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@ -7,11 +7,15 @@ from pyhanko.sign import signers, timestamps, fields
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from pyhanko_certvalidator import ValidationContext
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from typing_extensions import Buffer
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from pythonProject.timestamp import LocalOpensslTimestamp
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class SignOrchestrator:
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"""Orchestrate the signature on document"""
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def __init__(self, pkcs12_path: str, timestamp_url: str, pkcs12_password: Optional[bytes] = None):
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def __init__(self, pkcs12_path: str,
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tsa_config_path: str, tsa_password: str, tsa_cert_chain: str,
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pkcs12_password: Optional[bytes] = None):
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# Load signer key material from PKCS#12 file
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# This assumes that any relevant intermediate certs are also included
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# in the PKCS#12 file.
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@ -20,9 +24,7 @@ class SignOrchestrator:
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)
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# Set up a timestamping client to fetch timestamps tokens
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self.timestamper = timestamps.HTTPTimeStamper(
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url=timestamp_url,
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)
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self.timestamper = LocalOpensslTimestamp(tsa_config_path, tsa_password, tsa_cert_chain)
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self.stamp_style = stamp.TextStampStyle(
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stamp_text="Signé par:\n%(signer_text)s\nLe %(ts)s",
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@ -1,6 +1,16 @@
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from sign import SignOrchestrator
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orchestrator = SignOrchestrator('./assets/dummy.p12','http://freetsa.org/tsr', pkcs12_password=None)
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"""
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This is a script to sign a file with the dummy assets
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It is created mainly for testing purpose
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"""
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orchestrator = SignOrchestrator('./assets/dummy.p12',
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'/home/julien/dev/chill/sign-pdf-worker/ts-authority/rootca.conf',
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'5678',
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'/home/julien/dev/chill/sign-pdf-worker/ts-authority/ca/tsa-chain.pem',
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pkcs12_password=None)
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with open('./assets/test.pdf', 'rb') as input:
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signed_content = orchestrator.sign(reason="first signer", signature_index=0,
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29
pythonProject/sign_individual_protected_CA.py
Normal file
29
pythonProject/sign_individual_protected_CA.py
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@ -0,0 +1,29 @@
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from sign import SignOrchestrator
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"""
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This is a script to sign a file with the dummy assets
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It is created mainly for testing purpose
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"""
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orchestrator = SignOrchestrator('/run/user/1000/ca/cachet.p12',
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'/home/julien/dev/chill/sign-pdf-worker/ts-authority/vendee-tsa.conf',
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'xxxxxxxxxxxxxxxxxxx',
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'/run/user/1000/ca/tsa-chain.pem',
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pkcs12_password=b"xxxxxxxxxxxxxxxx")
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with open('./assets/test.pdf', 'rb') as input:
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signed_content = orchestrator.sign(reason="first signer", signature_index=0,
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input_content=input.read(), box_place=(300, 600, 500, 660), on_page=0,
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signer_text="Mme Caroline Diallo")
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with open('./assets/test_signed_0.pdf', 'wb') as output:
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output.write(signed_content.read())
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with open('./assets/test_signed_0.pdf', 'rb') as input:
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signed_content = orchestrator.sign(reason="second signer", signature_index=1,
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input_content=input.read(), box_place=(100, 600, 300, 660), on_page=0,
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signer_text="M. Bah Mamadou")
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with open('./assets/test_signed_1.pdf', 'wb') as output:
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output.write(signed_content.read())
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64
pythonProject/timestamp.py
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64
pythonProject/timestamp.py
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@ -0,0 +1,64 @@
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import logging
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import os
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from asn1crypto import tsp
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from asn1crypto.tsp import TimeStampResp
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from pyhanko.sign.timestamps import TimeStamper
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import subprocess
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LOGGER = logging.getLogger(__name__)
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LOGGER.setLevel(os.environ.get('LOG_LEVEL', logging.DEBUG))
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class LocalOpensslTimestamp(TimeStamper):
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"""
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Apply a timestamp using a local openssl cli.
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The class provides methods to request a timestamp response from a local OpenSSL TSA cli.
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"""
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def __init__(self, path_config: str, password: str, path_chain: str):
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super().__init__()
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self.path_conf = path_config
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self.password = password
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self.path_chain = path_chain
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def request_tsa_response(self, req: tsp.TimeStampReq) -> tsp.TimeStampResp:
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with open('/tmp/request.tsq', 'wb') as request:
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request.write(req.dump())
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cmd = [
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'openssl', 'ts', '-reply',
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'-config', self.path_conf,
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'-queryfile', '/tmp/request.tsq',
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'-chain', self.path_chain,
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'-out', '/tmp/response.tsr',
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'-passin', f'pass:{self.password}'
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]
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try:
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subprocess.run(cmd, capture_output=True, check=True, timeout=10)
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except subprocess.CalledProcessError as e:
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LOGGER.error("Could not generate a timestamp")
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LOGGER.error(f"response code: {e.returncode}")
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LOGGER.error(f"stderr: {e.stderr}")
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LOGGER.error(f"stdout: {e.stdout}")
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LOGGER.error(f"error: {e.output}")
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raise Exception("could not generate a timestamp")
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except subprocess.TimeoutExpired as e:
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LOGGER.error("timeout expired")
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LOGGER.error(f"stderr: {e.stderr}")
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LOGGER.error(f"stdout: {e.stdout}")
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LOGGER.error(f"error: {e.output}")
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raise e
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with open('/tmp/response.tsr', mode='rb') as f:
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tsp = TimeStampResp.load(f.read())
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os.unlink('/tmp/response.tsr')
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return tsp
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async def async_request_tsa_response(self, req: tsp.TimeStampReq) -> tsp.TimeStampResp:
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return self.request_tsa_response(req)
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@ -19,13 +19,14 @@ for v in ['AMQP_URL', 'PKCS12_PATH', 'TIMESTAMP_URL', 'QUEUE_IN', 'EXCHANGE_OUT'
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DSN = os.environ.get('AMQP_URL')
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PKCS12_PATH = os.environ.get('PKCS12_PATH')
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TIMESTAMP_URL = os.environ.get('TIMESTAMP_URL')
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QUEUE_IN = os.environ.get('QUEUE_IN')
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EXCHANGE_OUT = os.environ.get('EXCHANGE_OUT')
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OUT_ROUTING_KEY = os.environ.get('OUT_ROUTING_KEY')
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TSA_CONFIG_PATH = os.environ.get('TSA_CONFIG_PATH')
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TSA_CERT_CHAIN = os.environ.get('TSA_CERT_CHAIN')
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TSA_KEY_PASSWORD = os.environ.get('TSA_KEY_PASSWORD')
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orchestrator = sign.SignOrchestrator(PKCS12_PATH, TIMESTAMP_URL, pkcs12_password=os.environ.get('PKCS12_PASSWORD', None))
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orchestrator = sign.SignOrchestrator(PKCS12_PATH, TSA_CONFIG_PATH, TSA_KEY_PASSWORD, TSA_CERT_CHAIN, pkcs12_password=os.environ.get('PKCS12_PASSWORD', None))
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parameters = pika.URLParameters(DSN)
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connection = pika.BlockingConnection(parameters)
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@ -151,3 +151,17 @@ The OK response ensures that the original signed timestamp is correctly authoriz
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openssl ts -verify -data /etc/hosts -in /tmp/response.tsr -CAfile ca/root-ca.pem -untrusted ca/tsa.pem
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```
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# Préparation pour Vendée
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## Extraire les infos
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```bash
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openssl pkcs12 -info -in horodatage.p12 -legacy
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```
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Ca demandera un mot de passe pour déchiffrer, et un autre mot de passe pour chiffrer la clé qui apparaitra.
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- on recopie la clé et on fait un copier-coller dans /run/user/1000/ca/private/tsa.key
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- on recopie tous les certificats, on supprime les interligne, et on colle ça dans /run/user/1000/ca/tsa-chain.pem
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- on recopie le premier certificat, pour céer /run/user/1000/ca/tsa.crt
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@ -138,7 +138,7 @@ subjectKeyIdentifier = hash
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default_tsa = tsa_config1
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[ tsa_config1 ]
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dir = . # TSA root directory, same as root-ca
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dir = /home/julien/dev/chill/sign-pdf-worker/ts-authority # TSA root directory, same as root-ca
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serial = $dir/ca/tsa_serial # current serial number (mandatory)
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signer_cert = $dir/ca/tsa.crt # signing certificate (optional)
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certs = $dir/ca/tsa-chain.pem # certification chain (optional)
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46
ts-authority/vendee-tsa.conf
Normal file
46
ts-authority/vendee-tsa.conf
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@ -0,0 +1,46 @@
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#
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# rootca.conf
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#
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# See Ristic OpenSSL Cookbook URL above.
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oid_section = new_oids
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[ new_oids ]
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tsa_policy1 = 1.2.3.4.1
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tsa_policy2 = 1.2.3.4.5.6
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tsa_policy3 = 1.2.3.4.5.7
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[ tsa ]
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default_tsa = tsa_config1
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[ tsa_config1 ]
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dir = /run/user/1000/ca # TSA root directory, same as root-ca
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serial = $dir/tsa_serial # current serial number (mandatory)
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signer_cert = $dir/tsa.crt # signing certificate (optional)
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certs = $dir/tsa-chain.pem # certification chain (optional)
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signer_key = $dir/private/tsa.key # tsa private key (optional)
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default_policy = tsa_policy1
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signer_digest = sha256 # digest to use for signing (optional)
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other_policies = tsa_policy2,tsa_policy3 # other policies (optional)
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digests = sha256,sha384,sha512 # acceptable digests (mandatory)
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accuracy = secs:1,millisecs:500,microsecs:100 # accuracy optional
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ordering = yes # is ordering defined? (optional, default: no)
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tsa_name = yes # must tsa name be included in reply? (opt., default: no)
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ess_cert_id_chain = yes # must ess cert id change be incl? (opt., default: no)
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ess_cert_id_alg = sha256 # alg to compute cert. id (optional, default: sha1)
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# added, was missing in the blog post
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crypto_device = builtin
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# The tsa_ext extension is
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# used to create the tsa cert tsa.crt
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[ tsa_ext ]
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authorityKeyIdentifier = keyid:always
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basicConstraints = critical,CA:false
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extendedKeyUsage = critical,timeStamping
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keyUsage = critical,nonRepudiation
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subjectKeyIdentifier = hash
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