[−]Struct gio::SettingsSchema
The SettingsSchemaSource
and SettingsSchema
APIs provide a
mechanism for advanced control over the loading of schemas and a
mechanism for introspecting their content.
Plugin loading systems that wish to provide plugins a way to access settings face the problem of how to make the schemas for these settings visible to GSettings. Typically, a plugin will want to ship the schema along with itself and it won't be installed into the standard system directories for schemas.
SettingsSchemaSource
provides a mechanism for dealing with this by
allowing the creation of a new 'schema source' from which schemas can
be acquired. This schema source can then become part of the metadata
associated with the plugin and queried whenever the plugin requires
access to some settings.
Consider the following example:
typedef struct
{
...
GSettingsSchemaSource *schema_source;
...
} Plugin;
Plugin *
initialise_plugin (const gchar *dir)
{
Plugin *plugin;
...
plugin->schema_source =
g_settings_schema_source_new_from_directory (dir,
g_settings_schema_source_get_default (), FALSE, NULL);
...
return plugin;
}
...
GSettings *
plugin_get_settings (Plugin *plugin,
const gchar *schema_id)
{
GSettingsSchema *schema;
if (schema_id == NULL)
schema_id = plugin->identifier;
schema = g_settings_schema_source_lookup (plugin->schema_source,
schema_id, FALSE);
if (schema == NULL)
{
... disable the plugin or abort, etc ...
}
return g_settings_new_full (schema, NULL, NULL);
}
The code above shows how hooks should be added to the code that initialises (or enables) the plugin to create the schema source and how an API can be added to the plugin system to provide a convenient way for the plugin to access its settings, using the schemas that it ships.
From the standpoint of the plugin, it would need to ensure that it ships a gschemas.compiled file as part of itself, and then simply do the following:
{
GSettings *settings;
gint some_value;
settings = plugin_get_settings (self, NULL);
some_value = g_settings_get_int (settings, "some-value");
...
}
It's also possible that the plugin system expects the schema source files (ie: .gschema.xml files) instead of a gschemas.compiled file. In that case, the plugin loading system must compile the schemas for itself before attempting to create the settings source.
Methods
impl SettingsSchema
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pub fn get_id(&self) -> Option<GString>
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pub fn get_key(&self, name: &str) -> Option<SettingsSchemaKey>
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Gets the key named name
from self
.
It is a programmer error to request a key that does not exist. See
SettingsSchema::list_keys
.
name
the name of a key
Returns
the SettingsSchemaKey
for name
pub fn get_path(&self) -> Option<GString>
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Gets the path associated with self
, or None
.
Schemas may be single-instance or relocatable. Single-instance schemas correspond to exactly one set of keys in the backend database: those located at the path returned by this function.
Relocatable schemas can be referenced by other schemas and can
threfore describe multiple sets of keys at different locations. For
relocatable schemas, this function will return None
.
Returns
the path of the schema, or None
pub fn has_key(&self, name: &str) -> bool
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pub fn list_children(&self) -> Vec<GString>
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Gets the list of children in self
.
You should free the return value with g_strfreev
when you are done
with it.
Feature: v2_44
Returns
a list of the children on
settings
, in no defined order
Trait Implementations
impl Clone for SettingsSchema
fn clone(&self) -> SettingsSchema
fn clone_from(&mut self, source: &Self)
1.0.0[src]
impl Debug for SettingsSchema
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impl Eq for SettingsSchema
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impl Hash for SettingsSchema
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fn hash<__H: Hasher>(&self, state: &mut __H)
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fn hash_slice<H>(data: &[Self], state: &mut H) where
H: Hasher,
1.3.0[src]
H: Hasher,
impl Ord for SettingsSchema
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fn cmp(&self, other: &SettingsSchema) -> Ordering
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#[must_use]
fn max(self, other: Self) -> Self
1.21.0[src]
#[must_use]
fn min(self, other: Self) -> Self
1.21.0[src]
#[must_use]
fn clamp(self, min: Self, max: Self) -> Self
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impl PartialEq<SettingsSchema> for SettingsSchema
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fn eq(&self, other: &SettingsSchema) -> bool
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fn ne(&self, other: &SettingsSchema) -> bool
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impl PartialOrd<SettingsSchema> for SettingsSchema
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fn partial_cmp(&self, other: &SettingsSchema) -> Option<Ordering>
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fn lt(&self, other: &SettingsSchema) -> bool
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fn le(&self, other: &SettingsSchema) -> bool
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fn gt(&self, other: &SettingsSchema) -> bool
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fn ge(&self, other: &SettingsSchema) -> bool
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impl StaticType for SettingsSchema
fn static_type() -> Type
impl StructuralEq for SettingsSchema
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impl StructuralPartialEq for SettingsSchema
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Auto Trait Implementations
impl RefUnwindSafe for SettingsSchema
impl !Send for SettingsSchema
impl !Sync for SettingsSchema
impl Unpin for SettingsSchema
impl UnwindSafe for SettingsSchema
Blanket Implementations
impl<T> Any for T where
T: 'static + ?Sized,
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T: 'static + ?Sized,
impl<T> Borrow<T> for T where
T: ?Sized,
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T: ?Sized,
impl<T> BorrowMut<T> for T where
T: ?Sized,
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T: ?Sized,
fn borrow_mut(&mut self) -> &mut T
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impl<T> From<T> for T
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impl<T, U> Into<U> for T where
U: From<T>,
[src]
U: From<T>,
impl<'a, T> ToGlibContainerFromSlice<'a, *const GList> for T where
T: GlibPtrDefault + ToGlibPtr<'a, <T as GlibPtrDefault>::GlibType>,
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T: GlibPtrDefault + ToGlibPtr<'a, <T as GlibPtrDefault>::GlibType>,
type Storage = (Option<List>, Vec<Stash<'a, <T as GlibPtrDefault>::GlibType, T>>)
fn to_glib_none_from_slice(
t: &'a [T]
) -> (*const GList, <T as ToGlibContainerFromSlice<'a, *const GList>>::Storage)
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t: &'a [T]
) -> (*const GList, <T as ToGlibContainerFromSlice<'a, *const GList>>::Storage)
fn to_glib_container_from_slice(
_t: &'a [T]
) -> (*const GList, <T as ToGlibContainerFromSlice<'a, *const GList>>::Storage)
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_t: &'a [T]
) -> (*const GList, <T as ToGlibContainerFromSlice<'a, *const GList>>::Storage)
fn to_glib_full_from_slice(_t: &[T]) -> *const GList
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impl<'a, T> ToGlibContainerFromSlice<'a, *const GPtrArray> for T where
T: GlibPtrDefault + ToGlibPtr<'a, <T as GlibPtrDefault>::GlibType>,
[src]
T: GlibPtrDefault + ToGlibPtr<'a, <T as GlibPtrDefault>::GlibType>,
type Storage = (Option<PtrArray>, Vec<Stash<'a, <T as GlibPtrDefault>::GlibType, T>>)
fn to_glib_none_from_slice(
t: &'a [T]
) -> (*const GPtrArray, <T as ToGlibContainerFromSlice<'a, *const GPtrArray>>::Storage)
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t: &'a [T]
) -> (*const GPtrArray, <T as ToGlibContainerFromSlice<'a, *const GPtrArray>>::Storage)
fn to_glib_container_from_slice(
_t: &'a [T]
) -> (*const GPtrArray, <T as ToGlibContainerFromSlice<'a, *const GPtrArray>>::Storage)
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_t: &'a [T]
) -> (*const GPtrArray, <T as ToGlibContainerFromSlice<'a, *const GPtrArray>>::Storage)
fn to_glib_full_from_slice(_t: &[T]) -> *const GPtrArray
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impl<'a, T> ToGlibContainerFromSlice<'a, *mut GArray> for T where
T: GlibPtrDefault + ToGlibPtr<'a, <T as GlibPtrDefault>::GlibType>,
[src]
T: GlibPtrDefault + ToGlibPtr<'a, <T as GlibPtrDefault>::GlibType>,
type Storage = (Option<Array>, Vec<Stash<'a, <T as GlibPtrDefault>::GlibType, T>>)
fn to_glib_none_from_slice(
t: &'a [T]
) -> (*mut GArray, <T as ToGlibContainerFromSlice<'a, *mut GArray>>::Storage)
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t: &'a [T]
) -> (*mut GArray, <T as ToGlibContainerFromSlice<'a, *mut GArray>>::Storage)
fn to_glib_container_from_slice(
t: &'a [T]
) -> (*mut GArray, <T as ToGlibContainerFromSlice<'a, *mut GArray>>::Storage)
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t: &'a [T]
) -> (*mut GArray, <T as ToGlibContainerFromSlice<'a, *mut GArray>>::Storage)
fn to_glib_full_from_slice(t: &[T]) -> *mut GArray
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impl<'a, T> ToGlibContainerFromSlice<'a, *mut GList> for T where
T: GlibPtrDefault + ToGlibPtr<'a, <T as GlibPtrDefault>::GlibType>,
[src]
T: GlibPtrDefault + ToGlibPtr<'a, <T as GlibPtrDefault>::GlibType>,
type Storage = (Option<List>, Vec<Stash<'a, <T as GlibPtrDefault>::GlibType, T>>)
fn to_glib_none_from_slice(
t: &'a [T]
) -> (*mut GList, <T as ToGlibContainerFromSlice<'a, *mut GList>>::Storage)
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t: &'a [T]
) -> (*mut GList, <T as ToGlibContainerFromSlice<'a, *mut GList>>::Storage)
fn to_glib_container_from_slice(
t: &'a [T]
) -> (*mut GList, <T as ToGlibContainerFromSlice<'a, *mut GList>>::Storage)
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t: &'a [T]
) -> (*mut GList, <T as ToGlibContainerFromSlice<'a, *mut GList>>::Storage)
fn to_glib_full_from_slice(t: &[T]) -> *mut GList
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impl<'a, T> ToGlibContainerFromSlice<'a, *mut GPtrArray> for T where
T: GlibPtrDefault + ToGlibPtr<'a, <T as GlibPtrDefault>::GlibType>,
[src]
T: GlibPtrDefault + ToGlibPtr<'a, <T as GlibPtrDefault>::GlibType>,
type Storage = (Option<PtrArray>, Vec<Stash<'a, <T as GlibPtrDefault>::GlibType, T>>)
fn to_glib_none_from_slice(
t: &'a [T]
) -> (*mut GPtrArray, <T as ToGlibContainerFromSlice<'a, *mut GPtrArray>>::Storage)
[src]
t: &'a [T]
) -> (*mut GPtrArray, <T as ToGlibContainerFromSlice<'a, *mut GPtrArray>>::Storage)
fn to_glib_container_from_slice(
t: &'a [T]
) -> (*mut GPtrArray, <T as ToGlibContainerFromSlice<'a, *mut GPtrArray>>::Storage)
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t: &'a [T]
) -> (*mut GPtrArray, <T as ToGlibContainerFromSlice<'a, *mut GPtrArray>>::Storage)
fn to_glib_full_from_slice(t: &[T]) -> *mut GPtrArray
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impl<T> ToOwned for T where
T: Clone,
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T: Clone,
type Owned = T
The resulting type after obtaining ownership.
fn to_owned(&self) -> T
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fn clone_into(&self, target: &mut T)
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impl<T> ToValue for T where
T: SetValue + ?Sized,
[src]
T: SetValue + ?Sized,
impl<T, U> TryFrom<U> for T where
U: Into<T>,
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U: Into<T>,
type Error = Infallible
The type returned in the event of a conversion error.
fn try_from(value: U) -> Result<T, <T as TryFrom<U>>::Error>
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impl<T, U> TryInto<U> for T where
U: TryFrom<T>,
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U: TryFrom<T>,