1*25857Ssam /* vd.c 1.3 86/01/12 */ 224004Ssam 324004Ssam #include "fsd.h" 424004Ssam #if NVD > 0 524004Ssam /* 625675Ssam * VDDC - Versabus SMD/ESMD driver. 725675Ssam */ 825675Ssam #include "../tahoe/mtpr.h" 925675Ssam #include "../tahoe/pte.h" 1024004Ssam 1125675Ssam #include "param.h" 1225675Ssam #include "buf.h" 1325675Ssam #include "cmap.h" 1425675Ssam #include "conf.h" 1525675Ssam #include "dir.h" 1625675Ssam #include "dk.h" 1725675Ssam #include "map.h" 1825675Ssam #include "systm.h" 1925675Ssam #include "user.h" 2025675Ssam #include "vmmac.h" 2125675Ssam #include "proc.h" 2225675Ssam #include "uio.h" 2324004Ssam 2425675Ssam #include "../tahoevba/vbavar.h" 2525675Ssam #define VDGENDATA 2625675Ssam #include "../tahoevba/vddcreg.h" 2725675Ssam #undef VDGENDATA 2824004Ssam 2925675Ssam #define MAX_BLOCKSIZE (MAXBPTE*NBPG) 3025675Ssam #define DUMPSIZE 64 /* controller limit */ 3124004Ssam 3224004Ssam #define VDUNIT(x) (minor(x) >> 3) 3325675Ssam #define FILSYS(x) (minor(x) & 0x07) 3425675Ssam #define PHYS(x) (vtoph((struct proc *)0, (unsigned)(x))) 3525675Ssam #define TRUE 1 3625675Ssam #define FALSE 0 3724004Ssam 3825675Ssam #define CTLR_ERROR 1 3925675Ssam #define DRIVE_ERROR 2 4025675Ssam #define HARD_DATA_ERROR 3 4125675Ssam #define SOFT_DATA_ERROR 4 4224004Ssam 4325675Ssam #define b_cylin b_resid 4425675Ssam #define b_daddr b_error 4524004Ssam 4624004Ssam struct vba_ctlr *vdminfo[NVD]; 4724004Ssam struct vba_device *vddinfo[NFSD]; 4825675Ssam int vdprobe(), vdslave(), vdattach(), vddgo(); 4925675Ssam struct vba_driver vddriver = 5025675Ssam { vdprobe, vdslave, vdattach, vddgo, vddcaddr, "smd/fsd", 5125675Ssam vddinfo, "vd", vdminfo }; 5224004Ssam 5324004Ssam /* 5425675Ssam * Per-drive state. 5525675Ssam */ 5625675Ssam typedef struct { 5725675Ssam struct buf raw_q_element; 5825675Ssam short sec_per_blk; 5925675Ssam short sec_per_cyl; 6025675Ssam char status; 6125675Ssam struct buf xfer_queue; 6225675Ssam int drive_type; 6325675Ssam fs_tab info; 6425675Ssam } unit_tab; 6524004Ssam 6624004Ssam /* 6725675Ssam * Per-controller state. 6825675Ssam */ 6925675Ssam typedef struct { 7025675Ssam char ctlr_type; /* controller type */ 7125675Ssam char *map; /* i/o page map */ 7225675Ssam char *utl; /* mapped i/o space */ 7325675Ssam u_int cur_slave:8; /* last active unit number */ 7425675Ssam u_int int_expected:1; /* expect an interupt */ 7525675Ssam u_int ctlr_started:1; /* start command was issued */ 7625675Ssam u_int overlap_seeks:1;/* should overlap seeks */ 7725675Ssam u_int off_cylinder:16;/* off cylinder bit map */ 7825675Ssam u_int unit_type[16]; /* slave types */ 7925675Ssam u_int cur_cyl[16]; /* cylinder last selected */ 8025675Ssam long cur_trk[16]; /* track last selected */ 8125675Ssam fmt_mdcb ctlr_mdcb; /* controller mdcb */ 8225675Ssam fmt_dcb ctlr_dcb; /* r/w dcb */ 8325675Ssam fmt_dcb seek_dcb[4]; /* dcbs for overlapped seeks */ 8425675Ssam /* buffer for raw/swap i/o */ 8525675Ssam char rawbuf[MAX_BLOCKSIZE]; 8625675Ssam } ctlr_tab; 8724004Ssam 8825675Ssam extern char vd0utl[]; 8925675Ssam #if NVD > 1 9025675Ssam extern char vd1utl[]; 9125675Ssam #endif 9225675Ssam #if NVD > 2 9325675Ssam extern char vd2utl[]; 9425675Ssam #endif 9525675Ssam #if NVD > 3 9625675Ssam extern char vd3utl[]; 9725675Ssam #endif 9824004Ssam 9925675Ssam #define VDCINIT(map, utl) { \ 10025675Ssam UNKNOWN, (char *)map, utl, 0, FALSE, FALSE, TRUE, 0, \ 10125675Ssam { UNKNOWN,UNKNOWN,UNKNOWN,UNKNOWN,UNKNOWN,UNKNOWN,UNKNOWN,UNKNOWN, \ 10225675Ssam UNKNOWN,UNKNOWN,UNKNOWN,UNKNOWN,UNKNOWN,UNKNOWN,UNKNOWN,UNKNOWN } \ 10325675Ssam } 10425675Ssam ctlr_tab vdctlr_info[NVD] = { 10525675Ssam VDCINIT(VD0map, vd0utl), 10625675Ssam #if NVD > 1 10725675Ssam VDCINIT(VD1map, vd1utl), 10825675Ssam #endif 10925675Ssam #if NVD > 2 11025675Ssam VDCINIT(VD2map, vd2utl), 11125675Ssam #endif 11225675Ssam #if NVD > 3 11325675Ssam VDCINIT(VD3map, vd3utl), 11425675Ssam #endif 11524004Ssam }; 11624004Ssam 11725675Ssam unit_tab vdunit_info[NFSD]; 11824004Ssam 11924004Ssam /* 12025675Ssam * See if the controller is really there; if so, initialize it. 12125675Ssam */ 122*25857Ssam vdprobe(reg, vm) 123*25857Ssam caddr_t reg; 124*25857Ssam struct vba_ctlr *vm; 12525675Ssam { 126*25857Ssam register br, cvec; /* must be r12, r11 */ 127*25857Ssam register cdr *cp = (cdr *)reg; 128*25857Ssam 129*25857Ssam if (badaddr((caddr_t)reg, 2)) 13025675Ssam return (0); 131*25857Ssam cp->cdr_reset = 0xffffffff; 13225675Ssam DELAY(1000000); 133*25857Ssam if (cp->cdr_reset != (unsigned)0xffffffff) { 13425675Ssam DELAY(1000000); 13525675Ssam } else { 136*25857Ssam cp->cdr_reserved = 0x0; 13725675Ssam DELAY(3000000); 13825675Ssam } 139*25857Ssam br = 0x17, cvec = 0xe0 + vm->um_ctlr; /* XXX */ 140*25857Ssam return (sizeof (*cp)); 14125675Ssam } 14224004Ssam 14324004Ssam /* 14425675Ssam * See if a drive is really there 14525675Ssam * Try to reset/configure the drive, then test its status. 14625675Ssam */ 14725675Ssam vdslave(vi, addr) 14825675Ssam register struct vba_device *vi; 14925675Ssam register cdr *addr; 15025675Ssam { 15125675Ssam register ctlr_tab *ci = &vdctlr_info[vi->ui_ctlr]; 15225675Ssam register unit_tab *ui = &vdunit_info[vi->ui_unit]; 15325675Ssam register fmt_mdcb *mdcb = &ci->ctlr_mdcb; 15425675Ssam register fmt_dcb *dcb = &ci->ctlr_dcb; 15525675Ssam register int type; 15624004Ssam 15725675Ssam if (ci->ctlr_type == UNKNOWN) { 15825675Ssam addr->cdr_reset = 0xffffffff; 15925675Ssam DELAY(1000000); 16025675Ssam if (addr->cdr_reset != (unsigned)0xffffffff) { 16125675Ssam ci->ctlr_type = SMDCTLR; 16225675Ssam ci->overlap_seeks = 0; 16325675Ssam DELAY(1000000); 16425675Ssam } else { 16525675Ssam ci->overlap_seeks = 1; 16625675Ssam ci->ctlr_type = SMD_ECTLR; 16725675Ssam addr->cdr_reserved = 0x0; 16825675Ssam DELAY(3000000); 16925675Ssam addr->cdr_csr = 0; 17025675Ssam addr->mdcb_tcf = AM_ENPDA; 17125675Ssam addr->dcb_tcf = AM_ENPDA; 17225675Ssam addr->trail_tcf = AM_ENPDA; 17325675Ssam addr->data_tcf = AM_ENPDA; 17425675Ssam addr->cdr_ccf = CCF_STS | XMD_32BIT | BSZ_16WRD | 17525675Ssam CCF_ENP | CCF_EPE | CCF_EDE | CCF_ECE | CCF_ERR; 17625675Ssam } 17725675Ssam if (vdnotrailer(addr, 17825675Ssam vi->ui_ctlr, vi->ui_slave, INIT, 10) & HRDERR) { 17925675Ssam printf("vd%d: init error\n", vi->ui_unit); 18025675Ssam return (0); 18125675Ssam } 18225675Ssam if (vdnotrailer(addr, 18325675Ssam vi->ui_ctlr, vi->ui_slave, DIAG, 10) & HRDERR) { 18425675Ssam printf("vd%d: diagnostic error\n", vi->ui_unit); 18525675Ssam return (0); 18625675Ssam } 18725675Ssam } 18825675Ssam /* 18925675Ssam * Seek on all drive types starting from the largest one. 19025675Ssam * a successful seek to the last sector/cylinder/track verifies 19125675Ssam * the drive type connected to this port. 19225675Ssam */ 19325675Ssam for (type = 0; type < nvddrv; type++) { 19425675Ssam /* XXX */ 19525675Ssam if (ci->ctlr_type == SMDCTLR && vdst[type].nsec != 32) 19625675Ssam continue; 19725675Ssam /* XXX */ 19825675Ssam if (!vdconfigure_drive(addr, vi->ui_ctlr, vi->ui_slave, type,0)) 19925675Ssam return (0); 20025675Ssam dcb->opcode = (short)RD; 20125675Ssam dcb->intflg = NOINT; 20225675Ssam dcb->nxtdcb = (fmt_dcb *)0; /* end of chain */ 20325675Ssam dcb->operrsta = 0; 20425675Ssam dcb->devselect = (char)(vi->ui_slave); 20525675Ssam dcb->trailcnt = (char)(sizeof (trrw) / sizeof (long)); 20625675Ssam dcb->trail.rwtrail.memadr = (char *)PHYS(ci->rawbuf); 20725675Ssam dcb->trail.rwtrail.wcount = vdst[type].secsize/sizeof(short); 20825675Ssam dcb->trail.rwtrail.disk.cylinder = vdst[type].ncyl - 2; 20925675Ssam dcb->trail.rwtrail.disk.track = vdst[type].ntrak - 1; 21025675Ssam dcb->trail.rwtrail.disk.sector = vdst[type].nsec - 1; 21125675Ssam mdcb->firstdcb = (fmt_dcb *)(PHYS(dcb)); 21225675Ssam mdcb->vddcstat = 0; 21325675Ssam VDDC_ATTENTION(addr, (fmt_mdcb *)(PHYS(mdcb)), ci->ctlr_type); 21425675Ssam POLLTILLDONE(addr, dcb, 60, ci->ctlr_type); 21525675Ssam if (vdtimeout <= 0) 21625675Ssam printf(" during probe\n"); 21725675Ssam if ((dcb->operrsta&HRDERR) == 0) 21825675Ssam break; 21925675Ssam } 22025675Ssam if (type >= nvddrv) { 22125675Ssam /* 22225675Ssam * If reached here, a drive which is not defined in the 22325675Ssam * 'vdst' tables is connected. Cannot set it's type. 22425675Ssam */ 22525675Ssam printf("vd%d: unknown drive type\n", vi->ui_unit); 22625675Ssam return (0); 22725675Ssam } 22825675Ssam ui->drive_type = type; 22925675Ssam ui->info = vdst[type]; 23025675Ssam ui->sec_per_blk = DEV_BSIZE / ui->info.secsize; 23125675Ssam vi->ui_type = type; 23225675Ssam vi->ui_dk = 1; 23325675Ssam vddriver.ud_dname = ui->info.type_name; 23425675Ssam return (1); 23524004Ssam } 23624004Ssam 23725675Ssam vdconfigure_drive(addr, ctlr, slave, type, pass) 23825675Ssam register cdr *addr; 23925675Ssam int ctlr, slave, type, pass; 24024004Ssam { 24125675Ssam register ctlr_tab *ci = &vdctlr_info[ctlr]; 24225675Ssam 24325675Ssam ci->ctlr_dcb.opcode = RSTCFG; /* command */ 24425675Ssam ci->ctlr_dcb.intflg = NOINT; 24525675Ssam ci->ctlr_dcb.nxtdcb = (fmt_dcb *)0; /* end of chain */ 24625675Ssam ci->ctlr_dcb.operrsta = 0; 24725675Ssam ci->ctlr_dcb.devselect = (char)slave; 24825675Ssam ci->ctlr_dcb.trail.rstrail.ncyl = vdst[type].ncyl; 24925675Ssam ci->ctlr_dcb.trail.rstrail.nsurfaces = vdst[type].ntrak; 25025675Ssam if (ci->ctlr_type == SMD_ECTLR) { 25125675Ssam ci->ctlr_dcb.trailcnt = (char)4; 25225675Ssam ci->ctlr_dcb.trail.rstrail.nsectors = vdst[type].nsec; 25325675Ssam ci->ctlr_dcb.trail.rstrail.slip_sec = vdst[type].nslip; 25425675Ssam } else 25525675Ssam ci->ctlr_dcb.trailcnt = (char)2; 25625675Ssam ci->ctlr_mdcb.firstdcb = (fmt_dcb *)(PHYS(&ci->ctlr_dcb)); 25725675Ssam ci->ctlr_mdcb.vddcstat = 0; 25825675Ssam VDDC_ATTENTION(addr, (fmt_mdcb *)(PHYS(&ci->ctlr_mdcb)), ci->ctlr_type); 25925675Ssam POLLTILLDONE(addr, &ci->ctlr_dcb, 5, ci->ctlr_type); 26025675Ssam if (vdtimeout <= 0) { 26125675Ssam printf(" during config\n"); 26225675Ssam return (0); 26325675Ssam } 26425675Ssam if (ci->ctlr_dcb.operrsta & HRDERR) { 26525675Ssam if ((ci->ctlr_dcb.operrsta & (NOTCYLERR|DRVNRDY)) == 0) 26625675Ssam printf("vd%d: drive %d: config error\n", ctlr, slave); 26725675Ssam else if (pass == 0) { 26825675Ssam vdstart_drive(addr, ctlr, slave); 26925675Ssam return (vdconfigure_drive(addr, ctlr, slave, type, 1)); 27025675Ssam } else if (pass == 2) 27125675Ssam return (vdconfigure_drive(addr, ctlr, slave, type, 3)); 27225675Ssam return (0); 27325675Ssam } 27425675Ssam return (1); 27524004Ssam } 27624004Ssam 27725675Ssam vdstart_drive(addr, ctlr, slave) 27825675Ssam cdr *addr; 27925675Ssam register int ctlr, slave; 28024004Ssam { 28125675Ssam int error = 0; 28224004Ssam 28325675Ssam printf("vd%d: starting drive %d, wait...", ctlr, slave); 28425675Ssam if (vdctlr_info[ctlr].ctlr_started) { 28525675Ssam printf("DELAY(5500000)..."); 28625675Ssam DELAY(5500000); 28725675Ssam goto done; 28824004Ssam } 28925675Ssam vdctlr_info[ctlr].ctlr_started = 1; 29025675Ssam error = vdnotrailer(addr, ctlr, 0, VDSTART, (slave*6)+62) & HRDERR; 29125675Ssam if (!error) { 29225675Ssam printf("DELAY(%d)...", (slave * 5500000) + 62000000); 29325675Ssam DELAY((slave * 5500000) + 62000000); 29424004Ssam } 29525675Ssam done: 29625675Ssam printf("\n"); 29725675Ssam return (error == 0); 29825675Ssam } 29924004Ssam 30025675Ssam vdnotrailer(addr, ctlr, unit, function, time) 30125675Ssam register cdr *addr; 30225675Ssam int ctlr, unit, function, time; 30324004Ssam { 30425675Ssam fmt_mdcb *mdcb = &vdctlr_info[ctlr].ctlr_mdcb; 30525675Ssam fmt_dcb *dcb = &vdctlr_info[ctlr].ctlr_dcb; 30625675Ssam int type = vdctlr_info[ctlr].ctlr_type; 30724004Ssam 30825675Ssam dcb->opcode = function; /* command */ 30924004Ssam dcb->intflg = NOINT; 31025675Ssam dcb->nxtdcb = (fmt_dcb *)0; /* end of chain */ 31125675Ssam dcb->operrsta = 0; 31225675Ssam dcb->devselect = (char)unit; 31324004Ssam dcb->trailcnt = (char)0; 31425675Ssam mdcb->firstdcb = (fmt_dcb *)(PHYS(dcb)); 31524004Ssam mdcb->vddcstat = 0; 31625675Ssam VDDC_ATTENTION(addr, (fmt_mdcb *)(PHYS(mdcb)), type); 31725675Ssam POLLTILLDONE(addr, dcb, time, type); 31825675Ssam if (vdtimeout <= 0) { 31925675Ssam printf(" during init\n"); 32025675Ssam return (DCBCMP|ANYERR|HRDERR|OPABRT); 32124004Ssam } 32225675Ssam return (dcb->operrsta); 32325675Ssam } 32424004Ssam 32525675Ssam vdattach(vi) 32625675Ssam register struct vba_device *vi; 32725675Ssam { 32825675Ssam register unit_tab *ui = &vdunit_info[vi->ui_unit]; 32925675Ssam register ctlr_tab *ci = &vdctlr_info[vi->ui_ctlr]; 33025675Ssam register struct buf *cq = &vi->ui_mi->um_tab; 33125675Ssam register struct buf *uq = cq->b_forw; 33225675Ssam register struct buf *start_queue = uq; 33325675Ssam register fs_tab *fs = &ui->info; 33425675Ssam 33525675Ssam ui->info = vdst[vi->ui_type]; 33625675Ssam ui->sec_per_blk = DEV_BSIZE / ui->info.secsize; 33725675Ssam ui->sec_per_cyl = ui->info.nsec * ui->info.ntrak; 33825675Ssam ui->xfer_queue.b_dev = vi->ui_slave; 33925675Ssam ci->unit_type[vi->ui_slave] = vi->ui_type; 34025675Ssam /* load unit into controller's active unit list */ 34125675Ssam if (uq == NULL) { 34225675Ssam cq->b_forw = &ui->xfer_queue; 34325675Ssam ui->xfer_queue.b_forw = &ui->xfer_queue; 34425675Ssam ui->xfer_queue.b_back = &ui->xfer_queue; 34525675Ssam } else { 34625675Ssam while (uq->b_forw != start_queue) 34725675Ssam uq = uq->b_forw; 34825675Ssam ui->xfer_queue.b_forw = start_queue; 34925675Ssam ui->xfer_queue.b_back = uq; 35025675Ssam uq->b_forw = &ui->xfer_queue; 35125675Ssam start_queue->b_back = &ui->xfer_queue; 35225675Ssam } 35324004Ssam /* 35425675Ssam * (60 / rpm) / (number of sectors per track * (bytes per sector / 2)) 35524004Ssam */ 35625675Ssam dk_mspw[vi->ui_unit] = 120.0 / (fs->rpm * fs->nsec * fs->secsize); 35724004Ssam } 35824004Ssam 35925675Ssam /*ARGSUSED*/ 36025675Ssam vddgo(um) 36125675Ssam struct vba_ctlr *um; 36224004Ssam { 36324004Ssam 36424004Ssam } 36524004Ssam 36624004Ssam vdstrategy(bp) 36725675Ssam register struct buf *bp; 36824004Ssam { 36925675Ssam register int unit = VDUNIT(bp->b_dev); 37025675Ssam register struct vba_device *vi = vddinfo[unit]; 37125675Ssam register par_tab *par; 37225675Ssam register unit_tab *ui; 37325675Ssam register fs_tab *fs; 37425675Ssam register int blks, bn, s; 37524004Ssam 37625675Ssam if (bp->b_bcount == 0 || vi == 0 || vi->ui_alive == 0) 37725675Ssam goto bad; 37825675Ssam ui = &vdunit_info[unit]; 37925675Ssam fs = &ui->info; 38025675Ssam par = &fs->partition[FILSYS(bp->b_dev)]; 38125675Ssam blks = (bp->b_bcount + DEV_BSIZE-1) >> DEV_BSHIFT; 38225675Ssam if (bp->b_blkno + blks >= par->par_len) { 38325675Ssam blks = par->par_len - bp->b_blkno; 38425675Ssam if (blks <= 0) 38525675Ssam goto bad; 38625675Ssam bp->b_bcount = blks * DEV_BSIZE; 38725675Ssam } 38825675Ssam bn = bp->b_blkno + par->par_start; 38925675Ssam bn *= ui->sec_per_blk; 39025675Ssam bp->b_daddr = (bn / fs->nsec) % fs->ntrak; 39125675Ssam bp->b_cylin = bn / ui->sec_per_cyl; 39225675Ssam vbasetup(bp, ui->info.secsize); 39325675Ssam s = spl7(); 39425675Ssam if (ui->xfer_queue.av_forw == NULL) { 39525675Ssam register ctlr_tab *ci = &vdctlr_info[vi->ui_ctlr]; 39625675Ssam int slave = vi->ui_slave; 39724004Ssam 39825675Ssam if (bp->b_cylin != ci->cur_cyl[slave] || 39925675Ssam bp->b_daddr != ci->cur_trk[slave]) 40025675Ssam ci->off_cylinder |= 1 << slave; 40124004Ssam } 40225675Ssam bp->b_daddr |= (bn % fs->nsec) << 8; 40325675Ssam disksort(&ui->xfer_queue, bp); 40425675Ssam if (!vddinfo[unit]->ui_mi->um_tab.b_active++) { 40525675Ssam splx(s); 40625675Ssam vdstart(vddinfo[unit]->ui_mi); 40725675Ssam } else 40825675Ssam splx(s); 40924004Ssam return; 41025675Ssam bad: 41125675Ssam bp->b_flags |= B_ERROR, bp->b_error = ENXIO; 41225675Ssam bp->b_resid = bp->b_bcount; 41324004Ssam iodone(bp); 41424004Ssam } 41524004Ssam 41624004Ssam /* 41724004Ssam * Start up a transfer on a drive. 41824004Ssam */ 41925675Ssam vdstart(ci) 42025675Ssam register struct vba_ctlr *ci; 42124004Ssam { 42225675Ssam register struct buf *cq = &ci->um_tab; 42325675Ssam register struct buf *uq = cq->b_forw; 42424004Ssam 42525675Ssam /* search for next ready unit */ 42625675Ssam cq->b_forw = cq->b_forw->b_forw; 42725675Ssam uq = cq->b_forw; 42825675Ssam do { 42925675Ssam if (uq->av_forw != NULL) { 43025675Ssam cq->b_forw = uq; 43125675Ssam vdexecute(ci, uq); 43225675Ssam return; 43325675Ssam } 43425675Ssam uq = uq->b_forw; 43525675Ssam } while (uq != cq->b_forw); 43625675Ssam } 43725675Ssam 43825675Ssam /* 43925675Ssam * Initiate seeks for all drives off-cylinder. 44025675Ssam */ 44125675Ssam vdload_seeks(ci, uq) 44225675Ssam register ctlr_tab *ci; 44325675Ssam register struct buf *uq; 44425675Ssam { 44525675Ssam register int unit, slave, nseeks; 44625675Ssam register fmt_dcb *dcb; 44725675Ssam register struct buf *bp; 44825675Ssam register struct buf *start_queue = uq; 44925675Ssam 45025675Ssam nseeks = 0; 45125675Ssam do { 45225675Ssam bp = uq->av_forw; 45325675Ssam if (bp != NULL) { 45425675Ssam unit = VDUNIT(bp->b_dev); 45525675Ssam slave = vddinfo[unit]->ui_slave; 45625675Ssam if (ci->off_cylinder & (1 << slave)) { 45725675Ssam ci->off_cylinder &= ~(1 << slave); 45825675Ssam if (ci->cur_cyl[slave] != bp->b_cylin) { 45925675Ssam ci->cur_cyl[slave] = bp->b_cylin; 46025675Ssam dk_seek[unit]++; 46125675Ssam } 46225675Ssam ci->cur_trk[slave] = bp->b_daddr&0xff; 46325675Ssam dcb = &ci->seek_dcb[nseeks++]; 46425675Ssam dcb->opcode = SEEK; 46525675Ssam dcb->intflg = NOINT | INT_PBA; 46625675Ssam dcb->operrsta = 0; 46725675Ssam dcb->devselect = (char)slave; 46825675Ssam dcb->trailcnt = (char)1; 46925675Ssam dcb->trail.sktrail.skaddr.cylinder = 47025675Ssam bp->b_cylin; 47125675Ssam dcb->trail.sktrail.skaddr.track = 47225675Ssam bp->b_daddr & 0xff; 47325675Ssam dcb->trail.sktrail.skaddr.sector = 0; 47425675Ssam } 47525675Ssam } 47625675Ssam uq = uq->b_forw; 47725675Ssam } while (uq != start_queue && nseeks < 4); 47825675Ssam return (nseeks); 47925675Ssam } 48025675Ssam 48125675Ssam extern vd_int_timeout(); 48225675Ssam /* 48325675Ssam * Execute the next command on the unit queue uq. 48425675Ssam */ 48525675Ssam vdexecute(controller_info, uq) 48625675Ssam register struct vba_ctlr *controller_info; 48725675Ssam register struct buf *uq; 48825675Ssam { 48925675Ssam register struct buf *bp = uq->av_forw; 49025675Ssam register int ctlr = controller_info->um_ctlr; 49125675Ssam register ctlr_tab *ci = &vdctlr_info[ctlr]; 49225675Ssam register int unit = VDUNIT(bp->b_dev); 49325675Ssam register int slave = vddinfo[unit]->ui_slave; 49425675Ssam register fmt_mdcb *mdcb = &ci->ctlr_mdcb; 49525675Ssam register fmt_dcb *dcb = &ci->ctlr_dcb; 49625675Ssam 49724004Ssam /* 49825675Ssam * If there are overlapped seeks to perform, shuffle 49925675Ssam * them to the front of the queue and get them started 50025675Ssam * before any data transfers (to get some parallelism). 50124004Ssam */ 50225675Ssam if ((ci->off_cylinder & ~(1<<slave)) && ci->overlap_seeks) { 50325675Ssam register int i, nseeks; 50425675Ssam 50525675Ssam /* setup seek requests in seek-q */ 50625675Ssam nseeks = vdload_seeks(ci, uq); 50725675Ssam /* place at the front of the master q */ 50825675Ssam mdcb->firstdcb = (fmt_dcb *)PHYS(&ci->seek_dcb[0]); 50925675Ssam /* shuffle any remaining seeks up in the seek-q */ 51025675Ssam for (i = 1; i < nseeks; i++) 51125675Ssam ci->seek_dcb[i-1].nxtdcb = 51225675Ssam (fmt_dcb *)PHYS(&ci->seek_dcb[i]); 51325675Ssam ci->seek_dcb[nseeks-1].nxtdcb = (fmt_dcb *)PHYS(dcb); 51425675Ssam } else { 51525675Ssam if (bp->b_cylin != ci->cur_cyl[slave]) { 51625675Ssam ci->cur_cyl[slave] = bp->b_cylin; 51725675Ssam dk_seek[unit]++; 51825675Ssam } 51925675Ssam ci->cur_trk[slave] = bp->b_daddr & 0xff; 52025675Ssam ci->off_cylinder = 0; 52125675Ssam mdcb->firstdcb = (fmt_dcb *)(PHYS(dcb)); 52224004Ssam } 52324004Ssam dcb->opcode = (bp->b_flags & B_READ) ? RD : WD; 52425675Ssam dcb->intflg = INTDONE; 52525675Ssam dcb->nxtdcb = (fmt_dcb *)0; /* end of chain */ 52624004Ssam dcb->operrsta = 0; 52725675Ssam dcb->devselect = (char)slave; 52825675Ssam dcb->trailcnt = (char)(sizeof (trrw) / sizeof (long)); 52925675Ssam dcb->trail.rwtrail.memadr = (char *) 53025675Ssam vbastart(bp, ci->rawbuf, (long *)ci->map, ci->utl); 53125675Ssam dcb->trail.rwtrail.wcount = (short)((bp->b_bcount+1) / sizeof (short)); 53225675Ssam dcb->trail.rwtrail.disk.cylinder = bp->b_cylin; 53325675Ssam dcb->trail.rwtrail.disk.track = bp->b_daddr & 0xff; 53425675Ssam dcb->trail.rwtrail.disk.sector = bp->b_daddr >> 8; 53525675Ssam mdcb->vddcstat = 0; 53625675Ssam dk_wds[unit] += bp->b_bcount / 32; 53725675Ssam ci->int_expected = 1; 53825675Ssam timeout(vd_int_timeout, (caddr_t)ctlr, 20*60); 53925675Ssam dk_busy |= 1 << unit; 54025675Ssam #ifdef VDDCPERF 54125675Ssam scope_out(1); 54225675Ssam #endif 54325675Ssam VDDC_ATTENTION((cdr *)(vdminfo[ctlr]->um_addr), 54425675Ssam (fmt_mdcb *)(PHYS(mdcb)), ci->ctlr_type); 54525675Ssam } 54624004Ssam 54724004Ssam /* 54825675Ssam * Watch for lost interrupts. 54925675Ssam */ 55025675Ssam vd_int_timeout(ctlr) 55125675Ssam register int ctlr; 55225675Ssam { 55325675Ssam register ctlr_tab *ci = &vdctlr_info[ctlr]; 55425675Ssam register fmt_dcb *dcb = &ci->ctlr_dcb; 55524004Ssam 55625675Ssam uncache(&dcb->operrsta); 55725675Ssam printf("vd%d: lost interupt, status %x", ctlr, dcb->operrsta); 55825675Ssam if (ci->ctlr_type == SMD_ECTLR) { 55925675Ssam uncache(&dcb->err_code); 56025675Ssam printf(", error code %x", dcb->err_code); 56124004Ssam } 56225675Ssam printf("\n"); 56325675Ssam if ((dcb->operrsta&DCBCMP) == 0) { 56425675Ssam VDDC_ABORT((cdr *)(vdminfo[ctlr]->um_addr), ci->ctlr_type); 56525675Ssam dcb->operrsta |= DCBUSC | DCBABT | ANYERR | HRDERR | CTLRERR; 56625675Ssam } 56725675Ssam vdintr(ctlr); 56824004Ssam } 56924004Ssam 57024004Ssam /* 57124004Ssam * Handle a disk interrupt. 57224004Ssam */ 57325675Ssam vdintr(ctlr) 57425675Ssam register int ctlr; 57524004Ssam { 57625675Ssam register ctlr_tab *ci; 57725675Ssam register struct buf *cq, *uq, *bp; 57825675Ssam register int slave, unit; 57925675Ssam register fmt_mdcb *mdcb; 58025675Ssam register fmt_dcb *dcb; 58125675Ssam int code, s; 58224004Ssam 58325675Ssam untimeout(vd_int_timeout, (caddr_t)ctlr); 58424004Ssam #ifdef VDDCPERF 58524004Ssam scope_out(2); 58624004Ssam #endif 58725675Ssam ci = &vdctlr_info[ctlr]; 58825675Ssam if (!ci->int_expected) { 58925675Ssam printf("vd%d: stray interrupt\n", ctlr); 59024004Ssam return; 59124004Ssam } 59225675Ssam /* 59325675Ssam * Take first request off controller's queue. 59425675Ssam */ 59525675Ssam cq = &vdminfo[ctlr]->um_tab; 59625675Ssam uq = cq->b_forw; 59725675Ssam bp = uq->av_forw; 59824004Ssam unit = VDUNIT(bp->b_dev); 59925675Ssam dk_busy &= ~(1 << unit); 60025675Ssam dk_xfer[unit]++; 60125675Ssam ci->int_expected = 0; 60225675Ssam /* find associated control blocks */ 60325675Ssam mdcb = &ci->ctlr_mdcb, uncache(&mdcb->intdcb); 60425675Ssam dcb = &ci->ctlr_dcb, uncache(&dcb->operrsta); 60525675Ssam if (ci->ctlr_type == SMD_ECTLR) 60625675Ssam uncache(&dcb->err_code); 60725675Ssam slave = uq->b_dev; 60825675Ssam switch (code = vddecode_error(dcb)) { 60924004Ssam 61025675Ssam case CTLR_ERROR: 61125675Ssam case DRIVE_ERROR: 61225675Ssam if (cq->b_errcnt >= 2) 61325675Ssam vdhard_error(ci, bp, dcb); 61425675Ssam if (code == CTLR_ERROR) 61525675Ssam vdreset_ctlr((cdr *)vdminfo[ctlr]->um_addr, ctlr); 61625675Ssam else 61725675Ssam reset_drive((cdr *)vdminfo[ctlr]->um_addr, ctlr, 61825675Ssam slave, 2); 61925675Ssam if (cq->b_errcnt++ < 2) { /* retry error */ 62025675Ssam cq->b_forw = uq->b_back; 62125675Ssam vdstart(vdminfo[ctlr]); 62225675Ssam return; 62325675Ssam } 62425675Ssam bp->b_resid = bp->b_bcount; 62525675Ssam break; 62625675Ssam 62725675Ssam case HARD_DATA_ERROR: 62825675Ssam vdhard_error(ci, bp, dcb); 62925675Ssam bp->b_resid = 0; 63025675Ssam break; 63125675Ssam 63225675Ssam case SOFT_DATA_ERROR: 63325675Ssam vdsoft_error(ci, bp, dcb); 63425675Ssam /* fall thru... */ 63525675Ssam 63625675Ssam default: /* operation completed */ 63725675Ssam bp->b_error = 0; 63825675Ssam bp->b_resid = 0; 63925675Ssam break; 64024004Ssam } 64125675Ssam vbadone(bp, ci->rawbuf, (long *)ci->map, ci->utl); 64225675Ssam /* 64325675Ssam * Take next request on this unit q, or, if none, 64425675Ssam * the next request on the next active unit q. 64525675Ssam */ 64625675Ssam s = spl7(); 64725675Ssam uq->av_forw = bp->av_forw; 64825675Ssam if (uq->av_back != bp) { 64925675Ssam register struct buf *next; 65024004Ssam 65125675Ssam unit = VDUNIT(uq->av_forw->b_dev); 65225675Ssam slave = vddinfo[unit]->ui_slave; 65325675Ssam next = uq->av_forw; 65425675Ssam if (next->b_cylin != ci->cur_cyl[slave] || 65525675Ssam (next->b_daddr & 0xff) != ci->cur_trk[slave]) 65625675Ssam ci->off_cylinder |= 1 << slave; 65725675Ssam } else 65825675Ssam uq->av_back = NULL; 65925675Ssam splx(s); 66025675Ssam /* reset controller state */ 66125675Ssam cq->b_errcnt = 0; 66225675Ssam cq->b_active--; 66324004Ssam #ifdef VDDCPERF 66424004Ssam scope_out(3); 66524004Ssam #endif 66625675Ssam if (bp->b_flags & B_ERROR) 66725675Ssam bp->b_error = EIO; 66824004Ssam iodone(bp); 66925675Ssam vdstart(vdminfo[ctlr]); 67024004Ssam } 67124004Ssam 67225675Ssam /* 67325675Ssam * Convert controller status to internal operation/error code. 67425675Ssam */ 67525675Ssam vddecode_error(dcb) 67625675Ssam register fmt_dcb *dcb; 67725675Ssam { 67824004Ssam 67925675Ssam if (dcb->operrsta & HRDERR) { 68025675Ssam if (dcb->operrsta & (HCRCERR | HCMPERR | UCDATERR | WPTERR | 68125675Ssam DSEEKERR | NOTCYLERR |DRVNRDY | INVDADR)) 68225675Ssam return (DRIVE_ERROR); 68325675Ssam if (dcb->operrsta & (CTLRERR | OPABRT | INVCMD | DNEMEM)) 68425675Ssam return (CTLR_ERROR); 68525675Ssam return (HARD_DATA_ERROR); 68625675Ssam } 68725675Ssam if (dcb->operrsta & SFTERR) 68825675Ssam return (SOFT_DATA_ERROR); 68925675Ssam return (0); 69025675Ssam } 69125675Ssam 69225675Ssam /* 69325675Ssam * Report a hard error. 69425675Ssam */ 69525675Ssam vdhard_error(ci, bp, dcb) 69625675Ssam ctlr_tab *ci; 69725675Ssam register struct buf *bp; 69825675Ssam register fmt_dcb *dcb; 69925675Ssam { 70025675Ssam unit_tab *ui = &vdunit_info[VDUNIT(bp->b_dev)]; 70125675Ssam 70225675Ssam bp->b_flags |= B_ERROR; 70325675Ssam harderr(bp, ui->info.type_name); 70425675Ssam printf("status %x", dcb->operrsta); 70525675Ssam if (ci->ctlr_type == SMD_ECTLR) 70625675Ssam printf(" ecode %x", dcb->err_code); 70725675Ssam printf("\n"); 70825675Ssam } 70925675Ssam 71025675Ssam /* 71125675Ssam * Report a soft error. 71225675Ssam */ 71325675Ssam vdsoft_error(ci, bp, dcb) 71425675Ssam ctlr_tab *ci; 71525675Ssam register struct buf *bp; 71625675Ssam register fmt_dcb *dcb; 71725675Ssam { 71825675Ssam unit_tab *ui = &vdunit_info[VDUNIT(bp->b_dev)]; 71925675Ssam 72025675Ssam printf("%s%d%c: soft error sn%d status %x", ui->info.type_name, 721*25857Ssam minor(bp->b_dev) >> 3, 'a'+(minor(bp->b_dev)&07), bp->b_blkno, 72225675Ssam dcb->operrsta); 72325675Ssam if (ci->ctlr_type == SMD_ECTLR) 72425675Ssam printf(" ecode %x", dcb->err_code); 72525675Ssam printf("\n"); 72625675Ssam } 72725675Ssam 72825675Ssam /*ARGSUSED*/ 72925675Ssam vdopen(dev, flag) 73025675Ssam dev_t dev; 73125675Ssam int flag; 73225675Ssam { 73325675Ssam register unit = VDUNIT(dev); 73425675Ssam register struct vba_device *vi = vddinfo[unit]; 73525675Ssam 73625675Ssam if (vi == 0 || vi->ui_alive == 0 || vi->ui_type >= nvddrv) 73725675Ssam return (ENXIO); 73825675Ssam if (vdunit_info[unit].info.partition[FILSYS(dev)].par_len == 0) 73925675Ssam return (ENXIO); 74025675Ssam return (0); 74125675Ssam } 74225675Ssam 74324004Ssam vdread(dev, uio) 74425675Ssam dev_t dev; 74525675Ssam struct uio *uio; 74624004Ssam { 74724004Ssam register int unit = VDUNIT(dev); 74825675Ssam register unit_tab *ui = &vdunit_info[unit]; 74924004Ssam 75024004Ssam if (unit >= NFSD) 75125675Ssam return (ENXIO); 75225675Ssam return (physio(vdstrategy, &ui->raw_q_element, dev, B_READ, 75325675Ssam minphys, uio)); 75424004Ssam } 75524004Ssam 75624004Ssam vdwrite(dev, uio) 75725675Ssam dev_t dev; 75825675Ssam struct uio *uio; 75924004Ssam { 76024004Ssam register int unit = VDUNIT(dev); 76125675Ssam register unit_tab *ui = &vdunit_info[unit]; 76224004Ssam 76324004Ssam if (unit >= NFSD) 76425675Ssam return (ENXIO); 76525675Ssam return (physio(vdstrategy, &ui->raw_q_element, dev, B_WRITE, 76625675Ssam minphys, uio)); 76724004Ssam } 76824004Ssam 76924004Ssam /* 77025675Ssam * Crash dump. 77124004Ssam */ 77225675Ssam vddump(dev) 77325675Ssam dev_t dev; 77424004Ssam { 77525675Ssam register int unit = VDUNIT(dev); 77625675Ssam register unit_tab *ui = &vdunit_info[unit]; 77725675Ssam register fs_tab *fs = &ui->info; 77825675Ssam register int ctlr = vddinfo[unit]->ui_ctlr; 77925675Ssam register struct vba_ctlr *vba_vdctlr_info = vdminfo[ctlr]; 78025675Ssam register int filsys = FILSYS(dev); 78125675Ssam register cdr *addr = (cdr *)(vba_vdctlr_info->um_addr); 78225675Ssam register int cur_blk, blkcount, blocks; 78325675Ssam caddr_t memaddr; 78424004Ssam 78525675Ssam vdreset_ctlr(addr, ctlr); 78624004Ssam blkcount = maxfree - 2; /* In 1k byte pages */ 78725675Ssam if (dumplo + blkcount > fs->partition[filsys].par_len) { 78825675Ssam blkcount = fs->partition[filsys].par_len - dumplo; 78925675Ssam printf("vd%d: Dump truncated to %dMB\n", unit, blkcount/1024); 79025675Ssam } 79125675Ssam cur_blk = fs->partition[filsys].par_start + dumplo; 79225675Ssam memaddr = 0; 79324004Ssam while (blkcount > 0) { 79425675Ssam blocks = MIN(blkcount, DUMPSIZE); 79525675Ssam if (!vdwrite_block(addr, ctlr, unit, memaddr, cur_blk, blocks)) 79625675Ssam return (EIO); 79725675Ssam blkcount -= blocks; 79825675Ssam memaddr += blocks * NBPG; 79925675Ssam cur_blk += blocks; 80024004Ssam } 80125675Ssam return (0); 80224004Ssam } 80324004Ssam 80425675Ssam /* 80525675Ssam * Write a block to disk during a crash dump. 80625675Ssam */ 80725675Ssam vdwrite_block(caddr, ctlr, unit, addr, block, blocks) 80825675Ssam register cdr *caddr; 80925675Ssam register int ctlr, unit; 81025675Ssam register caddr_t addr; 81125675Ssam register int block, blocks; 81224004Ssam { 81325675Ssam register fmt_mdcb *mdcb = &vdctlr_info[ctlr].ctlr_mdcb; 81425675Ssam register fmt_dcb *dcb = &vdctlr_info[ctlr].ctlr_dcb; 81525675Ssam register unit_tab *ui = &vdunit_info[unit]; 81625675Ssam register fs_tab *fs = &ui->info; 81724004Ssam 81825675Ssam block *= (int)ui->sec_per_blk; 81925675Ssam blocks *= (int)ui->sec_per_blk; 82025675Ssam mdcb->firstdcb = (fmt_dcb *)(PHYS(dcb)); 82125675Ssam dcb->intflg = NOINT; 82225675Ssam dcb->opcode = WD; 82325675Ssam dcb->operrsta = 0; 82425675Ssam dcb->devselect = (char)(vddinfo[unit])->ui_slave; 82525675Ssam dcb->trailcnt = (char)(sizeof (trrw) / sizeof (long)); 82625675Ssam dcb->trail.rwtrail.memadr = addr; 82725675Ssam dcb->trail.rwtrail.wcount = (short) 82825675Ssam ((blocks * fs->secsize)/ sizeof (short)); 82925675Ssam dcb->trail.rwtrail.disk.cylinder = (short)(block / ui->sec_per_cyl); 83025675Ssam dcb->trail.rwtrail.disk.track = (char)((block / fs->nsec) % fs->ntrak); 83125675Ssam dcb->trail.rwtrail.disk.sector = (char)(block % fs->nsec); 83225675Ssam VDDC_ATTENTION(caddr, (fmt_mdcb *)(PHYS(mdcb)), 83325675Ssam vdctlr_info[ctlr].ctlr_type); 83425675Ssam POLLTILLDONE(caddr, dcb, 5, vdctlr_info[ctlr].ctlr_type); 83525675Ssam if (vdtimeout <= 0) { 83625675Ssam printf(" during dump\n"); 83725675Ssam return (0); 83825675Ssam } 83925675Ssam if (dcb->operrsta & HRDERR) { 84025675Ssam printf("vd%d: hard error, status %x\n", unit, dcb->operrsta); 84125675Ssam return (0); 84225675Ssam } 84325675Ssam return (1); 84424004Ssam } 84524004Ssam 84624004Ssam vdsize(dev) 84725675Ssam dev_t dev; 84824004Ssam { 84925675Ssam struct vba_device *vi = vddinfo[VDUNIT(dev)]; 85024004Ssam 85125675Ssam if (vi == 0 || vi->ui_alive == 0 || vi->ui_type >= nvddrv) 85225675Ssam return (-1); 85325675Ssam return (vdunit_info[VDUNIT(dev)].info.partition[FILSYS(dev)].par_len); 85424004Ssam } 85524004Ssam 85625675Ssam /* 85725675Ssam * Perform a controller reset. 85825675Ssam */ 85925675Ssam vdreset_ctlr(addr, ctlr) 86025675Ssam register cdr *addr; 86125675Ssam register int ctlr; 86224004Ssam { 86325675Ssam register struct buf *cq = &vdminfo[ctlr]->um_tab; 86425675Ssam register struct buf *uq = cq->b_forw; 86525675Ssam register ctlr_tab *ci = &vdctlr_info[ctlr]; 86625675Ssam 86725675Ssam VDDC_RESET(addr, ci->ctlr_type); 86825675Ssam ci->ctlr_started = 0; 86925675Ssam if (ci->ctlr_type == SMD_ECTLR) { 87025675Ssam addr->cdr_csr = 0; 87125675Ssam addr->mdcb_tcf = AM_ENPDA; 87225675Ssam addr->dcb_tcf = AM_ENPDA; 87325675Ssam addr->trail_tcf = AM_ENPDA; 87425675Ssam addr->data_tcf = AM_ENPDA; 87525675Ssam addr->cdr_ccf = CCF_STS | XMD_32BIT | BSZ_16WRD | 87625675Ssam CCF_ENP | CCF_EPE | CCF_EDE | CCF_ECE | CCF_ERR; 87725675Ssam } 87825675Ssam if (vdnotrailer(addr, ctlr, 0, INIT, 10) & HRDERR) { 87925675Ssam printf("failed to init\n"); 88025675Ssam return (0); 88125675Ssam } 88225675Ssam if (vdnotrailer(addr, ctlr, 0, DIAG, 10) & HRDERR) { 88325675Ssam printf("diagnostic error\n"); 88425675Ssam return (0); 88525675Ssam } 88625675Ssam /* reset all units attached to controller */ 88725675Ssam uq = cq->b_forw; 88825675Ssam do { 88925675Ssam reset_drive(addr, ctlr, uq->b_dev, 0); 89025675Ssam uq = uq->b_forw; 89125675Ssam } while (uq != cq->b_forw); 89225675Ssam return (1); 89325675Ssam } 89424004Ssam 89525675Ssam /* 89625675Ssam * Perform a reset on a drive. 89725675Ssam */ 89825675Ssam reset_drive(addr, ctlr, slave, start) 89925675Ssam register cdr *addr; 90025675Ssam register int ctlr, slave, start; 90125675Ssam { 90225675Ssam register int type = vdctlr_info[ctlr].unit_type[slave]; 90325675Ssam 90425675Ssam if (type == UNKNOWN) 90525675Ssam return; 90625675Ssam if (!vdconfigure_drive(addr, ctlr, slave, type, start)) 90725675Ssam printf("vd%d: drive %d: couldn't reset\n", ctlr, slave); 90825675Ssam } 90925675Ssam 91025675Ssam #ifdef notdef 91125675Ssam /* 91225675Ssam * Dump the mdcb and DCB for diagnostic purposes. 91325675Ssam */ 91425675Ssam vdprintdcb(lp) 91525675Ssam register long *lp; 91625675Ssam { 91725675Ssam register int i, dcb, tc; 91825675Ssam 91925675Ssam for (dcb = 0; lp; lp = (long *)(*lp), dcb++) { 92025675Ssam lp = (long *)((long)lp | 0xc0000000); 92125675Ssam printf("\nDump of dcb%d@%x:", dcb, lp); 92225675Ssam for (i = 0, tc = lp[3] & 0xff; i < tc+7; i++) 92325675Ssam printf(" %lx", lp[i]); 92425675Ssam printf("\n"); 92524004Ssam } 92625675Ssam DELAY(1750000); 92724004Ssam } 92824004Ssam #endif 92925675Ssam #endif 930