123324Smckusick /* 223324Smckusick * Copyright (c) 1982 Regents of the University of California. 323324Smckusick * All rights reserved. The Berkeley software License Agreement 423324Smckusick * specifies the terms and conditions for redistribution. 523324Smckusick * 6*27057Skarels * @(#)dmf.c 6.19 (Berkeley) 04/12/86 723324Smckusick */ 86940Ssam 96940Ssam #include "dmf.h" 106940Ssam #if NDMF > 0 116940Ssam /* 126940Ssam * DMF32 driver 136940Ssam * 1421955Sbloom * 156940Ssam * TODO: 166940Ssam * test with modem 176940Ssam * load as much as possible into silo 186940Ssam * use auto XON/XOFF 196940Ssam * test reset code 2021955Sbloom **************************** 2121955Sbloom * DMF32 line printer driver 2221955Sbloom * 2321955Sbloom * the line printer on dmfx is indicated by a minor device code of 128+x 2421955Sbloom * 2521955Sbloom * the flags field of the config file is interpreted like so: 2621955Sbloom * bits meaning 2721955Sbloom * ---- ------- 2821955Sbloom * 0-7 soft carrier bits for ttys part of dmf32 2921955Sbloom * 8-15 number of cols/line on the line printer 3021955Sbloom * if 0, 132 will be used. 3121955Sbloom * 16-23 number of lines/page on the line printer 3221955Sbloom * if 0, 66 will be used. 3326910Skarels * 24 if 1 DO NOT use the auto format mode of the 3426910Skarels * line printer parallel port 356940Ssam */ 369772Ssam #include "../machine/pte.h" 379772Ssam 386940Ssam #include "bk.h" 3916063Skarels #include "uba.h" 4017124Sbloom #include "param.h" 4117124Sbloom #include "conf.h" 4217124Sbloom #include "dir.h" 4317124Sbloom #include "user.h" 4426836Skarels #include "proc.h" 4517124Sbloom #include "ioctl.h" 4617124Sbloom #include "tty.h" 4717124Sbloom #include "map.h" 4817124Sbloom #include "buf.h" 4917124Sbloom #include "vm.h" 5017124Sbloom #include "bkmac.h" 5117124Sbloom #include "clist.h" 5217124Sbloom #include "file.h" 5317124Sbloom #include "uio.h" 5421955Sbloom #include "kernel.h" 5518312Sralph #include "syslog.h" 566940Ssam 5717124Sbloom #include "ubareg.h" 5817124Sbloom #include "ubavar.h" 5917124Sbloom #include "dmfreg.h" 608473Sroot 616940Ssam /* 626940Ssam * Definition of the driver for the auto-configuration program. 636940Ssam */ 646940Ssam int dmfprobe(), dmfattach(), dmfrint(), dmfxint(); 6521955Sbloom int dmflint(); 666940Ssam struct uba_device *dmfinfo[NDMF]; 676940Ssam u_short dmfstd[] = { 0 }; 686940Ssam struct uba_driver dmfdriver = 696940Ssam { dmfprobe, 0, dmfattach, 0, dmfstd, "dmf", dmfinfo }; 706940Ssam 7125449Skarels int dmf_timeout = 10; /* silo timeout, in ms */ 7221955Sbloom int dmf_mindma = 4; /* don't dma below this point */ 7321955Sbloom 746940Ssam /* 756940Ssam * Local variables for the driver 766940Ssam */ 776940Ssam char dmf_speeds[] = 786940Ssam { 0, 0, 1, 2, 3, 4, 0, 5, 6, 7, 010, 012, 014, 016, 017, 0 }; 796940Ssam 8025449Skarels #ifndef PORTSELECTOR 8125449Skarels #define ISPEED B9600 8225449Skarels #define IFLAGS (EVENP|ODDP|ECHO) 8325449Skarels #else 8425449Skarels #define ISPEED B4800 8525449Skarels #define IFLAGS (EVENP|ODDP) 8625449Skarels #endif 8725449Skarels 886940Ssam struct tty dmf_tty[NDMF*8]; 896940Ssam char dmfsoftCAR[NDMF]; 9021955Sbloom 9126366Skarels struct dmfl_softc { 9226366Skarels u_int dmfl_state; /* soft state bits */ 9326366Skarels int dmfl_info; /* uba info */ 9426366Skarels u_short dmfl_lines; /* lines per page (66 def.) */ 9526366Skarels u_short dmfl_cols; /* cols per line (132 def.) */ 9626910Skarels u_short dmfl_format; /* fflag for auto form feed */ 9726366Skarels char dmfl_buf[DMFL_BUFSIZ]; 9821955Sbloom } dmfl_softc[NDMF]; 9921955Sbloom 10021955Sbloom /* 10121955Sbloom * convert device number into DMF line printer unit number 10221955Sbloom */ 10321955Sbloom #define DMFL_UNIT(d) (minor(d)&0xF) /* up to 16 DMFs */ 10421955Sbloom 10521955Sbloom #define ASLP 1 /* waiting for interrupt from dmf */ 10621955Sbloom #define OPEN 2 /* line printer is open */ 10721955Sbloom #define ERROR 4 /* error while printing, driver 10821955Sbloom refuses to do anything till closed */ 10926910Skarels #define MOREIO 8 /* more data for printer */ 11021955Sbloom 1118778Sroot #ifndef lint 1128778Sroot int ndmf = NDMF*8; /* used by iostat */ 1138778Sroot #endif 1146940Ssam int dmfact; /* mask of active dmf's */ 1156940Ssam int dmfstart(), ttrstrt(); 1166940Ssam 1176940Ssam /* 1186940Ssam * The clist space is mapped by the driver onto each UNIBUS. 1196940Ssam * The UBACVT macro converts a clist space address for unibus uban 1206940Ssam * into an i/o space address for the DMA routine. 1216940Ssam */ 12216063Skarels int dmf_ubinfo[NUBA]; /* info about allocated unibus map */ 12325449Skarels int cbase[NUBA]; /* base address in unibus map */ 1246940Ssam #define UBACVT(x, uban) (cbase[uban] + ((x)-(char *)cfree)) 12521955Sbloom char dmf_dma[NDMF*8]; 1266940Ssam 1276940Ssam /* 1286940Ssam * Routine for configuration to set dmf interrupt. 1296940Ssam */ 1306940Ssam /*ARGSUSED*/ 1316940Ssam dmfprobe(reg, ctlr) 1326940Ssam caddr_t reg; 13321955Sbloom struct uba_device *ctlr; 1346940Ssam { 1356940Ssam register int br, cvec; /* these are ``value-result'' */ 1366940Ssam register struct dmfdevice *dmfaddr = (struct dmfdevice *)reg; 13721955Sbloom register int i; 13821955Sbloom register unsigned int a; 13921955Sbloom static char *dmfdevs[]= 14021955Sbloom {"parallel","printer","synch","asynch"}; 14121955Sbloom unsigned int dmfoptions; 14225449Skarels static int (*intrv[3])() = { (int (*)())0, (int (*)())0, (int (*)())0 }; 1436940Ssam 1446940Ssam #ifdef lint 1456940Ssam br = 0; cvec = br; br = cvec; 1468808Sroot dmfxint(0); dmfrint(0); 14726366Skarels dmfsrint(); dmfsxint(); dmfdaint(); dmfdbint(); dmflint(0); 1486940Ssam #endif 14921955Sbloom /* 15021955Sbloom * Pick the usual size DMF vector here (don't decrement it here). 15121955Sbloom * grab configuration; note that the DMF32 15221955Sbloom * doesn't seem to put the right bits in this 15321955Sbloom * register until AFTER the interrupt vector is set. 15421955Sbloom */ 1556940Ssam br = 0x15; 15621955Sbloom cvec = (uba_hd[numuba].uh_lastiv - 4*8); 15725449Skarels dmfaddr->dmfccsr0 = (cvec >> 2); 15821955Sbloom dmfoptions = dmfaddr->dmfccsr0 & DMFC_CONFMASK; 15921955Sbloom 16021955Sbloom /* catch a couple of special cases: Able vmz/32n and vmz/lp */ 16121955Sbloom if (dmfoptions == DMFC_ASYNC) { 16225449Skarels /* Async portion only */ 16325449Skarels 16425449Skarels cvec = (uba_hd[numuba].uh_lastiv -= 8); 16525449Skarels dmfaddr->dmfccsr0 = (cvec - 2*8) >> 2; 16625449Skarels intrv[0] = ctlr->ui_intr[4]; 16725449Skarels intrv[1] = ctlr->ui_intr[5]; 16825449Skarels ctlr->ui_intr = intrv; 16926312Skarels } else if (dmfoptions == DMFC_LP) { 17025449Skarels /* LP portion only */ 17121955Sbloom 17225449Skarels cvec = (uba_hd[numuba].uh_lastiv -= 8); 17325449Skarels ctlr->ui_intr = &ctlr->ui_intr[6]; 17426312Skarels } else if (dmfoptions == (DMFC_LP|DMFC_ASYNC)) { 17525449Skarels /* LP ans Async portions only */ 17625449Skarels 17725449Skarels cvec = (uba_hd[numuba].uh_lastiv -= 2*8); 17825449Skarels ctlr->ui_intr = &ctlr->ui_intr[4]; 17926312Skarels } else { 18025449Skarels /* All other configurations get everything */ 18121955Sbloom 18221955Sbloom cvec = (uba_hd[numuba].uh_lastiv -= 4*8); 18321955Sbloom } 18425449Skarels a = (dmfoptions >> 12) & 0xf; 18525449Skarels printf("dmf%d:", ctlr->ui_unit); 18626312Skarels for (i = 0; a != 0; ++i, a >>= 1) { 18726312Skarels if (a & 1) 18825449Skarels printf(" %s",dmfdevs[i]); 18925449Skarels } 19025449Skarels printf(".\n"); 19121955Sbloom 19221955Sbloom if (dmfoptions & DMFC_LP) 193*27057Skarels dmfaddr->dmfl_ctrl = DMFL_RESET; 1947412Skre return (sizeof (struct dmfdevice)); 1956940Ssam } 1966940Ssam 1976940Ssam /* 1986940Ssam * Routine called to attach a dmf. 1996940Ssam */ 2006940Ssam dmfattach(ui) 2016940Ssam struct uba_device *ui; 2026940Ssam { 20321955Sbloom register int cols = (ui->ui_flags>>8) & 0xff; 20421955Sbloom register int lines = (ui->ui_flags>>16) & 0xff; 2056940Ssam 20621955Sbloom dmfsoftCAR[ui->ui_unit] = ui->ui_flags & 0xff; 20727052Skarels dmfl_softc[ui->ui_unit].dmfl_cols = cols == 0 ? DMFL_DEFCOLS : cols; 20827052Skarels dmfl_softc[ui->ui_unit].dmfl_lines = lines == 0 ? DMFL_DEFLINES : lines; 20926910Skarels if ((ui->ui_flags >> 24) & 0x1) 21026910Skarels dmfl_softc[ui->ui_unit].dmfl_format = (2 << 8); 21126910Skarels else 21226910Skarels dmfl_softc[ui->ui_unit].dmfl_format = (2 << 8) | DMFL_FORMAT; 21326221Skarels cbase[ui->ui_ubanum] = -1; 2146940Ssam } 2156940Ssam 2166940Ssam 2176940Ssam /* 2186940Ssam * Open a DMF32 line, mapping the clist onto the uba if this 2196940Ssam * is the first dmf on this uba. Turn on this dmf if this is 2206940Ssam * the first use of it. 2216940Ssam */ 2226940Ssam /*ARGSUSED*/ 2236940Ssam dmfopen(dev, flag) 2246940Ssam dev_t dev; 2256940Ssam { 2266940Ssam register struct tty *tp; 2276940Ssam register int unit, dmf; 2286940Ssam register struct dmfdevice *addr; 2296940Ssam register struct uba_device *ui; 2306940Ssam int s; 2316940Ssam 2326940Ssam unit = minor(dev); 23326312Skarels if (unit & 0200) 23426312Skarels return (dmflopen(dev,flag)); 2356940Ssam dmf = unit >> 3; 2368567Sroot if (unit >= NDMF*8 || (ui = dmfinfo[dmf])== 0 || ui->ui_alive == 0) 2378567Sroot return (ENXIO); 2386940Ssam tp = &dmf_tty[unit]; 2398567Sroot if (tp->t_state&TS_XCLUDE && u.u_uid!=0) 2408567Sroot return (EBUSY); 2416940Ssam addr = (struct dmfdevice *)ui->ui_addr; 2426940Ssam tp->t_addr = (caddr_t)addr; 2436940Ssam tp->t_oproc = dmfstart; 2446971Ssam tp->t_state |= TS_WOPEN; 2456940Ssam /* 2466940Ssam * While setting up state for this uba and this dmf, 2476940Ssam * block uba resets which can clear the state. 2486940Ssam */ 24921955Sbloom s = spltty(); 25026221Skarels if (cbase[ui->ui_ubanum] == -1) { 2516940Ssam dmf_ubinfo[ui->ui_ubanum] = 2526940Ssam uballoc(ui->ui_ubanum, (caddr_t)cfree, 2536940Ssam nclist*sizeof(struct cblock), 0); 25426221Skarels cbase[ui->ui_ubanum] = UBAI_ADDR(dmf_ubinfo[ui->ui_ubanum]); 2556940Ssam } 2566940Ssam if ((dmfact&(1<<dmf)) == 0) { 2576940Ssam addr->dmfcsr |= DMF_IE; 2586940Ssam dmfact |= (1<<dmf); 25921955Sbloom addr->dmfrsp = dmf_timeout; 2606940Ssam } 2616940Ssam splx(s); 2626940Ssam /* 26326910Skarels * If this is first open, initialize tty state to default. 2646940Ssam */ 2656971Ssam if ((tp->t_state&TS_ISOPEN) == 0) { 2666940Ssam ttychars(tp); 26727052Skarels #ifndef PORTSELECTOR 26826910Skarels if (tp->t_ispeed == 0) { 26927052Skarels #else 27027052Skarels tp->t_state |= TS_HUPCLS; 27127052Skarels #endif PORTSELECTOR 27226910Skarels tp->t_ispeed = ISPEED; 27326910Skarels tp->t_ospeed = ISPEED; 27426910Skarels tp->t_flags = IFLAGS; 27527052Skarels #ifndef PORTSELECTOR 27626910Skarels } 27727052Skarels #endif PORTSELECTOR 2786940Ssam dmfparam(unit); 2796940Ssam } 2806940Ssam /* 2816940Ssam * Wait for carrier, then process line discipline specific open. 2826940Ssam */ 28321955Sbloom s = spltty(); 28426910Skarels for (;;) { 28526910Skarels if ((dmfmctl(dev, DMF_ON, DMSET) & (DMF_CAR<<8)) || 28626910Skarels (dmfsoftCAR[dmf] & (1<<(unit&07)))) 28726910Skarels tp->t_state |= TS_CARR_ON; 28826910Skarels if (tp->t_state & TS_CARR_ON) 28926910Skarels break; 2906971Ssam tp->t_state |= TS_WOPEN; 2916940Ssam sleep((caddr_t)&tp->t_rawq, TTIPRI); 2926940Ssam } 2936940Ssam splx(s); 2948567Sroot return ((*linesw[tp->t_line].l_open)(dev, tp)); 2956940Ssam } 2966940Ssam 2976940Ssam /* 2986940Ssam * Close a DMF32 line. 2996940Ssam */ 3006940Ssam /*ARGSUSED*/ 3016940Ssam dmfclose(dev, flag) 3026940Ssam dev_t dev; 3036940Ssam int flag; 3046940Ssam { 3056940Ssam register struct tty *tp; 3066940Ssam register unit; 3076940Ssam 3086940Ssam unit = minor(dev); 30926312Skarels if (unit & 0200) { 31026312Skarels dmflclose(dev,flag); 31126312Skarels return; 31226312Skarels } 31321955Sbloom 3146940Ssam tp = &dmf_tty[unit]; 3156940Ssam (*linesw[tp->t_line].l_close)(tp); 3168702Sroot (void) dmfmctl(unit, DMF_BRK, DMBIC); 3176971Ssam if (tp->t_state&TS_HUPCLS || (tp->t_state&TS_ISOPEN)==0) 3188702Sroot (void) dmfmctl(unit, DMF_OFF, DMSET); 3196940Ssam ttyclose(tp); 3206940Ssam } 3216940Ssam 3227726Sroot dmfread(dev, uio) 3236940Ssam dev_t dev; 3247726Sroot struct uio *uio; 3256940Ssam { 3266940Ssam register struct tty *tp; 3276940Ssam 32826312Skarels if (minor(dev) & 0200) 32921955Sbloom return(ENXIO); 3306940Ssam tp = &dmf_tty[minor(dev)]; 3317726Sroot return ((*linesw[tp->t_line].l_read)(tp, uio)); 3326940Ssam } 3336940Ssam 3347832Sroot dmfwrite(dev, uio) 3356940Ssam dev_t dev; 3367832Sroot struct uio *uio; 3376940Ssam { 3386940Ssam register struct tty *tp; 3396940Ssam 34026312Skarels if (minor(dev) & 0200) 34126312Skarels return (dmflwrite(dev,uio)); 3426940Ssam tp = &dmf_tty[minor(dev)]; 3438530Sroot return ((*linesw[tp->t_line].l_write)(tp, uio)); 3446940Ssam } 3456940Ssam 3466940Ssam /* 3476940Ssam * DMF32 receiver interrupt. 3486940Ssam */ 3496940Ssam dmfrint(dmf) 3506940Ssam int dmf; 3516940Ssam { 3526940Ssam register c; 35326312Skarels register struct tty *tp; 3546940Ssam register struct dmfdevice *addr; 3556940Ssam register struct tty *tp0; 35621955Sbloom int unit; 35725449Skarels int overrun = 0; 35826312Skarels register struct uba_device *ui; 3596940Ssam 36026312Skarels ui = dmfinfo[dmf]; 36126312Skarels if (ui == 0 || ui->ui_alive == 0) 36226312Skarels return; 36326312Skarels addr = (struct dmfdevice *)ui->ui_addr; 36421955Sbloom tp0 = &dmf_tty[dmf * 8]; 3656940Ssam /* 3666940Ssam * Loop fetching characters from the silo for this 3676940Ssam * dmf until there are no more in the silo. 3686940Ssam */ 3696940Ssam while ((c = addr->dmfrbuf) < 0) { 37021955Sbloom 37121955Sbloom unit = (c >> 8) & 07; 37221955Sbloom tp = tp0 + unit; 3736940Ssam if (c & DMF_DSC) { 37421955Sbloom addr->dmfcsr = DMF_IE | DMFIR_TBUF | unit; 37525449Skarels if (addr->dmfrms & DMF_CAR) 37625449Skarels (void)(*linesw[tp->t_line].l_modem)(tp, 1); 37726312Skarels else if ((dmfsoftCAR[dmf] & (1 << unit)) == 0 && 37825449Skarels (*linesw[tp->t_line].l_modem)(tp, 0) == 0) { 37925449Skarels addr->dmfcsr = DMF_IE | DMFIR_LCR | unit; 38025449Skarels addr->dmflctms = DMFLCR_ENA; 3816940Ssam } 3826940Ssam continue; 3836940Ssam } 38426312Skarels if ((tp->t_state&TS_ISOPEN) == 0) { 38525449Skarels wakeup((caddr_t)&tp->t_rawq); 38625449Skarels #ifdef PORTSELECTOR 38726312Skarels if ((tp->t_state & TS_WOPEN) == 0) 38825449Skarels #endif 38925449Skarels continue; 3906940Ssam } 39121956Sbloom if (c & (DMF_PE|DMF_DO|DMF_FE)) { 39221955Sbloom if (c & DMF_PE) 39326312Skarels if ((tp->t_flags & (EVENP|ODDP)) == EVENP 39426312Skarels || (tp->t_flags & (EVENP|ODDP)) == ODDP) 39521955Sbloom continue; 39621955Sbloom if ((c & DMF_DO) && overrun == 0) { 39724842Seric log(LOG_WARNING, "dmf%d: silo overflow\n", dmf); 39821955Sbloom overrun = 1; 39921955Sbloom } 40021955Sbloom if (c & DMF_FE) 40121955Sbloom /* 40221955Sbloom * At framing error (break) generate 40321955Sbloom * a null (in raw mode, for getty), or a 40421955Sbloom * interrupt (in cooked/cbreak mode). 40521955Sbloom */ 40626312Skarels if (tp->t_flags & RAW) 40721955Sbloom c = 0; 40821955Sbloom else 40921955Sbloom c = tp->t_intrc; 4106940Ssam } 4116940Ssam #if NBK > 0 4126940Ssam if (tp->t_line == NETLDISC) { 4136940Ssam c &= 0177; 4146940Ssam BKINPUT(c, tp); 4156940Ssam } else 4166940Ssam #endif 4176940Ssam (*linesw[tp->t_line].l_rint)(c, tp); 4186940Ssam } 4196940Ssam } 4206940Ssam 4216940Ssam /* 4226940Ssam * Ioctl for DMF32. 4236940Ssam */ 4246940Ssam /*ARGSUSED*/ 4257630Ssam dmfioctl(dev, cmd, data, flag) 4266940Ssam dev_t dev; 4277630Ssam caddr_t data; 4286940Ssam { 4296940Ssam register struct tty *tp; 4306940Ssam register int unit = minor(dev); 4318567Sroot int error; 4326940Ssam 43326312Skarels if (unit & 0200) 43421955Sbloom return (ENOTTY); 4356940Ssam tp = &dmf_tty[unit]; 4368567Sroot error = (*linesw[tp->t_line].l_ioctl)(tp, cmd, data, flag); 4378567Sroot if (error >= 0) 4388567Sroot return (error); 4398567Sroot error = ttioctl(tp, cmd, data, flag); 4408567Sroot if (error >= 0) { 44117562Sbloom if (cmd == TIOCSETP || cmd == TIOCSETN || cmd == TIOCLBIS || 44217562Sbloom cmd == TIOCLBIC || cmd == TIOCLSET) 4436940Ssam dmfparam(unit); 4448567Sroot return (error); 4458567Sroot } 4468567Sroot switch (cmd) { 4476940Ssam 4486940Ssam case TIOCSBRK: 4498702Sroot (void) dmfmctl(dev, DMF_BRK, DMBIS); 4506940Ssam break; 4517630Ssam 4526940Ssam case TIOCCBRK: 4538702Sroot (void) dmfmctl(dev, DMF_BRK, DMBIC); 4546940Ssam break; 4557630Ssam 4566940Ssam case TIOCSDTR: 4578702Sroot (void) dmfmctl(dev, DMF_DTR|DMF_RTS, DMBIS); 4586940Ssam break; 4597630Ssam 4606940Ssam case TIOCCDTR: 4618702Sroot (void) dmfmctl(dev, DMF_DTR|DMF_RTS, DMBIC); 4626940Ssam break; 4637630Ssam 4646940Ssam case TIOCMSET: 4658702Sroot (void) dmfmctl(dev, dmtodmf(*(int *)data), DMSET); 4666940Ssam break; 4677630Ssam 4686940Ssam case TIOCMBIS: 4698702Sroot (void) dmfmctl(dev, dmtodmf(*(int *)data), DMBIS); 4706940Ssam break; 4717630Ssam 4726940Ssam case TIOCMBIC: 4738702Sroot (void) dmfmctl(dev, dmtodmf(*(int *)data), DMBIC); 4746940Ssam break; 4757630Ssam 4766940Ssam case TIOCMGET: 4777630Ssam *(int *)data = dmftodm(dmfmctl(dev, 0, DMGET)); 4786940Ssam break; 4797630Ssam 4806940Ssam default: 4818567Sroot return (ENOTTY); 4826940Ssam } 4838567Sroot return (0); 4846940Ssam } 4856940Ssam 4866940Ssam dmtodmf(bits) 4876940Ssam register int bits; 4886940Ssam { 4896940Ssam register int b; 4906940Ssam 4916940Ssam b = bits & 012; 4926940Ssam if (bits & DML_ST) b |= DMF_RATE; 4936940Ssam if (bits & DML_RTS) b |= DMF_RTS; 4946940Ssam if (bits & DML_USR) b |= DMF_USRW; 4956940Ssam return(b); 4966940Ssam } 4976940Ssam 4986940Ssam dmftodm(bits) 4996940Ssam register int bits; 5006940Ssam { 5016940Ssam register int b; 5026940Ssam 5036940Ssam b = (bits & 012) | ((bits >> 7) & 0760) | DML_LE; 5046940Ssam if (bits & DMF_USRR) b |= DML_USR; 5056940Ssam if (bits & DMF_RTS) b |= DML_RTS; 5066940Ssam return(b); 5076940Ssam } 5086940Ssam 5096940Ssam 5106940Ssam /* 5116940Ssam * Set parameters from open or stty into the DMF hardware 5126940Ssam * registers. 5136940Ssam */ 5146940Ssam dmfparam(unit) 5156940Ssam register int unit; 5166940Ssam { 5176940Ssam register struct tty *tp; 5186940Ssam register struct dmfdevice *addr; 5196940Ssam register int lpar, lcr; 5206940Ssam int s; 5216940Ssam 5226940Ssam tp = &dmf_tty[unit]; 5236940Ssam addr = (struct dmfdevice *)tp->t_addr; 5246940Ssam /* 5256940Ssam * Block interrupts so parameters will be set 5266940Ssam * before the line interrupts. 5276940Ssam */ 52821955Sbloom s = spltty(); 5296940Ssam addr->dmfcsr = (unit&07) | DMFIR_LCR | DMF_IE; 5306940Ssam if ((tp->t_ispeed)==0) { 5316971Ssam tp->t_state |= TS_HUPCLS; 5328702Sroot (void) dmfmctl(unit, DMF_OFF, DMSET); 53325449Skarels splx(s); 5346940Ssam return; 5356940Ssam } 5366940Ssam lpar = (dmf_speeds[tp->t_ospeed]<<12) | (dmf_speeds[tp->t_ispeed]<<8); 5376940Ssam lcr = DMFLCR_ENA; 5386940Ssam if ((tp->t_ispeed) == B134) 5396940Ssam lpar |= BITS6|PENABLE; 54024270Slepreau else if (tp->t_flags & (RAW|LITOUT|PASS8)) 5416940Ssam lpar |= BITS8; 5426940Ssam else { 5436940Ssam lpar |= BITS7|PENABLE; 5446940Ssam /* CHECK FOR XON/XOFF AND SET lcr |= DMF_AUTOX; */ 5456940Ssam } 54612450Ssam if (tp->t_flags&EVENP) 54712450Ssam lpar |= EPAR; 5486940Ssam if ((tp->t_ospeed) == B110) 5496940Ssam lpar |= TWOSB; 5506940Ssam lpar |= (unit&07); 5516940Ssam addr->dmflpr = lpar; 55225654Skarels addr->dmflctms = (addr->dmflctms &~ 0xff) | lcr; 5536940Ssam splx(s); 5546940Ssam } 5556940Ssam 5566940Ssam /* 5576940Ssam * DMF32 transmitter interrupt. 5586940Ssam * Restart the idle line. 5596940Ssam */ 5606940Ssam dmfxint(dmf) 5616940Ssam int dmf; 5626940Ssam { 56326312Skarels int unit0 = dmf * 8; 56426312Skarels struct tty *tp0 = &dmf_tty[unit0]; 5656940Ssam register struct tty *tp; 5666940Ssam register struct dmfdevice *addr; 5676940Ssam register struct uba_device *ui; 56821955Sbloom register int t; 5696940Ssam short cntr; 5706940Ssam 5716940Ssam ui = dmfinfo[dmf]; 5726940Ssam addr = (struct dmfdevice *)ui->ui_addr; 5736940Ssam while ((t = addr->dmfcsr) & DMF_TI) { 57421955Sbloom if (t & DMF_NXM) 57521955Sbloom /* SHOULD RESTART OR SOMETHING... */ 57621955Sbloom printf("dmf%d: NXM line %d\n", dmf, t >> 8 & 7); 57721955Sbloom t = t >> 8 & 7; 57821955Sbloom tp = tp0 + t; 5796971Ssam tp->t_state &= ~TS_BUSY; 5806971Ssam if (tp->t_state&TS_FLUSH) 5816971Ssam tp->t_state &= ~TS_FLUSH; 58226312Skarels else if (dmf_dma[unit0 + t]) { 58321955Sbloom /* 58421955Sbloom * Do arithmetic in a short to make up 58521955Sbloom * for lost 16&17 bits. 58621955Sbloom */ 58721955Sbloom addr->dmfcsr = DMFIR_TBA | DMF_IE | t; 58821955Sbloom cntr = addr->dmftba - 58921955Sbloom UBACVT(tp->t_outq.c_cf, ui->ui_ubanum); 59021955Sbloom ndflush(&tp->t_outq, (int)cntr); 5916940Ssam } 5926940Ssam if (tp->t_line) 5936940Ssam (*linesw[tp->t_line].l_start)(tp); 5946940Ssam else 5956940Ssam dmfstart(tp); 5966940Ssam } 5976940Ssam } 5986940Ssam 5996940Ssam /* 6006940Ssam * Start (restart) transmission on the given DMF32 line. 6016940Ssam */ 6026940Ssam dmfstart(tp) 6036940Ssam register struct tty *tp; 6046940Ssam { 6056940Ssam register struct dmfdevice *addr; 6068607Sroot register int unit, nch; 6076940Ssam int s; 60821955Sbloom register int dmf; 6096940Ssam 6106940Ssam unit = minor(tp->t_dev); 61121955Sbloom dmf = unit >> 3; 6126940Ssam unit &= 07; 6136940Ssam addr = (struct dmfdevice *)tp->t_addr; 6146940Ssam 6156940Ssam /* 6166940Ssam * Must hold interrupts in following code to prevent 6176940Ssam * state of the tp from changing. 6186940Ssam */ 61921955Sbloom s = spltty(); 6206940Ssam /* 6216940Ssam * If it's currently active, or delaying, no need to do anything. 6226940Ssam */ 6236971Ssam if (tp->t_state&(TS_TIMEOUT|TS_BUSY|TS_TTSTOP)) 6246940Ssam goto out; 6256940Ssam /* 6266940Ssam * If there are still characters in the silo, 6276940Ssam * just reenable the transmitter. 6286940Ssam */ 6296940Ssam addr->dmfcsr = DMF_IE | DMFIR_TBUF | unit; 6306940Ssam if (addr->dmftsc) { 6316940Ssam addr->dmfcsr = DMF_IE | DMFIR_LCR | unit; 63225449Skarels addr->dmflctms = addr->dmflctms | DMF_TE; 6336971Ssam tp->t_state |= TS_BUSY; 6346940Ssam goto out; 6356940Ssam } 6366940Ssam /* 6376940Ssam * If there are sleepers, and output has drained below low 6386940Ssam * water mark, wake up the sleepers. 6396940Ssam */ 64021955Sbloom if (tp->t_outq.c_cc<=TTLOWAT(tp)) { 64121955Sbloom if (tp->t_state&TS_ASLEEP) { 64221955Sbloom tp->t_state &= ~TS_ASLEEP; 64321955Sbloom wakeup((caddr_t)&tp->t_outq); 64421955Sbloom } 64521955Sbloom if (tp->t_wsel) { 64621955Sbloom selwakeup(tp->t_wsel, tp->t_state & TS_WCOLL); 64721955Sbloom tp->t_wsel = 0; 64821955Sbloom tp->t_state &= ~TS_WCOLL; 64921955Sbloom } 6506940Ssam } 6516940Ssam /* 6526940Ssam * Now restart transmission unless the output queue is 6536940Ssam * empty. 6546940Ssam */ 6556940Ssam if (tp->t_outq.c_cc == 0) 6566940Ssam goto out; 6579550Ssam if (tp->t_flags & (RAW|LITOUT)) 6586940Ssam nch = ndqb(&tp->t_outq, 0); 6596940Ssam else { 66021955Sbloom if ((nch = ndqb(&tp->t_outq, 0200)) == 0) { 66121955Sbloom /* 66221955Sbloom * If first thing on queue is a delay process it. 66321955Sbloom */ 6646940Ssam nch = getc(&tp->t_outq); 6656940Ssam timeout(ttrstrt, (caddr_t)tp, (nch&0x7f)+6); 6666971Ssam tp->t_state |= TS_TIMEOUT; 6676940Ssam goto out; 6686940Ssam } 6696940Ssam } 6706940Ssam /* 6716940Ssam * If characters to transmit, restart transmission. 6726940Ssam */ 67321955Sbloom if (nch >= dmf_mindma) { 67421955Sbloom register car; 67521955Sbloom 67621955Sbloom dmf_dma[minor(tp->t_dev)] = 1; 6776940Ssam addr->dmfcsr = DMF_IE | DMFIR_LCR | unit; 67825449Skarels addr->dmflctms = addr->dmflctms | DMF_TE; 6796940Ssam car = UBACVT(tp->t_outq.c_cf, dmfinfo[dmf]->ui_ubanum); 6806940Ssam addr->dmfcsr = DMF_IE | DMFIR_TBA | unit; 6816940Ssam addr->dmftba = car; 68221955Sbloom addr->dmftcc = ((car >> 2) & 0xc000) | nch; 68321955Sbloom tp->t_state |= TS_BUSY; 68421955Sbloom } else if (nch) { 6856940Ssam register char *cp = tp->t_outq.c_cf; 6866940Ssam register int i; 6876940Ssam 68821955Sbloom dmf_dma[minor(tp->t_dev)] = 0; 6896940Ssam nch = MIN(nch, DMF_SILOCNT); 6906940Ssam addr->dmfcsr = DMF_IE | DMFIR_LCR | unit; 69125449Skarels addr->dmflctms = addr->dmflctms | DMF_TE; 6926940Ssam addr->dmfcsr = DMF_IE | DMFIR_TBUF | unit; 6936940Ssam for (i = 0; i < nch; i++) 6946940Ssam addr->dmftbuf = *cp++; 6956940Ssam ndflush(&tp->t_outq, nch); 6966971Ssam tp->t_state |= TS_BUSY; 6976940Ssam } 6986940Ssam out: 6996940Ssam splx(s); 7006940Ssam } 7016940Ssam 7026940Ssam /* 7036940Ssam * Stop output on a line, e.g. for ^S/^Q or output flush. 7046940Ssam */ 7056940Ssam /*ARGSUSED*/ 7066940Ssam dmfstop(tp, flag) 7076940Ssam register struct tty *tp; 7086940Ssam { 7096940Ssam register struct dmfdevice *addr; 71021955Sbloom register unit = minor(tp->t_dev) & 7; 71121955Sbloom int s; 7126940Ssam 7136940Ssam addr = (struct dmfdevice *)tp->t_addr; 7146940Ssam /* 7156940Ssam * Block input/output interrupts while messing with state. 7166940Ssam */ 71721955Sbloom s = spltty(); 71821955Sbloom if (flag) { 71921955Sbloom addr->dmfcsr = DMF_IE | DMFIR_TBUF | unit; 72021955Sbloom if (addr->dmftsc) { 72121955Sbloom /* 72221955Sbloom * Flush regardless of whether we're transmitting 72321955Sbloom * (TS_BUSY), if the silo contains untransmitted 72421955Sbloom * characters. 72521955Sbloom */ 72621955Sbloom addr->dmfcsr = DMFIR_LCR | unit | DMF_IE; 72725449Skarels addr->dmflctms = addr->dmflctms | DMF_TE | DMF_FLUSH; 72821955Sbloom /* this will interrupt so let dmfxint handle the rest */ 72921955Sbloom tp->t_state |= TS_FLUSH|TS_BUSY; 73021955Sbloom } 73121955Sbloom } else { 73221955Sbloom if (tp->t_state & TS_BUSY) { 73321955Sbloom /* 73421955Sbloom * Stop transmission by disabling 73521955Sbloom * the transmitter. We'll pick up where we 73621955Sbloom * left off by reenabling in dmfstart. 73721955Sbloom */ 73821955Sbloom addr->dmfcsr = DMFIR_LCR | unit | DMF_IE; 73925449Skarels addr->dmflctms = addr->dmflctms &~ DMF_TE; 74021955Sbloom /* no interrupt here */ 7416971Ssam tp->t_state &= ~TS_BUSY; 74221955Sbloom } 7436940Ssam } 7446940Ssam splx(s); 7456940Ssam } 7466940Ssam 7476940Ssam /* 7486940Ssam * DMF32 modem control 7496940Ssam */ 7506940Ssam dmfmctl(dev, bits, how) 7516940Ssam dev_t dev; 7526940Ssam int bits, how; 7536940Ssam { 7546940Ssam register struct dmfdevice *dmfaddr; 7556940Ssam register int unit, mbits, lcr; 7566940Ssam int s; 7576940Ssam 7586940Ssam unit = minor(dev); 7596940Ssam dmfaddr = (struct dmfdevice *)(dmf_tty[unit].t_addr); 7606940Ssam unit &= 07; 76121955Sbloom s = spltty(); 7626940Ssam dmfaddr->dmfcsr = DMF_IE | DMFIR_TBUF | unit; 7636940Ssam mbits = dmfaddr->dmfrms << 8; 7646940Ssam dmfaddr->dmfcsr = DMF_IE | DMFIR_LCR | unit; 76525654Skarels lcr = dmfaddr->dmflctms; 76625449Skarels mbits |= (lcr & 0xff00) >> 8; 7676940Ssam switch (how) { 7686940Ssam case DMSET: 76912449Ssam mbits = (mbits &0xff00) | bits; 7706940Ssam break; 7716940Ssam 7726940Ssam case DMBIS: 7736940Ssam mbits |= bits; 7746940Ssam break; 7756940Ssam 7766940Ssam case DMBIC: 7776940Ssam mbits &= ~bits; 7786940Ssam break; 7796940Ssam 7806940Ssam case DMGET: 7816940Ssam (void) splx(s); 7826940Ssam return(mbits); 7836940Ssam } 7846940Ssam if (mbits & DMF_BRK) 7856940Ssam lcr |= DMF_RBRK; 7866940Ssam else 7876940Ssam lcr &= ~DMF_RBRK; 78825449Skarels dmfaddr->dmflctms = ((mbits & 037) << 8) | (lcr & 0xff); 7896940Ssam (void) splx(s); 7906940Ssam return(mbits); 7916940Ssam } 7926940Ssam 7936940Ssam /* 7946940Ssam * Reset state of driver if UBA reset was necessary. 7956940Ssam * Reset the csr, lpr, and lcr registers on open lines, and 7966940Ssam * restart transmitters. 7976940Ssam */ 7986940Ssam dmfreset(uban) 7996940Ssam int uban; 8006940Ssam { 8016940Ssam register int dmf, unit; 8026940Ssam register struct tty *tp; 8036940Ssam register struct uba_device *ui; 8046940Ssam register struct dmfdevice *addr; 8056940Ssam int i; 8066940Ssam 8076940Ssam for (dmf = 0; dmf < NDMF; dmf++) { 8086940Ssam ui = dmfinfo[dmf]; 8096940Ssam if (ui == 0 || ui->ui_alive == 0 || ui->ui_ubanum != uban) 8106940Ssam continue; 8116940Ssam printf(" dmf%d", dmf); 81226221Skarels if (dmf_ubinfo[uban]) { 81325449Skarels dmf_ubinfo[uban] = uballoc(uban, (caddr_t)cfree, 81425449Skarels nclist*sizeof (struct cblock), 0); 81526221Skarels cbase[uban] = UBAI_ADDR(dmf_ubinfo[uban]); 81625449Skarels } 8176940Ssam addr = (struct dmfdevice *)ui->ui_addr; 8186940Ssam addr->dmfcsr = DMF_IE; 81921955Sbloom addr->dmfrsp = dmf_timeout; 8206940Ssam unit = dmf * 8; 8216940Ssam for (i = 0; i < 8; i++) { 8226940Ssam tp = &dmf_tty[unit]; 8236971Ssam if (tp->t_state & (TS_ISOPEN|TS_WOPEN)) { 8246940Ssam dmfparam(unit); 8258702Sroot (void) dmfmctl(unit, DMF_ON, DMSET); 8266971Ssam tp->t_state &= ~TS_BUSY; 8276940Ssam dmfstart(tp); 8286940Ssam } 8296940Ssam unit++; 8306940Ssam } 8316940Ssam } 8326940Ssam } 8336940Ssam 83426312Skarels /* 83526312Skarels * dmflopen -- open the line printer port on a dmf32 83621955Sbloom */ 83726312Skarels /* ARGSUSED */ 83826312Skarels dmflopen(dev, flag) 83926312Skarels dev_t dev; 84026312Skarels int flag; 84121955Sbloom { 84221955Sbloom register int dmf; 84321955Sbloom register struct dmfl_softc *sc; 84421955Sbloom register struct uba_device *ui; 84521955Sbloom register struct dmfdevice *addr; 84621955Sbloom 84726312Skarels dmf = DMFL_UNIT(dev); 84826910Skarels if (dmf >= NDMF || (ui = dmfinfo[dmf]) == 0 || ui->ui_alive == 0) 84926910Skarels return (ENXIO); 85026910Skarels sc = &dmfl_softc[dmf]; 85126910Skarels if (sc->dmfl_state & OPEN) 85226910Skarels return (EBUSY); 85321955Sbloom addr = (struct dmfdevice *)ui->ui_addr; 85426910Skarels if (addr->dmfl_ctrl & DMFL_OFFLINE) { 85526910Skarels #ifdef notdef 85626910Skarels log(LOG_WARNING, "dmf%d: line printer offline/jammed\n", 85726910Skarels dmf); 85826910Skarels #endif 85926312Skarels return (EIO); 86021955Sbloom } 86126910Skarels if ((addr->dmfl_ctrl & DMFL_CONV)) { 86226910Skarels log(LOG_WARNING, "dmf%d: line printer disconnected\n", dmf); 86326312Skarels return (EIO); 86421955Sbloom } 86521955Sbloom 86626910Skarels addr->dmfl_ctrl = 0; 86721955Sbloom sc->dmfl_state |= OPEN; 86826312Skarels return (0); 86921955Sbloom } 87021955Sbloom 87126312Skarels /* ARGSUSED */ 87226312Skarels dmflclose(dev, flag) 87326312Skarels dev_t dev; 87426312Skarels int flag; 87521955Sbloom { 87626910Skarels register int dmf = DMFL_UNIT(dev); 87721955Sbloom register struct dmfl_softc *sc = &dmfl_softc[dmf]; 87826910Skarels register struct uba_device *ui = dmfinfo[dmf]; 87921955Sbloom 88021955Sbloom sc->dmfl_state = 0; 88126312Skarels if (sc->dmfl_info != 0) 88226910Skarels ubarelse((int)ui->ui_ubanum, &sc->dmfl_info); 88321955Sbloom 88426910Skarels ((struct dmfdevice *)ui->ui_addr)->dmfl_ctrl = 0; 88521955Sbloom } 88621955Sbloom 88726312Skarels dmflwrite(dev, uio) 88826312Skarels dev_t dev; 88926312Skarels struct uio *uio; 89021955Sbloom { 89126366Skarels register int n; 89221955Sbloom register int error; 89321955Sbloom register struct dmfl_softc *sc; 89421955Sbloom 89521955Sbloom sc = &dmfl_softc[DMFL_UNIT(dev)]; 89626910Skarels if (sc->dmfl_state & ERROR) 89726910Skarels return (EIO); 89826910Skarels while (n = (unsigned)uio->uio_resid) { 89926910Skarels if (n > DMFL_BUFSIZ) { 90026910Skarels n = DMFL_BUFSIZ; 90126910Skarels sc->dmfl_state |= MOREIO; 90226910Skarels } else 90326910Skarels sc->dmfl_state &= ~MOREIO; 90426910Skarels if (error = uiomove(sc->dmfl_buf, (int)n, UIO_WRITE, uio)) 90526312Skarels return (error); 90626910Skarels if (error = dmflout(dev, sc->dmfl_buf, n)) 90726312Skarels return (error); 90821955Sbloom } 90926312Skarels return (0); 91021955Sbloom } 91121955Sbloom 91221955Sbloom 91326312Skarels /* 91426312Skarels * dmflout -- start io operation to dmf line printer 91521955Sbloom * cp is addr of buf of n chars to be sent. 91621955Sbloom * 91721955Sbloom * -- dmf will be put in formatted output mode, this will 91821955Sbloom * be selectable from an ioctl if the 91921955Sbloom * need ever arises. 92021955Sbloom */ 92126312Skarels dmflout(dev, cp, n) 92226312Skarels dev_t dev; 92326312Skarels char *cp; 92426312Skarels int n; 92521955Sbloom { 92621955Sbloom register struct dmfl_softc *sc; 92721955Sbloom register int dmf; 92821955Sbloom register struct uba_device *ui; 92921955Sbloom register struct dmfdevice *d; 93026910Skarels int s; 93121955Sbloom 93226312Skarels dmf = DMFL_UNIT(dev); 93326312Skarels sc = &dmfl_softc[dmf]; 93426312Skarels if (sc->dmfl_state & ERROR) 93526312Skarels return (EIO); 93626312Skarels ui = dmfinfo[dmf]; 93726312Skarels /* 93826312Skarels * allocate unibus resources, will be released when io 93926312Skarels * operation is done. 94021955Sbloom */ 94126910Skarels if (sc->dmfl_info == 0) 94226910Skarels sc->dmfl_info = uballoc(ui->ui_ubanum, cp, n, 0); 94326312Skarels d = (struct dmfdevice *)ui->ui_addr; 94426910Skarels d->dmfl_ctrl = sc->dmfl_format; /* indir reg 2 */ 94521955Sbloom /* indir reg auto increments on r/w */ 94621955Sbloom /* SO DON'T CHANGE THE ORDER OF THIS CODE */ 94726910Skarels d->dmfl_indrct = 0; /* prefix chars & num */ 94826910Skarels d->dmfl_indrct = 0; /* suffix chars & num */ 94926910Skarels d->dmfl_indrct = sc->dmfl_info; /* dma lo 16 bits addr */ 95026910Skarels d->dmfl_indrct = -n; /* number of chars */ 95121955Sbloom 95226910Skarels d->dmfl_indrct = ((sc->dmfl_info>>16)&3) | DMFL_OPTIONS; 95326910Skarels /* dma hi 2 bits addr */ 95426910Skarels d->dmfl_indrct = sc->dmfl_lines /* lines per page */ 95526910Skarels | (sc->dmfl_cols<<8); /* carriage width */ 95621955Sbloom sc->dmfl_state |= ASLP; 95726910Skarels s = spltty(); 95826910Skarels d->dmfl_ctrl |= DMFL_PEN | DMFL_IE; 95926312Skarels while (sc->dmfl_state & ASLP) { 96026910Skarels sleep(sc->dmfl_buf, PZERO + 8); 96126312Skarels while (sc->dmfl_state & ERROR) { 96226910Skarels timeout(dmflint, (caddr_t)dmf, 10 * hz); 96326910Skarels sleep((caddr_t)&sc->dmfl_state, PZERO + 8); 96421955Sbloom } 96521955Sbloom } 96626910Skarels splx(s); 96726312Skarels return (0); 96821955Sbloom } 96926312Skarels 97026312Skarels /* 97126312Skarels * dmflint -- handle an interrupt from the line printer part of the dmf32 97221955Sbloom */ 97321955Sbloom dmflint(dmf) 97426312Skarels int dmf; 97521955Sbloom { 97621955Sbloom register struct uba_device *ui; 97721955Sbloom register struct dmfl_softc *sc; 97821955Sbloom register struct dmfdevice *d; 97926910Skarels short dmfl_stats; 98021955Sbloom 98126312Skarels ui = dmfinfo[dmf]; 98226312Skarels sc = &dmfl_softc[dmf]; 98326312Skarels d = (struct dmfdevice *)ui->ui_addr; 98421955Sbloom 98526910Skarels d->dmfl_ctrl &= ~DMFL_IE; 986*27057Skarels dmfl_stats = d->dmfl_ctrl; 98726312Skarels if (sc->dmfl_state & ERROR) { 98826910Skarels if ((dmfl_stats & DMFL_OFFLINE) == 0) 98921955Sbloom sc->dmfl_state &= ~ERROR; 99026366Skarels wakeup((caddr_t)&sc->dmfl_state); 99121955Sbloom return; 99221955Sbloom } 99326910Skarels if (dmfl_stats & DMFL_DMAERR) 99426910Skarels log(LOG_WARNING, "dmf%d: NXM\n", dmf); 99526910Skarels if (dmfl_stats & DMFL_OFFLINE) { 99626910Skarels log(LOG_WARNING, "dmf%d: printer error\n", dmf); 99721955Sbloom sc->dmfl_state |= ERROR; 99821955Sbloom } 99921955Sbloom #ifdef notdef 100026910Skarels if (dmfl_stats & DMFL_PDONE) { 100126910Skarels printf("bytes= %d\n", d->dmfl_indrct); 100226910Skarels printf("lines= %d\n", d->dmfl_indrct); 100326910Skarels } 100421955Sbloom #endif 100521955Sbloom sc->dmfl_state &= ~ASLP; 100626910Skarels wakeup((caddr_t)sc->dmfl_buf); 100726910Skarels if (sc->dmfl_info && (sc->dmfl_state & MOREIO) == 0) 100826312Skarels ubarelse(ui->ui_ubanum, &sc->dmfl_info); 100921955Sbloom } 101021955Sbloom 10116940Ssam /* stubs for interrupt routines for devices not yet supported */ 10126940Ssam 101326312Skarels dmfsrint() 101426312Skarels { 101526312Skarels printf("dmfsrint\n"); 101626312Skarels } 10176940Ssam 101826312Skarels dmfsxint() 101926312Skarels { 102026312Skarels printf("dmfsxint\n"); 102126312Skarels } 10226940Ssam 102326312Skarels dmfdaint() 102426312Skarels { 102526312Skarels printf("dmfdaint\n"); 102626312Skarels } 10276940Ssam 102826312Skarels dmfdbint() 102926312Skarels { 103026312Skarels printf("dmfdbint\n"); 103126312Skarels } 103226910Skarels #endif NDMF 1033