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|
import edje_types;
class Edje.Object (Evas.Smart_Clipped, Efl.File, Efl.Container)
{
legacy_prefix: edje_object;
eo_prefix: edje_obj;
data: Edje;
methods {
@property update_hints {
set {
[[Edje will automatically update the size hints on itself.
By default edje doesn't set size hints on itself. With this function
call, it will do so if update is true. Be carefully, it cost a lot to
trigger this feature as it will recalc the object every time it make
sense to be sure that's its minimal size hint is always accurate.]]
}
get {
[[Whether or not Edje will update size hints on itself.]]
}
values {
update: bool; [[Whether or not update the size hints.]]
}
}
@property mirrored {
set {
[[Set the RTL orientation for this object.
@since 1.1.0]]
}
get {
[[Get the RTL orientation for this object.
You can RTL orientation explicitly with edje_object_mirrored_set.
@since 1.1.0]]
}
values {
rtl: bool; [[new value of flag true/false]]
}
}
@property language {
set {
[[Set the language for this object.
@since 1.1.0]]
}
get {
[[Get the language for this object.
@since 1.1.0]]
}
values {
language: const(char)*; [[The language value]]
}
}
@property animation {
set {
[[Set the object's animation state.
This function starts or stops an Edje object's animation. The
information if it's stopped can be retrieved by
edje_object_animation_get().
See also @.animation.get()]]
}
get {
[[Get the Edje object's animation state.
This function returns if the animation is stopped or not. The
animation state is set by edje_object_animation_set().
See also @.animation.set().]]
}
values {
on: bool; [[The animation state. $true to starts or
$false to stops.]]
}
}
@property play {
set {
[[Set the Edje object to playing or paused states.
This function sets the Edje object obj to playing or paused
states, depending on the parameter play. This has no effect if
the object was already at that state.
See also @.play.get().]]
}
get {
[[Get the Edje object's state.
This function tells if an Edje object is playing or not. This state
is set by edje_object_play_set().
See also @.play.set().]]
}
values {
play: bool; [[Object state ($true to playing,
$false to paused).]]
}
}
@property perspective {
set {
[[Set the given perspective object on this Edje object.
Make the given perspective object be the default perspective for this Edje
object.
There can be only one perspective object per Edje object, and if a
previous one was set, it will be removed and the new perspective object
will be used.
An Edje perspective will only affect a part if it doesn't point to another
part to be used as perspective.
\@ref edje_object_perspective_new()
See also @.perspective.get()
\@ref edje_perspective_set()]]
values {
ps: Edje.Perspective*; [[The perspective object that will be used.]]
}
}
get {
[[Get the current perspective used on this Edje object.
See also @.perspective.set()]]
values {
ps: const(Edje.Perspective)*; [[The perspective object that will be used.]]
}
}
}
@property scale {
set {
[[Set the scaling factor for a given Edje object.
This function sets an individual scaling factor on the obj
Edje object. This property (or Edje's global scaling factor, when
applicable), will affect this object's part sizes. If scale is
not zero, than the individual scaling will override any global
scaling set, for the object obj's parts. Put it back to zero to
get the effects of the global scaling again.
Warning: Only parts which, at EDC level, had the @"scale"
property set to @1, will be affected by this function. Check the
complete \@ref edcref "syntax reference" for EDC files.
See also @.scale.get()
\@ref edje_scale_get() for more details]]
return: bool;
}
get {
[[Get a given Edje object's scaling factor.
This function returns the individual scaling factor set on the
obj Edje object.
See also @.scale.set() for more details]]
}
values {
scale: double; [[The scaling factor (the default value is @0.0,
meaning individual scaling not set)]]
}
}
@property base_scale {
get {
[[Get a given Edje object's base_scale factor.
This function returns the base_scale factor set on the
obj Edje object.
The base_scale can be set in the collection of edc.
If it isn't set, the default value is 1.0]]
}
values {
base_scale: double(1.0); [[The base_scale factor (the default value is @ 1.0,
that means the edc file is made based on scale 1.0.]]
}
}
@property text_change_cb {
set {
[[Set the object text callback.
This function sets the callback to be called when the text changes.]]
}
values {
func: Edje.Text.Change_Cb; [[The callback function to handle the text change]]
data: void *; [[The data associated to the callback function.]]
}
}
@property part_text_cursor_begin {
set {
[[Moves the cursor to the beginning of the text part
\@ref evas_textblock_cursor_paragraph_first]]
}
values {
part: const(char)*; [[The part name]]
cur: Edje.Cursor; [[the edje cursor to work on]]
}
}
@property part_text_cursor_line_end {
set {
[[Move the cursor to the end of the line.
\@ref evas_textblock_cursor_line_char_last]]
}
values {
part: const(char)*; [[The part name]]
cur: Edje.Cursor; [[the edje cursor to work on]]
}
}
@property text_class {
set {
[[Sets Edje text class.
This function sets the text class for the Edje.]]
return: bool; [[$true, on success or $false, on error]]
}
get {
[[Gets font and font size from edje text class.
This function gets the font and the font size from the object
text class. The font string will only be valid until the text
class is changed or the edje object is deleted.]]
return: bool; [[$true, on success or $false, on error]]
}
keys {
text_class: const(char)*; [[The text class name]]
}
values {
font: const(char)*; [[Font name]]
size: Evas.Font.Size; [[Font Size]]
}
}
@property part_text_cursor_coord {
set {
[[Position the given cursor to a X,Y position.
This is frequently used with the user cursor.]]
return: bool; [[True on success, false on error.]]
}
values {
part: const(char)*; [[The part containing the object.]]
cur: Edje.Cursor; [[The cursor to adjust.]]
x: Evas.Coord; [[X Coordinate.]]
y: Evas.Coord; [[Y Coordinate.]]
}
}
@property part_text_cursor_end {
set {
[[Moves the cursor to the end of the text part.
\@ref evas_textblock_cursor_paragraph_last]]
}
values {
part: const(char)*; [[The part name]]
cur: Edje.Cursor; [[the edje cursor to work on]]
}
}
@property part_text_escaped {
set {
[[Sets the text for an object part, but converts HTML escapes to UTF8
This converts the given string text to UTF8 assuming it contains HTML
style escapes like "&" and "©" etc. IF the part is of type TEXT,
as opposed to TEXTBLOCK.
@since 1.2]]
return: bool; [[$true on success, $false otherwise]]
}
values {
part: const(char)*; [[The part name]]
text: const(char)*; [[The text string]]
}
}
@property item_provider {
set {
[[Set the function that provides item objects for named items in an edje entry text
Item objects may be deleted any time by Edje, and will be deleted when the
Edje object is deleted (or file is set to a new file).]]
}
values {
func: Edje.Item_Provider_Cb; [[The function to call (or $null to disable) to get item objects]]
data: void *; [[The data pointer to pass to the func callback]]
}
}
@property part_text_cursor_line_begin {
set {
[[Move the cursor to the beginning of the line.
\@ref evas_textblock_cursor_line_char_first]]
}
values {
part: const(char)*; [[The part name]]
cur: Edje.Cursor; [[the edje cursor to work on]]
}
}
@property message_handler {
set {
[[Set an Edje message handler function for a given Edje object.
For scriptable programs on an Edje object's defining EDC file which
send messages with the send_message() primitive, one can attach
handler functions, to be called in the code which creates
that object (see \@ref edcref "the syntax" for EDC files).
This function associates a message handler function and the
attached data pointer to the object obj.
See also @.message_send()]]
}
values {
func: Edje.Message_Handler_Cb; [[The function to handle messages coming from obj]]
data: void *; [[Auxiliary data to be passed to func]]
}
}
@property size_min {
get {
[[Get the minimum size specified -- as an EDC property -- for a
given Edje object
This function retrieves the obj object's minimum size values,
as declared in its EDC group definition.
Note: If the $min EDC property was not declared for obj, this
call will return the value 0, for each axis.
Note: On failure, this function will make all non-$null size
pointers' pointed variables be set to zero.
See also @.size_max.get()]]
/* FIXME-doc
* Minimum size of groups have the following syntax
* @code
* collections
* {
* group
* {
* name: "a_group";
* min: 100 100;
* }
* }
* @endcode
* where one declares a minimum size of 100 pixels both for width and
* height. Those are (hint) values which should be respected when the
* given object/group is to be controlled by a given container object
* (e.g. an Edje object being "swallowed" into a given $SWALLOW
* typed part, as in edje_object_part_swallow()). Check the complete
* \@ref edcref "syntax reference" for EDC files.
*/
}
values {
minw: Evas.Coord; [[Pointer to a variable where to store the minimum width]]
minh: Evas.Coord; [[Pointer to a variable where to store the minimum height]]
}
}
access_part_iterate {
[[Iterate over all accessibility-enabled part names.]]
legacy: null;
return: free(own(iterator<const(char)*> *), eina_iterator_free);
}
@property load_error {
get {
[[Gets the (last) file loading error for a given Edje object
This function is meant to be used after an Edje EDJ file
loading, what takes place with the edje_object_file_set()
function. If that function does not return $true, one should
check for the reason of failure with this one.
\@ref edje_load_error_str()]]
return: Edje.Load_Error; [[The Edje loading error, one of:
- #EDJE_LOAD_ERROR_NONE
- #EDJE_LOAD_ERROR_GENERIC
- #EDJE_LOAD_ERROR_DOES_NOT_EXIST
- #EDJE_LOAD_ERROR_PERMISSION_DENIED
- #EDJE_LOAD_ERROR_RESOURCE_ALLOCATION_FAILED
- #EDJE_LOAD_ERROR_CORRUPT_FILE
- #EDJE_LOAD_ERROR_UNKNOWN_FORMAT
- #EDJE_LOAD_ERROR_INCOMPATIBLE_FILE
- #EDJE_LOAD_ERROR_UNKNOWN_COLLECTION
- #EDJE_LOAD_ERROR_RECURSIVE_REFERENCE]]
}
}
@property size_max {
get {
[[Get the maximum size specified -- as an EDC property -- for a
given Edje object
This function retrieves the obj object's maximum size values,
as declared in its EDC group definition.
Note: If the $max EDC property was not declared for obj, this
call will return the maximum size a given Edje object may have, for
each axis.
Note: On failure, this function will make all non-$null size
pointers' pointed variables be set to zero.
See also @.size_min.get()]]
/* FIXME-doc
* Maximum size of groups have the following syntax
* @code
* collections
* {
* group
* {
* name: "a_group";
* max: 100 100;
* }
* }
* @endcode
* where one declares a maximum size of 100 pixels both for width and
* height. Those are (hint) values which should be respected when the
* given object/group is to be controlled by a given container object
* (e.g. an Edje object being "swallowed" into a given $SWALLOW
* typed part, as in edje_object_part_swallow()). Check the complete
* \@ref edcref "syntax reference" for EDC files.
*/
}
values {
maxw: Evas.Coord; [[Pointer to a variable where to store the maximum width]]
maxh: Evas.Coord; [[Pointer to a variable where to store the maximum height]]
}
}
part_external_param_type_get @const {
[[Facility to query the type of the given parameter of the given part.]]
return: Edje.External.Param_Type; [[#EDJE_EXTERNAL_PARAM_TYPE_MAX on errors, or another value
from #Edje_External_Param_Type on success.]]
params {
@in part: const(char)*; [[The part name]]
@out param: const(char); [[the parameter name to use.]]
}
}
part_text_select_allow_set @const {
[[Enables selection if the entry is an EXPLICIT selection mode
type.
The default is to not allow selection. This function only affects user
selection, functions such as edje_object_part_text_select_all() and
edje_object_part_text_select_none() are not affected.]]
params {
@in part: const(char)*; [[The part name]]
@in allow: bool; [[true to enable, false otherwise]]
}
}
part_state_get @const {
[[Returns the state of the Edje part.]]
return: const(char)*; [[The part state:
"default" for the default state
"" for other states]]
params {
@in part: const(char)*; [[The part name]]
@out val_ret: double;
}
}
text_markup_filter_callback_del_full {
[[Delete a function and matching user data from the markup filter list.
Delete the given func filter and data user data from the list
in part.
Returns the user data pointer given when added.
See also @.text_markup_filter_callback_add and @.text_markup_filter_callback_del
@since 1.2.0]]
return: void *; [[The same data pointer if successful, or $null otherwise]]
params {
@in part: const(char)*; [[The part name]]
@in func: Edje.Markup_Filter_Cb; [[The function callback to remove]]
@in data: void *; [[The data passed to the callback function]]
}
}
part_drag_step_set {
[[Sets the drag step increment.
Sets the x,y step increments for a dragable object.
Values for dx and dy are real numbers that range from 0 to 1,
representing the relative size of the dragable area on that axis by which the
part will be moved.
See also @.part_drag_step_get()]]
return: bool;
params {
@in part: const(char)*; [[The part name]]
@in dx: double; [[The x step amount]]
@in dy: double; [[The y step amount]]
}
}
part_drag_step_get @const {
[[Gets the drag step increment values.
Gets the x and y step increments for the dragable object.
See also @.part_drag_step_set()]]
return: bool;
params {
@in part: const(char)*; [[The part]]
@out dx: double; [[The x step increment pointer]]
@out dy: double; [[The y step increment pointer]]
}
}
part_text_imf_context_get @const {
[[Get the input method context in entry.
If ecore_imf was not available when edje was compiled, this function returns $null
otherwise, the returned pointer is an Ecore_IMF
@since 1.2.0]]
return: void *; [[The input method context (Ecore_IMF_Context *) in entry]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_text_select_begin @const {
[[Starts selecting at current cursor position]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_text_style_user_peek @const {
[[Return the text of the object part.
This function returns the style associated with the textblock part.
@since 1.2.0]]
return: const(char)*; [[The text string]]
params {
@in part: const(char)*; [[The part name]]
}
}
signal_callback_del {
[[Remove a signal-triggered callback from an object.
This function removes a callback, previously attached to the
emission of a signal, from the object obj. The parameters
emission, source and func must match exactly those passed to
a previous call to edje_object_signal_callback_add(). The data
pointer that was passed to this call will be returned.
See also @.signal_callback_add().
\@ref edje_object_signal_callback_del_full().]]
legacy: null;
return: void *; [[The data pointer]]
params {
@in emission: const(char)*; [[The emission string.]]
@in source: const(char)*; [[The source string.]]
@in func: Edje.Signal_Cb; [[The callback function.]]
@in data: void *; [[The callback function.]]
}
}
part_text_cursor_next {
[[Advances the cursor to the next cursor position.
\@ref evas_textblock_cursor_char_next]]
return: bool;
params {
@in part: const(char)*; [[The part name]]
@in cur: Edje.Cursor; [[The edje cursor to advance]]
}
}
part_text_style_user_push {
[[Set the style of the
This function sets the style associated with the textblock part.
@since 1.2.0]]
params {
@in part: const(char)*; [[The part name]]
@in style: const(char)*; [[The style to set (textblock conventions).]]
}
}
part_text_append {
[[Insert text for an object part.
This function inserts the text for an object part at the end; It does not
move the cursor.
@since 1.1]]
params {
@in part: const(char)*; [[The part name]]
@in text: const(char)*; [[The text string]]
}
}
part_geometry_get @const {
[[Retrieve the geometry of a given Edje part, in a given Edje
object's group definition, relative to the object's area.
This function gets the geometry of an Edje part within its
group. The x and y coordinates are relative to the top left
corner of the whole obj object's area.
Note: Use $null pointers on the geometry components you're not
interested in: they'll be ignored by the function.
Note: On failure, this function will make all non-$null geometry
pointers' pointed variables be set to zero.]]
return: bool;
params {
@in part: const(char)*; [[The Edje part's name]]
@out x: Evas.Coord; [[A pointer to a variable where to store the part's x
coordinate]]
@out y: Evas.Coord; [[A pointer to a variable where to store the part's y
coordinate]]
@out w: Evas.Coord; [[A pointer to a variable where to store the part's width]]
@out h: Evas.Coord; [[A pointer to a variable where to store the part's height]]
}
}
part_text_input_panel_hide @const {
[[Hide the input panel (virtual keyboard).
See also @.part_text_input_panel_show
Note that input panel is shown or hidden automatically according to the focus state.
This API can be used in the case of manually controlling by using edje_object_part_text_input_panel_enabled_set.
@since 1.2.0]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_text_item_geometry_get @const {
[[Return item geometry.
This function return a list of Evas_Textblock_Rectangle item
rectangles.]]
return: bool; [[1 if item exists, 0 if not]]
params {
@in part: const(char)*; [[The part name]]
@in item: const(char)*; [[The item name]]
@out cx: Evas.Coord; [[Item x return (relative to entry part)]]
@out cy: Evas.Coord; [[Item y return (relative to entry part)]]
@out cw: Evas.Coord; [[Item width return]]
@out ch: Evas.Coord; [[Item height return]]
}
}
part_text_select_abort @const {
[[Aborts any selection action on a part.]]
params {
@in part: const(char)*; [[The part name]]
}
}
text_insert_filter_callback_del_full {
[[Delete a function and matching user data from the filter list.
Delete the given func filter and data user data from the list
in part.
Returns the user data pointer given when added.
See also @.text_insert_filter_callback_add and @.text_insert_filter_callback_del]]
return: void *; [[The same data pointer if successful, or $null otherwise]]
params {
@in part: const(char)*; [[The part name]]
@in func: Edje.Text.Filter_Cb; [[The function callback to remove]]
@in data: void *; [[The data passed to the callback function]]
}
}
part_text_style_user_pop {
[[Delete the top style form the user style stack.
@since 1.2.0]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_text_input_panel_imdata_set {
[[Set the input panel-specific data to deliver to the input panel.
This API is used by applications to deliver specific data to the input panel.
The data format MUST be negotiated by both application and the input panel.
The size and format of data are defined by the input panel.
@since 1.2.0]]
params {
@in part: const(char)*; [[The part name]]
@in data: const(void)*; [[The specific data to be set to the input panel.]]
@in len: int; [[the length of data, in bytes, to send to the input panel]]
}
}
part_text_input_panel_imdata_get @const {
[[Get the specific data of the current active input panel.
@since 1.2.0]]
params {
@in part: const(char)*; [[The part name]]
@in data: void *; [[The specific data to be got from the input panel]]
@in len: int *; [[The length of data]]
}
}
part_text_insert {
[[Insert text for an object part.
This function inserts the text for an object part just before the
cursor position.]]
params {
@in part: const(char)*; [[The part name]]
@in text: const(char)*; [[The text string]]
}
}
part_text_cursor_copy {
[[Copy the cursor to another cursor.]]
params {
@in part: const(char)*; [[The part name]]
@in src: Edje.Cursor; [[the cursor to copy from]]
@in dst: Edje.Cursor; [[the cursor to copy to]]
}
}
parts_extends_calc {
[[Calculate the geometry of the region, relative to a given Edje
object's area, occupied by all parts in the object.
This function gets the geometry of the rectangle equal to the area
required to group all parts in obj's group/collection. The x
and y coordinates are relative to the top left corner of the
whole obj object's area. Parts placed out of the group's
boundaries will also be taken in account, so that x and y
may be negative.
Note: Use $null pointers on the geometry components you're not
interested in: they'll be ignored by the function.
Note: On failure, this function will make all non-$null geometry
pointers' pointed variables be set to zero.]]
return: bool;
params {
@out x: Evas.Coord; [[A pointer to a variable where to store the parts region's
x coordinate]]
@out y: Evas.Coord; [[A pointer to a variable where to store the parts region's
y coordinate]]
@out w: Evas.Coord; [[A pointer to a variable where to store the parts region's
width]]
@out h: Evas.Coord; [[A pointer to a variable where to store the parts region's
height]]
}
}
part_drag_value_set {
[[Set the dragable object location.
Places the dragable object at the given location.
Values for dx and dy are real numbers that range from 0 to 1,
representing the relative position to the dragable area on that axis.
This value means, for the vertical axis, that 0.0 will be at the top if the
first parameter of $y in the dragable part theme is 1, and at bottom if it
is -1.
For the horizontal axis, 0.0 means left if the first parameter of $x in the
dragable part theme is 1, and right if it is -1.
See also @.part_drag_value_get()]]
return: bool;
params {
@in part: const(char)*; [[The part name]]
@in dx: double; [[The x value]]
@in dy: double; [[The y value]]
}
}
part_drag_value_get @const {
[[Get the dragable object location.
Values for dx and dy are real numbers that range from 0 to 1,
representing the relative position to the dragable area on that axis.
See also @.part_drag_value_set()
Gets the drag location values.]]
return: bool;
params {
@in part: const(char)*; [[The part name]]
@out dx: double; [[The X value pointer]]
@out dy: double; [[The Y value pointer]]
}
}
calc_force {
[[Force a Size/Geometry calculation.
Forces the object obj to recalculation layout regardless of
freeze/thaw.]]
}
part_text_cursor_pos_set {
[[Sets the cursor position to the given value
@since 1.1.0]]
params {
@in part: const(char)*; [[The part name]]
@in cur: Edje.Cursor; [[The cursor to move]]
@in pos: int; [[the position of the cursor]]
}
}
part_text_cursor_pos_get @const {
[[Retrieves the current position of the cursor
@since 1.1.0]]
return: int; [[The cursor position]]
params {
@in part: const(char)*; [[The part name]]
@in cur: Edje.Cursor; [[The cursor to get the position]]
}
}
freeze {
[[Freezes the Edje object.
This function puts all changes on hold. Successive freezes will
nest, requiring an equal number of thaws.
See also @.thaw()]]
return: int; [[The frozen state or 0 on Error]]
}
part_text_cursor_content_get @const {
[[Returns the content (char) at the cursor position.
\@ref evas_textblock_cursor_content_get
You must free the return (if not $null) after you are done with it.]]
return: char *; [[The character string pointed to (may be a multi-byte utf8 sequence) terminated by a nul byte.]]
params {
@in part: const(char)*; [[The part name]]
@in cur: Edje.Cursor; [[The cursor to use]]
}
}
part_text_input_panel_layout_set {
[[Set the layout of the input panel.
The layout of the input panel or virtual keyboard can make it easier or
harder to enter content. This allows you to hint what kind of input you
are expecting to enter and thus have the input panel automatically
come up with the right mode.
@since 1.1]]
params {
@in part: const(char)*; [[The part name]]
@in layout: Edje.Input_Panel.Layout; [[layout type]]
}
}
part_text_input_panel_layout_get @const {
[[Get the layout of the input panel.
See also @.part_text_input_panel_layout_set
@since 1.1]]
return: Edje.Input_Panel.Layout; [[Layout type of the input panel]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_text_input_panel_language_set {
[[Set the language mode of the input panel.
This API can be used if you want to show the Alphabet keyboard.
@since 1.2.0]]
params {
@in part: const(char)*; [[The part name]]
@in lang: Edje.Input_Panel.Lang; [[the language to be set to the input panel.]]
}
}
part_text_input_panel_language_get @const {
[[Get the language mode of the input panel.
See also @.part_text_input_panel_language_set for more details.
@since 1.2.0]]
return: Edje.Input_Panel.Lang; [[input panel language type]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_external_object_get @const {
[[Get the object created by this external part.
Parts of type external creates the part object using information
provided by external plugins. It's somehow like "swallow"
(edje_object_part_swallow()), but it's all set automatically.
This function returns the part created by such external plugins and
being currently managed by this Edje.
Note: Almost all swallow rules apply: you should not move, resize,
hide, show, set the color or clipper of such part. It's a bit
more restrictive as one must never delete this object!]]
return: Evas.Object *; [[The externally created object, or $null if there is none or
part is not an external.]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_external_content_get @const {
[[Get an object contained in an part of type EXTERNAL
The content string must not be $null. Its actual value depends on the
code providing the EXTERNAL.]]
return: Evas.Object *;
params {
@in part: const(char)*; [[The name of the part holding the EXTERNAL]]
@out content: const(char); [[A string identifying which content from the EXTERNAL to get]]
}
}
preload {
[[Preload the images on the Edje Object in the background.
This function requests the preload of all data images (on the given
object) in the background. The work is queued before being processed
(because there might be other pending requests of this type).
It emits a signal "preload,done" when finished.
Note: Use $true on scenarios where you don't need
the image data preloaded anymore.]]
return: bool; [[$false if obj was not a valid Edje object
otherwise $true]]
params {
@in cancel: bool; [[$false will add it the preloading work queue,
$true will remove it (if it was issued before).]]
}
}
part_text_input_panel_enabled_set {
[[Sets the attribute to show the input panel automatically.
@since 1.1.0]]
params {
@in part: const(char)*; [[The part name]]
@in enabled: bool; [[If true, the input panel is appeared when entry is clicked or has a focus]]
}
}
part_text_input_panel_enabled_get @const {
[[Retrieve the attribute to show the input panel automatically.
See also @.part_text_input_panel_enabled_set
@since 1.1.0]]
return: bool; [[true if it supports or false otherwise]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_text_select_extend @const {
[[Extends the current selection to the current cursor position]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_text_anchor_geometry_get @const {
[[Return a list of Evas_Textblock_Rectangle anchor rectangles.
This function return a list of Evas_Textblock_Rectangle anchor
rectangles.]]
return: const(list<const(Evas.Textblock_Rectangle)*>)*; [[The list of anchor rects (const Evas_Textblock_Rectangle
*), do not modify! Geometry is relative to entry part.]]
params {
@in part: const(char)*; [[The part name]]
@in anchor: const(char)*; [[The anchor name]]
}
}
part_text_cursor_down {
[[Moves the cursor to the char below the current cursor position.]]
return: bool;
params {
@in part: const(char)*; [[The part name]]
@in cur: Edje.Cursor; [[the edje cursor to work on]]
}
}
part_drag_page_set {
[[Sets the page step increments.
Sets the x,y page step increment values.
Values for dx and dy are real numbers that range from 0 to 1,
representing the relative size of the dragable area on that axis by which the
part will be moved.
See also @.part_drag_page_get()]]
return: bool;
params {
@in part: const(char)*; [[The part name]]
@in dx: double; [[The x page step increment]]
@in dy: double; [[The y page step increment]]
}
}
part_drag_page_get @const {
[[Gets the page step increments.
Gets the x,y page step increments for the dragable object.
See also @.part_drag_page_set()]]
return: bool;
params {
@in part: const(char)*; [[The part name]]
@out dx: double; [[The dx page increment pointer]]
@out dy: double; [[The dy page increment pointer]]
}
}
signal_emit {
[[Send/emit an Edje signal to a given Edje object
This function sends a signal to the object obj. An Edje program,
at obj's EDC specification level, can respond to a signal by
having declared matching @'signal' and @'source' fields on its
block (see \@ref edcref "the syntax" for EDC files).
See also @.signal_callback_add() for more on Edje signals.]]
/* FIXME-doc
* @code
* program
* {
* name: "a_program";
* signal: "a_signal";
* source: "";
* action: ...
* }
* @endcode
*/
params {
@in emission: const(char)*; [[The signal's "emission" string]]
@in source: const(char)*; [[The signal's "source" string]]
}
}
part_text_input_panel_layout_variation_set {
[[Set the layout variation of the input panel.
The layout variation of the input panel or virtual keyboard can make it easier or
harder to enter content. This allows you to hint what kind of input you
are expecting to enter and thus have the input panel automatically
come up with the right mode.
@since 1.8]]
params {
@in part: const(char)*; [[The part name]]
@in variation: int; [[layout variation type]]
}
}
part_text_input_panel_layout_variation_get @const {
[[Get the layout variation of the input panel.
See also @.part_text_input_panel_layout_variation_set
@since 1.8]]
return: int; [[Layout variation type of the input panel]]
params {
@in part: const(char)*; [[The part name]]
}
}
message_send {
[[Send an (Edje) message to a given Edje object
This function sends an Edje message to obj and to all of its
child objects, if it has any (swallowed objects are one kind of
child object). type and msg must be matched accordingly,
as documented in #Edje_Message_Type.
The id argument as a form of code and theme defining a common
interface on message communication. One should define the same IDs
on both code and EDC declaration (see \@ref edcref "the syntax" for
EDC files), to individualize messages (binding them to a given
context).
The function to handle messages arriving from obj is set with
edje_object_message_handler_set().]]
params {
@in type: Edje.Message_Type; [[The type of message to send to obj]]
@in id: int; [[A identification number for the message to be sent]]
@in msg: void *; [[The message's body, a struct depending on type]]
}
}
part_text_select_none @const {
[[Set the selection to be none.
This function sets the selection text to be none.]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_object_get @const {
[[Get a handle to the Evas object implementing a given Edje
part, in an Edje object.
This function gets a pointer of the Evas object corresponding to a
given part in the obj object's group.
You should never modify the state of the returned object (with
\@ref evas_object_move() or \@ref evas_object_hide() for example),
because it's meant to be managed by Edje, solely. You are safe to
query information about its current state (with
evas_object_visible_get() or \@ref evas_object_color_get() for
example), though.
Note: If the type of Edje part is GROUP, SWALLOW or EXTERNAL,
returned handle by this function will indicate nothing or transparent
rectangle for events. Use $.part_swallow_get() in that case.]]
return: const(Evas.Object)*; [[A pointer to the Evas object implementing the given part,
or $null on failure (e.g. the given part doesn't exist)]]
params {
@in part: const(char)*; [[The Edje part's name]]
}
}
part_drag_size_set {
[[Set the dragable object size.
Values for dw and dh are real numbers that range from 0 to 1,
representing the relative size of the dragable area on that axis.
Sets the size of the dragable object.
See also @.part_drag_size_get()]]
return: bool;
params {
@in part: const(char)*; [[The part name]]
@in dw: double; [[The drag width]]
@in dh: double; [[The drag height]]
}
}
part_drag_size_get @const {
[[Get the dragable object size.
Gets the dragable object size.
See also @.part_drag_size_set()]]
return: bool;
params {
@in part: const(char)*; [[The part name]]
@out dw: double; [[The drag width pointer]]
@out dh: double; [[The drag height pointer]]
}
}
text_insert_filter_callback_del {
[[Delete a function from the filter list.
Delete the given func filter from the list in part. Returns
the user data pointer given when added.
See also @.text_insert_filter_callback_add and @.text_insert_filter_callback_del_full]]
return: void *; [[The user data pointer if successful, or $null otherwise]]
params {
@in part: const(char)*; [[The part name]]
@in func: Edje.Text.Filter_Cb; [[The function callback to remove]]
}
}
part_drag_dir_get @const {
[[Determine dragable directions.
The dragable directions are defined in the EDC file, inside the \@ref dragable
section, by the attributes $x and $y. See the \@ref edcref for more
information.]]
return: Edje.Drag_Dir; [[#EDJE_DRAG_DIR_NONE: Not dragable
#EDJE_DRAG_DIR_X: Dragable in X direction
#EDJE_DRAG_DIR_Y: Dragable in Y direction
#EDJE_DRAG_DIR_XY: Dragable in X & Y directions]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_text_unescaped_set {
[[Sets the raw (non escaped) text for an object part.
This function will not do escape for you if it is a TEXTBLOCK part, that is,
if text contain tags, these tags will not be interpreted/parsed by TEXTBLOCK.
See also @.part_text_unescaped_get().]]
return: bool;
params {
@in part: const(char)*; [[The part name]]
@in text_to_escape: const(char)*; [[The text string]]
}
}
part_text_unescaped_get @const {
[[Returns the text of the object part, without escaping.
This function is the counterpart of
edje_object_part_text_unescaped_set(). Please notice that the
result is newly allocated memory and should be released with free()
when done.
See also @.part_text_unescaped_set().]]
return: char *; [[The allocated text string without escaping, or $null on
problems.]]
params {
@in part: const(char)*; [[The part name]]
}
}
signal_callback_add {
[[Add a callback for an arriving Edje signal, emitted by
a given Edje object.
Edje signals are one of the communication interfaces between
code and a given Edje object's theme. With signals, one can
communicate two string values at a time, which are:
- "emission" value: the name of the signal, in general
- "source" value: a name for the signal's context, in general
Though there are those common uses for the two strings, one is free
to use them however they like.
Signal callback registration is powerful, in the way that blobs
may be used to match multiple signals at once. All the
"*?[\" set of $fnmatch() operators can be used, both for
emission and source.
Edje has internal signals it will emit, automatically, on
various actions taking place on group parts. For example, the mouse
cursor being moved, pressed, released, etc., over a given part's
area, all generate individual signals.
By using something like
edje_object_signal_callback_add(obj, "mouse,down,*", "button.*",
signal_cb, NULL);
being \@ref "button.*" the pattern for the names of parts implementing
buttons on an interface, you'd be registering for notifications on
events of mouse buttons being pressed down on either of those parts
(those events all have the @"mouse,down," common prefix on their
names, with a suffix giving the button number). The actual emission
and source strings of an event will be passed in as the emission
and source parameters of the callback function (e.g.
"mouse,down,2" and @"button.close"), for each of those events.
Note: See \@ref edcref "the syntax" for EDC files
See also @.signal_emit() on how to emits Edje signals from
code to a an object
\@ref edje_object_signal_callback_del_full()]]
/* FIXME-doc
* This function adds a callback function to a signal emitted by obj, to
* be issued every time an EDC program like the following
* @code
* program
* {
* name: "emit_example";
* action: SIGNAL_EMIT "a_signal" "a_source";
* }
* @endcode
* is run, if emission and source are given those same values,
* here.
*/
params {
@in emission: const(char)*; [[The signal's "emission" string]]
@in source: const(char)*; [[The signal's "source" string]]
@in func: Edje.Signal_Cb; [[The callback function to be executed when the signal is
emitted.]]
@in data: void *; [[A pointer to data to pass in to func.]]
}
}
part_text_select_all @const {
[[Set the selection to be everything.
This function selects all text of the object of the part.]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_text_input_panel_return_key_disabled_set {
[[Set the return key on the input panel to be disabled.
@since 1.2.0]]
params {
@in part: const(char)*; [[The part name]]
@in disabled: bool; [[The state]]
}
}
part_text_input_panel_return_key_disabled_get @const {
[[Get whether the return key on the input panel should be disabled or not.
@since 1.2.0]]
return: bool; [[true if it should be disabled]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_text_autocapital_type_set {
[[Set the autocapitalization type on the immodule.
@since 1.1.0]]
params {
@in part: const(char)*; [[The part name]]
@in autocapital_type: Edje.Text.Autocapital_Type; [[The type of autocapitalization]]
}
}
part_text_autocapital_type_get @const {
[[Retrieves the autocapitalization type
@since 1.1.0]]
return: Edje.Text.Autocapital_Type; [[The autocapitalization type]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_text_prediction_allow_set {
[[Set whether the prediction is allowed or not.
@since 1.2.0]]
params {
@in part: const(char)*; [[The part name]]
@in prediction: bool; [[If true, the prediction feature is allowed.]]
}
}
part_text_prediction_allow_get @const {
[[Get whether the prediction is allowed or not.
@since 1.2.0]]
return: bool; [[true if prediction feature is allowed.]]
params {
@in part: const(char)*; [[The part name]]
}
}
data_get @const {
[[Retrive an EDC data field's value from a given Edje object's group.
This function fetches an EDC data field's value, which is declared
on the objects building EDC file, under its group. EDC data blocks
are most commonly used to pass arbitrary parameters from an
application's theme to its code.
EDC data fields always hold strings as values, hence the return
type of this function. Check the complete \@ref edcref "syntax reference"
for EDC files.
Warning: Do not confuse this call with edje_file_data_get(), which
queries for a global EDC data field on an EDC declaration file.
\@ref edje_object_file_set()]]
/* FIXME-doc
* They look like the following:
* @code
* collections
* {
* group
* {
* name: "a_group";
* data
* {
* item: "key1" "value1";
* item: "key2" "value2";
* }
* }
* }
* @endcode
*/
return: const(char)*; [[The data's value string. Must not be freed.]]
params {
@in key: const(char)*; [[The data field's key string]]
}
}
text_markup_filter_callback_add {
[[Add a markup filter function for newly inserted text.
Whenever text is inserted (not the same as set) into the given part,
the list of markup filter functions will be called to decide if and how
the new text will be accepted.
The text parameter in the func filter is always markup. It can be
modified by the user and it's up to him to free the one passed if he's to
change the pointer. If doing so, the newly set text should be malloc'ed,
as once all the filters are called Edje will free it.
If the text is to be rejected, freeing it and setting the pointer to $null
will make Edje break out of the filter cycle and reject the inserted
text.
This function is different from edje_object_text_insert_filter_callback_add()
in that the text parameter in the fucn filter is always markup.
Warning: If you use this function with
edje_object_text_insert_filter_callback_add() togehter, all
Edje_Text_Filter_Cb functions and Edje_Markup_Filter_Cb functions
will be executed, and then filtered text will be inserted.
See also @.text_markup_filter_callback_del, @.text_markup_filter_callback_del_full
and @.text_insert_filter_callback_add
@since 1.2.0]]
params {
@in part: const(char)*; [[The part name]]
@in func: Edje.Markup_Filter_Cb; [[The callback function that will act as markup filter]]
@in data: void *; [[User provided data to pass to the filter function]]
}
}
message_signal_process {
[[Process an object's message queue.
This function goes through the object message queue processing the
pending messages for this specific Edje object. Normally they'd
be processed only at idle time.]]
}
thaw {
[[Thaws the Edje object.
This function thaws the given Edje object.
Note:: If sucessives freezes were done, an equal number of
thaws will be required.
See also @.freeze()]]
return: int; [[The frozen state or 0 if the object is not frozen or on error.]]
}
part_text_imf_context_reset @const {
[[Reset the input method context if needed.
This can be necessary in the case where modifying the buffer would confuse on-going input method behavior
@since 1.2.0]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_text_input_panel_return_key_type_set {
[[Set the "return" key type. This type is used to set string or icon on the "return" key of the input panel.
An input panel displays the string or icon associated with this type
@since 1.2.0]]
params {
@in part: const(char)*; [[The part name]]
@in return_key_type: Edje.Input_Panel.Return_Key_Type; [[The type of "return" key on the input panel]]
}
}
part_text_input_panel_return_key_type_get @const {
[[Get the "return" key type.
See also @.part_text_input_panel_return_key_type_set() for more details
@since 1.2.0]]
return: Edje.Input_Panel.Return_Key_Type; [[The type of "return" key on the input panel]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_external_param_set {
[[Set the parameter for the external part.
Parts of type external may carry extra properties that have
meanings defined by the external plugin. For instance, it may be a
string that defines a button label and setting this property will
change that label on the fly.
Note: external parts have parameters set when they change
states. Those parameters will never be changed by this
function. The interpretation of how state_set parameters and
param_set will interact is up to the external plugin.
Note: this function will not check if parameter value is valid
using #Edje_External_Param_Info minimum, maximum, valid
choices and others. However these should be checked by the
underlying implementation provided by the external
plugin. This is done for performance reasons.]]
return: bool; [[$true if everything went fine, $false on errors.]]
params {
@in part: const(char)*; [[The part name]]
@in param: const(Edje.External.Param)*; [[the parameter details, including its name, type and
actual value. This pointer should be valid, and the
parameter must exist in
#Edje_External_Type.parameters_info, with the exact type,
otherwise the operation will fail and $false will be
returned.]]
}
}
part_external_param_get @const {
[[Get the parameter for the external part.
Parts of type external may carry extra properties that have
meanings defined by the external plugin. For instance, it may be a
string that defines a button label. This property can be modified by
state parameters, by explicit calls to
edje_object_part_external_param_set() or getting the actual object
with edje_object_part_external_object_get() and calling native
functions.
This function asks the external plugin what is the current value,
independent on how it was set.]]
return: bool; [[$true if everything went fine and param members
are filled with information, $false on errors and
param member values are not set or valid.]]
params {
@in part: const(char)*; [[The part name]]
@out param: Edje.External.Param; [[the parameter details. It is used as both input and
output variable. This pointer should be valid, and the
parameter must exist in
#Edje_External_Type.parameters_info, with the exact type,
otherwise the operation will fail and $false will be
returned.]]
}
}
size_min_calc {
[[Calculate the minimum required size for a given Edje object.
This call works exactly as edje_object_size_min_restricted_calc(),
with the last two arguments set to 0. Please refer to its
documentation, then.]]
params {
@out minw: Evas.Coord; [[Pointer to a variable where to store the minimum
required width]]
@out minh: Evas.Coord; [[Pointer to a variable where to store the minimum
required height]]
}
}
size_min_restricted_calc {
[[Calculate the minimum required size for a given Edje object.
This call will trigger an internal recalculation of all parts of
the obj object, in order to return its minimum required
dimensions for width and height. The user might choose to impose
those minimum sizes, making the resulting calculation to get to values
equal or bigger than restrictedw and restrictedh, for width and
height, respectively.
Note: At the end of this call, obj won't be automatically
resized to new dimensions, but just return the calculated
sizes. The caller is the one up to change its geometry or not.
Warning: Be advised that invisible parts in obj will be taken
into account in this calculation.]]
params {
@out minw: Evas.Coord; [[Pointer to a variable where to store the minimum
required width]]
@out minh: Evas.Coord; [[Pointer to a variable where to store the minimum
required height]]
@in restrictedw: Evas.Coord; [[Do not allow object's calculated (minimum) width
to be less than this value]]
@in restrictedh: Evas.Coord; [[Do not allow object's calculated (minimum)
height to be less than this value]]
}
}
part_drag_page {
[[Pages x,y steps.
Pages x,y where the increment is defined by
edje_object_part_drag_page_set.
Values for dx and dy are real numbers that range from 0 to 1.
Warning: Paging is bugged!
See also @.part_drag_step()]]
return: bool;
params {
@in part: const(char)*; [[The part name]]
@in dx: double; [[The x step]]
@in dy: double; [[The y step]]
}
}
part_text_set {
[[Sets the text for an object part]]
return: bool; [[$true on success, $false otherwise]]
params {
@in part: const(char)*; [[The part name]]
@in text: const(char)*; [[The text string]]
}
}
part_text_get @const {
[[Return the text of the object part.
This function returns the text associated to the object part.
See also @.part_text_set().]]
return: const(char)*; [[The text string]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_text_input_panel_show_on_demand_set {
[[Set the attribute to show the input panel in case of only an user's explicit Mouse Up event.
It doesn't request to show the input panel even though it has focus.
@since 1.9.0]]
params {
@in part: const(char)*; [[The part name]]
@in ondemand: bool; [[If true, the input panel will be shown in case of only Mouse up event. (Focus event will be ignored.)]]
}
}
part_text_input_panel_show_on_demand_get @const {
[[Get the attribute to show the input panel in case of only an user's explicit Mouse Up event.
@since 1.9.0]]
return: bool; [[$true if the input panel will be shown in case of only Mouse up event.]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_text_input_hint_set {
[[Sets the input hint which allows input methods to fine-tune their behavior.
@since 1.12.0]]
params {
@in part: const(char)*; [[The part name]]
@in input_hints: Edje.Input_Hints; [[input hints]]
}
}
part_text_input_hint_get @const {
[[Gets the value of input hint
@since 1.12.0]]
return: Edje.Input_Hints; [[The value of input hint]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_text_selection_get @const {
[[Return the selection text of the object part.
This function returns selection text of the object part.
See also @.part_text_select_all() and @.part_text_select_none()]]
return: const(char)*; [[The text string]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_text_cursor_is_format_get @const {
[[Returns whether the cursor points to a format.
\@ref evas_textblock_cursor_is_format]]
return: bool; [[true if it's true, false otherwise.]]
params {
@in part: const(char)*; [[The part name]]
@in cur: Edje.Cursor; [[The cursor to adjust.]]
}
}
text_class_del {
[[Delete the object text class.
This function deletes any values at the object level for the
specified object and text class.
Deleting the text class will revert it to the values
defined by edje_text_class_set() or the text class
defined in the theme file.
@since 1.17]]
params {
@in text_class: const(char)*; [[The color class to be deleted.]]
}
}
@property color_class {
set {
[[Sets the object color class.
This function sets the color values for an object level color
class. This will cause all edje parts in the specified object that
have the specified color class to have their colors multiplied by
these values.
The first color is the object, the second is the text outline, and
the third is the text shadow. (Note that the second two only apply
to text parts).
Setting color emits a signal "color_class,set" with source being
the given color.
Note: unlike Evas, Edje colors are not pre-multiplied. That is,
half-transparent white is 255 255 255 128.]]
return: bool;
}
get {
[[Gets the object color class.
This function gets the color values for an object level color
class. If no explicit object color is set, then global values will
be used.
The first color is the object, the second is the text outline, and
the third is the text shadow. (Note that the second two only apply
to text parts).
Note: unlike Evas, Edje colors are not pre-multiplied. That is,
half-transparent white is 255 255 255 128.]]
return: bool; [[true if found or false if not found and all
values are zeroed.]]
}
keys {
color_class: const(char)*;
}
values {
r: int; [[Object Red value]]
g: int; [[Object Green value]]
b: int; [[Object Blue value]]
a: int; [[Object Alpha value]]
r2: int; [[Outline Red value]]
g2: int; [[Outline Green value]]
b2: int; [[Outline Blue value]]
a2: int; [[Outline Alpha value]]
r3: int; [[Shadow Red value]]
g3: int; [[Shadow Green value]]
b3: int; [[Shadow Blue value]]
a3: int; [[Shadow Alpha value]]
}
}
color_class_description_get @const {
[[Gets the description of an object color class.
This function gets the description of a color class in use by an object.]]
return: const(char)*; [[The description of the target color class or $null if not found]]
params {
@in color_class: const(char)*;
}
}
color_class_clear @const {
[[Clear object color classes.
@since 1.17.0]]
return: bool; [[$true, on success or $false, on error]]
}
color_class_del {
[[Delete the object color class.
This function deletes any values at the object level for the
specified object and color class.
Deleting the color class will revert it to the values
defined by edje_color_class_set() or the color class
defined in the theme file.
Deleting the color class will emit the signal "color_class,del"
for the given Edje object.]]
params {
@in color_class: const(char)*; [[The color class to be deleted.]]
}
}
@property size_class {
set {
[[Sets the object size class.
This function sets the min and max values for an object level size
class. This will make all edje parts in the specified object that
have the specified size class update their min and max size with given values.
@since 1.17]]
return: bool; [[$true, on success or $false, on error]]
}
get {
[[Gets the object size class.
This function gets the min and max values for an object level size
class. These values will only be valid until the size class is changed
or the edje object is deleted.
@since 1.17]]
return: bool; [[$true, on success or $false, on error]]
}
keys {
size_class: const(char)*; [[The size class name]]
}
values {
minw: int; [[The min width]]
minh: int; [[The min height]]
maxw: int; [[The max width]]
maxh: int; [[The max height]]
}
}
size_class_del {
[[Delete the object size class.
This function deletes any values at the object level for the
specified object and size class.
Deleting the size class will revert it to the values
defined by edje_size_class_set() or the color class
defined in the theme file.
@since 1.17]]
params {
@in size_class: const(char)*;
}
}
part_drag_step {
[[Steps the dragable x,y steps.
Steps x,y where the step increment is the amount set by
edje_object_part_drag_step_set.
Values for dx and dy are real numbers that range from 0 to 1.
See also @.part_drag_page()]]
return: bool;
params {
@in part: const(char)*; [[The part name]]
@in dx: double; [[The x step]]
@in dy: double; [[The y step]]
}
}
part_text_cursor_up {
[[Move the cursor to the char above the current cursor position.]]
return: bool;
params {
@in part: const(char)*; [[The part name]]
@in cur: Edje.Cursor; [[the edje cursor to work on]]
}
}
part_text_cursor_geometry_get @const {
[[Returns the cursor geometry of the part relative to the edje
object.]]
params {
@in part: const(char)*; [[The part name]]
@out x: Evas.Coord; [[Cursor X position]]
@out y: Evas.Coord; [[Cursor Y position]]
@out w: Evas.Coord; [[Cursor width]]
@out h: Evas.Coord; [[Cursor height]]
}
}
part_text_anchor_list_get @const {
[[Return a list of char anchor names.
This function returns a list of char anchor names.]]
return: const(list<const(char)*>)*; [[The list of anchors (const char *), do not modify!]]
params {
@in part: const(char)*; [[The part name]]
}
}
text_insert_filter_callback_add {
[[Add a filter function for newly inserted text.
Whenever text is inserted (not the same as set) into the given part,
the list of filter functions will be called to decide if and how the new
text will be accepted.
There are three types of filters, EDJE_TEXT_FILTER_TEXT,
EDJE_TEXT_FILTER_FORMAT and EDJE_TEXT_FILTER_MARKUP.
The text parameter in the func filter can be modified by the user and
it's up to him to free the one passed if he's to change the pointer. If
doing so, the newly set text should be malloc'ed, as once all the filters
are called Edje will free it.
If the text is to be rejected, freeing it and setting the pointer to $null
will make Edje break out of the filter cycle and reject the inserted
text.
Warning: This function will be deprecated because of difficulty in use.
The type(format, text, or markup) of text should be always
checked in the filter function for correct filtering.
Please use edje_object_text_markup_filter_callback_add() instead. There
is no need to check the type of text in the filter function
because the text is always markup.
Warning: If you use this function with
edje_object_text_markup_filter_callback_add() together, all
Edje_Text_Filter_Cb functions and Edje_Markup_Filter_Cb functions
will be executed, and then filtered text will be inserted.
See also @.text_insert_filter_callback_del, @.text_insert_filter_callback_del_full
and @.text_markup_filter_callback_add]]
params {
@in part: const(char)*; [[The part name]]
@in func: Edje.Text.Filter_Cb; [[The callback function that will act as filter]]
@in data: void *; [[User provided data to pass to the filter function]]
}
}
part_text_input_panel_show @const {
[[Show the input panel (virtual keyboard) based on the input panel property such as layout, autocapital types, and so on.
Note that input panel is shown or hidden automatically according to the focus state.
This API can be used in the case of manually controlling by using edje_object_part_text_input_panel_enabled_set.
@since 1.2.0]]
params {
@in part: const(char)*; [[The part name]]
}
}
part_exists @const {
[[Check if an Edje part exists in a given Edje object's group
definition.
This function returns if a given part exists in the Edje group
bound to object obj (with edje_object_file_set()).
This call is useful, for example, when one could expect or not a
given GUI element, depending on the theme applied to obj.]]
return: bool; [[$true, if the Edje part exists in obj's group or
$false, otherwise (and on errors)]]
params {
@in part: const(char)*; [[The part's name to check for existence in obj's
group]]
}
}
text_markup_filter_callback_del {
[[Delete a function from the markup filter list.
Delete the given func filter from the list in part. Returns
the user data pointer given when added.
See also @.text_markup_filter_callback_add and @.text_markup_filter_callback_del_full
@since 1.2.0]]
return: void *; [[The user data pointer if successful, or $null otherwise]]
params {
@in part: const(char)*; [[The part name]]
@in func: Edje.Markup_Filter_Cb; [[The function callback to remove]]
}
}
part_text_cursor_is_visible_format_get @const {
[[Return true if the cursor points to a visible format
For example \\t, \\n, item and etc.
@ evas_textblock_cursor_format_is_visible_get]]
return: bool;
params {
@in part: const(char)*; [[The part name]]
@in cur: Edje.Cursor; [[The cursor to adjust.]]
}
}
part_text_user_insert @const {
[[This function inserts text as if the user has inserted it.
This means it actually registers as a change and emits signals, triggers
callbacks as appropriate.
@since 1.2.0]]
params {
@in part: const(char)*; [[The part name]]
@in text: const(char)*; [[The text string]]
}
}
part_text_cursor_prev {
[[Moves the cursor to the previous char
\@ref evas_textblock_cursor_char_prev]]
return: bool;
params {
@in part: const(char)*; [[The part name]]
@in cur: Edje.Cursor; [[the edje cursor to work on]]
}
}
part_text_item_list_get @const {
[[Return a list of char item names.
This function returns a list of char item names.]]
return: const(list<const(char)*>)*; [[The list of items (const char *), do not modify!]]
params {
@in part: const(char)*; [[The part name]]
}
}
@property transition_duration_factor {
set {
[[Set transition duration factor.
This define the transition duration factor on this
specific object. By default all animation are run at a speed
factor of 1.0.]]
}
get {
[[Get transition duration factor.
This define the transition duration factor on this
specific object. By default all animation are run at a speed
factor of 1.0.]]
}
values {
scale: double; [[The transition duration factor]]
}
}
}
implements {
Eo.Base.constructor;
Eo.Base.destructor;
Eo.Base.dbg_info_get;
Evas.Object.paragraph_direction.set;
Evas.Object_Smart.hide;
Evas.Object_Smart.calculate;
Evas.Object_Smart.show;
Evas.Object_Smart.move;
Evas.Object_Smart.add;
Evas.Object_Smart.del;
Evas.Object_Smart.resize;
Evas.Object_Smart.smart_no_render.set;
Efl.File.file.set;
Efl.File.file.get;
Efl.File.mmap.set;
Efl.File.mmap.get;
Efl.Container.content.set;
Efl.Container.content.get;
Efl.Container.content_unset;
Efl.Container.content_remove;
Efl.Container.content_part_name.get;
}
events {
recalc; [[Edje re-calculated the object.]]
}
}
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