mpv/libvo/vo_ggi.c

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/*
vo_ggi.c - General Graphics Interface (GGI) Renderer for MPlayer
(C) Alex Beregszaszi <alex@naxine.org>
Uses libGGI - http://www.ggi-project.org/
Many thanks to Atmosfear, he hacked this driver to working with Planar
formats, and he fixed the RGB handling.
*/
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <errno.h>
#include "config.h"
#include "video_out.h"
#include "video_out_internal.h"
#include "yuv2rgb.h"
#include "fastmemcpy.h"
#include <ggi/ggi.h>
#undef GGI_OST
#define GII_BUGGY_KEYCODES
LIBVO_EXTERN (ggi)
static vo_info_t vo_info =
{
"General Graphics Interface (GGI) output",
"ggi",
"Alex Beregszaszi <alex@naxine.org>",
"under developement"
};
extern int verbose;
static char *ggi_output_name = NULL;
static ggi_visual_t ggi_vis;
static ggi_directbuffer *ggi_buffer;
static int ggi_format = 0;
static int ggi_bpp = 0;
static uint32_t virt_width;
static uint32_t virt_height;
#ifdef GGI_OST
static ggi_pixel white;
static ggi_pixel black;
#endif
static int ggi_setmode(uint32_t d_width, uint32_t d_height, int d_depth, int format)
{
ggi_mode mode =
{
1, /* frames */
{ GGI_AUTO, GGI_AUTO }, /* visible */
{ GGI_AUTO, GGI_AUTO }, /* virt */
{ GGI_AUTO, GGI_AUTO }, /* size */
GT_AUTO, /* graphtype */
{ GGI_AUTO, GGI_AUTO } /* dots per pixel */
};
ggi_color pal[256];
mode.visible.x = mode.virt.x = d_width;
mode.visible.y = mode.virt.y = d_height;
switch(d_depth)
{
case 1:
mode.graphtype = GT_1BIT;
break;
case 2:
mode.graphtype = GT_2BIT;
break;
case 4:
mode.graphtype = GT_4BIT;
break;
case 8:
mode.graphtype = GT_8BIT;
break;
case 15:
mode.graphtype = GT_15BIT;
break;
case 16:
mode.graphtype = GT_16BIT;
break;
case 24:
mode.graphtype = GT_24BIT;
break;
case 32:
mode.graphtype = GT_32BIT;
break;
default:
printf("ggi-setmode: unknown bit depth - using auto\n");
mode.graphtype = GT_AUTO;
}
ggiCheckMode(ggi_vis, &mode);
if (ggiSetMode(ggi_vis, &mode) != 0)
{
printf("ggi-setmode: unable to set mode\n");
ggiClose(ggi_vis);
ggiExit();
return(-1);
}
virt_width = mode.virt.x;
virt_height = mode.virt.y;
vo_screenwidth = mode.visible.x;
vo_screenheight = mode.visible.y;
vo_depthonscreen = d_depth;
ggi_bpp = d_depth; /* why ? */
#ifdef get_db_info
{
const ggi_directbuffer *db = ggiDBGetBuffer(ggi_vis, 0);
if (db)
{
vo_depthonscreen = db->buffer.plb.pixelformat->depth;
ggi_bpp = db->buffer.plb.pixelformat->size / 8;
}
}
#endif
if (GT_SCHEME(mode.graphtype) == GT_PALETTE)
{
ggiSetColorfulPalette(ggi_vis);
ggiGetPalette(ggi_vis, 0, 1 << ggi_bpp, pal);
}
if (verbose)
printf("ggi-setmode: %dx%d (virt: %dx%d) screen depth: %d, bpp: %d, format: %s\n",
vo_screenwidth, vo_screenheight, virt_width, virt_height,
vo_depthonscreen, ggi_bpp, vo_format_name(ggi_format));
return(0);
}
static uint32_t init(uint32_t width, uint32_t height, uint32_t d_width,
uint32_t d_height, uint32_t fullscreen, char *title, uint32_t format)
{
vo_depthonscreen = 32;
printf("\nggi-init: THIS DRIVER IS IN PRE-ALPHA PHASE, DO NOT USE!\n\n");
if (ggiInit() != 0)
{
printf("ggi-init: unable to initialize GGI\n");
return(-1);
}
if ((ggi_vis = ggiOpen(ggi_output_name)) == NULL)
{
printf("ggi-init: unable to open GGI for %s output\n",
(ggi_output_name == NULL) ? "default" : ggi_output_name);
ggiExit();
return(-1);
}
printf("ggi-init: using %s GGI output\n",
(ggi_output_name == NULL) ? "default" : ggi_output_name);
ggi_format = format;
switch(ggi_format)
{
case IMGFMT_RGB8:
ggi_bpp = 8;
break;
case IMGFMT_RGB15:
ggi_bpp = 15;
break;
case IMGFMT_RGB16:
ggi_bpp = 16;
break;
case IMGFMT_RGB24:
ggi_bpp = 24;
break;
case IMGFMT_RGB32:
ggi_bpp = 32;
break;
case IMGFMT_BGR8:
ggi_bpp = 8;
break;
case IMGFMT_BGR15:
ggi_bpp = 15;
break;
case IMGFMT_BGR16:
ggi_bpp = 16;
break;
case IMGFMT_BGR24:
ggi_bpp = 24;
break;
case IMGFMT_BGR32:
ggi_bpp = 32;
break;
case IMGFMT_YV12: /* rgb, 24bit */
ggi_bpp = 16;
yuv2rgb_init(vo_depthonscreen, MODE_RGB);
break;
default:
printf("ggi-init: no suitable image format found\n");
return(-1);
}
ggiSetFlags(ggi_vis, GGIFLAG_ASYNC);
if (ggi_setmode(d_width, d_height, vo_depthonscreen, ggi_format) != 0)
{
printf("ggi-init: setmode returned with error\n");
return(-1);
}
ggi_buffer = (ggi_directbuffer *)ggiDBGetBuffer(ggi_vis, 0);
if (ggi_buffer == NULL)
{
printf("ggi-init: double buffering is not available\n");
ggiClose(ggi_vis);
ggiExit();
return(-1);
}
if (!(ggi_buffer->type & GGI_DB_SIMPLE_PLB) ||
(ggi_buffer->page_size != 0) ||
(ggi_buffer->write == NULL) ||
(ggi_buffer->noaccess != 0) ||
(ggi_buffer->align != 0) ||
(ggi_buffer->layout != blPixelLinearBuffer))
{
printf("ggi-init: incorrect video memory type\n");
ggiClose(ggi_vis);
ggiExit();
return(-1);
}
#ifdef GGI_OST
/* just for fun */
{
ggi_color col;
/* set black */
col.r = col.g = col.b = 0x0000;
black = ggiMapColor(ggi_vis, &col);
/* set white */
col.r = col.g = col.b = 0xffff;
white = ggiMapColor(ggi_vis, &col);
ggiSetGCForeground(ggi_vis, white);
ggiSetGCBackground(ggi_vis, black);
}
#endif
return(0);
}
static const vo_info_t* get_info(void)
{
return &vo_info;
}
static uint32_t draw_frame(uint8_t *src[])
{
ggiResourceAcquire(ggi_buffer->resource, GGI_ACTYPE_WRITE);
ggiSetDisplayFrame(ggi_vis, ggi_buffer->frame);
ggiSetWriteFrame(ggi_vis, ggi_buffer->frame);
memcpy(ggi_buffer->write, src[0], virt_width*virt_height*(ggi_bpp/8));
#ifdef GGI_OST
ggiPuts(ggi_vis, virt_width/2, virt_height-10, "MPlayer GGI");
#endif
ggiResourceRelease(ggi_buffer->resource);
return(0);
}
static void draw_alpha(int x0, int y0, int w, int h, unsigned char *src,
unsigned char *srca, int stride)
{
#warning "draw_alpha needs to be fixed!"
switch(ggi_format)
{
case IMGFMT_RGB15:
case IMGFMT_BGR15:
vo_draw_alpha_rgb15(w, h, src, srca, stride, 0, 2*virt_width);
break;
case IMGFMT_RGB16:
case IMGFMT_BGR16:
vo_draw_alpha_rgb16(w, h, src, srca, stride, 0, 2*virt_width);
break;
case IMGFMT_RGB24:
case IMGFMT_BGR24:
vo_draw_alpha_rgb24(w, h, src, srca, stride, 0, 3*virt_width);
break;
case IMGFMT_RGB32:
case IMGFMT_BGR32:
vo_draw_alpha_rgb32(w, h, src, srca, stride, 0, 4*virt_width);
break;
}
}
static void flip_page(void)
{
check_events();
vo_draw_text(virt_width, virt_height, draw_alpha);
ggiFlush(ggi_vis);
}
static uint32_t draw_slice(uint8_t *src[], int stride[], int w, int h,
int x, int y)
{
register uint8_t *dst;
dst = ggi_buffer->write + (virt_width * y + x) * (ggi_bpp/8);
yuv2rgb(dst, src[0], src[1], src[2], w, h, virt_width*(ggi_bpp/8),
stride[0], stride[1]);
return(0);
}
static uint32_t query_format(uint32_t format)
{
switch(format)
{
case IMGFMT_YV12:
return(1);
case IMGFMT_RGB8:
case IMGFMT_RGB15:
case IMGFMT_RGB16:
case IMGFMT_RGB24:
case IMGFMT_RGB32:
case IMGFMT_BGR8:
case IMGFMT_BGR15:
case IMGFMT_BGR16:
case IMGFMT_BGR24:
case IMGFMT_BGR32:
return(1);
}
return(0);
}
static void uninit(void)
{
ggiResourceRelease(ggi_buffer->resource);
ggiClose(ggi_vis);
ggiExit();
}
#include "../linux/keycodes.h"
static void check_events(void)
{
struct timeval tv = {0, 0};
ggi_event event;
ggi_event_mask mask;
if ((mask = ggiEventPoll(ggi_vis, emAll, &tv)))
if (ggiEventRead(ggi_vis, &event, emAll) != 0)
{
// printf("type: %4x, origin: %4x, sym: %4x, label: %4x, button=%4x\n",
// event.any.origin, event.any.type, event.key.sym, event.key.label, event.key.button);
if ((event.any.type == evKeyPress) ||
(event.any.type == evKeyRepeat) ||
(event.any.type == evKeyRelease))
{
#ifdef GII_BUGGY_KEYCODES
switch(event.key.button)
{
case 0x37:
mplayer_put_key('*');
break;
case 0x68:
mplayer_put_key('/');
break;
case 0x4e:
mplayer_put_key('+');
break;
case 0x4a:
mplayer_put_key('-');
break;
case 0x18:
mplayer_put_key('o');
break;
case 0x22:
mplayer_put_key('g');
break;
case 0x15:
mplayer_put_key('z');
break;
case 0x2d:
mplayer_put_key('x');
break;
case 0x32:
mplayer_put_key('m');
break;
case 0x20:
mplayer_put_key('d');
break;
case 0x10:
mplayer_put_key('q');
break;
case 0x39:
mplayer_put_key('p');
break;
case 0x5a:
mplayer_put_key(KEY_UP);
break;
case 0x60:
mplayer_put_key(KEY_DOWN);
break;
case 0x5c:
mplayer_put_key(KEY_LEFT);
break;
case 0x5e:
mplayer_put_key(KEY_RIGHT);
break;
case 0x5b:
mplayer_put_key(KEY_PAGE_UP);
break;
case 0x61:
mplayer_put_key(KEY_PAGE_DOWN);
break;
default:
break;
}
#else
switch(event.key.button)
{
case GIIK_PAsterisk: /* PStar */
case GIIUC_Asterisk:
mplayer_put_key('*');
break;
case GIIK_PSlash:
case GIIUC_Slash:
mplayer_put_key('/');
break;
case GIIK_PPlus:
case GIIUC_Plus:
mplayer_put_key('+');
break;
case GIIK_PMinus:
case GIIUC_Minus:
mplayer_put_key('-');
break;
case GIIUC_o:
case GIIUC_O:
mplayer_put_key('o');
break;
case GIIUC_g:
case GIIUC_G:
mplayer_put_key('g');
break;
case GIIUC_z:
case GIIUC_Z:
mplayer_put_key('z');
break;
case GIIUC_x:
case GIIUC_X:
mplayer_put_key('x');
break;
case GIIUC_m:
case GIIUC_M:
mplayer_put_key('m');
break;
case GIIUC_d:
case GIIUC_D:
mplayer_put_key('d');
break;
case GIIUC_q:
case GIIUC_Q:
mplayer_put_key('q');
break;
case GIIUC_Space:
case GIIUC_p:
case GIIUC_P:
mplayer_put_key('p');
break;
case GIIK_Up:
mplayer_put_key(KEY_UP);
break;
case GIIK_Down:
mplayer_put_key(KEY_DOWN);
break;
case GIIK_Left:
mplayer_put_key(KEY_LEFT);
break;
case GIIK_Right:
mplayer_put_key(KEY_RIGHT);
break;
case GIIK_PageUp:
mplayer_put_key(KEY_PAGE_UP);
break;
case GIIK_PageDown:
mplayer_put_key(KEY_PAGE_DOWN);
break;
default:
break;
}
#endif
}
}
return;
}