MetaInfoDescription
- class pyopenms.MetaInfoDescription
Bases:
objectCython implementation of _MetaInfoDescription
- Original C++ documentation is available here
– Inherits from [‘MetaInfoInterface’]
- __init__()
Overload:
- __init__(self) None
Overload:
- __init__(self, in_0: MetaInfoDescription) None
Methods
Overload:
clearMetaInfo(self)Removes all meta values
getDataProcessing(self)Returns a reference to the description of the applied processing
getKeys(self, keys)Fills the given vector with a list of all keys for which a value is set
getMetaValue(self, in_0)Returns the value corresponding to a string, or
getName(self)Returns the name of the peak annotations
isMetaEmpty(self)Returns if the MetaInfo is empty
metaRegistry(self)Returns a reference to the MetaInfoRegistry
metaValueExists(self, in_0)Returns whether an entry with the given name exists
removeMetaValue(self, in_0)Removes the DataValue corresponding to name if it exists
setDataProcessing(self, in_0)Sets the description of the applied processing
setMetaValue(self, in_0, in_1)Sets the DataValue corresponding to a name
setName(self, name)Sets the name of the peak annotations
- clearMetaInfo(self) None
Removes all meta values
- getDataProcessing(self) List[DataProcessing]
Returns a reference to the description of the applied processing
- getKeys(self, keys: List[bytes]) None
Fills the given vector with a list of all keys for which a value is set
- getMetaValue(self, in_0: Union[bytes, str, String]) Union[int, float, bytes, str, List[int], List[float], List[bytes]]
Returns the value corresponding to a string, or
- isMetaEmpty(self) bool
Returns if the MetaInfo is empty
- metaRegistry(self) MetaInfoRegistry
Returns a reference to the MetaInfoRegistry
- metaValueExists(self, in_0: Union[bytes, str, String]) bool
Returns whether an entry with the given name exists
- removeMetaValue(self, in_0: Union[bytes, str, String]) None
Removes the DataValue corresponding to name if it exists
- setDataProcessing(self, in_0: List[DataProcessing]) None
Sets the description of the applied processing