Annotation of uae/src/custom.c, revision 1.1.1.19

1.1       root        1:  /*
                      2:   * UAE - The Un*x Amiga Emulator
1.1.1.3   root        3:   *
1.1       root        4:   * Custom chip emulation
1.1.1.3   root        5:   *
1.1.1.15  root        6:   * Copyright 1995-2001 Bernd Schmidt
1.1.1.2   root        7:   * Copyright 1995 Alessandro Bissacco
1.1.1.15  root        8:   * Copyright 2000,2001 Toni Wilen
1.1       root        9:   */
                     10: 
                     11: #include "sysconfig.h"
                     12: #include "sysdeps.h"
                     13: 
                     14: #include <ctype.h>
                     15: #include <assert.h>
                     16: 
                     17: #include "config.h"
                     18: #include "options.h"
1.1.1.16  root       19: #include "threaddep/thread.h"
1.1.1.3   root       20: #include "uae.h"
                     21: #include "gensound.h"
                     22: #include "sounddep/sound.h"
1.1       root       23: #include "events.h"
                     24: #include "memory.h"
                     25: #include "custom.h"
                     26: #include "newcpu.h"
                     27: #include "cia.h"
                     28: #include "disk.h"
                     29: #include "blitter.h"
                     30: #include "xwin.h"
1.1.1.3   root       31: #include "joystick.h"
                     32: #include "audio.h"
1.1       root       33: #include "keybuf.h"
                     34: #include "serial.h"
1.1.1.2   root       35: #include "osemu.h"
1.1.1.3   root       36: #include "autoconf.h"
                     37: #include "gui.h"
                     38: #include "picasso96.h"
1.1.1.4   root       39: #include "drawing.h"
1.1.1.15  root       40: #include "savestate.h"
1.1.1.2   root       41: 
1.1.1.6   root       42: static unsigned int n_consecutive_skipped = 0;
                     43: static unsigned int total_skipped = 0;
                     44: 
1.1.1.3   root       45: #define SPRITE_COLLISIONS
1.1.1.2   root       46: 
1.1.1.3   root       47: /* Mouse and joystick emulation */
1.1.1.2   root       48: 
1.1.1.3   root       49: int buttonstate[3];
                     50: static int mouse_x, mouse_y;
                     51: int joy0button, joy1button;
                     52: unsigned int joy0dir, joy1dir;
                     53: 
                     54: /* Events */
1.1       root       55: 
1.1.1.14  root       56: unsigned long int currcycle, nextevent, is_lastline;
1.1.1.4   root       57: static int rpt_did_reset;
1.1.1.2   root       58: struct ev eventtab[ev_max];
                     59: 
1.1.1.3   root       60: frame_time_t vsynctime, vsyncmintime;
                     61: 
1.1.1.4   root       62: static int vpos;
                     63: static uae_u16 lof;
                     64: static int next_lineno;
                     65: static enum nln_how nextline_how;
                     66: static int lof_changed = 0;
1.1       root       67: 
1.1.1.3   root       68: static uae_u32 sprtaba[256],sprtabb[256];
1.1.1.13  root       69: static uae_u32 sprite_ab_merge[256];
                     70: /* Tables for collision detection.  */
                     71: static uae_u32 sprclx[16], clxmask[16];
1.1.1.3   root       72: 
1.1.1.2   root       73: /*
                     74:  * Hardware registers of all sorts.
                     75:  */
1.1       root       76: 
1.1.1.4   root       77: static void custom_wput_1 (int, uaecptr, uae_u32) REGPARAM;
                     78: 
1.1.1.3   root       79: static uae_u16 cregs[256];
1.1       root       80: 
1.1.1.3   root       81: uae_u16 intena,intreq;
                     82: uae_u16 dmacon;
                     83: uae_u16 adkcon; /* used by audio code */
1.1       root       84: 
1.1.1.3   root       85: static uae_u32 cop1lc,cop2lc,copcon;
1.1.1.7   root       86:  
                     87: int maxhpos = MAXHPOS_PAL;
                     88: int maxvpos = MAXVPOS_PAL;
                     89: int minfirstline = MINFIRSTLINE_PAL;
                     90: int vblank_endline = VBLANK_ENDLINE_PAL;
                     91: int vblank_hz = VBLANK_HZ_PAL;
                     92: unsigned long syncbase;
                     93: static int fmode;
                     94: static unsigned int beamcon0, new_beamcon0;
                     95: 
1.1.1.15  root       96: #define MAX_SPRITES 8
1.1       root       97: 
1.1.1.2   root       98: /* This is but an educated guess. It seems to be correct, but this stuff
                     99:  * isn't documented well. */
1.1.1.3   root      100: enum sprstate { SPR_stop, SPR_restart, SPR_waiting_start, SPR_waiting_stop };
1.1.1.10  root      101: 
                    102: struct sprite {
                    103:     uaecptr pt;
                    104:     int on;
                    105:     int xpos;
                    106:     int vstart;
                    107:     int vstop;
                    108:     int armed;
                    109:     enum sprstate state;
                    110: };
                    111: 
                    112: static struct sprite spr[8];
                    113: 
                    114: static int sprite_vblank_endline = VBLANK_ENDLINE_NTSC + 2;
1.1       root      115: 
1.1.1.15  root      116: static unsigned int sprctl[MAX_SPRITES], sprpos[MAX_SPRITES];
                    117: static uae_u16 sprdata[MAX_SPRITES][4], sprdatb[MAX_SPRITES][4];
1.1.1.10  root      118: static int sprite_last_drawn_at[MAX_SPRITES];
1.1.1.7   root      119: static int last_sprite_point, nr_armed;
1.1.1.15  root      120: static int sprite_width, sprres, sprite_buffer_res;
1.1.1.7   root      121: 
1.1.1.6   root      122: static uae_u32 bpl1dat, bpl2dat, bpl3dat, bpl4dat, bpl5dat, bpl6dat, bpl7dat, bpl8dat;
                    123: static uae_s16 bpl1mod, bpl2mod;
1.1       root      124: 
1.1.1.3   root      125: static uaecptr bplpt[8];
1.1.1.10  root      126: uae_u8 *real_bplpt[8];
1.1.1.15  root      127: /* Used as a debugging aid, to offset any bitplane temporarily.  */
1.1.1.16  root      128: int bpl_off[8];
1.1       root      129: 
                    130: /*static int blitcount[256];  blitter debug */
                    131: 
1.1.1.2   root      132: static struct color_entry current_colors;
1.1.1.6   root      133: static unsigned int bplcon0, bplcon1, bplcon2, bplcon3, bplcon4;
1.1.1.4   root      134: static unsigned int diwstrt, diwstop, diwhigh;
                    135: static int diwhigh_written;
                    136: static unsigned int ddfstrt, ddfstop;
1.1.1.7   root      137: 
1.1.1.4   root      138: /* The display and data fetch windows */
1.1       root      139: 
1.1.1.4   root      140: enum diw_states
                    141: {
                    142:     DIW_waiting_start, DIW_waiting_stop
                    143: };
1.1       root      144: 
1.1.1.13  root      145: static int plffirstline, plflastline;
                    146: static int plfstrt, plfstop;
                    147: static int last_diw_pix_hpos, last_ddf_pix_hpos, last_decide_line_hpos;
                    148: static int last_fetch_hpos, last_sprite_hpos;
1.1.1.6   root      149: int diwfirstword, diwlastword;
1.1.1.4   root      150: static enum diw_states diwstate, hdiwstate;
1.1       root      151: 
1.1.1.4   root      152: /* Sprite collisions */
1.1.1.14  root      153: static unsigned int clxdat, clxcon, clxcon2, clxcon_bpl_enable, clxcon_bpl_match;
                    154: static int clx_sprmask;
1.1.1.4   root      155: 
                    156: enum copper_states {
                    157:     COP_stop,
1.1.1.15  root      158:     COP_read1_in2,
                    159:     COP_read1_wr_in4,
                    160:     COP_read1_wr_in2,
                    161:     COP_read1,
                    162:     COP_read2_wr_in2,
                    163:     COP_read2,
1.1.1.4   root      164:     COP_bltwait,
1.1.1.15  root      165:     COP_wait_in4,
                    166:     COP_wait_in2,
                    167:     COP_skip_in4,
                    168:     COP_skip_in2,
                    169:     COP_wait1,
                    170:     COP_wait
1.1.1.4   root      171: };
                    172: 
                    173: struct copper {
                    174:     /* The current instruction words.  */
                    175:     unsigned int i1, i2;
1.1.1.15  root      176:     unsigned int saved_i1, saved_i2;
1.1.1.4   root      177:     enum copper_states state;
                    178:     /* Instruction pointer.  */
1.1.1.15  root      179:     uaecptr ip, saved_ip;
1.1.1.10  root      180:     int hpos, vpos;
1.1.1.4   root      181:     unsigned int ignore_next;
1.1.1.10  root      182:     int vcmp, hcmp;
1.1.1.15  root      183: 
                    184:     /* When we schedule a copper event, knowing a few things about the future
                    185:        of the copper list can reduce the number of sync_with_cpu calls
                    186:        dramatically.  */
                    187:     unsigned int first_sync;
                    188:     unsigned int regtypes_modified;
1.1.1.4   root      189: };
                    190: 
1.1.1.15  root      191: #define REGTYPE_NONE 0
                    192: #define REGTYPE_COLOR 1
                    193: #define REGTYPE_SPRITE 2
                    194: #define REGTYPE_PLANE 4
                    195: #define REGTYPE_BLITTER 8
                    196: #define REGTYPE_JOYPORT 16
                    197: #define REGTYPE_DISK 32
                    198: #define REGTYPE_POS 64
                    199: #define REGTYPE_AUDIO 128
                    200: 
                    201: #define REGTYPE_ALL 255
                    202: /* Always set in regtypes_modified, to enable a forced update when things like
                    203:    DMACON, BPLCON0, COPJMPx get written.  */
                    204: #define REGTYPE_FORCE 256
                    205: 
                    206: 
                    207: static unsigned int regtypes[512];
                    208: 
1.1.1.4   root      209: static struct copper cop_state;
1.1.1.10  root      210: static int copper_enabled_thisline;
                    211: static int cop_min_waittime;
1.1       root      212: 
                    213: /*
                    214:  * Statistics
                    215:  */
                    216: 
1.1.1.2   root      217: /* Used also by bebox.cpp */
1.1.1.6   root      218: unsigned long int msecs = 0, frametime = 0, lastframetime = 0, timeframes = 0;
1.1       root      219: static unsigned long int seconds_base;
                    220: int bogusframe;
1.1.1.12  root      221: int n_frames;
1.1.1.4   root      222: 
1.1.1.15  root      223: #define DEBUG_COPPER 0
                    224: #if DEBUG_COPPER
                    225: /* 10000 isn't enough!  */
                    226: #define NR_COPPER_RECORDS 40000
                    227: #else
                    228: #define NR_COPPER_RECORDS 1
                    229: #endif
                    230: 
                    231: /* Record copper activity for the debugger.  */
                    232: struct cop_record
                    233: {
                    234:   int hpos, vpos;
                    235:   uaecptr addr;
                    236: };
                    237: static struct cop_record cop_record[2][NR_COPPER_RECORDS];
                    238: static int nr_cop_records[2];
                    239: static int curr_cop_set;
                    240: 
                    241: /* Recording of custom chip register changes.  */
1.1.1.4   root      242: static int current_change_set;
                    243: 
                    244: #ifdef OS_WITHOUT_MEMORY_MANAGEMENT
                    245: /* sam: Those arrays uses around 7Mb of BSS... That seems  */
                    246: /* too much for AmigaDOS (uae crashes as soon as one loads */
                    247: /* it. So I use a different strategy here (realloc the     */
                    248: /* arrays when needed. That strategy might be usefull for  */
                    249: /* computer with low memory.                               */
1.1.1.13  root      250: struct sprite_entry  *sprite_entries[2];
1.1.1.4   root      251: struct color_change *color_changes[2];
1.1.1.13  root      252: static int max_sprite_entry = 400;
                    253: static int delta_sprite_entry = 0;
1.1.1.4   root      254: static int max_color_change = 400;
                    255: static int delta_color_change = 0;
                    256: #else
1.1.1.13  root      257: struct sprite_entry sprite_entries[2][MAX_SPR_PIXELS / 16];
1.1.1.4   root      258: struct color_change color_changes[2][MAX_REG_CHANGE];
                    259: #endif
                    260: 
1.1.1.7   root      261: struct decision line_decisions[2 * (MAXVPOS + 1) + 1];
                    262: struct draw_info line_drawinfo[2][2 * (MAXVPOS + 1) + 1];
                    263: struct color_entry color_tables[2][(MAXVPOS + 1) * 2];
1.1.1.4   root      264: 
1.1.1.13  root      265: static int next_sprite_entry = 0;
                    266: static int prev_next_sprite_entry;
                    267: static int next_sprite_forced = 1;
                    268: 
                    269: struct sprite_entry *curr_sprite_entries, *prev_sprite_entries;
1.1.1.4   root      270: struct color_change *curr_color_changes, *prev_color_changes;
                    271: struct draw_info *curr_drawinfo, *prev_drawinfo;
                    272: struct color_entry *curr_color_tables, *prev_color_tables;
                    273: 
1.1.1.13  root      274: static int next_color_change;
1.1.1.4   root      275: static int next_color_entry, remembered_color_entry;
                    276: static int color_src_match, color_dest_match, color_compare_result;
                    277: 
1.1.1.13  root      278: static uae_u32 thisline_changed;
1.1.1.4   root      279: 
                    280: #ifdef SMART_UPDATE
1.1.1.5   root      281: #define MARK_LINE_CHANGED do { thisline_changed = 1; } while (0)
1.1.1.4   root      282: #else
1.1.1.5   root      283: #define MARK_LINE_CHANGED do { ; } while (0)
1.1.1.4   root      284: #endif
                    285: 
                    286: static struct decision thisline_decision;
1.1.1.13  root      287: static int passed_plfstop, fetch_cycle;
                    288: 
                    289: enum fetchstate {
                    290:     fetch_not_started,
                    291:     fetch_started,
                    292:     fetch_was_plane0
                    293: } fetch_state;
1.1.1.4   root      294: 
1.1       root      295: /*
                    296:  * helper functions
                    297:  */
                    298: 
1.1.1.15  root      299: uae_u32 get_copper_address (int copno)
                    300: {
                    301:     switch (copno) {
                    302:     case 1: return cop1lc;
                    303:     case 2: return cop2lc;
                    304:     default: return 0;
                    305:     }
                    306: }
                    307: 
                    308: STATIC_INLINE void record_copper (uaecptr addr, int hpos, int vpos)
                    309: {
                    310: #if DEBUG_COPPER
                    311:     int t = nr_cop_records[curr_cop_set];
                    312:     if (t < NR_COPPER_RECORDS) {
                    313:        cop_record[curr_cop_set][t].addr = addr;
                    314:        cop_record[curr_cop_set][t].hpos = hpos;
                    315:        cop_record[curr_cop_set][t].vpos = vpos;
                    316:        nr_cop_records[curr_cop_set] = t + 1;
                    317:     }
                    318: #endif
                    319: }
                    320: 
                    321: int find_copper_record (uaecptr addr, int *phpos, int *pvpos)
                    322: {
                    323:     int s = curr_cop_set ^ 1;
                    324:     int t = nr_cop_records[s];
                    325:     int i;
                    326:     for (i = 0; i < t; i++) {
                    327:        if (cop_record[s][i].addr == addr) {
                    328:            *phpos = cop_record[s][i].hpos;
                    329:            *pvpos = cop_record[s][i].vpos;
                    330:            return 1;
                    331:        }
                    332:     }
                    333:     return 0;
                    334: }
                    335: 
1.1.1.4   root      336: int rpt_available = 0;
1.1.1.3   root      337: 
1.1.1.4   root      338: void reset_frame_rate_hack (void)
                    339: {
                    340:     if (currprefs.m68k_speed != -1)
                    341:        return;
                    342: 
                    343:     if (! rpt_available) {
                    344:        currprefs.m68k_speed = 0;
                    345:        return;
                    346:     }
1.1.1.3   root      347: 
1.1.1.4   root      348:     rpt_did_reset = 1;
                    349:     is_lastline = 0;
                    350:     vsyncmintime = read_processor_time() + vsynctime;
                    351:     write_log ("Resetting frame rate hack\n");
                    352: }
1.1       root      353: 
1.1.1.3   root      354: void check_prefs_changed_custom (void)
                    355: {
1.1.1.7   root      356:     currprefs.gfx_framerate = changed_prefs.gfx_framerate;
1.1.1.3   root      357:     /* Not really the right place... */
1.1.1.6   root      358:     if (currprefs.jport0 != changed_prefs.jport0
                    359:        || currprefs.jport1 != changed_prefs.jport1) {
                    360:        currprefs.jport0 = changed_prefs.jport0;
                    361:        currprefs.jport1 = changed_prefs.jport1;
1.1.1.3   root      362:        joystick_setting_changed ();
1.1       root      363:     }
1.1.1.3   root      364:     currprefs.immediate_blits = changed_prefs.immediate_blits;
                    365:     currprefs.blits_32bit_enabled = changed_prefs.blits_32bit_enabled;
1.1.1.15  root      366:     currprefs.collision_level = changed_prefs.collision_level;
                    367:     currprefs.fast_copper = changed_prefs.fast_copper;
1.1       root      368: }
                    369: 
1.1.1.8   root      370: STATIC_INLINE void setclr (uae_u16 *p, uae_u16 val)
1.1       root      371: {
1.1.1.6   root      372:     if (val & 0x8000)
1.1       root      373:        *p |= val & 0x7FFF;
1.1.1.6   root      374:     else
1.1       root      375:        *p &= ~val;
                    376: }
                    377: 
1.1.1.3   root      378: __inline__ int current_hpos (void)
1.1       root      379: {
1.1.1.14  root      380:     return (get_cycles () - eventtab[ev_hsync].oldcycles) / CYCLE_UNIT;
1.1       root      381: }
                    382: 
1.1.1.8   root      383: STATIC_INLINE uae_u8 *pfield_xlateptr (uaecptr plpt, int bytecount)
1.1.1.2   root      384: {
1.1.1.4   root      385:     if (!chipmem_bank.check (plpt, bytecount)) {
1.1.1.2   root      386:        static int count = 0;
1.1.1.3   root      387:        if (!count)
                    388:            count++, write_log ("Warning: Bad playfield pointer\n");
1.1.1.2   root      389:        return NULL;
                    390:     }
1.1.1.4   root      391:     return chipmem_bank.xlateaddr (plpt);
1.1.1.2   root      392: }
                    393: 
1.1.1.8   root      394: STATIC_INLINE void docols (struct color_entry *colentry)
1.1.1.3   root      395: {
                    396:     int i;
1.1.1.11  root      397: 
                    398:     if (currprefs.chipset_mask & CSMASK_AGA) {
                    399:         for (i = 0; i < 256; i++) {
                    400:            int v = color_reg_get (colentry, i);
1.1.1.14  root      401:            if (v < 0 || v > 16777215)
1.1.1.11  root      402:                continue;
                    403:            colentry->acolors[i] = CONVERT_RGB (v);
                    404:        }
                    405:     } else {
                    406:         for (i = 0; i < 32; i++) {
                    407:            int v = color_reg_get (colentry, i);
                    408:            if (v < 0 || v > 4095)
                    409:                continue;
                    410:            colentry->acolors[i] = xcolors[v];
                    411:        }
1.1.1.3   root      412:     }
                    413: }
                    414: 
                    415: void notice_new_xcolors (void)
                    416: {
                    417:     int i;
                    418: 
                    419:     docols(&current_colors);
1.1.1.4   root      420: /*    docols(&colors_for_drawing);*/
1.1.1.7   root      421:     for (i = 0; i < (MAXVPOS + 1)*2; i++) {
1.1.1.3   root      422:        docols(color_tables[0]+i);
                    423:        docols(color_tables[1]+i);
                    424:     }
                    425: }
                    426: 
1.1.1.4   root      427: static void do_sprites (int currvp, int currhp);
1.1.1.2   root      428: 
                    429: static void remember_ctable (void)
                    430: {
                    431:     if (remembered_color_entry == -1) {
                    432:        /* The colors changed since we last recorded a color map. Record a
                    433:         * new one. */
1.1.1.11  root      434:        color_reg_cpy (curr_color_tables + next_color_entry, &current_colors);
1.1.1.2   root      435:        remembered_color_entry = next_color_entry++;
                    436:     }
                    437:     thisline_decision.ctable = remembered_color_entry;
                    438:     if (color_src_match == -1 || color_dest_match != remembered_color_entry
                    439:        || line_decisions[next_lineno].ctable != color_src_match)
                    440:     {
                    441:        /* The remembered comparison didn't help us - need to compare again. */
                    442:        int oldctable = line_decisions[next_lineno].ctable;
                    443:        int changed = 0;
                    444: 
1.1.1.3   root      445:        if (oldctable == -1) {
1.1.1.2   root      446:            changed = 1;
                    447:            color_src_match = color_dest_match = -1;
                    448:        } else {
1.1.1.11  root      449:            color_compare_result = color_reg_cmp (&prev_color_tables[oldctable], &current_colors) != 0;
1.1.1.3   root      450:            if (color_compare_result)
                    451:                changed = 1;
                    452:            color_src_match = oldctable;
1.1.1.2   root      453:            color_dest_match = remembered_color_entry;
1.1.1.3   root      454:        }
1.1.1.5   root      455:        thisline_changed |= changed;
1.1.1.3   root      456:     } else {
                    457:        /* We know the result of the comparison */
                    458:        if (color_compare_result)
1.1.1.5   root      459:            thisline_changed = 1;
1.1.1.3   root      460:     }
                    461: }
                    462: 
                    463: static void remember_ctable_for_border (void)
                    464: {
                    465:     remember_ctable ();
1.1.1.2   root      466: }
                    467: 
1.1.1.3   root      468: /* Called to determine the state of the horizontal display window state
                    469:  * machine at the current position. It might have changed since we last
                    470:  * checked.  */
1.1.1.4   root      471: static void decide_diw (int hpos)
1.1.1.2   root      472: {
1.1.1.13  root      473:     int pix_hpos = coord_diw_to_window_x (hpos * 2);
1.1.1.3   root      474:     if (hdiwstate == DIW_waiting_start && thisline_decision.diwfirstword == -1
1.1.1.9   root      475:        && pix_hpos >= diwfirstword && last_diw_pix_hpos < diwfirstword)
1.1.1.3   root      476:     {
1.1.1.13  root      477:        thisline_decision.diwfirstword = diwfirstword < 0 ? 0 : diwfirstword;
1.1.1.3   root      478:        hdiwstate = DIW_waiting_stop;
1.1.1.2   root      479:        thisline_decision.diwlastword = -1;
                    480:     }
1.1.1.3   root      481:     if (hdiwstate == DIW_waiting_stop && thisline_decision.diwlastword == -1
1.1.1.9   root      482:        && pix_hpos >= diwlastword && last_diw_pix_hpos < diwlastword)
1.1.1.3   root      483:     {
1.1.1.13  root      484:        thisline_decision.diwlastword = diwlastword < 0 ? 0 : diwlastword;
1.1.1.3   root      485:        hdiwstate = DIW_waiting_start;
1.1.1.2   root      486:     }
1.1.1.9   root      487:     last_diw_pix_hpos = pix_hpos;
1.1.1.2   root      488: }
                    489: 
1.1.1.13  root      490: /* The HRM says 0xD8, but that can't work... */
                    491: #define HARD_DDF_STOP (0xD4)
1.1.1.2   root      492: 
1.1.1.13  root      493: static void finish_playfield_line (void)
                    494: {
1.1.1.15  root      495:     int m1, m2;
                    496: 
1.1.1.2   root      497:     /* The latter condition might be able to happen in interlaced frames. */
                    498:     if (vpos >= minfirstline && (thisframe_first_drawn_line == -1 || vpos < thisframe_first_drawn_line))
                    499:        thisframe_first_drawn_line = vpos;
                    500:     thisframe_last_drawn_line = vpos;
                    501: 
1.1.1.15  root      502:     if ((currprefs.chipset_mask & CSMASK_AGA) && (fmode & 0x4000)) {
                    503:        if (((diwstrt >> 8) ^ vpos) & 1)
                    504:            m1 = m2 = bpl2mod;
                    505:        else
                    506:            m1 = m2 = bpl1mod;
                    507:     } else {
                    508:        m1 = bpl1mod;
                    509:        m2 = bpl2mod;
                    510:     }
                    511: 
1.1.1.13  root      512:     if (dmaen (DMA_BITPLANE))
1.1.1.16  root      513:        switch (GET_PLANES (bplcon0)) {
1.1.1.15  root      514:        case 8: bplpt[7] += m2;
                    515:        case 7: bplpt[6] += m1;
                    516:        case 6: bplpt[5] += m2;
                    517:        case 5: bplpt[4] += m1;
                    518:        case 4: bplpt[3] += m2;
                    519:        case 3: bplpt[2] += m1;
                    520:        case 2: bplpt[1] += m2;
                    521:        case 1: bplpt[0] += m1;
1.1.1.13  root      522:        }
1.1.1.2   root      523: 
                    524:     /* These are for comparison. */
                    525:     thisline_decision.bplcon0 = bplcon0;
                    526:     thisline_decision.bplcon2 = bplcon2;
1.1.1.14  root      527:     thisline_decision.bplcon3 = bplcon3;
1.1.1.2   root      528:     thisline_decision.bplcon4 = bplcon4;
                    529: 
                    530: #ifdef SMART_UPDATE
1.1.1.13  root      531:     if (line_decisions[next_lineno].plflinelen != thisline_decision.plflinelen
                    532:        || line_decisions[next_lineno].plfleft != thisline_decision.plfleft
1.1.1.2   root      533:        || line_decisions[next_lineno].bplcon0 != thisline_decision.bplcon0
                    534:        || line_decisions[next_lineno].bplcon2 != thisline_decision.bplcon2
1.1.1.14  root      535:        || line_decisions[next_lineno].bplcon3 != thisline_decision.bplcon3
1.1.1.2   root      536:        || line_decisions[next_lineno].bplcon4 != thisline_decision.bplcon4
                    537:        )
                    538: #endif /* SMART_UPDATE */
1.1.1.5   root      539:        thisline_changed = 1;
1.1.1.2   root      540: }
                    541: 
1.1.1.15  root      542: static int fetchmode;
1.1.1.14  root      543: 
1.1.1.15  root      544: /* The fetch unit mainly controls ddf stop.  It's the number of cycles that
                    545:    are contained in an indivisible block during which ddf is active.  E.g.
                    546:    if DDF starts at 0x30, and fetchunit is 8, then possible DDF stops are
                    547:    0x30 + n * 8.  */
                    548: static int fetchunit, fetchunit_mask;
                    549: /* The delay before fetching the same bitplane again.  Can be larger than
                    550:    the number of bitplanes; in that case there are additional empty cycles
                    551:    with no data fetch (this happens for high fetchmodes and low
                    552:    resolutions).  */
1.1.1.14  root      553: static int fetchstart, fetchstart_shift, fetchstart_mask;
1.1.1.15  root      554: /* fm_maxplane holds the maximum number of planes possible with the current
                    555:    fetch mode.  This selects the cycle diagram:
                    556:    8 planes: 73516240
                    557:    4 planes: 3120
                    558:    2 planes: 10.  */
1.1.1.14  root      559: static int fm_maxplane, fm_maxplane_shift;
                    560: 
1.1.1.15  root      561: /* The corresponding values, by fetchmode and display resolution.  */
                    562: static int fetchunits[] = { 8,8,8,0, 16,8,8,0, 32,16,8,0 };
                    563: static int fetchstarts[] = { 3,2,1,0, 4,3,2,0, 5,4,3,0 };
                    564: static int fm_maxplanes[] = { 3,2,1,0, 3,3,2,0, 3,3,3,0 }; 
                    565: 
1.1.1.16  root      566: static int cycle_diagram_table[3][3][9][32];
                    567: static int *curr_diagram;
                    568: static int cycle_sequences[3*8] = { 2,1,2,1,2,1,2,1, 4,2,3,1,4,2,3,1, 8,4,6,2,7,3,5,1 };
                    569: 
                    570: static void debug_cycle_diagram(void)
                    571: {
                    572:     int fm, res, planes, cycle, v;
                    573:     char aa;
                    574: 
                    575:     for (fm = 0; fm < 3; fm++) {
                    576:        write_log ("FMODE %d\n=======\n", fm);
                    577:        for (res = 0; res <= 2; res++) {
                    578:            for (planes = 0; planes <= 8; planes++) {
                    579:                write_log("%d: ",planes);
                    580:                for (cycle = 0; cycle < 32; cycle++) {
                    581:                    v=cycle_diagram_table[fm][res][planes][cycle];
                    582:                    if (v==0) aa='-'; else if(v>0) aa='1'; else aa='X';
                    583:                    write_log("%c",aa);
                    584:                }
                    585:                write_log("\n");
                    586:            }
                    587:            write_log("\n");
                    588:        }
                    589:     }
                    590:     fm=0;
                    591: }
                    592: 
                    593: static void create_cycle_diagram_table(void)
                    594: {
                    595:     int fm, res, cycle, planes, v;
                    596:     int fetch_start, max_planes;
                    597:     int *cycle_sequence;
                    598: 
                    599:     for (fm = 0; fm <= 2; fm++) {
                    600:        for (res = 0; res <= 2; res++) {
                    601:            max_planes = fm_maxplanes[fm * 4 + res];
                    602:            fetch_start = 1 << fetchstarts[fm * 4 + res];
                    603:            cycle_sequence = &cycle_sequences[(max_planes - 1) * 8];
                    604:            max_planes = 1 << max_planes;
                    605:            for (planes = 0; planes <= 8; planes++) {
                    606:                for (cycle = 0; cycle < 32; cycle++)
                    607:                    cycle_diagram_table[fm][res][planes][cycle] = -1;
                    608:                if (planes <= max_planes) {
                    609:                    for (cycle = 0; cycle < fetch_start; cycle++) {
                    610:                        if (cycle < max_planes && planes >= cycle_sequence[cycle & 7]) {
                    611:                            v = 1;
                    612:                        } else {
                    613:                            v = 0;
                    614:                        }
                    615:                        cycle_diagram_table[fm][res][planes][cycle] = v;
                    616:                    }
                    617:                }
                    618:            }
                    619:        }
                    620:     }
                    621: #if 0
                    622:     debug_cycle_diagram ();
                    623: #endif
                    624: }
                    625: 
                    626: 
1.1.1.15  root      627: /* Used by the copper.  */
1.1.1.13  root      628: static int estimated_last_fetch_cycle;
1.1.1.15  root      629: static int cycle_diagram_shift;
1.1.1.4   root      630: 
1.1.1.13  root      631: static void estimate_last_fetch_cycle (int hpos)
1.1.1.2   root      632: {
1.1.1.14  root      633:     int fetchunit = fetchunits[fetchmode * 4 + GET_RES (bplcon0)];
                    634: 
1.1.1.13  root      635:     if (! passed_plfstop) {
                    636:        int stop = plfstop < hpos || plfstop > HARD_DDF_STOP ? HARD_DDF_STOP : plfstop;
                    637:        /* We know that fetching is up-to-date up until hpos, so we can use fetch_cycle.  */
                    638:        int fetch_cycle_at_stop = fetch_cycle + (stop - hpos);
1.1.1.14  root      639:        int starting_last_block_at = (fetch_cycle_at_stop + fetchunit - 1) & ~(fetchunit - 1);
1.1.1.13  root      640: 
1.1.1.14  root      641:        estimated_last_fetch_cycle = hpos + (starting_last_block_at - fetch_cycle) + fetchunit;
1.1.1.13  root      642:     } else {
1.1.1.14  root      643:        int starting_last_block_at = (fetch_cycle + fetchunit - 1) & ~(fetchunit - 1);
1.1.1.13  root      644:        if (passed_plfstop == 2)
1.1.1.14  root      645:            starting_last_block_at -= fetchunit;
1.1.1.13  root      646: 
1.1.1.14  root      647:        estimated_last_fetch_cycle = hpos + (starting_last_block_at - fetch_cycle) + fetchunit;
1.1.1.13  root      648:     }
1.1.1.4   root      649: }
                    650: 
1.1.1.14  root      651: static uae_u32 outword[MAX_PLANES];
1.1.1.13  root      652: static int out_nbits, out_offs;
1.1.1.14  root      653: static uae_u32 todisplay[MAX_PLANES][4];
                    654: static uae_u32 fetched[MAX_PLANES];
                    655: static uae_u32 fetched_aga0[MAX_PLANES];
                    656: static uae_u32 fetched_aga1[MAX_PLANES];
1.1.1.13  root      657: 
                    658: /* Expansions from bplcon0/bplcon1.  */
1.1.1.14  root      659: static int toscr_res, toscr_delay1, toscr_delay2, toscr_nr_planes, fetchwidth;
1.1.1.13  root      660: 
1.1.1.14  root      661: /* The number of bits left from the last fetched words.  
                    662:    This is an optimization - conceptually, we have to make sure the result is
                    663:    the same as if toscr is called in each clock cycle.  However, to speed this
                    664:    up, we accumulate display data; this variable keeps track of how much. 
                    665:    Thus, once we do call toscr_nbits (which happens at least every 16 bits),
                    666:    we can do more work at once.  */
1.1.1.13  root      667: static int toscr_nbits;
                    668: 
1.1.1.14  root      669: static int delayoffset;
                    670: 
                    671: STATIC_INLINE void compute_delay_offset (int hpos)
1.1.1.4   root      672: {
1.1.1.14  root      673:     /* this fixes most horizontal scrolling jerkyness but can't be correct */
1.1.1.15  root      674:     delayoffset = ((hpos - fm_maxplane - 0x18) & fetchstart_mask) << 1;
1.1.1.14  root      675:     delayoffset &= ~7;
1.1.1.16  root      676:     if (delayoffset & 8)
                    677:        delayoffset = 8;
                    678:     else if (delayoffset & 16)
                    679:        delayoffset = 16;
                    680:     else if (delayoffset & 32)
                    681:        delayoffset = 32;
                    682:     else
                    683:        delayoffset = 0;
1.1.1.13  root      684: }
1.1.1.9   root      685: 
1.1.1.15  root      686: static void expand_fmodes (void)
1.1.1.14  root      687: {
                    688:     int res = GET_RES(bplcon0);
                    689:     int fm = fetchmode;
                    690:     fetchunit = fetchunits[fm * 4 + res];
                    691:     fetchunit_mask = fetchunit - 1;
                    692:     fetchstart_shift = fetchstarts[fm * 4 + res];
                    693:     fetchstart = 1 << fetchstart_shift;
                    694:     fetchstart_mask = fetchstart - 1;
                    695:     fm_maxplane_shift = fm_maxplanes[fm * 4 + res];
                    696:     fm_maxplane = 1 << fm_maxplane_shift;
1.1.1.13  root      697: }
                    698: 
1.1.1.15  root      699: static int maxplanes_ocs[]={ 6,4,0,0 };
                    700: static int maxplanes_ecs[]={ 6,4,2,0 };
                    701: static int maxplanes_aga[]={ 8,4,2,0, 8,8,4,0, 8,8,8,0 };
                    702: 
1.1.1.13  root      703: /* Expand bplcon0/bplcon1 into the toscr_xxx variables.  */
1.1.1.15  root      704: static void compute_toscr_delay_1 (void)
1.1.1.13  root      705: {
                    706:     int delay1 = (bplcon1 & 0x0f) | ((bplcon1 & 0x0c00) >> 6);
                    707:     int delay2 = ((bplcon1 >> 4) & 0x0f) | (((bplcon1 >> 4) & 0x0c00) >> 6);
                    708:     int delaymask;
1.1.1.14  root      709:     int fetchwidth = 16 << fetchmode;
1.1.1.13  root      710: 
1.1.1.14  root      711:     delay1 += delayoffset;
                    712:     delay2 += delayoffset;
                    713:     delaymask = (fetchwidth - 1) >> toscr_res;
1.1.1.13  root      714:     toscr_delay1 = (delay1 & delaymask) << toscr_res;
                    715:     toscr_delay2 = (delay2 & delaymask) << toscr_res;
1.1.1.15  root      716: }
                    717: 
                    718: static void compute_toscr_delay (int hpos)
                    719: {
                    720:     int v = bplcon0;
                    721:     int *planes;
                    722: 
                    723:     if (currprefs.chipset_mask & CSMASK_AGA)
                    724:        planes = maxplanes_aga;
                    725:     else if (! (currprefs.chipset_mask & CSMASK_ECS_DENISE))
                    726:        planes = maxplanes_ocs;
                    727:     else
                    728:        planes = maxplanes_ecs;
                    729:     /* Disable bitplane DMA if planes > maxplanes.  This is needed e.g. by the
                    730:        Sanity WOC demo (at the "Party Effect").  */
                    731:     if (GET_PLANES(v) > planes[fetchmode*4 + GET_RES (v)])
                    732:        v &= ~0x7010;
                    733:     toscr_res = GET_RES (v);
                    734: 
                    735:     toscr_nr_planes = GET_PLANES (v);
                    736: 
                    737:     compute_toscr_delay_1 ();
                    738: }
                    739: 
                    740: STATIC_INLINE void maybe_first_bpl1dat (int hpos)
                    741: {
                    742:     if (thisline_decision.plfleft == -1) {
                    743:        thisline_decision.plfleft = hpos;
                    744:        compute_delay_offset (hpos);
                    745:        compute_toscr_delay_1 ();
                    746:     }
                    747: }
1.1.1.13  root      748: 
1.1.1.15  root      749: STATIC_INLINE void fetch (int nr, int fm)
                    750: {
                    751:     uaecptr p;
                    752:     if (nr >= toscr_nr_planes)
                    753:        return;
1.1.1.16  root      754:     p = bplpt[nr] + bpl_off[nr];
1.1.1.15  root      755:     switch (fm) {
                    756:     case 0:
                    757:        fetched[nr] = chipmem_wget (p);
                    758:        bplpt[nr] += 2;
                    759:        break;
                    760:     case 1:
                    761:        fetched_aga0[nr] = chipmem_lget (p);
                    762:        bplpt[nr] += 4;
                    763:        break;
                    764:     case 2:
                    765:        fetched_aga1[nr] = chipmem_lget (p);
                    766:        fetched_aga0[nr] = chipmem_lget (p + 4);
                    767:        bplpt[nr] += 8;
                    768:        break;
                    769:     }
                    770:     if (nr == 0)
                    771:        fetch_state = fetch_was_plane0;
1.1.1.13  root      772: }
                    773: 
                    774: static void clear_fetchbuffer (uae_u32 *ptr, int nwords)
                    775: {
                    776:     int i;
                    777: 
                    778:     if (! thisline_changed)
                    779:        for (i = 0; i < nwords; i++)
                    780:            if (ptr[i]) {
                    781:                thisline_changed = 1;
                    782:                break;
1.1.1.4   root      783:            }
1.1.1.13  root      784: 
                    785:     memset (ptr, 0, nwords * 4);
                    786: }
                    787: 
                    788: static void update_toscr_planes (void)
                    789: {
                    790:     if (toscr_nr_planes > thisline_decision.nr_planes) {
                    791:        int j;
                    792:        for (j = thisline_decision.nr_planes; j < toscr_nr_planes; j++)
                    793:            clear_fetchbuffer ((uae_u32 *)(line_data[next_lineno] + 2 * MAX_WORDS_PER_LINE * j), out_offs);
                    794: #if 0
                    795:        if (thisline_decision.nr_planes > 0)
                    796:            printf ("Planes from %d to %d\n", thisline_decision.nr_planes, toscr_nr_planes);
                    797: #endif
                    798:        thisline_decision.nr_planes = toscr_nr_planes;
1.1.1.4   root      799:     }
                    800: }
1.1.1.2   root      801: 
1.1.1.14  root      802: STATIC_INLINE void toscr_3_ecs (int nbits)
1.1.1.7   root      803: {
1.1.1.13  root      804:     int delay1 = toscr_delay1;
                    805:     int delay2 = toscr_delay2;
                    806:     int i;
                    807:     uae_u32 mask = 0xFFFF >> (16 - nbits);
                    808: 
                    809:     for (i = 0; i < toscr_nr_planes; i += 2) {
                    810:        outword[i] <<= nbits;
1.1.1.14  root      811:        outword[i] |= (todisplay[i][0] >> (16 - nbits + delay1)) & mask;
                    812:        todisplay[i][0] <<= nbits;
1.1.1.13  root      813:     }
                    814:     for (i = 1; i < toscr_nr_planes; i += 2) {
                    815:        outword[i] <<= nbits;
1.1.1.14  root      816:        outword[i] |= (todisplay[i][0] >> (16 - nbits + delay2)) & mask;
                    817:        todisplay[i][0] <<= nbits;
                    818:     }
                    819: }
                    820: 
                    821: STATIC_INLINE void shift32plus (uae_u32 *p, int n)
                    822: {
                    823:     uae_u32 t = p[1];
                    824:     t <<= n;
                    825:     t |= p[0] >> (32 - n);
                    826:     p[1] = t;
                    827: }
                    828: 
                    829: STATIC_INLINE void aga_shift (uae_u32 *p, int n, int fm)
                    830: {
                    831:     if (fm == 2) {
                    832:        shift32plus (p + 2, n);
                    833:        shift32plus (p + 1, n);
1.1.1.13  root      834:     }
1.1.1.14  root      835:     shift32plus (p + 0, n);
                    836:     p[0] <<= n;
                    837: }
                    838: 
                    839: STATIC_INLINE void toscr_3_aga (int nbits, int fm)
                    840: {
                    841:     int delay1 = toscr_delay1;
                    842:     int delay2 = toscr_delay2;
                    843:     int i;
                    844:     uae_u32 mask = 0xFFFF >> (16 - nbits);
                    845: 
                    846:     {
                    847:        int offs = (16 << fm) - nbits + delay1;
                    848:        int off1 = offs >> 5;
                    849:        if (off1 == 3)
                    850:            off1 = 2;
                    851:        offs -= off1 * 32;
                    852:        for (i = 0; i < toscr_nr_planes; i += 2) {
                    853:            uae_u32 t0 = todisplay[i][off1];
                    854:            uae_u32 t1 = todisplay[i][off1 + 1];
                    855:            uae_u64 t = (((uae_u64)t1) << 32) | t0;
                    856:            outword[i] <<= nbits;
                    857:            outword[i] |= (t >> offs) & mask;
                    858:            aga_shift (todisplay[i], nbits, fm);
                    859:        }
                    860:     }
                    861:     {
                    862:        int offs = (16 << fm) - nbits + delay2;
                    863:        int off1 = offs >> 5;
                    864:        if (off1 == 3)
                    865:            off1 = 2;
                    866:        offs -= off1 * 32;
                    867:        for (i = 1; i < toscr_nr_planes; i += 2) {
                    868:            uae_u32 t0 = todisplay[i][off1];
                    869:            uae_u32 t1 = todisplay[i][off1 + 1];
                    870:            uae_u64 t = (((uae_u64)t1) << 32) | t0;
                    871:            outword[i] <<= nbits;
                    872:            outword[i] |= (t >> offs) & mask;
                    873:            aga_shift (todisplay[i], nbits, fm);
                    874:        }
                    875:     }
                    876: }
                    877: 
                    878: static void toscr_2_0 (int nbits) { toscr_3_ecs (nbits); }
                    879: static void toscr_2_1 (int nbits) { toscr_3_aga (nbits, 1); }
                    880: static void toscr_2_2 (int nbits) { toscr_3_aga (nbits, 2); }
                    881: 
                    882: STATIC_INLINE void toscr_1 (int nbits, int fm)
                    883: {
                    884:     switch (fm) {
                    885:     case 0:
                    886:        toscr_2_0 (nbits);
                    887:        break;
                    888:     case 1:
                    889:        toscr_2_1 (nbits);
                    890:        break;
                    891:     case 2:
                    892:        toscr_2_2 (nbits);
                    893:        break;
                    894:     }
                    895: 
1.1.1.13  root      896:     out_nbits += nbits;
                    897:     if (out_nbits == 32) {
1.1.1.14  root      898:        int i;
1.1.1.13  root      899:        uae_u8 *dataptr = line_data[next_lineno] + out_offs * 4;
                    900:        /* Don't use toscr_nr_planes here; if the plane count drops during the
                    901:           line we still want the data to be correct for the full number of planes
                    902:           over the full width of the line.  */
                    903:        for (i = 0; i < thisline_decision.nr_planes; i++) {
                    904:            uae_u32 *dataptr32 = (uae_u32 *)dataptr;
                    905:            if (*dataptr32 != outword[i])
                    906:                thisline_changed = 1;
                    907:            *dataptr32 = outword[i];
                    908:            dataptr += MAX_WORDS_PER_LINE * 2;
                    909:        }
                    910:        out_offs++;
                    911:        out_nbits = 0;
                    912:     }
1.1.1.7   root      913: }
                    914: 
1.1.1.14  root      915: static void toscr_fm0 (int);
                    916: static void toscr_fm1 (int);
                    917: static void toscr_fm2 (int);
                    918: 
                    919: STATIC_INLINE void toscr (int nbits, int fm)
                    920: {
                    921:     switch (fm) {
                    922:     case 0: toscr_fm0 (nbits); break;
                    923:     case 1: toscr_fm1 (nbits); break;
                    924:     case 2: toscr_fm2 (nbits); break;
                    925:     }
                    926: }
                    927: 
                    928: STATIC_INLINE void toscr_0 (int nbits, int fm)
1.1.1.4   root      929: {
1.1.1.13  root      930:     int t;
1.1.1.14  root      931: 
1.1.1.13  root      932:     if (nbits > 16) {
1.1.1.14  root      933:        toscr (16, fm);
1.1.1.13  root      934:        nbits -= 16;
1.1.1.2   root      935:     }
1.1.1.3   root      936: 
1.1.1.13  root      937:     t = 32 - out_nbits;
                    938:     if (t < nbits) {
1.1.1.14  root      939:        toscr_1 (t, fm);
1.1.1.13  root      940:        nbits -= t;
                    941:     }
1.1.1.14  root      942:     toscr_1 (nbits, fm);
1.1.1.13  root      943: }
1.1.1.14  root      944: 
                    945: static void toscr_fm0 (int nbits) { toscr_0 (nbits, 0); }
                    946: static void toscr_fm1 (int nbits) { toscr_0 (nbits, 1); }
                    947: static void toscr_fm2 (int nbits) { toscr_0 (nbits, 2); }
                    948: 
                    949: static int flush_plane_data (int fm)
1.1.1.13  root      950: {
                    951:     int i = 0;
1.1.1.14  root      952:     int fetchwidth = 16 << fm;
1.1.1.4   root      953: 
1.1.1.13  root      954:     if (out_nbits <= 16) {
                    955:        i += 16;
1.1.1.14  root      956:        toscr_1 (16, fm);
1.1.1.13  root      957:     }
                    958:     if (out_nbits != 0) {
                    959:        i += 32 - out_nbits;
1.1.1.14  root      960:        toscr_1 (32 - out_nbits, fm);
1.1.1.4   root      961:     }
1.1.1.13  root      962:     i += 32;
1.1.1.10  root      963: 
1.1.1.14  root      964:     toscr_1 (16, fm);
                    965:     toscr_1 (16, fm);
1.1.1.13  root      966:     return i >> (1 + toscr_res);
                    967: }
                    968: 
1.1.1.14  root      969: STATIC_INLINE void flush_display (int fm)
                    970: {
                    971:     if (toscr_nbits > 0 && thisline_decision.plfleft != -1)
                    972:        toscr (toscr_nbits, fm);
                    973:     toscr_nbits = 0;
                    974: }
                    975: 
                    976: /* Called when all planes have been fetched, i.e. when a new block
                    977:    of data is available to be displayed.  The data in fetched[] is
                    978:    moved into todisplay[].  */
                    979: STATIC_INLINE void beginning_of_plane_block (int pos, int dma, int fm)
                    980: {
                    981:     int i;
                    982: 
                    983:     flush_display (fm);
                    984: 
                    985:     if (fm == 0)
                    986:        for (i = 0; i < MAX_PLANES; i++) 
                    987:            todisplay[i][0] |= fetched[i];
                    988:     else
                    989:        for (i = 0; i < MAX_PLANES; i++) {
                    990:            if (fm == 2)
                    991:                todisplay[i][1] = fetched_aga1[i];
                    992:            todisplay[i][0] = fetched_aga0[i];
                    993:        }
                    994: 
                    995:     maybe_first_bpl1dat (pos);
                    996: }
                    997: 
                    998: #define SPEEDUP
                    999: 
                   1000: #ifdef SPEEDUP
                   1001: 
1.1.1.13  root     1002: /* The usual inlining tricks - don't touch unless you know what you are doing.  */
1.1.1.14  root     1003: STATIC_INLINE void long_fetch_ecs (int plane, int nwords, int weird_number_of_bits, int dma)
1.1.1.13  root     1004: {
1.1.1.16  root     1005:     uae_u16 *real_pt = (uae_u16 *)pfield_xlateptr (bplpt[plane] + bpl_off[plane], nwords * 2);
1.1.1.14  root     1006:     int delay = ((plane & 1) ? toscr_delay2 : toscr_delay1);
1.1.1.13  root     1007:     int tmp_nbits = out_nbits;
1.1.1.14  root     1008:     uae_u32 shiftbuffer = todisplay[plane][0];
1.1.1.13  root     1009:     uae_u32 outval = outword[plane];
                   1010:     uae_u32 fetchval = fetched[plane];
                   1011:     uae_u32 *dataptr = (uae_u32 *)(line_data[next_lineno] + 2 * plane * MAX_WORDS_PER_LINE + 4 * out_offs);
                   1012: 
1.1.1.14  root     1013:     if (dma)
                   1014:        bplpt[plane] += nwords * 2;
1.1.1.13  root     1015: 
                   1016:     if (real_pt == 0)
                   1017:        /* @@@ Don't do this, fall back on chipmem_wget instead.  */
1.1.1.4   root     1018:        return;
                   1019: 
1.1.1.13  root     1020:     while (nwords > 0) {
                   1021:        int bits_left = 32 - tmp_nbits;
1.1.1.14  root     1022:        uae_u32 t;
1.1.1.13  root     1023: 
                   1024:        shiftbuffer |= fetchval;
                   1025: 
1.1.1.14  root     1026:        t = (shiftbuffer >> delay) & 0xFFFF;
                   1027: 
1.1.1.13  root     1028:        if (weird_number_of_bits && bits_left < 16) {
                   1029:            outval <<= bits_left;
1.1.1.14  root     1030:            outval |= t >> (16 - bits_left);
1.1.1.13  root     1031:            thisline_changed |= *dataptr ^ outval;
                   1032:            *dataptr++ = outval;
                   1033: 
1.1.1.14  root     1034:            outval = t;
1.1.1.13  root     1035:            tmp_nbits = 16 - bits_left;
1.1.1.14  root     1036:            shiftbuffer <<= 16;
1.1.1.13  root     1037:        } else {
1.1.1.14  root     1038:            outval = (outval << 16) | t;
1.1.1.13  root     1039:            shiftbuffer <<= 16;
                   1040:            tmp_nbits += 16;
                   1041:            if (tmp_nbits == 32) {
                   1042:                thisline_changed |= *dataptr ^ outval;
                   1043:                *dataptr++ = outval;
                   1044:                tmp_nbits = 0;
                   1045:            }
                   1046:        }
                   1047:        nwords--;
1.1.1.14  root     1048:        if (dma) {
                   1049:            fetchval = do_get_mem_word (real_pt);
                   1050:            real_pt++;
                   1051:        }
1.1.1.13  root     1052:     }
                   1053:     fetched[plane] = fetchval;
1.1.1.14  root     1054:     todisplay[plane][0] = shiftbuffer;
1.1.1.13  root     1055:     outword[plane] = outval;
1.1.1.2   root     1056: }
                   1057: 
1.1.1.14  root     1058: STATIC_INLINE void long_fetch_aga (int plane, int nwords, int weird_number_of_bits, int fm, int dma)
                   1059: {
1.1.1.16  root     1060:     uae_u32 *real_pt = (uae_u32 *)pfield_xlateptr (bplpt[plane] + bpl_off[plane], nwords * 2);
1.1.1.14  root     1061:     int delay = ((plane & 1) ? toscr_delay2 : toscr_delay1);
                   1062:     int tmp_nbits = out_nbits;
                   1063:     uae_u32 *shiftbuffer = todisplay[plane];
                   1064:     uae_u32 outval = outword[plane];
                   1065:     uae_u32 fetchval0 = fetched_aga0[plane];
                   1066:     uae_u32 fetchval1 = fetched_aga1[plane];
                   1067:     uae_u32 *dataptr = (uae_u32 *)(line_data[next_lineno] + 2 * plane * MAX_WORDS_PER_LINE + 4 * out_offs);
                   1068:     int offs = (16 << fm) - 16 + delay;
                   1069:     int off1 = offs >> 5;
                   1070:     if (off1 == 3)
                   1071:        off1 = 2;
                   1072:     offs -= off1 * 32;
                   1073: 
                   1074:     if (dma)
                   1075:        bplpt[plane] += nwords * 2;
                   1076: 
                   1077:     if (real_pt == 0)
                   1078:        /* @@@ Don't do this, fall back on chipmem_wget instead.  */
                   1079:        return;
                   1080: 
                   1081:     while (nwords > 0) {
                   1082:        int i;
                   1083: 
                   1084:        shiftbuffer[0] = fetchval0;
                   1085:        if (fm == 2)
                   1086:            shiftbuffer[1] = fetchval1;
                   1087: 
                   1088:        for (i = 0; i < (1 << fm); i++) {
                   1089:            int bits_left = 32 - tmp_nbits;
1.1.1.13  root     1090: 
1.1.1.14  root     1091:            uae_u32 t0 = shiftbuffer[off1];
                   1092:            uae_u32 t1 = shiftbuffer[off1 + 1];
                   1093:            uae_u64 t = (((uae_u64)t1) << 32) | t0;
                   1094: 
                   1095:            t0 = (t >> offs) & 0xFFFF;
                   1096: 
                   1097:            if (weird_number_of_bits && bits_left < 16) {
                   1098:                outval <<= bits_left;
                   1099:                outval |= t0 >> (16 - bits_left);
                   1100: 
                   1101:                thisline_changed |= *dataptr ^ outval;
                   1102:                *dataptr++ = outval;
                   1103: 
                   1104:                outval = t0;
                   1105:                tmp_nbits = 16 - bits_left;
                   1106:                aga_shift (shiftbuffer, 16, fm);
                   1107:            } else {
                   1108:                outval = (outval << 16) | t0;
                   1109:                aga_shift (shiftbuffer, 16, fm);
                   1110:                tmp_nbits += 16;
                   1111:                if (tmp_nbits == 32) {
                   1112:                    thisline_changed |= *dataptr ^ outval;
                   1113:                    *dataptr++ = outval;
                   1114:                    tmp_nbits = 0;
                   1115:                }
                   1116:            }
                   1117:        }
                   1118: 
                   1119:        nwords -= 1 << fm;
                   1120: 
                   1121:        if (dma) {
                   1122:            if (fm == 1)
                   1123:                fetchval0 = do_get_mem_long (real_pt);
                   1124:            else {
                   1125:                fetchval1 = do_get_mem_long (real_pt);
                   1126:                fetchval0 = do_get_mem_long (real_pt + 1);
                   1127:            }
                   1128:            real_pt += fm;
                   1129:        }
                   1130:     }
                   1131:     fetched_aga0[plane] = fetchval0;
                   1132:     fetched_aga1[plane] = fetchval1;
                   1133:     outword[plane] = outval;
                   1134: }
                   1135: 
                   1136: static void long_fetch_ecs_0 (int hpos, int nwords, int dma) { long_fetch_ecs (hpos, nwords, 0, dma); }
                   1137: static void long_fetch_ecs_1 (int hpos, int nwords, int dma) { long_fetch_ecs (hpos, nwords, 1, dma); }
                   1138: static void long_fetch_aga_1_0 (int hpos, int nwords, int dma) { long_fetch_aga (hpos, nwords,  0, 1, dma); }
                   1139: static void long_fetch_aga_1_1 (int hpos, int nwords, int dma) { long_fetch_aga (hpos, nwords,  1, 1, dma); }
                   1140: static void long_fetch_aga_2_0 (int hpos, int nwords, int dma) { long_fetch_aga (hpos, nwords,  0, 2, dma); }
                   1141: static void long_fetch_aga_2_1 (int hpos, int nwords, int dma) { long_fetch_aga (hpos, nwords,  1, 2, dma); }
                   1142: 
                   1143: static void do_long_fetch (int hpos, int nwords, int dma, int fm)
1.1.1.2   root     1144: {
1.1.1.14  root     1145:     int added;
1.1.1.13  root     1146:     int i;
1.1.1.2   root     1147: 
1.1.1.14  root     1148:     flush_display (fm);
                   1149:     switch (fm) {
                   1150:     case 0:
                   1151:        if (out_nbits & 15) {
                   1152:            for (i = 0; i < toscr_nr_planes; i++)
                   1153:                long_fetch_ecs_1 (i, nwords, dma);
                   1154:        } else {
                   1155:            for (i = 0; i < toscr_nr_planes; i++)
                   1156:                long_fetch_ecs_0 (i, nwords, dma);
                   1157:        }
                   1158:        break;
                   1159:     case 1:
                   1160:        if (out_nbits & 15) {
                   1161:            for (i = 0; i < toscr_nr_planes; i++)
                   1162:                long_fetch_aga_1_1 (i, nwords, dma);
                   1163:        } else {
                   1164:            for (i = 0; i < toscr_nr_planes; i++)
                   1165:                long_fetch_aga_1_0 (i, nwords, dma);
                   1166:        }
                   1167:        break;
                   1168:     case 2:
                   1169:        if (out_nbits & 15) {
                   1170:            for (i = 0; i < toscr_nr_planes; i++)
                   1171:                long_fetch_aga_2_1 (i, nwords, dma);
                   1172:        } else {
                   1173:            for (i = 0; i < toscr_nr_planes; i++)
                   1174:                long_fetch_aga_2_0 (i, nwords, dma);
                   1175:        }
                   1176:        break;
1.1.1.2   root     1177:     }
1.1.1.13  root     1178: 
1.1.1.14  root     1179:     out_nbits += nwords * 16;
1.1.1.13  root     1180:     out_offs += out_nbits >> 5;
                   1181:     out_nbits &= 31;
1.1.1.14  root     1182: 
                   1183:     if (dma && toscr_nr_planes > 0)
                   1184:        fetch_state = fetch_was_plane0;
1.1.1.13  root     1185: }
                   1186: 
1.1.1.14  root     1187: #endif
1.1.1.13  root     1188: 
1.1.1.14  root     1189: /* make sure fetch that goes beyond maxhpos is finished */
                   1190: static void finish_final_fetch (int i, int fm)
                   1191: {
                   1192:     passed_plfstop = 3;
1.1.1.15  root     1193: 
                   1194:     if (thisline_decision.plfleft != -1) {
                   1195:        i += flush_plane_data (fm);
                   1196:        thisline_decision.plfright = i;
                   1197:        thisline_decision.plflinelen = out_offs;
                   1198:        thisline_decision.bplres = toscr_res;
                   1199:        finish_playfield_line ();
                   1200:     }
1.1.1.14  root     1201: }
                   1202: 
                   1203: STATIC_INLINE int one_fetch_cycle_0 (int i, int ddfstop_to_test, int dma, int fm)
1.1.1.13  root     1204: {
                   1205:     if (! passed_plfstop && i == ddfstop_to_test)
                   1206:        passed_plfstop = 1;
                   1207: 
1.1.1.14  root     1208:     if ((fetch_cycle & fetchunit_mask) == 0) {
1.1.1.13  root     1209:        if (passed_plfstop == 2) {
1.1.1.14  root     1210:            finish_final_fetch (i, fm);
1.1.1.13  root     1211:            return 1;
                   1212:        }
                   1213:        if (passed_plfstop)
                   1214:            passed_plfstop++;
1.1.1.2   root     1215:     }
1.1.1.13  root     1216:     if (dma) {
1.1.1.14  root     1217:        /* fetchstart_mask can be larger than fm_maxplane if FMODE > 0.  This means
                   1218:           that the remaining cycles are idle; we'll fall through the whole switch
                   1219:           without doing anything.  */
                   1220:        int cycle_start = fetch_cycle & fetchstart_mask;
                   1221:        switch (fm_maxplane) {
                   1222:        case 8:
                   1223:            switch (cycle_start) {
                   1224:            case 0: fetch (7, fm); break;
                   1225:            case 1: fetch (3, fm); break;
                   1226:            case 2: fetch (5, fm); break;
                   1227:            case 3: fetch (1, fm); break;
                   1228:            case 4: fetch (6, fm); break;
                   1229:            case 5: fetch (2, fm); break;
                   1230:            case 6: fetch (4, fm); break;
                   1231:            case 7: fetch (0, fm); break;
                   1232:            }
                   1233:            break;
                   1234:        case 4:
                   1235:            switch (cycle_start) {
                   1236:            case 0: fetch (3, fm); break;
                   1237:            case 1: fetch (1, fm); break;
                   1238:            case 2: fetch (2, fm); break;
                   1239:            case 3: fetch (0, fm); break;
                   1240:            }
                   1241:            break;
                   1242:        case 2:
                   1243:            switch (cycle_start) {
                   1244:            case 0: fetch (1, fm); break;
                   1245:            case 1: fetch (0, fm); break;
                   1246:            }
                   1247:            break;
1.1.1.13  root     1248:        }
1.1.1.2   root     1249:     }
1.1.1.13  root     1250:     fetch_cycle++;
                   1251:     toscr_nbits += 2 << toscr_res;
1.1.1.15  root     1252: 
                   1253:     if (toscr_nbits == 16)
                   1254:        flush_display (fm);
                   1255:     if (toscr_nbits > 16)
                   1256:        abort ();
                   1257: 
1.1.1.13  root     1258:     return 0;
                   1259: }
1.1.1.3   root     1260: 
1.1.1.14  root     1261: static int one_fetch_cycle_fm0 (int i, int ddfstop_to_test, int dma) { return one_fetch_cycle_0 (i, ddfstop_to_test, dma, 0); }
                   1262: static int one_fetch_cycle_fm1 (int i, int ddfstop_to_test, int dma) { return one_fetch_cycle_0 (i, ddfstop_to_test, dma, 1); }
                   1263: static int one_fetch_cycle_fm2 (int i, int ddfstop_to_test, int dma) { return one_fetch_cycle_0 (i, ddfstop_to_test, dma, 2); }
1.1.1.13  root     1264: 
1.1.1.14  root     1265: STATIC_INLINE int one_fetch_cycle (int i, int ddfstop_to_test, int dma, int fm)
                   1266: {
                   1267:     switch (fm) {
                   1268:     case 0: return one_fetch_cycle_fm0 (i, ddfstop_to_test, dma);
                   1269:     case 1: return one_fetch_cycle_fm1 (i, ddfstop_to_test, dma);
                   1270:     case 2: return one_fetch_cycle_fm2 (i, ddfstop_to_test, dma);
                   1271:     default: abort ();
                   1272:     }
1.1.1.13  root     1273: }
                   1274: 
1.1.1.14  root     1275: STATIC_INLINE void update_fetch (int until, int fm)
1.1.1.13  root     1276: {
                   1277:     int pos;
                   1278:     int dma = dmaen (DMA_BITPLANE);
                   1279: 
                   1280:     int ddfstop_to_test;
                   1281: 
                   1282:     if (framecnt != 0 || passed_plfstop == 3)
1.1.1.2   root     1283:        return;
1.1.1.13  root     1284: 
                   1285:     /* We need an explicit test against HARD_DDF_STOP here to guard against
                   1286:        programs that move the DDFSTOP before our current position before we
                   1287:        reach it.  */
                   1288:     ddfstop_to_test = HARD_DDF_STOP;
                   1289:     if (ddfstop >= last_fetch_hpos && ddfstop < HARD_DDF_STOP)
                   1290:        ddfstop_to_test = ddfstop;
                   1291: 
1.1.1.14  root     1292:     compute_toscr_delay (last_fetch_hpos);
1.1.1.13  root     1293:     update_toscr_planes ();
                   1294: 
                   1295:     pos = last_fetch_hpos;
1.1.1.16  root     1296:     cycle_diagram_shift = (last_fetch_hpos - fetch_cycle) & fetchstart_mask;
1.1.1.13  root     1297: 
1.1.1.14  root     1298:     /* First, a loop that prepares us for the speedup code.  We want to enter
                   1299:        the SPEEDUP case with fetch_state == fetch_was_plane0, and then unroll
                   1300:        whole blocks, so that we end on the same fetch_state again.  */
1.1.1.13  root     1301:     for (; ; pos++) {
1.1.1.14  root     1302:        if (pos == until) {
                   1303:            if (until >= maxhpos && passed_plfstop == 2) {
                   1304:                finish_final_fetch (pos, fm);
                   1305:                return;
                   1306:            }
                   1307:            flush_display (fm);
                   1308:            return;
                   1309:        }
1.1.1.13  root     1310: 
1.1.1.14  root     1311:        if (fetch_state == fetch_was_plane0)
1.1.1.13  root     1312:            break;
                   1313: 
                   1314:        fetch_state = fetch_started;
1.1.1.14  root     1315:        if (one_fetch_cycle (pos, ddfstop_to_test, dma, fm))
1.1.1.13  root     1316:            return;
1.1.1.14  root     1317:     }
1.1.1.13  root     1318: 
                   1319: #ifdef SPEEDUP
                   1320:     /* Unrolled version of the for loop below.  */
1.1.1.14  root     1321:     if (! passed_plfstop
                   1322:        && dma
1.1.1.15  root     1323:        && (fetch_cycle & fetchstart_mask) == (fm_maxplane & fetchstart_mask)
1.1.1.14  root     1324: # if 0
                   1325:        /* @@@ We handle this case, but the code would be simpler if we
                   1326:         * disallowed it - it may even be possible to guarantee that
                   1327:         * this condition never is false.  Later.  */
                   1328:        && (out_nbits & 15) == 0
                   1329: # endif
                   1330:        && toscr_nr_planes == thisline_decision.nr_planes)
                   1331:     {
1.1.1.15  root     1332:        int offs = (pos - fetch_cycle) & fetchunit_mask;
1.1.1.14  root     1333:        int ddf2 = ((ddfstop_to_test - offs + fetchunit - 1) & ~fetchunit_mask) + offs;
                   1334:        int ddf3 = ddf2 + fetchunit;
                   1335:        int stop = until < ddf2 ? until : until < ddf3 ? ddf2 : ddf3;
                   1336:        int count;
                   1337: 
                   1338:        count = stop - pos;
                   1339: 
                   1340:        if (count >= fetchstart) {
                   1341:            count &= ~fetchstart_mask;
                   1342: 
1.1.1.15  root     1343:            if (thisline_decision.plfleft == -1) {
1.1.1.14  root     1344:                compute_delay_offset (pos);
1.1.1.15  root     1345:                compute_toscr_delay_1 ();
                   1346:            }
1.1.1.14  root     1347:            do_long_fetch (pos, count >> (3 - toscr_res), dma, fm);
                   1348: 
                   1349:            /* This must come _after_ do_long_fetch so as not to confuse flush_display
                   1350:               into thinking the first fetch has produced any output worth emitting to
                   1351:               the screen.  But the calculation of delay_offset must happen _before_.  */
                   1352:            maybe_first_bpl1dat (pos);
1.1.1.13  root     1353: 
                   1354:            if (pos <= ddfstop_to_test && pos + count > ddfstop_to_test)
                   1355:                passed_plfstop = 1;
1.1.1.14  root     1356:            if (pos <= ddfstop_to_test && pos + count > ddf2)
                   1357:                passed_plfstop = 2;
1.1.1.13  root     1358:            pos += count;
                   1359:            fetch_cycle += count;
                   1360:        }
1.1.1.2   root     1361:     }
                   1362: #endif
1.1.1.13  root     1363:     for (; pos < until; pos++) {
                   1364:        if (fetch_state == fetch_was_plane0)
1.1.1.14  root     1365:            beginning_of_plane_block (pos, dma, fm);
1.1.1.13  root     1366:        fetch_state = fetch_started;
                   1367: 
1.1.1.14  root     1368:        if (one_fetch_cycle (pos, ddfstop_to_test, dma, fm))
1.1.1.13  root     1369:            return;
                   1370:     }
1.1.1.14  root     1371:     if (until >= maxhpos && passed_plfstop == 2) {
                   1372:        finish_final_fetch (pos, fm);
                   1373:        return;
                   1374:     }
                   1375:     flush_display (fm);
1.1.1.2   root     1376: }
                   1377: 
1.1.1.14  root     1378: static void update_fetch_0 (int hpos) { update_fetch (hpos, 0); }
                   1379: static void update_fetch_1 (int hpos) { update_fetch (hpos, 1); }
                   1380: static void update_fetch_2 (int hpos) { update_fetch (hpos, 2); }
                   1381: 
1.1.1.13  root     1382: STATIC_INLINE void decide_fetch (int hpos)
                   1383: {
1.1.1.14  root     1384:     if (fetch_state != fetch_not_started && hpos > last_fetch_hpos) {
                   1385:        switch (fetchmode) {
                   1386:        case 0: update_fetch_0 (hpos); break;
                   1387:        case 1: update_fetch_1 (hpos); break;
                   1388:        case 2: update_fetch_2 (hpos); break;
                   1389:        default: abort ();
                   1390:        }
                   1391:     }
1.1.1.13  root     1392:     last_fetch_hpos = hpos;
                   1393: }
                   1394: 
                   1395: /* This function is responsible for turning on datafetch if necessary.  */
1.1.1.8   root     1396: STATIC_INLINE void decide_line (int hpos)
1.1.1.2   root     1397: {
1.1.1.15  root     1398:     if (hpos <= last_decide_line_hpos)
                   1399:        return;
1.1.1.13  root     1400:     if (fetch_state != fetch_not_started)
                   1401:        return;
                   1402: 
                   1403:     /* Test if we passed the start of the DDF window.  */
                   1404:     if (last_decide_line_hpos < plfstrt && hpos >= plfstrt) {
                   1405:        /* First, take care of the vertical DIW.  Surprisingly enough, this seems to be
                   1406:           correct here - putting this into decide_diw() results in garbage.  */
                   1407:        if (diwstate == DIW_waiting_start && vpos == plffirstline) {
                   1408:            diwstate = DIW_waiting_stop;
                   1409:        }
                   1410:        if (diwstate == DIW_waiting_stop && vpos == plflastline) {
                   1411:            diwstate = DIW_waiting_start;
                   1412:        }
                   1413: 
1.1.1.15  root     1414:        /* If DMA isn't on by the time we reach plfstrt, then there's no
                   1415:           bitplane DMA at all for the whole line.  */
                   1416:        if (dmaen (DMA_BITPLANE)
                   1417:            && diwstate == DIW_waiting_stop)
                   1418:        {
1.1.1.13  root     1419:            fetch_state = fetch_started;
                   1420:            fetch_cycle = 0;
                   1421:            last_fetch_hpos = plfstrt;
                   1422:            out_nbits = 0;
                   1423:            out_offs = 0;
                   1424:            toscr_nbits = 0;
                   1425: 
1.1.1.14  root     1426:            compute_toscr_delay (last_fetch_hpos);
1.1.1.13  root     1427: 
                   1428:            /* If someone already wrote BPL1DAT, clear the area between that point and
                   1429:               the real fetch start.  */
1.1.1.14  root     1430:            if (framecnt == 0) {
                   1431:                if (thisline_decision.plfleft != -1) {
                   1432:                    out_nbits = (plfstrt - thisline_decision.plfleft) << (1 + toscr_res);
                   1433:                    out_offs = out_nbits >> 5;
                   1434:                    out_nbits &= 31;
                   1435:                }
                   1436:                update_toscr_planes ();
1.1.1.13  root     1437:            }
                   1438:            estimate_last_fetch_cycle (plfstrt);
                   1439:            last_decide_line_hpos = hpos;
                   1440:            do_sprites (vpos, plfstrt);
                   1441:            return;
                   1442:        }
                   1443:     }
                   1444: 
                   1445:     if (last_decide_line_hpos < 0x34)
                   1446:        do_sprites (vpos, hpos);
                   1447: 
                   1448:     last_decide_line_hpos = hpos;
1.1.1.2   root     1449: }
                   1450: 
1.1.1.3   root     1451: /* Called when a color is about to be changed (write to a color register),
                   1452:  * but the new color has not been entered into the table yet. */
1.1.1.4   root     1453: static void record_color_change (int hpos, int regno, unsigned long value)
1.1.1.3   root     1454: {
1.1.1.18  root     1455:     if (regno == -1 && value) {
                   1456:        thisline_decision.ham_seen = 1;
                   1457:        if (hpos < 0x18)
                   1458:            thisline_decision.ham_at_start = 1;
                   1459:     }
                   1460: 
1.1.1.3   root     1461:     /* Early positions don't appear on-screen. */
1.1.1.4   root     1462:     if (framecnt != 0 || vpos < minfirstline || hpos < 0x18
1.1.1.3   root     1463:        /*|| currprefs.emul_accuracy == 0*/)
                   1464:        return;
                   1465: 
1.1.1.4   root     1466:     decide_diw (hpos);
                   1467:     decide_line (hpos);
1.1.1.3   root     1468: 
1.1.1.13  root     1469:     if (thisline_decision.ctable == -1)
                   1470:        remember_ctable ();
1.1.1.3   root     1471: 
                   1472: #ifdef OS_WITHOUT_MEMORY_MANAGEMENT
1.1.1.4   root     1473:     if (next_color_change >= max_color_change) {
1.1.1.3   root     1474:        ++delta_color_change;
                   1475:        return;
                   1476:     }
                   1477: #endif
1.1.1.4   root     1478:     curr_color_changes[next_color_change].linepos = hpos;
1.1.1.3   root     1479:     curr_color_changes[next_color_change].regno = regno;
                   1480:     curr_color_changes[next_color_change++].value = value;
                   1481: }
                   1482: 
1.1.1.15  root     1483: typedef int sprbuf_res_t, cclockres_t, hwres_t, bplres_t;
                   1484: 
                   1485: static void do_playfield_collisions (void)
                   1486: {
                   1487:     uae_u8 *ld = line_data[next_lineno];
                   1488:     int i;
                   1489: 
                   1490:     if (clxcon_bpl_enable == 0) {
                   1491:        clxdat |= 1;
                   1492:        return;
                   1493:     }
                   1494:        
                   1495:     for (i = thisline_decision.plfleft; i < thisline_decision.plfright; i += 2) {
                   1496:        int j;
                   1497:        uae_u32 total = 0xFFFFFFFF;
                   1498:        for (j = 0; j < 8; j++) {
                   1499:            uae_u32 t = 0;
                   1500:            if ((clxcon_bpl_enable & (1 << j)) == 0)
                   1501:                t = 0xFFFFFFFF;
                   1502:            else if (j < thisline_decision.nr_planes) {
                   1503:                t = *(uae_u32 *)(line_data[next_lineno] + 2 * i + 2 * j * MAX_WORDS_PER_LINE);
                   1504:                t ^= ~(((clxcon_bpl_match >> j) & 1) - 1);
                   1505:            }
                   1506:            total &= t;
                   1507:        }
                   1508:        if (total)
                   1509:            clxdat |= 1;        
                   1510:     }
                   1511: }
                   1512: 
1.1.1.13  root     1513: /* Sprite-to-sprite collisions are taken care of in record_sprite.  This one does
                   1514:    playfield/sprite collisions.
                   1515:    That's the theory.  In practice this doesn't work yet.  I also suspect this code
                   1516:    is way too slow.  */
                   1517: static void do_sprite_collisions (void)
1.1.1.2   root     1518: {
1.1.1.13  root     1519:     int nr_sprites = curr_drawinfo[next_lineno].nr_sprites;
                   1520:     int first = curr_drawinfo[next_lineno].first_sprite_entry;
                   1521:     int i;
                   1522:     unsigned int collision_mask = clxmask[clxcon >> 12];
1.1.1.15  root     1523:     int bplres = GET_RES (bplcon0);
                   1524:     hwres_t ddf_left = thisline_decision.plfleft * 2 << bplres;
                   1525:     hwres_t hw_diwlast = coord_window_to_diw_x (thisline_decision.diwlastword);
                   1526:     hwres_t hw_diwfirst = coord_window_to_diw_x (thisline_decision.diwfirstword);
                   1527: 
                   1528:     if (clxcon_bpl_enable == 0) {
                   1529:        clxdat |= 0x1FE;
                   1530:        return;
                   1531:     }
1.1.1.2   root     1532: 
1.1.1.13  root     1533:     for (i = 0; i < nr_sprites; i++) {
                   1534:        struct sprite_entry *e = curr_sprite_entries + first + i;
1.1.1.15  root     1535:        sprbuf_res_t j;
                   1536:        sprbuf_res_t minpos = e->pos;
                   1537:        sprbuf_res_t maxpos = e->max;
                   1538:        hwres_t minp1 = minpos >> sprite_buffer_res;
                   1539:        hwres_t maxp1 = maxpos >> sprite_buffer_res;
                   1540: 
                   1541:        if (maxp1 > hw_diwlast)
                   1542:            maxpos = hw_diwlast << sprite_buffer_res;
                   1543:        if (maxp1 > thisline_decision.plfright * 2)
                   1544:            maxpos = thisline_decision.plfright * 2 << sprite_buffer_res;
                   1545:        if (minp1 < hw_diwfirst)
                   1546:            minpos = hw_diwfirst << sprite_buffer_res;
                   1547:        if (minp1 < thisline_decision.plfleft * 2)
                   1548:            minpos = thisline_decision.plfleft * 2 << sprite_buffer_res;
1.1.1.13  root     1549: 
                   1550:        for (j = minpos; j < maxpos; j++) {
                   1551:            int sprpix = spixels[e->first_pixel + j - e->pos] & collision_mask;
                   1552:            int k;
1.1.1.15  root     1553:            int offs;
1.1.1.2   root     1554: 
1.1.1.13  root     1555:            if (sprpix == 0)
                   1556:                continue;
1.1.1.2   root     1557: 
1.1.1.15  root     1558:            offs = ((j << bplres) >> sprite_buffer_res) - ddf_left;
1.1.1.13  root     1559:            sprpix = sprite_ab_merge[sprpix & 255] | (sprite_ab_merge[sprpix >> 8] << 2);
                   1560:            sprpix <<= 1;
1.1.1.2   root     1561: 
1.1.1.13  root     1562:            /* Loop over number of playfields.  */
                   1563:            for (k = 0; k < 2; k++) {
                   1564:                int l;
                   1565:                int match = 1;
1.1.1.14  root     1566:                int planes = ((currprefs.chipset_mask & CSMASK_AGA) ? 8 : 6);
1.1.1.13  root     1567: 
1.1.1.15  root     1568:                for (l = k; match && l < planes; l += 2) {
1.1.1.14  root     1569:                    if (clxcon_bpl_enable & (1 << l)) {
1.1.1.13  root     1570:                        int t = 0;
                   1571:                        if (l < thisline_decision.nr_planes) {
                   1572:                            uae_u32 *ldata = (uae_u32 *)(line_data[next_lineno] + 2 * l * MAX_WORDS_PER_LINE);
                   1573:                            uae_u32 word = ldata[offs >> 5];
                   1574:                            t = (word >> (31 - (offs & 31))) & 1;
                   1575:                        }
1.1.1.14  root     1576:                        if (t != ((clxcon_bpl_match >> l) & 1))
1.1.1.13  root     1577:                            match = 0;
                   1578:                    }
1.1.1.15  root     1579:                }
1.1.1.13  root     1580:                if (match)
                   1581:                    clxdat |= sprpix;
                   1582:                sprpix <<= 4;
                   1583:            }
1.1.1.2   root     1584:        }
                   1585:     }
                   1586: }
                   1587: 
1.1.1.15  root     1588: static void expand_sprres (void)
                   1589: {
                   1590:     switch ((bplcon3 >> 6) & 3) {
                   1591:     case 0: /* ECS defaults (LORES,HIRES=140ns,SHRES=70ns) */
                   1592:        if ((currprefs.chipset_mask & CSMASK_ECS_DENISE) && GET_RES (bplcon0) == RES_SUPERHIRES)
                   1593:            sprres = RES_HIRES;
                   1594:        else
                   1595:            sprres = RES_LORES;
                   1596:        break;
                   1597:     case 1:
                   1598:        sprres = RES_LORES;
                   1599:        break;
                   1600:     case 2:
                   1601:        sprres = RES_HIRES;
                   1602:        break;
                   1603:     case 3:
                   1604:        sprres = RES_SUPERHIRES;
                   1605:        break;
                   1606:     }
                   1607: }
                   1608: 
                   1609: STATIC_INLINE void record_sprite_1 (uae_u16 *buf, uae_u32 datab, int num, int dbl,
                   1610:                                    unsigned int mask, int do_collisions, uae_u32 collision_mask)
                   1611: {
                   1612:     int j = 0;
                   1613:     while (datab) {
                   1614:        unsigned int tmp = *buf;
                   1615:        unsigned int col = (datab & 3) << (2 * num);
                   1616:        tmp |= col;
                   1617:        if ((j & mask) == 0)
                   1618:            *buf++ = tmp;
                   1619:        if (dbl)
                   1620:            *buf++ = tmp;
                   1621:        j++;
                   1622:        datab >>= 2;
                   1623:        if (do_collisions) {
                   1624:            tmp &= collision_mask;
                   1625:            if (tmp) {
                   1626:                unsigned int shrunk_tmp = sprite_ab_merge[tmp & 255] | (sprite_ab_merge[tmp >> 8] << 2);
                   1627:                clxdat |= sprclx[shrunk_tmp];
                   1628:            }
                   1629:        }
                   1630:     }
                   1631: }
                   1632: 
1.1.1.13  root     1633: /* DATAB contains the sprite data; 16 pixels in two-bit packets.  Bits 0/1
                   1634:    determine the color of the leftmost pixel, bits 2/3 the color of the next
                   1635:    etc.
                   1636:    This function assumes that for all sprites in a given line, SPRXP either
1.1.1.15  root     1637:    stays equal or increases between successive calls.
                   1638: 
                   1639:    The data is recorded either in lores pixels (if ECS), or in hires pixels
                   1640:    (if AGA).  No support for SHRES sprites.  */
                   1641: 
                   1642: static void record_sprite (int line, int num, int sprxp, uae_u16 *data, uae_u16 *datb, unsigned int ctl)
1.1.1.2   root     1643: {
1.1.1.13  root     1644:     struct sprite_entry *e = curr_sprite_entries + next_sprite_entry;
                   1645:     int i;
                   1646:     int word_offs;
                   1647:     uae_u16 *buf;
                   1648:     uae_u32 collision_mask;
1.1.1.15  root     1649:     int width = sprite_width;
                   1650:     int dbl = 0;
                   1651:     unsigned int mask = 0;
1.1.1.13  root     1652: 
1.1.1.15  root     1653:     if (sprres != RES_LORES)
                   1654:        thisline_decision.any_hires_sprites = 1;
                   1655: 
                   1656:     if (currprefs.chipset_mask & CSMASK_AGA) {
                   1657:        width = (width << 1) >> sprres;
                   1658:        dbl = sprite_buffer_res - sprres;
                   1659:        mask = sprres == RES_SUPERHIRES ? 1 : 0;
                   1660:     }
1.1.1.13  root     1661: 
                   1662:     /* Try to coalesce entries if they aren't too far apart.  */
1.1.1.15  root     1663:     if (! next_sprite_forced && e[-1].max + 16 >= sprxp) {
1.1.1.13  root     1664:        e--;
1.1.1.15  root     1665:     } else {
1.1.1.13  root     1666:        next_sprite_entry++;
                   1667:        e->pos = sprxp;
                   1668:        e->has_attached = 0;
                   1669:     }
1.1.1.15  root     1670: 
1.1.1.13  root     1671:     if (sprxp < e->pos)
                   1672:        abort ();
1.1.1.15  root     1673: 
                   1674:     e->max = sprxp + width;
1.1.1.13  root     1675:     e[1].first_pixel = e->first_pixel + ((e->max - e->pos + 3) & ~3);
                   1676:     next_sprite_forced = 0;
                   1677: 
                   1678:     collision_mask = clxmask[clxcon >> 12];
                   1679:     word_offs = e->first_pixel + sprxp - e->pos;
1.1.1.15  root     1680: 
                   1681:     for (i = 0; i < sprite_width; i += 16) {
                   1682:        unsigned int da = *data;
                   1683:        unsigned int db = *datb;
                   1684:        uae_u32 datab = ((sprtaba[da & 0xFF] << 16) | sprtaba[da >> 8]
                   1685:                         | (sprtabb[db & 0xFF] << 16) | sprtabb[db >> 8]);
                   1686: 
                   1687:        buf = spixels + word_offs + (i << dbl);
                   1688:        if (currprefs.collision_level > 0 && collision_mask)
                   1689:            record_sprite_1 (buf, datab, num, dbl, mask, 1, collision_mask);
                   1690:        else
                   1691:            record_sprite_1 (buf, datab, num, dbl, mask, 0, collision_mask);
                   1692:        data++;
                   1693:        datb++;
1.1.1.2   root     1694:     }
                   1695: 
1.1.1.13  root     1696:     /* We have 8 bits per pixel in spixstate, two for every sprite pair.  The
                   1697:        low order bit records whether the attach bit was set for this pair.  */
                   1698: 
                   1699:     if (ctl & (num << 7) & 0x80) {
                   1700:        uae_u32 state = 0x01010101 << (num - 1);
                   1701:        uae_u32 *stbuf = spixstate.words + (word_offs >> 2);
                   1702:        uae_u8 *stb1 = spixstate.bytes + word_offs;     
1.1.1.15  root     1703:        for (i = 0; i < width; i += 8) {
                   1704:            stb1[0] |= state;
                   1705:            stb1[1] |= state;
                   1706:            stb1[2] |= state;
                   1707:            stb1[3] |= state;
                   1708:            stb1[4] |= state;
                   1709:            stb1[5] |= state;
                   1710:            stb1[6] |= state;
                   1711:            stb1[7] |= state;
                   1712:            stb1 += 8;
                   1713:        }
1.1.1.13  root     1714:        e->has_attached = 1;
1.1.1.3   root     1715:     }
                   1716: }
1.1.1.2   root     1717: 
1.1.1.4   root     1718: static void decide_sprites (int hpos)
1.1.1.3   root     1719: {
1.1.1.7   root     1720:     int nrs[MAX_SPRITES], posns[MAX_SPRITES];
                   1721:     int count, i;
1.1.1.15  root     1722:     int point = hpos * 2;
                   1723:     int width = sprite_width;
                   1724:     int window_width = (width << lores_shift) >> sprres;
1.1.1.2   root     1725: 
1.1.1.4   root     1726:     if (framecnt != 0 || hpos < 0x14 || nr_armed == 0 || point == last_sprite_point)
1.1.1.2   root     1727:        return;
                   1728: 
1.1.1.4   root     1729:     decide_diw (hpos);
                   1730:     decide_line (hpos);
1.1.1.3   root     1731: 
1.1.1.13  root     1732: #if 0
                   1733:     /* This tries to detect whether the line is border, but that doesn't work, it's too early.  */
                   1734:     if (thisline_decision.plfleft == -1)
1.1.1.2   root     1735:        return;
1.1.1.13  root     1736: #endif
1.1.1.3   root     1737:     count = 0;
1.1.1.15  root     1738:     for (i = 0; i < MAX_SPRITES; i++) {
1.1.1.10  root     1739:        int sprxp = spr[i].xpos;
1.1.1.15  root     1740:        int hw_xp = (sprxp >> sprite_buffer_res);
                   1741:        int window_xp = coord_hw_to_window_x (hw_xp) + (DIW_DDF_OFFSET << lores_shift);
1.1.1.3   root     1742:        int j, bestp;
1.1.1.2   root     1743: 
1.1.1.15  root     1744:        /* ??? It is uncertain where exactly sprite data is needed.  It appears
                   1745:           to be used some time after the actual position given in SPRxPOS.
                   1746:           How soon after is an open question.  For Battle Squadron, using a
                   1747:           value of 5 seems to be enough to meet all timing constraints.
                   1748:           This gives it 2 more color clock cycles until the data appears on
                   1749:           the screen.  */
                   1750:        hw_xp += 5;
                   1751:        if (! spr[i].armed || sprxp < 0 || hw_xp <= last_sprite_point || hw_xp > point)
1.1.1.3   root     1752:            continue;
1.1.1.15  root     1753:        if ((thisline_decision.diwfirstword >= 0 && window_xp + window_width < thisline_decision.diwfirstword)
                   1754:            || (thisline_decision.diwlastword >= 0 && window_xp > thisline_decision.diwlastword))
1.1.1.3   root     1755:            continue;
1.1.1.2   root     1756: 
1.1.1.13  root     1757:        /* Sort the sprites in order of ascending X position before recording them.  */
1.1.1.3   root     1758:        for (bestp = 0; bestp < count; bestp++) {
                   1759:            if (posns[bestp] > sprxp)
                   1760:                break;
                   1761:            if (posns[bestp] == sprxp && nrs[bestp] < i)
                   1762:                break;
                   1763:        }
                   1764:        for (j = count; j > bestp; j--) {
                   1765:            posns[j] = posns[j-1];
                   1766:            nrs[j] = nrs[j-1];
                   1767:        }
                   1768:        posns[j] = sprxp;
                   1769:        nrs[j] = i;
                   1770:        count++;
                   1771:     }
1.1.1.13  root     1772:     for (i = 0; i < count; i++) {
                   1773:        int nr = nrs[i];    
1.1.1.15  root     1774:        record_sprite (next_lineno, nr, spr[nr].xpos, sprdata[nr], sprdatb[nr], sprctl[nr]);
1.1.1.13  root     1775:     }
1.1.1.3   root     1776:     last_sprite_point = point;
1.1.1.2   root     1777: }
                   1778: 
1.1.1.13  root     1779: STATIC_INLINE int sprites_differ (struct draw_info *dip, struct draw_info *dip_old)
                   1780: {
                   1781:     struct sprite_entry *this_first = curr_sprite_entries + dip->first_sprite_entry;
                   1782:     struct sprite_entry *this_last = curr_sprite_entries + dip->last_sprite_entry;
                   1783:     struct sprite_entry *prev_first = prev_sprite_entries + dip_old->first_sprite_entry;
                   1784:     int npixels;
                   1785:     int i;
                   1786: 
                   1787:     if (dip->nr_sprites != dip_old->nr_sprites)
                   1788:        return 1;
                   1789:     
                   1790:     if (dip->nr_sprites == 0)
                   1791:        return 0;
                   1792: 
                   1793:     for (i = 0; i < dip->nr_sprites; i++)
                   1794:        if (this_first[i].pos != prev_first[i].pos
                   1795:            || this_first[i].max != prev_first[i].max
                   1796:            || this_first[i].has_attached != prev_first[i].has_attached)
                   1797:            return 1;
                   1798: 
                   1799:     npixels = this_last->first_pixel + (this_last->max - this_last->pos) - this_first->first_pixel;
                   1800:     if (memcmp (spixels + this_first->first_pixel, spixels + prev_first->first_pixel,
                   1801:                npixels * sizeof (uae_u16)) != 0)
                   1802:        return 1;
                   1803:     if (memcmp (spixstate.bytes + this_first->first_pixel, spixstate.bytes + prev_first->first_pixel, npixels) != 0)
                   1804:        return 1;
                   1805:     return 0;
                   1806: }
                   1807: 
                   1808: STATIC_INLINE int color_changes_differ (struct draw_info *dip, struct draw_info *dip_old)
                   1809: {
                   1810:     if (dip->nr_color_changes != dip_old->nr_color_changes)
                   1811:        return 1;
                   1812:     
                   1813:     if (dip->nr_color_changes == 0)
                   1814:        return 0;
                   1815:     if (memcmp (curr_color_changes + dip->first_color_change,
                   1816:                prev_color_changes + dip_old->first_color_change,
                   1817:                dip->nr_color_changes * sizeof *curr_color_changes) != 0)
                   1818:        return 1;
                   1819:     return 0;
                   1820: }
                   1821: 
1.1.1.3   root     1822: /* End of a horizontal scan line. Finish off all decisions that were not
                   1823:  * made yet. */
1.1.1.2   root     1824: static void finish_decisions (void)
                   1825: {
                   1826:     struct draw_info *dip;
                   1827:     struct draw_info *dip_old;
                   1828:     struct decision *dp;
                   1829:     int changed;
1.1.1.4   root     1830:     int hpos = current_hpos ();
1.1.1.2   root     1831: 
                   1832:     if (framecnt != 0)
                   1833:        return;
                   1834: 
1.1.1.4   root     1835:     decide_diw (hpos);
1.1.1.13  root     1836:     decide_line (hpos);
                   1837:     decide_fetch (hpos);
                   1838: 
                   1839:     if (thisline_decision.plfleft != -1 && thisline_decision.plflinelen == -1) {
                   1840:        if (fetch_state != fetch_not_started)
                   1841:            abort ();
                   1842:        thisline_decision.plfright = thisline_decision.plfleft;
                   1843:        thisline_decision.plflinelen = 0;
                   1844:        thisline_decision.bplres = RES_LORES;
                   1845:     }
1.1.1.3   root     1846: 
                   1847:     /* Large DIWSTOP values can cause the stop position never to be
                   1848:      * reached, so the state machine always stays in the same state and
                   1849:      * there's a more-or-less full-screen DIW. */
1.1.1.13  root     1850:     if (hdiwstate == DIW_waiting_stop || thisline_decision.diwlastword > max_diwlastword)
1.1.1.3   root     1851:        thisline_decision.diwlastword = max_diwlastword;
                   1852: 
1.1.1.13  root     1853:     if (thisline_decision.diwfirstword != line_decisions[next_lineno].diwfirstword)
                   1854:        MARK_LINE_CHANGED;
                   1855:     if (thisline_decision.diwlastword != line_decisions[next_lineno].diwlastword)
                   1856:        MARK_LINE_CHANGED;
1.1.1.2   root     1857: 
                   1858:     dip = curr_drawinfo + next_lineno;
                   1859:     dip_old = prev_drawinfo + next_lineno;
                   1860:     dp = line_decisions + next_lineno;
1.1.1.5   root     1861:     changed = thisline_changed;
1.1.1.2   root     1862: 
1.1.1.13  root     1863:     if (thisline_decision.plfleft != -1) {
                   1864:        record_diw_line (thisline_decision.diwfirstword, thisline_decision.diwlastword);
1.1.1.2   root     1865: 
1.1.1.4   root     1866:        decide_sprites (hpos);
1.1.1.2   root     1867:     }
                   1868: 
1.1.1.13  root     1869:     dip->last_sprite_entry = next_sprite_entry;
1.1.1.2   root     1870:     dip->last_color_change = next_color_change;
1.1.1.3   root     1871: 
                   1872:     if (thisline_decision.ctable == -1) {
1.1.1.13  root     1873:        if (thisline_decision.plfleft == -1)
1.1.1.3   root     1874:            remember_ctable_for_border ();
1.1.1.13  root     1875:        else
                   1876:            remember_ctable ();
1.1.1.3   root     1877:     }
1.1.1.2   root     1878: 
                   1879:     dip->nr_color_changes = next_color_change - dip->first_color_change;
1.1.1.13  root     1880:     dip->nr_sprites = next_sprite_entry - dip->first_sprite_entry;
1.1.1.2   root     1881: 
1.1.1.13  root     1882:     if (thisline_decision.plfleft != line_decisions[next_lineno].plfleft)
1.1.1.2   root     1883:        changed = 1;
1.1.1.13  root     1884:     if (! changed && color_changes_differ (dip, dip_old))
1.1.1.2   root     1885:        changed = 1;
1.1.1.13  root     1886:     if (!changed && thisline_decision.plfleft != -1 && sprites_differ (dip, dip_old))
1.1.1.10  root     1887:        changed = 1;
1.1.1.2   root     1888: 
                   1889:     if (changed) {
1.1.1.5   root     1890:        thisline_changed = 1;
1.1.1.2   root     1891:        *dp = thisline_decision;
                   1892:     } else
                   1893:        /* The only one that may differ: */
                   1894:        dp->ctable = thisline_decision.ctable;
                   1895: }
                   1896: 
1.1.1.3   root     1897: /* Set the state of all decisions to "undecided" for a new scanline. */
1.1.1.2   root     1898: static void reset_decisions (void)
                   1899: {
                   1900:     if (framecnt != 0)
                   1901:        return;
1.1.1.13  root     1902: 
1.1.1.15  root     1903:     thisline_decision.any_hires_sprites = 0;
1.1.1.13  root     1904:     thisline_decision.nr_planes = 0;
                   1905: 
1.1.1.10  root     1906:     thisline_decision.plfleft = -1;
1.1.1.13  root     1907:     thisline_decision.plflinelen = -1;
1.1.1.18  root     1908:     thisline_decision.ham_seen = !! (bplcon0 & 0x800);
                   1909:     thisline_decision.ham_at_start = !! (bplcon0 & 0x800);
1.1.1.10  root     1910: 
1.1.1.7   root     1911:     /* decided_res shouldn't be touched before it's initialized by decide_line(). */
1.1.1.2   root     1912:     thisline_decision.diwfirstword = -1;
                   1913:     thisline_decision.diwlastword = -2;
1.1.1.3   root     1914:     if (hdiwstate == DIW_waiting_stop) {
1.1.1.13  root     1915:        thisline_decision.diwfirstword = 0;
1.1.1.3   root     1916:        if (thisline_decision.diwfirstword != line_decisions[next_lineno].diwfirstword)
1.1.1.5   root     1917:            MARK_LINE_CHANGED;
1.1.1.3   root     1918:     }
1.1.1.2   root     1919:     thisline_decision.ctable = -1;
                   1920: 
1.1.1.5   root     1921:     thisline_changed = 0;
1.1.1.2   root     1922:     curr_drawinfo[next_lineno].first_color_change = next_color_change;
1.1.1.13  root     1923:     curr_drawinfo[next_lineno].first_sprite_entry = next_sprite_entry;
                   1924:     next_sprite_forced = 1;
1.1.1.2   root     1925: 
1.1.1.3   root     1926:     /* memset(sprite_last_drawn_at, 0, sizeof sprite_last_drawn_at); */
                   1927:     last_sprite_point = 0;
1.1.1.13  root     1928:     fetch_state = fetch_not_started;
                   1929:     passed_plfstop = 0;
                   1930: 
                   1931:     memset (todisplay, 0, sizeof todisplay);
                   1932:     memset (fetched, 0, sizeof fetched);
1.1.1.14  root     1933:     memset (fetched_aga0, 0, sizeof fetched_aga0);
                   1934:     memset (fetched_aga1, 0, sizeof fetched_aga1);
1.1.1.13  root     1935:     memset (outword, 0, sizeof outword);
1.1.1.9   root     1936: 
1.1.1.13  root     1937:     last_decide_line_hpos = -1;
1.1.1.9   root     1938:     last_diw_pix_hpos = -1;
                   1939:     last_ddf_pix_hpos = -1;
1.1.1.13  root     1940:     last_sprite_hpos = -1;
                   1941:     last_fetch_hpos = -1;
1.1.1.2   root     1942: }
                   1943: 
1.1.1.7   root     1944: /* set PAL or NTSC timing variables */
                   1945: 
                   1946: static void init_hz (void)
                   1947: {
                   1948:     int isntsc;
                   1949: 
                   1950:     beamcon0 = new_beamcon0;
                   1951: 
                   1952:     isntsc = beamcon0 & 0x20 ? 0 : 1;
                   1953:     if (!isntsc) {
                   1954:        maxvpos = MAXVPOS_PAL;
                   1955:        maxhpos = MAXHPOS_PAL;
                   1956:        minfirstline = MINFIRSTLINE_PAL;
                   1957:        vblank_endline = VBLANK_ENDLINE_PAL;
                   1958:        vblank_hz = VBLANK_HZ_PAL;
                   1959:     } else {
                   1960:        maxvpos = MAXVPOS_NTSC;
                   1961:        maxhpos = MAXHPOS_NTSC;
                   1962:        minfirstline = MINFIRSTLINE_NTSC;
                   1963:        vblank_endline = VBLANK_ENDLINE_NTSC;
                   1964:        vblank_hz = VBLANK_HZ_NTSC;
                   1965:     }
                   1966:     vsynctime = syncbase / vblank_hz;
                   1967: 
                   1968:     write_log ("Using %s timing\n", isntsc ? "NTSC" : "PAL");
                   1969: }
                   1970: 
1.1.1.11  root     1971: static void calcdiw (void)
                   1972: {
1.1.1.4   root     1973:     int hstrt = diwstrt & 0xFF;
                   1974:     int hstop = diwstop & 0xFF;
                   1975:     int vstrt = diwstrt >> 8;
                   1976:     int vstop = diwstop >> 8;
                   1977: 
                   1978:     if (diwhigh_written) {
                   1979:        hstrt |= ((diwhigh >> 5) & 1) << 8;
                   1980:        hstop |= ((diwhigh >> 13) & 1) << 8;
                   1981:        vstrt |= (diwhigh & 7) << 8;
                   1982:        vstop |= ((diwhigh >> 8) & 7) << 8;
                   1983:     } else {
                   1984:        hstop += 0x100;
                   1985:        if ((vstop & 0x80) == 0)
                   1986:            vstop |= 0x100;
                   1987:     }
                   1988: 
1.1.1.13  root     1989:     diwfirstword = coord_diw_to_window_x (hstrt);
                   1990:     diwlastword = coord_diw_to_window_x (hstop);
1.1.1.2   root     1991:     if (diwfirstword < 0)
                   1992:        diwfirstword = 0;
1.1.1.3   root     1993: 
1.1.1.4   root     1994:     plffirstline = vstrt;
                   1995:     plflastline = vstop;
                   1996: 
1.1       root     1997: #if 0
                   1998:     /* This happens far too often. */
                   1999:     if (plffirstline < minfirstline) {
1.1.1.18  root     2000:        write_log ("Warning: Playfield begins before line %d!\n", minfirstline);
1.1       root     2001:        plffirstline = minfirstline;
                   2002:     }
                   2003: #endif
1.1.1.4   root     2004: 
1.1       root     2005: #if 0 /* Turrican does this */
                   2006:     if (plflastline > 313) {
1.1.1.18  root     2007:        write_log ("Warning: Playfield out of range!\n");
1.1       root     2008:        plflastline = 313;
                   2009:     }
                   2010: #endif
1.1.1.2   root     2011:     plfstrt = ddfstrt;
                   2012:     plfstop = ddfstop;
1.1.1.13  root     2013:     if (plfstrt < 0x18)
                   2014:        plfstrt = 0x18;
1.1       root     2015: }
                   2016: 
1.1.1.4   root     2017: /* Mousehack stuff */
1.1.1.2   root     2018: 
1.1.1.4   root     2019: #define defstepx (1<<16)
                   2020: #define defstepy (1<<16)
                   2021: #define defxoffs 0
                   2022: #define defyoffs 0
1.1.1.3   root     2023: 
1.1.1.4   root     2024: static const int docal = 60, xcaloff = 40, ycaloff = 20;
                   2025: static const int calweight = 3;
                   2026: static int lastsampledmx, lastsampledmy;
                   2027: static int lastspr0x,lastspr0y,lastdiffx,lastdiffy,spr0pos,spr0ctl;
                   2028: static int mstepx,mstepy,xoffs=defxoffs,yoffs=defyoffs;
                   2029: static int sprvbfl;
1.1.1.2   root     2030: 
1.1.1.4   root     2031: int lastmx, lastmy;
                   2032: int newmousecounters;
                   2033: int ievent_alive = 0;
1.1       root     2034: 
1.1.1.4   root     2035: static enum { unknown_mouse, normal_mouse, dont_care_mouse, follow_mouse } mousestate;
1.1       root     2036: 
1.1.1.4   root     2037: static void mousehack_setdontcare (void)
1.1       root     2038: {
1.1.1.4   root     2039:     if (mousestate == dont_care_mouse)
1.1.1.2   root     2040:        return;
                   2041: 
1.1.1.3   root     2042:     write_log ("Don't care mouse mode set\n");
                   2043:     mousestate = dont_care_mouse;
                   2044:     lastspr0x = lastmx; lastspr0y = lastmy;
                   2045:     mstepx = defstepx; mstepy = defstepy;
                   2046: }
                   2047: 
1.1.1.4   root     2048: static void mousehack_setfollow (void)
1.1.1.3   root     2049: {
1.1.1.4   root     2050:     if (mousestate == follow_mouse)
                   2051:        return;
                   2052: 
1.1.1.3   root     2053:     write_log ("Follow sprite mode set\n");
                   2054:     mousestate = follow_mouse;
                   2055:     lastdiffx = lastdiffy = 0;
                   2056:     sprvbfl = 0;
1.1.1.4   root     2057:     spr0ctl = spr0pos = 0;
1.1.1.3   root     2058:     mstepx = defstepx; mstepy = defstepy;
                   2059: }
                   2060: 
1.1.1.7   root     2061: static uae_u32 mousehack_helper (void)
1.1.1.3   root     2062: {
                   2063:     int mousexpos, mouseypos;
                   2064: 
                   2065: #ifdef PICASSO96
                   2066:     if (picasso_on) {
1.1.1.17  root     2067:        picasso_clip_mouse (&lastmx, &lastmy);
                   2068:        mousexpos = lastmx;
                   2069:        mouseypos = lastmy;
1.1.1.3   root     2070:     } else
                   2071: #endif
                   2072:     {
1.1.1.17  root     2073:        /* @@@ This isn't completely right, it doesn't deal with virtual
                   2074:           screen sizes larger than physical very well.  */
1.1.1.3   root     2075:        if (lastmy >= gfxvidinfo.height)
1.1.1.4   root     2076:            lastmy = gfxvidinfo.height - 1;
1.1.1.17  root     2077:        if (lastmy < 0)
                   2078:            lastmy = 0;
                   2079:        if (lastmx < 0)
                   2080:            lastmx = 0;
                   2081:        if (lastmx >= gfxvidinfo.width)
                   2082:            lastmx = gfxvidinfo.width - 1;
1.1.1.4   root     2083:        mouseypos = coord_native_to_amiga_y (lastmy) << 1;
                   2084:        mousexpos = coord_native_to_amiga_x (lastmx);
1.1.1.3   root     2085:     }
                   2086: 
                   2087:     switch (m68k_dreg (regs, 0)) {
1.1.1.15  root     2088:     case 0:
1.1.1.3   root     2089:        return ievent_alive ? -1 : needmousehack ();
1.1.1.15  root     2090:     case 1:
1.1.1.3   root     2091:        ievent_alive = 10;
                   2092:        return mousexpos;
1.1.1.15  root     2093:     case 2:
1.1.1.3   root     2094:        return mouseypos;
                   2095:     }
                   2096:     return 0;
                   2097: }
                   2098: 
1.1.1.4   root     2099: void togglemouse (void)
1.1.1.3   root     2100: {
1.1.1.4   root     2101:     switch (mousestate) {
                   2102:      case dont_care_mouse: mousehack_setfollow (); break;
                   2103:      case follow_mouse: mousehack_setdontcare (); break;
1.1.1.3   root     2104:      default: break; /* Nnnnnghh! */
                   2105:     }
                   2106: }
                   2107: 
1.1.1.8   root     2108: STATIC_INLINE int adjust (int val)
1.1.1.3   root     2109: {
1.1.1.4   root     2110:     if (val > 127)
1.1.1.3   root     2111:        return 127;
1.1.1.4   root     2112:     else if (val < -127)
1.1.1.3   root     2113:        return -127;
                   2114:     return val;
                   2115: }
                   2116: 
1.1.1.4   root     2117: static void do_mouse_hack (void)
1.1.1.3   root     2118: {
                   2119:     int spr0x = ((spr0pos & 0xff) << 2) | ((spr0ctl & 1) << 1);
                   2120:     int spr0y = ((spr0pos >> 8) | ((spr0ctl & 4) << 6)) << 1;
                   2121:     int diffx, diffy;
                   2122: 
                   2123:     if (ievent_alive > 0) {
                   2124:        mouse_x = mouse_y = 0;
                   2125:        return;
                   2126:     }
                   2127:     switch (mousestate) {
1.1.1.11  root     2128:     case normal_mouse:
1.1.1.3   root     2129:        diffx = lastmx - lastsampledmx;
                   2130:        diffy = lastmy - lastsampledmy;
                   2131:        if (!newmousecounters) {
                   2132:            if (diffx > 127) diffx = 127;
                   2133:            if (diffx < -127) diffx = -127;
                   2134:            mouse_x += diffx;
                   2135:            if (diffy > 127) diffy = 127;
                   2136:            if (diffy < -127) diffy = -127;
                   2137:            mouse_y += diffy;
                   2138:        }
                   2139:        lastsampledmx += diffx; lastsampledmy += diffy;
                   2140:        break;
                   2141: 
1.1.1.11  root     2142:     case dont_care_mouse:
1.1.1.4   root     2143:        diffx = adjust (((lastmx - lastspr0x) * mstepx) >> 16);
                   2144:        diffy = adjust (((lastmy - lastspr0y) * mstepy) >> 16);
                   2145:        lastspr0x = lastmx; lastspr0y = lastmy;
                   2146:        mouse_x += diffx; mouse_y += diffy;
1.1.1.3   root     2147:        break;
                   2148: 
1.1.1.11  root     2149:     case follow_mouse:
1.1.1.4   root     2150:        if (sprvbfl && sprvbfl-- > 1) {
1.1.1.3   root     2151:            int mousexpos, mouseypos;
                   2152: 
1.1.1.4   root     2153:            if ((lastdiffx > docal || lastdiffx < -docal)
                   2154:                && lastspr0x != spr0x
                   2155:                && spr0x > plfstrt*4 + 34 + xcaloff
                   2156:                && spr0x < plfstop*4 - xcaloff)
1.1.1.3   root     2157:            {
                   2158:                int val = (lastdiffx << 16) / (spr0x - lastspr0x);
1.1.1.4   root     2159:                if (val >= 0x8000)
                   2160:                    mstepx = (mstepx * (calweight - 1) + val) / calweight;
1.1.1.3   root     2161:            }
1.1.1.4   root     2162:            if ((lastdiffy > docal || lastdiffy < -docal)
                   2163:                && lastspr0y != spr0y
                   2164:                && spr0y > plffirstline + ycaloff
                   2165:                && spr0y < plflastline - ycaloff)
1.1.1.3   root     2166:            {
1.1.1.4   root     2167:                int val = (lastdiffy << 16) / (spr0y - lastspr0y);
                   2168:                if (val >= 0x8000)
                   2169:                    mstepy = (mstepy * (calweight - 1) + val) / calweight;
1.1.1.3   root     2170:            }
                   2171:            if (lastmy >= gfxvidinfo.height)
                   2172:                lastmy = gfxvidinfo.height-1;
1.1.1.4   root     2173:            mouseypos = coord_native_to_amiga_y (lastmy) << 1;
                   2174:            mousexpos = coord_native_to_amiga_x (lastmx);
1.1.1.3   root     2175:            diffx = adjust ((((mousexpos + xoffs - spr0x) & ~1) * mstepx) >> 16);
                   2176:            diffy = adjust ((((mouseypos + yoffs - spr0y) & ~1) * mstepy) >> 16);
1.1.1.4   root     2177:            lastspr0x = spr0x; lastspr0y = spr0y;
                   2178:            lastdiffx = diffx; lastdiffy = diffy;
                   2179:            mouse_x += diffx; mouse_y += diffy;
1.1.1.3   root     2180:        }
                   2181:        break;
1.1.1.4   root     2182:        
1.1.1.11  root     2183:     default:
1.1.1.4   root     2184:        abort ();
1.1.1.3   root     2185:     }
                   2186: }
                   2187: 
1.1.1.7   root     2188: static int timehack_alive = 0;
                   2189: 
                   2190: static uae_u32 timehack_helper (void)
                   2191: {
                   2192: #ifdef HAVE_GETTIMEOFDAY
                   2193:     struct timeval tv;
                   2194:     if (m68k_dreg (regs, 0) == 0)
                   2195:        return timehack_alive;
                   2196: 
                   2197:     timehack_alive = 10;
                   2198: 
                   2199:     gettimeofday (&tv, NULL);
                   2200:     put_long (m68k_areg (regs, 0), tv.tv_sec - (((365 * 8 + 2) * 24 - 2) * 60 * 60));
                   2201:     put_long (m68k_areg (regs, 0) + 4, tv.tv_usec);
                   2202:     return 0;
                   2203: #else
                   2204:     return 2;
                   2205: #endif
                   2206: }
                   2207: 
1.1.1.3   root     2208:  /*
1.1       root     2209:   * register functions
                   2210:   */
1.1.1.8   root     2211: STATIC_INLINE uae_u16 DENISEID (void)
1.1.1.7   root     2212: {
                   2213:     if (currprefs.chipset_mask & CSMASK_AGA)
                   2214:        return 0xF8;
                   2215:     if (currprefs.chipset_mask & CSMASK_ECS_DENISE)
                   2216:        return 0xFC;
                   2217:     return 0xFFFF;
                   2218: }
1.1.1.8   root     2219: STATIC_INLINE uae_u16 DMACONR (void)
1.1       root     2220: {
                   2221:     return (dmacon | (bltstate==BLT_done ? 0 : 0x4000)
                   2222:            | (blt_info.blitzero ? 0x2000 : 0));
                   2223: }
1.1.1.8   root     2224: STATIC_INLINE uae_u16 INTENAR (void)
1.1.1.4   root     2225: {
                   2226:     return intena;
                   2227: }
                   2228: uae_u16 INTREQR (void)
1.1       root     2229: {
1.1.1.9   root     2230:     return intreq /* | (currprefs.use_serial ? 0x0001 : 0) */;
1.1       root     2231: }
1.1.1.8   root     2232: STATIC_INLINE uae_u16 ADKCONR (void)
1.1.1.4   root     2233: {
                   2234:     return adkcon;
                   2235: }
1.1.1.8   root     2236: STATIC_INLINE uae_u16 VPOSR (void)
1.1       root     2237: {
1.1.1.14  root     2238:     unsigned int csbit = currprefs.ntscmode ? 0x1000 : 0;
1.1.1.7   root     2239:     csbit |= (currprefs.chipset_mask & CSMASK_AGA) ? 0x2300 : 0;
                   2240:     csbit |= (currprefs.chipset_mask & CSMASK_ECS_AGNUS) ? 0x2000 : 0;
                   2241:     return (vpos >> 8) | lof | csbit;
1.1       root     2242: }
1.1.1.4   root     2243: static void VPOSW (uae_u16 v)
1.1.1.2   root     2244: {
                   2245:     if (lof != (v & 0x8000))
                   2246:        lof_changed = 1;
                   2247:     lof = v & 0x8000;
1.1.1.3   root     2248:     /*
                   2249:      * This register is much more fun on a real Amiga. You can program
                   2250:      * refresh rates with it ;) But I won't emulate this...
                   2251:      */
1.1.1.2   root     2252: }
1.1       root     2253: 
1.1.1.8   root     2254: STATIC_INLINE uae_u16 VHPOSR (void)
1.1.1.4   root     2255: {
1.1.1.13  root     2256:     return (vpos << 8) | current_hpos ();
1.1.1.4   root     2257: }
                   2258: 
1.1.1.8   root     2259: STATIC_INLINE void COP1LCH (uae_u16 v) { cop1lc = (cop1lc & 0xffff) | ((uae_u32)v << 16); }
                   2260: STATIC_INLINE void COP1LCL (uae_u16 v) { cop1lc = (cop1lc & ~0xffff) | (v & 0xfffe); }
                   2261: STATIC_INLINE void COP2LCH (uae_u16 v) { cop2lc = (cop2lc & 0xffff) | ((uae_u32)v << 16); }
                   2262: STATIC_INLINE void COP2LCL (uae_u16 v) { cop2lc = (cop2lc & ~0xffff) | (v & 0xfffe); }
1.1.1.4   root     2263: 
1.1.1.9   root     2264: static void start_copper (void)
1.1.1.4   root     2265: {
1.1.1.10  root     2266:     int was_active = eventtab[ev_copper].active;
                   2267:     eventtab[ev_copper].active = 0;
                   2268:     if (was_active)
                   2269:        events_schedule ();
                   2270: 
1.1.1.4   root     2271:     cop_state.ignore_next = 0;
                   2272:     cop_state.state = COP_read1;
                   2273:     cop_state.vpos = vpos;
                   2274:     cop_state.hpos = current_hpos () & ~1;
1.1.1.9   root     2275: 
1.1.1.10  root     2276:     if (dmaen (DMA_COPPER)) {
                   2277:        copper_enabled_thisline = 1;
1.1.1.13  root     2278:        set_special (SPCFLAG_COPPER);
1.1.1.10  root     2279:     }
1.1.1.9   root     2280: }
                   2281: 
                   2282: static void COPJMP1 (uae_u16 a)
                   2283: {
                   2284:     cop_state.ip = cop1lc;
                   2285:     start_copper ();
1.1.1.4   root     2286: }
                   2287: 
                   2288: static void COPJMP2 (uae_u16 a)
                   2289: {
                   2290:     cop_state.ip = cop2lc;
1.1.1.9   root     2291:     start_copper ();
1.1.1.4   root     2292: }
                   2293: 
1.1.1.8   root     2294: STATIC_INLINE void COPCON (uae_u16 a)
1.1.1.4   root     2295: {
                   2296:     copcon = a;
1.1       root     2297: }
1.1.1.4   root     2298: 
1.1.1.13  root     2299: static void DMACON (int hpos, uae_u16 v)
1.1       root     2300: {
1.1.1.14  root     2301:     int i;
1.1       root     2302: 
1.1.1.3   root     2303:     uae_u16 oldcon = dmacon;
                   2304: 
1.1.1.13  root     2305:     decide_line (hpos);
                   2306:     decide_fetch (hpos);
                   2307: 
                   2308:     setclr (&dmacon, v);
                   2309:     dmacon &= 0x1FFF;
1.1.1.3   root     2310: 
                   2311:     /* FIXME? Maybe we need to think a bit more about the master DMA enable
1.1       root     2312:      * bit in these cases. */
1.1.1.10  root     2313:     if ((dmacon & DMA_COPPER) != (oldcon & DMA_COPPER)) {
                   2314:        eventtab[ev_copper].active = 0;
                   2315:     }
1.1.1.3   root     2316:     if ((dmacon & DMA_COPPER) > (oldcon & DMA_COPPER)) {
1.1.1.4   root     2317:        cop_state.ip = cop1lc;
                   2318:        cop_state.ignore_next = 0;
                   2319:        cop_state.state = COP_read1;
                   2320:        cop_state.vpos = vpos;
1.1.1.13  root     2321:        cop_state.hpos = hpos & ~1;
1.1.1.10  root     2322:        copper_enabled_thisline = 1;
1.1.1.13  root     2323:        set_special (SPCFLAG_COPPER);
1.1       root     2324:     }
1.1.1.9   root     2325:     if (! (dmacon & DMA_COPPER)) {
1.1.1.10  root     2326:        copper_enabled_thisline = 0;
1.1.1.13  root     2327:        unset_special (SPCFLAG_COPPER);
1.1.1.9   root     2328:        cop_state.state = COP_stop;
                   2329:     }
                   2330: 
1.1       root     2331:     if ((dmacon & DMA_BLITPRI) > (oldcon & DMA_BLITPRI) && bltstate != BLT_done) {
                   2332:        static int count = 0;
                   2333:        if (!count) {
                   2334:            count = 1;
1.1.1.3   root     2335:            write_log ("warning: program is doing blitpri hacks.\n");
1.1       root     2336:        }
1.1.1.13  root     2337:        set_special (SPCFLAG_BLTNASTY);
1.1       root     2338:     }
1.1.1.10  root     2339:     if ((dmacon & (DMA_BLITPRI | DMA_BLITTER | DMA_MASTER)) != (DMA_BLITPRI | DMA_BLITTER | DMA_MASTER))
1.1.1.13  root     2340:        unset_special (SPCFLAG_BLTNASTY);
1.1.1.4   root     2341: 
1.1.1.14  root     2342:     if (currprefs.produce_sound > 0) {
                   2343:        update_audio ();
1.1.1.3   root     2344: 
1.1.1.14  root     2345:        for (i = 0; i < 4; i++) {
                   2346:            struct audio_channel_data *cdp = audio_channel + i;
                   2347:            int chan_ena = (dmacon & 0x200) && (dmacon & (1<<i));
                   2348:            if (cdp->dmaen == chan_ena)
                   2349:                continue;
                   2350:            cdp->dmaen = chan_ena;
1.1.1.17  root     2351:            if (cdp->dmaen)
                   2352:                audio_channel_enable_dma (cdp);
                   2353:            else
                   2354:                audio_channel_disable_dma (cdp);
1.1       root     2355:        }
1.1.1.14  root     2356:        schedule_audio ();
1.1       root     2357:     }
1.1.1.14  root     2358:     events_schedule();
1.1       root     2359: }
1.1.1.2   root     2360: 
1.1.1.3   root     2361: /*static int trace_intena = 0;*/
1.1.1.2   root     2362: 
1.1.1.8   root     2363: STATIC_INLINE void INTENA (uae_u16 v)
1.1.1.2   root     2364: {
1.1.1.3   root     2365: /*    if (trace_intena)
1.1.1.18  root     2366:        write_log ("INTENA: %04x\n", v);*/
1.1.1.13  root     2367:     setclr (&intena,v);
1.1.1.15  root     2368:     /* There's stupid code out there that does
                   2369:         [some INTREQ bits at level 3 are set]
                   2370:        clear all INTREQ bits
                   2371:        Enable one INTREQ level 3 bit
                   2372:        Set level 3 handler
                   2373: 
                   2374:        If we set SPCFLAG_INT for the clear, then by the time the enable happens,
                   2375:        we'll have SPCFLAG_DOINT set, and the interrupt happens immediately, but
                   2376:        it needs to happen one insn later, when the new L3 handler has been
                   2377:        installed.  */
                   2378:     if (v & 0x8000)
                   2379:        set_special (SPCFLAG_INT);
                   2380: }
                   2381: 
                   2382: void INTREQ_0 (uae_u16 v)
                   2383: {
                   2384:     setclr (&intreq,v);
1.1.1.13  root     2385:     set_special (SPCFLAG_INT);
1.1.1.2   root     2386: }
1.1.1.15  root     2387: 
1.1.1.3   root     2388: void INTREQ (uae_u16 v)
1.1       root     2389: {
1.1.1.15  root     2390:     INTREQ_0 (v);
1.1.1.13  root     2391:     if ((v & 0x8800) == 0x0800)
1.1.1.4   root     2392:        serdat &= 0xbfff;
1.1.1.15  root     2393:     rethink_cias ();
1.1.1.3   root     2394: }
1.1       root     2395: 
1.1.1.15  root     2396: static void update_adkmasks (void)
1.1.1.3   root     2397: {
                   2398:     unsigned long t;
1.1.1.4   root     2399: 
1.1.1.3   root     2400:     t = adkcon | (adkcon >> 4);
                   2401:     audio_channel[0].adk_mask = (((t >> 0) & 1) - 1);
                   2402:     audio_channel[1].adk_mask = (((t >> 1) & 1) - 1);
                   2403:     audio_channel[2].adk_mask = (((t >> 2) & 1) - 1);
                   2404:     audio_channel[3].adk_mask = (((t >> 3) & 1) - 1);
                   2405: }
1.1       root     2406: 
1.1.1.15  root     2407: static void ADKCON (uae_u16 v)
                   2408: {
                   2409:     if (currprefs.produce_sound > 0)
                   2410:        update_audio ();
                   2411: 
                   2412:     setclr (&adkcon,v);
                   2413:     update_adkmasks ();
                   2414: }
                   2415: 
1.1.1.7   root     2416: static void BEAMCON0 (uae_u16 v)
                   2417: {
1.1.1.18  root     2418:     if (currprefs.chipset_mask & CSMASK_ECS_AGNUS)
                   2419:        new_beamcon0 = v & 0x20;
1.1.1.7   root     2420: }
                   2421: 
1.1.1.4   root     2422: static void BPLPTH (int hpos, uae_u16 v, int num)
1.1.1.3   root     2423: {
1.1.1.4   root     2424:     decide_line (hpos);
1.1.1.13  root     2425:     decide_fetch (hpos);
1.1.1.4   root     2426:     bplpt[num] = (bplpt[num] & 0xffff) | ((uae_u32)v << 16);
1.1.1.3   root     2427: }
1.1.1.4   root     2428: static void BPLPTL (int hpos, uae_u16 v, int num)
1.1.1.3   root     2429: {
1.1.1.4   root     2430:     decide_line (hpos);
1.1.1.13  root     2431:     decide_fetch (hpos);
1.1.1.4   root     2432:     bplpt[num] = (bplpt[num] & ~0xffff) | (v & 0xfffe);
1.1.1.3   root     2433: }
1.1       root     2434: 
1.1.1.4   root     2435: static void BPLCON0 (int hpos, uae_u16 v)
1.1       root     2436: {
1.1.1.15  root     2437:     if (! (currprefs.chipset_mask & CSMASK_ECS_DENISE))
                   2438:        v &= ~0x00F1;
                   2439:     else if (! (currprefs.chipset_mask & CSMASK_AGA))
                   2440:        v &= ~0x00B1;
1.1.1.14  root     2441: 
1.1.1.2   root     2442:     if (bplcon0 == v)
1.1       root     2443:        return;
1.1.1.4   root     2444:     decide_line (hpos);
1.1.1.13  root     2445:     decide_fetch (hpos);
                   2446: 
1.1.1.18  root     2447:     /* HAM change?  */
                   2448:     if ((bplcon0 ^ v) & 0x800) {
                   2449:        record_color_change (hpos, -1, !! (v & 0x800));
                   2450:     }
                   2451:     
1.1.1.2   root     2452:     bplcon0 = v;
1.1.1.16  root     2453:     curr_diagram = cycle_diagram_table[fetchmode][GET_RES(bplcon0)][GET_PLANES (v)];
1.1.1.15  root     2454: 
                   2455:     if (currprefs.chipset_mask & CSMASK_AGA) {
                   2456:        decide_sprites (hpos);
                   2457:        expand_sprres ();
                   2458:     }
                   2459: 
1.1.1.14  root     2460:     expand_fmodes ();
1.1       root     2461: }
1.1.1.9   root     2462: 
1.1.1.8   root     2463: STATIC_INLINE void BPLCON1 (int hpos, uae_u16 v)
1.1       root     2464: {
1.1.1.2   root     2465:     if (bplcon1 == v)
1.1       root     2466:        return;
1.1.1.13  root     2467:     decide_line (hpos);
                   2468:     decide_fetch (hpos);
1.1.1.2   root     2469:     bplcon1 = v;
1.1       root     2470: }
1.1.1.15  root     2471: 
1.1.1.8   root     2472: STATIC_INLINE void BPLCON2 (int hpos, uae_u16 v)
1.1       root     2473: {
1.1.1.7   root     2474:     if (bplcon2 == v)
                   2475:        return;
                   2476:     decide_line (hpos);
1.1.1.2   root     2477:     bplcon2 = v;
1.1       root     2478: }
1.1.1.15  root     2479: 
1.1.1.8   root     2480: STATIC_INLINE void BPLCON3 (int hpos, uae_u16 v)
1.1       root     2481: {
1.1.1.14  root     2482:     if (! (currprefs.chipset_mask & CSMASK_AGA))
                   2483:        return;
1.1.1.7   root     2484:     if (bplcon3 == v)
                   2485:        return;
                   2486:     decide_line (hpos);
1.1.1.15  root     2487:     decide_sprites (hpos);
1.1.1.3   root     2488:     bplcon3 = v;
1.1.1.15  root     2489:     expand_sprres ();
1.1       root     2490: }
1.1.1.15  root     2491: 
1.1.1.8   root     2492: STATIC_INLINE void BPLCON4 (int hpos, uae_u16 v)
1.1       root     2493: {
1.1.1.7   root     2494:     if (! (currprefs.chipset_mask & CSMASK_AGA))
                   2495:        return;
                   2496:     if (bplcon4 == v)
                   2497:        return;
                   2498:     decide_line (hpos);
1.1.1.3   root     2499:     bplcon4 = v;
1.1       root     2500: }
                   2501: 
1.1.1.4   root     2502: static void BPL1MOD (int hpos, uae_u16 v)
1.1       root     2503: {
                   2504:     v &= ~1;
1.1.1.3   root     2505:     if ((uae_s16)bpl1mod == (uae_s16)v)
1.1       root     2506:        return;
1.1.1.13  root     2507:     decide_line (hpos);
                   2508:     decide_fetch (hpos);
1.1       root     2509:     bpl1mod = v;
                   2510: }
1.1.1.2   root     2511: 
1.1.1.4   root     2512: static void BPL2MOD (int hpos, uae_u16 v)
1.1.1.3   root     2513: {
1.1       root     2514:     v &= ~1;
1.1.1.3   root     2515:     if ((uae_s16)bpl2mod == (uae_s16)v)
1.1       root     2516:        return;
1.1.1.13  root     2517:     decide_line (hpos);
                   2518:     decide_fetch (hpos);
1.1       root     2519:     bpl2mod = v;
                   2520: }
                   2521: 
1.1.1.13  root     2522: STATIC_INLINE void BPL1DAT (int hpos, uae_u16 v)
1.1.1.10  root     2523: {
1.1.1.13  root     2524:     decide_line (hpos);
1.1.1.10  root     2525:     bpl1dat = v;
1.1.1.13  root     2526: 
                   2527:     maybe_first_bpl1dat (hpos);
1.1.1.10  root     2528: }
1.1.1.2   root     2529: /* We could do as well without those... */
1.1.1.8   root     2530: STATIC_INLINE void BPL2DAT (uae_u16 v) { bpl2dat = v; }
                   2531: STATIC_INLINE void BPL3DAT (uae_u16 v) { bpl3dat = v; }
                   2532: STATIC_INLINE void BPL4DAT (uae_u16 v) { bpl4dat = v; }
                   2533: STATIC_INLINE void BPL5DAT (uae_u16 v) { bpl5dat = v; }
                   2534: STATIC_INLINE void BPL6DAT (uae_u16 v) { bpl6dat = v; }
                   2535: STATIC_INLINE void BPL7DAT (uae_u16 v) { bpl7dat = v; }
                   2536: STATIC_INLINE void BPL8DAT (uae_u16 v) { bpl8dat = v; }
1.1       root     2537: 
1.1.1.4   root     2538: static void DIWSTRT (int hpos, uae_u16 v)
1.1       root     2539: {
1.1.1.4   root     2540:     if (diwstrt == v && ! diwhigh_written)
1.1       root     2541:        return;
1.1.1.4   root     2542:     decide_line (hpos);
                   2543:     diwhigh_written = 0;
1.1.1.3   root     2544:     diwstrt = v;
1.1.1.4   root     2545:     calcdiw ();
1.1       root     2546: }
1.1.1.4   root     2547: 
                   2548: static void DIWSTOP (int hpos, uae_u16 v)
1.1       root     2549: {
1.1.1.4   root     2550:     if (diwstop == v && ! diwhigh_written)
1.1       root     2551:        return;
1.1.1.4   root     2552:     decide_line (hpos);
                   2553:     diwhigh_written = 0;
1.1.1.3   root     2554:     diwstop = v;
1.1.1.4   root     2555:     calcdiw ();
                   2556: }
                   2557: 
                   2558: static void DIWHIGH (int hpos, uae_u16 v)
                   2559: {
1.1.1.7   root     2560:     if (! (currprefs.chipset_mask & CSMASK_ECS_DENISE))
                   2561:        return;
1.1.1.4   root     2562:     if (diwhigh_written && diwhigh == v)
                   2563:        return;
                   2564:     decide_line (hpos);
                   2565:     diwhigh_written = 1;
                   2566:     diwhigh = v;
                   2567:     calcdiw ();
1.1       root     2568: }
1.1.1.4   root     2569: 
                   2570: static void DDFSTRT (int hpos, uae_u16 v)
1.1.1.3   root     2571: {
1.1.1.11  root     2572:     v &= 0xFC;
1.1.1.2   root     2573:     if (ddfstrt == v)
1.1       root     2574:        return;
1.1.1.4   root     2575:     decide_line (hpos);
1.1.1.3   root     2576:     ddfstrt = v;
1.1.1.4   root     2577:     calcdiw ();
1.1.1.15  root     2578:     if (ddfstop > 0xD4 && (ddfstrt & 4) == 4) {
                   2579:        static int last_warned;
                   2580:        last_warned = (last_warned + 1) & 4095;
                   2581:        if (last_warned == 0)
                   2582:            write_log ("WARNING! Very strange DDF values.\n");
                   2583:     }
1.1       root     2584: }
1.1.1.15  root     2585: 
1.1.1.4   root     2586: static void DDFSTOP (int hpos, uae_u16 v)
1.1.1.3   root     2587: {
1.1.1.15  root     2588:     /* ??? "Virtual Meltdown" sets this to 0xD2 and expects it to behave
                   2589:        differently from 0xD0.  RSI Megademo sets it to 0xd1 and expects it
1.1.1.16  root     2590:        to behave like 0xd0.  Some people also write the high 8 bits and
                   2591:        expect them to be ignored.  So mask it with 0xFE.  */
                   2592:     v &= 0xFE;
1.1.1.2   root     2593:     if (ddfstop == v)
1.1       root     2594:        return;
1.1.1.4   root     2595:     decide_line (hpos);
1.1.1.13  root     2596:     decide_fetch (hpos);
1.1.1.2   root     2597:     ddfstop = v;
1.1.1.4   root     2598:     calcdiw ();
1.1.1.13  root     2599:     if (fetch_state != fetch_not_started)
                   2600:        estimate_last_fetch_cycle (hpos);
1.1.1.15  root     2601:     if (ddfstop > 0xD4 && (ddfstrt & 4) == 4) {
                   2602:        static int last_warned;
                   2603:        last_warned = (last_warned + 1) & 4095;
                   2604:        if (last_warned == 0)
                   2605:            write_log ("WARNING! Very strange DDF values.\n");
1.1.1.14  root     2606:        write_log ("WARNING! Very strange DDF values.\n");
1.1.1.15  root     2607:     }
1.1       root     2608: }
                   2609: 
1.1.1.7   root     2610: static void FMODE (uae_u16 v)
                   2611: {
                   2612:     if (! (currprefs.chipset_mask & CSMASK_AGA))
1.1.1.14  root     2613:        v = 0;
1.1.1.13  root     2614: 
1.1.1.7   root     2615:     fmode = v;
1.1.1.14  root     2616:     sprite_width = GET_SPRITEWIDTH (fmode);
                   2617:     switch (fmode & 3) {
                   2618:     case 0:
                   2619:        fetchmode = 0;
                   2620:        break;
                   2621:     case 1:
                   2622:     case 2:
                   2623:        fetchmode = 1;
                   2624:        break;
                   2625:     case 3:
                   2626:        fetchmode = 2;
                   2627:        break;
                   2628:     }
1.1.1.16  root     2629:     curr_diagram = cycle_diagram_table[fetchmode][GET_RES (v)][GET_PLANES (bplcon0)];
1.1.1.14  root     2630:     expand_fmodes ();
1.1.1.7   root     2631: }
                   2632: 
1.1.1.4   root     2633: static void BLTADAT (uae_u16 v)
1.1       root     2634: {
1.1.1.19! root     2635:     maybe_blit (0);
1.1.1.2   root     2636: 
                   2637:     blt_info.bltadat = v;
1.1       root     2638: }
1.1.1.2   root     2639: /*
                   2640:  * "Loading data shifts it immediately" says the HRM. Well, that may
                   2641:  * be true for BLTBDAT, but not for BLTADAT - it appears the A data must be
                   2642:  * loaded for every word so that AFWM and ALWM can be applied.
                   2643:  */
1.1.1.4   root     2644: static void BLTBDAT (uae_u16 v)
1.1       root     2645: {
1.1.1.19! root     2646:     maybe_blit (0);
1.1.1.2   root     2647: 
                   2648:     if (bltcon1 & 2)
                   2649:        blt_info.bltbhold = v << (bltcon1 >> 12);
                   2650:     else
                   2651:        blt_info.bltbhold = v >> (bltcon1 >> 12);
                   2652:     blt_info.bltbdat = v;
1.1       root     2653: }
1.1.1.19! root     2654: static void BLTCDAT (uae_u16 v) { maybe_blit (0); blt_info.bltcdat = v; }
1.1       root     2655: 
1.1.1.19! root     2656: static void BLTAMOD (uae_u16 v) { maybe_blit (1); blt_info.bltamod = (uae_s16)(v & 0xFFFE); }
        !          2657: static void BLTBMOD (uae_u16 v) { maybe_blit (1); blt_info.bltbmod = (uae_s16)(v & 0xFFFE); }
        !          2658: static void BLTCMOD (uae_u16 v) { maybe_blit (1); blt_info.bltcmod = (uae_s16)(v & 0xFFFE); }
        !          2659: static void BLTDMOD (uae_u16 v) { maybe_blit (1); blt_info.bltdmod = (uae_s16)(v & 0xFFFE); }
1.1       root     2660: 
1.1.1.19! root     2661: static void BLTCON0 (uae_u16 v) { maybe_blit (0); bltcon0 = v; blinea_shift = v >> 12; }
1.1.1.3   root     2662: /* The next category is "Most useless hardware register".
1.1       root     2663:  * And the winner is... */
1.1.1.7   root     2664: static void BLTCON0L (uae_u16 v)
                   2665: {
                   2666:     if (! (currprefs.chipset_mask & CSMASK_ECS_AGNUS))
                   2667:        return;
1.1.1.19! root     2668:     maybe_blit (0); bltcon0 = (bltcon0 & 0xFF00) | (v & 0xFF);
1.1.1.7   root     2669: }
1.1.1.19! root     2670: static void BLTCON1 (uae_u16 v) { maybe_blit (0); bltcon1 = v; }
1.1.1.4   root     2671: 
1.1.1.19! root     2672: static void BLTAFWM (uae_u16 v) { maybe_blit (0); blt_info.bltafwm = v; }
        !          2673: static void BLTALWM (uae_u16 v) { maybe_blit (0); blt_info.bltalwm = v; }
1.1       root     2674: 
1.1.1.19! root     2675: static void BLTAPTH (uae_u16 v) { maybe_blit (0); bltapt = (bltapt & 0xffff) | ((uae_u32)v << 16); }
        !          2676: static void BLTAPTL (uae_u16 v) { maybe_blit (0); bltapt = (bltapt & ~0xffff) | (v & 0xFFFE); }
        !          2677: static void BLTBPTH (uae_u16 v) { maybe_blit (0); bltbpt = (bltbpt & 0xffff) | ((uae_u32)v << 16); }
        !          2678: static void BLTBPTL (uae_u16 v) { maybe_blit (0); bltbpt = (bltbpt & ~0xffff) | (v & 0xFFFE); }
        !          2679: static void BLTCPTH (uae_u16 v) { maybe_blit (0); bltcpt = (bltcpt & 0xffff) | ((uae_u32)v << 16); }
        !          2680: static void BLTCPTL (uae_u16 v) { maybe_blit (0); bltcpt = (bltcpt & ~0xffff) | (v & 0xFFFE); }
        !          2681: static void BLTDPTH (uae_u16 v) { maybe_blit (0); bltdpt = (bltdpt & 0xffff) | ((uae_u32)v << 16); }
        !          2682: static void BLTDPTL (uae_u16 v) { maybe_blit (0); bltdpt = (bltdpt & ~0xffff) | (v & 0xFFFE); }
1.1       root     2683: 
1.1.1.4   root     2684: static void BLTSIZE (uae_u16 v)
1.1       root     2685: {
1.1.1.19! root     2686:     maybe_blit (0);
1.1       root     2687: 
1.1.1.15  root     2688:     blt_info.vblitsize = v >> 6;
                   2689:     blt_info.hblitsize = v & 0x3F;
1.1       root     2690:     if (!blt_info.vblitsize) blt_info.vblitsize = 1024;
                   2691:     if (!blt_info.hblitsize) blt_info.hblitsize = 64;
1.1.1.3   root     2692: 
                   2693:     bltstate = BLT_init;
1.1.1.4   root     2694:     do_blitter ();
1.1       root     2695: }
1.1.1.4   root     2696: 
                   2697: static void BLTSIZV (uae_u16 v)
1.1       root     2698: {
1.1.1.7   root     2699:     if (! (currprefs.chipset_mask & CSMASK_ECS_AGNUS))
                   2700:        return;
1.1.1.19! root     2701:     maybe_blit (0);
1.1       root     2702:     oldvblts = v & 0x7FFF;
                   2703: }
1.1.1.4   root     2704: 
                   2705: static void BLTSIZH (uae_u16 v)
1.1       root     2706: {
1.1.1.7   root     2707:     if (! (currprefs.chipset_mask & CSMASK_ECS_AGNUS))
                   2708:        return;
1.1.1.19! root     2709:     maybe_blit (0);
1.1       root     2710:     blt_info.hblitsize = v & 0x7FF;
                   2711:     blt_info.vblitsize = oldvblts;
                   2712:     if (!blt_info.vblitsize) blt_info.vblitsize = 32768;
                   2713:     if (!blt_info.hblitsize) blt_info.hblitsize = 0x800;
1.1.1.2   root     2714:     bltstate = BLT_init;
1.1.1.5   root     2715:     do_blitter ();
1.1       root     2716: }
1.1.1.4   root     2717: 
1.1.1.8   root     2718: STATIC_INLINE void SPRxCTL_1 (uae_u16 v, int num)
1.1       root     2719: {
1.1.1.2   root     2720:     int sprxp;
                   2721:     sprctl[num] = v;
1.1.1.10  root     2722:     nr_armed -= spr[num].armed;
                   2723:     spr[num].armed = 0;
1.1.1.3   root     2724:     if (sprpos[num] == 0 && v == 0) {
1.1.1.10  root     2725:        spr[num].state = SPR_stop;
                   2726:        spr[num].on = 0;
1.1.1.15  root     2727:     } else if (spr[num].state != SPR_waiting_stop) {
1.1.1.10  root     2728:        spr[num].state = SPR_waiting_start;
1.1.1.15  root     2729:        spr[num].on = 1;
                   2730:     }
1.1.1.2   root     2731: 
1.1.1.15  root     2732:     sprxp = (sprpos[num] & 0xFF) * 2 + (v & 1);
                   2733: 
                   2734:     /* Quite a bit salad in this register... */
                   2735:     if (currprefs.chipset_mask & CSMASK_AGA) {
                   2736:        /* We ignore the SHRES 35ns increment for now; SHRES support doesn't
                   2737:           work anyway, so we may as well restrict AGA sprites to a 70ns
                   2738:           resolution.  */
                   2739:        sprxp <<= 1;
                   2740:        sprxp |= (v >> 4) & 1;
                   2741:     }
1.1.1.10  root     2742:     spr[num].xpos = sprxp;
                   2743:     spr[num].vstart = (sprpos[num] >> 8) | ((sprctl[num] << 6) & 0x100);
                   2744:     spr[num].vstop = (sprctl[num] >> 8) | ((sprctl[num] << 7) & 0x100);
1.1.1.15  root     2745: 
1.1.1.2   root     2746: }
1.1.1.8   root     2747: STATIC_INLINE void SPRxPOS_1 (uae_u16 v, int num)
1.1.1.2   root     2748: {
                   2749:     int sprxp;
                   2750:     sprpos[num] = v;
1.1.1.15  root     2751:     sprxp = (v & 0xFF) * 2 + (sprctl[num] & 1);
                   2752: 
                   2753:     if (currprefs.chipset_mask & CSMASK_AGA) {
                   2754:        sprxp <<= 1;
                   2755:        sprxp |= (sprctl[num] >> 4) & 1;
                   2756:     }
1.1.1.10  root     2757:     spr[num].xpos = sprxp;
                   2758:     spr[num].vstart = (sprpos[num] >> 8) | ((sprctl[num] << 6) & 0x100);
1.1.1.2   root     2759: }
1.1.1.8   root     2760: STATIC_INLINE void SPRxDATA_1 (uae_u16 v, int num)
1.1.1.2   root     2761: {
1.1.1.15  root     2762:     sprdata[num][0] = v;
1.1.1.10  root     2763:     nr_armed += 1 - spr[num].armed;
                   2764:     spr[num].armed = 1;
1.1.1.2   root     2765: }
1.1.1.8   root     2766: STATIC_INLINE void SPRxDATB_1 (uae_u16 v, int num)
1.1.1.2   root     2767: {
1.1.1.15  root     2768:     sprdatb[num][0] = v;
1.1.1.2   root     2769: }
1.1.1.4   root     2770: static void SPRxDATA (int hpos, uae_u16 v, int num) { decide_sprites (hpos); SPRxDATA_1 (v, num); }
                   2771: static void SPRxDATB (int hpos, uae_u16 v, int num) { decide_sprites (hpos); SPRxDATB_1 (v, num); }
                   2772: static void SPRxCTL (int hpos, uae_u16 v, int num) { decide_sprites (hpos); SPRxCTL_1 (v, num); }
                   2773: static void SPRxPOS (int hpos, uae_u16 v, int num) { decide_sprites (hpos); SPRxPOS_1 (v, num); }
                   2774: static void SPRxPTH (int hpos, uae_u16 v, int num)
1.1       root     2775: {
1.1.1.4   root     2776:     decide_sprites (hpos);
1.1.1.10  root     2777:     spr[num].pt &= 0xffff;
                   2778:     spr[num].pt |= (uae_u32)v << 16;
1.1.1.3   root     2779: 
1.1.1.10  root     2780:     if (spr[num].state == SPR_stop || vpos < sprite_vblank_endline)
                   2781:        spr[num].state = SPR_restart;
                   2782:     spr[num].on = 1;
1.1       root     2783: }
1.1.1.4   root     2784: static void SPRxPTL (int hpos, uae_u16 v, int num)
1.1       root     2785: {
1.1.1.4   root     2786:     decide_sprites (hpos);
1.1.1.10  root     2787:     spr[num].pt &= ~0xffff;
                   2788:     spr[num].pt |= v;
1.1       root     2789: 
1.1.1.10  root     2790:     if (spr[num].state == SPR_stop || vpos < sprite_vblank_endline)
                   2791:        spr[num].state = SPR_restart;
                   2792:     spr[num].on = 1;
1.1.1.3   root     2793: }
1.1.1.4   root     2794: static void CLXCON (uae_u16 v)
1.1.1.3   root     2795: {
                   2796:     clxcon = v;
1.1.1.14  root     2797:     clxcon_bpl_enable = (v >> 6) & 63;
                   2798:     clxcon_bpl_match = v & 63;
                   2799:     clx_sprmask = ((((v >> 15) & 1) << 7) | (((v >> 14) & 1) << 5) | (((v >> 13) & 1) << 3) | (((v >> 12) & 1) << 1) | 0x55);
                   2800: }
                   2801: static void CLXCON2 (uae_u16 v)
                   2802: {
                   2803:     if (!(currprefs.chipset_mask & CSMASK_AGA))
                   2804:        return;
                   2805:     clxcon2 = v;
                   2806:     clxcon_bpl_enable |= v & (0x40|0x80);
                   2807:     clxcon_bpl_match |= (v & (0x01|0x02)) << 6;
                   2808:  }
1.1.1.4   root     2809: static uae_u16 CLXDAT (void)
1.1.1.3   root     2810: {
                   2811:     uae_u16 v = clxdat;
                   2812:     clxdat = 0;
                   2813:     return v;
                   2814: }
1.1.1.11  root     2815: 
1.1.1.13  root     2816: static uae_u16 COLOR_READ (int num)
1.1       root     2817: {
1.1.1.13  root     2818:     int cr, cg, cb, colreg;
                   2819:     uae_u16 cval;
                   2820: 
                   2821:     if (!(currprefs.chipset_mask & CSMASK_AGA) || !(bplcon2 & 0x0100))
                   2822:        return 0xffff;
                   2823: 
                   2824:     colreg = ((bplcon3 >> 13) & 7) * 32 + num;
                   2825:     cr = current_colors.color_regs_aga[colreg] >> 16;
                   2826:     cg = (current_colors.color_regs_aga[colreg] >> 8) & 0xFF;
                   2827:     cb = current_colors.color_regs_aga[colreg] & 0xFF;
                   2828:     if (bplcon3 & 0x200)
1.1.1.16  root     2829:        cval = ((cr & 15) << 8) | ((cg & 15) << 4) | ((cb & 15) << 0);
1.1.1.13  root     2830:     else
1.1.1.16  root     2831:        cval = ((cr >> 4) << 8) | ((cg >> 4) << 4) | ((cb >> 4) << 0);
1.1.1.13  root     2832:     return cval;
                   2833: }
1.1.1.3   root     2834: 
1.1.1.13  root     2835: static void COLOR_WRITE (int hpos, uae_u16 v, int num)
                   2836: {
1.1       root     2837:     v &= 0xFFF;
1.1.1.11  root     2838:     if (currprefs.chipset_mask & CSMASK_AGA) {
1.1.1.4   root     2839:        int r,g,b;
                   2840:        int cr,cg,cb;
                   2841:        int colreg;
1.1.1.3   root     2842:        uae_u32 cval;
1.1.1.4   root     2843: 
1.1.1.11  root     2844:        /* writing is disabled when RDRAM=1 */
1.1.1.13  root     2845:        if (bplcon2 & 0x0100)
                   2846:            return;
1.1.1.11  root     2847: 
1.1.1.2   root     2848:        colreg = ((bplcon3 >> 13) & 7) * 32 + num;
1.1       root     2849:        r = (v & 0xF00) >> 8;
                   2850:        g = (v & 0xF0) >> 4;
                   2851:        b = (v & 0xF) >> 0;
1.1.1.11  root     2852:        cr = current_colors.color_regs_aga[colreg] >> 16;
                   2853:        cg = (current_colors.color_regs_aga[colreg] >> 8) & 0xFF;
                   2854:        cb = current_colors.color_regs_aga[colreg] & 0xFF;
1.1       root     2855: 
1.1.1.2   root     2856:        if (bplcon3 & 0x200) {
1.1       root     2857:            cr &= 0xF0; cr |= r;
                   2858:            cg &= 0xF0; cg |= g;
                   2859:            cb &= 0xF0; cb |= b;
                   2860:        } else {
                   2861:            cr = r + (r << 4);
                   2862:            cg = g + (g << 4);
                   2863:            cb = b + (b << 4);
                   2864:        }
                   2865:        cval = (cr << 16) | (cg << 8) | cb;
1.1.1.11  root     2866:        if (cval == current_colors.color_regs_aga[colreg])
1.1       root     2867:            return;
1.1.1.5   root     2868: 
                   2869:        /* Call this with the old table still intact. */
1.1.1.11  root     2870:        record_color_change (hpos, colreg, cval);
1.1.1.5   root     2871:        remembered_color_entry = -1;
1.1.1.11  root     2872:        current_colors.color_regs_aga[colreg] = cval;
                   2873:        current_colors.acolors[colreg] = CONVERT_RGB (cval);
                   2874:    } else {
                   2875:        if (current_colors.color_regs_ecs[num] == v)
1.1       root     2876:            return;
1.1.1.2   root     2877:        /* Call this with the old table still intact. */
1.1.1.4   root     2878:        record_color_change (hpos, num, v);
1.1.1.2   root     2879:        remembered_color_entry = -1;
1.1.1.11  root     2880:        current_colors.color_regs_ecs[num] = v;
1.1.1.2   root     2881:        current_colors.acolors[num] = xcolors[v];
1.1       root     2882:     }
                   2883: }
1.1.1.3   root     2884: 
                   2885: static uae_u16 potgo_value;
                   2886: 
1.1.1.4   root     2887: static void POTGO (uae_u16 v)
1.1       root     2888: {
1.1.1.3   root     2889:     potgo_value = v;
                   2890: }
                   2891: 
1.1.1.4   root     2892: static uae_u16 POTGOR (void)
1.1.1.3   root     2893: {
1.1.1.11  root     2894:     uae_u16 v = (potgo_value | (potgo_value >> 1)) & 0x5500;
                   2895: 
                   2896:     v |= (~potgo_value & 0xAA00) >> 1;
1.1.1.3   root     2897: 
1.1.1.6   root     2898:     if (JSEM_ISMOUSE (0, &currprefs)) {
1.1.1.3   root     2899:        if (buttonstate[2])
                   2900:            v &= 0xFBFF;
                   2901: 
                   2902:        if (buttonstate[1])
                   2903:            v &= 0xFEFF;
1.1.1.6   root     2904:     } else if (JSEM_ISJOY0 (0, &currprefs) || JSEM_ISJOY1 (0, &currprefs)) {
1.1.1.3   root     2905:        if (joy0button & 2) v &= 0xfbff;
                   2906:        if (joy0button & 4) v &= 0xfeff;
                   2907:     }
                   2908: 
1.1.1.6   root     2909:     if (JSEM_ISJOY0 (1, &currprefs) || JSEM_ISJOY1 (1, &currprefs)) {
1.1.1.3   root     2910:        if (joy1button & 2) v &= 0xbfff;
                   2911:        if (joy1button & 4) v &= 0xefff;
                   2912:     }
1.1       root     2913: 
                   2914:     return v;
                   2915: }
1.1.1.4   root     2916: 
                   2917: static uae_u16 POT0DAT (void)
1.1       root     2918: {
1.1.1.3   root     2919:     static uae_u16 cnt = 0;
1.1.1.6   root     2920:     if (JSEM_ISMOUSE (0, &currprefs)) {
1.1.1.3   root     2921:        if (buttonstate[2])
                   2922:            cnt = ((cnt + 1) & 0xFF) | (cnt & 0xFF00);
                   2923:        if (buttonstate[1])
                   2924:            cnt += 0x100;
                   2925:     }
                   2926: 
1.1       root     2927:     return cnt;
                   2928: }
1.1.1.4   root     2929: static uae_u16 JOY0DAT (void)
1.1       root     2930: {
1.1.1.6   root     2931:     if (JSEM_ISMOUSE (0, &currprefs)) {
1.1.1.4   root     2932:        do_mouse_hack ();
1.1.1.3   root     2933:        return ((uae_u8)mouse_x) + ((uae_u16)mouse_y << 8);
                   2934:     }
1.1       root     2935:     return joy0dir;
                   2936: }
1.1.1.4   root     2937: static uae_u16 JOY1DAT (void)
1.1       root     2938: {
1.1.1.6   root     2939:     if (JSEM_ISMOUSE (1, &currprefs)) {
1.1.1.4   root     2940:        do_mouse_hack ();
1.1.1.3   root     2941:        return ((uae_u8)mouse_x) + ((uae_u16)mouse_y << 8);
                   2942:     }
                   2943:     return joy1dir;
1.1       root     2944: }
1.1.1.4   root     2945: static void JOYTEST (uae_u16 v)
1.1       root     2946: {
1.1.1.6   root     2947:     if (JSEM_ISMOUSE (0, &currprefs)) {
1.1.1.3   root     2948:        mouse_x = v & 0xFC;
                   2949:        mouse_y = (v >> 8) & 0xFC;
1.1       root     2950:     }
                   2951: }
                   2952: 
1.1.1.15  root     2953: /* The copper code.  The biggest nightmare in the whole emulator.
                   2954: 
                   2955:    Alright.  The current theory:
                   2956:    1. Copper moves happen 4 cycles after state READ2 is reached.
                   2957:       It can't happen immediately when we reach READ2, because the
                   2958:       data needs time to get back from the bus.  4 cycles appears
                   2959:       to be the time a chip memory access takes on the Amiga.
                   2960:    2. As stated in the HRM, a WAIT really does need an extra cycle
                   2961:       to wake up.  This is implemented by _not_ falling through from
                   2962:       a successful wait to READ1, but by starting the next cycle.
                   2963:       (Note: the extra cycle for the WAIT apparently really needs a
                   2964:       free cycle; i.e. contention with the bitplane fetch can slow
                   2965:       it down).
                   2966:    3. Apparently, to compensate for the extra wake up cycle, a WAIT
                   2967:       will use the _incremented_ horizontal position, so the WAIT
                   2968:       cycle normally finishes two clocks earlier than the position
                   2969:       it was waiting for.  The extra cycle then takes us to the
                   2970:       position that was waited for.
                   2971:       If the earlier cycle is busy with a bitplane, things change a bit.
                   2972:       E.g., waiting for position 0x50 in a 6 plane display: In cycle
                   2973:       0x4e, we fetch BPL5, so the wait wakes up in 0x50, the extra cycle
                   2974:       takes us to 0x54 (since 0x52 is busy), then we have READ1/READ2,
                   2975:       and the next register write is at 0x5c.
                   2976:    4. The last cycle in a line is not usable for the copper.
                   2977:    5. A 4 cycle delay also applies to the WAIT instruction.  This means
                   2978:       that the second of two back-to-back WAITs (or a WAIT whose
                   2979:       condition is immediately true) takes 8 cycles.
                   2980:    6. This also applies to a SKIP instruction.  The copper does not
                   2981:       fetch the next instruction while waiting for the second word of
                   2982:       a WAIT or a SKIP to arrive.
                   2983:    7. A SKIP also seems to need an unexplained additional two cycles
                   2984:       after its second word arrives; this is _not_ a memory cycle (I
                   2985:       think, the documentation is pretty clear on this).
                   2986:    8. Two additional cycles are inserted when writing to COPJMP1/2.  */
                   2987: 
1.1.1.4   root     2988: /* Determine which cycles are available for the copper in a display
                   2989:  * with a agiven number of planes.  */
1.1.1.2   root     2990: 
1.1.1.16  root     2991: STATIC_INLINE int copper_cant_read (int hpos)
1.1       root     2992: {
1.1.1.4   root     2993:     int t;
1.1.1.2   root     2994: 
1.1.1.15  root     2995:     if (hpos + 1 >= maxhpos)
1.1.1.2   root     2996:        return 1;
1.1.1.3   root     2997: 
1.1.1.15  root     2998:     if (fetch_state == fetch_not_started || hpos < thisline_decision.plfleft)
                   2999:        return 0;
                   3000: 
                   3001:     if ((passed_plfstop == 3 && hpos >= thisline_decision.plfright)
                   3002:        || hpos >= estimated_last_fetch_cycle)
1.1.1.4   root     3003:        return 0;
1.1.1.3   root     3004: 
1.1.1.16  root     3005:     t = curr_diagram[(hpos + cycle_diagram_shift) & fetchstart_mask];
1.1.1.4   root     3006: #if 0
                   3007:     if (t == -1)
                   3008:        abort ();
                   3009: #endif
                   3010:     return t;
1.1.1.2   root     3011: }
                   3012: 
1.1.1.10  root     3013: STATIC_INLINE int dangerous_reg (int reg)
                   3014: {
                   3015:     /* Safe:
                   3016:      * Bitplane pointers, control registers, modulos and data.
                   3017:      * Sprite pointers, control registers, and data.
                   3018:      * Color registers.  */
                   3019:     if (reg >= 0xE0 && reg < 0x1C0)
                   3020:        return 0;
                   3021:     return 1;
                   3022: }
                   3023: 
1.1.1.15  root     3024: #define FAST_COPPER 1
                   3025: 
                   3026: /* The future, Conan?
                   3027:    We try to look ahead in the copper list to avoid doing continuous calls
                   3028:    to updat_copper (which is what happens when SPCFLAG_COPPER is set).  If
                   3029:    we find that the same effect can be achieved by setting a delayed event
                   3030:    and then doing multiple copper insns in one batch, we can get a massive
                   3031:    speedup.
                   3032: 
                   3033:    We don't try to be precise here.  All copper reads take exactly 2 cycles,
                   3034:    the effect of bitplane contention is ignored.  Trying to get it exactly
                   3035:    right would be much more complex and as such carry a huge risk of getting
                   3036:    it subtly wrong; and it would also be more expensive - we want this code
                   3037:    to be fast.  */
                   3038: static void predict_copper (void)
                   3039: {
                   3040:     uaecptr ip = cop_state.ip;
                   3041:     unsigned int c_hpos = cop_state.hpos;
                   3042:     enum copper_states state = cop_state.state;
                   3043:     unsigned int w1, w2, cycle_count;
                   3044: 
                   3045:     switch (state) {
                   3046:     case COP_read1_wr_in2:
                   3047:     case COP_read2_wr_in2:
                   3048:     case COP_read1_wr_in4:
                   3049:        if (dangerous_reg (cop_state.saved_i1))
                   3050:            return;
                   3051:        state = state == COP_read2_wr_in2 ? COP_read2 : COP_read1;
                   3052:        break;
                   3053: 
                   3054:     case COP_read1_in2:
                   3055:        c_hpos += 2;
                   3056:        state = COP_read1;
                   3057:        break;
                   3058: 
                   3059:     case COP_stop:
                   3060:     case COP_bltwait:
                   3061:     case COP_wait1:
                   3062:     case COP_skip_in4:
                   3063:     case COP_skip_in2:
                   3064:        return;
                   3065: 
                   3066:     case COP_wait_in4:
                   3067:        c_hpos += 2;
                   3068:        /* fallthrough */
                   3069:     case COP_wait_in2:
                   3070:        c_hpos += 2;
                   3071:        /* fallthrough */
                   3072:     case COP_wait:
                   3073:        state = COP_wait;
                   3074:        break;
                   3075: 
                   3076:     default:
                   3077:        break;
                   3078:     }
                   3079:     /* Only needed for COP_wait, but let's shut up the compiler.  */
                   3080:     w1 = cop_state.saved_i1;
                   3081:     w2 = cop_state.saved_i2;
                   3082:     cop_state.first_sync = c_hpos;
                   3083:     cop_state.regtypes_modified = REGTYPE_FORCE;
                   3084: 
                   3085:     /* Get this case out of the way, so that the loop below only has to deal
                   3086:        with read1 and wait.  */
                   3087:     if (state == COP_read2) {
                   3088:        w1 = cop_state.i1;
                   3089:        if (w1 & 1) {
                   3090:            w2 = chipmem_wget (ip);
                   3091:            if (w2 & 1)
                   3092:                goto done;
                   3093:            state = COP_wait;
                   3094:            c_hpos += 4;
                   3095:        } else if (dangerous_reg (w1)) {
                   3096:            c_hpos += 4;
                   3097:            goto done;
                   3098:        } else {
                   3099:            cop_state.regtypes_modified |= regtypes[w1 & 0x1FE];
                   3100:            state = COP_read1;
                   3101:            c_hpos += 2;
                   3102:        }
                   3103:        ip += 2;        
                   3104:     }
                   3105: 
                   3106:     while (c_hpos + 1 < maxhpos) {
                   3107:        if (state == COP_read1) {
                   3108:            w1 = chipmem_wget (ip);
                   3109:            if (w1 & 1) {
                   3110:                w2 = chipmem_wget (ip + 2);
                   3111:                if (w2 & 1)
                   3112:                    break;
                   3113:                state = COP_wait;
                   3114:                c_hpos += 6;
                   3115:            } else if (dangerous_reg (w1)) {
                   3116:                c_hpos += 6;
                   3117:                goto done;
                   3118:            } else {
                   3119:                cop_state.regtypes_modified |= regtypes[w1 & 0x1FE];
                   3120:                c_hpos += 4;
                   3121:            }
                   3122:            ip += 4;
                   3123:        } else if (state == COP_wait) {
                   3124:            if ((w2 & 0xFE) != 0xFE)
                   3125:                break;
                   3126:            else {
                   3127:                unsigned int vcmp = (w1 & (w2 | 0x8000)) >> 8;
                   3128:                unsigned int hcmp = (w1 & 0xFE);
                   3129: 
                   3130:                unsigned int vp = vpos & (((w2 >> 8) & 0x7F) | 0x80);
                   3131:                if (vp < vcmp) {
                   3132:                    /* Whee.  We can wait until the end of the line!  */
                   3133:                    c_hpos = maxhpos;
                   3134:                } else if (vp > vcmp || hcmp <= c_hpos) {
                   3135:                    state = COP_read1;
                   3136:                    /* minimum wakeup time */
                   3137:                    c_hpos += 2;
                   3138:                } else {
                   3139:                    state = COP_read1;
                   3140:                    c_hpos = hcmp;
                   3141:                }
                   3142:                /* If this is the current instruction, remember that we don't
                   3143:                   need to sync CPU and copper anytime soon.  */
                   3144:                if (cop_state.ip == ip) {
                   3145:                    cop_state.first_sync = c_hpos;
                   3146:                }
                   3147:            }
                   3148:        } else
                   3149:            abort ();
                   3150:     }
                   3151: 
                   3152:   done:
                   3153:     cycle_count = c_hpos - cop_state.hpos;
                   3154:     if (cycle_count >= 8) {
                   3155:        unset_special (SPCFLAG_COPPER);
                   3156:        eventtab[ev_copper].active = 1;
                   3157:        eventtab[ev_copper].oldcycles = get_cycles ();
                   3158:        eventtab[ev_copper].evtime = get_cycles () + cycle_count * CYCLE_UNIT;
                   3159:        events_schedule ();
                   3160:     }
                   3161: }
                   3162: 
                   3163: static void perform_copper_write (int old_hpos)
                   3164: {
                   3165:     int vp = vpos & (((cop_state.saved_i2 >> 8) & 0x7F) | 0x80);
                   3166:     int hp;
                   3167:     unsigned int address = cop_state.saved_i1 & 0x1FE;
                   3168: 
                   3169:     record_copper (cop_state.saved_ip - 4, old_hpos, vpos);
                   3170: 
                   3171:     if (address < (copcon & 2 ? ((currprefs.chipset_mask & CSMASK_AGA) ? 0 : 0x40u) : 0x80u)) {
                   3172:        cop_state.state = COP_stop;     
                   3173:        copper_enabled_thisline = 0;
                   3174:        unset_special (SPCFLAG_COPPER);
                   3175:        return;
                   3176:     }
                   3177: 
                   3178:     if (address == 0x88) {
                   3179:        cop_state.ip = cop1lc;
                   3180:        cop_state.state = COP_read1_in2;
                   3181:     } else if (address == 0x8A) {
                   3182:        cop_state.ip = cop2lc;
                   3183:        cop_state.state = COP_read1_in2;
                   3184:     } else
                   3185:        custom_wput_1 (old_hpos, address, cop_state.saved_i2);
                   3186: }
1.1.1.13  root     3187: 
1.1.1.9   root     3188: static void update_copper (int until_hpos)
1.1.1.2   root     3189: {
1.1.1.15  root     3190:     int vp = vpos & (((cop_state.saved_i2 >> 8) & 0x7F) | 0x80);    
1.1.1.4   root     3191:     int c_hpos = cop_state.hpos;
1.1.1.2   root     3192: 
1.1.1.10  root     3193:     if (eventtab[ev_copper].active)
                   3194:        abort ();
                   3195: 
                   3196:     if (cop_state.state == COP_wait && vp < cop_state.vcmp)
                   3197:        abort ();
                   3198: 
                   3199:     until_hpos &= ~1;
                   3200: 
                   3201:     if (until_hpos > (maxhpos & ~1))
                   3202:        until_hpos = maxhpos & ~1;
1.1.1.3   root     3203: 
1.1.1.13  root     3204:     until_hpos += 2;
1.1.1.4   root     3205:     for (;;) {
1.1.1.10  root     3206:        int old_hpos = c_hpos;
                   3207:        int hp;
                   3208: 
1.1.1.13  root     3209:        if (c_hpos >= until_hpos)
1.1.1.3   root     3210:            break;
                   3211: 
1.1.1.13  root     3212:        /* So we know about the fetch state.  */
1.1.1.9   root     3213:        decide_line (c_hpos);
1.1.1.3   root     3214: 
1.1.1.15  root     3215:        switch (cop_state.state) {
                   3216:        case COP_read1_in2:
                   3217:            cop_state.state = COP_read1;
                   3218:            break;
                   3219:        case COP_read1_wr_in2:
                   3220:            cop_state.state = COP_read1;
                   3221:            perform_copper_write (old_hpos);
                   3222:            /* That could have turned off the copper.  */
                   3223:            if (! copper_enabled_thisline)
                   3224:                goto out;
                   3225: 
                   3226:            break;
                   3227:        case COP_read1_wr_in4:
                   3228:            cop_state.state = COP_read1_wr_in2;
                   3229:            break;
                   3230:        case COP_read2_wr_in2:
                   3231:            cop_state.state = COP_read2;
                   3232:            perform_copper_write (old_hpos);
                   3233:            /* That could have turned off the copper.  */
                   3234:            if (! copper_enabled_thisline)
                   3235:                goto out;
                   3236: 
                   3237:            break;
                   3238:        case COP_wait_in2:
                   3239:            cop_state.state = COP_wait1;
                   3240:            break;
                   3241:        case COP_wait_in4:
                   3242:            cop_state.state = COP_wait_in2;
                   3243:            break;
                   3244:        case COP_skip_in2:
                   3245:        {
                   3246:            static int skipped_before;
                   3247:            unsigned int vcmp, hcmp, vp1, hp1;
                   3248:            cop_state.state = COP_read1_in2;
                   3249: 
                   3250:            vcmp = (cop_state.saved_i1 & (cop_state.saved_i2 | 0x8000)) >> 8;
                   3251:            hcmp = (cop_state.saved_i1 & cop_state.saved_i2 & 0xFE);
                   3252: 
                   3253:            if (! skipped_before) {
                   3254:                skipped_before = 1;
                   3255:                write_log ("Program uses Copper SKIP instruction.\n");
                   3256:            }
                   3257: 
                   3258:            vp1 = vpos & (((cop_state.saved_i2 >> 8) & 0x7F) | 0x80);
                   3259:            hp1 = old_hpos & (cop_state.saved_i2 & 0xFE);
                   3260: 
                   3261:            if ((vp1 > vcmp || (vp1 == vcmp && hp1 >= hcmp))
                   3262:                && ((cop_state.saved_i2 & 0x8000) != 0 || ! (DMACONR() & 0x4000)))
                   3263:                cop_state.ignore_next = 1;
                   3264:            break;
                   3265:        }
                   3266:        case COP_skip_in4:
                   3267:            cop_state.state = COP_skip_in2;
                   3268:            break;
                   3269:        default:
                   3270:            break;
                   3271:        }
                   3272: 
1.1.1.10  root     3273:        c_hpos += 2;
1.1.1.16  root     3274:        if (copper_cant_read (old_hpos))
1.1.1.10  root     3275:            continue;
1.1.1.3   root     3276: 
1.1.1.10  root     3277:        switch (cop_state.state) {
1.1.1.15  root     3278:        case COP_read1_wr_in4:
                   3279:            abort ();
                   3280: 
                   3281:        case COP_read1_wr_in2:
1.1.1.9   root     3282:        case COP_read1:
1.1.1.15  root     3283:            cop_state.i1 = chipmem_wget (cop_state.ip);
1.1.1.9   root     3284:            cop_state.ip += 2;
1.1.1.15  root     3285:            cop_state.state = cop_state.state == COP_read1 ? COP_read2 : COP_read2_wr_in2;
1.1.1.9   root     3286:            break;
                   3287: 
1.1.1.15  root     3288:        case COP_read2_wr_in2:
                   3289:            abort ();
                   3290: 
1.1.1.9   root     3291:        case COP_read2:
1.1.1.15  root     3292:            cop_state.i2 = chipmem_wget (cop_state.ip);
1.1.1.9   root     3293:            cop_state.ip += 2;
                   3294:            if (cop_state.ignore_next) {
                   3295:                cop_state.ignore_next = 0;
1.1.1.15  root     3296:                cop_state.state = COP_read1;
1.1.1.9   root     3297:                break;
1.1.1.3   root     3298:            }
1.1.1.2   root     3299: 
1.1.1.15  root     3300:            cop_state.saved_i1 = cop_state.i1;
                   3301:            cop_state.saved_i2 = cop_state.i2;
                   3302:            cop_state.saved_ip = cop_state.ip;
                   3303: 
                   3304:            if (cop_state.i1 & 1) {
                   3305:                if (cop_state.i2 & 1)
                   3306:                    cop_state.state = COP_skip_in4;
                   3307:                else
                   3308:                    cop_state.state = COP_wait_in4;
                   3309:            } else
                   3310:                cop_state.state = COP_read1_wr_in4;
                   3311:            break;
                   3312: 
                   3313:        case COP_wait1:
1.1.1.9   root     3314:            cop_state.state = COP_wait;
1.1.1.13  root     3315: 
1.1.1.15  root     3316:            cop_state.vcmp = (cop_state.saved_i1 & (cop_state.saved_i2 | 0x8000)) >> 8;
                   3317:            cop_state.hcmp = (cop_state.saved_i1 & cop_state.saved_i2 & 0xFE);
                   3318: 
                   3319:            vp = vpos & (((cop_state.saved_i2 >> 8) & 0x7F) | 0x80);
1.1.1.13  root     3320: 
1.1.1.15  root     3321:            if (cop_state.saved_i1 == 0xFFFF && cop_state.saved_i2 == 0xFFFE) {
1.1.1.9   root     3322:                cop_state.state = COP_stop;
1.1.1.10  root     3323:                copper_enabled_thisline = 0;
1.1.1.13  root     3324:                unset_special (SPCFLAG_COPPER);
1.1.1.10  root     3325:                goto out;
1.1.1.2   root     3326:            }
1.1.1.9   root     3327:            if (vp < cop_state.vcmp) {
1.1.1.10  root     3328:                copper_enabled_thisline = 0;
1.1.1.13  root     3329:                unset_special (SPCFLAG_COPPER);
1.1.1.10  root     3330:                goto out;
1.1.1.2   root     3331:            }
1.1.1.10  root     3332: 
1.1.1.15  root     3333:            /* fall through */
                   3334:        do_wait:
1.1.1.10  root     3335:        case COP_wait:
                   3336:            if (vp < cop_state.vcmp)
                   3337:                abort ();
                   3338: 
1.1.1.15  root     3339:            hp = c_hpos & (cop_state.saved_i2 & 0xFE);
                   3340:            if (vp == cop_state.vcmp && hp < cop_state.hcmp) {
                   3341:                /* Position not reached yet.  */
                   3342:                if (currprefs.fast_copper && (cop_state.saved_i2 & 0xFE) == 0xFE) {
                   3343:                    int wait_finish = cop_state.hcmp - 2;
                   3344:                    /* This will leave c_hpos untouched if it's equal to wait_finish.  */
                   3345:                    if (wait_finish < c_hpos)
                   3346:                        abort ();
                   3347:                    else if (wait_finish <= until_hpos) {
                   3348:                        c_hpos = wait_finish;
                   3349:                    } else
                   3350:                        c_hpos = until_hpos;
                   3351:                }             
1.1.1.4   root     3352:                break;
1.1.1.15  root     3353:            }
1.1.1.10  root     3354: 
                   3355:            /* Now we know that the comparisons were successful.  We might still
                   3356:               have to wait for the blitter though.  */
1.1.1.15  root     3357:            if ((cop_state.saved_i2 & 0x8000) == 0 && (DMACONR() & 0x4000)) {
1.1.1.9   root     3358:                /* We need to wait for the blitter.  */
1.1.1.4   root     3359:                cop_state.state = COP_bltwait;
1.1.1.10  root     3360:                copper_enabled_thisline = 0;
1.1.1.13  root     3361:                unset_special (SPCFLAG_COPPER);
1.1.1.10  root     3362:                goto out;
1.1.1.2   root     3363:            }
1.1.1.10  root     3364: 
1.1.1.15  root     3365:            record_copper (cop_state.ip - 4, old_hpos, vpos);
1.1.1.13  root     3366: 
1.1.1.10  root     3367:            cop_state.state = COP_read1;
1.1.1.4   root     3368:            break;
1.1.1.2   root     3369: 
1.1.1.13  root     3370:        default:
1.1.1.15  root     3371:            break;
1.1       root     3372:        }
1.1.1.4   root     3373:     }
1.1.1.10  root     3374: 
                   3375:   out:
1.1.1.4   root     3376:     cop_state.hpos = c_hpos;
1.1.1.10  root     3377: 
1.1.1.15  root     3378:     /* The test against maxhpos also prevents us from calling predict_copper
                   3379:        when we are being called from hsync_handler, which would not only be
                   3380:        stupid, but actively harmful.  */
                   3381:     if (currprefs.fast_copper && (regs.spcflags & SPCFLAG_COPPER) && c_hpos + 8 < maxhpos)
                   3382:        predict_copper ();
1.1       root     3383: }
                   3384: 
1.1.1.9   root     3385: static void compute_spcflag_copper (void)
1.1       root     3386: {
1.1.1.10  root     3387:     copper_enabled_thisline = 0;
1.1.1.13  root     3388:     unset_special (SPCFLAG_COPPER);
1.1.1.10  root     3389:     if (! dmaen (DMA_COPPER) || cop_state.state == COP_stop || cop_state.state == COP_bltwait)
                   3390:        return;
                   3391: 
                   3392:     if (cop_state.state == COP_wait) {
1.1.1.15  root     3393:        int vp = vpos & (((cop_state.saved_i2 >> 8) & 0x7F) | 0x80);
1.1.1.10  root     3394: 
                   3395:        if (vp < cop_state.vcmp)
                   3396:            return;
                   3397:     }
                   3398:     copper_enabled_thisline = 1;
1.1.1.15  root     3399: 
                   3400:     if (currprefs.fast_copper)
                   3401:        predict_copper ();
                   3402: 
                   3403:     if (! eventtab[ev_copper].active)
                   3404:        set_special (SPCFLAG_COPPER);
1.1.1.10  root     3405: }
                   3406: 
                   3407: static void copper_handler (void)
                   3408: {
                   3409:     /* This will take effect immediately, within the same cycle.  */
1.1.1.13  root     3410:     set_special (SPCFLAG_COPPER);
1.1.1.10  root     3411: 
                   3412:     if (! copper_enabled_thisline)
                   3413:        abort ();
                   3414: 
                   3415:     eventtab[ev_copper].active = 0;
1.1.1.3   root     3416: }
1.1.1.2   root     3417: 
1.1.1.4   root     3418: void blitter_done_notify (void)
1.1       root     3419: {
1.1.1.4   root     3420:     if (cop_state.state != COP_bltwait)
                   3421:        return;
1.1.1.10  root     3422: 
                   3423:     copper_enabled_thisline = 1;
1.1.1.13  root     3424:     set_special (SPCFLAG_COPPER);
1.1.1.9   root     3425:     cop_state.state = COP_wait;
1.1.1.2   root     3426: }
                   3427: 
1.1.1.9   root     3428: void do_copper (void)
1.1.1.2   root     3429: {
1.1.1.4   root     3430:     int hpos = current_hpos ();
                   3431:     update_copper (hpos);
1.1.1.2   root     3432: }
                   3433: 
1.1.1.15  root     3434: /* ADDR is the address that is going to be read/written; this access is
                   3435:    the reason why we want to update the copper.  This function is also
                   3436:    used from hsync_handler to finish up the line; for this case, we check
                   3437:    hpos against maxhpos.  */
                   3438: STATIC_INLINE void sync_copper_with_cpu (int hpos, int do_schedule, unsigned int addr)
1.1.1.13  root     3439: {
1.1.1.15  root     3440:     /* Need to let the copper advance to the current position.  */
1.1.1.13  root     3441:     if (eventtab[ev_copper].active) {
1.1.1.15  root     3442:        if (hpos != maxhpos) {
                   3443:            /* There might be reasons why we don't actually need to bother
                   3444:               updating the copper.  */
                   3445:            if (hpos < cop_state.first_sync)
                   3446:                return;
                   3447: 
                   3448:            if ((cop_state.regtypes_modified & regtypes[addr & 0x1FE]) == 0)
                   3449:                return;
1.1.1.13  root     3450:        }
1.1.1.15  root     3451: 
                   3452:        eventtab[ev_copper].active = 0;
                   3453:        if (do_schedule)
                   3454:            events_schedule ();
                   3455:        set_special (SPCFLAG_COPPER);
1.1.1.13  root     3456:     }
1.1.1.15  root     3457:     if (copper_enabled_thisline)
1.1.1.13  root     3458:        update_copper (hpos);
                   3459: }
                   3460: 
                   3461: static void do_sprites (int currvp, int hpos)
1.1.1.4   root     3462: {
                   3463:     int i;
1.1.1.13  root     3464:     int maxspr, minspr;
1.1.1.15  root     3465:     int sw = sprite_width >> 3; 
1.1.1.2   root     3466: 
1.1.1.4   root     3467:     /* I don't know whether this is right. Some programs write the sprite pointers
1.1.1.13  root     3468:      * directly at the start of the copper list. With the test against currvp, the
1.1.1.4   root     3469:      * first two words of data are read on the second line in the frame. The problem
                   3470:      * occurs when the program jumps to another copperlist a few lines further down
                   3471:      * which _also_ writes the sprite pointer registers. This means that a) writing
                   3472:      * to the sprite pointers sets the state to SPR_restart; or b) that sprite DMA
                   3473:      * is disabled until the end of the vertical blanking interval. The HRM
                   3474:      * isn't clear - it says that the vertical sprite position can be set to any
                   3475:      * value, but this wouldn't be the first mistake... */
                   3476:     /* Update: I modified one of the programs to write the sprite pointers the
                   3477:      * second time only _after_ the VBlank interval, and it showed the same behaviour
                   3478:      * as it did unmodified under UAE with the above check. This indicates that the
                   3479:      * solution below is correct. */
1.1.1.9   root     3480:     /* Another update: seems like we have to use the NTSC value here (see Sanity Turmoil
                   3481:      * demo).  */
1.1.1.10  root     3482:     /* Maximum for Sanity Turmoil: 27.
                   3483:        Minimum for Sanity Arte: 22.  */
                   3484:     if (currvp < sprite_vblank_endline)
1.1.1.4   root     3485:        return;
1.1.1.3   root     3486: 
1.1.1.4   root     3487:     /* The graph in the HRM, p. 195 seems to indicate that sprite 0 is
                   3488:      * fetched at cycle 0x14 and thus can't be disabled by bitplane DMA. */
1.1.1.13  root     3489:     maxspr = hpos / 4 - 0x14 / 4;
                   3490:     minspr = last_sprite_hpos / 4 - 0x14 / 4;
                   3491: 
1.1.1.15  root     3492:     if (minspr > MAX_SPRITES || maxspr < 0)
1.1.1.4   root     3493:        return;
1.1.1.13  root     3494: 
1.1.1.15  root     3495:     if (maxspr > MAX_SPRITES)
                   3496:        maxspr = MAX_SPRITES;
1.1.1.13  root     3497:     if (minspr < 0)
                   3498:         minspr = 0;
1.1.1.2   root     3499: 
1.1.1.13  root     3500:     for (i = minspr; i < maxspr; i++) {
1.1.1.4   root     3501:        int fetch = 0;
1.1.1.2   root     3502: 
1.1.1.10  root     3503:        if (spr[i].on == 0)
1.1.1.4   root     3504:            continue;
1.1.1.2   root     3505: 
1.1.1.10  root     3506:        if (spr[i].state == SPR_restart) {
1.1.1.4   root     3507:            fetch = 2;
1.1.1.10  root     3508:            spr[i].on = 1;
                   3509:        } else if ((spr[i].state == SPR_waiting_start && spr[i].vstart == vpos) || spr[i].state == SPR_waiting_stop) {
1.1.1.4   root     3510:            fetch = 1;
1.1.1.10  root     3511:            spr[i].state = SPR_waiting_stop;
1.1.1.2   root     3512:        }
1.1.1.10  root     3513:        if ((spr[i].state == SPR_waiting_stop || spr[i].state == SPR_waiting_start) && spr[i].vstop == vpos) {
1.1.1.4   root     3514:            fetch = 2;
1.1.1.10  root     3515:            spr[i].state = SPR_waiting_start;
1.1.1.2   root     3516:        }
1.1.1.3   root     3517: 
1.1.1.9   root     3518:        if (fetch && dmaen (DMA_SPRITE)) {
1.1.1.15  root     3519:            uae_u16 data1 = chipmem_wget (spr[i].pt);
                   3520:            uae_u16 data2 = chipmem_wget (spr[i].pt + sw);
1.1.1.3   root     3521: 
1.1.1.4   root     3522:            if (fetch == 1) {
                   3523:                /* Hack for X mouse auto-calibration */
                   3524:                if (i == 0 && !sprvbfl && ((sprpos[0] & 0xff) << 2) > 2 * DISPLAY_LEFT_SHIFT) {
1.1.1.9   root     3525:                    spr0ctl = sprctl[0];
                   3526:                    spr0pos = sprpos[0];
                   3527:                    sprvbfl = 2;
1.1.1.3   root     3528:                }
1.1.1.9   root     3529:                SPRxDATB_1 (data2, i);
                   3530:                SPRxDATA_1 (data1, i);
1.1.1.15  root     3531:                switch (sw)
                   3532:                    {
                   3533:                    case 64 >> 3:
                   3534:                    sprdata[i][3] = chipmem_wget (spr[i].pt + 6);
                   3535:                    sprdatb[i][3] = chipmem_wget (spr[i].pt + 6 + sw);
                   3536:                    sprdata[i][2] = chipmem_wget (spr[i].pt + 4);
                   3537:                    sprdatb[i][2] = chipmem_wget (spr[i].pt + 4 + sw);
                   3538:                    /* fall through */
                   3539:                    case 32 >> 3:
                   3540:                    sprdata[i][1] = chipmem_wget (spr[i].pt + 2);
                   3541:                    sprdatb[i][1] = chipmem_wget (spr[i].pt + 2 + sw);
                   3542:                    break;
                   3543:                }
1.1.1.4   root     3544:            } else {
1.1.1.9   root     3545:                SPRxPOS_1 (data1, i);
                   3546:                SPRxCTL_1 (data2, i);
1.1.1.3   root     3547:            }
1.1.1.15  root     3548:            spr[i].pt += sw * 2;
1.1       root     3549:        }
                   3550:     }
1.1.1.13  root     3551:     last_sprite_hpos = hpos;
1.1       root     3552: }
                   3553: 
1.1.1.4   root     3554: static void init_sprites (void)
1.1       root     3555: {
1.1.1.4   root     3556:     int i;
1.1.1.2   root     3557: 
1.1.1.15  root     3558:     for (i = 0; i < MAX_SPRITES; i++) {
1.1.1.4   root     3559:        /* ???? */
1.1.1.10  root     3560:        spr[i].state = SPR_stop;
                   3561:        spr[i].on = 0;
1.1.1.4   root     3562:     }
1.1.1.2   root     3563: 
1.1.1.4   root     3564:     memset (sprpos, 0, sizeof sprpos);
                   3565:     memset (sprctl, 0, sizeof sprctl);
                   3566: }
1.1.1.2   root     3567: 
1.1.1.3   root     3568: static void adjust_array_sizes (void)
1.1.1.2   root     3569: {
                   3570: #ifdef OS_WITHOUT_MEMORY_MANAGEMENT
1.1.1.13  root     3571:     if (delta_sprite_entry) {
1.1.1.3   root     3572:        void *p1,*p2;
1.1.1.13  root     3573:        int mcc = max_sprite_entry + 50 + delta_sprite_entry;
                   3574:        delta_sprite_entry = 0;
                   3575:        p1 = realloc (sprite_entries[0], mcc * sizeof (struct sprite_entry));
                   3576:        p2 = realloc (sprite_entries[1], mcc * sizeof (struct sprite_entry));
                   3577:        if (p1) sprite_entries[0] = p1;
                   3578:        if (p2) sprite_entries[1] = p2;
1.1.1.3   root     3579:        if (p1 && p2) {
1.1.1.18  root     3580:            write_log ("new max_sprite_entry=%d\n",mcc);
1.1.1.13  root     3581:            max_sprite_entry = mcc;
1.1.1.2   root     3582:        }
                   3583:     }
1.1.1.3   root     3584:     if (delta_color_change) {
                   3585:        void *p1,*p2;
                   3586:        int mcc = max_color_change + 200 + delta_color_change;
                   3587:        delta_color_change = 0;
                   3588:        p1 = realloc (color_changes[0], mcc * sizeof (struct color_change));
                   3589:        p2 = realloc (color_changes[1], mcc * sizeof (struct color_change));
                   3590:        if (p1) color_changes[0] = p1;
                   3591:        if (p2) color_changes[1] = p2;
                   3592:        if (p1 && p2) {
1.1.1.18  root     3593:            write_log ("new max_color_change=%d\n",mcc);
1.1.1.2   root     3594:            max_color_change = mcc;
1.1.1.3   root     3595:        }
                   3596:     }
1.1.1.2   root     3597: #endif
1.1.1.3   root     3598: }
                   3599: 
1.1.1.4   root     3600: static void init_hardware_frame (void)
1.1.1.3   root     3601: {
1.1.1.4   root     3602:     next_lineno = 0;
                   3603:     nextline_how = nln_normal;
                   3604:     diwstate = DIW_waiting_start;
                   3605:     hdiwstate = DIW_waiting_start;
                   3606: }
1.1.1.2   root     3607: 
1.1.1.4   root     3608: void init_hardware_for_drawing_frame (void)
                   3609: {
1.1.1.3   root     3610:     adjust_array_sizes ();
                   3611: 
1.1.1.13  root     3612:     /* Avoid this code in the first frame after a customreset.  */
                   3613:     if (prev_sprite_entries) {
                   3614:        int first_pixel = prev_sprite_entries[0].first_pixel;
                   3615:        int npixels = prev_sprite_entries[prev_next_sprite_entry].first_pixel - first_pixel;
                   3616:        memset (spixels + first_pixel, 0, npixels * sizeof *spixels);
                   3617:        memset (spixstate.bytes + first_pixel, 0, npixels * sizeof *spixstate.bytes);
                   3618:     }
                   3619:     prev_next_sprite_entry = next_sprite_entry;
1.1.1.3   root     3620: 
1.1.1.13  root     3621:     next_color_change = 0;
                   3622:     next_sprite_entry = 0;
1.1.1.2   root     3623:     next_color_entry = 0;
                   3624:     remembered_color_entry = -1;
1.1.1.13  root     3625: 
                   3626:     prev_sprite_entries = sprite_entries[current_change_set];
                   3627:     curr_sprite_entries = sprite_entries[current_change_set ^ 1];
1.1.1.2   root     3628:     prev_color_changes = color_changes[current_change_set];
                   3629:     curr_color_changes = color_changes[current_change_set ^ 1];
                   3630:     prev_color_tables = color_tables[current_change_set];
                   3631:     curr_color_tables = color_tables[current_change_set ^ 1];
1.1.1.3   root     3632: 
1.1.1.2   root     3633:     prev_drawinfo = line_drawinfo[current_change_set];
1.1.1.4   root     3634:     curr_drawinfo = line_drawinfo[current_change_set ^ 1];
                   3635:     current_change_set ^= 1;
1.1.1.3   root     3636: 
1.1.1.4   root     3637:     color_src_match = color_dest_match = -1;
1.1.1.13  root     3638: 
                   3639:     /* Use both halves of the array in alternating fashion.  */
                   3640:     curr_sprite_entries[0].first_pixel = current_change_set * MAX_SPR_PIXELS;
                   3641:     next_sprite_forced = 1;
1.1.1.3   root     3642: }
                   3643: 
1.1.1.15  root     3644: static void do_savestate(void);
                   3645: 
1.1.1.2   root     3646: static void vsync_handler (void)
1.1       root     3647: {
1.1.1.15  root     3648: #if 0
                   3649:     static int old_clxdat;
                   3650:     if (clxdat != old_clxdat) {
                   3651:        printf ("CLXDAT %04x\n", clxdat);
                   3652:        old_clxdat = clxdat;
                   3653:     }
                   3654: #endif
1.1.1.12  root     3655:     n_frames++;
                   3656: 
1.1.1.4   root     3657:     if (currprefs.m68k_speed == -1) {
                   3658:        frame_time_t curr_time = read_processor_time ();
1.1.1.3   root     3659:        vsyncmintime += vsynctime;
                   3660:        /* @@@ Mathias? How do you think we should do this? */
                   3661:        /* If we are too far behind, or we just did a reset, adjust the
                   3662:         * needed time. */
1.1.1.4   root     3663:        if ((long int)(curr_time - vsyncmintime) > 0 || rpt_did_reset)
1.1.1.3   root     3664:            vsyncmintime = curr_time + vsynctime;
1.1.1.4   root     3665:        rpt_did_reset = 0;
1.1.1.3   root     3666:     }
1.1.1.4   root     3667: 
1.1.1.3   root     3668:     handle_events ();
1.1       root     3669: 
1.1.1.3   root     3670:     getjoystate (0, &joy0dir, &joy0button);
                   3671:     getjoystate (1, &joy1dir, &joy1button);
1.1       root     3672: 
1.1.1.4   root     3673:     INTREQ (0x8020);
1.1.1.3   root     3674:     if (bplcon0 & 4)
1.1.1.2   root     3675:        lof ^= 0x8000;
1.1.1.3   root     3676: 
1.1.1.18  root     3677: #ifdef PICASSO96
1.1.1.16  root     3678:     if (picasso_on)
                   3679:        picasso_handle_vsync ();
1.1.1.18  root     3680: #endif
1.1.1.4   root     3681:     vsync_handle_redraw (lof, lof_changed);
1.1.1.16  root     3682: 
1.1.1.4   root     3683:     if (quit_program > 0)
1.1.1.3   root     3684:        return;
                   3685: 
1.1.1.4   root     3686:     {
1.1.1.3   root     3687:        static int cnt = 0;
                   3688:        if (cnt == 0) {
                   3689:            /* resolution_check_change (); */
                   3690:            DISK_check_change ();
                   3691:            cnt = 5;
                   3692:        }
                   3693:        cnt--;
1.1.1.2   root     3694:     }
1.1.1.3   root     3695: 
1.1.1.15  root     3696:     /* Start a new set of copper records.  */
                   3697:     curr_cop_set ^= 1;
                   3698:     nr_cop_records[curr_cop_set] = 0;
                   3699: 
1.1.1.7   root     3700:     /* For now, let's only allow this to change at vsync time.  It gets too
                   3701:      * hairy otherwise.  */
                   3702:     if (beamcon0 != new_beamcon0)
                   3703:        init_hz ();
                   3704: 
1.1.1.2   root     3705:     lof_changed = 0;
1.1.1.3   root     3706: 
1.1.1.4   root     3707:     cop_state.ip = cop1lc;
                   3708:     cop_state.state = COP_read1;
                   3709:     cop_state.vpos = 0;
                   3710:     cop_state.hpos = 0;
                   3711:     cop_state.ignore_next = 0;
                   3712: 
                   3713:     init_hardware_frame ();
                   3714: 
1.1       root     3715: #ifdef HAVE_GETTIMEOFDAY
                   3716:     {
                   3717:        struct timeval tv;
                   3718:        unsigned long int newtime;
1.1.1.3   root     3719: 
1.1.1.9   root     3720:        gettimeofday (&tv,NULL);
1.1       root     3721:        newtime = (tv.tv_sec-seconds_base) * 1000 + tv.tv_usec / 1000;
1.1.1.3   root     3722: 
                   3723:        if (!bogusframe) {
1.1.1.6   root     3724:            lastframetime = newtime - msecs;
                   3725: 
                   3726: #if 0 /* This doesn't appear to work too well yet... later.  */
                   3727:            if (n_consecutive_skipped > currprefs.sound_pri_cutoff
                   3728:                || lastframetime < currprefs.sound_pri_time)
                   3729:            {
                   3730:                n_consecutive_skipped = 0;
                   3731:                clear_inhibit_frame (IHF_SOUNDADJUST);
                   3732:            } else {
                   3733:                n_consecutive_skipped++;
                   3734:                set_inhibit_frame (IHF_SOUNDADJUST);
                   3735:                total_skipped++;
                   3736:            }
                   3737: #endif
                   3738: 
                   3739:            frametime += lastframetime;
1.1       root     3740:            timeframes++;
1.1.1.6   root     3741: 
                   3742:            if ((timeframes & 127) == 0)
                   3743:                gui_fps (1000 * timeframes / frametime);
1.1       root     3744:        }
                   3745:        msecs = newtime;
                   3746:        bogusframe = 0;
                   3747:     }
                   3748: #endif
1.1.1.3   root     3749:     if (ievent_alive > 0)
                   3750:        ievent_alive--;
1.1.1.7   root     3751:     if (timehack_alive > 0)
                   3752:        timehack_alive--;
1.1.1.15  root     3753:     CIA_vsync_handler ();
1.1       root     3754: }
                   3755: 
1.1.1.4   root     3756: static void hsync_handler (void)
1.1       root     3757: {
1.1.1.15  root     3758:     /* Using 0x8A makes sure that we don't accidentally trip over the
                   3759:        modified_regtypes check.  */
                   3760:     sync_copper_with_cpu (maxhpos, 0, 0x8A);
1.1.1.10  root     3761: 
1.1.1.2   root     3762:     finish_decisions ();
1.1.1.15  root     3763:     if (thisline_decision.plfleft != -1) {
                   3764:        if (currprefs.collision_level > 1)
                   3765:            do_sprite_collisions ();
                   3766:        if (currprefs.collision_level > 2)
                   3767:            do_playfield_collisions ();
                   3768:     }
1.1.1.5   root     3769:     hsync_record_line_state (next_lineno, nextline_how, thisline_changed);
1.1       root     3770: 
1.1.1.14  root     3771:     eventtab[ev_hsync].evtime += get_cycles () - eventtab[ev_hsync].oldcycles;
                   3772:     eventtab[ev_hsync].oldcycles = get_cycles ();
1.1.1.8   root     3773:     CIA_hsync_handler ();
1.1.1.3   root     3774: 
                   3775:     if (currprefs.produce_sound > 0) {
1.1       root     3776:        int nr;
1.1.1.4   root     3777: 
                   3778:        update_audio ();
                   3779: 
1.1       root     3780:        /* Sound data is fetched at the beginning of each line */
1.1.1.17  root     3781:        for (nr = 0; nr < 4; nr++) {
1.1       root     3782:            struct audio_channel_data *cdp = audio_channel + nr;
1.1.1.3   root     3783: 
1.1       root     3784:            if (cdp->data_written == 2) {
                   3785:                cdp->data_written = 0;
1.1.1.17  root     3786:                cdp->nextdat = chipmem_wget (cdp->pt);
1.1       root     3787:                cdp->pt += 2;
                   3788:                if (cdp->state == 2 || cdp->state == 3) {
                   3789:                    if (cdp->wlen == 1) {
                   3790:                        cdp->pt = cdp->lc;
                   3791:                        cdp->wlen = cdp->len;
                   3792:                        cdp->intreq2 = 1;
                   3793:                    } else
1.1.1.16  root     3794:                        cdp->wlen = (cdp->wlen - 1) & 0xFFFF;
1.1       root     3795:                }
                   3796:            }
                   3797:        }
                   3798:     }
1.1.1.4   root     3799: 
                   3800:     hardware_line_completed (next_lineno);
                   3801: 
1.1.1.16  root     3802:     /* In theory only an equality test is needed here - but if a program
                   3803:        goes haywire with the VPOSW register, it can cause us to miss this,
                   3804:        with vpos going into the thousands (and all the nasty consequences
                   3805:        this has).  */
                   3806: 
                   3807:     if (++vpos >= (maxvpos + (lof != 0))) {
1.1       root     3808:        vpos = 0;
1.1.1.15  root     3809:        vsync_handler ();
1.1       root     3810:     }
1.1.1.2   root     3811: 
1.1.1.15  root     3812:     DISK_update ();
                   3813: 
1.1.1.4   root     3814:     is_lastline = vpos + 1 == maxvpos + (lof != 0) && currprefs.m68k_speed == -1 && ! rpt_did_reset;
1.1.1.3   root     3815: 
1.1.1.4   root     3816:     if ((bplcon0 & 4) && currprefs.gfx_linedbl)
                   3817:        notice_interlace_seen ();
1.1.1.2   root     3818: 
                   3819:     if (framecnt == 0) {
1.1.1.4   root     3820:        int lineno = vpos;
                   3821:        nextline_how = nln_normal;
1.1.1.3   root     3822:        if (currprefs.gfx_linedbl) {
1.1       root     3823:            lineno *= 2;
1.1.1.5   root     3824:            nextline_how = currprefs.gfx_linedbl == 1 ? nln_doubled : nln_nblack;
1.1.1.2   root     3825:            if (bplcon0 & 4) {
                   3826:                if (!lof) {
                   3827:                    lineno++;
1.1.1.4   root     3828:                    nextline_how = nln_lower;
1.1.1.2   root     3829:                } else {
1.1.1.4   root     3830:                    nextline_how = nln_upper;
1.1.1.2   root     3831:                }
1.1       root     3832:            }
                   3833:        }
                   3834:        next_lineno = lineno;
1.1.1.2   root     3835:        reset_decisions ();
1.1       root     3836:     }
1.1.1.3   root     3837:     if (uae_int_requested) {
                   3838:        set_uae_int_flag ();
                   3839:        INTREQ (0xA000);
                   3840:     }
1.1.1.9   root     3841:     /* See if there's a chance of a copper wait ending this line.  */
                   3842:     cop_state.hpos = 0;
                   3843:     compute_spcflag_copper ();
1.1.1.3   root     3844: }
                   3845: 
1.1.1.15  root     3846: static void init_regtypes (void)
                   3847: {
                   3848:     int i;
                   3849:     for (i = 0; i < 512; i += 2) {
                   3850:        regtypes[i] = REGTYPE_ALL;
                   3851:        if ((i >= 0x20 && i < 0x28) || i == 0x08 || i == 0x7E)
                   3852:            regtypes[i] = REGTYPE_DISK;
                   3853:        else if (i >= 0x68 && i < 0x70)
                   3854:            regtypes[i] = REGTYPE_NONE;
                   3855:        else if (i >= 0x40 && i < 0x78)
                   3856:            regtypes[i] = REGTYPE_BLITTER;
                   3857:        else if (i >= 0xA0 && i < 0xE0 && (i & 0xF) < 0xE)
                   3858:            regtypes[i] = REGTYPE_AUDIO;
                   3859:        else if (i >= 0xA0 && i < 0xE0)
                   3860:            regtypes[i] = REGTYPE_NONE;
                   3861:        else if (i >= 0xE0 && i < 0x100)
                   3862:            regtypes[i] = REGTYPE_PLANE;
                   3863:        else if (i >= 0x120 && i < 0x180)
                   3864:            regtypes[i] = REGTYPE_SPRITE;
                   3865:        else if (i >= 0x180 && i < 0x1C0)
                   3866:            regtypes[i] = REGTYPE_COLOR;
                   3867:        else switch (i) {
                   3868:        case 0x02:
                   3869:            /* DMACONR - setting this to REGTYPE_BLITTER will cause it to
                   3870:               conflict with DMACON (since that is REGTYPE_ALL), and the
                   3871:               blitter registers (for the BBUSY bit), but nothing else,
                   3872:               which is (I think) what we want.  */
                   3873:            regtypes[i] = REGTYPE_BLITTER;
                   3874:            break;
                   3875:        case 0x04: case 0x06: case 0x2A: case 0x2C:
                   3876:            regtypes[i] = REGTYPE_POS;
                   3877:            break;
                   3878:        case 0x0A: case 0x0C:
                   3879:        case 0x12: case 0x14: case 0x16:
                   3880:        case 0x36:
                   3881:            regtypes[i] = REGTYPE_JOYPORT;
                   3882:            break;
                   3883:        case 0x104:
                   3884:        case 0x102:
                   3885:            regtypes[i] = REGTYPE_PLANE;
                   3886:            break;
                   3887:        case 0x88: case 0x8A:
                   3888:        case 0x8E: case 0x90: case 0x92: case 0x94:
                   3889:        case 0x96:
                   3890:        case 0x100:
                   3891:            regtypes[i] |= REGTYPE_FORCE;
                   3892:            break;
                   3893:        }
                   3894:     }
                   3895: }
                   3896: 
                   3897: void init_eventtab (void)
1.1.1.3   root     3898: {
                   3899:     int i;
                   3900: 
1.1.1.15  root     3901:     currcycle = 0;
                   3902:     for (i = 0; i < ev_max; i++) {
1.1.1.3   root     3903:        eventtab[i].active = 0;
                   3904:        eventtab[i].oldcycles = 0;
                   3905:     }
1.1.1.4   root     3906: 
1.1.1.3   root     3907:     eventtab[ev_cia].handler = CIA_handler;
                   3908:     eventtab[ev_hsync].handler = hsync_handler;
1.1.1.14  root     3909:     eventtab[ev_hsync].evtime = maxhpos * CYCLE_UNIT + get_cycles ();
1.1.1.3   root     3910:     eventtab[ev_hsync].active = 1;
                   3911: 
1.1.1.10  root     3912:     eventtab[ev_copper].handler = copper_handler;
                   3913:     eventtab[ev_copper].active = 0;
1.1.1.3   root     3914:     eventtab[ev_blitter].handler = blitter_handler;
                   3915:     eventtab[ev_blitter].active = 0;
1.1.1.11  root     3916:     eventtab[ev_disk].handler = DISK_handler;
                   3917:     eventtab[ev_disk].active = 0;
1.1.1.14  root     3918:     eventtab[ev_audio].handler = audio_evhandler;
                   3919:     eventtab[ev_audio].active = 0;
1.1.1.3   root     3920:     events_schedule ();
1.1       root     3921: }
                   3922: 
1.1.1.3   root     3923: void customreset (void)
1.1       root     3924: {
1.1.1.4   root     3925:     int i;
1.1.1.11  root     3926:     int zero = 0;
1.1       root     3927: #ifdef HAVE_GETTIMEOFDAY
                   3928:     struct timeval tv;
                   3929: #endif
1.1.1.2   root     3930: 
1.1.1.15  root     3931:     if (! savestate_state) {
                   3932:        currprefs.chipset_mask = changed_prefs.chipset_mask;
                   3933:        if ((currprefs.chipset_mask & CSMASK_AGA) == 0) {
                   3934:            for (i = 0; i < 32; i++) {
                   3935:                current_colors.color_regs_ecs[i] = 0;
                   3936:                current_colors.acolors[i] = xcolors[0];
                   3937:            }
                   3938:        } else {
                   3939:             for (i = 0; i < 256; i++) {
                   3940:                current_colors.color_regs_aga[i] = 0;
                   3941:                current_colors.acolors[i] = CONVERT_RGB (zero);
                   3942:            }
1.1.1.11  root     3943:        }
1.1.1.15  root     3944: 
                   3945:        clx_sprmask = 0xFF;
                   3946:        clxdat = 0;
                   3947: 
                   3948:        /* Clear the armed flags of all sprites.  */
                   3949:        memset (spr, 0, sizeof spr);
                   3950:        nr_armed = 0;
                   3951: 
                   3952:        dmacon = intena = 0;
                   3953: 
                   3954:        copcon = 0;
                   3955:        DSKLEN (0, 0);
                   3956: 
1.1.1.16  root     3957:        bplcon0 = 0;
1.1.1.15  root     3958:        bplcon4 = 0x11; /* Get AGA chipset into ECS compatibility mode */
                   3959:        bplcon3 = 0xC00;
                   3960: 
                   3961:        FMODE (0);
                   3962:        CLXCON (0);
1.1.1.9   root     3963:     }
1.1.1.3   root     3964: 
1.1.1.12  root     3965:     n_frames = 0;
                   3966: 
1.1.1.3   root     3967:     expamem_reset ();
1.1.1.4   root     3968: 
1.1.1.12  root     3969:     DISK_reset ();
1.1.1.3   root     3970:     CIA_reset ();
1.1.1.13  root     3971:     unset_special (~(SPCFLAG_BRK | SPCFLAG_MODE_CHANGE));
1.1.1.3   root     3972: 
1.1.1.2   root     3973:     vpos = 0;
1.1       root     3974:     lof = 0;
1.1.1.3   root     3975: 
1.1.1.4   root     3976:     if (needmousehack ()) {
1.1.1.3   root     3977: #if 0
1.1.1.4   root     3978:        mousehack_setfollow();
1.1.1.3   root     3979: #else
1.1.1.4   root     3980:        mousehack_setdontcare();
1.1.1.3   root     3981: #endif
1.1       root     3982:     } else {
                   3983:        mousestate = normal_mouse;
                   3984:     }
1.1.1.3   root     3985:     ievent_alive = 0;
1.1.1.7   root     3986:     timehack_alive = 0;
1.1.1.3   root     3987: 
1.1.1.13  root     3988:     curr_sprite_entries = 0;
                   3989:     prev_sprite_entries = 0;
                   3990:     sprite_entries[0][0].first_pixel = 0;
                   3991:     sprite_entries[1][0].first_pixel = MAX_SPR_PIXELS;
                   3992:     sprite_entries[0][1].first_pixel = 0;
                   3993:     sprite_entries[1][1].first_pixel = MAX_SPR_PIXELS;
                   3994:     memset (spixels, 0, sizeof spixels);
                   3995:     memset (&spixstate, 0, sizeof spixstate);
1.1       root     3996: 
                   3997:     bltstate = BLT_done;
1.1.1.4   root     3998:     cop_state.state = COP_stop;
1.1.1.2   root     3999:     diwstate = DIW_waiting_start;
1.1.1.3   root     4000:     hdiwstate = DIW_waiting_start;
1.1.1.14  root     4001:     currcycle = 0;
1.1.1.3   root     4002: 
1.1.1.14  root     4003:     new_beamcon0 = currprefs.ntscmode ? 0x00 : 0x20;
1.1.1.7   root     4004:     init_hz ();
                   4005: 
                   4006:     audio_reset ();
                   4007: 
1.1.1.3   root     4008:     init_sprites ();
                   4009: 
1.1.1.2   root     4010:     init_hardware_frame ();
1.1.1.4   root     4011:     reset_drawing ();
                   4012: 
1.1.1.2   root     4013:     reset_decisions ();
1.1.1.3   root     4014: 
1.1       root     4015: #ifdef HAVE_GETTIMEOFDAY
1.1.1.4   root     4016:     gettimeofday (&tv, NULL);
1.1       root     4017:     seconds_base = tv.tv_sec;
                   4018:     bogusframe = 1;
                   4019: #endif
1.1.1.15  root     4020: 
                   4021:     init_regtypes ();
                   4022: 
                   4023:     sprite_buffer_res = currprefs.chipset_mask & CSMASK_AGA ? RES_HIRES : RES_LORES;
                   4024:     if (savestate_state == STATE_RESTORE) {
                   4025:        uae_u16 v;
                   4026:        uae_u32 vv;
                   4027: 
                   4028:        update_adkmasks ();
                   4029:        INTENA (0);
                   4030:        INTREQ (0);
                   4031: #if 0
                   4032:        DMACON (0, 0);
                   4033: #endif
                   4034:        COPJMP1 (0);
                   4035:        if (diwhigh)
                   4036:            diwhigh_written = 1;
                   4037:        v = bplcon0;
                   4038:        BPLCON0 (0, 0);
                   4039:        BPLCON0 (0, v);
1.1.1.17  root     4040:        FMODE (fmode);
1.1.1.15  root     4041:        if (!(currprefs.chipset_mask & CSMASK_AGA)) {
                   4042:            for(i = 0 ; i < 32 ; i++)  {
                   4043:                vv = current_colors.color_regs_ecs[i];
                   4044:                current_colors.color_regs_ecs[i] = -1;
                   4045:                record_color_change (0, i, vv);
                   4046:                remembered_color_entry = -1;
                   4047:                current_colors.color_regs_ecs[i] = vv;
                   4048:                current_colors.acolors[i] = xcolors[vv];
                   4049:            }
                   4050:        } else {
                   4051:            for(i = 0 ; i < 256 ; i++)  {
                   4052:                vv = current_colors.color_regs_aga[i];
                   4053:                current_colors.color_regs_aga[i] = -1;
                   4054:                record_color_change (0, i, vv);
                   4055:                remembered_color_entry = -1;
                   4056:                current_colors.color_regs_aga[i] = vv;
                   4057:                current_colors.acolors[i] = CONVERT_RGB(vv);
                   4058:            }
                   4059:        }
1.1.1.17  root     4060:        CLXCON (clxcon);
                   4061:        CLXCON2 (clxcon2);
1.1.1.15  root     4062:        calcdiw ();
                   4063:        write_log ("State restored\n");
                   4064:        dumpcustom ();
                   4065:        for (i = 0; i < 8; i++)
                   4066:            nr_armed += spr[i].armed != 0;
                   4067:     }
                   4068:     expand_sprres ();
1.1       root     4069: }
                   4070: 
1.1.1.3   root     4071: void dumpcustom (void)
1.1       root     4072: {
1.1.1.6   root     4073:     write_log ("DMACON: %x INTENA: %x INTREQ: %x VPOS: %x HPOS: %x\n", DMACONR(),
                   4074:               (unsigned int)intena, (unsigned int)intreq, (unsigned int)vpos, (unsigned int)current_hpos());
                   4075:     write_log ("COP1LC: %08lx, COP2LC: %08lx\n", (unsigned long)cop1lc, (unsigned long)cop2lc);
1.1.1.13  root     4076:     write_log ("DIWSTRT: %04x DIWSTOP: %04x DDFSTRT: %04x DDFSTOP: %04x\n",
                   4077:               (unsigned int)diwstrt, (unsigned int)diwstop, (unsigned int)ddfstrt, (unsigned int)ddfstop);
1.1.1.3   root     4078:     if (timeframes) {
1.1.1.6   root     4079:        write_log ("Average frame time: %d ms [frames: %d time: %d]\n",
                   4080:                   frametime / timeframes, timeframes, frametime);
                   4081:        if (total_skipped)
                   4082:            write_log ("Skipped frames: %d\n", total_skipped);
1.1       root     4083:     }
1.1.1.18  root     4084:     /*for (i=0; i<256; i++) if (blitcount[i]) write_log ("minterm %x = %d\n",i,blitcount[i]);  blitter debug */
1.1       root     4085: }
                   4086: 
1.1.1.3   root     4087: int intlev (void)
1.1       root     4088: {
1.1.1.3   root     4089:     uae_u16 imask = intreq & intena;
1.1       root     4090:     if (imask && (intena & 0x4000)){
                   4091:        if (imask & 0x2000) return 6;
                   4092:        if (imask & 0x1800) return 5;
                   4093:        if (imask & 0x0780) return 4;
                   4094:        if (imask & 0x0070) return 3;
                   4095:        if (imask & 0x0008) return 2;
                   4096:        if (imask & 0x0007) return 1;
                   4097:     }
                   4098:     return -1;
                   4099: }
                   4100: 
1.1.1.4   root     4101: static void gen_custom_tables (void)
                   4102: {
                   4103:     int i;
                   4104:     for (i = 0; i < 256; i++) {
                   4105:        unsigned int j;
                   4106:        sprtaba[i] = ((((i >> 7) & 1) << 0)
                   4107:                      | (((i >> 6) & 1) << 2)
                   4108:                      | (((i >> 5) & 1) << 4)
                   4109:                      | (((i >> 4) & 1) << 6)
                   4110:                      | (((i >> 3) & 1) << 8)
                   4111:                      | (((i >> 2) & 1) << 10)
                   4112:                      | (((i >> 1) & 1) << 12)
                   4113:                      | (((i >> 0) & 1) << 14));
                   4114:        sprtabb[i] = sprtaba[i] * 2;
1.1.1.13  root     4115:        sprite_ab_merge[i] = (((i & 15) ? 1 : 0)
                   4116:                              | ((i & 240) ? 2 : 0));
1.1.1.4   root     4117:     }
1.1.1.13  root     4118:     for (i = 0; i < 16; i++) {
                   4119:        clxmask[i] = (((i & 1) ? 0xF : 0x3)
                   4120:                      | ((i & 2) ? 0xF0 : 0x30)
                   4121:                      | ((i & 4) ? 0xF00 : 0x300)
                   4122:                      | ((i & 8) ? 0xF000 : 0x3000));
                   4123:        sprclx[i] = (((i & 0x3) == 0x3 ? 1 : 0)
                   4124:                     | ((i & 0x5) == 0x5 ? 2 : 0)
                   4125:                     | ((i & 0x9) == 0x9 ? 4 : 0)
                   4126:                     | ((i & 0x6) == 0x6 ? 8 : 0)
                   4127:                     | ((i & 0xA) == 0xA ? 16 : 0)
                   4128:                     | ((i & 0xC) == 0xC ? 32 : 0)) << 9;
                   4129:     }
1.1.1.4   root     4130: }
                   4131: 
1.1.1.3   root     4132: void custom_init (void)
1.1       root     4133: {
1.1.1.7   root     4134:     uaecptr pos;
                   4135: 
1.1.1.4   root     4136: #ifdef OS_WITHOUT_MEMORY_MANAGEMENT
1.1       root     4137:     int num;
1.1.1.2   root     4138: 
1.1.1.4   root     4139:     for (num = 0; num < 2; num++) {
1.1.1.13  root     4140:        sprite_entries[num] = xmalloc (max_sprite_entry * sizeof (struct sprite_entry));
1.1.1.4   root     4141:        color_changes[num] = xmalloc (max_color_change * sizeof (struct color_change));
1.1.1.2   root     4142:     }
                   4143: #endif
1.1.1.3   root     4144: 
1.1.1.7   root     4145:     pos = here ();
                   4146: 
1.1.1.18  root     4147:     org (RTAREA_BASE+0xFF70);
1.1.1.7   root     4148:     calltrap (deftrap (mousehack_helper));
                   4149:     dw (RTS);
                   4150: 
1.1.1.18  root     4151:     org (RTAREA_BASE+0xFFA0);
1.1.1.7   root     4152:     calltrap (deftrap (timehack_helper));
                   4153:     dw (RTS);
                   4154: 
                   4155:     org (pos);
                   4156: 
1.1.1.4   root     4157:     gen_custom_tables ();
                   4158:     build_blitfilltable ();
                   4159: 
                   4160:     drawing_init ();
                   4161: 
                   4162:     mousestate = unknown_mouse;
                   4163: 
                   4164:     if (needmousehack ())
1.1.1.16  root     4165:        mousehack_setfollow ();
                   4166: 
                   4167:     create_cycle_diagram_table ();
1.1       root     4168: }
                   4169: 
                   4170: /* Custom chip memory bank */
                   4171: 
1.1.1.4   root     4172: static uae_u32 custom_lget (uaecptr) REGPARAM;
                   4173: static uae_u32 custom_wget (uaecptr) REGPARAM;
                   4174: static uae_u32 custom_bget (uaecptr) REGPARAM;
                   4175: static void custom_lput (uaecptr, uae_u32) REGPARAM;
                   4176: static void custom_wput (uaecptr, uae_u32) REGPARAM;
                   4177: static void custom_bput (uaecptr, uae_u32) REGPARAM;
1.1       root     4178: 
                   4179: addrbank custom_bank = {
                   4180:     custom_lget, custom_wget, custom_bget,
                   4181:     custom_lput, custom_wput, custom_bput,
1.1.1.15  root     4182:     default_xlate, default_check, NULL
1.1       root     4183: };
                   4184: 
1.1.1.13  root     4185: STATIC_INLINE uae_u32 REGPARAM2 custom_wget_1 (uaecptr addr)
1.1       root     4186: {
1.1.1.13  root     4187:     special_mem |= S_READ;
1.1.1.4   root     4188:     switch (addr & 0x1FE) {
1.1.1.13  root     4189:      case 0x002: return DMACONR ();
                   4190:      case 0x004: return VPOSR ();
                   4191:      case 0x006: return VHPOSR ();
                   4192: 
                   4193:      case 0x008: return DSKDATR (current_hpos ());
                   4194: 
                   4195:      case 0x00A: return JOY0DAT ();
                   4196:      case 0x00C: return JOY1DAT ();
                   4197:      case 0x00E: return CLXDAT ();
                   4198:      case 0x010: return ADKCONR ();
                   4199: 
                   4200:      case 0x012: return POT0DAT ();
                   4201:      case 0x016: return POTGOR ();
                   4202:      case 0x018: return SERDATR ();
                   4203:      case 0x01A: return DSKBYTR (current_hpos ());
                   4204:      case 0x01C: return INTENAR ();
                   4205:      case 0x01E: return INTREQR ();
                   4206:      case 0x07C: return DENISEID ();
                   4207: 
                   4208:      case 0x180: case 0x182: case 0x184: case 0x186: case 0x188: case 0x18A:
                   4209:      case 0x18C: case 0x18E: case 0x190: case 0x192: case 0x194: case 0x196:
                   4210:      case 0x198: case 0x19A: case 0x19C: case 0x19E: case 0x1A0: case 0x1A2:
                   4211:      case 0x1A4: case 0x1A6: case 0x1A8: case 0x1AA: case 0x1AC: case 0x1AE:
                   4212:      case 0x1B0: case 0x1B2: case 0x1B4: case 0x1B6: case 0x1B8: case 0x1BA:
                   4213:      case 0x1BC: case 0x1BE:
                   4214:        return COLOR_READ ((addr & 0x3E) / 2);
                   4215:        break;
                   4216: 
1.1       root     4217:      default:
1.1.1.13  root     4218:        custom_wput (addr, 0);
1.1       root     4219:        return 0xffff;
                   4220:     }
                   4221: }
                   4222: 
1.1.1.13  root     4223: uae_u32 REGPARAM2 custom_wget (uaecptr addr)
                   4224: {
1.1.1.15  root     4225:     sync_copper_with_cpu (current_hpos (), 1, addr);
1.1.1.13  root     4226:     return custom_wget_1 (addr);
                   4227: }
                   4228: 
1.1.1.3   root     4229: uae_u32 REGPARAM2 custom_bget (uaecptr addr)
1.1       root     4230: {
1.1.1.13  root     4231:     special_mem |= S_READ;
                   4232:     return custom_wget (addr & 0xfffe) >> (addr & 1 ? 0 : 8);
1.1       root     4233: }
                   4234: 
1.1.1.3   root     4235: uae_u32 REGPARAM2 custom_lget (uaecptr addr)
1.1       root     4236: {
1.1.1.13  root     4237:     special_mem |= S_READ;
                   4238:     return ((uae_u32)custom_wget (addr & 0xfffe) << 16) | custom_wget ((addr + 2) & 0xfffe);
1.1       root     4239: }
                   4240: 
1.1.1.4   root     4241: void REGPARAM2 custom_wput_1 (int hpos, uaecptr addr, uae_u32 value)
1.1       root     4242: {
                   4243:     addr &= 0x1FE;
1.1.1.3   root     4244:     switch (addr) {
                   4245:      case 0x020: DSKPTH (value); break;
                   4246:      case 0x022: DSKPTL (value); break;
1.1.1.13  root     4247:      case 0x024: DSKLEN (value, hpos); break;
1.1.1.3   root     4248:      case 0x026: DSKDAT (value); break;
                   4249: 
                   4250:      case 0x02A: VPOSW (value); break;
1.1.1.15  root     4251:      case 0x02E: COPCON (value); break;
1.1.1.3   root     4252:      case 0x030: SERDAT (value); break;
                   4253:      case 0x032: SERPER (value); break;
1.1.1.15  root     4254:      case 0x034: POTGO (value); break;
1.1.1.3   root     4255:      case 0x040: BLTCON0 (value); break;
                   4256:      case 0x042: BLTCON1 (value); break;
                   4257: 
                   4258:      case 0x044: BLTAFWM (value); break;
                   4259:      case 0x046: BLTALWM (value); break;
                   4260: 
                   4261:      case 0x050: BLTAPTH (value); break;
                   4262:      case 0x052: BLTAPTL (value); break;
                   4263:      case 0x04C: BLTBPTH (value); break;
                   4264:      case 0x04E: BLTBPTL (value); break;
                   4265:      case 0x048: BLTCPTH (value); break;
                   4266:      case 0x04A: BLTCPTL (value); break;
                   4267:      case 0x054: BLTDPTH (value); break;
                   4268:      case 0x056: BLTDPTL (value); break;
                   4269: 
                   4270:      case 0x058: BLTSIZE (value); break;
                   4271: 
                   4272:      case 0x064: BLTAMOD (value); break;
                   4273:      case 0x062: BLTBMOD (value); break;
                   4274:      case 0x060: BLTCMOD (value); break;
                   4275:      case 0x066: BLTDMOD (value); break;
                   4276: 
                   4277:      case 0x070: BLTCDAT (value); break;
                   4278:      case 0x072: BLTBDAT (value); break;
                   4279:      case 0x074: BLTADAT (value); break;
                   4280: 
                   4281:      case 0x07E: DSKSYNC (value); break;
                   4282: 
                   4283:      case 0x080: COP1LCH (value); break;
                   4284:      case 0x082: COP1LCL (value); break;
                   4285:      case 0x084: COP2LCH (value); break;
                   4286:      case 0x086: COP2LCL (value); break;
                   4287: 
                   4288:      case 0x088: COPJMP1 (value); break;
                   4289:      case 0x08A: COPJMP2 (value); break;
                   4290: 
1.1.1.4   root     4291:      case 0x08E: DIWSTRT (hpos, value); break;
                   4292:      case 0x090: DIWSTOP (hpos, value); break;
                   4293:      case 0x092: DDFSTRT (hpos, value); break;
                   4294:      case 0x094: DDFSTOP (hpos, value); break;
1.1.1.3   root     4295: 
1.1.1.13  root     4296:      case 0x096: DMACON (hpos, value); break;
1.1.1.3   root     4297:      case 0x098: CLXCON (value); break;
                   4298:      case 0x09A: INTENA (value); break;
                   4299:      case 0x09C: INTREQ (value); break;
                   4300:      case 0x09E: ADKCON (value); break;
                   4301: 
                   4302:      case 0x0A0: AUDxLCH (0, value); break;
                   4303:      case 0x0A2: AUDxLCL (0, value); break;
                   4304:      case 0x0A4: AUDxLEN (0, value); break;
                   4305:      case 0x0A6: AUDxPER (0, value); break;
                   4306:      case 0x0A8: AUDxVOL (0, value); break;
                   4307:      case 0x0AA: AUDxDAT (0, value); break;
                   4308: 
                   4309:      case 0x0B0: AUDxLCH (1, value); break;
                   4310:      case 0x0B2: AUDxLCL (1, value); break;
                   4311:      case 0x0B4: AUDxLEN (1, value); break;
                   4312:      case 0x0B6: AUDxPER (1, value); break;
                   4313:      case 0x0B8: AUDxVOL (1, value); break;
                   4314:      case 0x0BA: AUDxDAT (1, value); break;
                   4315: 
                   4316:      case 0x0C0: AUDxLCH (2, value); break;
                   4317:      case 0x0C2: AUDxLCL (2, value); break;
                   4318:      case 0x0C4: AUDxLEN (2, value); break;
                   4319:      case 0x0C6: AUDxPER (2, value); break;
                   4320:      case 0x0C8: AUDxVOL (2, value); break;
                   4321:      case 0x0CA: AUDxDAT (2, value); break;
                   4322: 
                   4323:      case 0x0D0: AUDxLCH (3, value); break;
                   4324:      case 0x0D2: AUDxLCL (3, value); break;
                   4325:      case 0x0D4: AUDxLEN (3, value); break;
                   4326:      case 0x0D6: AUDxPER (3, value); break;
                   4327:      case 0x0D8: AUDxVOL (3, value); break;
                   4328:      case 0x0DA: AUDxDAT (3, value); break;
                   4329: 
1.1.1.4   root     4330:      case 0x0E0: BPLPTH (hpos, value, 0); break;
                   4331:      case 0x0E2: BPLPTL (hpos, value, 0); break;
                   4332:      case 0x0E4: BPLPTH (hpos, value, 1); break;
                   4333:      case 0x0E6: BPLPTL (hpos, value, 1); break;
                   4334:      case 0x0E8: BPLPTH (hpos, value, 2); break;
                   4335:      case 0x0EA: BPLPTL (hpos, value, 2); break;
                   4336:      case 0x0EC: BPLPTH (hpos, value, 3); break;
                   4337:      case 0x0EE: BPLPTL (hpos, value, 3); break;
                   4338:      case 0x0F0: BPLPTH (hpos, value, 4); break;
                   4339:      case 0x0F2: BPLPTL (hpos, value, 4); break;
                   4340:      case 0x0F4: BPLPTH (hpos, value, 5); break;
                   4341:      case 0x0F6: BPLPTL (hpos, value, 5); break;
1.1.1.6   root     4342:      case 0x0F8: BPLPTH (hpos, value, 6); break;
                   4343:      case 0x0FA: BPLPTL (hpos, value, 6); break;
                   4344:      case 0x0FC: BPLPTH (hpos, value, 7); break;
                   4345:      case 0x0FE: BPLPTL (hpos, value, 7); break;
1.1.1.4   root     4346: 
                   4347:      case 0x100: BPLCON0 (hpos, value); break;
                   4348:      case 0x102: BPLCON1 (hpos, value); break;
                   4349:      case 0x104: BPLCON2 (hpos, value); break;
                   4350:      case 0x106: BPLCON3 (hpos, value); break;
1.1.1.3   root     4351: 
1.1.1.4   root     4352:      case 0x108: BPL1MOD (hpos, value); break;
                   4353:      case 0x10A: BPL2MOD (hpos, value); break;
1.1.1.17  root     4354:      case 0x10E: CLXCON2 (value); break;
1.1.1.3   root     4355: 
1.1.1.13  root     4356:      case 0x110: BPL1DAT (hpos, value); break;
1.1.1.3   root     4357:      case 0x112: BPL2DAT (value); break;
                   4358:      case 0x114: BPL3DAT (value); break;
                   4359:      case 0x116: BPL4DAT (value); break;
                   4360:      case 0x118: BPL5DAT (value); break;
                   4361:      case 0x11A: BPL6DAT (value); break;
1.1.1.6   root     4362:      case 0x11C: BPL7DAT (value); break;
                   4363:      case 0x11E: BPL8DAT (value); break;
1.1       root     4364: 
                   4365:      case 0x180: case 0x182: case 0x184: case 0x186: case 0x188: case 0x18A:
                   4366:      case 0x18C: case 0x18E: case 0x190: case 0x192: case 0x194: case 0x196:
                   4367:      case 0x198: case 0x19A: case 0x19C: case 0x19E: case 0x1A0: case 0x1A2:
                   4368:      case 0x1A4: case 0x1A6: case 0x1A8: case 0x1AA: case 0x1AC: case 0x1AE:
                   4369:      case 0x1B0: case 0x1B2: case 0x1B4: case 0x1B6: case 0x1B8: case 0x1BA:
1.1.1.2   root     4370:      case 0x1BC: case 0x1BE:
1.1.1.13  root     4371:        COLOR_WRITE (hpos, value & 0xFFF, (addr & 0x3E) / 2);
1.1.1.2   root     4372:        break;
                   4373:      case 0x120: case 0x124: case 0x128: case 0x12C:
1.1       root     4374:      case 0x130: case 0x134: case 0x138: case 0x13C:
1.1.1.4   root     4375:        SPRxPTH (hpos, value, (addr - 0x120) / 4);
1.1       root     4376:        break;
1.1.1.2   root     4377:      case 0x122: case 0x126: case 0x12A: case 0x12E:
1.1       root     4378:      case 0x132: case 0x136: case 0x13A: case 0x13E:
1.1.1.4   root     4379:        SPRxPTL (hpos, value, (addr - 0x122) / 4);
1.1       root     4380:        break;
1.1.1.2   root     4381:      case 0x140: case 0x148: case 0x150: case 0x158:
1.1       root     4382:      case 0x160: case 0x168: case 0x170: case 0x178:
1.1.1.4   root     4383:        SPRxPOS (hpos, value, (addr - 0x140) / 8);
1.1       root     4384:        break;
1.1.1.2   root     4385:      case 0x142: case 0x14A: case 0x152: case 0x15A:
1.1       root     4386:      case 0x162: case 0x16A: case 0x172: case 0x17A:
1.1.1.4   root     4387:        SPRxCTL (hpos, value, (addr - 0x142) / 8);
1.1       root     4388:        break;
                   4389:      case 0x144: case 0x14C: case 0x154: case 0x15C:
                   4390:      case 0x164: case 0x16C: case 0x174: case 0x17C:
1.1.1.4   root     4391:        SPRxDATA (hpos, value, (addr - 0x144) / 8);
1.1       root     4392:        break;
1.1.1.2   root     4393:      case 0x146: case 0x14E: case 0x156: case 0x15E:
1.1       root     4394:      case 0x166: case 0x16E: case 0x176: case 0x17E:
1.1.1.4   root     4395:        SPRxDATB (hpos, value, (addr - 0x146) / 8);
1.1       root     4396:        break;
1.1.1.3   root     4397: 
                   4398:      case 0x36: JOYTEST (value); break;
1.1.1.7   root     4399:      case 0x5A: BLTCON0L (value); break;
1.1.1.3   root     4400:      case 0x5C: BLTSIZV (value); break;
                   4401:      case 0x5E: BLTSIZH (value); break;
1.1.1.4   root     4402:      case 0x1E4: DIWHIGH (hpos, value); break;
                   4403:      case 0x10C: BPLCON4 (hpos, value); break;
1.1.1.7   root     4404:      case 0x1FC: FMODE (value); break;
1.1       root     4405:     }
                   4406: }
                   4407: 
1.1.1.4   root     4408: void REGPARAM2 custom_wput (uaecptr addr, uae_u32 value)
                   4409: {
                   4410:     int hpos = current_hpos ();
1.1.1.13  root     4411:     special_mem |= S_WRITE;
                   4412: 
1.1.1.15  root     4413:     sync_copper_with_cpu (hpos, 1, addr);
1.1.1.4   root     4414:     custom_wput_1 (hpos, addr, value);
                   4415: }
                   4416: 
                   4417: void REGPARAM2 custom_bput (uaecptr addr, uae_u32 value)
1.1       root     4418: {
1.1.1.2   root     4419:     static int warned = 0;
                   4420:     /* Is this correct now? (There are people who bput things to the upper byte of AUDxVOL). */
1.1.1.3   root     4421:     uae_u16 rval = (value << 8) | (value & 0xFF);
1.1.1.13  root     4422:     special_mem |= S_WRITE;
1.1.1.9   root     4423:     custom_wput (addr, rval);
1.1.1.2   root     4424:     if (!warned)
1.1.1.3   root     4425:        write_log ("Byte put to custom register.\n"), warned++;
1.1       root     4426: }
                   4427: 
1.1.1.3   root     4428: void REGPARAM2 custom_lput(uaecptr addr, uae_u32 value)
1.1       root     4429: {
1.1.1.13  root     4430:     special_mem |= S_WRITE;
1.1.1.9   root     4431:     custom_wput (addr & 0xfffe, value >> 16);
                   4432:     custom_wput ((addr + 2) & 0xfffe, (uae_u16)value);
1.1       root     4433: }
1.1.1.15  root     4434: 
                   4435: void custom_prepare_savestate (void)
                   4436: {
                   4437:     /* force blitter to finish, no support for saving full blitter state yet */
                   4438:     if (eventtab[ev_blitter].active) {
                   4439:        unsigned int olddmacon = dmacon;
                   4440:        dmacon |= DMA_BLITTER; /* ugh.. */
                   4441:        blitter_handler ();
                   4442:        dmacon = olddmacon;
                   4443:     }
                   4444: }
                   4445: 
                   4446: #define RB restore_u8 ()
                   4447: #define RW restore_u16 ()
                   4448: #define RL restore_u32 ()
                   4449: 
                   4450: uae_u8 *restore_custom (uae_u8 *src)
                   4451: {
                   4452:     uae_u16 dsklen, dskbytr, dskdatr;
                   4453:     int dskpt;
                   4454:     int i;
                   4455: 
                   4456:     audio_reset ();
                   4457: 
                   4458:     currprefs.chipset_mask = RL;
                   4459:     RW;                                /* 000 ? */
                   4460:     RW;                                /* 002 DMACONR */
                   4461:     RW;                                /* 004 VPOSR */
                   4462:     RW;                                /* 006 VHPOSR */
                   4463:     dskdatr = RW;              /* 008 DSKDATR */
                   4464:     RW;                                /* 00A JOY0DAT */
                   4465:     RW;                                /* 00C JOY1DAT */
                   4466:     clxdat = RW;               /* 00E CLXDAT */
                   4467:     RW;                                /* 010 ADKCONR */
                   4468:     RW;                                /* 012 POT0DAT* */
                   4469:     RW;                                /* 014 POT1DAT* */
                   4470:     RW;                                /* 016 POTINP* */
                   4471:     RW;                                /* 018 SERDATR* */
                   4472:     dskbytr = RW;              /* 01A DSKBYTR */
                   4473:     RW;                                /* 01C INTENAR */
                   4474:     RW;                                /* 01E INTREQR */
                   4475:     dskpt = RL;                        /* 020-022 DSKPT */
                   4476:     dsklen = RW;               /* 024 DSKLEN */
                   4477:     RW;                                /* 026 DSKDAT */
                   4478:     RW;                                /* 028 REFPTR */
                   4479:     lof = RW;                  /* 02A VPOSW */
                   4480:     RW;                                /* 02C VHPOSW */
                   4481:     COPCON(RW);                        /* 02E COPCON */
                   4482:     RW;                                /* 030 SERDAT* */
                   4483:     RW;                                /* 032 SERPER* */
                   4484:     POTGO(RW);                 /* 034 POTGO */
                   4485:     RW;                                /* 036 JOYTEST* */
                   4486:     RW;                                /* 038 STREQU */
                   4487:     RW;                                /* 03A STRVHBL */
                   4488:     RW;                                /* 03C STRHOR */
                   4489:     RW;                                /* 03E STRLONG */
                   4490:     BLTCON0(RW);               /* 040 BLTCON0 */
                   4491:     BLTCON1(RW);               /* 042 BLTCON1 */
                   4492:     BLTAFWM(RW);               /* 044 BLTAFWM */
                   4493:     BLTALWM(RW);               /* 046 BLTALWM */
                   4494:     BLTCPTH(RL);               /* 048-04B BLTCPT */
                   4495:     BLTBPTH(RL);               /* 04C-04F BLTBPT */
                   4496:     BLTAPTH(RL);               /* 050-053 BLTAPT */
                   4497:     BLTDPTH(RL);               /* 054-057 BLTDPT */
                   4498:     RW;                                /* 058 BLTSIZE */
                   4499:     RW;                                /* 05A BLTCON0L */
                   4500:     oldvblts = RW;             /* 05C BLTSIZV */
                   4501:     RW;                                /* 05E BLTSIZH */
                   4502:     BLTCMOD(RW);               /* 060 BLTCMOD */
                   4503:     BLTBMOD(RW);               /* 062 BLTBMOD */
                   4504:     BLTAMOD(RW);               /* 064 BLTAMOD */
                   4505:     BLTDMOD(RW);               /* 066 BLTDMOD */
                   4506:     RW;                                /* 068 ? */
                   4507:     RW;                                /* 06A ? */
                   4508:     RW;                                /* 06C ? */
                   4509:     RW;                                /* 06E ? */
                   4510:     BLTCDAT(RW);               /* 070 BLTCDAT */
                   4511:     BLTBDAT(RW);               /* 072 BLTBDAT */
                   4512:     BLTADAT(RW);               /* 074 BLTADAT */
                   4513:     RW;                                /* 076 ? */
                   4514:     RW;                                /* 078 ? */
                   4515:     RW;                                /* 07A ? */
                   4516:     RW;                                /* 07C LISAID */
                   4517:     DSKSYNC(RW);               /* 07E DSKSYNC */
                   4518:     cop1lc = RL;               /* 080/082 COP1LC */
                   4519:     cop2lc = RL;               /* 084/086 COP2LC */
                   4520:     RW;                                /* 088 ? */
                   4521:     RW;                                /* 08A ? */
                   4522:     RW;                                /* 08C ? */
                   4523:     diwstrt = RW;              /* 08E DIWSTRT */
                   4524:     diwstop = RW;              /* 090 DIWSTOP */
                   4525:     ddfstrt = RW;              /* 092 DDFSTRT */
                   4526:     ddfstop = RW;              /* 094 DDFSTOP */
                   4527:     dmacon = RW & ~(0x2000|0x4000); /* 096 DMACON */
                   4528:     CLXCON(RW);                        /* 098 CLXCON */
                   4529:     intena = RW;               /* 09A INTENA */
                   4530:     intreq = RW;               /* 09C INTREQ */
                   4531:     adkcon = RW;               /* 09E ADKCON */
                   4532:     for (i = 0; i < 8; i++)
                   4533:        bplpt[i] = RL;
                   4534:     bplcon0 = RW;              /* 100 BPLCON0 */
                   4535:     bplcon1 = RW;              /* 102 BPLCON1 */
                   4536:     bplcon2 = RW;              /* 104 BPLCON2 */
                   4537:     bplcon3 = RW;              /* 106 BPLCON3 */
                   4538:     bpl1mod = RW;              /* 108 BPL1MOD */
                   4539:     bpl2mod = RW;              /* 10A BPL2MOD */
                   4540:     bplcon4 = RW;              /* 10C BPLCON4 */
1.1.1.17  root     4541:     clxcon2 = RW;              /* 10E CLXCON2* */
1.1.1.15  root     4542:     for(i = 0; i < 8; i++)
                   4543:        RW;                     /*     BPLXDAT */
                   4544:     for(i = 0; i < 32; i++)
                   4545:        current_colors.color_regs_ecs[i] = RW; /* 180 COLORxx */
                   4546:     RW;                                /* 1C0 ? */
                   4547:     RW;                                /* 1C2 ? */
                   4548:     RW;                                /* 1C4 ? */
                   4549:     RW;                                /* 1C6 ? */
                   4550:     RW;                                /* 1C8 ? */
                   4551:     RW;                                /* 1CA ? */
                   4552:     RW;                                /* 1CC ? */
                   4553:     RW;                                /* 1CE ? */
                   4554:     RW;                                /* 1D0 ? */
                   4555:     RW;                                /* 1D2 ? */
                   4556:     RW;                                /* 1D4 ? */
                   4557:     RW;                                /* 1D6 ? */
                   4558:     RW;                                /* 1D8 ? */
                   4559:     RW;                                /* 1DA ? */
                   4560:     new_beamcon0 = RW;         /* 1DC BEAMCON0 */
                   4561:     RW;                                /* 1DE ? */
                   4562:     RW;                                /* 1E0 ? */
                   4563:     RW;                                /* 1E2 ? */
                   4564:     RW;                                /* 1E4 ? */
                   4565:     RW;                                /* 1E6 ? */
                   4566:     RW;                                /* 1E8 ? */
                   4567:     RW;                                /* 1EA ? */
                   4568:     RW;                                /* 1EC ? */
                   4569:     RW;                                /* 1EE ? */
                   4570:     RW;                                /* 1F0 ? */
                   4571:     RW;                                /* 1F2 ? */
                   4572:     RW;                                /* 1F4 ? */
                   4573:     RW;                                /* 1F6 ? */
                   4574:     RW;                                /* 1F8 ? */
                   4575:     RW;                                /* 1FA ? */
                   4576:     fmode = RW;                        /* 1FC FMODE */
                   4577:     RW;                                /* 1FE ? */
                   4578: 
                   4579:     DISK_restore_custom (dskpt, dsklen, dskdatr, dskbytr);
                   4580: 
                   4581:     return src;
                   4582: }
                   4583: 
                   4584: 
                   4585: #define SB save_u8
                   4586: #define SW save_u16
                   4587: #define SL save_u32
                   4588: 
                   4589: extern uae_u16 serper;
                   4590: 
                   4591: uae_u8 *save_custom (int *len)
                   4592: {
                   4593:     uae_u8 *dstbak, *dst;
                   4594:     int i;
                   4595:     uae_u32 dskpt;
                   4596:     uae_u16 dsklen, dsksync, dskdatr, dskbytr;
                   4597: 
                   4598:     DISK_save_custom (&dskpt, &dsklen, &dsksync, &dskdatr, &dskbytr);
                   4599:     dstbak = dst = malloc (8+256*2);
                   4600:     SL (currprefs.chipset_mask);
                   4601:     SW (0);                    /* 000 ? */
                   4602:     SW (dmacon);               /* 002 DMACONR */
                   4603:     SW (VPOSR());              /* 004 VPOSR */
                   4604:     SW (VHPOSR());             /* 006 VHPOSR */
                   4605:     SW (dskdatr);              /* 008 DSKDATR */
                   4606:     SW (JOY0DAT());            /* 00A JOY0DAT */
                   4607:     SW (JOY1DAT());            /* 00C JOY1DAT */
                   4608:     SW (clxdat);               /* 00E CLXDAT */
                   4609:     SW (ADKCONR());            /* 010 ADKCONR */
                   4610:     SW (POT0DAT());            /* 012 POT0DAT */
                   4611:     SW (POT0DAT());            /* 014 POT1DAT */
                   4612:     SW (0)     ;               /* 016 POTINP * */
                   4613:     SW (0);                    /* 018 SERDATR * */
                   4614:     SW (dskbytr);              /* 01A DSKBYTR */
                   4615:     SW (INTENAR());            /* 01C INTENAR */
                   4616:     SW (INTREQR());            /* 01E INTREQR */
                   4617:     SL (dskpt);                        /* 020-023 DSKPT */
                   4618:     SW (dsklen);               /* 024 DSKLEN */
                   4619:     SW (0);                    /* 026 DSKDAT */
                   4620:     SW (0);                    /* 028 REFPTR */
                   4621:     SW (lof);                  /* 02A VPOSW */
                   4622:     SW (0);                    /* 02C VHPOSW */
                   4623:     SW (copcon);               /* 02E COPCON */
                   4624:     SW (serper);               /* 030 SERDAT * */
                   4625:     SW (serdat);               /* 032 SERPER * */
                   4626:     SW (potgo_value);          /* 034 POTGO */
                   4627:     SW (0);                    /* 036 JOYTEST * */
                   4628:     SW (0);                    /* 038 STREQU */
                   4629:     SW (0);                    /* 03A STRVBL */
                   4630:     SW (0);                    /* 03C STRHOR */
                   4631:     SW (0);                    /* 03E STRLONG */
                   4632:     SW (bltcon0);              /* 040 BLTCON0 */
                   4633:     SW (bltcon1);              /* 042 BLTCON1 */
                   4634:     SW (blt_info.bltafwm);     /* 044 BLTAFWM */
                   4635:     SW (blt_info.bltalwm);     /* 046 BLTALWM */
                   4636:     SL (bltcpt);               /* 048-04B BLTCPT */
                   4637:     SL (bltbpt);               /* 04C-04F BLTCPT */
                   4638:     SL (bltapt);               /* 050-043 BLTCPT */
                   4639:     SL (bltdpt);               /* 054-057 BLTCPT */
                   4640:     SW (0);                    /* 058 BLTSIZE */
                   4641:     SW (0);                    /* 05A BLTCON0L (use BLTCON0 instead) */
                   4642:     SW (oldvblts);             /* 05C BLTSIZV */
                   4643:     SW (blt_info.hblitsize);   /* 05E BLTSIZH */
                   4644:     SW (blt_info.bltcmod);     /* 060 BLTCMOD */
                   4645:     SW (blt_info.bltbmod);     /* 062 BLTBMOD */
                   4646:     SW (blt_info.bltamod);     /* 064 BLTAMOD */
                   4647:     SW (blt_info.bltdmod);     /* 066 BLTDMOD */
                   4648:     SW (0);                    /* 068 ? */
                   4649:     SW (0);                    /* 06A ? */
                   4650:     SW (0);                    /* 06C ? */
                   4651:     SW (0);                    /* 06E ? */
                   4652:     SW (blt_info.bltcdat);     /* 070 BLTCDAT */
                   4653:     SW (blt_info.bltbdat);     /* 072 BLTBDAT */
                   4654:     SW (blt_info.bltadat);     /* 074 BLTADAT */
                   4655:     SW (0);                    /* 076 ? */
                   4656:     SW (0);                    /* 078 ? */
                   4657:     SW (0);                    /* 07A ? */
                   4658:     SW (DENISEID());           /* 07C DENISEID/LISAID */
                   4659:     SW (dsksync);              /* 07E DSKSYNC */
                   4660:     SL (cop1lc);               /* 080-083 COP1LC */
                   4661:     SL (cop2lc);               /* 084-087 COP2LC */
                   4662:     SW (0);                    /* 088 ? */
                   4663:     SW (0);                    /* 08A ? */
                   4664:     SW (0);                    /* 08C ? */
                   4665:     SW (diwstrt);              /* 08E DIWSTRT */
                   4666:     SW (diwstop);              /* 090 DIWSTOP */
                   4667:     SW (ddfstrt);              /* 092 DDFSTRT */
                   4668:     SW (ddfstop);              /* 094 DDFSTOP */
                   4669:     SW (dmacon);               /* 096 DMACON */
                   4670:     SW (clxcon);               /* 098 CLXCON */
                   4671:     SW (intena);               /* 09A INTENA */
                   4672:     SW (intreq);               /* 09C INTREQ */
                   4673:     SW (adkcon);               /* 09E ADKCON */
                   4674:     for (i = 0; i < 8; i++)
                   4675:        SL (bplpt[i]);          /* 0E0-0FE BPLxPT */
                   4676:     SW (bplcon0);              /* 100 BPLCON0 */
                   4677:     SW (bplcon1);              /* 102 BPLCON1 */
                   4678:     SW (bplcon2);              /* 104 BPLCON2 */
                   4679:     SW (bplcon3);              /* 106 BPLCON3 */
                   4680:     SW (bpl1mod);              /* 108 BPL1MOD */
                   4681:     SW (bpl2mod);              /* 10A BPL2MOD */
                   4682:     SW (bplcon4);              /* 10C BPLCON4 */
1.1.1.17  root     4683:     SW (clxcon2);              /* 10E CLXCON2 */
1.1.1.15  root     4684:     for (i = 0;i < 8; i++)
                   4685:        SW (0);                 /* 110 BPLxDAT */
                   4686:     for ( i = 0; i < 32; i++)
                   4687:        SW (current_colors.color_regs_ecs[i]); /* 180-1BE COLORxx */
                   4688:     SW (0);                    /* 1C0 */
                   4689:     SW (0);                    /* 1C2 */
                   4690:     SW (0);                    /* 1C4 */
                   4691:     SW (0);                    /* 1C6 */
                   4692:     SW (0);                    /* 1C8 */
                   4693:     SW (0);                    /* 1CA */
                   4694:     SW (0);                    /* 1CC */
                   4695:     SW (0);                    /* 1CE */
                   4696:     SW (0);                    /* 1D0 */
                   4697:     SW (0);                    /* 1D2 */
                   4698:     SW (0);                    /* 1D4 */
                   4699:     SW (0);                    /* 1D6 */
                   4700:     SW (0);                    /* 1D8 */
                   4701:     SW (0);                    /* 1DA */
                   4702:     SW (beamcon0);             /* 1DC BEAMCON0 */
                   4703:     SW (0);                    /* 1DE */
                   4704:     SW (0);                    /* 1E0 */
                   4705:     SW (0);                    /* 1E2 */
                   4706:     SW (0);                    /* 1E4 */
                   4707:     SW (0);                    /* 1E6 */
                   4708:     SW (0);                    /* 1E8 */
                   4709:     SW (0);                    /* 1EA */
                   4710:     SW (0);                    /* 1EC */
                   4711:     SW (0);                    /* 1EE */
                   4712:     SW (0);                    /* 1F0 */
                   4713:     SW (0);                    /* 1F2 */
                   4714:     SW (0);                    /* 1F4 */
                   4715:     SW (0);                    /* 1F6 */
                   4716:     SW (0);                    /* 1F8 */
                   4717:     SW (0);                    /* 1FA */
                   4718:     SW (fmode);                        /* 1FC FMODE */
                   4719:     SW (0xffff);               /* 1FE */
                   4720: 
                   4721:     *len = dst - dstbak;
                   4722:     return dstbak;
                   4723: }
                   4724: 
                   4725: uae_u8 *restore_custom_agacolors (uae_u8 *src)
                   4726: {
                   4727:     int i;
                   4728: 
                   4729:     for (i = 0; i < 256; i++)
                   4730:        current_colors.color_regs_aga[i] = RL;
                   4731:     return src;
                   4732: }
                   4733: 
                   4734: uae_u8 *save_custom_agacolors (int *len)
                   4735: {
                   4736:     uae_u8 *dstbak, *dst;
                   4737:     int i;
                   4738: 
                   4739:     dstbak = dst = malloc (256*4);
                   4740:     for (i = 0; i < 256; i++)
                   4741:        SL (current_colors.color_regs_aga[i]);
                   4742:     *len = dst - dstbak;
                   4743:     return dstbak;
                   4744: }
                   4745: 
                   4746: uae_u8 *restore_custom_sprite (uae_u8 *src, int num)
                   4747: {
                   4748:     spr[num].pt = RL;          /* 120-13E SPRxPT */
                   4749:     sprpos[num] = RW;          /* 1x0 SPRxPOS */
                   4750:     sprctl[num] = RW;          /* 1x2 SPRxPOS */
                   4751:     sprdata[num][0] = RW;      /* 1x4 SPRxDATA */
                   4752:     sprdatb[num][0] = RW;      /* 1x6 SPRxDATB */
                   4753:     sprdata[num][1] = RW;
                   4754:     sprdatb[num][1] = RW;
                   4755:     sprdata[num][2] = RW;
                   4756:     sprdatb[num][2] = RW;
                   4757:     sprdata[num][3] = RW;
                   4758:     sprdatb[num][3] = RW;
                   4759:     spr[num].armed = RB;
                   4760:     return src;
                   4761: }
                   4762: 
                   4763: uae_u8 *save_custom_sprite(int *len, int num)
                   4764: {
                   4765:     uae_u8 *dstbak, *dst;
                   4766: 
1.1.1.16  root     4767:     dstbak = dst = malloc (25);
1.1.1.15  root     4768:     SL (spr[num].pt);          /* 120-13E SPRxPT */
                   4769:     SW (sprpos[num]);          /* 1x0 SPRxPOS */
                   4770:     SW (sprctl[num]);          /* 1x2 SPRxPOS */
                   4771:     SW (sprdata[num][0]);      /* 1x4 SPRxDATA */
                   4772:     SW (sprdatb[num][0]);      /* 1x6 SPRxDATB */
                   4773:     SW (sprdata[num][1]);
                   4774:     SW (sprdatb[num][1]);
                   4775:     SW (sprdata[num][2]);
                   4776:     SW (sprdatb[num][2]);
                   4777:     SW (sprdata[num][3]);
                   4778:     SW (sprdatb[num][3]);
                   4779:     SB (spr[num].armed ? 1 : 0);
                   4780:     *len = dst - dstbak;
                   4781:     return dstbak;
                   4782: }

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