Brought changes for the screen device
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f4f29dea0b
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04096fc172
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@ -24,26 +24,13 @@ static Uint8 blending[4][16] = {
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{1, 2, 3, 1, 1, 2, 3, 1, 1, 2, 3, 1, 1, 2, 3, 1},
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{1, 2, 3, 1, 1, 2, 3, 1, 1, 2, 3, 1, 1, 2, 3, 1},
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{2, 3, 1, 2, 2, 3, 1, 2, 2, 3, 1, 2, 2, 3, 1, 2}};
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{2, 3, 1, 2, 2, 3, 1, 2, 2, 3, 1, 2, 2, 3, 1, 2}};
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static void
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screen_pixel(UxnScreen *p, Layer *layer, Uint16 x, Uint16 y, Uint8 color)
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{
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if(x >= p->width || y >= p->height)
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return;
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layer->pixels[x + y * p->width] = color;
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}
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static void
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static void
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screen_fill(UxnScreen *p, Layer *layer, Uint16 x1, Uint16 y1, Uint16 x2, Uint16 y2, Uint8 color)
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screen_fill(UxnScreen *p, Layer *layer, Uint16 x1, Uint16 y1, Uint16 x2, Uint16 y2, Uint8 color)
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{
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{
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int x, y;
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int x, y;
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if(x2 >= p->width) x2 = p->width;
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for(y = y1; y < y2 && y < p->height; y++)
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if(y2 >= p->height) y2 = p->height;
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for(x = x1; x < x2 && x < p->width; x++)
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if(x1 >= x2 || y1 >= y2)
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return;
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for(y = y1; y < y2; y++)
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for(x = x1; x < x2; x++)
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layer->pixels[x + y * p->width] = color;
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layer->pixels[x + y * p->width] = color;
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layer->changed = 1;
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}
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}
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static void
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static void
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@ -54,15 +41,14 @@ screen_blit(UxnScreen *p, Layer *layer, Uint16 x, Uint16 y, Uint8 *sprite, Uint8
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Uint16 c = sprite[v] | (twobpp ? (sprite[v + 8] << 8) : 0);
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Uint16 c = sprite[v] | (twobpp ? (sprite[v + 8] << 8) : 0);
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for(h = 7; h >= 0; --h, c >>= 1) {
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for(h = 7; h >= 0; --h, c >>= 1) {
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Uint8 ch = (c & 1) | ((c >> 7) & 2);
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Uint8 ch = (c & 1) | ((c >> 7) & 2);
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if(opaque || ch)
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if(opaque || ch) {
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screen_pixel(p,
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Uint16 xx = x + (flipx ? 7 - h : h);
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layer,
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Uint16 yy = y + (flipy ? 7 - v : v);
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x + (flipx ? 7 - h : h),
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if(xx < p->width && yy < p->height)
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y + (flipy ? 7 - v : v),
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layer->pixels[xx + yy * p->width] = blending[ch][color];
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blending[ch][color]);
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}
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}
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}
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}
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}
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layer->changed = 1;
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}
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}
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void
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void
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@ -135,13 +121,26 @@ screen_deo(Uint8 *ram, Uint8 *d, Uint8 port)
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screen_resize(&uxn_screen, uxn_screen.width, PEEK2(d + 4));
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screen_resize(&uxn_screen, uxn_screen.width, PEEK2(d + 4));
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break;
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break;
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case 0xe: {
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case 0xe: {
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Uint16 x = PEEK2(d + 0x8), y = PEEK2(d + 0xa);
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Uint8 ctrl = d[0xe];
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Layer *layer = (d[0xe] & 0x40) ? &uxn_screen.fg : &uxn_screen.bg;
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Uint8 color = ctrl & 0x3;
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if(d[0xe] & 0x80) {
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Uint16 x = PEEK2(d + 0x8);
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Uint8 xflip = d[0xe] & 0x10, yflip = d[0xe] & 0x20;
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Uint16 y = PEEK2(d + 0xa);
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screen_fill(&uxn_screen, layer, xflip ? 0 : x, yflip ? 0 : y, xflip ? x : uxn_screen.width, yflip ? y : uxn_screen.height, d[0xe] & 0x3);
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Layer *layer = (ctrl & 0x40) ? &uxn_screen.fg : &uxn_screen.bg;
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} else {
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/* fill mode */
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screen_pixel(&uxn_screen, layer, x, y, d[0xe] & 0x3);
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if(ctrl & 0x80) {
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Uint16 x2 = uxn_screen.width;
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Uint16 y2 = uxn_screen.height;
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if(ctrl & 0x10) x2 = x, x = 0;
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if(ctrl & 0x20) y2 = y, y = 0;
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screen_fill(&uxn_screen, layer, x, y, x2, y2, color);
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layer->changed = 1;
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}
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/* pixel mode */
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else {
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Uint16 width = uxn_screen.width;
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Uint16 height = uxn_screen.height;
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if(x < width && y < height)
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layer->pixels[x + y * width] = color;
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layer->changed = 1;
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layer->changed = 1;
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if(d[0x6] & 0x1) POKE2(d + 0x8, x + 1); /* auto x+1 */
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if(d[0x6] & 0x1) POKE2(d + 0x8, x + 1); /* auto x+1 */
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if(d[0x6] & 0x2) POKE2(d + 0xa, y + 1); /* auto y+1 */
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if(d[0x6] & 0x2) POKE2(d + 0xa, y + 1); /* auto y+1 */
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@ -149,25 +148,32 @@ screen_deo(Uint8 *ram, Uint8 *d, Uint8 port)
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break;
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break;
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}
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}
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case 0xf: {
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case 0xf: {
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Uint16 x = PEEK2(d + 0x8), y = PEEK2(d + 0xa), dx, dy, addr = PEEK2(d + 0xc);
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Uint8 i;
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Uint8 i, n = d[0x6] >> 4, twobpp = !!(d[0xf] & 0x80);
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Uint8 ctrl = d[0xf];
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Layer *layer = (d[0xf] & 0x40) ? &uxn_screen.fg : &uxn_screen.bg;
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Uint8 move = d[0x6];
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dx = (d[0x6] & 0x01) << 3;
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Uint8 length = move >> 4;
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dy = (d[0x6] & 0x02) << 2;
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Uint8 twobpp = !!(ctrl & 0x80);
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if(addr > 0x10000 - ((n + 1) << (3 + twobpp)))
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Uint16 x = PEEK2(d + 0x8);
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Uint16 y = PEEK2(d + 0xa);
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Uint16 addr = PEEK2(d + 0xc);
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Uint16 dx = (move & 0x1) << 3;
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Uint16 dy = (move & 0x2) << 2;
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Layer *layer = (ctrl & 0x40) ? &uxn_screen.fg : &uxn_screen.bg;
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if(addr > 0x10000 - ((length + 1) << (3 + twobpp)))
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return;
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return;
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for(i = 0; i <= n; i++) {
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for(i = 0; i <= length; i++) {
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if(!(d[0xf] & 0xf)) {
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if(!(ctrl & 0xf)) {
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Uint16 ex = x + dy * i, ey = y + dx * i;
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Uint16 ex = x + dy * i, ey = y + dx * i;
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screen_fill(&uxn_screen, layer, ex, ey, ex + 8, ey + 8, 0);
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screen_fill(&uxn_screen, layer, ex, ey, ex + 8, ey + 8, 0);
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} else {
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} else {
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screen_blit(&uxn_screen, layer, x + dy * i, y + dx * i, &ram[addr], d[0xf] & 0xf, d[0xf] & 0x10, d[0xf] & 0x20, twobpp);
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screen_blit(&uxn_screen, layer, x + dy * i, y + dx * i, &ram[addr], ctrl & 0xf, ctrl & 0x10, ctrl & 0x20, twobpp);
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addr += (d[0x6] & 0x04) << (1 + twobpp);
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addr += (move & 0x04) << (1 + twobpp);
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}
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}
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}
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}
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if(d[0x6] & 0x1) POKE2(d + 0x8, x + dx); /* auto x+8 */
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layer->changed = 1;
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if(d[0x6] & 0x2) POKE2(d + 0xa, y + dy); /* auto y+8 */
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if(move & 0x1) POKE2(d + 0x8, x + dx); /* auto x+8 */
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if(d[0x6] & 0x4) POKE2(d + 0xc, addr); /* auto addr+length */
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if(move & 0x2) POKE2(d + 0xa, y + dy); /* auto y+8 */
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if(move & 0x4) POKE2(d + 0xc, addr); /* auto addr+length */
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break;
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break;
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}
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}
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}
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}
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