Use sql batch to optimize

This commit is contained in:
WQY\qiong
2023-03-16 08:30:04 +08:00
parent 1d2ac09c92
commit 04a58bb864
29 changed files with 145 additions and 105 deletions

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@@ -13,7 +13,7 @@ from .s8_tags import inp_in_tag_new
from .s9_demands import inp_in_demand_new from .s9_demands import inp_in_demand_new
from .s10_status import inp_in_status_new from .s10_status import inp_in_status_new
from .s11_patterns import inp_in_pattern_new from .s11_patterns import inp_in_pattern_new
from .s12_curves import inp_in_curve_new from .s12_curves import CURVE_TYPE_PUMP, inp_in_curve_new
from .s13_controls import inp_in_control_new from .s13_controls import inp_in_control_new
from .s14_rules import inp_in_rule_new from .s14_rules import inp_in_rule_new
from .s15_energy import inp_in_energy_new from .s15_energy import inp_in_energy_new
@@ -103,10 +103,12 @@ _level_4 = [
VERTICES, VERTICES,
] ]
def _get_offset(inp: str) -> tuple[dict[str, list[int]], bool]:
def _get_offset(inp: str) -> dict[str, list[int]]:
offset: dict[str, list[int]] = {} offset: dict[str, list[int]] = {}
current = ''
demand_outside = False
with open(inp) as f: with open(inp) as f:
while True: while True:
line = f.readline() line = f.readline()
@@ -120,20 +122,43 @@ def _get_offset(inp: str) -> dict[str, list[int]]:
if s not in offset: if s not in offset:
offset[s] = [] offset[s] = []
offset[s].append(f.tell()) offset[s].append(f.tell())
current = s
break break
elif line != '' and line.startswith(';') == False:
if current == DEMANDS:
demand_outside = True
return offset return (offset, demand_outside)
def print_time(desc: str) -> None: def print_time(desc: str) -> datetime.datetime:
time = datetime.datetime.now().strftime('%Y-%m-%d %H:%M:%S') now = datetime.datetime.now()
time = now.strftime('%Y-%m-%d %H:%M:%S')
print(f"{time}: {desc}") print(f"{time}: {desc}")
return now
class SQLBatch:
def __init__(self, project: str, count: int = 100) -> None:
self.batch: list[str] = []
self.project = project
self.count = count
def add(self, sql: str) -> None:
self.batch.append(sql)
if len(self.batch) == self.count:
self.flush()
def flush(self) -> None:
write(self.project, ''.join(self.batch))
self.batch.clear()
def parse_file(project: str, inp: str) -> None: def parse_file(project: str, inp: str) -> None:
print_time(f"start reading {inp}...") start = print_time(f'Start reading "{inp}"...')
offset = _get_offset(inp) print_time("First scan...")
offset, demand_outside = _get_offset(inp)
levels = _level_1 + _level_2 + _level_3 + _level_4 levels = _level_1 + _level_2 + _level_3 + _level_4
@@ -143,15 +168,21 @@ def parse_file(project: str, inp: str) -> None:
if t[0] == _S: if t[0] == _S:
sections[s] = [] sections[s] = []
pattern_desc_line = None current_pattern = None
current_curve = None
curve_type_desc_line = None curve_type_desc_line = None
demand_junction = None
sql_batch = SQLBatch(project)
print_time("Second scan...")
with open(inp) as f: with open(inp) as f:
for s in levels: for s in levels:
if s not in offset: if s not in offset:
continue continue
if s == DEMANDS and demand_outside == False:
continue
print_time(f"[{s}]") print_time(f"[{s}]")
is_s = _handler[s][0] == _S is_s = _handler[s][0] == _S
@@ -177,39 +208,40 @@ def parse_file(project: str, inp: str) -> None:
if line.startswith(';'): if line.startswith(';'):
line = line.removeprefix(';') line = line.removeprefix(';')
if s == PATTERNS: # ;desc if s == PATTERNS: # ;desc
pattern_desc_line = line pass
elif s == CURVES: # ;type: desc elif s == CURVES: # ;type: desc
curve_type_desc_line = line curve_type_desc_line = line
continue continue
if s == PATTERNS: if s == PATTERNS:
if pattern_desc_line != None:
tokens = line.split()
write(project, f"insert into _pattern (id) values ('{tokens[0]}');")
pattern_desc_line = None
elif s == CURVES:
if curve_type_desc_line != None:
type_and_desc = curve_type_desc_line.split(':')
tokens = line.split()
write(project, f"insert into _curve (id, type) values ('{tokens[0]}', '{type_and_desc[0].strip()}');")
curve_type_desc_line = None
elif s == DEMANDS:
tokens = line.split() tokens = line.split()
junction = str(tokens[0]) if current_pattern != tokens[0]:
if demand_junction != junction: write(project, f"insert into _pattern (id) values ('{tokens[0]}');")
if try_read(project, f"select * from demands where junction = '{junction}'") != None: current_pattern = tokens[0]
write(project, f"delete from demands where junction = '{junction}';") elif s == CURVES:
demand_junction = junction tokens = line.split()
if current_curve != tokens[0]:
handler(project, line) type = CURVE_TYPE_PUMP
if curve_type_desc_line != None:
type = curve_type_desc_line.split(':')[0].strip()
write(project, f"insert into _curve (id, type) values ('{tokens[0]}', '{type}');")
current_curve = tokens[0]
curve_type_desc_line = None
if s == JUNCTIONS:
sql_batch.add(handler(line, demand_outside))
else:
sql_batch.add(handler(line))
f.seek(0) f.seek(0)
if is_s: if is_s:
handler(project, sections[s]) sql_batch.add(handler(sections[s]))
print_time(f"end reading {inp}") sql_batch.flush()
end = print_time(f'End reading "{inp}"')
print(f"Total (in second): {(end-start).seconds}(s)")
def parse_inp(project: str, inp: str) -> None: def parse_inp(project: str, inp: str) -> None:

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@@ -113,7 +113,7 @@ def inp_in_status(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_status_new(name: str, line: str) -> None: def inp_in_status_new(line: str) -> str:
tokens = line.split() tokens = line.split()
num = len(tokens) num = len(tokens)
@@ -123,9 +123,9 @@ def inp_in_status_new(name: str, line: str) -> None:
link = str(tokens[0]) link = str(tokens[0])
value = tokens[1].upper() value = tokens[1].upper()
if value == LINK_STATUS_OPEN or value == LINK_STATUS_CLOSED or value == LINK_STATUS_ACTIVE: if value == LINK_STATUS_OPEN or value == LINK_STATUS_CLOSED or value == LINK_STATUS_ACTIVE:
write(name, f"insert into status (link, status, setting) values ('{link}', '{value}', null);") return f"insert into status (link, status, setting) values ('{link}', '{value}', null);"
else: else:
write(name, f"insert into status (link, status, setting) values ('{link}', null, {float(value)});") return f"insert into status (link, status, setting) values ('{link}', null, {float(value)});"
def inp_out_status(name: str) -> list[str]: def inp_out_status(name: str) -> list[str]:

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@@ -126,10 +126,12 @@ def inp_in_pattern(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_pattern_new(name: str, line: str) -> None: def inp_in_pattern_new(line: str) -> str:
tokens = line.split() tokens = line.split()
sql = ''
for token in tokens[1:]: for token in tokens[1:]:
write(name, f"insert into patterns (id, factor) values ('{tokens[0]}', {float(token)});") sql += f"insert into patterns (id, factor) values ('{tokens[0]}', {float(token)});"
return sql
def inp_out_pattern(name: str) -> list[str]: def inp_out_pattern(name: str) -> list[str]:

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@@ -159,9 +159,9 @@ def inp_in_curve(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_curve_new(name: str, line: str) -> None: def inp_in_curve_new(line: str) -> str:
tokens = line.split() tokens = line.split()
write(name, f"insert into curves (id, x, y) values ('{tokens[0]}', {float(tokens[1])}, {float(tokens[2])});") return f"insert into curves (id, x, y) values ('{tokens[0]}', {float(tokens[1])}, {float(tokens[2])});"
def inp_out_curve(name: str) -> list[str]: def inp_out_curve(name: str) -> list[str]:

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@@ -48,8 +48,8 @@ def inp_in_control(section: list[str]) -> ChangeSet:
return ChangeSet() return ChangeSet()
def inp_in_control_new(name: str, line: str) -> None: def inp_in_control_new(line: str) -> str:
write(name, f"insert into controls (line) values ('{line}');") return f"insert into controls (line) values ('{line}');"
def inp_out_control(name: str) -> list[str]: def inp_out_control(name: str) -> list[str]:

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@@ -44,8 +44,8 @@ def inp_in_rule(section: list[str]) -> ChangeSet:
return ChangeSet() return ChangeSet()
def inp_in_rule_new(name: str, line: str) -> None: def inp_in_rule_new(line: str) -> str:
write(name, f"insert into rules (line) values ('{line}');") return f"insert into rules (line) values ('{line}');"
def inp_out_rule(name: str) -> list[str]: def inp_out_rule(name: str) -> list[str]:

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@@ -169,7 +169,7 @@ def inp_in_energy(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_energy_new(name: str, line: str) -> None: def inp_in_energy_new(line: str) -> str:
tokens = line.split() tokens = line.split()
if tokens[0].upper() == 'PUMP': if tokens[0].upper() == 'PUMP':
@@ -183,7 +183,7 @@ def inp_in_energy_new(name: str, line: str) -> None:
if key == 'efficiency': if key == 'efficiency':
key = 'effic' key = 'effic'
write(name, f"insert into energy_pump_{key} (pump, {key}) values ('{pump}', {value});") return f"insert into energy_pump_{key} (pump, {key}) values ('{pump}', {value});"
else: else:
line = line.upper().strip() line = line.upper().strip()
@@ -195,7 +195,9 @@ def inp_in_energy_new(name: str, line: str) -> None:
if line.startswith('GLOBAL EFFICIENCY'): if line.startswith('GLOBAL EFFICIENCY'):
value = line.removeprefix('GLOBAL EFFICIENCY').strip() value = line.removeprefix('GLOBAL EFFICIENCY').strip()
write(name, f"update energy set value = '{value}' where key = '{key}';") return f"update energy set value = '{value}' where key = '{key}';"
return ''
def inp_out_energy(name: str) -> list[str]: def inp_out_energy(name: str) -> list[str]:

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@@ -89,7 +89,7 @@ def inp_in_emitter(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_emitter_new(name: str, line: str) -> None: def inp_in_emitter_new(line: str) -> str:
tokens = line.split() tokens = line.split()
num = len(tokens) num = len(tokens)
@@ -99,7 +99,7 @@ def inp_in_emitter_new(name: str, line: str) -> None:
junction = str(tokens[0]) junction = str(tokens[0])
coefficient = float(tokens[1]) coefficient = float(tokens[1])
write(name, f"insert into emitters (junction, coefficient) values ('{junction}', {coefficient});") return f"insert into emitters (junction, coefficient) values ('{junction}', {coefficient});"
def inp_out_emitter(name: str) -> list[str]: def inp_out_emitter(name: str) -> list[str]:

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@@ -86,7 +86,7 @@ def inp_in_quality(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_quality_new(name: str, line: str) -> None: def inp_in_quality_new(line: str) -> str:
tokens = line.split() tokens = line.split()
num = len(tokens) num = len(tokens)
@@ -96,7 +96,7 @@ def inp_in_quality_new(name: str, line: str) -> None:
node = str(tokens[0]) node = str(tokens[0])
quality = float(tokens[1]) quality = float(tokens[1])
write(name, f"insert into quality (node, quality) values ('{node}', {quality});") return f"insert into quality (node, quality) values ('{node}', {quality});"
def inp_out_quality(name: str) -> list[str]: def inp_out_quality(name: str) -> list[str]:

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@@ -131,7 +131,7 @@ def inp_in_source(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_source_new(name: str, line: str) -> None: def inp_in_source_new(line: str) -> str:
tokens = line.split() tokens = line.split()
num = len(tokens) num = len(tokens)
@@ -144,7 +144,7 @@ def inp_in_source_new(name: str, line: str) -> None:
pattern = str(tokens[3]) if num_without_desc >= 4 else None pattern = str(tokens[3]) if num_without_desc >= 4 else None
pattern = f"'{pattern}'" if pattern != None else 'null' pattern = f"'{pattern}'" if pattern != None else 'null'
write(name, f"insert into sources (node, type, strength, pattern) values ('{node}', '{s_type}', {strength}, {pattern});") return f"insert into sources (node, type, strength, pattern) values ('{node}', '{s_type}', {strength}, {pattern});"

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@@ -222,26 +222,28 @@ def inp_in_reaction(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_reaction_new(name: str, line: str) -> None: def inp_in_reaction_new(line: str) -> str:
tokens = line.split() tokens = line.split()
token0 = tokens[0].upper() token0 = tokens[0].upper()
if token0 == 'BULK' or token0 == 'WALL': if token0 == 'BULK' or token0 == 'WALL':
pipe = tokens[1] pipe = tokens[1]
key = token0.lower() key = token0.lower()
value = tokens[2] value = tokens[2]
write(name, f"insert into reactions_pipe_{key} (pipe, value) values ('{pipe}', {value});") return f"insert into reactions_pipe_{key} (pipe, value) values ('{pipe}', {value});"
elif token0 == 'TANK': elif token0 == 'TANK':
tank = tokens[1] tank = tokens[1]
value = tokens[2] value = tokens[2]
write(name, f"insert into reactions_tank (tank, value) values ('{tank}', {value});") return f"insert into reactions_tank (tank, value) values ('{tank}', {value});"
else: else:
line = line.upper().strip() line = line.upper().strip()
for key in get_reaction_schema('').keys(): for key in get_reaction_schema('').keys():
if line.startswith(key): if line.startswith(key):
value = line.removeprefix(key).strip() value = line.removeprefix(key).strip()
write(name, f"update reactions set value = '{value}' where key = '{key}';") return f"update reactions set value = '{value}' where key = '{key}';"
return ''
def inp_out_reaction(name: str) -> list[str]: def inp_out_reaction(name: str) -> list[str]:

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@@ -40,13 +40,12 @@ def inp_in_title(section: list[str]) -> ChangeSet:
return ChangeSet(g_update_prefix | {'type': 'title', 'value' : obj.value}) return ChangeSet(g_update_prefix | {'type': 'title', 'value' : obj.value})
def inp_in_title_new(name: str, section: list[str]) -> None: def inp_in_title_new(section: list[str]) -> str:
if section == []: if section == []:
return return ''
title = '\n'.join(section) title = '\n'.join(section)
sql = f"update title set value = '{title}';" return f"update title set value = '{title}';"
write(name, sql)
def inp_out_title(name: str) -> list[str]: def inp_out_title(name: str) -> list[str]:

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@@ -125,7 +125,7 @@ def inp_in_mixing(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_mixing_new(name: str, line: str) -> None: def inp_in_mixing_new(line: str) -> str:
tokens = line.split() tokens = line.split()
num = len(tokens) num = len(tokens)
@@ -137,7 +137,7 @@ def inp_in_mixing_new(name: str, line: str) -> None:
value = float(tokens[3]) if num_without_desc >= 4 else None value = float(tokens[3]) if num_without_desc >= 4 else None
value = value if value != None else 'null' value = value if value != None else 'null'
write(name, f"insert into mixing (tank, model, value) values ('{tank}', '{model}', {value});") return f"insert into mixing (tank, model, value) values ('{tank}', '{model}', {value});"
def inp_out_mixing(name: str) -> list[str]: def inp_out_mixing(name: str) -> list[str]:

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@@ -97,7 +97,8 @@ def inp_in_time(section: list[str]) -> ChangeSet:
return ChangeSet() return ChangeSet()
def inp_in_time_new(name: str, section: list[str]) -> None: def inp_in_time_new(section: list[str]) -> str:
sql = ''
for s in section: for s in section:
if s.startswith(';'): if s.startswith(';'):
continue continue
@@ -106,7 +107,8 @@ def inp_in_time_new(name: str, section: list[str]) -> None:
for key in get_time_schema('').keys(): for key in get_time_schema('').keys():
if line.startswith(key): if line.startswith(key):
value = line.removeprefix(key).strip() value = line.removeprefix(key).strip()
write(name, f"update times set value = '{value}' where key = '{key}';") sql += f"update times set value = '{value}' where key = '{key}';"
return sql
def inp_out_time(name: str) -> list[str]: def inp_out_time(name: str) -> list[str]:

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@@ -22,8 +22,8 @@ def inp_in_report(section: list[str]) -> ChangeSet:
return ChangeSet() return ChangeSet()
def inp_in_report_new(name: str, section: list[str]) -> None: def inp_in_report_new(section: list[str]) -> str:
return return ''
def inp_out_report(name: str) -> list[str]: def inp_out_report(name: str) -> list[str]:

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@@ -41,16 +41,18 @@ def inp_in_option(section: list[str]) -> ChangeSet:
return result return result
def inp_in_option_new(name: str, section: list[str]) -> None: def inp_in_option_new(section: list[str]) -> str:
sql = ''
result = inp_in_option(section) result = inp_in_option(section)
for op in result.operations: for op in result.operations:
for key in op.keys(): for key in op.keys():
if key == 'operation' or key == 'type': if key == 'operation' or key == 'type':
continue continue
if op['type'] == 'option': if op['type'] == 'option':
write(name, f"update options set value = '{op[key]}' where key = '{key}';") sql += f"update options set value = '{op[key]}' where key = '{key}';"
else: else:
write(name, f"update options_v3 set value = '{op[key]}' where key = '{key}';") sql += f"update options_v3 set value = '{op[key]}' where key = '{key}';"
return sql
def inp_out_option(name: str) -> list[str]: def inp_out_option(name: str) -> list[str]:

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@@ -62,16 +62,18 @@ def inp_in_option_v3(section: list[str]) -> ChangeSet:
return result return result
def inp_in_option_v3_new(name: str, section: list[str]) -> None: def inp_in_option_v3_new(section: list[str]) -> str:
sql = ''
result = inp_in_option_v3(section) result = inp_in_option_v3(section)
for op in result.operations: for op in result.operations:
for key in op.keys(): for key in op.keys():
if key == 'operation' or key == 'type': if key == 'operation' or key == 'type':
continue continue
if op['type'] == 'option_v3': if op['type'] == 'option_v3':
write(name, f"update options_v3 set value = '{op[key]}' where key = '{key}';") sql += f"update options_v3 set value = '{op[key]}' where key = '{key}';"
else: else:
write(name, f"update options set value = '{op[key]}' where key = '{key}';") sql += f"update options set value = '{op[key]}' where key = '{key}';"
return sql
def inp_out_option_v3(name: str) -> list[str]: def inp_out_option_v3(name: str) -> list[str]:

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@@ -27,11 +27,11 @@ def inp_in_coord(section: list[str]) -> dict[str, dict[str, float]]:
return coords return coords
def inp_in_coord_new(name: str, line: str) -> None: def inp_in_coord_new(line: str) -> str:
tokens = line.split() tokens = line.split()
node = tokens[0] node = tokens[0]
coord = f"'({tokens[1]}, {tokens[2]})'" coord = f"'({tokens[1]}, {tokens[2]})'"
write(name, f"insert into coordinates (node, coord) values ('{node}', {coord});") return f"insert into coordinates (node, coord) values ('{node}', {coord});"
def inp_out_coord(name: str) -> list[str]: def inp_out_coord(name: str) -> list[str]:

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@@ -98,12 +98,12 @@ def inp_in_vertex(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_vertex_new(name: str, line: str) -> None: def inp_in_vertex_new(line: str) -> str:
tokens = line.split() tokens = line.split()
link = tokens[0] link = tokens[0]
x = float(tokens[1]) x = float(tokens[1])
y = float(tokens[2]) y = float(tokens[2])
write(name, f"insert into vertices (link, x, y) values ('{link}', {x}, {y});") return f"insert into vertices (link, x, y) values ('{link}', {x}, {y});"
def inp_out_vertex(name: str) -> list[str]: def inp_out_vertex(name: str) -> list[str]:

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@@ -124,7 +124,7 @@ def inp_in_label(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_label_new(name: str, line: str) -> None: def inp_in_label_new(line: str) -> str:
tokens = line.split() tokens = line.split()
num = len(tokens) num = len(tokens)
@@ -137,7 +137,7 @@ def inp_in_label_new(name: str, line: str) -> None:
node = str(tokens[3]) if num >= 4 else None node = str(tokens[3]) if num >= 4 else None
node = f"'{node}'" if node != None else 'null' node = f"'{node}'" if node != None else 'null'
write(name, f"insert into labels (x, y, label, node) values ({x}, {y}, '{label}', {node});") return f"insert into labels (x, y, label, node) values ({x}, {y}, '{label}', {node});"
def inp_out_label(name: str) -> list[str]: def inp_out_label(name: str) -> list[str]:

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@@ -38,13 +38,12 @@ def inp_in_backdrop(section: list[str]) -> ChangeSet:
return ChangeSet() return ChangeSet()
def inp_in_backdrop_new(name: str, section: list[str]) -> None: def inp_in_backdrop_new(section: list[str]) -> str:
if section == []: if section == []:
return return ''
content = '\n'.join(section) content = '\n'.join(section)
sql = f"update backdrop set content = '{content}';" return f"update backdrop set content = '{content}';"
write(name, sql)
def inp_out_backdrop(name: str) -> list[str]: def inp_out_backdrop(name: str) -> list[str]:

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@@ -152,7 +152,7 @@ def inp_in_junction(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_junction_new(name: str, line: str) -> None: def inp_in_junction_new(line: str, demand_outside: bool) -> str:
tokens = line.split() tokens = line.split()
num = len(tokens) num = len(tokens)
@@ -166,9 +166,11 @@ def inp_in_junction_new(name: str, line: str) -> None:
pattern = f"'{pattern}'" if pattern != None else 'null' pattern = f"'{pattern}'" if pattern != None else 'null'
desc = str(tokens[-1]) if has_desc else None desc = str(tokens[-1]) if has_desc else None
write(name, f"insert into _node (id, type) values ('{id}', 'junction');") sql = f"insert into _node (id, type) values ('{id}', 'junction');insert into junctions (id, elevation) values ('{id}', {elevation});"
write(name, f"insert into junctions (id, elevation) values ('{id}', {elevation});") if demand != None and demand_outside == False:
write(name, f"insert into demands (junction, demand, pattern) values ('{id}', {demand}, {pattern});") sql += f"insert into demands (junction, demand, pattern) values ('{id}', {demand}, {pattern});"
return sql
def inp_out_junction(name: str) -> list[str]: def inp_out_junction(name: str) -> list[str]:

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@@ -145,7 +145,7 @@ def inp_in_reservoir(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_reservoir_new(name: str, line: str) -> None: def inp_in_reservoir_new(line: str) -> str:
tokens = line.split() tokens = line.split()
num = len(tokens) num = len(tokens)
@@ -158,8 +158,7 @@ def inp_in_reservoir_new(name: str, line: str) -> None:
pattern = f"'{pattern}'" if pattern != None else 'null' pattern = f"'{pattern}'" if pattern != None else 'null'
desc = str(tokens[-1]) if has_desc else None desc = str(tokens[-1]) if has_desc else None
write(name, f"insert into _node (id, type) values ('{id}', 'reservoir');") return f"insert into _node (id, type) values ('{id}', 'reservoir');insert into reservoirs (id, head, pattern) values ('{id}', {head}, {pattern});"
write(name, f"insert into reservoirs (id, head, pattern) values ('{id}', {head}, {pattern});")
def inp_out_reservoir(name: str) -> list[str]: def inp_out_reservoir(name: str) -> list[str]:

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@@ -187,7 +187,7 @@ def inp_in_tank(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_tank_new(name: str, line: str) -> None: def inp_in_tank_new(line: str) -> str:
tokens = line.split() tokens = line.split()
num = len(tokens) num = len(tokens)
@@ -207,8 +207,7 @@ def inp_in_tank_new(name: str, line: str) -> None:
overflow = f"'{overflow}'" if overflow != None else 'null' overflow = f"'{overflow}'" if overflow != None else 'null'
desc = str(tokens[-1]) if has_desc else None desc = str(tokens[-1]) if has_desc else None
write(name, f"insert into _node (id, type) values ('{id}', 'tank');") return f"insert into _node (id, type) values ('{id}', 'tank');insert into tanks (id, elevation, init_level, min_level, max_level, diameter, min_vol, vol_curve, overflow) values ('{id}', {elevation}, {init_level}, {min_level}, {max_level}, {diameter}, {min_vol}, {vol_curve}, {overflow});"
write(name, f"insert into tanks (id, elevation, init_level, min_level, max_level, diameter, min_vol, vol_curve, overflow) values ('{id}', {elevation}, {init_level}, {min_level}, {max_level}, {diameter}, {min_vol}, {vol_curve}, {overflow});")
def inp_out_tank(name: str) -> list[str]: def inp_out_tank(name: str) -> list[str]:

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@@ -161,7 +161,7 @@ def inp_in_pipe(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_pipe_new(name: str, line: str) -> None: def inp_in_pipe_new(line: str) -> str:
tokens = line.split() tokens = line.split()
num = len(tokens) num = len(tokens)
@@ -179,8 +179,7 @@ def inp_in_pipe_new(name: str, line: str) -> None:
status = str(tokens[7].upper()) if num_without_desc >= 8 else PIPE_STATUS_OPEN status = str(tokens[7].upper()) if num_without_desc >= 8 else PIPE_STATUS_OPEN
desc = str(tokens[-1]) if has_desc else None desc = str(tokens[-1]) if has_desc else None
write(name, f"insert into _link (id, type) values ('{id}', 'pipe');") return f"insert into _link (id, type) values ('{id}', 'pipe');insert into pipes (id, node1, node2, length, diameter, roughness, minor_loss, status) values ('{id}', '{node1}', '{node2}', {length}, {diameter}, {roughness}, {minor_loss}, '{status}');"
write(name, f"insert into pipes (id, node1, node2, length, diameter, roughness, minor_loss, status) values ('{id}', '{node1}', '{node2}', {length}, {diameter}, {roughness}, {minor_loss}, '{status}');")
def inp_out_pipe(name: str) -> list[str]: def inp_out_pipe(name: str) -> list[str]:

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@@ -151,7 +151,7 @@ def inp_in_pump(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_pump_new(name: str, line: str) -> None: def inp_in_pump_new(line: str) -> str:
tokens = line.split() tokens = line.split()
num = len(tokens) num = len(tokens)
@@ -174,8 +174,7 @@ def inp_in_pump_new(name: str, line: str) -> None:
pattern = f"'{pattern}'" if pattern != None else 'null' pattern = f"'{pattern}'" if pattern != None else 'null'
desc = str(tokens[-1]) if has_desc else None desc = str(tokens[-1]) if has_desc else None
write(name, f"insert into _link (id, type) values ('{id}', 'pump');") return f"insert into _link (id, type) values ('{id}', 'pump');insert into pumps (id, node1, node2, power, head, speed, pattern) values ('{id}', '{node1}', '{node2}', {power}, {head}, {speed}, {pattern});"
write(name, f"insert into pumps (id, node1, node2, power, head, speed, pattern) values ('{id}', '{node1}', '{node2}', {power}, {head}, {speed}, {pattern});")
def inp_out_pump(name: str) -> list[str]: def inp_out_pump(name: str) -> list[str]:

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@@ -157,7 +157,7 @@ def inp_in_valve(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_valve_new(name: str, line: str) -> None: def inp_in_valve_new(line: str) -> str:
tokens = line.split() tokens = line.split()
num = len(tokens) num = len(tokens)
@@ -173,8 +173,7 @@ def inp_in_valve_new(name: str, line: str) -> None:
minor_loss = float(tokens[6]) minor_loss = float(tokens[6])
desc = str(tokens[-1]) if has_desc else None desc = str(tokens[-1]) if has_desc else None
write(name, f"insert into _link (id, type) values ('{id}', 'valve');") return f"insert into _link (id, type) values ('{id}', 'valve');insert into valves (id, node1, node2, diameter, type, setting, minor_loss) values ('{id}', '{node1}', '{node2}', {diameter}, '{v_type}', '{setting}', {minor_loss});"
write(name, f"insert into valves (id, node1, node2, diameter, type, setting, minor_loss) values ('{id}', '{node1}', '{node2}', {diameter}, '{v_type}', '{setting}', {minor_loss});")
def inp_out_valve(name: str) -> list[str]: def inp_out_valve(name: str) -> list[str]:

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@@ -103,7 +103,7 @@ def inp_in_tag(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_tag_new(name: str, line: str) -> None: def inp_in_tag_new(line: str) -> str:
tokens = line.split() tokens = line.split()
num = len(tokens) num = len(tokens)
@@ -115,9 +115,10 @@ def inp_in_tag_new(name: str, line: str) -> None:
tag = str(tokens[2]) tag = str(tokens[2])
if t_type == TAG_TYPE_NODE: if t_type == TAG_TYPE_NODE:
write(name, f"insert into tags_node (id, tag) values ('{id}', '{tag}');") return f"insert into tags_node (id, tag) values ('{id}', '{tag}');"
elif t_type == TAG_TYPE_LINK: elif t_type == TAG_TYPE_LINK:
write(name, f"insert into tags_link (id, tag) values ('{id}', '{tag}');") return f"insert into tags_link (id, tag) values ('{id}', '{tag}');"
return ''
def inp_out_tag(name: str) -> list[str]: def inp_out_tag(name: str) -> list[str]:

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@@ -97,7 +97,7 @@ def inp_in_demand(section: list[str]) -> ChangeSet:
return cs return cs
def inp_in_demand_new(name: str, line: str) -> None: def inp_in_demand_new(line: str) -> str:
tokens = line.split() tokens = line.split()
num = len(tokens) num = len(tokens)
@@ -111,7 +111,7 @@ def inp_in_demand_new(name: str, line: str) -> None:
category = str(tokens[3]) if num_without_desc >= 4 else None category = str(tokens[3]) if num_without_desc >= 4 else None
category = f"'{category}'" if category != None else 'null' category = f"'{category}'" if category != None else 'null'
write(name, f"insert into demands (junction, demand, pattern, category) values ('{junction}', {demand}, {pattern}, {category});") return f"insert into demands (junction, demand, pattern, category) values ('{junction}', {demand}, {pattern}, {category});"
def inp_out_demand(name: str) -> list[str]: def inp_out_demand(name: str) -> list[str]: