API: Add gdk_cairo_region_create_from_surface()

The function converts the given surface into an alpha bitmap mask. This
is mostly useful for setting shape regions.

Also adds a new internal function _gdk_cairo_surface_extents() that
computes a surface's extents.
This commit is contained in:
Benjamin Otte 2010-08-14 04:40:52 +02:00
parent 6218c16ff8
commit 96b387599d
5 changed files with 149 additions and 0 deletions

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@ -656,6 +656,7 @@ gdk_cairo_set_source_pixmap
gdk_cairo_rectangle
gdk_cairo_region
gdk_cairo_reset_clip
gdk_cairo_region_create_from_surface
</SECTION>
<SECTION>

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@ -293,6 +293,7 @@ gdk_cairo_set_source_pixbuf
gdk_cairo_set_source_pixmap
gdk_cairo_rectangle
gdk_cairo_region
gdk_cairo_region_create_from_surface
#endif
#endif

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@ -18,6 +18,9 @@
*/
#include "gdkcairo.h"
#include <math.h>
#include "gdkdrawable.h"
#include "gdkinternals.h"
@ -287,3 +290,141 @@ gdk_cairo_set_source_pixmap (cairo_t *cr,
cairo_set_source_surface (cr, surface, pixmap_x, pixmap_y);
cairo_surface_destroy (surface);
}
/**
* _gdk_cairo_surface_extents:
* @surface: surface to measure
* @extents: (out): rectangle to put the extents
*
* Measures the area covered by @surface and puts it into @extents.
* Note that this function respects device offsets set on @surface.
* if @surface is unbounded, the resulting extents will be empty and
* not be a maximal sized rectangle. This is to avoid careless coding.
* You must explicitly check the return value of you want to handle
* that case.
*
* Returns: %TRUE if the extents fit in a #GdkRectangle, %FALSE if not.
**/
gboolean
_gdk_cairo_surface_extents (cairo_surface_t *surface,
GdkRectangle *extents)
{
double x1, x2, y1, y2;
cairo_t *cr;
g_return_val_if_fail (surface != NULL, FALSE);
g_return_val_if_fail (extents != NULL, FALSE);
cr = cairo_create (surface);
cairo_clip_extents (cr, &x1, &y1, &x2, &y2);
x1 = floor (x1);
y1 = floor (y1);
x2 = ceil (x2);
y2 = ceil (y2);
x2 -= x1;
y2 -= y1;
if (x1 < G_MININT || x1 > G_MAXINT ||
y1 < G_MININT || y1 > G_MAXINT ||
x2 > G_MAXINT || y2 > G_MAXINT)
{
extents->x = extents->y = extents->width = extents->height = 0;
return FALSE;
}
extents->x = x1;
extents->y = y1;
extents->width = x2;
extents->height = y2;
return TRUE;
}
/* This function originally from Jean-Edouard Lachand-Robert, and
* available at www.codeguru.com. Simplified for our needs, not sure
* how much of the original code left any longer. Now handles just
* one-bit deep bitmaps (in Window parlance, ie those that GDK calls
* bitmaps (and not pixmaps), with zero pixels being transparent.
*/
/**
* gdk_cairo_region_create_from_surface:
* @surface: A surface
*
* Creates region that describes covers the area where the given @surface
* is more than 50% opaque. This function takes into account device
* offsets that might be set with cairo_surface_set_device_offset().
*
* Returns: A new region
**/
cairo_region_t *
gdk_cairo_region_create_from_surface (cairo_surface_t *surface)
{
cairo_region_t *region;
GdkRectangle extents, rect;
cairo_surface_t *image;
cairo_t *cr;
gint x, y, stride;
guchar *data;
_gdk_cairo_surface_extents (surface, &extents);
if (cairo_surface_get_content (surface) == CAIRO_CONTENT_COLOR)
return cairo_region_create_rectangle (&extents);
if (cairo_surface_get_type (surface) != CAIRO_SURFACE_TYPE_IMAGE ||
cairo_image_surface_get_format (surface) != CAIRO_FORMAT_A1)
{
/* coerce to an A1 image */
image = cairo_image_surface_create (CAIRO_FORMAT_A1,
extents.width, extents.height);
cr = cairo_create (image);
cairo_set_source_surface (cr, surface, extents.x, extents.y);
cairo_paint (cr);
cairo_destroy (cr);
}
else
image = cairo_surface_reference (surface);
data = cairo_image_surface_get_data (image);
stride = cairo_image_surface_get_stride (image);
region = cairo_region_create ();
for (y = 0; y < extents.height; y++)
{
for (x = 0; x < extents.width; x++)
{
/* Search for a continuous range of "non transparent pixels"*/
gint x0 = x;
while (x < extents.width)
{
if (((data[x / 8] >> (x%8)) & 1) == 0)
/* This pixel is "transparent"*/
break;
x++;
}
if (x > x0)
{
/* Add the pixels (x0, y) to (x, y+1) as a new rectangle
* in the region
*/
rect.x = x0;
rect.width = x - x0;
rect.y = y;
rect.height = 1;
cairo_region_union_rectangle (region, &rect);
}
}
data += stride;
}
cairo_surface_destroy (image);
cairo_region_translate (region, extents.x, extents.y);
return region;
}

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@ -50,6 +50,10 @@ void gdk_cairo_rectangle (cairo_t *cr,
void gdk_cairo_region (cairo_t *cr,
const cairo_region_t *region);
cairo_region_t *
gdk_cairo_region_create_from_surface
(cairo_surface_t *surface);
G_END_DECLS
#endif /* __GDK_CAIRO_H__ */

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@ -313,6 +313,8 @@ void gdk_synthesize_window_state (GdkWindow *window,
GdkDeviceManager * _gdk_device_manager_new (GdkDisplay *display);
gboolean _gdk_cairo_surface_extents (cairo_surface_t *surface,
GdkRectangle *extents);
cairo_surface_t *_gdk_drawable_ref_cairo_surface (GdkDrawable *drawable);