These changes facilitate more robust parameter type checking and helps to identify unexpected coding errors. Most simulators can now also be compiled with a C++ compiler without warnings. Additionally, these changes have also been configured to facilitate easier backporting of simulator and device simulation modules to run under the simh v3.9+ SCP framework.
299 lines
8.7 KiB
C
299 lines
8.7 KiB
C
/* nova_pt.c: NOVA paper tape read/punch simulator
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Copyright (c) 1993-2016, 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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ptr paper tape reader
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ptp paper tape punch
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13-May-16 RMS Lengthened wait time for DCC BASIC timing error
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28-Mar-15 RMS Revised to use sim_printf
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04-Jul-07 BKR added PTR and PTP device DISABLE capability,
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added 7B/8B support PTR and PTP (default is 8B),
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DEV_SET/CLR macros now used,
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PTR and PTP can now be DISABLED
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25-Apr-03 RMS Revised for extended file support
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03-Oct-02 RMS Added DIBs
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30-May-02 RMS Widened POS to 32b
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29-Nov-01 RMS Added read only unit support
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Notes:
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- data masked to 7- or 8- bits, based on 7B or 8B, default is 8-bits
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- register TIME is the delay between character read or write operations
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- register POS show the number of characters read from or sent to the PTR or PTP
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- register STOP_IOE determines return value issued if output to unattached PTR or PTP is attempted
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*/
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#include "nova_defs.h"
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extern int32 int_req, dev_busy, dev_done, dev_disable ;
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extern int32 SR ;
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extern t_stat cpu_boot(int32 unitno, DEVICE * dptr ) ;
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int32 ptr_stopioe = 0, ptp_stopioe = 0; /* stop on error */
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int32 ptr (int32 pulse, int32 code, int32 AC);
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int32 ptp (int32 pulse, int32 code, int32 AC);
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t_stat ptr_svc (UNIT *uptr);
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t_stat ptp_svc (UNIT *uptr);
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t_stat ptr_reset (DEVICE *dptr);
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t_stat ptp_reset (DEVICE *dptr);
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t_stat ptr_boot (int32 unitno, DEVICE *dptr);
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/* 7 or 8 bit data mask support for either device */
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#define UNIT_V_8B (UNIT_V_UF + 0) /* 8b output */
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#define UNIT_8B (1 << UNIT_V_8B)
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/* PTR data structures
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ptr_dev PTR device descriptor
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ptr_unit PTR unit descriptor
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ptr_reg PTR register list
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*/
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DIB ptr_dib = { DEV_PTR, INT_PTR, PI_PTR, &ptr };
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UNIT ptr_unit = { /* 2007-May-30, bkr */
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UDATA (&ptr_svc, UNIT_SEQ+UNIT_ATTABLE+UNIT_ROABLE+UNIT_8B, 0), 300
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};
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REG ptr_reg[] = {
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{ ORDATA (BUF, ptr_unit.buf, 8) },
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{ FLDATA (BUSY, dev_busy, INT_V_PTR) },
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{ FLDATA (DONE, dev_done, INT_V_PTR) },
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{ FLDATA (DISABLE, dev_disable, INT_V_PTR) },
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{ FLDATA (INT, int_req, INT_V_PTR) },
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{ DRDATA (POS, ptr_unit.pos, T_ADDR_W), PV_LEFT },
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{ DRDATA (TIME, ptr_unit.wait, 24), PV_LEFT },
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{ FLDATA (STOP_IOE, ptr_stopioe, 0) },
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{ NULL }
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};
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MTAB ptr_mod[] = /* 2007-May-30, bkr */
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{
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{ UNIT_8B, 0, "7b", "7B", NULL },
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{ UNIT_8B, UNIT_8B, "8b", "8B", NULL },
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{ 0, 0, NULL, NULL, NULL }
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} ;
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DEVICE ptr_dev = {
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"PTR", &ptr_unit, ptr_reg, ptr_mod /* 2007-May-30, bkr */,
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1, 10, 31, 1, 8, 8,
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NULL, NULL, &ptr_reset,
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&ptr_boot, NULL, NULL,
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&ptr_dib, DEV_DISABLE /* 2007-May-30, bkr */
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};
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/* PTP data structures
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ptp_dev PTP device descriptor
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ptp_unit PTP unit descriptor
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ptp_reg PTP register list
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*/
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DIB ptp_dib = { DEV_PTP, INT_PTP, PI_PTP, &ptp };
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UNIT ptp_unit =
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{
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UDATA (&ptp_svc, UNIT_SEQ+UNIT_ATTABLE+UNIT_8B, 0), SERIAL_OUT_WAIT
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};
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REG ptp_reg[] = {
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{ ORDATA (BUF, ptp_unit.buf, 8) },
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{ FLDATA (BUSY, dev_busy, INT_V_PTP) },
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{ FLDATA (DONE, dev_done, INT_V_PTP) },
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{ FLDATA (DISABLE, dev_disable, INT_V_PTP) },
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{ FLDATA (INT, int_req, INT_V_PTP) },
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{ DRDATA (POS, ptp_unit.pos, T_ADDR_W), PV_LEFT },
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{ DRDATA (TIME, ptp_unit.wait, 24), PV_LEFT },
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{ FLDATA (STOP_IOE, ptp_stopioe, 0) },
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{ NULL }
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};
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MTAB ptp_mod[] =
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{
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{ UNIT_8B, 0, "7b", "7B", NULL },
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{ UNIT_8B, UNIT_8B, "8b", "8B", NULL },
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{ 0, 0, NULL, NULL, NULL }
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} ;
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DEVICE ptp_dev =
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{
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"PTP", &ptp_unit, ptp_reg, ptp_mod /* 2007-May-30, bkr */,
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1, 10, 31, 1, 8, 8,
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NULL, NULL, &ptp_reset,
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NULL, NULL, NULL,
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&ptp_dib, DEV_DISABLE /* 2007-May-30, bkr */
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};
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/* Paper tape reader: IOT routine */
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int32 ptr (int32 pulse, int32 code, int32 AC)
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{
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int32 iodata;
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iodata = (code == ioDIA)?
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ptr_unit.buf & 0377
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: 0;
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switch (pulse)
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{ /* decode IR<8:9> */
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case iopS: /* start */
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DEV_SET_BUSY( INT_PTR ) ;
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DEV_CLR_DONE( INT_PTR ) ;
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DEV_UPDATE_INTR ;
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sim_activate (&ptr_unit, ptr_unit.wait); /* activate unit */
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break;
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case iopC: /* clear */
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DEV_CLR_BUSY( INT_PTR ) ;
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DEV_CLR_DONE( INT_PTR ) ;
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DEV_UPDATE_INTR ;
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sim_cancel (&ptr_unit); /* deactivate unit */
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break;
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} /* end switch */
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return iodata;
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}
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/* Unit service */
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t_stat ptr_svc (UNIT *uptr)
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{
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int32 temp;
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if ((ptr_unit.flags & UNIT_ATT) == 0) /* attached? */
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return IORETURN (ptr_stopioe, SCPE_UNATT);
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if ((temp = getc (ptr_unit.fileref)) == EOF) { /* end of file? */
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if (feof (ptr_unit.fileref)) {
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if (ptr_stopioe)
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sim_printf ("PTR end of file\n");
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else return SCPE_OK;
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}
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else sim_perror ("PTR I/O error");
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clearerr (ptr_unit.fileref);
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return SCPE_IOERR;
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}
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DEV_CLR_BUSY( INT_PTR ) ;
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DEV_SET_DONE( INT_PTR ) ;
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DEV_UPDATE_INTR ;
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ptr_unit.buf = temp & ((ptr_unit.flags & UNIT_8B)? 0377: 0177);
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++(ptr_unit.pos);
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return SCPE_OK;
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}
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/* Reset routine */
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t_stat ptr_reset (DEVICE *dptr)
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{
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ptr_unit.buf = 0; /* <not DG compatible> */
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DEV_CLR_BUSY( INT_PTR ) ;
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DEV_CLR_DONE( INT_PTR ) ;
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DEV_UPDATE_INTR ;
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sim_cancel (&ptr_unit); /* deactivate unit */
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return SCPE_OK;
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}
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/* Boot routine */
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t_stat ptr_boot (int32 unitno, DEVICE *dptr)
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{
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ptr_reset( dptr ) ;
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/* set position to 0? */
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cpu_boot( unitno, dptr ) ;
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SR = /* low-speed: no high-order bit set */ DEV_PTR ;
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return ( SCPE_OK );
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} /* end of 'ptr_boot' */
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/* Paper tape punch: IOT routine */
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int32 ptp (int32 pulse, int32 code, int32 AC)
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{
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if (code == ioDOA)
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ptp_unit.buf = AC & 0377;
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switch (pulse)
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{ /* decode IR<8:9> */
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case iopS: /* start */
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DEV_SET_BUSY( INT_PTP ) ;
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DEV_CLR_DONE( INT_PTP ) ;
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DEV_UPDATE_INTR ;
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sim_activate (&ptp_unit, ptp_unit.wait); /* activate unit */
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break;
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case iopC: /* clear */
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DEV_CLR_BUSY( INT_PTP ) ;
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DEV_CLR_DONE( INT_PTP ) ;
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DEV_UPDATE_INTR ;
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sim_cancel (&ptp_unit); /* deactivate unit */
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break;
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} /* end switch */
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return 0;
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}
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/* Unit service */
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t_stat ptp_svc (UNIT *uptr)
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{
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DEV_CLR_BUSY( INT_PTP ) ;
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DEV_SET_DONE( INT_PTP ) ;
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DEV_UPDATE_INTR ;
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if ((ptp_unit.flags & UNIT_ATT) == 0) /* attached? */
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return IORETURN (ptp_stopioe, SCPE_UNATT);
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if (putc ((ptp_unit.buf & ((ptp_unit.flags & UNIT_8B)? 0377: 0177)), ptp_unit.fileref) == EOF) {
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sim_perror ("PTP I/O error");
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clearerr (ptp_unit.fileref);
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return SCPE_IOERR;
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}
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++(ptp_unit.pos);
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return SCPE_OK;
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}
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/* Reset routine */
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t_stat ptp_reset (DEVICE *dptr)
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{
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ptp_unit.buf = 0; /* <not DG compatible> */
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DEV_CLR_BUSY( INT_PTP ) ;
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DEV_CLR_DONE( INT_PTP ) ;
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DEV_UPDATE_INTR ;
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sim_cancel (&ptp_unit); /* deactivate unit */
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return SCPE_OK;
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}
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