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Rename stuff to patient/therapist
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@ -17,31 +17,31 @@ class Matchmaker:
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ABN 41 687 119 230, published under the BSD 3-Clause Licence
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ABN 41 687 119 230, published under the BSD 3-Clause Licence
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"""
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"""
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def engage(self, patient, therapist, for_real):
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def pair(self, patient, therapist, for_real):
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self.wives.access(patient, therapist, for_real)
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self.paired_therapists.access(patient, therapist, for_real)
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self.husbands.access(therapist, patient, for_real)
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self.paired_patients.access(therapist, patient, for_real)
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def dump(self, patient, therapist, for_real):
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def unpair(self, patient, therapist, for_real):
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self.wives.delete(patient, for_real)
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self.paired_therapists.delete(patient, for_real)
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self.husbands.delete(therapist, for_real)
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self.paired_patients.delete(therapist, for_real)
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self.unengaged.append(patient, for_real)
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self.unpaired.append(patient, for_real)
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def propose(self, patient, therapist, for_real):
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def request_therapist(self, patient, therapist, for_real):
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(fiance,), free = self.husbands.read(therapist)
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(requested_therapist,), free = self.paired_patients.read(therapist)
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engaged = 1 - free
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paired = 1 - free
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rank_man = self.t_exps[therapist][patient]
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rank_patient = self.t_exps[therapist][patient]
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(rank_fiance,), worst_fiance = self.t_exps[therapist].read(engaged*fiance)
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(rank_requested_therapist,), worst_therapist = self.t_exps[therapist].read(paired*requested_therapist)
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leaving = self.int_type(rank_man) < self.int_type(rank_fiance)
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leaving = self.int_type(rank_patient) < self.int_type(rank_requested_therapist)
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if self.M < self.N:
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if self.M < self.N:
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leaving = 1 - (1 - leaving) * (1 - worst_fiance)
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leaving = 1 - (1 - leaving) * (1 - worst_therapist)
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print_str('woman: %s, man: %s, fiance: %s, worst fiance: %s, ',
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print_str('therapist: %s, patient: %s, requested therapist: %s, worst therapist: %s, ',
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*(x.reveal() for x in (therapist, patient, fiance, worst_fiance)))
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*(x.reveal() for x in (therapist, patient, requested_therapist, worst_therapist)))
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print_ln('rank man: %s, rank fiance: %s, engaged: %s, leaving: %s',
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print_ln('rank patient: %s, rank requested therapist: %s, paired: %s, leaving: %s',
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*(x.reveal() for x in
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*(x.reveal() for x in
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(rank_man, rank_fiance, engaged, leaving)))
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(rank_patient, rank_requested_therapist, paired, leaving)))
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self.dump(fiance, therapist, engaged * leaving * for_real)
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self.unpair(requested_therapist, therapist, paired * leaving * for_real)
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self.engage(patient, therapist, (1 - (engaged * (1 - leaving))) * for_real)
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self.pair(patient, therapist, (1 - (paired * (1 - leaving))) * for_real)
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self.unengaged.append(patient, engaged * (1 - leaving) * for_real)
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self.unpaired.append(patient, paired * (1 - leaving) * for_real)
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def match(self, n_loops=None):
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def match(self, n_loops=None):
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if n_loops is None or n_loops > self.N * self.M:
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if n_loops is None or n_loops > self.N * self.M:
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@ -50,45 +50,45 @@ class Matchmaker:
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else:
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else:
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loop = for_range(n_loops)
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loop = for_range(n_loops)
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init_rounds = n_loops / self.M
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init_rounds = n_loops / self.M
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self.wives = \
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self.paired_therapists = \
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self.oram_type(self.N, entry_size=log2(self.N),
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self.oram_type(self.N, entry_size=log2(self.N),
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init_rounds=0, value_type=self.basic_type)
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init_rounds=0, value_type=self.basic_type)
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self.husbands = \
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self.paired_patients = \
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self.oram_type(self.N, entry_size=log2(self.N),
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self.oram_type(self.N, entry_size=log2(self.N),
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init_rounds=0, value_type=self.basic_type)
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init_rounds=0, value_type=self.basic_type)
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propose = \
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request_therapist = \
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self.oram_type(self.N, entry_size=log2(self.N),
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self.oram_type(self.N, entry_size=log2(self.N),
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init_rounds=0, value_type=self.basic_type)
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init_rounds=0, value_type=self.basic_type)
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self.unengaged = OStack(self.N, oram_type=self.oram_type,
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self.unpaired = OStack(self.N, oram_type=self.oram_type,
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int_type=self.int_type)
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int_type=self.int_type)
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@for_range(init_rounds)
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@for_range(init_rounds)
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def f(i):
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def _(i):
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self.unengaged.append(i)
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self.unpaired.append(i)
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rounds = types.MemValue(types.regint(0))
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rounds = types.MemValue(types.regint(0))
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@loop
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@loop
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def f(i=None):
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def _(i=None):
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rounds.iadd(1)
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rounds.iadd(1)
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time()
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time()
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patient = self.unengaged.pop()
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patient = self.unpaired.pop()
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pref = self.int_type(propose[patient])
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pref = self.int_type(request_therapist[patient])
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if self.M < self.N and n_loops is None:
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if self.M < self.N and n_loops is None:
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@if_((pref == self.M).reveal())
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@if_((pref == self.M).reveal())
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def f():
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def _():
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print_ln('run out of acceptable women')
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print_ln('run out of acceptable therapists')
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crash()
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crash()
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propose[patient] = pref + 1
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request_therapist[patient] = pref + 1
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self.propose(patient, self.p_cases[patient][pref], True)
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self.request_therapist(patient, self.p_cases[patient][pref], True)
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print_ln('man: %s, pref: %s, left: %s',
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print_ln('patient: %s, pref: %s, left: %s',
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*(x.reveal() for x in (patient, pref, self.unengaged.size)))
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*(x.reveal() for x in (patient, pref, self.unpaired.size)))
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return types.regint((self.unengaged.size > 0).reveal())
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return types.regint((self.unpaired.size > 0).reveal())
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print_ln('%s rounds', rounds)
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print_ln('%s rounds', rounds)
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@for_range(init_rounds)
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@for_range(init_rounds)
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def f(i):
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def _(i):
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types.cint(i).print_reg('wife')
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types.cint(i).print_reg('ther')
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self.husbands[i].reveal().print_reg('husb')
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self.paired_patients[i].reveal().print_reg('pati')
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def __init__(self, N, p_cases, t_exps, M=1, reverse=False,
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def __init__(self, N, p_cases, t_exps, M=1, reverse=False,
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oram_type=OptimalORAM, int_type=types.sint):
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oram_type=OptimalORAM, int_type=types.sint):
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@ -111,8 +111,8 @@ MATCHING_SIZE = 2
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""" Assembling lists """
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""" Assembling lists """
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p_shares = Matrix(rows=PLAYERS, columns=MATCHING_SIZE, value_type=sint)
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p_shares = Matrix(rows=PLAYERS, columns=MATCHING_SIZE, value_type=types.sint)
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t_shares = Matrix(rows=PLAYERS, columns=MATCHING_SIZE, value_type=sint)
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t_shares = Matrix(rows=PLAYERS, columns=MATCHING_SIZE, value_type=types.sint)
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# Fill data from players into the patient matrix
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# Fill data from players into the patient matrix
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# The matrix is ordered as m[row:player][col:share]
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# The matrix is ordered as m[row:player][col:share]
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