Annotation of Gnu-Mach/i386/i386at/lpr.c, revision 1.1.1.3

1.1       root        1: /* 
                      2:  * Mach Operating System
                      3:  * Copyright (c) 1993-1990 Carnegie Mellon University
                      4:  * All Rights Reserved.
                      5:  * 
                      6:  * Permission to use, copy, modify and distribute this software and its
                      7:  * documentation is hereby granted, provided that both the copyright
                      8:  * notice and this permission notice appear in all copies of the
                      9:  * software, derivative works or modified versions, and any portions
                     10:  * thereof, and that both notices appear in supporting documentation.
                     11:  * 
                     12:  * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS"
                     13:  * CONDITION.  CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND FOR
                     14:  * ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE.
                     15:  * 
                     16:  * Carnegie Mellon requests users of this software to return to
                     17:  * 
                     18:  *  Software Distribution Coordinator  or  [email protected]
                     19:  *  School of Computer Science
                     20:  *  Carnegie Mellon University
                     21:  *  Pittsburgh PA 15213-3890
                     22:  * 
                     23:  * any improvements or extensions that they make and grant Carnegie Mellon
                     24:  * the rights to redistribute these changes.
                     25:  */
                     26: /* 
                     27:  *     Parallel port printer driver v1.0
                     28:  *     All rights reserved.
                     29:  */ 
                     30:   
                     31: #if NLPR > 0
                     32:   
                     33: #include <mach/std_types.h>
                     34: #include <sys/types.h>
1.1.1.2   root       35: #include <kern/printf.h>
                     36: #include <kern/mach_clock.h>
1.1       root       37: #include <sys/time.h>
                     38: #include <device/conf.h>
1.1.1.2   root       39: #include <device/device_types.h>
1.1       root       40: #include <device/tty.h>
                     41: #include <device/io_req.h>
                     42:   
                     43: #include <i386/ipl.h>
                     44: #include <i386/pio.h>
                     45: #include <chips/busses.h>
1.1.1.2   root       46: #include <i386at/autoconf.h>
1.1.1.3 ! root       47: #include <i386at/lpr.h>
1.1       root       48:   
                     49: /* 
                     50:  * Driver information for auto-configuration stuff.
                     51:  */
                     52: 
                     53: struct bus_device *lprinfo[NLPR];      /* ??? */
                     54: 
                     55: static vm_offset_t lpr_std[NLPR] = { 0 };
                     56: static struct bus_device *lpr_info[NLPR];
                     57: struct bus_driver lprdriver = {
                     58:        lprprobe, 0, lprattach, 0, lpr_std, "lpr", lpr_info, 0, 0, 0};
                     59: 
                     60: struct tty     lpr_tty[NLPR];
                     61: 
                     62: int lpr_alive[NLPR];
                     63: 
1.1.1.2   root       64: int
1.1       root       65: lprprobe(port, dev)
1.1.1.3 ! root       66: vm_offset_t port;
        !            67: struct bus_ctlr *dev;
1.1       root       68: {
                     69:        u_short addr = (u_short) dev->address;
                     70:        int     unit = dev->unit;
                     71:        int ret;
                     72: 
                     73:        if ((unit < 0) || (unit > NLPR)) {
                     74:                printf("com %d out of range\n", unit);
                     75:                return(0);
                     76:        }
                     77: 
                     78:        outb(INTR_ENAB(addr),0x07);
                     79:        outb(DATA(addr),0xaa);
                     80:        ret = inb(DATA(addr)) == 0xaa;
                     81:        if (ret) {
                     82:                if (lpr_alive[unit]) {
                     83:                        printf("lpr: Multiple alive entries for unit %d.\n", unit);
                     84:                        printf("lpr: Ignoring entry with address = %x .\n", addr);
                     85:                        ret = 0;
                     86:                } else
                     87:                        lpr_alive[unit]++;
                     88:        }
                     89:        return(ret);
                     90: }
                     91: 
                     92: void lprattach(struct bus_device *dev)
                     93: {
                     94:        u_char          unit = dev->unit;
                     95:        u_short         addr = (u_short) dev->address;
                     96: 
                     97:        take_dev_irq(dev);
1.1.1.2   root       98:        printf(", port = %lx, spl = %ld, pic = %d.",
1.1       root       99:               dev->address, dev->sysdep, dev->sysdep1);
                    100:        lprinfo[unit] = dev;
                    101:   
                    102:        outb(INTR_ENAB(addr), inb(INTR_ENAB(addr)) & 0x0f);
                    103: 
                    104:        return;
                    105: }
                    106: 
1.1.1.2   root      107: int
1.1       root      108: lpropen(dev, flag, ior)
1.1.1.3 ! root      109: dev_t dev;
1.1       root      110: int flag;
                    111: io_req_t ior;
                    112: {
                    113: int unit = minor(dev);
                    114: struct bus_device *isai;
                    115: struct tty *tp;
                    116: u_short addr;
                    117:   
                    118:        if (unit >= NLPR || (isai = lprinfo[unit]) == 0 || isai->alive == 0)
1.1.1.2   root      119:                return (D_NO_SUCH_DEVICE);
1.1       root      120:        tp = &lpr_tty[unit];
                    121:        addr = (u_short) isai->address;
                    122:        tp->t_dev = dev;
                    123:        tp->t_addr = *(caddr_t *)&addr;
                    124:        tp->t_oproc = lprstart;
                    125:        tp->t_state |= TS_WOPEN;
                    126:        tp->t_stop = lprstop;
                    127:        tp->t_getstat = lprgetstat;
                    128:        tp->t_setstat = lprsetstat;
                    129:        if ((tp->t_state & TS_ISOPEN) == 0)
                    130:                ttychars(tp);
                    131:        outb(INTR_ENAB(addr), inb(INTR_ENAB(addr)) | 0x10);
                    132:        tp->t_state |= TS_CARR_ON;
                    133:        return (char_open(dev, tp, flag, ior));
                    134: }
                    135: 
1.1.1.2   root      136: void
1.1       root      137: lprclose(dev, flag)
1.1.1.3 ! root      138: dev_t dev;
1.1       root      139: int flag;
                    140: {
                    141: int            unit = minor(dev);
                    142: struct tty     *tp = &lpr_tty[unit];
                    143: u_short                addr =  (u_short) lprinfo[unit]->address;
                    144:   
                    145:        ttyclose(tp);
                    146:        if (tp->t_state&TS_HUPCLS || (tp->t_state&TS_ISOPEN)==0) {
                    147:                outb(INTR_ENAB(addr), inb(INTR_ENAB(addr)) & 0x0f);
                    148:                tp->t_state &= ~TS_BUSY;
                    149:        } 
                    150: }
                    151: 
1.1.1.2   root      152: int
1.1       root      153: lprread(dev, ior)
1.1.1.3 ! root      154: dev_t  dev;
1.1       root      155: io_req_t ior;
                    156: {
                    157:        return char_read(&lpr_tty[minor(dev)], ior);
                    158: }
                    159: 
1.1.1.2   root      160: int
1.1       root      161: lprwrite(dev, ior)
1.1.1.3 ! root      162: dev_t  dev;
1.1       root      163: io_req_t ior;
                    164: {
                    165:        return char_write(&lpr_tty[minor(dev)], ior);
                    166: }
                    167: 
1.1.1.2   root      168: int
1.1       root      169: lprportdeath(dev, port)
                    170: dev_t          dev;
                    171: mach_port_t    port;
                    172: {
1.1.1.2   root      173:        return (tty_portdeath(&lpr_tty[minor(dev)], (ipc_port_t)port));
1.1       root      174: }
                    175: 
                    176: io_return_t
                    177: lprgetstat(dev, flavor, data, count)
                    178: dev_t          dev;
                    179: int            flavor;
                    180: int            *data;          /* pointer to OUT array */
1.1.1.2   root      181: natural_t      *count;         /* out */
1.1       root      182: {
                    183:        io_return_t     result = D_SUCCESS;
                    184:        int             unit = minor(dev);
                    185: 
                    186:        switch (flavor) {
                    187:        default:
                    188:                result = tty_get_status(&lpr_tty[unit], flavor, data, count);
                    189:                break;
                    190:        }
                    191:        return (result);
                    192: }
                    193: 
                    194: io_return_t
1.1.1.3 ! root      195: lprsetstat(
        !           196:        dev_t           dev,
        !           197:        int             flavor,
        !           198:        int *           data,
        !           199:        natural_t       count)
1.1       root      200: {
                    201:        io_return_t     result = D_SUCCESS;
                    202:        int             unit = minor(dev);
                    203: 
                    204:        switch (flavor) {
                    205:        default:
                    206:                result = tty_set_status(&lpr_tty[unit], flavor, data, count);
                    207: /*             if (result == D_SUCCESS && flavor == TTY_STATUS)
                    208:                        lprparam(unit);
                    209: */             return (result);
                    210:        }
                    211:        return (D_SUCCESS);
                    212: }
                    213: 
1.1.1.3 ! root      214: void lprintr(int unit)
1.1       root      215: {
1.1.1.3 ! root      216:        struct tty *tp = &lpr_tty[unit];
1.1       root      217: 
                    218:        if ((tp->t_state & TS_ISOPEN) == 0)
                    219:          return;
                    220: 
                    221:        tp->t_state &= ~TS_BUSY;
                    222:        if (tp->t_state&TS_FLUSH)
                    223:                tp->t_state &=~TS_FLUSH;
                    224:        tt_write_wakeup(tp);
                    225:        lprstart(tp);
                    226: }   
                    227: 
1.1.1.3 ! root      228: void lprstart(struct tty *tp)
1.1       root      229: {
                    230:        spl_t s = spltty();
                    231:        u_short addr = (natural_t) tp->t_addr;
                    232:        int status = inb(STATUS(addr));
                    233:        char nch;
                    234: 
                    235:        if (tp->t_state & (TS_TIMEOUT|TS_TTSTOP|TS_BUSY)) {
                    236:                splx(s);
1.1.1.2   root      237:                return;
1.1       root      238:        }
                    239: 
                    240:        if (status & 0x20) {
                    241:                printf("Printer out of paper!\n");
                    242:                splx(s);
1.1.1.2   root      243:                return;
1.1       root      244:        }
                    245: 
                    246:        if (tp->t_outq.c_cc <= TTLOWAT(tp)) {
                    247:                tt_write_wakeup(tp);
                    248:        }
                    249:        if (tp->t_outq.c_cc == 0) {
                    250:                splx(s);
1.1.1.2   root      251:                return;
1.1       root      252:        }
                    253:        nch = getc(&tp->t_outq);
                    254:        if ((tp->t_flags & LITOUT) == 0 && (nch & 0200)) {
1.1.1.2   root      255:                timeout((timer_func_t *)ttrstrt, (char *)tp, (nch & 0x7f) + 6);
1.1       root      256:                tp->t_state |= TS_TIMEOUT;
                    257:                return;
                    258:        }
                    259:        outb(DATA(addr), nch);
                    260:        outb(INTR_ENAB(addr),inb(INTR_ENAB(addr)) | 0x01);
                    261:        outb(INTR_ENAB(addr),inb(INTR_ENAB(addr)) & 0x1e);
                    262:        tp->t_state |= TS_BUSY;
                    263:        splx(s);
1.1.1.2   root      264:        return;
1.1       root      265: }
                    266: 
1.1.1.2   root      267: void
1.1.1.3 ! root      268: lprstop(
        !           269:        struct tty      *tp,
        !           270:        int             flags)
1.1       root      271: {
                    272:        if ((tp->t_state & TS_BUSY) && (tp->t_state & TS_TTSTOP) == 0)
                    273:                tp->t_state |= TS_FLUSH;
                    274: }
1.1.1.2   root      275: int
1.1.1.3 ! root      276: lprpr(int unit)
1.1       root      277: {
                    278:        lprpr_addr(lprinfo[unit]->address);
                    279:        return 0;
                    280: }
                    281: 
1.1.1.2   root      282: void
1.1.1.3 ! root      283: lprpr_addr(unsigned short addr)
1.1       root      284: {
                    285:        printf("DATA(%x) %x, STATUS(%x) %x, INTR_ENAB(%x) %x\n",
                    286:                DATA(addr), inb(DATA(addr)),
                    287:                STATUS(addr), inb(STATUS(addr)),
                    288:                INTR_ENAB(addr), inb(INTR_ENAB(addr)));
                    289: }
1.1.1.2   root      290: #endif /* NLPR */

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