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Rev | Author | Line No. | Line |
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1419 | jermar | 1 | /* $OpenBSD: input.c,v 1.12 2005/04/13 02:33:08 deraadt Exp $ */ |
2 | /* $NetBSD: input.c,v 1.3 1996/02/06 22:47:33 jtc Exp $ */ |
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3 | |||
4 | /*- |
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5 | * Copyright (c) 1992, 1993 |
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6 | * The Regents of the University of California. All rights reserved. |
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7 | * |
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8 | * This code is derived from software contributed to Berkeley by |
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9 | * Chris Torek and Darren F. Provine. |
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10 | * |
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11 | * Redistribution and use in source and binary forms, with or without |
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12 | * modification, are permitted provided that the following conditions |
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13 | * are met: |
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14 | * 1. Redistributions of source code must retain the above copyright |
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15 | * notice, this list of conditions and the following disclaimer. |
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16 | * 2. Redistributions in binary form must reproduce the above copyright |
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17 | * notice, this list of conditions and the following disclaimer in the |
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18 | * documentation and/or other materials provided with the distribution. |
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19 | * 3. Neither the name of the University nor the names of its contributors |
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20 | * may be used to endorse or promote products derived from this software |
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21 | * without specific prior written permission. |
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22 | * |
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23 | * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND |
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24 | * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE |
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25 | * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE |
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26 | * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE |
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27 | * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL |
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28 | * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS |
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29 | * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) |
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30 | * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT |
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31 | * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY |
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32 | * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF |
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33 | * SUCH DAMAGE. |
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34 | * |
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35 | * @(#)input.c 8.1 (Berkeley) 5/31/93 |
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36 | */ |
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37 | |||
1653 | cejka | 38 | /** @addtogroup tetris |
4515 | decky | 39 | * @{ |
1653 | cejka | 40 | */ |
41 | /** @file |
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42 | */ |
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43 | |||
1419 | jermar | 44 | /* |
45 | * Tetris input. |
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46 | */ |
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47 | |||
48 | #include <sys/types.h> |
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49 | #include <sys/time.h> |
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1532 | palkovsky | 50 | #include <stdio.h> |
1419 | jermar | 51 | |
52 | #include <errno.h> |
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53 | #include <unistd.h> |
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54 | #include <string.h> |
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55 | |||
56 | #include "input.h" |
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57 | #include "tetris.h" |
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58 | |||
1466 | palkovsky | 59 | #include <async.h> |
4488 | decky | 60 | #include <vfs/vfs.h> |
61 | #include <io/console.h> |
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3747 | svoboda | 62 | #include <ipc/console.h> |
1466 | palkovsky | 63 | |
1419 | jermar | 64 | /* return true iff the given timeval is positive */ |
65 | #define TV_POS(tv) \ |
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66 | ((tv)->tv_sec > 0 || ((tv)->tv_sec == 0 && (tv)->tv_usec > 0)) |
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67 | |||
68 | /* subtract timeval `sub' from `res' */ |
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69 | #define TV_SUB(res, sub) \ |
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70 | (res)->tv_sec -= (sub)->tv_sec; \ |
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71 | (res)->tv_usec -= (sub)->tv_usec; \ |
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72 | if ((res)->tv_usec < 0) { \ |
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73 | (res)->tv_usec += 1000000; \ |
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74 | (res)->tv_sec--; \ |
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75 | } |
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76 | |||
1469 | palkovsky | 77 | /* We will use a hack here - if lastchar is non-zero, it is |
78 | * the last character read. We will somehow simulate the select |
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79 | * semantics. |
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80 | */ |
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1466 | palkovsky | 81 | static aid_t getchar_inprog = 0; |
1469 | palkovsky | 82 | static char lastchar = '\0'; |
1466 | palkovsky | 83 | |
1419 | jermar | 84 | /* |
85 | * Do a `read wait': select for reading from stdin, with timeout *tvp. |
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86 | * On return, modify *tvp to reflect the amount of time spent waiting. |
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87 | * It will be positive only if input appeared before the time ran out; |
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88 | * otherwise it will be zero or perhaps negative. |
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89 | * |
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90 | * If tvp is nil, wait forever, but return if select is interrupted. |
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91 | * |
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92 | * Return 0 => no input, 1 => can read() from stdin |
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1469 | palkovsky | 93 | * |
1419 | jermar | 94 | */ |
4515 | decky | 95 | int rwait(struct timeval *tvp) |
1419 | jermar | 96 | { |
97 | struct timeval starttv, endtv, *s; |
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1469 | palkovsky | 98 | static ipc_call_t charcall; |
1533 | palkovsky | 99 | ipcarg_t rc; |
4515 | decky | 100 | |
1419 | jermar | 101 | /* |
102 | * Someday, select() will do this for us. |
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103 | * Just in case that day is now, and no one has |
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104 | * changed this, we use a temporary. |
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105 | */ |
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106 | if (tvp) { |
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1532 | palkovsky | 107 | (void) gettimeofday(&starttv, NULL); |
1419 | jermar | 108 | endtv = *tvp; |
109 | s = &endtv; |
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110 | } else |
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111 | s = NULL; |
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4515 | decky | 112 | |
1469 | palkovsky | 113 | if (!lastchar) { |
4033 | svoboda | 114 | again: |
3224 | svoboda | 115 | if (!getchar_inprog) { |
4488 | decky | 116 | getchar_inprog = async_send_0(fphone(stdin), |
117 | CONSOLE_GET_EVENT, &charcall); |
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3224 | svoboda | 118 | } |
4515 | decky | 119 | |
4488 | decky | 120 | if (!s) |
1532 | palkovsky | 121 | async_wait_for(getchar_inprog, &rc); |
122 | else if (async_wait_timeout(getchar_inprog, &rc, s->tv_usec) == ETIMEOUT) { |
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1469 | palkovsky | 123 | tvp->tv_sec = 0; |
124 | tvp->tv_usec = 0; |
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125 | return (0); |
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126 | } |
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4515 | decky | 127 | |
1469 | palkovsky | 128 | getchar_inprog = 0; |
4515 | decky | 129 | if (rc) |
1469 | palkovsky | 130 | stop("end of file, help"); |
4515 | decky | 131 | |
4488 | decky | 132 | if (IPC_GET_ARG1(charcall) == KEY_RELEASE) |
4033 | svoboda | 133 | goto again; |
4515 | decky | 134 | |
3905 | svoboda | 135 | lastchar = IPC_GET_ARG4(charcall); |
1419 | jermar | 136 | } |
4515 | decky | 137 | |
1419 | jermar | 138 | if (tvp) { |
139 | /* since there is input, we may not have timed out */ |
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1532 | palkovsky | 140 | (void) gettimeofday(&endtv, NULL); |
1419 | jermar | 141 | TV_SUB(&endtv, &starttv); |
4515 | decky | 142 | TV_SUB(tvp, &endtv); /* adjust *tvp by elapsed time */ |
1419 | jermar | 143 | } |
4515 | decky | 144 | |
145 | return 1; |
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1419 | jermar | 146 | } |
147 | |||
148 | /* |
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149 | * `sleep' for the current turn time (using select). |
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150 | * Eat any input that might be available. |
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151 | */ |
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4515 | decky | 152 | void tsleep(void) |
1419 | jermar | 153 | { |
154 | struct timeval tv; |
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4515 | decky | 155 | |
1419 | jermar | 156 | tv.tv_sec = 0; |
157 | tv.tv_usec = fallrate; |
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158 | while (TV_POS(&tv)) |
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1469 | palkovsky | 159 | if (rwait(&tv)) { |
160 | lastchar = '\0'; |
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161 | } else |
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1419 | jermar | 162 | break; |
163 | } |
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164 | |||
165 | /* |
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166 | * getchar with timeout. |
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167 | */ |
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4515 | decky | 168 | int tgetchar(void) |
1419 | jermar | 169 | { |
170 | static struct timeval timeleft; |
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171 | char c; |
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4515 | decky | 172 | |
1419 | jermar | 173 | /* |
174 | * Reset timeleft to fallrate whenever it is not positive. |
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175 | * In any case, wait to see if there is any input. If so, |
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176 | * take it, and update timeleft so that the next call to |
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177 | * tgetchar() will not wait as long. If there is no input, |
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178 | * make timeleft zero or negative, and return -1. |
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179 | * |
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180 | * Most of the hard work is done by rwait(). |
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181 | */ |
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182 | if (!TV_POS(&timeleft)) { |
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4515 | decky | 183 | faster(); /* go faster */ |
1419 | jermar | 184 | timeleft.tv_sec = 0; |
185 | timeleft.tv_usec = fallrate; |
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186 | } |
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4515 | decky | 187 | |
1419 | jermar | 188 | if (!rwait(&timeleft)) |
4515 | decky | 189 | return -1; |
190 | |||
1469 | palkovsky | 191 | c = lastchar; |
192 | lastchar = '\0'; |
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4515 | decky | 193 | return ((int) (unsigned char) c); |
1419 | jermar | 194 | } |
1653 | cejka | 195 | |
196 | /** @} |
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197 | */ |