Example #1
0
File: mode.c Project: antrik/libggi
static int do_dbstuff(struct ggi_visual *vis)
{
	ggi_palemu_priv *priv = PALEMU_PRIV(vis);
	int i;

	/* allocate memory */
	priv->frame_size = LIBGGI_FB_SIZE(LIBGGI_MODE(vis));
	priv->fb_size = priv->frame_size * LIBGGI_MODE(vis)->frames;
	priv->fb_ptr  = malloc((size_t)priv->fb_size);
	
	DPRINT_MODE("display-palemu: fb=%p size=%d frame=%d\n", 
		priv->fb_ptr, priv->fb_size, priv->frame_size);

	if (priv->fb_ptr == NULL) {
		fprintf(stderr, "display-palemu: Out of memory.\n");
		return GGI_ENOMEM;
	}

        /* clear all frames */
	memset(priv->fb_ptr, 0, (size_t)priv->fb_size);

	/* set up pixel format */
	memset(LIBGGI_PIXFMT(vis), 0, sizeof(ggi_pixelformat));
	setup_pixfmt(LIBGGI_PIXFMT(vis), LIBGGI_GT(vis));
	_ggi_build_pixfmt(LIBGGI_PIXFMT(vis));

	/* set up direct buffers */
	for (i=0; i < LIBGGI_MODE(vis)->frames; i++) {
		ggi_directbuffer *buf;
		
		_ggi_db_add_buffer(LIBGGI_PRIVLIST(vis), _ggi_db_get_new());

		buf = LIBGGI_PRIVBUFS(vis)[i];

		buf->frame = i;
		buf->type  = GGI_DB_NORMAL | GGI_DB_SIMPLE_PLB;
		buf->read  = (char *) priv->fb_ptr + i * priv->frame_size;
		buf->write = buf->read;
		buf->layout = blPixelLinearBuffer;

		buf->buffer.plb.stride = 
			GT_ByPPP(LIBGGI_VIRTX(vis), LIBGGI_GT(vis));
		buf->buffer.plb.pixelformat = LIBGGI_PIXFMT(vis);
	}

	/* Set up palette */
	if (LIBGGI_PAL(vis)->clut.data) {
		free(LIBGGI_PAL(vis)->clut.data);
 		LIBGGI_PAL(vis)->clut.data = NULL;
	}
	if (GT_SCHEME(LIBGGI_GT(vis)) == GT_PALETTE) {
		LIBGGI_PAL(vis)->clut.data = _ggi_malloc((1 << GT_DEPTH(LIBGGI_GT(vis))) *
						sizeof(ggi_color));
		LIBGGI_PAL(vis)->clut.size = 1 << GT_DEPTH(LIBGGI_GT(vis));
	}

	return 0;
}
Example #2
0
int _ggi_x_createfb(struct ggi_visual *vis)
{
	char target[GGI_MAX_APILEN];
	ggi_mode tm;
	ggi_x_priv *priv;
	int err, i;

	err = GGI_OK;
	priv = GGIX_PRIV(vis);

	DPRINT_MODE("_ggi_x_createfb(%p) called\n", vis);
	DPRINT("viidx = %i\n", priv->viidx);

	_ggi_x_freefb(vis);

	DPRINT_MODE("Creating vanilla XImage client-side buffer\n");

	priv->fb = calloc(1, GT_ByPPP(LIBGGI_VIRTX(vis),LIBGGI_GT(vis))
			* LIBGGI_VIRTY(vis) * LIBGGI_MODE(vis)->frames);
	if (priv->fb == NULL) {
		DPRINT("_ggi_x_createfb: XImage buffer allocation failed.\n");
		err = GGI_ENOMEM;
		goto err0;
	}

	/* We assume LIBGGI_MODE(vis) structure has already been filled out */
	memcpy(&tm, LIBGGI_MODE(vis), sizeof(ggi_mode));


	/* Make sure we do not fail due to physical size constraints,
	 * which are meaningless on a memory visual.
	 */
	tm.size.x = tm.size.y = GGI_AUTO;

	i = 0;
	memset(target, '\0', sizeof(target));
	i += snprintf(target, sizeof(target),
			"display-memory:-noblank:-pixfmt=");

	_ggi_build_pixfmtstr(vis, target + i, sizeof(target) - i, 1);
	i = strlen(target);

	snprintf(target + i, sizeof(target) - i, ":-physz=%i,%i:pointer", 
		LIBGGI_MODE(vis)->size.x, LIBGGI_MODE(vis)->size.y);

	err = _ggi_openslave(vis, target, &tm);
	if (err)
		goto err1;

	priv->ximage = _ggi_x_create_ximage( vis, (char*)priv->fb,
					     LIBGGI_VIRTX(vis), 
					     LIBGGI_VIRTY(vis) );
	if (priv->ximage == NULL) {
		DPRINT("_ggi_x_createfb: _ggi_x_create_ximage() failed\n");
		err = GGI_ENOMEM;
		goto err1;
	}

	err = _ggi_create_dbs(vis);
	if (err)
		goto err1;

	DPRINT_MODE("X: XImage %p and slave visual %p share buffer at %p\n",
		       priv->ximage, priv->slave, priv->fb);

	return GGI_OK;

err1:
	_ggi_x_freefb(vis);
err0:
	return err;
}
Example #3
0
int GGI_3dlabs_pm2_puthline(struct ggi_visual *vis, int x, int y, int w,
                            const void *buf)
{
    struct _3dlabs_pm2_priv *priv = PM2_PRIV(vis);
    volatile uint8_t *mmioaddr = FBDEV_PRIV(vis)->mmioaddr;
    int yadd = vis->w_frame_num * LIBGGI_VIRTY(vis);
    int count;
#if 0
    uint32_t srcwidth;
#endif
    const uint8_t *src;
    const uint32_t *srcp;
    uint32_t *dest;


    /* 0 width not OK */
    if (w == 0) return 0;

    DPRINT_DRAW("puthline(%p, %i,%i, %i, %p) entered\n",
                vis, x, y, w, buf);

    y += yadd;

#if 0
    if (LIBGGI_GT(vis) & GT_SUB_PACKED_GETPUT) {
        srcwidth = GT_ByPPP(w, LIBGGI_GT(vis));
    } else {
        srcwidth = w * GT_ByPP(LIBGGI_GT(vis));
    }
#endif

    pm2_gcupdate(mmioaddr, priv, LIBGGI_MODE(vis), LIBGGI_GC(vis),
                 yadd);

    pm2_waitfifo(mmioaddr, 6);

    /* Setting for Image download from Host */
    pm2_out32(mmioaddr, priv->pprod, PM2R_FB_READ_MODE);
    pm2_out32(mmioaddr, UNIT_ENABLE, PM2R_FB_WRITE_MODE);
    pm2_out32(mmioaddr, UNIT_DISABLE, PM2R_COLOR_DDA_MODE);

    pm2_loadcoord(mmioaddr, x,y, w, 1);
    pm2_out32(mmioaddr,
              PM2F_RENDER_RECTANGLE | PM2F_RENDER_XPOSITIVE
              | PM2F_RENDER_YPOSITIVE | PM2F_RENDER_SYNC_ON_HOST,
              PM2R_RENDER);

    src = (const uint8_t *)buf;
    dest = (uint32_t *)((volatile uint8_t *)
                        (mmioaddr + PM2R_OUT_FIFO + 4));

    count = w;
    srcp = (const uint32_t *)src;
    while (count >= priv->fifosize) {
        pm2_waitfifo(mmioaddr, priv->fifosize);
        /* 0x0155 is the TAG for FBSourceData */
        pm2_out32(mmioaddr,
                  ((priv->fifosize - 2) << 16) | 0x0155,
                  PM2R_OUT_FIFO);

        pm2_move32(dest, srcp, priv->fifosize - 1);

        count -= priv->fifosize - 1;
        srcp += priv->fifosize - 1;
    }
    if (count) {
        pm2_waitfifo(mmioaddr, count + 1);
        pm2_out32(mmioaddr,
                  ((count - 1) << 16) | 0x0155,
                  PM2R_OUT_FIFO);

        pm2_move32(dest, srcp, count);
    }

    /* Re-enable fb readmode when done */
    pm2_waitfifo(mmioaddr, 2);
    pm2_out32(mmioaddr, 0, PM2R_WAIT_FOR_COMPLETION);


    priv->oldfgcol = ~priv->oldfgcol;

    vis->accelactive = 1;

    return 0;
}
Example #4
0
int GGI_vgl_setmode(ggi_visual *vis, ggi_mode *tm)
{ 
	struct vgl_priv *priv = VGL_PRIV(vis);
	ggi_graphtype gt = tm->graphtype;
	video_info_t modeinfo;
	unsigned long modenum = 0;
	char sugname[GGI_MAX_APILEN];
	char args[GGI_MAX_APILEN];
	int err = 0;
	int id, i;
	int pixelBytes;

	err = GGI_vgl_checkmode(vis, tm);
	if (err) return err;

	/* reset the modeinfo structure as expected by query_mode */
	memset(&modeinfo, 0, sizeof(modeinfo));
	
	switch(gt) {
	case GT_1BIT : modeinfo.vi_depth = 1; pixelBytes = 1; break;
	case GT_4BIT : modeinfo.vi_depth = 4; pixelBytes = 1; break;
	case GT_8BIT : modeinfo.vi_depth = 8; pixelBytes = 1; break;
	case GT_16BIT: modeinfo.vi_depth = 16; pixelBytes = 2; break;
	case GT_32BIT: modeinfo.vi_depth = 32; pixelBytes = 4; break;

	/* Unsupported mode depths */
	case GT_15BIT:
	case GT_24BIT:
	default:
		return GGI_ENOMATCH;
	}

	modeinfo.vi_width = tm->visible.x;
	modeinfo.vi_height = tm->visible.y;

	/* XXX should be added to libvgl */
	if (ioctl(0, FBIO_FINDMODE, &modeinfo))
		return -1;

	DPRINT("Setting VGLlib mode %d (0x%x)\n",
			modeinfo.vi_mode, modeinfo.vi_mode);

	/* Terminate any current mode before initialising another */
	if (priv->vgl_init_done) {
		priv->vgl_init_done = 0;
		VGLEnd();
	}

	/* XXX should be in VGL */
	if ((modeinfo.vi_mode >= M_B40x25) && (modeinfo.vi_mode <= M_VGA_M90x60))
		modenum = _IO('S', modeinfo.vi_mode);
	if ((modeinfo.vi_mode >= M_TEXT_80x25) && (modeinfo.vi_mode <= M_TEXT_132x60))
		modenum = _IO('S', modeinfo.vi_mode);
	if ((modeinfo.vi_mode >= M_VESA_CG640x400) &&
		(modeinfo.vi_mode <= M_VESA_FULL_1280))
		modenum = _IO('V', modeinfo.vi_mode - M_VESA_BASE);

	if ((err = VGLInit(modenum)) != 0) {
		DPRINT("display-vgl: setting mode 0x%x failed with error %d\n",
			modeinfo.vi_mode, err);
		return GGI_EFATAL;
	}

	priv->vgl_init_done = 1;

	if (priv->vgl_use_db) {
		_GGI_vgl_freedbs(vis);

		/* Set up DirectBuffer(s) */
		for (i = 0; i<tm->frames; i++) {
			if (LIBGGI_FB_SIZE(tm) >
				(unsigned)(VGLDisplay->Xsize*VGLDisplay->Ysize*
					pixelBytes)) {
				fprintf(stderr, "display-vgl: framebuffer too large! (%d > %d*%d*%d)\n",
					LIBGGI_FB_SIZE(tm),
					VGLDisplay->Xsize, VGLDisplay->Ysize, 
					pixelBytes);
				return GGI_ENOMEM;
			}

			_ggi_db_add_buffer(LIBGGI_APPLIST(vis), _ggi_db_get_new());

			LIBGGI_APPBUFS(vis)[i]->frame = i;
			LIBGGI_APPBUFS(vis)[i]->type = GGI_DB_NORMAL | GGI_DB_SIMPLE_PLB;
			LIBGGI_APPBUFS(vis)[i]->read = VGLDisplay->Bitmap;
			LIBGGI_APPBUFS(vis)[i]->write = VGLDisplay->Bitmap;
			LIBGGI_APPBUFS(vis)[i]->layout = blPixelLinearBuffer;
			LIBGGI_APPBUFS(vis)[i]->buffer.plb.stride
				= GT_ByPPP(tm->virt.x, tm->graphtype);
		}
	}

	/* Save mode info returned by the VESA driver */
	bcopy(&modeinfo, &priv->modeinfo, sizeof(priv->modeinfo));

	/* Palette */
	if (vis->palette) {
		free(vis->palette);
		vis->palette = NULL;
	}
	if (priv->savepalette) {
		free(priv->savepalette);
		priv->savepalette = NULL;
	}
	if (GT_SCHEME(tm->graphtype) == GT_PALETTE) {
		int len = 1 << GT_DEPTH(tm->graphtype);

		vis->palette = malloc(len * sizeof(ggi_color));
		if (vis->palette == NULL) return GGI_EFATAL;
		priv->savepalette = malloc(sizeof(int) * (len*3));
		if (priv->savepalette == NULL) return GGI_EFATAL;

		/* Set an initial palette */
		ggiSetColorfulPalette(vis);
	}

	/* Set up pixel format */
	memset(LIBGGI_PIXFMT(vis), 0, sizeof(ggi_pixelformat));
	LIBGGI_PIXFMT(vis)->size  = GT_SIZE(gt);
	LIBGGI_PIXFMT(vis)->depth = GT_DEPTH(gt);

	switch (GT_SCHEME(gt)) {

	case GT_PALETTE:
	case GT_GREYSCALE:
		LIBGGI_PIXFMT(vis)->clut_mask = (1 << GT_DEPTH(gt)) - 1;
		break;

	case GT_TRUECOLOR:
		DPRINT_MODE("display-vgl: RGB %d:%d:%d offsets %d:%d:%d\n",
			priv->modeinfo.vi_pixel_fsizes[VGL_RED_INDEX],
			priv->modeinfo.vi_pixel_fsizes[VGL_GREEN_INDEX],
			priv->modeinfo.vi_pixel_fsizes[VGL_BLUE_INDEX],
			priv->modeinfo.vi_pixel_fields[VGL_RED_INDEX],
			priv->modeinfo.vi_pixel_fields[VGL_GREEN_INDEX],
			priv->modeinfo.vi_pixel_fields[VGL_BLUE_INDEX]);

		LIBGGI_PIXFMT(vis)->red_mask =
		((1 << priv->modeinfo.vi_pixel_fsizes[VGL_RED_INDEX]) - 1) <<
			priv->modeinfo.vi_pixel_fields[VGL_RED_INDEX];

		LIBGGI_PIXFMT(vis)->green_mask =
		((1 << priv->modeinfo.vi_pixel_fsizes[VGL_GREEN_INDEX]) - 1) <<
			priv->modeinfo.vi_pixel_fields[VGL_GREEN_INDEX];
			
		LIBGGI_PIXFMT(vis)->blue_mask =
		((1 << priv->modeinfo.vi_pixel_fsizes[VGL_BLUE_INDEX]) - 1) <<
			priv->modeinfo.vi_pixel_fields[VGL_BLUE_INDEX];
		break;

	case GT_TEXT:
		/* Assumes VGA text */
		LIBGGI_PIXFMT(vis)->texture_mask = 0x00ff;
		LIBGGI_PIXFMT(vis)->fg_mask = 0x0f00;
		LIBGGI_PIXFMT(vis)->bg_mask = 0xf000;
		break;
	}
	_ggi_build_pixfmt(LIBGGI_PIXFMT(vis));

	memcpy(LIBGGI_MODE(vis),tm,sizeof(ggi_mode));

	_ggiZapMode(vis, 0);

	for(id = 1; 0 == GGI_vgl_getapi(vis, id, sugname, args); id++) {
		if (_ggiOpenDL(vis, _ggiGetConfigHandle(), sugname, args, NULL)) {
			fprintf(stderr,"display-vgl: Can't open the %s (%s) library.\n",
				sugname, args);
			return GGI_EFATAL;
		} else {
			DPRINT("Success in loading %s (%s)\n", sugname, args);
		}
	}

	if (!priv->vgl_use_db) {
		vis->opdraw->putpixel		= GGI_vgl_putpixel;
		vis->opdraw->putpixel_nc	= GGI_vgl_putpixel_nc;
		vis->opdraw->getpixel		= GGI_vgl_getpixel;
		vis->opdraw->drawpixel		= GGI_vgl_drawpixel;
		vis->opdraw->drawpixel_nc	= GGI_vgl_drawpixel_nc;
		vis->opdraw->drawhline		= GGI_vgl_drawhline;
		vis->opdraw->drawhline_nc	= GGI_vgl_drawhline_nc;
		vis->opdraw->drawvline		= GGI_vgl_drawvline;
		vis->opdraw->drawvline_nc	= GGI_vgl_drawvline_nc;
		vis->opdraw->drawbox		= GGI_vgl_drawbox;
		vis->opdraw->drawline		= GGI_vgl_drawline;
		vis->opdraw->puthline		= GGI_vgl_puthline;
		vis->opdraw->putbox		= GGI_vgl_putbox;
	} else {
		vis->opdraw->setorigin		= GGI_vgl_setorigin;
	}

	if (GT_SCHEME(tm->graphtype) == GT_PALETTE) {
		vis->opcolor->setpalvec = GGI_vgl_setpalvec;
	}

	if(priv->vgl_use_db) {
		for(i = 0; i<tm->frames; i++)
			LIBGGI_APPBUFS(vis)[i]->buffer.plb.pixelformat =
								LIBGGI_PIXFMT(vis);
	}

	ggiIndicateChange(vis, GGI_CHG_APILIST);

	return 0;
}