1*23328Smckusick /* 2*23328Smckusick * Copyright (c) 1982 Regents of the University of California. 3*23328Smckusick * All rights reserved. The Berkeley software License Agreement 4*23328Smckusick * specifies the terms and conditions for redistribution. 5*23328Smckusick * 6*23328Smckusick * @(#)idc.c 6.6 (Berkeley) 06/08/85 7*23328Smckusick */ 86941Ssam 96941Ssam #include "rb.h" 106941Ssam #if NIDC > 0 118569Sroot int idcdebug = 0; 128569Sroot #define printd if(idcdebug)printf 138569Sroot int idctrb[1000]; 148569Sroot int *trp = idctrb; 158608Sroot #define trace(a,b) {*trp++ = *(int*)a; *trp++ = (int)b; if(trp>&idctrb[998])trp=idctrb;} 166941Ssam /* 176941Ssam * IDC (RB730) disk driver 186941Ssam * 196941Ssam * There can only ever be one IDC on a machine, 206941Ssam * and only on a VAX-11/730. We take advantage 216941Ssam * of that to simplify the driver. 226941Ssam * 236941Ssam * TODO: 246941Ssam * ecc 256941Ssam */ 269774Ssam #include "../machine/pte.h" 279774Ssam 2817073Sbloom #include "param.h" 2917073Sbloom #include "systm.h" 3017073Sbloom #include "buf.h" 3117073Sbloom #include "conf.h" 3217073Sbloom #include "dir.h" 3317073Sbloom #include "user.h" 3417073Sbloom #include "map.h" 3517073Sbloom #include "vm.h" 3617073Sbloom #include "dk.h" 3717073Sbloom #include "cmap.h" 3817073Sbloom #include "dkbad.h" 3917073Sbloom #include "uio.h" 4017073Sbloom #include "kernel.h" 4118316Sralph #include "syslog.h" 426941Ssam 438475Sroot #include "../vax/cpu.h" 4417073Sbloom #include "ubareg.h" 4517073Sbloom #include "ubavar.h" 4617073Sbloom #include "idcreg.h" 476941Ssam 486941Ssam struct idc_softc { 496941Ssam int sc_bcnt; /* number of bytes to transfer */ 506941Ssam int sc_resid; /* total number of bytes to transfer */ 516941Ssam int sc_ubaddr; /* Unibus address of data */ 526941Ssam short sc_unit; /* unit doing transfer */ 536941Ssam short sc_softas; /* software attention summary bits */ 546941Ssam union idc_dar { 556941Ssam long dar_l; 566941Ssam u_short dar_w[2]; 576941Ssam u_char dar_b[4]; 586941Ssam } sc_un; /* prototype disk address register */ 596941Ssam } idc_softc; 606941Ssam 616941Ssam #define dar_dar dar_l /* the whole disk address */ 626941Ssam #define dar_cyl dar_w[1] /* cylinder address */ 636941Ssam #define dar_trk dar_b[1] /* track */ 646941Ssam #define dar_sect dar_b[0] /* sector */ 656941Ssam #define sc_dar sc_un.dar_dar 666941Ssam #define sc_cyl sc_un.dar_cyl 676941Ssam #define sc_trk sc_un.dar_trk 686941Ssam #define sc_sect sc_un.dar_sect 696941Ssam 706941Ssam /* THIS SHOULD BE READ OFF THE PACK, PER DRIVE */ 716941Ssam struct size { 726941Ssam daddr_t nblocks; 736941Ssam int cyloff; 746941Ssam } rb02_sizes[8] ={ 756941Ssam 15884, 0, /* A=cyl 0 thru 399 */ 766941Ssam 4480, 400, /* B=cyl 400 thru 510 */ 776941Ssam 20480, 0, /* C=cyl 0 thru 511 */ 786941Ssam 0, 0, 796941Ssam 0, 0, 806941Ssam 0, 0, 816941Ssam 0, 0, 826941Ssam 0, 0, 836941Ssam }, rb80_sizes[8] ={ 846941Ssam 15884, 0, /* A=cyl 0 thru 36 */ 856941Ssam 33440, 37, /* B=cyl 37 thru 114 */ 866941Ssam 242606, 0, /* C=cyl 0 thru 558 */ 876941Ssam 0, 0, 886941Ssam 0, 0, 896941Ssam 0, 0, 906941Ssam 82080, 115, /* G=cyl 115 thru 304 */ 916941Ssam 110143, 305, /* H=cyl 305 thru 558 */ 926941Ssam }; 936941Ssam /* END OF STUFF WHICH SHOULD BE READ IN PER DISK */ 946941Ssam 956941Ssam int idcprobe(), idcslave(), idcattach(), idcdgo(), idcintr(); 966941Ssam struct uba_ctlr *idcminfo[NIDC]; 976941Ssam struct uba_device *idcdinfo[NRB]; 986941Ssam 996941Ssam u_short idcstd[] = { 0174400, 0}; 1006941Ssam struct uba_driver idcdriver = 1016941Ssam { idcprobe, idcslave, idcattach, idcdgo, idcstd, "rb", idcdinfo, "idc", idcminfo, 0 }; 1026941Ssam struct buf idcutab[NRB]; 1036941Ssam union idc_dar idccyl[NRB]; 1046941Ssam 1056941Ssam struct idcst { 1066941Ssam short nbps; 1076941Ssam short nsect; 1086941Ssam short ntrak; 1096941Ssam short nspc; 1106941Ssam short ncyl; 1116941Ssam struct size *sizes; 1126941Ssam } idcst[] = { 1136941Ssam 256, NRB02SECT, NRB02TRK, NRB02SECT*NRB02TRK, NRB02CYL, rb02_sizes, 1146941Ssam 512, NRB80SECT, NRB80TRK, NRB80SECT*NRB80TRK, NRB80CYL, rb80_sizes, 1156941Ssam }; 1166941Ssam 1176941Ssam struct buf ridcbuf[NRB]; 1186941Ssam 1196941Ssam #define b_cylin b_resid 1206941Ssam 1216941Ssam #ifdef INTRLVE 1226941Ssam daddr_t dkblock(); 1236941Ssam #endif 1246941Ssam 1256941Ssam int idcwstart, idcwticks, idcwatch(); 1266941Ssam 1278608Sroot /*ARGSUSED*/ 1286941Ssam idcprobe(reg) 1296941Ssam caddr_t reg; 1306941Ssam { 1316941Ssam register int br, cvec; 1326941Ssam register struct idcdevice *idcaddr; 1336941Ssam 1346941Ssam #ifdef lint 1356941Ssam br = 0; cvec = br; br = cvec; 1366941Ssam #endif 1376941Ssam idcaddr = (struct idcdevice *)((caddr_t)uba_hd[0].uh_uba + 0x200); 1386941Ssam idcaddr->idccsr = IDC_ATTN|IDC_IE; 1396941Ssam while ((idcaddr->idccsr & IDC_CRDY) == 0) 1406941Ssam ; 1416941Ssam idcaddr->idccsr = IDC_ATTN|IDC_CRDY; 1427414Skre return (sizeof (struct idcdevice)); 1436941Ssam } 1446941Ssam 1458608Sroot /*ARGSUSED*/ 1466941Ssam idcslave(ui, reg) 1476941Ssam struct uba_device *ui; 1486941Ssam caddr_t reg; 1496941Ssam { 1506941Ssam register struct idcdevice *idcaddr; 1516941Ssam register int i; 1526941Ssam 1536941Ssam idcaddr = (struct idcdevice *)((caddr_t)uba_hd[0].uh_uba + 0x200); 1546941Ssam ui->ui_type = 0; 1556941Ssam idcaddr->idcmpr = IDCGS_GETSTAT; 1566941Ssam idcaddr->idccsr = IDC_GETSTAT|(ui->ui_slave<<8); 1578721Sroot (void) idcwait(idcaddr, 0); 1586941Ssam i = idcaddr->idcmpr; 1596941Ssam idcaddr->idccsr = IDC_CRDY|(1<<(ui->ui_slave+16)); 1608721Sroot (void) idcwait(idcaddr, 0); 16119914Sedward /* read header to synchronize microcode */ 16219914Sedward idcaddr->idccsr = (ui->ui_slave<<8)|IDC_RHDR; 16319914Sedward (void) idcwait(idcaddr, 0); 16419914Sedward i = idcaddr->idcmpr; /* read header word 1 */ 16519914Sedward i = idcaddr->idcmpr; /* read header word 2 */ 1668608Sroot #ifdef lint 16719914Sedward i = i; 1688608Sroot #endif 16919914Sedward if ((idcaddr->idccsr & (IDC_ERR|IDC_R80)) == IDC_R80) 1706941Ssam ui->ui_type = 1; 17119914Sedward else if ((idcaddr->idccsr & (IDC_DE|IDC_R80)) == 0) 17217558Skarels /* 17317558Skarels * RB02 may not have pack spun up, just look for drive error. 17417558Skarels */ 17519914Sedward ui->ui_type = 0; 17619914Sedward else 17719914Sedward return (0); 1786941Ssam return (1); 1796941Ssam } 1806941Ssam 1816941Ssam idcattach(ui) 1826941Ssam register struct uba_device *ui; 1836941Ssam { 1846941Ssam 1856941Ssam /* 1866941Ssam * Fix all addresses to correspond 1876941Ssam * to the "real" IDC address. 1886941Ssam */ 1896941Ssam ui->ui_mi->um_addr = ui->ui_addr = (caddr_t)uba_hd[0].uh_uba + 0x200; 1906941Ssam ui->ui_physaddr = (caddr_t)uba_hd[0].uh_physuba + 0x200; 1916941Ssam if (idcwstart == 0) { 1926941Ssam timeout(idcwatch, (caddr_t)0, hz); 1936941Ssam idcwstart++; 1946941Ssam } 1956941Ssam if (ui->ui_dk >= 0) 1966941Ssam if (ui->ui_type) 1976941Ssam dk_mspw[ui->ui_dk] = 1.0 / (60 * NRB80SECT * 256); 1986941Ssam else 1996941Ssam dk_mspw[ui->ui_dk] = 1.0 / (60 * NRB02SECT * 128); 2006941Ssam idccyl[ui->ui_unit].dar_dar = -1; 2016941Ssam ui->ui_flags = 0; 2026941Ssam } 2038569Sroot 2048569Sroot idcopen(dev) 2058569Sroot dev_t dev; 2068569Sroot { 2078569Sroot register int unit = minor(dev) >> 3; 2088569Sroot register struct uba_device *ui; 2098569Sroot 2108569Sroot if (unit >= NRB || (ui = idcdinfo[unit]) == 0 || ui->ui_alive == 0) 2118569Sroot return (ENXIO); 2128569Sroot return (0); 2138569Sroot } 2146941Ssam 2156941Ssam idcstrategy(bp) 2166941Ssam register struct buf *bp; 2176941Ssam { 2186941Ssam register struct uba_device *ui; 2196941Ssam register struct idcst *st; 2206941Ssam register int unit; 2216941Ssam register struct buf *dp; 2226941Ssam int xunit = minor(bp->b_dev) & 07; 2236941Ssam long bn, sz; 2246941Ssam 2256941Ssam sz = (bp->b_bcount+511) >> 9; 2266941Ssam unit = dkunit(bp); 2276941Ssam if (unit >= NRB) 2286941Ssam goto bad; 2296941Ssam ui = idcdinfo[unit]; 2306941Ssam if (ui == 0 || ui->ui_alive == 0) 2316941Ssam goto bad; 2326941Ssam st = &idcst[ui->ui_type]; 2336941Ssam if (bp->b_blkno < 0 || 2346941Ssam (bn = dkblock(bp))+sz > st->sizes[xunit].nblocks) 2356941Ssam goto bad; 2366941Ssam if (ui->ui_type == 0) 2376941Ssam bn *= 2; 2386941Ssam bp->b_cylin = bn/st->nspc + st->sizes[xunit].cyloff; 2396941Ssam (void) spl5(); 2408608Sroot trace("strt",bp); 2416941Ssam dp = &idcutab[ui->ui_unit]; 2426941Ssam disksort(dp, bp); 2436941Ssam if (dp->b_active == 0) { 2448608Sroot trace("!act",dp); 2456941Ssam (void) idcustart(ui); 2466941Ssam bp = &ui->ui_mi->um_tab; 2476941Ssam if (bp->b_actf && bp->b_active == 0) 2486941Ssam (void) idcstart(ui->ui_mi); 2496941Ssam } 2506941Ssam (void) spl0(); 2516941Ssam return; 2526941Ssam 2536941Ssam bad: 2546941Ssam bp->b_flags |= B_ERROR; 2556941Ssam iodone(bp); 2566941Ssam return; 2576941Ssam } 2586941Ssam 2596941Ssam idcustart(ui) 2606941Ssam register struct uba_device *ui; 2616941Ssam { 2626941Ssam register struct buf *bp, *dp; 2636941Ssam register struct uba_ctlr *um; 2646941Ssam register struct idcdevice *idcaddr; 2656941Ssam register struct idcst *st; 2666941Ssam union idc_dar cyltrk; 2676941Ssam daddr_t bn; 2686941Ssam int unit; 2696941Ssam 2706941Ssam if (ui == 0) 2716941Ssam return (0); 2726941Ssam dk_busy &= ~(1<<ui->ui_dk); 2736941Ssam dp = &idcutab[ui->ui_unit]; 2746941Ssam um = ui->ui_mi; 2756941Ssam unit = ui->ui_slave; 2768608Sroot trace("ust", dp); 2776941Ssam idcaddr = (struct idcdevice *)um->um_addr; 2786941Ssam if (um->um_tab.b_active) { 2796941Ssam idc_softc.sc_softas |= 1<<unit; 2808608Sroot trace("umac",idc_softc.sc_softas); 2816941Ssam return (0); 2826941Ssam } 2836941Ssam if ((bp = dp->b_actf) == NULL) { 2848608Sroot trace("!bp",0); 2856941Ssam return (0); 2866941Ssam } 2876941Ssam if (dp->b_active) { 2888608Sroot trace("dpac",dp->b_active); 2896941Ssam goto done; 2906941Ssam } 2916941Ssam dp->b_active = 1; 2926941Ssam /* CHECK DRIVE READY? */ 2936941Ssam bn = dkblock(bp); 2948608Sroot trace("seek", bn); 2956941Ssam if (ui->ui_type == 0) 2966941Ssam bn *= 2; 2976941Ssam st = &idcst[ui->ui_type]; 2986941Ssam cyltrk.dar_cyl = bp->b_cylin; 2996941Ssam cyltrk.dar_trk = (bn / st->nsect) % st->ntrak; 3006941Ssam cyltrk.dar_sect = 0; 3016941Ssam printd("idcustart, unit %d, cyltrk 0x%x\n", unit, cyltrk.dar_dar); 3026941Ssam /* 3036941Ssam * If on cylinder, no need to seek. 3046941Ssam */ 3056941Ssam if (cyltrk.dar_dar == idccyl[ui->ui_unit].dar_dar) 3066941Ssam goto done; 3076941Ssam /* 3086941Ssam * RB80 can change heads (tracks) just by loading 3096941Ssam * the disk address register, perform optimization 3106941Ssam * here instead of doing a full seek. 3116941Ssam */ 3126941Ssam if (ui->ui_type && cyltrk.dar_cyl == idccyl[ui->ui_unit].dar_cyl) { 3136941Ssam idcaddr->idccsr = IDC_CRDY|IDC_IE|IDC_SEEK|(unit<<8); 3146941Ssam idcaddr->idcdar = cyltrk.dar_dar; 3156941Ssam idccyl[ui->ui_unit].dar_dar = cyltrk.dar_dar; 3166941Ssam goto done; 3176941Ssam } 3186941Ssam /* 3196941Ssam * Need to do a full seek. Select the unit, clear 3206941Ssam * its attention bit, set the command, load the 3216941Ssam * disk address register, and then go. 3226941Ssam */ 3236941Ssam idcaddr->idccsr = 3246941Ssam IDC_CRDY|IDC_IE|IDC_SEEK|(unit<<8)|(1<<(unit+16)); 3256941Ssam idcaddr->idcdar = cyltrk.dar_dar; 3266941Ssam idccyl[ui->ui_unit].dar_dar = cyltrk.dar_dar; 3276941Ssam printd(" seek"); 3286941Ssam idcaddr->idccsr = IDC_IE|IDC_SEEK|(unit<<8); 3296941Ssam if (ui->ui_dk >= 0) { 3306941Ssam dk_busy |= 1<<ui->ui_dk; 3316941Ssam dk_seek[ui->ui_dk]++; 3326941Ssam } 3336941Ssam /* 3346941Ssam * RB80's initiate seeks very quickly. Wait for it 3356941Ssam * to come ready rather than taking the interrupt. 3366941Ssam */ 3376941Ssam if (ui->ui_type) { 3386941Ssam if (idcwait(idcaddr, 10) == 0) 3396941Ssam return (1); 3406941Ssam idcaddr->idccsr &= ~IDC_ATTN; 3416941Ssam /* has the seek completed? */ 3426941Ssam if (idcaddr->idccsr & IDC_DRDY) { 3436941Ssam printd(", drdy"); 3446941Ssam idcaddr->idccsr = 3456941Ssam IDC_CRDY|IDC_IE|IDC_SEEK|(unit<<8)|(1<<(unit+16)); 3466941Ssam goto done; 3476941Ssam } 3486941Ssam } 3496941Ssam printd(", idccsr = 0x%x\n", idcaddr->idccsr); 3506941Ssam return (1); 3516941Ssam done: 3526941Ssam if (dp->b_active != 2) { 3538608Sroot trace("!=2",dp->b_active); 3546941Ssam dp->b_forw = NULL; 3556941Ssam if (um->um_tab.b_actf == NULL) 3566941Ssam um->um_tab.b_actf = dp; 3576941Ssam else { 3588608Sroot trace("!NUL",um->um_tab.b_actl); 3596941Ssam um->um_tab.b_actl->b_forw = dp; 3606941Ssam } 3616941Ssam um->um_tab.b_actl = dp; 3626941Ssam dp->b_active = 2; 3636941Ssam } 3646941Ssam return (0); 3656941Ssam } 3666941Ssam 3676941Ssam idcstart(um) 3686941Ssam register struct uba_ctlr *um; 3696941Ssam { 3706941Ssam register struct buf *bp, *dp; 3716941Ssam register struct uba_device *ui; 3726941Ssam register struct idcdevice *idcaddr; 3736941Ssam register struct idc_softc *sc; 3746941Ssam struct idcst *st; 3756941Ssam daddr_t bn; 3766941Ssam int sn, tn, cmd; 3776941Ssam 3786941Ssam loop: 3796941Ssam if ((dp = um->um_tab.b_actf) == NULL) { 3808608Sroot trace("nodp",um); 3816941Ssam return (0); 3826941Ssam } 3836941Ssam if ((bp = dp->b_actf) == NULL) { 3848608Sroot trace("nobp", dp); 3856941Ssam um->um_tab.b_actf = dp->b_forw; 3866941Ssam goto loop; 3876941Ssam } 3886941Ssam um->um_tab.b_active = 1; 3896941Ssam ui = idcdinfo[dkunit(bp)]; 3906941Ssam bn = dkblock(bp); 3918608Sroot trace("star",bp); 3926941Ssam if (ui->ui_type == 0) 3936941Ssam bn *= 2; 3946941Ssam sc = &idc_softc; 3956941Ssam st = &idcst[ui->ui_type]; 3966941Ssam sn = bn%st->nspc; 3976941Ssam tn = sn/st->nsect; 3986941Ssam sn %= st->nsect; 3996941Ssam sc->sc_sect = sn; 4006941Ssam sc->sc_trk = tn; 4016941Ssam sc->sc_cyl = bp->b_cylin; 4026941Ssam idcaddr = (struct idcdevice *)ui->ui_addr; 4036941Ssam printd("idcstart, unit %d, dar 0x%x", ui->ui_slave, sc->sc_dar); 4046941Ssam if (bp->b_flags & B_READ) 4056941Ssam cmd = IDC_IE|IDC_READ|(ui->ui_slave<<8); 4066941Ssam else 4076941Ssam cmd = IDC_IE|IDC_WRITE|(ui->ui_slave<<8); 4086941Ssam idcaddr->idccsr = IDC_CRDY|cmd; 4096941Ssam if ((idcaddr->idccsr&IDC_DRDY) == 0) { 4106941Ssam printf("rb%d: not ready\n", dkunit(bp)); 4116941Ssam um->um_tab.b_active = 0; 4126941Ssam um->um_tab.b_errcnt = 0; 4136941Ssam dp->b_actf = bp->av_forw; 4146941Ssam dp->b_active = 0; 4156941Ssam bp->b_flags |= B_ERROR; 4166941Ssam iodone(bp); 4176941Ssam goto loop; 4186941Ssam } 4196941Ssam idccyl[ui->ui_unit].dar_dar = sc->sc_dar; 4206941Ssam idccyl[ui->ui_unit].dar_sect = 0; 4216941Ssam sn = (st->nsect - sn) * st->nbps; 4226941Ssam if (sn > bp->b_bcount) 4236941Ssam sn = bp->b_bcount; 4246941Ssam sc->sc_bcnt = sn; 4256941Ssam sc->sc_resid = bp->b_bcount; 4266941Ssam sc->sc_unit = ui->ui_slave; 4276941Ssam printd(", bcr 0x%x, cmd 0x%x\n", sn, cmd); 4286941Ssam um->um_cmd = cmd; 4296941Ssam (void) ubago(ui); 4306941Ssam return (1); 4316941Ssam } 4326941Ssam 4336941Ssam idcdgo(um) 4346941Ssam register struct uba_ctlr *um; 4356941Ssam { 4366941Ssam register struct idcdevice *idcaddr = (struct idcdevice *)um->um_addr; 4376941Ssam register struct idc_softc *sc = &idc_softc; 4386941Ssam 4396941Ssam /* 4406941Ssam * VERY IMPORTANT: must load registers in this order. 4416941Ssam */ 4426941Ssam idcaddr->idcbar = sc->sc_ubaddr = um->um_ubinfo&0x3ffff; 4436941Ssam idcaddr->idcbcr = -sc->sc_bcnt; 4446941Ssam idcaddr->idcdar = sc->sc_dar; 4456941Ssam printd("idcdgo, ubinfo 0x%x, cmd 0x%x\n", um->um_ubinfo, um->um_cmd); 4466941Ssam idcaddr->idccsr = um->um_cmd; 4478608Sroot trace("go", um); 4486941Ssam um->um_tab.b_active = 2; 4496941Ssam /*** CLEAR SPURIOUS ATTN ON R80? ***/ 4506941Ssam } 4516941Ssam 4526941Ssam idcintr(idc) 4536941Ssam int idc; 4546941Ssam { 4556941Ssam register struct uba_ctlr *um = idcminfo[idc]; 4566941Ssam register struct uba_device *ui; 4576941Ssam register struct idcdevice *idcaddr = (struct idcdevice *)um->um_addr; 4586941Ssam register struct idc_softc *sc = &idc_softc; 4596941Ssam register struct buf *bp, *dp; 4606941Ssam struct idcst *st; 4616941Ssam int unit, as, er, cmd, ds = 0; 4626941Ssam 4636941Ssam printd("idcintr, idccsr 0x%x", idcaddr->idccsr); 4646941Ssam top: 4656941Ssam idcwticks = 0; 4668608Sroot trace("intr", um->um_tab.b_active); 4676941Ssam if (um->um_tab.b_active == 2) { 4686941Ssam /* 4696941Ssam * Process a data transfer complete interrupt. 4706941Ssam */ 4716941Ssam um->um_tab.b_active = 1; 4726941Ssam dp = um->um_tab.b_actf; 4736941Ssam bp = dp->b_actf; 4746941Ssam ui = idcdinfo[dkunit(bp)]; 4756941Ssam unit = ui->ui_slave; 4766941Ssam st = &idcst[ui->ui_type]; 4776941Ssam idcaddr->idccsr = IDC_IE|IDC_CRDY|(unit<<8); 4786941Ssam if ((er = idcaddr->idccsr) & IDC_ERR) { 4796941Ssam if (er & IDC_DE) { 4806941Ssam idcaddr->idcmpr = IDCGS_GETSTAT; 4816941Ssam idcaddr->idccsr = IDC_GETSTAT|(unit<<8); 4828721Sroot (void) idcwait(idcaddr, 0); 4836941Ssam ds = idcaddr->idcmpr; 4846941Ssam idcaddr->idccsr = 4856941Ssam IDC_IE|IDC_CRDY|(1<<(unit+16)); 4866941Ssam } 4876941Ssam printd(", er 0x%x, ds 0x%x", er, ds); 4886941Ssam if (ds & IDCDS_WL) { 4896941Ssam printf("rb%d: write locked\n", dkunit(bp)); 4906941Ssam bp->b_flags |= B_ERROR; 4916941Ssam } else if (++um->um_tab.b_errcnt > 28 || er&IDC_HARD) { 4926941Ssam hard: 4936941Ssam harderr(bp, "rb"); 4946941Ssam printf("csr=%b ds=%b\n", er, IDCCSR_BITS, ds, 4956941Ssam ui->ui_type?IDCRB80DS_BITS:IDCRB02DS_BITS); 4966941Ssam bp->b_flags |= B_ERROR; 4976941Ssam } else if (er & IDC_DCK) { 4986941Ssam switch (er & IDC_ECS) { 4996941Ssam case IDC_ECS_NONE: 5006941Ssam break; 5016941Ssam case IDC_ECS_SOFT: 5026941Ssam idcecc(ui); 5036941Ssam break; 5046941Ssam case IDC_ECS_HARD: 5056941Ssam default: 5066941Ssam goto hard; 5076941Ssam } 5086941Ssam } else 5096941Ssam /* recoverable error, set up for retry */ 5106941Ssam goto seek; 5116941Ssam } 5126941Ssam if ((sc->sc_resid -= sc->sc_bcnt) != 0) { 5136941Ssam sc->sc_ubaddr += sc->sc_bcnt; 5146941Ssam /* 5156941Ssam * Current transfer is complete, have 5166941Ssam * we overflowed to the next track? 5176941Ssam */ 5186941Ssam if ((sc->sc_sect += sc->sc_bcnt/st->nbps) == st->nsect) { 5196941Ssam sc->sc_sect = 0; 5206941Ssam if (++sc->sc_trk == st->ntrak) { 5216941Ssam sc->sc_trk = 0; 5226941Ssam sc->sc_cyl++; 5236941Ssam } else if (ui->ui_type) { 5246941Ssam /* 5256941Ssam * RB80 can change heads just by 5266941Ssam * loading the disk address register. 5276941Ssam */ 5286941Ssam idcaddr->idccsr = IDC_SEEK|IDC_CRDY| 5296941Ssam IDC_IE|(unit<<8); 5306941Ssam printd(", change to track 0x%x", sc->sc_dar); 5316941Ssam idcaddr->idcdar = sc->sc_dar; 5326941Ssam idccyl[ui->ui_unit].dar_dar = sc->sc_dar; 5336941Ssam idccyl[ui->ui_unit].dar_sect = 0; 5346941Ssam goto cont; 5356941Ssam } 5366941Ssam /* 5376941Ssam * Changing tracks on RB02 or cylinders 5386941Ssam * on RB80, start a seek. 5396941Ssam */ 5406941Ssam seek: 5416941Ssam cmd = IDC_IE|IDC_SEEK|(unit<<8); 5426941Ssam idcaddr->idccsr = cmd|IDC_CRDY; 5436941Ssam idcaddr->idcdar = sc->sc_dar; 5446941Ssam printd(", seek to 0x%x\n", sc->sc_dar); 5456941Ssam idccyl[ui->ui_unit].dar_dar = sc->sc_dar; 5466941Ssam idccyl[ui->ui_unit].dar_sect = 0; 5476941Ssam sc->sc_bcnt = 0; 5486941Ssam idcaddr->idccsr = cmd; 5496941Ssam if (ui->ui_type) { 5506941Ssam if (idcwait(idcaddr, 10) == 0) 5516941Ssam return; 5526941Ssam idcaddr->idccsr &= ~IDC_ATTN; 5536941Ssam if (idcaddr->idccsr & IDC_DRDY) 5546941Ssam goto top; 5556941Ssam } 5566941Ssam } else { 5576941Ssam /* 5586941Ssam * Continue transfer on current track. 5596941Ssam */ 5606941Ssam cont: 5616941Ssam sc->sc_bcnt = (st->nsect-sc->sc_sect)*st->nbps; 5626941Ssam if (sc->sc_bcnt > sc->sc_resid) 5636941Ssam sc->sc_bcnt = sc->sc_resid; 5646941Ssam if (bp->b_flags & B_READ) 5656941Ssam cmd = IDC_IE|IDC_READ|(unit<<8); 5666941Ssam else 5676941Ssam cmd = IDC_IE|IDC_WRITE|(unit<<8); 5686941Ssam idcaddr->idccsr = cmd|IDC_CRDY; 5696941Ssam idcaddr->idcbar = sc->sc_ubaddr; 5706941Ssam idcaddr->idcbcr = -sc->sc_bcnt; 5716941Ssam idcaddr->idcdar = sc->sc_dar; 5726941Ssam printd(", continue I/O 0x%x, 0x%x\n", sc->sc_dar, sc->sc_bcnt); 5736941Ssam idcaddr->idccsr = cmd; 5746941Ssam um->um_tab.b_active = 2; 5756941Ssam } 5766941Ssam return; 5776941Ssam } 5786941Ssam /* 5796941Ssam * Entire transfer is done, clean up. 5806941Ssam */ 5816941Ssam ubadone(um); 5826941Ssam dk_busy &= ~(1 << ui->ui_dk); 5836941Ssam um->um_tab.b_active = 0; 5846941Ssam um->um_tab.b_errcnt = 0; 5856941Ssam um->um_tab.b_actf = dp->b_forw; 5866941Ssam dp->b_active = 0; 5876941Ssam dp->b_errcnt = 0; 5886941Ssam dp->b_actf = bp->av_forw; 5898608Sroot trace("done", dp); trace(&um->um_tab.b_actf, dp->b_actf); 5906941Ssam bp->b_resid = sc->sc_resid; 5916941Ssam printd(", iodone, resid 0x%x\n", bp->b_resid); 5926941Ssam iodone(bp); 5936941Ssam if (dp->b_actf) 5946941Ssam if (idcustart(ui)) 5956941Ssam return; 5966941Ssam } else if (um->um_tab.b_active == 1) { 5976941Ssam /* 5986941Ssam * Got an interrupt while setting up for a command 5996941Ssam * or doing a mid-transfer seek. Save any attentions 6006941Ssam * for later and process a mid-transfer seek complete. 6016941Ssam */ 6026941Ssam as = idcaddr->idccsr; 6036941Ssam idcaddr->idccsr = IDC_IE|IDC_CRDY|(as&IDC_ATTN); 6046941Ssam as = (as >> 16) & 0xf; 6056941Ssam unit = sc->sc_unit; 6066941Ssam sc->sc_softas |= as & ~(1<<unit); 6076941Ssam if (as & (1<<unit)) { 6086941Ssam printd(", seek1 complete"); 6096941Ssam um->um_tab.b_active = 2; 6106941Ssam goto top; 6116941Ssam } 6126941Ssam printd(", as1 %o\n", as); 6136941Ssam return; 6146941Ssam } 6156941Ssam /* 6166941Ssam * Process any seek initiated or complete interrupts. 6176941Ssam */ 6186941Ssam as = idcaddr->idccsr; 6196941Ssam idcaddr->idccsr = IDC_IE|IDC_CRDY|(as&IDC_ATTN); 6206941Ssam as = ((as >> 16) & 0xf) | sc->sc_softas; 6216941Ssam sc->sc_softas = 0; 6228608Sroot trace("as", as); 6236941Ssam printd(", as %o", as); 6246941Ssam for (unit = 0; unit < NRB; unit++) 6256941Ssam if (as & (1<<unit)) { 6266941Ssam as &= ~(1<<unit); 6276941Ssam idcaddr->idccsr = IDC_IE|IDC_CRDY|(unit<<8); 6286941Ssam ui = idcdinfo[unit]; 6296941Ssam if (ui) { 6306941Ssam printd(", attn unit %d", unit); 6316941Ssam if (idcaddr->idccsr & IDC_DRDY) 6326941Ssam if (idcustart(ui)) { 6336941Ssam sc->sc_softas = as; 6346941Ssam return; 6356941Ssam } 6366941Ssam } else { 6376941Ssam printd(", unsol. intr. unit %d", unit); 6386941Ssam } 6396941Ssam } 6406941Ssam printd("\n"); 6416941Ssam if (um->um_tab.b_actf && um->um_tab.b_active == 0) { 6428608Sroot trace("stum",um->um_tab.b_actf); 6438721Sroot (void) idcstart(um); 6446941Ssam } 6456941Ssam } 6466941Ssam 6478608Sroot idcwait(addr, n) 6486941Ssam register struct idcdevice *addr; 6498608Sroot register int n; 6506941Ssam { 6516941Ssam register int i; 6526941Ssam 6538608Sroot while (--n && (addr->idccsr & IDC_CRDY) == 0) 6546941Ssam for (i = 10; i; i--) 6556941Ssam ; 6568608Sroot return (n); 6576941Ssam } 6586941Ssam 6597728Sroot idcread(dev, uio) 6606941Ssam dev_t dev; 6617728Sroot struct uio *uio; 6626941Ssam { 6636941Ssam register int unit = minor(dev) >> 3; 6646941Ssam 6656941Ssam if (unit >= NRB) 6668161Sroot return (ENXIO); 6678161Sroot return (physio(idcstrategy, &ridcbuf[unit], dev, B_READ, minphys, uio)); 6686941Ssam } 6696941Ssam 6707834Sroot idcwrite(dev, uio) 6716941Ssam dev_t dev; 6727834Sroot struct uio *uio; 6736941Ssam { 6746941Ssam register int unit = minor(dev) >> 3; 6756941Ssam 6766941Ssam if (unit >= NRB) 6778161Sroot return (ENXIO); 6788161Sroot return (physio(idcstrategy, &ridcbuf[unit], dev, B_WRITE, minphys, uio)); 6796941Ssam } 6806941Ssam 6816941Ssam idcecc(ui) 6826941Ssam register struct uba_device *ui; 6836941Ssam { 6846941Ssam register struct idcdevice *idc = (struct idcdevice *)ui->ui_addr; 6856941Ssam register struct buf *bp = idcutab[ui->ui_unit].b_actf; 6866941Ssam register struct uba_ctlr *um = ui->ui_mi; 6876941Ssam register struct idcst *st; 6886941Ssam register int i; 6896941Ssam struct uba_regs *ubp = ui->ui_hd->uh_uba; 6906941Ssam int bit, byte, mask; 6916941Ssam caddr_t addr; 6926941Ssam int reg, npf, o; 6936941Ssam int cn, tn, sn; 6946941Ssam 6956941Ssam printf("idcecc: HELP!\n"); 6966941Ssam npf = btop(idc->idcbcr + idc_softc.sc_bcnt) - 1;; 6976941Ssam reg = btop(idc_softc.sc_ubaddr) + npf; 6986941Ssam o = (int)bp->b_un.b_addr & PGOFSET; 6996941Ssam st = &idcst[ui->ui_type]; 7006941Ssam cn = idc_softc.sc_cyl; 7016941Ssam tn = idc_softc.sc_trk; 7026941Ssam sn = idc_softc.sc_sect; 7036941Ssam um->um_tab.b_active = 1; /* Either complete or continuing... */ 70418316Sralph log(KERN_RECOV, "rb%d%c: soft ecc sn%d\n", dkunit(bp), 7056941Ssam 'a'+(minor(bp->b_dev)&07), 7066941Ssam (cn*st->ntrak + tn) * st->nsect + sn + npf); 7076941Ssam mask = idc->idceccpat; 7086941Ssam i = idc->idceccpos - 1; /* -1 makes 0 origin */ 7096941Ssam bit = i&07; 7106941Ssam i = (i&~07)>>3; 7116941Ssam byte = i + o; 7126941Ssam while (i < 512 && (int)ptob(npf)+i < idc_softc.sc_bcnt && bit > -11) { 7136941Ssam addr = ptob(ubp->uba_map[reg+btop(byte)].pg_pfnum)+ 7146941Ssam (byte & PGOFSET); 7156941Ssam putmemc(addr, getmemc(addr)^(mask<<bit)); 7166941Ssam byte++; 7176941Ssam i++; 7186941Ssam bit -= 8; 7196941Ssam } 7206941Ssam idc_softc.sc_bcnt += idc->idcbcr; 7216941Ssam um->um_tab.b_errcnt = 0; /* error has been corrected */ 7226941Ssam return; 7236941Ssam } 7246941Ssam 7256941Ssam idcreset(uban) 7266941Ssam int uban; 7276941Ssam { 7286941Ssam register struct uba_ctlr *um; 7296941Ssam register struct uba_device *ui; 7306941Ssam register unit; 7316941Ssam 7326941Ssam if ((um = idcminfo[0]) == 0 || um->um_ubanum != uban || 7336941Ssam um->um_alive == 0) 7346941Ssam return; 7356941Ssam printf(" idc0"); 7366941Ssam um->um_tab.b_active = 0; 7376941Ssam um->um_tab.b_actf = um->um_tab.b_actl = 0; 7386941Ssam if (um->um_ubinfo) { 7396941Ssam printf("<%d>", (um->um_ubinfo>>28)&0xf); 7409354Ssam um->um_ubinfo = 0; 7416941Ssam } 7426941Ssam for (unit = 0; unit < NRB; unit++) { 7436941Ssam if ((ui = idcdinfo[unit]) == 0 || ui->ui_alive == 0) 7446941Ssam continue; 7456941Ssam idcutab[unit].b_active = 0; 7466941Ssam (void) idcustart(ui); 7476941Ssam } 7486941Ssam (void) idcstart(um); 7496941Ssam } 7506941Ssam 7516941Ssam idcwatch() 7526941Ssam { 7536941Ssam register struct uba_ctlr *um; 7546941Ssam register unit; 7556941Ssam 7566941Ssam timeout(idcwatch, (caddr_t)0, hz); 7576941Ssam um = idcminfo[0]; 7586941Ssam if (um == 0 || um->um_alive == 0) 7596941Ssam return; 7606941Ssam if (um->um_tab.b_active == 0) { 7616941Ssam for (unit = 0; unit < NRB; unit++) 7626941Ssam if (idcutab[unit].b_active) 7636941Ssam goto active; 7646941Ssam idcwticks = 0; 7656941Ssam return; 7666941Ssam } 7676941Ssam active: 7686941Ssam idcwticks++; 7696941Ssam if (idcwticks >= 20) { 7706941Ssam idcwticks = 0; 7716941Ssam printf("idc0: lost interrupt\n"); 7726941Ssam idcintr(0); 7736941Ssam } 7746941Ssam } 7756941Ssam 7768608Sroot /*ARGSUSED*/ 7776941Ssam idcdump(dev) 7786941Ssam dev_t dev; 7796941Ssam { 7806941Ssam struct idcdevice *idcaddr; 7816941Ssam char *start; 78212147Sroot int num, blk, unit; 7836941Ssam struct size *sizes; 7846941Ssam register struct uba_regs *uba; 7856941Ssam register struct uba_device *ui; 7866941Ssam struct idcst *st; 78712778Ssam union idc_dar dar; 78812147Sroot int nspg; 7896941Ssam 7906941Ssam unit = minor(dev) >> 3; 7916941Ssam if (unit >= NRB) 7926941Ssam return (ENXIO); 7936941Ssam #define phys(cast, addr) ((cast)((int)addr & 0x7fffffff)) 7946941Ssam ui = phys(struct uba_device *, idcdinfo[unit]); 7956941Ssam if (ui->ui_alive == 0) 7966941Ssam return (ENXIO); 7976941Ssam uba = phys(struct uba_hd *, ui->ui_hd)->uh_physuba; 7986941Ssam ubainit(uba); 7996941Ssam idcaddr = (struct idcdevice *)ui->ui_physaddr; 80012147Sroot if (idcwait(idcaddr, 100) == 0) 80112147Sroot return (EFAULT); 80212147Sroot /* 80312147Sroot * Since we can only transfer one track at a time, and 80412147Sroot * the rl02 has 256 byte sectors, all the calculations 80512147Sroot * are done in terms of physical sectors (i.e. num and blk 80612147Sroot * are in sectors not NBPG blocks. 80712147Sroot */ 80812147Sroot st = phys(struct idcst *, &idcst[ui->ui_type]); 8096941Ssam sizes = phys(struct size *, st->sizes); 81012147Sroot if (dumplo < 0 || dumplo + maxfree >= sizes[minor(dev)&07].nblocks) 8116941Ssam return (EINVAL); 81212147Sroot nspg = NBPG / st->nbps; 81312147Sroot num = maxfree * nspg; 81412147Sroot start = 0; 81512147Sroot 8166941Ssam while (num > 0) { 8176941Ssam register struct pte *io; 8186941Ssam register int i; 8196941Ssam daddr_t bn; 8206941Ssam 82112147Sroot bn = (dumplo + btop(start)) * nspg; 82212147Sroot dar.dar_cyl = bn / st->nspc + sizes[minor(dev)&07].cyloff; 82312147Sroot bn %= st->nspc; 82412147Sroot dar.dar_trk = bn / st->nsect; 82512147Sroot dar.dar_sect = bn % st->nsect; 82612147Sroot blk = st->nsect - dar.dar_sect; 82712147Sroot if (num < blk) 82812147Sroot blk = num; 82912147Sroot 8306941Ssam io = uba->uba_map; 83112147Sroot for (i = 0; i < (blk + nspg - 1) / nspg; i++) 8326941Ssam *(int *)io++ = (btop(start)+i) | (1<<21) | UBAMR_MRV; 8336941Ssam *(int *)io = 0; 83412147Sroot 83512147Sroot idcaddr->idccsr = IDC_CRDY | IDC_SEEK | unit<<8; 83612147Sroot if ((idcaddr->idccsr&IDC_DRDY) == 0) 83712147Sroot return (EFAULT); 83812147Sroot idcaddr->idcdar = dar.dar_dar; 83912147Sroot idcaddr->idccsr = IDC_SEEK | unit << 8; 84012147Sroot while ((idcaddr->idccsr & (IDC_CRDY|IDC_DRDY)) 84112147Sroot != (IDC_CRDY|IDC_DRDY)) 84212147Sroot ; 84312147Sroot if (idcaddr->idccsr & IDC_ERR) { 84412147Sroot printf("rb%d: seek, csr=%b\n", 84512147Sroot unit, idcaddr->idccsr, IDCCSR_BITS); 8466941Ssam return (EIO); 84712147Sroot } 84812147Sroot 84912147Sroot idcaddr->idccsr = IDC_CRDY | IDC_WRITE | unit<<8; 85012147Sroot if ((idcaddr->idccsr&IDC_DRDY) == 0) 85112147Sroot return (EFAULT); 85212147Sroot idcaddr->idcbar = 0; /* start addr 0 */ 85312147Sroot idcaddr->idcbcr = - (blk * st->nbps); 85412147Sroot idcaddr->idcdar = dar.dar_dar; 85512147Sroot idcaddr->idccsr = IDC_WRITE | unit << 8; 85612147Sroot while ((idcaddr->idccsr & (IDC_CRDY|IDC_DRDY)) 85712147Sroot != (IDC_CRDY|IDC_DRDY)) 85812147Sroot ; 85912147Sroot if (idcaddr->idccsr & IDC_ERR) { 86012147Sroot printf("rb%d: write, csr=%b\n", 86112147Sroot unit, idcaddr->idccsr, IDCCSR_BITS); 86212147Sroot return (EIO); 86312147Sroot } 86412147Sroot 86512147Sroot start += blk * st->nbps; 8666941Ssam num -= blk; 8676941Ssam } 8686941Ssam return (0); 8696941Ssam } 87012503Ssam 87112503Ssam idcsize(dev) 87212503Ssam dev_t dev; 87312503Ssam { 87412503Ssam int unit = minor(dev) >> 3; 87512503Ssam struct uba_device *ui; 87612503Ssam struct idcst *st; 87712503Ssam 87812503Ssam if (unit >= NRB || (ui = idcdinfo[unit]) == 0 || ui->ui_alive == 0) 87912503Ssam return (-1); 88012503Ssam st = &idcst[ui->ui_type]; 88112503Ssam return (st->sizes[minor(dev) & 07].nblocks); 88212503Ssam } 8836941Ssam #endif 884