123353Smckusick /* 2*30536Skarels * @(#)uda.c 7.2 (Berkeley) 02/19/87 323353Smckusick */ 423353Smckusick 517553Skarels /************************************************************************ 617553Skarels * * 717553Skarels * Copyright (c) 1983 by * 817553Skarels * Digital Equipment Corporation, Maynard, MA * 917553Skarels * All rights reserved. * 1017553Skarels * * 1117553Skarels ************************************************************************/ 1217553Skarels /* 1317553Skarels * uda.c - UDA50A Driver 1417553Skarels * 1525653Skarels * decvax!rich 1617553Skarels */ 1717553Skarels 18*30536Skarels #define COMPAT_42 1917553Skarels #define DEBUG 2017553Skarels #define UDADEVNUM (9) /* entry in bdevsw */ 214743Swnj #include "ra.h" 2217642Skarels #if NUDA > 0 234743Swnj /* 244743Swnj * UDA50/RAxx disk device driver 254743Swnj * 264743Swnj * Restrictions: 2717553Skarels * Unit numbers must be less than 8. 284743Swnj */ 299781Ssam #include "../machine/pte.h" 304743Swnj 3117553Skarels #include "param.h" 3217553Skarels #include "systm.h" 3317553Skarels #include "buf.h" 3417553Skarels #include "conf.h" 3517553Skarels #include "dir.h" 36*30536Skarels #include "file.h" 37*30536Skarels #include "ioctl.h" 3817553Skarels #include "user.h" 3917553Skarels #include "map.h" 4017553Skarels #include "vm.h" 41*30536Skarels #include "dkstat.h" 4217553Skarels #include "cmap.h" 4317553Skarels #include "uio.h" 44*30536Skarels #include "disklabel.h" 45*30536Skarels #include "syslog.h" 464743Swnj 478482Sroot #include "../vax/cpu.h" 4817553Skarels #include "ubareg.h" 4917553Skarels #include "ubavar.h" 5017553Skarels #include "../vax/mtpr.h" 518613Sroot 5217553Skarels #define TENSEC (1000) 5317553Skarels 5417553Skarels #define NRSPL2 3 /* log2 number of response packets */ 5517553Skarels #define NCMDL2 3 /* log2 number of command packets */ 5617553Skarels #define NRSP (1<<NRSPL2) 5717553Skarels #define NCMD (1<<NCMDL2) 5828923Skarels #define UDABURST 4 /* default for DMA burst size */ 598613Sroot 608482Sroot #include "../vaxuba/udareg.h" 618482Sroot #include "../vax/mscp.h" 624743Swnj 6317553Skarels 644743Swnj struct uda_softc { 6517553Skarels short sc_state; /* state of controller */ 6617553Skarels short sc_mapped; /* Unibus map allocated for uda struct? */ 6717553Skarels int sc_ubainfo; /* Unibus mapping info */ 6817553Skarels struct uda *sc_uda; /* Unibus address of uda struct */ 6917553Skarels int sc_ivec; /* interrupt vector address */ 7017553Skarels short sc_credits; /* transfer credits */ 7117553Skarels short sc_lastcmd; /* pointer into command ring */ 7217553Skarels short sc_lastrsp; /* pointer into response ring */ 734743Swnj } uda_softc[NUDA]; 744743Swnj struct uda { 7517553Skarels struct udaca uda_ca; /* communications area */ 7617553Skarels struct mscp uda_rsp[NRSP]; /* response packets */ 7717553Skarels struct mscp uda_cmd[NCMD]; /* command packets */ 784743Swnj } uda[NUDA]; 794743Swnj 8024742Sbloom #define udunit(dev) (minor(dev) >> 3) 81*30536Skarels #define udpart(dev) (minor(dev) & 07) 82*30536Skarels #define udminor(unit, part) (((unit) << 3) | (part)) 8324742Sbloom 8417553Skarels struct ra_info { 8517553Skarels daddr_t radsize; /* Max user size form online pkt */ 8617553Skarels unsigned ratype; /* Drive type int field */ 8717553Skarels unsigned rastatus; /* Command status from */ 8817553Skarels /* last onlin or GTUNT */ 89*30536Skarels int rastate; /* open/closed state */ 90*30536Skarels u_long openpart; /* partitions open */ 9117553Skarels } ra_info[NRA]; 9217553Skarels 9317553Skarels struct uba_ctlr *udminfo[NUDA]; 9417553Skarels struct uba_device *uddinfo[NRA]; 9517553Skarels struct uba_device *udip[NUDA][8]; /* 8 == max number of drives */ 96*30536Skarels struct disklabel udlabel[NRA]; 9717553Skarels struct buf rudbuf[NRA]; 9817553Skarels struct buf udutab[NRA]; 9917553Skarels struct buf udwtab[NUDA]; /* I/O wait queue, per controller */ 1004743Swnj 10112421Ssam 10217553Skarels int udamicro[NUDA]; /* to store microcode level */ 10325901Skarels int udaburst[NUDA] = { 0 }; /* DMA burst size, 0 is default */ 1044743Swnj 1054743Swnj 10617553Skarels /* 10717553Skarels * Controller states 10817553Skarels */ 10917553Skarels #define S_IDLE 0 /* hasn't been initialized */ 11017553Skarels #define S_STEP1 1 /* doing step 1 init */ 11117553Skarels #define S_STEP2 2 /* doing step 2 init */ 11217553Skarels #define S_STEP3 3 /* doing step 3 init */ 11317553Skarels #define S_SCHAR 4 /* doing "set controller characteristics" */ 11417553Skarels #define S_RUN 5 /* running */ 11517553Skarels 116*30536Skarels /* 117*30536Skarels * Software state, per drive 118*30536Skarels */ 119*30536Skarels #define CLOSED 0 120*30536Skarels #define WANTOPEN 1 121*30536Skarels #define RDLABEL 2 122*30536Skarels #define OPEN 3 123*30536Skarels #define OPENRAW 4 12417553Skarels 12517553Skarels int udaerror = 0; /* causes hex dump of packets */ 12617553Skarels int udadebug = 0; 12717553Skarels int uda_cp_wait = 0; /* Something to wait on for command */ 12817553Skarels /* packets and or credits. */ 12917553Skarels int wakeup(); 13017553Skarels extern int hz; /* Should find the right include */ 13117553Skarels #ifdef DEBUG 13217553Skarels #define printd if (udadebug) printf 13317553Skarels #define printd10 if(udadebug >= 10) printf 13417553Skarels #endif 13517553Skarels #define mprintf printf /* temporary JG hack until Rich fixes*/ 13617553Skarels 13717553Skarels int udprobe(), udslave(), udattach(), udintr(); 13817553Skarels struct mscp *udgetcp(); 13917553Skarels 14017553Skarels u_short udstd[] = { 0772150, 0772550, 0777550, 0 }; 14117553Skarels struct uba_driver udadriver = 1424743Swnj { udprobe, udslave, udattach, 0, udstd, "ra", uddinfo, "uda", udminfo, 0 }; 1434743Swnj 14417553Skarels #define b_qsize b_resid /* queue size per drive, in udutab */ 14517553Skarels #define b_ubinfo b_resid /* Unibus mapping info, per buffer */ 1464743Swnj 1474743Swnj udprobe(reg, ctlr) 1484743Swnj caddr_t reg; 1494743Swnj int ctlr; 1504743Swnj { 1514743Swnj register int br, cvec; 1524743Swnj register struct uda_softc *sc = &uda_softc[ctlr]; 15317553Skarels struct udadevice *udaddr; 1544743Swnj 15517553Skarels int cur_time; 15617553Skarels 1574743Swnj #ifdef lint 15817553Skarels br = 0; cvec = br; br = cvec; 15912778Ssam udreset(0); udintr(0); 1604743Swnj #endif 16117553Skarels udaddr = (struct udadevice *) reg; 16217553Skarels 16317553Skarels sc->sc_ivec = (uba_hd[numuba].uh_lastiv -= 4); 16427254Skridle #if VAX630 16527254Skridle if (cpu == VAX_630) { 16627254Skridle br = 0x15; 16727254Skridle cvec = sc->sc_ivec; 16827254Skridle return(sizeof (struct udadevice)); 16927254Skridle } 17027254Skridle #endif 17117553Skarels udaddr->udaip = 0; /* start initialization */ 17217553Skarels 17317553Skarels cur_time = mfpr(TODR); /* Time of day */ 17417553Skarels while(cur_time + TENSEC > mfpr(TODR)){ /* wait for at most 10 secs */ 17517553Skarels if((udaddr->udasa & UDA_STEP1) != 0) 17617553Skarels break; 17717553Skarels } 17817553Skarels if(cur_time + TENSEC <= mfpr(TODR)) 17917553Skarels return(0); /* Not a uda or it won't init as it */ 18017553Skarels /* should within ten seconds. */ 18117553Skarels udaddr->udasa=UDA_ERR|(NCMDL2<<11)|(NRSPL2<<8)|UDA_IE|(sc->sc_ivec/4); 18217553Skarels while((udaddr->udasa&UDA_STEP2)==0) 18317553Skarels DELAY(1000); /* intr should have */ 18417553Skarels /* have happened by now */ 18517553Skarels 1867410Skre return(sizeof (struct udadevice)); 1874743Swnj } 1884743Swnj 18926295Skarels /* ARGSUSED */ 1904743Swnj udslave(ui, reg) 1914743Swnj struct uba_device *ui; 1924743Swnj caddr_t reg; 1934743Swnj { 19417553Skarels register struct uba_ctlr *um = udminfo[ui->ui_ctlr]; 19517553Skarels register struct uda_softc *sc = &uda_softc[ui->ui_ctlr]; 19617553Skarels struct udadevice *udaddr; 19717553Skarels struct mscp *mp; 19817553Skarels int i; /* Something to write into to start */ 19917553Skarels /* the uda polling */ 20017553Skarels 20117553Skarels 20217553Skarels udaddr = (struct udadevice *)um->um_addr; 20317553Skarels if(sc->sc_state != S_RUN){ 20417553Skarels if(!udinit(ui->ui_ctlr)) 20517553Skarels return(0); 20617553Skarels } 20717553Skarels /* Here we will wait for the controller */ 20817553Skarels /* to come into the run state or go idle. If we go idle we are in */ 20917553Skarels /* touble and I don't yet know what to do so I will punt */ 21017553Skarels while(sc->sc_state != S_RUN && sc->sc_state != S_IDLE); /* spin */ 21117553Skarels if(sc->sc_state == S_IDLE){ /* The Uda failed to initialize */ 21217553Skarels printf("UDA failed to init\n"); 21317553Skarels return(0); 21417553Skarels } 21517553Skarels /* The controller is up so let see if the drive is there! */ 21617553Skarels if(0 == (mp = udgetcp(um))){ /* ditto */ 21717553Skarels printf("UDA can't get command packet\n"); 21817553Skarels return(0); 21917553Skarels } 22017553Skarels mp->mscp_opcode = M_OP_GTUNT; /* This should give us the drive type*/ 22117553Skarels mp->mscp_unit = ui->ui_slave; 22217553Skarels mp->mscp_cmdref = (long) ui->ui_slave; 22317553Skarels #ifdef DEBUG 22417553Skarels printd("uda%d Get unit status slave %d\n",ui->ui_ctlr,ui->ui_slave); 22517553Skarels #endif 22617553Skarels ra_info[ui->ui_unit].rastatus = 0; /* set to zero */ 22717553Skarels udip[ui->ui_ctlr][ui->ui_slave] = ui; 22817553Skarels *((long *) mp->mscp_dscptr ) |= UDA_OWN | UDA_INT;/* maybe we should poll*/ 22917553Skarels i = udaddr->udaip; 23026295Skarels #ifdef lint 23126295Skarels i = i; 23226295Skarels #endif 23317553Skarels while(!ra_info[ui->ui_unit].rastatus); /* Wait for some status */ 23417553Skarels udip[ui->ui_ctlr][ui->ui_slave] = 0; 23517553Skarels if(!ra_info[ui->ui_unit].ratype) /* packet from a GTUNT */ 23617553Skarels return(0); /* Failed No such drive */ 23717553Skarels else 23817553Skarels return(1); /* Got it and it is there */ 2394743Swnj } 2404743Swnj 2414743Swnj udattach(ui) 2424743Swnj register struct uba_device *ui; 2434743Swnj { 24417553Skarels register struct uba_ctlr *um = ui->ui_mi ; 24517553Skarels struct udadevice *udaddr = (struct udadevice *) um->um_addr; 246*30536Skarels register struct mscp *mp; 247*30536Skarels register unit = ui->ui_unit; 24817553Skarels int i; /* Something to write into to start */ 24917553Skarels /* the uda polling */ 25012443Ssam if (ui->ui_dk >= 0) 25117553Skarels dk_mspw[ui->ui_dk] = 1.0 / (60 * 31 * 256); /* approx */ 2524743Swnj ui->ui_flags = 0; 2534743Swnj udip[ui->ui_ctlr][ui->ui_slave] = ui; 25417553Skarels /* check to see if the drive is a available if it is bring it online */ 25517553Skarels /* if not then just return. open will try an online later */ 256*30536Skarels if(ra_info[unit].rastatus != M_ST_AVLBL) 25717553Skarels return; /* status was set by a GTUNT */ 25817553Skarels if(0 == (mp = udgetcp(um))){ /* ditto */ 25917553Skarels printf("UDA can't get command packet\n"); 26017553Skarels return; 26117553Skarels } 26217553Skarels mp->mscp_opcode = M_OP_ONLIN; 26317553Skarels mp->mscp_unit = ui->ui_slave; 26417553Skarels mp->mscp_cmdref = (long) ui->ui_slave; 26517553Skarels #ifdef DEBUG 26617553Skarels printd("uda%d ONLIN slave %d\n",ui->ui_ctlr,ui->ui_slave); 26717553Skarels #endif 26817553Skarels *((long *) mp->mscp_dscptr ) |= UDA_OWN | UDA_INT; 26917553Skarels i = udaddr->udaip; 27026295Skarels #ifdef lint 27126295Skarels i = i; 27226295Skarels #endif 273*30536Skarels for (i = 1000; ui->ui_flags == 0 && ra_info[unit].ratype != 0; ) { 274*30536Skarels if (--i == 0) 275*30536Skarels break; 276*30536Skarels DELAY(1000); 277*30536Skarels } 278*30536Skarels /* 279*30536Skarels * Try to read pack label. 280*30536Skarels */ 281*30536Skarels if (rainit(ui, 0) == 0) { 282*30536Skarels printf("ra%d: %s\n", unit, udlabel[unit].d_typename); 283*30536Skarels #ifdef notyet 284*30536Skarels addswap(makedev(UDADEVNUM, udminor(unit, 0)), &udlabel[unit]); 285*30536Skarels #endif 286*30536Skarels } else 287*30536Skarels printf("ra%d: offline\n", unit); 2884743Swnj } 2894743Swnj 2904743Swnj /* 2914743Swnj * Open a UDA. Initialize the device and 2924743Swnj * set the unit online. 2934743Swnj */ 2944743Swnj udopen(dev, flag) 2954743Swnj dev_t dev; 2964743Swnj int flag; 2974743Swnj { 2984743Swnj register int unit; 2994743Swnj register struct uba_device *ui; 3004743Swnj register struct uda_softc *sc; 301*30536Skarels register struct disklabel *lp; 302*30536Skarels register struct partition *pp; 303*30536Skarels int s, i, part; 304*30536Skarels daddr_t start, end; 305*30536Skarels 30624742Sbloom unit = udunit(dev); 307*30536Skarels part = udpart(dev); 30826372Skarels if (unit >= NRA || (ui = uddinfo[unit]) == 0 || ui->ui_alive == 0) 3098576Sroot return (ENXIO); 3104743Swnj sc = &uda_softc[ui->ui_ctlr]; 311*30536Skarels lp = &udlabel[unit]; 3125434Sroot s = spl5(); 3134743Swnj if (sc->sc_state != S_RUN) { 3144743Swnj if (sc->sc_state == S_IDLE) 31517553Skarels if(!udinit(ui->ui_ctlr)){ 31617553Skarels printf("uda: Controller failed to init\n"); 31725189Skarels (void) splx(s); 31817553Skarels return(ENXIO); 31917553Skarels } 3206187Ssam /* wait for initialization to complete */ 32117553Skarels timeout(wakeup,(caddr_t)ui->ui_mi,11*hz); /* to be sure*/ 3226187Ssam sleep((caddr_t)ui->ui_mi, 0); 3238576Sroot if (sc->sc_state != S_RUN) 32417553Skarels { 32517553Skarels (void) splx(s); /* added by Rich */ 3268576Sroot return (EIO); 32717553Skarels } 3284743Swnj } 32917553Skarels (void) splx(s); 330*30536Skarels if (ui->ui_flags == 0) 331*30536Skarels rainit(ui, flag); 332*30536Skarels if (ui->ui_flags == 0) 333*30536Skarels return(ENXIO); /* Didn't go online */ 334*30536Skarels 335*30536Skarels if (part >= lp->d_npartitions) 336*30536Skarels return (ENXIO); 337*30536Skarels /* 338*30536Skarels * Warn if a partion is opened 339*30536Skarels * that overlaps another partition which is open 340*30536Skarels * unless one is the "raw" partition (whole disk). 341*30536Skarels */ 342*30536Skarels #define RAWPART 2 /* 'c' partition */ /* XXX */ 343*30536Skarels if ((ra_info[unit].openpart & (1 << part)) == 0 && 344*30536Skarels part != RAWPART) { 345*30536Skarels pp = &lp->d_partitions[part]; 346*30536Skarels start = pp->p_offset; 347*30536Skarels end = pp->p_offset + pp->p_size; 348*30536Skarels for (pp = lp->d_partitions; 349*30536Skarels pp < &lp->d_partitions[lp->d_npartitions]; pp++) { 350*30536Skarels if (pp->p_offset + pp->p_size <= start || 351*30536Skarels pp->p_offset >= end) 352*30536Skarels continue; 353*30536Skarels if (pp - lp->d_partitions == RAWPART) 354*30536Skarels continue; 355*30536Skarels if (ra_info[unit].openpart & 356*30536Skarels (1 << (pp - lp->d_partitions))) 357*30536Skarels log(LOG_WARNING, 358*30536Skarels "ra%d%c: overlaps open partition (%c)\n", 359*30536Skarels unit, part + 'a', 360*30536Skarels pp - lp->d_partitions + 'a'); 36117553Skarels } 36217553Skarels } 363*30536Skarels ra_info[unit].openpart |= (1 << part); 3648576Sroot return (0); 3654743Swnj } 3664743Swnj 367*30536Skarels /* ARGSUSED */ 368*30536Skarels udclose(dev, flags) 369*30536Skarels dev_t dev; 370*30536Skarels int flags; 371*30536Skarels { 372*30536Skarels register int unit = udunit(dev); 373*30536Skarels register struct uda_softc *sc; 374*30536Skarels struct uba_ctlr *um; 375*30536Skarels int s; 376*30536Skarels 377*30536Skarels um = udminfo[unit]; 378*30536Skarels sc = &uda_softc[um->um_ctlr]; 379*30536Skarels ra_info[unit].openpart &= ~(1 << udpart(dev)); 380*30536Skarels #ifdef notdef 381*30536Skarels /* 382*30536Skarels * Should wait for I/O to complete on this partition 383*30536Skarels * even if others are open, but wait for work on blkflush(). 384*30536Skarels */ 385*30536Skarels if (ra_info[unit].openpart == 0) { 386*30536Skarels s = spl5(); 387*30536Skarels /* Can't sleep on b_actf, it might be async. */ 388*30536Skarels while (um->um_tab.b_actf) 389*30536Skarels sleep((caddr_t)&um->um_tab.b_actf, PZERO - 1); 390*30536Skarels splx(s); 391*30536Skarels ra_info[unit].rastate = CLOSED; 392*30536Skarels } 393*30536Skarels #endif 394*30536Skarels } 395*30536Skarels 3964743Swnj /* 3974743Swnj * Initialize a UDA. Set up UBA mapping registers, 3984743Swnj * initialize data structures, and start hardware 3994743Swnj * initialization sequence. 4004743Swnj */ 4014743Swnj udinit(d) 4024743Swnj int d; 4034743Swnj { 4044743Swnj register struct uda_softc *sc; 4054743Swnj register struct uda *ud; 4064743Swnj struct udadevice *udaddr; 4074743Swnj struct uba_ctlr *um; 4084743Swnj 4094743Swnj sc = &uda_softc[d]; 4104743Swnj um = udminfo[d]; 4114743Swnj um->um_tab.b_active++; 4124743Swnj ud = &uda[d]; 4134743Swnj udaddr = (struct udadevice *)um->um_addr; 4144743Swnj if (sc->sc_mapped == 0) { 4154743Swnj /* 4164743Swnj * Map the communications area and command 4174743Swnj * and response packets into Unibus address 4184743Swnj * space. 4194743Swnj */ 4204743Swnj sc->sc_ubainfo = uballoc(um->um_ubanum, (caddr_t)ud, 4214743Swnj sizeof (struct uda), 0); 4224743Swnj sc->sc_uda = (struct uda *)(sc->sc_ubainfo & 0x3ffff); 4234743Swnj sc->sc_mapped = 1; 4244743Swnj } 4254743Swnj 4264743Swnj /* 4274743Swnj * Start the hardware initialization sequence. 4284743Swnj */ 42917553Skarels 43028923Skarels if (udaburst[d] == 0) 43128923Skarels udaburst[d] = UDABURST; 43217553Skarels udaddr->udaip = 0; /* start initialization */ 43317553Skarels 43417553Skarels while((udaddr->udasa & UDA_STEP1) == 0){ 43517553Skarels if(udaddr->udasa & UDA_ERR) 43617553Skarels return(0); /* CHECK */ 43717553Skarels } 43817553Skarels udaddr->udasa=UDA_ERR|(NCMDL2<<11)|(NRSPL2<<8)|UDA_IE|(sc->sc_ivec/4); 4394743Swnj /* 4404743Swnj * Initialization continues in interrupt routine. 4414743Swnj */ 4424743Swnj sc->sc_state = S_STEP1; 4434743Swnj sc->sc_credits = 0; 44417553Skarels return(1); 4454743Swnj } 4464743Swnj 447*30536Skarels /* 448*30536Skarels * Initialize a drive: 449*30536Skarels * bring on line and read in pack label. 450*30536Skarels */ 451*30536Skarels rainit(ui, flags) 452*30536Skarels register struct uba_device *ui; 453*30536Skarels { 454*30536Skarels register struct mscp *mp; 455*30536Skarels register struct buf *bp; 456*30536Skarels register struct disklabel *lp; 457*30536Skarels register struct uda_softc *sc; 458*30536Skarels register unit = ui->ui_unit; 459*30536Skarels struct disklabel *dlp; 460*30536Skarels struct udadevice *udaddr; 461*30536Skarels int s, i, error = 0; 462*30536Skarels extern int cold; 463*30536Skarels 464*30536Skarels lp = &udlabel[unit]; 465*30536Skarels sc = &uda_softc[ui->ui_ctlr]; 466*30536Skarels 467*30536Skarels /* check to see if the device is really there. */ 468*30536Skarels /* this code was taken from Fred Canters 11 driver */ 469*30536Skarels udaddr = (struct udadevice *) ui->ui_mi->um_addr; 470*30536Skarels 471*30536Skarels ra_info[unit].rastate = WANTOPEN; 472*30536Skarels s = spl5(); 473*30536Skarels while(0 ==(mp = udgetcp(ui->ui_mi))){ 474*30536Skarels uda_cp_wait++; 475*30536Skarels sleep((caddr_t)&uda_cp_wait,PSWP+1); 476*30536Skarels uda_cp_wait--; 477*30536Skarels } 478*30536Skarels mp->mscp_opcode = M_OP_ONLIN; 479*30536Skarels mp->mscp_unit = ui->ui_slave; 480*30536Skarels /* need to sleep on something */ 481*30536Skarels mp->mscp_cmdref = (long) & ra_info[unit].ratype; 482*30536Skarels #ifdef DEBUG 483*30536Skarels printd("uda: bring unit %d online\n",unit); 484*30536Skarels #endif 485*30536Skarels *((long *) mp->mscp_dscptr ) |= UDA_OWN | UDA_INT ; 486*30536Skarels i = udaddr->udaip; 487*30536Skarels #ifdef lint 488*30536Skarels i = i; 489*30536Skarels #endif 490*30536Skarels /* make sure we wake up */ 491*30536Skarels if (cold) { 492*30536Skarels (void) splx(s); 493*30536Skarels for (i = 10*1000; ra_info[unit].rastate == WANTOPEN && --i; ) 494*30536Skarels DELAY(1000); 495*30536Skarels } else { 496*30536Skarels timeout(wakeup,(caddr_t) mp->mscp_cmdref,10 * hz); 497*30536Skarels sleep((caddr_t) mp->mscp_cmdref,PSWP+1); /*wakeup in udrsp() */ 498*30536Skarels (void) splx(s); 499*30536Skarels } 500*30536Skarels if (ra_info[unit].rastate != OPENRAW) 501*30536Skarels return (EIO); 502*30536Skarels 503*30536Skarels if (flags & O_NDELAY) 504*30536Skarels return (0); 505*30536Skarels ra_info[unit].rastate = RDLABEL; 506*30536Skarels /* 507*30536Skarels * Set up default sizes until we've read the label, 508*30536Skarels * or longer if there isn't one there. 509*30536Skarels */ 510*30536Skarels lp->d_secsize = DEV_BSIZE; 511*30536Skarels lp->d_secperunit = ra_info[unit].radsize; 512*30536Skarels lp->d_npartitions = 1; 513*30536Skarels lp->d_partitions[0].p_size = lp->d_secperunit; 514*30536Skarels lp->d_partitions[0].p_offset = 0; 515*30536Skarels /* 516*30536Skarels * Read pack label. 517*30536Skarels */ 518*30536Skarels bp = geteblk(DEV_BSIZE); /* max sector size */ 519*30536Skarels bp->b_dev = udminor(unit, 0); 520*30536Skarels bp->b_blkno = LABELSECTOR; 521*30536Skarels bp->b_bcount = DEV_BSIZE; 522*30536Skarels bp->b_flags = B_BUSY | B_READ; 523*30536Skarels udstrategy(bp); 524*30536Skarels biowait(bp); 525*30536Skarels if (bp->b_flags & B_ERROR) { 526*30536Skarels error = u.u_error; /* XXX */ 527*30536Skarels u.u_error = 0; 528*30536Skarels ra_info[unit].rastate = CLOSED; 529*30536Skarels goto done; 530*30536Skarels } 531*30536Skarels 532*30536Skarels dlp = (struct disklabel *)(bp->b_un.b_addr + LABELOFFSET); 533*30536Skarels if (dlp->d_magic == DISKMAGIC && 534*30536Skarels dlp->d_magic2 == DISKMAGIC && dkcksum(dlp) == 0) { 535*30536Skarels *lp = *dlp; 536*30536Skarels ra_info[unit].rastate = OPEN; 537*30536Skarels } else { 538*30536Skarels log(LOG_ERR, "ra%d: no disk label\n", unit); 539*30536Skarels #ifdef COMPAT_42 540*30536Skarels if (udmaptype(unit, lp)) 541*30536Skarels ra_info[unit].rastate = OPEN; 542*30536Skarels else 543*30536Skarels #endif 544*30536Skarels ra_info[unit].rastate = OPENRAW; 545*30536Skarels } 546*30536Skarels done: 547*30536Skarels brelse(bp); 548*30536Skarels return (error); 549*30536Skarels } 550*30536Skarels 5514743Swnj udstrategy(bp) 5524743Swnj register struct buf *bp; 5534743Swnj { 5544743Swnj register struct uba_device *ui; 5554743Swnj register struct uba_ctlr *um; 5564743Swnj register struct buf *dp; 557*30536Skarels register struct disklabel *lp; 5584743Swnj register int unit; 559*30536Skarels struct uda_softc *sc; 560*30536Skarels int xunit = udpart(bp->b_dev); 5614743Swnj daddr_t sz, maxsz; 5625434Sroot int s; 5634743Swnj 56424742Sbloom unit = udunit(bp->b_dev); 56526372Skarels if (unit >= NRA) { 56624742Sbloom bp->b_error = ENXIO; 5674743Swnj goto bad; 56824742Sbloom } 5694743Swnj ui = uddinfo[unit]; 570*30536Skarels lp = &udlabel[unit]; 571*30536Skarels sc = &uda_softc[ui->ui_ctlr]; 5724743Swnj um = ui->ui_mi; 573*30536Skarels if (ui == 0 || ui->ui_alive == 0 || ra_info[unit].rastate == CLOSED) { 57424742Sbloom bp->b_error = ENXIO; 5754743Swnj goto bad; 57624742Sbloom } 577*30536Skarels if (ra_info[unit].rastate < OPEN) 578*30536Skarels goto q; 579*30536Skarels if ((ra_info[unit].openpart & (1 << xunit)) == 0) { 580*30536Skarels bp->b_error = ENODEV; 581*30536Skarels goto bad; 582*30536Skarels } 583*30536Skarels maxsz = lp->d_partitions[xunit].p_size; 584*30536Skarels sz = (bp->b_bcount + DEV_BSIZE - 1) >> DEV_BSHIFT; 585*30536Skarels if (bp->b_blkno < 0 || bp->b_blkno + sz > maxsz) { 58624787Skarels if (bp->b_blkno == maxsz) { 58724787Skarels bp->b_resid = bp->b_bcount; 588*30536Skarels goto done; 58924787Skarels } 590*30536Skarels sz = maxsz - bp->b_blkno; 591*30536Skarels if (sz <= 0) { 592*30536Skarels bp->b_error = EINVAL; 593*30536Skarels goto bad; 594*30536Skarels } 595*30536Skarels bp->b_bcount = sz << DEV_BSHIFT; 59624742Sbloom } 597*30536Skarels q: 5985434Sroot s = spl5(); 5994743Swnj /* 6004743Swnj * Link the buffer onto the drive queue 6014743Swnj */ 6024743Swnj dp = &udutab[ui->ui_unit]; 6034743Swnj if (dp->b_actf == 0) 6044743Swnj dp->b_actf = bp; 6054743Swnj else 6064743Swnj dp->b_actl->av_forw = bp; 6074743Swnj dp->b_actl = bp; 6084743Swnj bp->av_forw = 0; 6094743Swnj /* 6104743Swnj * Link the drive onto the controller queue 6114743Swnj */ 6124743Swnj if (dp->b_active == 0) { 6134743Swnj dp->b_forw = NULL; 6144743Swnj if (um->um_tab.b_actf == NULL) 6154743Swnj um->um_tab.b_actf = dp; 6164743Swnj else 6174743Swnj um->um_tab.b_actl->b_forw = dp; 6184743Swnj um->um_tab.b_actl = dp; 6194743Swnj dp->b_active = 1; 6204743Swnj } 6214743Swnj if (um->um_tab.b_active == 0) { 6224743Swnj #if defined(VAX750) 62312421Ssam if (cpu == VAX_750 62412421Ssam && udwtab[um->um_ctlr].av_forw == &udwtab[um->um_ctlr]) { 62517553Skarels if (um->um_ubinfo != 0) { 62617553Skarels printd("udastrat: ubinfo 0x%x\n",um->um_ubinfo); 62717553Skarels } else 6284743Swnj um->um_ubinfo = 62912421Ssam uballoc(um->um_ubanum, (caddr_t)0, 0, 6306187Ssam UBA_NEEDBDP); 6314743Swnj } 6324743Swnj #endif 6334743Swnj (void) udstart(um); 6344743Swnj } 6355434Sroot splx(s); 6364743Swnj return; 6374743Swnj 6384743Swnj bad: 6394743Swnj bp->b_flags |= B_ERROR; 64024742Sbloom done: 6414743Swnj iodone(bp); 6424743Swnj return; 6434743Swnj } 6444743Swnj 6454743Swnj udstart(um) 6464743Swnj register struct uba_ctlr *um; 6474743Swnj { 6484743Swnj register struct buf *bp, *dp; 6494743Swnj register struct mscp *mp; 6504743Swnj register struct uda_softc *sc; 6514743Swnj register struct uba_device *ui; 652*30536Skarels struct disklabel *lp; 6534743Swnj struct udadevice *udaddr; 654*30536Skarels struct uda *ud = &uda[um->um_ctlr]; 655*30536Skarels daddr_t sz; 6564743Swnj int i; 6574743Swnj 6584743Swnj sc = &uda_softc[um->um_ctlr]; 6594743Swnj 6604743Swnj loop: 6614743Swnj if ((dp = um->um_tab.b_actf) == NULL) { 662*30536Skarels 6634743Swnj um->um_tab.b_active = 0; 66417553Skarels /* Check for response ring transitions lost in the 66517553Skarels * Race condition 66617553Skarels */ 66717553Skarels for (i = sc->sc_lastrsp;; i++) { 66817553Skarels i %= NRSP; 66917553Skarels if (ud->uda_ca.ca_rspdsc[i]&UDA_OWN) 67017553Skarels break; 67117553Skarels udrsp(um, ud, sc, i); 67217553Skarels ud->uda_ca.ca_rspdsc[i] |= UDA_OWN; 67317553Skarels } 67417553Skarels sc->sc_lastrsp = i; 6756187Ssam return (0); 6764743Swnj } 6774743Swnj if ((bp = dp->b_actf) == NULL) { 6784743Swnj /* 6794743Swnj * No more requests for this drive, remove 6804743Swnj * from controller queue and look at next drive. 6814743Swnj * We know we're at the head of the controller queue. 6824743Swnj */ 6834743Swnj dp->b_active = 0; 6844743Swnj um->um_tab.b_actf = dp->b_forw; 68517553Skarels goto loop; /* Need to check for loop */ 6864743Swnj } 6874743Swnj um->um_tab.b_active++; 6884743Swnj udaddr = (struct udadevice *)um->um_addr; 6894743Swnj if ((udaddr->udasa&UDA_ERR) || sc->sc_state != S_RUN) { 6904743Swnj harderr(bp, "ra"); 69117553Skarels mprintf("Uda%d udasa %o, state %d\n",um->um_ctlr , udaddr->udasa&0xffff, sc->sc_state); 69226372Skarels (void)udinit(um->um_ctlr); 6934743Swnj /* SHOULD REQUEUE OUTSTANDING REQUESTS, LIKE UDRESET */ 6946187Ssam return (0); 6954743Swnj } 69624742Sbloom ui = uddinfo[udunit(bp->b_dev)]; 697*30536Skarels lp = &udlabel[ui->ui_unit]; 69817553Skarels if (ui->ui_flags == 0) { /* not online */ 69917553Skarels if ((mp = udgetcp(um)) == NULL){ 70017553Skarels return (0); 70117553Skarels } 7024743Swnj mp->mscp_opcode = M_OP_ONLIN; 7034743Swnj mp->mscp_unit = ui->ui_slave; 7044743Swnj dp->b_active = 2; 70517553Skarels um->um_tab.b_actf = dp->b_forw; /* remove from controller q */ 70617553Skarels #ifdef DEBUG 7074743Swnj printd("uda: bring unit %d online\n", ui->ui_slave); 70817553Skarels #endif 7094743Swnj *((long *)mp->mscp_dscptr) |= UDA_OWN|UDA_INT; 71017553Skarels if (udaddr->udasa&UDA_ERR) 71117553Skarels printf("Uda (%d) Error (%x)\n",um->um_ctlr , udaddr->udasa&0xffff); 7124743Swnj i = udaddr->udaip; 7134743Swnj goto loop; 7144743Swnj } 7154743Swnj switch (cpu) { 71624186Sbloom case VAX_8600: 7174743Swnj case VAX_780: 7184743Swnj i = UBA_NEEDBDP|UBA_CANTWAIT; 7194743Swnj break; 7204743Swnj 7214743Swnj case VAX_750: 7224743Swnj i = um->um_ubinfo|UBA_HAVEBDP|UBA_CANTWAIT; 7234743Swnj break; 7244743Swnj 7256949Ssam case VAX_730: 72627254Skridle case VAX_630: 7274743Swnj i = UBA_CANTWAIT; 7284743Swnj break; 7294743Swnj } 73024388Skarels if ((i = ubasetup(um->um_ubanum, bp, i)) == 0) 73124388Skarels return(1); 73217553Skarels if ((mp = udgetcp(um)) == NULL) { 73325653Skarels #if defined(VAX750) 73425653Skarels if (cpu == VAX_750) 73525653Skarels i &= 0xfffffff; /* mask off bdp */ 73625653Skarels #endif 73717553Skarels ubarelse(um->um_ubanum,&i); 73817553Skarels return(0); 73917553Skarels } 74017553Skarels mp->mscp_cmdref = (long)bp; /* pointer to get back */ 7414743Swnj mp->mscp_opcode = bp->b_flags&B_READ ? M_OP_READ : M_OP_WRITE; 7424743Swnj mp->mscp_unit = ui->ui_slave; 7434743Swnj mp->mscp_buffer = (i & 0x3ffff) | (((i>>28)&0xf)<<24); 7444743Swnj #if defined(VAX750) 7454743Swnj if (cpu == VAX_750) 74617553Skarels i &= 0xfffffff; /* mask off bdp */ 7474743Swnj #endif 74817553Skarels bp->b_ubinfo = i; /* save mapping info */ 749*30536Skarels i = udpart(bp->b_dev); 750*30536Skarels mp->mscp_lbn = bp->b_blkno + 751*30536Skarels lp->d_partitions[i].p_offset; 752*30536Skarels sz = (bp->b_bcount + DEV_BSIZE - 1) >> DEV_BSHIFT; 753*30536Skarels if (bp->b_blkno + sz > lp->d_partitions[i].p_size) 754*30536Skarels mp->mscp_bytecnt = (lp->d_partitions[i].p_size - bp->b_blkno) >> 755*30536Skarels DEV_BSHIFT; 756*30536Skarels else 757*30536Skarels mp->mscp_bytecnt = bp->b_bcount; 7584743Swnj *((long *)mp->mscp_dscptr) |= UDA_OWN|UDA_INT; 75917553Skarels if (udaddr->udasa&UDA_ERR) 76017553Skarels printf("Uda(%d) udasa (%x)\n",um->um_ctlr , udaddr->udasa&0xffff); 76117553Skarels i = udaddr->udaip; /* initiate polling */ 76217553Skarels dp->b_qsize++; 7634743Swnj if (ui->ui_dk >= 0) { 7644743Swnj dk_busy |= 1<<ui->ui_dk; 7654743Swnj dk_xfer[ui->ui_dk]++; 7664743Swnj dk_wds[ui->ui_dk] += bp->b_bcount>>6; 7674743Swnj } 7684743Swnj 7694743Swnj /* 7704743Swnj * Move drive to the end of the controller queue 7714743Swnj */ 7724743Swnj if (dp->b_forw != NULL) { 7734743Swnj um->um_tab.b_actf = dp->b_forw; 7744743Swnj um->um_tab.b_actl->b_forw = dp; 7754743Swnj um->um_tab.b_actl = dp; 7764743Swnj dp->b_forw = NULL; 7774743Swnj } 7784743Swnj /* 7794743Swnj * Move buffer to I/O wait queue 7804743Swnj */ 7814743Swnj dp->b_actf = bp->av_forw; 7824743Swnj dp = &udwtab[um->um_ctlr]; 7834743Swnj bp->av_forw = dp; 7844743Swnj bp->av_back = dp->av_back; 7854743Swnj dp->av_back->av_forw = bp; 7864743Swnj dp->av_back = bp; 7874743Swnj goto loop; 7884743Swnj } 7894743Swnj 7904743Swnj /* 7914743Swnj * UDA interrupt routine. 7924743Swnj */ 7934743Swnj udintr(d) 794*30536Skarels register d; 7954743Swnj { 796*30536Skarels struct uba_ctlr *um = udminfo[d]; 7974743Swnj register struct udadevice *udaddr = (struct udadevice *)um->um_addr; 7984743Swnj struct buf *bp; 7994743Swnj register int i; 8004743Swnj register struct uda_softc *sc = &uda_softc[d]; 8014743Swnj register struct uda *ud = &uda[d]; 8024743Swnj struct uda *uud; 803*30536Skarels register struct mscp *mp; 8044743Swnj 80517553Skarels #ifdef DEBUG 80617553Skarels printd10("udintr: state %d, udasa %o\n", sc->sc_state, udaddr->udasa); 80717553Skarels #endif 80827254Skridle #ifdef VAX630 80927254Skridle (void) spl5(); 81027254Skridle #endif 8114743Swnj switch (sc->sc_state) { 8124743Swnj case S_IDLE: 8134743Swnj printf("uda%d: random interrupt ignored\n", d); 8144743Swnj return; 8154743Swnj 8164743Swnj case S_STEP1: 81717553Skarels #define STEP1MASK 0174377 81817553Skarels #define STEP1GOOD (UDA_STEP2|UDA_IE|(NCMDL2<<3)|NRSPL2) 8196964Ssam if ((udaddr->udasa&STEP1MASK) != STEP1GOOD) { 8204743Swnj sc->sc_state = S_IDLE; 8216187Ssam wakeup((caddr_t)um); 8224743Swnj return; 8234743Swnj } 8244743Swnj udaddr->udasa = ((int)&sc->sc_uda->uda_ca.ca_ringbase)| 82524186Sbloom ((cpu == VAX_780) || (cpu == VAX_8600) ? UDA_PI : 0); 8264743Swnj sc->sc_state = S_STEP2; 8274743Swnj return; 8284743Swnj 8294743Swnj case S_STEP2: 83017553Skarels #define STEP2MASK 0174377 83117553Skarels #define STEP2GOOD (UDA_STEP3|UDA_IE|(sc->sc_ivec/4)) 8326964Ssam if ((udaddr->udasa&STEP2MASK) != STEP2GOOD) { 8334743Swnj sc->sc_state = S_IDLE; 8346187Ssam wakeup((caddr_t)um); 8354743Swnj return; 8364743Swnj } 8374743Swnj udaddr->udasa = ((int)&sc->sc_uda->uda_ca.ca_ringbase)>>16; 8384743Swnj sc->sc_state = S_STEP3; 8394743Swnj return; 8404743Swnj 8414743Swnj case S_STEP3: 84217553Skarels #define STEP3MASK 0174000 84317553Skarels #define STEP3GOOD UDA_STEP4 8446964Ssam if ((udaddr->udasa&STEP3MASK) != STEP3GOOD) { 8454743Swnj sc->sc_state = S_IDLE; 8466187Ssam wakeup((caddr_t)um); 8474743Swnj return; 8484743Swnj } 84917553Skarels udamicro[d] = udaddr->udasa; 850*30536Skarels log(LOG_INFO, "uda%d: version %d model %d\n", d, 851*30536Skarels udamicro[d] & 0xf, (udamicro[d] >> 4) & 0xf); 85217553Skarels /* 85317553Skarels * Requesting the error status (|= 2) 85417553Skarels * may hang older controllers. 85517553Skarels */ 85626014Skarels i = UDA_GO | (udaerror? 2 : 0); 85726014Skarels if (udaburst[d]) 85826014Skarels i |= (udaburst[d] - 1) << 2; 85926014Skarels udaddr->udasa = i; 8604743Swnj udaddr->udasa = UDA_GO; 8614743Swnj sc->sc_state = S_SCHAR; 8624743Swnj 8634743Swnj /* 8644743Swnj * Initialize the data structures. 8654743Swnj */ 8664743Swnj uud = sc->sc_uda; 8674743Swnj for (i = 0; i < NRSP; i++) { 8684743Swnj ud->uda_ca.ca_rspdsc[i] = UDA_OWN|UDA_INT| 8694743Swnj (long)&uud->uda_rsp[i].mscp_cmdref; 8704743Swnj ud->uda_rsp[i].mscp_dscptr = &ud->uda_ca.ca_rspdsc[i]; 87117553Skarels ud->uda_rsp[i].mscp_header.uda_msglen = mscp_msglen; 8724743Swnj } 8734743Swnj for (i = 0; i < NCMD; i++) { 8744743Swnj ud->uda_ca.ca_cmddsc[i] = UDA_INT| 8754743Swnj (long)&uud->uda_cmd[i].mscp_cmdref; 8764743Swnj ud->uda_cmd[i].mscp_dscptr = &ud->uda_ca.ca_cmddsc[i]; 87717553Skarels ud->uda_cmd[i].mscp_header.uda_msglen = mscp_msglen; 8784743Swnj } 8794743Swnj bp = &udwtab[d]; 8804743Swnj bp->av_forw = bp->av_back = bp; 88117553Skarels sc->sc_lastcmd = 1; 8824743Swnj sc->sc_lastrsp = 0; 88317553Skarels mp = &uda[um->um_ctlr].uda_cmd[0]; 88417553Skarels mp->mscp_unit = mp->mscp_modifier = 0; 88517553Skarels mp->mscp_flags = 0; 88617553Skarels mp->mscp_bytecnt = mp->mscp_buffer = 0; 88717553Skarels mp->mscp_errlgfl = mp->mscp_copyspd = 0; 8884743Swnj mp->mscp_opcode = M_OP_STCON; 8894743Swnj mp->mscp_cntflgs = M_CF_ATTN|M_CF_MISC|M_CF_THIS; 8904743Swnj *((long *)mp->mscp_dscptr) |= UDA_OWN|UDA_INT; 89117553Skarels i = udaddr->udaip; /* initiate polling */ 8924743Swnj return; 8934743Swnj 8944743Swnj case S_SCHAR: 8954743Swnj case S_RUN: 8964743Swnj break; 8974743Swnj 8984743Swnj default: 8994743Swnj printf("uda%d: interrupt in unknown state %d ignored\n", 9004743Swnj d, sc->sc_state); 9014743Swnj return; 9024743Swnj } 9034743Swnj 9044743Swnj if (udaddr->udasa&UDA_ERR) { 90517553Skarels printf("uda(%d): fatal error (%o)\n", d, udaddr->udasa&0xffff); 9064743Swnj udaddr->udaip = 0; 9076187Ssam wakeup((caddr_t)um); 9084743Swnj } 9094743Swnj 9104743Swnj /* 9114743Swnj * Check for a buffer purge request. 9124743Swnj */ 9134743Swnj if (ud->uda_ca.ca_bdp) { 91417553Skarels #ifdef DEBUG 9154743Swnj printd("uda: purge bdp %d\n", ud->uda_ca.ca_bdp); 91617553Skarels #endif 91726372Skarels UBAPURGE(um->um_hd->uh_uba, ud->uda_ca.ca_bdp); 9184743Swnj ud->uda_ca.ca_bdp = 0; 91917553Skarels udaddr->udasa = 0; /* signal purge complete */ 9204743Swnj } 9214743Swnj 9224743Swnj /* 9234743Swnj * Check for response ring transition. 9244743Swnj */ 9254743Swnj if (ud->uda_ca.ca_rspint) { 9264743Swnj ud->uda_ca.ca_rspint = 0; 9274743Swnj for (i = sc->sc_lastrsp;; i++) { 9284743Swnj i %= NRSP; 9294743Swnj if (ud->uda_ca.ca_rspdsc[i]&UDA_OWN) 9304743Swnj break; 9314743Swnj udrsp(um, ud, sc, i); 9324743Swnj ud->uda_ca.ca_rspdsc[i] |= UDA_OWN; 9334743Swnj } 9344743Swnj sc->sc_lastrsp = i; 9354743Swnj } 9364743Swnj 9374743Swnj /* 9384743Swnj * Check for command ring transition. 9394743Swnj */ 9404743Swnj if (ud->uda_ca.ca_cmdint) { 94117553Skarels #ifdef DEBUG 9424743Swnj printd("uda: command ring transition\n"); 94317553Skarels #endif 9444743Swnj ud->uda_ca.ca_cmdint = 0; 9454743Swnj } 94617553Skarels if(uda_cp_wait) 94726372Skarels wakeup((caddr_t)&uda_cp_wait); 9486187Ssam (void) udstart(um); 9494743Swnj } 9504743Swnj 9514743Swnj /* 9524743Swnj * Process a response packet 9534743Swnj */ 9544743Swnj udrsp(um, ud, sc, i) 9554743Swnj register struct uba_ctlr *um; 9564743Swnj register struct uda *ud; 9574743Swnj register struct uda_softc *sc; 9584743Swnj int i; 9594743Swnj { 9604743Swnj register struct mscp *mp; 961*30536Skarels register struct uba_device *ui; 962*30536Skarels register int unit; 963*30536Skarels struct buf *dp, *bp, nullbp; 9644743Swnj int st; 9654743Swnj 9664743Swnj mp = &ud->uda_rsp[i]; 96717553Skarels mp->mscp_header.uda_msglen = mscp_msglen; 96817553Skarels sc->sc_credits += mp->mscp_header.uda_credits & 0xf; /* just 4 bits?*/ 96917553Skarels if ((mp->mscp_header.uda_credits & 0xf0) > 0x10) /* Check */ 9704743Swnj return; 97117553Skarels #ifdef DEBUG 97217553Skarels printd10("udarsp, opcode 0x%x status 0x%x\n",mp->mscp_opcode,mp->mscp_status); 97317553Skarels #endif 9744743Swnj /* 9754743Swnj * If it's an error log message (datagram), 9764743Swnj * pass it on for more extensive processing. 9774743Swnj */ 97817553Skarels if ((mp->mscp_header.uda_credits & 0xf0) == 0x10) { /* check */ 9794743Swnj uderror(um, (struct mslg *)mp); 9804743Swnj return; 9814743Swnj } 9824743Swnj st = mp->mscp_status&M_ST_MASK; 98317553Skarels /* The controller interrupts as drive 0 */ 98417553Skarels /* this means that you must check for controller interrupts */ 98517553Skarels /* before you check to see if there is a drive 0 */ 98617553Skarels if((M_OP_STCON|M_OP_END) == mp->mscp_opcode){ 9874743Swnj if (st == M_ST_SUCC) 9884743Swnj sc->sc_state = S_RUN; 9894743Swnj else 9904743Swnj sc->sc_state = S_IDLE; 9914743Swnj um->um_tab.b_active = 0; 9926187Ssam wakeup((caddr_t)um); 99317553Skarels return; 99417553Skarels } 99517553Skarels if (mp->mscp_unit >= 8) 99617553Skarels return; 99717553Skarels if ((ui = udip[um->um_ctlr][mp->mscp_unit]) == 0) 99817553Skarels return; 999*30536Skarels unit = ui->ui_unit; 100017553Skarels switch (mp->mscp_opcode) { 10014743Swnj 10024743Swnj case M_OP_ONLIN|M_OP_END: 1003*30536Skarels ra_info[unit].rastatus = st; 1004*30536Skarels ra_info[unit].ratype = mp->mscp_mediaid; 1005*30536Skarels dp = &udutab[unit]; 10064743Swnj if (st == M_ST_SUCC) { 100717553Skarels /* 100817553Skarels * Link the drive onto the controller queue 100917553Skarels */ 101017553Skarels dp->b_forw = NULL; 101117553Skarels if (um->um_tab.b_actf == NULL) 101217553Skarels um->um_tab.b_actf = dp; 101317553Skarels else 101417553Skarels um->um_tab.b_actl->b_forw = dp; 101517553Skarels um->um_tab.b_actl = dp; 101617553Skarels ui->ui_flags = 1; /* mark it online */ 1017*30536Skarels ra_info[unit].radsize=(daddr_t)mp->mscp_untsize; 1018*30536Skarels ra_info[unit].rastate = OPENRAW; 101917553Skarels #ifdef DEBUG 10204743Swnj printd("uda: unit %d online\n", mp->mscp_unit); 102117553Skarels #endif 102217553Skarels #define F_to_C(x,i) ( ((x)->mscp_mediaid) >> (i*5+7) & 0x1f ? ( ( (((x)->mscp_mediaid) >>( i*5 + 7)) & 0x1f) + 'A' - 1): ' ') 102317553Skarels /* this mess decodes the Media type identifier */ 102417553Skarels #ifdef DEBUG 102517553Skarels printd("uda: unit %d online %x %c%c %c%c%c%d\n" 102617553Skarels ,mp->mscp_unit, mp->mscp_mediaid 102717553Skarels ,F_to_C(mp,4),F_to_C(mp,3),F_to_C(mp,2) 102817553Skarels ,F_to_C(mp,1),F_to_C(mp,0) 102917553Skarels ,mp->mscp_mediaid & 0x7f); 103017553Skarels #endif 103117553Skarels dp->b_active = 1; 10324743Swnj } else { 103317553Skarels if(dp->b_actf){ 103417553Skarels harderr(dp->b_actf,"ra"); 103517553Skarels } else { 103617553Skarels nullbp.b_blkno = 0; 1037*30536Skarels nullbp.b_dev = makedev(UDADEVNUM,unit); 103817553Skarels harderr(&nullbp, "ra"); 103917553Skarels } 10404743Swnj printf("OFFLINE\n"); 10414743Swnj while (bp = dp->b_actf) { 10424743Swnj dp->b_actf = bp->av_forw; 10434743Swnj bp->b_flags |= B_ERROR; 10444743Swnj iodone(bp); 10454743Swnj } 1046*30536Skarels ra_info[unit].rastate = CLOSED; 10474743Swnj } 104817553Skarels if(mp->mscp_cmdref!=NULL){/* Seems to get lost sometimes */ 104926372Skarels wakeup((caddr_t)mp->mscp_cmdref); 105017553Skarels } 10514743Swnj break; 10524743Swnj 105317553Skarels /* 105417553Skarels * The AVAILABLE ATTENTION messages occurs when the 105517553Skarels * unit becomes available after spinup, 105617553Skarels * marking the unit offline will force an online command 105717553Skarels * prior to using the unit. 105817553Skarels */ 10594743Swnj case M_OP_AVATN: 106017553Skarels #ifdef DEBUG 10614743Swnj printd("uda: unit %d attention\n", mp->mscp_unit); 106217553Skarels #endif 106317553Skarels ui->ui_flags = 0; /* it went offline and we didn't notice */ 1064*30536Skarels ra_info[unit].ratype = mp->mscp_mediaid; 10654743Swnj break; 10664743Swnj 106717553Skarels case M_OP_END: 106817553Skarels /* 106917553Skarels * An endcode without an opcode (0200) is an invalid command. 107017553Skarels * The mscp specification states that this would be a protocol 107117553Skarels * type error, such as illegal opcodes. The mscp spec. also 107217553Skarels * states that parameter error type of invalid commands should 107317553Skarels * return the normal end message for the command. This does not appear 107417553Skarels * to be the case. An invalid logical block number returned an endcode 107517553Skarels * of 0200 instead of the 0241 (read) that was expected. 107617553Skarels */ 107717553Skarels 107817553Skarels printf("endcd=%o, stat=%o\n", mp->mscp_opcode, mp->mscp_status); 107917553Skarels break; 10804743Swnj case M_OP_READ|M_OP_END: 10814743Swnj case M_OP_WRITE|M_OP_END: 10824743Swnj bp = (struct buf *)mp->mscp_cmdref; 10836964Ssam ubarelse(um->um_ubanum, (int *)&bp->b_ubinfo); 10844743Swnj /* 10854743Swnj * Unlink buffer from I/O wait queue. 10864743Swnj */ 10874743Swnj bp->av_back->av_forw = bp->av_forw; 10884743Swnj bp->av_forw->av_back = bp->av_back; 108912421Ssam #if defined(VAX750) 109025653Skarels if (cpu == VAX_750 && um->um_tab.b_active == 0 109112421Ssam && udwtab[um->um_ctlr].av_forw == &udwtab[um->um_ctlr]) { 109212421Ssam if (um->um_ubinfo == 0) 109312421Ssam printf("udintr: um_ubinfo == 0\n"); 109412421Ssam else 109512421Ssam ubarelse(um->um_ubanum, &um->um_ubinfo); 109612421Ssam } 109712421Ssam #endif 1098*30536Skarels dp = &udutab[unit]; 109917553Skarels dp->b_qsize--; 11004743Swnj if (ui->ui_dk >= 0) 110117553Skarels if (dp->b_qsize == 0) 11024743Swnj dk_busy &= ~(1<<ui->ui_dk); 11034743Swnj if (st == M_ST_OFFLN || st == M_ST_AVLBL) { 110417553Skarels ui->ui_flags = 0; /* mark unit offline */ 11054743Swnj /* 11064743Swnj * Link the buffer onto the front of the drive queue 11074743Swnj */ 11084743Swnj if ((bp->av_forw = dp->b_actf) == 0) 11094743Swnj dp->b_actl = bp; 11104743Swnj dp->b_actf = bp; 11114743Swnj /* 11124743Swnj * Link the drive onto the controller queue 11134743Swnj */ 11144743Swnj if (dp->b_active == 0) { 11154743Swnj dp->b_forw = NULL; 11164743Swnj if (um->um_tab.b_actf == NULL) 11174743Swnj um->um_tab.b_actf = dp; 11184743Swnj else 11194743Swnj um->um_tab.b_actl->b_forw = dp; 11204743Swnj um->um_tab.b_actl = dp; 11214743Swnj dp->b_active = 1; 11224743Swnj } 112312421Ssam #if defined(VAX750) 112412421Ssam if (cpu == VAX750 && um->um_ubinfo == 0) 112512421Ssam um->um_ubinfo = 112612421Ssam uballoc(um->um_ubanum, (caddr_t)0, 0, 112712421Ssam UBA_NEEDBDP); 112812421Ssam #endif 11294743Swnj return; 11304743Swnj } 11314743Swnj if (st != M_ST_SUCC) { 11324743Swnj harderr(bp, "ra"); 113317553Skarels #ifdef DEBUG 113417553Skarels printd("status %o\n", mp->mscp_status); 113517553Skarels #endif 11364743Swnj bp->b_flags |= B_ERROR; 11374743Swnj } 11384743Swnj bp->b_resid = bp->b_bcount - mp->mscp_bytecnt; 11394743Swnj iodone(bp); 11404743Swnj break; 11414743Swnj 11424743Swnj case M_OP_GTUNT|M_OP_END: 114317553Skarels #ifdef DEBUG 114417553Skarels printd("GTUNT end packet status = 0x%x media id 0x%x\n" 114517553Skarels ,st,mp->mscp_mediaid); 114617553Skarels #endif 1147*30536Skarels ra_info[unit].rastatus = st; 1148*30536Skarels ra_info[unit].ratype = mp->mscp_mediaid; 11494743Swnj break; 11504743Swnj 11514743Swnj default: 11524743Swnj printf("uda: unknown packet\n"); 115317553Skarels uderror(um, (struct mslg *)mp); 11544743Swnj } 11554743Swnj } 11564743Swnj 11574743Swnj 11584743Swnj /* 11594743Swnj * Process an error log message 11604743Swnj * 11614743Swnj * For now, just log the error on the console. 11624743Swnj * Only minimal decoding is done, only "useful" 11634743Swnj * information is printed. Eventually should 11644743Swnj * send message to an error logger. 11654743Swnj */ 11664743Swnj uderror(um, mp) 11674743Swnj register struct uba_ctlr *um; 11684743Swnj register struct mslg *mp; 11694743Swnj { 117017553Skarels register i; 117117553Skarels 117217553Skarels 117317553Skarels if(!(mp->mslg_flags & (M_LF_SUCC | M_LF_CONT))) 117417553Skarels printf("uda%d: hard error\n"); 117517553Skarels 117617553Skarels mprintf("uda%d: %s error, ", um->um_ctlr, 117717553Skarels mp->mslg_flags & ( M_LF_SUCC | M_LF_CONT ) ? "soft" : "hard"); 11784743Swnj switch (mp->mslg_format) { 11794743Swnj case M_FM_CNTERR: 118017553Skarels mprintf("controller error, event 0%o\n", mp->mslg_event); 11814743Swnj break; 11824743Swnj 11834743Swnj case M_FM_BUSADDR: 118417553Skarels mprintf("host memory access error, event 0%o, addr 0%o\n", 11859174Ssam mp->mslg_event, mp->mslg_busaddr); 11864743Swnj break; 11874743Swnj 11884743Swnj case M_FM_DISKTRN: 118917553Skarels mprintf("disk transfer error, unit %d, grp 0x%x, hdr 0x%x, event 0%o\n", 119017553Skarels mp->mslg_unit, mp->mslg_group, mp->mslg_hdr, 119117553Skarels mp->mslg_event); 11924743Swnj break; 11934743Swnj 11944743Swnj case M_FM_SDI: 119517553Skarels mprintf("SDI error, unit %d, event 0%o, hdr 0x%x\n", 119612421Ssam mp->mslg_unit, mp->mslg_event, mp->mslg_hdr); 119717553Skarels for(i = 0; i < 12;i++) 119817553Skarels mprintf("\t0x%x",mp->mslg_sdistat[i] & 0xff); 119917553Skarels mprintf("\n"); 12004743Swnj break; 12014743Swnj 12024743Swnj case M_FM_SMLDSK: 120317553Skarels mprintf("small disk error, unit %d, event 0%o, cyl %d\n", 12044743Swnj mp->mslg_unit, mp->mslg_event, mp->mslg_sdecyl); 12054743Swnj break; 12064743Swnj 12074743Swnj default: 120817553Skarels mprintf("unknown error, unit %d, format 0%o, event 0%o\n", 12094743Swnj mp->mslg_unit, mp->mslg_format, mp->mslg_event); 12104743Swnj } 12116964Ssam 12126964Ssam if (udaerror) { 12136964Ssam register long *p = (long *)mp; 12146964Ssam 12156964Ssam for (i = 0; i < mp->mslg_header.uda_msglen; i += sizeof(*p)) 12166964Ssam printf("%x ", *p++); 12176964Ssam printf("\n"); 12186964Ssam } 12194743Swnj } 12204743Swnj 12214743Swnj 12224743Swnj /* 12234743Swnj * Find an unused command packet 12244743Swnj */ 12254743Swnj struct mscp * 12264743Swnj udgetcp(um) 12274743Swnj struct uba_ctlr *um; 12284743Swnj { 12294743Swnj register struct mscp *mp; 12304743Swnj register struct udaca *cp; 12314743Swnj register struct uda_softc *sc; 12324743Swnj register int i; 123317553Skarels int s; 12344743Swnj 123517553Skarels s = spl5(); 12364743Swnj cp = &uda[um->um_ctlr].uda_ca; 12374743Swnj sc = &uda_softc[um->um_ctlr]; 123817553Skarels /* 123917553Skarels * If no credits, can't issue any commands 124017553Skarels * until some outstanding commands complete. 124117553Skarels */ 12424743Swnj i = sc->sc_lastcmd; 124317553Skarels if(((cp->ca_cmddsc[i]&(UDA_OWN|UDA_INT))==UDA_INT)&& 124417553Skarels (sc->sc_credits >= 2)) { 124517553Skarels sc->sc_credits--; /* committed to issuing a command */ 12464743Swnj cp->ca_cmddsc[i] &= ~UDA_INT; 12474743Swnj mp = &uda[um->um_ctlr].uda_cmd[i]; 12484743Swnj mp->mscp_unit = mp->mscp_modifier = 0; 12494743Swnj mp->mscp_opcode = mp->mscp_flags = 0; 12504743Swnj mp->mscp_bytecnt = mp->mscp_buffer = 0; 12514743Swnj mp->mscp_errlgfl = mp->mscp_copyspd = 0; 12524743Swnj sc->sc_lastcmd = (i + 1) % NCMD; 125317553Skarels (void) splx(s); 12544743Swnj return(mp); 12554743Swnj } 125617553Skarels (void) splx(s); 12574743Swnj return(NULL); 12584743Swnj } 12594743Swnj 12607734Sroot udread(dev, uio) 12614743Swnj dev_t dev; 12627734Sroot struct uio *uio; 12634743Swnj { 126424742Sbloom register int unit = udunit(dev); 12654743Swnj 126626372Skarels if (unit >= NRA) 12678165Sroot return (ENXIO); 12688165Sroot return (physio(udstrategy, &rudbuf[unit], dev, B_READ, minphys, uio)); 12694743Swnj } 12704743Swnj 12717845Sroot udwrite(dev, uio) 12724743Swnj dev_t dev; 12737845Sroot struct uio *uio; 12744743Swnj { 127524742Sbloom register int unit = udunit(dev); 12764743Swnj 127726372Skarels if (unit >= NRA) 12788165Sroot return (ENXIO); 12798165Sroot return (physio(udstrategy, &rudbuf[unit], dev, B_WRITE, minphys, uio)); 12804743Swnj } 12814743Swnj 12824743Swnj udreset(uban) 12834743Swnj int uban; 12844743Swnj { 12854743Swnj register struct uba_ctlr *um; 12864743Swnj register struct uba_device *ui; 12874743Swnj register struct buf *bp, *dp; 12884743Swnj register int unit; 12894743Swnj struct buf *nbp; 12904743Swnj int d; 12914743Swnj 12924743Swnj for (d = 0; d < NUDA; d++) { 12934743Swnj if ((um = udminfo[d]) == 0 || um->um_ubanum != uban || 12944743Swnj um->um_alive == 0) 12954743Swnj continue; 12964743Swnj printf(" uda%d", d); 12974743Swnj um->um_tab.b_active = 0; 12984743Swnj um->um_tab.b_actf = um->um_tab.b_actl = 0; 12994743Swnj uda_softc[d].sc_state = S_IDLE; 130017553Skarels uda_softc[d].sc_mapped = 0; /* Rich */ 130126372Skarels for (unit = 0; unit < NRA; unit++) { 13024743Swnj if ((ui = uddinfo[unit]) == 0) 13034743Swnj continue; 13044743Swnj if (ui->ui_alive == 0 || ui->ui_mi != um) 13054743Swnj continue; 13064743Swnj udutab[unit].b_active = 0; 13074743Swnj udutab[unit].b_qsize = 0; 13084743Swnj } 13094743Swnj for (bp = udwtab[d].av_forw; bp != &udwtab[d]; bp = nbp) { 13104743Swnj nbp = bp->av_forw; 13118576Sroot bp->b_ubinfo = 0; 13124743Swnj /* 13134743Swnj * Link the buffer onto the drive queue 13144743Swnj */ 131524742Sbloom dp = &udutab[udunit(bp->b_dev)]; 13164743Swnj if (dp->b_actf == 0) 13174743Swnj dp->b_actf = bp; 13184743Swnj else 13194743Swnj dp->b_actl->av_forw = bp; 13204743Swnj dp->b_actl = bp; 13214743Swnj bp->av_forw = 0; 13224743Swnj /* 13234743Swnj * Link the drive onto the controller queue 13244743Swnj */ 13254743Swnj if (dp->b_active == 0) { 13264743Swnj dp->b_forw = NULL; 13274743Swnj if (um->um_tab.b_actf == NULL) 13284743Swnj um->um_tab.b_actf = dp; 13294743Swnj else 13304743Swnj um->um_tab.b_actl->b_forw = dp; 13314743Swnj um->um_tab.b_actl = dp; 13324743Swnj dp->b_active = 1; 13334743Swnj } 13344743Swnj } 133526372Skarels (void)udinit(d); 13364743Swnj } 13374743Swnj } 13384743Swnj 133917553Skarels #define DBSIZE 32 134017553Skarels 134117553Skarels #define ca_Rspdsc ca_rspdsc[0] 134217553Skarels #define ca_Cmddsc ca_rspdsc[1] 134317553Skarels #define uda_Rsp uda_rsp[0] 134417553Skarels #define uda_Cmd uda_cmd[0] 134517553Skarels 134617553Skarels struct uda udad[NUDA]; 134717553Skarels 134817553Skarels uddump(dev) 134917553Skarels dev_t dev; 13504743Swnj { 135117553Skarels struct udadevice *udaddr; 135217553Skarels struct uda *ud_ubaddr; 135317553Skarels char *start; 135417553Skarels int num, blk, unit; 135517553Skarels int maxsz; 135617553Skarels int blkoff; 135717553Skarels register struct uba_regs *uba; 135817553Skarels register struct uba_device *ui; 135917553Skarels register struct uda *udp; 136017553Skarels register struct pte *io; 136117553Skarels register int i; 1362*30536Skarels struct disklabel *lp; 136324742Sbloom unit = udunit(dev); 136426372Skarels if (unit >= NRA) 136517553Skarels return (ENXIO); 136617553Skarels #define phys(cast, addr) ((cast)((int)addr & 0x7fffffff)) 136717553Skarels ui = phys(struct uba_device *, uddinfo[unit]); 136817553Skarels if (ui->ui_alive == 0) 136917553Skarels return (ENXIO); 137017553Skarels uba = phys(struct uba_hd *, ui->ui_hd)->uh_physuba; 137117553Skarels ubainit(uba); 137217553Skarels udaddr = (struct udadevice *)ui->ui_physaddr; 137317553Skarels DELAY(2000000); 137417553Skarels udp = phys(struct uda *, &udad[ui->ui_ctlr]); 1375*30536Skarels lp = &udlabel[unit]; 137617553Skarels 137717553Skarels num = btoc(sizeof(struct uda)) + 1; 137817553Skarels io = &uba->uba_map[NUBMREG-num]; 137917553Skarels for(i = 0; i<num; i++) 138017553Skarels *(int *)io++ = UBAMR_MRV|(btop(udp)+i); 138117553Skarels ud_ubaddr = (struct uda *)(((int)udp & PGOFSET)|((NUBMREG-num)<<9)); 138217553Skarels 138317553Skarels udaddr->udaip = 0; 138417553Skarels while ((udaddr->udasa & UDA_STEP1) == 0) 138517553Skarels if(udaddr->udasa & UDA_ERR) return(EFAULT); 138617553Skarels udaddr->udasa = UDA_ERR; 138717553Skarels while ((udaddr->udasa & UDA_STEP2) == 0) 138817553Skarels if(udaddr->udasa & UDA_ERR) return(EFAULT); 138917553Skarels udaddr->udasa = (short)&ud_ubaddr->uda_ca.ca_ringbase; 139017553Skarels while ((udaddr->udasa & UDA_STEP3) == 0) 139117553Skarels if(udaddr->udasa & UDA_ERR) return(EFAULT); 139217553Skarels udaddr->udasa = (short)(((int)&ud_ubaddr->uda_ca.ca_ringbase) >> 16); 139317553Skarels while ((udaddr->udasa & UDA_STEP4) == 0) 139417553Skarels if(udaddr->udasa & UDA_ERR) return(EFAULT); 139517553Skarels udaddr->udasa = UDA_GO; 139617553Skarels udp->uda_ca.ca_Rspdsc = (long)&ud_ubaddr->uda_Rsp.mscp_cmdref; 139717553Skarels udp->uda_ca.ca_Cmddsc = (long)&ud_ubaddr->uda_Cmd.mscp_cmdref; 139817553Skarels udp->uda_Cmd.mscp_cntflgs = 0; 139917553Skarels udp->uda_Cmd.mscp_version = 0; 140017553Skarels if (udcmd(M_OP_STCON, udp, udaddr) == 0) { 140117553Skarels return(EFAULT); 140217553Skarels } 140317553Skarels udp->uda_Cmd.mscp_unit = ui->ui_slave; 140417553Skarels if (udcmd(M_OP_ONLIN, udp, udaddr) == 0) { 140517553Skarels return(EFAULT); 140617553Skarels } 140717553Skarels 140817553Skarels num = maxfree; 140917553Skarels start = 0; 1410*30536Skarels blkoff = lp->d_partitions[udpart(dev)].p_offset; 1411*30536Skarels maxsz = lp->d_partitions[udpart(dev)].p_size; 141224212Sbloom if (dumplo < 0) 141317553Skarels return (EINVAL); 141424212Sbloom if (dumplo + num >= maxsz) 141524212Sbloom num = maxsz - dumplo; 141617553Skarels blkoff += dumplo; 141717553Skarels while (num > 0) { 141817553Skarels blk = num > DBSIZE ? DBSIZE : num; 141917553Skarels io = uba->uba_map; 142017553Skarels for (i = 0; i < blk; i++) 142117553Skarels *(int *)io++ = (btop(start)+i) | UBAMR_MRV; 142217553Skarels *(int *)io = 0; 142317553Skarels udp->uda_Cmd.mscp_lbn = btop(start) + blkoff; 142417553Skarels udp->uda_Cmd.mscp_unit = ui->ui_slave; 142517553Skarels udp->uda_Cmd.mscp_bytecnt = blk*NBPG; 142617553Skarels udp->uda_Cmd.mscp_buffer = 0; 142717553Skarels if (udcmd(M_OP_WRITE, udp, udaddr) == 0) { 142817553Skarels return(EIO); 142917553Skarels } 143017553Skarels start += blk*NBPG; 143117553Skarels num -= blk; 143217553Skarels } 143317553Skarels return (0); 14344743Swnj } 143517553Skarels 143617553Skarels 143717553Skarels udcmd(op, udp, udaddr) 143817553Skarels int op; 143917553Skarels register struct uda *udp; 144017553Skarels struct udadevice *udaddr; 144117553Skarels { 144217553Skarels int i; 144317553Skarels 144417553Skarels udp->uda_Cmd.mscp_opcode = op; 144517553Skarels udp->uda_Rsp.mscp_header.uda_msglen = mscp_msglen; 144617553Skarels udp->uda_Cmd.mscp_header.uda_msglen = mscp_msglen; 144717553Skarels udp->uda_ca.ca_Rspdsc |= UDA_OWN|UDA_INT; 144817553Skarels udp->uda_ca.ca_Cmddsc |= UDA_OWN|UDA_INT; 144917553Skarels if (udaddr->udasa&UDA_ERR) 145017553Skarels printf("Udaerror udasa (%x)\n", udaddr->udasa&0xffff); 145117553Skarels i = udaddr->udaip; 145226295Skarels #ifdef lint 145326295Skarels i = i; 145426295Skarels #endif 145517553Skarels for (;;) { 145617553Skarels if (udp->uda_ca.ca_cmdint) 145717553Skarels udp->uda_ca.ca_cmdint = 0; 145817553Skarels if (udp->uda_ca.ca_rspint) 145917553Skarels break; 146017553Skarels } 146117553Skarels udp->uda_ca.ca_rspint = 0; 146217553Skarels if (udp->uda_Rsp.mscp_opcode != (op|M_OP_END) || 146317553Skarels (udp->uda_Rsp.mscp_status&M_ST_MASK) != M_ST_SUCC) { 146417553Skarels printf("error: com %d opc 0x%x stat 0x%x\ndump ", 146517553Skarels op, 146617553Skarels udp->uda_Rsp.mscp_opcode, 146717553Skarels udp->uda_Rsp.mscp_status); 146817553Skarels return(0); 146917553Skarels } 147017553Skarels return(1); 147117553Skarels } 147217553Skarels 1473*30536Skarels udioctl(dev, cmd, data, flag) 147412511Ssam dev_t dev; 1475*30536Skarels int cmd; 1476*30536Skarels caddr_t data; 1477*30536Skarels int flag; 147812511Ssam { 147924742Sbloom int unit = udunit(dev); 1480*30536Skarels register struct disklabel *lp; 1481*30536Skarels int error = 0; 148212511Ssam 1483*30536Skarels lp = &udlabel[unit]; 1484*30536Skarels 1485*30536Skarels switch (cmd) { 1486*30536Skarels 1487*30536Skarels case DIOCGDINFO: 1488*30536Skarels *(struct disklabel *)data = *lp; 1489*30536Skarels break; 1490*30536Skarels 1491*30536Skarels case DIOCGDINFOP: 1492*30536Skarels *(struct disklabel **)data = lp; 1493*30536Skarels break; 1494*30536Skarels 1495*30536Skarels case DIOCSDINFO: 1496*30536Skarels if ((flag & FWRITE) == 0) 1497*30536Skarels error = EBADF; 1498*30536Skarels else 1499*30536Skarels *lp = *(struct disklabel *)data; 1500*30536Skarels break; 1501*30536Skarels 1502*30536Skarels case DIOCWDINFO: 1503*30536Skarels if ((flag & FWRITE) == 0) { 1504*30536Skarels error = EBADF; 1505*30536Skarels break; 1506*30536Skarels } 1507*30536Skarels { 1508*30536Skarels struct buf *bp; 1509*30536Skarels struct disklabel *dlp; 1510*30536Skarels daddr_t alt, end; 1511*30536Skarels 1512*30536Skarels *lp = *(struct disklabel *)data; 1513*30536Skarels bp = geteblk(lp->d_secsize); 1514*30536Skarels bp->b_dev = dev; 1515*30536Skarels bp->b_bcount = lp->d_secsize; 1516*30536Skarels bp->b_blkno = LABELSECTOR; 1517*30536Skarels bp->b_flags = B_READ; 1518*30536Skarels dlp = (struct disklabel *)(bp->b_un.b_addr + LABELOFFSET); 1519*30536Skarels udstrategy(bp); 1520*30536Skarels biowait(bp); 1521*30536Skarels if (bp->b_flags & B_ERROR) { 1522*30536Skarels error = u.u_error; /* XXX */ 1523*30536Skarels u.u_error = 0; 1524*30536Skarels goto bad; 1525*30536Skarels } 1526*30536Skarels *dlp = *lp; 1527*30536Skarels alt = lp->d_ncylinders * lp->d_secpercyl - lp->d_ntracks + 1; 1528*30536Skarels end = alt + 8; 1529*30536Skarels for (;;) { 1530*30536Skarels bp->b_flags = B_WRITE; 1531*30536Skarels udstrategy(bp); 1532*30536Skarels biowait(bp); 1533*30536Skarels if (bp->b_flags & B_ERROR) { 1534*30536Skarels error = u.u_error; /* XXX */ 1535*30536Skarels u.u_error = 0; 1536*30536Skarels } 1537*30536Skarels if (bp->b_blkno >= end) 1538*30536Skarels break; 1539*30536Skarels bp->b_blkno = alt; 1540*30536Skarels alt += 2; 1541*30536Skarels } 1542*30536Skarels bad: 1543*30536Skarels brelse(bp); 1544*30536Skarels } 1545*30536Skarels break; 1546*30536Skarels 1547*30536Skarels default: 1548*30536Skarels error = ENOTTY; 1549*30536Skarels break; 1550*30536Skarels } 1551*30536Skarels return (0); 1552*30536Skarels } 1553*30536Skarels 1554*30536Skarels udsize(dev) 1555*30536Skarels dev_t dev; 1556*30536Skarels { 1557*30536Skarels register int unit = udunit(dev); 1558*30536Skarels register struct uba_device *ui; 1559*30536Skarels 1560*30536Skarels if (unit >= NRA || (ui = uddinfo[unit]) == 0 || ui->ui_alive == 0 || 1561*30536Skarels ui->ui_flags == 0 || ra_info[unit].rastate != OPEN) 156212511Ssam return (-1); 1563*30536Skarels return ((int)udlabel[unit].d_partitions[udpart(dev)].p_size); 156412511Ssam } 156517553Skarels 1566*30536Skarels #ifdef COMPAT_42 1567*30536Skarels struct size { 1568*30536Skarels daddr_t nblocks; 1569*30536Skarels daddr_t blkoff; 1570*30536Skarels } ra25_sizes[8] = { 1571*30536Skarels 15884, 0, /* A=blk 0 thru 15883 */ 1572*30536Skarels 10032, 15884, /* B=blk 15884 thru 49323 */ 1573*30536Skarels -1, 0, /* C=blk 0 thru end */ 1574*30536Skarels 0, 0, /* D=blk 340670 thru 356553 */ 1575*30536Skarels 0, 0, /* E=blk 356554 thru 412489 */ 1576*30536Skarels 0, 0, /* F=blk 412490 thru end */ 1577*30536Skarels -1, 25916, /* G=blk 49324 thru 131403 */ 1578*30536Skarels 0, 0, /* H=blk 131404 thru end */ 1579*30536Skarels }, rd52_sizes[8] = { 1580*30536Skarels 15884, 0, /* A=blk 0 thru 15883 */ 1581*30536Skarels 9766, 15884, /* B=blk 15884 thru 25649 */ 1582*30536Skarels -1, 0, /* C=blk 0 thru end */ 1583*30536Skarels 0, 0, /* D=unused */ 1584*30536Skarels 0, 0, /* E=unused */ 1585*30536Skarels 0, 0, /* F=unused */ 1586*30536Skarels -1, 25650, /* G=blk 25650 thru end */ 1587*30536Skarels 0, 0, /* H=unused */ 1588*30536Skarels }, rd53_sizes[8] = { 1589*30536Skarels 15884, 0, /* A=blk 0 thru 15883 */ 1590*30536Skarels 33440, 15884, /* B=blk 15884 thru 49323 */ 1591*30536Skarels -1, 0, /* C=blk 0 thru end */ 1592*30536Skarels 0, 0, /* D=unused */ 1593*30536Skarels 33440, 0, /* E=blk 0 thru 33439 */ 1594*30536Skarels -1, 33440, /* F=blk 33440 thru end */ 1595*30536Skarels -1, 49324, /* G=blk 49324 thru end */ 1596*30536Skarels -1, 15884, /* H=blk 15884 thru end */ 1597*30536Skarels }, ra60_sizes[8] = { 1598*30536Skarels 15884, 0, /* A=sectors 0 thru 15883 */ 1599*30536Skarels 33440, 15884, /* B=sectors 15884 thru 49323 */ 1600*30536Skarels 400176, 0, /* C=sectors 0 thru 400175 */ 1601*30536Skarels 82080, 49324, /* 4.2 G => D=sectors 49324 thru 131403 */ 1602*30536Skarels 268772, 131404, /* 4.2 H => E=sectors 131404 thru 400175 */ 1603*30536Skarels 350852, 49324, /* F=sectors 49324 thru 400175 */ 1604*30536Skarels 157570, 242606, /* UCB G => G=sectors 242606 thru 400175 */ 1605*30536Skarels 193282, 49324, /* UCB H => H=sectors 49324 thru 242605 */ 1606*30536Skarels }, ra80_sizes[8] = { 1607*30536Skarels 15884, 0, /* A=sectors 0 thru 15883 */ 1608*30536Skarels 33440, 15884, /* B=sectors 15884 thru 49323 */ 1609*30536Skarels 242606, 0, /* C=sectors 0 thru 242605 */ 1610*30536Skarels 0, 0, /* D=unused */ 1611*30536Skarels 193282, 49324, /* UCB H => E=sectors 49324 thru 242605 */ 1612*30536Skarels 82080, 49324, /* 4.2 G => F=sectors 49324 thru 131403 */ 1613*30536Skarels 192696, 49910, /* G=sectors 49910 thru 242605 */ 1614*30536Skarels 111202, 131404, /* 4.2 H => H=sectors 131404 thru 242605 */ 1615*30536Skarels }, ra81_sizes[8] ={ 1616*30536Skarels /* 1617*30536Skarels * These are the new standard partition sizes for ra81's. 1618*30536Skarels * An RA_COMPAT system is compiled with D, E, and F corresponding 1619*30536Skarels * to the 4.2 partitions for G, H, and F respectively. 1620*30536Skarels */ 1621*30536Skarels #ifndef UCBRA 1622*30536Skarels 15884, 0, /* A=sectors 0 thru 15883 */ 1623*30536Skarels 66880, 16422, /* B=sectors 16422 thru 83301 */ 1624*30536Skarels 891072, 0, /* C=sectors 0 thru 891071 */ 1625*30536Skarels #ifdef RA_COMPAT 1626*30536Skarels 82080, 49324, /* 4.2 G => D=sectors 49324 thru 131403 */ 1627*30536Skarels 759668, 131404, /* 4.2 H => E=sectors 131404 thru 891071 */ 1628*30536Skarels 478582, 412490, /* 4.2 F => F=sectors 412490 thru 891071 */ 1629*30536Skarels #else 1630*30536Skarels 15884, 375564, /* D=sectors 375564 thru 391447 */ 1631*30536Skarels 307200, 391986, /* E=sectors 391986 thru 699185 */ 1632*30536Skarels 191352, 699720, /* F=sectors 699720 thru 891071 */ 1633*30536Skarels #endif RA_COMPAT 1634*30536Skarels 515508, 375564, /* G=sectors 375564 thru 891071 */ 1635*30536Skarels 291346, 83538, /* H=sectors 83538 thru 374883 */ 1636*30536Skarels 1637*30536Skarels /* 1638*30536Skarels * These partitions correspond to the sizes used by sites at Berkeley, 1639*30536Skarels * and by those sites that have received copies of the Berkeley driver 1640*30536Skarels * with deltas 6.2 or greater (11/15/83). 1641*30536Skarels */ 1642*30536Skarels #else UCBRA 1643*30536Skarels 1644*30536Skarels 15884, 0, /* A=sectors 0 thru 15883 */ 1645*30536Skarels 33440, 15884, /* B=sectors 15884 thru 49323 */ 1646*30536Skarels 891072, 0, /* C=sectors 0 thru 891071 */ 1647*30536Skarels 15884, 242606, /* D=sectors 242606 thru 258489 */ 1648*30536Skarels 307200, 258490, /* E=sectors 258490 thru 565689 */ 1649*30536Skarels 325382, 565690, /* F=sectors 565690 thru 891071 */ 1650*30536Skarels 648466, 242606, /* G=sectors 242606 thru 891071 */ 1651*30536Skarels 193282, 49324, /* H=sectors 49324 thru 242605 */ 1652*30536Skarels 1653*30536Skarels #endif UCBRA 1654*30536Skarels }; 1655*30536Skarels 1656*30536Skarels udmaptype(unit, lp) 1657*30536Skarels register unit; 1658*30536Skarels register struct disklabel *lp; 1659*30536Skarels { 1660*30536Skarels register struct size *rasizes; 1661*30536Skarels register struct partition *pp; 1662*30536Skarels register type; 1663*30536Skarels 1664*30536Skarels lp->d_secperunit = ra_info[unit].radsize; 1665*30536Skarels type = ra_info[unit].ratype & 0x7f; 1666*30536Skarels lp->d_typename[0] = 'r'; 1667*30536Skarels lp->d_typename[1] = 'a'; 1668*30536Skarels lp->d_typename[2] = '0' + type/10; 1669*30536Skarels lp->d_typename[3] = '0' + type%10; 1670*30536Skarels switch (type) { 1671*30536Skarels case 25: 1672*30536Skarels rasizes = ra25_sizes; 1673*30536Skarels lp->d_nsectors = 42; 1674*30536Skarels lp->d_ntracks = 4; 1675*30536Skarels lp->d_ncylinders = 302; 1676*30536Skarels break; 1677*30536Skarels case 52: 1678*30536Skarels lp->d_typename[1] = 'd'; 1679*30536Skarels rasizes = rd52_sizes; 1680*30536Skarels lp->d_nsectors = 18; 1681*30536Skarels lp->d_ntracks = 7; 1682*30536Skarels lp->d_ncylinders = 480; 1683*30536Skarels break; 1684*30536Skarels case 53: 1685*30536Skarels rasizes = rd53_sizes; 1686*30536Skarels lp->d_typename[1] = 'd'; 1687*30536Skarels lp->d_nsectors = 18; 1688*30536Skarels lp->d_ntracks = 8; 1689*30536Skarels lp->d_ncylinders = 963; 1690*30536Skarels break; 1691*30536Skarels case 60: 1692*30536Skarels rasizes = ra60_sizes; 1693*30536Skarels lp->d_nsectors = 42; 1694*30536Skarels lp->d_ntracks = 4; 1695*30536Skarels lp->d_ncylinders = 2382; 1696*30536Skarels break; 1697*30536Skarels case 80: 1698*30536Skarels rasizes = ra80_sizes; 1699*30536Skarels lp->d_nsectors = 31; 1700*30536Skarels lp->d_ntracks = 14; 1701*30536Skarels lp->d_ncylinders = 559; 1702*30536Skarels break; 1703*30536Skarels case 81: 1704*30536Skarels rasizes = ra81_sizes; 1705*30536Skarels lp->d_nsectors = 51; 1706*30536Skarels lp->d_ntracks = 14; 1707*30536Skarels lp->d_ncylinders = 1248; 1708*30536Skarels break; 1709*30536Skarels default: 1710*30536Skarels printf("Don't have a partition table for an ra%d\n", type); 1711*30536Skarels lp->d_npartitions = 1; 1712*30536Skarels lp->d_partitions[0].p_offset = 0; 1713*30536Skarels lp->d_partitions[0].p_size = lp->d_secperunit; 1714*30536Skarels return (0); 1715*30536Skarels } 1716*30536Skarels lp->d_npartitions = 8; 1717*30536Skarels lp->d_secpercyl = lp->d_nsectors * lp->d_ntracks; 1718*30536Skarels for (pp = lp->d_partitions; pp < &lp->d_partitions[8]; 1719*30536Skarels pp++, rasizes++) { 1720*30536Skarels pp->p_offset = rasizes->blkoff; 1721*30536Skarels if ((pp->p_size = rasizes->nblocks) == (u_long)-1) 1722*30536Skarels pp->p_size = ra_info[unit].radsize - rasizes->blkoff; 1723*30536Skarels } 1724*30536Skarels return (1); 1725*30536Skarels } 1726*30536Skarels #endif COMPAT_42 172712511Ssam #endif 1728