debug
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@ -72,9 +72,10 @@ class ControllerDB:
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# list_dct = [{'133': ['1.4.4.1']}]
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# list_dct = [{'133': ['1.4.4.1']}]
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# list_dct = [{'2': ['1.1.3']}]
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# list_dct = [{'2': ['1.1.3']}]
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# list_dct = [{'135': ['1.3.2.1']}]
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# list_dct = [{'135': ['1.3.2.1']}]
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list_dct = [{'79': ['2.1.3.4']}]
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# list_dct = [{'79': ['2.1.3.4']}]
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# list_dct = [{'99': ['1.3.3']}]
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# list_dct = [{'99': ['1.3.3']}]
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# list_dct = [{'41': ['1.4.5']}]
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# list_dct = [{'41': ['1.4.5']}]
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# list_dct = [{'168': ['1.1.2']}]
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# fill g_bom
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# fill g_bom
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BomNodes = pd.read_csv('BomNodes.csv', index_col=0)
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BomNodes = pd.read_csv('BomNodes.csv', index_col=0)
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29
firm.py
29
firm.py
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@ -35,13 +35,12 @@ class FirmAgent(ap.Agent):
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self.dct_prod_up_prod_stat[prod] = {
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self.dct_prod_up_prod_stat[prod] = {
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# (Normal / Disrupted / Removed, time step)
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# (Normal / Disrupted / Removed, time step)
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'p_stat': [('N', 0)],
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'p_stat': [('N', 0)],
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# have or have no supply
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'supply': dict.fromkeys(prod.a_predecessors(), True),
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# supply for each component and respective disrupted supplier
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# supply for each component and respective disrupted supplier
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# lst_disrupt_firm is refreshed to [] at each update
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# set_disrupt_firm is refreshed to empty at each update
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's_stat': dict.fromkeys(prod.a_predecessors(),
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's_stat': {up_prod: {'stat': True,
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{'stat': True,
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'set_disrupt_firm': set()}
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'lst_disrupt_firm': []})
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for up_prod in prod.a_predecessors()}
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# Note: do not use fromkeys as it's a shallow copy
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}
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}
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# init extra capacity (self para)
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# init extra capacity (self para)
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@ -76,12 +75,9 @@ class FirmAgent(ap.Agent):
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if disrupted_prod in \
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if disrupted_prod in \
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customer.dct_prod_up_prod_stat[
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customer.dct_prod_up_prod_stat[
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prod]['s_stat'].keys():
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prod]['s_stat'].keys():
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if self not in customer.dct_prod_up_prod_stat[
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prod]['s_stat'][disrupted_prod][
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'lst_disrupt_firm']:
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customer.dct_prod_up_prod_stat[
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customer.dct_prod_up_prod_stat[
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prod]['s_stat'][disrupted_prod][
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prod]['s_stat'][disrupted_prod][
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'lst_disrupt_firm'].append(self)
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'set_disrupt_firm'].add(self)
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print(f"{self.name} disrupt {customer.name}'s "
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print(f"{self.name} disrupt {customer.name}'s "
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f"{prod.code} due to {disrupted_prod.code}")
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f"{prod.code} due to {disrupted_prod.code}")
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# remove edge to customer
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# remove edge to customer
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@ -93,7 +89,7 @@ class FirmAgent(ap.Agent):
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# self's component exists disrupted supplier
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# self's component exists disrupted supplier
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num_lost = \
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num_lost = \
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len(self.dct_prod_up_prod_stat[prod]['s_stat']
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len(self.dct_prod_up_prod_stat[prod]['s_stat']
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[disrupted_up_prod]['lst_disrupt_firm'])
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[disrupted_up_prod]['set_disrupt_firm'])
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num_remain = \
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num_remain = \
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len([u for u, _, _, d in
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len([u for u, _, _, d in
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self.firm_network.graph.in_edges(self.get_firm_network_node(),
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self.firm_network.graph.in_edges(self.get_firm_network_node(),
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@ -117,7 +113,8 @@ class FirmAgent(ap.Agent):
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if status != 'D':
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if status != 'D':
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self.dct_prod_up_prod_stat[
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self.dct_prod_up_prod_stat[
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prod]['p_stat'].append(('D', self.model.t))
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prod]['p_stat'].append(('D', self.model.t))
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print(f"{self.name}'s {prod.code} turn to D status")
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print(f"{self.name}'s {prod.code} turn to D status due to "
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f"disrupted supplier of {disrupted_up_prod.code}")
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def seek_alt_supply(self, product):
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def seek_alt_supply(self, product):
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# para product is the product that self is seeking
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# para product is the product that self is seeking
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@ -283,9 +280,9 @@ class FirmAgent(ap.Agent):
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for prod in down_firm.dct_prod_up_prod_stat.keys():
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for prod in down_firm.dct_prod_up_prod_stat.keys():
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if product in down_firm.dct_prod_up_prod_stat[
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if product in down_firm.dct_prod_up_prod_stat[
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prod]['supply'].keys():
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prod]['s_stat'].keys():
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down_firm.dct_prod_up_prod_stat[
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down_firm.dct_prod_up_prod_stat[
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prod]['supply'][product] = True
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prod]['s_stat'][product]['stat'] = True
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down_firm.dct_prod_up_prod_stat[
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down_firm.dct_prod_up_prod_stat[
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prod]['p_stat'].append(('N', self.model.t))
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prod]['p_stat'].append(('N', self.model.t))
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del down_firm.dct_n_trial_up_prod_disrupted[product]
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del down_firm.dct_n_trial_up_prod_disrupted[product]
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@ -317,10 +314,10 @@ class FirmAgent(ap.Agent):
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if ts != self.model.t:
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if ts != self.model.t:
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self.dct_prod_up_prod_stat[prod]['p_stat'].append(
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self.dct_prod_up_prod_stat[prod]['p_stat'].append(
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(status, self.model.t))
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(status, self.model.t))
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# refresh lst_disrupt_firm
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# refresh set_disrupt_firm
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for up_prod in self.dct_prod_up_prod_stat[prod]['s_stat'].keys():
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for up_prod in self.dct_prod_up_prod_stat[prod]['s_stat'].keys():
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self.dct_prod_up_prod_stat[prod][
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self.dct_prod_up_prod_stat[prod][
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's_stat'][up_prod]['lst_disrupt_firm'] = []
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's_stat'][up_prod]['set_disrupt_firm'] = set()
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def get_firm_network_node(self):
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def get_firm_network_node(self):
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return self.firm_network.positions[self]
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return self.firm_network.positions[self]
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6
model.py
6
model.py
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@ -406,7 +406,7 @@ class Model(ap.Model):
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for up_prod in firm.dct_prod_up_prod_stat[prod][
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for up_prod in firm.dct_prod_up_prod_stat[prod][
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's_stat'].keys():
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's_stat'].keys():
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if firm.dct_prod_up_prod_stat[prod][
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if firm.dct_prod_up_prod_stat[prod][
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's_stat'][up_prod]['lst_disrupt_firm']:
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's_stat'][up_prod]['set_disrupt_firm']:
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firm.disrupt_cus_prod(prod, up_prod)
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firm.disrupt_cus_prod(prod, up_prod)
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for n_trial in range(self.int_n_max_trial):
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for n_trial in range(self.int_n_max_trial):
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@ -421,9 +421,9 @@ class Model(ap.Model):
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status = firm.dct_prod_up_prod_stat[prod]['p_stat'][-1][0]
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status = firm.dct_prod_up_prod_stat[prod]['p_stat'][-1][0]
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if status == 'D':
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if status == 'D':
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for supply in firm.dct_prod_up_prod_stat[
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for supply in firm.dct_prod_up_prod_stat[
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prod]['supply'].keys():
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prod]['s_stat'].keys():
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if not firm.dct_prod_up_prod_stat[
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if not firm.dct_prod_up_prod_stat[
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prod]['supply'][supply]:
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prod]['s_stat'][supply]['stat']:
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lst_seek_prod.append(supply)
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lst_seek_prod.append(supply)
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# commmon supply only seek once
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# commmon supply only seek once
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lst_seek_prod = list(set(lst_seek_prod))
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lst_seek_prod = list(set(lst_seek_prod))
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23
test.ipynb
23
test.ipynb
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@ -553,6 +553,29 @@
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"G.has_edge(1, 2, 1)"
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"G.has_edge(1, 2, 1)"
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]
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]
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},
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},
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{
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"cell_type": "code",
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"execution_count": 17,
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"metadata": {},
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"outputs": [
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{
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"name": "stdout",
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"output_type": "stream",
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"text": [
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"1\n"
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]
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}
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],
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"source": [
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"s = set()\n",
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"s.add(1)\n",
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"s.add(2)\n",
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"s.add(1)\n",
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"len(s)\n",
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"if s:\n",
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" print(1)"
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]
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},
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{
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{
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"cell_type": "code",
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"cell_type": "code",
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"execution_count": null,
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"execution_count": null,
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