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amrctl.c revision 1.3.2.1
      1  1.3.2.1    yamt /*	$NetBSD: amrctl.c,v 1.3.2.1 2012/05/23 10:07:34 yamt Exp $	*/
      2  1.3.2.1    yamt 
      3      1.1  bouyer /*-
      4      1.1  bouyer  * Copyright (c) 2002, Pierre David <Pierre.David (at) crc.u-strasbg.fr>
      5      1.1  bouyer  * Copyright (c) 2006, Jung-uk Kim <jkim (at) FreeBSD.org>
      6      1.1  bouyer  * All rights reserved.
      7      1.1  bouyer  *
      8      1.1  bouyer  * Redistribution and use in source and binary forms, with or without
      9      1.1  bouyer  * modification, are permitted provided that the following conditions
     10      1.1  bouyer  * are met:
     11      1.1  bouyer  * 1. Redistributions of source code must retain the above copyright
     12      1.1  bouyer  *    notice unmodified, this list of conditions, and the following
     13      1.1  bouyer  *    disclaimer.
     14      1.1  bouyer  * 2. Redistributions in binary form must reproduce the above copyright
     15      1.1  bouyer  *    notice, this list of conditions and the following disclaimer in the
     16      1.1  bouyer  *    documentation and/or other materials provided with the distribution.
     17      1.1  bouyer  *
     18      1.1  bouyer  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     19      1.1  bouyer  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     20      1.1  bouyer  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     21      1.1  bouyer  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     22      1.1  bouyer  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     23      1.1  bouyer  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     24      1.1  bouyer  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     25      1.1  bouyer  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     26      1.1  bouyer  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     27      1.1  bouyer  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     28      1.1  bouyer  */
     29      1.1  bouyer 
     30      1.1  bouyer #include <sys/cdefs.h>
     31  1.3.2.1    yamt #ifndef lint
     32  1.3.2.1    yamt __RCSID("$NetBSD: amrctl.c,v 1.3.2.1 2012/05/23 10:07:34 yamt Exp $");
     33  1.3.2.1    yamt #endif
     34      1.1  bouyer 
     35      1.1  bouyer #include <stdio.h>
     36      1.1  bouyer #include <stdlib.h>
     37      1.1  bouyer #include <string.h>
     38      1.1  bouyer #include <fcntl.h>
     39  1.3.2.1    yamt #include <err.h>
     40      1.1  bouyer #include <errno.h>
     41      1.1  bouyer #include <unistd.h>
     42      1.1  bouyer 
     43      1.1  bouyer #include <sys/ioctl.h>
     44      1.1  bouyer 
     45      1.1  bouyer #include <machine/param.h>
     46      1.1  bouyer 
     47      1.1  bouyer #include <dev/pci/amrio.h>
     48      1.1  bouyer #include <dev/pci/amrreg.h>
     49      1.1  bouyer 
     50      1.1  bouyer #define NATTEMPTS	5
     51      1.1  bouyer #define SLEEPTIME	100000	/* microseconds */
     52      1.1  bouyer 
     53      1.3   joerg static int	nattempts = NATTEMPTS;	/* # of attempts before giving up */
     54      1.3   joerg static int	sleeptime = SLEEPTIME;	/* between attempts, in ms */
     55      1.1  bouyer 
     56      1.1  bouyer #define AMR_BUFSIZE	1024
     57      1.1  bouyer 
     58      1.3   joerg static int	enq_result = AMR_STATUS_FAILED;
     59      1.3   joerg static char	enq_buffer[AMR_BUFSIZE];
     60      1.1  bouyer 
     61      1.1  bouyer #define AMR_MAX_NCTRLS	16
     62      1.1  bouyer #define AMR_MAX_NSDEVS	16
     63      1.1  bouyer 
     64  1.3.2.1    yamt static uint8_t	nschan = 0;
     65      1.1  bouyer 
     66      1.1  bouyer /*
     67      1.1  bouyer  * Include lookup tables, and a function to match a code to a string.
     68      1.1  bouyer  *
     69      1.1  bouyer  * XXX Lookup tables cannot be included, since they require symbols from
     70      1.1  bouyer  * amrreg.h which need in turn the _KERNEL define.
     71      1.1  bouyer  */
     72      1.1  bouyer 
     73      1.1  bouyer /* #define AMR_DEFINE_TABLES */
     74      1.1  bouyer /* #include "amr_tables.h" */
     75      1.1  bouyer 
     76  1.3.2.1    yamt static int amr_ioctl_enquiry(int, uint8_t, uint8_t, uint8_t);
     77      1.3   joerg __dead static void usage(const char *);
     78      1.3   joerg static int describe_card(int, int, int);
     79  1.3.2.1    yamt static char * describe_property(uint8_t, char *);
     80  1.3.2.1    yamt static const char * describe_state(int, uint8_t);
     81      1.3   joerg static void describe_battery(int, int, int, int, int);
     82  1.3.2.1    yamt static void describe_one_volume(int, int, uint32_t, uint8_t, uint8_t);
     83  1.3.2.1    yamt static void describe_one_drive(int, int, uint8_t);
     84      1.3   joerg static void describe_drive(int, int, int, int, int);
     85      1.1  bouyer 
     86      1.1  bouyer /*
     87      1.1  bouyer  * Offsets in an amr_user_ioctl.au_cmd [] array See amrio.h
     88      1.1  bouyer  */
     89      1.1  bouyer 
     90      1.1  bouyer #define MB_COMMAND	0
     91      1.1  bouyer #define MB_CHANNEL	1
     92      1.1  bouyer #define MB_PARAM	2
     93      1.1  bouyer #define MB_PAD		3
     94      1.1  bouyer #define MB_DRIVE	4
     95      1.1  bouyer 
     96      1.1  bouyer #define FIRMWARE_40LD	1
     97      1.1  bouyer #define FIRMWARE_8LD	2
     98      1.1  bouyer 
     99  1.3.2.1    yamt static const struct {
    100      1.1  bouyer 	const char	*product;
    101      1.2   lukem 	const uint32_t	signature;
    102      1.1  bouyer } prodtable[] = {
    103      1.1  bouyer 	{	"Series 431",			AMR_SIG_431	},
    104      1.1  bouyer 	{	"Series 438",			AMR_SIG_438	},
    105      1.1  bouyer 	{	"Series 762",			AMR_SIG_762	},
    106      1.1  bouyer 	{	"Integrated HP NetRAID (T5)",	AMR_SIG_T5	},
    107      1.1  bouyer 	{	"Series 466",			AMR_SIG_466	},
    108      1.1  bouyer 	{	"Series 467",			AMR_SIG_467	},
    109      1.1  bouyer 	{	"Integrated HP NetRAID (T7)",	AMR_SIG_T7	},
    110      1.1  bouyer 	{	"Series 490",			AMR_SIG_490	}
    111      1.1  bouyer };
    112      1.1  bouyer 
    113  1.3.2.1    yamt static const struct {
    114      1.1  bouyer 	const int	code;
    115      1.1  bouyer 	const char	*ifyes, *ifno;
    116      1.1  bouyer } proptable[] = {
    117      1.1  bouyer 	{	AMR_DRV_WRITEBACK,
    118      1.1  bouyer 		"writeback",		"write-through"		},
    119      1.1  bouyer 	{	AMR_DRV_READHEAD,
    120      1.1  bouyer 		"read-ahead",		"no-read-ahead"		},
    121      1.1  bouyer 	{	AMR_DRV_ADAPTIVE,
    122      1.1  bouyer 		"adaptative-io",	"no-adaptative-io"	}
    123      1.1  bouyer };
    124      1.1  bouyer 
    125  1.3.2.1    yamt static const struct {
    126      1.1  bouyer 	const int	code;
    127      1.1  bouyer 	const char	*status;
    128      1.1  bouyer } statetable[] = {
    129      1.1  bouyer 	{	AMR_DRV_OFFLINE,	"offline"	},
    130      1.1  bouyer 	{	AMR_DRV_DEGRADED,	"degraded"	},
    131      1.1  bouyer 	{	AMR_DRV_OPTIMAL,	"optimal"	},
    132      1.1  bouyer 	{	AMR_DRV_ONLINE,		"online"	},
    133      1.1  bouyer 	{	AMR_DRV_FAILED,		"failed"	},
    134      1.1  bouyer 	{	AMR_DRV_REBUILD,	"rebuild"	},
    135      1.1  bouyer 	{	AMR_DRV_HOTSPARE,	"hotspare"	}
    136      1.1  bouyer };
    137      1.1  bouyer 
    138  1.3.2.1    yamt static const struct {
    139  1.3.2.1    yamt 	const uint8_t	code;
    140      1.1  bouyer 	const char		*status;
    141      1.1  bouyer } battable[] = {
    142      1.1  bouyer 	{	AMR_BATT_MODULE_MISSING,	"not present"		},
    143      1.1  bouyer 	{	AMR_BATT_LOW_VOLTAGE,		"low voltage"		},
    144      1.1  bouyer 	{	AMR_BATT_TEMP_HIGH,		"high temperature"	},
    145      1.1  bouyer 	{	AMR_BATT_PACK_MISSING,		"pack missing"	},
    146      1.1  bouyer 	{	AMR_BATT_CYCLES_EXCEEDED,	"cycle exceeded"	}
    147      1.1  bouyer };
    148      1.1  bouyer 
    149  1.3.2.1    yamt static const struct {
    150  1.3.2.1    yamt 	const uint8_t	code;
    151      1.1  bouyer 	const char		*status;
    152      1.1  bouyer } bcstatble[] = {
    153      1.1  bouyer 	{	AMR_BATT_CHARGE_DONE,		"charge done"		},
    154      1.1  bouyer 	{	AMR_BATT_CHARGE_INPROG,		"charge in progress"	},
    155      1.1  bouyer 	{	AMR_BATT_CHARGE_FAIL,		"charge failed"		}
    156      1.1  bouyer };
    157      1.1  bouyer 
    158      1.3   joerg static int
    159  1.3.2.1    yamt amr_ioctl_enquiry(int fd, uint8_t cmd, uint8_t cmdsub, uint8_t cmdqual)
    160      1.1  bouyer {
    161      1.1  bouyer 	struct amr_user_ioctl am;
    162      1.1  bouyer 	int	r, i;
    163      1.1  bouyer 
    164      1.1  bouyer 	am.au_cmd[MB_COMMAND] = cmd;
    165      1.1  bouyer 	am.au_cmd[MB_CHANNEL] = cmdsub;
    166      1.1  bouyer 	am.au_cmd[MB_PARAM] = cmdqual;
    167      1.1  bouyer 	am.au_cmd[MB_PAD] = 0;
    168      1.1  bouyer 	am.au_cmd[MB_DRIVE] = 0;
    169      1.1  bouyer 
    170      1.1  bouyer 	am.au_buffer = enq_buffer;
    171      1.1  bouyer 	am.au_length = AMR_BUFSIZE;
    172      1.1  bouyer 	am.au_direction = AMR_IO_READ;
    173      1.1  bouyer 	am.au_status = 0;
    174      1.1  bouyer 
    175      1.1  bouyer 	i = 0;
    176      1.1  bouyer 	r = -1;
    177      1.1  bouyer 	while (i < nattempts && r == -1) {
    178      1.1  bouyer 		r = ioctl(fd, AMR_IO_COMMAND, &am);
    179      1.1  bouyer 		if (r == -1) {
    180      1.1  bouyer 			if (errno != EBUSY) {
    181  1.3.2.1    yamt 				warn("ioctl enquiry");
    182  1.3.2.1    yamt 				return -1;
    183      1.1  bouyer 			} else
    184      1.1  bouyer 				usleep(sleeptime);
    185      1.1  bouyer 		}
    186      1.1  bouyer 		i++;
    187      1.1  bouyer 	}
    188      1.1  bouyer 	return am.au_status;
    189      1.1  bouyer }
    190      1.1  bouyer 
    191      1.3   joerg static void
    192      1.3   joerg usage(const char *prog)
    193      1.1  bouyer {
    194      1.1  bouyer 	fprintf(stderr, "usage: %s stat [-a num] [-b] "
    195      1.1  bouyer 		"[-c ctlr|-f dev] [-g] [-l vol]\n\t\t"
    196      1.1  bouyer 		"[-p drive|-s bus[:target]] [-t usec] [-v]\n\n\t"
    197      1.1  bouyer 		"-a num\t\tnumber of retries\n\t"
    198      1.1  bouyer 		"-b\t\tbattery status\n\t"
    199      1.1  bouyer 		"-c ctrl\t\tcontroller ID\n\t"
    200      1.1  bouyer 		"-f dev\t\tdevice path\n\t"
    201      1.1  bouyer 		"-g\t\tprint global parameters\n\t"
    202      1.1  bouyer 		"-l vol\t\tlogical volume ID\n\t"
    203      1.1  bouyer 		"-p drive\tphysical drive ID\n\t"
    204      1.1  bouyer 		"-s bus[:target]\tSCSI bus (and optinal target)\n\t"
    205      1.1  bouyer 		"-t usec\t\tsleep time between retries\n\t"
    206      1.1  bouyer 		"-v\t\tverbose output\n",
    207      1.1  bouyer 		prog);
    208      1.1  bouyer 	exit(1);
    209      1.1  bouyer }
    210      1.1  bouyer 
    211      1.1  bouyer /******************************************************************************
    212      1.1  bouyer  * Card description
    213      1.1  bouyer  */
    214      1.1  bouyer 
    215      1.3   joerg static int
    216      1.1  bouyer describe_card(int fd, int verbosity, int globalparam)
    217      1.1  bouyer {
    218      1.1  bouyer 	struct amr_enquiry *ae;
    219      1.2   lukem 	uint32_t	cardtype;
    220      1.1  bouyer 
    221      1.1  bouyer 	/*
    222      1.1  bouyer 	 * Try the 40LD firmware interface
    223      1.1  bouyer 	 */
    224      1.1  bouyer 
    225      1.1  bouyer 	enq_result = amr_ioctl_enquiry(fd, AMR_CMD_CONFIG,
    226      1.1  bouyer 		AMR_CONFIG_PRODUCT_INFO, 0);
    227      1.1  bouyer 	if (enq_result == AMR_STATUS_SUCCESS) {
    228      1.1  bouyer 		struct amr_prodinfo *ap;
    229      1.1  bouyer 
    230      1.1  bouyer 		ap = (struct amr_prodinfo *)enq_buffer;
    231      1.1  bouyer 		nschan = ap->ap_nschan;
    232      1.1  bouyer 		if (globalparam) {
    233      1.1  bouyer 			printf("Product\t\t\t<%.80s>\n", ap->ap_product);
    234      1.1  bouyer 			printf("Firmware\t\t%.16s\n", ap->ap_firmware);
    235      1.1  bouyer 			printf("BIOS\t\t\t%.16s\n", ap->ap_bios);
    236      1.1  bouyer 			printf("SCSI channels\t\t%d\n", ap->ap_nschan);
    237      1.1  bouyer 			printf("Fibre loops\t\t%d\n", ap->ap_fcloops);
    238      1.1  bouyer 			printf("Memory size\t\t%d MB\n", ap->ap_memsize);
    239      1.1  bouyer 			if (verbosity >= 1) {
    240      1.1  bouyer 				printf("Ioctl\t\t\t%d (%s)\n", FIRMWARE_40LD,
    241      1.1  bouyer 				       "40LD");
    242      1.1  bouyer 				printf("Signature\t\t0x%08x\n",
    243      1.1  bouyer 				       ap->ap_signature);
    244      1.1  bouyer 				printf("Configsig\t\t0x%08x\n",
    245      1.1  bouyer 				       ap->ap_configsig);
    246      1.1  bouyer 				printf("Subsystem\t\t0x%04x\n",
    247      1.1  bouyer 				       ap->ap_subsystem);
    248      1.1  bouyer 				printf("Subvendor\t\t0x%04x\n",
    249      1.1  bouyer 				       ap->ap_subvendor);
    250      1.1  bouyer 				printf("Notify counters\t\t%d\n",
    251      1.1  bouyer 				       ap->ap_numnotifyctr);
    252      1.1  bouyer 			}
    253      1.1  bouyer 		}
    254      1.1  bouyer 		return FIRMWARE_40LD;
    255      1.1  bouyer 	}
    256      1.1  bouyer 	/*
    257      1.1  bouyer 	 * Try the 8LD firmware interface
    258      1.1  bouyer 	 */
    259      1.1  bouyer 
    260      1.1  bouyer 	enq_result = amr_ioctl_enquiry(fd, AMR_CMD_EXT_ENQUIRY2, 0, 0);
    261      1.1  bouyer 	ae = (struct amr_enquiry *)enq_buffer;
    262      1.1  bouyer 	if (enq_result == AMR_STATUS_SUCCESS) {
    263      1.1  bouyer 		cardtype = ae->ae_signature;
    264      1.1  bouyer 	} else {
    265      1.1  bouyer 		enq_result = amr_ioctl_enquiry(fd, AMR_CMD_ENQUIRY, 0, 0);
    266      1.1  bouyer 		cardtype = 0;
    267      1.1  bouyer 	}
    268      1.1  bouyer 
    269      1.1  bouyer 	if (enq_result == AMR_STATUS_SUCCESS) {
    270      1.1  bouyer 
    271      1.1  bouyer 		if (globalparam) {
    272      1.1  bouyer 			const char   *product = NULL;
    273      1.1  bouyer 			char	bios[100], firmware[100];
    274      1.2   lukem 			size_t	i;
    275      1.1  bouyer 
    276  1.3.2.1    yamt 			for (i = 0; i < __arraycount(prodtable); i++) {
    277      1.1  bouyer 				if (cardtype == prodtable[i].signature) {
    278      1.1  bouyer 					product = prodtable[i].product;
    279      1.1  bouyer 					break;
    280      1.1  bouyer 				}
    281      1.1  bouyer 			}
    282      1.1  bouyer 			if (product == NULL)
    283      1.1  bouyer 				product = "unknown card signature";
    284      1.1  bouyer 
    285      1.1  bouyer 			/*
    286      1.1  bouyer 			 * HP NetRaid controllers have a special encoding of
    287      1.1  bouyer 			 * the firmware and BIOS versions. The AMI version
    288      1.1  bouyer 			 * seems to have it as strings whereas the HP version
    289      1.1  bouyer 			 * does it with a leading uppercase character and two
    290      1.1  bouyer 			 * binary numbers.
    291      1.1  bouyer 			 */
    292      1.1  bouyer 
    293      1.1  bouyer 			if (ae->ae_adapter.aa_firmware[2] >= 'A' &&
    294      1.1  bouyer 			    ae->ae_adapter.aa_firmware[2] <= 'Z' &&
    295      1.1  bouyer 			    ae->ae_adapter.aa_firmware[1] < ' ' &&
    296      1.1  bouyer 			    ae->ae_adapter.aa_firmware[0] < ' ' &&
    297      1.1  bouyer 			    ae->ae_adapter.aa_bios[2] >= 'A' &&
    298      1.1  bouyer 			    ae->ae_adapter.aa_bios[2] <= 'Z' &&
    299      1.1  bouyer 			    ae->ae_adapter.aa_bios[1] < ' ' &&
    300      1.1  bouyer 			    ae->ae_adapter.aa_bios[0] < ' ') {
    301      1.1  bouyer 
    302      1.1  bouyer 				/*
    303      1.1  bouyer 				 * looks like we have an HP NetRaid version
    304      1.1  bouyer 				 * of the MegaRaid
    305      1.1  bouyer 				 */
    306      1.1  bouyer 
    307      1.1  bouyer 				if (cardtype == AMR_SIG_438) {
    308      1.1  bouyer 					/*
    309      1.1  bouyer 					 * the AMI 438 is a NetRaid 3si in
    310      1.1  bouyer 					 * HP-land
    311      1.1  bouyer 					 */
    312      1.1  bouyer 					product = "HP NetRaid 3si";
    313      1.1  bouyer 				}
    314      1.1  bouyer 				sprintf(firmware, "%c.%02d.%02d",
    315      1.1  bouyer 					ae->ae_adapter.aa_firmware[2],
    316      1.1  bouyer 					ae->ae_adapter.aa_firmware[1],
    317      1.1  bouyer 					ae->ae_adapter.aa_firmware[0]);
    318      1.1  bouyer 				sprintf(bios, "%c.%02d.%02d",
    319      1.1  bouyer 					ae->ae_adapter.aa_bios[2],
    320      1.1  bouyer 					ae->ae_adapter.aa_bios[1],
    321      1.1  bouyer 					ae->ae_adapter.aa_bios[0]);
    322      1.1  bouyer 			} else {
    323      1.1  bouyer 				sprintf(firmware, "%.4s",
    324      1.1  bouyer 					ae->ae_adapter.aa_firmware);
    325      1.1  bouyer 				sprintf(bios, "%.4s", ae->ae_adapter.aa_bios);
    326      1.1  bouyer 			}
    327      1.1  bouyer 
    328      1.1  bouyer 			printf("Ioctl = %d (%s)\n", FIRMWARE_8LD, "8LD");
    329      1.1  bouyer 			printf("Product =\t<%s>\n", product);
    330      1.1  bouyer 			printf("Firmware =\t%s\n", firmware);
    331      1.1  bouyer 			printf("BIOS =\t%s\n", bios);
    332      1.1  bouyer 			/* printf ("SCSI Channels =\t%d\n", ae->ae_nschan); */
    333      1.1  bouyer 			/* printf ("Fibre Loops =\t%d\n", ae->ae_fcloops); */
    334      1.1  bouyer 			printf("Memory size =\t%d MB\n",
    335      1.1  bouyer 			       ae->ae_adapter.aa_memorysize);
    336      1.1  bouyer 			/*
    337      1.1  bouyer 			 * printf ("Notify counters =\t%d\n",
    338      1.1  bouyer 			 * ae->ae_numnotifyctr) ;
    339      1.1  bouyer 			 */
    340      1.1  bouyer 		}
    341      1.1  bouyer 		return FIRMWARE_8LD;
    342      1.1  bouyer 	}
    343      1.1  bouyer 	/*
    344      1.1  bouyer 	 * Neither firmware interface succeeded. Abort.
    345      1.1  bouyer 	 */
    346      1.1  bouyer 
    347      1.1  bouyer 	fprintf(stderr, "Firmware interface not supported\n");
    348      1.1  bouyer 	exit(1);
    349      1.1  bouyer 
    350      1.1  bouyer }
    351      1.1  bouyer 
    352      1.3   joerg static char *
    353  1.3.2.1    yamt describe_property(uint8_t prop, char *buffer)
    354      1.1  bouyer {
    355      1.2   lukem 	size_t	i;
    356      1.1  bouyer 
    357      1.1  bouyer 	strcpy(buffer, "<");
    358  1.3.2.1    yamt 	for (i = 0; i < __arraycount(proptable); i++) {
    359      1.1  bouyer 		if (i > 0)
    360      1.1  bouyer 			strcat(buffer, ",");
    361      1.1  bouyer 		if (prop & proptable[i].code)
    362      1.1  bouyer 			strcat(buffer, proptable[i].ifyes);
    363      1.1  bouyer 		else
    364      1.1  bouyer 			strcat(buffer, proptable[i].ifno);
    365      1.1  bouyer 	}
    366      1.1  bouyer 	strcat(buffer, ">");
    367      1.1  bouyer 
    368      1.1  bouyer 	return buffer;
    369      1.1  bouyer }
    370      1.1  bouyer 
    371      1.3   joerg static const char *
    372  1.3.2.1    yamt describe_state(int verbosity, uint8_t state)
    373      1.1  bouyer {
    374      1.2   lukem 	size_t	i;
    375      1.1  bouyer 
    376      1.1  bouyer 	if ((AMR_DRV_PREVSTATE(state) == AMR_DRV_CURSTATE(state)) &&
    377      1.1  bouyer 	    (AMR_DRV_CURSTATE(state) == AMR_DRV_OFFLINE) && verbosity == 0)
    378      1.1  bouyer 		return NULL;
    379      1.1  bouyer 
    380  1.3.2.1    yamt 	for (i = 0; i < __arraycount(statetable); i++)
    381      1.1  bouyer 		if (AMR_DRV_CURSTATE(state) == statetable[i].code)
    382      1.1  bouyer 			return (statetable[i].status);
    383      1.1  bouyer 
    384      1.1  bouyer 	return NULL;
    385      1.1  bouyer }
    386      1.1  bouyer 
    387      1.1  bouyer /******************************************************************************
    388      1.1  bouyer  * Battery status
    389      1.1  bouyer  */
    390      1.3   joerg static void
    391      1.1  bouyer describe_battery(int fd, int verbosity, int fwint, int bflags, int globalparam)
    392      1.1  bouyer {
    393  1.3.2.1    yamt 	uint8_t batt_status;
    394      1.2   lukem 	size_t i;
    395      1.1  bouyer 
    396      1.1  bouyer 	if (fwint == FIRMWARE_40LD) {
    397      1.1  bouyer 		enq_result = amr_ioctl_enquiry(fd, AMR_CMD_CONFIG,
    398      1.1  bouyer 			AMR_CONFIG_ENQ3, AMR_CONFIG_ENQ3_SOLICITED_FULL);
    399      1.1  bouyer 		if (enq_result == AMR_STATUS_SUCCESS) {
    400      1.1  bouyer 			struct amr_enquiry3 *ae3;
    401      1.1  bouyer 
    402      1.1  bouyer 			ae3 = (struct amr_enquiry3 *)enq_buffer;
    403      1.1  bouyer 			if (bflags || globalparam) {
    404      1.1  bouyer 				batt_status = ae3->ae_batterystatus;
    405      1.1  bouyer 				printf("Battery status\t\t");
    406  1.3.2.1    yamt 				for (i = 0; i < __arraycount(battable); i++) {
    407      1.1  bouyer 					if (batt_status & battable[i].code)
    408      1.1  bouyer 						printf("%s, ", battable[i].status);
    409      1.1  bouyer 				}
    410      1.1  bouyer 				if (!(batt_status &
    411      1.1  bouyer 				    (AMR_BATT_MODULE_MISSING|AMR_BATT_PACK_MISSING))) {
    412  1.3.2.1    yamt 					for (i = 0;
    413  1.3.2.1    yamt 					     i < __arraycount(bcstatble); i++)
    414      1.1  bouyer 						if (bcstatble[i].code ==
    415      1.1  bouyer 						    (batt_status & AMR_BATT_CHARGE_MASK))
    416      1.1  bouyer 							printf("%s", bcstatble[i].status);
    417      1.1  bouyer 				} else
    418      1.1  bouyer 					printf("charge unknown");
    419      1.1  bouyer 				if (verbosity)
    420      1.1  bouyer 					printf(" (0x%02x)", batt_status);
    421      1.1  bouyer 				printf("\n");
    422      1.1  bouyer 			}
    423      1.1  bouyer 		}
    424      1.1  bouyer 	} else if (fwint == FIRMWARE_8LD) {
    425      1.1  bouyer 		/* Nothing to do here. */
    426      1.1  bouyer 		return;
    427      1.1  bouyer 	} else {
    428      1.1  bouyer 		fprintf(stderr, "Firmware interface not supported.\n");
    429      1.1  bouyer 		exit(1);
    430      1.1  bouyer 	}
    431      1.1  bouyer 
    432      1.1  bouyer 	return;
    433      1.1  bouyer }
    434      1.1  bouyer 
    435      1.1  bouyer /******************************************************************************
    436      1.1  bouyer  * Logical volumes
    437      1.1  bouyer  */
    438      1.1  bouyer 
    439      1.3   joerg static void
    440      1.1  bouyer describe_one_volume(int ldrv, int verbosity,
    441  1.3.2.1    yamt 		    uint32_t size, uint8_t state, uint8_t prop)
    442      1.1  bouyer {
    443      1.1  bouyer 	float	szgb;
    444      1.1  bouyer 	int	raid_level;
    445      1.1  bouyer 	char	propstr[MAXPATHLEN];
    446      1.1  bouyer 	const char *statestr;
    447      1.1  bouyer 
    448      1.1  bouyer 	szgb = ((float)size) / (1024 * 1024 * 2);	/* size in GB */
    449      1.1  bouyer 
    450      1.1  bouyer 	raid_level = prop & AMR_DRV_RAID_MASK;
    451      1.1  bouyer 
    452      1.1  bouyer 	printf("Logical volume %d\t", ldrv);
    453      1.1  bouyer 	statestr = describe_state(verbosity, state);
    454      1.1  bouyer 	printf("%s ", statestr);
    455      1.1  bouyer 	printf("(%.2f GB, RAID%d", szgb, raid_level);
    456      1.1  bouyer 	if (verbosity >= 1) {
    457      1.1  bouyer 		describe_property(prop, propstr);
    458      1.1  bouyer 		printf(" %s", propstr);
    459      1.1  bouyer 	}
    460      1.1  bouyer 	printf(")\n");
    461      1.1  bouyer }
    462      1.1  bouyer 
    463      1.1  bouyer /******************************************************************************
    464      1.1  bouyer  * Physical drives
    465      1.1  bouyer  */
    466      1.1  bouyer 
    467      1.3   joerg static void
    468  1.3.2.1    yamt describe_one_drive(int pdrv, int verbosity, uint8_t state)
    469      1.1  bouyer {
    470      1.1  bouyer 	const char *statestr;
    471      1.1  bouyer 
    472      1.1  bouyer 	statestr = describe_state(verbosity, state);
    473      1.1  bouyer 	if (statestr) {
    474      1.1  bouyer 		if (nschan > 0)
    475      1.1  bouyer 			printf("Physical drive %d:%d\t%s\n",
    476      1.1  bouyer 			       pdrv / AMR_MAX_NSDEVS, pdrv % AMR_MAX_NSDEVS,
    477      1.1  bouyer 			       statestr);
    478      1.1  bouyer 		else
    479      1.1  bouyer 			printf("Physical drive %d:\t%s\n", pdrv, statestr);
    480      1.1  bouyer 	}
    481      1.1  bouyer }
    482      1.1  bouyer 
    483      1.3   joerg static void
    484      1.1  bouyer describe_drive(int verbosity, int fwint, int ldrv, int sbus, int sdev)
    485      1.1  bouyer {
    486      1.1  bouyer 	int	drv, pdrv = -1;
    487      1.1  bouyer 
    488      1.1  bouyer 	if (sbus > -1 && sdev > -1)
    489      1.1  bouyer 		pdrv = (sbus * AMR_MAX_NSDEVS) + sdev;
    490      1.1  bouyer 	if (nschan != 0) {
    491      1.1  bouyer 		if (sbus > -1 && sbus >= nschan) {
    492      1.1  bouyer 			fprintf(stderr, "SCSI channel %d does not exist.\n", sbus);
    493      1.1  bouyer 			exit(1);
    494      1.1  bouyer 		} else if (sdev > -1 && sdev >= AMR_MAX_NSDEVS) {
    495      1.1  bouyer 			fprintf(stderr, "SCSI device %d:%d does not exist.\n",
    496      1.1  bouyer 				sbus, sdev);
    497      1.1  bouyer 			exit(1);
    498      1.1  bouyer 		}
    499      1.1  bouyer 	}
    500      1.1  bouyer 	if (fwint == FIRMWARE_40LD) {
    501      1.1  bouyer 		if (enq_result == AMR_STATUS_SUCCESS) {
    502      1.1  bouyer 			struct amr_enquiry3 *ae3;
    503      1.1  bouyer 
    504      1.1  bouyer 			ae3 = (struct amr_enquiry3 *)enq_buffer;
    505      1.1  bouyer 			if ((ldrv < 0 && sbus < 0) || ldrv >= 0) {
    506      1.1  bouyer 				if (ldrv >= ae3->ae_numldrives) {
    507      1.1  bouyer 					fprintf(stderr, "Logical volume %d "
    508      1.1  bouyer 						"does not exist.\n", ldrv);
    509      1.1  bouyer 					exit(1);
    510      1.1  bouyer 				}
    511      1.1  bouyer 				if (ldrv < 0) {
    512      1.1  bouyer 					for (drv = 0;
    513      1.1  bouyer 					     drv < ae3->ae_numldrives;
    514      1.1  bouyer 					     drv++)
    515      1.1  bouyer 						describe_one_volume(drv,
    516      1.1  bouyer 						    verbosity,
    517      1.1  bouyer 						    ae3->ae_drivesize[drv],
    518      1.1  bouyer 						    ae3->ae_drivestate[drv],
    519      1.1  bouyer 						    ae3->ae_driveprop[drv]);
    520      1.1  bouyer 				} else {
    521      1.1  bouyer 					describe_one_volume(ldrv,
    522      1.1  bouyer 					    verbosity,
    523      1.1  bouyer 					    ae3->ae_drivesize[ldrv],
    524      1.1  bouyer 					    ae3->ae_drivestate[ldrv],
    525      1.1  bouyer 					    ae3->ae_driveprop[ldrv]);
    526      1.1  bouyer 				}
    527      1.1  bouyer 			}
    528      1.1  bouyer 			if ((ldrv < 0 && sbus < 0) || sbus >= 0) {
    529      1.1  bouyer 				if (pdrv >= AMR_40LD_MAXPHYSDRIVES ||
    530      1.1  bouyer 				    (nschan != 0 && pdrv >= (nschan * AMR_MAX_NSDEVS))) {
    531      1.1  bouyer 					fprintf(stderr, "Physical drive %d "
    532      1.1  bouyer 						"is out of range.\n", pdrv);
    533      1.1  bouyer 					exit(1);
    534      1.1  bouyer 				}
    535      1.1  bouyer 				if (sbus < 0) {
    536      1.1  bouyer 					for (drv = 0;
    537      1.1  bouyer 					     drv < AMR_40LD_MAXPHYSDRIVES;
    538      1.1  bouyer 					     drv++) {
    539      1.1  bouyer 						if (nschan != 0 &&
    540      1.1  bouyer 						    drv >= (nschan * AMR_MAX_NSDEVS))
    541      1.1  bouyer 							break;
    542      1.1  bouyer 						describe_one_drive(drv,
    543      1.1  bouyer 						    verbosity,
    544      1.1  bouyer 						    ae3->ae_pdrivestate[drv]);
    545      1.1  bouyer 					}
    546      1.1  bouyer 				} else if (sdev < 0) {
    547      1.1  bouyer 					for (drv = sbus * AMR_MAX_NSDEVS;
    548      1.1  bouyer 					     drv < ((sbus + 1) * AMR_MAX_NSDEVS);
    549      1.1  bouyer 					     drv++) {
    550      1.1  bouyer 						if (nschan != 0 &&
    551      1.1  bouyer 						    drv >= (nschan * AMR_MAX_NSDEVS))
    552      1.1  bouyer 							break;
    553      1.1  bouyer 						describe_one_drive(drv,
    554      1.1  bouyer 						    verbosity,
    555      1.1  bouyer 						    ae3->ae_pdrivestate[drv]);
    556      1.1  bouyer 					}
    557      1.1  bouyer 				} else {
    558      1.1  bouyer 					if (nschan != 0 &&
    559      1.1  bouyer 					    pdrv < (nschan * AMR_MAX_NSDEVS))
    560      1.1  bouyer 						describe_one_drive(pdrv, 1,
    561      1.1  bouyer 						    ae3->ae_pdrivestate[pdrv]);
    562      1.1  bouyer 				}
    563      1.1  bouyer 			}
    564      1.1  bouyer 		}
    565      1.1  bouyer 	} else if (fwint == FIRMWARE_8LD) {
    566      1.1  bouyer 		/* Nothing to do here. */
    567      1.1  bouyer 		return;
    568      1.1  bouyer 	} else {
    569      1.1  bouyer 		fprintf(stderr, "Firmware interface not supported.\n");
    570      1.1  bouyer 		exit(1);
    571      1.1  bouyer 	}
    572      1.1  bouyer }
    573      1.1  bouyer 
    574      1.1  bouyer /******************************************************************************
    575      1.1  bouyer  * Main function
    576      1.1  bouyer  */
    577      1.1  bouyer 
    578      1.1  bouyer int
    579      1.1  bouyer main(int argc, char *argv[])
    580      1.1  bouyer {
    581      1.1  bouyer 	int	i;
    582      1.1  bouyer 	int	fd = -1;
    583      1.1  bouyer 	int	globalparam = 0, verbosity = 0;
    584      1.1  bouyer 	int	bflags = 0, fflags = 0, sflags = 0;
    585      1.1  bouyer 	int	lvolno = -1, physno = -1;
    586      1.1  bouyer 	int	sbusno = -1, targetno = -1;
    587      1.1  bouyer 	char	filename[MAXPATHLEN];
    588      1.1  bouyer 	char	sdev[MAXPATHLEN];
    589      1.1  bouyer 	char	*pdev;
    590      1.1  bouyer 
    591      1.1  bouyer 	extern char *optarg;
    592      1.1  bouyer 	extern int optind;
    593      1.1  bouyer 
    594      1.1  bouyer 	/*
    595      1.1  bouyer 	 * Parse arguments
    596      1.1  bouyer 	 */
    597      1.1  bouyer 	if (argc < 2)
    598      1.1  bouyer 		usage(argv[0]);
    599      1.1  bouyer 	if (strcmp(argv[1], "stat") != 0) /* only stat implemented for now */
    600      1.1  bouyer 		usage(argv[0]);
    601      1.1  bouyer 
    602      1.1  bouyer 	optind = 2;
    603      1.1  bouyer 	while ((i = getopt(argc, argv, "a:bc:f:gl:p:s:t:v")) != -1)
    604      1.1  bouyer 		switch (i) {
    605      1.1  bouyer 		case 'a':
    606      1.1  bouyer 			nattempts = atoi(optarg);
    607      1.1  bouyer 			break;
    608      1.1  bouyer 		case 'b':
    609      1.1  bouyer 			bflags++;
    610      1.1  bouyer 			break;
    611      1.1  bouyer 		case 'f':
    612      1.1  bouyer 			snprintf(filename, MAXPATHLEN, "%s", optarg);
    613      1.1  bouyer 			filename[MAXPATHLEN - 1] = '\0';
    614      1.1  bouyer 			fflags++;
    615      1.1  bouyer 			break;
    616      1.1  bouyer 		case 'g':
    617      1.1  bouyer 			globalparam = 1;
    618      1.1  bouyer 			break;
    619      1.1  bouyer 		case 'l':
    620      1.1  bouyer 			lvolno = atoi(optarg);
    621      1.1  bouyer 			break;
    622      1.1  bouyer 		case 'p':
    623      1.1  bouyer 			physno = atoi(optarg);
    624      1.1  bouyer 			break;
    625      1.1  bouyer 		case 's':
    626      1.1  bouyer 			snprintf(sdev, MAXPATHLEN, "%s", optarg);
    627      1.1  bouyer 			sdev[MAXPATHLEN - 1] = '\0';
    628      1.1  bouyer 			sflags++;
    629      1.1  bouyer 			break;
    630      1.1  bouyer 		case 't':
    631      1.1  bouyer 			sleeptime = atoi(optarg);
    632      1.1  bouyer 			break;
    633      1.1  bouyer 		case 'v':
    634      1.1  bouyer 			verbosity++;
    635      1.1  bouyer 			break;
    636      1.1  bouyer 		case '?':
    637      1.1  bouyer 		default:
    638      1.1  bouyer 			usage(argv[0]);
    639      1.1  bouyer 		}
    640      1.1  bouyer 	argc -= optind;
    641      1.1  bouyer 	argv += optind;
    642      1.1  bouyer 
    643      1.1  bouyer 	if (argc != 0)
    644      1.1  bouyer 		usage(argv[0]);
    645      1.1  bouyer 
    646      1.1  bouyer 	if (!fflags) {
    647      1.1  bouyer 		snprintf(filename, MAXPATHLEN, "/dev/amr0");
    648      1.1  bouyer 	}
    649      1.1  bouyer 
    650      1.1  bouyer 	fd = open(filename, O_RDONLY);
    651      1.1  bouyer 	if (fd == -1) {
    652  1.3.2.1    yamt 		err(EXIT_FAILURE, "open");
    653      1.1  bouyer 	}
    654      1.1  bouyer 	if (ioctl(fd, AMR_IO_VERSION, &i) == -1) {
    655  1.3.2.1    yamt 		err(EXIT_FAILURE, "ioctl version");
    656      1.1  bouyer 	}
    657      1.1  bouyer 
    658      1.1  bouyer 	if (sflags) {
    659      1.1  bouyer 		if(physno > -1)
    660      1.1  bouyer 			usage(argv[0]);
    661      1.1  bouyer 		else {
    662      1.1  bouyer 			sbusno = atoi(sdev);
    663      1.1  bouyer 			if ((pdev = index(sdev, ':')))
    664      1.1  bouyer 				targetno = atoi(++pdev);
    665      1.1  bouyer 		}
    666      1.1  bouyer 	} else if (physno > -1) {
    667      1.1  bouyer 		sbusno = physno / AMR_MAX_NSDEVS;
    668      1.1  bouyer 		targetno = physno % AMR_MAX_NSDEVS;
    669      1.1  bouyer 	}
    670      1.1  bouyer 
    671      1.1  bouyer 	if (globalparam && verbosity >= 1)
    672      1.1  bouyer 		printf("Version\t\t\t%d\n", i);
    673      1.1  bouyer #if 0
    674      1.1  bouyer 	if (i != 1) {
    675      1.1  bouyer 		fprintf(stderr, "Driver version (%d) not supported\n", i);
    676      1.1  bouyer 		exit(1);
    677      1.1  bouyer 	}
    678      1.1  bouyer #endif
    679      1.1  bouyer 
    680      1.1  bouyer 	i = describe_card(fd, verbosity, globalparam);
    681      1.1  bouyer 	describe_battery(fd, verbosity, i, bflags, globalparam);
    682      1.1  bouyer 	if (!bflags || lvolno > -1 || physno > -1 || sbusno > -1 || targetno > -1)
    683      1.1  bouyer 		describe_drive(verbosity, i, lvolno, sbusno, targetno);
    684      1.1  bouyer 
    685      1.1  bouyer 	return 0;
    686      1.1  bouyer }
    687