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			204 lines
		
	
	
		
			6.9 KiB
		
	
	
	
		
			Cython
		
	
	
	
	
	
			
		
		
	
	
			204 lines
		
	
	
		
			6.9 KiB
		
	
	
	
		
			Cython
		
	
	
	
	
	
# cython: infer_types=True
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# coding: utf-8
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from __future__ import unicode_literals
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from cpython.ref cimport PyObject, Py_INCREF, Py_XDECREF
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from cymem.cymem cimport Pool
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from thinc.typedefs cimport weight_t
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from collections import defaultdict, OrderedDict
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import ujson
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from .. import util
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from ..structs cimport TokenC
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from .stateclass cimport StateClass
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from ..attrs cimport TAG, HEAD, DEP, ENT_TYPE, ENT_IOB
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from ..typedefs cimport attr_t
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cdef weight_t MIN_SCORE = -90000
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class OracleError(Exception):
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    pass
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cdef void* _init_state(Pool mem, int length, void* tokens) except NULL:
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    cdef StateClass st = StateClass.init(<const TokenC*>tokens, length)
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    Py_INCREF(st)
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    return <void*>st
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cdef class TransitionSystem:
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    def __init__(self, StringStore string_table, labels_by_action):
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        self.mem = Pool()
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        self.strings = string_table
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        self.n_moves = 0
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        self._size = 100
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        self.c = <Transition*>self.mem.alloc(self._size, sizeof(Transition))
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        for action, label_strs in labels_by_action.items():
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            for label_str in label_strs:
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                self.add_action(int(action), label_str)
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        self.root_label = self.strings.add('ROOT')
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        self.init_beam_state = _init_state
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    def __reduce__(self):
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        labels_by_action = OrderedDict()
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        cdef Transition t
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        for trans in self.c[:self.n_moves]:
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            label_str = self.strings[trans.label]
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            labels_by_action.setdefault(trans.move, []).append(label_str)
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        return (self.__class__,
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                (self.strings, labels_by_action),
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                None, None)
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    def init_batch(self, docs):
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        cdef StateClass state
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        states = []
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        offset = 0
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        for doc in docs:
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            state = StateClass(doc, offset=offset)
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            self.initialize_state(state.c)
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            states.append(state)
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            offset += len(doc)
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        return states
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    def get_oracle_sequence(self, doc, GoldParse gold):
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        cdef Pool mem = Pool()
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        costs = <float*>mem.alloc(self.n_moves, sizeof(float))
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        is_valid = <int*>mem.alloc(self.n_moves, sizeof(int))
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        cdef StateClass state = StateClass(doc, offset=0)
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        self.initialize_state(state.c)
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        history = []
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        while not state.is_final():
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            self.set_costs(is_valid, costs, state, gold)
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            for i in range(self.n_moves):
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                if is_valid[i] and costs[i] <= 0:
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                    action = self.c[i]
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                    history.append(i)
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                    action.do(state.c, action.label)
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                    break
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            else:
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                print(gold.words)
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                print(gold.ner)
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                print(history)
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                raise ValueError("Could not find gold move")
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        return history
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    cdef int initialize_state(self, StateC* state) nogil:
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        pass
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    cdef int finalize_state(self, StateC* state) nogil:
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        pass
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    def finalize_doc(self, doc):
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        pass
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    def preprocess_gold(self, GoldParse gold):
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        raise NotImplementedError
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    def is_gold_parse(self, StateClass state, GoldParse gold):
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        raise NotImplementedError
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    cdef Transition lookup_transition(self, object name) except *:
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        raise NotImplementedError
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    cdef Transition init_transition(self, int clas, int move, attr_t label) except *:
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        raise NotImplementedError
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    def is_valid(self, StateClass stcls, move_name):
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        action = self.lookup_transition(move_name)
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        if action.move == 0:
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            return False
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        return action.is_valid(stcls.c, action.label)
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    cdef int set_valid(self, int* is_valid, const StateC* st) nogil:
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        cdef int i
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        for i in range(self.n_moves):
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            is_valid[i] = self.c[i].is_valid(st, self.c[i].label)
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    cdef int set_costs(self, int* is_valid, weight_t* costs,
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                       StateClass stcls, GoldParse gold) except -1:
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        cdef int i
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        self.set_valid(is_valid, stcls.c)
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        cdef int n_gold = 0
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        for i in range(self.n_moves):
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            if is_valid[i]:
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                costs[i] = self.c[i].get_cost(stcls, &gold.c, self.c[i].label)
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                n_gold += costs[i] <= 0
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            else:
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                costs[i] = 9000
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        if n_gold <= 0:
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            print(gold.words)
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            print(gold.ner)
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            print([gold.c.ner[i].clas for i in range(gold.length)])
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            print([gold.c.ner[i].move for i in range(gold.length)])
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            print([gold.c.ner[i].label for i in range(gold.length)])
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            print("Self labels", [self.c[i].label for i in range(self.n_moves)])
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            raise ValueError(
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                "Could not find a gold-standard action to supervise "
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                "the entity recognizer\n"
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                "The transition system has %d actions." % (self.n_moves))
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    def get_class_name(self, int clas):
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        act = self.c[clas]
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        return self.move_name(act.move, act.label)
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    def add_action(self, int action, label_name):
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        cdef attr_t label_id
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        if not isinstance(label_name, int) and \
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        not isinstance(label_name, long):
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            label_id = self.strings.add(label_name)
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        else:
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            label_id = label_name
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        # Check we're not creating a move we already have, so that this is
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        # idempotent
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        for trans in self.c[:self.n_moves]:
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            if trans.move == action and trans.label == label_id:
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                return 0
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        if self.n_moves >= self._size:
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            self._size *= 2
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            self.c = <Transition*>self.mem.realloc(self.c, self._size * sizeof(self.c[0]))
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        self.c[self.n_moves] = self.init_transition(self.n_moves, action, label_id)
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        assert self.c[self.n_moves].label == label_id
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        self.n_moves += 1
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        return 1
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    def to_disk(self, path, **exclude):
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        with path.open('wb') as file_:
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            file_.write(self.to_bytes(**exclude))
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    def from_disk(self, path, **exclude):
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        with path.open('rb') as file_:
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            byte_data = file_.read()
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        self.from_bytes(byte_data, **exclude)
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        return self
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    def to_bytes(self, **exclude):
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        transitions = []
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        for trans in self.c[:self.n_moves]:
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            transitions.append({
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                'clas': trans.clas,
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                'move': trans.move,
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                'label': self.strings[trans.label],
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                'name': self.move_name(trans.move, trans.label)
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            })
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        serializers = {
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            'transitions': lambda: ujson.dumps(transitions),
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            'strings': lambda: self.strings.to_bytes()
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        }
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        return util.to_bytes(serializers, exclude)
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    def from_bytes(self, bytes_data, **exclude):
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        transitions = []
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        deserializers = {
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            'transitions': lambda b: transitions.extend(ujson.loads(b)),
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            'strings': lambda b: self.strings.from_bytes(b)
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        }
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        msg = util.from_bytes(bytes_data, deserializers, exclude)
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        for trans in transitions:
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            self.add_action(trans['move'], trans['label'])
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        return self
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