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- import sys
- from enum import Enum
- def eprint(*args):
- print(*args, file=sys.stderr)
- class Line:
- def __init__(self, text, line_number):
- self.text = text
- self.orig = text
- self.lineno = line_number
- self.clean()
- def clean(self):
- # Remove the comments
- self.text = self.text.split("#", 1)[0]
- # Remove whitespace
- self.text = self.text.strip()
- def is_empty(self):
- return bool(self.text)
- def __repr__(self):
- return "Line %s: %s" % (self.lineno, self.orig.lstrip())
- def command(self):
- if not self.is_empty():
- return None
- return self.text.split(" ")[0]
- def args(self):
- if not self.is_empty():
- return None
- return self.text.split(" ")[1:]
- def clean(contents):
- # Split input into lines
- contents = contents.split("\n")
- contents = [Line(line, i) for i, line in enumerate(contents)]
- # Remove empty blank lines
- contents = [line for line in contents if line.is_empty()]
- return contents
- def divide_sections(contents):
- state = "NOSCOPE"
- segments = {}
- current_segment = []
- contract_name = None
- for line in contents:
- if line.command() == "contract":
- if len(line.args()) != 1:
- eprint("error: missing contract name")
- eprint(line)
- return None
- contract_name = line.args()[0]
- if state == "NOSCOPE":
- assert not current_segment
- state = "INSCOPE"
- continue
- else:
- assert state == "INSCOPE"
- eprint("error: double contract entry violation")
- eprint(line)
- return None
- elif line.command() == "end":
- if len(line.args()) != 0:
- eprint("error: end takes no args")
- eprint(line)
- return None
- if state == "NOSCOPE":
- eprint("error: missing contract start for end")
- eprint(line)
- return None
- else:
- assert state == "INSCOPE"
- state = "NOSCOPE"
- segments[contract_name] = current_segment
- current_segment = []
- continue
- elif state == "NOSCOPE":
- # Ignore lines outside any contract
- continue
- current_segment.append(line)
- if state != "NOSCOPE":
- eprint("error: reached end of file with unclosed scope")
- return None
- return segments
- alloc_commands = {
- "param": 1,
- "private": 1,
- "public": 1,
- }
- op_commands = {
- "set": 2,
- "mul": 2,
- }
- constraint_commands = {
- "lc0_add": 1,
- "lc1_add": 1,
- "lc2_add": 1,
- "lc0_add_one": 0,
- "lc1_add_one": 0,
- "lc2_add_one": 0,
- "enforce": 0,
- }
- def extract_relevant_lines(contract, commands_table):
- relevant_lines = []
- for line in contract:
- command = line.command()
- if command not in commands_table.keys():
- continue
- define = commands_table[command]
- if len(line.args()) != define:
- eprint("error: wrong number of args")
- return None
- relevant_lines.append(line)
- return relevant_lines
- class VariableType(Enum):
- PUBLIC = 1
- PRIVATE = 2
- class Variable:
- def __init__(self, symbol, index, type, is_param):
- self.symbol = symbol
- self.index = index
- self.type = type
- self.is_param = is_param
- def __repr__(self):
- return "<Variable %s:%s>" % (self.symbol, self.index)
- def generate_alloc_table(contract):
- relevant_lines = extract_relevant_lines(contract, alloc_commands)
- alloc_table = {}
- for i, line in enumerate(relevant_lines):
- assert len(line.args()) == 1
- symbol = line.args()[0]
- command = line.command()
- if command == "param":
- type = VariableType.PRIVATE
- is_param = True
- elif command == "private":
- type = VariableType.PRIVATE
- is_param = False
- elif command == "public":
- type = VariableType.PUBLIC
- is_param = False
- else:
- assert False
- alloc_table[symbol] = Variable(symbol, i, type, is_param)
- return alloc_table
- def symbols_list_to_indexes(line, alloc):
- indexes = []
- for symbol in line.args():
- if symbol not in alloc:
- eprint("error: missing unallocated symbol")
- eprint(line)
- return None
- # Lookup variable index
- index = alloc[symbol].index
- indexes.append(index)
- return indexes
- class Operation:
- def __init__(self, line, indexes):
- self.command = line.command()
- self.args = indexes
- self.line = line
- def generate_ops_table(contract, alloc):
- relevant_lines = extract_relevant_lines(contract, op_commands)
- ops = []
- for line in relevant_lines:
- indexes = symbols_list_to_indexes(line, alloc)
- ops.append(Operation(line, indexes))
- return ops
- class Constraint:
- def __init__(self, line, indexes):
- self.command = line.command()
- self.args = indexes
- self.line = line
- def args_comment(self):
- return ", ".join("%s" % symbol for symbol in self.line.args())
- def generate_constraints_table(contract, alloc):
- relevant_lines = extract_relevant_lines(contract, constraint_commands)
- constraints = []
- for line in relevant_lines:
- indexes = symbols_list_to_indexes(line, alloc)
- constraints.append(Constraint(line, indexes))
- return constraints
- def compile(contract, constants):
- # Allocation table
- # symbol: Private/Public, is_param, index
- alloc = generate_alloc_table(contract)
- # Operations lines list
- if (ops := generate_ops_table(contract, alloc)) is None:
- return False
- # Constraint commands
- if (constraints := generate_constraints_table(contract, alloc)) is None:
- return False
- display(alloc, ops, constraints)
- return True
- def display(alloc, ops, constraints):
- print("Alloc table:")
- for symbol, variable in alloc.items():
- print(" //", symbol)
- print(" ", variable.type, variable.index)
- print()
- print("Operations:")
- for op in ops:
- print(" //", op.line)
- print(" ", op.command, op.args)
- print()
- print("Constraints:")
- for constraint in constraints:
- if constraint.args:
- print(" //", constraint.args_comment())
- print(" ", constraint.command, constraint.args)
- print()
- def process(contents):
- # Remove left whitespace
- contents = clean(contents)
- # Parse all constants
- constants = [line for line in contents if line.command() == "constant"]
- # Divide into contract sections
- if (contracts := divide_sections(contents)) is None:
- return False
- # Process each contract
- for contract_name, contract in contracts.items():
- if not compile(contract, constants):
- return False
- return True
- def main(argv):
- if len(argv) != 2:
- eprint("pism FILENAME")
- return -1
- src_filename = argv[1]
- contents = open(src_filename).read()
- if not process(contents):
- return -2
- return 0
- if __name__ == "__main__":
- sys.exit(main(sys.argv))
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