Annotation of uae/src/keybuf.c, revision 1.1.1.5

1.1.1.3   root        1:  /*
1.1       root        2:   * UAE - The Un*x Amiga Emulator
1.1.1.3   root        3:   *
1.1       root        4:   * Keyboard buffer. Not really needed for X, but for SVGAlib and possibly
                      5:   * Mac and DOS ports.
1.1.1.3   root        6:   *
                      7:   * Note: it's possible to have two threads in UAE, one reading keystrokes
                      8:   * and the other one writing them. Despite this, no synchronization effort
                      9:   * is needed. This code should be perfectly thread safe. At least if you
                     10:   * assume that integer store instructions are atomic.
                     11:   *
                     12:   * Copyright 1995, 1997 Bernd Schmidt
1.1       root       13:   */
                     14: 
                     15: #include "sysconfig.h"
                     16: #include "sysdeps.h"
                     17: #include <assert.h>
                     18: 
                     19: #include "config.h"
                     20: #include "options.h"
                     21: #include "keybuf.h"
                     22: #include "keyboard.h"
1.1.1.3   root       23: #include "joystick.h"
1.1.1.5 ! root       24: #include "custom.h"
1.1       root       25: 
1.1.1.5 ! root       26: static int fakestate[3][6] = { { 0, 0, 0, 0, 0, 0 }, { 0, 0, 0, 0, 0, 0 }, { 0, 0, 0, 0, 0, 0 } };
1.1       root       27: 
1.1.1.3   root       28: static int *fs_np;
                     29: static int *fs_ck;
                     30: static int *fs_se;
                     31: 
                     32: void getjoystate(int nr, unsigned int *st, int *button)
1.1       root       33: {
1.1.1.3   root       34:     int *fake = 0;
                     35: 
1.1.1.4   root       36:     if (JSEM_ISJOY0 (nr, &currprefs))
1.1.1.3   root       37:        nr = 0;
1.1.1.4   root       38:     else if (JSEM_ISJOY1 (nr, &currprefs))
1.1.1.3   root       39:        nr = 1;
1.1.1.4   root       40:     else if (JSEM_ISMOUSE (nr, &currprefs)) {
1.1.1.3   root       41:        *st = 0;
                     42:        *button = 0;
                     43:        return;
                     44:     } else
                     45:        fake = fakestate[nr];
                     46: 
                     47:     if (fake) {
                     48:        int top = fake[0];
                     49:        int bot = fake[3];
                     50:        if (fake[1]) top = !top;
                     51:        if (fake[2]) bot = !bot;
                     52:        *st = bot | (fake[2] << 1) | (top << 8) | (fake[1] << 9);
                     53:        *button = fake[4];
1.1.1.5 ! root       54:        if (! fake[4] && fake[5] && (n_frames & 1))
        !            55:            *button = 1;
1.1       root       56:     } else
1.1.1.3   root       57:        read_joystick (nr, st, button);
1.1       root       58: }
                     59: 
                     60: /* Not static so the DOS code can mess with them */
                     61: int kpb_first, kpb_last;
                     62: 
1.1.1.2   root       63: int keybuf[256];
1.1       root       64: 
                     65: int keys_available (void)
                     66: {
1.1.1.3   root       67:     int val;
                     68:     val = kpb_first != kpb_last;
                     69:     return val;
1.1       root       70: }
                     71: 
                     72: int get_next_key (void)
                     73: {
                     74:     int key;
                     75:     assert (kpb_first != kpb_last);
1.1.1.3   root       76: 
1.1       root       77:     key = keybuf[kpb_last];
1.1.1.3   root       78:     if (++kpb_last == 256)
1.1       root       79:        kpb_last = 0;
1.1.1.3   root       80:     return key;
1.1       root       81: }
                     82: 
                     83: void record_key (int kc)
                     84: {
                     85:     int kpb_next = kpb_first + 1;
                     86: 
                     87:     if (kpb_next == 256)
                     88:        kpb_next = 0;
                     89:     if (kpb_next == kpb_last) {
1.1.1.3   root       90:        write_log ("Keyboard buffer overrun. Congratulations.\n");
1.1       root       91:        return;
                     92:     }
1.1.1.3   root       93:     if (fs_np != 0) {
                     94:        switch (kc >> 1) {
1.1.1.5 ! root       95:        case AK_NP8: fs_np[0] = !(kc & 1); return;
        !            96:        case AK_NP4: fs_np[1] = !(kc & 1); return;
        !            97:        case AK_NP6: fs_np[2] = !(kc & 1); return;
        !            98:        case AK_NP2: fs_np[3] = !(kc & 1); return;
        !            99:        case AK_NP0: case AK_NP5: fs_np[4] = !(kc & 1); return;
        !           100:        case AK_NPDEL: case AK_NPDIV: case AK_ENT: if (! (kc & 1)) fs_np[5] = ! fs_np[5]; return;
1.1.1.3   root      101:        }
                    102:     }
                    103:     if (fs_ck != 0) {
1.1       root      104:        switch (kc >> 1) {
1.1.1.5 ! root      105:        case AK_UP: fs_ck[0] = !(kc & 1); return;
        !           106:        case AK_LF: fs_ck[1] = !(kc & 1); return;
        !           107:        case AK_RT: fs_ck[2] = !(kc & 1); return;
        !           108:        case AK_DN: fs_ck[3] = !(kc & 1); return;
        !           109:        case AK_RCTRL: fs_ck[4] = !(kc & 1); return;
        !           110:        case AK_RSH: if (! (kc & 1)) fs_ck[5] = ! fs_ck[5]; return;
1.1       root      111:        }
                    112:     }
1.1.1.3   root      113:     if (fs_se != 0) {
                    114:        switch (kc >> 1) {
1.1.1.5 ! root      115:        case AK_T: fs_se[0] = !(kc & 1); return;
        !           116:        case AK_F: fs_se[1] = !(kc & 1); return;
        !           117:        case AK_H: fs_se[2] = !(kc & 1); return;
        !           118:        case AK_B: fs_se[3] = !(kc & 1); return;
        !           119:        case AK_LALT: fs_se[4] = !(kc & 1); return;
        !           120:        case AK_LSH: if (! (kc & 1)) fs_se[5] = ! fs_se[5]; return;
1.1.1.3   root      121:        }
                    122:     }
1.1.1.4   root      123:     if ((kc >> 1) == AK_RCTRL) {
                    124:        kc ^= AK_RCTRL << 1;
                    125:        kc ^= AK_CTRL << 1;
                    126:     }
1.1       root      127:     keybuf[kpb_first] = kc;
                    128:     kpb_first = kpb_next;
                    129: }
                    130: 
1.1.1.3   root      131: void joystick_setting_changed (void)
                    132: {
                    133:     fs_np = fs_ck = fs_se = 0;
                    134: 
1.1.1.4   root      135:     if (JSEM_ISNUMPAD (0, &currprefs))
1.1.1.3   root      136:        fs_np = fakestate[0];
1.1.1.4   root      137:     else if (JSEM_ISNUMPAD (1, &currprefs))
1.1.1.3   root      138:        fs_np = fakestate[1];
                    139: 
1.1.1.4   root      140:     if (JSEM_ISCURSOR (0, &currprefs))
1.1.1.3   root      141:        fs_ck = fakestate[0];
1.1.1.4   root      142:     else if (JSEM_ISCURSOR (1, &currprefs))
1.1.1.3   root      143:        fs_ck = fakestate[1];
                    144: 
1.1.1.4   root      145:     if (JSEM_ISSOMEWHEREELSE (0, &currprefs))
1.1.1.3   root      146:        fs_se = fakestate[0];
1.1.1.4   root      147:     else if (JSEM_ISSOMEWHEREELSE (1, &currprefs))
1.1.1.3   root      148:        fs_se = fakestate[1];
                    149: 
                    150: }
                    151: 
1.1       root      152: void keybuf_init (void)
                    153: {
                    154:     kpb_first = kpb_last = 0;
1.1.1.3   root      155:     joystick_setting_changed ();
1.1       root      156: }

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