1 /** 2 ** SPDX-License-Identifier: BSD-4-Clause 3 ** 4 ** Copyright (c) 1995 Michael Smith, All rights reserved. 5 ** 6 ** Redistribution and use in source and binary forms, with or without 7 ** modification, are permitted provided that the following conditions 8 ** are met: 9 ** 1. Redistributions of source code must retain the above copyright 10 ** notice, this list of conditions and the following disclaimer as 11 ** the first lines of this file unmodified. 12 ** 2. Redistributions in binary form must reproduce the above copyright 13 ** notice, this list of conditions and the following disclaimer in the 14 ** documentation and/or other materials provided with the distribution. 15 ** 3. All advertising materials mentioning features or use of this software 16 ** must display the following acknowledgment: 17 ** This product includes software developed by Michael Smith. 18 ** 4. The name of the author may not be used to endorse or promote products 19 ** derived from this software without specific prior written permission. 20 ** 21 ** 22 ** THIS SOFTWARE IS PROVIDED BY Michael Smith ``AS IS'' AND ANY 23 ** EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 24 ** IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 25 ** PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL Michael Smith BE LIABLE FOR 26 ** ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 27 ** CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 28 ** SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR 29 ** BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, 30 ** WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE 31 ** OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, 32 ** EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 33 ** 34 **/ 35 36 /** 37 ** MSCONVD.C 38 ** 39 ** Mouse protocol conversion daemon : listens to a serial port or 40 ** the PS/2 mouse port for mouse data stream, decodes data and passes 41 ** writes off to the uinput driver. 42 ** 43 ** The mouse interface functions are derived closely from the mouse 44 ** handler in the XFree86 X server. Many thanks to the XFree86 people 45 ** for their great work! 46 ** 47 **/ 48 49 #include <sys/param.h> 50 #include <sys/consio.h> 51 #include <sys/mouse.h> 52 #include <sys/socket.h> 53 #include <sys/stat.h> 54 #include <sys/time.h> 55 #include <sys/un.h> 56 57 #include <dev/evdev/input.h> 58 #include <dev/evdev/uinput.h> 59 60 #include <ctype.h> 61 #include <err.h> 62 #include <errno.h> 63 #include <fcntl.h> 64 #include <libgen.h> 65 #include <libutil.h> 66 #include <limits.h> 67 #include <setjmp.h> 68 #include <signal.h> 69 #include <stdarg.h> 70 #include <stdbool.h> 71 #include <stdint.h> 72 #include <stdio.h> 73 #include <stdlib.h> 74 #include <string.h> 75 #include <syslog.h> 76 #include <termios.h> 77 #include <unistd.h> 78 79 /* Logitech PS2++ protocol */ 80 #define MOUSE_PS2PLUS_CHECKBITS(b) \ 81 ((((b[2] & 0x03) << 2) | 0x02) == (b[1] & 0x0f)) 82 #define MOUSE_PS2PLUS_PACKET_TYPE(b) \ 83 (((b[0] & 0x30) >> 2) | ((b[1] & 0x30) >> 4)) 84 85 #define ChordMiddle 0x0001 86 #define ClearDTR 0x0004 87 #define ClearRTS 0x0008 88 #define NoPnP 0x0010 89 90 #define ID_NONE 0 91 #define ID_PORT 1 92 #define ID_IF 2 93 #define ID_TYPE 4 94 #define ID_MODEL 8 95 #define ID_ALL (ID_PORT | ID_IF | ID_TYPE | ID_MODEL) 96 97 #define debug(...) do { \ 98 if (debug && nodaemon) \ 99 warnx(__VA_ARGS__); \ 100 } while (0) 101 102 #define logerr(e, ...) do { \ 103 log_or_warn(LOG_DAEMON | LOG_ERR, errno, __VA_ARGS__); \ 104 exit(e); \ 105 } while (0) 106 107 #define logerrx(e, ...) do { \ 108 log_or_warn(LOG_DAEMON | LOG_ERR, 0, __VA_ARGS__); \ 109 exit(e); \ 110 } while (0) 111 112 #define logwarn(...) \ 113 log_or_warn(LOG_DAEMON | LOG_WARNING, errno, __VA_ARGS__) 114 115 #define logwarnx(...) \ 116 log_or_warn(LOG_DAEMON | LOG_WARNING, 0, __VA_ARGS__) 117 118 /* structures */ 119 120 /* symbol table entry */ 121 typedef struct { 122 const char *name; 123 int val; 124 int val2; 125 } symtab_t; 126 127 /* serial PnP ID string */ 128 typedef struct { 129 int revision; /* PnP revision, 100 for 1.00 */ 130 const char *eisaid; /* EISA ID including mfr ID and product ID */ 131 char *serial; /* serial No, optional */ 132 const char *class; /* device class, optional */ 133 char *compat; /* list of compatible drivers, optional */ 134 char *description; /* product description, optional */ 135 int neisaid; /* length of the above fields... */ 136 int nserial; 137 int nclass; 138 int ncompat; 139 int ndescription; 140 } pnpid_t; 141 142 /* global variables */ 143 144 static int debug = 0; 145 static bool nodaemon = false; 146 static bool background = false; 147 static bool paused = false; 148 static int identify = ID_NONE; 149 static const char *pidfile = "/var/run/msconvd.pid"; 150 static struct pidfh *pfh; 151 152 /* local variables */ 153 154 /* interface (the table must be ordered by MOUSE_IF_XXX in mouse.h) */ 155 static symtab_t rifs[] = { 156 { "serial", MOUSE_IF_SERIAL, BUS_RS232 }, 157 { "ps/2", MOUSE_IF_PS2, BUS_I8042 }, 158 { "sysmouse", MOUSE_IF_SYSMOUSE, BUS_VIRTUAL }, 159 { "usb", MOUSE_IF_USB, BUS_USB }, 160 { NULL, MOUSE_IF_UNKNOWN, 0 }, 161 }; 162 163 /* types (the table must be ordered by MOUSE_PROTO_XXX in mouse.h) */ 164 static const char *rnames[] = { 165 "microsoft", 166 "mousesystems", 167 "logitech", 168 "mmseries", 169 "mouseman", 170 "wasbusmouse", 171 "wasinportmouse", 172 "ps/2", 173 "mmhitab", 174 "glidepoint", 175 "intellimouse", 176 "thinkingmouse", 177 "sysmouse", 178 "x10mouseremote", 179 "kidspad", 180 "versapad", 181 "jogdial", 182 #if notyet 183 "mariqua", 184 #endif 185 "gtco_digipad", 186 NULL 187 }; 188 189 /* models */ 190 static symtab_t rmodels[] = { 191 { "NetScroll", MOUSE_MODEL_NETSCROLL, 0 }, 192 { "NetMouse/NetScroll Optical", MOUSE_MODEL_NET, 0 }, 193 { "GlidePoint", MOUSE_MODEL_GLIDEPOINT, 0 }, 194 { "ThinkingMouse", MOUSE_MODEL_THINK, 0 }, 195 { "IntelliMouse", MOUSE_MODEL_INTELLI, 0 }, 196 { "EasyScroll/SmartScroll", MOUSE_MODEL_EASYSCROLL, 0 }, 197 { "MouseMan+", MOUSE_MODEL_MOUSEMANPLUS, 0 }, 198 { "Kidspad", MOUSE_MODEL_KIDSPAD, 0 }, 199 { "VersaPad", MOUSE_MODEL_VERSAPAD, 0 }, 200 { "IntelliMouse Explorer", MOUSE_MODEL_EXPLORER, 0 }, 201 { "4D Mouse", MOUSE_MODEL_4D, 0 }, 202 { "4D+ Mouse", MOUSE_MODEL_4DPLUS, 0 }, 203 { "Synaptics Touchpad", MOUSE_MODEL_SYNAPTICS, 0 }, 204 { "TrackPoint", MOUSE_MODEL_TRACKPOINT, 0 }, 205 { "Elantech Touchpad", MOUSE_MODEL_ELANTECH, 0 }, 206 { "generic", MOUSE_MODEL_GENERIC, 0 }, 207 { NULL, MOUSE_MODEL_UNKNOWN, 0 }, 208 }; 209 210 /* PnP EISA/product IDs */ 211 static symtab_t pnpprod[] = { 212 /* Kensignton ThinkingMouse */ 213 { "KML0001", MOUSE_PROTO_THINK, MOUSE_MODEL_THINK }, 214 /* MS IntelliMouse */ 215 { "MSH0001", MOUSE_PROTO_INTELLI, MOUSE_MODEL_INTELLI }, 216 /* MS IntelliMouse TrackBall */ 217 { "MSH0004", MOUSE_PROTO_INTELLI, MOUSE_MODEL_INTELLI }, 218 /* Tremon Wheel Mouse MUSD */ 219 { "HTK0001", MOUSE_PROTO_INTELLI, MOUSE_MODEL_INTELLI }, 220 /* Genius PnP Mouse */ 221 { "KYE0001", MOUSE_PROTO_MS, MOUSE_MODEL_GENERIC }, 222 /* MouseSystems SmartScroll Mouse (OEM from Genius?) */ 223 { "KYE0002", MOUSE_PROTO_MS, MOUSE_MODEL_EASYSCROLL }, 224 /* Genius NetMouse */ 225 { "KYE0003", MOUSE_PROTO_INTELLI, MOUSE_MODEL_NET }, 226 /* Genius Kidspad, Easypad and other tablets */ 227 { "KYE0005", MOUSE_PROTO_KIDSPAD, MOUSE_MODEL_KIDSPAD }, 228 /* Genius EZScroll */ 229 { "KYEEZ00", MOUSE_PROTO_MS, MOUSE_MODEL_EASYSCROLL }, 230 /* Logitech Cordless MouseMan Wheel */ 231 { "LGI8033", MOUSE_PROTO_INTELLI, MOUSE_MODEL_MOUSEMANPLUS }, 232 /* Logitech MouseMan (new 4 button model) */ 233 { "LGI800C", MOUSE_PROTO_INTELLI, MOUSE_MODEL_MOUSEMANPLUS }, 234 /* Logitech MouseMan+ */ 235 { "LGI8050", MOUSE_PROTO_INTELLI, MOUSE_MODEL_MOUSEMANPLUS }, 236 /* Logitech FirstMouse+ */ 237 { "LGI8051", MOUSE_PROTO_INTELLI, MOUSE_MODEL_MOUSEMANPLUS }, 238 /* Logitech serial */ 239 { "LGI8001", MOUSE_PROTO_LOGIMOUSEMAN, MOUSE_MODEL_GENERIC }, 240 /* A4 Tech 4D/4D+ Mouse */ 241 { "A4W0005", MOUSE_PROTO_INTELLI, MOUSE_MODEL_4D }, 242 /* 8D Scroll Mouse */ 243 { "PEC9802", MOUSE_PROTO_INTELLI, MOUSE_MODEL_INTELLI }, 244 /* Mitsumi Wireless Scroll Mouse */ 245 { "MTM6401", MOUSE_PROTO_INTELLI, MOUSE_MODEL_INTELLI }, 246 247 /* MS serial */ 248 { "PNP0F01", MOUSE_PROTO_MS, MOUSE_MODEL_GENERIC }, 249 /* MS PS/2 */ 250 { "PNP0F03", MOUSE_PROTO_PS2, MOUSE_MODEL_GENERIC }, 251 /* 252 * EzScroll returns PNP0F04 in the compatible device field; but it 253 * doesn't look compatible... XXX 254 */ 255 /* MouseSystems */ 256 { "PNP0F04", MOUSE_PROTO_MSC, MOUSE_MODEL_GENERIC }, 257 /* MouseSystems */ 258 { "PNP0F05", MOUSE_PROTO_MSC, MOUSE_MODEL_GENERIC }, 259 #if notyet 260 /* Genius Mouse */ 261 { "PNP0F06", MOUSE_PROTO_XXX, MOUSE_MODEL_GENERIC }, 262 /* Genius Mouse */ 263 { "PNP0F07", MOUSE_PROTO_XXX, MOUSE_MODEL_GENERIC }, 264 #endif 265 /* Logitech serial */ 266 { "PNP0F08", MOUSE_PROTO_LOGIMOUSEMAN, MOUSE_MODEL_GENERIC }, 267 /* MS BallPoint serial */ 268 { "PNP0F09", MOUSE_PROTO_MS, MOUSE_MODEL_GENERIC }, 269 /* MS PnP serial */ 270 { "PNP0F0A", MOUSE_PROTO_MS, MOUSE_MODEL_GENERIC }, 271 /* MS PnP BallPoint serial */ 272 { "PNP0F0B", MOUSE_PROTO_MS, MOUSE_MODEL_GENERIC }, 273 /* MS serial compatible */ 274 { "PNP0F0C", MOUSE_PROTO_MS, MOUSE_MODEL_GENERIC }, 275 /* MS PS/2 compatible */ 276 { "PNP0F0E", MOUSE_PROTO_PS2, MOUSE_MODEL_GENERIC }, 277 /* MS BallPoint compatible */ 278 { "PNP0F0F", MOUSE_PROTO_MS, MOUSE_MODEL_GENERIC }, 279 #if notyet 280 /* TI QuickPort */ 281 { "PNP0F10", MOUSE_PROTO_XXX, MOUSE_MODEL_GENERIC }, 282 #endif 283 /* Logitech PS/2 */ 284 { "PNP0F12", MOUSE_PROTO_PS2, MOUSE_MODEL_GENERIC }, 285 /* PS/2 */ 286 { "PNP0F13", MOUSE_PROTO_PS2, MOUSE_MODEL_GENERIC }, 287 #if notyet 288 /* MS Kids Mouse */ 289 { "PNP0F14", MOUSE_PROTO_XXX, MOUSE_MODEL_GENERIC }, 290 #endif 291 #if notyet 292 /* Logitech SWIFT */ 293 { "PNP0F16", MOUSE_PROTO_XXX, MOUSE_MODEL_GENERIC }, 294 #endif 295 /* Logitech serial compat */ 296 { "PNP0F17", MOUSE_PROTO_LOGIMOUSEMAN, MOUSE_MODEL_GENERIC }, 297 /* Logitech PS/2 compatible */ 298 { "PNP0F19", MOUSE_PROTO_PS2, MOUSE_MODEL_GENERIC }, 299 #if notyet 300 /* Logitech SWIFT compatible */ 301 { "PNP0F1A", MOUSE_PROTO_XXX, MOUSE_MODEL_GENERIC }, 302 /* HP Omnibook */ 303 { "PNP0F1B", MOUSE_PROTO_XXX, MOUSE_MODEL_GENERIC }, 304 /* Compaq LTE TrackBall PS/2 */ 305 { "PNP0F1C", MOUSE_PROTO_XXX, MOUSE_MODEL_GENERIC }, 306 /* Compaq LTE TrackBall serial */ 307 { "PNP0F1D", MOUSE_PROTO_XXX, MOUSE_MODEL_GENERIC }, 308 /* MS Kidts Trackball */ 309 { "PNP0F1E", MOUSE_PROTO_XXX, MOUSE_MODEL_GENERIC }, 310 #endif 311 /* Interlink VersaPad */ 312 { "LNK0001", MOUSE_PROTO_VERSAPAD, MOUSE_MODEL_VERSAPAD }, 313 314 { NULL, MOUSE_PROTO_UNKNOWN, MOUSE_MODEL_GENERIC }, 315 }; 316 317 /* the table must be ordered by MOUSE_PROTO_XXX in mouse.h */ 318 static unsigned short rodentcflags[] = 319 { 320 (CS7 | CREAD | CLOCAL | HUPCL), /* MicroSoft */ 321 (CS8 | CSTOPB | CREAD | CLOCAL | HUPCL), /* MouseSystems */ 322 (CS8 | CSTOPB | CREAD | CLOCAL | HUPCL), /* Logitech */ 323 (CS8 | PARENB | PARODD | CREAD | CLOCAL | HUPCL), /* MMSeries */ 324 (CS7 | CREAD | CLOCAL | HUPCL), /* MouseMan */ 325 0, /* Bus */ 326 0, /* InPort */ 327 0, /* PS/2 */ 328 (CS8 | CREAD | CLOCAL | HUPCL), /* MM HitTablet */ 329 (CS7 | CREAD | CLOCAL | HUPCL), /* GlidePoint */ 330 (CS7 | CREAD | CLOCAL | HUPCL), /* IntelliMouse */ 331 (CS7 | CREAD | CLOCAL | HUPCL), /* Thinking Mouse */ 332 (CS8 | CSTOPB | CREAD | CLOCAL | HUPCL), /* sysmouse */ 333 (CS7 | CREAD | CLOCAL | HUPCL), /* X10 MouseRemote */ 334 (CS8 | PARENB | PARODD | CREAD | CLOCAL | HUPCL), /* kidspad etc. */ 335 (CS8 | CREAD | CLOCAL | HUPCL), /* VersaPad */ 336 0, /* JogDial */ 337 #if notyet 338 (CS8 | CSTOPB | CREAD | CLOCAL | HUPCL), /* Mariqua */ 339 #endif 340 (CS8 | CREAD | HUPCL ), /* GTCO Digi-Pad */ 341 }; 342 343 /* evdev button codes */ 344 static const int16_t evdev_buttons[8] = { 345 BTN_LEFT, 346 BTN_MIDDLE, 347 BTN_RIGHT, 348 BTN_SIDE, 349 BTN_EXTRA, 350 BTN_FORWARD, 351 BTN_BACK, 352 BTN_TASK 353 }; 354 355 static struct rodentparam { 356 int flags; 357 const char *portname; /* /dev/XXX */ 358 int rtype; /* MOUSE_PROTO_XXX */ 359 int level; /* operation level: 0 or greater */ 360 int baudrate; 361 int rate; /* report rate */ 362 int resolution; /* MOUSE_RES_XXX or a positive number */ 363 int mfd; /* mouse file descriptor */ 364 int ufd; /* /dev/uinput file descriptor */ 365 int mremsfd; /* mouse remote server file descriptor */ 366 int mremcfd; /* mouse remote client file descriptor */ 367 int is_removable; /* set if device is removable, like USB */ 368 mousehw_t hw; /* mouse device hardware information */ 369 mousemode_t mode; /* protocol information */ 370 } rodent = { 371 .flags = 0, 372 .portname = NULL, 373 .rtype = MOUSE_PROTO_UNKNOWN, 374 .level = -1, 375 .baudrate = 1200, 376 .rate = 0, 377 .resolution = MOUSE_RES_UNKNOWN, 378 .mfd = -1, 379 .ufd = -1, 380 .mremsfd = -1, 381 .mremcfd = -1, 382 .is_removable = 0, 383 }; 384 385 static jmp_buf env; 386 387 /* function prototypes */ 388 389 static void msconvd(void); 390 static void hup(int sig); 391 static void cleanup(int sig); 392 static void pause_mouse(int sig); 393 static void usage(void); 394 static void log_or_warn(int log_pri, int errnum, const char *fmt, ...) 395 __printflike(3, 4); 396 397 static int r_uinput_register(void); 398 static int r_uinput_report(int fd, mousestatus_t *act); 399 static int r_identify(void); 400 static const char *r_if(int type); 401 static uint16_t r_bustype(int type); 402 static const char *r_name(int type); 403 static const char *r_model(int model); 404 static void r_init(void); 405 static int r_protocol(u_char b, mousestatus_t *act); 406 static void setmousespeed(int old, int new, unsigned cflag); 407 408 static bool pnpwakeup1(void); 409 static bool pnpwakeup2(void); 410 static int pnpgets(char *buf); 411 static bool pnpparse(pnpid_t *id, char *buf, int len); 412 static symtab_t *pnpproto(pnpid_t *id); 413 414 static symtab_t *gettoken(symtab_t *tab, const char *s, int len); 415 static const char *gettokenname(symtab_t *tab, int val); 416 static int gettokenval2(symtab_t *tab, int val); 417 418 static void mremote_serversetup(void); 419 static void mremote_clientchg(bool add); 420 421 static int kidspad(u_char rxc, mousestatus_t *act); 422 static int gtco_digipad(u_char, mousestatus_t *); 423 424 int 425 main(int argc, char *argv[]) 426 { 427 int c; 428 int i; 429 430 while ((c = getopt(argc, argv, "DF:I:PRS:cdfhi:l:p:r:st:")) != -1) 431 switch(c) { 432 433 case 'c': 434 rodent.flags |= ChordMiddle; 435 break; 436 437 case 'd': 438 ++debug; 439 break; 440 441 case 'f': 442 nodaemon = true; 443 break; 444 445 case 'i': 446 if (strcmp(optarg, "all") == 0) 447 identify = ID_ALL; 448 else if (strcmp(optarg, "port") == 0) 449 identify = ID_PORT; 450 else if (strcmp(optarg, "if") == 0) 451 identify = ID_IF; 452 else if (strcmp(optarg, "type") == 0) 453 identify = ID_TYPE; 454 else if (strcmp(optarg, "model") == 0) 455 identify = ID_MODEL; 456 else { 457 warnx("invalid argument `%s'", optarg); 458 usage(); 459 } 460 nodaemon = true; 461 break; 462 463 case 'l': 464 rodent.level = atoi(optarg); 465 if ((rodent.level < 0) || (rodent.level > 4)) { 466 warnx("invalid argument `%s'", optarg); 467 usage(); 468 } 469 break; 470 471 case 'p': 472 rodent.portname = optarg; 473 break; 474 475 case 'r': 476 if (strcmp(optarg, "high") == 0) 477 rodent.resolution = MOUSE_RES_HIGH; 478 else if (strcmp(optarg, "medium-high") == 0) 479 rodent.resolution = MOUSE_RES_HIGH; 480 else if (strcmp(optarg, "medium-low") == 0) 481 rodent.resolution = MOUSE_RES_MEDIUMLOW; 482 else if (strcmp(optarg, "low") == 0) 483 rodent.resolution = MOUSE_RES_LOW; 484 else if (strcmp(optarg, "default") == 0) 485 rodent.resolution = MOUSE_RES_DEFAULT; 486 else { 487 rodent.resolution = atoi(optarg); 488 if (rodent.resolution <= 0) { 489 warnx("invalid argument `%s'", optarg); 490 usage(); 491 } 492 } 493 break; 494 495 case 's': 496 rodent.baudrate = 9600; 497 break; 498 499 case 'D': 500 rodent.flags |= ClearDTR; 501 break; 502 503 case 'F': 504 rodent.rate = atoi(optarg); 505 if (rodent.rate <= 0) { 506 warnx("invalid argument `%s'", optarg); 507 usage(); 508 } 509 break; 510 511 case 'I': 512 pidfile = optarg; 513 break; 514 515 case 'P': 516 rodent.flags |= NoPnP; 517 break; 518 519 case 'R': 520 rodent.flags |= ClearRTS; 521 break; 522 523 case 'S': 524 rodent.baudrate = atoi(optarg); 525 if (rodent.baudrate <= 0) { 526 warnx("invalid argument `%s'", optarg); 527 usage(); 528 } 529 debug("rodent baudrate %d", rodent.baudrate); 530 break; 531 532 case 't': 533 if (strcmp(optarg, "auto") == 0) { 534 rodent.rtype = MOUSE_PROTO_UNKNOWN; 535 rodent.flags &= ~NoPnP; 536 rodent.level = -1; 537 break; 538 } 539 for (i = 0; rnames[i] != NULL; i++) 540 if (strcmp(optarg, rnames[i]) == 0) { 541 rodent.rtype = i; 542 rodent.flags |= NoPnP; 543 rodent.level = (i == MOUSE_PROTO_SYSMOUSE) ? 1 : 0; 544 break; 545 } 546 if (rnames[i] == NULL) { 547 warnx("no such mouse type `%s'", optarg); 548 usage(); 549 } 550 break; 551 552 case 'h': 553 case '?': 554 default: 555 usage(); 556 } 557 558 /* the default port name */ 559 switch(rodent.rtype) { 560 561 case MOUSE_PROTO_PS2: 562 if (!rodent.portname) 563 rodent.portname = "/dev/psm0"; 564 break; 565 566 default: 567 if (rodent.portname) 568 break; 569 warnx("no port name specified"); 570 usage(); 571 } 572 573 if (strncmp(rodent.portname, "/dev/ums", 8) == 0) 574 rodent.is_removable = 1; 575 576 for (;;) { 577 if (setjmp(env) == 0) { 578 signal(SIGHUP, hup); 579 signal(SIGINT , cleanup); 580 signal(SIGQUIT, cleanup); 581 signal(SIGTERM, cleanup); 582 signal(SIGUSR1, pause_mouse); 583 584 rodent.mfd = open(rodent.portname, O_RDWR | O_NONBLOCK); 585 if (rodent.mfd == -1) 586 logerr(1, "unable to open %s", rodent.portname); 587 if (r_identify() == MOUSE_PROTO_UNKNOWN) { 588 logwarnx("cannot determine mouse type on %s", rodent.portname); 589 close(rodent.mfd); 590 rodent.mfd = -1; 591 } 592 593 /* print some information */ 594 if (identify != ID_NONE) { 595 if (identify == ID_ALL) 596 printf("%s %s %s %s\n", 597 rodent.portname, r_if(rodent.hw.iftype), 598 r_name(rodent.rtype), r_model(rodent.hw.model)); 599 else if (identify & ID_PORT) 600 printf("%s\n", rodent.portname); 601 else if (identify & ID_IF) 602 printf("%s\n", r_if(rodent.hw.iftype)); 603 else if (identify & ID_TYPE) 604 printf("%s\n", r_name(rodent.rtype)); 605 else if (identify & ID_MODEL) 606 printf("%s\n", r_model(rodent.hw.model)); 607 exit(0); 608 } else { 609 debug("port: %s interface: %s type: %s model: %s", 610 rodent.portname, r_if(rodent.hw.iftype), 611 r_name(rodent.rtype), r_model(rodent.hw.model)); 612 } 613 614 if (rodent.mfd == -1) { 615 /* 616 * We cannot continue because of error. Exit if the 617 * program has not become a daemon. Otherwise, block 618 * until the user corrects the problem and issues SIGHUP. 619 */ 620 if (!background) 621 exit(1); 622 sigpause(0); 623 } 624 625 r_init(); /* call init function */ 626 msconvd(); 627 } 628 629 if (rodent.mfd != -1) 630 close(rodent.mfd); 631 if (rodent.ufd != -1) 632 close(rodent.ufd); 633 rodent.mfd = rodent.ufd = -1; 634 if (rodent.is_removable) 635 exit(0); 636 } 637 /* NOT REACHED */ 638 639 exit(0); 640 } 641 642 static void 643 msconvd(void) 644 { 645 mousestatus_t action; /* mouse action */ 646 fd_set fds; 647 u_char b; 648 pid_t mpid; 649 int flags; 650 int c; 651 652 if ((rodent.ufd = r_uinput_register()) == -1) 653 logerr(1, "cannot register uinput device"); 654 655 if (!nodaemon && !background) { 656 pfh = pidfile_open(pidfile, 0600, &mpid); 657 if (pfh == NULL) { 658 if (errno == EEXIST) 659 logerrx(1, "msconvd already running, pid: %d", mpid); 660 logwarn("cannot open pid file"); 661 } 662 if (daemon(0, 0)) { 663 int saved_errno = errno; 664 pidfile_remove(pfh); 665 errno = saved_errno; 666 logerr(1, "failed to become a daemon"); 667 } else { 668 background = true; 669 pidfile_write(pfh); 670 } 671 } 672 673 /* clear mouse data */ 674 bzero(&action, sizeof(action)); 675 676 /* process mouse data */ 677 for (;;) { 678 679 FD_ZERO(&fds); 680 FD_SET(rodent.mfd, &fds); 681 if (rodent.mremsfd >= 0) 682 FD_SET(rodent.mremsfd, &fds); 683 if (rodent.mremcfd >= 0) 684 FD_SET(rodent.mremcfd, &fds); 685 686 c = select(FD_SETSIZE, &fds, NULL, NULL, NULL); 687 if (c < 0) { /* error */ 688 logwarn("failed to read from mouse"); 689 continue; 690 } 691 /* MouseRemote client connect/disconnect */ 692 if ((rodent.mremsfd >= 0) && FD_ISSET(rodent.mremsfd, &fds)) { 693 mremote_clientchg(true); 694 continue; 695 } 696 if ((rodent.mremcfd >= 0) && FD_ISSET(rodent.mremcfd, &fds)) { 697 mremote_clientchg(false); 698 continue; 699 } 700 /* mouse movement */ 701 if (read(rodent.mfd, &b, 1) == -1) { 702 if (errno == EWOULDBLOCK) 703 continue; 704 else 705 return; 706 } 707 if ((flags = r_protocol(b, &action)) == 0) 708 continue; 709 710 debug("flags:%08x buttons:%08x obuttons:%08x", action.flags, 711 action.button, action.obutton); 712 713 if (flags) { 714 if (r_uinput_report(rodent.ufd, &action) == -1) { 715 logwarn("failed to write to uinput"); 716 return; 717 } 718 } 719 } 720 /* NOT REACHED */ 721 } 722 723 static void 724 hup(__unused int sig) 725 { 726 longjmp(env, 1); 727 } 728 729 static void 730 cleanup(__unused int sig) 731 { 732 if (rodent.rtype == MOUSE_PROTO_X10MOUSEREM) 733 unlink(_PATH_MOUSEREMOTE); 734 exit(0); 735 } 736 737 static void 738 pause_mouse(__unused int sig) 739 { 740 paused = !paused; 741 } 742 743 /** 744 ** usage 745 ** 746 ** Complain, and free the CPU for more worthy tasks 747 **/ 748 static void 749 usage(void) 750 { 751 fprintf(stderr, "%s\n%s\n%s\n", 752 "usage: msconvd [-DPRcdfs] [-I file] [-F rate] [-r resolution] [-S baudrate]", 753 " [-t <mousetype>] [-l level] -p <port>", 754 " msconvd [-Pd] -i <port|if|type|model|all> -p <port>"); 755 exit(1); 756 } 757 758 /* 759 * Output an error message to syslog or stderr as appropriate. If 760 * `errnum' is non-zero, append its string form to the message. 761 */ 762 static void 763 log_or_warn(int log_pri, int errnum, const char *fmt, ...) 764 { 765 va_list ap; 766 char buf[256]; 767 768 va_start(ap, fmt); 769 vsnprintf(buf, sizeof(buf), fmt, ap); 770 va_end(ap); 771 if (errnum) { 772 strlcat(buf, ": ", sizeof(buf)); 773 strlcat(buf, strerror(errnum), sizeof(buf)); 774 } 775 776 if (background) 777 syslog(log_pri, "%s", buf); 778 else 779 warnx("%s", buf); 780 } 781 782 /* 783 * Setup uinput device as 8button mouse with wheel 784 */ 785 static int 786 r_uinput_register(void) 787 { 788 struct uinput_setup uisetup; 789 char *phys; 790 int fd; 791 size_t i; 792 793 fd = open("/dev/uinput", O_RDWR | O_NONBLOCK); 794 if (fd < 0) 795 return (-1); 796 797 /* Set device name and bus/vendor information */ 798 memset(&uisetup, 0, sizeof(uisetup)); 799 snprintf(uisetup.name, UINPUT_MAX_NAME_SIZE, 800 "%s mouse on %s", r_model(rodent.hw.model), rodent.portname); 801 uisetup.id.bustype = r_bustype(rodent.hw.iftype); 802 uisetup.id.vendor = 0; 803 uisetup.id.product = 0; 804 uisetup.id.version = 0; 805 phys = basename(__DECONST(char *, rodent.portname)); 806 if (ioctl(fd, UI_SET_PHYS, phys) < 0 || 807 ioctl(fd, UI_DEV_SETUP, &uisetup) < 0) 808 goto bail_out; 809 810 /* Advertise events and axes */ 811 if (ioctl(fd, UI_SET_EVBIT, EV_SYN) < 0 || 812 ioctl(fd, UI_SET_EVBIT, EV_KEY) < 0 || 813 ioctl(fd, UI_SET_EVBIT, EV_REL) < 0 || 814 ioctl(fd, UI_SET_RELBIT, REL_X) < 0 || 815 ioctl(fd, UI_SET_RELBIT, REL_Y) < 0 || 816 ioctl(fd, UI_SET_RELBIT, REL_WHEEL) < 0 || 817 ioctl(fd, UI_SET_PROPBIT, INPUT_PROP_POINTER) < 0) 818 goto bail_out; 819 820 /* Advertise mouse buttons */ 821 for (i = 0; i < nitems(evdev_buttons); i++) 822 if (ioctl(fd, UI_SET_KEYBIT, evdev_buttons[i]) < 0) 823 goto bail_out; 824 825 if (ioctl(fd, UI_DEV_CREATE) >= 0) 826 return (fd); /* SUCCESS */ 827 828 bail_out: 829 close (fd); 830 return (-1); 831 } 832 833 static int 834 uinput_event(int fd, uint16_t type, uint16_t code, int32_t value) 835 { 836 struct input_event ie; 837 838 if (debug >= 2 || paused) 839 return (0); 840 841 memset(&ie, 0, sizeof(ie)); 842 ie.type = type; 843 ie.code = code; 844 ie.value = value; 845 return (write(fd, &ie, sizeof(ie))); 846 } 847 848 static int 849 r_uinput_report(int fd, mousestatus_t *act) 850 { 851 size_t i; 852 int32_t mask; 853 854 if ((act->dx != 0 && uinput_event(fd, EV_REL, REL_X, act->dx) < 0) || 855 (act->dy != 0 && uinput_event(fd, EV_REL, REL_Y, act->dy) < 0) || 856 (act->dz != 0 && uinput_event(fd, EV_REL, REL_WHEEL, -act->dz) < 0)) 857 return (-1); 858 859 for (i = 0; i < nitems(evdev_buttons); i++) { 860 mask = 1 << i; 861 if ((act->button & mask) == (act->obutton & mask)) 862 continue; 863 if (uinput_event(fd, EV_KEY, evdev_buttons[i], 864 (act->button & mask) != 0) < 0) 865 return (-1); 866 } 867 868 if (uinput_event(fd, EV_SYN, SYN_REPORT, 0) < 0) 869 return (-1); 870 871 return (0); 872 } 873 874 /** 875 ** Mouse interface code, courtesy of XFree86 3.1.2. 876 ** 877 ** Note: Various bits have been trimmed, and in my shortsighted enthusiasm 878 ** to clean, reformat and rationalise naming, it's quite possible that 879 ** some things in here have been broken. 880 ** 881 ** I hope not 8) 882 ** 883 ** The following code is derived from a module marked : 884 **/ 885 886 /* $XConsortium: xf86_Mouse.c,v 1.2 94/10/12 20:33:21 kaleb Exp $ */ 887 /* $XFree86: xc/programs/Xserver/hw/xfree86/common/xf86_Mouse.c,v 3.2 1995/01/28 888 17:03:40 dawes Exp $ */ 889 /* 890 * 891 * Copyright 1990,91 by Thomas Roell, Dinkelscherben, Germany. 892 * Copyright 1993 by David Dawes <dawes@physics.su.oz.au> 893 * 894 * Permission to use, copy, modify, distribute, and sell this software and its 895 * documentation for any purpose is hereby granted without fee, provided that 896 * the above copyright notice appear in all copies and that both that 897 * copyright notice and this permission notice appear in supporting 898 * documentation, and that the names of Thomas Roell and David Dawes not be 899 * used in advertising or publicity pertaining to distribution of the 900 * software without specific, written prior permission. Thomas Roell 901 * and David Dawes makes no representations about the suitability of this 902 * software for any purpose. It is provided "as is" without express or 903 * implied warranty. 904 * 905 * THOMAS ROELL AND DAVID DAWES DISCLAIM ALL WARRANTIES WITH REGARD TO THIS 906 * SOFTWARE, INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND 907 * FITNESS, IN NO EVENT SHALL THOMAS ROELL OR DAVID DAWES BE LIABLE FOR ANY 908 * SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER 909 * RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF 910 * CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN 911 * CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. 912 * 913 */ 914 915 /** 916 ** GlidePoint support from XFree86 3.2. 917 ** Derived from the module: 918 **/ 919 920 /* $XFree86: xc/programs/Xserver/hw/xfree86/common/xf86_Mouse.c,v 3.19 1996/10/16 14:40:51 dawes Exp $ */ 921 /* $XConsortium: xf86_Mouse.c /main/10 1996/01/30 15:16:12 kaleb $ */ 922 923 /* the following table must be ordered by MOUSE_PROTO_XXX in mouse.h */ 924 static unsigned char proto[][7] = { 925 /* hd_mask hd_id dp_mask dp_id bytes b4_mask b4_id */ 926 { 0x40, 0x40, 0x40, 0x00, 3, ~0x23, 0x00 }, /* MicroSoft */ 927 { 0xf8, 0x80, 0x00, 0x00, 5, 0x00, 0xff }, /* MouseSystems */ 928 { 0xe0, 0x80, 0x80, 0x00, 3, 0x00, 0xff }, /* Logitech */ 929 { 0xe0, 0x80, 0x80, 0x00, 3, 0x00, 0xff }, /* MMSeries */ 930 { 0x40, 0x40, 0x40, 0x00, 3, ~0x33, 0x00 }, /* MouseMan */ 931 { 0xf8, 0x80, 0x00, 0x00, 5, 0x00, 0xff }, /* Bus */ 932 { 0xf8, 0x80, 0x00, 0x00, 5, 0x00, 0xff }, /* InPort */ 933 { 0xc0, 0x00, 0x00, 0x00, 3, 0x00, 0xff }, /* PS/2 mouse */ 934 { 0xe0, 0x80, 0x80, 0x00, 3, 0x00, 0xff }, /* MM HitTablet */ 935 { 0x40, 0x40, 0x40, 0x00, 3, ~0x33, 0x00 }, /* GlidePoint */ 936 { 0x40, 0x40, 0x40, 0x00, 3, ~0x3f, 0x00 }, /* IntelliMouse */ 937 { 0x40, 0x40, 0x40, 0x00, 3, ~0x33, 0x00 }, /* ThinkingMouse */ 938 { 0xf8, 0x80, 0x00, 0x00, 5, 0x00, 0xff }, /* sysmouse */ 939 { 0x40, 0x40, 0x40, 0x00, 3, ~0x23, 0x00 }, /* X10 MouseRem */ 940 { 0x80, 0x80, 0x00, 0x00, 5, 0x00, 0xff }, /* KIDSPAD */ 941 { 0xc3, 0xc0, 0x00, 0x00, 6, 0x00, 0xff }, /* VersaPad */ 942 { 0x00, 0x00, 0x00, 0x00, 1, 0x00, 0xff }, /* JogDial */ 943 #if notyet 944 { 0xf8, 0x80, 0x00, 0x00, 5, ~0x2f, 0x10 }, /* Mariqua */ 945 #endif 946 }; 947 static unsigned char cur_proto[7]; 948 949 static int 950 r_identify(void) 951 { 952 char pnpbuf[256]; /* PnP identifier string may be up to 256 bytes long */ 953 pnpid_t pnpid; 954 symtab_t *t; 955 int level; 956 int len; 957 958 /* set the driver operation level, if applicable */ 959 if (rodent.level < 0) 960 rodent.level = 1; 961 ioctl(rodent.mfd, MOUSE_SETLEVEL, &rodent.level); 962 rodent.level = (ioctl(rodent.mfd, MOUSE_GETLEVEL, &level) == 0) ? level : 0; 963 964 /* 965 * Interrogate the driver and get some intelligence on the device... 966 * The following ioctl functions are not always supported by device 967 * drivers. When the driver doesn't support them, we just trust the 968 * user to supply valid information. 969 */ 970 rodent.hw.iftype = MOUSE_IF_UNKNOWN; 971 rodent.hw.model = MOUSE_MODEL_GENERIC; 972 ioctl(rodent.mfd, MOUSE_GETHWINFO, &rodent.hw); 973 974 if (rodent.rtype != MOUSE_PROTO_UNKNOWN) 975 bcopy(proto[rodent.rtype], cur_proto, sizeof(cur_proto)); 976 rodent.mode.protocol = MOUSE_PROTO_UNKNOWN; 977 rodent.mode.rate = -1; 978 rodent.mode.resolution = MOUSE_RES_UNKNOWN; 979 rodent.mode.accelfactor = 0; 980 rodent.mode.level = 0; 981 if (ioctl(rodent.mfd, MOUSE_GETMODE, &rodent.mode) == 0) { 982 if (rodent.mode.protocol == MOUSE_PROTO_UNKNOWN || 983 rodent.mode.protocol >= (int)nitems(proto)) { 984 logwarnx("unknown mouse protocol (%d)", rodent.mode.protocol); 985 return (MOUSE_PROTO_UNKNOWN); 986 } else { 987 if (rodent.mode.protocol != rodent.rtype) { 988 /* Hmm, the driver doesn't agree with the user... */ 989 if (rodent.rtype != MOUSE_PROTO_UNKNOWN) 990 logwarnx("mouse type mismatch (%s != %s), %s is assumed", 991 r_name(rodent.mode.protocol), r_name(rodent.rtype), 992 r_name(rodent.mode.protocol)); 993 rodent.rtype = rodent.mode.protocol; 994 bcopy(proto[rodent.rtype], cur_proto, sizeof(cur_proto)); 995 } 996 } 997 cur_proto[4] = rodent.mode.packetsize; 998 cur_proto[0] = rodent.mode.syncmask[0]; /* header byte bit mask */ 999 cur_proto[1] = rodent.mode.syncmask[1]; /* header bit pattern */ 1000 } 1001 1002 /* maybe this is a PnP mouse... */ 1003 if (rodent.mode.protocol == MOUSE_PROTO_UNKNOWN) { 1004 1005 if (rodent.flags & NoPnP) 1006 return (rodent.rtype); 1007 if (((len = pnpgets(pnpbuf)) <= 0) || !pnpparse(&pnpid, pnpbuf, len)) 1008 return (rodent.rtype); 1009 1010 debug("PnP serial mouse: '%*.*s' '%*.*s' '%*.*s'", 1011 pnpid.neisaid, pnpid.neisaid, pnpid.eisaid, 1012 pnpid.ncompat, pnpid.ncompat, pnpid.compat, 1013 pnpid.ndescription, pnpid.ndescription, pnpid.description); 1014 1015 /* we have a valid PnP serial device ID */ 1016 rodent.hw.iftype = MOUSE_IF_SERIAL; 1017 t = pnpproto(&pnpid); 1018 if (t != NULL) { 1019 rodent.mode.protocol = t->val; 1020 rodent.hw.model = t->val2; 1021 } else { 1022 rodent.mode.protocol = MOUSE_PROTO_UNKNOWN; 1023 } 1024 1025 /* make final adjustment */ 1026 if (rodent.mode.protocol != MOUSE_PROTO_UNKNOWN) { 1027 if (rodent.mode.protocol != rodent.rtype) { 1028 /* Hmm, the device doesn't agree with the user... */ 1029 if (rodent.rtype != MOUSE_PROTO_UNKNOWN) 1030 logwarnx("mouse type mismatch (%s != %s), %s is assumed", 1031 r_name(rodent.mode.protocol), r_name(rodent.rtype), 1032 r_name(rodent.mode.protocol)); 1033 rodent.rtype = rodent.mode.protocol; 1034 bcopy(proto[rodent.rtype], cur_proto, sizeof(cur_proto)); 1035 } 1036 } 1037 } 1038 1039 debug("proto params: %02x %02x %02x %02x %d %02x %02x", 1040 cur_proto[0], cur_proto[1], cur_proto[2], cur_proto[3], 1041 cur_proto[4], cur_proto[5], cur_proto[6]); 1042 1043 return (rodent.rtype); 1044 } 1045 1046 static const char * 1047 r_if(int iftype) 1048 { 1049 1050 return (gettokenname(rifs, iftype)); 1051 } 1052 1053 static uint16_t 1054 r_bustype(int iftype) 1055 { 1056 return (gettokenval2(rifs, iftype)); 1057 } 1058 1059 static const char * 1060 r_name(int type) 1061 { 1062 const char *unknown = "unknown"; 1063 1064 return (type == MOUSE_PROTO_UNKNOWN || type >= (int)nitems(rnames) ? 1065 unknown : rnames[type]); 1066 } 1067 1068 static const char * 1069 r_model(int model) 1070 { 1071 1072 return (gettokenname(rmodels, model)); 1073 } 1074 1075 static void 1076 r_init(void) 1077 { 1078 unsigned char buf[16]; /* scrach buffer */ 1079 fd_set fds; 1080 const char *s; 1081 char c; 1082 int i; 1083 1084 /** 1085 ** This comment is a little out of context here, but it contains 1086 ** some useful information... 1087 ******************************************************************** 1088 ** 1089 ** The following lines take care of the Logitech MouseMan protocols. 1090 ** 1091 ** NOTE: There are different versions of both MouseMan and TrackMan! 1092 ** Hence I add another protocol P_LOGIMAN, which the user can 1093 ** specify as MouseMan in his XF86Config file. This entry was 1094 ** formerly handled as a special case of P_MS. However, people 1095 ** who don't have the middle button problem, can still specify 1096 ** Microsoft and use P_MS. 1097 ** 1098 ** By default, these mice should use a 3 byte Microsoft protocol 1099 ** plus a 4th byte for the middle button. However, the mouse might 1100 ** have switched to a different protocol before we use it, so I send 1101 ** the proper sequence just in case. 1102 ** 1103 ** NOTE: - all commands to (at least the European) MouseMan have to 1104 ** be sent at 1200 Baud. 1105 ** - each command starts with a '*'. 1106 ** - whenever the MouseMan receives a '*', it will switch back 1107 ** to 1200 Baud. Hence I have to select the desired protocol 1108 ** first, then select the baud rate. 1109 ** 1110 ** The protocols supported by the (European) MouseMan are: 1111 ** - 5 byte packed binary protocol, as with the Mouse Systems 1112 ** mouse. Selected by sequence "*U". 1113 ** - 2 button 3 byte MicroSoft compatible protocol. Selected 1114 ** by sequence "*V". 1115 ** - 3 button 3+1 byte MicroSoft compatible protocol (default). 1116 ** Selected by sequence "*X". 1117 ** 1118 ** The following baud rates are supported: 1119 ** - 1200 Baud (default). Selected by sequence "*n". 1120 ** - 9600 Baud. Selected by sequence "*q". 1121 ** 1122 ** Selecting a sample rate is no longer supported with the MouseMan! 1123 ** Some additional lines in xf86Config.c take care of ill configured 1124 ** baud rates and sample rates. (The user will get an error.) 1125 */ 1126 1127 switch (rodent.rtype) { 1128 1129 case MOUSE_PROTO_LOGI: 1130 /* 1131 * The baud rate selection command must be sent at the current 1132 * baud rate; try all likely settings 1133 */ 1134 setmousespeed(9600, rodent.baudrate, rodentcflags[rodent.rtype]); 1135 setmousespeed(4800, rodent.baudrate, rodentcflags[rodent.rtype]); 1136 setmousespeed(2400, rodent.baudrate, rodentcflags[rodent.rtype]); 1137 setmousespeed(1200, rodent.baudrate, rodentcflags[rodent.rtype]); 1138 /* select MM series data format */ 1139 write(rodent.mfd, "S", 1); 1140 setmousespeed(rodent.baudrate, rodent.baudrate, 1141 rodentcflags[MOUSE_PROTO_MM]); 1142 /* select report rate/frequency */ 1143 if (rodent.rate <= 0) write(rodent.mfd, "O", 1); 1144 else if (rodent.rate <= 15) write(rodent.mfd, "J", 1); 1145 else if (rodent.rate <= 27) write(rodent.mfd, "K", 1); 1146 else if (rodent.rate <= 42) write(rodent.mfd, "L", 1); 1147 else if (rodent.rate <= 60) write(rodent.mfd, "R", 1); 1148 else if (rodent.rate <= 85) write(rodent.mfd, "M", 1); 1149 else if (rodent.rate <= 125) write(rodent.mfd, "Q", 1); 1150 else write(rodent.mfd, "N", 1); 1151 break; 1152 1153 case MOUSE_PROTO_LOGIMOUSEMAN: 1154 /* The command must always be sent at 1200 baud */ 1155 setmousespeed(1200, 1200, rodentcflags[rodent.rtype]); 1156 write(rodent.mfd, "*X", 2); 1157 setmousespeed(1200, rodent.baudrate, rodentcflags[rodent.rtype]); 1158 break; 1159 1160 case MOUSE_PROTO_HITTAB: 1161 setmousespeed(1200, rodent.baudrate, rodentcflags[rodent.rtype]); 1162 1163 /* 1164 * Initialize Hitachi PUMA Plus - Model 1212E to desired settings. 1165 * The tablet must be configured to be in MM mode, NO parity, 1166 * Binary Format. xf86Info.sampleRate controls the sensativity 1167 * of the tablet. We only use this tablet for it's 4-button puck 1168 * so we don't run in "Absolute Mode" 1169 */ 1170 write(rodent.mfd, "z8", 2); /* Set Parity = "NONE" */ 1171 usleep(50000); 1172 write(rodent.mfd, "zb", 2); /* Set Format = "Binary" */ 1173 usleep(50000); 1174 write(rodent.mfd, "@", 1); /* Set Report Mode = "Stream" */ 1175 usleep(50000); 1176 write(rodent.mfd, "R", 1); /* Set Output Rate = "45 rps" */ 1177 usleep(50000); 1178 write(rodent.mfd, "I\x20", 2); /* Set Incrememtal Mode "20" */ 1179 usleep(50000); 1180 write(rodent.mfd, "E", 1); /* Set Data Type = "Relative */ 1181 usleep(50000); 1182 1183 /* Resolution is in 'lines per inch' on the Hitachi tablet */ 1184 if (rodent.resolution == MOUSE_RES_LOW) c = 'g'; 1185 else if (rodent.resolution == MOUSE_RES_MEDIUMLOW) c = 'e'; 1186 else if (rodent.resolution == MOUSE_RES_MEDIUMHIGH) c = 'h'; 1187 else if (rodent.resolution == MOUSE_RES_HIGH) c = 'd'; 1188 else if (rodent.resolution <= 40) c = 'g'; 1189 else if (rodent.resolution <= 100) c = 'd'; 1190 else if (rodent.resolution <= 200) c = 'e'; 1191 else if (rodent.resolution <= 500) c = 'h'; 1192 else if (rodent.resolution <= 1000) c = 'j'; 1193 else c = 'd'; 1194 write(rodent.mfd, &c, 1); 1195 usleep(50000); 1196 1197 write(rodent.mfd, "\021", 1); /* Resume DATA output */ 1198 break; 1199 1200 case MOUSE_PROTO_THINK: 1201 setmousespeed(1200, rodent.baudrate, rodentcflags[rodent.rtype]); 1202 /* the PnP ID string may be sent again, discard it */ 1203 usleep(200000); 1204 i = FREAD; 1205 ioctl(rodent.mfd, TIOCFLUSH, &i); 1206 /* send the command to initialize the beast */ 1207 for (s = "E5E5"; *s; ++s) { 1208 write(rodent.mfd, s, 1); 1209 FD_ZERO(&fds); 1210 FD_SET(rodent.mfd, &fds); 1211 if (select(FD_SETSIZE, &fds, NULL, NULL, NULL) <= 0) 1212 break; 1213 read(rodent.mfd, &c, 1); 1214 debug("%c", c); 1215 if (c != *s) 1216 break; 1217 } 1218 break; 1219 1220 case MOUSE_PROTO_JOGDIAL: 1221 break; 1222 case MOUSE_PROTO_MSC: 1223 setmousespeed(1200, rodent.baudrate, rodentcflags[rodent.rtype]); 1224 if (rodent.flags & ClearDTR) { 1225 i = TIOCM_DTR; 1226 ioctl(rodent.mfd, TIOCMBIC, &i); 1227 } 1228 if (rodent.flags & ClearRTS) { 1229 i = TIOCM_RTS; 1230 ioctl(rodent.mfd, TIOCMBIC, &i); 1231 } 1232 break; 1233 1234 case MOUSE_PROTO_SYSMOUSE: 1235 if (rodent.hw.iftype == MOUSE_IF_SYSMOUSE) 1236 setmousespeed(1200, rodent.baudrate, rodentcflags[rodent.rtype]); 1237 /* FALLTHROUGH */ 1238 1239 case MOUSE_PROTO_PS2: 1240 if (rodent.rate >= 0) 1241 rodent.mode.rate = rodent.rate; 1242 if (rodent.resolution != MOUSE_RES_UNKNOWN) 1243 rodent.mode.resolution = rodent.resolution; 1244 ioctl(rodent.mfd, MOUSE_SETMODE, &rodent.mode); 1245 break; 1246 1247 case MOUSE_PROTO_X10MOUSEREM: 1248 mremote_serversetup(); 1249 setmousespeed(1200, rodent.baudrate, rodentcflags[rodent.rtype]); 1250 break; 1251 1252 1253 case MOUSE_PROTO_VERSAPAD: 1254 tcsendbreak(rodent.mfd, 0); /* send break for 400 msec */ 1255 i = FREAD; 1256 ioctl(rodent.mfd, TIOCFLUSH, &i); 1257 for (i = 0; i < 7; ++i) { 1258 FD_ZERO(&fds); 1259 FD_SET(rodent.mfd, &fds); 1260 if (select(FD_SETSIZE, &fds, NULL, NULL, NULL) <= 0) 1261 break; 1262 read(rodent.mfd, &c, 1); 1263 buf[i] = c; 1264 } 1265 debug("%s\n", buf); 1266 if ((buf[0] != 'V') || (buf[1] != 'P')|| (buf[7] != '\r')) 1267 break; 1268 setmousespeed(9600, rodent.baudrate, rodentcflags[rodent.rtype]); 1269 tcsendbreak(rodent.mfd, 0); /* send break for 400 msec again */ 1270 for (i = 0; i < 7; ++i) { 1271 FD_ZERO(&fds); 1272 FD_SET(rodent.mfd, &fds); 1273 if (select(FD_SETSIZE, &fds, NULL, NULL, NULL) <= 0) 1274 break; 1275 read(rodent.mfd, &c, 1); 1276 debug("%c", c); 1277 if (c != buf[i]) 1278 break; 1279 } 1280 i = FREAD; 1281 ioctl(rodent.mfd, TIOCFLUSH, &i); 1282 break; 1283 1284 default: 1285 setmousespeed(1200, rodent.baudrate, rodentcflags[rodent.rtype]); 1286 break; 1287 } 1288 } 1289 1290 static int 1291 r_protocol(u_char rBuf, mousestatus_t *act) 1292 { 1293 /* MOUSE_MSS_BUTTON?DOWN -> MOUSE_BUTTON?DOWN */ 1294 static int butmapmss[4] = { /* Microsoft, MouseMan, GlidePoint, 1295 IntelliMouse, Thinking Mouse */ 1296 0, 1297 MOUSE_BUTTON3DOWN, 1298 MOUSE_BUTTON1DOWN, 1299 MOUSE_BUTTON1DOWN | MOUSE_BUTTON3DOWN, 1300 }; 1301 static int butmapmss2[4] = { /* Microsoft, MouseMan, GlidePoint, 1302 Thinking Mouse */ 1303 0, 1304 MOUSE_BUTTON4DOWN, 1305 MOUSE_BUTTON2DOWN, 1306 MOUSE_BUTTON2DOWN | MOUSE_BUTTON4DOWN, 1307 }; 1308 /* MOUSE_INTELLI_BUTTON?DOWN -> MOUSE_BUTTON?DOWN */ 1309 static int butmapintelli[4] = { /* IntelliMouse, NetMouse, Mie Mouse, 1310 MouseMan+ */ 1311 0, 1312 MOUSE_BUTTON2DOWN, 1313 MOUSE_BUTTON4DOWN, 1314 MOUSE_BUTTON2DOWN | MOUSE_BUTTON4DOWN, 1315 }; 1316 /* MOUSE_MSC_BUTTON?UP -> MOUSE_BUTTON?DOWN */ 1317 static int butmapmsc[8] = { /* MouseSystems, MMSeries, Logitech, 1318 Bus, sysmouse */ 1319 0, 1320 MOUSE_BUTTON3DOWN, 1321 MOUSE_BUTTON2DOWN, 1322 MOUSE_BUTTON2DOWN | MOUSE_BUTTON3DOWN, 1323 MOUSE_BUTTON1DOWN, 1324 MOUSE_BUTTON1DOWN | MOUSE_BUTTON3DOWN, 1325 MOUSE_BUTTON1DOWN | MOUSE_BUTTON2DOWN, 1326 MOUSE_BUTTON1DOWN | MOUSE_BUTTON2DOWN | MOUSE_BUTTON3DOWN 1327 }; 1328 /* MOUSE_PS2_BUTTON?DOWN -> MOUSE_BUTTON?DOWN */ 1329 static int butmapps2[8] = { /* PS/2 */ 1330 0, 1331 MOUSE_BUTTON1DOWN, 1332 MOUSE_BUTTON3DOWN, 1333 MOUSE_BUTTON1DOWN | MOUSE_BUTTON3DOWN, 1334 MOUSE_BUTTON2DOWN, 1335 MOUSE_BUTTON1DOWN | MOUSE_BUTTON2DOWN, 1336 MOUSE_BUTTON2DOWN | MOUSE_BUTTON3DOWN, 1337 MOUSE_BUTTON1DOWN | MOUSE_BUTTON2DOWN | MOUSE_BUTTON3DOWN 1338 }; 1339 /* for Hitachi tablet */ 1340 static int butmaphit[8] = { /* MM HitTablet */ 1341 0, 1342 MOUSE_BUTTON3DOWN, 1343 MOUSE_BUTTON2DOWN, 1344 MOUSE_BUTTON1DOWN, 1345 MOUSE_BUTTON4DOWN, 1346 MOUSE_BUTTON5DOWN, 1347 MOUSE_BUTTON6DOWN, 1348 MOUSE_BUTTON7DOWN, 1349 }; 1350 /* for serial VersaPad */ 1351 static int butmapversa[8] = { /* VersaPad */ 1352 0, 1353 0, 1354 MOUSE_BUTTON3DOWN, 1355 MOUSE_BUTTON3DOWN, 1356 MOUSE_BUTTON1DOWN, 1357 MOUSE_BUTTON1DOWN, 1358 MOUSE_BUTTON1DOWN | MOUSE_BUTTON3DOWN, 1359 MOUSE_BUTTON1DOWN | MOUSE_BUTTON3DOWN, 1360 }; 1361 /* for PS/2 VersaPad */ 1362 static int butmapversaps2[8] = { /* VersaPad */ 1363 0, 1364 MOUSE_BUTTON3DOWN, 1365 0, 1366 MOUSE_BUTTON3DOWN, 1367 MOUSE_BUTTON1DOWN, 1368 MOUSE_BUTTON1DOWN | MOUSE_BUTTON3DOWN, 1369 MOUSE_BUTTON1DOWN, 1370 MOUSE_BUTTON1DOWN | MOUSE_BUTTON3DOWN, 1371 }; 1372 static int pBufP = 0; 1373 static unsigned char pBuf[8]; 1374 static int prev_x, prev_y; 1375 static bool on = false; 1376 int x, y; 1377 1378 debug("received char 0x%x",(int)rBuf); 1379 if (rodent.rtype == MOUSE_PROTO_KIDSPAD) 1380 return (kidspad(rBuf, act)); 1381 if (rodent.rtype == MOUSE_PROTO_GTCO_DIGIPAD) 1382 return (gtco_digipad(rBuf, act)); 1383 1384 /* 1385 * Hack for resyncing: We check here for a package that is: 1386 * a) illegal (detected by wrong data-package header) 1387 * b) invalid (0x80 == -128 and that might be wrong for MouseSystems) 1388 * c) bad header-package 1389 * 1390 * NOTE: b) is a voilation of the MouseSystems-Protocol, since values of 1391 * -128 are allowed, but since they are very seldom we can easily 1392 * use them as package-header with no button pressed. 1393 * NOTE/2: On a PS/2 mouse any byte is valid as a data byte. Furthermore, 1394 * 0x80 is not valid as a header byte. For a PS/2 mouse we skip 1395 * checking data bytes. 1396 * For resyncing a PS/2 mouse we require the two most significant 1397 * bits in the header byte to be 0. These are the overflow bits, 1398 * and in case of an overflow we actually lose sync. Overflows 1399 * are very rare, however, and we quickly gain sync again after 1400 * an overflow condition. This is the best we can do. (Actually, 1401 * we could use bit 0x08 in the header byte for resyncing, since 1402 * that bit is supposed to be always on, but nobody told 1403 * Microsoft...) 1404 */ 1405 1406 if (pBufP != 0 && rodent.rtype != MOUSE_PROTO_PS2 && 1407 ((rBuf & cur_proto[2]) != cur_proto[3] || rBuf == 0x80)) 1408 { 1409 pBufP = 0; /* skip package */ 1410 } 1411 1412 if (pBufP == 0 && (rBuf & cur_proto[0]) != cur_proto[1]) 1413 return (0); 1414 1415 /* is there an extra data byte? */ 1416 if (pBufP >= cur_proto[4] && (rBuf & cur_proto[0]) != cur_proto[1]) 1417 { 1418 /* 1419 * Hack for Logitech MouseMan Mouse - Middle button 1420 * 1421 * Unfortunately this mouse has variable length packets: the standard 1422 * Microsoft 3 byte packet plus an optional 4th byte whenever the 1423 * middle button status changes. 1424 * 1425 * We have already processed the standard packet with the movement 1426 * and button info. Now post an event message with the old status 1427 * of the left and right buttons and the updated middle button. 1428 */ 1429 1430 /* 1431 * Even worse, different MouseMen and TrackMen differ in the 4th 1432 * byte: some will send 0x00/0x20, others 0x01/0x21, or even 1433 * 0x02/0x22, so I have to strip off the lower bits. 1434 * 1435 * [JCH-96/01/21] 1436 * HACK for ALPS "fourth button". (It's bit 0x10 of the "fourth byte" 1437 * and it is activated by tapping the glidepad with the finger! 8^) 1438 * We map it to bit bit3, and the reverse map in xf86Events just has 1439 * to be extended so that it is identified as Button 4. The lower 1440 * half of the reverse-map may remain unchanged. 1441 */ 1442 1443 /* 1444 * [KY-97/08/03] 1445 * Receive the fourth byte only when preceding three bytes have 1446 * been detected (pBufP >= cur_proto[4]). In the previous 1447 * versions, the test was pBufP == 0; thus, we may have mistakingly 1448 * received a byte even if we didn't see anything preceding 1449 * the byte. 1450 */ 1451 1452 if ((rBuf & cur_proto[5]) != cur_proto[6]) { 1453 pBufP = 0; 1454 return (0); 1455 } 1456 1457 switch (rodent.rtype) { 1458 #if notyet 1459 case MOUSE_PROTO_MARIQUA: 1460 /* 1461 * This mouse has 16! buttons in addition to the standard 1462 * three of them. They return 0x10 though 0x1f in the 1463 * so-called `ten key' mode and 0x30 though 0x3f in the 1464 * `function key' mode. As there are only 31 bits for 1465 * button state (including the standard three), we ignore 1466 * the bit 0x20 and don't distinguish the two modes. 1467 */ 1468 act->dx = act->dy = act->dz = 0; 1469 act->obutton = act->button; 1470 rBuf &= 0x1f; 1471 act->button = (1 << (rBuf - 13)) 1472 | (act->obutton & (MOUSE_BUTTON1DOWN | MOUSE_BUTTON3DOWN)); 1473 /* 1474 * FIXME: this is a button "down" event. There needs to be 1475 * a corresponding button "up" event... XXX 1476 */ 1477 break; 1478 #endif /* notyet */ 1479 case MOUSE_PROTO_JOGDIAL: 1480 break; 1481 1482 /* 1483 * IntelliMouse, NetMouse (including NetMouse Pro) and Mie Mouse 1484 * always send the fourth byte, whereas the fourth byte is 1485 * optional for GlidePoint and ThinkingMouse. The fourth byte 1486 * is also optional for MouseMan+ and FirstMouse+ in their 1487 * native mode. It is always sent if they are in the IntelliMouse 1488 * compatible mode. 1489 */ 1490 case MOUSE_PROTO_INTELLI: /* IntelliMouse, NetMouse, Mie Mouse, 1491 MouseMan+ */ 1492 act->dx = act->dy = 0; 1493 act->dz = (rBuf & 0x08) ? (rBuf & 0x0f) - 16 : (rBuf & 0x0f); 1494 if ((act->dz >= 7) || (act->dz <= -7)) 1495 act->dz = 0; 1496 act->obutton = act->button; 1497 act->button = butmapintelli[(rBuf & MOUSE_MSS_BUTTONS) >> 4] 1498 | (act->obutton & (MOUSE_BUTTON1DOWN | MOUSE_BUTTON3DOWN)); 1499 break; 1500 1501 default: 1502 act->dx = act->dy = act->dz = 0; 1503 act->obutton = act->button; 1504 act->button = butmapmss2[(rBuf & MOUSE_MSS_BUTTONS) >> 4] 1505 | (act->obutton & (MOUSE_BUTTON1DOWN | MOUSE_BUTTON3DOWN)); 1506 break; 1507 } 1508 1509 act->flags = ((act->dx || act->dy || act->dz) ? MOUSE_POSCHANGED : 0) 1510 | (act->obutton ^ act->button); 1511 pBufP = 0; 1512 return (act->flags); 1513 } 1514 1515 if (pBufP >= cur_proto[4]) 1516 pBufP = 0; 1517 pBuf[pBufP++] = rBuf; 1518 if (pBufP != cur_proto[4]) 1519 return (0); 1520 1521 /* 1522 * assembly full package 1523 */ 1524 1525 debug("assembled full packet (len %d) %x,%x,%x,%x,%x,%x,%x,%x", 1526 cur_proto[4], 1527 pBuf[0], pBuf[1], pBuf[2], pBuf[3], 1528 pBuf[4], pBuf[5], pBuf[6], pBuf[7]); 1529 1530 act->dz = 0; 1531 act->obutton = act->button; 1532 switch (rodent.rtype) 1533 { 1534 case MOUSE_PROTO_MS: /* Microsoft */ 1535 case MOUSE_PROTO_LOGIMOUSEMAN: /* MouseMan/TrackMan */ 1536 case MOUSE_PROTO_X10MOUSEREM: /* X10 MouseRemote */ 1537 act->button = act->obutton & MOUSE_BUTTON4DOWN; 1538 if (rodent.flags & ChordMiddle) 1539 act->button |= ((pBuf[0] & MOUSE_MSS_BUTTONS) == MOUSE_MSS_BUTTONS) 1540 ? MOUSE_BUTTON2DOWN 1541 : butmapmss[(pBuf[0] & MOUSE_MSS_BUTTONS) >> 4]; 1542 else 1543 act->button |= (act->obutton & MOUSE_BUTTON2DOWN) 1544 | butmapmss[(pBuf[0] & MOUSE_MSS_BUTTONS) >> 4]; 1545 1546 /* Send X10 btn events to remote client (ensure -128-+127 range) */ 1547 if ((rodent.rtype == MOUSE_PROTO_X10MOUSEREM) && 1548 ((pBuf[0] & 0xFC) == 0x44) && (pBuf[2] == 0x3F)) { 1549 if (rodent.mremcfd >= 0) { 1550 unsigned char key = (signed char)(((pBuf[0] & 0x03) << 6) | 1551 (pBuf[1] & 0x3F)); 1552 write(rodent.mremcfd, &key, 1); 1553 } 1554 return (0); 1555 } 1556 1557 act->dx = (signed char)(((pBuf[0] & 0x03) << 6) | (pBuf[1] & 0x3F)); 1558 act->dy = (signed char)(((pBuf[0] & 0x0C) << 4) | (pBuf[2] & 0x3F)); 1559 break; 1560 1561 case MOUSE_PROTO_GLIDEPOINT: /* GlidePoint */ 1562 case MOUSE_PROTO_THINK: /* ThinkingMouse */ 1563 case MOUSE_PROTO_INTELLI: /* IntelliMouse, NetMouse, Mie Mouse, 1564 MouseMan+ */ 1565 act->button = (act->obutton & (MOUSE_BUTTON2DOWN | MOUSE_BUTTON4DOWN)) 1566 | butmapmss[(pBuf[0] & MOUSE_MSS_BUTTONS) >> 4]; 1567 act->dx = (signed char)(((pBuf[0] & 0x03) << 6) | (pBuf[1] & 0x3F)); 1568 act->dy = (signed char)(((pBuf[0] & 0x0C) << 4) | (pBuf[2] & 0x3F)); 1569 break; 1570 1571 case MOUSE_PROTO_MSC: /* MouseSystems Corp */ 1572 #if notyet 1573 case MOUSE_PROTO_MARIQUA: /* Mariqua */ 1574 #endif 1575 act->button = butmapmsc[(~pBuf[0]) & MOUSE_MSC_BUTTONS]; 1576 act->dx = (signed char)(pBuf[1]) + (signed char)(pBuf[3]); 1577 act->dy = - ((signed char)(pBuf[2]) + (signed char)(pBuf[4])); 1578 break; 1579 1580 case MOUSE_PROTO_JOGDIAL: /* JogDial */ 1581 if (rBuf == 0x6c) 1582 act->dz = -1; 1583 if (rBuf == 0x72) 1584 act->dz = 1; 1585 if (rBuf == 0x64) 1586 act->button = MOUSE_BUTTON1DOWN; 1587 if (rBuf == 0x75) 1588 act->button = 0; 1589 break; 1590 1591 case MOUSE_PROTO_HITTAB: /* MM HitTablet */ 1592 act->button = butmaphit[pBuf[0] & 0x07]; 1593 act->dx = (pBuf[0] & MOUSE_MM_XPOSITIVE) ? pBuf[1] : - pBuf[1]; 1594 act->dy = (pBuf[0] & MOUSE_MM_YPOSITIVE) ? - pBuf[2] : pBuf[2]; 1595 break; 1596 1597 case MOUSE_PROTO_MM: /* MM Series */ 1598 case MOUSE_PROTO_LOGI: /* Logitech Mice */ 1599 act->button = butmapmsc[pBuf[0] & MOUSE_MSC_BUTTONS]; 1600 act->dx = (pBuf[0] & MOUSE_MM_XPOSITIVE) ? pBuf[1] : - pBuf[1]; 1601 act->dy = (pBuf[0] & MOUSE_MM_YPOSITIVE) ? - pBuf[2] : pBuf[2]; 1602 break; 1603 1604 case MOUSE_PROTO_VERSAPAD: /* VersaPad */ 1605 act->button = butmapversa[(pBuf[0] & MOUSE_VERSA_BUTTONS) >> 3]; 1606 act->button |= (pBuf[0] & MOUSE_VERSA_TAP) ? MOUSE_BUTTON4DOWN : 0; 1607 act->dx = act->dy = 0; 1608 if (!(pBuf[0] & MOUSE_VERSA_IN_USE)) { 1609 on = false; 1610 break; 1611 } 1612 x = (pBuf[2] << 6) | pBuf[1]; 1613 if (x & 0x800) 1614 x -= 0x1000; 1615 y = (pBuf[4] << 6) | pBuf[3]; 1616 if (y & 0x800) 1617 y -= 0x1000; 1618 if (on) { 1619 act->dx = prev_x - x; 1620 act->dy = prev_y - y; 1621 } else { 1622 on = true; 1623 } 1624 prev_x = x; 1625 prev_y = y; 1626 break; 1627 1628 case MOUSE_PROTO_PS2: /* PS/2 */ 1629 act->button = butmapps2[pBuf[0] & MOUSE_PS2_BUTTONS]; 1630 act->dx = (pBuf[0] & MOUSE_PS2_XNEG) ? pBuf[1] - 256 : pBuf[1]; 1631 act->dy = (pBuf[0] & MOUSE_PS2_YNEG) ? -(pBuf[2] - 256) : -pBuf[2]; 1632 /* 1633 * Moused usually operates the psm driver at the operation level 1 1634 * which sends mouse data in MOUSE_PROTO_SYSMOUSE protocol. 1635 * The following code takes effect only when the user explicitly 1636 * requets the level 2 at which wheel movement and additional button 1637 * actions are encoded in model-dependent formats. At the level 0 1638 * the following code is no-op because the psm driver says the model 1639 * is MOUSE_MODEL_GENERIC. 1640 */ 1641 switch (rodent.hw.model) { 1642 case MOUSE_MODEL_EXPLORER: 1643 /* wheel and additional button data is in the fourth byte */ 1644 act->dz = (pBuf[3] & MOUSE_EXPLORER_ZNEG) 1645 ? (pBuf[3] & 0x0f) - 16 : (pBuf[3] & 0x0f); 1646 act->button |= (pBuf[3] & MOUSE_EXPLORER_BUTTON4DOWN) 1647 ? MOUSE_BUTTON4DOWN : 0; 1648 act->button |= (pBuf[3] & MOUSE_EXPLORER_BUTTON5DOWN) 1649 ? MOUSE_BUTTON5DOWN : 0; 1650 break; 1651 case MOUSE_MODEL_INTELLI: 1652 case MOUSE_MODEL_NET: 1653 /* wheel data is in the fourth byte */ 1654 act->dz = (signed char)pBuf[3]; 1655 if ((act->dz >= 7) || (act->dz <= -7)) 1656 act->dz = 0; 1657 /* some compatible mice may have additional buttons */ 1658 act->button |= (pBuf[0] & MOUSE_PS2INTELLI_BUTTON4DOWN) 1659 ? MOUSE_BUTTON4DOWN : 0; 1660 act->button |= (pBuf[0] & MOUSE_PS2INTELLI_BUTTON5DOWN) 1661 ? MOUSE_BUTTON5DOWN : 0; 1662 break; 1663 case MOUSE_MODEL_MOUSEMANPLUS: 1664 if (((pBuf[0] & MOUSE_PS2PLUS_SYNCMASK) == MOUSE_PS2PLUS_SYNC) 1665 && (abs(act->dx) > 191) 1666 && MOUSE_PS2PLUS_CHECKBITS(pBuf)) { 1667 /* the extended data packet encodes button and wheel events */ 1668 switch (MOUSE_PS2PLUS_PACKET_TYPE(pBuf)) { 1669 case 1: 1670 /* wheel data packet */ 1671 act->dx = act->dy = 0; 1672 if (pBuf[2] & 0x80) { 1673 /* horizontal roller count - ignore it XXX*/ 1674 } else { 1675 /* vertical roller count */ 1676 act->dz = (pBuf[2] & MOUSE_PS2PLUS_ZNEG) 1677 ? (pBuf[2] & 0x0f) - 16 : (pBuf[2] & 0x0f); 1678 } 1679 act->button |= (pBuf[2] & MOUSE_PS2PLUS_BUTTON4DOWN) 1680 ? MOUSE_BUTTON4DOWN : 0; 1681 act->button |= (pBuf[2] & MOUSE_PS2PLUS_BUTTON5DOWN) 1682 ? MOUSE_BUTTON5DOWN : 0; 1683 break; 1684 case 2: 1685 /* this packet type is reserved by Logitech */ 1686 /* 1687 * IBM ScrollPoint Mouse uses this packet type to 1688 * encode both vertical and horizontal scroll movement. 1689 */ 1690 act->dx = act->dy = 0; 1691 /* horizontal roller count */ 1692 if (pBuf[2] & 0x0f) 1693 act->dz = (pBuf[2] & MOUSE_SPOINT_WNEG) ? -2 : 2; 1694 /* vertical roller count */ 1695 if (pBuf[2] & 0xf0) 1696 act->dz = (pBuf[2] & MOUSE_SPOINT_ZNEG) ? -1 : 1; 1697 #if 0 1698 /* vertical roller count */ 1699 act->dz = (pBuf[2] & MOUSE_SPOINT_ZNEG) 1700 ? ((pBuf[2] >> 4) & 0x0f) - 16 1701 : ((pBuf[2] >> 4) & 0x0f); 1702 /* horizontal roller count */ 1703 act->dw = (pBuf[2] & MOUSE_SPOINT_WNEG) 1704 ? (pBuf[2] & 0x0f) - 16 : (pBuf[2] & 0x0f); 1705 #endif 1706 break; 1707 case 0: 1708 /* device type packet - shouldn't happen */ 1709 /* FALLTHROUGH */ 1710 default: 1711 act->dx = act->dy = 0; 1712 act->button = act->obutton; 1713 debug("unknown PS2++ packet type %d: 0x%02x 0x%02x 0x%02x\n", 1714 MOUSE_PS2PLUS_PACKET_TYPE(pBuf), 1715 pBuf[0], pBuf[1], pBuf[2]); 1716 break; 1717 } 1718 } else { 1719 /* preserve button states */ 1720 act->button |= act->obutton & MOUSE_EXTBUTTONS; 1721 } 1722 break; 1723 case MOUSE_MODEL_GLIDEPOINT: 1724 /* `tapping' action */ 1725 act->button |= ((pBuf[0] & MOUSE_PS2_TAP)) ? 0 : MOUSE_BUTTON4DOWN; 1726 break; 1727 case MOUSE_MODEL_NETSCROLL: 1728 /* three additional bytes encode buttons and wheel events */ 1729 act->button |= (pBuf[3] & MOUSE_PS2_BUTTON3DOWN) 1730 ? MOUSE_BUTTON4DOWN : 0; 1731 act->button |= (pBuf[3] & MOUSE_PS2_BUTTON1DOWN) 1732 ? MOUSE_BUTTON5DOWN : 0; 1733 act->dz = (pBuf[3] & MOUSE_PS2_XNEG) ? pBuf[4] - 256 : pBuf[4]; 1734 break; 1735 case MOUSE_MODEL_THINK: 1736 /* the fourth button state in the first byte */ 1737 act->button |= (pBuf[0] & MOUSE_PS2_TAP) ? MOUSE_BUTTON4DOWN : 0; 1738 break; 1739 case MOUSE_MODEL_VERSAPAD: 1740 act->button = butmapversaps2[pBuf[0] & MOUSE_PS2VERSA_BUTTONS]; 1741 act->button |= 1742 (pBuf[0] & MOUSE_PS2VERSA_TAP) ? MOUSE_BUTTON4DOWN : 0; 1743 act->dx = act->dy = 0; 1744 if (!(pBuf[0] & MOUSE_PS2VERSA_IN_USE)) { 1745 on = false; 1746 break; 1747 } 1748 x = ((pBuf[4] << 8) & 0xf00) | pBuf[1]; 1749 if (x & 0x800) 1750 x -= 0x1000; 1751 y = ((pBuf[4] << 4) & 0xf00) | pBuf[2]; 1752 if (y & 0x800) 1753 y -= 0x1000; 1754 if (on) { 1755 act->dx = prev_x - x; 1756 act->dy = prev_y - y; 1757 } else { 1758 on = true; 1759 } 1760 prev_x = x; 1761 prev_y = y; 1762 break; 1763 case MOUSE_MODEL_4D: 1764 act->dx = (pBuf[1] & 0x80) ? pBuf[1] - 256 : pBuf[1]; 1765 act->dy = (pBuf[2] & 0x80) ? -(pBuf[2] - 256) : -pBuf[2]; 1766 switch (pBuf[0] & MOUSE_4D_WHEELBITS) { 1767 case 0x10: 1768 act->dz = 1; 1769 break; 1770 case 0x30: 1771 act->dz = -1; 1772 break; 1773 case 0x40: /* 2nd wheel rolling right XXX */ 1774 act->dz = 2; 1775 break; 1776 case 0xc0: /* 2nd wheel rolling left XXX */ 1777 act->dz = -2; 1778 break; 1779 } 1780 break; 1781 case MOUSE_MODEL_4DPLUS: 1782 if ((act->dx < 16 - 256) && (act->dy > 256 - 16)) { 1783 act->dx = act->dy = 0; 1784 if (pBuf[2] & MOUSE_4DPLUS_BUTTON4DOWN) 1785 act->button |= MOUSE_BUTTON4DOWN; 1786 act->dz = (pBuf[2] & MOUSE_4DPLUS_ZNEG) 1787 ? ((pBuf[2] & 0x07) - 8) : (pBuf[2] & 0x07); 1788 } else { 1789 /* preserve previous button states */ 1790 act->button |= act->obutton & MOUSE_EXTBUTTONS; 1791 } 1792 break; 1793 case MOUSE_MODEL_GENERIC: 1794 default: 1795 break; 1796 } 1797 break; 1798 1799 case MOUSE_PROTO_SYSMOUSE: /* sysmouse */ 1800 act->button = butmapmsc[(~pBuf[0]) & MOUSE_SYS_STDBUTTONS]; 1801 act->dx = (signed char)(pBuf[1]) + (signed char)(pBuf[3]); 1802 act->dy = - ((signed char)(pBuf[2]) + (signed char)(pBuf[4])); 1803 if (rodent.level == 1) { 1804 act->dz = ((signed char)(pBuf[5] << 1) + (signed char)(pBuf[6] << 1)) >> 1; 1805 act->button |= ((~pBuf[7] & MOUSE_SYS_EXTBUTTONS) << 3); 1806 } 1807 break; 1808 1809 default: 1810 return (0); 1811 } 1812 /* 1813 * We don't reset pBufP here yet, as there may be an additional data 1814 * byte in some protocols. See above. 1815 */ 1816 1817 /* has something changed? */ 1818 act->flags = ((act->dx || act->dy || act->dz) ? MOUSE_POSCHANGED : 0) 1819 | (act->obutton ^ act->button); 1820 1821 return (act->flags); 1822 } 1823 1824 /* $XConsortium: posix_tty.c,v 1.3 95/01/05 20:42:55 kaleb Exp $ */ 1825 /* $XFree86: xc/programs/Xserver/hw/xfree86/os-support/shared/posix_tty.c,v 3.4 1995/01/28 17:05:03 dawes Exp $ */ 1826 /* 1827 * Copyright 1993 by David Dawes <dawes@physics.su.oz.au> 1828 * 1829 * Permission to use, copy, modify, distribute, and sell this software and its 1830 * documentation for any purpose is hereby granted without fee, provided that 1831 * the above copyright notice appear in all copies and that both that 1832 * copyright notice and this permission notice appear in supporting 1833 * documentation, and that the name of David Dawes 1834 * not be used in advertising or publicity pertaining to distribution of 1835 * the software without specific, written prior permission. 1836 * David Dawes makes no representations about the suitability of this 1837 * software for any purpose. It is provided "as is" without express or 1838 * implied warranty. 1839 * 1840 * DAVID DAWES DISCLAIMS ALL WARRANTIES WITH REGARD TO 1841 * THIS SOFTWARE, INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND 1842 * FITNESS, IN NO EVENT SHALL DAVID DAWES BE LIABLE FOR 1843 * ANY SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER 1844 * RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF 1845 * CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN 1846 * CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. 1847 * 1848 */ 1849 1850 1851 static void 1852 setmousespeed(int old, int new, unsigned cflag) 1853 { 1854 struct termios tty; 1855 const char *c; 1856 1857 if (tcgetattr(rodent.mfd, &tty) < 0) 1858 { 1859 logwarn("unable to get status of mouse fd"); 1860 return; 1861 } 1862 1863 tty.c_iflag = IGNBRK | IGNPAR; 1864 tty.c_oflag = 0; 1865 tty.c_lflag = 0; 1866 tty.c_cflag = (tcflag_t)cflag; 1867 tty.c_cc[VTIME] = 0; 1868 tty.c_cc[VMIN] = 1; 1869 1870 switch (old) 1871 { 1872 case 9600: 1873 cfsetispeed(&tty, B9600); 1874 cfsetospeed(&tty, B9600); 1875 break; 1876 case 4800: 1877 cfsetispeed(&tty, B4800); 1878 cfsetospeed(&tty, B4800); 1879 break; 1880 case 2400: 1881 cfsetispeed(&tty, B2400); 1882 cfsetospeed(&tty, B2400); 1883 break; 1884 case 1200: 1885 default: 1886 cfsetispeed(&tty, B1200); 1887 cfsetospeed(&tty, B1200); 1888 } 1889 1890 if (tcsetattr(rodent.mfd, TCSADRAIN, &tty) < 0) 1891 { 1892 logwarn("unable to set status of mouse fd"); 1893 return; 1894 } 1895 1896 switch (new) 1897 { 1898 case 9600: 1899 c = "*q"; 1900 cfsetispeed(&tty, B9600); 1901 cfsetospeed(&tty, B9600); 1902 break; 1903 case 4800: 1904 c = "*p"; 1905 cfsetispeed(&tty, B4800); 1906 cfsetospeed(&tty, B4800); 1907 break; 1908 case 2400: 1909 c = "*o"; 1910 cfsetispeed(&tty, B2400); 1911 cfsetospeed(&tty, B2400); 1912 break; 1913 case 1200: 1914 default: 1915 c = "*n"; 1916 cfsetispeed(&tty, B1200); 1917 cfsetospeed(&tty, B1200); 1918 } 1919 1920 if (rodent.rtype == MOUSE_PROTO_LOGIMOUSEMAN 1921 || rodent.rtype == MOUSE_PROTO_LOGI) 1922 { 1923 if (write(rodent.mfd, c, 2) != 2) 1924 { 1925 logwarn("unable to write to mouse fd"); 1926 return; 1927 } 1928 } 1929 usleep(100000); 1930 1931 if (tcsetattr(rodent.mfd, TCSADRAIN, &tty) < 0) 1932 logwarn("unable to set status of mouse fd"); 1933 } 1934 1935 /* 1936 * PnP COM device support 1937 * 1938 * It's a simplistic implementation, but it works :-) 1939 * KY, 31/7/97. 1940 */ 1941 1942 /* 1943 * Try to elicit a PnP ID as described in 1944 * Microsoft, Hayes: "Plug and Play External COM Device Specification, 1945 * rev 1.00", 1995. 1946 * 1947 * The routine does not fully implement the COM Enumerator as par Section 1948 * 2.1 of the document. In particular, we don't have idle state in which 1949 * the driver software monitors the com port for dynamic connection or 1950 * removal of a device at the port, because `msconvd' simply quits if no 1951 * device is found. 1952 * 1953 * In addition, as PnP COM device enumeration procedure slightly has 1954 * changed since its first publication, devices which follow earlier 1955 * revisions of the above spec. may fail to respond if the rev 1.0 1956 * procedure is used. XXX 1957 */ 1958 static bool 1959 pnpwakeup1(void) 1960 { 1961 struct timeval timeout; 1962 fd_set fds; 1963 int i; 1964 1965 /* 1966 * This is the procedure described in rev 1.0 of PnP COM device spec. 1967 * Unfortunately, some devices which comform to earlier revisions of 1968 * the spec gets confused and do not return the ID string... 1969 */ 1970 debug("PnP COM device rev 1.0 probe..."); 1971 1972 /* port initialization (2.1.2) */ 1973 ioctl(rodent.mfd, TIOCMGET, &i); 1974 i |= TIOCM_DTR; /* DTR = 1 */ 1975 i &= ~TIOCM_RTS; /* RTS = 0 */ 1976 ioctl(rodent.mfd, TIOCMSET, &i); 1977 usleep(240000); 1978 1979 /* 1980 * The PnP COM device spec. dictates that the mouse must set DSR 1981 * in response to DTR (by hardware or by software) and that if DSR is 1982 * not asserted, the host computer should think that there is no device 1983 * at this serial port. But some mice just don't do that... 1984 */ 1985 ioctl(rodent.mfd, TIOCMGET, &i); 1986 debug("modem status 0%o", i); 1987 if ((i & TIOCM_DSR) == 0) 1988 return (false); 1989 1990 /* port setup, 1st phase (2.1.3) */ 1991 setmousespeed(1200, 1200, (CS7 | CREAD | CLOCAL | HUPCL)); 1992 i = TIOCM_DTR | TIOCM_RTS; /* DTR = 0, RTS = 0 */ 1993 ioctl(rodent.mfd, TIOCMBIC, &i); 1994 usleep(240000); 1995 i = TIOCM_DTR; /* DTR = 1, RTS = 0 */ 1996 ioctl(rodent.mfd, TIOCMBIS, &i); 1997 usleep(240000); 1998 1999 /* wait for response, 1st phase (2.1.4) */ 2000 i = FREAD; 2001 ioctl(rodent.mfd, TIOCFLUSH, &i); 2002 i = TIOCM_RTS; /* DTR = 1, RTS = 1 */ 2003 ioctl(rodent.mfd, TIOCMBIS, &i); 2004 2005 /* try to read something */ 2006 FD_ZERO(&fds); 2007 FD_SET(rodent.mfd, &fds); 2008 timeout.tv_sec = 0; 2009 timeout.tv_usec = 240000; 2010 if (select(FD_SETSIZE, &fds, NULL, NULL, &timeout) > 0) { 2011 debug("pnpwakeup1(): valid response in first phase."); 2012 return (true); 2013 } 2014 2015 /* port setup, 2nd phase (2.1.5) */ 2016 i = TIOCM_DTR | TIOCM_RTS; /* DTR = 0, RTS = 0 */ 2017 ioctl(rodent.mfd, TIOCMBIC, &i); 2018 usleep(240000); 2019 2020 /* wait for respose, 2nd phase (2.1.6) */ 2021 i = FREAD; 2022 ioctl(rodent.mfd, TIOCFLUSH, &i); 2023 i = TIOCM_DTR | TIOCM_RTS; /* DTR = 1, RTS = 1 */ 2024 ioctl(rodent.mfd, TIOCMBIS, &i); 2025 2026 /* try to read something */ 2027 FD_ZERO(&fds); 2028 FD_SET(rodent.mfd, &fds); 2029 timeout.tv_sec = 0; 2030 timeout.tv_usec = 240000; 2031 if (select(FD_SETSIZE, &fds, NULL, NULL, &timeout) > 0) { 2032 debug("pnpwakeup1(): valid response in second phase."); 2033 return (true); 2034 } 2035 2036 return (false); 2037 } 2038 2039 static bool 2040 pnpwakeup2(void) 2041 { 2042 struct timeval timeout; 2043 fd_set fds; 2044 int i; 2045 2046 /* 2047 * This is a simplified procedure; it simply toggles RTS. 2048 */ 2049 debug("alternate probe..."); 2050 2051 ioctl(rodent.mfd, TIOCMGET, &i); 2052 i |= TIOCM_DTR; /* DTR = 1 */ 2053 i &= ~TIOCM_RTS; /* RTS = 0 */ 2054 ioctl(rodent.mfd, TIOCMSET, &i); 2055 usleep(240000); 2056 2057 setmousespeed(1200, 1200, (CS7 | CREAD | CLOCAL | HUPCL)); 2058 2059 /* wait for respose */ 2060 i = FREAD; 2061 ioctl(rodent.mfd, TIOCFLUSH, &i); 2062 i = TIOCM_DTR | TIOCM_RTS; /* DTR = 1, RTS = 1 */ 2063 ioctl(rodent.mfd, TIOCMBIS, &i); 2064 2065 /* try to read something */ 2066 FD_ZERO(&fds); 2067 FD_SET(rodent.mfd, &fds); 2068 timeout.tv_sec = 0; 2069 timeout.tv_usec = 240000; 2070 if (select(FD_SETSIZE, &fds, NULL, NULL, &timeout) > 0) { 2071 debug("pnpwakeup2(): valid response."); 2072 return (true); 2073 } 2074 2075 return (false); 2076 } 2077 2078 static int 2079 pnpgets(char *buf) 2080 { 2081 struct timeval timeout; 2082 fd_set fds; 2083 int begin; 2084 int i; 2085 char c; 2086 2087 if (!pnpwakeup1() && !pnpwakeup2()) { 2088 /* 2089 * According to PnP spec, we should set DTR = 1 and RTS = 0 while 2090 * in idle state. But, `msconvd' shall set DTR = RTS = 1 and proceed, 2091 * assuming there is something at the port even if it didn't 2092 * respond to the PnP enumeration procedure. 2093 */ 2094 i = TIOCM_DTR | TIOCM_RTS; /* DTR = 1, RTS = 1 */ 2095 ioctl(rodent.mfd, TIOCMBIS, &i); 2096 return (0); 2097 } 2098 2099 /* collect PnP COM device ID (2.1.7) */ 2100 begin = -1; 2101 i = 0; 2102 usleep(240000); /* the mouse must send `Begin ID' within 200msec */ 2103 while (read(rodent.mfd, &c, 1) == 1) { 2104 /* we may see "M", or "M3..." before `Begin ID' */ 2105 buf[i++] = c; 2106 if ((c == 0x08) || (c == 0x28)) { /* Begin ID */ 2107 debug("begin-id %02x", c); 2108 begin = i - 1; 2109 break; 2110 } 2111 debug("%c %02x", c, c); 2112 if (i >= 256) 2113 break; 2114 } 2115 if (begin < 0) { 2116 /* we haven't seen `Begin ID' in time... */ 2117 goto connect_idle; 2118 } 2119 2120 ++c; /* make it `End ID' */ 2121 for (;;) { 2122 FD_ZERO(&fds); 2123 FD_SET(rodent.mfd, &fds); 2124 timeout.tv_sec = 0; 2125 timeout.tv_usec = 240000; 2126 if (select(FD_SETSIZE, &fds, NULL, NULL, &timeout) <= 0) 2127 break; 2128 2129 read(rodent.mfd, &buf[i], 1); 2130 if (buf[i++] == c) /* End ID */ 2131 break; 2132 if (i >= 256) 2133 break; 2134 } 2135 if (begin > 0) { 2136 i -= begin; 2137 bcopy(&buf[begin], &buf[0], i); 2138 } 2139 /* string may not be human readable... */ 2140 debug("len:%d, '%-*.*s'", i, i, i, buf); 2141 2142 if (buf[i - 1] == c) 2143 return (i); /* a valid PnP string */ 2144 2145 /* 2146 * According to PnP spec, we should set DTR = 1 and RTS = 0 while 2147 * in idle state. But, `msconvd' shall leave the modem control lines 2148 * as they are. See above. 2149 */ 2150 connect_idle: 2151 2152 /* we may still have something in the buffer */ 2153 return (MAX(i, 0)); 2154 } 2155 2156 static bool 2157 pnpparse(pnpid_t *id, char *buf, int len) 2158 { 2159 char s[3]; 2160 int offset; 2161 int sum = 0; 2162 int i, j; 2163 2164 id->revision = 0; 2165 id->eisaid = NULL; 2166 id->serial = NULL; 2167 id->class = NULL; 2168 id->compat = NULL; 2169 id->description = NULL; 2170 id->neisaid = 0; 2171 id->nserial = 0; 2172 id->nclass = 0; 2173 id->ncompat = 0; 2174 id->ndescription = 0; 2175 2176 if ((buf[0] != 0x28) && (buf[0] != 0x08)) { 2177 /* non-PnP mice */ 2178 switch(buf[0]) { 2179 default: 2180 return (false); 2181 case 'M': /* Microsoft */ 2182 id->eisaid = "PNP0F01"; 2183 break; 2184 case 'H': /* MouseSystems */ 2185 id->eisaid = "PNP0F04"; 2186 break; 2187 } 2188 id->neisaid = strlen(id->eisaid); 2189 id->class = "MOUSE"; 2190 id->nclass = strlen(id->class); 2191 debug("non-PnP mouse '%c'", buf[0]); 2192 return (true); 2193 } 2194 2195 /* PnP mice */ 2196 offset = 0x28 - buf[0]; 2197 2198 /* calculate checksum */ 2199 for (i = 0; i < len - 3; ++i) { 2200 sum += buf[i]; 2201 buf[i] += offset; 2202 } 2203 sum += buf[len - 1]; 2204 for (; i < len; ++i) 2205 buf[i] += offset; 2206 debug("PnP ID string: '%*.*s'", len, len, buf); 2207 2208 /* revision */ 2209 buf[1] -= offset; 2210 buf[2] -= offset; 2211 id->revision = ((buf[1] & 0x3f) << 6) | (buf[2] & 0x3f); 2212 debug("PnP rev %d.%02d", id->revision / 100, id->revision % 100); 2213 2214 /* EISA vendor and product ID */ 2215 id->eisaid = &buf[3]; 2216 id->neisaid = 7; 2217 2218 /* option strings */ 2219 i = 10; 2220 if (buf[i] == '\\') { 2221 /* device serial # */ 2222 for (j = ++i; i < len; ++i) { 2223 if (buf[i] == '\\') 2224 break; 2225 } 2226 if (i >= len) 2227 i -= 3; 2228 if (i - j == 8) { 2229 id->serial = &buf[j]; 2230 id->nserial = 8; 2231 } 2232 } 2233 if (buf[i] == '\\') { 2234 /* PnP class */ 2235 for (j = ++i; i < len; ++i) { 2236 if (buf[i] == '\\') 2237 break; 2238 } 2239 if (i >= len) 2240 i -= 3; 2241 if (i > j + 1) { 2242 id->class = &buf[j]; 2243 id->nclass = i - j; 2244 } 2245 } 2246 if (buf[i] == '\\') { 2247 /* compatible driver */ 2248 for (j = ++i; i < len; ++i) { 2249 if (buf[i] == '\\') 2250 break; 2251 } 2252 /* 2253 * PnP COM spec prior to v0.96 allowed '*' in this field, 2254 * it's not allowed now; just ignore it. 2255 */ 2256 if (buf[j] == '*') 2257 ++j; 2258 if (i >= len) 2259 i -= 3; 2260 if (i > j + 1) { 2261 id->compat = &buf[j]; 2262 id->ncompat = i - j; 2263 } 2264 } 2265 if (buf[i] == '\\') { 2266 /* product description */ 2267 for (j = ++i; i < len; ++i) { 2268 if (buf[i] == ';') 2269 break; 2270 } 2271 if (i >= len) 2272 i -= 3; 2273 if (i > j + 1) { 2274 id->description = &buf[j]; 2275 id->ndescription = i - j; 2276 } 2277 } 2278 2279 /* checksum exists if there are any optional fields */ 2280 if ((id->nserial > 0) || (id->nclass > 0) 2281 || (id->ncompat > 0) || (id->ndescription > 0)) { 2282 debug("PnP checksum: 0x%X", sum); 2283 sprintf(s, "%02X", sum & 0x0ff); 2284 if (strncmp(s, &buf[len - 3], 2) != 0) { 2285 #if 0 2286 /* 2287 * I found some mice do not comply with the PnP COM device 2288 * spec regarding checksum... XXX 2289 */ 2290 logwarnx("PnP checksum error", 0); 2291 return (false); 2292 #endif 2293 } 2294 } 2295 2296 return (true); 2297 } 2298 2299 static symtab_t * 2300 pnpproto(pnpid_t *id) 2301 { 2302 symtab_t *t; 2303 int i, j; 2304 2305 if (id->nclass > 0) 2306 if (strncmp(id->class, "MOUSE", id->nclass) != 0 && 2307 strncmp(id->class, "TABLET", id->nclass) != 0) 2308 /* this is not a mouse! */ 2309 return (NULL); 2310 2311 if (id->neisaid > 0) { 2312 t = gettoken(pnpprod, id->eisaid, id->neisaid); 2313 if (t->val != MOUSE_PROTO_UNKNOWN) 2314 return (t); 2315 } 2316 2317 /* 2318 * The 'Compatible drivers' field may contain more than one 2319 * ID separated by ','. 2320 */ 2321 if (id->ncompat <= 0) 2322 return (NULL); 2323 for (i = 0; i < id->ncompat; ++i) { 2324 for (j = i; id->compat[i] != ','; ++i) 2325 if (i >= id->ncompat) 2326 break; 2327 if (i > j) { 2328 t = gettoken(pnpprod, id->compat + j, i - j); 2329 if (t->val != MOUSE_PROTO_UNKNOWN) 2330 return (t); 2331 } 2332 } 2333 2334 return (NULL); 2335 } 2336 2337 /* name/val mapping */ 2338 2339 static symtab_t * 2340 gettoken(symtab_t *tab, const char *s, int len) 2341 { 2342 int i; 2343 2344 for (i = 0; tab[i].name != NULL; ++i) { 2345 if (strncmp(tab[i].name, s, len) == 0) 2346 break; 2347 } 2348 return (&tab[i]); 2349 } 2350 2351 static const char * 2352 gettokenname(symtab_t *tab, int val) 2353 { 2354 static const char unknown[] = "unknown"; 2355 int i; 2356 2357 for (i = 0; tab[i].name != NULL; ++i) { 2358 if (tab[i].val == val) 2359 return (tab[i].name); 2360 } 2361 return (unknown); 2362 } 2363 2364 static int 2365 gettokenval2(symtab_t *tab, int val) 2366 { 2367 int i; 2368 2369 for (i = 0; tab[i].name != NULL; ++i) { 2370 if (tab[i].val == val) 2371 return (tab[i].val2); 2372 } 2373 return (0); 2374 } 2375 2376 2377 /* 2378 * code to read from the Genius Kidspad tablet. 2379 2380 The tablet responds to the COM PnP protocol 1.0 with EISA-ID KYE0005, 2381 and to pre-pnp probes (RTS toggle) with 'T' (tablet ?) 2382 9600, 8 bit, parity odd. 2383 2384 The tablet puts out 5 bytes. b0 (mask 0xb8, value 0xb8) contains 2385 the proximity, tip and button info: 2386 (byte0 & 0x1) true = tip pressed 2387 (byte0 & 0x2) true = button pressed 2388 (byte0 & 0x40) false = pen in proximity of tablet. 2389 2390 The next 4 bytes are used for coordinates xl, xh, yl, yh (7 bits valid). 2391 2392 Only absolute coordinates are returned, so we use the following approach: 2393 we store the last coordinates sent when the pen went out of the tablet, 2394 2395 2396 * 2397 */ 2398 2399 typedef enum { 2400 S_IDLE, S_PROXY, S_FIRST, S_DOWN, S_UP 2401 } k_status; 2402 2403 static int 2404 kidspad(u_char rxc, mousestatus_t *act) 2405 { 2406 static int buf[5]; 2407 static int buflen = 0, b_prev = 0 , x_prev = -1, y_prev = -1; 2408 static k_status status = S_IDLE; 2409 static struct timespec now; 2410 2411 int x, y; 2412 2413 if (buflen > 0 && (rxc & 0x80)) { 2414 fprintf(stderr, "invalid code %d 0x%x\n", buflen, rxc); 2415 buflen = 0; 2416 } 2417 if (buflen == 0 && (rxc & 0xb8) != 0xb8) { 2418 fprintf(stderr, "invalid code 0 0x%x\n", rxc); 2419 return (0); /* invalid code, no action */ 2420 } 2421 buf[buflen++] = rxc; 2422 if (buflen < 5) 2423 return (0); 2424 2425 buflen = 0; /* for next time... */ 2426 2427 x = buf[1]+128*(buf[2] - 7); 2428 if (x < 0) x = 0; 2429 y = 28*128 - (buf[3] + 128* (buf[4] - 7)); 2430 if (y < 0) y = 0; 2431 2432 x /= 8; 2433 y /= 8; 2434 2435 act->flags = 0; 2436 act->obutton = act->button; 2437 act->dx = act->dy = act->dz = 0; 2438 clock_gettime(CLOCK_MONOTONIC_FAST, &now); 2439 if (buf[0] & 0x40) /* pen went out of reach */ 2440 status = S_IDLE; 2441 else if (status == S_IDLE) { /* pen is newly near the tablet */ 2442 act->flags |= MOUSE_POSCHANGED; /* force update */ 2443 status = S_PROXY; 2444 x_prev = x; 2445 y_prev = y; 2446 } 2447 act->dx = x - x_prev; 2448 act->dy = y - y_prev; 2449 if (act->dx || act->dy) 2450 act->flags |= MOUSE_POSCHANGED; 2451 x_prev = x; 2452 y_prev = y; 2453 if (b_prev != 0 && b_prev != buf[0]) { /* possibly record button change */ 2454 act->button = 0; 2455 if (buf[0] & 0x01) /* tip pressed */ 2456 act->button |= MOUSE_BUTTON1DOWN; 2457 if (buf[0] & 0x02) /* button pressed */ 2458 act->button |= MOUSE_BUTTON2DOWN; 2459 act->flags |= MOUSE_BUTTONSCHANGED; 2460 } 2461 b_prev = buf[0]; 2462 return (act->flags); 2463 } 2464 2465 static int 2466 gtco_digipad (u_char rxc, mousestatus_t *act) 2467 { 2468 static u_char buf[5]; 2469 static int buflen = 0, b_prev = 0 , x_prev = -1, y_prev = -1; 2470 static k_status status = S_IDLE; 2471 int x, y; 2472 2473 #define GTCO_HEADER 0x80 2474 #define GTCO_PROXIMITY 0x40 2475 #define GTCO_START (GTCO_HEADER|GTCO_PROXIMITY) 2476 #define GTCO_BUTTONMASK 0x3c 2477 2478 2479 if (buflen > 0 && ((rxc & GTCO_HEADER) != GTCO_HEADER)) { 2480 fprintf(stderr, "invalid code %d 0x%x\n", buflen, rxc); 2481 buflen = 0; 2482 } 2483 if (buflen == 0 && (rxc & GTCO_START) != GTCO_START) { 2484 fprintf(stderr, "invalid code 0 0x%x\n", rxc); 2485 return (0); /* invalid code, no action */ 2486 } 2487 2488 buf[buflen++] = rxc; 2489 if (buflen < 5) 2490 return (0); 2491 2492 buflen = 0; /* for next time... */ 2493 2494 x = ((buf[2] & ~GTCO_START) << 6 | (buf[1] & ~GTCO_START)); 2495 y = 4768 - ((buf[4] & ~GTCO_START) << 6 | (buf[3] & ~GTCO_START)); 2496 2497 x /= 2.5; 2498 y /= 2.5; 2499 2500 act->flags = 0; 2501 act->obutton = act->button; 2502 act->dx = act->dy = act->dz = 0; 2503 2504 if ((buf[0] & 0x40) == 0) /* pen went out of reach */ 2505 status = S_IDLE; 2506 else if (status == S_IDLE) { /* pen is newly near the tablet */ 2507 act->flags |= MOUSE_POSCHANGED; /* force update */ 2508 status = S_PROXY; 2509 x_prev = x; 2510 y_prev = y; 2511 } 2512 2513 act->dx = x - x_prev; 2514 act->dy = y - y_prev; 2515 if (act->dx || act->dy) 2516 act->flags |= MOUSE_POSCHANGED; 2517 x_prev = x; 2518 y_prev = y; 2519 2520 /* possibly record button change */ 2521 if (b_prev != 0 && b_prev != buf[0]) { 2522 act->button = 0; 2523 if (buf[0] & 0x04) { 2524 /* tip pressed/yellow */ 2525 act->button |= MOUSE_BUTTON1DOWN; 2526 } 2527 if (buf[0] & 0x08) { 2528 /* grey/white */ 2529 act->button |= MOUSE_BUTTON2DOWN; 2530 } 2531 if (buf[0] & 0x10) { 2532 /* black/green */ 2533 act->button |= MOUSE_BUTTON3DOWN; 2534 } 2535 if (buf[0] & 0x20) { 2536 /* tip+grey/blue */ 2537 act->button |= MOUSE_BUTTON4DOWN; 2538 } 2539 act->flags |= MOUSE_BUTTONSCHANGED; 2540 } 2541 b_prev = buf[0]; 2542 return (act->flags); 2543 } 2544 2545 static void 2546 mremote_serversetup(void) 2547 { 2548 struct sockaddr_un ad; 2549 2550 /* Open a UNIX domain stream socket to listen for mouse remote clients */ 2551 unlink(_PATH_MOUSEREMOTE); 2552 2553 if ((rodent.mremsfd = socket(AF_UNIX, SOCK_STREAM, 0)) < 0) 2554 logerrx(1, "unable to create unix domain socket %s",_PATH_MOUSEREMOTE); 2555 2556 umask(0111); 2557 2558 bzero(&ad, sizeof(ad)); 2559 ad.sun_family = AF_UNIX; 2560 strcpy(ad.sun_path, _PATH_MOUSEREMOTE); 2561 #ifndef SUN_LEN 2562 #define SUN_LEN(unp) (((char *)(unp)->sun_path - (char *)(unp)) + \ 2563 strlen((unp)->path)) 2564 #endif 2565 if (bind(rodent.mremsfd, (struct sockaddr *) &ad, SUN_LEN(&ad)) < 0) 2566 logerrx(1, "unable to bind unix domain socket %s", _PATH_MOUSEREMOTE); 2567 2568 listen(rodent.mremsfd, 1); 2569 } 2570 2571 static void 2572 mremote_clientchg(bool add) 2573 { 2574 struct sockaddr_un ad; 2575 socklen_t ad_len; 2576 int fd; 2577 2578 if (rodent.rtype != MOUSE_PROTO_X10MOUSEREM) 2579 return; 2580 2581 if (add) { 2582 /* Accept client connection, if we don't already have one */ 2583 ad_len = sizeof(ad); 2584 fd = accept(rodent.mremsfd, (struct sockaddr *) &ad, &ad_len); 2585 if (fd < 0) 2586 logwarnx("failed accept on mouse remote socket"); 2587 2588 if (rodent.mremcfd < 0) { 2589 rodent.mremcfd = fd; 2590 debug("remote client connect...accepted"); 2591 } 2592 else { 2593 close(fd); 2594 debug("another remote client connect...disconnected"); 2595 } 2596 } 2597 else { 2598 /* Client disconnected */ 2599 debug("remote client disconnected"); 2600 close(rodent.mremcfd); 2601 rodent.mremcfd = -1; 2602 } 2603 } 2604