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[/] [openrisc/] [trunk/] [rtos/] [ecos-2.0/] [packages/] [services/] [gfx/] [mw/] [v2_0/] [src/] [drivers/] [fblin4sa1100.c] - Rev 365
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/* * Copyright (c) 1999 Martin Jolicoeur <martinj@visuaide.com> * * 4bpp Packed Linear Video Driver for Microwindows * Designed for the arm SA1100 lcd controller with 16 bits access * (little endian) * * In this driver, psd->linelen is line byte length, not line pixel length */ /*#define NDEBUG*/ #include <assert.h> #include <string.h> #include "device.h" #include "fb.h" static unsigned short notmask[4] = { 0x0fff, 0xf0ff, 0xff0f, 0xfff0}; /* Calc linelen and mmap size, return 0 on fail*/ static int linear4_init(PSD psd) { if (!psd->size) psd->size = psd->yres * psd->linelen; /* linelen in bytes for bpp 1, 2, 4, 8 so no change*/ return 1; } /* Set pixel at x, y, to pixelval c*/ static void linear4_drawpixel(PSD psd, MWCOORD x, MWCOORD y, MWPIXELVAL c) { ADDR8 addr = psd->addr; assert (addr != 0); assert (x >= 0 && x < psd->xres); assert (y >= 0 && y < psd->yres); assert (c < psd->ncolors); DRAWON; addr += (x>>1) + y * psd->linelen; if(gr_mode == MWMODE_XOR) *(ADDR16)addr ^= c << ((3-(x&3))<<2); else *(ADDR16)addr = (*(ADDR16)addr & notmask[x&3]) | (c << ((3-(x&3))<<2)); DRAWOFF; } /* Read pixel at x, y*/ static MWPIXELVAL linear4_readpixel(PSD psd, MWCOORD x, MWCOORD y) { ADDR8 addr = psd->addr; assert (addr != 0); assert (x >= 0 && x < psd->xres); assert (y >= 0 && y < psd->yres); return (addr[(x>>1) + y * psd->linelen] >> ((1-(x&1))<<2) ) & 0x0f; } /* Draw horizontal line from x1,y to x2,y including final point*/ static void linear4_drawhorzline(PSD psd, MWCOORD x1, MWCOORD x2, MWCOORD y, MWPIXELVAL c) { ADDR8 addr = psd->addr; assert (addr != 0); assert (x1 >= 0 && x1 < psd->xres); assert (x2 >= 0 && x2 < psd->xres); assert (x2 >= x1); assert (y >= 0 && y < psd->yres); assert (c < psd->ncolors); DRAWON; addr += (x1>>1) + y * psd->linelen; if(gr_mode == MWMODE_XOR) { while(x1 <= x2) { *(ADDR16)addr ^= c << ((3-(x1&3))<<2); if((++x1 & 1) == 0) ++addr; } } else { while(x1 <= x2) { *(ADDR16)addr = (*(ADDR16)addr & notmask[x1&3]) | (c << ((3-(x1&3))<<2)); if((++x1 & 1) == 0) ++addr; } } DRAWOFF; } /* Draw a vertical line from x,y1 to x,y2 including final point*/ static void linear4_drawvertline(PSD psd, MWCOORD x, MWCOORD y1, MWCOORD y2, MWPIXELVAL c) { ADDR8 addr = psd->addr; int linelen = psd->linelen; assert (addr != 0); assert (x >= 0 && x < psd->xres); assert (y1 >= 0 && y1 < psd->yres); assert (y2 >= 0 && y2 < psd->yres); assert (y2 >= y1); assert (c < psd->ncolors); DRAWON; addr += (x>>1) + y1 * linelen; if(gr_mode == MWMODE_XOR) while(y1++ <= y2) { *(ADDR16)addr ^= c << ((3-(x&3))<<2); addr += linelen; } else while(y1++ <= y2) { *(ADDR16)addr = (*(ADDR16)addr & notmask[x&3]) | (c << ((3-(x&3))<<2)); addr += linelen; } DRAWOFF; } /* srccopy bitblt, opcode is currently ignored*/ static void linear4_blit(PSD dstpsd, MWCOORD dstx, MWCOORD dsty, MWCOORD w, MWCOORD h, PSD srcpsd, MWCOORD srcx, MWCOORD srcy, long op) { ADDR8 dst; ADDR8 src; int i; int dlinelen = dstpsd->linelen; int slinelen = srcpsd->linelen; assert (dstpsd->addr != 0); assert (dstx >= 0 && dstx < dstpsd->xres); assert (dsty >= 0 && dsty < dstpsd->yres); assert (w > 0); assert (h > 0); assert (srcpsd->addr != 0); assert (srcx >= 0 && srcx < srcpsd->xres); assert (srcy >= 0 && srcy < srcpsd->yres); assert (dstx+w <= dstpsd->xres); assert (dsty+h <= dstpsd->yres); assert (srcx+w <= srcpsd->xres); assert (srcy+h <= srcpsd->yres); DRAWON; dst = dstpsd->addr + (dstx>>1) + dsty * dlinelen; src = srcpsd->addr + (srcx>>1) + srcy * slinelen; while(--h >= 0) { ADDR8 d = dst; ADDR8 s = src; MWCOORD dx = dstx; MWCOORD sx = srcx; for(i=0; i<w; ++i) { *(ADDR16)d = (*(ADDR16)d & notmask[dx&3]) | ((*(ADDR16)s >> ((3-(sx&3))<<2) & 0x000f) << ((3-(dx&3))<<2)); if((++dx & 1) == 0) ++d; if((++sx & 1) == 0) ++s; } dst += dlinelen; src += slinelen; } DRAWOFF; } SUBDRIVER fblinear4 = { linear4_init, linear4_drawpixel, linear4_readpixel, linear4_drawhorzline, linear4_drawvertline, gen_fillrect, linear4_blit };
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