ccb->ccb_data_len) { 1094 1.1 agc DEBOUT(("Received more data than requested (len %d, offset %d)\n", 1095 1.1 agc dsl, offset)); 1096 1.1 agc handle_connection_error(conn, ISCSI_STATUS_TARGET_ERROR, NO_LOGOUT); 1097 1.1 agc return 1; 1098 1.1 agc } 1099 1.1 agc DEBC(conn, 10, 1100 1.1 agc ("Received Data in PDU - CCB = %p, Datalen = %d, Offset = %d\n", 1101 1.1 agc req_ccb, dsl, offset)); 1102 1.1 agc 1103 1.24 christos rc = read_pdu_data(pdu, req_ccb->ccb_data_ptr, offset); 1104 1.1 agc } else { 1105 1.1 agc rc = read_pdu_data(pdu, NULL, 0); 1106 1.1 agc } 1107 1.24 christos if (!rc && (conn->c_state <= ST_WINDING_DOWN || 1108 1.24 christos (pdu->pdu_hdr.pduh_Opcode & OPCODE_MASK) == TOP_Logout_Response)) { 1109 1.1 agc 1110 1.24 christos switch (pdu->pdu_hdr.pduh_Opcode & OPCODE_MASK) { 1111 1.1 agc case TOP_NOP_In: 1112 1.1 agc rc = receive_nop_in_pdu(conn, pdu, req_ccb); 1113 1.1 agc break; 1114 1.1 agc 1115 1.1 agc case TOP_SCSI_Response: 1116 1.1 agc rc = receive_command_response_pdu(conn, pdu, req_ccb); 1117 1.1 agc break; 1118 1.1 agc 1119 1.1 agc case TOP_SCSI_Task_Management: 1120 1.1 agc rc = receive_task_management_pdu(conn, pdu, req_ccb); 1121 1.1 agc break; 1122 1.1 agc 1123 1.1 agc case TOP_Login_Response: 1124 1.1 agc rc = receive_login_pdu(conn, pdu, req_ccb); 1125 1.1 agc break; 1126 1.1 agc 1127 1.1 agc case TOP_Text_Response: 1128 1.1 agc rc = receive_text_response_pdu(conn, pdu, req_ccb); 1129 1.1 agc break; 1130 1.1 agc 1131 1.1 agc case TOP_SCSI_Data_in: 1132 1.1 agc rc = receive_data_in_pdu(conn, pdu, req_ccb); 1133 1.1 agc break; 1134 1.1 agc 1135 1.1 agc case TOP_Logout_Response: 1136 1.1 agc rc = receive_logout_pdu(conn, pdu, req_ccb); 1137 1.1 agc break; 1138 1.1 agc 1139 1.1 agc case TOP_R2T: 1140 1.1 agc rc = receive_r2t_pdu(conn, pdu, req_ccb); 1141 1.1 agc break; 1142 1.1 agc 1143 1.1 agc case TOP_Asynchronous_Message: 1144 1.1 agc rc = receive_asynch_pdu(conn, pdu); 1145 1.1 agc break; 1146 1.1 agc 1147 1.1 agc case TOP_Reject: 1148 1.1 agc rc = receive_reject_pdu(conn, pdu); 1149 1.1 agc break; 1150 1.1 agc 1151 1.1 agc default: 1152 1.24 christos DEBOUT(("Received Invalid Opcode %x\n", pdu->pdu_hdr.pduh_Opcode)); 1153 1.1 agc try_resynch_receive(conn); 1154 1.1 agc rc = -1; 1155 1.1 agc break; 1156 1.1 agc } 1157 1.1 agc } 1158 1.1 agc 1159 1.1 agc free_pdu(pdu); 1160 1.1 agc if (rc) 1161 1.1 agc return rc; 1162 1.1 agc 1163 1.1 agc /* MaxCmdSN and ExpCmdSN are in the same place in all received PDUs */ 1164 1.24 christos ExpCmdSN = ntohl(pdu->pdu_hdr.pduh_p.nop_in.ExpCmdSN); 1165 1.24 christos MaxCmdSN = ntohl(pdu->pdu_hdr.pduh_p.nop_in.MaxCmdSN); 1166 1.1 agc 1167 1.1 agc /* received a valid frame, reset timeout */ 1168 1.26 mlelstv conn->c_num_timeouts = 0; 1169 1.24 christos if ((pdu->pdu_hdr.pduh_Opcode & OPCODE_MASK) == TOP_NOP_In && 1170 1.24 christos TAILQ_EMPTY(&conn->c_ccbs_waiting)) 1171 1.24 christos connection_timeout_start(conn, conn->c_idle_timeout_val); 1172 1.10 joerg else 1173 1.12 mlelstv connection_timeout_start(conn, CONNECTION_TIMEOUT); 1174 1.1 agc 1175 1.21 mlelstv /* Update session window */ 1176 1.24 christos mutex_enter(&sess->s_lock); 1177 1.21 mlelstv if (sn_a_le_b(ExpCmdSN - 1, MaxCmdSN)) { 1178 1.24 christos if (sn_a_lt_b(sess->s_ExpCmdSN, ExpCmdSN)) 1179 1.24 christos sess->s_ExpCmdSN = ExpCmdSN; 1180 1.24 christos if (sn_a_lt_b(sess->s_MaxCmdSN, MaxCmdSN)) 1181 1.24 christos sess->s_MaxCmdSN = MaxCmdSN; 1182 1.16 mlelstv } 1183 1.24 christos mutex_exit(&sess->s_lock); 1184 1.1 agc 1185 1.1 agc return 0; 1186 1.1 agc } 1187 1.1 agc 1188 1.1 agc /*****************************************************************************/ 1189 1.1 agc 1190 1.1 agc /* 1191 1.1 agc * iscsi_receive_thread 1192 1.1 agc * Per connection thread handling receive data. 1193 1.1 agc * 1194 1.1 agc * Parameter: 1195 1.1 agc * conn The connection 1196 1.1 agc */ 1197 1.1 agc 1198 1.1 agc void 1199 1.1 agc iscsi_rcv_thread(void *par) 1200 1.1 agc { 1201 1.1 agc connection_t *conn = (connection_t *) par; 1202 1.1 agc pdu_t *pdu; 1203 1.1 agc size_t hlen; 1204 1.1 agc 1205 1.1 agc do { 1206 1.24 christos while (!conn->c_terminating) { 1207 1.4 mlelstv pdu = get_pdu(conn, TRUE); 1208 1.21 mlelstv if (pdu == NULL) { 1209 1.24 christos KASSERT(conn->c_terminating); 1210 1.21 mlelstv break; 1211 1.21 mlelstv } 1212 1.21 mlelstv 1213 1.24 christos pdu->pdu_uio.uio_iov = pdu->pdu_io_vec; 1214 1.24 christos UIO_SETUP_SYSSPACE(&pdu->pdu_uio); 1215 1.24 christos pdu->pdu_uio.uio_iovcnt = 1; 1216 1.24 christos pdu->pdu_uio.uio_rw = UIO_READ; 1217 1.24 christos 1218 1.24 christos pdu->pdu_io_vec[0].iov_base = &pdu->pdu_hdr; 1219 1.24 christos hlen = (conn->c_HeaderDigest) ? BHS_SIZE + 4 : BHS_SIZE; 1220 1.24 christos pdu->pdu_io_vec[0].iov_len = hlen; 1221 1.24 christos pdu->pdu_uio.uio_resid = hlen; 1222 1.1 agc 1223 1.1 agc DEBC(conn, 99, ("Receive thread waiting for data\n")); 1224 1.24 christos if (my_soo_read(conn, &pdu->pdu_uio, MSG_WAITALL)) { 1225 1.1 agc free_pdu(pdu); 1226 1.1 agc break; 1227 1.1 agc } 1228 1.1 agc /* Check again for header digest */ 1229 1.1 agc /* (it may have changed during the wait) */ 1230 1.24 christos if (hlen == BHS_SIZE && conn->c_HeaderDigest) { 1231 1.24 christos pdu->pdu_uio.uio_iov = pdu->pdu_io_vec; 1232 1.24 christos pdu->pdu_uio.uio_iovcnt = 1; 1233 1.24 christos pdu->pdu_io_vec[0].iov_base = &pdu->pdu_hdr.pduh_HeaderDigest; 1234 1.24 christos pdu->pdu_io_vec[0].iov_len = 4; 1235 1.24 christos pdu->pdu_uio.uio_resid = 4; 1236 1.24 christos if (my_soo_read(conn, &pdu->pdu_uio, MSG_WAITALL)) { 1237 1.1 agc free_pdu(pdu); 1238 1.1 agc break; 1239 1.1 agc } 1240 1.1 agc } 1241 1.1 agc 1242 1.1 agc if (receive_pdu(conn, pdu) > 0) { 1243 1.1 agc break; 1244 1.1 agc } 1245 1.1 agc } 1246 1.24 christos mutex_enter(&conn->c_lock); 1247 1.24 christos if (!conn->c_destroy) { 1248 1.24 christos cv_timedwait(&conn->c_idle_cv, &conn->c_lock, CONNECTION_IDLE_TIMEOUT); 1249 1.1 agc } 1250 1.24 christos mutex_exit(&conn->c_lock); 1251 1.24 christos } while (!conn->c_destroy); 1252 1.1 agc 1253 1.24 christos conn->c_rcvproc = NULL; 1254 1.1 agc DEBC(conn, 5, ("Receive thread exits\n")); 1255 1.1 agc kthread_exit(0); 1256 1.1 agc } 1257