efl/legacy/evas/src/lib/include/evas_inline.x

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#ifndef EVAS_INLINE_H
#define EVAS_INLINE_H
static inline Eina_Bool
_evas_render_has_map(Evas_Object *obj)
{
return ((!((obj->func->can_map) && (obj->func->can_map(obj)))) &&
((obj->cur.map) && (obj->cur.usemap)));
// return ((obj->cur.map) && (obj->cur.usemap));
}
static inline void
_evas_object_event_new(void)
{
_evas_event_counter++;
}
static inline int
evas_object_was_visible(Evas_Object *obj)
{
if ((obj->prev.visible) &&
((obj->prev.cache.clip.visible) || (obj->smart.smart)) &&
((obj->prev.cache.clip.a > 0 && obj->prev.render_op == EVAS_RENDER_BLEND)
|| obj->prev.render_op != EVAS_RENDER_BLEND))
{
if (obj->func->was_visible)
return obj->func->was_visible(obj);
return 1;
}
return 0;
}
static inline void
evas_add_rect(Eina_Array *rects, int x, int y, int w, int h)
{
Eina_Rectangle *r;
NEW_RECT(r, x, y, w, h);
if (r) eina_array_push(rects, r);
}
static inline Cutout_Rect*
evas_common_draw_context_cutouts_add(Cutout_Rects* rects,
int x, int y, int w, int h)
{
Cutout_Rect* rect;
if (rects->max < (rects->active + 1))
{
rects->max += 128;
rects->rects = (Cutout_Rect *)realloc(rects->rects, sizeof(Cutout_Rect) * rects->max);
}
rect = rects->rects + rects->active;
rect->x = x;
rect->y = y;
rect->w = w;
rect->h = h;
rects->active++;
return rect;
}
static inline int
evas_object_is_opaque(Evas_Object *obj)
{
if (obj->smart.smart) return 0;
/* If a mask: Assume alpha */
if (obj->cur.mask) return 0;
if (obj->cur.cache.clip.a == 255)
{
if (obj->func->is_opaque)
return obj->func->is_opaque(obj);
return 1;
}
if (obj->cur.render_op == EVAS_RENDER_COPY)
return 1;
return 0;
}
static inline int
evas_event_freezes_through(Evas_Object *obj)
{
if (obj->freeze_events) return 1;
if (obj->parent_cache.freeze_events_valid)
return obj->parent_cache.freeze_events;
if (!obj->smart.parent) return 0;
obj->parent_cache.freeze_events =
evas_event_freezes_through(obj->smart.parent);
obj->parent_cache.freeze_events_valid = EINA_TRUE;
return obj->parent_cache.freeze_events;
}
static inline int
evas_event_passes_through(Evas_Object *obj)
{
if (obj->pass_events) return 1;
if (obj->parent_cache.pass_events_valid)
return obj->parent_cache.pass_events;
if (!obj->smart.parent) return 0;
obj->parent_cache.pass_events =
evas_event_passes_through(obj->smart.parent);
obj->parent_cache.pass_events_valid = EINA_TRUE;
return obj->parent_cache.pass_events;
}
static inline int
evas_object_is_visible(Evas_Object *obj)
{ /* post 1.0 -> enable? */
if ((obj->cur.visible)/* && (obj->cur.color.a > 0)*/ &&
((obj->cur.cache.clip.visible) || (obj->smart.smart)) &&
((obj->cur.cache.clip.a > 0 && obj->cur.render_op == EVAS_RENDER_BLEND)
|| obj->cur.render_op != EVAS_RENDER_BLEND))
{
if (obj->func->is_visible)
return obj->func->is_visible(obj);
return 1;
}
return 0;
}
static inline int
evas_object_clippers_is_visible(Evas_Object *obj)
{
if (obj->cur.visible)
{
if (obj->cur.clipper)
return evas_object_clippers_is_visible(obj->cur.clipper);
return 1;
}
return 0;
}
static inline int
evas_object_is_in_output_rect(Evas_Object *obj, int x, int y, int w, int h)
{
/* assumes coords have been recalced */
if ((RECTS_INTERSECT(x, y, w, h,
obj->cur.cache.clip.x,
obj->cur.cache.clip.y,
obj->cur.cache.clip.w,
obj->cur.cache.clip.h)))
return 1;
return 0;
}
static inline int
evas_object_is_active(Evas_Object *obj)
{
if (evas_object_is_visible(obj) || evas_object_was_visible(obj))
{
if (obj->smart.smart)
{
int mapsmt = 0;
if (obj->smart.smart && (obj->cur.map && obj->cur.usemap)) mapsmt = 1;
if (!mapsmt) return 1;
if (evas_object_is_in_output_rect(obj, 0, 0, obj->layer->evas->output.w,
obj->layer->evas->output.h) ||
evas_object_was_in_output_rect(obj, 0, 0, obj->layer->evas->output.w,
obj->layer->evas->output.h))
return 1;
}
else
{
if (evas_object_is_in_output_rect(obj, 0, 0, obj->layer->evas->output.w,
obj->layer->evas->output.h) ||
evas_object_was_in_output_rect(obj, 0, 0, obj->layer->evas->output.w,
obj->layer->evas->output.h))
return 1;
}
}
return 0;
}
static inline void
evas_object_coords_recalc(Evas_Object *obj)
{
//// if (obj->cur.cache.geometry.validity == obj->layer->evas->output_validity)
//// return;
//// obj->cur.cache.geometry.x =
//// evas_coord_world_x_to_screen(obj->layer->evas, obj->cur.geometry.x);
//// obj->cur.cache.geometry.y =
//// evas_coord_world_y_to_screen(obj->layer->evas, obj->cur.geometry.y);
//// obj->cur.cache.geometry.w =
//// evas_coord_world_x_to_screen(obj->layer->evas, obj->cur.geometry.w) -
//// evas_coord_world_x_to_screen(obj->layer->evas, 0);
//// obj->cur.cache.geometry.h =
//// evas_coord_world_y_to_screen(obj->layer->evas, obj->cur.geometry.h) -
//// evas_coord_world_y_to_screen(obj->layer->evas, 0);
if (obj->func->coords_recalc) obj->func->coords_recalc(obj);
//// obj->cur.cache.geometry.validity = obj->layer->evas->output_validity;
}
static inline void
evas_object_clip_recalc(Evas_Object *obj)
{
int cx, cy, cw, ch, cr, cg, cb, ca;
int nx, ny, nw, nh, nr, ng, nb, na;
Eina_Bool cvis, nvis;
if ((!obj->cur.cache.clip.dirty) &&
!(!obj->cur.clipper || obj->cur.clipper->cur.cache.clip.dirty)) return;
if (obj->layer->evas->events_frozen > 0) return;
evas_object_coords_recalc(obj);
if ((obj->cur.map) && (obj->cur.usemap))
{
cx = obj->cur.map->normal_geometry.x;
cy = obj->cur.map->normal_geometry.y;
cw = obj->cur.map->normal_geometry.w;
ch = obj->cur.map->normal_geometry.h;
}
else
{
cx = obj->cur.geometry.x;
cy = obj->cur.geometry.y;
cw = obj->cur.geometry.w;
ch = obj->cur.geometry.h;
}
if (obj->cur.color.a == 0 && obj->cur.render_op == EVAS_RENDER_BLEND)
cvis = EINA_FALSE;
else cvis = obj->cur.visible;
cr = obj->cur.color.r; cg = obj->cur.color.g;
cb = obj->cur.color.b; ca = obj->cur.color.a;
if (obj->cur.clipper)
{
// this causes problems... hmmm ?????
if (obj->cur.clipper->cur.cache.clip.dirty)
evas_object_clip_recalc(obj->cur.clipper);
// I don't know why this test was here in the first place. As I have
// no issue showing up due to this, I keep it and move color out of it.
// breaks cliping of mapped images!!!
if (obj->cur.clipper->cur.map_parent == obj->cur.map_parent)
{
nx = obj->cur.clipper->cur.cache.clip.x;
ny = obj->cur.clipper->cur.cache.clip.y;
nw = obj->cur.clipper->cur.cache.clip.w;
nh = obj->cur.clipper->cur.cache.clip.h;
RECTS_CLIP_TO_RECT(cx, cy, cw, ch, nx, ny, nw, nh);
}
nvis = obj->cur.clipper->cur.cache.clip.visible;
nr = obj->cur.clipper->cur.cache.clip.r;
ng = obj->cur.clipper->cur.cache.clip.g;
nb = obj->cur.clipper->cur.cache.clip.b;
na = obj->cur.clipper->cur.cache.clip.a;
cvis = (cvis & nvis);
cr = (cr * (nr + 1)) >> 8;
cg = (cg * (ng + 1)) >> 8;
cb = (cb * (nb + 1)) >> 8;
ca = (ca * (na + 1)) >> 8;
}
if ((ca == 0 && obj->cur.render_op == EVAS_RENDER_BLEND) ||
(cw <= 0) || (ch <= 0)) cvis = EINA_FALSE;
obj->cur.cache.clip.x = cx;
obj->cur.cache.clip.y = cy;
obj->cur.cache.clip.w = cw;
obj->cur.cache.clip.h = ch;
obj->cur.cache.clip.visible = cvis;
obj->cur.cache.clip.r = cr;
obj->cur.cache.clip.g = cg;
obj->cur.cache.clip.b = cb;
obj->cur.cache.clip.a = ca;
obj->cur.cache.clip.dirty = EINA_FALSE;
}
#endif