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153 lines
4.3 KiB
Cython
153 lines
4.3 KiB
Cython
from __future__ import unicode_literals
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from cymem.cymem cimport Pool
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from thinc.typedefs cimport class_t
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from thinc.typedefs cimport weight_t
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from ._state cimport begin_entity
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from ._state cimport end_entity
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from ._state cimport entity_is_open
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ACTION_NAMES = ['' for _ in range(N_ACTIONS)]
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ACTION_NAMES[<int>MISSING] = '?'
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ACTION_NAMES[<int>SHIFT] = 'S'
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ACTION_NAMES[<int>REDUCE] = 'R'
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ACTION_NAMES[<int>OUT] = 'O'
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cdef int set_accept_if_oracle(Move* moves, int n, State* s,
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int* g_starts, int* g_ends, int* g_labels) except 0:
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# If curr entity: (O invalid)
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# if cost is not sunk (start matches, end is i-1 or greater
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# - If i-1 == gold.end --> R=True, S=False
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# - Shift if end >= i --> S=True, R=False
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# else
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# - If i == gold.start --> R=True, S=False
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# - Else --> R=True, S=True
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# Else (R invalid):
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# if start == gold.start: S=True, O=False
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# else: O=True, S=False
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if entity_is_open(s):
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g_start = g_starts[s.curr.start]
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g_end = g_ends[s.curr.start]
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accept_o = False
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if g_start == s.curr.start and g_end == s.i:
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accept_r = True
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accept_s = False
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elif g_start == s.curr.start and g_end > s.i:
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accept_s = True
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s_label = s.curr.label
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accept_r = False
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elif g_starts[s.i] == s.i:
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accept_r = True
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accept_s = False
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else:
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accept_r = True
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accept_s = True
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s_label = s.curr.label
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else:
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accept_r = False
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if g_starts[s.i] == s.i:
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accept_s = True
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s_label = g_labels[s.i]
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accept_o = False
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else:
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accept_o = True
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accept_s = False
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n_accept = 0
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moves[0].accept = False
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for i in range(1, n):
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m = &moves[i]
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if m.action == SHIFT:
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m.accept = accept_s and m.label == s_label
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elif m.action == REDUCE:
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m.accept = accept_r
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elif m.action == OUT:
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m.accept = accept_o
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n_accept += m.accept
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assert n_accept != 0
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return n_accept
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cdef int set_accept_if_valid(Move* moves, int n, State* s) except 0:
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cdef int i
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cdef bint open_ent = entity_is_open(s)
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cdef int n_accept = 0
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moves[0].accept = False
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for i in range(1, n):
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if moves[i].action == SHIFT:
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moves[i].accept = moves[i].label == s.curr.label or not entity_is_open(s)
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elif moves[i].action == REDUCE:
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moves[i].accept = open_ent
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elif moves[i].action == OUT:
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moves[i].accept = not open_ent
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n_accept += moves[i].accept
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return n_accept
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cdef Move* best_accepted(Move* moves, weight_t* scores, int n) except NULL:
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cdef int first_accept = -1
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for first_accept in range(1, n):
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if moves[first_accept].accept:
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break
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else:
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raise StandardError
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assert first_accept != -1
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cdef int best = first_accept
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cdef weight_t score = scores[first_accept-1]
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cdef int i
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for i in range(first_accept+1, n):
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if moves[i].accept and scores[i-1] > score:
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best = i
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score = scores[i-1]
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return &moves[best]
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cdef int transition(State *s, Move* move) except -1:
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s.tags[s.i] = move.clas
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if move.action == OUT:
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s.i += 1
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elif move.action == SHIFT:
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if not entity_is_open(s):
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s.curr.start = s.i
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s.curr.label = move.label
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s.i += 1
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elif move.action == REDUCE:
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s.curr.end = s.i
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s.ents[s.j] = s.curr
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s.j += 1
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s.curr.start = 0
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s.curr.label = -1
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s.curr.end = 0
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else:
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raise ValueError(move.action)
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def get_n_moves(n_tags):
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return 1 + 1 + 1 + n_tags
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cdef int fill_moves(Move* moves, int n, list entity_types) except -1:
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cdef Move* m
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label_names = {'-': 0}
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# Reserve class 0
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cdef int i = 0
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moves[i].clas = i
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moves[i].action = MISSING
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moves[i].label = 0
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i += 1
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for entity_type in entity_types:
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moves[i].action = SHIFT
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moves[i].label = label_names.setdefault(entity_type, len(label_names))
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moves[i].clas = i
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i += 1
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moves[i].clas = i
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moves[i].action = OUT
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moves[i].label = 0
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i += 1
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moves[i].action = REDUCE
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moves[i].clas = i
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moves[i].label = 0
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i += 1
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