efl/legacy/edje/src/lib/edje_program.c

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/*
* vim:ts=8:sw=3:sts=8:noexpandtab:cino=>5n-3f0^-2{2
*/
#define _GNU_SOURCE
#include <string.h>
#include "edje_private.h"
static void _edje_emit_cb(Edje *ed, const char *sig, const char *src);
int _edje_anim_count = 0;
Ecore_Animator *_edje_timer = NULL;
Eina_List *_edje_animators = NULL;
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/************************** API Routines **************************/
/* FIXDOC: Expand */
/** Set the frametime
* @param t The frametime
*
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* Sets the global frametime in seconds, by default this is 1/30.
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*/
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EAPI void
edje_frametime_set(double t)
{
ecore_animator_frametime_set(t);
}
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/* FIXDOC: Expand */
/** Get the frametime
* @return The frametime
*
* Returns the frametime in seconds, by default this is 1/30.
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*/
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EAPI double
edje_frametime_get(void)
{
return ecore_animator_frametime_get();
}
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/* FIXDOC: Expand */
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/** Add a callback for a signal emitted by @a obj.
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* @param obj A valid Evas_Object handle
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* @param emission The signal name
* @param source The signal source
* @param func The callback function to be executed when the signal is emitted
* @param data A pointer to data to pass in to the callback function
*
* Connects a callback function to a signal emitted by @a obj.
* In EDC, a program can emit a signal as follows:
*
* @code
* program {
* name: "emit_example";
* action: SIGNAL_EMIT "a_signal" "a_source";
* }
* @endcode
*
* Assuming a function with the following declaration is definded:
*
* @code
* void cb_signal(void *data, Evas_Object *o, const char *emission, const char *source);
* @endcode
*
* a callback is attached using:
*
* @code
* edje_object_callback_add(obj, "a_signal", "a_source", cb_signal, data);
* @endcode
*
* Here, @a data is an arbitrary pointer to be used as desired.
* Note that @a emission and @a source correspond respectively to first and
* second parameters to the SIGNAL_EMIT action.
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*
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* Internal edje signals can also be attached to, and globs can be in either
* the emission or source name. e.g.
*
* @code
* edje_object_callback_add(obj, "mouse,down,*", "button.*", NULL);
* @endcode
*
* Here, any mouse down events on an edje part whose name begins with
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* "button." will trigger the callback. The actual signal and source name
* will be passed in to the @a emission and @a source parameters of the
* callback function. (e.g. "mouse,down,2" and "button.close").
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*/
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EAPI void
edje_object_signal_callback_add(Evas_Object *obj, const char *emission, const char *source, void (*func) (void *data, Evas_Object *o, const char *emission, const char *source), void *data)
{
Edje *ed;
Edje_Signal_Callback *escb;
if ((!emission) || (!source) || (!func)) return;
ed = _edje_fetch(obj);
if (!ed) return;
if (ed->delete_me) return;
escb = calloc(1, sizeof(Edje_Signal_Callback));
if (emission[0])
escb->signal = eina_stringshare_add(emission);
if (source[0])
escb->source = eina_stringshare_add(source);
escb->func = func;
escb->data = data;
ed->callbacks = eina_list_append(ed->callbacks, escb);
if (ed->walking_callbacks)
{
escb->just_added = 1;
ed->just_added_callbacks = 1;
}
else
_edje_callbacks_patterns_clean(ed);
}
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/** Remove a callback from an object
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* @param obj A valid Evas_Object handle
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* @param emission the emission string
* @param source the source string
* @param func the callback function
* @return the data pointer
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*
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* Removes a callback from an object. The parameters @a emission, @a source
* and @a func must match exactly those passed to a previous call to
* edje_object_signal_callback_add(). The data pointer that was passed to
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* this call will be returned.
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*/
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EAPI void *
edje_object_signal_callback_del(Evas_Object *obj, const char *emission, const char *source, void (*func) (void *data, Evas_Object *o, const char *emission, const char *source))
{
Edje *ed;
Eina_List *l;
Edje_Signal_Callback *escb;
if ((!emission) || (!source) || (!func)) return NULL;
ed = _edje_fetch(obj);
if (!ed) return NULL;
if (ed->delete_me) return NULL;
EINA_LIST_FOREACH(ed->callbacks, l, escb)
{
if ((escb->func == func) &&
((!escb->signal && !emission[0]) ||
(escb->signal && !strcmp(escb->signal, emission))) &&
((!escb->source && !source[0]) ||
(escb->source && !strcmp(escb->source, source))))
{
void *data;
data = escb->data;
if (ed->walking_callbacks)
{
escb->delete_me = 1;
ed->delete_callbacks = 1;
}
else
{
_edje_callbacks_patterns_clean(ed);
ed->callbacks = eina_list_remove_list(ed->callbacks, l);
if (escb->signal) eina_stringshare_del(escb->signal);
if (escb->source) eina_stringshare_del(escb->source);
free(escb);
}
return data;
}
}
return NULL;
}
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/* FIXDOC: Verify/Expand */
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/** Send a signal to the Edje object
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* @param obj A vaild Evas_Object handle
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* @param emission The signal
* @param source The signal source
*
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* This sends a signal to the edje object.
*
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* An edje program can respond to a signal by specifying matching 'signal'
* and 'source' fields.
*
* E.g.
*
* @code
* edje_object_signal_emit(obj, "a_signal", "");
* @endcode
*
* will trigger a program whose edc is:
*
* @code
* program {
* name: "a_program";
* signal: "a_signal";
* source: "";
* action: ...
* }
* @endcode
*
* FIXME should this signal be sent to children also?
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*/
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EAPI void
edje_object_signal_emit(Evas_Object *obj, const char *emission, const char *source)
{
Edje *ed;
if ((!emission) || (!source)) return;
ed = _edje_fetch(obj);
if (!ed) return;
if (ed->delete_me) return;
_edje_emit(ed, (char *)emission, (char *)source);
}
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/* FIXDOC: Verify/Expand */
/** Set the Edje to play or pause
* @param obj A valid Evas_Object handle
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* @param play Play instruction (1 to play, 0 to pause)
*
* This sets the Edje to play or pause depending on the parameter.
* This has no effect if the Edje is already in that state.
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*/
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EAPI void
edje_object_play_set(Evas_Object *obj, int play)
{
Edje *ed;
double t;
Eina_List *l;
Edje_Running_Program *runp;
int i;
ed = _edje_fetch(obj);
if (!ed) return;
if (ed->delete_me) return;
if (play)
{
if (!ed->paused) return;
ed->paused = 0;
t = ecore_time_get() - ed->paused_at;
EINA_LIST_FOREACH(ed->actions, l, runp)
runp->start_time += t;
}
else
{
if (ed->paused) return;
ed->paused = 1;
ed->paused_at = ecore_time_get();
}
for (i = 0; i < ed->table_parts_size; i++)
{
Edje_Real_Part *rp;
rp = ed->table_parts[i];
if (rp->part->type == EDJE_PART_TYPE_GROUP && rp->swallowed_object)
edje_object_play_set(rp->swallowed_object, play);
}
}
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/* FIXDOC: Verify/Expand */
/** Get the Edje play/pause state
* @param obj A valid Evas_Object handle
* @return 0 if Edje not connected, Edje delete_me, or Edje paused\n
* 1 if Edje set to play
*/
EAPI int
edje_object_play_get(const Evas_Object *obj)
{
Edje *ed;
ed = _edje_fetch(obj);
if (!ed) return 0;
if (ed->delete_me) return 0;
if (ed->paused) return 0;
return 1;
}
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/* FIXDOC: Verify/Expand */
/** Set Animation state
* @param obj A valid Evas_Object handle
* @param on Animation State
*
* Stop or start an Edje animation.
*/
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EAPI void
edje_object_animation_set(Evas_Object *obj, int on)
{
Edje *ed;
Eina_List *l;
int i;
ed = _edje_fetch(obj);
if (!ed) return;
if (ed->delete_me) return;
_edje_block(ed);
ed->no_anim = !on;
_edje_freeze(ed);
if (!on)
{
Eina_List *newl = NULL;
const void *data;
EINA_LIST_FOREACH(ed->actions, l, data)
newl = eina_list_append(newl, data);
while (newl)
{
Edje_Running_Program *runp;
runp = eina_list_data_get(newl);
newl = eina_list_remove(newl, eina_list_data_get(newl));
_edje_program_run_iterate(runp, runp->start_time + runp->program->tween.time);
if (_edje_block_break(ed))
{
eina_list_free(newl);
goto break_prog;
}
}
}
else
{
_edje_emit(ed, "load", NULL);
if (evas_object_visible_get(obj))
{
evas_object_hide(obj);
evas_object_show(obj);
}
}
break_prog:
for (i = 0; i < ed->table_parts_size; i++)
{
Edje_Real_Part *rp;
rp = ed->table_parts[i];
if (rp->part->type == EDJE_PART_TYPE_GROUP && rp->swallowed_object)
edje_object_animation_set(rp->swallowed_object, on);
}
_edje_thaw(ed);
_edje_unblock(ed);
}
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/* FIXDOC: Verify/Expand */
/** Get the animation state
* @param obj A valid Evas_Object handle
* @return 0 on Error or if not animated\n
* 1 if animated
*/
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EAPI int
edje_object_animation_get(const Evas_Object *obj)
{
Edje *ed;
ed = _edje_fetch(obj);
if (!ed) return 0;
if (ed->delete_me) return 0;
if (ed->no_anim) return 0;
return 1;
}
/* Private Routines */
int
_edje_program_run_iterate(Edje_Running_Program *runp, double tim)
{
double t, total;
Eina_List *l;
Edje *ed;
Edje_Program_Target *pt;
Edje_Real_Part *rp;
ed = runp->edje;
if (ed->delete_me) return 0;
_edje_block(ed);
_edje_ref(ed);
_edje_freeze(ed);
t = tim - runp->start_time;
total = runp->program->tween.time;
t /= total;
if (t > 1.0) t = 1.0;
EINA_LIST_FOREACH(runp->program->targets, l, pt)
{
if (pt->id >= 0)
{
rp = ed->table_parts[pt->id % ed->table_parts_size];
if (rp) _edje_part_pos_set(ed, rp,
runp->program->tween.mode, t);
}
}
if (t >= 1.0)
{
Edje_Program_After *pa;
EINA_LIST_FOREACH(runp->program->targets, l, pt)
{
if (pt->id >= 0)
{
rp = ed->table_parts[pt->id % ed->table_parts_size];
if (rp)
{
_edje_part_description_apply(ed, rp,
runp->program->state,
runp->program->value,
NULL,
0.0);
_edje_part_pos_set(ed, rp,
runp->program->tween.mode, 0.0);
rp->program = NULL;
}
}
}
_edje_recalc(ed);
runp->delete_me = 1;
if (!ed->walking_actions)
{
_edje_anim_count--;
ed->actions = eina_list_remove(ed->actions, runp);
if (!ed->actions)
_edje_animators = eina_list_remove(_edje_animators, ed);
}
// _edje_emit(ed, "program,stop", runp->program->name);
if (_edje_block_break(ed))
{
if (!ed->walking_actions) free(runp);
goto break_prog;
}
EINA_LIST_FOREACH(runp->program->after, l, pa)
{
Edje_Program *pr;
if (pa->id >= 0)
{
pr = ed->table_programs[pa->id % ed->table_programs_size];
if (pr) _edje_program_run(ed, pr, 0, "", "");
if (_edje_block_break(ed))
{
if (!ed->walking_actions) free(runp);
goto break_prog;
}
}
}
_edje_thaw(ed);
_edje_unref(ed);
if (!ed->walking_actions) free(runp);
_edje_unblock(ed);
return 0;
}
break_prog:
_edje_recalc(ed);
_edje_thaw(ed);
_edje_unref(ed);
_edje_unblock(ed);
return 1;
}
void
_edje_program_end(Edje *ed, Edje_Running_Program *runp)
{
Eina_List *l;
Edje_Program_Target *pt;
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const char *pname = NULL;
int free_runp = 0;
if (ed->delete_me) return;
_edje_ref(ed);
_edje_freeze(ed);
EINA_LIST_FOREACH(runp->program->targets, l, pt)
{
Edje_Real_Part *rp;
if (pt->id >= 0)
{
rp = ed->table_parts[pt->id % ed->table_parts_size];
if (rp)
{
_edje_part_description_apply(ed, rp,
runp->program->state,
runp->program->value,
NULL,
0.0);
_edje_part_pos_set(ed, rp,
runp->program->tween.mode, 0.0);
rp->program = NULL;
}
}
}
_edje_recalc(ed);
runp->delete_me = 1;
pname = runp->program->name;
if (!ed->walking_actions)
{
_edje_anim_count--;
ed->actions = eina_list_remove(ed->actions, runp);
free_runp = 1;
if (!ed->actions)
{
_edje_animators = eina_list_remove(_edje_animators, ed);
}
}
// _edje_emit(ed, "program,stop", pname);
_edje_thaw(ed);
_edje_unref(ed);
if (free_runp) free(runp);
}
void
_edje_program_run(Edje *ed, Edje_Program *pr, int force, const char *ssig, const char *ssrc)
{
Eina_List *l;
Edje_Real_Part *rp;
Edje_Program_Target *pt;
Edje_Program *pr2;
Edje_Program_After *pa;
/* limit self-feeding loops in programs to 64 levels */
static int recursions = 0;
static int recursion_limit = 0;
if (ed->delete_me) return;
if ((pr->in.from > 0.0) && (pr->in.range >= 0.0) && (!force))
{
Edje_Pending_Program *pp;
double r = 0.0;
pp = calloc(1, sizeof(Edje_Pending_Program));
if (!pp) return;
if (pr->in.range > 0.0) r = ((double)rand() / RAND_MAX);
pp->timer = ecore_timer_add(pr->in.from + (pr->in.range * r),
_edje_pending_timer_cb, pp);
if (!pp->timer)
{
free(pp);
return;
}
pp->edje = ed;
pp->program = pr;
ed->pending_actions = eina_list_append(ed->pending_actions, pp);
return;
}
if ((recursions >= 64) || (recursion_limit))
{
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printf("EDJE ERROR: programs recursing up to recursion limit of %i. Disabled.\n",
64);
recursion_limit = 1;
return;
}
recursions++;
_edje_block(ed);
_edje_ref(ed);
_edje_freeze(ed);
if (pr->action == EDJE_ACTION_TYPE_STATE_SET)
{
if ((pr->tween.time > 0.0) && (!ed->no_anim))
{
Edje_Running_Program *runp;
runp = calloc(1, sizeof(Edje_Running_Program));
EINA_LIST_FOREACH(pr->targets, l, pt)
{
if (pt->id >= 0)
{
rp = ed->table_parts[pt->id % ed->table_parts_size];
if (rp)
{
if (rp->program)
_edje_program_end(ed, rp->program);
_edje_part_description_apply(ed, rp,
rp->param1.description->state.name,
rp->param1.description->state.value,
pr->state,
pr->value);
_edje_part_pos_set(ed, rp, pr->tween.mode, 0.0);
rp->program = runp;
}
}
}
// _edje_emit(ed, "program,start", pr->name);
if (_edje_block_break(ed))
{
ed->actions = eina_list_append(ed->actions, runp);
goto break_prog;
}
if (!ed->actions)
_edje_animators = eina_list_append(_edje_animators, ed);
ed->actions = eina_list_append(ed->actions, runp);
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runp->start_time = ecore_loop_time_get();
runp->edje = ed;
runp->program = pr;
if (!_edje_timer)
_edje_timer = ecore_animator_add(_edje_timer_cb, NULL);
_edje_anim_count++;
}
else
{
EINA_LIST_FOREACH(pr->targets, l, pt)
{
if (pt->id >= 0)
{
rp = ed->table_parts[pt->id % ed->table_parts_size];
if (rp)
{
if (rp->program)
_edje_program_end(ed, rp->program);
_edje_part_description_apply(ed, rp,
pr->state,
pr->value,
NULL,
0.0);
_edje_part_pos_set(ed, rp, pr->tween.mode, 0.0);
}
}
}
// _edje_emit(ed, "program,start", pr->name);
if (_edje_block_break(ed)) goto break_prog;
// _edje_emit(ed, "program,stop", pr->name);
if (_edje_block_break(ed)) goto break_prog;
EINA_LIST_FOREACH(pr->after, l, pa)
{
if (pa->id >= 0)
{
pr2 = ed->table_programs[pa->id % ed->table_programs_size];
if (pr2) _edje_program_run(ed, pr2, 0, "", "");
if (_edje_block_break(ed)) goto break_prog;
}
}
_edje_recalc(ed);
}
}
else if (pr->action == EDJE_ACTION_TYPE_ACTION_STOP)
{
// _edje_emit(ed, "program,start", pr->name);
EINA_LIST_FOREACH(pr->targets, l, pt)
{
Eina_List *ll;
Edje_Running_Program *runp;
Edje_Pending_Program *pp;
EINA_LIST_FOREACH(ed->actions, ll, runp)
{
if (pt->id == runp->program->id)
{
_edje_program_end(ed, runp);
// goto done;
}
}
EINA_LIST_FOREACH(ed->pending_actions, ll, pp)
{
if (pt->id == pp->program->id)
{
ed->pending_actions = eina_list_remove(ed->pending_actions, pp);
ecore_timer_del(pp->timer);
free(pp);
// goto done;
}
}
done:
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continue;
}
// _edje_emit(ed, "program,stop", pr->name);
if (_edje_block_break(ed)) goto break_prog;
}
else if (pr->action == EDJE_ACTION_TYPE_SIGNAL_EMIT)
{
// _edje_emit(ed, "program,start", pr->name);
if (_edje_block_break(ed)) goto break_prog;
_edje_emit(ed, pr->state, pr->state2);
if (_edje_block_break(ed)) goto break_prog;
// _edje_emit(ed, "program,stop", pr->name);
if (_edje_block_break(ed)) goto break_prog;
}
else if (pr->action == EDJE_ACTION_TYPE_DRAG_VAL_SET)
{
// _edje_emit(ed, "program,start", pr->name);
if (_edje_block_break(ed)) goto break_prog;
EINA_LIST_FOREACH(pr->targets, l, pt)
{
if (pt->id >= 0)
{
rp = ed->table_parts[pt->id % ed->table_parts_size];
if ((rp) && (rp->drag) && (rp->drag->down.count == 0))
{
rp->drag->val.x = pr->value;
rp->drag->val.y = pr->value2;
if (rp->drag->val.x < 0.0) rp->drag->val.x = 0.0;
else if (rp->drag->val.x > 1.0) rp->drag->val.x = 1.0;
if (rp->drag->val.y < 0.0) rp->drag->val.y = 0.0;
else if (rp->drag->val.y > 1.0) rp->drag->val.y = 1.0;
_edje_dragable_pos_set(ed, rp, rp->drag->val.x, rp->drag->val.y);
_edje_emit(ed, "drag,set", rp->part->name);
if (_edje_block_break(ed)) goto break_prog;
}
}
}
// _edje_emit(ed, "program,stop", pr->name);
if (_edje_block_break(ed)) goto break_prog;
}
else if (pr->action == EDJE_ACTION_TYPE_DRAG_VAL_STEP)
{
// _edje_emit(ed, "program,start", pr->name);
if (_edje_block_break(ed)) goto break_prog;
EINA_LIST_FOREACH(pr->targets, l, pt)
{
if (pt->id >= 0)
{
rp = ed->table_parts[pt->id % ed->table_parts_size];
if ((rp) && (rp->drag) && (rp->drag->down.count == 0))
{
rp->drag->val.x += pr->value * rp->drag->step.x * rp->part->dragable.x;
rp->drag->val.y += pr->value2 * rp->drag->step.y * rp->part->dragable.y;
if (rp->drag->val.x < 0.0) rp->drag->val.x = 0.0;
else if (rp->drag->val.x > 1.0) rp->drag->val.x = 1.0;
if (rp->drag->val.y < 0.0) rp->drag->val.y = 0.0;
else if (rp->drag->val.y > 1.0) rp->drag->val.y = 1.0;
_edje_dragable_pos_set(ed, rp, rp->drag->val.x, rp->drag->val.y);
_edje_emit(ed, "drag,step", rp->part->name);
if (_edje_block_break(ed)) goto break_prog;
}
}
}
// _edje_emit(ed, "program,stop", pr->name);
if (_edje_block_break(ed)) goto break_prog;
}
else if (pr->action == EDJE_ACTION_TYPE_DRAG_VAL_PAGE)
{
// _edje_emit(ed, "program,start", pr->name);
if (_edje_block_break(ed)) goto break_prog;
EINA_LIST_FOREACH(pr->targets, l, pt)
{
if (pt->id >= 0)
{
rp = ed->table_parts[pt->id % ed->table_parts_size];
if ((rp) && (rp->drag) && (rp->drag->down.count == 0))
{
rp->drag->val.x += pr->value * rp->drag->page.x * rp->part->dragable.x;
rp->drag->val.y += pr->value2 * rp->drag->page.y * rp->part->dragable.y;
if (rp->drag->val.x < 0.0) rp->drag->val.x = 0.0;
else if (rp->drag->val.x > 1.0) rp->drag->val.x = 1.0;
if (rp->drag->val.y < 0.0) rp->drag->val.y = 0.0;
else if (rp->drag->val.y > 1.0) rp->drag->val.y = 1.0;
_edje_dragable_pos_set(ed, rp, rp->drag->val.x, rp->drag->val.y);
_edje_emit(ed, "drag,page", rp->part->name);
if (_edje_block_break(ed)) goto break_prog;
}
}
}
// _edje_emit(ed, "program,stop", pr->name);
if (_edje_block_break(ed)) goto break_prog;
}
else if (pr->action == EDJE_ACTION_TYPE_SCRIPT)
{
char fname[128];
// _edje_emit(ed, "program,start", pr->name);
if (_edje_block_break(ed)) goto break_prog;
snprintf(fname, sizeof(fname), "_p%i", pr->id);
_edje_embryo_test_run(ed, fname, ssig, ssrc);
// _edje_emit(ed, "program,stop", pr->name);
From: "Hanspeter Portner" <ventosus@airpost.net> This concerns Ticket #109: Add Lua support for Edje It adds Lua as scripting facility to Edje, letting Embryo untouched. It should be easier to use and be more flexible than Embryo, imho ;-) --- The patch --- Lua 5.1 is used in sandboxed mode. Lua byte code is not platform/architecture independent, Lua code is saved as text in the Edje container and parsed at load time, therefore. The patch goes in two directions 1) Analogous to Embryo for scripting logic, messaging and custom states. The same things are implemented as in Embryo: - messaging from and to C - manual creation of timers, animators, pollers for custom events / animations - manual manipulation of Edje parts by means of the public edje_object_part_* and internal functions and custom states -> those routines are actually implemented as Lua bindings to functions in Edje.h and Ecore.h -> the implementation is done in an object oriented way, so that the interface gives the feel of an object description language, pretty similar to EDC itself -> combining custom states and custom animators allows for fancy animations and transitions, e.g circular/spline translations or complex/conditional transitions, etc. -> this is just the same as Embryo does, but implemented in Lua, so nothing new here, actually 2) Dynamic object creation and manipulation - this interface stems from the 'script_only' objects in Edje. Those objects are a kind of scriptable Edje counterparts to Evas_Smart objects. The infrastructure for Embryo is already there, but has never been used - I added this in Lua and added some first bindings to experiment with - I thought it would be useful to allow for a limited dynamic creation of ui parts - We can create instances of groups from within the same Edje container and use them just like the main Edje object as stated in 1) - And there are some stand-alone bindings to dynamically create Evas_Image, Evas_Table, Evas_Line, Evas_Polygon as examples -> this may be useful to decouple the program from the ui even more, to be able to do things that have to be done in the program itself atm, but actually belong to the user interface, but need dynamic creation of objects or complex interactions -> those objects are manipulated manually with Lua bindings to the corresponding edje_object_* and evas_object_* functions --- Discussion points --- Both stuff in 1) & 2) is functioning, but needs testing, feedback, improvements, ... Stuff in 1) can already fully replace Embryo scripting with Lua scripting. There still is space for improvements/additions, though. Of the stuff in 2), I think it may only make sense to add the dynamic creation of groups defined in the same Edje container. Dynamic creation of other Evas_Objects makes not much sense, as most of them can already be used as Edje parts and be manipulated with custom states (apart from polygons and lines) and it would make the whole theming potentially more programing-like and much more susceptible for errors, etc. Would this be useful, or drop it all? The scripting should be there just for logic, conditionals, custom states and animations, not for a whole dynamic canvas, imho. There is a patch around with EXTERNAL Edje parts. Seems to be a better, faster, more secure way to extend Edje with custom objects. There would be the possibility of precompiling Lua code at compile time (edje_cc) for faster loading, but we would have to patch and run our own Lua version. The Lua parser is pretty fast, though, and using byte-converted/endianness-swapped byte-code does only pay off for Lua chunks of some kilo lines. Byte code also occupies much more space than text in the final Edje container, as it includes debug symbols. --- Cedric and Vincent told me, that the plan was to replace Embryo totally by Lua before the official release of Edje at the end of the year? So it would make sense to bring Lua to svn soon and look how it fits in, test, debug, adapt it further to the themers needs, decide on its final shape, GATHER SOME PEOPLE TO HELP ;-) --- The Lua enhanced Edje is in sync with svn and can be get directly here git clone git://repo.or.cz/edje_lua.git cd edje_lua git checkout -b lua_patch origin/lua_patch or apply the attached patch There are also some examples to show the usage of the things mentioned above - showcase.edj: shows usage of custom animators, custom states, messaging and the script_only object - test.edj: test cases of script usage and bindings (custom states, custom transitions, tween_states, animators, timers, object_parts), but most of it are experimental script_only objects http://didgmo.sourceforge.net/showcase.edj http://didgmo.sourceforge.net/test.edj The source of showcase.edc is attached, too, to just have a glimpse at Lua inside of EDC --- So, what do you guys think? Thanks and sry for the looong mail, hehe ;-) SVN revision: 41802
2009-08-15 19:34:02 -07:00
if (_edje_block_break(ed)) goto break_prog;
_edje_recalc_do(ed);
}
else if (pr->action == EDJE_ACTION_TYPE_LUA_SCRIPT)
{
//printf ("running Lua program script %i\n", pr->id);
// _edje_emit(ed, "program,start", pr->name);
if (_edje_block_break(ed)) goto break_prog;
if (ed->L == NULL) /* private state does not yet exist, create it */
{
ed->L = _edje_lua_new_thread(ed->collection->L);
_edje_lua_new_reg(ed->collection->L, -1, ed->L); // freed in edje_load.c::_edje_file_del
lua_pop(ed->collection->L, 1);
}
lua_State *L = ed->L;
lua_pushnumber(L, pr->id);
lua_gettable(L, LUA_GLOBALSINDEX);
if (!lua_isnil(L, -1))
{
lua_pushvalue(L, LUA_GLOBALSINDEX); /* set function environment from collection thread to edje object thread */
lua_setfenv(L, -2);
_edje_lua_get_reg(L, ed);
if (lua_isnil(L, -1)) /* group object does not yet exist, create it */
{
lua_pop(L, 1);
_edje_lua_group_fn_new (ed);
}
lua_pushstring(L, ssig);
lua_pushstring(L, ssrc);
int err_code;
if (err_code = lua_pcall(L, 3, 0, 0))
_edje_lua_error(L, err_code);
}
// _edje_emit(ed, "program,stop", pr->name);
if (_edje_block_break(ed)) goto break_prog;
_edje_recalc_do(ed);
}
else if (pr->action == EDJE_ACTION_TYPE_FOCUS_SET)
{
if (!pr->targets)
{
ed->focused_part = NULL;
}
else
{
EINA_LIST_FOREACH(pr->targets, l, pt)
{
if (pt->id >= 0)
{
rp = ed->table_parts[pt->id % ed->table_parts_size];
if (rp)
{
if (ed->focused_part != rp)
{
if (ed->focused_part)
_edje_emit(ed, "focus,part,out",
ed->focused_part->part->name);
ed->focused_part = rp;
_edje_emit(ed, "focus,part,in",
ed->focused_part->part->name);
}
}
}
}
}
}
else
{
// _edje_emit(ed, "program,start", pr->name);
// _edje_emit(ed, "program,stop", pr->name);
}
if (!((pr->action == EDJE_ACTION_TYPE_STATE_SET)
2003-09-05 00:17:54 -07:00
/* hmm this fucks somethgin up. must look into it later */
/* && (pr->tween.time > 0.0) && (!ed->no_anim))) */
))
{
EINA_LIST_FOREACH(pr->after, l, pa)
{
if (pa->id >= 0)
{
pr2 = ed->table_programs[pa->id % ed->table_programs_size];
if (pr2) _edje_program_run(ed, pr2, 0, "", "");
if (_edje_block_break(ed)) goto break_prog;
}
}
}
break_prog:
_edje_thaw(ed);
_edje_unref(ed);
recursions--;
if (recursions == 0) recursion_limit = 0;
_edje_unblock(ed);
}
void
_edje_emit(Edje *ed, const char *sig, const char *src)
2004-02-04 11:41:27 -08:00
{
Edje_Message_Signal emsg;
Eina_List *l;
Evas_Object *obj;
const char *sep;
if (ed->delete_me) return;
sep = strchr(sig, ':');
if (sep)
{
size_t length;
char *part;
/* the signal contains a colon, split the signal into "group:signal",
* and deliver it to "group"
*/
length = strlen(sig) + 1;
part = alloca(length);
if (part)
{
char *newsig;
int i;
memcpy(part, sig, length);
newsig = part + (sep - sig);
*newsig = '\0';
newsig++;
for (i = 0; i < ed->table_parts_size; i++)
{
Edje_Real_Part *rp = ed->table_parts[i];
if ((rp->part->type == EDJE_PART_TYPE_GROUP) &&
(rp->swallowed_object) &&
(rp->part) && (rp->part->name) &&
(strcmp(rp->part->name, part) == 0))
{
Edje *ed2 = _edje_fetch(rp->swallowed_object);
if (ed2) _edje_emit(ed2, newsig, src);
return; /* stop processing.
* XXX maybe let signal be processed anyway?
* XXX in this case, just comment this line
*/
}
}
}
}
emsg.sig = sig;
emsg.src = src;
_edje_message_send(ed, EDJE_QUEUE_SCRIPT, EDJE_MESSAGE_SIGNAL, 0, &emsg);
EINA_LIST_FOREACH(ed->subobjs, l, obj)
{
Edje *ed2;
ed2 = _edje_fetch(obj);
if (!ed2) continue;
if (ed2->delete_me) continue;
_edje_message_send(ed2, EDJE_QUEUE_SCRIPT, EDJE_MESSAGE_SIGNAL, 0, &emsg);
}
2004-02-04 11:41:27 -08:00
}
struct _Edje_Program_Data
{
#ifdef EDJE_PROGRAM_CACHE
Eina_List *matches;
int matched;
#endif
Edje *ed;
const char *signal;
const char *source;
};
static int _edje_glob_callback(Edje_Program *pr, void *dt)
{
struct _Edje_Program_Data *data = dt;
#ifdef EDJE_PROGRAM_CACHE
data->matched++;
#endif
_edje_program_run(data->ed, pr, 0, data->signal, data->source);
if (_edje_block_break(data->ed))
{
#ifdef EDJE_PROGRAM_CACHE
eina_list_free(data->matches);
data->matches = NULL;
#endif
return 1;
}
#ifdef EDJE_PROGRAM_CACHE
data->matches = eina_list_append(data->matches, pr);
#endif
return 0;
}
void
_edje_callbacks_patterns_clean(Edje *ed)
{
_edje_signals_sources_patterns_clean(&ed->patterns.callbacks);
eina_rbtree_delete(ed->patterns.callbacks.exact_match,
EINA_RBTREE_FREE_CB(edje_match_signal_source_free),
NULL);
ed->patterns.callbacks.exact_match = NULL;
ed->patterns.callbacks.globing = eina_list_free(ed->patterns.callbacks.globing);
}
static void
_edje_callbacks_patterns_init(Edje *ed)
{
Edje_Signals_Sources_Patterns *ssp = &ed->patterns.callbacks;
if ((ssp->signals_patterns) || (ssp->sources_patterns) ||
(ssp->globing) || (ssp->exact_match))
return;
ssp->globing = edje_match_callback_hash_build(ed->callbacks,
&ssp->exact_match);
ssp->signals_patterns = edje_match_callback_signal_init(ssp->globing);
ssp->sources_patterns = edje_match_callback_source_init(ssp->globing);
}
/* FIXME: what if we delete the evas object??? */
void
_edje_emit_handle(Edje *ed, const char *sig, const char *src)
{
if (ed->delete_me) return;
if (!sig) sig = "";
if (!src) src = "";
2003-08-25 21:15:07 -07:00
// printf("EDJE EMIT: signal: \"%s\" source: \"%s\"\n", sig, src);
_edje_block(ed);
_edje_ref(ed);
_edje_freeze(ed);
if (ed->collection)
{
Edje_Part_Collection *ec;
#ifdef EDJE_PROGRAM_CACHE
char *tmps;
int l1, l2;
#endif
int done;
ec = ed->collection;
#ifdef EDJE_PROGRAM_CACHE
l1 = strlen(sig);
l2 = strlen(src);
tmps = alloca(l1 + l2 + 3); /* \0, \337, \0 */
strcpy(tmps, sig);
tmps[l1] = '\377';
strcpy(&(tmps[l1 + 1]), src);
#endif
done = 0;
#ifdef EDJE_PROGRAM_CACHE
{
Eina_List *matches;
Eina_List *l;
Edje_Program *pr;
if (eina_hash_find(ec->prog_cache.no_matches, tmps))
{
done = 1;
}
else if ((matches = eina_hash_find(ec->prog_cache.matches, tmps)))
{
EINA_LIST_FOREACH(matches, l, pr)
{
_edje_program_run(ed, pr, 0, sig, src);
if (_edje_block_break(ed))
{
goto break_prog;
}
}
done = 1;
}
}
#endif
if (!done)
{
struct _Edje_Program_Data data;
data.ed = ed;
data.source = src;
data.signal = sig;
#ifdef EDJE_PROGRAM_CACHE
data.matched = 0;
data.matches = NULL;
#endif
if (ed->collection->programs)
{
const Eina_List *match;
const Eina_List *l;
Edje_Program *pr;
if (ed->patterns.programs.globing)
if (edje_match_programs_exec(ed->patterns.programs.signals_patterns,
ed->patterns.programs.sources_patterns,
sig,
src,
ed->patterns.programs.globing,
_edje_glob_callback,
&data) == 0)
goto break_prog;
match = edje_match_signal_source_hash_get(sig, src,
ed->patterns.programs.exact_match);
EINA_LIST_FOREACH(match, l, pr)
_edje_glob_callback(pr, &data);
}
#ifdef EDJE_PROGRAM_CACHE
if (tmps)
{
if (data.matched == 0)
{
if (!ec->prog_cache.no_matches)
ec->prog_cache.no_matches = eina_hash_string_superfast_new(NULL);
eina_hash_add(ec->prog_cache.no_matches, tmps, ed);
}
else
{
if (!ec->prog_cache.matches)
ec->prog_cache.matches = eina_hash_string_superfast_new(NULL);
eina_hash_add(ec->prog_cache.matches, tmps, data.matches);
}
}
#endif
}
_edje_emit_cb(ed, sig, src);
if (_edje_block_break(ed))
{
goto break_prog;
}
}
break_prog:
_edje_thaw(ed);
_edje_unref(ed);
_edje_unblock(ed);
}
/* FIXME: what if we delete the evas object??? */
static void
_edje_emit_cb(Edje *ed, const char *sig, const char *src)
{
Eina_List *l;
if (ed->delete_me) return;
_edje_ref(ed);
_edje_freeze(ed);
_edje_block(ed);
if (ed->just_added_callbacks)
_edje_callbacks_patterns_clean(ed);
ed->walking_callbacks = 1;
if (ed->callbacks)
{
Edje_Signal_Callback *escb;
const Eina_List *match;
const Eina_List *l;
int r = 1;
_edje_callbacks_patterns_init(ed);
if (ed->patterns.callbacks.globing)
r = edje_match_callback_exec(ed->patterns.callbacks.signals_patterns,
ed->patterns.callbacks.sources_patterns,
sig,
src,
ed->patterns.callbacks.globing,
ed);
if (!r)
goto break_prog;
match = edje_match_signal_source_hash_get(sig, src,
ed->patterns.callbacks.exact_match);
EINA_LIST_FOREACH(match, l, escb)
if ((!escb->just_added) && (!escb->delete_me))
{
escb->func(escb->data, ed->obj, sig, src);
if (_edje_block_break(ed))
goto break_prog;
}
}
break_prog:
ed->walking_callbacks = 0;
if ((ed->delete_callbacks) || (ed->just_added_callbacks))
{
ed->delete_callbacks = 0;
ed->just_added_callbacks = 0;
l = ed->callbacks;
while (l)
{
Edje_Signal_Callback *escb = l->data;
Eina_List *next_l = l->next;
if (escb->just_added)
escb->just_added = 0;
if (escb->delete_me)
{
ed->callbacks = eina_list_remove_list(ed->callbacks, l);
if (escb->signal) eina_stringshare_del(escb->signal);
if (escb->source) eina_stringshare_del(escb->source);
free(escb);
}
l = next_l;
}
_edje_callbacks_patterns_clean(ed);
}
_edje_unblock(ed);
_edje_thaw(ed);
_edje_unref(ed);
}