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isp.c revision 1.39.2.1
      1  1.39.2.1  thorpej /* $NetBSD: isp.c,v 1.39.2.1 2000/02/04 23:06:09 thorpej Exp $ */
      2       1.1      cgd /*
      3      1.37   mjacob  * Copyright (C) 1997, 1998, 1999 National Aeronautics & Space Administration
      4       1.1      cgd  * All rights reserved.
      5       1.1      cgd  *
      6       1.1      cgd  * Redistribution and use in source and binary forms, with or without
      7       1.1      cgd  * modification, are permitted provided that the following conditions
      8       1.1      cgd  * are met:
      9       1.1      cgd  * 1. Redistributions of source code must retain the above copyright
     10      1.37   mjacob  *    notice, this list of conditions and the following disclaimer.
     11       1.1      cgd  * 2. Redistributions in binary form must reproduce the above copyright
     12       1.1      cgd  *    notice, this list of conditions and the following disclaimer in the
     13       1.1      cgd  *    documentation and/or other materials provided with the distribution.
     14       1.1      cgd  * 3. The name of the author may not be used to endorse or promote products
     15      1.37   mjacob  *    derived from this software without specific prior written permission
     16       1.1      cgd  *
     17      1.37   mjacob  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     18      1.37   mjacob  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     19      1.37   mjacob  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     20      1.37   mjacob  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     21      1.37   mjacob  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     22      1.37   mjacob  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     23      1.37   mjacob  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     24      1.37   mjacob  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     25      1.37   mjacob  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     26      1.37   mjacob  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     27      1.37   mjacob  */
     28      1.38   mjacob 
     29      1.37   mjacob /*
     30      1.37   mjacob  * Machine and OS Independent (well, as best as possible)
     31      1.37   mjacob  * code for the Qlogic ISP SCSI adapters.
     32      1.37   mjacob  * Matthew Jacob <mjacob (at) nas.nasa.gov>
     33       1.1      cgd  */
     34       1.2      cgd 
     35       1.1      cgd /*
     36       1.1      cgd  * Inspiration and ideas about this driver are from Erik Moe's Linux driver
     37      1.23   mjacob  * (qlogicisp.c) and Dave Miller's SBus version of same (qlogicisp.c). Some
     38      1.23   mjacob  * ideas dredged from the Solaris driver.
     39       1.1      cgd  */
     40       1.1      cgd 
     41      1.23   mjacob /*
     42      1.23   mjacob  * Include header file appropriate for platform we're building on.
     43      1.23   mjacob  */
     44       1.1      cgd 
     45      1.23   mjacob #ifdef	__NetBSD__
     46      1.23   mjacob #include <dev/ic/isp_netbsd.h>
     47      1.23   mjacob #endif
     48      1.23   mjacob #ifdef	__FreeBSD__
     49      1.23   mjacob #include <dev/isp/isp_freebsd.h>
     50      1.23   mjacob #endif
     51      1.33   mjacob #ifdef	__OpenBSD__
     52      1.33   mjacob #include <dev/ic/isp_openbsd.h>
     53      1.33   mjacob #endif
     54      1.23   mjacob #ifdef	__linux__
     55      1.29   mjacob #include "isp_linux.h"
     56      1.23   mjacob #endif
     57       1.1      cgd 
     58      1.23   mjacob /*
     59      1.23   mjacob  * General defines
     60      1.23   mjacob  */
     61       1.1      cgd 
     62      1.23   mjacob #define	MBOX_DELAY_COUNT	1000000 / 100
     63       1.1      cgd 
     64      1.23   mjacob /*
     65      1.27   mjacob  * Local static data
     66      1.27   mjacob  */
     67      1.27   mjacob 
     68      1.27   mjacob /*
     69      1.25   mjacob  * Local function prototypes.
     70      1.23   mjacob  */
     71      1.28   mjacob static int isp_parse_async __P((struct ispsoftc *, int));
     72      1.25   mjacob static int isp_handle_other_response
     73      1.25   mjacob __P((struct ispsoftc *, ispstatusreq_t *, u_int8_t *));
     74      1.23   mjacob static void isp_parse_status
     75      1.23   mjacob __P((struct ispsoftc *, ispstatusreq_t *, ISP_SCSI_XFER_T *));
     76      1.38   mjacob static void isp_fastpost_complete __P((struct ispsoftc *, u_int32_t));
     77      1.36   mjacob static void isp_scsi_init __P((struct ispsoftc *));
     78      1.36   mjacob static void isp_scsi_channel_init __P((struct ispsoftc *, int));
     79      1.10   mjacob static void isp_fibre_init __P((struct ispsoftc *));
     80      1.33   mjacob static void isp_mark_getpdb_all __P((struct ispsoftc *));
     81      1.33   mjacob static int isp_getpdb __P((struct ispsoftc *, int, isp_pdb_t *));
     82      1.37   mjacob static u_int64_t isp_get_portname __P((struct ispsoftc *, int, int));
     83      1.34   mjacob static int isp_fclink_test __P((struct ispsoftc *, int));
     84      1.37   mjacob static int isp_same_lportdb __P((struct lportdb *, struct lportdb *));
     85      1.37   mjacob static int isp_pdb_sync __P((struct ispsoftc *, int));
     86      1.37   mjacob #ifdef	ISP2100_FABRIC
     87      1.37   mjacob static int isp_scan_fabric __P((struct ispsoftc *));
     88      1.37   mjacob #endif
     89      1.10   mjacob static void isp_fw_state __P((struct ispsoftc *));
     90      1.10   mjacob static void isp_dumpregs __P((struct ispsoftc *, const char *));
     91      1.23   mjacob static void isp_mboxcmd __P((struct ispsoftc *, mbreg_t *));
     92       1.1      cgd 
     93      1.36   mjacob static void isp_update __P((struct ispsoftc *));
     94      1.36   mjacob static void isp_update_bus __P((struct ispsoftc *, int));
     95      1.36   mjacob static void isp_setdfltparm __P((struct ispsoftc *, int));
     96      1.25   mjacob static int isp_read_nvram __P((struct ispsoftc *));
     97      1.25   mjacob static void isp_rdnvram_word __P((struct ispsoftc *, int, u_int16_t *));
     98      1.25   mjacob 
     99       1.1      cgd /*
    100       1.1      cgd  * Reset Hardware.
    101      1.25   mjacob  *
    102      1.31   mjacob  * Hit the chip over the head, download new f/w and set it running.
    103      1.25   mjacob  *
    104      1.24   mjacob  * Locking done elsewhere.
    105       1.1      cgd  */
    106       1.1      cgd void
    107       1.1      cgd isp_reset(isp)
    108       1.1      cgd 	struct ispsoftc *isp;
    109       1.1      cgd {
    110       1.1      cgd 	mbreg_t mbs;
    111      1.31   mjacob 	int loops, i, dodnld = 1;
    112      1.10   mjacob 	char *revname;
    113       1.1      cgd 
    114       1.1      cgd 	isp->isp_state = ISP_NILSTATE;
    115       1.4   mjacob 
    116       1.4   mjacob 	/*
    117      1.25   mjacob 	 * Basic types (SCSI, FibreChannel and PCI or SBus)
    118      1.25   mjacob 	 * have been set in the MD code. We figure out more
    119      1.25   mjacob 	 * here.
    120       1.4   mjacob 	 */
    121      1.23   mjacob 	isp->isp_dblev = DFLT_DBLEVEL;
    122      1.31   mjacob 
    123      1.31   mjacob 	/*
    124      1.32   mjacob 	 * After we've fired this chip up, zero out the conf1 register
    125      1.32   mjacob 	 * for SCSI adapters and other settings for the 2100.
    126      1.32   mjacob 	 */
    127      1.32   mjacob 
    128      1.32   mjacob 	/*
    129      1.31   mjacob 	 * Get the current running firmware revision out of the
    130      1.31   mjacob 	 * chip before we hit it over the head (if this is our
    131      1.31   mjacob 	 * first time through). Note that we store this as the
    132      1.31   mjacob 	 * 'ROM' firmware revision- which it may not be. In any
    133      1.31   mjacob 	 * case, we don't really use this yet, but we may in
    134      1.31   mjacob 	 * the future.
    135      1.31   mjacob 	 */
    136      1.33   mjacob 	if (isp->isp_used == 0) {
    137      1.31   mjacob 		/*
    138      1.31   mjacob 		 * Just in case it was paused...
    139      1.31   mjacob 		 */
    140      1.30   mjacob 		ISP_WRITE(isp, HCCR, HCCR_CMD_RELEASE);
    141      1.31   mjacob 		mbs.param[0] = MBOX_ABOUT_FIRMWARE;
    142      1.31   mjacob 		isp_mboxcmd(isp, &mbs);
    143      1.35   mjacob 		/*
    144      1.35   mjacob 		 * If this fails, it probably means we're running
    145      1.35   mjacob 		 * an old prom, if anything at all...
    146      1.35   mjacob 		 */
    147      1.35   mjacob 		if (mbs.param[0] == MBOX_COMMAND_COMPLETE) {
    148      1.35   mjacob 			isp->isp_romfw_rev[0] = mbs.param[1];
    149      1.35   mjacob 			isp->isp_romfw_rev[1] = mbs.param[2];
    150      1.35   mjacob 			isp->isp_romfw_rev[2] = mbs.param[3];
    151      1.30   mjacob 		}
    152      1.33   mjacob 		isp->isp_used = 1;
    153      1.30   mjacob 	}
    154      1.30   mjacob 
    155      1.35   mjacob 	DISABLE_INTS(isp);
    156      1.35   mjacob 
    157      1.31   mjacob 	/*
    158      1.37   mjacob 	 * Put the board into PAUSE mode.
    159      1.31   mjacob 	 */
    160      1.31   mjacob 	ISP_WRITE(isp, HCCR, HCCR_CMD_PAUSE);
    161      1.31   mjacob 
    162      1.37   mjacob 	if (IS_FC(isp)) {
    163      1.37   mjacob 		revname = "2X00";
    164      1.37   mjacob 		switch (isp->isp_type) {
    165      1.37   mjacob 		case ISP_HA_FC_2100:
    166      1.37   mjacob 			revname[1] = '1';
    167      1.37   mjacob 			break;
    168      1.37   mjacob 		case ISP_HA_FC_2200:
    169      1.37   mjacob 			revname[1] = '2';
    170      1.37   mjacob 			/*
    171      1.38   mjacob 			 * Resident firmware for the 2200 appears
    172      1.38   mjacob 			 * to have SCCLUN enabled.
    173      1.37   mjacob 			 */
    174      1.37   mjacob #ifndef	ISP2100_SCCLUN
    175      1.37   mjacob 			if (isp->isp_mdvec->dv_fwlen == 0) {
    176      1.37   mjacob 				PRINTF("%s: WARNING- using resident f/w without"
    177      1.37   mjacob 				    " SCCLUN support defined\n", isp->isp_name);
    178      1.37   mjacob 			}
    179      1.35   mjacob #endif
    180      1.37   mjacob 			break;
    181      1.37   mjacob 		default:
    182      1.37   mjacob 			break;
    183      1.37   mjacob 		}
    184      1.36   mjacob 	} else if (IS_12X0(isp)) {
    185      1.36   mjacob 		revname = "12X0";
    186      1.36   mjacob 		isp->isp_clock = 60;
    187      1.33   mjacob 	} else if (IS_1080(isp)) {
    188      1.34   mjacob 		u_int16_t l;
    189      1.33   mjacob 		sdparam *sdp = isp->isp_param;
    190      1.33   mjacob 		revname = "1080";
    191      1.36   mjacob 		isp->isp_clock = 100;
    192      1.34   mjacob 		l = ISP_READ(isp, SXP_PINS_DIFF) & ISP1080_MODE_MASK;
    193      1.34   mjacob 		switch (l) {
    194      1.34   mjacob 		case ISP1080_LVD_MODE:
    195      1.34   mjacob 			sdp->isp_lvdmode = 1;
    196      1.34   mjacob 			PRINTF("%s: LVD Mode\n", isp->isp_name);
    197      1.34   mjacob 			break;
    198      1.34   mjacob 		case ISP1080_HVD_MODE:
    199      1.34   mjacob 			sdp->isp_diffmode = 1;
    200      1.34   mjacob 			PRINTF("%s: Differential Mode\n", isp->isp_name);
    201      1.34   mjacob 			break;
    202      1.34   mjacob 		case ISP1080_SE_MODE:
    203      1.34   mjacob 			sdp->isp_ultramode = 1;
    204      1.34   mjacob 			PRINTF("%s: Single-Ended Mode\n", isp->isp_name);
    205      1.34   mjacob 			break;
    206      1.34   mjacob 		default:
    207      1.34   mjacob 			/*
    208      1.34   mjacob 			 * Hmm. Up in a wierd mode. This means all SCSI I/O
    209      1.34   mjacob 			 * buffer lines are tristated, so we're in a lot of
    210      1.34   mjacob 			 * trouble if we don't set things up right.
    211      1.34   mjacob 			 */
    212      1.34   mjacob 			PRINTF("%s: Illegal Mode 0x%x\n", isp->isp_name, l);
    213      1.34   mjacob 			break;
    214      1.34   mjacob 		}
    215      1.10   mjacob 	} else {
    216      1.25   mjacob 		sdparam *sdp = isp->isp_param;
    217      1.30   mjacob 		i = ISP_READ(isp, BIU_CONF0) & BIU_CONF0_HW_MASK;
    218      1.30   mjacob 		switch (i) {
    219      1.10   mjacob 		default:
    220      1.25   mjacob 			PRINTF("%s: unknown chip rev. 0x%x- assuming a 1020\n",
    221      1.30   mjacob 			    isp->isp_name, i);
    222      1.25   mjacob 			/* FALLTHROUGH */
    223      1.10   mjacob 		case 1:
    224      1.34   mjacob 			revname = "1020";
    225      1.10   mjacob 			isp->isp_type = ISP_HA_SCSI_1020;
    226      1.36   mjacob 			isp->isp_clock = 40;
    227      1.22   mjacob 			break;
    228      1.22   mjacob 		case 2:
    229      1.25   mjacob 			/*
    230      1.25   mjacob 			 * Some 1020A chips are Ultra Capable, but don't
    231      1.25   mjacob 			 * run the clock rate up for that unless told to
    232      1.25   mjacob 			 * do so by the Ultra Capable bits being set.
    233      1.25   mjacob 			 */
    234      1.34   mjacob 			revname = "1020A";
    235      1.22   mjacob 			isp->isp_type = ISP_HA_SCSI_1020A;
    236      1.36   mjacob 			isp->isp_clock = 40;
    237      1.10   mjacob 			break;
    238      1.10   mjacob 		case 3:
    239      1.25   mjacob 			revname = "1040";
    240      1.25   mjacob 			isp->isp_type = ISP_HA_SCSI_1040;
    241      1.36   mjacob 			isp->isp_clock = 60;
    242      1.25   mjacob 			break;
    243      1.25   mjacob 		case 4:
    244      1.10   mjacob 			revname = "1040A";
    245      1.10   mjacob 			isp->isp_type = ISP_HA_SCSI_1040A;
    246      1.36   mjacob 			isp->isp_clock = 60;
    247      1.10   mjacob 			break;
    248      1.10   mjacob 		case 5:
    249      1.10   mjacob 			revname = "1040B";
    250      1.10   mjacob 			isp->isp_type = ISP_HA_SCSI_1040B;
    251      1.36   mjacob 			isp->isp_clock = 60;
    252      1.10   mjacob 			break;
    253      1.35   mjacob 		case 6:
    254      1.35   mjacob 			revname = "1040C(?)";
    255      1.35   mjacob 			isp->isp_type = ISP_HA_SCSI_1040C;
    256      1.36   mjacob 			isp->isp_clock = 60;
    257      1.35   mjacob                         break;
    258       1.8   mjacob 		}
    259      1.25   mjacob 		/*
    260      1.31   mjacob 		 * Now, while we're at it, gather info about ultra
    261      1.31   mjacob 		 * and/or differential mode.
    262      1.25   mjacob 		 */
    263      1.31   mjacob 		if (ISP_READ(isp, SXP_PINS_DIFF) & SXP_PINS_DIFF_MODE) {
    264      1.31   mjacob 			PRINTF("%s: Differential Mode\n", isp->isp_name);
    265      1.31   mjacob 			sdp->isp_diffmode = 1;
    266      1.31   mjacob 		} else {
    267      1.31   mjacob 			sdp->isp_diffmode = 0;
    268      1.31   mjacob 		}
    269      1.31   mjacob 		i = ISP_READ(isp, RISC_PSR);
    270      1.31   mjacob 		if (isp->isp_bustype == ISP_BT_SBUS) {
    271      1.31   mjacob 			i &= RISC_PSR_SBUS_ULTRA;
    272      1.30   mjacob 		} else {
    273      1.31   mjacob 			i &= RISC_PSR_PCI_ULTRA;
    274      1.31   mjacob 		}
    275      1.31   mjacob 		if (i != 0) {
    276      1.31   mjacob 			PRINTF("%s: Ultra Mode Capable\n", isp->isp_name);
    277      1.31   mjacob 			sdp->isp_ultramode = 1;
    278      1.33   mjacob 			/*
    279      1.33   mjacob 			 * If we're in Ultra Mode, we have to be 60Mhz clock-
    280      1.33   mjacob 			 * even for the SBus version.
    281      1.33   mjacob 			 */
    282      1.36   mjacob 			isp->isp_clock = 60;
    283      1.34   mjacob 		} else {
    284      1.31   mjacob 			sdp->isp_ultramode = 0;
    285      1.33   mjacob 			/*
    286      1.33   mjacob 			 * Clock is known. Gronk.
    287      1.33   mjacob 			 */
    288      1.25   mjacob 		}
    289      1.25   mjacob 
    290      1.25   mjacob 		/*
    291      1.25   mjacob 		 * Machine dependent clock (if set) overrides
    292      1.25   mjacob 		 * our generic determinations.
    293      1.25   mjacob 		 */
    294      1.25   mjacob 		if (isp->isp_mdvec->dv_clock) {
    295      1.36   mjacob 			if (isp->isp_mdvec->dv_clock < isp->isp_clock) {
    296      1.36   mjacob 				isp->isp_clock = isp->isp_mdvec->dv_clock;
    297      1.25   mjacob 			}
    298      1.25   mjacob 		}
    299      1.31   mjacob 
    300       1.4   mjacob 	}
    301       1.8   mjacob 
    302       1.1      cgd 	/*
    303      1.10   mjacob 	 * Do MD specific pre initialization
    304       1.1      cgd 	 */
    305      1.10   mjacob 	ISP_RESET0(isp);
    306      1.25   mjacob 
    307      1.31   mjacob again:
    308      1.30   mjacob 
    309       1.1      cgd 	/*
    310      1.10   mjacob 	 * Hit the chip over the head with hammer,
    311      1.10   mjacob 	 * and give the ISP a chance to recover.
    312       1.1      cgd 	 */
    313       1.1      cgd 
    314      1.33   mjacob 	if (IS_SCSI(isp)) {
    315      1.10   mjacob 		ISP_WRITE(isp, BIU_ICR, BIU_ICR_SOFT_RESET);
    316      1.10   mjacob 		/*
    317      1.10   mjacob 		 * A slight delay...
    318      1.10   mjacob 		 */
    319      1.23   mjacob 		SYS_DELAY(100);
    320      1.10   mjacob 
    321      1.33   mjacob #if	0
    322      1.33   mjacob 		PRINTF("%s: mbox0-5: 0x%x 0x%x 0x%x 0x%x 0x%x 0x%x\n",
    323      1.33   mjacob 		    isp->isp_name, ISP_READ(isp, OUTMAILBOX0),
    324      1.33   mjacob 		    ISP_READ(isp, OUTMAILBOX1), ISP_READ(isp, OUTMAILBOX2),
    325      1.33   mjacob 		    ISP_READ(isp, OUTMAILBOX3), ISP_READ(isp, OUTMAILBOX4),
    326      1.33   mjacob 		    ISP_READ(isp, OUTMAILBOX5));
    327      1.33   mjacob #endif
    328      1.33   mjacob 
    329      1.10   mjacob 		/*
    330      1.10   mjacob 		 * Clear data && control DMA engines.
    331      1.10   mjacob 		 */
    332      1.10   mjacob 		ISP_WRITE(isp, CDMA_CONTROL,
    333      1.34   mjacob 		    DMA_CNTRL_CLEAR_CHAN | DMA_CNTRL_RESET_INT);
    334      1.10   mjacob 		ISP_WRITE(isp, DDMA_CONTROL,
    335      1.34   mjacob 		    DMA_CNTRL_CLEAR_CHAN | DMA_CNTRL_RESET_INT);
    336      1.33   mjacob 
    337      1.33   mjacob 
    338      1.10   mjacob 	} else {
    339      1.10   mjacob 		ISP_WRITE(isp, BIU2100_CSR, BIU2100_SOFT_RESET);
    340      1.10   mjacob 		/*
    341      1.10   mjacob 		 * A slight delay...
    342      1.10   mjacob 		 */
    343      1.23   mjacob 		SYS_DELAY(100);
    344      1.31   mjacob 
    345      1.31   mjacob 		/*
    346      1.31   mjacob 		 * Clear data && control DMA engines.
    347      1.31   mjacob 		 */
    348      1.10   mjacob 		ISP_WRITE(isp, CDMA2100_CONTROL,
    349      1.10   mjacob 			DMA_CNTRL2100_CLEAR_CHAN | DMA_CNTRL2100_RESET_INT);
    350      1.10   mjacob 		ISP_WRITE(isp, TDMA2100_CONTROL,
    351      1.10   mjacob 			DMA_CNTRL2100_CLEAR_CHAN | DMA_CNTRL2100_RESET_INT);
    352      1.10   mjacob 		ISP_WRITE(isp, RDMA2100_CONTROL,
    353      1.10   mjacob 			DMA_CNTRL2100_CLEAR_CHAN | DMA_CNTRL2100_RESET_INT);
    354      1.10   mjacob 	}
    355      1.10   mjacob 
    356       1.1      cgd 	/*
    357       1.1      cgd 	 * Wait for ISP to be ready to go...
    358       1.1      cgd 	 */
    359       1.1      cgd 	loops = MBOX_DELAY_COUNT;
    360      1.10   mjacob 	for (;;) {
    361      1.38   mjacob 		if (IS_SCSI(isp)) {
    362      1.10   mjacob 			if (!(ISP_READ(isp, BIU_ICR) & BIU_ICR_SOFT_RESET))
    363      1.10   mjacob 				break;
    364      1.10   mjacob 		} else {
    365      1.10   mjacob 			if (!(ISP_READ(isp, BIU2100_CSR) & BIU2100_SOFT_RESET))
    366      1.10   mjacob 				break;
    367      1.10   mjacob 		}
    368      1.23   mjacob 		SYS_DELAY(100);
    369       1.1      cgd 		if (--loops < 0) {
    370      1.10   mjacob 			isp_dumpregs(isp, "chip reset timed out");
    371       1.1      cgd 			return;
    372       1.1      cgd 		}
    373       1.1      cgd 	}
    374      1.31   mjacob 
    375       1.1      cgd 	/*
    376      1.31   mjacob 	 * After we've fired this chip up, zero out the conf1 register
    377      1.31   mjacob 	 * for SCSI adapters and other settings for the 2100.
    378       1.1      cgd 	 */
    379      1.31   mjacob 
    380      1.33   mjacob 	if (IS_SCSI(isp)) {
    381      1.10   mjacob 		ISP_WRITE(isp, BIU_CONF1, 0);
    382      1.10   mjacob 	} else {
    383      1.10   mjacob 		ISP_WRITE(isp, BIU2100_CSR, 0);
    384      1.10   mjacob 	}
    385       1.1      cgd 
    386      1.31   mjacob 	/*
    387      1.31   mjacob 	 * Reset RISC Processor
    388      1.31   mjacob 	 */
    389       1.1      cgd 	ISP_WRITE(isp, HCCR, HCCR_CMD_RESET);
    390      1.23   mjacob 	SYS_DELAY(100);
    391       1.1      cgd 
    392      1.30   mjacob 	/*
    393      1.31   mjacob 	 * Establish some initial burst rate stuff.
    394      1.30   mjacob 	 * (only for the 1XX0 boards). This really should
    395      1.30   mjacob 	 * be done later after fetching from NVRAM.
    396      1.30   mjacob 	 */
    397      1.33   mjacob 	if (IS_SCSI(isp)) {
    398      1.31   mjacob 		u_int16_t tmp = isp->isp_mdvec->dv_conf1;
    399      1.30   mjacob 		/*
    400      1.30   mjacob 		 * Busted FIFO. Turn off all but burst enables.
    401      1.30   mjacob 		 */
    402      1.30   mjacob 		if (isp->isp_type == ISP_HA_SCSI_1040A) {
    403      1.31   mjacob 			tmp &= BIU_BURST_ENABLE;
    404      1.30   mjacob 		}
    405      1.31   mjacob 		ISP_SETBITS(isp, BIU_CONF1, tmp);
    406      1.31   mjacob 		if (tmp & BIU_BURST_ENABLE) {
    407       1.1      cgd 			ISP_SETBITS(isp, CDMA_CONF, DMA_ENABLE_BURST);
    408       1.1      cgd 			ISP_SETBITS(isp, DDMA_CONF, DMA_ENABLE_BURST);
    409       1.1      cgd 		}
    410      1.31   mjacob #ifdef	PTI_CARDS
    411      1.31   mjacob 		if (((sdparam *) isp->isp_param)->isp_ultramode) {
    412      1.34   mjacob 			while (ISP_READ(isp, RISC_MTR) != 0x1313) {
    413      1.31   mjacob 				ISP_WRITE(isp, RISC_MTR, 0x1313);
    414      1.31   mjacob 				ISP_WRITE(isp, HCCR, HCCR_CMD_STEP);
    415      1.31   mjacob 			}
    416      1.34   mjacob 		} else {
    417      1.31   mjacob 			ISP_WRITE(isp, RISC_MTR, 0x1212);
    418      1.31   mjacob 		}
    419      1.31   mjacob 		/*
    420      1.31   mjacob 		 * PTI specific register
    421      1.31   mjacob 		 */
    422      1.31   mjacob 		ISP_WRITE(isp, RISC_EMB, DUAL_BANK)
    423      1.31   mjacob #else
    424      1.31   mjacob 		ISP_WRITE(isp, RISC_MTR, 0x1212);
    425      1.31   mjacob #endif
    426      1.31   mjacob 	} else {
    427      1.31   mjacob 		ISP_WRITE(isp, RISC_MTR2100, 0x1212);
    428       1.1      cgd 	}
    429      1.31   mjacob 
    430       1.1      cgd 	ISP_WRITE(isp, HCCR, HCCR_CMD_RELEASE); /* release paused processor */
    431       1.1      cgd 
    432       1.1      cgd 	/*
    433       1.1      cgd 	 * Do MD specific post initialization
    434       1.1      cgd 	 */
    435       1.1      cgd 	ISP_RESET1(isp);
    436       1.1      cgd 
    437       1.1      cgd 	/*
    438      1.31   mjacob 	 * Wait for everything to finish firing up...
    439      1.31   mjacob 	 */
    440      1.31   mjacob 	loops = MBOX_DELAY_COUNT;
    441      1.31   mjacob 	while (ISP_READ(isp, OUTMAILBOX0) == MBOX_BUSY) {
    442      1.31   mjacob 		SYS_DELAY(100);
    443      1.31   mjacob 		if (--loops < 0) {
    444      1.31   mjacob 			PRINTF("%s: MBOX_BUSY never cleared on reset\n",
    445      1.31   mjacob 			    isp->isp_name);
    446      1.31   mjacob 			return;
    447      1.31   mjacob 		}
    448      1.31   mjacob 	}
    449      1.31   mjacob 
    450      1.31   mjacob 	/*
    451      1.31   mjacob 	 * Up until this point we've done everything by just reading or
    452      1.31   mjacob 	 * setting registers. From this point on we rely on at least *some*
    453      1.31   mjacob 	 * kind of firmware running in the card.
    454      1.31   mjacob 	 */
    455      1.31   mjacob 
    456      1.31   mjacob 	/*
    457       1.1      cgd 	 * Do some sanity checking.
    458       1.1      cgd 	 */
    459       1.1      cgd 	mbs.param[0] = MBOX_NO_OP;
    460      1.10   mjacob 	isp_mboxcmd(isp, &mbs);
    461       1.1      cgd 	if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    462      1.10   mjacob 		isp_dumpregs(isp, "NOP test failed");
    463       1.1      cgd 		return;
    464       1.1      cgd 	}
    465       1.1      cgd 
    466      1.37   mjacob 	if (IS_SCSI(isp)) {
    467      1.10   mjacob 		mbs.param[0] = MBOX_MAILBOX_REG_TEST;
    468      1.10   mjacob 		mbs.param[1] = 0xdead;
    469      1.10   mjacob 		mbs.param[2] = 0xbeef;
    470      1.10   mjacob 		mbs.param[3] = 0xffff;
    471      1.10   mjacob 		mbs.param[4] = 0x1111;
    472      1.10   mjacob 		mbs.param[5] = 0xa5a5;
    473      1.10   mjacob 		isp_mboxcmd(isp, &mbs);
    474       1.1      cgd 		if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    475      1.10   mjacob 			isp_dumpregs(isp,
    476      1.10   mjacob 				"Mailbox Register test didn't complete");
    477      1.10   mjacob 			return;
    478      1.10   mjacob 		}
    479      1.10   mjacob 		if (mbs.param[1] != 0xdead || mbs.param[2] != 0xbeef ||
    480      1.10   mjacob 		    mbs.param[3] != 0xffff || mbs.param[4] != 0x1111 ||
    481      1.10   mjacob 		    mbs.param[5] != 0xa5a5) {
    482      1.10   mjacob 			isp_dumpregs(isp, "Register Test Failed");
    483       1.1      cgd 			return;
    484       1.1      cgd 		}
    485      1.10   mjacob 
    486       1.1      cgd 	}
    487       1.1      cgd 
    488       1.1      cgd 	/*
    489      1.18   mjacob 	 * Download new Firmware, unless requested not to do so.
    490      1.18   mjacob 	 * This is made slightly trickier in some cases where the
    491      1.18   mjacob 	 * firmware of the ROM revision is newer than the revision
    492      1.18   mjacob 	 * compiled into the driver. So, where we used to compare
    493      1.18   mjacob 	 * versions of our f/w and the ROM f/w, now we just see
    494      1.18   mjacob 	 * whether we have f/w at all and whether a config flag
    495      1.18   mjacob 	 * has disabled our download.
    496       1.1      cgd 	 */
    497      1.23   mjacob 	if ((isp->isp_mdvec->dv_fwlen == 0) ||
    498      1.23   mjacob 	    (isp->isp_confopts & ISP_CFG_NORELOAD)) {
    499      1.10   mjacob 		dodnld = 0;
    500      1.10   mjacob 	}
    501      1.10   mjacob 
    502      1.31   mjacob 	if (dodnld && isp->isp_mdvec->dv_fwlen) {
    503      1.10   mjacob 		for (i = 0; i < isp->isp_mdvec->dv_fwlen; i++) {
    504      1.10   mjacob 			mbs.param[0] = MBOX_WRITE_RAM_WORD;
    505      1.10   mjacob 			mbs.param[1] = isp->isp_mdvec->dv_codeorg + i;
    506      1.10   mjacob 			mbs.param[2] = isp->isp_mdvec->dv_ispfw[i];
    507      1.10   mjacob 			isp_mboxcmd(isp, &mbs);
    508      1.10   mjacob 			if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    509      1.31   mjacob 				PRINTF("%s: F/W download failed at word %d\n",
    510      1.31   mjacob 				    isp->isp_name, i);
    511      1.31   mjacob 				dodnld = 0;
    512      1.31   mjacob 				goto again;
    513      1.10   mjacob 			}
    514      1.10   mjacob 		}
    515      1.10   mjacob 
    516      1.31   mjacob 		/*
    517      1.31   mjacob 		 * Verify that it downloaded correctly.
    518      1.31   mjacob 		 */
    519      1.31   mjacob 		mbs.param[0] = MBOX_VERIFY_CHECKSUM;
    520      1.31   mjacob 		mbs.param[1] = isp->isp_mdvec->dv_codeorg;
    521      1.31   mjacob 		isp_mboxcmd(isp, &mbs);
    522      1.31   mjacob 		if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    523      1.31   mjacob 			isp_dumpregs(isp, "ram checksum failure");
    524      1.31   mjacob 			return;
    525      1.10   mjacob 		}
    526      1.10   mjacob 	} else {
    527      1.20   mjacob 		IDPRINTF(3, ("%s: skipping f/w download\n", isp->isp_name));
    528       1.1      cgd 	}
    529       1.1      cgd 
    530       1.1      cgd 	/*
    531      1.10   mjacob 	 * Now start it rolling.
    532      1.10   mjacob 	 *
    533      1.10   mjacob 	 * If we didn't actually download f/w,
    534      1.10   mjacob 	 * we still need to (re)start it.
    535       1.1      cgd 	 */
    536       1.1      cgd 
    537       1.1      cgd 	mbs.param[0] = MBOX_EXEC_FIRMWARE;
    538      1.31   mjacob 	if (isp->isp_mdvec->dv_codeorg)
    539      1.31   mjacob 		mbs.param[1] = isp->isp_mdvec->dv_codeorg;
    540      1.31   mjacob 	else
    541      1.31   mjacob 		mbs.param[1] = 0x1000;
    542      1.10   mjacob 	isp_mboxcmd(isp, &mbs);
    543       1.4   mjacob 
    544      1.38   mjacob 	if (IS_SCSI(isp)) {
    545      1.10   mjacob 		/*
    546      1.25   mjacob 		 * Set CLOCK RATE, but only if asked to.
    547      1.10   mjacob 		 */
    548      1.36   mjacob 		if (isp->isp_clock) {
    549      1.10   mjacob 			mbs.param[0] = MBOX_SET_CLOCK_RATE;
    550      1.36   mjacob 			mbs.param[1] = isp->isp_clock;
    551      1.10   mjacob 			isp_mboxcmd(isp, &mbs);
    552      1.10   mjacob 			if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    553      1.38   mjacob 				PRINTF("failed to set clockrate (0x%x)\n",
    554      1.38   mjacob 				    mbs.param[0]);
    555      1.25   mjacob 				/* but continue */
    556      1.10   mjacob 			}
    557       1.4   mjacob 		}
    558       1.4   mjacob 	}
    559       1.1      cgd 	mbs.param[0] = MBOX_ABOUT_FIRMWARE;
    560      1.10   mjacob 	isp_mboxcmd(isp, &mbs);
    561       1.1      cgd 	if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    562      1.38   mjacob 		PRINTF("could not get f/w started (0x%x)\n", mbs.param[0]);
    563       1.1      cgd 		return;
    564       1.1      cgd 	}
    565      1.38   mjacob 	CFGPRINTF("%s: Board Revision %s, %s F/W Revision %d.%d.%d\n",
    566      1.38   mjacob 	    isp->isp_name, revname, dodnld? "loaded" : "resident",
    567      1.38   mjacob 	    mbs.param[1], mbs.param[2], mbs.param[3]);
    568      1.34   mjacob 	if (IS_FC(isp)) {
    569      1.32   mjacob 		if (ISP_READ(isp, BIU2100_CSR) & BIU2100_PCI64) {
    570      1.38   mjacob 			CFGPRINTF("%s: in 64-Bit PCI slot\n", isp->isp_name);
    571      1.32   mjacob 		}
    572      1.32   mjacob 	}
    573      1.38   mjacob 
    574      1.35   mjacob 	isp->isp_fwrev[0] = mbs.param[1];
    575      1.35   mjacob 	isp->isp_fwrev[1] = mbs.param[2];
    576      1.35   mjacob 	isp->isp_fwrev[2] = mbs.param[3];
    577      1.35   mjacob 	if (isp->isp_romfw_rev[0] || isp->isp_romfw_rev[1] ||
    578      1.35   mjacob 	    isp->isp_romfw_rev[2]) {
    579      1.38   mjacob 		CFGPRINTF("%s: Last F/W revision was %d.%d.%d\n", isp->isp_name,
    580      1.35   mjacob 		    isp->isp_romfw_rev[0], isp->isp_romfw_rev[1],
    581      1.35   mjacob 		    isp->isp_romfw_rev[2]);
    582      1.25   mjacob 	}
    583      1.38   mjacob 
    584      1.38   mjacob 	mbs.param[0] = MBOX_GET_FIRMWARE_STATUS;
    585      1.38   mjacob 	isp_mboxcmd(isp, &mbs);
    586      1.38   mjacob 	if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    587      1.38   mjacob 		PRINTF("%s: could not GET FIRMWARE STATUS\n", isp->isp_name);
    588      1.38   mjacob 		return;
    589      1.38   mjacob 	}
    590      1.38   mjacob 	isp->isp_maxcmds = mbs.param[2];
    591      1.38   mjacob 	CFGPRINTF("%s: %d max I/O commands supported\n",
    592      1.38   mjacob 	    isp->isp_name, mbs.param[2]);
    593      1.10   mjacob 	isp_fw_state(isp);
    594      1.38   mjacob 
    595      1.36   mjacob 	/*
    596      1.36   mjacob 	 * Set up DMA for the request and result mailboxes.
    597      1.36   mjacob 	 */
    598      1.36   mjacob 	if (ISP_MBOXDMASETUP(isp) != 0) {
    599      1.36   mjacob 		PRINTF("%s: can't setup dma mailboxes\n", isp->isp_name);
    600      1.36   mjacob 		return;
    601      1.36   mjacob 	}
    602       1.1      cgd 	isp->isp_state = ISP_RESETSTATE;
    603       1.1      cgd }
    604       1.1      cgd 
    605       1.1      cgd /*
    606      1.31   mjacob  * Initialize Parameters of Hardware to a known state.
    607      1.24   mjacob  *
    608      1.24   mjacob  * Locks are held before coming here.
    609       1.1      cgd  */
    610      1.24   mjacob 
    611       1.1      cgd void
    612       1.1      cgd isp_init(isp)
    613       1.1      cgd 	struct ispsoftc *isp;
    614       1.1      cgd {
    615      1.36   mjacob 	/*
    616      1.36   mjacob 	 * Must do this first to get defaults established.
    617      1.36   mjacob 	 */
    618      1.36   mjacob 	isp_setdfltparm(isp, 0);
    619      1.36   mjacob 	if (IS_12X0(isp)) {
    620      1.36   mjacob 		isp_setdfltparm(isp, 1);
    621      1.36   mjacob 	}
    622      1.36   mjacob 
    623      1.36   mjacob 	if (IS_FC(isp)) {
    624      1.36   mjacob 		isp_fibre_init(isp);
    625      1.36   mjacob 	} else {
    626      1.36   mjacob 		isp_scsi_init(isp);
    627      1.36   mjacob 	}
    628      1.36   mjacob }
    629      1.36   mjacob 
    630      1.36   mjacob static void
    631      1.36   mjacob isp_scsi_init(isp)
    632      1.36   mjacob 	struct ispsoftc *isp;
    633      1.36   mjacob {
    634      1.36   mjacob 	sdparam *sdp_chan0, *sdp_chan1;
    635       1.1      cgd 	mbreg_t mbs;
    636      1.36   mjacob 
    637      1.36   mjacob 	sdp_chan0 = isp->isp_param;
    638      1.36   mjacob 	sdp_chan1 = sdp_chan0;
    639      1.36   mjacob 	if (IS_12X0(isp)) {
    640      1.36   mjacob 		sdp_chan1++;
    641      1.36   mjacob 	}
    642      1.36   mjacob 
    643      1.36   mjacob 	/* First do overall per-card settings. */
    644      1.25   mjacob 
    645      1.25   mjacob 	/*
    646      1.36   mjacob 	 * If we have fast memory timing enabled, turn it on.
    647      1.25   mjacob 	 */
    648      1.36   mjacob 	if (isp->isp_fast_mttr) {
    649      1.36   mjacob 		ISP_WRITE(isp, RISC_MTR, 0x1313);
    650      1.36   mjacob 	}
    651      1.25   mjacob 
    652      1.25   mjacob 	/*
    653      1.36   mjacob 	 * Set Retry Delay and Count.
    654      1.36   mjacob 	 * You set both channels at the same time.
    655      1.33   mjacob 	 */
    656      1.36   mjacob 	mbs.param[0] = MBOX_SET_RETRY_COUNT;
    657      1.36   mjacob 	mbs.param[1] = sdp_chan0->isp_retry_count;
    658      1.36   mjacob 	mbs.param[2] = sdp_chan0->isp_retry_delay;
    659      1.36   mjacob 	mbs.param[6] = sdp_chan1->isp_retry_count;
    660      1.36   mjacob 	mbs.param[7] = sdp_chan1->isp_retry_delay;
    661      1.36   mjacob 
    662      1.36   mjacob 	isp_mboxcmd(isp, &mbs);
    663      1.36   mjacob 	if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    664      1.36   mjacob 		PRINTF("%s: failed to set retry count and retry delay\n",
    665      1.36   mjacob 		    isp->isp_name);
    666      1.33   mjacob 		return;
    667      1.33   mjacob 	}
    668      1.34   mjacob 
    669      1.33   mjacob 	/*
    670      1.36   mjacob 	 * Set ASYNC DATA SETUP time. This is very important.
    671      1.25   mjacob 	 */
    672      1.36   mjacob 	mbs.param[0] = MBOX_SET_ASYNC_DATA_SETUP_TIME;
    673      1.36   mjacob 	mbs.param[1] = sdp_chan0->isp_async_data_setup;
    674      1.36   mjacob 	mbs.param[2] = sdp_chan1->isp_async_data_setup;
    675      1.36   mjacob 	isp_mboxcmd(isp, &mbs);
    676      1.36   mjacob 	if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    677      1.36   mjacob 		PRINTF("%s: failed to set asynchronous data setup time\n",
    678      1.36   mjacob 		    isp->isp_name);
    679      1.10   mjacob 		return;
    680       1.1      cgd 	}
    681       1.1      cgd 
    682      1.10   mjacob 	/*
    683      1.36   mjacob 	 * Set ACTIVE Negation State.
    684      1.32   mjacob 	 */
    685      1.36   mjacob 	mbs.param[0] = MBOX_SET_ACT_NEG_STATE;
    686      1.36   mjacob 	mbs.param[1] =
    687      1.36   mjacob 	    (sdp_chan0->isp_req_ack_active_neg << 4) |
    688      1.36   mjacob 	    (sdp_chan0->isp_data_line_active_neg << 5);
    689      1.36   mjacob 	mbs.param[2] =
    690      1.36   mjacob 	    (sdp_chan1->isp_req_ack_active_neg << 4) |
    691      1.36   mjacob 	    (sdp_chan1->isp_data_line_active_neg << 5);
    692      1.36   mjacob 
    693      1.36   mjacob 	isp_mboxcmd(isp, &mbs);
    694      1.36   mjacob 	if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    695      1.36   mjacob 		PRINTF("%s: failed to set active negation state "
    696      1.36   mjacob 		    "(%d,%d),(%d,%d)\n", isp->isp_name,
    697      1.36   mjacob 		    sdp_chan0->isp_req_ack_active_neg,
    698      1.36   mjacob 		    sdp_chan0->isp_data_line_active_neg,
    699      1.36   mjacob 		    sdp_chan1->isp_req_ack_active_neg,
    700      1.36   mjacob 		    sdp_chan1->isp_data_line_active_neg);
    701      1.36   mjacob 		/*
    702      1.36   mjacob 		 * But don't return.
    703      1.36   mjacob 		 */
    704      1.32   mjacob 	}
    705      1.32   mjacob 
    706      1.32   mjacob 	/*
    707      1.36   mjacob 	 * Set the Tag Aging limit
    708      1.10   mjacob 	 */
    709      1.36   mjacob 	mbs.param[0] = MBOX_SET_TAG_AGE_LIMIT;
    710      1.36   mjacob 	mbs.param[1] = sdp_chan0->isp_tag_aging;
    711      1.36   mjacob 	mbs.param[2] = sdp_chan1->isp_tag_aging;
    712      1.10   mjacob 	isp_mboxcmd(isp, &mbs);
    713       1.1      cgd 	if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    714      1.36   mjacob 		PRINTF("%s: failed to set tag age limit (%d,%d)\n",
    715      1.36   mjacob 		    isp->isp_name, sdp_chan0->isp_tag_aging,
    716      1.36   mjacob 		    sdp_chan1->isp_tag_aging);
    717       1.1      cgd 		return;
    718       1.1      cgd 	}
    719       1.1      cgd 
    720      1.25   mjacob 	/*
    721      1.36   mjacob 	 * Set selection timeout.
    722      1.25   mjacob 	 */
    723      1.36   mjacob 	mbs.param[0] = MBOX_SET_SELECT_TIMEOUT;
    724      1.36   mjacob 	mbs.param[1] = sdp_chan0->isp_selection_timeout;
    725      1.36   mjacob 	mbs.param[2] = sdp_chan1->isp_selection_timeout;
    726      1.10   mjacob 	isp_mboxcmd(isp, &mbs);
    727       1.1      cgd 	if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    728      1.36   mjacob 		PRINTF("%s: failed to set selection timeout\n", isp->isp_name);
    729       1.1      cgd 		return;
    730       1.1      cgd 	}
    731       1.1      cgd 
    732      1.36   mjacob 	/* now do per-channel settings */
    733      1.36   mjacob 	isp_scsi_channel_init(isp, 0);
    734      1.36   mjacob 	if (IS_12X0(isp))
    735      1.36   mjacob 		isp_scsi_channel_init(isp, 1);
    736      1.36   mjacob 
    737      1.25   mjacob 	/*
    738      1.36   mjacob 	 * Now enable request/response queues
    739      1.25   mjacob 	 */
    740      1.36   mjacob 
    741      1.36   mjacob 	mbs.param[0] = MBOX_INIT_RES_QUEUE;
    742      1.36   mjacob 	mbs.param[1] = RESULT_QUEUE_LEN;
    743      1.36   mjacob 	mbs.param[2] = DMA_MSW(isp->isp_result_dma);
    744      1.36   mjacob 	mbs.param[3] = DMA_LSW(isp->isp_result_dma);
    745      1.36   mjacob 	mbs.param[4] = 0;
    746      1.36   mjacob 	mbs.param[5] = 0;
    747      1.10   mjacob 	isp_mboxcmd(isp, &mbs);
    748       1.1      cgd 	if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    749      1.36   mjacob 		PRINTF("%s: set of response queue failed\n", isp->isp_name);
    750       1.1      cgd 		return;
    751       1.1      cgd 	}
    752      1.36   mjacob 	isp->isp_residx = 0;
    753       1.1      cgd 
    754      1.36   mjacob 	mbs.param[0] = MBOX_INIT_REQ_QUEUE;
    755      1.36   mjacob 	mbs.param[1] = RQUEST_QUEUE_LEN;
    756      1.36   mjacob 	mbs.param[2] = DMA_MSW(isp->isp_rquest_dma);
    757      1.36   mjacob 	mbs.param[3] = DMA_LSW(isp->isp_rquest_dma);
    758      1.36   mjacob 	mbs.param[4] = 0;
    759      1.36   mjacob 	mbs.param[5] = 0;
    760      1.10   mjacob 	isp_mboxcmd(isp, &mbs);
    761       1.1      cgd 	if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    762      1.36   mjacob 		PRINTF("%s: set of request queue failed\n", isp->isp_name);
    763       1.1      cgd 		return;
    764       1.1      cgd 	}
    765      1.36   mjacob 	isp->isp_reqidx = isp->isp_reqodx = 0;
    766       1.1      cgd 
    767      1.25   mjacob 	/*
    768      1.36   mjacob 	 *  Turn on Fast Posting, LVD transitions
    769      1.25   mjacob 	 */
    770      1.25   mjacob 
    771      1.36   mjacob 	if (IS_1080(isp) ||
    772      1.36   mjacob 	    ISP_FW_REVX(isp->isp_fwrev) >= ISP_FW_REV(7, 55, 0)) {
    773      1.36   mjacob 		mbs.param[0] = MBOX_SET_FW_FEATURES;
    774      1.36   mjacob #ifndef	ISP_NO_FASTPOST_SCSI
    775      1.36   mjacob 		mbs.param[1] |= FW_FEATURE_FAST_POST;
    776      1.36   mjacob #else
    777      1.36   mjacob 		mbs.param[1] = 0;
    778      1.36   mjacob #endif
    779      1.36   mjacob 		if (IS_1080(isp))
    780      1.36   mjacob 			mbs.param[1] |= FW_FEATURE_LVD_NOTIFY;
    781      1.36   mjacob 		if (mbs.param[1] != 0) {
    782      1.36   mjacob 			isp_mboxcmd(isp, &mbs);
    783      1.36   mjacob 			if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    784      1.36   mjacob 				PRINTF("%s: unable enable FW features\n",
    785      1.36   mjacob 				    isp->isp_name);
    786      1.36   mjacob 			}
    787      1.36   mjacob 		}
    788       1.1      cgd 	}
    789       1.1      cgd 
    790      1.25   mjacob 	/*
    791      1.36   mjacob 	 * Let the outer layers decide whether to issue a SCSI bus reset.
    792      1.25   mjacob 	 */
    793      1.36   mjacob 	isp->isp_state = ISP_INITSTATE;
    794      1.36   mjacob }
    795      1.25   mjacob 
    796      1.36   mjacob static void
    797      1.36   mjacob isp_scsi_channel_init(isp, channel)
    798      1.36   mjacob 	struct ispsoftc *isp;
    799      1.36   mjacob 	int channel;
    800      1.36   mjacob {
    801      1.36   mjacob 	sdparam *sdp;
    802      1.36   mjacob 	mbreg_t mbs;
    803      1.36   mjacob 	int tgt;
    804      1.36   mjacob 
    805      1.36   mjacob 	sdp = isp->isp_param;
    806      1.36   mjacob 	sdp += channel;
    807      1.36   mjacob 
    808      1.36   mjacob 	/*
    809      1.36   mjacob 	 * Set (possibly new) Initiator ID.
    810      1.36   mjacob 	 */
    811      1.36   mjacob 	mbs.param[0] = MBOX_SET_INIT_SCSI_ID;
    812      1.36   mjacob 	mbs.param[1] = (channel << 7) | sdp->isp_initiator_id;
    813      1.10   mjacob 	isp_mboxcmd(isp, &mbs);
    814       1.1      cgd 	if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    815      1.36   mjacob 		PRINTF("%s: cannot set initiator id on bus %d to %d\n",
    816      1.36   mjacob 		    isp->isp_name, channel, sdp->isp_initiator_id);
    817       1.1      cgd 		return;
    818       1.1      cgd 	}
    819       1.1      cgd 
    820      1.25   mjacob 	/*
    821      1.32   mjacob 	 * Set current per-target parameters to a safe minimum.
    822      1.25   mjacob 	 */
    823      1.25   mjacob 	for (tgt = 0; tgt < MAX_TARGETS; tgt++) {
    824      1.25   mjacob 		int maxlun, lun;
    825      1.32   mjacob 		u_int16_t sdf;
    826      1.10   mjacob 
    827      1.36   mjacob 		if (sdp->isp_devparam[tgt].dev_enable == 0) {
    828      1.38   mjacob 			IDPRINTF(1, ("%s: skipping target %d bus %d settings\n",
    829      1.38   mjacob 			    isp->isp_name, tgt, channel));
    830       1.1      cgd 			continue;
    831      1.36   mjacob 		}
    832       1.1      cgd 
    833      1.36   mjacob 		/*
    834      1.36   mjacob 		 * If we're in LVD mode, then we pretty much should
    835      1.36   mjacob 		 * only disable tagged queuing.
    836      1.36   mjacob 		 */
    837      1.35   mjacob 		if (IS_1080(isp) && sdp->isp_lvdmode) {
    838      1.35   mjacob 			sdf = DPARM_DEFAULT & ~DPARM_TQING;
    839      1.35   mjacob 		} else {
    840      1.35   mjacob 			sdf = DPARM_SAFE_DFLT;
    841      1.35   mjacob 			/*
    842      1.35   mjacob 			 * It is not quite clear when this changed over so that
    843      1.35   mjacob 			 * we could force narrow and async, so assume >= 7.55.
    844      1.35   mjacob 			 */
    845      1.35   mjacob 			if (ISP_FW_REVX(isp->isp_fwrev) >=
    846      1.35   mjacob 			    ISP_FW_REV(7, 55, 0)) {
    847      1.35   mjacob 				sdf |= DPARM_NARROW | DPARM_ASYNC;
    848      1.35   mjacob 			}
    849      1.20   mjacob 		}
    850      1.32   mjacob 		mbs.param[0] = MBOX_SET_TARGET_PARAMS;
    851      1.36   mjacob 		mbs.param[1] = (tgt << 8) | (channel << 15);
    852      1.32   mjacob 		mbs.param[2] = sdf;
    853      1.34   mjacob 		mbs.param[3] =
    854      1.34   mjacob 		    (sdp->isp_devparam[tgt].sync_offset << 8) |
    855      1.34   mjacob 		    (sdp->isp_devparam[tgt].sync_period);
    856      1.10   mjacob 		isp_mboxcmd(isp, &mbs);
    857       1.1      cgd 		if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    858      1.32   mjacob 			sdf = DPARM_SAFE_DFLT;
    859      1.10   mjacob 			mbs.param[0] = MBOX_SET_TARGET_PARAMS;
    860      1.36   mjacob 			mbs.param[1] = (tgt << 8) | (channel << 15);
    861      1.32   mjacob 			mbs.param[2] = sdf;
    862      1.34   mjacob 			mbs.param[3] =
    863      1.34   mjacob 			    (sdp->isp_devparam[tgt].sync_offset << 8) |
    864      1.34   mjacob 			    (sdp->isp_devparam[tgt].sync_period);
    865      1.10   mjacob 			isp_mboxcmd(isp, &mbs);
    866      1.10   mjacob 			if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    867      1.25   mjacob 				PRINTF("%s: failed even to set defaults for "
    868      1.25   mjacob 				    "target %d\n", isp->isp_name, tgt);
    869      1.25   mjacob 				continue;
    870      1.10   mjacob 			}
    871       1.1      cgd 		}
    872      1.36   mjacob 
    873      1.36   mjacob #if	0
    874      1.34   mjacob 		/*
    875      1.34   mjacob 		 * We don't update dev_flags with what we've set
    876      1.34   mjacob 		 * because that's not the ultimate goal setting.
    877      1.34   mjacob 		 * If we succeed with the command, we *do* update
    878      1.34   mjacob 		 * cur_dflags by getting target parameters.
    879      1.34   mjacob 		 */
    880      1.34   mjacob 		mbs.param[0] = MBOX_GET_TARGET_PARAMS;
    881      1.36   mjacob 		mbs.param[1] = (tgt << 8) | (channel << 15);
    882      1.34   mjacob 		isp_mboxcmd(isp, &mbs);
    883      1.34   mjacob 		if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    884      1.34   mjacob 			/*
    885      1.34   mjacob 			 * Urrr.... We'll set cur_dflags to DPARM_SAFE_DFLT so
    886      1.34   mjacob 			 * we don't try and do tags if tags aren't enabled.
    887      1.34   mjacob 			 */
    888      1.34   mjacob 			sdp->isp_devparam[tgt].cur_dflags = DPARM_SAFE_DFLT;
    889      1.34   mjacob 		} else {
    890      1.34   mjacob 			sdp->isp_devparam[tgt].cur_dflags = mbs.param[2];
    891      1.34   mjacob 			sdp->isp_devparam[tgt].cur_offset = mbs.param[3] >> 8;
    892      1.34   mjacob 			sdp->isp_devparam[tgt].cur_period = mbs.param[3] & 0xff;
    893      1.34   mjacob 		}
    894      1.35   mjacob 		IDPRINTF(3, ("%s: set flags 0x%x got 0x%x back for target %d\n",
    895      1.35   mjacob 		    isp->isp_name, sdf, mbs.param[2], tgt));
    896      1.36   mjacob #else
    897      1.36   mjacob 		/*
    898      1.36   mjacob 		 * We don't update any information because we need to run
    899      1.36   mjacob 		 * at least one command per target to cause a new state
    900      1.36   mjacob 		 * to be latched.
    901      1.36   mjacob 		 */
    902      1.36   mjacob #endif
    903      1.34   mjacob 		/*
    904      1.34   mjacob 		 * Ensure that we don't believe tagged queuing is enabled yet.
    905      1.34   mjacob 		 * It turns out that sometimes the ISP just ignores our
    906      1.34   mjacob 		 * attempts to set parameters for devices that it hasn't
    907      1.34   mjacob 		 * seen yet.
    908      1.34   mjacob 		 */
    909      1.34   mjacob 		sdp->isp_devparam[tgt].cur_dflags &= ~DPARM_TQING;
    910      1.35   mjacob 		if (ISP_FW_REVX(isp->isp_fwrev) >= ISP_FW_REV(7, 55, 0))
    911      1.35   mjacob 			maxlun = 32;
    912      1.35   mjacob 		else
    913      1.35   mjacob 			maxlun = 8;
    914      1.25   mjacob 		for (lun = 0; lun < maxlun; lun++) {
    915       1.1      cgd 			mbs.param[0] = MBOX_SET_DEV_QUEUE_PARAMS;
    916      1.36   mjacob 			mbs.param[1] = (channel << 15) | (tgt << 8) | lun;
    917      1.10   mjacob 			mbs.param[2] = sdp->isp_max_queue_depth;
    918      1.25   mjacob 			mbs.param[3] = sdp->isp_devparam[tgt].exc_throttle;
    919      1.10   mjacob 			isp_mboxcmd(isp, &mbs);
    920       1.1      cgd 			if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
    921      1.25   mjacob 				PRINTF("%s: failed to set device queue "
    922      1.25   mjacob 				    "parameters for target %d, lun %d\n",
    923      1.25   mjacob 				    isp->isp_name, tgt, lun);
    924      1.25   mjacob 				break;
    925       1.1      cgd 			}
    926       1.1      cgd 		}
    927      1.31   mjacob 	}
    928       1.1      cgd }
    929       1.1      cgd 
    930      1.24   mjacob /*
    931      1.24   mjacob  * Fibre Channel specific initialization.
    932      1.24   mjacob  *
    933      1.24   mjacob  * Locks are held before coming here.
    934      1.24   mjacob  */
    935      1.10   mjacob static void
    936      1.10   mjacob isp_fibre_init(isp)
    937      1.10   mjacob 	struct ispsoftc *isp;
    938      1.10   mjacob {
    939      1.10   mjacob 	fcparam *fcp;
    940      1.10   mjacob 	isp_icb_t *icbp;
    941      1.10   mjacob 	mbreg_t mbs;
    942      1.37   mjacob 	int loopid;
    943      1.10   mjacob 
    944      1.10   mjacob 	fcp = isp->isp_param;
    945      1.10   mjacob 
    946      1.28   mjacob 	/*
    947      1.28   mjacob 	 * For systems that don't have BIOS methods for which
    948      1.28   mjacob 	 * we can easily change the NVRAM based loopid, we'll
    949      1.28   mjacob 	 * override that here. Note that when we initialize
    950      1.28   mjacob 	 * the firmware we may get back a different loopid than
    951      1.28   mjacob 	 * we asked for anyway. XXX This is probably not the
    952      1.28   mjacob 	 * best way to figure this out XXX
    953      1.28   mjacob 	 */
    954      1.28   mjacob #ifndef	__i386__
    955      1.37   mjacob 	loopid = DEFAULT_LOOPID(isp);
    956      1.28   mjacob #else
    957      1.28   mjacob 	loopid = fcp->isp_loopid;
    958      1.28   mjacob #endif
    959      1.28   mjacob 
    960      1.10   mjacob 	icbp = (isp_icb_t *) fcp->isp_scratch;
    961      1.30   mjacob 	MEMZERO(icbp, sizeof (*icbp));
    962      1.25   mjacob 
    963      1.25   mjacob 	icbp->icb_version = ICB_VERSION1;
    964      1.29   mjacob #ifdef	ISP_TARGET_MODE
    965      1.38   mjacob 	fcp->isp_fwoptions = ICBOPT_TGT_ENABLE;
    966      1.29   mjacob #else
    967      1.27   mjacob 	fcp->isp_fwoptions = 0;
    968      1.29   mjacob #endif
    969      1.37   mjacob 	fcp->isp_fwoptions |= ICBOPT_FAIRNESS;
    970      1.28   mjacob 	fcp->isp_fwoptions |= ICBOPT_PDBCHANGE_AE;
    971      1.28   mjacob 	fcp->isp_fwoptions |= ICBOPT_HARD_ADDRESS;
    972      1.37   mjacob 	/*
    973      1.38   mjacob 	 * We have to use FULL LOGIN even though it resets the loop too much
    974      1.38   mjacob 	 * because otherwise port database entries don't get updated after
    975      1.38   mjacob 	 * a LIP- this is a known f/w bug.
    976      1.37   mjacob 	 */
    977      1.38   mjacob 	if (ISP_FW_REVX(isp->isp_fwrev) < ISP_FW_REV(1, 17, 0)) {
    978      1.38   mjacob 		fcp->isp_fwoptions |= ICBOPT_FULL_LOGIN;
    979      1.38   mjacob 	}
    980      1.32   mjacob #ifndef	ISP_NO_FASTPOST_FC
    981      1.32   mjacob 	fcp->isp_fwoptions |= ICBOPT_FAST_POST;
    982      1.32   mjacob #endif
    983      1.37   mjacob 	if (isp->isp_confopts & ISP_CFG_FULL_DUPLEX)
    984      1.37   mjacob 		fcp->isp_fwoptions |= ICBOPT_FULL_DUPLEX;
    985      1.37   mjacob 
    986      1.37   mjacob 	/*
    987      1.37   mjacob 	 * We don't set ICBOPT_PORTNAME because we want our
    988      1.37   mjacob 	 * Node Name && Port Names to be distinct.
    989      1.37   mjacob 	 */
    990      1.31   mjacob 
    991      1.27   mjacob 	icbp->icb_fwoptions = fcp->isp_fwoptions;
    992      1.25   mjacob 	icbp->icb_maxfrmlen = fcp->isp_maxfrmlen;
    993      1.25   mjacob 	if (icbp->icb_maxfrmlen < ICB_MIN_FRMLEN ||
    994      1.25   mjacob 	    icbp->icb_maxfrmlen > ICB_MAX_FRMLEN) {
    995      1.25   mjacob 		PRINTF("%s: bad frame length (%d) from NVRAM- using %d\n",
    996      1.25   mjacob 		    isp->isp_name, fcp->isp_maxfrmlen, ICB_DFLT_FRMLEN);
    997      1.35   mjacob 		icbp->icb_maxfrmlen = ICB_DFLT_FRMLEN;
    998      1.25   mjacob 	}
    999      1.25   mjacob 	icbp->icb_maxalloc = fcp->isp_maxalloc;
   1000      1.37   mjacob 	if (icbp->icb_maxalloc < 1) {
   1001      1.35   mjacob 		PRINTF("%s: bad maximum allocation (%d)- using 16\n",
   1002      1.35   mjacob 		     isp->isp_name, fcp->isp_maxalloc);
   1003      1.35   mjacob 		icbp->icb_maxalloc = 16;
   1004      1.35   mjacob 	}
   1005      1.25   mjacob 	icbp->icb_execthrottle = fcp->isp_execthrottle;
   1006      1.35   mjacob 	if (icbp->icb_execthrottle < 1) {
   1007      1.35   mjacob 		PRINTF("%s: bad execution throttle of %d- using 16\n",
   1008      1.35   mjacob 		    isp->isp_name, fcp->isp_execthrottle);
   1009      1.37   mjacob 		icbp->icb_execthrottle = ICB_DFLT_THROTTLE;
   1010      1.35   mjacob 	}
   1011      1.25   mjacob 	icbp->icb_retry_delay = fcp->isp_retry_delay;
   1012      1.25   mjacob 	icbp->icb_retry_count = fcp->isp_retry_count;
   1013      1.28   mjacob 	icbp->icb_hardaddr = loopid;
   1014      1.38   mjacob 	icbp->icb_logintime = 30;	/* 30 second login timeout */
   1015      1.25   mjacob 
   1016      1.37   mjacob 	if (fcp->isp_nodewwn) {
   1017      1.37   mjacob 		u_int64_t pn;
   1018      1.37   mjacob 		MAKE_NODE_NAME_FROM_WWN(icbp->icb_nodename, fcp->isp_nodewwn);
   1019      1.37   mjacob 		if (fcp->isp_portwwn) {
   1020      1.37   mjacob 			pn = fcp->isp_portwwn;
   1021      1.37   mjacob 		} else {
   1022      1.37   mjacob 			pn = fcp->isp_nodewwn |
   1023      1.37   mjacob 			    (((u_int64_t)(isp->isp_unit+1)) << 56);
   1024      1.37   mjacob 		}
   1025      1.37   mjacob 		/*
   1026      1.37   mjacob 		 * If the top nibble is 2, we can construct a port name
   1027      1.37   mjacob 		 * from the node name by setting a nonzero instance in
   1028      1.37   mjacob 		 * bits 56..59. Otherwise, we need to make it identical
   1029      1.37   mjacob 		 * to Node name...
   1030      1.37   mjacob 		 */
   1031      1.37   mjacob 		if ((fcp->isp_nodewwn >> 60) == 2) {
   1032      1.37   mjacob 			MAKE_NODE_NAME_FROM_WWN(icbp->icb_portname, pn);
   1033      1.37   mjacob 		} else {
   1034      1.37   mjacob 			MAKE_NODE_NAME_FROM_WWN(icbp->icb_portname,
   1035      1.37   mjacob 			    fcp->isp_nodewwn);
   1036      1.35   mjacob 		}
   1037      1.35   mjacob 	} else {
   1038      1.35   mjacob 		fcp->isp_fwoptions &= ~(ICBOPT_USE_PORTNAME|ICBOPT_FULL_LOGIN);
   1039      1.28   mjacob 	}
   1040      1.23   mjacob 	icbp->icb_rqstqlen = RQUEST_QUEUE_LEN;
   1041      1.23   mjacob 	icbp->icb_rsltqlen = RESULT_QUEUE_LEN;
   1042      1.35   mjacob 	icbp->icb_rqstaddr[RQRSP_ADDR0015] = DMA_LSW(isp->isp_rquest_dma);
   1043      1.35   mjacob 	icbp->icb_rqstaddr[RQRSP_ADDR1631] = DMA_MSW(isp->isp_rquest_dma);
   1044      1.35   mjacob 	icbp->icb_respaddr[RQRSP_ADDR0015] = DMA_LSW(isp->isp_result_dma);
   1045      1.35   mjacob 	icbp->icb_respaddr[RQRSP_ADDR1631] = DMA_MSW(isp->isp_result_dma);
   1046      1.38   mjacob 	ISP_SWIZZLE_ICB(isp, icbp);
   1047      1.38   mjacob 
   1048      1.38   mjacob 	/*
   1049      1.38   mjacob 	 * Do this *before* initializing the firmware.
   1050      1.38   mjacob 	 */
   1051      1.38   mjacob 	isp_mark_getpdb_all(isp);
   1052      1.38   mjacob 	fcp->isp_fwstate = FW_CONFIG_WAIT;
   1053      1.38   mjacob 	fcp->isp_loopstate = LOOP_NIL;
   1054      1.38   mjacob 
   1055      1.33   mjacob 	MemoryBarrier();
   1056      1.37   mjacob 	for (;;) {
   1057      1.27   mjacob 		mbs.param[0] = MBOX_INIT_FIRMWARE;
   1058      1.27   mjacob 		mbs.param[1] = 0;
   1059      1.35   mjacob 		mbs.param[2] = DMA_MSW(fcp->isp_scdma);
   1060      1.35   mjacob 		mbs.param[3] = DMA_LSW(fcp->isp_scdma);
   1061      1.27   mjacob 		mbs.param[4] = 0;
   1062      1.27   mjacob 		mbs.param[5] = 0;
   1063      1.27   mjacob 		mbs.param[6] = 0;
   1064      1.27   mjacob 		mbs.param[7] = 0;
   1065      1.27   mjacob 		isp_mboxcmd(isp, &mbs);
   1066      1.37   mjacob 		if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
   1067      1.37   mjacob 			PRINTF("%s: INIT FIRMWARE failed (code 0x%x)\n",
   1068      1.37   mjacob 			    isp->isp_name, mbs.param[0]);
   1069      1.38   mjacob 			if (mbs.param[0] & 0x8000) {
   1070      1.37   mjacob 				SYS_DELAY(1000);
   1071      1.37   mjacob 				continue;
   1072      1.27   mjacob 			}
   1073      1.27   mjacob 			return;
   1074      1.27   mjacob 		}
   1075      1.37   mjacob 		break;
   1076      1.10   mjacob 	}
   1077      1.37   mjacob 
   1078      1.25   mjacob 	isp->isp_reqidx = isp->isp_reqodx = 0;
   1079      1.10   mjacob 	isp->isp_residx = 0;
   1080      1.33   mjacob 	isp->isp_sendmarker = 1;
   1081      1.33   mjacob 
   1082      1.33   mjacob 	/*
   1083      1.33   mjacob 	 * Whatever happens, we're now committed to being here.
   1084      1.33   mjacob 	 */
   1085      1.33   mjacob 	isp->isp_state = ISP_INITSTATE;
   1086      1.34   mjacob 
   1087      1.33   mjacob #ifdef	ISP_TARGET_MODE
   1088      1.33   mjacob 	if (isp_modify_lun(isp, 0, 1, 1)) {
   1089      1.33   mjacob 		PRINTF("%s: failed to enable target mode\n", isp->isp_name);
   1090      1.33   mjacob 	}
   1091      1.33   mjacob #endif
   1092      1.33   mjacob }
   1093      1.33   mjacob 
   1094      1.33   mjacob /*
   1095      1.33   mjacob  * Fibre Channel Support- get the port database for the id.
   1096      1.33   mjacob  *
   1097      1.33   mjacob  * Locks are held before coming here. Return 0 if success,
   1098      1.33   mjacob  * else failure.
   1099      1.33   mjacob  */
   1100      1.33   mjacob 
   1101      1.33   mjacob static void
   1102      1.33   mjacob isp_mark_getpdb_all(isp)
   1103      1.33   mjacob 	struct ispsoftc *isp;
   1104      1.33   mjacob {
   1105      1.33   mjacob 	fcparam *fcp = (fcparam *) isp->isp_param;
   1106      1.37   mjacob 	int i;
   1107      1.37   mjacob 	for (i = 0; i < MAX_FC_TARG; i++) {
   1108      1.37   mjacob 		fcp->portdb[i].valid = 0;
   1109      1.33   mjacob 	}
   1110      1.33   mjacob }
   1111      1.33   mjacob 
   1112      1.33   mjacob static int
   1113      1.33   mjacob isp_getpdb(isp, id, pdbp)
   1114      1.33   mjacob 	struct ispsoftc *isp;
   1115      1.33   mjacob 	int id;
   1116      1.33   mjacob 	isp_pdb_t *pdbp;
   1117      1.33   mjacob {
   1118      1.33   mjacob 	fcparam *fcp = (fcparam *) isp->isp_param;
   1119      1.33   mjacob 	mbreg_t mbs;
   1120      1.37   mjacob 
   1121      1.33   mjacob 	mbs.param[0] = MBOX_GET_PORT_DB;
   1122      1.33   mjacob 	mbs.param[1] = id << 8;
   1123      1.35   mjacob 	mbs.param[2] = DMA_MSW(fcp->isp_scdma);
   1124      1.35   mjacob 	mbs.param[3] = DMA_LSW(fcp->isp_scdma);
   1125      1.34   mjacob 	/*
   1126      1.34   mjacob 	 * Unneeded. For the 2100, except for initializing f/w, registers
   1127      1.34   mjacob 	 * 4/5 have to not be written to.
   1128      1.34   mjacob 	 *	mbs.param[4] = 0;
   1129      1.34   mjacob 	 *	mbs.param[5] = 0;
   1130      1.34   mjacob 	 *
   1131      1.34   mjacob 	 */
   1132      1.33   mjacob 	mbs.param[6] = 0;
   1133      1.33   mjacob 	mbs.param[7] = 0;
   1134      1.33   mjacob 	isp_mboxcmd(isp, &mbs);
   1135      1.33   mjacob 	switch (mbs.param[0]) {
   1136      1.33   mjacob 	case MBOX_COMMAND_COMPLETE:
   1137      1.33   mjacob 		MemoryBarrier();
   1138      1.38   mjacob 		ISP_UNSWIZZLE_AND_COPY_PDBP(isp, pdbp, fcp->isp_scratch);
   1139      1.33   mjacob 		break;
   1140      1.33   mjacob 	case MBOX_HOST_INTERFACE_ERROR:
   1141      1.33   mjacob 		PRINTF("%s: DMA error getting port database\n", isp->isp_name);
   1142      1.33   mjacob 		return (-1);
   1143      1.33   mjacob 	case MBOX_COMMAND_PARAM_ERROR:
   1144      1.33   mjacob 		/* Not Logged In */
   1145      1.37   mjacob 		IDPRINTF(3, ("%s: Param Error on Get Port Database for id %d\n",
   1146      1.37   mjacob 		    isp->isp_name, id));
   1147      1.33   mjacob 		return (-1);
   1148      1.33   mjacob 	default:
   1149      1.33   mjacob 		PRINTF("%s: error 0x%x getting port database for ID %d\n",
   1150      1.33   mjacob 		    isp->isp_name, mbs.param[0], id);
   1151      1.33   mjacob 		return (-1);
   1152      1.33   mjacob 	}
   1153      1.33   mjacob 	return (0);
   1154      1.33   mjacob }
   1155      1.33   mjacob 
   1156      1.37   mjacob static u_int64_t
   1157      1.37   mjacob isp_get_portname(isp, loopid, nodename)
   1158      1.37   mjacob 	struct ispsoftc *isp;
   1159      1.37   mjacob 	int loopid;
   1160      1.37   mjacob 	int nodename;
   1161      1.37   mjacob {
   1162      1.37   mjacob 	u_int64_t wwn = 0;
   1163      1.37   mjacob 	mbreg_t mbs;
   1164      1.37   mjacob 
   1165      1.37   mjacob 	mbs.param[0] = MBOX_GET_PORT_NAME;
   1166      1.37   mjacob 	mbs.param[1] = loopid << 8;
   1167      1.37   mjacob 	if (nodename)
   1168      1.37   mjacob 		mbs.param[1] |= 1;
   1169      1.37   mjacob 	isp_mboxcmd(isp, &mbs);
   1170      1.37   mjacob 	if (mbs.param[0] == MBOX_COMMAND_COMPLETE) {
   1171      1.37   mjacob 		wwn =
   1172      1.37   mjacob 		    (((u_int64_t)(mbs.param[2] & 0xff)) << 56) |
   1173      1.37   mjacob 		    (((u_int64_t)(mbs.param[2] >> 8))	<< 48) |
   1174      1.37   mjacob 		    (((u_int64_t)(mbs.param[3] & 0xff))	<< 40) |
   1175      1.37   mjacob 		    (((u_int64_t)(mbs.param[3] >> 8))	<< 32) |
   1176      1.37   mjacob 		    (((u_int64_t)(mbs.param[6] & 0xff))	<< 24) |
   1177      1.37   mjacob 		    (((u_int64_t)(mbs.param[6] >> 8))	<< 16) |
   1178      1.37   mjacob 		    (((u_int64_t)(mbs.param[7] & 0xff))	<<  8) |
   1179      1.37   mjacob 		    (((u_int64_t)(mbs.param[7] >> 8)));
   1180      1.37   mjacob 	}
   1181      1.37   mjacob 	return (wwn);
   1182      1.37   mjacob }
   1183      1.37   mjacob 
   1184      1.33   mjacob /*
   1185      1.33   mjacob  * Make sure we have good FC link and know our Loop ID.
   1186      1.33   mjacob  */
   1187      1.33   mjacob 
   1188      1.33   mjacob static int
   1189      1.34   mjacob isp_fclink_test(isp, waitdelay)
   1190      1.33   mjacob 	struct ispsoftc *isp;
   1191      1.34   mjacob 	int waitdelay;
   1192      1.33   mjacob {
   1193      1.38   mjacob 	static char *toponames[] = {
   1194      1.38   mjacob 		"Private Loop",
   1195      1.38   mjacob 		"FL Port",
   1196      1.38   mjacob 		"N-Port to N-Port",
   1197      1.38   mjacob 		"F Port"
   1198      1.38   mjacob 	};
   1199      1.38   mjacob 	char *tname;
   1200      1.33   mjacob 	mbreg_t mbs;
   1201      1.38   mjacob 	int count, topo = -1;
   1202      1.33   mjacob 	u_int8_t lwfs;
   1203      1.33   mjacob 	fcparam *fcp;
   1204      1.37   mjacob #if	defined(ISP2100_FABRIC)
   1205      1.37   mjacob 	isp_pdb_t pdb;
   1206      1.37   mjacob #endif
   1207      1.33   mjacob 	fcp = isp->isp_param;
   1208      1.10   mjacob 
   1209      1.10   mjacob 	/*
   1210      1.33   mjacob 	 * Wait up to N microseconds for F/W to go to a ready state.
   1211      1.10   mjacob 	 */
   1212      1.23   mjacob 	lwfs = FW_CONFIG_WAIT;
   1213      1.34   mjacob 	for (count = 0; count < waitdelay; count += 100) {
   1214      1.10   mjacob 		isp_fw_state(isp);
   1215      1.23   mjacob 		if (lwfs != fcp->isp_fwstate) {
   1216      1.28   mjacob 			PRINTF("%s: Firmware State %s -> %s\n",
   1217      1.28   mjacob 			    isp->isp_name, isp2100_fw_statename((int)lwfs),
   1218      1.28   mjacob 			    isp2100_fw_statename((int)fcp->isp_fwstate));
   1219      1.23   mjacob 			lwfs = fcp->isp_fwstate;
   1220      1.23   mjacob 		}
   1221      1.23   mjacob 		if (fcp->isp_fwstate == FW_READY) {
   1222      1.10   mjacob 			break;
   1223      1.23   mjacob 		}
   1224      1.33   mjacob 		SYS_DELAY(100);	/* wait 100 microseconds */
   1225      1.10   mjacob 	}
   1226      1.10   mjacob 
   1227      1.10   mjacob 	/*
   1228      1.33   mjacob 	 * If we haven't gone to 'ready' state, return.
   1229      1.33   mjacob 	 */
   1230      1.33   mjacob 	if (fcp->isp_fwstate != FW_READY) {
   1231      1.33   mjacob 		return (-1);
   1232      1.33   mjacob 	}
   1233      1.34   mjacob 
   1234      1.33   mjacob 	/*
   1235      1.33   mjacob 	 * Get our Loop ID (if possible). We really need to have it.
   1236      1.10   mjacob 	 */
   1237      1.33   mjacob 	mbs.param[0] = MBOX_GET_LOOP_ID;
   1238      1.33   mjacob 	isp_mboxcmd(isp, &mbs);
   1239      1.33   mjacob 	if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
   1240      1.34   mjacob 		PRINTF("%s: GET LOOP ID failed\n", isp->isp_name);
   1241      1.33   mjacob 		return (-1);
   1242      1.23   mjacob 	}
   1243      1.33   mjacob 	fcp->isp_loopid = mbs.param[1];
   1244      1.38   mjacob 	if (isp->isp_type == ISP_HA_FC_2100) {
   1245      1.38   mjacob 		if (ISP_FW_REVX(isp->isp_fwrev) >= ISP_FW_REV(2, 0, 14)) {
   1246      1.38   mjacob 			topo = (int) mbs.param[6];
   1247      1.38   mjacob 		}
   1248      1.38   mjacob 	} else if (isp->isp_type == ISP_HA_FC_2100) {
   1249      1.38   mjacob 		if (ISP_FW_REVX(isp->isp_fwrev) >= ISP_FW_REV(1, 17, 26)) {
   1250      1.38   mjacob 			topo = (int) mbs.param[6];
   1251      1.38   mjacob 		}
   1252      1.38   mjacob 	}
   1253      1.38   mjacob 	if (topo < 0 || topo > 3)
   1254      1.38   mjacob 		tname = "unknown";
   1255      1.38   mjacob 	else
   1256      1.38   mjacob 		tname = toponames[topo];
   1257      1.37   mjacob 
   1258      1.37   mjacob 	/*
   1259      1.37   mjacob 	 * If we're not on a fabric, the low 8 bits will be our AL_PA.
   1260      1.37   mjacob 	 * If we're on a fabric, the low 8 bits will still be our AL_PA.
   1261      1.37   mjacob 	 */
   1262      1.33   mjacob 	fcp->isp_alpa = mbs.param[2];
   1263      1.37   mjacob #if	defined(ISP2100_FABRIC)
   1264      1.38   mjacob 	fcp->isp_onfabric = 0;
   1265      1.37   mjacob 	if (isp_getpdb(isp, FL_PORT_ID, &pdb) == 0) {
   1266      1.37   mjacob 		fcp->isp_portid = mbs.param[2] | (((int)mbs.param[3]) << 16);
   1267      1.37   mjacob 		fcp->isp_onfabric = 1;
   1268      1.38   mjacob 		CFGPRINTF("%s: Loop ID %d, AL_PA 0x%x, Port ID 0x%x Loop State "
   1269      1.38   mjacob 		    "0x%x topology %s\n", isp->isp_name, fcp->isp_loopid,
   1270      1.38   mjacob 		    fcp->isp_alpa, fcp->isp_portid, fcp->isp_loopstate, tname);
   1271      1.37   mjacob 
   1272      1.37   mjacob 		/*
   1273      1.37   mjacob 		 * Make sure we're logged out of all fabric devices.
   1274      1.37   mjacob 		 */
   1275      1.37   mjacob 		for (count = FC_SNS_ID+1; count < MAX_FC_TARG; count++) {
   1276      1.37   mjacob 			struct lportdb *lp = &fcp->portdb[count];
   1277      1.37   mjacob 			if (lp->valid == 0 || lp->fabdev == 0)
   1278      1.37   mjacob 				continue;
   1279      1.37   mjacob 			PRINTF("%s: logging out target %d at Loop ID %d "
   1280      1.37   mjacob 			    "(port id 0x%x)\n", isp->isp_name, count,
   1281      1.37   mjacob 			    lp->loopid, lp->portid);
   1282      1.37   mjacob 			mbs.param[0] = MBOX_FABRIC_LOGOUT;
   1283      1.37   mjacob 			mbs.param[1] = lp->loopid << 8;
   1284      1.37   mjacob 			mbs.param[2] = 0;
   1285      1.37   mjacob 			mbs.param[3] = 0;
   1286      1.37   mjacob 			isp_mboxcmd(isp, &mbs);
   1287      1.37   mjacob 		}
   1288      1.37   mjacob 	} else
   1289      1.37   mjacob #endif
   1290      1.38   mjacob 	CFGPRINTF("%s: Loop ID %d, ALPA 0x%x Loop State 0x%x topology %s\n",
   1291      1.38   mjacob 	    isp->isp_name, fcp->isp_loopid, fcp->isp_alpa, fcp->isp_loopstate,
   1292      1.38   mjacob 	    tname);
   1293      1.37   mjacob 	fcp->loop_seen_once = 1;
   1294      1.33   mjacob 	return (0);
   1295      1.37   mjacob }
   1296      1.37   mjacob 
   1297      1.37   mjacob /*
   1298      1.37   mjacob  * Compare two local port db entities and return 1 if they're the same, else 0.
   1299      1.37   mjacob  */
   1300      1.33   mjacob 
   1301      1.37   mjacob static int
   1302      1.37   mjacob isp_same_lportdb(a, b)
   1303      1.37   mjacob 	struct lportdb *a, *b;
   1304      1.37   mjacob {
   1305      1.37   mjacob 	/*
   1306      1.37   mjacob 	 * We decide two lports are the same if they have non-zero and
   1307      1.37   mjacob 	 * identical port WWNs and identical loop IDs.
   1308      1.37   mjacob 	 */
   1309      1.37   mjacob 
   1310      1.37   mjacob 	if (a->port_wwn == 0 || a->port_wwn != b->port_wwn ||
   1311      1.37   mjacob 	    a->loopid != b->loopid) {
   1312      1.37   mjacob 		return (0);
   1313      1.37   mjacob 	} else {
   1314      1.37   mjacob 		return (1);
   1315      1.37   mjacob 	}
   1316       1.1      cgd }
   1317       1.1      cgd 
   1318       1.1      cgd /*
   1319      1.37   mjacob  * Synchronize our soft copy of the port database with what the f/w thinks
   1320      1.37   mjacob  * (with a view toward possibly for a specific target....)
   1321      1.37   mjacob  */
   1322      1.37   mjacob 
   1323      1.37   mjacob static int
   1324      1.37   mjacob isp_pdb_sync(isp, target)
   1325      1.37   mjacob 	struct ispsoftc *isp;
   1326      1.37   mjacob 	int target;
   1327      1.37   mjacob {
   1328      1.38   mjacob 	struct lportdb *lp, *tport;
   1329      1.37   mjacob 	fcparam *fcp = isp->isp_param;
   1330      1.37   mjacob 	isp_pdb_t pdb;
   1331      1.37   mjacob 	int loopid, lim;
   1332      1.37   mjacob 
   1333      1.37   mjacob #ifdef	ISP2100_FABRIC
   1334      1.37   mjacob 	/*
   1335      1.37   mjacob 	 * XXX: If we do this *after* building up our local port database,
   1336      1.37   mjacob 	 * XXX: the commands simply don't work.
   1337      1.37   mjacob 	 */
   1338      1.37   mjacob 	/*
   1339      1.37   mjacob 	 * (Re)discover all fabric devices
   1340      1.37   mjacob 	 */
   1341      1.37   mjacob 	if (fcp->isp_onfabric)
   1342      1.37   mjacob 		(void) isp_scan_fabric(isp);
   1343      1.37   mjacob #endif
   1344      1.38   mjacob 
   1345      1.38   mjacob 
   1346      1.37   mjacob 	/*
   1347      1.37   mjacob 	 * Run through the local loop ports and get port database info
   1348      1.37   mjacob 	 * for each loop ID.
   1349      1.37   mjacob 	 *
   1350      1.37   mjacob 	 * There's a somewhat unexplained situation where the f/w passes back
   1351      1.37   mjacob 	 * the wrong database entity- if that happens, just restart (up to
   1352      1.37   mjacob 	 * FL_PORT_ID times).
   1353      1.37   mjacob 	 */
   1354      1.38   mjacob 	tport = fcp->tport;
   1355      1.38   mjacob 	MEMZERO((void *) tport, sizeof (tport));
   1356      1.37   mjacob 	for (lim = loopid = 0; loopid < FL_PORT_ID; loopid++) {
   1357      1.37   mjacob 		/*
   1358      1.37   mjacob 		 * make sure the temp port database is clean...
   1359      1.37   mjacob 		 */
   1360      1.37   mjacob 		lp = &tport[loopid];
   1361      1.37   mjacob 		lp->node_wwn = isp_get_portname(isp, loopid, 1);
   1362      1.37   mjacob 		if (lp->node_wwn == 0)
   1363      1.37   mjacob 			continue;
   1364      1.37   mjacob 		lp->port_wwn = isp_get_portname(isp, loopid, 0);
   1365      1.37   mjacob 		if (lp->port_wwn == 0) {
   1366      1.37   mjacob 			lp->node_wwn = 0;
   1367      1.37   mjacob 			continue;
   1368      1.37   mjacob 		}
   1369      1.38   mjacob 
   1370      1.37   mjacob 		/*
   1371      1.37   mjacob 		 * Get an entry....
   1372      1.37   mjacob 		 */
   1373      1.37   mjacob 		if (isp_getpdb(isp, loopid, &pdb) != 0) {
   1374      1.37   mjacob 			continue;
   1375      1.37   mjacob 		}
   1376      1.38   mjacob 
   1377      1.37   mjacob 		/*
   1378      1.37   mjacob 		 * If the returned database element doesn't match what we
   1379      1.37   mjacob 		 * asked for, restart the process entirely (up to a point...).
   1380      1.37   mjacob 		 */
   1381      1.37   mjacob 		if (pdb.pdb_loopid != loopid) {
   1382      1.37   mjacob 			IDPRINTF(0, ("%s: wankage (%d != %d)\n",
   1383      1.37   mjacob 			    isp->isp_name, pdb.pdb_loopid, loopid));
   1384      1.37   mjacob 			loopid = 0;
   1385      1.37   mjacob 			if (lim++ < FL_PORT_ID) {
   1386      1.37   mjacob 				continue;
   1387      1.37   mjacob 			}
   1388      1.37   mjacob 			PRINTF("%s: giving up on synchronizing the port "
   1389      1.37   mjacob 			    "database\n", isp->isp_name);
   1390      1.37   mjacob 			return (-1);
   1391      1.37   mjacob 		}
   1392      1.38   mjacob 
   1393      1.37   mjacob 		/*
   1394      1.37   mjacob 		 * Save the pertinent info locally.
   1395      1.37   mjacob 		 */
   1396      1.37   mjacob 		lp->node_wwn =
   1397      1.37   mjacob 		    (((u_int64_t)pdb.pdb_nodename[0]) << 56) |
   1398      1.37   mjacob 		    (((u_int64_t)pdb.pdb_nodename[1]) << 48) |
   1399      1.37   mjacob 		    (((u_int64_t)pdb.pdb_nodename[2]) << 40) |
   1400      1.37   mjacob 		    (((u_int64_t)pdb.pdb_nodename[3]) << 32) |
   1401      1.37   mjacob 		    (((u_int64_t)pdb.pdb_nodename[4]) << 24) |
   1402      1.37   mjacob 		    (((u_int64_t)pdb.pdb_nodename[5]) << 16) |
   1403      1.37   mjacob 		    (((u_int64_t)pdb.pdb_nodename[6]) <<  8) |
   1404      1.37   mjacob 		    (((u_int64_t)pdb.pdb_nodename[7]));
   1405      1.37   mjacob 		lp->port_wwn =
   1406      1.37   mjacob 		    (((u_int64_t)pdb.pdb_portname[0]) << 56) |
   1407      1.37   mjacob 		    (((u_int64_t)pdb.pdb_portname[1]) << 48) |
   1408      1.37   mjacob 		    (((u_int64_t)pdb.pdb_portname[2]) << 40) |
   1409      1.37   mjacob 		    (((u_int64_t)pdb.pdb_portname[3]) << 32) |
   1410      1.37   mjacob 		    (((u_int64_t)pdb.pdb_portname[4]) << 24) |
   1411      1.37   mjacob 		    (((u_int64_t)pdb.pdb_portname[5]) << 16) |
   1412      1.37   mjacob 		    (((u_int64_t)pdb.pdb_portname[6]) <<  8) |
   1413      1.37   mjacob 		    (((u_int64_t)pdb.pdb_portname[7]));
   1414      1.37   mjacob 		lp->roles =
   1415      1.37   mjacob 		    (pdb.pdb_prli_svc3 & SVC3_ROLE_MASK) >> SVC3_ROLE_SHIFT;
   1416      1.37   mjacob 		lp->portid = BITS2WORD(pdb.pdb_portid_bits);
   1417      1.37   mjacob 		lp->loopid = pdb.pdb_loopid;
   1418      1.37   mjacob 		/*
   1419      1.37   mjacob 		 * Do a quick check to see whether this matches the saved port
   1420      1.37   mjacob 		 * database for the same loopid. We do this here to save
   1421      1.37   mjacob 		 * searching later (if possible). Note that this fails over
   1422      1.37   mjacob 		 * time as things shuffle on the loop- we get the current
   1423      1.37   mjacob 		 * loop state (where loop id as an index matches loop id in
   1424      1.37   mjacob 		 * use) and then compare it to our saved database which
   1425      1.37   mjacob 		 * never shifts.
   1426      1.37   mjacob 		 */
   1427      1.37   mjacob 		if (isp_same_lportdb(lp, &fcp->portdb[target])) {
   1428      1.37   mjacob 			lp->valid = 1;
   1429      1.37   mjacob 		}
   1430      1.37   mjacob 	}
   1431      1.37   mjacob 
   1432      1.37   mjacob 	/*
   1433      1.37   mjacob 	 * If we get this far, we've settled our differences with the f/w
   1434      1.37   mjacob 	 * and we can say that the loop state is ready.
   1435      1.37   mjacob 	 */
   1436      1.37   mjacob 	fcp->isp_loopstate = LOOP_READY;
   1437      1.37   mjacob 
   1438      1.37   mjacob 	/*
   1439      1.38   mjacob 	 * Mark all of the permanent local loop database entries as invalid.
   1440      1.38   mjacob 	 */
   1441      1.38   mjacob 	for (loopid = 0; loopid < FL_PORT_ID; loopid++) {
   1442      1.38   mjacob 		fcp->portdb[loopid].valid = 0;
   1443      1.38   mjacob 	}
   1444      1.38   mjacob 
   1445      1.38   mjacob 	/*
   1446      1.37   mjacob 	 * Now merge our local copy of the port database into our saved copy.
   1447      1.37   mjacob 	 * Notify the outer layers of new devices arriving.
   1448      1.37   mjacob 	 */
   1449      1.37   mjacob 	for (loopid = 0; loopid < FL_PORT_ID; loopid++) {
   1450      1.37   mjacob 		int i;
   1451      1.37   mjacob 
   1452      1.37   mjacob 		/*
   1453      1.37   mjacob 		 * If we don't have a non-zero Port WWN, we're not here.
   1454      1.37   mjacob 		 */
   1455      1.37   mjacob 		if (tport[loopid].port_wwn == 0) {
   1456      1.37   mjacob 			continue;
   1457      1.37   mjacob 		}
   1458      1.37   mjacob 
   1459      1.37   mjacob 		/*
   1460      1.37   mjacob 		 * If we've already marked our tmp copy as valid,
   1461      1.37   mjacob 		 * this means that we've decided that it's the
   1462      1.38   mjacob 		 * same as our saved data base. This didn't include
   1463      1.38   mjacob 		 * the 'valid' marking so we have set that here.
   1464      1.37   mjacob 		 */
   1465      1.37   mjacob 		if (tport[loopid].valid) {
   1466      1.37   mjacob 			fcp->portdb[loopid].valid = 1;
   1467      1.37   mjacob 			continue;
   1468      1.37   mjacob 		}
   1469      1.37   mjacob 
   1470      1.37   mjacob 		/*
   1471      1.37   mjacob 		 * For the purposes of deciding whether this is the
   1472      1.37   mjacob 		 * 'same' device or not, we only search for an identical
   1473      1.37   mjacob 		 * Port WWN. Node WWNs may or may not be the same as
   1474      1.37   mjacob 		 * the Port WWN, and there may be multiple different
   1475      1.37   mjacob 		 * Port WWNs with the same Node WWN. It would be chaos
   1476      1.37   mjacob 		 * to have multiple identical Port WWNs, so we don't
   1477      1.37   mjacob 		 * allow that.
   1478      1.37   mjacob 		 */
   1479      1.37   mjacob 
   1480      1.37   mjacob 		for (i = 0; i < FL_PORT_ID; i++) {
   1481      1.37   mjacob 			int j;
   1482      1.37   mjacob 			if (fcp->portdb[i].port_wwn == 0)
   1483      1.37   mjacob 				continue;
   1484      1.37   mjacob 			if (fcp->portdb[i].port_wwn != tport[loopid].port_wwn)
   1485      1.37   mjacob 				continue;
   1486      1.37   mjacob 			/*
   1487      1.37   mjacob 			 * We found this WWN elsewhere- it's changed
   1488      1.37   mjacob 			 * loopids then. We don't change it's actual
   1489      1.37   mjacob 			 * position in our cached port database- we
   1490      1.37   mjacob 			 * just change the actual loop ID we'd use.
   1491      1.37   mjacob 			 */
   1492      1.37   mjacob 			if (fcp->portdb[i].loopid != loopid) {
   1493      1.38   mjacob 				PRINTF("%s: Target ID %d Loop 0x%x (Port 0x%x) "
   1494      1.38   mjacob 				    "=> Loop 0x%x (Port 0x%x) \n",
   1495      1.38   mjacob 				    isp->isp_name, i, fcp->portdb[i].loopid,
   1496      1.38   mjacob 				    fcp->portdb[i].portid, loopid,
   1497      1.38   mjacob 				    tport[loopid].portid);
   1498      1.37   mjacob 			}
   1499      1.38   mjacob 			fcp->portdb[i].portid = tport[loopid].portid;
   1500      1.37   mjacob 			fcp->portdb[i].loopid = loopid;
   1501      1.37   mjacob 			fcp->portdb[i].valid = 1;
   1502      1.38   mjacob 			/*
   1503      1.38   mjacob 			 * XXX: Should we also propagate roles in case they
   1504      1.38   mjacob 			 * XXX: changed?
   1505      1.38   mjacob 			 */
   1506      1.37   mjacob 
   1507      1.37   mjacob 			/*
   1508      1.37   mjacob 			 * Now make sure this Port WWN doesn't exist elsewhere
   1509      1.37   mjacob 			 * in the port database.
   1510      1.37   mjacob 			 */
   1511      1.37   mjacob 			for (j = i+1; j < FL_PORT_ID; j++) {
   1512      1.37   mjacob 				if (fcp->portdb[i].port_wwn !=
   1513      1.37   mjacob 				    fcp->portdb[j].port_wwn) {
   1514      1.37   mjacob 					continue;
   1515      1.37   mjacob 				}
   1516      1.37   mjacob 				PRINTF("%s: Target ID %d Duplicates Target ID "
   1517      1.37   mjacob 				    "%d- killing off both\n",
   1518      1.37   mjacob 				    isp->isp_name, j, i);
   1519      1.37   mjacob 				/*
   1520      1.37   mjacob 				 * Invalidate the 'old' *and* 'new' ones.
   1521      1.37   mjacob 				 * This is really harsh and not quite right,
   1522      1.37   mjacob 				 * but if this happens, we really don't know
   1523      1.37   mjacob 				 * who is what at this point.
   1524      1.37   mjacob 				 */
   1525      1.37   mjacob 				fcp->portdb[i].valid = 0;
   1526      1.37   mjacob 				fcp->portdb[j].valid = 0;
   1527      1.37   mjacob 			}
   1528      1.37   mjacob 			break;
   1529      1.37   mjacob 		}
   1530      1.37   mjacob 
   1531      1.37   mjacob 		/*
   1532      1.37   mjacob 		 * If we didn't traverse the entire port database,
   1533      1.37   mjacob 		 * then we found (and remapped) an existing entry.
   1534      1.37   mjacob 		 * No need to notify anyone- go for the next one.
   1535      1.37   mjacob 		 */
   1536      1.37   mjacob 		if (i < FL_PORT_ID) {
   1537      1.37   mjacob 			continue;
   1538      1.37   mjacob 		}
   1539      1.37   mjacob 
   1540      1.37   mjacob 		/*
   1541      1.37   mjacob 		 * We've not found this Port WWN anywhere. It's a new entry.
   1542      1.37   mjacob 		 * See if we can leave it where it is (with target == loopid).
   1543      1.37   mjacob 		 */
   1544      1.37   mjacob 		if (fcp->portdb[loopid].port_wwn != 0) {
   1545      1.37   mjacob 			for (lim = 0; lim < FL_PORT_ID; lim++) {
   1546      1.37   mjacob 				if (fcp->portdb[lim].port_wwn == 0)
   1547      1.37   mjacob 					break;
   1548      1.37   mjacob 			}
   1549      1.37   mjacob 			/* "Cannot Happen" */
   1550      1.37   mjacob 			if (lim == FL_PORT_ID) {
   1551      1.37   mjacob 				PRINTF("%s: remap overflow?\n", isp->isp_name);
   1552      1.37   mjacob 				continue;
   1553      1.37   mjacob 			}
   1554      1.37   mjacob 			i = lim;
   1555      1.37   mjacob 		} else {
   1556      1.37   mjacob 			i = loopid;
   1557      1.37   mjacob 		}
   1558      1.37   mjacob 
   1559      1.37   mjacob 		/*
   1560      1.37   mjacob 		 * NB:	The actual loopid we use here is loopid- we may
   1561      1.37   mjacob 		 *	in fact be at a completely different index (target).
   1562      1.37   mjacob 		 */
   1563      1.37   mjacob 		fcp->portdb[i].loopid = loopid;
   1564      1.37   mjacob 		fcp->portdb[i].port_wwn = tport[loopid].port_wwn;
   1565      1.37   mjacob 		fcp->portdb[i].node_wwn = tport[loopid].node_wwn;
   1566      1.37   mjacob 		fcp->portdb[i].roles = tport[loopid].roles;
   1567      1.37   mjacob 		fcp->portdb[i].portid = tport[loopid].portid;
   1568      1.37   mjacob 		fcp->portdb[i].valid = 1;
   1569      1.37   mjacob 
   1570      1.37   mjacob 		/*
   1571      1.37   mjacob 		 * Tell the outside world we've arrived.
   1572      1.37   mjacob 		 */
   1573      1.37   mjacob 		(void) isp_async(isp, ISPASYNC_PDB_CHANGED, &i);
   1574      1.37   mjacob 	}
   1575      1.37   mjacob 
   1576      1.37   mjacob 	/*
   1577      1.37   mjacob 	 * Now find all previously used targets that are now invalid and
   1578      1.37   mjacob 	 * notify the outer layers that they're gone.
   1579      1.37   mjacob 	 */
   1580      1.37   mjacob 	for (lp = fcp->portdb; lp < &fcp->portdb[FL_PORT_ID]; lp++) {
   1581      1.37   mjacob 		if (lp->valid || lp->port_wwn == 0)
   1582      1.37   mjacob 			continue;
   1583      1.37   mjacob 
   1584      1.37   mjacob 		/*
   1585      1.37   mjacob 		 * Tell the outside world we've gone away;
   1586      1.37   mjacob 		 */
   1587      1.37   mjacob 		loopid = lp - fcp->portdb;
   1588      1.37   mjacob 		(void) isp_async(isp, ISPASYNC_PDB_CHANGED, &loopid);
   1589      1.37   mjacob 		MEMZERO((void *) lp, sizeof (*lp));
   1590      1.37   mjacob 	}
   1591      1.37   mjacob 
   1592      1.37   mjacob #ifdef	ISP2100_FABRIC
   1593      1.37   mjacob 	/*
   1594      1.37   mjacob 	 * Now log in any fabric devices
   1595      1.37   mjacob 	 */
   1596      1.37   mjacob 	for (lp = &fcp->portdb[FC_SNS_ID+1];
   1597      1.37   mjacob 	     lp < &fcp->portdb[MAX_FC_TARG]; lp++) {
   1598      1.37   mjacob 		mbreg_t mbs;
   1599      1.37   mjacob 
   1600      1.37   mjacob 		/*
   1601      1.37   mjacob 		 * Nothing here?
   1602      1.37   mjacob 		 */
   1603      1.37   mjacob 		if (lp->port_wwn == 0)
   1604      1.37   mjacob 			continue;
   1605      1.37   mjacob 		/*
   1606      1.37   mjacob 		 * Don't try to log into yourself.
   1607      1.37   mjacob 		 */
   1608      1.37   mjacob 		if (lp->portid == fcp->isp_portid)
   1609      1.37   mjacob 			continue;
   1610      1.37   mjacob 
   1611      1.37   mjacob 		/*
   1612      1.37   mjacob 		 * Force a logout.
   1613      1.37   mjacob 		 */
   1614      1.38   mjacob 		lp->loopid = loopid = lp - fcp->portdb;
   1615      1.37   mjacob 		mbs.param[0] = MBOX_FABRIC_LOGOUT;
   1616      1.37   mjacob 		mbs.param[1] = lp->loopid << 8;
   1617      1.37   mjacob 		mbs.param[2] = 0;
   1618      1.37   mjacob 		mbs.param[3] = 0;
   1619      1.37   mjacob 		isp_mboxcmd(isp, &mbs);
   1620      1.37   mjacob 
   1621      1.37   mjacob 		/*
   1622      1.37   mjacob 		 * And log in....
   1623      1.37   mjacob 		 */
   1624      1.37   mjacob 		mbs.param[0] = MBOX_FABRIC_LOGIN;
   1625      1.37   mjacob 		mbs.param[1] = lp->loopid << 8;
   1626      1.37   mjacob 		mbs.param[2] = lp->portid >> 16;
   1627      1.37   mjacob 		mbs.param[3] = lp->portid & 0xffff;
   1628      1.37   mjacob 		isp_mboxcmd(isp, &mbs);
   1629      1.37   mjacob 		if (mbs.param[0] == MBOX_COMMAND_COMPLETE) {
   1630      1.37   mjacob 			lp->valid = 1;
   1631      1.37   mjacob 			lp->fabdev = 1;
   1632      1.38   mjacob 			if (isp_getpdb(isp, loopid, &pdb) != 0) {
   1633      1.38   mjacob 				/*
   1634      1.38   mjacob 				 * Be kind...
   1635      1.38   mjacob 				 */
   1636      1.38   mjacob 				lp->roles = (SVC3_TGT_ROLE >> SVC3_ROLE_SHIFT);
   1637      1.38   mjacob 				PRINTF("%s: Faked PortID 0x%x into LoopID %d\n",
   1638      1.38   mjacob 				    isp->isp_name, lp->portid, lp->loopid);
   1639      1.38   mjacob 			} else if (pdb.pdb_loopid != lp->loopid) {
   1640      1.38   mjacob 				lp->roles = (SVC3_TGT_ROLE >> SVC3_ROLE_SHIFT);
   1641      1.38   mjacob 				PRINTF("%s: Wanked PortID 0x%x to LoopID %d\n",
   1642      1.38   mjacob 				    isp->isp_name, lp->portid, lp->loopid);
   1643      1.38   mjacob 			} else {
   1644      1.38   mjacob 				lp->roles =
   1645      1.38   mjacob 				    (pdb.pdb_prli_svc3 & SVC3_ROLE_MASK) >>
   1646      1.38   mjacob 				    SVC3_ROLE_SHIFT;
   1647      1.38   mjacob 				lp->portid = BITS2WORD(pdb.pdb_portid_bits);
   1648      1.38   mjacob 				lp->loopid = pdb.pdb_loopid;
   1649      1.38   mjacob 				lp->node_wwn =
   1650      1.38   mjacob 				    (((u_int64_t)pdb.pdb_nodename[0]) << 56) |
   1651      1.38   mjacob 				    (((u_int64_t)pdb.pdb_nodename[1]) << 48) |
   1652      1.38   mjacob 				    (((u_int64_t)pdb.pdb_nodename[2]) << 40) |
   1653      1.38   mjacob 				    (((u_int64_t)pdb.pdb_nodename[3]) << 32) |
   1654      1.38   mjacob 				    (((u_int64_t)pdb.pdb_nodename[4]) << 24) |
   1655      1.38   mjacob 				    (((u_int64_t)pdb.pdb_nodename[5]) << 16) |
   1656      1.38   mjacob 				    (((u_int64_t)pdb.pdb_nodename[6]) <<  8) |
   1657      1.38   mjacob 				    (((u_int64_t)pdb.pdb_nodename[7]));
   1658      1.38   mjacob 				lp->port_wwn =
   1659      1.38   mjacob 				    (((u_int64_t)pdb.pdb_portname[0]) << 56) |
   1660      1.38   mjacob 				    (((u_int64_t)pdb.pdb_portname[1]) << 48) |
   1661      1.38   mjacob 				    (((u_int64_t)pdb.pdb_portname[2]) << 40) |
   1662      1.38   mjacob 				    (((u_int64_t)pdb.pdb_portname[3]) << 32) |
   1663      1.38   mjacob 				    (((u_int64_t)pdb.pdb_portname[4]) << 24) |
   1664      1.38   mjacob 				    (((u_int64_t)pdb.pdb_portname[5]) << 16) |
   1665      1.38   mjacob 				    (((u_int64_t)pdb.pdb_portname[6]) <<  8) |
   1666      1.38   mjacob 				    (((u_int64_t)pdb.pdb_portname[7]));
   1667      1.38   mjacob 				(void) isp_async(isp, ISPASYNC_PDB_CHANGED,
   1668      1.38   mjacob 				    &loopid);
   1669      1.38   mjacob 			}
   1670      1.37   mjacob 		}
   1671      1.37   mjacob 	}
   1672      1.37   mjacob #endif
   1673      1.37   mjacob 	return (0);
   1674      1.37   mjacob }
   1675      1.37   mjacob 
   1676      1.37   mjacob #ifdef	ISP2100_FABRIC
   1677      1.37   mjacob static int
   1678      1.37   mjacob isp_scan_fabric(isp)
   1679      1.37   mjacob 	struct ispsoftc *isp;
   1680      1.37   mjacob {
   1681      1.37   mjacob 	fcparam *fcp = isp->isp_param;
   1682      1.37   mjacob 	u_int32_t portid, first_nz_portid;
   1683      1.37   mjacob 	sns_screq_t *reqp;
   1684      1.37   mjacob 	sns_scrsp_t *resp;
   1685      1.37   mjacob 	mbreg_t mbs;
   1686      1.37   mjacob 	int hicap;
   1687      1.37   mjacob 
   1688      1.37   mjacob 	reqp = (sns_screq_t *) fcp->isp_scratch;
   1689      1.37   mjacob 	resp = (sns_scrsp_t *) (&((char *)fcp->isp_scratch)[0x100]);
   1690      1.37   mjacob 	first_nz_portid = portid = fcp->isp_portid;
   1691      1.37   mjacob 
   1692      1.37   mjacob 	for (hicap = 0; hicap < 1024; hicap++) {
   1693      1.37   mjacob 		MEMZERO((void *) reqp, SNS_GAN_REQ_SIZE);
   1694      1.37   mjacob 		reqp->snscb_rblen = SNS_GAN_RESP_SIZE >> 1;
   1695      1.37   mjacob 		reqp->snscb_addr[RQRSP_ADDR0015] =
   1696      1.37   mjacob 			DMA_LSW(fcp->isp_scdma + 0x100);
   1697      1.37   mjacob 		reqp->snscb_addr[RQRSP_ADDR1631] =
   1698      1.37   mjacob 			DMA_MSW(fcp->isp_scdma + 0x100);
   1699      1.37   mjacob 		reqp->snscb_sblen = 6;
   1700      1.37   mjacob 		reqp->snscb_data[0] = SNS_GAN;
   1701      1.37   mjacob 		reqp->snscb_data[4] = portid & 0xffff;
   1702      1.37   mjacob 		reqp->snscb_data[5] = (portid >> 16) & 0xff;
   1703      1.38   mjacob 		ISP_SWIZZLE_SNS_REQ(isp, reqp);
   1704      1.37   mjacob 		mbs.param[0] = MBOX_SEND_SNS;
   1705      1.37   mjacob 		mbs.param[1] = SNS_GAN_REQ_SIZE >> 1;
   1706      1.37   mjacob 		mbs.param[2] = DMA_MSW(fcp->isp_scdma);
   1707      1.37   mjacob 		mbs.param[3] = DMA_LSW(fcp->isp_scdma);
   1708      1.37   mjacob 		mbs.param[6] = 0;
   1709      1.37   mjacob 		mbs.param[7] = 0;
   1710      1.37   mjacob 		MemoryBarrier();
   1711      1.37   mjacob 		isp_mboxcmd(isp, &mbs);
   1712      1.37   mjacob 		if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
   1713      1.37   mjacob 			return (-1);
   1714      1.37   mjacob 		}
   1715      1.38   mjacob 		ISP_UNSWIZZLE_SNS_RSP(isp, resp, SNS_GAN_RESP_SIZE >> 1);
   1716      1.37   mjacob 		portid = (((u_int32_t) resp->snscb_port_id[0]) << 16) |
   1717      1.37   mjacob 		    (((u_int32_t) resp->snscb_port_id[1]) << 8) |
   1718      1.37   mjacob 		    (((u_int32_t) resp->snscb_port_id[2]));
   1719      1.37   mjacob 		if (isp_async(isp, ISPASYNC_FABRIC_DEV, resp)) {
   1720      1.37   mjacob 			return (-1);
   1721      1.37   mjacob 		}
   1722      1.37   mjacob 		if (first_nz_portid == 0 && portid) {
   1723      1.37   mjacob 			first_nz_portid = portid;
   1724      1.37   mjacob 		}
   1725      1.37   mjacob 		if (first_nz_portid == portid) {
   1726      1.37   mjacob 			return (0);
   1727      1.37   mjacob 		}
   1728      1.37   mjacob 	}
   1729      1.37   mjacob 	/*
   1730      1.37   mjacob 	 * We either have a broken name server or a huge fabric if we get here.
   1731      1.37   mjacob 	 */
   1732      1.37   mjacob 	return (0);
   1733      1.37   mjacob }
   1734      1.37   mjacob #endif
   1735      1.37   mjacob /*
   1736      1.23   mjacob  * Start a command. Locking is assumed done in the caller.
   1737       1.1      cgd  */
   1738      1.23   mjacob 
   1739      1.23   mjacob int32_t
   1740       1.1      cgd ispscsicmd(xs)
   1741      1.23   mjacob 	ISP_SCSI_XFER_T *xs;
   1742       1.1      cgd {
   1743       1.1      cgd 	struct ispsoftc *isp;
   1744       1.1      cgd 	u_int8_t iptr, optr;
   1745      1.10   mjacob 	union {
   1746      1.10   mjacob 		ispreq_t *_reqp;
   1747      1.10   mjacob 		ispreqt2_t *_t2reqp;
   1748      1.10   mjacob 	} _u;
   1749      1.10   mjacob #define	reqp	_u._reqp
   1750      1.10   mjacob #define	t2reqp	_u._t2reqp
   1751      1.16   mjacob #define	UZSIZE	max(sizeof (ispreq_t), sizeof (ispreqt2_t))
   1752      1.38   mjacob 	int target, i;
   1753       1.1      cgd 
   1754      1.23   mjacob 	XS_INITERR(xs);
   1755      1.23   mjacob 	isp = XS_ISP(xs);
   1756       1.1      cgd 
   1757      1.24   mjacob 	if (isp->isp_state != ISP_RUNSTATE) {
   1758      1.24   mjacob 		PRINTF("%s: adapter not ready\n", isp->isp_name);
   1759      1.24   mjacob 		XS_SETERR(xs, HBA_BOTCH);
   1760      1.24   mjacob 		return (CMD_COMPLETE);
   1761      1.24   mjacob 	}
   1762      1.24   mjacob 
   1763      1.25   mjacob 	/*
   1764      1.33   mjacob 	 * We *could* do the different sequence type that has close
   1765      1.34   mjacob 	 * to the whole Queue Entry for the command...
   1766      1.25   mjacob 	 */
   1767      1.33   mjacob 
   1768      1.36   mjacob 	if (XS_CDBLEN(xs) > (IS_FC(isp) ? 16 : 12) || XS_CDBLEN(xs) == 0) {
   1769      1.36   mjacob 		PRINTF("%s: unsupported cdb length (%d, CDB[0]=0x%x)\n",
   1770      1.36   mjacob 		    isp->isp_name, XS_CDBLEN(xs), XS_CDBP(xs)[0]);
   1771      1.25   mjacob 		XS_SETERR(xs, HBA_BOTCH);
   1772      1.25   mjacob 		return (CMD_COMPLETE);
   1773      1.25   mjacob 	}
   1774      1.25   mjacob 
   1775      1.25   mjacob 	/*
   1776      1.33   mjacob 	 * Check to see whether we have good firmware state still or
   1777      1.33   mjacob 	 * need to refresh our port database for this target.
   1778      1.33   mjacob 	 */
   1779      1.37   mjacob 	target = XS_TGT(xs);
   1780      1.33   mjacob 	if (IS_FC(isp)) {
   1781      1.33   mjacob 		fcparam *fcp = isp->isp_param;
   1782      1.37   mjacob 		struct lportdb *lp;
   1783      1.37   mjacob #if	defined(ISP2100_FABRIC)
   1784      1.37   mjacob 		if (target >= FL_PORT_ID) {
   1785      1.37   mjacob 			/*
   1786      1.37   mjacob 			 * If we're not on a Fabric, we can't have a target
   1787      1.37   mjacob 			 * above FL_PORT_ID-1. If we're on a fabric, we
   1788      1.37   mjacob 			 * can't have a target less than FC_SNS_ID+1.
   1789      1.37   mjacob 			 */
   1790      1.37   mjacob 			if (fcp->isp_onfabric == 0 || target <= FC_SNS_ID) {
   1791      1.37   mjacob 				XS_SETERR(xs, HBA_SELTIMEOUT);
   1792      1.37   mjacob 				return (CMD_COMPLETE);
   1793      1.37   mjacob 			}
   1794      1.37   mjacob 		}
   1795      1.37   mjacob #endif
   1796      1.33   mjacob 		/*
   1797      1.37   mjacob 		 * Check for f/w being in ready state. If the f/w
   1798      1.37   mjacob 		 * isn't in ready state, then we don't know our
   1799      1.37   mjacob 		 * loop ID and the f/w hasn't completed logging
   1800      1.37   mjacob 		 * into all targets on the loop. If this is the
   1801      1.37   mjacob 		 * case, then bounce the command. We pretend this is
   1802      1.37   mjacob 		 * a SELECTION TIMEOUT error if we've never gone to
   1803      1.37   mjacob 		 * FW_READY state at all- in this case we may not
   1804      1.37   mjacob 		 * be hooked to a loop at all and we shouldn't hang
   1805      1.37   mjacob 		 * the machine for this. Otherwise, defer this command
   1806      1.37   mjacob 		 * until later.
   1807      1.33   mjacob 		 */
   1808      1.33   mjacob 		if (fcp->isp_fwstate != FW_READY) {
   1809      1.34   mjacob 			if (isp_fclink_test(isp, FC_FW_READY_DELAY)) {
   1810      1.33   mjacob 				XS_SETERR(xs, HBA_SELTIMEOUT);
   1811      1.37   mjacob 				if (fcp->loop_seen_once) {
   1812      1.38   mjacob 					return (CMD_RQLATER);
   1813      1.37   mjacob 				} else {
   1814      1.37   mjacob 					return (CMD_COMPLETE);
   1815      1.37   mjacob 				}
   1816      1.37   mjacob 			}
   1817      1.37   mjacob 		}
   1818      1.37   mjacob 
   1819      1.37   mjacob 		/*
   1820      1.37   mjacob 		 * If our loop state is such that we haven't yet received
   1821      1.37   mjacob 		 * a "Port Database Changed" notification (after a LIP or
   1822      1.37   mjacob 		 * a Loop Reset or firmware initialization), then defer
   1823      1.37   mjacob 		 * sending commands for a little while.
   1824      1.37   mjacob 		 */
   1825      1.37   mjacob 		if (fcp->isp_loopstate < LOOP_PDB_RCVD) {
   1826      1.37   mjacob 			XS_SETERR(xs, HBA_SELTIMEOUT);
   1827      1.38   mjacob 			return (CMD_RQLATER);
   1828      1.37   mjacob 		}
   1829      1.37   mjacob 
   1830      1.37   mjacob 		/*
   1831      1.37   mjacob 		 * If our loop state is now such that we've just now
   1832      1.37   mjacob 		 * received a Port Database Change notification, then
   1833      1.37   mjacob 		 * we have to go off and (re)synchronize our
   1834      1.37   mjacob 		 */
   1835      1.37   mjacob 		if (fcp->isp_loopstate == LOOP_PDB_RCVD) {
   1836      1.37   mjacob 			if (isp_pdb_sync(isp, target)) {
   1837      1.37   mjacob 				XS_SETERR(xs, HBA_SELTIMEOUT);
   1838      1.33   mjacob 				return (CMD_COMPLETE);
   1839      1.33   mjacob 			}
   1840      1.33   mjacob 		}
   1841      1.37   mjacob 
   1842      1.33   mjacob 		/*
   1843      1.37   mjacob 		 * Now check whether we should even think about pursuing this.
   1844      1.33   mjacob 		 */
   1845      1.37   mjacob 		lp = &fcp->portdb[target];
   1846      1.37   mjacob 		if (lp->valid == 0) {
   1847      1.37   mjacob 			XS_SETERR(xs, HBA_SELTIMEOUT);
   1848      1.37   mjacob 			return (CMD_COMPLETE);
   1849      1.37   mjacob 		}
   1850      1.37   mjacob 		if ((lp->roles & (SVC3_TGT_ROLE >> SVC3_ROLE_SHIFT)) == 0) {
   1851      1.38   mjacob 			IDPRINTF(3, ("%s: target %d is not a target\n",
   1852      1.38   mjacob 			    isp->isp_name, target));
   1853      1.37   mjacob 			XS_SETERR(xs, HBA_SELTIMEOUT);
   1854      1.37   mjacob 			return (CMD_COMPLETE);
   1855      1.33   mjacob 		}
   1856      1.37   mjacob 		/*
   1857      1.37   mjacob 		 * Now turn target into what the actual loop ID is.
   1858      1.37   mjacob 		 */
   1859      1.37   mjacob 		target = lp->loopid;
   1860      1.33   mjacob 	}
   1861      1.33   mjacob 
   1862      1.33   mjacob 	/*
   1863      1.33   mjacob 	 * Next check to see if any HBA or Device
   1864      1.25   mjacob 	 * parameters need to be updated.
   1865      1.25   mjacob 	 */
   1866      1.36   mjacob 	if (isp->isp_update != 0) {
   1867      1.25   mjacob 		isp_update(isp);
   1868      1.10   mjacob 	}
   1869      1.25   mjacob 
   1870      1.25   mjacob 	optr = isp->isp_reqodx = ISP_READ(isp, OUTMAILBOX4);
   1871       1.1      cgd 	iptr = isp->isp_reqidx;
   1872       1.1      cgd 
   1873      1.10   mjacob 	reqp = (ispreq_t *) ISP_QUEUE_ENTRY(isp->isp_rquest, iptr);
   1874      1.25   mjacob 	iptr = ISP_NXT_QENTRY(iptr, RQUEST_QUEUE_LEN);
   1875       1.1      cgd 	if (iptr == optr) {
   1876      1.38   mjacob 		IDPRINTF(0, ("%s: Request Queue Overflow\n", isp->isp_name));
   1877      1.23   mjacob 		XS_SETERR(xs, HBA_BOTCH);
   1878      1.23   mjacob 		return (CMD_EAGAIN);
   1879       1.1      cgd 	}
   1880      1.13   mjacob 
   1881      1.36   mjacob 	/*
   1882      1.36   mjacob 	 * Now see if we need to synchronize the ISP with respect to anything.
   1883      1.36   mjacob 	 * We do dual duty here (cough) for synchronizing for busses other
   1884      1.36   mjacob 	 * than which we got here to send a command to.
   1885      1.36   mjacob 	 */
   1886       1.1      cgd 	if (isp->isp_sendmarker) {
   1887      1.36   mjacob 		u_int8_t niptr, n = (IS_12X0(isp)? 2: 1);
   1888      1.27   mjacob 		/*
   1889      1.36   mjacob 		 * Check ports to send markers for...
   1890      1.27   mjacob 		 */
   1891      1.36   mjacob 		for (i = 0; i < n; i++) {
   1892      1.36   mjacob 			if ((isp->isp_sendmarker & (1 << i)) == 0) {
   1893      1.36   mjacob 				continue;
   1894      1.36   mjacob 			}
   1895      1.36   mjacob 			MEMZERO((void *) reqp, sizeof (*reqp));
   1896      1.36   mjacob 			reqp->req_header.rqs_entry_count = 1;
   1897      1.36   mjacob 			reqp->req_header.rqs_entry_type = RQSTYPE_MARKER;
   1898      1.36   mjacob 			reqp->req_modifier = SYNC_ALL;
   1899      1.38   mjacob 			reqp->req_target = i << 7;	/* insert bus number */
   1900      1.38   mjacob 			ISP_SWIZZLE_REQUEST(isp, reqp);
   1901      1.36   mjacob 
   1902      1.36   mjacob 			/*
   1903      1.36   mjacob 			 * Unconditionally update the input pointer anyway.
   1904      1.36   mjacob 			 */
   1905      1.36   mjacob 			ISP_WRITE(isp, INMAILBOX4, iptr);
   1906      1.36   mjacob 			isp->isp_reqidx = iptr;
   1907      1.27   mjacob 
   1908      1.36   mjacob 			niptr = ISP_NXT_QENTRY(iptr, RQUEST_QUEUE_LEN);
   1909      1.36   mjacob 			if (niptr == optr) {
   1910      1.38   mjacob 				IDPRINTF(0, ("%s: Request Queue Overflow+\n",
   1911      1.36   mjacob 				    isp->isp_name));
   1912      1.36   mjacob 				XS_SETERR(xs, HBA_BOTCH);
   1913      1.36   mjacob 				return (CMD_EAGAIN);
   1914      1.36   mjacob 			}
   1915      1.36   mjacob 			reqp = (ispreq_t *)
   1916      1.36   mjacob 			    ISP_QUEUE_ENTRY(isp->isp_rquest, iptr);
   1917      1.36   mjacob 			iptr = niptr;
   1918       1.1      cgd 		}
   1919       1.1      cgd 	}
   1920       1.1      cgd 
   1921      1.30   mjacob 	MEMZERO((void *) reqp, UZSIZE);
   1922      1.10   mjacob 	reqp->req_header.rqs_entry_count = 1;
   1923      1.38   mjacob 	if (IS_FC(isp)) {
   1924      1.10   mjacob 		reqp->req_header.rqs_entry_type = RQSTYPE_T2RQS;
   1925      1.10   mjacob 	} else {
   1926      1.10   mjacob 		reqp->req_header.rqs_entry_type = RQSTYPE_REQUEST;
   1927      1.10   mjacob 	}
   1928      1.10   mjacob 	reqp->req_header.rqs_flags = 0;
   1929      1.38   mjacob 	reqp->req_header.rqs_seqno = 0;
   1930      1.38   mjacob 	if (IS_FC(isp)) {
   1931      1.10   mjacob 		/*
   1932      1.10   mjacob 		 * See comment in isp_intr
   1933      1.10   mjacob 		 */
   1934      1.23   mjacob 		XS_RESID(xs) = 0;
   1935      1.34   mjacob 
   1936      1.10   mjacob 		/*
   1937      1.38   mjacob 		 * Fibre Channel always requires some kind of tag, but
   1938      1.38   mjacob 		 * the firmware seems to be happy if we don't use a tag.
   1939      1.10   mjacob 		 */
   1940      1.23   mjacob 		if (XS_CANTAG(xs)) {
   1941      1.23   mjacob 			t2reqp->req_flags = XS_KINDOF_TAG(xs);
   1942      1.10   mjacob 		}
   1943      1.10   mjacob 	} else {
   1944      1.23   mjacob 		sdparam *sdp = (sdparam *)isp->isp_param;
   1945      1.37   mjacob 		if ((sdp->isp_devparam[target].cur_dflags & DPARM_TQING) &&
   1946      1.23   mjacob 		    XS_CANTAG(xs)) {
   1947      1.23   mjacob 			reqp->req_flags = XS_KINDOF_TAG(xs);
   1948      1.10   mjacob 		}
   1949      1.10   mjacob 	}
   1950      1.37   mjacob 	reqp->req_target = target | (XS_CHANNEL(xs) << 7);
   1951      1.38   mjacob 	if (IS_SCSI(isp)) {
   1952      1.28   mjacob 		reqp->req_lun_trn = XS_LUN(xs);
   1953      1.23   mjacob 		reqp->req_cdblen = XS_CDBLEN(xs);
   1954      1.28   mjacob 	} else {
   1955      1.33   mjacob #ifdef	ISP2100_SCCLUN
   1956      1.37   mjacob 		t2reqp->req_scclun = XS_LUN(xs);
   1957      1.28   mjacob #else
   1958      1.37   mjacob 		t2reqp->req_lun_trn = XS_LUN(xs);
   1959      1.28   mjacob #endif
   1960      1.10   mjacob 	}
   1961      1.31   mjacob 	MEMCPY(reqp->req_cdb, XS_CDBP(xs), XS_CDBLEN(xs));
   1962       1.1      cgd 
   1963      1.23   mjacob 	reqp->req_time = XS_TIME(xs) / 1000;
   1964      1.23   mjacob 	if (reqp->req_time == 0 && XS_TIME(xs))
   1965      1.10   mjacob 		reqp->req_time = 1;
   1966      1.33   mjacob 
   1967      1.33   mjacob 	/*
   1968      1.33   mjacob 	 * Always give a bit more leeway to commands after a bus reset.
   1969      1.36   mjacob 	 * XXX: DOES NOT DISTINGUISH WHICH PORT MAY HAVE BEEN SYNCED
   1970      1.33   mjacob 	 */
   1971      1.38   mjacob 	if (isp->isp_sendmarker && reqp->req_time < 5) {
   1972      1.33   mjacob 		reqp->req_time = 5;
   1973      1.38   mjacob 	}
   1974      1.38   mjacob 	if (isp_save_xs(isp, xs, &reqp->req_handle)) {
   1975      1.38   mjacob 		IDPRINTF(2, ("%s: out of xflist pointers\n", isp->isp_name));
   1976      1.38   mjacob 		XS_SETERR(xs, HBA_BOTCH);
   1977      1.38   mjacob 		return (CMD_EAGAIN);
   1978      1.38   mjacob 	}
   1979      1.38   mjacob 	/*
   1980      1.38   mjacob 	 * Set up DMA and/or do any bus swizzling of the request entry
   1981      1.38   mjacob 	 * so that the Qlogic F/W understands what is being asked of it.
   1982      1.38   mjacob  	*/
   1983      1.27   mjacob 	i = ISP_DMASETUP(isp, xs, reqp, &iptr, optr);
   1984      1.27   mjacob 	if (i != CMD_QUEUED) {
   1985      1.38   mjacob 		isp_destroy_handle(isp, reqp->req_handle);
   1986      1.27   mjacob 		/*
   1987      1.27   mjacob 		 * dmasetup sets actual error in packet, and
   1988      1.27   mjacob 		 * return what we were given to return.
   1989      1.27   mjacob 		 */
   1990      1.27   mjacob 		return (i);
   1991       1.1      cgd 	}
   1992      1.23   mjacob 	XS_SETERR(xs, HBA_NOERROR);
   1993      1.38   mjacob 	IDPRINTF(5, ("%s(%d.%d.%d): START cmd 0x%x datalen %d\n",
   1994      1.38   mjacob 	    isp->isp_name, XS_CHANNEL(xs), target, XS_LUN(xs),
   1995      1.38   mjacob 	    reqp->req_cdb[0], XS_XFRLEN(xs)));
   1996      1.33   mjacob 	MemoryBarrier();
   1997       1.1      cgd 	ISP_WRITE(isp, INMAILBOX4, iptr);
   1998       1.1      cgd 	isp->isp_reqidx = iptr;
   1999      1.23   mjacob 	isp->isp_nactive++;
   2000      1.33   mjacob 	if (isp->isp_sendmarker)
   2001      1.33   mjacob 		isp->isp_sendmarker = 0;
   2002      1.23   mjacob 	return (CMD_QUEUED);
   2003      1.10   mjacob #undef	reqp
   2004      1.10   mjacob #undef	t2reqp
   2005       1.1      cgd }
   2006       1.1      cgd 
   2007       1.1      cgd /*
   2008      1.23   mjacob  * isp control
   2009      1.23   mjacob  * Locks (ints blocked) assumed held.
   2010       1.1      cgd  */
   2011       1.1      cgd 
   2012       1.1      cgd int
   2013      1.23   mjacob isp_control(isp, ctl, arg)
   2014       1.1      cgd 	struct ispsoftc *isp;
   2015      1.23   mjacob 	ispctl_t ctl;
   2016      1.23   mjacob 	void *arg;
   2017       1.1      cgd {
   2018      1.23   mjacob 	ISP_SCSI_XFER_T *xs;
   2019      1.23   mjacob 	mbreg_t mbs;
   2020      1.38   mjacob 	int bus, tgt;
   2021      1.38   mjacob 	u_int32_t handle;
   2022       1.3      cgd 
   2023      1.23   mjacob 	switch (ctl) {
   2024      1.23   mjacob 	default:
   2025      1.23   mjacob 		PRINTF("%s: isp_control unknown control op %x\n",
   2026      1.23   mjacob 		    isp->isp_name, ctl);
   2027      1.23   mjacob 		break;
   2028       1.3      cgd 
   2029      1.23   mjacob 	case ISPCTL_RESET_BUS:
   2030      1.33   mjacob 		/*
   2031      1.33   mjacob 		 * Issue a bus reset.
   2032      1.33   mjacob 		 */
   2033      1.23   mjacob 		mbs.param[0] = MBOX_BUS_RESET;
   2034      1.38   mjacob 		if (IS_SCSI(isp)) {
   2035      1.32   mjacob 			mbs.param[1] =
   2036      1.32   mjacob 			    ((sdparam *) isp->isp_param)->isp_bus_reset_delay;
   2037      1.33   mjacob 			if (mbs.param[1] < 2)
   2038      1.33   mjacob 				mbs.param[1] = 2;
   2039      1.38   mjacob 			bus = *((int *) arg);
   2040      1.38   mjacob 			mbs.param[2] = bus;
   2041      1.32   mjacob 		} else {
   2042      1.38   mjacob 			/* Unparameterized. */
   2043      1.38   mjacob 			mbs.param[1] = 10;
   2044      1.38   mjacob 			bus = 0;
   2045      1.32   mjacob 		}
   2046      1.36   mjacob 		isp->isp_sendmarker = 1 << bus;
   2047      1.23   mjacob 		isp_mboxcmd(isp, &mbs);
   2048      1.23   mjacob 		if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
   2049      1.23   mjacob 			isp_dumpregs(isp, "isp_control SCSI bus reset failed");
   2050      1.23   mjacob 			break;
   2051      1.23   mjacob 		}
   2052      1.36   mjacob 		PRINTF("%s: driver initiated bus reset of bus %d\n",
   2053      1.36   mjacob 		    isp->isp_name, bus);
   2054      1.23   mjacob 		return (0);
   2055      1.23   mjacob 
   2056      1.34   mjacob 	case ISPCTL_RESET_DEV:
   2057      1.36   mjacob 		tgt = (*((int *) arg)) & 0xffff;
   2058      1.36   mjacob 		bus = (*((int *) arg)) >> 16;
   2059      1.23   mjacob 		mbs.param[0] = MBOX_ABORT_TARGET;
   2060      1.36   mjacob 		mbs.param[1] = (tgt << 8) | (bus << 15);
   2061      1.32   mjacob 		mbs.param[2] = 3;	/* 'delay', in seconds */
   2062      1.23   mjacob 		isp_mboxcmd(isp, &mbs);
   2063      1.23   mjacob 		if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
   2064      1.38   mjacob 			PRINTF("%s: isp_control MBOX_RESET_DEV failure (code "
   2065      1.38   mjacob 			    "%x)\n", isp->isp_name, mbs.param[0]);
   2066      1.23   mjacob 			break;
   2067      1.23   mjacob 		}
   2068      1.36   mjacob 		PRINTF("%s: Target %d on Bus %d Reset Succeeded\n",
   2069      1.36   mjacob 		    isp->isp_name, tgt, bus);
   2070      1.36   mjacob 		isp->isp_sendmarker = 1 << bus;
   2071      1.23   mjacob 		return (0);
   2072      1.23   mjacob 
   2073      1.34   mjacob 	case ISPCTL_ABORT_CMD:
   2074      1.23   mjacob 		xs = (ISP_SCSI_XFER_T *) arg;
   2075      1.38   mjacob 		handle = isp_find_handle(isp, xs);
   2076      1.38   mjacob 		if (handle == 0) {
   2077      1.23   mjacob 			PRINTF("%s: isp_control- cannot find command to abort "
   2078      1.23   mjacob 			    "in active list\n", isp->isp_name);
   2079      1.23   mjacob 			break;
   2080      1.23   mjacob 		}
   2081      1.38   mjacob 		bus = XS_CHANNEL(xs);
   2082      1.23   mjacob 		mbs.param[0] = MBOX_ABORT;
   2083      1.38   mjacob 		if (IS_FC(isp)) {
   2084      1.33   mjacob #ifdef	ISP2100_SCCLUN
   2085      1.28   mjacob 			mbs.param[1] = XS_TGT(xs) << 8;
   2086      1.28   mjacob 			mbs.param[4] = 0;
   2087      1.28   mjacob 			mbs.param[5] = 0;
   2088      1.28   mjacob 			mbs.param[6] = XS_LUN(xs);
   2089      1.38   mjacob #else
   2090      1.38   mjacob 			mbs.param[1] = XS_TGT(xs) << 8 | XS_LUN(xs);
   2091      1.38   mjacob #endif
   2092      1.28   mjacob 		} else {
   2093      1.38   mjacob 			mbs.param[1] =
   2094      1.38   mjacob 			    (bus << 15) | (XS_TGT(xs) << 8) | XS_LUN(xs);
   2095      1.28   mjacob 		}
   2096      1.38   mjacob 		mbs.param[2] = handle >> 16;
   2097      1.38   mjacob 		mbs.param[3] = handle & 0xffff;
   2098      1.23   mjacob 		isp_mboxcmd(isp, &mbs);
   2099      1.23   mjacob 		if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
   2100      1.23   mjacob 			PRINTF("%s: isp_control MBOX_ABORT failure (code %x)\n",
   2101      1.23   mjacob 			    isp->isp_name, mbs.param[0]);
   2102      1.23   mjacob 			break;
   2103      1.23   mjacob 		}
   2104      1.23   mjacob 		PRINTF("%s: command for target %d lun %d was aborted\n",
   2105      1.23   mjacob 		    isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2106      1.23   mjacob 		return (0);
   2107      1.26   mjacob 
   2108      1.26   mjacob 	case ISPCTL_UPDATE_PARAMS:
   2109      1.26   mjacob 		isp_update(isp);
   2110      1.34   mjacob 		return (0);
   2111      1.33   mjacob 
   2112      1.33   mjacob 	case ISPCTL_FCLINK_TEST:
   2113      1.34   mjacob 		return (isp_fclink_test(isp, FC_FW_READY_DELAY));
   2114       1.1      cgd 	}
   2115      1.23   mjacob 	return (-1);
   2116       1.1      cgd }
   2117       1.1      cgd 
   2118      1.23   mjacob /*
   2119      1.23   mjacob  * Interrupt Service Routine(s).
   2120      1.23   mjacob  *
   2121      1.23   mjacob  * External (OS) framework has done the appropriate locking,
   2122      1.23   mjacob  * and the locking will be held throughout this function.
   2123      1.23   mjacob  */
   2124      1.23   mjacob 
   2125       1.1      cgd int
   2126       1.1      cgd isp_intr(arg)
   2127       1.1      cgd 	void *arg;
   2128       1.1      cgd {
   2129      1.25   mjacob 	ISP_SCSI_XFER_T *complist[RESULT_QUEUE_LEN], *xs;
   2130       1.1      cgd 	struct ispsoftc *isp = arg;
   2131      1.25   mjacob 	u_int8_t iptr, optr;
   2132      1.38   mjacob 	u_int16_t isr, isrb, sema;
   2133      1.32   mjacob 	int i, nlooked = 0, ndone = 0;
   2134       1.1      cgd 
   2135      1.36   mjacob 	/*
   2136      1.36   mjacob 	 * Well, if we've disabled interrupts, we may get a case where
   2137      1.38   mjacob 	 * isr isn't set, but sema is. In any case, debounce isr reads.
   2138      1.36   mjacob 	 */
   2139      1.38   mjacob 	do {
   2140      1.38   mjacob 		isr = ISP_READ(isp, BIU_ISR);
   2141      1.38   mjacob 		isrb = ISP_READ(isp, BIU_ISR);
   2142      1.38   mjacob 	} while (isr != isrb);
   2143      1.36   mjacob 	sema = ISP_READ(isp, BIU_SEMA) & 0x1;
   2144      1.36   mjacob 	IDPRINTF(5, ("%s: isp_intr isr %x sem %x\n", isp->isp_name, isr, sema));
   2145      1.39   mjacob 	if (isr == 0) {
   2146      1.39   mjacob 		return (0);
   2147      1.39   mjacob 	}
   2148      1.39   mjacob 	if (!INT_PENDING(isp, isr)) {
   2149      1.39   mjacob 		IDPRINTF(4, ("%s: isp_intr isr=%x\n", isp->isp_name, isr));
   2150      1.39   mjacob 		return (0);
   2151       1.1      cgd 	}
   2152      1.35   mjacob 	if (isp->isp_state != ISP_RUNSTATE) {
   2153      1.36   mjacob 		IDPRINTF(3, ("%s: interrupt (isr=%x,sema=%x) when not ready\n",
   2154      1.36   mjacob 		    isp->isp_name, isr, sema));
   2155      1.35   mjacob 		ISP_WRITE(isp, INMAILBOX5, ISP_READ(isp, OUTMAILBOX5));
   2156      1.35   mjacob 		ISP_WRITE(isp, HCCR, HCCR_CMD_CLEAR_RISC_INT);
   2157      1.35   mjacob 		ISP_WRITE(isp, BIU_SEMA, 0);
   2158      1.35   mjacob 		ENABLE_INTS(isp);
   2159      1.35   mjacob 		return (1);
   2160      1.35   mjacob 	}
   2161       1.1      cgd 
   2162      1.36   mjacob 	if (sema) {
   2163      1.23   mjacob 		u_int16_t mbox = ISP_READ(isp, OUTMAILBOX0);
   2164      1.33   mjacob 		if (mbox & 0x4000) {
   2165      1.36   mjacob 			IDPRINTF(3, ("%s: Command Mbox 0x%x\n",
   2166      1.34   mjacob 			    isp->isp_name, mbox));
   2167      1.33   mjacob 		} else {
   2168      1.33   mjacob 			u_int32_t fhandle = isp_parse_async(isp, (int) mbox);
   2169      1.36   mjacob 			IDPRINTF(3, ("%s: Async Mbox 0x%x\n",
   2170      1.36   mjacob 			    isp->isp_name, mbox));
   2171      1.35   mjacob 			if (fhandle > 0) {
   2172      1.38   mjacob 				isp_fastpost_complete(isp, fhandle);
   2173      1.33   mjacob 			}
   2174      1.31   mjacob 		}
   2175      1.35   mjacob 		ISP_WRITE(isp, BIU_SEMA, 0);
   2176      1.35   mjacob 		ISP_WRITE(isp, HCCR, HCCR_CMD_CLEAR_RISC_INT);
   2177      1.35   mjacob 		ENABLE_INTS(isp);
   2178      1.35   mjacob 		return (1);
   2179       1.1      cgd 	}
   2180      1.25   mjacob 
   2181      1.35   mjacob 	/*
   2182      1.35   mjacob 	 * You *must* read OUTMAILBOX5 prior to clearing the RISC interrupt.
   2183      1.35   mjacob 	 */
   2184      1.24   mjacob 	optr = isp->isp_residx;
   2185      1.10   mjacob 	iptr = ISP_READ(isp, OUTMAILBOX5);
   2186      1.35   mjacob 	ISP_WRITE(isp, HCCR, HCCR_CMD_CLEAR_RISC_INT);
   2187      1.10   mjacob 	if (optr == iptr) {
   2188      1.20   mjacob 		IDPRINTF(4, ("why intr? isr %x iptr %x optr %x\n",
   2189      1.25   mjacob 		    isr, optr, iptr));
   2190      1.10   mjacob 	}
   2191      1.10   mjacob 
   2192       1.1      cgd 	while (optr != iptr) {
   2193       1.1      cgd 		ispstatusreq_t *sp;
   2194      1.25   mjacob 		u_int8_t oop;
   2195       1.1      cgd 		int buddaboom = 0;
   2196       1.1      cgd 
   2197       1.7  thorpej 		sp = (ispstatusreq_t *) ISP_QUEUE_ENTRY(isp->isp_result, optr);
   2198      1.25   mjacob 		oop = optr;
   2199      1.25   mjacob 		optr = ISP_NXT_QENTRY(optr, RESULT_QUEUE_LEN);
   2200      1.32   mjacob 		nlooked++;
   2201      1.33   mjacob 		MemoryBarrier();
   2202      1.38   mjacob 		/*
   2203      1.38   mjacob 		 * Do any appropriate unswizzling of what the Qlogic f/w has
   2204      1.38   mjacob 		 * written into memory so it makes sense to us.
   2205      1.38   mjacob 		 */
   2206      1.38   mjacob 		ISP_UNSWIZZLE_RESPONSE(isp, sp);
   2207       1.1      cgd 		if (sp->req_header.rqs_entry_type != RQSTYPE_RESPONSE) {
   2208      1.25   mjacob 			if (isp_handle_other_response(isp, sp, &optr) == 0) {
   2209      1.25   mjacob 				ISP_WRITE(isp, INMAILBOX5, optr);
   2210      1.25   mjacob 				continue;
   2211      1.25   mjacob 			}
   2212      1.25   mjacob 			/*
   2213      1.25   mjacob 			 * It really has to be a bounced request just copied
   2214      1.36   mjacob 			 * from the request queue to the response queue. If
   2215      1.36   mjacob 			 * not, something bad has happened.
   2216      1.25   mjacob 			 */
   2217       1.1      cgd 			if (sp->req_header.rqs_entry_type != RQSTYPE_REQUEST) {
   2218       1.1      cgd 				ISP_WRITE(isp, INMAILBOX5, optr);
   2219      1.36   mjacob 				PRINTF("%s: not RESPONSE in RESPONSE Queue "
   2220      1.36   mjacob 				    "(type 0x%x) @ idx %d (next %d)\n",
   2221      1.36   mjacob 				    isp->isp_name,
   2222      1.36   mjacob 				    sp->req_header.rqs_entry_type, oop, optr);
   2223       1.1      cgd 				continue;
   2224       1.1      cgd 			}
   2225       1.1      cgd 			buddaboom = 1;
   2226       1.1      cgd 		}
   2227       1.1      cgd 
   2228       1.1      cgd 		if (sp->req_header.rqs_flags & 0xf) {
   2229      1.36   mjacob #define	_RQS_OFLAGS	\
   2230      1.36   mjacob 	~(RQSFLAG_CONTINUATION|RQSFLAG_FULL|RQSFLAG_BADHEADER|RQSFLAG_BADPACKET)
   2231       1.1      cgd 			if (sp->req_header.rqs_flags & RQSFLAG_CONTINUATION) {
   2232      1.36   mjacob 				IDPRINTF(3, ("%s: continuation segment\n",
   2233      1.36   mjacob 				    isp->isp_name));
   2234       1.1      cgd 				ISP_WRITE(isp, INMAILBOX5, optr);
   2235       1.1      cgd 				continue;
   2236       1.1      cgd 			}
   2237      1.23   mjacob 			if (sp->req_header.rqs_flags & RQSFLAG_FULL) {
   2238      1.36   mjacob 				IDPRINTF(2, ("%s: internal queues full\n",
   2239      1.36   mjacob 				    isp->isp_name));
   2240      1.36   mjacob 				/*
   2241  1.39.2.1  thorpej 				 * This is handled below...
   2242      1.36   mjacob 				 */
   2243      1.23   mjacob 			}
   2244      1.23   mjacob 			if (sp->req_header.rqs_flags & RQSFLAG_BADHEADER) {
   2245      1.23   mjacob 				PRINTF("%s: bad header\n", isp->isp_name);
   2246      1.23   mjacob 				buddaboom++;
   2247      1.23   mjacob 			}
   2248      1.23   mjacob 			if (sp->req_header.rqs_flags & RQSFLAG_BADPACKET) {
   2249      1.23   mjacob 				PRINTF("%s: bad request packet\n",
   2250      1.23   mjacob 				    isp->isp_name);
   2251      1.23   mjacob 				buddaboom++;
   2252      1.23   mjacob 			}
   2253      1.36   mjacob 			if (sp->req_header.rqs_flags & _RQS_OFLAGS) {
   2254      1.36   mjacob 				PRINTF("%s: unknown flags in response (0x%x)\n",
   2255      1.36   mjacob 				    isp->isp_name, sp->req_header.rqs_flags);
   2256      1.36   mjacob 				buddaboom++;
   2257      1.36   mjacob 			}
   2258      1.36   mjacob #undef	_RQS_OFLAGS
   2259       1.1      cgd 		}
   2260      1.38   mjacob 		if (sp->req_handle > isp->isp_maxcmds || sp->req_handle < 1) {
   2261      1.23   mjacob 			PRINTF("%s: bad request handle %d\n", isp->isp_name,
   2262      1.38   mjacob 			    sp->req_handle);
   2263       1.1      cgd 			ISP_WRITE(isp, INMAILBOX5, optr);
   2264       1.1      cgd 			continue;
   2265       1.1      cgd 		}
   2266      1.38   mjacob 		xs = isp_find_xs(isp, sp->req_handle);
   2267       1.1      cgd 		if (xs == NULL) {
   2268      1.38   mjacob 			PRINTF("%s: NULL xs in xflist (handle 0x%x)\n",
   2269      1.23   mjacob 			    isp->isp_name, sp->req_handle);
   2270       1.1      cgd 			ISP_WRITE(isp, INMAILBOX5, optr);
   2271       1.1      cgd 			continue;
   2272       1.1      cgd 		}
   2273      1.38   mjacob 		isp_destroy_handle(isp, sp->req_handle);
   2274       1.1      cgd 		if (sp->req_status_flags & RQSTF_BUS_RESET) {
   2275      1.36   mjacob 			isp->isp_sendmarker |= (1 << XS_CHANNEL(xs));
   2276       1.1      cgd 		}
   2277       1.1      cgd 		if (buddaboom) {
   2278      1.23   mjacob 			XS_SETERR(xs, HBA_BOTCH);
   2279       1.1      cgd 		}
   2280      1.23   mjacob 		XS_STS(xs) = sp->req_scsi_status & 0xff;
   2281      1.36   mjacob 		if (IS_SCSI(isp)) {
   2282      1.10   mjacob 			if (sp->req_state_flags & RQSF_GOT_SENSE) {
   2283      1.31   mjacob 				MEMCPY(XS_SNSP(xs), sp->req_sense_data,
   2284      1.23   mjacob 					XS_SNSLEN(xs));
   2285      1.23   mjacob 				XS_SNS_IS_VALID(xs);
   2286      1.10   mjacob 			}
   2287      1.31   mjacob 			/*
   2288      1.31   mjacob 			 * A new synchronous rate was negotiated for this
   2289      1.31   mjacob 			 * target. Mark state such that we'll go look up
   2290      1.31   mjacob 			 * that which has changed later.
   2291      1.31   mjacob 			 */
   2292      1.31   mjacob 			if (sp->req_status_flags & RQSTF_NEGOTIATION) {
   2293      1.31   mjacob 				sdparam *sdp = isp->isp_param;
   2294      1.36   mjacob 				sdp += XS_CHANNEL(xs);
   2295      1.31   mjacob 				sdp->isp_devparam[XS_TGT(xs)].dev_refresh = 1;
   2296      1.36   mjacob 				isp->isp_update |= (1 << XS_CHANNEL(xs));
   2297      1.31   mjacob 			}
   2298      1.10   mjacob 		} else {
   2299      1.23   mjacob 			if (XS_STS(xs) == SCSI_CHECK) {
   2300      1.23   mjacob 				XS_SNS_IS_VALID(xs);
   2301      1.31   mjacob 				MEMCPY(XS_SNSP(xs), sp->req_sense_data,
   2302      1.23   mjacob 					XS_SNSLEN(xs));
   2303      1.10   mjacob 				sp->req_state_flags |= RQSF_GOT_SENSE;
   2304      1.10   mjacob 			}
   2305       1.1      cgd 		}
   2306  1.39.2.1  thorpej 
   2307  1.39.2.1  thorpej 		if (XS_NOERR(xs)) {
   2308  1.39.2.1  thorpej 			switch (XS_STS(xs)) {
   2309  1.39.2.1  thorpej 			case SCSI_BUSY:
   2310  1.39.2.1  thorpej 			case SCSI_QFULL:
   2311  1.39.2.1  thorpej 				/*
   2312  1.39.2.1  thorpej 				 * If the target returns QUEUE FULL,
   2313  1.39.2.1  thorpej 				 * it's busy (because it's queue is
   2314  1.39.2.1  thorpej 				 * full!).
   2315  1.39.2.1  thorpej 				 */
   2316  1.39.2.1  thorpej 				XS_SETERR(xs, HBA_TGTBSY);
   2317  1.39.2.1  thorpej 			}
   2318      1.10   mjacob 		}
   2319       1.1      cgd 
   2320       1.1      cgd 		if (sp->req_header.rqs_entry_type == RQSTYPE_RESPONSE) {
   2321      1.25   mjacob 			if (XS_NOERR(xs)) {
   2322      1.25   mjacob 			    if (sp->req_completion_status != RQCS_COMPLETE) {
   2323      1.23   mjacob 				isp_parse_status(isp, sp, xs);
   2324      1.25   mjacob 			    } else {
   2325      1.25   mjacob 				XS_SETERR(xs, HBA_NOERROR);
   2326      1.25   mjacob 			    }
   2327      1.25   mjacob 			}
   2328      1.36   mjacob 		} else if (sp->req_header.rqs_entry_type == RQSTYPE_REQUEST) {
   2329      1.36   mjacob 			if (sp->req_header.rqs_flags & RQSFLAG_FULL) {
   2330      1.36   mjacob 				/*
   2331  1.39.2.1  thorpej 				 * The RISC's internal queues are full,
   2332  1.39.2.1  thorpej 				 * so note this is a resource shortage.
   2333      1.36   mjacob 				 */
   2334  1.39.2.1  thorpej 				XS_SETERR(xs, HBA_RESSHORT);
   2335      1.36   mjacob 			} else if (XS_NOERR(xs)) {
   2336      1.36   mjacob 				XS_SETERR(xs, HBA_BOTCH);
   2337      1.36   mjacob 			}
   2338       1.1      cgd 		} else {
   2339      1.36   mjacob 			PRINTF("%s: unhandled respose queue type 0x%x\n",
   2340      1.36   mjacob 			    isp->isp_name, sp->req_header.rqs_entry_type);
   2341      1.30   mjacob 			if (XS_NOERR(xs)) {
   2342      1.23   mjacob 				XS_SETERR(xs, HBA_BOTCH);
   2343      1.30   mjacob 			}
   2344       1.1      cgd 		}
   2345      1.38   mjacob 		if (IS_SCSI(isp)) {
   2346      1.23   mjacob 			XS_RESID(xs) = sp->req_resid;
   2347      1.10   mjacob 		} else if (sp->req_scsi_status & RQCS_RU) {
   2348      1.23   mjacob 			XS_RESID(xs) = sp->req_resid;
   2349      1.20   mjacob 			IDPRINTF(4, ("%s: cnt %d rsd %d\n", isp->isp_name,
   2350      1.23   mjacob 				XS_XFRLEN(xs), sp->req_resid));
   2351      1.10   mjacob 		}
   2352      1.23   mjacob 		if (XS_XFRLEN(xs)) {
   2353      1.38   mjacob 			ISP_DMAFREE(isp, xs, sp->req_handle);
   2354       1.1      cgd 		}
   2355      1.23   mjacob 		/*
   2356      1.23   mjacob 		 * XXX: If we have a check condition, but no Sense Data,
   2357      1.23   mjacob 		 * XXX: mark it as an error (ARQ failed). We need to
   2358      1.23   mjacob 		 * XXX: to do a more distinct job because there may
   2359      1.23   mjacob 		 * XXX: cases where ARQ is disabled.
   2360      1.23   mjacob 		 */
   2361      1.23   mjacob 		if (XS_STS(xs) == SCSI_CHECK && !(XS_IS_SNS_VALID(xs))) {
   2362      1.23   mjacob 			if (XS_NOERR(xs)) {
   2363      1.28   mjacob 				PRINTF("%s: ARQ failure for target %d lun %d\n",
   2364      1.28   mjacob 				    isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2365      1.23   mjacob 				XS_SETERR(xs, HBA_ARQFAIL);
   2366      1.23   mjacob 			}
   2367      1.23   mjacob 		}
   2368      1.23   mjacob 		if ((isp->isp_dblev >= 5) ||
   2369      1.23   mjacob 		    (isp->isp_dblev > 2 && !XS_NOERR(xs))) {
   2370      1.38   mjacob 			PRINTF("%s(%d.%d): FIN dl%d resid%d STS %x",
   2371      1.23   mjacob 			    isp->isp_name, XS_TGT(xs), XS_LUN(xs),
   2372      1.38   mjacob 			    XS_XFRLEN(xs), XS_RESID(xs), XS_STS(xs));
   2373      1.10   mjacob 			if (sp->req_state_flags & RQSF_GOT_SENSE) {
   2374      1.23   mjacob 				PRINTF(" Skey: %x", XS_SNSKEY(xs));
   2375      1.23   mjacob 				if (!(XS_IS_SNS_VALID(xs))) {
   2376      1.23   mjacob 					PRINTF(" BUT NOT SET");
   2377      1.10   mjacob 				}
   2378       1.1      cgd 			}
   2379      1.27   mjacob 			PRINTF(" XS_ERR=0x%x\n", (unsigned int) XS_ERR(xs));
   2380       1.1      cgd 		}
   2381      1.23   mjacob 
   2382      1.28   mjacob 		if (isp->isp_nactive > 0)
   2383      1.28   mjacob 		    isp->isp_nactive--;
   2384      1.25   mjacob 		complist[ndone++] = xs;	/* defer completion call until later */
   2385       1.1      cgd 	}
   2386      1.32   mjacob 
   2387      1.27   mjacob 	/*
   2388      1.32   mjacob 	 * If we looked at any commands, then it's valid to find out
   2389      1.32   mjacob 	 * what the outpointer is. It also is a trigger to update the
   2390      1.32   mjacob 	 * ISP's notion of what we've seen so far.
   2391      1.27   mjacob 	 */
   2392      1.33   mjacob 	if (nlooked) {
   2393      1.32   mjacob 		ISP_WRITE(isp, INMAILBOX5, optr);
   2394      1.34   mjacob 		isp->isp_reqodx = ISP_READ(isp, OUTMAILBOX4);
   2395      1.27   mjacob 	}
   2396       1.1      cgd 	isp->isp_residx = optr;
   2397      1.25   mjacob 	for (i = 0; i < ndone; i++) {
   2398      1.25   mjacob 		xs = complist[i];
   2399      1.25   mjacob 		if (xs) {
   2400      1.25   mjacob 			XS_CMD_DONE(xs);
   2401      1.25   mjacob 		}
   2402      1.25   mjacob 	}
   2403      1.35   mjacob 	ENABLE_INTS(isp);
   2404       1.1      cgd 	return (1);
   2405       1.1      cgd }
   2406       1.1      cgd 
   2407       1.1      cgd /*
   2408       1.1      cgd  * Support routines.
   2409       1.1      cgd  */
   2410       1.1      cgd 
   2411      1.25   mjacob static int
   2412      1.25   mjacob isp_parse_async(isp, mbox)
   2413      1.25   mjacob 	struct ispsoftc *isp;
   2414      1.28   mjacob 	int mbox;
   2415      1.25   mjacob {
   2416      1.31   mjacob 	u_int32_t fast_post_handle = 0;
   2417      1.31   mjacob 
   2418      1.25   mjacob 	switch (mbox) {
   2419      1.33   mjacob 	case MBOX_COMMAND_COMPLETE:	/* sometimes these show up */
   2420      1.33   mjacob 		break;
   2421      1.25   mjacob 	case ASYNC_BUS_RESET:
   2422      1.36   mjacob 	{
   2423      1.36   mjacob 		int bus;
   2424      1.36   mjacob 		if (IS_1080(isp) || IS_12X0(isp)) {
   2425      1.36   mjacob 			bus = ISP_READ(isp, OUTMAILBOX6);
   2426      1.36   mjacob 		} else {
   2427      1.36   mjacob 			bus = 0;
   2428      1.36   mjacob 		}
   2429      1.36   mjacob 		isp->isp_sendmarker = (1 << bus);
   2430      1.36   mjacob 		isp_async(isp, ISPASYNC_BUS_RESET, &bus);
   2431      1.29   mjacob #ifdef	ISP_TARGET_MODE
   2432      1.29   mjacob 		isp_notify_ack(isp, NULL);
   2433      1.29   mjacob #endif
   2434      1.25   mjacob 		break;
   2435      1.36   mjacob 	}
   2436      1.25   mjacob 	case ASYNC_SYSTEM_ERROR:
   2437      1.25   mjacob 		mbox = ISP_READ(isp, OUTMAILBOX1);
   2438      1.25   mjacob 		PRINTF("%s: Internal FW Error @ RISC Addr 0x%x\n",
   2439      1.25   mjacob 		    isp->isp_name, mbox);
   2440      1.25   mjacob 		isp_restart(isp);
   2441      1.25   mjacob 		/* no point continuing after this */
   2442      1.31   mjacob 		return (-1);
   2443      1.25   mjacob 
   2444      1.25   mjacob 	case ASYNC_RQS_XFER_ERR:
   2445      1.25   mjacob 		PRINTF("%s: Request Queue Transfer Error\n", isp->isp_name);
   2446      1.25   mjacob 		break;
   2447      1.25   mjacob 
   2448      1.25   mjacob 	case ASYNC_RSP_XFER_ERR:
   2449      1.25   mjacob 		PRINTF("%s: Response Queue Transfer Error\n", isp->isp_name);
   2450      1.25   mjacob 		break;
   2451      1.25   mjacob 
   2452      1.25   mjacob 	case ASYNC_QWAKEUP:
   2453      1.25   mjacob 		/* don't need to be chatty */
   2454      1.25   mjacob 		mbox = ISP_READ(isp, OUTMAILBOX4);
   2455      1.25   mjacob 		break;
   2456      1.25   mjacob 
   2457      1.25   mjacob 	case ASYNC_TIMEOUT_RESET:
   2458      1.25   mjacob 		PRINTF("%s: timeout initiated SCSI bus reset\n", isp->isp_name);
   2459      1.25   mjacob 		isp->isp_sendmarker = 1;
   2460      1.29   mjacob #ifdef	ISP_TARGET_MODE
   2461      1.29   mjacob 		isp_notify_ack(isp, NULL);
   2462      1.29   mjacob #endif
   2463      1.25   mjacob 		break;
   2464      1.25   mjacob 
   2465      1.28   mjacob 	case ASYNC_DEVICE_RESET:
   2466      1.36   mjacob 		/*
   2467      1.36   mjacob 		 * XXX: WHICH BUS?
   2468      1.36   mjacob 		 */
   2469      1.33   mjacob 		isp->isp_sendmarker = 1;
   2470      1.28   mjacob 		PRINTF("%s: device reset\n", isp->isp_name);
   2471      1.29   mjacob #ifdef	ISP_TARGET_MODE
   2472      1.29   mjacob 		isp_notify_ack(isp, NULL);
   2473      1.29   mjacob #endif
   2474      1.25   mjacob 		break;
   2475      1.25   mjacob 
   2476      1.25   mjacob 	case ASYNC_EXTMSG_UNDERRUN:
   2477      1.25   mjacob 		PRINTF("%s: extended message underrun\n", isp->isp_name);
   2478      1.25   mjacob 		break;
   2479      1.25   mjacob 
   2480      1.25   mjacob 	case ASYNC_SCAM_INT:
   2481      1.25   mjacob 		PRINTF("%s: SCAM interrupt\n", isp->isp_name);
   2482      1.25   mjacob 		break;
   2483      1.25   mjacob 
   2484      1.25   mjacob 	case ASYNC_HUNG_SCSI:
   2485      1.25   mjacob 		PRINTF("%s: stalled SCSI Bus after DATA Overrun\n",
   2486      1.25   mjacob 		    isp->isp_name);
   2487      1.25   mjacob 		/* XXX: Need to issue SCSI reset at this point */
   2488      1.25   mjacob 		break;
   2489      1.25   mjacob 
   2490      1.25   mjacob 	case ASYNC_KILLED_BUS:
   2491      1.25   mjacob 		PRINTF("%s: SCSI Bus reset after DATA Overrun\n",
   2492      1.25   mjacob 		    isp->isp_name);
   2493      1.25   mjacob 		break;
   2494      1.25   mjacob 
   2495      1.25   mjacob 	case ASYNC_BUS_TRANSIT:
   2496      1.36   mjacob 		/*
   2497      1.36   mjacob 		 * XXX: WHICH BUS?
   2498      1.36   mjacob 		 */
   2499      1.34   mjacob 		mbox = ISP_READ(isp, OUTMAILBOX2);
   2500      1.34   mjacob 		switch (mbox & 0x1c00) {
   2501      1.34   mjacob 		case SXP_PINS_LVD_MODE:
   2502      1.34   mjacob 			PRINTF("%s: Transition to LVD mode\n", isp->isp_name);
   2503      1.34   mjacob 			((sdparam *)isp->isp_param)->isp_diffmode = 0;
   2504      1.34   mjacob 			((sdparam *)isp->isp_param)->isp_ultramode = 0;
   2505      1.34   mjacob 			((sdparam *)isp->isp_param)->isp_lvdmode = 1;
   2506      1.34   mjacob 			break;
   2507      1.34   mjacob 		case SXP_PINS_HVD_MODE:
   2508      1.34   mjacob 			PRINTF("%s: Transition to Differential mode\n",
   2509      1.34   mjacob 			    isp->isp_name);
   2510      1.34   mjacob 			((sdparam *)isp->isp_param)->isp_diffmode = 1;
   2511      1.34   mjacob 			((sdparam *)isp->isp_param)->isp_ultramode = 0;
   2512      1.34   mjacob 			((sdparam *)isp->isp_param)->isp_lvdmode = 0;
   2513      1.34   mjacob 			break;
   2514      1.34   mjacob 		case SXP_PINS_SE_MODE:
   2515      1.34   mjacob 			PRINTF("%s: Transition to Single Ended mode\n",
   2516      1.34   mjacob 			    isp->isp_name);
   2517      1.34   mjacob 			((sdparam *)isp->isp_param)->isp_diffmode = 0;
   2518      1.34   mjacob 			((sdparam *)isp->isp_param)->isp_ultramode = 1;
   2519      1.34   mjacob 			((sdparam *)isp->isp_param)->isp_lvdmode = 0;
   2520      1.34   mjacob 			break;
   2521      1.34   mjacob 		default:
   2522      1.34   mjacob 			PRINTF("%s: Transition to unknown mode 0x%x\n",
   2523      1.34   mjacob 			    isp->isp_name, mbox);
   2524      1.34   mjacob 			break;
   2525      1.34   mjacob 		}
   2526      1.34   mjacob 		/*
   2527      1.34   mjacob 		 * XXX: Set up to renegotiate again!
   2528      1.34   mjacob 		 */
   2529      1.36   mjacob 		/* Can only be for a 1080... */
   2530      1.36   mjacob 		isp->isp_sendmarker = (1 << ISP_READ(isp, OUTMAILBOX6));
   2531      1.25   mjacob 		break;
   2532      1.25   mjacob 
   2533      1.25   mjacob 	case ASYNC_CMD_CMPLT:
   2534      1.31   mjacob 		fast_post_handle = (ISP_READ(isp, OUTMAILBOX2) << 16) |
   2535      1.31   mjacob 		    ISP_READ(isp, OUTMAILBOX1);
   2536      1.31   mjacob 		IDPRINTF(3, ("%s: fast post completion of %u\n", isp->isp_name,
   2537      1.31   mjacob 		    fast_post_handle));
   2538      1.25   mjacob 		break;
   2539      1.25   mjacob 
   2540      1.25   mjacob 	case ASYNC_CTIO_DONE:
   2541      1.28   mjacob 		/* Should only occur when Fast Posting Set for 2100s */
   2542      1.25   mjacob 		PRINTF("%s: CTIO done\n", isp->isp_name);
   2543      1.25   mjacob 		break;
   2544      1.25   mjacob 
   2545      1.25   mjacob 	case ASYNC_LIP_OCCURRED:
   2546      1.39   mjacob 		((fcparam *) isp->isp_param)->isp_lipseq =
   2547      1.39   mjacob 		    ISP_READ(isp, OUTMAILBOX1);
   2548      1.35   mjacob 		((fcparam *) isp->isp_param)->isp_fwstate = FW_CONFIG_WAIT;
   2549      1.37   mjacob 		((fcparam *) isp->isp_param)->isp_loopstate = LOOP_LIP_RCVD;
   2550      1.33   mjacob 		isp->isp_sendmarker = 1;
   2551      1.35   mjacob 		isp_mark_getpdb_all(isp);
   2552      1.38   mjacob 		IDPRINTF(1, ("%s: LIP occurred\n", isp->isp_name));
   2553      1.25   mjacob 		break;
   2554      1.25   mjacob 
   2555      1.25   mjacob 	case ASYNC_LOOP_UP:
   2556      1.37   mjacob 		isp->isp_sendmarker = 1;
   2557      1.35   mjacob 		((fcparam *) isp->isp_param)->isp_fwstate = FW_CONFIG_WAIT;
   2558      1.37   mjacob 		((fcparam *) isp->isp_param)->isp_loopstate = LOOP_LIP_RCVD;
   2559      1.35   mjacob 		isp_mark_getpdb_all(isp);
   2560      1.32   mjacob 		isp_async(isp, ISPASYNC_LOOP_UP, NULL);
   2561      1.25   mjacob 		break;
   2562      1.25   mjacob 
   2563      1.25   mjacob 	case ASYNC_LOOP_DOWN:
   2564      1.37   mjacob 		isp->isp_sendmarker = 1;
   2565      1.35   mjacob 		((fcparam *) isp->isp_param)->isp_fwstate = FW_CONFIG_WAIT;
   2566      1.37   mjacob 		((fcparam *) isp->isp_param)->isp_loopstate = LOOP_NIL;
   2567      1.35   mjacob 		isp_mark_getpdb_all(isp);
   2568      1.32   mjacob 		isp_async(isp, ISPASYNC_LOOP_DOWN, NULL);
   2569      1.25   mjacob 		break;
   2570      1.25   mjacob 
   2571      1.25   mjacob 	case ASYNC_LOOP_RESET:
   2572      1.37   mjacob 		isp->isp_sendmarker = 1;
   2573      1.35   mjacob 		((fcparam *) isp->isp_param)->isp_fwstate = FW_CONFIG_WAIT;
   2574      1.37   mjacob 		((fcparam *) isp->isp_param)->isp_loopstate = LOOP_NIL;
   2575      1.35   mjacob 		isp_mark_getpdb_all(isp);
   2576      1.25   mjacob 		PRINTF("%s: Loop RESET\n", isp->isp_name);
   2577      1.29   mjacob #ifdef	ISP_TARGET_MODE
   2578      1.29   mjacob 		isp_notify_ack(isp, NULL);
   2579      1.29   mjacob #endif
   2580      1.25   mjacob 		break;
   2581      1.25   mjacob 
   2582      1.25   mjacob 	case ASYNC_PDB_CHANGED:
   2583      1.33   mjacob 		isp->isp_sendmarker = 1;
   2584      1.37   mjacob 		((fcparam *) isp->isp_param)->isp_loopstate = LOOP_PDB_RCVD;
   2585      1.33   mjacob 		isp_mark_getpdb_all(isp);
   2586      1.38   mjacob 		IDPRINTF(2, ("%s: Port Database Changed\n", isp->isp_name));
   2587      1.25   mjacob 		break;
   2588      1.25   mjacob 
   2589      1.25   mjacob 	case ASYNC_CHANGE_NOTIFY:
   2590      1.38   mjacob 		isp_mark_getpdb_all(isp);
   2591      1.38   mjacob 		/*
   2592      1.38   mjacob 		 * Not correct, but it will force us to rescan the loop.
   2593      1.38   mjacob 		 */
   2594      1.38   mjacob 		((fcparam *) isp->isp_param)->isp_loopstate = LOOP_PDB_RCVD;
   2595      1.38   mjacob 		isp_async(isp, ISPASYNC_CHANGE_NOTIFY, NULL);
   2596      1.25   mjacob 		break;
   2597      1.25   mjacob 
   2598      1.25   mjacob 	default:
   2599      1.33   mjacob 		PRINTF("%s: unknown async code 0x%x\n", isp->isp_name, mbox);
   2600      1.25   mjacob 		break;
   2601      1.25   mjacob 	}
   2602      1.31   mjacob 	return (fast_post_handle);
   2603      1.25   mjacob }
   2604      1.25   mjacob 
   2605      1.25   mjacob static int
   2606      1.25   mjacob isp_handle_other_response(isp, sp, optrp)
   2607      1.25   mjacob 	struct ispsoftc *isp;
   2608      1.25   mjacob 	ispstatusreq_t *sp;
   2609      1.25   mjacob 	u_int8_t *optrp;
   2610      1.25   mjacob {
   2611      1.25   mjacob 	switch (sp->req_header.rqs_entry_type) {
   2612      1.38   mjacob 	case RQSTYPE_ATIO:
   2613      1.38   mjacob 	case RQSTYPE_CTIO0:
   2614      1.29   mjacob 	case RQSTYPE_ENABLE_LUN:
   2615      1.29   mjacob 	case RQSTYPE_MODIFY_LUN:
   2616      1.38   mjacob 	case RQSTYPE_NOTIFY:
   2617      1.38   mjacob 	case RQSTYPE_NOTIFY_ACK:
   2618      1.38   mjacob 	case RQSTYPE_CTIO1:
   2619      1.29   mjacob 	case RQSTYPE_ATIO2:
   2620      1.38   mjacob 	case RQSTYPE_CTIO2:
   2621      1.38   mjacob 	case RQSTYPE_CTIO3:
   2622      1.38   mjacob #ifdef	ISP_TARGET_MODE
   2623      1.38   mjacob 		return(isp_target_notify(isp, sp, optrp));
   2624      1.29   mjacob #else
   2625      1.38   mjacob 		/* FALLTHROUGH */
   2626      1.29   mjacob #endif
   2627      1.38   mjacob 	case RQSTYPE_REQUEST:
   2628      1.25   mjacob 	default:
   2629      1.29   mjacob 		return (-1);
   2630      1.29   mjacob 	}
   2631      1.29   mjacob }
   2632      1.29   mjacob 
   2633      1.23   mjacob static void
   2634      1.10   mjacob isp_parse_status(isp, sp, xs)
   2635       1.1      cgd 	struct ispsoftc *isp;
   2636       1.1      cgd 	ispstatusreq_t *sp;
   2637      1.23   mjacob 	ISP_SCSI_XFER_T *xs;
   2638       1.1      cgd {
   2639       1.1      cgd 	switch (sp->req_completion_status) {
   2640       1.1      cgd 	case RQCS_COMPLETE:
   2641      1.23   mjacob 		XS_SETERR(xs, HBA_NOERROR);
   2642      1.23   mjacob 		return;
   2643      1.10   mjacob 
   2644       1.1      cgd 	case RQCS_INCOMPLETE:
   2645       1.1      cgd 		if ((sp->req_state_flags & RQSF_GOT_TARGET) == 0) {
   2646      1.27   mjacob 			IDPRINTF(3, ("%s: Selection Timeout for target %d\n",
   2647      1.27   mjacob 			    isp->isp_name, XS_TGT(xs)));
   2648      1.23   mjacob 			XS_SETERR(xs, HBA_SELTIMEOUT);
   2649      1.23   mjacob 			return;
   2650       1.1      cgd 		}
   2651      1.25   mjacob 		PRINTF("%s: command incomplete for target %d lun %d, state "
   2652      1.25   mjacob 		    "0x%x\n", isp->isp_name, XS_TGT(xs), XS_LUN(xs),
   2653      1.25   mjacob 		    sp->req_state_flags);
   2654      1.25   mjacob 		break;
   2655      1.25   mjacob 
   2656      1.25   mjacob 	case RQCS_DMA_ERROR:
   2657      1.25   mjacob 		PRINTF("%s: DMA error for command on target %d, lun %d\n",
   2658      1.25   mjacob 		    isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2659       1.1      cgd 		break;
   2660      1.15   mjacob 
   2661      1.15   mjacob 	case RQCS_TRANSPORT_ERROR:
   2662      1.23   mjacob 		PRINTF("%s: transport error\n", isp->isp_name);
   2663      1.15   mjacob 		isp_prtstst(sp);
   2664      1.15   mjacob 		break;
   2665      1.15   mjacob 
   2666      1.25   mjacob 	case RQCS_RESET_OCCURRED:
   2667      1.25   mjacob 		IDPRINTF(2, ("%s: bus reset destroyed command for target %d "
   2668      1.25   mjacob 		    "lun %d\n", isp->isp_name, XS_TGT(xs), XS_LUN(xs)));
   2669      1.36   mjacob 		/*
   2670      1.36   mjacob 		 * XXX: Get port number for bus
   2671      1.36   mjacob 		 */
   2672      1.36   mjacob 		isp->isp_sendmarker = 3;
   2673      1.25   mjacob 		XS_SETERR(xs, HBA_BUSRESET);
   2674      1.25   mjacob 		return;
   2675      1.25   mjacob 
   2676      1.25   mjacob 	case RQCS_ABORTED:
   2677      1.25   mjacob 		PRINTF("%s: command aborted for target %d lun %d\n",
   2678      1.25   mjacob 		    isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2679      1.36   mjacob 		/*
   2680      1.36   mjacob 		 * XXX: Get port number for bus
   2681      1.36   mjacob 		 */
   2682      1.36   mjacob 		isp->isp_sendmarker = 3;
   2683      1.25   mjacob 		XS_SETERR(xs, HBA_ABORTED);
   2684      1.25   mjacob 		return;
   2685      1.25   mjacob 
   2686      1.25   mjacob 	case RQCS_TIMEOUT:
   2687      1.25   mjacob 		IDPRINTF(2, ("%s: command timed out for target %d lun %d\n",
   2688      1.25   mjacob 		    isp->isp_name, XS_TGT(xs), XS_LUN(xs)));
   2689      1.25   mjacob 		XS_SETERR(xs, HBA_CMDTIMEOUT);
   2690      1.25   mjacob 		return;
   2691      1.25   mjacob 
   2692      1.10   mjacob 	case RQCS_DATA_OVERRUN:
   2693      1.38   mjacob 		if (IS_FC(isp)) {
   2694      1.23   mjacob 			XS_RESID(xs) = sp->req_resid;
   2695      1.10   mjacob 			break;
   2696      1.10   mjacob 		}
   2697      1.23   mjacob 		XS_SETERR(xs, HBA_DATAOVR);
   2698      1.23   mjacob 		return;
   2699      1.10   mjacob 
   2700      1.25   mjacob 	case RQCS_COMMAND_OVERRUN:
   2701      1.25   mjacob 		PRINTF("%s: command overrun for command on target %d, lun %d\n",
   2702      1.25   mjacob 		    isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2703      1.25   mjacob 		break;
   2704      1.25   mjacob 
   2705      1.25   mjacob 	case RQCS_STATUS_OVERRUN:
   2706      1.25   mjacob 		PRINTF("%s: status overrun for command on target %d, lun %d\n",
   2707      1.25   mjacob 		    isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2708      1.25   mjacob 		break;
   2709      1.25   mjacob 
   2710      1.25   mjacob 	case RQCS_BAD_MESSAGE:
   2711      1.25   mjacob 		PRINTF("%s: message not COMMAND COMPLETE after status on "
   2712      1.25   mjacob 		    "target %d, lun %d\n", isp->isp_name, XS_TGT(xs),
   2713      1.25   mjacob 		    XS_LUN(xs));
   2714      1.25   mjacob 		break;
   2715      1.25   mjacob 
   2716      1.25   mjacob 	case RQCS_NO_MESSAGE_OUT:
   2717      1.25   mjacob 		PRINTF("%s: No MESSAGE OUT phase after selection on "
   2718      1.25   mjacob 		    "target %d, lun %d\n", isp->isp_name, XS_TGT(xs),
   2719      1.25   mjacob 		    XS_LUN(xs));
   2720      1.25   mjacob 		break;
   2721      1.25   mjacob 
   2722      1.25   mjacob 	case RQCS_EXT_ID_FAILED:
   2723      1.25   mjacob 		PRINTF("%s: EXTENDED IDENTIFY failed on target %d, lun %d\n",
   2724      1.25   mjacob 		    isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2725      1.25   mjacob 		break;
   2726      1.25   mjacob 
   2727      1.25   mjacob 	case RQCS_IDE_MSG_FAILED:
   2728      1.25   mjacob 		PRINTF("%s: target %d lun %d rejected INITIATOR DETECTED "
   2729      1.25   mjacob 		    "ERROR message\n", isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2730      1.25   mjacob 		break;
   2731      1.25   mjacob 
   2732      1.25   mjacob 	case RQCS_ABORT_MSG_FAILED:
   2733      1.25   mjacob 		PRINTF("%s: target %d lun %d rejected ABORT message\n",
   2734      1.25   mjacob 		    isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2735      1.25   mjacob 		break;
   2736      1.25   mjacob 
   2737      1.25   mjacob 	case RQCS_REJECT_MSG_FAILED:
   2738      1.25   mjacob 		PRINTF("%s: target %d lun %d rejected MESSAGE REJECT message\n",
   2739      1.25   mjacob 		    isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2740      1.25   mjacob 		break;
   2741      1.25   mjacob 
   2742      1.25   mjacob 	case RQCS_NOP_MSG_FAILED:
   2743      1.25   mjacob 		PRINTF("%s: target %d lun %d rejected NOP message\n",
   2744      1.25   mjacob 		    isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2745      1.25   mjacob 		break;
   2746      1.25   mjacob 
   2747      1.25   mjacob 	case RQCS_PARITY_ERROR_MSG_FAILED:
   2748      1.25   mjacob 		PRINTF("%s: target %d lun %d rejected MESSAGE PARITY ERROR "
   2749      1.25   mjacob 		    "message\n", isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2750      1.25   mjacob 		break;
   2751      1.25   mjacob 
   2752      1.25   mjacob 	case RQCS_DEVICE_RESET_MSG_FAILED:
   2753      1.25   mjacob 		PRINTF("%s: target %d lun %d rejected BUS DEVICE RESET "
   2754      1.25   mjacob 		    "message\n", isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2755      1.25   mjacob 		break;
   2756      1.25   mjacob 
   2757      1.25   mjacob 	case RQCS_ID_MSG_FAILED:
   2758      1.25   mjacob 		PRINTF("%s: target %d lun %d rejected IDENTIFY "
   2759      1.25   mjacob 		    "message\n", isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2760      1.25   mjacob 		break;
   2761      1.25   mjacob 
   2762      1.25   mjacob 	case RQCS_UNEXP_BUS_FREE:
   2763      1.28   mjacob 		PRINTF("%s: target %d lun %d had an unexpected bus free\n",
   2764      1.25   mjacob 		    isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2765      1.25   mjacob 		break;
   2766      1.25   mjacob 
   2767       1.1      cgd 	case RQCS_DATA_UNDERRUN:
   2768      1.38   mjacob 		if (IS_FC(isp)) {
   2769      1.23   mjacob 			XS_RESID(xs) = sp->req_resid;
   2770      1.23   mjacob 			/* an UNDERRUN is not a botch ??? */
   2771      1.10   mjacob 		}
   2772      1.23   mjacob 		XS_SETERR(xs, HBA_NOERROR);
   2773      1.23   mjacob 		return;
   2774      1.10   mjacob 
   2775      1.25   mjacob 	case RQCS_XACT_ERR1:
   2776      1.25   mjacob 		PRINTF("%s: HBA attempted queued transaction with disconnect "
   2777      1.25   mjacob 		    "not set for target %d lun %d\n", isp->isp_name, XS_TGT(xs),
   2778      1.25   mjacob 		    XS_LUN(xs));
   2779      1.25   mjacob 		break;
   2780      1.25   mjacob 
   2781      1.25   mjacob 	case RQCS_XACT_ERR2:
   2782      1.25   mjacob 		PRINTF("%s: HBA attempted queued transaction to target "
   2783      1.25   mjacob 		    "routine %d on target %d\n", isp->isp_name, XS_LUN(xs),
   2784      1.25   mjacob 		    XS_TGT(xs));
   2785      1.25   mjacob 		break;
   2786      1.25   mjacob 
   2787      1.25   mjacob 	case RQCS_XACT_ERR3:
   2788      1.25   mjacob 		PRINTF("%s: HBA attempted queued transaction for target %d lun "
   2789      1.25   mjacob 		    "%d when queueing disabled\n", isp->isp_name, XS_TGT(xs),
   2790      1.25   mjacob 		    XS_LUN(xs));
   2791      1.25   mjacob 		break;
   2792      1.25   mjacob 
   2793      1.25   mjacob 	case RQCS_BAD_ENTRY:
   2794      1.25   mjacob 		PRINTF("%s: invalid IOCB entry type detected\n", isp->isp_name);
   2795      1.25   mjacob 		break;
   2796      1.25   mjacob 
   2797      1.25   mjacob 	case RQCS_QUEUE_FULL:
   2798      1.36   mjacob 		IDPRINTF(3, ("%s: internal queues full for target %d lun %d "
   2799      1.30   mjacob 		    "status 0x%x\n", isp->isp_name, XS_TGT(xs), XS_LUN(xs),
   2800      1.36   mjacob 		    XS_STS(xs)));
   2801  1.39.2.1  thorpej 		XS_SETERR(xs, HBA_RESSHORT);
   2802  1.39.2.1  thorpej 		return;
   2803      1.25   mjacob 
   2804      1.25   mjacob 	case RQCS_PHASE_SKIPPED:
   2805      1.25   mjacob 		PRINTF("%s: SCSI phase skipped (e.g., COMMAND COMPLETE w/o "
   2806      1.25   mjacob 		    "STATUS phase) for target %d lun %d\n", isp->isp_name,
   2807      1.25   mjacob 		    XS_TGT(xs), XS_LUN(xs));
   2808      1.25   mjacob 		break;
   2809      1.25   mjacob 
   2810      1.25   mjacob 	case RQCS_ARQS_FAILED:
   2811      1.25   mjacob 		PRINTF("%s: Auto Request Sense failed for target %d lun %d\n",
   2812      1.25   mjacob 		    isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2813      1.25   mjacob 		XS_SETERR(xs, HBA_ARQFAIL);
   2814      1.23   mjacob 		return;
   2815      1.10   mjacob 
   2816      1.25   mjacob 	case RQCS_WIDE_FAILED:
   2817      1.25   mjacob 		PRINTF("%s: Wide Negotiation failed for target %d lun %d\n",
   2818      1.25   mjacob 		    isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2819      1.36   mjacob 		if (IS_SCSI(isp)) {
   2820      1.25   mjacob 			sdparam *sdp = isp->isp_param;
   2821      1.36   mjacob 			sdp += XS_CHANNEL(xs);
   2822      1.31   mjacob 			sdp->isp_devparam[XS_TGT(xs)].dev_flags &= ~DPARM_WIDE;
   2823      1.25   mjacob 			sdp->isp_devparam[XS_TGT(xs)].dev_update = 1;
   2824      1.36   mjacob 			isp->isp_update = XS_CHANNEL(xs)+1;
   2825      1.25   mjacob 		}
   2826      1.25   mjacob 		XS_SETERR(xs, HBA_NOERROR);
   2827      1.23   mjacob 		return;
   2828      1.10   mjacob 
   2829      1.25   mjacob 	case RQCS_SYNCXFER_FAILED:
   2830      1.25   mjacob 		PRINTF("%s: SDTR Message failed for target %d lun %d\n",
   2831      1.25   mjacob 		    isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2832      1.36   mjacob 		if (IS_SCSI(isp)) {
   2833      1.25   mjacob 			sdparam *sdp = isp->isp_param;
   2834      1.36   mjacob 			sdp += XS_CHANNEL(xs);
   2835      1.31   mjacob 			sdp->isp_devparam[XS_TGT(xs)].dev_flags &= ~DPARM_SYNC;
   2836      1.25   mjacob 			sdp->isp_devparam[XS_TGT(xs)].dev_update = 1;
   2837      1.36   mjacob 			isp->isp_update = XS_CHANNEL(xs)+1;
   2838      1.25   mjacob 		}
   2839      1.25   mjacob 		break;
   2840      1.25   mjacob 
   2841      1.25   mjacob 	case RQCS_LVD_BUSERR:
   2842      1.25   mjacob 		PRINTF("%s: Bad LVD Bus condition while talking to target %d "
   2843      1.25   mjacob 		    "lun %d\n", isp->isp_name, XS_TGT(xs), XS_LUN(xs));
   2844      1.25   mjacob 		break;
   2845      1.10   mjacob 
   2846      1.10   mjacob 	case RQCS_PORT_UNAVAILABLE:
   2847      1.10   mjacob 		/*
   2848      1.10   mjacob 		 * No such port on the loop. Moral equivalent of SELTIMEO
   2849      1.10   mjacob 		 */
   2850      1.27   mjacob 		IDPRINTF(3, ("%s: Port Unavailable for target %d\n",
   2851      1.27   mjacob 		    isp->isp_name, XS_TGT(xs)));
   2852      1.23   mjacob 		XS_SETERR(xs, HBA_SELTIMEOUT);
   2853      1.23   mjacob 		return;
   2854      1.10   mjacob 
   2855      1.10   mjacob 	case RQCS_PORT_LOGGED_OUT:
   2856      1.27   mjacob 		/*
   2857      1.27   mjacob 		 * It was there (maybe)- treat as a selection timeout.
   2858      1.27   mjacob 		 */
   2859      1.37   mjacob 		IDPRINTF(2, ("%s: port logout for target %d\n",
   2860      1.37   mjacob 			isp->isp_name, XS_TGT(xs)));
   2861      1.27   mjacob 		XS_SETERR(xs, HBA_SELTIMEOUT);
   2862      1.27   mjacob 		return;
   2863      1.10   mjacob 
   2864      1.10   mjacob 	case RQCS_PORT_CHANGED:
   2865      1.23   mjacob 		PRINTF("%s: port changed for target %d\n",
   2866      1.23   mjacob 			isp->isp_name, XS_TGT(xs));
   2867      1.10   mjacob 		break;
   2868      1.10   mjacob 
   2869      1.10   mjacob 	case RQCS_PORT_BUSY:
   2870      1.23   mjacob 		PRINTF("%s: port busy for target %d\n",
   2871      1.23   mjacob 			isp->isp_name, XS_TGT(xs));
   2872      1.23   mjacob 		XS_SETERR(xs, HBA_TGTBSY);
   2873      1.23   mjacob 		return;
   2874      1.10   mjacob 
   2875       1.1      cgd 	default:
   2876      1.23   mjacob 		PRINTF("%s: comp status %x\n", isp->isp_name,
   2877      1.34   mjacob 		    sp->req_completion_status);
   2878       1.1      cgd 		break;
   2879       1.1      cgd 	}
   2880      1.23   mjacob 	XS_SETERR(xs, HBA_BOTCH);
   2881       1.1      cgd }
   2882       1.1      cgd 
   2883      1.33   mjacob static void
   2884      1.33   mjacob isp_fastpost_complete(isp, fph)
   2885      1.33   mjacob 	struct ispsoftc *isp;
   2886      1.38   mjacob 	u_int32_t fph;
   2887      1.33   mjacob {
   2888      1.33   mjacob 	ISP_SCSI_XFER_T *xs;
   2889      1.33   mjacob 
   2890      1.38   mjacob 	if (fph < 1) {
   2891      1.33   mjacob 		return;
   2892      1.38   mjacob 	}
   2893      1.38   mjacob 	xs = isp_find_xs(isp, fph);
   2894      1.33   mjacob 	if (xs == NULL) {
   2895      1.38   mjacob 		PRINTF("%s: command for fast posting handle 0x%x not found\n",
   2896      1.38   mjacob 		    isp->isp_name, fph);
   2897      1.33   mjacob 		return;
   2898      1.33   mjacob 	}
   2899      1.38   mjacob 	isp_destroy_handle(isp, fph);
   2900      1.38   mjacob 
   2901      1.33   mjacob 	/*
   2902      1.33   mjacob 	 * Since we don't have a result queue entry item,
   2903      1.33   mjacob 	 * we must believe that SCSI status is zero and
   2904      1.33   mjacob 	 * that all data transferred.
   2905      1.33   mjacob 	 */
   2906      1.33   mjacob 	XS_RESID(xs) = 0;
   2907      1.33   mjacob 	XS_STS(xs) = 0;
   2908      1.33   mjacob 	if (XS_XFRLEN(xs)) {
   2909      1.38   mjacob 		ISP_DMAFREE(isp, xs, fph);
   2910      1.33   mjacob 	}
   2911      1.33   mjacob 	XS_CMD_DONE(xs);
   2912      1.38   mjacob 	if (isp->isp_nactive)
   2913      1.38   mjacob 		isp->isp_nactive--;
   2914      1.33   mjacob }
   2915      1.33   mjacob 
   2916       1.1      cgd #define	HINIB(x)			((x) >> 0x4)
   2917       1.1      cgd #define	LONIB(x)			((x)  & 0xf)
   2918      1.34   mjacob #define	MAKNIB(a, b)			(((a) << 4) | (b))
   2919       1.1      cgd static u_int8_t mbpcnt[] = {
   2920      1.10   mjacob 	MAKNIB(1, 1),	/* 0x00: MBOX_NO_OP */
   2921      1.10   mjacob 	MAKNIB(5, 5),	/* 0x01: MBOX_LOAD_RAM */
   2922      1.10   mjacob 	MAKNIB(2, 0),	/* 0x02: MBOX_EXEC_FIRMWARE */
   2923      1.10   mjacob 	MAKNIB(5, 5),	/* 0x03: MBOX_DUMP_RAM */
   2924      1.10   mjacob 	MAKNIB(3, 3),	/* 0x04: MBOX_WRITE_RAM_WORD */
   2925      1.10   mjacob 	MAKNIB(2, 3),	/* 0x05: MBOX_READ_RAM_WORD */
   2926      1.10   mjacob 	MAKNIB(6, 6),	/* 0x06: MBOX_MAILBOX_REG_TEST */
   2927      1.10   mjacob 	MAKNIB(2, 3),	/* 0x07: MBOX_VERIFY_CHECKSUM	*/
   2928      1.35   mjacob 	MAKNIB(1, 4),	/* 0x08: MBOX_ABOUT_FIRMWARE */
   2929      1.10   mjacob 	MAKNIB(0, 0),	/* 0x09: */
   2930      1.10   mjacob 	MAKNIB(0, 0),	/* 0x0a: */
   2931      1.10   mjacob 	MAKNIB(0, 0),	/* 0x0b: */
   2932      1.10   mjacob 	MAKNIB(0, 0),	/* 0x0c: */
   2933      1.10   mjacob 	MAKNIB(0, 0),	/* 0x0d: */
   2934      1.10   mjacob 	MAKNIB(1, 2),	/* 0x0e: MBOX_CHECK_FIRMWARE */
   2935      1.10   mjacob 	MAKNIB(0, 0),	/* 0x0f: */
   2936      1.10   mjacob 	MAKNIB(5, 5),	/* 0x10: MBOX_INIT_REQ_QUEUE */
   2937      1.10   mjacob 	MAKNIB(6, 6),	/* 0x11: MBOX_INIT_RES_QUEUE */
   2938      1.10   mjacob 	MAKNIB(4, 4),	/* 0x12: MBOX_EXECUTE_IOCB */
   2939      1.10   mjacob 	MAKNIB(2, 2),	/* 0x13: MBOX_WAKE_UP	*/
   2940      1.10   mjacob 	MAKNIB(1, 6),	/* 0x14: MBOX_STOP_FIRMWARE */
   2941      1.10   mjacob 	MAKNIB(4, 4),	/* 0x15: MBOX_ABORT */
   2942      1.10   mjacob 	MAKNIB(2, 2),	/* 0x16: MBOX_ABORT_DEVICE */
   2943      1.10   mjacob 	MAKNIB(3, 3),	/* 0x17: MBOX_ABORT_TARGET */
   2944      1.34   mjacob 	MAKNIB(3, 1),	/* 0x18: MBOX_BUS_RESET */
   2945      1.10   mjacob 	MAKNIB(2, 3),	/* 0x19: MBOX_STOP_QUEUE */
   2946      1.10   mjacob 	MAKNIB(2, 3),	/* 0x1a: MBOX_START_QUEUE */
   2947      1.10   mjacob 	MAKNIB(2, 3),	/* 0x1b: MBOX_SINGLE_STEP_QUEUE */
   2948      1.10   mjacob 	MAKNIB(2, 3),	/* 0x1c: MBOX_ABORT_QUEUE */
   2949      1.10   mjacob 	MAKNIB(2, 4),	/* 0x1d: MBOX_GET_DEV_QUEUE_STATUS */
   2950      1.10   mjacob 	MAKNIB(0, 0),	/* 0x1e: */
   2951      1.10   mjacob 	MAKNIB(1, 3),	/* 0x1f: MBOX_GET_FIRMWARE_STATUS */
   2952      1.37   mjacob 	MAKNIB(1, 4),	/* 0x20: MBOX_GET_INIT_SCSI_ID, MBOX_GET_LOOP_ID */
   2953      1.36   mjacob 	MAKNIB(1, 3),	/* 0x21: MBOX_GET_SELECT_TIMEOUT */
   2954      1.10   mjacob 	MAKNIB(1, 3),	/* 0x22: MBOX_GET_RETRY_COUNT	*/
   2955      1.10   mjacob 	MAKNIB(1, 2),	/* 0x23: MBOX_GET_TAG_AGE_LIMIT */
   2956      1.10   mjacob 	MAKNIB(1, 2),	/* 0x24: MBOX_GET_CLOCK_RATE */
   2957      1.10   mjacob 	MAKNIB(1, 2),	/* 0x25: MBOX_GET_ACT_NEG_STATE */
   2958      1.10   mjacob 	MAKNIB(1, 2),	/* 0x26: MBOX_GET_ASYNC_DATA_SETUP_TIME */
   2959      1.10   mjacob 	MAKNIB(1, 3),	/* 0x27: MBOX_GET_PCI_PARAMS */
   2960      1.10   mjacob 	MAKNIB(2, 4),	/* 0x28: MBOX_GET_TARGET_PARAMS */
   2961      1.10   mjacob 	MAKNIB(2, 4),	/* 0x29: MBOX_GET_DEV_QUEUE_PARAMS */
   2962      1.36   mjacob 	MAKNIB(1, 2),	/* 0x2a: MBOX_GET_RESET_DELAY_PARAMS */
   2963      1.10   mjacob 	MAKNIB(0, 0),	/* 0x2b: */
   2964      1.10   mjacob 	MAKNIB(0, 0),	/* 0x2c: */
   2965      1.10   mjacob 	MAKNIB(0, 0),	/* 0x2d: */
   2966      1.10   mjacob 	MAKNIB(0, 0),	/* 0x2e: */
   2967      1.10   mjacob 	MAKNIB(0, 0),	/* 0x2f: */
   2968      1.10   mjacob 	MAKNIB(2, 2),	/* 0x30: MBOX_SET_INIT_SCSI_ID */
   2969      1.36   mjacob 	MAKNIB(2, 3),	/* 0x31: MBOX_SET_SELECT_TIMEOUT */
   2970      1.10   mjacob 	MAKNIB(3, 3),	/* 0x32: MBOX_SET_RETRY_COUNT	*/
   2971      1.10   mjacob 	MAKNIB(2, 2),	/* 0x33: MBOX_SET_TAG_AGE_LIMIT */
   2972      1.10   mjacob 	MAKNIB(2, 2),	/* 0x34: MBOX_SET_CLOCK_RATE */
   2973      1.36   mjacob 	MAKNIB(2, 2),	/* 0x35: MBOX_SET_ACT_NEG_STATE */
   2974      1.10   mjacob 	MAKNIB(2, 2),	/* 0x36: MBOX_SET_ASYNC_DATA_SETUP_TIME */
   2975      1.10   mjacob 	MAKNIB(3, 3),	/* 0x37: MBOX_SET_PCI_CONTROL_PARAMS */
   2976      1.10   mjacob 	MAKNIB(4, 4),	/* 0x38: MBOX_SET_TARGET_PARAMS */
   2977      1.10   mjacob 	MAKNIB(4, 4),	/* 0x39: MBOX_SET_DEV_QUEUE_PARAMS */
   2978      1.36   mjacob 	MAKNIB(1, 2),	/* 0x3a: MBOX_SET_RESET_DELAY_PARAMS */
   2979      1.10   mjacob 	MAKNIB(0, 0),	/* 0x3b: */
   2980      1.10   mjacob 	MAKNIB(0, 0),	/* 0x3c: */
   2981      1.10   mjacob 	MAKNIB(0, 0),	/* 0x3d: */
   2982      1.10   mjacob 	MAKNIB(0, 0),	/* 0x3e: */
   2983      1.10   mjacob 	MAKNIB(0, 0),	/* 0x3f: */
   2984      1.10   mjacob 	MAKNIB(1, 2),	/* 0x40: MBOX_RETURN_BIOS_BLOCK_ADDR */
   2985      1.10   mjacob 	MAKNIB(6, 1),	/* 0x41: MBOX_WRITE_FOUR_RAM_WORDS */
   2986      1.10   mjacob 	MAKNIB(2, 3),	/* 0x42: MBOX_EXEC_BIOS_IOCB */
   2987      1.10   mjacob 	MAKNIB(0, 0),	/* 0x43: */
   2988      1.10   mjacob 	MAKNIB(0, 0),	/* 0x44: */
   2989      1.10   mjacob 	MAKNIB(0, 0),	/* 0x45: */
   2990      1.10   mjacob 	MAKNIB(0, 0),	/* 0x46: */
   2991      1.10   mjacob 	MAKNIB(0, 0),	/* 0x47: */
   2992      1.10   mjacob 	MAKNIB(0, 0),	/* 0x48: */
   2993      1.10   mjacob 	MAKNIB(0, 0),	/* 0x49: */
   2994      1.31   mjacob 	MAKNIB(2, 1),	/* 0x4a: MBOX_SET_FIRMWARE_FEATURES */
   2995      1.31   mjacob 	MAKNIB(1, 2),	/* 0x4b: MBOX_GET_FIRMWARE_FEATURES */
   2996      1.10   mjacob 	MAKNIB(0, 0),	/* 0x4c: */
   2997      1.10   mjacob 	MAKNIB(0, 0),	/* 0x4d: */
   2998      1.10   mjacob 	MAKNIB(0, 0),	/* 0x4e: */
   2999      1.10   mjacob 	MAKNIB(0, 0),	/* 0x4f: */
   3000      1.10   mjacob 	MAKNIB(0, 0),	/* 0x50: */
   3001      1.10   mjacob 	MAKNIB(0, 0),	/* 0x51: */
   3002      1.10   mjacob 	MAKNIB(0, 0),	/* 0x52: */
   3003      1.10   mjacob 	MAKNIB(0, 0),	/* 0x53: */
   3004      1.10   mjacob 	MAKNIB(8, 0),	/* 0x54: MBOX_EXEC_COMMAND_IOCB_A64 */
   3005      1.10   mjacob 	MAKNIB(0, 0),	/* 0x55: */
   3006      1.10   mjacob 	MAKNIB(0, 0),	/* 0x56: */
   3007      1.10   mjacob 	MAKNIB(0, 0),	/* 0x57: */
   3008      1.10   mjacob 	MAKNIB(0, 0),	/* 0x58: */
   3009      1.10   mjacob 	MAKNIB(0, 0),	/* 0x59: */
   3010      1.10   mjacob 	MAKNIB(0, 0),	/* 0x5a: */
   3011      1.10   mjacob 	MAKNIB(0, 0),	/* 0x5b: */
   3012      1.10   mjacob 	MAKNIB(0, 0),	/* 0x5c: */
   3013      1.10   mjacob 	MAKNIB(0, 0),	/* 0x5d: */
   3014      1.10   mjacob 	MAKNIB(0, 0),	/* 0x5e: */
   3015      1.10   mjacob 	MAKNIB(0, 0),	/* 0x5f: */
   3016      1.10   mjacob 	MAKNIB(8, 6),	/* 0x60: MBOX_INIT_FIRMWARE */
   3017      1.37   mjacob 	MAKNIB(0, 0),	/* 0x61: */
   3018      1.10   mjacob 	MAKNIB(2, 1),	/* 0x62: MBOX_INIT_LIP */
   3019      1.10   mjacob 	MAKNIB(8, 1),	/* 0x63: MBOX_GET_FC_AL_POSITION_MAP */
   3020      1.10   mjacob 	MAKNIB(8, 1),	/* 0x64: MBOX_GET_PORT_DB */
   3021      1.10   mjacob 	MAKNIB(3, 1),	/* 0x65: MBOX_CLEAR_ACA */
   3022      1.10   mjacob 	MAKNIB(3, 1),	/* 0x66: MBOX_TARGET_RESET */
   3023      1.10   mjacob 	MAKNIB(3, 1),	/* 0x67: MBOX_CLEAR_TASK_SET */
   3024      1.33   mjacob 	MAKNIB(3, 1),	/* 0x68: MBOX_ABORT_TASK_SET */
   3025      1.33   mjacob 	MAKNIB(1, 2),	/* 0x69: MBOX_GET_FW_STATE */
   3026      1.33   mjacob 	MAKNIB(2, 8),	/* 0x6a: MBOX_GET_PORT_NAME */
   3027      1.33   mjacob 	MAKNIB(8, 1),	/* 0x6b: MBOX_GET_LINK_STATUS */
   3028      1.33   mjacob 	MAKNIB(4, 4),	/* 0x6c: MBOX_INIT_LIP_RESET */
   3029      1.33   mjacob 	MAKNIB(0, 0),	/* 0x6d: */
   3030      1.37   mjacob 	MAKNIB(8, 1),	/* 0x6e: MBOX_SEND_SNS */
   3031      1.37   mjacob 	MAKNIB(4, 3),	/* 0x6f: MBOX_FABRIC_LOGIN */
   3032      1.37   mjacob 	MAKNIB(2, 1),	/* 0x70: MBOX_SEND_CHANGE_REQUEST */
   3033      1.37   mjacob 	MAKNIB(2, 1),	/* 0x71: MBOX_FABRIC_LOGOUT */
   3034      1.33   mjacob 	MAKNIB(4, 1)	/* 0x72: MBOX_INIT_LIP_LOGIN */
   3035       1.1      cgd };
   3036       1.1      cgd #define	NMBCOM	(sizeof (mbpcnt) / sizeof (mbpcnt[0]))
   3037       1.1      cgd 
   3038      1.10   mjacob static void
   3039       1.1      cgd isp_mboxcmd(isp, mbp)
   3040       1.1      cgd 	struct ispsoftc *isp;
   3041       1.1      cgd 	mbreg_t *mbp;
   3042       1.1      cgd {
   3043       1.1      cgd 	int outparam, inparam;
   3044      1.24   mjacob 	int loops, dld = 0;
   3045      1.10   mjacob 	u_int8_t opcode;
   3046       1.1      cgd 
   3047      1.10   mjacob 	if (mbp->param[0] == ISP2100_SET_PCI_PARAM) {
   3048      1.10   mjacob 		opcode = mbp->param[0] = MBOX_SET_PCI_PARAMETERS;
   3049      1.10   mjacob 		inparam = 4;
   3050      1.10   mjacob 		outparam = 4;
   3051      1.10   mjacob 		goto command_known;
   3052      1.10   mjacob 	} else if (mbp->param[0] > NMBCOM) {
   3053      1.23   mjacob 		PRINTF("%s: bad command %x\n", isp->isp_name, mbp->param[0]);
   3054      1.10   mjacob 		return;
   3055       1.1      cgd 	}
   3056       1.1      cgd 
   3057      1.10   mjacob 	opcode = mbp->param[0];
   3058       1.1      cgd 	inparam = HINIB(mbpcnt[mbp->param[0]]);
   3059       1.1      cgd 	outparam =  LONIB(mbpcnt[mbp->param[0]]);
   3060      1.10   mjacob 
   3061       1.1      cgd 	if (inparam == 0 && outparam == 0) {
   3062      1.23   mjacob 		PRINTF("%s: no parameters for %x\n", isp->isp_name,
   3063       1.1      cgd 			mbp->param[0]);
   3064      1.10   mjacob 		return;
   3065       1.1      cgd 	}
   3066       1.1      cgd 
   3067      1.10   mjacob 
   3068      1.28   mjacob 	/*
   3069      1.28   mjacob 	 * Check for variants
   3070      1.28   mjacob 	 */
   3071      1.33   mjacob #ifdef	ISP2100_SCCLUN
   3072      1.38   mjacob 	if (IS_FC(isp)) {
   3073      1.28   mjacob 		switch (mbp->param[0]) {
   3074      1.28   mjacob 		case MBOX_ABORT:
   3075      1.28   mjacob 			inparam = 7;
   3076      1.28   mjacob 			break;
   3077      1.28   mjacob 		case MBOX_ABORT_DEVICE:
   3078      1.28   mjacob 		case MBOX_START_QUEUE:
   3079      1.28   mjacob 		case MBOX_STOP_QUEUE:
   3080      1.28   mjacob 		case MBOX_SINGLE_STEP_QUEUE:
   3081      1.28   mjacob 		case MBOX_ABORT_QUEUE:
   3082      1.28   mjacob 		case MBOX_GET_DEV_QUEUE_STATUS:
   3083      1.28   mjacob 			inparam = 3;
   3084      1.28   mjacob 			break;
   3085      1.38   mjacob 		case MBOX_BUS_RESET:
   3086      1.38   mjacob 			inparam = 2;
   3087      1.38   mjacob 			break;
   3088      1.28   mjacob 		default:
   3089      1.28   mjacob 			break;
   3090      1.28   mjacob 		}
   3091      1.28   mjacob 	}
   3092      1.28   mjacob #endif
   3093      1.28   mjacob 
   3094      1.10   mjacob command_known:
   3095      1.24   mjacob 
   3096      1.33   mjacob 	/*
   3097      1.33   mjacob 	 * Set semaphore on mailbox registers to win any races to acquire them.
   3098      1.33   mjacob 	 */
   3099      1.33   mjacob 	ISP_WRITE(isp, BIU_SEMA, 1);
   3100      1.33   mjacob 
   3101       1.1      cgd 	/*
   3102      1.38   mjacob 	 * Qlogic Errata for the ISP2100 says that there is a necessary
   3103      1.38   mjacob 	 * debounce between between writing the semaphore register
   3104      1.38   mjacob 	 * and reading a mailbox register. I believe we're okay here.
   3105      1.38   mjacob 	 */
   3106      1.38   mjacob 
   3107      1.38   mjacob 	/*
   3108      1.36   mjacob 	 * Make sure we can send some words.
   3109      1.36   mjacob 	 * Check to see if there's an async mbox event pending.
   3110       1.1      cgd 	 */
   3111       1.1      cgd 
   3112       1.1      cgd 	loops = MBOX_DELAY_COUNT;
   3113       1.1      cgd 	while ((ISP_READ(isp, HCCR) & HCCR_HOST_INT) != 0) {
   3114      1.33   mjacob 		if (ISP_READ(isp, BIU_SEMA) & 1) {
   3115      1.33   mjacob 			int fph;
   3116      1.33   mjacob 			u_int16_t mbox = ISP_READ(isp, OUTMAILBOX0);
   3117      1.33   mjacob 			/*
   3118      1.33   mjacob 			 * We have a pending MBOX async event.
   3119      1.33   mjacob 			 */
   3120      1.33   mjacob 			if (mbox & 0x8000) {
   3121      1.33   mjacob 				fph = isp_parse_async(isp, (int) mbox);
   3122      1.39   mjacob 				IDPRINTF(5, ("%s: line %d, fph %d\n",
   3123      1.39   mjacob 				    isp->isp_name, __LINE__, fph));
   3124      1.33   mjacob 				ISP_WRITE(isp, BIU_SEMA, 0);
   3125      1.33   mjacob 				ISP_WRITE(isp, HCCR, HCCR_CMD_CLEAR_RISC_INT);
   3126      1.33   mjacob 				if (fph < 0) {
   3127      1.33   mjacob 					return;
   3128      1.33   mjacob 				} else if (fph > 0) {
   3129      1.33   mjacob 					isp_fastpost_complete(isp, fph);
   3130      1.33   mjacob 				}
   3131      1.33   mjacob 				SYS_DELAY(100);
   3132      1.33   mjacob 				goto command_known;
   3133      1.33   mjacob 			}
   3134      1.33   mjacob 			/*
   3135      1.33   mjacob 			 * We have a pending MBOX completion? Might be
   3136      1.33   mjacob 			 * from a previous command. We can't (sometimes)
   3137      1.33   mjacob 			 * just clear HOST INTERRUPT, so we'll just silently
   3138      1.33   mjacob 			 * eat this here.
   3139      1.33   mjacob 			 */
   3140      1.36   mjacob 			if (mbox & 0x4000) {
   3141      1.39   mjacob 				IDPRINTF(5, ("%s: line %d, mbox 0x%x\n",
   3142      1.39   mjacob 				    isp->isp_name, __LINE__, mbox));
   3143      1.33   mjacob 				ISP_WRITE(isp, BIU_SEMA, 0);
   3144      1.33   mjacob 				ISP_WRITE(isp, HCCR, HCCR_CMD_CLEAR_RISC_INT);
   3145      1.33   mjacob 				SYS_DELAY(100);
   3146      1.33   mjacob 				goto command_known;
   3147      1.33   mjacob 			}
   3148      1.39   mjacob 			PRINTF("%s: isp_mboxcmd sees mailbox int with 0x%x in "
   3149      1.39   mjacob 			    "mbox0\n", isp->isp_name, mbox);
   3150      1.33   mjacob 		}
   3151      1.36   mjacob 		SYS_DELAY(100);
   3152       1.1      cgd 		if (--loops < 0) {
   3153      1.33   mjacob 			if (dld++ > 10) {
   3154      1.33   mjacob 				PRINTF("%s: isp_mboxcmd could not get command "
   3155      1.33   mjacob 				    "started\n", isp->isp_name);
   3156      1.24   mjacob 				return;
   3157      1.24   mjacob 			}
   3158      1.33   mjacob 			ISP_WRITE(isp, BIU_SEMA, 0);
   3159      1.24   mjacob 			ISP_WRITE(isp, HCCR, HCCR_CMD_CLEAR_RISC_INT);
   3160      1.24   mjacob 			goto command_known;
   3161       1.1      cgd 		}
   3162       1.1      cgd 	}
   3163       1.1      cgd 
   3164       1.1      cgd 	/*
   3165      1.36   mjacob 	 * Write input parameters.
   3166      1.36   mjacob 	 *
   3167      1.36   mjacob 	 * Special case some of the setups for the dual port SCSI cards.
   3168      1.36   mjacob 	 * XXX Eventually will be fixed by converting register write/read
   3169      1.36   mjacob 	 * XXX counts to bitmasks.
   3170      1.34   mjacob 	 */
   3171      1.36   mjacob 	if (IS_12X0(isp)) {
   3172      1.36   mjacob 		switch (opcode) {
   3173      1.36   mjacob 		case MBOX_GET_RETRY_COUNT:
   3174      1.36   mjacob 		case MBOX_SET_RETRY_COUNT:
   3175      1.36   mjacob 			ISP_WRITE(isp, INMAILBOX7, mbp->param[7]);
   3176      1.36   mjacob 			mbp->param[7] = 0;
   3177      1.36   mjacob 			ISP_WRITE(isp, INMAILBOX6, mbp->param[6]);
   3178      1.36   mjacob 			mbp->param[6] = 0;
   3179      1.36   mjacob 			break;
   3180      1.36   mjacob 		case MBOX_SET_ASYNC_DATA_SETUP_TIME:
   3181      1.36   mjacob 		case MBOX_SET_ACT_NEG_STATE:
   3182      1.36   mjacob 		case MBOX_SET_TAG_AGE_LIMIT:
   3183      1.36   mjacob 		case MBOX_SET_SELECT_TIMEOUT:
   3184      1.36   mjacob 			ISP_WRITE(isp, INMAILBOX2, mbp->param[2]);
   3185      1.39   mjacob 			mbp->param[2] = 0;
   3186      1.34   mjacob 			break;
   3187      1.34   mjacob 		}
   3188      1.34   mjacob 	}
   3189      1.34   mjacob 
   3190       1.1      cgd 	switch (inparam) {
   3191      1.10   mjacob 	case 8: ISP_WRITE(isp, INMAILBOX7, mbp->param[7]); mbp->param[7] = 0;
   3192      1.10   mjacob 	case 7: ISP_WRITE(isp, INMAILBOX6, mbp->param[6]); mbp->param[6] = 0;
   3193      1.34   mjacob 	case 6:
   3194      1.34   mjacob 		/*
   3195      1.34   mjacob 		 * The Qlogic 2100 cannot have registers 4 and 5 written to
   3196      1.34   mjacob 		 * after initialization or BAD THINGS HAPPEN (tm).
   3197      1.34   mjacob 		 */
   3198      1.34   mjacob 		if (IS_SCSI(isp) || mbp->param[0] == MBOX_INIT_FIRMWARE)
   3199      1.34   mjacob 			ISP_WRITE(isp, INMAILBOX5, mbp->param[5]);
   3200      1.34   mjacob 		mbp->param[5] = 0;
   3201      1.34   mjacob 	case 5:
   3202      1.34   mjacob 		if (IS_SCSI(isp) || mbp->param[0] == MBOX_INIT_FIRMWARE)
   3203      1.34   mjacob 			ISP_WRITE(isp, INMAILBOX4, mbp->param[4]);
   3204      1.34   mjacob 		mbp->param[4] = 0;
   3205       1.1      cgd 	case 4: ISP_WRITE(isp, INMAILBOX3, mbp->param[3]); mbp->param[3] = 0;
   3206       1.1      cgd 	case 3: ISP_WRITE(isp, INMAILBOX2, mbp->param[2]); mbp->param[2] = 0;
   3207       1.1      cgd 	case 2: ISP_WRITE(isp, INMAILBOX1, mbp->param[1]); mbp->param[1] = 0;
   3208       1.1      cgd 	case 1: ISP_WRITE(isp, INMAILBOX0, mbp->param[0]); mbp->param[0] = 0;
   3209       1.1      cgd 	}
   3210       1.1      cgd 
   3211       1.1      cgd 	/*
   3212      1.33   mjacob 	 * Clear RISC int condition.
   3213       1.1      cgd 	 */
   3214      1.33   mjacob 	ISP_WRITE(isp, HCCR, HCCR_CMD_CLEAR_RISC_INT);
   3215       1.1      cgd 
   3216       1.1      cgd 	/*
   3217      1.33   mjacob 	 * Clear semaphore on mailbox registers so that the Qlogic
   3218      1.33   mjacob 	 * may update outgoing registers.
   3219       1.1      cgd 	 */
   3220      1.33   mjacob 	ISP_WRITE(isp, BIU_SEMA, 0);
   3221       1.1      cgd 
   3222       1.1      cgd 	/*
   3223       1.1      cgd 	 * Set Host Interrupt condition so that RISC will pick up mailbox regs.
   3224       1.1      cgd 	 */
   3225       1.1      cgd 	ISP_WRITE(isp, HCCR, HCCR_CMD_SET_HOST_INT);
   3226       1.1      cgd 
   3227      1.33   mjacob 	/*
   3228      1.33   mjacob 	 * Wait until HOST INT has gone away (meaning that the Qlogic
   3229      1.33   mjacob 	 * has picked up the mailbox command. Wait a long time.
   3230      1.33   mjacob 	 */
   3231      1.33   mjacob 	loops = MBOX_DELAY_COUNT * 5;
   3232      1.33   mjacob 	while ((ISP_READ(isp, HCCR) & HCCR_CMD_CLEAR_RISC_INT) != 0) {
   3233      1.33   mjacob 		SYS_DELAY(100);
   3234      1.33   mjacob 		if (--loops < 0) {
   3235      1.33   mjacob 			PRINTF("%s: isp_mboxcmd timeout #2\n", isp->isp_name);
   3236      1.33   mjacob 			return;
   3237      1.33   mjacob 		}
   3238      1.33   mjacob 	}
   3239       1.1      cgd 
   3240       1.1      cgd 	/*
   3241      1.33   mjacob 	 * While the Semaphore registers isn't set, wait for the Qlogic
   3242      1.33   mjacob 	 * to process the mailbox command. Again- wait a long time.
   3243       1.1      cgd 	 */
   3244      1.33   mjacob 	loops = MBOX_DELAY_COUNT * 5;
   3245      1.33   mjacob 	while ((ISP_READ(isp, BIU_SEMA) & 1) == 0) {
   3246      1.23   mjacob 		SYS_DELAY(100);
   3247      1.33   mjacob 		/*
   3248      1.33   mjacob 		 * Wierd- I've seen the case where the semaphore register
   3249      1.33   mjacob 		 * isn't getting set- sort of a violation of the protocol..
   3250      1.33   mjacob 		 */
   3251      1.33   mjacob 		if (ISP_READ(isp, OUTMAILBOX0) & 0x4000)
   3252      1.33   mjacob 			break;
   3253       1.1      cgd 		if (--loops < 0) {
   3254      1.33   mjacob 			PRINTF("%s: isp_mboxcmd timeout #3\n", isp->isp_name);
   3255      1.10   mjacob 			return;
   3256       1.1      cgd 		}
   3257       1.1      cgd 	}
   3258       1.1      cgd 
   3259      1.33   mjacob 	/*
   3260      1.33   mjacob 	 * Make sure that the MBOX_BUSY has gone away
   3261      1.33   mjacob 	 */
   3262      1.33   mjacob 	loops = MBOX_DELAY_COUNT;
   3263      1.33   mjacob 	for (;;) {
   3264      1.33   mjacob 		u_int16_t mbox = ISP_READ(isp, OUTMAILBOX0);
   3265      1.33   mjacob 		if (mbox == MBOX_BUSY) {
   3266      1.33   mjacob 			if (--loops < 0) {
   3267      1.33   mjacob 				PRINTF("%s: isp_mboxcmd timeout #4\n",
   3268      1.33   mjacob 				    isp->isp_name);
   3269      1.33   mjacob 				return;
   3270      1.33   mjacob 			}
   3271      1.33   mjacob 			SYS_DELAY(100);
   3272      1.33   mjacob 			continue;
   3273      1.33   mjacob 		}
   3274      1.33   mjacob 		/*
   3275      1.33   mjacob 		 * We have a pending MBOX async event.
   3276      1.33   mjacob 		 */
   3277      1.33   mjacob 		if (mbox & 0x8000) {
   3278      1.33   mjacob 			int fph = isp_parse_async(isp, (int) mbox);
   3279      1.33   mjacob 			ISP_WRITE(isp, BIU_SEMA, 0);
   3280      1.33   mjacob 			ISP_WRITE(isp, HCCR, HCCR_CMD_CLEAR_RISC_INT);
   3281      1.33   mjacob 			if (fph < 0) {
   3282      1.33   mjacob 				return;
   3283      1.33   mjacob 			} else if (fph > 0) {
   3284      1.33   mjacob 				isp_fastpost_complete(isp, fph);
   3285      1.33   mjacob 			}
   3286      1.33   mjacob 			SYS_DELAY(100);
   3287      1.33   mjacob 			continue;
   3288      1.33   mjacob 		}
   3289      1.33   mjacob 		break;
   3290      1.33   mjacob 	}
   3291       1.1      cgd 
   3292       1.1      cgd 	/*
   3293      1.36   mjacob 	 * Pick up output parameters. Special case some of the readbacks
   3294      1.39   mjacob 	 * for the dual port SCSI cards.
   3295       1.1      cgd 	 */
   3296      1.36   mjacob 	if (IS_12X0(isp)) {
   3297      1.36   mjacob 		switch (opcode) {
   3298      1.36   mjacob 		case MBOX_GET_RETRY_COUNT:
   3299      1.36   mjacob 		case MBOX_SET_RETRY_COUNT:
   3300      1.36   mjacob 			mbp->param[7] = ISP_READ(isp, OUTMAILBOX7);
   3301      1.36   mjacob 			mbp->param[6] = ISP_READ(isp, OUTMAILBOX6);
   3302      1.36   mjacob 			break;
   3303      1.36   mjacob 		case MBOX_GET_TAG_AGE_LIMIT:
   3304      1.36   mjacob 		case MBOX_SET_TAG_AGE_LIMIT:
   3305      1.36   mjacob 		case MBOX_GET_ACT_NEG_STATE:
   3306      1.36   mjacob 		case MBOX_SET_ACT_NEG_STATE:
   3307      1.36   mjacob 		case MBOX_SET_ASYNC_DATA_SETUP_TIME:
   3308      1.36   mjacob 		case MBOX_GET_ASYNC_DATA_SETUP_TIME:
   3309      1.36   mjacob 		case MBOX_GET_RESET_DELAY_PARAMS:
   3310      1.36   mjacob 		case MBOX_SET_RESET_DELAY_PARAMS:
   3311      1.36   mjacob 			mbp->param[2] = ISP_READ(isp, OUTMAILBOX2);
   3312      1.36   mjacob 			break;
   3313      1.36   mjacob 		}
   3314      1.36   mjacob 	}
   3315      1.36   mjacob 
   3316       1.1      cgd 	switch (outparam) {
   3317      1.10   mjacob 	case 8: mbp->param[7] = ISP_READ(isp, OUTMAILBOX7);
   3318      1.10   mjacob 	case 7: mbp->param[6] = ISP_READ(isp, OUTMAILBOX6);
   3319       1.1      cgd 	case 6: mbp->param[5] = ISP_READ(isp, OUTMAILBOX5);
   3320       1.1      cgd 	case 5: mbp->param[4] = ISP_READ(isp, OUTMAILBOX4);
   3321       1.1      cgd 	case 4: mbp->param[3] = ISP_READ(isp, OUTMAILBOX3);
   3322       1.1      cgd 	case 3: mbp->param[2] = ISP_READ(isp, OUTMAILBOX2);
   3323       1.1      cgd 	case 2: mbp->param[1] = ISP_READ(isp, OUTMAILBOX1);
   3324       1.1      cgd 	case 1: mbp->param[0] = ISP_READ(isp, OUTMAILBOX0);
   3325       1.1      cgd 	}
   3326       1.1      cgd 
   3327       1.1      cgd 	/*
   3328       1.1      cgd 	 * Clear RISC int.
   3329       1.1      cgd 	 */
   3330       1.1      cgd 	ISP_WRITE(isp, HCCR, HCCR_CMD_CLEAR_RISC_INT);
   3331       1.1      cgd 
   3332       1.1      cgd 	/*
   3333       1.1      cgd 	 * Release semaphore on mailbox registers
   3334       1.1      cgd 	 */
   3335       1.1      cgd 	ISP_WRITE(isp, BIU_SEMA, 0);
   3336      1.10   mjacob 
   3337      1.10   mjacob 	/*
   3338      1.10   mjacob 	 * Just to be chatty here...
   3339      1.10   mjacob 	 */
   3340      1.34   mjacob 	switch (mbp->param[0]) {
   3341      1.10   mjacob 	case MBOX_COMMAND_COMPLETE:
   3342      1.10   mjacob 		break;
   3343      1.10   mjacob 	case MBOX_INVALID_COMMAND:
   3344      1.39   mjacob 		IDPRINTF(2, ("%s: mbox cmd %x failed with INVALID_COMMAND\n",
   3345      1.25   mjacob 		    isp->isp_name, opcode));
   3346      1.10   mjacob 		break;
   3347      1.10   mjacob 	case MBOX_HOST_INTERFACE_ERROR:
   3348      1.39   mjacob 		PRINTF("%s: mbox cmd %x failed with HOST_INTERFACE_ERROR\n",
   3349      1.39   mjacob 		    isp->isp_name, opcode);
   3350      1.10   mjacob 		break;
   3351      1.10   mjacob 	case MBOX_TEST_FAILED:
   3352      1.39   mjacob 		PRINTF("%s: mbox cmd %x failed with TEST_FAILED\n",
   3353      1.39   mjacob 		    isp->isp_name, opcode);
   3354      1.10   mjacob 		break;
   3355      1.10   mjacob 	case MBOX_COMMAND_ERROR:
   3356      1.39   mjacob 		if (opcode != MBOX_ABOUT_FIRMWARE)
   3357      1.39   mjacob 		    PRINTF("%s: mbox cmd %x failed with COMMAND_ERROR\n",
   3358      1.39   mjacob 			isp->isp_name, opcode);
   3359      1.10   mjacob 		break;
   3360      1.10   mjacob 	case MBOX_COMMAND_PARAM_ERROR:
   3361      1.39   mjacob 		switch (opcode) {
   3362      1.39   mjacob 		case MBOX_GET_PORT_DB:
   3363      1.39   mjacob 		case MBOX_GET_PORT_NAME:
   3364      1.39   mjacob 		case MBOX_GET_DEV_QUEUE_PARAMS:
   3365      1.39   mjacob 			break;
   3366      1.39   mjacob 		default:
   3367      1.39   mjacob 			PRINTF("%s: mbox cmd %x failed with "
   3368      1.39   mjacob 			    "COMMAND_PARAM_ERROR\n", isp->isp_name, opcode);
   3369      1.39   mjacob 		}
   3370      1.10   mjacob 		break;
   3371      1.10   mjacob 
   3372      1.28   mjacob 	/*
   3373      1.28   mjacob 	 * Be silent about these...
   3374      1.28   mjacob 	 */
   3375      1.37   mjacob 	case ASYNC_PDB_CHANGED:
   3376      1.37   mjacob 		((fcparam *) isp->isp_param)->isp_loopstate = LOOP_PDB_RCVD;
   3377      1.37   mjacob 		break;
   3378      1.28   mjacob 
   3379      1.39   mjacob 	case ASYNC_LIP_OCCURRED:
   3380      1.39   mjacob 		((fcparam *) isp->isp_param)->isp_lipseq = mbp->param[1];
   3381      1.39   mjacob 		/* FALLTHROUGH */
   3382      1.37   mjacob 	case ASYNC_LOOP_UP:
   3383      1.37   mjacob 		((fcparam *) isp->isp_param)->isp_fwstate = FW_CONFIG_WAIT;
   3384      1.37   mjacob 		((fcparam *) isp->isp_param)->isp_loopstate = LOOP_LIP_RCVD;
   3385      1.37   mjacob 		break;
   3386      1.37   mjacob 
   3387      1.33   mjacob 	case ASYNC_LOOP_DOWN:
   3388      1.33   mjacob 	case ASYNC_LOOP_RESET:
   3389      1.37   mjacob 		((fcparam *) isp->isp_param)->isp_fwstate = FW_CONFIG_WAIT;
   3390      1.37   mjacob 		((fcparam *) isp->isp_param)->isp_loopstate = LOOP_NIL;
   3391      1.37   mjacob 		/* FALLTHROUGH */
   3392      1.33   mjacob 	case ASYNC_CHANGE_NOTIFY:
   3393      1.33   mjacob 		break;
   3394      1.10   mjacob 
   3395      1.10   mjacob 	default:
   3396      1.10   mjacob 		/*
   3397      1.10   mjacob 		 * The expected return of EXEC_FIRMWARE is zero.
   3398      1.10   mjacob 		 */
   3399      1.10   mjacob 		if ((opcode == MBOX_EXEC_FIRMWARE && mbp->param[0] != 0) ||
   3400      1.10   mjacob 		    (opcode != MBOX_EXEC_FIRMWARE)) {
   3401      1.23   mjacob 			PRINTF("%s: mbox cmd %x failed with error %x\n",
   3402      1.10   mjacob 				isp->isp_name, opcode, mbp->param[0]);
   3403      1.10   mjacob 		}
   3404      1.10   mjacob 		break;
   3405      1.10   mjacob 	}
   3406       1.4   mjacob }
   3407       1.4   mjacob 
   3408      1.23   mjacob void
   3409      1.25   mjacob isp_lostcmd(isp, xs)
   3410      1.25   mjacob 	struct ispsoftc *isp;
   3411      1.25   mjacob 	ISP_SCSI_XFER_T *xs;
   3412       1.4   mjacob {
   3413       1.4   mjacob 	mbreg_t mbs;
   3414      1.10   mjacob 
   3415       1.4   mjacob 	mbs.param[0] = MBOX_GET_FIRMWARE_STATUS;
   3416      1.10   mjacob 	isp_mboxcmd(isp, &mbs);
   3417       1.4   mjacob 	if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
   3418      1.10   mjacob 		isp_dumpregs(isp, "couldn't GET FIRMWARE STATUS");
   3419       1.4   mjacob 		return;
   3420       1.4   mjacob 	}
   3421      1.10   mjacob 	if (mbs.param[1]) {
   3422      1.23   mjacob 		PRINTF("%s: %d commands on completion queue\n",
   3423      1.34   mjacob 		    isp->isp_name, mbs.param[1]);
   3424      1.10   mjacob 	}
   3425      1.23   mjacob 	if (XS_NULL(xs))
   3426       1.4   mjacob 		return;
   3427       1.4   mjacob 
   3428       1.4   mjacob 	mbs.param[0] = MBOX_GET_DEV_QUEUE_STATUS;
   3429      1.36   mjacob 	mbs.param[1] = (XS_TGT(xs) << 8) | XS_LUN(xs); /* XXX: WHICH BUS? */
   3430      1.10   mjacob 	isp_mboxcmd(isp, &mbs);
   3431       1.4   mjacob 	if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
   3432      1.10   mjacob 		isp_dumpregs(isp, "couldn't GET DEVICE QUEUE STATUS");
   3433      1.10   mjacob 		return;
   3434      1.10   mjacob 	}
   3435      1.23   mjacob 	PRINTF("%s: lost command for target %d lun %d, %d active of %d, "
   3436      1.23   mjacob 		"Queue State: %x\n", isp->isp_name, XS_TGT(xs),
   3437      1.23   mjacob 		XS_LUN(xs), mbs.param[2], mbs.param[3], mbs.param[1]);
   3438      1.10   mjacob 
   3439      1.10   mjacob 	isp_dumpregs(isp, "lost command");
   3440      1.10   mjacob 	/*
   3441      1.10   mjacob 	 * XXX: Need to try and do something to recover.
   3442      1.10   mjacob 	 */
   3443      1.10   mjacob }
   3444      1.10   mjacob 
   3445      1.10   mjacob static void
   3446      1.25   mjacob isp_dumpregs(isp, msg)
   3447      1.25   mjacob 	struct ispsoftc *isp;
   3448      1.25   mjacob 	const char *msg;
   3449      1.10   mjacob {
   3450      1.23   mjacob 	PRINTF("%s: %s\n", isp->isp_name, msg);
   3451      1.38   mjacob 	if (IS_SCSI(isp))
   3452      1.23   mjacob 		PRINTF("    biu_conf1=%x", ISP_READ(isp, BIU_CONF1));
   3453      1.10   mjacob 	else
   3454      1.23   mjacob 		PRINTF("    biu_csr=%x", ISP_READ(isp, BIU2100_CSR));
   3455      1.23   mjacob 	PRINTF(" biu_icr=%x biu_isr=%x biu_sema=%x ", ISP_READ(isp, BIU_ICR),
   3456      1.34   mjacob 	    ISP_READ(isp, BIU_ISR), ISP_READ(isp, BIU_SEMA));
   3457      1.23   mjacob 	PRINTF("risc_hccr=%x\n", ISP_READ(isp, HCCR));
   3458      1.10   mjacob 
   3459      1.32   mjacob 
   3460      1.38   mjacob 	if (IS_SCSI(isp)) {
   3461      1.10   mjacob 		ISP_WRITE(isp, HCCR, HCCR_CMD_PAUSE);
   3462      1.23   mjacob 		PRINTF("    cdma_conf=%x cdma_sts=%x cdma_fifostat=%x\n",
   3463      1.10   mjacob 			ISP_READ(isp, CDMA_CONF), ISP_READ(isp, CDMA_STATUS),
   3464      1.10   mjacob 			ISP_READ(isp, CDMA_FIFO_STS));
   3465      1.23   mjacob 		PRINTF("    ddma_conf=%x ddma_sts=%x ddma_fifostat=%x\n",
   3466      1.10   mjacob 			ISP_READ(isp, DDMA_CONF), ISP_READ(isp, DDMA_STATUS),
   3467      1.10   mjacob 			ISP_READ(isp, DDMA_FIFO_STS));
   3468      1.23   mjacob 		PRINTF("    sxp_int=%x sxp_gross=%x sxp(scsi_ctrl)=%x\n",
   3469      1.10   mjacob 			ISP_READ(isp, SXP_INTERRUPT),
   3470      1.10   mjacob 			ISP_READ(isp, SXP_GROSS_ERR),
   3471      1.10   mjacob 			ISP_READ(isp, SXP_PINS_CONTROL));
   3472      1.10   mjacob 		ISP_WRITE(isp, HCCR, HCCR_CMD_RELEASE);
   3473      1.10   mjacob 	}
   3474      1.32   mjacob 	PRINTF("    mbox regs: %x %x %x %x %x\n",
   3475      1.32   mjacob 	    ISP_READ(isp, OUTMAILBOX0), ISP_READ(isp, OUTMAILBOX1),
   3476      1.32   mjacob 	    ISP_READ(isp, OUTMAILBOX2), ISP_READ(isp, OUTMAILBOX3),
   3477      1.32   mjacob 	    ISP_READ(isp, OUTMAILBOX4));
   3478      1.10   mjacob 	ISP_DUMPREGS(isp);
   3479      1.10   mjacob }
   3480      1.10   mjacob 
   3481      1.10   mjacob static void
   3482      1.25   mjacob isp_fw_state(isp)
   3483      1.25   mjacob 	struct ispsoftc *isp;
   3484      1.10   mjacob {
   3485      1.10   mjacob 	mbreg_t mbs;
   3486      1.38   mjacob 	if (IS_FC(isp)) {
   3487      1.10   mjacob 		int once = 0;
   3488      1.10   mjacob 		fcparam *fcp = isp->isp_param;
   3489      1.10   mjacob again:
   3490      1.10   mjacob 		mbs.param[0] = MBOX_GET_FW_STATE;
   3491      1.10   mjacob 		isp_mboxcmd(isp, &mbs);
   3492      1.10   mjacob 		if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
   3493      1.37   mjacob 			IDPRINTF(0, ("%s: isp_fw_state 0x%x\n", isp->isp_name,
   3494      1.37   mjacob 			    mbs.param[0]));
   3495      1.33   mjacob 			switch (mbs.param[0]) {
   3496      1.33   mjacob 			case ASYNC_PDB_CHANGED:
   3497      1.37   mjacob 				if (once++ < 10) {
   3498      1.37   mjacob 					goto again;
   3499      1.37   mjacob 				}
   3500      1.37   mjacob 				fcp->isp_fwstate = FW_CONFIG_WAIT;
   3501      1.37   mjacob 				fcp->isp_loopstate = LOOP_PDB_RCVD;
   3502      1.37   mjacob 				goto again;
   3503      1.39   mjacob 			case ASYNC_LIP_OCCURRED:
   3504      1.39   mjacob 				fcp->isp_lipseq = mbs.param[1];
   3505      1.39   mjacob 				/* FALLTHROUGH */
   3506      1.37   mjacob 			case ASYNC_LOOP_UP:
   3507      1.37   mjacob 				fcp->isp_fwstate = FW_CONFIG_WAIT;
   3508      1.37   mjacob 				fcp->isp_loopstate = LOOP_LIP_RCVD;
   3509      1.37   mjacob 				if (once++ < 10) {
   3510      1.37   mjacob 					goto again;
   3511      1.37   mjacob 				}
   3512      1.37   mjacob 				break;
   3513      1.37   mjacob 			case ASYNC_LOOP_RESET:
   3514      1.33   mjacob 			case ASYNC_LOOP_DOWN:
   3515      1.37   mjacob 				fcp->isp_fwstate = FW_CONFIG_WAIT;
   3516      1.37   mjacob 				fcp->isp_loopstate = LOOP_NIL;
   3517      1.37   mjacob 				/* FALLTHROUGH */
   3518      1.33   mjacob 			case ASYNC_CHANGE_NOTIFY:
   3519      1.37   mjacob 				if (once++ < 10) {
   3520      1.10   mjacob 					goto again;
   3521      1.10   mjacob 				}
   3522      1.33   mjacob 				break;
   3523      1.10   mjacob 			}
   3524      1.37   mjacob 			PRINTF("%s: GET FIRMWARE STATE failed (0x%x)\n",
   3525      1.37   mjacob 			    isp->isp_name, mbs.param[0]);
   3526      1.10   mjacob 			return;
   3527      1.10   mjacob 		}
   3528      1.10   mjacob 		fcp->isp_fwstate = mbs.param[1];
   3529      1.10   mjacob 	}
   3530      1.10   mjacob }
   3531      1.10   mjacob 
   3532      1.10   mjacob static void
   3533      1.25   mjacob isp_update(isp)
   3534      1.25   mjacob 	struct ispsoftc *isp;
   3535      1.10   mjacob {
   3536      1.36   mjacob 	int bus;
   3537      1.36   mjacob 
   3538      1.36   mjacob 	for (bus = 0; isp->isp_update != 0; bus++) {
   3539      1.36   mjacob 		if (isp->isp_update & (1 << bus)) {
   3540      1.36   mjacob 			isp_update_bus(isp, bus);
   3541      1.36   mjacob 			isp->isp_update ^= (1 << bus);
   3542      1.36   mjacob 		}
   3543      1.36   mjacob 	}
   3544      1.36   mjacob }
   3545      1.36   mjacob 
   3546      1.36   mjacob static void
   3547      1.36   mjacob isp_update_bus(isp, bus)
   3548      1.36   mjacob 	struct ispsoftc *isp;
   3549      1.36   mjacob 	int bus;
   3550      1.36   mjacob {
   3551      1.25   mjacob 	int tgt;
   3552      1.10   mjacob 	mbreg_t mbs;
   3553      1.10   mjacob 	sdparam *sdp;
   3554      1.10   mjacob 
   3555      1.38   mjacob 	if (IS_FC(isp)) {
   3556       1.4   mjacob 		return;
   3557       1.4   mjacob 	}
   3558      1.10   mjacob 
   3559      1.25   mjacob 	sdp = isp->isp_param;
   3560      1.36   mjacob 	sdp += bus;
   3561      1.36   mjacob 
   3562      1.25   mjacob 	for (tgt = 0; tgt < MAX_TARGETS; tgt++) {
   3563      1.36   mjacob 		u_int16_t flags, period, offset;
   3564      1.31   mjacob 		int get;
   3565      1.31   mjacob 
   3566      1.25   mjacob 		if (sdp->isp_devparam[tgt].dev_enable == 0) {
   3567      1.38   mjacob 			IDPRINTF(1, ("%s: skipping target %d bus %d update\n",
   3568      1.38   mjacob 			    isp->isp_name, tgt, bus));
   3569      1.25   mjacob 			continue;
   3570      1.25   mjacob 		}
   3571      1.31   mjacob 
   3572      1.34   mjacob 		/*
   3573      1.34   mjacob 		 * If the goal is to update the status of the device,
   3574      1.34   mjacob 		 * take what's in dev_flags and try and set the device
   3575      1.34   mjacob 		 * toward that. Otherwise, if we're just refreshing the
   3576      1.34   mjacob 		 * current device state, get the current parameters.
   3577      1.34   mjacob 		 */
   3578      1.31   mjacob 		if (sdp->isp_devparam[tgt].dev_update) {
   3579      1.31   mjacob 			mbs.param[0] = MBOX_SET_TARGET_PARAMS;
   3580      1.31   mjacob 			mbs.param[2] = sdp->isp_devparam[tgt].dev_flags;
   3581      1.36   mjacob 			/*
   3582      1.36   mjacob 			 * Insist that PARITY must be enabled if SYNC
   3583      1.36   mjacob 			 * is enabled.
   3584      1.36   mjacob 			 */
   3585      1.36   mjacob 			if (mbs.param[2] & DPARM_SYNC) {
   3586      1.36   mjacob 				mbs.param[2] |= DPARM_PARITY;
   3587      1.36   mjacob 			}
   3588      1.31   mjacob 			mbs.param[3] =
   3589      1.31   mjacob 				(sdp->isp_devparam[tgt].sync_offset << 8) |
   3590      1.31   mjacob 				(sdp->isp_devparam[tgt].sync_period);
   3591      1.31   mjacob 			sdp->isp_devparam[tgt].dev_update = 0;
   3592      1.34   mjacob 			/*
   3593      1.34   mjacob 			 * A command completion later that has
   3594      1.34   mjacob 			 * RQSTF_NEGOTIATION set will cause
   3595      1.34   mjacob 			 * the dev_refresh/announce cycle.
   3596      1.34   mjacob 			 *
   3597      1.34   mjacob 			 * Note: It is really important to update our current
   3598      1.34   mjacob 			 * flags with at least the state of TAG capabilities-
   3599      1.34   mjacob 			 * otherwise we might try and send a tagged command
   3600      1.34   mjacob 			 * when we have it all turned off. So change it here
   3601      1.34   mjacob 			 * to say that current already matches goal.
   3602      1.34   mjacob 			 */
   3603      1.34   mjacob 			sdp->isp_devparam[tgt].cur_dflags &= ~DPARM_TQING;
   3604      1.34   mjacob 			sdp->isp_devparam[tgt].cur_dflags |=
   3605      1.34   mjacob 			    (sdp->isp_devparam[tgt].dev_flags & DPARM_TQING);
   3606      1.36   mjacob 			sdp->isp_devparam[tgt].dev_refresh = 1;
   3607      1.37   mjacob 			IDPRINTF(3, ("%s: bus %d set tgt %d flags 0x%x off 0x%x"
   3608      1.37   mjacob 			    " period 0x%x\n", isp->isp_name, bus, tgt,
   3609      1.37   mjacob 			    mbs.param[2], mbs.param[3] >> 8,
   3610      1.37   mjacob 			    mbs.param[3] & 0xff));
   3611      1.31   mjacob 			get = 0;
   3612      1.31   mjacob 		} else if (sdp->isp_devparam[tgt].dev_refresh) {
   3613      1.31   mjacob 			mbs.param[0] = MBOX_GET_TARGET_PARAMS;
   3614      1.31   mjacob 			sdp->isp_devparam[tgt].dev_refresh = 0;
   3615      1.31   mjacob 			get = 1;
   3616      1.31   mjacob 		} else {
   3617      1.25   mjacob 			continue;
   3618      1.25   mjacob 		}
   3619      1.36   mjacob 		mbs.param[1] = (bus << 15) | (tgt << 8) ;
   3620      1.25   mjacob 		isp_mboxcmd(isp, &mbs);
   3621      1.25   mjacob 		if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
   3622      1.31   mjacob 			PRINTF("%s: failed to %cet SCSI parameters for "
   3623      1.31   mjacob 			    "target %d\n", isp->isp_name, (get)? 'g' : 's',
   3624      1.31   mjacob 			    tgt);
   3625      1.31   mjacob 			continue;
   3626      1.31   mjacob 		}
   3627      1.31   mjacob 		if (get == 0) {
   3628      1.36   mjacob 			isp->isp_sendmarker |= (1 << bus);
   3629      1.31   mjacob 			continue;
   3630      1.31   mjacob 		}
   3631      1.31   mjacob 		flags = mbs.param[2];
   3632      1.31   mjacob 		period = mbs.param[3] & 0xff;
   3633      1.31   mjacob 		offset = mbs.param[3] >> 8;
   3634      1.31   mjacob 		sdp->isp_devparam[tgt].cur_dflags = flags;
   3635      1.34   mjacob 		sdp->isp_devparam[tgt].cur_period = period;
   3636      1.34   mjacob 		sdp->isp_devparam[tgt].cur_offset = offset;
   3637      1.36   mjacob 		get = (bus << 16) | tgt;
   3638      1.36   mjacob 		(void) isp_async(isp, ISPASYNC_NEW_TGT_PARAMS, &get);
   3639      1.10   mjacob 	}
   3640      1.25   mjacob }
   3641      1.10   mjacob 
   3642      1.25   mjacob static void
   3643      1.36   mjacob isp_setdfltparm(isp, channel)
   3644      1.25   mjacob 	struct ispsoftc *isp;
   3645      1.36   mjacob 	int channel;
   3646      1.25   mjacob {
   3647      1.34   mjacob 	int tgt;
   3648      1.25   mjacob 	mbreg_t mbs;
   3649      1.36   mjacob 	sdparam *sdp, *sdp_chan0, *sdp_chan1;
   3650      1.36   mjacob 
   3651      1.36   mjacob 	if (IS_FC(isp)) {
   3652      1.36   mjacob 		fcparam *fcp = (fcparam *) isp->isp_param;
   3653      1.36   mjacob 		fcp += channel;
   3654      1.36   mjacob 		if (fcp->isp_gotdparms) {
   3655      1.36   mjacob 			return;
   3656      1.36   mjacob 		}
   3657      1.36   mjacob 		fcp->isp_gotdparms = 1;
   3658      1.37   mjacob 		fcp->isp_maxfrmlen = ICB_DFLT_FRMLEN;
   3659      1.37   mjacob 		fcp->isp_maxalloc = ICB_DFLT_ALLOC;
   3660      1.37   mjacob 		fcp->isp_execthrottle = ICB_DFLT_THROTTLE;
   3661      1.37   mjacob 		fcp->isp_retry_delay = ICB_DFLT_RDELAY;
   3662      1.37   mjacob 		fcp->isp_retry_count = ICB_DFLT_RCOUNT;
   3663      1.37   mjacob 		/* Platform specific.... */
   3664      1.37   mjacob 		fcp->isp_loopid = DEFAULT_LOOPID(isp);
   3665      1.37   mjacob 		fcp->isp_nodewwn = DEFAULT_WWN(isp);
   3666      1.37   mjacob 		fcp->isp_portwwn = DEFAULT_WWN(isp);
   3667      1.37   mjacob 		/*
   3668      1.37   mjacob 		 * Now try and read NVRAM
   3669      1.37   mjacob 		 */
   3670      1.36   mjacob 		if ((isp->isp_confopts & ISP_CFG_NONVRAM) == 0) {
   3671      1.37   mjacob 			if (isp_read_nvram(isp)) {
   3672      1.37   mjacob 				PRINTF("%s: using default WWN 0x%08x%08x\n",
   3673      1.37   mjacob 				    isp->isp_name,
   3674      1.37   mjacob 				    (u_int32_t)(fcp->isp_portwwn >> 32),
   3675      1.37   mjacob 				    (u_int32_t)(fcp->isp_portwwn & 0xffffffff));
   3676      1.36   mjacob 			}
   3677      1.36   mjacob 		}
   3678      1.36   mjacob 		return;
   3679      1.36   mjacob 	}
   3680      1.36   mjacob 
   3681      1.36   mjacob 	sdp_chan0 = (sdparam *) isp->isp_param;
   3682      1.36   mjacob 	sdp_chan1 = sdp_chan0 + 1;
   3683      1.36   mjacob 	sdp = sdp_chan0 + channel;
   3684      1.10   mjacob 
   3685      1.10   mjacob 	/*
   3686      1.25   mjacob 	 * Been there, done that, got the T-shirt...
   3687      1.10   mjacob 	 */
   3688      1.36   mjacob 	if (sdp->isp_gotdparms) {
   3689      1.25   mjacob 		return;
   3690      1.25   mjacob 	}
   3691      1.36   mjacob 	sdp->isp_gotdparms = 1;
   3692      1.25   mjacob 
   3693      1.34   mjacob 	/*
   3694      1.34   mjacob 	 * If we've not been told to avoid reading NVRAM, try and read it.
   3695      1.34   mjacob 	 * If we're successful reading it, we can return since NVRAM will
   3696      1.34   mjacob 	 * tell us the right thing to do. Otherwise, establish some reasonable
   3697      1.34   mjacob 	 * defaults.
   3698      1.34   mjacob 	 */
   3699      1.34   mjacob 	if ((isp->isp_confopts & ISP_CFG_NONVRAM) == 0) {
   3700      1.34   mjacob 		if (isp_read_nvram(isp) == 0) {
   3701      1.34   mjacob 			return;
   3702      1.34   mjacob 		}
   3703      1.25   mjacob 	}
   3704      1.10   mjacob 
   3705      1.36   mjacob 	/*
   3706      1.36   mjacob 	 * Now try and see whether we have specific values for them.
   3707      1.36   mjacob 	 */
   3708      1.10   mjacob 	mbs.param[0] = MBOX_GET_ACT_NEG_STATE;
   3709      1.10   mjacob 	isp_mboxcmd(isp, &mbs);
   3710      1.10   mjacob 	if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
   3711      1.23   mjacob 		IDPRINTF(2, ("could not GET ACT NEG STATE\n"));
   3712      1.36   mjacob 		sdp_chan0->isp_req_ack_active_neg = 1;
   3713      1.36   mjacob 		sdp_chan0->isp_data_line_active_neg = 1;
   3714      1.36   mjacob 		if (IS_12X0(isp)) {
   3715      1.36   mjacob 			sdp_chan1->isp_req_ack_active_neg = 1;
   3716      1.36   mjacob 			sdp_chan1->isp_data_line_active_neg = 1;
   3717      1.36   mjacob 		}
   3718      1.10   mjacob 	} else {
   3719      1.36   mjacob 		sdp_chan0->isp_req_ack_active_neg = (mbs.param[1] >> 4) & 0x1;
   3720      1.36   mjacob 		sdp_chan0->isp_data_line_active_neg = (mbs.param[1] >> 5) & 0x1;
   3721      1.36   mjacob 		if (IS_12X0(isp)) {
   3722      1.36   mjacob 			sdp_chan1->isp_req_ack_active_neg =
   3723      1.36   mjacob 			    (mbs.param[2] >> 4) & 0x1;
   3724      1.36   mjacob 			sdp_chan1->isp_data_line_active_neg =
   3725      1.36   mjacob 			    (mbs.param[2] >> 5) & 0x1;
   3726      1.36   mjacob 		}
   3727      1.10   mjacob 	}
   3728      1.32   mjacob 
   3729      1.34   mjacob 	/*
   3730      1.34   mjacob 	 * The trick here is to establish a default for the default (honk!)
   3731      1.34   mjacob 	 * state (dev_flags). Then try and get the current status from
   3732      1.34   mjacob 	 * the card to fill in the current state. We don't, in fact, set
   3733      1.34   mjacob 	 * the default to the SAFE default state- that's not the goal state.
   3734      1.34   mjacob 	 */
   3735      1.34   mjacob 	for (tgt = 0; tgt < MAX_TARGETS; tgt++) {
   3736      1.34   mjacob 		sdp->isp_devparam[tgt].cur_offset = 0;
   3737      1.34   mjacob 		sdp->isp_devparam[tgt].cur_period = 0;
   3738      1.34   mjacob 		sdp->isp_devparam[tgt].dev_flags = DPARM_DEFAULT;
   3739      1.34   mjacob 		sdp->isp_devparam[tgt].cur_dflags = 0;
   3740      1.32   mjacob 		if (isp->isp_type < ISP_HA_SCSI_1040 ||
   3741      1.36   mjacob 		    (isp->isp_clock && isp->isp_clock < 60)) {
   3742      1.34   mjacob 			sdp->isp_devparam[tgt].sync_offset =
   3743      1.32   mjacob 			    ISP_10M_SYNCPARMS >> 8;
   3744      1.34   mjacob 			sdp->isp_devparam[tgt].sync_period =
   3745      1.32   mjacob 			    ISP_10M_SYNCPARMS & 0xff;
   3746      1.34   mjacob 		} else if (IS_1080(isp)) {
   3747      1.34   mjacob 			sdp->isp_devparam[tgt].sync_offset =
   3748      1.34   mjacob 			    ISP_40M_SYNCPARMS >> 8;
   3749      1.34   mjacob 			sdp->isp_devparam[tgt].sync_period =
   3750      1.34   mjacob 			    ISP_40M_SYNCPARMS & 0xff;
   3751      1.32   mjacob 		} else {
   3752      1.34   mjacob 			sdp->isp_devparam[tgt].sync_offset =
   3753      1.32   mjacob 			    ISP_20M_SYNCPARMS >> 8;
   3754      1.34   mjacob 			sdp->isp_devparam[tgt].sync_period =
   3755      1.32   mjacob 			    ISP_20M_SYNCPARMS & 0xff;
   3756      1.32   mjacob 		}
   3757      1.32   mjacob 
   3758      1.32   mjacob 		/*
   3759      1.32   mjacob 		 * Don't get current target parameters if we've been
   3760      1.32   mjacob 		 * told not to use NVRAM- it's really the same thing.
   3761      1.32   mjacob 		 */
   3762      1.34   mjacob 		if (isp->isp_confopts & ISP_CFG_NONVRAM) {
   3763      1.32   mjacob 			continue;
   3764      1.34   mjacob 		}
   3765      1.25   mjacob 
   3766      1.10   mjacob 		mbs.param[0] = MBOX_GET_TARGET_PARAMS;
   3767      1.34   mjacob 		mbs.param[1] = tgt << 8;
   3768      1.10   mjacob 		isp_mboxcmd(isp, &mbs);
   3769      1.10   mjacob 		if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
   3770      1.25   mjacob 			continue;
   3771      1.25   mjacob 		}
   3772      1.34   mjacob 		sdp->isp_devparam[tgt].cur_dflags = mbs.param[2];
   3773      1.34   mjacob 		sdp->isp_devparam[tgt].dev_flags = mbs.param[2];
   3774      1.34   mjacob 		sdp->isp_devparam[tgt].cur_period = mbs.param[3] & 0xff;
   3775      1.34   mjacob 		sdp->isp_devparam[tgt].cur_offset = mbs.param[3] >> 8;
   3776      1.34   mjacob 
   3777      1.25   mjacob 		/*
   3778      1.25   mjacob 		 * The maximum period we can really see
   3779      1.25   mjacob 		 * here is 100 (decimal), or 400 ns.
   3780      1.25   mjacob 		 * For some unknown reason we sometimes
   3781      1.25   mjacob 		 * get back wildass numbers from the
   3782      1.34   mjacob 		 * boot device's parameters (alpha only).
   3783      1.25   mjacob 		 */
   3784      1.25   mjacob 		if ((mbs.param[3] & 0xff) <= 0x64) {
   3785      1.34   mjacob 			sdp->isp_devparam[tgt].sync_period =
   3786      1.34   mjacob 			    mbs.param[3] & 0xff;
   3787      1.34   mjacob 			sdp->isp_devparam[tgt].sync_offset =
   3788      1.34   mjacob 			    mbs.param[3] >> 8;
   3789      1.25   mjacob 		}
   3790      1.25   mjacob 
   3791      1.25   mjacob 		/*
   3792      1.25   mjacob 		 * It is not safe to run Ultra Mode with a clock < 60.
   3793      1.25   mjacob 		 */
   3794      1.36   mjacob 		if (((isp->isp_clock && isp->isp_clock < 60) ||
   3795      1.25   mjacob 		    (isp->isp_type < ISP_HA_SCSI_1020A)) &&
   3796      1.34   mjacob 		    (sdp->isp_devparam[tgt].sync_period <=
   3797      1.25   mjacob 		    (ISP_20M_SYNCPARMS & 0xff))) {
   3798      1.34   mjacob 			sdp->isp_devparam[tgt].sync_offset =
   3799      1.32   mjacob 			    ISP_10M_SYNCPARMS >> 8;
   3800      1.34   mjacob 			sdp->isp_devparam[tgt].sync_period =
   3801      1.32   mjacob 			    ISP_10M_SYNCPARMS & 0xff;
   3802      1.10   mjacob 		}
   3803      1.10   mjacob 	}
   3804      1.10   mjacob 
   3805      1.10   mjacob 	/*
   3806      1.36   mjacob 	 * Establish default some more default parameters.
   3807      1.10   mjacob 	 */
   3808      1.10   mjacob 	sdp->isp_cmd_dma_burst_enable = 1;
   3809      1.10   mjacob 	sdp->isp_data_dma_burst_enabl = 1;
   3810      1.25   mjacob 	sdp->isp_fifo_threshold = 0;
   3811      1.10   mjacob 	sdp->isp_initiator_id = 7;
   3812      1.36   mjacob 	/* XXXX This is probably based upon clock XXXX */
   3813      1.25   mjacob 	if (isp->isp_type >= ISP_HA_SCSI_1040) {
   3814      1.25   mjacob 		sdp->isp_async_data_setup = 9;
   3815      1.25   mjacob 	} else {
   3816      1.25   mjacob 		sdp->isp_async_data_setup = 6;
   3817      1.25   mjacob 	}
   3818      1.10   mjacob 	sdp->isp_selection_timeout = 250;
   3819      1.36   mjacob 	sdp->isp_max_queue_depth = MAXISPREQUEST;
   3820      1.10   mjacob 	sdp->isp_tag_aging = 8;
   3821      1.10   mjacob 	sdp->isp_bus_reset_delay = 3;
   3822      1.36   mjacob 	sdp->isp_retry_count = 2;
   3823      1.36   mjacob 	sdp->isp_retry_delay = 2;
   3824      1.10   mjacob 
   3825      1.34   mjacob 	for (tgt = 0; tgt < MAX_TARGETS; tgt++) {
   3826      1.34   mjacob 		sdp->isp_devparam[tgt].exc_throttle = 16;
   3827      1.34   mjacob 		sdp->isp_devparam[tgt].dev_enable = 1;
   3828      1.10   mjacob 	}
   3829      1.10   mjacob }
   3830      1.10   mjacob 
   3831      1.34   mjacob /*
   3832      1.24   mjacob  * Re-initialize the ISP and complete all orphaned commands
   3833      1.38   mjacob  * with a 'botched' notice. The reset/init routines should
   3834      1.38   mjacob  * not disturb an already active list of commands.
   3835      1.24   mjacob  *
   3836      1.24   mjacob  * Locks held prior to coming here.
   3837      1.24   mjacob  */
   3838      1.24   mjacob 
   3839      1.24   mjacob void
   3840      1.25   mjacob isp_restart(isp)
   3841      1.25   mjacob 	struct ispsoftc *isp;
   3842      1.10   mjacob {
   3843      1.38   mjacob 	ISP_SCSI_XFER_T *xs;
   3844      1.38   mjacob 	u_int32_t handle;
   3845      1.10   mjacob 
   3846      1.36   mjacob #if	0
   3847      1.35   mjacob 	isp->isp_gotdparms = 0;
   3848      1.36   mjacob #endif
   3849      1.10   mjacob 	isp_reset(isp);
   3850      1.24   mjacob 	if (isp->isp_state == ISP_RESETSTATE) {
   3851      1.24   mjacob 		isp_init(isp);
   3852      1.24   mjacob 		if (isp->isp_state == ISP_INITSTATE) {
   3853      1.24   mjacob 			isp->isp_state = ISP_RUNSTATE;
   3854      1.24   mjacob 		}
   3855      1.24   mjacob 	}
   3856      1.24   mjacob 	if (isp->isp_state != ISP_RUNSTATE) {
   3857      1.24   mjacob 		PRINTF("%s: isp_restart cannot restart ISP\n", isp->isp_name);
   3858      1.24   mjacob 	}
   3859      1.38   mjacob 	isp->isp_nactive = 0;
   3860      1.10   mjacob 
   3861      1.38   mjacob 	for (handle = 1; handle <= (int) isp->isp_maxcmds; handle++) {
   3862      1.38   mjacob 		xs = isp_find_xs(isp, handle);
   3863      1.38   mjacob 		if (xs == NULL) {
   3864      1.10   mjacob 			continue;
   3865      1.27   mjacob 		}
   3866      1.38   mjacob 		isp_destroy_handle(isp, handle);
   3867      1.38   mjacob 		if (XS_XFRLEN(xs)) {
   3868      1.38   mjacob 			ISP_DMAFREE(isp, xs, handle);
   3869      1.38   mjacob 			XS_RESID(xs) = XS_XFRLEN(xs);
   3870      1.38   mjacob 		} else {
   3871      1.38   mjacob 			XS_RESID(xs) = 0;
   3872      1.38   mjacob 		}
   3873      1.27   mjacob 		XS_SETERR(xs, HBA_BUSRESET);
   3874      1.23   mjacob 		XS_CMD_DONE(xs);
   3875      1.10   mjacob 	}
   3876      1.15   mjacob }
   3877      1.15   mjacob 
   3878      1.28   mjacob /*
   3879      1.25   mjacob  * NVRAM Routines
   3880      1.25   mjacob  */
   3881      1.25   mjacob 
   3882      1.25   mjacob static int
   3883      1.25   mjacob isp_read_nvram(isp)
   3884      1.25   mjacob 	struct ispsoftc *isp;
   3885      1.25   mjacob {
   3886      1.36   mjacob 	static char *tru = "true";
   3887      1.36   mjacob 	static char *not = "false";
   3888      1.25   mjacob 	int i, amt;
   3889      1.25   mjacob 	u_int8_t csum, minversion;
   3890      1.25   mjacob 	union {
   3891      1.25   mjacob 		u_int8_t _x[ISP2100_NVRAM_SIZE];
   3892      1.25   mjacob 		u_int16_t _s[ISP2100_NVRAM_SIZE>>1];
   3893      1.25   mjacob 	} _n;
   3894      1.25   mjacob #define	nvram_data	_n._x
   3895      1.25   mjacob #define	nvram_words	_n._s
   3896      1.25   mjacob 
   3897      1.33   mjacob 	if (IS_FC(isp)) {
   3898      1.25   mjacob 		amt = ISP2100_NVRAM_SIZE;
   3899      1.25   mjacob 		minversion = 1;
   3900      1.36   mjacob 	} else if (IS_1080(isp) || IS_12X0(isp)) {
   3901      1.36   mjacob 		amt = ISP1080_NVRAM_SIZE;
   3902      1.36   mjacob 		minversion = 0;
   3903      1.25   mjacob 	} else {
   3904      1.25   mjacob 		amt = ISP_NVRAM_SIZE;
   3905      1.25   mjacob 		minversion = 2;
   3906      1.25   mjacob 	}
   3907      1.25   mjacob 
   3908      1.25   mjacob 	/*
   3909      1.25   mjacob 	 * Just read the first two words first to see if we have a valid
   3910      1.25   mjacob 	 * NVRAM to continue reading the rest with.
   3911      1.25   mjacob 	 */
   3912      1.25   mjacob 	for (i = 0; i < 2; i++) {
   3913      1.25   mjacob 		isp_rdnvram_word(isp, i, &nvram_words[i]);
   3914      1.25   mjacob 	}
   3915      1.25   mjacob 	if (nvram_data[0] != 'I' || nvram_data[1] != 'S' ||
   3916      1.25   mjacob 	    nvram_data[2] != 'P') {
   3917      1.25   mjacob 		if (isp->isp_bustype != ISP_BT_SBUS) {
   3918      1.36   mjacob 			PRINTF("%s: invalid NVRAM header (%x,%x,%x,%x)\n",
   3919      1.36   mjacob 			    isp->isp_name, nvram_data[0], nvram_data[1],
   3920      1.36   mjacob 			    nvram_data[2], nvram_data[3]);
   3921      1.25   mjacob 		}
   3922      1.25   mjacob 		return (-1);
   3923      1.25   mjacob 	}
   3924      1.25   mjacob 	for (i = 2; i < amt>>1; i++) {
   3925      1.25   mjacob 		isp_rdnvram_word(isp, i, &nvram_words[i]);
   3926      1.25   mjacob 	}
   3927      1.25   mjacob 	for (csum = 0, i = 0; i < amt; i++) {
   3928      1.25   mjacob 		csum += nvram_data[i];
   3929      1.25   mjacob 	}
   3930      1.25   mjacob 	if (csum != 0) {
   3931      1.25   mjacob 		PRINTF("%s: invalid NVRAM checksum\n", isp->isp_name);
   3932      1.25   mjacob 		return (-1);
   3933      1.25   mjacob 	}
   3934      1.25   mjacob 	if (ISP_NVRAM_VERSION(nvram_data) < minversion) {
   3935      1.25   mjacob 		PRINTF("%s: version %d NVRAM not understood\n", isp->isp_name,
   3936      1.25   mjacob 		    ISP_NVRAM_VERSION(nvram_data));
   3937      1.25   mjacob 		return (-1);
   3938      1.25   mjacob 	}
   3939      1.25   mjacob 
   3940      1.36   mjacob 	if (IS_1080(isp) || IS_12X0(isp)) {
   3941      1.36   mjacob 		int bus;
   3942      1.36   mjacob 		sdparam *sdp = (sdparam *) isp->isp_param;
   3943      1.36   mjacob 		for (bus = 0; bus < (IS_1080(isp)? 1 : 2); bus++, sdp++) {
   3944      1.36   mjacob 			sdp->isp_fifo_threshold =
   3945      1.36   mjacob 			    ISP1080_NVRAM_FIFO_THRESHOLD(nvram_data);
   3946      1.36   mjacob 
   3947      1.36   mjacob 			sdp->isp_initiator_id =
   3948      1.36   mjacob 			    ISP1080_NVRAM_INITIATOR_ID(nvram_data, bus);
   3949      1.36   mjacob 
   3950      1.36   mjacob 			sdp->isp_bus_reset_delay =
   3951      1.36   mjacob 			    ISP1080_NVRAM_BUS_RESET_DELAY(nvram_data, bus);
   3952      1.36   mjacob 
   3953      1.36   mjacob 			sdp->isp_retry_count =
   3954      1.36   mjacob 			    ISP1080_NVRAM_BUS_RETRY_COUNT(nvram_data, bus);
   3955      1.36   mjacob 
   3956      1.36   mjacob 			sdp->isp_retry_delay =
   3957      1.36   mjacob 			    ISP1080_NVRAM_BUS_RETRY_DELAY(nvram_data, bus);
   3958      1.36   mjacob 
   3959      1.36   mjacob 			sdp->isp_async_data_setup =
   3960      1.36   mjacob 			    ISP1080_NVRAM_ASYNC_DATA_SETUP_TIME(nvram_data,
   3961      1.36   mjacob 			    bus);
   3962      1.36   mjacob 
   3963      1.36   mjacob 			sdp->isp_req_ack_active_neg =
   3964      1.36   mjacob 			    ISP1080_NVRAM_REQ_ACK_ACTIVE_NEGATION(nvram_data,
   3965      1.36   mjacob 			    bus);
   3966      1.36   mjacob 
   3967      1.36   mjacob 			sdp->isp_data_line_active_neg =
   3968      1.36   mjacob 			    ISP1080_NVRAM_DATA_LINE_ACTIVE_NEGATION(nvram_data,
   3969      1.36   mjacob 			    bus);
   3970      1.36   mjacob 
   3971      1.36   mjacob 			sdp->isp_data_dma_burst_enabl =
   3972      1.36   mjacob 			    ISP1080_NVRAM_BURST_ENABLE(nvram_data);
   3973      1.36   mjacob 
   3974      1.36   mjacob 			sdp->isp_cmd_dma_burst_enable =
   3975      1.36   mjacob 			    ISP1080_NVRAM_BURST_ENABLE(nvram_data);
   3976      1.36   mjacob 
   3977      1.36   mjacob 			sdp->isp_selection_timeout =
   3978      1.36   mjacob 			    ISP1080_NVRAM_SELECTION_TIMEOUT(nvram_data, bus);
   3979      1.36   mjacob 
   3980      1.36   mjacob 			sdp->isp_max_queue_depth =
   3981      1.36   mjacob 			     ISP1080_NVRAM_MAX_QUEUE_DEPTH(nvram_data, bus);
   3982      1.36   mjacob 
   3983      1.36   mjacob 			if (isp->isp_dblev >= 3) {
   3984      1.36   mjacob 				PRINTF("%s: ISP1080 bus %d NVRAM values:\n",
   3985      1.36   mjacob 				    isp->isp_name, bus);
   3986      1.36   mjacob 				PRINTF("               Initiator ID = %d\n",
   3987      1.36   mjacob 				    sdp->isp_initiator_id);
   3988      1.36   mjacob 				PRINTF("             Fifo Threshold = 0x%x\n",
   3989      1.36   mjacob 				    sdp->isp_fifo_threshold);
   3990      1.36   mjacob 				PRINTF("            Bus Reset Delay = %d\n",
   3991      1.36   mjacob 				    sdp->isp_bus_reset_delay);
   3992      1.36   mjacob 				PRINTF("                Retry Count = %d\n",
   3993      1.36   mjacob 				    sdp->isp_retry_count);
   3994      1.36   mjacob 				PRINTF("                Retry Delay = %d\n",
   3995      1.36   mjacob 				    sdp->isp_retry_delay);
   3996      1.36   mjacob 				PRINTF("              Tag Age Limit = %d\n",
   3997      1.36   mjacob 				    sdp->isp_tag_aging);
   3998      1.36   mjacob 				PRINTF("          Selection Timeout = %d\n",
   3999      1.36   mjacob 				    sdp->isp_selection_timeout);
   4000      1.36   mjacob 				PRINTF("            Max Queue Depth = %d\n",
   4001      1.36   mjacob 				    sdp->isp_max_queue_depth);
   4002      1.36   mjacob 				PRINTF("           Async Data Setup = 0x%x\n",
   4003      1.36   mjacob 				    sdp->isp_async_data_setup);
   4004      1.36   mjacob 				PRINTF("    REQ/ACK Active Negation = %s\n",
   4005      1.36   mjacob 				    sdp->isp_req_ack_active_neg? tru : not);
   4006      1.36   mjacob 				PRINTF("  Data Line Active Negation = %s\n",
   4007      1.36   mjacob 				    sdp->isp_data_line_active_neg? tru : not);
   4008      1.36   mjacob 				PRINTF("       Cmd DMA Burst Enable = %s\n",
   4009      1.36   mjacob 				    sdp->isp_cmd_dma_burst_enable? tru : not);
   4010      1.36   mjacob 			}
   4011      1.36   mjacob 			for (i = 0; i < MAX_TARGETS; i++) {
   4012      1.36   mjacob 				sdp->isp_devparam[i].dev_enable =
   4013      1.36   mjacob 				    ISP1080_NVRAM_TGT_DEVICE_ENABLE(nvram_data, i, bus);
   4014      1.36   mjacob 				sdp->isp_devparam[i].exc_throttle =
   4015      1.36   mjacob 					ISP1080_NVRAM_TGT_EXEC_THROTTLE(nvram_data, i, bus);
   4016      1.36   mjacob 				sdp->isp_devparam[i].sync_offset =
   4017      1.36   mjacob 					ISP1080_NVRAM_TGT_SYNC_OFFSET(nvram_data, i, bus);
   4018      1.36   mjacob 				sdp->isp_devparam[i].sync_period =
   4019      1.36   mjacob 					ISP1080_NVRAM_TGT_SYNC_PERIOD(nvram_data, i, bus);
   4020      1.36   mjacob 				sdp->isp_devparam[i].dev_flags = 0;
   4021      1.36   mjacob 				if (ISP1080_NVRAM_TGT_RENEG(nvram_data, i, bus))
   4022      1.36   mjacob 					sdp->isp_devparam[i].dev_flags |= DPARM_RENEG;
   4023      1.36   mjacob 				if (ISP1080_NVRAM_TGT_QFRZ(nvram_data, i, bus)) {
   4024      1.36   mjacob 					PRINTF("%s: not supporting QFRZ option "
   4025      1.36   mjacob 					    "for target %d bus %d\n",
   4026      1.36   mjacob 					    isp->isp_name, i, bus);
   4027      1.36   mjacob 				}
   4028      1.36   mjacob 				sdp->isp_devparam[i].dev_flags |= DPARM_ARQ;
   4029      1.36   mjacob 				if (ISP1080_NVRAM_TGT_ARQ(nvram_data, i, bus) == 0) {
   4030      1.36   mjacob 					PRINTF("%s: not disabling ARQ option "
   4031      1.36   mjacob 					    "for target %d bus %d\n",
   4032      1.36   mjacob 					    isp->isp_name, i, bus);
   4033      1.36   mjacob 				}
   4034      1.36   mjacob 				if (ISP1080_NVRAM_TGT_TQING(nvram_data, i, bus))
   4035      1.36   mjacob 					sdp->isp_devparam[i].dev_flags |= DPARM_TQING;
   4036      1.36   mjacob 				if (ISP1080_NVRAM_TGT_SYNC(nvram_data, i, bus))
   4037      1.36   mjacob 					sdp->isp_devparam[i].dev_flags |= DPARM_SYNC;
   4038      1.36   mjacob 				if (ISP1080_NVRAM_TGT_WIDE(nvram_data, i, bus))
   4039      1.36   mjacob 					sdp->isp_devparam[i].dev_flags |= DPARM_WIDE;
   4040      1.36   mjacob 				if (ISP1080_NVRAM_TGT_PARITY(nvram_data, i, bus))
   4041      1.36   mjacob 					sdp->isp_devparam[i].dev_flags |= DPARM_PARITY;
   4042      1.36   mjacob 				if (ISP1080_NVRAM_TGT_DISC(nvram_data, i, bus))
   4043      1.36   mjacob 					sdp->isp_devparam[i].dev_flags |= DPARM_DISC;
   4044      1.36   mjacob 				sdp->isp_devparam[i].cur_dflags = 0;
   4045      1.36   mjacob 				if (isp->isp_dblev >= 3) {
   4046      1.36   mjacob 					PRINTF("   Target %d: Ena %d Throttle "
   4047      1.36   mjacob 					    "%d Offset %d Period %d Flags "
   4048      1.36   mjacob 					    "0x%x\n", i,
   4049      1.36   mjacob 					    sdp->isp_devparam[i].dev_enable,
   4050      1.36   mjacob 					    sdp->isp_devparam[i].exc_throttle,
   4051      1.36   mjacob 					    sdp->isp_devparam[i].sync_offset,
   4052      1.36   mjacob 					    sdp->isp_devparam[i].sync_period,
   4053      1.36   mjacob 					    sdp->isp_devparam[i].dev_flags);
   4054      1.36   mjacob 				}
   4055      1.36   mjacob 			}
   4056      1.36   mjacob 		}
   4057      1.36   mjacob 	} else if (IS_SCSI(isp)) {
   4058      1.25   mjacob 		sdparam *sdp = (sdparam *) isp->isp_param;
   4059      1.25   mjacob 
   4060      1.25   mjacob 		sdp->isp_fifo_threshold =
   4061      1.30   mjacob 			ISP_NVRAM_FIFO_THRESHOLD(nvram_data) |
   4062      1.30   mjacob 			(ISP_NVRAM_FIFO_THRESHOLD_128(nvram_data) << 2);
   4063      1.25   mjacob 
   4064      1.25   mjacob 		sdp->isp_initiator_id =
   4065      1.25   mjacob 			ISP_NVRAM_INITIATOR_ID(nvram_data);
   4066      1.25   mjacob 
   4067      1.25   mjacob 		sdp->isp_bus_reset_delay =
   4068      1.25   mjacob 			ISP_NVRAM_BUS_RESET_DELAY(nvram_data);
   4069      1.25   mjacob 
   4070      1.25   mjacob 		sdp->isp_retry_count =
   4071      1.25   mjacob 			ISP_NVRAM_BUS_RETRY_COUNT(nvram_data);
   4072      1.25   mjacob 
   4073      1.25   mjacob 		sdp->isp_retry_delay =
   4074      1.25   mjacob 			ISP_NVRAM_BUS_RETRY_DELAY(nvram_data);
   4075      1.25   mjacob 
   4076      1.25   mjacob 		sdp->isp_async_data_setup =
   4077      1.25   mjacob 			ISP_NVRAM_ASYNC_DATA_SETUP_TIME(nvram_data);
   4078      1.25   mjacob 
   4079      1.25   mjacob 		if (isp->isp_type >= ISP_HA_SCSI_1040) {
   4080      1.25   mjacob 			if (sdp->isp_async_data_setup < 9) {
   4081      1.25   mjacob 				sdp->isp_async_data_setup = 9;
   4082      1.25   mjacob 			}
   4083      1.25   mjacob 		} else {
   4084      1.25   mjacob 			if (sdp->isp_async_data_setup != 6) {
   4085      1.25   mjacob 				sdp->isp_async_data_setup = 6;
   4086      1.25   mjacob 			}
   4087      1.25   mjacob 		}
   4088      1.34   mjacob 
   4089      1.25   mjacob 		sdp->isp_req_ack_active_neg =
   4090      1.25   mjacob 			ISP_NVRAM_REQ_ACK_ACTIVE_NEGATION(nvram_data);
   4091      1.25   mjacob 
   4092      1.25   mjacob 		sdp->isp_data_line_active_neg =
   4093      1.25   mjacob 			ISP_NVRAM_DATA_LINE_ACTIVE_NEGATION(nvram_data);
   4094      1.25   mjacob 
   4095      1.25   mjacob 		sdp->isp_data_dma_burst_enabl =
   4096      1.25   mjacob 			ISP_NVRAM_DATA_DMA_BURST_ENABLE(nvram_data);
   4097      1.25   mjacob 
   4098      1.25   mjacob 		sdp->isp_cmd_dma_burst_enable =
   4099      1.25   mjacob 			ISP_NVRAM_CMD_DMA_BURST_ENABLE(nvram_data);
   4100      1.25   mjacob 
   4101      1.25   mjacob 		sdp->isp_tag_aging =
   4102      1.25   mjacob 			ISP_NVRAM_TAG_AGE_LIMIT(nvram_data);
   4103      1.25   mjacob 
   4104      1.25   mjacob 		sdp->isp_selection_timeout =
   4105      1.25   mjacob 			ISP_NVRAM_SELECTION_TIMEOUT(nvram_data);
   4106      1.25   mjacob 
   4107      1.25   mjacob 		sdp->isp_max_queue_depth =
   4108      1.25   mjacob 			ISP_NVRAM_MAX_QUEUE_DEPTH(nvram_data);
   4109      1.25   mjacob 
   4110      1.36   mjacob 		isp->isp_fast_mttr = ISP_NVRAM_FAST_MTTR_ENABLE(nvram_data);
   4111      1.32   mjacob 		if (isp->isp_dblev > 2) {
   4112      1.32   mjacob 			PRINTF("%s: NVRAM values:\n", isp->isp_name);
   4113      1.32   mjacob 			PRINTF("             Fifo Threshold = 0x%x\n",
   4114      1.32   mjacob 			    sdp->isp_fifo_threshold);
   4115      1.32   mjacob 			PRINTF("            Bus Reset Delay = %d\n",
   4116      1.32   mjacob 			    sdp->isp_bus_reset_delay);
   4117      1.32   mjacob 			PRINTF("                Retry Count = %d\n",
   4118      1.32   mjacob 			    sdp->isp_retry_count);
   4119      1.32   mjacob 			PRINTF("                Retry Delay = %d\n",
   4120      1.32   mjacob 			    sdp->isp_retry_delay);
   4121      1.32   mjacob 			PRINTF("              Tag Age Limit = %d\n",
   4122      1.32   mjacob 			    sdp->isp_tag_aging);
   4123      1.32   mjacob 			PRINTF("          Selection Timeout = %d\n",
   4124      1.32   mjacob 			    sdp->isp_selection_timeout);
   4125      1.32   mjacob 			PRINTF("            Max Queue Depth = %d\n",
   4126      1.32   mjacob 			    sdp->isp_max_queue_depth);
   4127      1.32   mjacob 			PRINTF("           Async Data Setup = 0x%x\n",
   4128      1.32   mjacob 			    sdp->isp_async_data_setup);
   4129      1.32   mjacob 			PRINTF("    REQ/ACK Active Negation = %s\n",
   4130      1.36   mjacob 			    sdp->isp_req_ack_active_neg? tru : not);
   4131      1.32   mjacob 			PRINTF("  Data Line Active Negation = %s\n",
   4132      1.36   mjacob 			    sdp->isp_data_line_active_neg? tru : not);
   4133      1.32   mjacob 			PRINTF("      Data DMA Burst Enable = %s\n",
   4134      1.36   mjacob 			    sdp->isp_data_dma_burst_enabl? tru : not);
   4135      1.32   mjacob 			PRINTF("       Cmd DMA Burst Enable = %s\n",
   4136      1.36   mjacob 			    sdp->isp_cmd_dma_burst_enable? tru : not);
   4137      1.32   mjacob 			PRINTF("                  Fast MTTR = %s\n",
   4138      1.36   mjacob 			    isp->isp_fast_mttr? tru : not);
   4139      1.32   mjacob 		}
   4140      1.32   mjacob 		for (i = 0; i < MAX_TARGETS; i++) {
   4141      1.25   mjacob 			sdp->isp_devparam[i].dev_enable =
   4142      1.25   mjacob 				ISP_NVRAM_TGT_DEVICE_ENABLE(nvram_data, i);
   4143      1.25   mjacob 			sdp->isp_devparam[i].exc_throttle =
   4144      1.25   mjacob 				ISP_NVRAM_TGT_EXEC_THROTTLE(nvram_data, i);
   4145      1.25   mjacob 			sdp->isp_devparam[i].sync_offset =
   4146      1.25   mjacob 				ISP_NVRAM_TGT_SYNC_OFFSET(nvram_data, i);
   4147      1.25   mjacob 			sdp->isp_devparam[i].sync_period =
   4148      1.25   mjacob 				ISP_NVRAM_TGT_SYNC_PERIOD(nvram_data, i);
   4149      1.25   mjacob 
   4150      1.25   mjacob 			if (isp->isp_type < ISP_HA_SCSI_1040) {
   4151      1.25   mjacob 				/*
   4152      1.25   mjacob 				 * If we're not ultra, we can't possibly
   4153      1.25   mjacob 				 * be a shorter period than this.
   4154      1.25   mjacob 				 */
   4155      1.25   mjacob 				if (sdp->isp_devparam[i].sync_period < 0x19) {
   4156      1.25   mjacob 					sdp->isp_devparam[i].sync_period =
   4157      1.25   mjacob 					    0x19;
   4158      1.25   mjacob 				}
   4159      1.25   mjacob 				if (sdp->isp_devparam[i].sync_offset > 0xc) {
   4160      1.25   mjacob 					sdp->isp_devparam[i].sync_offset =
   4161      1.25   mjacob 					    0x0c;
   4162      1.25   mjacob 				}
   4163      1.25   mjacob 			} else {
   4164      1.25   mjacob 				if (sdp->isp_devparam[i].sync_offset > 0x8) {
   4165      1.25   mjacob 					sdp->isp_devparam[i].sync_offset = 0x8;
   4166      1.25   mjacob 				}
   4167      1.25   mjacob 			}
   4168      1.25   mjacob 			sdp->isp_devparam[i].dev_flags = 0;
   4169      1.25   mjacob 			if (ISP_NVRAM_TGT_RENEG(nvram_data, i))
   4170      1.25   mjacob 				sdp->isp_devparam[i].dev_flags |= DPARM_RENEG;
   4171      1.25   mjacob 			if (ISP_NVRAM_TGT_QFRZ(nvram_data, i)) {
   4172      1.25   mjacob 				PRINTF("%s: not supporting QFRZ option for "
   4173      1.25   mjacob 				    "target %d\n", isp->isp_name, i);
   4174      1.25   mjacob 			}
   4175      1.25   mjacob 			sdp->isp_devparam[i].dev_flags |= DPARM_ARQ;
   4176      1.25   mjacob 			if (ISP_NVRAM_TGT_ARQ(nvram_data, i) == 0) {
   4177      1.25   mjacob 				PRINTF("%s: not disabling ARQ option for "
   4178      1.25   mjacob 				    "target %d\n", isp->isp_name, i);
   4179      1.25   mjacob 			}
   4180      1.25   mjacob 			if (ISP_NVRAM_TGT_TQING(nvram_data, i))
   4181      1.25   mjacob 				sdp->isp_devparam[i].dev_flags |= DPARM_TQING;
   4182      1.25   mjacob 			if (ISP_NVRAM_TGT_SYNC(nvram_data, i))
   4183      1.25   mjacob 				sdp->isp_devparam[i].dev_flags |= DPARM_SYNC;
   4184      1.25   mjacob 			if (ISP_NVRAM_TGT_WIDE(nvram_data, i))
   4185      1.25   mjacob 				sdp->isp_devparam[i].dev_flags |= DPARM_WIDE;
   4186      1.25   mjacob 			if (ISP_NVRAM_TGT_PARITY(nvram_data, i))
   4187      1.25   mjacob 				sdp->isp_devparam[i].dev_flags |= DPARM_PARITY;
   4188      1.25   mjacob 			if (ISP_NVRAM_TGT_DISC(nvram_data, i))
   4189      1.25   mjacob 				sdp->isp_devparam[i].dev_flags |= DPARM_DISC;
   4190      1.34   mjacob 			sdp->isp_devparam[i].cur_dflags = 0; /* we don't know */
   4191      1.32   mjacob 			if (isp->isp_dblev > 2) {
   4192      1.32   mjacob 				PRINTF("   Target %d: Enabled %d Throttle %d "
   4193      1.32   mjacob 				    "Offset %d Period %d Flags 0x%x\n", i,
   4194      1.32   mjacob 				    sdp->isp_devparam[i].dev_enable,
   4195      1.32   mjacob 				    sdp->isp_devparam[i].exc_throttle,
   4196      1.32   mjacob 				    sdp->isp_devparam[i].sync_offset,
   4197      1.32   mjacob 				    sdp->isp_devparam[i].sync_period,
   4198      1.32   mjacob 				    sdp->isp_devparam[i].dev_flags);
   4199      1.32   mjacob 			}
   4200      1.25   mjacob 		}
   4201      1.25   mjacob 	} else {
   4202      1.25   mjacob 		fcparam *fcp = (fcparam *) isp->isp_param;
   4203      1.25   mjacob 		union {
   4204      1.25   mjacob 			struct {
   4205      1.25   mjacob #if	BYTE_ORDER == BIG_ENDIAN
   4206      1.25   mjacob 				u_int32_t hi32;
   4207      1.25   mjacob 				u_int32_t lo32;
   4208      1.25   mjacob #else
   4209      1.25   mjacob 				u_int32_t lo32;
   4210      1.25   mjacob 				u_int32_t hi32;
   4211      1.25   mjacob #endif
   4212      1.38   mjacob 			} wd;
   4213      1.25   mjacob 			u_int64_t full64;
   4214      1.25   mjacob 		} wwnstore;
   4215      1.25   mjacob 
   4216      1.25   mjacob 		wwnstore.full64 = ISP2100_NVRAM_NODE_NAME(nvram_data);
   4217      1.38   mjacob 		/*
   4218      1.38   mjacob 		 * Broken PTI cards with nothing in the top nibble. Pah.
   4219      1.38   mjacob 		 */
   4220      1.38   mjacob 		if ((wwnstore.wd.hi32 >> 28) == 0) {
   4221      1.38   mjacob 			wwnstore.wd.hi32 |= (2 << 28);
   4222      1.38   mjacob 			CFGPRINTF("%s: (corrected) Adapter WWN 0x%08x%08x\n",
   4223      1.38   mjacob 			    isp->isp_name, wwnstore.wd.hi32, wwnstore.wd.lo32);
   4224      1.38   mjacob 		} else {
   4225      1.38   mjacob 			CFGPRINTF("%s: Adapter WWN 0x%08x%08x\n", isp->isp_name,
   4226      1.38   mjacob 			    wwnstore.wd.hi32, wwnstore.wd.lo32);
   4227      1.38   mjacob 		}
   4228      1.37   mjacob 		fcp->isp_nodewwn = wwnstore.full64;
   4229      1.38   mjacob 
   4230      1.37   mjacob 		/*
   4231      1.37   mjacob 		 * If the Node WWN has 2 in the top nibble, we can
   4232      1.37   mjacob 		 * authoritatively construct a Port WWN by adding
   4233      1.37   mjacob 		 * our unit number (plus one to make it nonzero) and
   4234      1.37   mjacob 		 * putting it into bits 59..56. If the top nibble isn't
   4235      1.37   mjacob 		 * 2, then we just set them identically.
   4236      1.37   mjacob 		 */
   4237      1.37   mjacob 		if ((fcp->isp_nodewwn >> 60) == 2) {
   4238      1.37   mjacob 			fcp->isp_portwwn = fcp->isp_nodewwn |
   4239      1.37   mjacob 			    (((u_int64_t)(isp->isp_unit+1)) << 56);
   4240      1.37   mjacob 		} else {
   4241      1.37   mjacob 			fcp->isp_portwwn = fcp->isp_nodewwn;
   4242      1.37   mjacob 		}
   4243      1.25   mjacob 		wwnstore.full64 = ISP2100_NVRAM_BOOT_NODE_NAME(nvram_data);
   4244      1.25   mjacob 		if (wwnstore.full64 != 0) {
   4245      1.28   mjacob 			PRINTF("%s: BOOT DEVICE WWN 0x%08x%08x\n",
   4246      1.38   mjacob 			    isp->isp_name, wwnstore.wd.hi32, wwnstore.wd.lo32);
   4247      1.25   mjacob 		}
   4248      1.25   mjacob 		fcp->isp_maxalloc =
   4249      1.25   mjacob 			ISP2100_NVRAM_MAXIOCBALLOCATION(nvram_data);
   4250      1.25   mjacob 		fcp->isp_maxfrmlen =
   4251      1.25   mjacob 			ISP2100_NVRAM_MAXFRAMELENGTH(nvram_data);
   4252      1.25   mjacob 		fcp->isp_retry_delay =
   4253      1.25   mjacob 			ISP2100_NVRAM_RETRY_DELAY(nvram_data);
   4254      1.25   mjacob 		fcp->isp_retry_count =
   4255      1.25   mjacob 			ISP2100_NVRAM_RETRY_COUNT(nvram_data);
   4256      1.25   mjacob 		fcp->isp_loopid =
   4257      1.25   mjacob 			ISP2100_NVRAM_HARDLOOPID(nvram_data);
   4258      1.25   mjacob 		fcp->isp_execthrottle =
   4259      1.25   mjacob 			ISP2100_NVRAM_EXECUTION_THROTTLE(nvram_data);
   4260      1.32   mjacob 		fcp->isp_fwoptions = ISP2100_NVRAM_OPTIONS(nvram_data);
   4261      1.32   mjacob 		if (isp->isp_dblev > 2) {
   4262      1.32   mjacob 			PRINTF("%s: NVRAM values:\n", isp->isp_name);
   4263      1.32   mjacob 			PRINTF("  Max IOCB Allocation = %d\n",
   4264      1.32   mjacob 			    fcp->isp_maxalloc);
   4265      1.32   mjacob 			PRINTF("     Max Frame Length = %d\n",
   4266      1.32   mjacob 			    fcp->isp_maxfrmlen);
   4267      1.32   mjacob 			PRINTF("   Execution Throttle = %d\n",
   4268      1.32   mjacob 			    fcp->isp_execthrottle);
   4269      1.32   mjacob 			PRINTF("          Retry Count = %d\n",
   4270      1.32   mjacob 			    fcp->isp_retry_count);
   4271      1.32   mjacob 			PRINTF("          Retry Delay = %d\n",
   4272      1.32   mjacob 			    fcp->isp_retry_delay);
   4273      1.32   mjacob 			PRINTF("         Hard Loop ID = %d\n",
   4274      1.32   mjacob 			    fcp->isp_loopid);
   4275      1.32   mjacob 			PRINTF("              Options = 0x%x\n",
   4276      1.32   mjacob 			    fcp->isp_fwoptions);
   4277      1.32   mjacob 			PRINTF("          HBA Options = 0x%x\n",
   4278      1.32   mjacob 			    ISP2100_NVRAM_HBA_OPTIONS(nvram_data));
   4279      1.32   mjacob 		}
   4280      1.25   mjacob 	}
   4281      1.32   mjacob 	IDPRINTF(3, ("%s: NVRAM is valid\n", isp->isp_name));
   4282      1.25   mjacob 	return (0);
   4283      1.25   mjacob }
   4284      1.25   mjacob 
   4285      1.25   mjacob static void
   4286      1.25   mjacob isp_rdnvram_word(isp, wo, rp)
   4287      1.25   mjacob 	struct ispsoftc *isp;
   4288      1.25   mjacob 	int wo;
   4289      1.25   mjacob 	u_int16_t *rp;
   4290      1.25   mjacob {
   4291      1.25   mjacob 	int i, cbits;
   4292      1.25   mjacob 	u_int16_t bit, rqst;
   4293      1.25   mjacob 
   4294      1.25   mjacob 	ISP_WRITE(isp, BIU_NVRAM, BIU_NVRAM_SELECT);
   4295      1.25   mjacob 	SYS_DELAY(2);
   4296      1.25   mjacob 	ISP_WRITE(isp, BIU_NVRAM, BIU_NVRAM_SELECT|BIU_NVRAM_CLOCK);
   4297      1.25   mjacob 	SYS_DELAY(2);
   4298      1.25   mjacob 
   4299      1.36   mjacob 	if (IS_FC(isp)) {
   4300      1.25   mjacob 		wo &= ((ISP2100_NVRAM_SIZE >> 1) - 1);
   4301      1.36   mjacob 		rqst = (ISP_NVRAM_READ << 8) | wo;
   4302      1.36   mjacob 		cbits = 10;
   4303      1.36   mjacob 	} else if (IS_1080(isp) || IS_12X0(isp)) {
   4304      1.36   mjacob 		wo &= ((ISP1080_NVRAM_SIZE >> 1) - 1);
   4305      1.25   mjacob 		rqst = (ISP_NVRAM_READ << 8) | wo;
   4306      1.25   mjacob 		cbits = 10;
   4307      1.25   mjacob 	} else {
   4308      1.25   mjacob 		wo &= ((ISP_NVRAM_SIZE >> 1) - 1);
   4309      1.25   mjacob 		rqst = (ISP_NVRAM_READ << 6) | wo;
   4310      1.25   mjacob 		cbits = 8;
   4311      1.25   mjacob 	}
   4312      1.25   mjacob 
   4313      1.25   mjacob 	/*
   4314      1.25   mjacob 	 * Clock the word select request out...
   4315      1.25   mjacob 	 */
   4316      1.25   mjacob 	for (i = cbits; i >= 0; i--) {
   4317      1.25   mjacob 		if ((rqst >> i) & 1) {
   4318      1.25   mjacob 			bit = BIU_NVRAM_SELECT | BIU_NVRAM_DATAOUT;
   4319      1.25   mjacob 		} else {
   4320      1.25   mjacob 			bit = BIU_NVRAM_SELECT;
   4321      1.25   mjacob 		}
   4322      1.25   mjacob 		ISP_WRITE(isp, BIU_NVRAM, bit);
   4323      1.25   mjacob 		SYS_DELAY(2);
   4324      1.25   mjacob 		ISP_WRITE(isp, BIU_NVRAM, bit | BIU_NVRAM_CLOCK);
   4325      1.25   mjacob 		SYS_DELAY(2);
   4326      1.25   mjacob 		ISP_WRITE(isp, BIU_NVRAM, bit);
   4327      1.25   mjacob 		SYS_DELAY(2);
   4328      1.25   mjacob 	}
   4329      1.25   mjacob 	/*
   4330      1.25   mjacob 	 * Now read the result back in (bits come back in MSB format).
   4331      1.25   mjacob 	 */
   4332      1.25   mjacob 	*rp = 0;
   4333      1.25   mjacob 	for (i = 0; i < 16; i++) {
   4334      1.25   mjacob 		u_int16_t rv;
   4335      1.25   mjacob 		*rp <<= 1;
   4336      1.25   mjacob 		ISP_WRITE(isp, BIU_NVRAM, BIU_NVRAM_SELECT|BIU_NVRAM_CLOCK);
   4337      1.25   mjacob 		SYS_DELAY(2);
   4338      1.25   mjacob 		rv = ISP_READ(isp, BIU_NVRAM);
   4339      1.25   mjacob 		if (rv & BIU_NVRAM_DATAIN) {
   4340      1.25   mjacob 			*rp |= 1;
   4341      1.25   mjacob 		}
   4342      1.25   mjacob 		SYS_DELAY(2);
   4343      1.25   mjacob 		ISP_WRITE(isp, BIU_NVRAM, BIU_NVRAM_SELECT);
   4344      1.25   mjacob 		SYS_DELAY(2);
   4345      1.25   mjacob 	}
   4346      1.25   mjacob 	ISP_WRITE(isp, BIU_NVRAM, 0);
   4347      1.25   mjacob 	SYS_DELAY(2);
   4348      1.25   mjacob #if	BYTE_ORDER == BIG_ENDIAN
   4349      1.25   mjacob 	*rp = ((*rp >> 8) | ((*rp & 0xff) << 8));
   4350      1.25   mjacob #endif
   4351       1.1      cgd }
   4352