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getch.c revision 1.36
      1  1.36    blymn /*	$NetBSD: getch.c,v 1.36 2002/01/02 10:38:27 blymn Exp $	*/
      2   1.8    mikel 
      3   1.1      cgd /*
      4   1.7      cgd  * Copyright (c) 1981, 1993, 1994
      5   1.5      cgd  *	The Regents of the University of California.  All rights reserved.
      6   1.1      cgd  *
      7   1.1      cgd  * Redistribution and use in source and binary forms, with or without
      8   1.1      cgd  * modification, are permitted provided that the following conditions
      9   1.1      cgd  * are met:
     10   1.1      cgd  * 1. Redistributions of source code must retain the above copyright
     11   1.1      cgd  *    notice, this list of conditions and the following disclaimer.
     12   1.1      cgd  * 2. Redistributions in binary form must reproduce the above copyright
     13   1.1      cgd  *    notice, this list of conditions and the following disclaimer in the
     14   1.1      cgd  *    documentation and/or other materials provided with the distribution.
     15   1.1      cgd  * 3. All advertising materials mentioning features or use of this software
     16   1.1      cgd  *    must display the following acknowledgement:
     17   1.1      cgd  *	This product includes software developed by the University of
     18   1.1      cgd  *	California, Berkeley and its contributors.
     19   1.1      cgd  * 4. Neither the name of the University nor the names of its contributors
     20   1.1      cgd  *    may be used to endorse or promote products derived from this software
     21   1.1      cgd  *    without specific prior written permission.
     22   1.1      cgd  *
     23   1.1      cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     24   1.1      cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     25   1.1      cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     26   1.1      cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     27   1.1      cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     28   1.1      cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     29   1.1      cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     30   1.1      cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     31   1.1      cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     32   1.1      cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     33   1.1      cgd  * SUCH DAMAGE.
     34   1.1      cgd  */
     35   1.1      cgd 
     36   1.8    mikel #include <sys/cdefs.h>
     37   1.1      cgd #ifndef lint
     38   1.8    mikel #if 0
     39   1.7      cgd static char sccsid[] = "@(#)getch.c	8.2 (Berkeley) 5/4/94";
     40   1.8    mikel #else
     41  1.36    blymn __RCSID("$NetBSD: getch.c,v 1.36 2002/01/02 10:38:27 blymn Exp $");
     42   1.8    mikel #endif
     43  1.10      mrg #endif					/* not lint */
     44   1.1      cgd 
     45  1.10      mrg #include <string.h>
     46  1.10      mrg #include <stdlib.h>
     47  1.10      mrg #include <unistd.h>
     48  1.10      mrg #include <stdio.h>
     49   1.7      cgd #include "curses.h"
     50  1.16    blymn #include "curses_private.h"
     51   1.1      cgd 
     52  1.10      mrg #define DEFAULT_DELAY 2			/* default delay for timeout() */
     53  1.10      mrg 
     54  1.10      mrg /*
     55  1.10      mrg  * Keyboard input handler.  Do this by snarfing
     56  1.10      mrg  * all the info we can out of the termcap entry for TERM and putting it
     57  1.10      mrg  * into a set of keymaps.  A keymap is an array the size of all the possible
     58  1.10      mrg  * single characters we can get, the contents of the array is a structure
     59  1.10      mrg  * that contains the type of entry this character is (i.e. part/end of a
     60  1.10      mrg  * multi-char sequence or a plain char) and either a pointer which will point
     61  1.10      mrg  * to another keymap (in the case of a multi-char sequence) OR the data value
     62  1.10      mrg  * that this key should return.
     63  1.10      mrg  *
     64  1.10      mrg  */
     65  1.10      mrg 
     66  1.10      mrg /* private data structures for holding the key definitions */
     67  1.10      mrg typedef struct key_entry key_entry_t;
     68  1.10      mrg 
     69  1.10      mrg struct key_entry {
     70  1.10      mrg 	short   type;		/* type of key this is */
     71  1.10      mrg 	union {
     72  1.10      mrg 		keymap_t *next;	/* next keymap is key is multi-key sequence */
     73  1.16    blymn 		wchar_t   symbol;	/* key symbol if key is a leaf entry */
     74  1.12       pk 	} value;
     75  1.10      mrg };
     76  1.10      mrg /* Types of key structures we can have */
     77  1.10      mrg #define KEYMAP_MULTI  1		/* part of a multi char sequence */
     78  1.10      mrg #define KEYMAP_LEAF   2		/* key has a symbol associated with it, either
     79  1.10      mrg 				 * it is the end of a multi-char sequence or a
     80  1.10      mrg 				 * single char key that generates a symbol */
     81  1.10      mrg 
     82  1.20    blymn /* allocate this many key_entry structs at once to speed start up must
     83  1.20    blymn  * be a power of 2.
     84  1.20    blymn  */
     85  1.20    blymn #define KEYMAP_ALLOC_CHUNK 4
     86  1.20    blymn 
     87  1.10      mrg /* The max number of different chars we can receive */
     88  1.10      mrg #define MAX_CHAR 256
     89  1.10      mrg 
     90  1.10      mrg struct keymap {
     91  1.12       pk 	int	count;		/* count of number of key structs allocated */
     92  1.12       pk 	short	mapping[MAX_CHAR]; /* mapping of key to allocated structs */
     93  1.20    blymn 	key_entry_t **key;	/* dynamic array of keys */
     94  1.20    blymn };
     95  1.10      mrg 
     96  1.10      mrg 
     97  1.10      mrg /* Key buffer */
     98  1.10      mrg #define INBUF_SZ 16		/* size of key buffer - must be larger than
     99  1.10      mrg 				 * longest multi-key sequence */
    100  1.16    blymn static wchar_t  inbuf[INBUF_SZ];
    101  1.13   simonb static int     start, end, working; /* pointers for manipulating inbuf data */
    102  1.10      mrg 
    103  1.12       pk #define INC_POINTER(ptr)  do {	\
    104  1.12       pk 	(ptr)++;		\
    105  1.12       pk 	ptr %= INBUF_SZ;	\
    106  1.10      mrg } while(/*CONSTCOND*/0)
    107  1.10      mrg 
    108  1.13   simonb static short	state;		/* state of the inkey function */
    109  1.10      mrg 
    110  1.12       pk #define INKEY_NORM	 0	/* no key backlog to process */
    111  1.10      mrg #define INKEY_ASSEMBLING 1	/* assembling a multi-key sequence */
    112  1.12       pk #define INKEY_BACKOUT	 2	/* recovering from an unrecognised key */
    113  1.12       pk #define INKEY_TIMEOUT	 3	/* multi-key sequence timeout */
    114  1.10      mrg 
    115  1.10      mrg /* The termcap data we are interested in and the symbols they map to */
    116  1.10      mrg struct tcdata {
    117  1.20    blymn 	const char	*name;	/* name of termcap entry */
    118  1.16    blymn 	wchar_t	symbol;		/* the symbol associated with it */
    119  1.10      mrg };
    120  1.10      mrg 
    121  1.13   simonb static const struct tcdata tc[] = {
    122  1.25      jdc 	{"!1", KEY_SSAVE},
    123  1.25      jdc 	{"!2", KEY_SSUSPEND},
    124  1.25      jdc 	{"!3", KEY_SUNDO},
    125  1.25      jdc 	{"#1", KEY_SHELP},
    126  1.25      jdc 	{"#2", KEY_SHOME},
    127  1.25      jdc 	{"#3", KEY_SIC},
    128  1.25      jdc 	{"#4", KEY_SLEFT},
    129  1.25      jdc 	{"%0", KEY_REDO},
    130  1.25      jdc 	{"%1", KEY_HELP},
    131  1.25      jdc 	{"%2", KEY_MARK},
    132  1.25      jdc 	{"%3", KEY_MESSAGE},
    133  1.25      jdc 	{"%4", KEY_MOVE},
    134  1.25      jdc 	{"%5", KEY_NEXT},
    135  1.25      jdc 	{"%6", KEY_OPEN},
    136  1.25      jdc 	{"%7", KEY_OPTIONS},
    137  1.25      jdc 	{"%8", KEY_PREVIOUS},
    138  1.25      jdc 	{"%9", KEY_PRINT},
    139  1.25      jdc 	{"%a", KEY_SMESSAGE},
    140  1.25      jdc 	{"%b", KEY_SMOVE},
    141  1.25      jdc 	{"%c", KEY_SNEXT},
    142  1.25      jdc 	{"%d", KEY_SOPTIONS},
    143  1.25      jdc 	{"%e", KEY_SPREVIOUS},
    144  1.25      jdc 	{"%f", KEY_SPRINT},
    145  1.25      jdc 	{"%g", KEY_SREDO},
    146  1.25      jdc 	{"%h", KEY_SREPLACE},
    147  1.25      jdc 	{"%i", KEY_SRIGHT},
    148  1.25      jdc 	{"%j", KEY_SRSUME},
    149  1.25      jdc 	{"&0", KEY_SCANCEL},
    150  1.25      jdc 	{"&1", KEY_REFERENCE},
    151  1.25      jdc 	{"&2", KEY_REFRESH},
    152  1.25      jdc 	{"&3", KEY_REPLACE},
    153  1.25      jdc 	{"&4", KEY_RESTART},
    154  1.25      jdc 	{"&5", KEY_RESUME},
    155  1.25      jdc 	{"&6", KEY_SAVE},
    156  1.25      jdc 	{"&7", KEY_SUSPEND},
    157  1.25      jdc 	{"&8", KEY_UNDO},
    158  1.25      jdc 	{"&9", KEY_SBEG},
    159  1.25      jdc 	{"*0", KEY_SFIND},
    160  1.25      jdc 	{"*1", KEY_SCOMMAND},
    161  1.25      jdc 	{"*2", KEY_SCOPY},
    162  1.25      jdc 	{"*3", KEY_SCREATE},
    163  1.25      jdc 	{"*4", KEY_SDC},
    164  1.25      jdc 	{"*5", KEY_SDL},
    165  1.25      jdc 	{"*6", KEY_SELECT},
    166  1.25      jdc 	{"*7", KEY_SEND},
    167  1.25      jdc 	{"*8", KEY_SEOL},
    168  1.25      jdc 	{"*9", KEY_SEXIT},
    169  1.25      jdc 	{"@0", KEY_FIND},
    170  1.25      jdc 	{"@1", KEY_BEG},
    171  1.25      jdc 	{"@2", KEY_CANCEL},
    172  1.25      jdc 	{"@3", KEY_CLOSE},
    173  1.25      jdc 	{"@4", KEY_COMMAND},
    174  1.25      jdc 	{"@5", KEY_COPY},
    175  1.25      jdc 	{"@6", KEY_CREATE},
    176  1.25      jdc 	{"@7", KEY_END},
    177  1.25      jdc 	{"@8", KEY_ENTER},
    178  1.25      jdc 	{"@9", KEY_EXIT},
    179  1.25      jdc 	{"F1", KEY_F(11)},
    180  1.25      jdc 	{"F2", KEY_F(12)},
    181  1.25      jdc 	{"F3", KEY_F(13)},
    182  1.25      jdc 	{"F4", KEY_F(14)},
    183  1.25      jdc 	{"F5", KEY_F(15)},
    184  1.25      jdc 	{"F6", KEY_F(16)},
    185  1.25      jdc 	{"F7", KEY_F(17)},
    186  1.25      jdc 	{"F8", KEY_F(18)},
    187  1.25      jdc 	{"F9", KEY_F(19)},
    188  1.25      jdc 	{"FA", KEY_F(20)},
    189  1.25      jdc 	{"FB", KEY_F(21)},
    190  1.25      jdc 	{"FC", KEY_F(22)},
    191  1.25      jdc 	{"FD", KEY_F(23)},
    192  1.25      jdc 	{"FE", KEY_F(24)},
    193  1.25      jdc 	{"FF", KEY_F(25)},
    194  1.25      jdc 	{"FG", KEY_F(26)},
    195  1.25      jdc 	{"FH", KEY_F(27)},
    196  1.25      jdc 	{"FI", KEY_F(28)},
    197  1.25      jdc 	{"FJ", KEY_F(29)},
    198  1.25      jdc 	{"FK", KEY_F(30)},
    199  1.25      jdc 	{"FL", KEY_F(31)},
    200  1.25      jdc 	{"FM", KEY_F(32)},
    201  1.25      jdc 	{"FN", KEY_F(33)},
    202  1.25      jdc 	{"FO", KEY_F(34)},
    203  1.25      jdc 	{"FP", KEY_F(35)},
    204  1.25      jdc 	{"FQ", KEY_F(36)},
    205  1.25      jdc 	{"FR", KEY_F(37)},
    206  1.25      jdc 	{"FS", KEY_F(38)},
    207  1.25      jdc 	{"FT", KEY_F(39)},
    208  1.25      jdc 	{"FU", KEY_F(40)},
    209  1.25      jdc 	{"FV", KEY_F(41)},
    210  1.25      jdc 	{"FW", KEY_F(42)},
    211  1.25      jdc 	{"FX", KEY_F(43)},
    212  1.25      jdc 	{"FY", KEY_F(44)},
    213  1.25      jdc 	{"FZ", KEY_F(45)},
    214  1.25      jdc 	{"Fa", KEY_F(46)},
    215  1.25      jdc 	{"Fb", KEY_F(47)},
    216  1.25      jdc 	{"Fc", KEY_F(48)},
    217  1.25      jdc 	{"Fd", KEY_F(49)},
    218  1.25      jdc 	{"Fe", KEY_F(50)},
    219  1.25      jdc 	{"Ff", KEY_F(51)},
    220  1.25      jdc 	{"Fg", KEY_F(52)},
    221  1.25      jdc 	{"Fh", KEY_F(53)},
    222  1.25      jdc 	{"Fi", KEY_F(54)},
    223  1.25      jdc 	{"Fj", KEY_F(55)},
    224  1.25      jdc 	{"Fk", KEY_F(56)},
    225  1.25      jdc 	{"Fl", KEY_F(57)},
    226  1.25      jdc 	{"Fm", KEY_F(58)},
    227  1.25      jdc 	{"Fn", KEY_F(59)},
    228  1.25      jdc 	{"Fo", KEY_F(60)},
    229  1.25      jdc 	{"Fp", KEY_F(61)},
    230  1.25      jdc 	{"Fq", KEY_F(62)},
    231  1.25      jdc 	{"Fr", KEY_F(63)},
    232  1.10      mrg 	{"K1", KEY_A1},
    233  1.10      mrg 	{"K2", KEY_B2},
    234  1.10      mrg 	{"K3", KEY_A3},
    235  1.10      mrg 	{"K4", KEY_C1},
    236  1.10      mrg 	{"K5", KEY_C3},
    237  1.25      jdc 	{"Km", KEY_MOUSE},
    238  1.10      mrg 	{"k0", KEY_F0},
    239  1.10      mrg 	{"k1", KEY_F(1)},
    240  1.10      mrg 	{"k2", KEY_F(2)},
    241  1.10      mrg 	{"k3", KEY_F(3)},
    242  1.10      mrg 	{"k4", KEY_F(4)},
    243  1.10      mrg 	{"k5", KEY_F(5)},
    244  1.10      mrg 	{"k6", KEY_F(6)},
    245  1.10      mrg 	{"k7", KEY_F(7)},
    246  1.10      mrg 	{"k8", KEY_F(8)},
    247  1.10      mrg 	{"k9", KEY_F(9)},
    248  1.25      jdc 	{"k;", KEY_F(10)},
    249  1.10      mrg 	{"kA", KEY_IL},
    250  1.10      mrg 	{"ka", KEY_CATAB},
    251  1.25      jdc 	{"kB", KEY_BTAB},
    252  1.10      mrg 	{"kb", KEY_BACKSPACE},
    253  1.10      mrg 	{"kC", KEY_CLEAR},
    254  1.10      mrg 	{"kD", KEY_DC},
    255  1.10      mrg 	{"kd", KEY_DOWN},
    256  1.10      mrg 	{"kE", KEY_EOL},
    257  1.10      mrg 	{"kF", KEY_SF},
    258  1.10      mrg 	{"kH", KEY_LL},
    259  1.10      mrg 	{"kh", KEY_HOME},
    260  1.10      mrg 	{"kI", KEY_IC},
    261  1.10      mrg 	{"kL", KEY_DL},
    262  1.10      mrg 	{"kl", KEY_LEFT},
    263  1.25      jdc 	{"kM", KEY_EIC},
    264  1.10      mrg 	{"kN", KEY_NPAGE},
    265  1.10      mrg 	{"kP", KEY_PPAGE},
    266  1.10      mrg 	{"kR", KEY_SR},
    267  1.10      mrg 	{"kr", KEY_RIGHT},
    268  1.10      mrg 	{"kS", KEY_EOS},
    269  1.10      mrg 	{"kT", KEY_STAB},
    270  1.10      mrg 	{"kt", KEY_CTAB},
    271  1.10      mrg 	{"ku", KEY_UP}
    272  1.10      mrg };
    273  1.10      mrg /* Number of TC entries .... */
    274  1.13   simonb static const int num_tcs = (sizeof(tc) / sizeof(struct tcdata));
    275  1.10      mrg 
    276  1.10      mrg /* prototypes for private functions */
    277  1.20    blymn static key_entry_t *add_new_key(keymap_t *current, char chr, int key_type,
    278  1.20    blymn 				int symbol);
    279  1.13   simonb static keymap_t		*new_keymap(void);	/* create a new keymap */
    280  1.13   simonb static key_entry_t	*new_key(void);		/* create a new key entry */
    281  1.20    blymn static wchar_t		inkey(int to, int delay);
    282  1.20    blymn 
    283  1.20    blymn /*
    284  1.35    blymn  * Free the storage associated with the given keymap
    285  1.35    blymn  */
    286  1.35    blymn void
    287  1.35    blymn _cursesi_free_keymap(keymap_t *map)
    288  1.35    blymn {
    289  1.35    blymn 	int i;
    290  1.35    blymn 
    291  1.35    blymn 	  /* check for, and free, child keymaps */
    292  1.35    blymn 	for (i = 0; i < MAX_CHAR; i++) {
    293  1.35    blymn 		if (map->mapping[i] >= 0) {
    294  1.35    blymn 			if (map->key[map->mapping[i]]->type == KEYMAP_MULTI)
    295  1.35    blymn 				_cursesi_free_keymap(
    296  1.35    blymn 					map->key[map->mapping[i]]->value.next);
    297  1.35    blymn 		}
    298  1.35    blymn 	}
    299  1.35    blymn 
    300  1.35    blymn 	  /* now free any allocated keymap structs */
    301  1.35    blymn 	for (i = 0; i < map->count; i += KEYMAP_ALLOC_CHUNK) {
    302  1.35    blymn 		free(map->key[i]);
    303  1.35    blymn 	}
    304  1.36    blymn 
    305  1.35    blymn 	free(map->key);
    306  1.35    blymn 	free(map);
    307  1.35    blymn }
    308  1.35    blymn 
    309  1.35    blymn 
    310  1.35    blymn /*
    311  1.20    blymn  * Add a new key entry to the keymap pointed to by current.  Entry
    312  1.20    blymn  * contains the character to add to the keymap, type is the type of
    313  1.20    blymn  * entry to add (either multikey or leaf) and symbol is the symbolic
    314  1.20    blymn  * value for a leaf type entry.  The function returns a pointer to the
    315  1.20    blymn  * new keymap entry.
    316  1.20    blymn  */
    317  1.20    blymn static key_entry_t *
    318  1.20    blymn add_new_key(keymap_t *current, char chr, int key_type, int symbol)
    319  1.20    blymn {
    320  1.20    blymn 	key_entry_t *the_key;
    321  1.20    blymn         int i;
    322  1.20    blymn 
    323  1.20    blymn #ifdef DEBUG
    324  1.20    blymn 	__CTRACE("Adding character %s of type %d, symbol 0x%x\n", unctrl(chr),
    325  1.20    blymn 		 key_type, symbol);
    326  1.20    blymn #endif
    327  1.33    blymn 	if (current->mapping[(unsigned char) chr] < 0) {
    328  1.20    blymn 		  /* first time for this char */
    329  1.33    blymn 		current->mapping[(unsigned char) chr] = current->count;	/* map new entry */
    330  1.20    blymn 		  /* make sure we have room in the key array first */
    331  1.20    blymn 		if ((current->count & (KEYMAP_ALLOC_CHUNK - 1)) == 0)
    332  1.20    blymn 		{
    333  1.20    blymn 			if ((current->key =
    334  1.20    blymn 			     realloc(current->key,
    335  1.20    blymn 				     (current->count) * sizeof(key_entry_t *)
    336  1.20    blymn 				     + KEYMAP_ALLOC_CHUNK * sizeof(key_entry_t *))) == NULL) {
    337  1.20    blymn 				fprintf(stderr,
    338  1.20    blymn 					"Could not malloc for key entry\n");
    339  1.20    blymn 				exit(1);
    340  1.20    blymn 			}
    341  1.20    blymn 
    342  1.20    blymn 			the_key = new_key();
    343  1.20    blymn                         for (i = 0; i < KEYMAP_ALLOC_CHUNK; i++) {
    344  1.20    blymn                                 current->key[current->count + i]
    345  1.20    blymn 					= &the_key[i];
    346  1.20    blymn                         }
    347  1.20    blymn                 }
    348  1.20    blymn 
    349  1.20    blymn                   /* point at the current key array element to use */
    350  1.20    blymn                 the_key = current->key[current->count];
    351  1.20    blymn 
    352  1.20    blymn 		the_key->type = key_type;
    353  1.20    blymn 
    354  1.20    blymn 		switch (key_type) {
    355  1.20    blymn 		  case KEYMAP_MULTI:
    356  1.20    blymn 			    /* need for next key */
    357  1.20    blymn #ifdef DEBUG
    358  1.20    blymn 			  __CTRACE("Creating new keymap\n");
    359  1.20    blymn #endif
    360  1.20    blymn 			  the_key->value.next = new_keymap();
    361  1.20    blymn 			  break;
    362  1.20    blymn 
    363  1.20    blymn 		  case KEYMAP_LEAF:
    364  1.20    blymn 				/* the associated symbol for the key */
    365  1.20    blymn #ifdef DEBUG
    366  1.20    blymn 			  __CTRACE("Adding leaf key\n");
    367  1.20    blymn #endif
    368  1.20    blymn 			  the_key->value.symbol = symbol;
    369  1.20    blymn 			  break;
    370  1.20    blymn 
    371  1.20    blymn 		  default:
    372  1.20    blymn 			  fprintf(stderr, "add_new_key: bad type passed\n");
    373  1.20    blymn 			  exit(1);
    374  1.20    blymn 		}
    375  1.20    blymn 
    376  1.20    blymn 		current->count++;
    377  1.20    blymn 	} else {
    378  1.20    blymn 		  /* the key is already known - just return the address. */
    379  1.20    blymn #ifdef DEBUG
    380  1.20    blymn 		__CTRACE("Keymap already known\n");
    381  1.20    blymn #endif
    382  1.33    blymn 		the_key = current->key[current->mapping[(unsigned char) chr]];
    383  1.20    blymn 	}
    384  1.20    blymn 
    385  1.20    blymn         return the_key;
    386  1.20    blymn }
    387  1.10      mrg 
    388  1.10      mrg /*
    389  1.10      mrg  * Init_getch - initialise all the pointers & structures needed to make
    390  1.10      mrg  * getch work in keypad mode.
    391  1.10      mrg  *
    392  1.10      mrg  */
    393  1.10      mrg void
    394  1.35    blymn __init_getch(SCREEN *screen)
    395  1.10      mrg {
    396  1.27    blymn 	char entry[1024], *p;
    397  1.20    blymn 	int     i, j, length, key_ent;
    398  1.20    blymn 	size_t limit;
    399  1.20    blymn 	key_entry_t *tmp_key;
    400  1.10      mrg 	keymap_t *current;
    401  1.20    blymn #ifdef DEBUG
    402  1.20    blymn 	int k;
    403  1.20    blymn #endif
    404  1.10      mrg 
    405  1.10      mrg 	/* init the inkey state variable */
    406  1.10      mrg 	state = INKEY_NORM;
    407  1.10      mrg 
    408  1.10      mrg 	/* init the base keymap */
    409  1.35    blymn 	screen->base_keymap = new_keymap();
    410  1.10      mrg 
    411  1.10      mrg 	/* key input buffer pointers */
    412  1.10      mrg 	start = end = working = 0;
    413  1.10      mrg 
    414  1.10      mrg 	/* now do the termcap snarfing ... */
    415  1.35    blymn 
    416  1.27    blymn 	for (i = 0; i < num_tcs; i++) {
    417  1.27    blymn 		p = entry;
    418  1.27    blymn 		limit = 1023;
    419  1.35    blymn 		if (t_getstr(screen->cursesi_genbuf, tc[i].name,
    420  1.35    blymn 			     &p, &limit) != NULL) {
    421  1.35    blymn 			current = screen->base_keymap;	/* always start with
    422  1.35    blymn 							 * base keymap. */
    423  1.27    blymn 			length = (int) strlen(entry);
    424  1.20    blymn #ifdef DEBUG
    425  1.27    blymn 			__CTRACE("Processing termcap entry %s, sequence ",
    426  1.27    blymn 				 tc[i].name);
    427  1.27    blymn 			for (k = 0; k <= length -1; k++)
    428  1.27    blymn 				__CTRACE("%s", unctrl(entry[k]));
    429  1.27    blymn 			__CTRACE("\n");
    430  1.27    blymn #endif
    431  1.27    blymn 			for (j = 0; j < length - 1; j++) {
    432  1.27    blymn 				  /* add the entry to the struct */
    433  1.27    blymn 				tmp_key = add_new_key(current,
    434  1.27    blymn 						      entry[j],
    435  1.27    blymn 						      KEYMAP_MULTI, 0);
    436  1.20    blymn 
    437  1.27    blymn 				  /* index into the key array - it's
    438  1.27    blymn 				     clearer if we stash this */
    439  1.27    blymn 				key_ent = current->mapping[
    440  1.33    blymn 					(unsigned char) entry[j]];
    441  1.27    blymn 
    442  1.27    blymn 				current->key[key_ent] = tmp_key;
    443  1.27    blymn 
    444  1.27    blymn 				  /* next key uses this map... */
    445  1.27    blymn 				current = current->key[key_ent]->value.next;
    446  1.27    blymn 			}
    447  1.14   simonb 
    448  1.20    blymn 				/* this is the last key in the sequence (it
    449  1.20    blymn 				 * may have been the only one but that does
    450  1.20    blymn 				 * not matter) this means it is a leaf key and
    451  1.20    blymn 				 * should have a symbol associated with it.
    452  1.20    blymn 				 */
    453  1.27    blymn 			tmp_key = add_new_key(current,
    454  1.27    blymn 					      entry[length - 1],
    455  1.27    blymn 					      KEYMAP_LEAF,
    456  1.27    blymn 					      tc[i].symbol);
    457  1.27    blymn 			current->key[
    458  1.27    blymn 				current->mapping[(int)entry[length - 1]]] =
    459  1.27    blymn 			tmp_key;
    460  1.12       pk 		}
    461  1.10      mrg 	}
    462  1.10      mrg }
    463  1.10      mrg 
    464  1.10      mrg 
    465  1.10      mrg /*
    466  1.10      mrg  * new_keymap - allocates & initialises a new keymap structure.  This
    467  1.10      mrg  * function returns a pointer to the new keymap.
    468  1.10      mrg  *
    469  1.10      mrg  */
    470  1.13   simonb static keymap_t *
    471  1.10      mrg new_keymap(void)
    472  1.10      mrg {
    473  1.10      mrg 	int     i;
    474  1.10      mrg 	keymap_t *new_map;
    475  1.10      mrg 
    476  1.10      mrg 	if ((new_map = malloc(sizeof(keymap_t))) == NULL) {
    477  1.10      mrg 		perror("Inkey: Cannot allocate new keymap");
    478  1.10      mrg 		exit(2);
    479  1.10      mrg 	}
    480  1.12       pk 
    481  1.12       pk 	/* Initialise the new map */
    482  1.10      mrg 	new_map->count = 0;
    483  1.10      mrg 	for (i = 0; i < MAX_CHAR; i++) {
    484  1.10      mrg 		new_map->mapping[i] = -1;	/* no mapping for char */
    485  1.10      mrg 	}
    486  1.10      mrg 
    487  1.23  thorpej 	/* key array will be allocated when first key is added */
    488  1.23  thorpej 	new_map->key = NULL;
    489  1.23  thorpej 
    490  1.20    blymn 	return new_map;
    491  1.10      mrg }
    492  1.10      mrg 
    493  1.10      mrg /*
    494  1.10      mrg  * new_key - allocates & initialises a new key entry.  This function returns
    495  1.10      mrg  * a pointer to the newly allocated key entry.
    496  1.10      mrg  *
    497  1.10      mrg  */
    498  1.13   simonb static key_entry_t *
    499  1.10      mrg new_key(void)
    500  1.10      mrg {
    501  1.10      mrg 	key_entry_t *new_one;
    502  1.20    blymn 	int i;
    503  1.36    blymn 
    504  1.20    blymn 	if ((new_one = malloc(KEYMAP_ALLOC_CHUNK * sizeof(key_entry_t)))
    505  1.20    blymn 	    == NULL) {
    506  1.20    blymn 		perror("inkey: Cannot allocate new key entry chunk");
    507  1.10      mrg 		exit(2);
    508  1.10      mrg 	}
    509  1.10      mrg 
    510  1.20    blymn 	for (i = 0; i < KEYMAP_ALLOC_CHUNK; i++) {
    511  1.20    blymn 		new_one[i].type = 0;
    512  1.20    blymn 		new_one[i].value.next = NULL;
    513  1.20    blymn 	}
    514  1.36    blymn 
    515  1.20    blymn 	return new_one;
    516  1.10      mrg }
    517  1.10      mrg 
    518  1.10      mrg /*
    519  1.10      mrg  * inkey - do the work to process keyboard input, check for multi-key
    520  1.10      mrg  * sequences and return the appropriate symbol if we get a match.
    521  1.10      mrg  *
    522  1.10      mrg  */
    523  1.10      mrg 
    524  1.16    blymn wchar_t
    525  1.20    blymn inkey(int to, int delay)
    526  1.10      mrg {
    527  1.21      jdc 	wchar_t		 k;
    528  1.22    blymn 	int              c;
    529  1.35    blymn 	keymap_t	*current = _cursesi_screen->base_keymap;
    530  1.35    blymn 	FILE            *infd = _cursesi_screen->infd;
    531  1.10      mrg 
    532  1.25      jdc 	k = 0;		/* XXX gcc -Wuninitialized */
    533  1.25      jdc 
    534  1.10      mrg 	for (;;) {		/* loop until we get a complete key sequence */
    535  1.10      mrg reread:
    536  1.10      mrg 		if (state == INKEY_NORM) {
    537  1.10      mrg 			if (delay && __timeout(delay) == ERR)
    538  1.10      mrg 				return ERR;
    539  1.22    blymn 			if ((c = getchar()) == EOF) {
    540  1.35    blymn 				clearerr(infd);
    541  1.10      mrg 				return ERR;
    542  1.22    blymn 			}
    543  1.22    blymn 
    544  1.10      mrg 			if (delay && (__notimeout() == ERR))
    545  1.10      mrg 				return ERR;
    546  1.22    blymn 
    547  1.16    blymn 			k = (wchar_t) c;
    548  1.10      mrg #ifdef DEBUG
    549  1.10      mrg 			__CTRACE("inkey (state normal) got '%s'\n", unctrl(k));
    550  1.10      mrg #endif
    551  1.10      mrg 
    552  1.10      mrg 			working = start;
    553  1.10      mrg 			inbuf[working] = k;
    554  1.10      mrg 			INC_POINTER(working);
    555  1.10      mrg 			end = working;
    556  1.10      mrg 			state = INKEY_ASSEMBLING;	/* go to the assembling
    557  1.10      mrg 							 * state now */
    558  1.12       pk 		} else if (state == INKEY_BACKOUT) {
    559  1.12       pk 			k = inbuf[working];
    560  1.12       pk 			INC_POINTER(working);
    561  1.12       pk 			if (working == end) {	/* see if we have run
    562  1.12       pk 						 * out of keys in the
    563  1.12       pk 						 * backlog */
    564  1.12       pk 
    565  1.12       pk 				/* if we have then switch to
    566  1.12       pk 				   assembling */
    567  1.12       pk 				state = INKEY_ASSEMBLING;
    568  1.12       pk 			}
    569  1.12       pk 		} else if (state == INKEY_ASSEMBLING) {
    570  1.12       pk 			/* assembling a key sequence */
    571  1.12       pk 			if (delay) {
    572  1.12       pk 				if (__timeout(to ? DEFAULT_DELAY : delay) == ERR)
    573  1.10      mrg 						return ERR;
    574  1.12       pk 			} else {
    575  1.12       pk 				if (to && (__timeout(DEFAULT_DELAY) == ERR))
    576  1.10      mrg 					return ERR;
    577  1.12       pk 			}
    578  1.22    blymn 
    579  1.22    blymn 			c = getchar();
    580  1.35    blymn 			if (ferror(infd)) {
    581  1.35    blymn 				clearerr(infd);
    582  1.12       pk 				return ERR;
    583  1.22    blymn 			}
    584  1.22    blymn 
    585  1.12       pk 			if ((to || delay) && (__notimeout() == ERR))
    586  1.10      mrg 					return ERR;
    587  1.14   simonb 
    588  1.16    blymn 			k = (wchar_t) c;
    589  1.10      mrg #ifdef DEBUG
    590  1.12       pk 			__CTRACE("inkey (state assembling) got '%s'\n", unctrl(k));
    591  1.10      mrg #endif
    592  1.35    blymn 			if (feof(infd)) {	/* inter-char timeout,
    593  1.12       pk 						 * start backing out */
    594  1.35    blymn 				clearerr(infd);
    595  1.12       pk 				if (start == end)
    596  1.12       pk 					/* no chars in the buffer, restart */
    597  1.12       pk 					goto reread;
    598  1.12       pk 
    599  1.12       pk 				k = inbuf[start];
    600  1.12       pk 				state = INKEY_TIMEOUT;
    601  1.10      mrg 			} else {
    602  1.12       pk 				inbuf[working] = k;
    603  1.12       pk 				INC_POINTER(working);
    604  1.12       pk 				end = working;
    605  1.10      mrg 			}
    606  1.12       pk 		} else {
    607  1.12       pk 			fprintf(stderr, "Inkey state screwed - exiting!!!");
    608  1.12       pk 			exit(2);
    609  1.12       pk 		}
    610  1.10      mrg 
    611  1.10      mrg 		/* Check key has no special meaning and we have not timed out */
    612  1.20    blymn 		if ((state == INKEY_TIMEOUT) || (current->mapping[k] < 0)) {
    613  1.12       pk 			/* return the first key we know about */
    614  1.12       pk 			k = inbuf[start];
    615  1.10      mrg 
    616  1.10      mrg 			INC_POINTER(start);
    617  1.10      mrg 			working = start;
    618  1.10      mrg 
    619  1.10      mrg 			if (start == end) {	/* only one char processed */
    620  1.10      mrg 				state = INKEY_NORM;
    621  1.10      mrg 			} else {/* otherwise we must have more than one char
    622  1.10      mrg 				 * to backout */
    623  1.10      mrg 				state = INKEY_BACKOUT;
    624  1.10      mrg 			}
    625  1.10      mrg 			return k;
    626  1.10      mrg 		} else {	/* must be part of a multikey sequence */
    627  1.10      mrg 			/* check for completed key sequence */
    628  1.10      mrg 			if (current->key[current->mapping[k]]->type == KEYMAP_LEAF) {
    629  1.10      mrg 				start = working;	/* eat the key sequence
    630  1.10      mrg 							 * in inbuf */
    631  1.10      mrg 
    632  1.12       pk 				/* check if inbuf empty now */
    633  1.12       pk 				if (start == end) {
    634  1.12       pk 					/* if it is go back to normal */
    635  1.12       pk 					state = INKEY_NORM;
    636  1.12       pk 				} else {
    637  1.12       pk 					/* otherwise go to backout state */
    638  1.10      mrg 					state = INKEY_BACKOUT;
    639  1.10      mrg 				}
    640  1.10      mrg 
    641  1.10      mrg 				/* return the symbol */
    642  1.10      mrg 				return current->key[current->mapping[k]]->value.symbol;
    643  1.10      mrg 
    644  1.12       pk 			} else {
    645  1.12       pk 				/*
    646  1.12       pk 				 * Step on to next part of the multi-key
    647  1.12       pk 				 * sequence.
    648  1.12       pk 				 */
    649  1.10      mrg 				current = current->key[current->mapping[k]]->value.next;
    650  1.10      mrg 			}
    651  1.10      mrg 		}
    652  1.10      mrg 	}
    653  1.10      mrg }
    654  1.10      mrg 
    655  1.18    blymn #ifndef _CURSES_USE_MACROS
    656  1.18    blymn /*
    657  1.18    blymn  * getch --
    658  1.18    blymn  *	Read in a character from stdscr.
    659  1.18    blymn  */
    660  1.18    blymn int
    661  1.18    blymn getch(void)
    662  1.18    blymn {
    663  1.18    blymn 	return wgetch(stdscr);
    664  1.18    blymn }
    665  1.18    blymn 
    666  1.18    blymn /*
    667  1.18    blymn  * mvgetch --
    668  1.18    blymn  *      Read in a character from stdscr at the given location.
    669  1.18    blymn  */
    670  1.18    blymn int
    671  1.18    blymn mvgetch(int y, int x)
    672  1.18    blymn {
    673  1.18    blymn 	return mvwgetch(stdscr, y, x);
    674  1.18    blymn }
    675  1.18    blymn 
    676  1.18    blymn /*
    677  1.18    blymn  * mvwgetch --
    678  1.18    blymn  *      Read in a character from stdscr at the given location in the
    679  1.18    blymn  *      given window.
    680  1.18    blymn  */
    681  1.18    blymn int
    682  1.18    blymn mvwgetch(WINDOW *win, int y, int x)
    683  1.18    blymn {
    684  1.18    blymn 	if (wmove(win, y, x) == ERR)
    685  1.18    blymn 		return ERR;
    686  1.18    blymn 
    687  1.18    blymn 	return wgetch(win);
    688  1.18    blymn }
    689  1.18    blymn 
    690  1.18    blymn #endif
    691  1.18    blymn 
    692   1.1      cgd /*
    693   1.4  mycroft  * wgetch --
    694   1.4  mycroft  *	Read in a character from the window.
    695   1.1      cgd  */
    696   1.4  mycroft int
    697  1.18    blymn wgetch(WINDOW *win)
    698   1.4  mycroft {
    699  1.30   itojun 	int inp, weset;
    700  1.30   itojun 	int c;
    701  1.35    blymn 	FILE *infd = _cursesi_screen->infd;
    702   1.1      cgd 
    703   1.5      cgd 	if (!(win->flags & __SCROLLOK) && (win->flags & __FULLWIN)
    704  1.10      mrg 	    && win->curx == win->maxx - 1 && win->cury == win->maxy - 1
    705  1.10      mrg 	    && __echoit)
    706   1.4  mycroft 		return (ERR);
    707  1.25      jdc 
    708  1.32   itojun 	if (is_wintouched(win))
    709  1.32   itojun 		wrefresh(win);
    710   1.4  mycroft #ifdef DEBUG
    711  1.19      jdc 	__CTRACE("wgetch: __echoit = %d, __rawmode = %d, flags = %0.2o\n",
    712  1.19      jdc 	    __echoit, __rawmode, win->flags);
    713   1.4  mycroft #endif
    714   1.4  mycroft 	if (__echoit && !__rawmode) {
    715   1.1      cgd 		cbreak();
    716   1.4  mycroft 		weset = 1;
    717   1.4  mycroft 	} else
    718   1.4  mycroft 		weset = 0;
    719   1.4  mycroft 
    720  1.10      mrg 	__save_termios();
    721  1.10      mrg 
    722  1.10      mrg 	if (win->flags & __KEYPAD) {
    723  1.10      mrg 		switch (win->delay)
    724  1.10      mrg 		{
    725  1.10      mrg 		case -1:
    726  1.10      mrg 			inp = inkey (win->flags & __NOTIMEOUT ? 0 : 1, 0);
    727  1.10      mrg 			break;
    728  1.10      mrg 		case 0:
    729  1.19      jdc 			if (__nodelay() == ERR) {
    730  1.19      jdc 				__restore_termios();
    731  1.19      jdc 				return ERR;
    732  1.19      jdc 			}
    733  1.10      mrg 			inp = inkey(0, 0);
    734  1.10      mrg 			break;
    735  1.10      mrg 		default:
    736  1.10      mrg 			inp = inkey(win->flags & __NOTIMEOUT ? 0 : 1, win->delay);
    737  1.10      mrg 			break;
    738  1.10      mrg 		}
    739  1.10      mrg 	} else {
    740  1.10      mrg 		switch (win->delay)
    741  1.10      mrg 		{
    742  1.10      mrg 		case -1:
    743  1.10      mrg 			break;
    744  1.10      mrg 		case 0:
    745  1.10      mrg 			if (__nodelay() == ERR) {
    746  1.10      mrg 				__restore_termios();
    747  1.10      mrg 				return ERR;
    748  1.10      mrg 			}
    749  1.10      mrg 			break;
    750  1.10      mrg 		default:
    751  1.10      mrg 			if (__timeout(win->delay) == ERR) {
    752  1.10      mrg 				__restore_termios();
    753  1.10      mrg 				return ERR;
    754  1.10      mrg 			}
    755  1.10      mrg 			break;
    756  1.10      mrg 		}
    757  1.12       pk 
    758  1.22    blymn 		c = getchar();
    759  1.35    blymn 		if (feof(infd)) {
    760  1.35    blymn 			clearerr(infd);
    761  1.22    blymn 			__restore_termios();
    762  1.22    blymn 			return ERR;	/* we have timed out */
    763  1.22    blymn 		}
    764  1.22    blymn 
    765  1.35    blymn 		if (ferror(infd)) {
    766  1.35    blymn 			clearerr(infd);
    767  1.10      mrg 			inp = ERR;
    768  1.12       pk 		} else {
    769  1.30   itojun 			inp = c;
    770  1.10      mrg 		}
    771  1.10      mrg 	}
    772   1.4  mycroft #ifdef DEBUG
    773  1.15   simonb 	if (inp > 255)
    774  1.20    blymn 		  /* we have a key symbol - treat it differently */
    775  1.20    blymn 		  /* XXXX perhaps __unctrl should be expanded to include
    776  1.20    blymn 		   * XXXX the keysyms in the table....
    777  1.20    blymn 		   */
    778  1.15   simonb 		__CTRACE("wgetch assembled keysym 0x%x\n", inp);
    779  1.15   simonb 	else
    780  1.15   simonb 		__CTRACE("wgetch got '%s'\n", unctrl(inp));
    781   1.4  mycroft #endif
    782  1.12       pk 	if (win->delay > -1) {
    783  1.10      mrg 		if (__delay() == ERR) {
    784  1.10      mrg 			__restore_termios();
    785  1.10      mrg 			return ERR;
    786  1.10      mrg 		}
    787  1.12       pk 	}
    788  1.12       pk 
    789  1.10      mrg 	__restore_termios();
    790  1.27    blymn 
    791  1.26  mycroft 	if (__echoit)
    792  1.16    blymn 		waddch(win, (chtype) inp);
    793  1.27    blymn 
    794   1.1      cgd 	if (weset)
    795   1.1      cgd 		nocbreak();
    796  1.12       pk 
    797  1.10      mrg 	return ((inp < 0) || (inp == ERR) ? ERR : inp);
    798  1.22    blymn }
    799  1.22    blymn 
    800  1.22    blymn /*
    801  1.22    blymn  * ungetch --
    802  1.22    blymn  *     Put the character back into the input queue.
    803  1.22    blymn  */
    804  1.22    blymn int
    805  1.22    blymn ungetch(int c)
    806  1.22    blymn {
    807  1.35    blymn 	return ((ungetc(c, _cursesi_screen->infd) == EOF) ? ERR : OK);
    808   1.1      cgd }
    809