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.
430 lines
15 KiB
C
430 lines
15 KiB
C
/* eclipse_tt.c: Eclipse console terminal simulator
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Copyright (c) 1998-2005, Charles E Owen
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Portions copyright (c) 1993-2002, Robert M Supnik
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Written by Charles Owen, used by gracious permission
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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 the author 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 the author.
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tti terminal input
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tto terminal output
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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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28-Jan-02 RMS Cleaned up compiler warnings
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*/
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#include "nova_defs.h"
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#include "sim_tmxr.h"
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#define UNIT_V_DASHER (UNIT_V_UF + 0) /* Dasher mode */
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#define UNIT_DASHER (1 << UNIT_V_DASHER)
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extern int32 int_req, dev_busy, dev_done, dev_disable;
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int32 tti (int32 pulse, int32 code, int32 AC);
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int32 tto (int32 pulse, int32 code, int32 AC);
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t_stat tti_svc (UNIT *uptr);
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t_stat tto_svc (UNIT *uptr);
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t_stat tti_reset (DEVICE *dptr);
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t_stat tto_reset (DEVICE *dptr);
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t_stat ttx_setmod (UNIT *uptr, int32 value, CONST char *cptr, void *desc);
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void translate_in();
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int32 translate_out(int32 c);
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int32 putseq(char *seq);
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/* TTI data structures
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tti_dev TTI device descriptor
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tti_unit TTI unit descriptor
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tti_reg TTI register list
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ttx_mod TTI/TTO modifiers list
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*/
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DIB tti_dib = { DEV_TTI, INT_TTI, PI_TTI, &tti };
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UNIT tti_unit = { UDATA (&tti_svc, 0, 0), KBD_POLL_WAIT };
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REG tti_reg[] = {
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{ ORDATA (BUF, tti_unit.buf, 8) },
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{ FLDATA (BUSY, dev_busy, INT_V_TTI) },
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{ FLDATA (DONE, dev_done, INT_V_TTI) },
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{ FLDATA (DISABLE, dev_disable, INT_V_TTI) },
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{ FLDATA (INT, int_req, INT_V_TTI) },
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{ DRDATA (POS, tti_unit.pos, T_ADDR_W), PV_LEFT },
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{ DRDATA (TIME, tti_unit.wait, 24), REG_NZ + PV_LEFT },
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{ NULL }
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};
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MTAB ttx_mod[] = {
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{ UNIT_DASHER, 0, "ANSI", "ANSI", &ttx_setmod },
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{ UNIT_DASHER, UNIT_DASHER, "Dasher", "DASHER", &ttx_setmod },
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{ 0 }
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};
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DEVICE tti_dev = {
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"TTI", &tti_unit, tti_reg, ttx_mod,
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1, 10, 31, 1, 8, 8,
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NULL, NULL, &tti_reset,
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NULL, NULL, NULL,
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&tti_dib, 0
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};
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/* TTO data structures
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tto_dev TTO device descriptor
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tto_unit TTO unit descriptor
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tto_reg TTO register list
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*/
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DIB tto_dib = { DEV_TTO, INT_TTO, PI_TTO, &tto };
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UNIT tto_unit = { UDATA (&tto_svc, 0, 0), SERIAL_OUT_WAIT };
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REG tto_reg[] = {
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{ ORDATA (BUF, tto_unit.buf, 8) },
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{ FLDATA (BUSY, dev_busy, INT_V_TTO) },
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{ FLDATA (DONE, dev_done, INT_V_TTO) },
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{ FLDATA (DISABLE, dev_disable, INT_V_TTO) },
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{ FLDATA (INT, int_req, INT_V_TTO) },
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{ DRDATA (POS, tto_unit.pos, T_ADDR_W), PV_LEFT },
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{ DRDATA (TIME, tto_unit.wait, 24), PV_LEFT },
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{ NULL }
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};
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DEVICE tto_dev = {
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"TTO", &tto_unit, tto_reg, ttx_mod,
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1, 10, 31, 1, 8, 8,
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NULL, NULL, &tto_reset,
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NULL, NULL, NULL,
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&tto_dib, 0
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};
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/* Terminal input: IOT routine */
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int32 tti (int32 pulse, int32 code, int32 AC)
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{
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int32 iodata;
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iodata = (code == ioDIA)? tti_unit.buf & 0377: 0;
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switch (pulse) { /* decode IR<8:9> */
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case iopS: /* start */
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dev_busy = dev_busy | INT_TTI; /* set busy */
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dev_done = dev_done & ~INT_TTI; /* clear done, int */
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int_req = int_req & ~INT_TTI;
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break;
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case iopC: /* clear */
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dev_busy = dev_busy & ~INT_TTI; /* clear busy */
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dev_done = dev_done & ~INT_TTI; /* clear done, int */
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int_req = int_req & ~INT_TTI;
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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 tti_svc (UNIT *uptr)
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{
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int32 temp;
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sim_activate (&tti_unit, tti_unit.wait); /* continue poll */
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if ((temp = sim_poll_kbd ()) < SCPE_KFLAG) return temp; /* no char or error? */
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tti_unit.buf = temp & 0177;
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/* --- BEGIN MODIFIED CODE --- */
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if (tti_unit.flags & UNIT_DASHER) /* translate input */
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translate_in();
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/* --- END MODIFIED CODE --- */
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dev_busy = dev_busy & ~INT_TTI; /* clear busy */
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dev_done = dev_done | INT_TTI; /* set done */
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int_req = (int_req & ~INT_DEV) | (dev_done & ~dev_disable);
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tti_unit.pos = tti_unit.pos + 1;
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return SCPE_OK;
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}
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/* -------------------- BEGIN INSERTION -----------------------*/
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int curpos = 0; /* used by translate_out() */
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int row = 0, col = 0; /* ditto - for cursor positioning */
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int spec200 = 0; /* signals next char is 'special' */
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/* Translation: VT100 input to D200 keycodes. */
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void translate_in()
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{
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char rev = 0;
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if (tti_unit.buf == '\r')
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rev = '\n';
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if (tti_unit.buf == '\n')
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rev = '\r';
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if (rev)
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tti_unit.buf = rev;
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}
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/* -------------------- END INSERTION -----------------------*/
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/* Reset routine */
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t_stat tti_reset (DEVICE *dptr)
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{
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tmxr_set_console_units (&tti_unit, &tto_unit);
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tti_unit.buf = 0;
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dev_busy = dev_busy & ~INT_TTI; /* clear busy */
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dev_done = dev_done & ~INT_TTI; /* clear done, int */
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int_req = int_req & ~INT_TTI;
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sim_activate (&tti_unit, tti_unit.wait); /* activate unit */
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return SCPE_OK;
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}
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/* Terminal output: IOT routine */
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int32 tto (int32 pulse, int32 code, int32 AC)
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{
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if (code == ioDOA) tto_unit.buf = AC & 0377;
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switch (pulse) { /* decode IR<8:9> */
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case iopS: /* start */
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dev_busy = dev_busy | INT_TTO; /* set busy */
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dev_done = dev_done & ~INT_TTO; /* clear done, int */
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int_req = int_req & ~INT_TTO;
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sim_activate (&tto_unit, tto_unit.wait); /* activate unit */
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break;
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case iopC: /* clear */
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dev_busy = dev_busy & ~INT_TTO; /* clear busy */
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dev_done = dev_done & ~INT_TTO; /* clear done, int */
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int_req = int_req & ~INT_TTO;
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sim_cancel (&tto_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 tto_svc (UNIT *uptr)
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{
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int32 c, temp;
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dev_busy = dev_busy & ~INT_TTO; /* clear busy */
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dev_done = dev_done | INT_TTO; /* set done */
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int_req = (int_req & ~INT_DEV) | (dev_done & ~dev_disable);
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c = tto_unit.buf & 0177;
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/* --- BEGIN MODIFIED CODE --- */
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if (tto_unit.flags & UNIT_DASHER) {
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if ((temp = translate_out(c)) != SCPE_OK) return temp;
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} else {
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if ((temp = sim_putchar (c)) != SCPE_OK) return temp;
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tto_unit.pos = tto_unit.pos + 1;
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}
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/* --- END MODIFIED CODE --- */
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return SCPE_OK;
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}
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/* -------------------- BEGIN INSERTION -----------------------*/
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/* Translation routine - D200 screen controls to VT-100 controls. */
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int32 translate_out(int32 c)
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{
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int32 temp;
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char outstr[32];
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if (spec200 == 1) { /* Special terminal control seq */
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spec200 = 0;
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switch (c) {
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case 'C': /* read model ID */
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return SCPE_OK;
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case 'E': /* Reverse video off */
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return SCPE_OK;
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case 'D': /* Reverse video on */
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return SCPE_OK;
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default:
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return SCPE_OK;
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}
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}
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if (curpos == 1) { /* 2nd char of cursor position */
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col = c & 0x7f;
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curpos++;
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return (SCPE_OK);
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}
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if (curpos == 2) { /* 3rd char of cursor position */
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row = c & 0x7f;
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curpos = 0;
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sprintf(outstr, "\033[%d;%dH", row+1, col+1);
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if ((temp = putseq(outstr)) != SCPE_OK) return temp;
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return (SCPE_OK);
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}
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switch (c) { /* Single-char command or data */
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case 003: /* Blink enable */
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break;
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case 004: /* Blink disable */
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break;
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case 005: /* Read cursor address */
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break;
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case 010: /* Cursor home */
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sprintf(outstr, "\033[1;1H");
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if ((temp = putseq(outstr)) != SCPE_OK) return temp;
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row = col = 0;
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return (SCPE_OK);
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case 012: /* Newline */
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if ((temp = sim_putchar('\r')) != SCPE_OK) return temp;
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tto_unit.pos += 1;
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if ((temp = sim_putchar(c)) != SCPE_OK) return temp;
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tto_unit.pos += 1;
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col = 1;
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row++;
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if (row > 24) row = 1;
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return (SCPE_OK);
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case 013: /* Erase EOL */
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sprintf(outstr, "\033[K");
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if ((temp = putseq(outstr)) != SCPE_OK) return temp;
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return (SCPE_OK);
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case 014: /* Erase screen */
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sprintf(outstr, "\033[1;1H\033[2J");
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if ((temp = putseq(outstr)) != SCPE_OK) return temp;
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row = col = 0;
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return (SCPE_OK);
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case 015: /* CR */
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if ((temp = sim_putchar(c)) != SCPE_OK) return temp;
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tto_unit.pos += 1;
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col = 1;
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return (SCPE_OK);
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case 016: /* Blink On */
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sprintf(outstr, "\033[5m");
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if ((temp = putseq(outstr)) != SCPE_OK) return temp;
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return (SCPE_OK);
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case 017: /* Blink off */
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sprintf(outstr, "\033[25m");
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if ((temp = putseq(outstr)) != SCPE_OK) return temp;
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return (SCPE_OK);
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case 020: /* Write cursor address */
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curpos = 1;
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return SCPE_OK;
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case 024: /* underscore on */
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sprintf(outstr, "\033[4m");
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if ((temp = putseq(outstr)) != SCPE_OK) return temp;
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return (SCPE_OK);
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case 025: /* underscore off */
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sprintf(outstr, "\033[24m");
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if ((temp = putseq(outstr)) != SCPE_OK) return temp;
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return (SCPE_OK);
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break;
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case 027: /* cursor up */
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sprintf(outstr, "\033[A");
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if ((temp = putseq(outstr)) != SCPE_OK) return temp;
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row--;
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if (row < 1) row = 24;
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return (SCPE_OK);
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case 030: /* cursor right */
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sprintf(outstr, "\033[C");
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if ((temp = putseq(outstr)) != SCPE_OK) return temp;
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col++;
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if (col > 80) {
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col = 1;
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row++;
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if (row > 24) row = 1;
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}
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return (SCPE_OK);
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case 031: /* Cursor left */
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sprintf(outstr, "\033[D");
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if ((temp = putseq(outstr)) != SCPE_OK) return temp;
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tto_unit.pos += 1;
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col--;
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if (col < 1) {
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col = 80;
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row--;
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if (row < 1) row = 24;
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}
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return (SCPE_OK);
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case 032: /* Cursor down */
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sprintf(outstr, "\033[B");
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if ((temp = putseq(outstr)) != SCPE_OK) return temp;
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row++;
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if (row > 24) row = 1;
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return (SCPE_OK);
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case 034: /* Dim on */
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sprintf(outstr, "\033[22m");
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if ((temp = putseq(outstr)) != SCPE_OK) return temp;
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return (SCPE_OK);
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case 035: /* Dim off */
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sprintf(outstr, "\033[1m");
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if ((temp = putseq(outstr)) != SCPE_OK) return temp;
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return (SCPE_OK);
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case 036: /* Special sequence */
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spec200 = 1;
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return SCPE_OK;
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default: /* ..A character of data */
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if ((temp = sim_putchar(c)) != SCPE_OK) return temp;
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tto_unit.pos += 1;
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col++;
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if (col > 80) {
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col = 1;
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row++;
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if (row > 24) row = 24;
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}
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return (SCPE_OK);
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}
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return SCPE_OK;
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}
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int32 putseq(char *seq)
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{
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int i, len, temp;
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len = strlen(seq);
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for (i = 0; i < len; i++) {
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if ((temp = sim_putchar(seq[i])) != SCPE_OK)
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return temp;
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tto_unit.pos += 1;
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}
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return SCPE_OK;
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}
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/* -------------------- END INSERTION -----------------------*/
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/* Reset routine */
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t_stat tto_reset (DEVICE *dptr)
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{
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tto_unit.buf = 0;
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dev_busy = dev_busy & ~INT_TTO; /* clear busy */
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dev_done = dev_done & ~INT_TTO; /* clear done, int */
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int_req = int_req & ~INT_TTO;
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sim_cancel (&tto_unit); /* deactivate unit */
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return SCPE_OK;
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}
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t_stat ttx_setmod (UNIT *uptr, int32 value, CONST char *cptr, void *desc)
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{
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tti_unit.flags = (tti_unit.flags & ~UNIT_DASHER) | value;
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tto_unit.flags = (tto_unit.flags & ~UNIT_DASHER) | value;
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return SCPE_OK;
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}
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