1 1.48 riastrad /* $NetBSD: msc.c,v 1.48 2022/10/26 23:55:40 riastradh Exp $ */ 2 1.27 agc 3 1.27 agc /* 4 1.27 agc * Copyright (c) 1982, 1986, 1990 The Regents of the University of California. 5 1.27 agc * All rights reserved. 6 1.27 agc * 7 1.27 agc * Redistribution and use in source and binary forms, with or without 8 1.27 agc * modification, are permitted provided that the following conditions 9 1.27 agc * are met: 10 1.27 agc * 1. Redistributions of source code must retain the above copyright 11 1.27 agc * notice, this list of conditions and the following disclaimer. 12 1.27 agc * 2. Redistributions in binary form must reproduce the above copyright 13 1.27 agc * notice, this list of conditions and the following disclaimer in the 14 1.27 agc * documentation and/or other materials provided with the distribution. 15 1.27 agc * 3. Neither the name of the University nor the names of its contributors 16 1.27 agc * may be used to endorse or promote products derived from this software 17 1.27 agc * without specific prior written permission. 18 1.27 agc * 19 1.27 agc * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 20 1.27 agc * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 21 1.27 agc * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 22 1.27 agc * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 23 1.27 agc * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 24 1.27 agc * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 25 1.27 agc * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 26 1.27 agc * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 27 1.27 agc * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 28 1.27 agc * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 29 1.27 agc * SUCH DAMAGE. 30 1.27 agc * 31 1.27 agc * - converted from NetBSD Amiga serial driver to A2232 serial driver 32 1.27 agc * by zik 931207 33 1.27 agc * - added ttyflags hooks rfh 940419 34 1.27 agc * - added new style config support rfh 940601 35 1.27 agc * - added code to halt board during memory load so board doesn't flip 36 1.27 agc * out. /dev/reload works now. Also created mschwiflow function so BSD can 37 1.27 agc * attempt to use board RTS flow control now. rfh 950108 38 1.27 agc * - Integrated work from Jukka Marin <jmarin (at) jmp.fi> and 39 1.27 agc * Timo Rossi <trossi (at) jyu.fi> The mscmint() code is Jukka's. 950916 40 1.27 agc * Integrated more bug fixes by Jukka Marin <jmarin (at) jmp.fi> 950918 41 1.27 agc * Also added Jukka's turbo board code. 950918 42 1.27 agc * - Reformatted to NetBSD style format. 43 1.27 agc * - Rewritten the carrier detect system to prevent lock-ups (jm 951029) 44 1.27 agc */ 45 1.1 chopps 46 1.1 chopps /* 47 1.1 chopps * Copyright (c) 1993 Zik. 48 1.11 is * Copyright (c) 1995 Jukka Marin <jmarin (at) jmp.fi>. 49 1.1 chopps * Copyright (c) 1995 Timo Rossi <trossi (at) jyu.fi>. 50 1.1 chopps * Copyright (c) 1995 Rob Healey <rhealey (at) kas.helios.mn.org>. 51 1.1 chopps * 52 1.1 chopps * Redistribution and use in source and binary forms, with or without 53 1.1 chopps * modification, are permitted provided that the following conditions 54 1.1 chopps * are met: 55 1.1 chopps * 1. Redistributions of source code must retain the above copyright 56 1.1 chopps * notice, this list of conditions and the following disclaimer. 57 1.1 chopps * 2. Redistributions in binary form must reproduce the above copyright 58 1.1 chopps * notice, this list of conditions and the following disclaimer in the 59 1.1 chopps * documentation and/or other materials provided with the distribution. 60 1.1 chopps * 3. All advertising materials mentioning features or use of this software 61 1.1 chopps * must display the following acknowledgement: 62 1.1 chopps * This product includes software developed by the University of 63 1.1 chopps * California, Berkeley and its contributors. 64 1.1 chopps * 4. Neither the name of the University nor the names of its contributors 65 1.1 chopps * may be used to endorse or promote products derived from this software 66 1.1 chopps * without specific prior written permission. 67 1.1 chopps * 68 1.1 chopps * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 69 1.1 chopps * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 70 1.1 chopps * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 71 1.1 chopps * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 72 1.1 chopps * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 73 1.1 chopps * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 74 1.1 chopps * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 75 1.1 chopps * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 76 1.1 chopps * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 77 1.1 chopps * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 78 1.1 chopps * SUCH DAMAGE. 79 1.1 chopps * 80 1.1 chopps * - converted from NetBSD Amiga serial driver to A2232 serial driver 81 1.1 chopps * by zik 931207 82 1.1 chopps * - added ttyflags hooks rfh 940419 83 1.1 chopps * - added new style config support rfh 940601 84 1.1 chopps * - added code to halt board during memory load so board doesn't flip 85 1.1 chopps * out. /dev/reload works now. Also created mschwiflow function so BSD can 86 1.1 chopps * attempt to use board RTS flow control now. rfh 950108 87 1.1 chopps * - Integrated work from Jukka Marin <jmarin (at) jmp.fi> and 88 1.1 chopps * Timo Rossi <trossi (at) jyu.fi> The mscmint() code is Jukka's. 950916 89 1.1 chopps * Integrated more bug fixes by Jukka Marin <jmarin (at) jmp.fi> 950918 90 1.1 chopps * Also added Jukka's turbo board code. 950918 91 1.1 chopps * - Reformatted to NetBSD style format. 92 1.11 is * - Rewritten the carrier detect system to prevent lock-ups (jm 951029) 93 1.1 chopps */ 94 1.21 aymeric 95 1.21 aymeric #include <sys/cdefs.h> 96 1.48 riastrad __KERNEL_RCSID(0, "$NetBSD: msc.c,v 1.48 2022/10/26 23:55:40 riastradh Exp $"); 97 1.1 chopps 98 1.1 chopps #include "msc.h" 99 1.1 chopps 100 1.1 chopps #if NMSC > 0 101 1.1 chopps #include <sys/param.h> 102 1.1 chopps #include <sys/systm.h> 103 1.1 chopps #include <sys/ioctl.h> 104 1.1 chopps #include <sys/tty.h> 105 1.1 chopps #include <sys/proc.h> 106 1.1 chopps #include <sys/file.h> 107 1.1 chopps #include <sys/uio.h> 108 1.1 chopps #include <sys/kernel.h> 109 1.1 chopps #include <sys/syslog.h> 110 1.1 chopps #include <sys/device.h> 111 1.23 gehenna #include <sys/conf.h> 112 1.33 elad #include <sys/kauth.h> 113 1.1 chopps 114 1.1 chopps #include <amiga/amiga/device.h> 115 1.1 chopps #include <amiga/dev/zbusvar.h> 116 1.1 chopps #include <amiga/dev/mscreg.h> 117 1.3 mycroft #include <machine/cpu.h> 118 1.1 chopps 119 1.1 chopps #include <amiga/amiga/custom.h> 120 1.1 chopps #include <amiga/amiga/cia.h> 121 1.1 chopps #include <amiga/amiga/cc.h> 122 1.1 chopps 123 1.1 chopps /* 6502 code for A2232 card */ 124 1.1 chopps #include "msc6502.h" 125 1.1 chopps 126 1.1 chopps /* 127 1.1 chopps * Note: These are Zik's original comments: 128 1.1 chopps * There is a bit of a "gotcha" concerning the numbering 129 1.1 chopps * of msc devices and the specification of the number of serial 130 1.1 chopps * lines in the kernel. 131 1.1 chopps * 132 1.1 chopps * Each board has seven lines, but for programming convenience 133 1.1 chopps * and compatibility with Amiga UNIX the boards' minor device 134 1.1 chopps * numbers are allocated in groups of sixteen: 135 1.1 chopps * 136 1.1 chopps * minor device numbers 137 1.1 chopps * First board 0 2 4 6 8 10 12 138 1.1 chopps * Second board 16 18 20 22 24 26 28 139 1.1 chopps * Third board 32 34 36 38 40 42 44 140 1.1 chopps * 141 1.1 chopps * The intermediate minor device numbers are dialin versions 142 1.1 chopps * of the same devices. ie. 10 is dialout line 6 and 11 is 143 1.1 chopps * the dialin version of line 6. 144 1.1 chopps * 145 1.1 chopps * On the other hand, I have made the NMSC config option refer 146 1.1 chopps * to the total number of a2232 cards, not the maximum 147 1.1 chopps * minor device number. So you might have NMSC=3, in which case 148 1.1 chopps * you have three boards with minor device numbers from 0 to 45. 149 1.1 chopps */ 150 1.1 chopps 151 1.20 aymeric int mscparam(struct tty *, struct termios *); 152 1.20 aymeric void mscstart(struct tty *); 153 1.20 aymeric int mschwiflow(struct tty *, int); 154 1.20 aymeric int mscinitcard(struct zbus_args *); 155 1.1 chopps 156 1.1 chopps int mscdefaultrate = TTYDEF_SPEED; 157 1.1 chopps 158 1.1 chopps struct mscdevice mscdev[MSCSLOTS]; /* device structs for all lines */ 159 1.1 chopps struct tty *msc_tty[MSCTTYS]; /* ttys for all lines */ 160 1.1 chopps 161 1.1 chopps struct vbl_node msc_vbl_node[NMSC]; /* vbl interrupt node per board */ 162 1.1 chopps 163 1.28 matt const struct speedtab mscspeedtab_normal[] = { 164 1.6 veego { 0, 0 }, 165 1.6 veego { 50, MSCPARAM_B50 }, 166 1.11 is { 75, MSCPARAM_B75 }, 167 1.11 is { 110, MSCPARAM_B110 }, 168 1.6 veego { 134, MSCPARAM_B134 }, 169 1.6 veego { 150, MSCPARAM_B150 }, 170 1.6 veego { 300, MSCPARAM_B300 }, 171 1.6 veego { 600, MSCPARAM_B600 }, 172 1.6 veego { 1200, MSCPARAM_B1200 }, 173 1.6 veego { 1800, MSCPARAM_B1800 }, 174 1.6 veego { 2400, MSCPARAM_B2400 }, 175 1.6 veego { 3600, MSCPARAM_B3600 }, 176 1.6 veego { 4800, MSCPARAM_B4800 }, 177 1.6 veego { 7200, MSCPARAM_B7200 }, 178 1.6 veego { 9600, MSCPARAM_B9600 }, 179 1.6 veego { 19200, MSCPARAM_B19200 }, 180 1.6 veego { 115200, MSCPARAM_B115200 }, 181 1.6 veego { -1, -1 } 182 1.1 chopps }; 183 1.20 aymeric 184 1.28 matt const struct speedtab mscspeedtab_turbo[] = { 185 1.6 veego { 0, 0 }, 186 1.6 veego { 100, MSCPARAM_B50 }, 187 1.6 veego { 150, MSCPARAM_B75 }, 188 1.6 veego { 220, MSCPARAM_B110 }, 189 1.6 veego { 269, MSCPARAM_B134 }, 190 1.6 veego { 300, MSCPARAM_B150 }, 191 1.6 veego { 600, MSCPARAM_B300 }, 192 1.6 veego { 1200, MSCPARAM_B600 }, 193 1.6 veego { 2400, MSCPARAM_B1200 }, 194 1.6 veego { 3600, MSCPARAM_B1800 }, 195 1.6 veego { 4800, MSCPARAM_B2400 }, 196 1.6 veego { 7200, MSCPARAM_B3600 }, 197 1.6 veego { 9600, MSCPARAM_B4800 }, 198 1.6 veego { 14400, MSCPARAM_B7200 }, 199 1.6 veego { 19200, MSCPARAM_B9600 }, 200 1.6 veego { 38400, MSCPARAM_B19200 }, 201 1.6 veego { 230400, MSCPARAM_B115200 }, 202 1.6 veego { -1, -1 } 203 1.1 chopps }; 204 1.20 aymeric 205 1.28 matt const struct speedtab *mscspeedtab; 206 1.1 chopps 207 1.20 aymeric int mscmctl(dev_t dev, int bits, int howto); 208 1.20 aymeric void mscmint(register void *data); 209 1.1 chopps 210 1.44 matt int mscmatch(device_t, cfdata_t, void *); 211 1.44 matt void mscattach(device_t, device_t, void *); 212 1.1 chopps 213 1.1 chopps #define SWFLAGS(dev) (msc->openflags | (MSCDIALIN(dev) ? 0 : TIOCFLAG_SOFTCAR)) 214 1.12 veego #define DEBUG_CD 0 215 1.1 chopps 216 1.44 matt CFATTACH_DECL_NEW(msc, 0, 217 1.25 thorpej mscmatch, mscattach, NULL, NULL); 218 1.23 gehenna 219 1.23 gehenna dev_type_open(mscopen); 220 1.23 gehenna dev_type_close(mscclose); 221 1.23 gehenna dev_type_read(mscread); 222 1.23 gehenna dev_type_write(mscwrite); 223 1.23 gehenna dev_type_ioctl(mscioctl); 224 1.23 gehenna dev_type_stop(mscstop); 225 1.23 gehenna dev_type_tty(msctty); 226 1.23 gehenna dev_type_poll(mscpoll); 227 1.23 gehenna 228 1.23 gehenna const struct cdevsw msc_cdevsw = { 229 1.46 dholland .d_open = mscopen, 230 1.46 dholland .d_close = mscclose, 231 1.46 dholland .d_read = mscread, 232 1.46 dholland .d_write = mscwrite, 233 1.46 dholland .d_ioctl = mscioctl, 234 1.46 dholland .d_stop = mscstop, 235 1.46 dholland .d_tty = msctty, 236 1.46 dholland .d_poll = mscpoll, 237 1.46 dholland .d_mmap = nommap, 238 1.46 dholland .d_kqfilter = ttykqfilter, 239 1.47 dholland .d_discard = nodiscard, 240 1.46 dholland .d_flag = D_TTY 241 1.4 thorpej }; 242 1.2 chopps 243 1.1 chopps int 244 1.45 chs mscmatch(device_t parent, cfdata_t cf, void *aux) 245 1.1 chopps { 246 1.1 chopps struct zbus_args *zap; 247 1.1 chopps 248 1.45 chs zap = aux; 249 1.1 chopps if (zap->manid == 514 && (zap->prodid == 70 || zap->prodid == 69)) 250 1.1 chopps return(1); 251 1.1 chopps 252 1.1 chopps return (0); 253 1.1 chopps } 254 1.1 chopps 255 1.1 chopps void 256 1.45 chs mscattach(device_t parent, device_t self, void *aux) 257 1.1 chopps { 258 1.11 is volatile struct mscmemory *mscmem; 259 1.11 is struct mscdevice *msc; 260 1.11 is struct zbus_args *zap; 261 1.11 is int unit; 262 1.11 is int Count; 263 1.11 is 264 1.45 chs zap = aux; 265 1.45 chs unit = device_unit(self); 266 1.11 is 267 1.11 is /* 268 1.11 is * Make config msgs look nicer. 269 1.11 is */ 270 1.11 is printf("\n"); 271 1.11 is 272 1.11 is if (mscinitcard(zap) != 0) { 273 1.11 is printf("msc%d: Board initialize failed, bad download code.\n", unit); 274 1.11 is return; 275 1.11 is } 276 1.11 is 277 1.11 is printf("msc%d: Board successfully initialized.\n", unit); 278 1.11 is 279 1.11 is mscmem = (struct mscmemory *) zap->va; 280 1.11 is 281 1.11 is if (mscmem->Common.Crystal == MSC_UNKNOWN) { 282 1.11 is printf("msc%d: Unable to detect crystal frequency.\n", unit); 283 1.11 is return; 284 1.11 is } 285 1.11 is 286 1.11 is if (mscmem->Common.Crystal == MSC_TURBO) { 287 1.11 is printf("msc%d: Turbo version detected (%02x%02x:%d)\n", unit, 288 1.11 is mscmem->Common.TimerH, mscmem->Common.TimerL, 289 1.11 is mscmem->Common.Pad_a); 290 1.11 is mscspeedtab = mscspeedtab_turbo; 291 1.11 is } else { 292 1.11 is printf("msc%d: Normal version detected (%02x%02x:%d)\n", unit, 293 1.11 is mscmem->Common.TimerH, mscmem->Common.TimerL, 294 1.11 is mscmem->Common.Pad_a); 295 1.11 is mscspeedtab = mscspeedtab_normal; 296 1.11 is } 297 1.11 is 298 1.11 is mscmem->Common.CDStatus = 0; /* common status for all 7 ports */ 299 1.11 is 300 1.11 is /* XXX 8 is a constant */ 301 1.11 is for (Count = 0; Count < 8 && MSCSLOTUL(unit, Count) < MSCSLOTS; Count++) { 302 1.11 is msc = &mscdev[MSCSLOTUL(unit, Count)]; 303 1.11 is msc->board = mscmem; 304 1.11 is msc->port = Count; 305 1.11 is msc->flags = 0; 306 1.11 is msc->openflags = 0; 307 1.11 is msc->active = 1; 308 1.11 is msc->unit = unit; 309 1.37 thorpej msc->closing = false; 310 1.11 is msc_tty[MSCTTYSLOT(MSCSLOTUL(unit, Count))] = NULL; 311 1.11 is msc_tty[MSCTTYSLOT(MSCSLOTUL(unit, Count)) + 1] = NULL; 312 1.11 is } 313 1.1 chopps 314 1.19 wiz /* disable the non-existent eighth port */ 315 1.11 is if (MSCSLOTUL(unit, NUMLINES) < MSCSLOTS) 316 1.11 is mscdev[MSCSLOTUL(unit, NUMLINES)].active = 0; 317 1.1 chopps 318 1.11 is msc_vbl_node[unit].function = (void (*) (void *)) mscmint; 319 1.11 is msc_vbl_node[unit].data = (void *) unit; 320 1.1 chopps 321 1.11 is add_vbl_function (&msc_vbl_node[unit], MSC_VBL_PRIORITY, (void *)unit); 322 1.11 is 323 1.20 aymeric return; 324 1.1 chopps } 325 1.1 chopps 326 1.1 chopps /* ARGSUSED */ 327 1.1 chopps int 328 1.31 christos mscopen(dev_t dev, int flag, int mode, struct lwp *l) 329 1.1 chopps { 330 1.11 is register struct tty *tp; 331 1.11 is struct mscdevice *msc; 332 1.11 is volatile struct mscstatus *ms; 333 1.11 is int error = 0; 334 1.11 is int s, slot, ttyn; 335 1.20 aymeric 336 1.11 is /* get the device structure */ 337 1.11 is slot = MSCSLOT(dev); 338 1.11 is ttyn = MSCTTY(dev); 339 1.11 is 340 1.11 is if (slot >= MSCSLOTS) 341 1.11 is return ENXIO; 342 1.11 is 343 1.11 is if (MSCLINE(dev) >= NUMLINES) 344 1.11 is return ENXIO; 345 1.11 is 346 1.11 is msc = &mscdev[slot]; 347 1.11 is ms = &msc->board->Status[msc->port]; 348 1.11 is 349 1.11 is if (!msc->active) 350 1.11 is return ENXIO; 351 1.11 is 352 1.11 is /* 353 1.11 is * RFH: WHY here? Put down by while like other serial drivers 354 1.11 is * But if we do that it makes things bomb. 355 1.11 is */ 356 1.11 is s = spltty(); 357 1.11 is 358 1.11 is if (!msc_tty[ttyn]) { 359 1.11 is 360 1.43 rmind tp = tty_alloc(); 361 1.11 is tty_attach(tp); 362 1.11 is msc_tty[ttyn] = tp; 363 1.11 is msc_tty[ttyn+1] = (struct tty *)NULL; 364 1.1 chopps 365 1.2 chopps #if 0 366 1.11 is /* default values are not optimal for this device, increase buffers. */ 367 1.11 is clfree(&tp->t_rawq); 368 1.11 is clfree(&tp->t_canq); 369 1.11 is clfree(&tp->t_outq); 370 1.11 is clalloc(&tp->t_rawq, 8192, 1); 371 1.11 is clalloc(&tp->t_canq, 8192, 1); 372 1.11 is clalloc(&tp->t_outq, 8192, 0); 373 1.11 is #endif 374 1.11 is 375 1.11 is } else 376 1.11 is tp = msc_tty[ttyn]; 377 1.11 is 378 1.11 is tp->t_oproc = (void (*) (struct tty *)) mscstart; 379 1.11 is tp->t_param = mscparam; 380 1.11 is tp->t_dev = dev; 381 1.11 is tp->t_hwiflow = mschwiflow; 382 1.20 aymeric 383 1.11 is /* if port is still closing, just bitbucket remaining characters */ 384 1.11 is if (msc->closing) { 385 1.37 thorpej ms->OutFlush = true; 386 1.37 thorpej msc->closing = false; 387 1.11 is } 388 1.39 ad splx(s); 389 1.11 is 390 1.39 ad if (kauth_authorize_device_tty(l->l_cred, KAUTH_DEVICE_TTY_OPEN, tp)) 391 1.35 elad return (EBUSY); 392 1.35 elad 393 1.48 riastrad ttylock(tp); 394 1.11 is /* initialize tty */ 395 1.15 mhitch if ((tp->t_state & TS_ISOPEN) == 0 && tp->t_wopen == 0) { 396 1.11 is ttychars(tp); 397 1.11 is if (tp->t_ispeed == 0) { 398 1.11 is tp->t_iflag = TTYDEF_IFLAG; 399 1.11 is tp->t_oflag = TTYDEF_OFLAG; 400 1.11 is tp->t_cflag = TTYDEF_CFLAG; 401 1.11 is tp->t_lflag = TTYDEF_LFLAG; 402 1.11 is tp->t_ispeed = tp->t_ospeed = mscdefaultrate; 403 1.11 is } 404 1.1 chopps 405 1.11 is /* flags changed to be private to every unit by JM */ 406 1.11 is if (msc->openflags & TIOCFLAG_CLOCAL) 407 1.11 is tp->t_cflag |= CLOCAL; 408 1.11 is if (msc->openflags & TIOCFLAG_CRTSCTS) 409 1.11 is tp->t_cflag |= CRTSCTS; 410 1.11 is if (msc->openflags & TIOCFLAG_MDMBUF) 411 1.11 is tp->t_cflag |= MDMBUF; 412 1.11 is 413 1.11 is mscparam(tp, &tp->t_termios); 414 1.11 is ttsetwater(tp); 415 1.11 is 416 1.11 is (void) mscmctl(dev, TIOCM_DTR | TIOCM_RTS, DMSET); 417 1.11 is 418 1.11 is if ((SWFLAGS(dev) & TIOCFLAG_SOFTCAR) || 419 1.11 is (mscmctl(dev, 0, DMGET) & TIOCM_CD)) 420 1.11 is tp->t_state |= TS_CARR_ON; 421 1.11 is else 422 1.11 is tp->t_state &= ~TS_CARR_ON; 423 1.11 is 424 1.11 is } 425 1.1 chopps 426 1.11 is /* 427 1.11 is * if NONBLOCK requested, ignore carrier 428 1.11 is */ 429 1.11 is if (flag & O_NONBLOCK) { 430 1.11 is #if DEBUG_CD 431 1.11 is printf("msc%d: %d open nonblock\n", msc->unit, MSCLINE(dev)); 432 1.11 is #endif 433 1.11 is goto done; 434 1.11 is } 435 1.1 chopps 436 1.20 aymeric /* 437 1.11 is * s = spltty(); 438 1.11 is * 439 1.11 is * This causes hangs when put here, like other TTY drivers do, rather than 440 1.11 is * above, WHY? RFH 441 1.11 is * 442 1.11 is */ 443 1.1 chopps 444 1.11 is while ((tp->t_state & TS_CARR_ON) == 0 && (tp->t_cflag & CLOCAL) == 0) { 445 1.15 mhitch tp->t_wopen++; 446 1.1 chopps 447 1.2 chopps #if DEBUG_CD 448 1.11 is printf("msc%d: %d waiting for CD\n", msc->unit, MSCLINE(dev)); 449 1.2 chopps #endif 450 1.41 ad error = ttysleep(tp, &tp->t_rawcv, true, 0); 451 1.15 mhitch tp->t_wopen--; 452 1.1 chopps 453 1.11 is if (error) { 454 1.48 riastrad ttyunlock(tp); 455 1.11 is return(error); 456 1.11 is } 457 1.11 is } 458 1.1 chopps 459 1.1 chopps #if DEBUG_CD 460 1.11 is printf("msc%d: %d got CD\n", msc->unit, MSCLINE(dev)); 461 1.1 chopps #endif 462 1.1 chopps 463 1.20 aymeric done: 464 1.11 is /* This is a way to handle lost XON characters */ 465 1.11 is if ((flag & O_TRUNC) && (tp->t_state & TS_TTSTOP)) { 466 1.11 is tp->t_state &= ~TS_TTSTOP; 467 1.11 is ttstart (tp); 468 1.11 is } 469 1.11 is 470 1.11 is /* 471 1.11 is * Reset the tty pointer, as there could have been a dialout 472 1.11 is * use of the tty with a dialin open waiting. 473 1.11 is */ 474 1.11 is tp->t_dev = dev; 475 1.48 riastrad ttyunlock(tp); 476 1.1 chopps 477 1.17 aymeric return tp->t_linesw->l_open(dev, tp); 478 1.1 chopps } 479 1.1 chopps 480 1.11 is 481 1.1 chopps int 482 1.31 christos mscclose(dev_t dev, int flag, int mode, struct lwp *l) 483 1.1 chopps { 484 1.11 is register struct tty *tp; 485 1.11 is int slot; 486 1.11 is volatile struct mscstatus *ms; 487 1.11 is struct mscdevice *msc; 488 1.20 aymeric 489 1.11 is /* get the device structure */ 490 1.11 is slot = MSCSLOT(dev); 491 1.1 chopps 492 1.11 is if (slot >= MSCSLOTS) 493 1.11 is return ENXIO; 494 1.1 chopps 495 1.11 is msc = &mscdev[slot]; 496 1.1 chopps 497 1.11 is if (!msc->active) 498 1.11 is return ENXIO; 499 1.1 chopps 500 1.11 is ms = &msc->board->Status[msc->port]; 501 1.20 aymeric 502 1.11 is tp = msc_tty[MSCTTY(dev)]; 503 1.17 aymeric tp->t_linesw->l_close(tp, flag); 504 1.2 chopps 505 1.11 is (void) mscmctl(dev, 0, DMSET); 506 1.1 chopps 507 1.11 is ttyclose(tp); 508 1.1 chopps 509 1.11 is if (msc->flags & TIOCM_DTR) 510 1.37 thorpej msc->closing = true; /* flush remaining characters before dropping DTR */ 511 1.11 is else 512 1.37 thorpej ms->OutFlush = true; /* just bitbucket remaining characters */ 513 1.1 chopps 514 1.11 is return (0); 515 1.1 chopps } 516 1.20 aymeric 517 1.11 is 518 1.1 chopps int 519 1.20 aymeric mscread(dev_t dev, struct uio *uio, int flag) 520 1.1 chopps { 521 1.1 chopps register struct tty *tp; 522 1.20 aymeric 523 1.1 chopps tp = msc_tty[MSCTTY(dev)]; 524 1.1 chopps 525 1.1 chopps if (! tp) 526 1.1 chopps return ENXIO; 527 1.1 chopps 528 1.17 aymeric return tp->t_linesw->l_read(tp, uio, flag); 529 1.1 chopps } 530 1.20 aymeric 531 1.11 is 532 1.1 chopps int 533 1.20 aymeric mscwrite(dev_t dev, struct uio *uio, int flag) 534 1.1 chopps { 535 1.11 is register struct tty *tp; 536 1.20 aymeric 537 1.11 is tp = msc_tty[MSCTTY(dev)]; 538 1.1 chopps 539 1.11 is if (! tp) 540 1.11 is return ENXIO; 541 1.1 chopps 542 1.17 aymeric return tp->t_linesw->l_write(tp, uio, flag); 543 1.1 chopps } 544 1.1 chopps 545 1.18 scw int 546 1.31 christos mscpoll(dev_t dev, int events, struct lwp *l) 547 1.18 scw { 548 1.18 scw register struct tty *tp; 549 1.20 aymeric 550 1.18 scw tp = msc_tty[MSCTTY(dev)]; 551 1.18 scw 552 1.18 scw if (! tp) 553 1.18 scw return ENXIO; 554 1.18 scw 555 1.31 christos return ((*tp->t_linesw->l_poll)(tp, events, l)); 556 1.18 scw } 557 1.11 is 558 1.1 chopps /* 559 1.20 aymeric * This interrupt is periodically invoked in the vertical blank 560 1.1 chopps * interrupt. It's used to keep track of the modem control lines 561 1.1 chopps * and (new with the fast_int code) to move accumulated data up in 562 1.1 chopps * to the tty layer. 563 1.1 chopps * 564 1.1 chopps * NOTE: MSCCDHACK is an invention of mine for dubious purposes. If you 565 1.1 chopps * want to activate it add 566 1.1 chopps * options MSCCDHACK 567 1.1 chopps * in the kernel conf file. Basically it forces CD->Low transitions 568 1.1 chopps * to ALWAYS send a signal to the process, even if the device is in 569 1.1 chopps * clocal mode or an outdial device. RFH 570 1.1 chopps */ 571 1.1 chopps void 572 1.20 aymeric mscmint(register void *data) 573 1.1 chopps { 574 1.11 is register struct tty *tp; 575 1.11 is struct mscdevice *msc; 576 1.11 is volatile struct mscstatus *ms; 577 1.11 is volatile u_char *ibuf, *cbuf; 578 1.11 is unsigned char newhead; /* was int */ 579 1.11 is unsigned char bufpos; /* was int */ 580 1.11 is unsigned char ncd, ocd, ccd; 581 1.11 is int unit, slot, maxslot; 582 1.11 is int s, i; 583 1.11 is 584 1.11 is unit = (int) data; 585 1.11 is 586 1.11 is /* check each line on this board */ 587 1.11 is maxslot = MSCSLOTUL(unit, NUMLINES); 588 1.11 is if (maxslot > MSCSLOTS) 589 1.11 is maxslot = MSCSLOTS; 590 1.11 is 591 1.11 is msc = &mscdev[MSCSLOTUL(unit, 0)]; 592 1.11 is 593 1.11 is newhead = msc->board->Common.CDHead; 594 1.11 is bufpos = msc->board->Common.CDTail; 595 1.11 is if (newhead != bufpos) { /* CD events in queue */ 596 1.11 is /* set interrupt priority level */ 597 1.11 is s = spltty(); 598 1.11 is ocd = msc->board->Common.CDStatus; /* get old status bits */ 599 1.11 is while (newhead != bufpos) { /* read all events */ 600 1.11 is ncd = msc->board->CDBuf[bufpos++]; /* get one event */ 601 1.11 is ccd = ncd ^ ocd; /* mask of changed lines*/ 602 1.11 is ocd = ncd; /* save new status bits */ 603 1.1 chopps #if DEBUG_CD 604 1.11 is printf("ocd %02x ncd %02x ccd %02x\n", ocd, ncd, ccd); 605 1.1 chopps #endif 606 1.11 is for(i = 0; i < NUMLINES; i++) { /* do for all lines */ 607 1.11 is if (ccd & 1) { /* this one changed */ 608 1.11 is msc = &mscdev[MSCSLOTUL(unit, i)]; 609 1.11 is if (ncd & 1) { /* CD is now OFF */ 610 1.1 chopps #if DEBUG_CD 611 1.11 is printf("msc%d: CD OFF %d\n", unit, msc->port); 612 1.1 chopps #endif 613 1.11 is msc->flags &= ~TIOCM_CD; 614 1.11 is if ((tp = msc_tty[MSCTTYSLOT(MSCSLOTUL(unit, i))]) && 615 1.15 mhitch (tp->t_state & TS_ISOPEN) && tp->t_wopen == 0) { 616 1.11 is 617 1.1 chopps #ifndef MSCCDHACK 618 1.11 is if (MSCDIALIN(tp->t_dev)) 619 1.11 is #endif 620 1.11 is { 621 1.17 aymeric if (tp->t_linesw->l_modem(tp, 0) == 0) { 622 1.11 is /* clear RTS and DTR, bitbucket output */ 623 1.11 is ms = &msc->board->Status[msc->port]; 624 1.11 is ms->Command = (ms->Command & ~MSCCMD_CMask) | 625 1.11 is MSCCMD_Close; 626 1.37 thorpej ms->Setup = true; 627 1.11 is msc->flags &= ~(TIOCM_DTR | TIOCM_RTS); 628 1.37 thorpej ms->OutFlush = true; 629 1.11 is } 630 1.11 is } 631 1.11 is } 632 1.11 is } else { /* CD is now ON */ 633 1.11 is #if DEBUG_CD 634 1.11 is printf("msc%d: CD ON %d\n", unit, msc->port); 635 1.1 chopps #endif 636 1.11 is msc->flags |= TIOCM_CD; 637 1.11 is if ((tp = msc_tty[MSCTTYSLOT(MSCSLOTUL(unit, i))]) && 638 1.15 mhitch (tp->t_state & TS_ISOPEN) && tp->t_wopen == 0) { 639 1.11 is if (MSCDIALIN(tp->t_dev)) 640 1.17 aymeric tp->t_linesw->l_modem(tp, 1); 641 1.11 is } /* if tp valid and port open */ 642 1.11 is } /* CD on/off */ 643 1.11 is } /* if CD changed for this line */ 644 1.11 is ccd >>= 1; ncd >>= 1; /* bit for next line */ 645 1.11 is } /* for every line */ 646 1.11 is } /* while events in queue */ 647 1.11 is msc->board->Common.CDStatus = ocd; /* save new status */ 648 1.11 is msc->board->Common.CDTail = bufpos; /* remove events */ 649 1.11 is splx(s); 650 1.11 is } /* if events in CD queue */ 651 1.11 is 652 1.11 is for (slot = MSCSLOTUL(unit, 0); slot < maxslot; slot++) { 653 1.11 is msc = &mscdev[slot]; 654 1.11 is 655 1.11 is if (!msc->active) 656 1.11 is continue; 657 1.11 is 658 1.11 is tp = msc_tty[MSCTTYSLOT(slot)]; 659 1.11 is ms = &msc->board->Status[msc->port]; 660 1.1 chopps 661 1.11 is newhead = ms->InHead; /* 65c02 write pointer */ 662 1.1 chopps 663 1.11 is /* yoohoo, is the port open? */ 664 1.15 mhitch if (tp && (tp->t_state & TS_ISOPEN) && tp->t_wopen == 0) { 665 1.11 is /* port is open, handle all type of events */ 666 1.2 chopps 667 1.11 is /* set interrupt priority level */ 668 1.11 is s = spltty(); 669 1.1 chopps 670 1.11 is /* check for input for this port */ 671 1.11 is if (newhead != (bufpos = ms->InTail)) { 672 1.11 is /* buffer for input chars/events */ 673 1.11 is ibuf = &msc->board->InBuf[msc->port][0]; 674 1.1 chopps 675 1.11 is /* data types of bytes in ibuf */ 676 1.11 is cbuf = &msc->board->InCtl[msc->port][0]; 677 1.20 aymeric 678 1.11 is /* do for all chars, if room */ 679 1.11 is while (bufpos != newhead) { 680 1.11 is /* which type of input data? */ 681 1.11 is switch (cbuf[bufpos]) { 682 1.11 is /* input event (CD, BREAK, etc.) */ 683 1.11 is case MSCINCTL_EVENT: 684 1.11 is switch (ibuf[bufpos++]) { 685 1.11 is case MSCEVENT_Break: 686 1.17 aymeric tp->t_linesw->l_rint(TTY_FE, tp); 687 1.11 is break; 688 1.11 is 689 1.11 is default: 690 1.11 is printf("msc%d: unknown event type %d\n", 691 1.11 is msc->unit, ibuf[(bufpos-1)&0xff]); 692 1.11 is } /* event type switch */ 693 1.11 is break; 694 1.11 is 695 1.11 is case MSCINCTL_CHAR: 696 1.11 is if (tp->t_state & TS_TBLOCK) { 697 1.11 is goto NoRoomForYa; 698 1.11 is } 699 1.17 aymeric tp->t_linesw->l_rint((int)ibuf[bufpos++], tp); 700 1.11 is break; 701 1.1 chopps 702 1.11 is default: 703 1.20 aymeric printf("msc%d: unknown data type %d\n", 704 1.11 is msc->unit, cbuf[bufpos]); 705 1.11 is bufpos++; 706 1.11 is } /* switch on input data type */ 707 1.11 is } /* while there's something in the buffer */ 708 1.1 chopps NoRoomForYa: 709 1.11 is ms->InTail = bufpos; /* tell 65C02 what we've read */ 710 1.1 chopps } /* if there was something in the buffer */ 711 1.1 chopps 712 1.11 is /* we get here only when the port is open */ 713 1.11 is /* send output */ 714 1.11 is if (tp->t_state & (TS_BUSY|TS_FLUSH)) { 715 1.11 is 716 1.11 is bufpos = ms->OutHead - ms->OutTail; 717 1.11 is 718 1.11 is /* busy and below low water mark? */ 719 1.11 is if (tp->t_state & TS_BUSY) { 720 1.11 is if (bufpos < IOBUFLOWWATER) { 721 1.11 is tp->t_state &= ~TS_BUSY; /* not busy any more */ 722 1.17 aymeric if (tp->t_linesw) 723 1.17 aymeric tp->t_linesw->l_start(tp); 724 1.11 is else 725 1.11 is mscstart(tp); 726 1.1 chopps } 727 1.1 chopps } 728 1.1 chopps 729 1.11 is /* waiting for flush and buffer empty? */ 730 1.11 is if (tp->t_state & TS_FLUSH) { 731 1.11 is if (bufpos == 0) 732 1.11 is tp->t_state &= ~TS_FLUSH; /* finished flushing */ 733 1.11 is } 734 1.1 chopps } /* BUSY or FLUSH */ 735 1.1 chopps 736 1.11 is splx(s); 737 1.1 chopps 738 1.11 is } else { /* End of port open */ 739 1.11 is /* port is closed, don't pass on the chars from it */ 740 1.1 chopps 741 1.11 is /* check for input for this port */ 742 1.11 is if (newhead != (bufpos = ms->InTail)) { 743 1.11 is /* buffer for input chars/events */ 744 1.11 is ibuf = &msc->board->InBuf[msc->port][0]; 745 1.1 chopps 746 1.11 is /* data types of bytes in ibuf */ 747 1.11 is cbuf = &msc->board->InCtl[msc->port][0]; 748 1.20 aymeric 749 1.11 is /* do for all chars, if room */ 750 1.11 is while (bufpos != newhead) { 751 1.11 is /* which type of input data? */ 752 1.11 is switch (cbuf[bufpos]) { 753 1.11 is /* input event (BREAK, etc.) */ 754 1.11 is case MSCINCTL_EVENT: 755 1.11 is switch (ibuf[bufpos++]) { 756 1.11 is default: 757 1.11 is printf("msc: unknown event type %d\n", 758 1.11 is ibuf[(bufpos-1)&0xff]); 759 1.11 is } /* event type switch */ 760 1.11 is break; 761 1.11 is 762 1.11 is default: 763 1.11 is bufpos++; 764 1.11 is } /* switch on input data type */ 765 1.11 is } /* while there's something in the buffer */ 766 1.11 is 767 1.11 is ms->InTail = bufpos; /* tell 65C02 what we've read */ 768 1.11 is } /* if there was something in the buffer */ 769 1.11 is } /* End of port open/close */ 770 1.11 is 771 1.11 is /* is this port closing? */ 772 1.11 is if (msc->closing) { 773 1.11 is /* if DTR is off, just bitbucket remaining characters */ 774 1.11 is if ( (msc->flags & TIOCM_DTR) == 0) { 775 1.37 thorpej ms->OutFlush = true; 776 1.37 thorpej msc->closing = false; 777 1.11 is } 778 1.11 is /* if output has drained, drop DTR */ 779 1.11 is else if (ms->OutHead == ms->OutTail) { 780 1.11 is (void) mscmctl(tp->t_dev, 0, DMSET); 781 1.37 thorpej msc->closing = false; 782 1.11 is } 783 1.1 chopps } 784 1.11 is } /* For all ports */ 785 1.1 chopps } 786 1.1 chopps 787 1.11 is 788 1.1 chopps int 789 1.38 christos mscioctl(dev_t dev, u_long cmd, void *data, int flag, struct lwp *l) 790 1.1 chopps { 791 1.11 is register struct tty *tp; 792 1.11 is register int slot; 793 1.11 is register int error; 794 1.11 is struct mscdevice *msc; 795 1.11 is volatile struct mscstatus *ms; 796 1.11 is int s; 797 1.20 aymeric 798 1.11 is /* get the device structure */ 799 1.11 is slot = MSCSLOT(dev); 800 1.1 chopps 801 1.11 is if (slot >= MSCSLOTS) 802 1.11 is return ENXIO; 803 1.1 chopps 804 1.11 is msc = &mscdev[slot]; 805 1.1 chopps 806 1.11 is if (!msc->active) 807 1.11 is return ENXIO; 808 1.1 chopps 809 1.11 is ms = &msc->board->Status[msc->port]; 810 1.11 is if (!(tp = msc_tty[MSCTTY(dev)])) 811 1.11 is return ENXIO; 812 1.1 chopps 813 1.31 christos error = tp->t_linesw->l_ioctl(tp, cmd, data, flag, l); 814 1.22 atatat if (error != EPASSTHROUGH) 815 1.11 is return (error); 816 1.1 chopps 817 1.31 christos error = ttioctl(tp, cmd, data, flag, l); 818 1.22 atatat if (error != EPASSTHROUGH) 819 1.11 is return (error); 820 1.20 aymeric 821 1.11 is switch (cmd) { 822 1.11 is 823 1.11 is /* send break */ 824 1.11 is case TIOCSBRK: 825 1.11 is s = spltty(); 826 1.11 is ms->Command = (ms->Command & (~MSCCMD_RTSMask)) | MSCCMD_Break; 827 1.37 thorpej ms->Setup = true; 828 1.11 is splx(s); 829 1.11 is break; 830 1.1 chopps 831 1.11 is /* clear break */ 832 1.11 is case TIOCCBRK: 833 1.11 is s = spltty(); 834 1.11 is ms->Command = (ms->Command & (~MSCCMD_RTSMask)) | MSCCMD_RTSOn; 835 1.37 thorpej ms->Setup = true; 836 1.11 is splx(s); 837 1.11 is break; 838 1.11 is 839 1.11 is case TIOCSDTR: 840 1.11 is (void) mscmctl(dev, TIOCM_DTR | TIOCM_RTS, DMBIS); 841 1.11 is break; 842 1.20 aymeric 843 1.11 is case TIOCCDTR: 844 1.11 is if (!MSCDIALIN(dev)) /* don't let dialins drop DTR */ 845 1.11 is (void) mscmctl(dev, TIOCM_DTR | TIOCM_RTS, DMBIC); 846 1.11 is break; 847 1.20 aymeric 848 1.11 is case TIOCMSET: 849 1.11 is (void) mscmctl(dev, *(int *)data, DMSET); 850 1.11 is break; 851 1.20 aymeric 852 1.11 is case TIOCMBIS: 853 1.11 is (void) mscmctl(dev, *(int *)data, DMBIS); 854 1.11 is break; 855 1.20 aymeric 856 1.11 is case TIOCMBIC: 857 1.11 is if (MSCDIALIN(dev)) /* don't let dialins drop DTR */ 858 1.11 is (void) mscmctl(dev, *(int *)data & TIOCM_DTR, DMBIC); 859 1.11 is else 860 1.11 is (void) mscmctl(dev, *(int *)data, DMBIC); 861 1.11 is break; 862 1.20 aymeric 863 1.11 is case TIOCMGET: 864 1.11 is *(int *)data = mscmctl(dev, 0, DMGET); 865 1.11 is break; 866 1.20 aymeric 867 1.11 is case TIOCGFLAGS: 868 1.11 is *(int *)data = SWFLAGS(dev); 869 1.11 is break; 870 1.1 chopps 871 1.11 is case TIOCSFLAGS: 872 1.36 elad error = kauth_authorize_device_tty(l->l_cred, 873 1.36 elad KAUTH_DEVICE_TTY_PRIVSET, tp); 874 1.11 is if (error != 0) 875 1.11 is return(EPERM); 876 1.11 is msc->openflags = *(int *)data; 877 1.11 is /* only allow valid flags */ 878 1.11 is msc->openflags &= 879 1.11 is (TIOCFLAG_SOFTCAR | TIOCFLAG_CLOCAL | TIOCFLAG_CRTSCTS); 880 1.11 is break; 881 1.1 chopps 882 1.11 is default: 883 1.22 atatat return (EPASSTHROUGH); 884 1.11 is } 885 1.1 chopps 886 1.11 is return (0); 887 1.1 chopps } 888 1.1 chopps 889 1.1 chopps 890 1.1 chopps int 891 1.20 aymeric mscparam(register struct tty *tp, register struct termios *t) 892 1.1 chopps { 893 1.11 is register int cflag = t->c_cflag; 894 1.11 is struct mscdevice *msc; 895 1.11 is volatile struct mscstatus *ms; 896 1.11 is int s, slot; 897 1.11 is int ospeed = ttspeedtab(t->c_ospeed, mscspeedtab); 898 1.20 aymeric 899 1.11 is /* get the device structure */ 900 1.11 is slot = MSCSLOT(tp->t_dev); 901 1.1 chopps 902 1.11 is if (slot >= MSCSLOTS) 903 1.11 is return ENXIO; 904 1.1 chopps 905 1.11 is msc = &mscdev[slot]; 906 1.1 chopps 907 1.11 is if (!msc->active) 908 1.11 is return ENXIO; 909 1.1 chopps 910 1.11 is ms = &msc->board->Status[msc->port]; 911 1.1 chopps 912 1.11 is /* check requested parameters */ 913 1.11 is if (ospeed < 0 || (t->c_ispeed && t->c_ispeed != t->c_ospeed)) 914 1.11 is return (EINVAL); 915 1.11 is 916 1.11 is /* and copy to tty */ 917 1.11 is tp->t_ispeed = t->c_ispeed; 918 1.11 is tp->t_ospeed = t->c_ospeed; 919 1.11 is tp->t_cflag = cflag; 920 1.20 aymeric 921 1.11 is /* hang up if baud is zero */ 922 1.11 is if (t->c_ospeed == 0) { 923 1.11 is if (!MSCDIALIN(tp->t_dev)) /* don't let dialins drop DTR */ 924 1.11 is (void) mscmctl(tp->t_dev, 0, DMSET); 925 1.11 is } else { 926 1.11 is /* set the baud rate */ 927 1.11 is s = spltty(); 928 1.11 is ms->Param = (ms->Param & ~MSCPARAM_BaudMask) | ospeed | MSCPARAM_RcvBaud; 929 1.11 is 930 1.11 is /* 931 1.11 is * Make sure any previous hangup is undone, ie. reenable DTR. 932 1.11 is * also mscmctl will cause the speed to be set 933 1.11 is */ 934 1.11 is (void) mscmctl (tp->t_dev, TIOCM_DTR | TIOCM_RTS, DMSET); 935 1.1 chopps 936 1.11 is splx(s); 937 1.11 is } 938 1.20 aymeric 939 1.11 is return(0); 940 1.1 chopps } 941 1.1 chopps 942 1.1 chopps 943 1.1 chopps /* 944 1.1 chopps * Jukka's code initializes alot of stuff that other drivers don't 945 1.1 chopps * I'm including it here so that this code is a common set of work 946 1.1 chopps * done by both of us. rfh 947 1.1 chopps */ 948 1.1 chopps int 949 1.20 aymeric mschwiflow(struct tty *tp, int flag) 950 1.1 chopps { 951 1.1 chopps 952 1.1 chopps /* Rob's version */ 953 1.1 chopps #if 1 954 1.1 chopps if (flag) 955 1.11 is mscmctl( tp->t_dev, TIOCM_RTS, DMBIC); /* Clear/Lower RTS */ 956 1.1 chopps else 957 1.11 is mscmctl( tp->t_dev, TIOCM_RTS, DMBIS); /* Set/Raise RTS */ 958 1.1 chopps 959 1.11 is #else /* Jukka's version */ 960 1.1 chopps 961 1.11 is int s, slot; 962 1.11 is struct mscdevice *msc; 963 1.11 is volatile struct mscstatus *ms; 964 1.1 chopps 965 1.11 is /* get the device structure */ 966 1.11 is slot = MSCSLOT(tp->t_dev); 967 1.11 is if (slot >= MSCSLOTS) 968 1.11 is return ENXIO; 969 1.11 is msc = &mscdev[slot]; 970 1.11 is if (!msc->active) 971 1.11 is return ENXIO; 972 1.11 is ms = &msc->board->Status[msc->port]; 973 1.11 is 974 1.11 is /* Well, we should really _do_ something here, but the 65c02 code 975 1.11 is * manages the RTS signal on its own now, so... This will probably 976 1.11 is * change in the future. 977 1.11 is */ 978 1.1 chopps #endif 979 1.1 chopps return 1; 980 1.11 is } 981 1.1 chopps 982 1.1 chopps 983 1.6 veego void 984 1.20 aymeric mscstart(register struct tty *tp) 985 1.1 chopps { 986 1.11 is register int cc; 987 1.11 is register char *cp; 988 1.11 is register int mhead; 989 1.11 is int s, slot; 990 1.11 is struct mscdevice *msc; 991 1.11 is volatile struct mscstatus *ms; 992 1.11 is volatile char *mob; 993 1.11 is int hiwat = 0; 994 1.11 is int maxout; 995 1.1 chopps 996 1.11 is if (! (tp->t_state & TS_ISOPEN)) 997 1.11 is return; 998 1.1 chopps 999 1.11 is slot = MSCSLOT(tp->t_dev); 1000 1.1 chopps 1001 1.1 chopps #if 0 1002 1.11 is printf("starting msc%d\n", slot); 1003 1.1 chopps #endif 1004 1.1 chopps 1005 1.11 is s = spltty(); 1006 1.1 chopps 1007 1.11 is /* don't start if explicitly stopped */ 1008 1.20 aymeric if (tp->t_state & (TS_TIMEOUT|TS_TTSTOP)) 1009 1.11 is goto out; 1010 1.11 is 1011 1.11 is /* wake up if below low water */ 1012 1.11 is cc = tp->t_outq.c_cc; 1013 1.40 ad if (!ttypull(tp) || (tp->t_state & TS_BUSY)) 1014 1.11 is goto out; 1015 1.11 is 1016 1.11 is /* 1017 1.11 is * Limit the amount of output we do in one burst 1018 1.11 is */ 1019 1.11 is msc = &mscdev[slot]; 1020 1.11 is ms = &msc->board->Status[msc->port]; 1021 1.11 is mhead = ms->OutHead; 1022 1.11 is maxout = mhead - ms->OutTail; 1023 1.11 is 1024 1.11 is if (maxout < 0) 1025 1.11 is maxout += IOBUFLEN; 1026 1.11 is 1027 1.11 is maxout = IOBUFLEN - 1 - maxout; 1028 1.11 is 1029 1.11 is if (cc >= maxout) { 1030 1.11 is hiwat++; 1031 1.11 is cc = maxout; 1032 1.1 chopps } 1033 1.1 chopps 1034 1.11 is cc = q_to_b (&tp->t_outq, msc->tmpbuf, cc); 1035 1.1 chopps 1036 1.11 is if (cc > 0) { 1037 1.11 is tp->t_state |= TS_BUSY; 1038 1.1 chopps 1039 1.11 is mob = &msc->board->OutBuf[msc->port][0]; 1040 1.11 is cp = &msc->tmpbuf[0]; 1041 1.20 aymeric 1042 1.11 is /* enable output */ 1043 1.37 thorpej ms->OutDisable = false; 1044 1.1 chopps 1045 1.1 chopps #if 0 1046 1.11 is msc->tmpbuf[cc] = 0; 1047 1.11 is printf("sending '%s'\n", msctmpbuf); 1048 1.1 chopps #endif 1049 1.1 chopps 1050 1.11 is /* send the first char across to reduce latency */ 1051 1.11 is mob[mhead++] = *cp++; 1052 1.11 is mhead &= IOBUFLENMASK; 1053 1.11 is ms->OutHead = mhead; 1054 1.11 is cc--; 1055 1.11 is 1056 1.11 is /* copy the rest of the chars across quickly */ 1057 1.11 is while (cc > 0) { 1058 1.11 is mob[mhead++] = *cp++; 1059 1.11 is mhead &= IOBUFLENMASK; 1060 1.11 is cc--; 1061 1.11 is } 1062 1.11 is ms->OutHead = mhead; 1063 1.11 is 1064 1.11 is /* leave the device busy if we've filled the buffer */ 1065 1.11 is if (!hiwat) 1066 1.11 is tp->t_state &= ~TS_BUSY; 1067 1.11 is } 1068 1.1 chopps 1069 1.20 aymeric out: 1070 1.11 is splx(s); 1071 1.1 chopps } 1072 1.20 aymeric 1073 1.11 is 1074 1.1 chopps /* XXX */ 1075 1.1 chopps /* 1076 1.1 chopps * Stop output on a line. 1077 1.1 chopps */ 1078 1.1 chopps /*ARGSUSED*/ 1079 1.8 mycroft void 1080 1.20 aymeric mscstop(register struct tty *tp, int flag) 1081 1.20 aymeric /* flag variable defaulted to int anyway */ 1082 1.1 chopps { 1083 1.1 chopps register int s; 1084 1.6 veego #if 0 1085 1.1 chopps struct mscdevice *msc; 1086 1.1 chopps volatile struct mscstatus *ms; 1087 1.6 veego #endif 1088 1.1 chopps 1089 1.1 chopps s = spltty(); 1090 1.1 chopps if (tp->t_state & TS_BUSY) { 1091 1.6 veego if ((tp->t_state & TS_TTSTOP) == 0) { 1092 1.1 chopps tp->t_state |= TS_FLUSH; 1093 1.1 chopps #if 0 1094 1.1 chopps msc = &mscdev[MSCSLOT(tp->t_dev)]; 1095 1.1 chopps ms = &msc->board->Status[msc->port]; 1096 1.10 christos printf("stopped output on msc%d\n", MSCSLOT(tp->t_dev)); 1097 1.37 thorpej ms->OutDisable = true; 1098 1.1 chopps #endif 1099 1.1 chopps } 1100 1.1 chopps } 1101 1.1 chopps splx(s); 1102 1.1 chopps } 1103 1.20 aymeric 1104 1.11 is 1105 1.1 chopps /* 1106 1.1 chopps * bits can be: TIOCM_DTR, TIOCM_RTS, TIOCM_CTS, TIOCM_CD, TIOCM_RI, TIOCM_DSR 1107 1.1 chopps */ 1108 1.1 chopps int 1109 1.20 aymeric mscmctl(dev_t dev, int bits, int how) 1110 1.1 chopps { 1111 1.11 is struct mscdevice *msc; 1112 1.11 is volatile struct mscstatus *ms; 1113 1.11 is int slot; 1114 1.11 is int s; 1115 1.11 is u_char newcmd; 1116 1.11 is int OldFlags; 1117 1.11 is 1118 1.11 is /* get the device structure */ 1119 1.11 is slot = MSCSLOT(dev); 1120 1.1 chopps 1121 1.11 is if (slot >= MSCSLOTS) 1122 1.11 is return ENXIO; 1123 1.1 chopps 1124 1.11 is msc = &mscdev[slot]; 1125 1.1 chopps 1126 1.11 is if (!msc->active) 1127 1.11 is return ENXIO; 1128 1.2 chopps 1129 1.11 is s = spltty(); 1130 1.1 chopps 1131 1.11 is if (how != DMGET) { 1132 1.11 is OldFlags = msc->flags; 1133 1.11 is bits &= TIOCM_DTR | TIOCM_RTS; /* can only modify DTR and RTS */ 1134 1.11 is 1135 1.11 is switch (how) { 1136 1.11 is case DMSET: 1137 1.11 is msc->flags = (bits | (msc->flags & ~(TIOCM_DTR | TIOCM_RTS))); 1138 1.11 is break; 1139 1.20 aymeric 1140 1.11 is case DMBIC: 1141 1.11 is msc->flags &= ~bits; 1142 1.11 is break; 1143 1.20 aymeric 1144 1.11 is case DMBIS: 1145 1.11 is msc->flags |= bits; 1146 1.11 is break; 1147 1.11 is } 1148 1.1 chopps 1149 1.11 is /* modify modem control state */ 1150 1.11 is ms = &msc->board->Status[msc->port]; 1151 1.2 chopps 1152 1.11 is if (msc->flags & TIOCM_RTS) /* was bits & */ 1153 1.11 is newcmd = MSCCMD_RTSOn; 1154 1.11 is else /* this doesn't actually work now */ 1155 1.11 is newcmd = MSCCMD_RTSOff; 1156 1.11 is 1157 1.11 is if (msc->flags & TIOCM_DTR) /* was bits & */ 1158 1.11 is newcmd |= MSCCMD_Enable; 1159 1.11 is 1160 1.11 is ms->Command = (ms->Command & (~MSCCMD_RTSMask & ~MSCCMD_Enable)) | newcmd; 1161 1.37 thorpej ms->Setup = true; 1162 1.11 is 1163 1.11 is /* if we've dropped DTR, bitbucket any pending output */ 1164 1.11 is if ( (OldFlags & TIOCM_DTR) && ((bits & TIOCM_DTR) == 0)) 1165 1.37 thorpej ms->OutFlush = true; 1166 1.11 is } 1167 1.1 chopps 1168 1.11 is bits = msc->flags; 1169 1.1 chopps 1170 1.11 is (void) splx(s); 1171 1.20 aymeric 1172 1.11 is return(bits); 1173 1.11 is } 1174 1.1 chopps 1175 1.1 chopps 1176 1.1 chopps struct tty * 1177 1.20 aymeric msctty(dev_t dev) 1178 1.1 chopps { 1179 1.1 chopps return(msc_tty[MSCTTY(dev)]); 1180 1.1 chopps } 1181 1.1 chopps 1182 1.11 is 1183 1.1 chopps /* 1184 1.1 chopps * Load JM's freely redistributable A2232 6502c code. Let turbo detector 1185 1.1 chopps * run for a while too. 1186 1.1 chopps */ 1187 1.1 chopps 1188 1.1 chopps int 1189 1.20 aymeric mscinitcard(struct zbus_args *zap) 1190 1.1 chopps { 1191 1.11 is int bcount; 1192 1.11 is short start; 1193 1.11 is u_char *from; 1194 1.11 is volatile u_char *to; 1195 1.11 is volatile struct mscmemory *mlm; 1196 1.11 is 1197 1.20 aymeric mlm = (volatile struct mscmemory *)zap->va; 1198 1.11 is (void)mlm->Enable6502Reset; 1199 1.11 is 1200 1.11 is /* copy the code across to the board */ 1201 1.29 jmc to = (volatile u_char *)mlm; 1202 1.11 is from = msc6502code; bcount = sizeof(msc6502code) - 2; 1203 1.11 is start = *(short *)from; from += sizeof(start); 1204 1.11 is to += start; 1205 1.11 is 1206 1.11 is while(bcount--) *to++ = *from++; 1207 1.11 is 1208 1.11 is mlm->Common.Crystal = MSC_UNKNOWN; /* use automatic speed check */ 1209 1.11 is 1210 1.11 is /* start 6502 running */ 1211 1.11 is (void)mlm->ResetBoard; 1212 1.11 is 1213 1.11 is /* wait until speed detector has finished */ 1214 1.42 jklos for (bcount = 0; bcount < 2000; bcount++) { 1215 1.11 is delay(10000); 1216 1.11 is if (mlm->Common.Crystal) 1217 1.11 is break; 1218 1.11 is } 1219 1.1 chopps 1220 1.11 is return(0); 1221 1.1 chopps } 1222 1.1 chopps 1223 1.1 chopps #endif /* NMSC > 0 */ 1224