350 lines
13 KiB
C
350 lines
13 KiB
C
/* hp2100_lpt.c: HP 2100 12845B line printer simulator
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Copyright (c) 1993-2012, Robert M. Supnik
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Permission is hereby granted, free of charge, to any person obtaining a
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copy of this software and associated documentation files (the "Software"),
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to deal in the Software without restriction, including without limitation
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the rights to use, copy, modify, merge, publish, distribute, sublicense,
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and/or sell copies of the Software, and to permit persons to whom the
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Software is furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in
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all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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ROBERT M SUPNIK BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER
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IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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Except as contained in this notice, the name of Robert M Supnik shall not be
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used in advertising or otherwise to promote the sale, use or other dealings
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in this Software without prior written authorization from Robert M Supnik.
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LPT 12845B 2607 line printer
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10-Feb-12 JDB Deprecated DEVNO in favor of SC
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28-Mar-11 JDB Tidied up signal handling
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26-Oct-10 JDB Changed I/O signal handler for revised signal model
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26-Jun-08 JDB Rewrote device I/O to model backplane signals
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Changed CTIME register width to match documentation
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22-Jan-07 RMS Added UNIT_TEXT flag
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28-Dec-06 JDB Added ioCRS state to I/O decoders
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19-Nov-04 JDB Added restart when set online, etc.
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29-Sep-04 JDB Added SET OFFLINE/ONLINE, POWEROFF/POWERON
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Fixed status returns for error conditions
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Fixed TOF handling so form remains on line 0
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03-Jun-04 RMS Fixed timing (found by Dave Bryan)
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26-Apr-04 RMS Fixed SFS x,C and SFC x,C
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Implemented DMA SRQ (follows FLG)
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25-Apr-03 RMS Revised for extended file support
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24-Oct-02 RMS Cloned from 12653A
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Reference:
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- 12845A Line Printer Operating and Service Manual (12845-90001, Aug-1972)
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The 2607 provides three status bits via the interface:
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bit 15 -- printer ready (online)
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bit 14 -- paper out
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bit 0 -- printer idle
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The expected status returns are:
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140001 -- power off or cable disconnected
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100001 -- power on, paper loaded, printer ready
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100000 -- power on, paper loaded, printer busy
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040000 -- power on, paper out (at bottom-of-form)
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000000 -- power on, paper out (not at BOF) / print button up / platen open
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Manual Note: "2-33. PAPER OUT SIGNAL. [...] The signal is asserted only
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when the format tape in the line printer has reached the bottom of form."
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These simulator commands provide the listed printer states:
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SET LPT POWEROFF --> power off or cable disconnected
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SET LPT POWERON --> power on
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SET LPT OFFLINE --> print button up
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SET LPT ONLINE --> print button down
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ATT LPT <file> --> paper loaded
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DET LPT --> paper out
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*/
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#include "hp2100_defs.h"
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#define LPT_PAGELNT 60 /* page length */
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#define LPT_NBSY 0000001 /* not busy */
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#define LPT_PAPO 0040000 /* paper out */
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#define LPT_RDY 0100000 /* ready */
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#define LPT_PWROFF LPT_RDY | LPT_PAPO | LPT_NBSY /* power-off status */
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#define LPT_CTL 0100000 /* control output */
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#define LPT_CHAN 0000100 /* skip to chan */
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#define LPT_SKIPM 0000077 /* line count mask */
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#define LPT_CHANM 0000007 /* channel mask */
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#define UNIT_V_POWEROFF (UNIT_V_UF + 0) /* unit powered off */
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#define UNIT_V_OFFLINE (UNIT_V_UF + 1) /* unit offline */
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#define UNIT_POWEROFF (1 << UNIT_V_POWEROFF)
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#define UNIT_OFFLINE (1 << UNIT_V_OFFLINE)
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struct {
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FLIP_FLOP control; /* control flip-flop */
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FLIP_FLOP flag; /* flag flip-flop */
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FLIP_FLOP flagbuf; /* flag buffer flip-flop */
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} lpt = { CLEAR, CLEAR, CLEAR };
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int32 lpt_ctime = 4; /* char time */
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int32 lpt_ptime = 10000; /* print time */
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int32 lpt_stopioe = 0; /* stop on error */
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int32 lpt_lcnt = 0; /* line count */
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static int32 lpt_cct[8] = {
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1, 1, 1, 2, 3, LPT_PAGELNT/2, LPT_PAGELNT/4, LPT_PAGELNT/6
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};
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DEVICE lpt_dev;
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IOHANDLER lptio;
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t_stat lpt_svc (UNIT *uptr);
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t_stat lpt_reset (DEVICE *dptr);
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t_stat lpt_restart (UNIT *uptr, int32 value, char *cptr, void *desc);
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t_stat lpt_attach (UNIT *uptr, char *cptr);
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/* LPT data structures
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lpt_dev LPT device descriptor
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lpt_unit LPT unit descriptor
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lpt_reg LPT register list
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*/
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DIB lpt_dib = { &lptio, LPT };
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UNIT lpt_unit = {
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UDATA (&lpt_svc, UNIT_SEQ+UNIT_ATTABLE+UNIT_DISABLE+UNIT_TEXT, 0)
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};
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REG lpt_reg[] = {
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{ ORDATA (BUF, lpt_unit.buf, 7) },
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{ FLDATA (CTL, lpt.control, 0) },
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{ FLDATA (FLG, lpt.flag, 0) },
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{ FLDATA (FBF, lpt.flagbuf, 0) },
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{ DRDATA (LCNT, lpt_lcnt, 7) },
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{ DRDATA (POS, lpt_unit.pos, T_ADDR_W), PV_LEFT },
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{ DRDATA (CTIME, lpt_ctime, 24), PV_LEFT },
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{ DRDATA (PTIME, lpt_ptime, 24), PV_LEFT },
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{ FLDATA (STOP_IOE, lpt_stopioe, 0) },
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{ ORDATA (SC, lpt_dib.select_code, 6), REG_HRO },
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{ ORDATA (DEVNO, lpt_dib.select_code, 6), REG_HRO },
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{ NULL }
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};
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MTAB lpt_mod[] = {
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{ UNIT_POWEROFF, UNIT_POWEROFF, "power off", "POWEROFF", NULL },
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{ UNIT_POWEROFF, 0, "power on", "POWERON", lpt_restart },
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{ UNIT_OFFLINE, UNIT_OFFLINE, "offline", "OFFLINE", NULL },
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{ UNIT_OFFLINE, 0, "online", "ONLINE", lpt_restart },
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{ MTAB_XTD | MTAB_VDV, 0, "SC", "SC", &hp_setsc, &hp_showsc, &lpt_dev },
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{ MTAB_XTD | MTAB_VDV | MTAB_NMO, 0, "DEVNO", "DEVNO", &hp_setdev, &hp_showdev, &lpt_dev },
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{ 0 }
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};
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DEVICE lpt_dev = {
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"LPT", &lpt_unit, lpt_reg, lpt_mod,
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1, 10, 31, 1, 8, 8,
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NULL, NULL, &lpt_reset,
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NULL, &lpt_attach, NULL,
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&lpt_dib, DEV_DISABLE
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};
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/* I/O signal handler */
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uint32 lptio (DIB *dibptr, IOCYCLE signal_set, uint32 stat_data)
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{
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uint16 data;
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IOSIGNAL signal;
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IOCYCLE working_set = IOADDSIR (signal_set); /* add ioSIR if needed */
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while (working_set) {
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signal = IONEXT (working_set); /* isolate next signal */
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switch (signal) { /* dispatch I/O signal */
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case ioCLF: /* clear flag flip-flop */
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lpt.flag = lpt.flagbuf = CLEAR;
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break;
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case ioSTF: /* set flag flip-flop */
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case ioENF: /* enable flag */
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lpt.flag = lpt.flagbuf = SET;
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break;
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case ioSFC: /* skip if flag is clear */
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setstdSKF (lpt);
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break;
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case ioSFS: /* skip if flag is set */
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setstdSKF (lpt);
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break;
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case ioIOI: /* I/O data input */
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data = 0;
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if (lpt_unit.flags & UNIT_POWEROFF) /* power off? */
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data = LPT_PWROFF;
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else if (!(lpt_unit.flags & UNIT_OFFLINE)) { /* online? */
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if (lpt_unit.flags & UNIT_ATT) { /* paper loaded? */
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data = LPT_RDY;
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if (!sim_is_active (&lpt_unit)) /* printer busy? */
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data = data | LPT_NBSY;
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}
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else if (lpt_lcnt == LPT_PAGELNT - 1) /* paper out, at BOF? */
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data = LPT_PAPO;
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}
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stat_data = IORETURN (SCPE_OK, data); /* merge in return status */
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break;
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case ioIOO: /* I/O data output */
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lpt_unit.buf = IODATA (stat_data) & (LPT_CTL | 0177);
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break;
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case ioPOPIO: /* power-on preset to I/O */
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lpt.flag = lpt.flagbuf = SET; /* set flag and flag buffer */
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lpt_unit.buf = 0; /* clear output buffer */
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break;
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case ioCRS: /* control reset */
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case ioCLC: /* clear control flip-flop */
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lpt.control = CLEAR;
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break;
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case ioSTC: /* set control flip-flop */
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lpt.control = SET;
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sim_activate (&lpt_unit, /* schedule op */
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(lpt_unit.buf & LPT_CTL)? lpt_ptime: lpt_ctime);
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break;
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case ioSIR: /* set interrupt request */
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setstdPRL (lpt); /* set standard PRL signal */
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setstdIRQ (lpt); /* set standard IRQ signal */
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setstdSRQ (lpt); /* set standard SRQ signal */
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break;
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case ioIAK: /* interrupt acknowledge */
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lpt.flagbuf = CLEAR;
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break;
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default: /* all other signals */
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break; /* are ignored */
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}
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working_set = working_set & ~signal; /* remove current signal from set */
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}
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return stat_data;
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}
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/* Unit service */
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t_stat lpt_svc (UNIT *uptr)
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{
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int32 i, skip, chan;
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if ((uptr->flags & UNIT_ATT) == 0) /* attached? */
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return IOERROR (lpt_stopioe, SCPE_UNATT);
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else if (uptr->flags & UNIT_OFFLINE) /* offline? */
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return IOERROR (lpt_stopioe, STOP_OFFLINE);
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else if (uptr->flags & UNIT_POWEROFF) /* powered off? */
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return IOERROR (lpt_stopioe, STOP_PWROFF);
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lptio (&lpt_dib, ioENF, 0); /* set flag */
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if (uptr->buf & LPT_CTL) { /* control word? */
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if (uptr->buf & LPT_CHAN) {
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chan = uptr->buf & LPT_CHANM;
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if (chan == 0) { /* top of form? */
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fputc ('\f', uptr->fileref); /* ffeed */
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lpt_lcnt = 0; /* reset line cnt */
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skip = 0;
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}
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else if (chan == 1) skip = LPT_PAGELNT - lpt_lcnt - 1;
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else skip = lpt_cct[chan] - (lpt_lcnt % lpt_cct[chan]);
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}
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else {
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skip = uptr->buf & LPT_SKIPM;
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if (skip == 0) fputc ('\r', uptr->fileref);
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}
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for (i = 0; i < skip; i++) fputc ('\n', uptr->fileref);
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lpt_lcnt = (lpt_lcnt + skip) % LPT_PAGELNT;
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}
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else fputc (uptr->buf & 0177, uptr->fileref); /* no, just add char */
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if (ferror (uptr->fileref)) {
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perror ("LPT I/O error");
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clearerr (uptr->fileref);
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return SCPE_IOERR;
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}
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lpt_unit.pos = ftell (uptr->fileref); /* update pos */
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return SCPE_OK;
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}
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/* Reset routine */
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t_stat lpt_reset (DEVICE *dptr)
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{
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IOPRESET (&lpt_dib); /* PRESET device (does not use PON) */
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sim_cancel (&lpt_unit); /* deactivate unit */
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return SCPE_OK;
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}
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/* Restart I/O routine
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If I/O is started via STC, and the printer is powered off, offline,
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or out of paper, the CTL and CMD flip-flops will set, a service event
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will be scheduled, and the service routine will be entered. If
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STOP_IOE is not set, the I/O operation will "hang" at that point
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until the printer is powered on, set online, or paper is supplied
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(attached).
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If a pending operation is "hung" when this routine is called, it is
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restarted, which clears CTL and sets FBF and FLG, completing the
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original I/O request.
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*/
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t_stat lpt_restart (UNIT *uptr, int32 value, char *cptr, void *desc)
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{
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if (lpt.control && !sim_is_active (uptr))
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sim_activate (uptr, 0); /* reschedule I/O */
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return SCPE_OK;
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}
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/* Attach routine */
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t_stat lpt_attach (UNIT *uptr, char *cptr)
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{
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lpt_lcnt = 0; /* top of form */
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lpt_restart (uptr, 0, NULL, NULL); /* restart I/O if hung */
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return attach_unit (uptr, cptr);
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}
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