eth2.0-specs/scripts/build_spec.py

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import re
from function_puller import (
get_spec,
SpecObject,
)
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from argparse import ArgumentParser
from typing import (
Dict,
List,
Optional,
)
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PHASE0_IMPORTS = '''from typing import (
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Any,
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Callable,
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Dict,
List,
Set,
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Tuple,
)
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from eth2spec.utils.ssz.ssz_impl import (
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hash_tree_root,
signing_root,
)
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from eth2spec.utils.ssz.ssz_typing import (
# unused: uint8, uint16, uint32, uint128, uint256,
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uint64, Container, Vector,
Bytes4, Bytes32, Bytes48, Bytes96,
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)
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from eth2spec.utils.bls import (
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bls_aggregate_pubkeys,
bls_verify,
bls_verify_multiple,
)
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# Note: 'int' type defaults to being interpreted as a uint64 by SSZ implementation.
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from eth2spec.utils.hash_function import hash
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'''
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PHASE1_IMPORTS = '''from typing import (
Any,
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Callable,
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Dict,
List,
Set,
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Tuple,
)
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from eth2spec.utils.ssz.ssz_impl import (
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hash_tree_root,
signing_root,
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serialize,
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is_empty,
)
from eth2spec.utils.ssz.ssz_typing import (
# unused: uint8, uint16, uint32, uint128, uint256,
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uint64, Container, Vector,
Bytes4, Bytes32, Bytes48, Bytes96,
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)
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from eth2spec.utils.bls import (
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bls_aggregate_pubkeys,
bls_verify,
bls_verify_multiple,
)
from eth2spec.utils.hash_function import hash
'''
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NEW_TYPES = {
'Slot': 'uint64',
'Epoch': 'uint64',
'Shard': 'uint64',
'ValidatorIndex': 'uint64',
'Gwei': 'uint64',
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}
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BYTE_TYPES = [4, 32, 48, 96]
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SUNDRY_FUNCTIONS = '''
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def get_ssz_type_by_name(name: str) -> Container:
return globals()[name]
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# Monkey patch validator compute committee code
_compute_committee = compute_committee
committee_cache: Dict[Tuple[Bytes32, Bytes32, int, int], List[ValidatorIndex]] = {}
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def compute_committee(indices: List[ValidatorIndex], # type: ignore
seed: Bytes32,
index: int,
count: int) -> List[ValidatorIndex]:
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param_hash = (hash_tree_root(indices), seed, index, count)
if param_hash in committee_cache:
return committee_cache[param_hash]
else:
ret = _compute_committee(indices, seed, index, count)
committee_cache[param_hash] = ret
return ret
# Monkey patch hash cache
_hash = hash
hash_cache: Dict[bytes, Bytes32] = {}
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def hash(x: bytes) -> Bytes32:
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if x in hash_cache:
return hash_cache[x]
else:
ret = _hash(x)
hash_cache[x] = ret
return ret
# Access to overwrite spec constants based on configuration
def apply_constants_preset(preset: Dict[str, Any]) -> None:
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global_vars = globals()
for k, v in preset.items():
global_vars[k] = v
# Deal with derived constants
global_vars['GENESIS_EPOCH'] = slot_to_epoch(GENESIS_SLOT)
# Initialize SSZ types again, to account for changed lengths
init_SSZ_types()
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'''
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def objects_to_spec(functions: Dict[str, str],
constants: Dict[str, str],
ssz_objects: Dict[str, str],
inserts: Dict[str, str],
imports: Dict[str, str],
new_types: Dict[str, str],
byte_types: List[int],
) -> str:
"""
Given all the objects that constitute a spec, combine them into a single pyfile.
"""
new_type_definitions = (
'\n\n'.join(
[
f"class {key}({value}):\n"
f" def __init__(self, _x: uint64) -> None:\n"
f" ...\n"
for key, value in new_types.items()
]
)
)
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functions_spec = '\n\n'.join(functions.values())
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constants_spec = '\n'.join(map(lambda x: '%s = %s' % (x, constants[x]), constants))
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ssz_objects_instantiation_spec = '\n\n'.join(ssz_objects.values())
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ssz_objects_reinitialization_spec = (
'def init_SSZ_types() -> None:\n global_vars = globals()\n\n '
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+ '\n\n '.join([re.sub(r'(?!\n\n)\n', r'\n ', value[:-1]) for value in ssz_objects.values()])
+ '\n\n'
+ '\n'.join(map(lambda x: ' global_vars[\'%s\'] = %s' % (x, x), ssz_objects.keys()))
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)
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spec = (
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imports
+ '\n\n' + new_type_definitions
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+ '\n\n' + constants_spec
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+ '\n\n\n' + ssz_objects_instantiation_spec
+ '\n\n' + functions_spec
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+ '\n' + SUNDRY_FUNCTIONS
+ '\n\n' + ssz_objects_reinitialization_spec
+ '\n'
)
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# Handle @inserts
for key, value in inserts.items():
spec = re.sub('[ ]*# %s\\n' % key, value, spec)
return spec
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def combine_functions(old_functions: Dict[str, str], new_functions: Dict[str, str]) -> Dict[str, str]:
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for key, value in new_functions.items():
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old_functions[key] = value
return old_functions
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def combine_constants(old_constants: Dict[str, str], new_constants: Dict[str, str]) -> Dict[str, str]:
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for key, value in new_constants.items():
old_constants[key] = value
return old_constants
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def dependency_order_ssz_objects(objects: Dict[str, str]) -> None:
"""
Determines which SSZ Object is depenedent on which other and orders them appropriately
"""
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items = list(objects.items())
for key, value in items:
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dependencies = re.findall(r'(: [A-Z][\w[]*)', value)
dependencies = map(lambda x: re.sub(r'\W|Vector|List|Container|uint\d+|Bytes\d+|bytes', '', x), dependencies)
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for dep in dependencies:
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if dep in NEW_TYPES or len(dep) == 0:
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continue
key_list = list(objects.keys())
for item in [dep, key] + key_list[key_list.index(dep)+1:]:
objects[item] = objects.pop(item)
def combine_ssz_objects(old_objects: Dict[str, str], new_objects: Dict[str, str]) -> Dict[str, str]:
"""
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Takes in old spec and new spec ssz objects, combines them,
and returns the newer versions of the objects in dependency order.
"""
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for key, value in new_objects.items():
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if key in old_objects:
# remove trailing newline
old_objects[key] = old_objects[key]
# remove leading variable name
value = re.sub(r'^class [\w]*\(Container\):\n', '', value)
old_objects[key] = old_objects.get(key, '') + value
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dependency_order_ssz_objects(old_objects)
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return old_objects
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# inserts are handeled the same way as functions
combine_inserts = combine_functions
def combine_spec_objects(spec0: SpecObject, spec1: SpecObject) -> SpecObject:
"""
Takes in two spec variants (as tuples of their objects) and combines them using the appropriate combiner function.
"""
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functions0, constants0, ssz_objects0, inserts0 = spec0
functions1, constants1, ssz_objects1, inserts1 = spec1
functions = combine_functions(functions0, functions1)
constants = combine_constants(constants0, constants1)
ssz_objects = combine_ssz_objects(ssz_objects0, ssz_objects1)
inserts = combine_inserts(inserts0, inserts1)
return functions, constants, ssz_objects, inserts
def build_phase0_spec(sourcefile: str, outfile: str=None) -> Optional[str]:
functions, constants, ssz_objects, inserts = get_spec(sourcefile)
spec = objects_to_spec(functions, constants, ssz_objects, inserts, PHASE0_IMPORTS, NEW_TYPES, BYTE_TYPES)
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if outfile is not None:
with open(outfile, 'w') as out:
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out.write(spec)
return spec
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def build_phase1_spec(phase0_sourcefile: str,
phase1_custody_sourcefile: str,
phase1_shard_sourcefile: str,
outfile: str=None) -> Optional[str]:
phase0_spec = get_spec(phase0_sourcefile)
phase1_custody = get_spec(phase1_custody_sourcefile)
phase1_shard_data = get_spec(phase1_shard_sourcefile)
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spec_objects = phase0_spec
for value in [phase1_custody, phase1_shard_data]:
spec_objects = combine_spec_objects(spec_objects, value)
spec = objects_to_spec(*spec_objects, PHASE1_IMPORTS, NEW_TYPES, BYTE_TYPES)
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if outfile is not None:
with open(outfile, 'w') as out:
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out.write(spec)
return spec
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if __name__ == '__main__':
description = '''
Build the specs from the md docs.
If building phase 0:
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1st argument is input spec.md
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2nd argument is output spec.py
If building phase 1:
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1st argument is input spec_phase0.md
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2nd argument is input spec_phase1_custody.md
3rd argument is input spec_phase1_shard_data.md
4th argument is output spec.py
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'''
parser = ArgumentParser(description=description)
parser.add_argument("-p", "--phase", dest="phase", type=int, default=0, help="Build for phase #")
parser.add_argument(dest="files", help="Input and output files", nargs="+")
args = parser.parse_args()
if args.phase == 0:
if len(args.files) == 2:
build_phase0_spec(*args.files)
else:
print(" Phase 0 requires an output as well as an input file.")
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elif args.phase == 1:
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if len(args.files) == 4:
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build_phase1_spec(*args.files)
else:
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print(" Phase 1 requires an output as well as 3 input files (phase0.md and phase1.md, phase1.md)")
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else:
print("Invalid phase: {0}".format(args.phase))