Because some key files have changed, V3.0 should be unzipped to a clean directory. 1. New Features in 3.0-0 1.1 SCP and Libraries - Added ASSIGN/DEASSIGN (logical name) commands. - Changed RESTORE to unconditionally detach files. - Added E11 and TPC format support to magtape library. - Fixed bug in SHOW CONNECTIONS. - Added USE_ADDR64 support 1.2 All magtapes - Magtapes support SIMH format, E11 format, and TPC format (read only). - SET <tape_unit> FORMAT=format sets the specified tape unit's format. - SHOW <tape_unit> FORMAT displays the specified tape unit's format. - Tape format can also be set as part of the ATTACH command, using the -F switch. 1.3 VAX - VAX can be compiled without USE_INT64. - If compiled with USE_INT64 and USE_ADDR64, RQ and TQ controllers support files > 2GB. - VAX ROM has speed control (SET ROM DELAY/NODELAY). 2. Bugs Fixed in 3.01-0 2.1 VAX - Fixed CVTfi bug: integer overflow not set if exponent out of range - Fixed EMODx bugs: o First and second operands reversed o Separated fraction received wrong exponent o Overflow calculation on separated integer incorrect o Fraction not set to zero if exponent out of range - Fixed interval timer and ROM access to pass power-up self-test even on very fast host processors (fixes from Mark Pizzolato). 2.2 1401 - Fixed mnemonic, instruction lengths, and reverse scan length check bug for MCS. - Fixed MCE bug, BS off by 1 if zero suppress. - Fixed chaining bug, D lost if return to SCP. - Fixed H branch, branch occurs after continue. - Added check for invalid 8 character MCW, LCA. - Fixed magtape load-mode end of record response. 2.3 Nova - Fixed DSK variable size interaction with restore. 2.4 PDP-1 - Fixed DT variable size interaction with restore. 2.5 PDP-11 - Fixed DT variable size interaction with restore. - Fixed bug in MMR1 update (found by Tim Stark). - Added XQ features and fixed bugs: o Corrected XQ interrupts on IE state transition (code by Tom Evans). o Added XQ interrupt clear on soft reset. o Removed XQ interrupt when setting XL or RL (multiple people). o Added SET/SHOW XQ STATS. o Added SHOW XQ FILTERS. o Added ability to split received packet into multiple buffers. o Added explicit runt and giant packet processing. 2.6 PDP-18B - Fixed DT, RF variable size interaction with restore. - Fixed MT bug in MTTR. 2.7 PDP-8 - Fixed DT, DF, RF, RX variable size interaction with restore. - Fixed MT bug in SKTR. 2.8 HP2100 - Fixed bug in DP (13210A controller only), DQ read status. - Fixed bug in DP, DQ seek complete. 2.9 GRI - Fixed bug in SC queue pointer management. 3. New Features in 3.0 vs prior releases N/A 4. Bugs Fixed in 3.0 vs prior releases N/A 5. General Notes WARNING: The RESTORE command has changed. RESTORE will now detach an attached file on a unit, if that unit did not have an attached file in the saved configuration. This is required to assure that the unit flags and the file state are consistent. WARNING: The compilation scheme for the PDP-10, PDP-11, and VAX has changed. Use one of the supplied build files, or read the documentation carefully, before compiling any of these simulators.
312 lines
9.9 KiB
C
312 lines
9.9 KiB
C
/* pdp18b_tt1.c: 18b PDP's second Teletype
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Copyright (c) 1993-2003, 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
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be 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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tti1 keyboard
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tto1 teleprinter
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09-May-03 RMS Added network device flag
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22-Dec-02 RMS Added break support
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02-Nov-02 RMS Added 7B/8B support
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05-Oct-02 RMS Added DIB, device number support
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22-Aug-02 RMS Updated for changes to sim_tmxr
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30-May-02 RMS Widened POS to 32b
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06-Jan-02 RMS Added enable/disable support
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30-Dec-01 RMS Added show statistics, set disconnect
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30-Nov-01 RMS Added extended SET/SHOW support
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25-Nov-01 RMS Revised interrupt structure
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19-Sep-01 RMS Fixed typo
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17-Sep-01 RMS Changed to use terminal multiplexor library
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07-Sep-01 RMS Moved function prototypes
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10-Jun-01 RMS Cleaned up IOT decoding to reflect hardware
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*/
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#include "pdp18b_defs.h"
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#include "sim_sock.h"
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#include "sim_tmxr.h"
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#include <ctype.h>
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#define UNIT_V_8B (UNIT_V_UF + 0) /* 8B */
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#define UNIT_V_KSR (UNIT_V_UF + 1) /* KSR33 */
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#define UNIT_8B (1 << UNIT_V_8B)
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#define UNIT_KSR (1 << UNIT_V_KSR)
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extern int32 int_hwre[API_HLVL+1], dev_enb;
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extern int32 tmxr_poll; /* calibrated poll */
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TMLN tt1_ldsc = { 0 }; /* line descriptors */
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TMXR tt_desc = { 1, 0, 0, &tt1_ldsc }; /* mux descriptor */
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DEVICE tti1_dev, tto1_dev;
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int32 tti1 (int32 pulse, int32 AC);
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int32 tto1 (int32 pulse, int32 AC);
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t_stat tti1_svc (UNIT *uptr);
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t_stat tto1_svc (UNIT *uptr);
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t_stat tti1_reset (DEVICE *dptr);
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t_stat tto1_reset (DEVICE *dptr);
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t_stat tti1_attach (UNIT *uptr, char *cptr);
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t_stat tti1_detach (UNIT *uptr);
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t_stat tti1_summ (FILE *st, UNIT *uptr, int32 val, void *desc);
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t_stat tti1_show (FILE *st, UNIT *uptr, int32 val, void *desc);
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void tt1_enbdis (int32 dis);
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t_stat tt1_set_mode (UNIT *uptr, int32 val, char *cptr, void *desc);
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/* TTI1 data structures
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tti1_dev TTI1 device descriptor
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tti1_unit TTI1 unit
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tto1_mod TTI1 modifier list
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tti1_reg TTI1 register list
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*/
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DIB tti1_dib = { DEV_TTI1, 1, NULL, { &tti1 } };
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UNIT tti1_unit = { UDATA (&tti1_svc, UNIT_ATTABLE+UNIT_KSR, 0), KBD_POLL_WAIT };
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REG tti1_reg[] = {
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{ ORDATA (BUF, tti1_unit.buf, 8) },
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{ FLDATA (INT, int_hwre[API_TTI1], INT_V_TTI1) },
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{ FLDATA (DONE, int_hwre[API_TTI1], INT_V_TTI1) },
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{ DRDATA (POS, tt1_ldsc.rxcnt, 32), PV_LEFT },
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{ DRDATA (TIME, tti1_unit.wait, 24), REG_NZ + PV_LEFT },
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{ ORDATA (DEVNO, tti1_dib.dev, 6), REG_HRO },
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{ NULL } };
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MTAB tti1_mod[] = {
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{ UNIT_KSR+UNIT_8B, UNIT_KSR, "KSR", "KSR", &tt1_set_mode },
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{ UNIT_KSR+UNIT_8B, 0 , "7b" , "7B" , &tt1_set_mode },
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{ UNIT_KSR+UNIT_8B, UNIT_8B , "8b" , "8B" , &tt1_set_mode },
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{ UNIT_ATT, UNIT_ATT, "summary", NULL, NULL, &tti1_summ },
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{ MTAB_XTD | MTAB_VDV, 0, NULL, "DISCONNECT",
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&tmxr_dscln, NULL, &tt_desc },
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{ MTAB_XTD | MTAB_VDV | MTAB_NMO, 1, "CONNECTIONS", NULL,
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NULL, &tti1_show, NULL },
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{ MTAB_XTD | MTAB_VDV | MTAB_NMO, 0, "STATISTICS", NULL,
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NULL, &tti1_show, NULL },
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{ MTAB_XTD|MTAB_VDV, 0, "DEVNO", "DEVNO", &set_devno, &show_devno },
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{ 0 } };
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DEVICE tti1_dev = {
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"TTI1", &tti1_unit, tti1_reg, tti1_mod,
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1, 10, 31, 1, 8, 8,
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&tmxr_ex, &tmxr_dep, &tti1_reset,
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NULL, &tti1_attach, &tti1_detach,
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&tti1_dib, DEV_NET | DEV_DISABLE };
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/* TTO1 data structures
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tto1_dev TTO1 device descriptor
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tto1_unit TTO1 unit
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tto1_mod TTO1 modifier list
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tto1_reg TTO1 register list
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*/
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DIB tto1_dib = { DEV_TTO1, 1, NULL, { &tto1 } };
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UNIT tto1_unit = { UDATA (&tto1_svc, UNIT_KSR, 0), SERIAL_OUT_WAIT };
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REG tto1_reg[] = {
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{ ORDATA (BUF, tto1_unit.buf, 8) },
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{ FLDATA (INT, int_hwre[API_TTO1], INT_V_TTO1) },
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{ FLDATA (DONE, int_hwre[API_TTO1], INT_V_TTO1) },
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{ DRDATA (POS, tt1_ldsc.txcnt, 32), PV_LEFT },
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{ DRDATA (TIME, tto1_unit.wait, 24), PV_LEFT },
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{ ORDATA (DEVNO, tto1_dib.dev, 6), REG_HRO },
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{ NULL } };
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MTAB tto1_mod[] = {
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{ UNIT_KSR+UNIT_8B, UNIT_KSR, "KSR", "KSR", &tt1_set_mode },
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{ UNIT_KSR+UNIT_8B, 0 , "7b" , "7B" , &tt1_set_mode },
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{ UNIT_KSR+UNIT_8B, UNIT_8B , "8b" , "8B" , &tt1_set_mode },
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{ MTAB_XTD|MTAB_VDV, 0, "DEVNO", "DEVNO", &set_devno, &show_devno },
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{ 0 } };
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DEVICE tto1_dev = {
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"TTO1", &tto1_unit, tto1_reg, tto1_mod,
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1, 10, 31, 1, 8, 8,
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NULL, NULL, &tto1_reset,
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NULL, NULL, NULL,
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&tto1_dib, DEV_DISABLE };
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/* Terminal input: IOT routine */
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int32 tti1 (int32 pulse, int32 AC)
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{
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if (pulse & 001) { /* KSF1 */
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if (TST_INT (TTI1)) AC = AC | IOT_SKP; }
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if (pulse & 002) { /* KRB1 */
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CLR_INT (TTI1); /* clear flag */
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AC= AC | tti1_unit.buf; } /* return buffer */
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return AC;
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}
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/* Unit service */
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t_stat tti1_svc (UNIT *uptr)
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{
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int32 c, newln;
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if (tt1_ldsc.conn) { /* connected? */
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tmxr_poll_rx (&tt_desc); /* poll for input */
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if (c = tmxr_getc_ln (&tt1_ldsc)) { /* get char */
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if (c & SCPE_BREAK) uptr->buf = 0; /* break? */
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else if (uptr->flags & UNIT_KSR) { /* KSR? */
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c = c & 0177;
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if (islower (c)) c = toupper (c);
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uptr->buf = c | 0200; } /* got char */
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else uptr->buf = c & ((tti1_unit.flags & UNIT_8B)? 0377: 0177);
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SET_INT (TTI1); } /* set flag */
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sim_activate (uptr, uptr->wait); } /* continue poll */
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if (uptr->flags & UNIT_ATT) { /* attached? */
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newln = tmxr_poll_conn (&tt_desc); /* poll connect */
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if (newln >= 0) { /* got one? */
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sim_activate (&tti1_unit, tti1_unit.wait);
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tt1_ldsc.rcve = 1; } /* rcv enabled */
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sim_activate (uptr, tmxr_poll); } /* sched poll */
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return SCPE_OK;
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}
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/* Reset routine */
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t_stat tti1_reset (DEVICE *dptr)
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{
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tt1_enbdis (dptr->flags & DEV_DIS); /* sync enables */
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tti1_unit.buf = 0; /* clear buffer */
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CLR_INT (TTI1); /* clear flag */
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if (tt1_ldsc.conn) { /* if conn, */
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sim_activate (&tti1_unit, tti1_unit.wait); /* activate, */
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tt1_ldsc.rcve = 1; } /* enable */
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else if (tti1_unit.flags & UNIT_ATT) /* if attached, */
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sim_activate (&tti1_unit, tmxr_poll); /* activate */
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else sim_cancel (&tti1_unit); /* else stop */
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return SCPE_OK;
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}
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/* Terminal output: IOT routine */
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int32 tto1 (int32 pulse, int32 AC)
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{
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if (pulse & 001) { /* TSF */
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if (TST_INT (TTO1)) AC = AC | IOT_SKP; }
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if (pulse & 002) CLR_INT (TTO1); /* clear flag */
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if (pulse & 004) { /* load buffer */
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sim_activate (&tto1_unit, tto1_unit.wait); /* activate unit */
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tto1_unit.buf = AC & 0377; } /* load buffer */
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return AC;
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}
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/* Unit service */
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t_stat tto1_svc (UNIT *uptr)
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{
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int32 c;
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SET_INT (TTO1); /* set flag */
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c = tto1_unit.buf & 0177;
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if (tt1_ldsc.conn) { /* connected? */
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if (tt1_ldsc.xmte) { /* tx enabled? */
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if (tto1_unit.flags & UNIT_KSR) { /* KSR? */
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c = c & 0177;
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if (islower (c)) c = toupper (c);
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if ((c < 007) || (c > 0137)) c = 0; }
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else c = c & ((tto1_unit.flags & UNIT_8B)? 0377: 0177);
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if (c) tmxr_putc_ln (&tt1_ldsc, c); /* output char */
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tmxr_poll_tx (&tt_desc); } /* poll xmt */
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else {
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tmxr_poll_tx (&tt_desc); /* poll xmt */
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sim_activate (&tto1_unit, tmxr_poll); /* wait */
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return SCPE_OK; } }
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return SCPE_OK;
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}
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/* Reset routine */
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t_stat tto1_reset (DEVICE *dptr)
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{
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tt1_enbdis (dptr->flags & DEV_DIS); /* sync enables */
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tto1_unit.buf = 0; /* clear buffer */
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CLR_INT (TTO1); /* clear flag */
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sim_cancel (&tto1_unit); /* deactivate unit */
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return SCPE_OK;
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}
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/* Attach routine */
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t_stat tti1_attach (UNIT *uptr, char *cptr)
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{
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t_stat r;
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r = tmxr_attach (&tt_desc, uptr, cptr); /* attach */
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if (r != SCPE_OK) return r; /* error */
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sim_activate (uptr, tmxr_poll); /* start poll */
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return SCPE_OK;
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}
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/* Detach routine */
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t_stat tti1_detach (UNIT *uptr)
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{
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t_stat r;
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r = tmxr_detach (&tt_desc, uptr); /* detach */
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tt1_ldsc.rcve = 0; /* disable rcv */
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sim_cancel (uptr); /* stop poll */
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return r;
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}
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/* Show summary processor */
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t_stat tti1_summ (FILE *st, UNIT *uptr, int32 val, void *desc)
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{
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if (tt1_ldsc.conn) fprintf (st, "connected");
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else fprintf (st, "disconnected");
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return SCPE_OK;
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}
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/* SHOW CONN/STAT processor */
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t_stat tti1_show (FILE *st, UNIT *uptr, int32 val, void *desc)
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{
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if (val) tmxr_fconns (st, &tt1_ldsc, -1);
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else tmxr_fstats (st, &tt1_ldsc, -1);
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return SCPE_OK;
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}
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/* Enable/disable device */
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void tt1_enbdis (int32 dis)
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{
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if (dis) {
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tti1_dev.flags = tto1_dev.flags | DEV_DIS;
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tto1_dev.flags = tto1_dev.flags | DEV_DIS; }
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else { tti1_dev.flags = tti1_dev.flags & ~DEV_DIS;
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tto1_dev.flags = tto1_dev.flags & ~DEV_DIS; }
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return;
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}
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t_stat tt1_set_mode (UNIT *uptr, int32 val, char *cptr, void *desc)
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{
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tti1_unit.flags = (tti1_unit.flags & ~(UNIT_KSR | UNIT_8B)) | val;
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tto1_unit.flags = (tto1_unit.flags & ~(UNIT_KSR | UNIT_8B)) | val;
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return SCPE_OK;
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}
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