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@ -10,7 +10,6 @@ from sqlalchemy.ext.declarative import declarative_base
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from sqlalchemy.dialects.postgresql import UUID
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from sqlalchemy.types import Float
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from sqlalchemy_json import MutableJson
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from sqlalchemy import and_, or_, not_
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import hashlib
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import json
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@ -94,23 +93,6 @@ class Slate(db.Model):
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list_slates.append(slate_db.slate)
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return list_slates
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@classmethod
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def delete_slate(cls, address, slate):
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q = cls.query
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q = q.filter(and_(Slate.receivingAddress == address, Slate.slate == slate) )
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result = q.first()
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if result is None:
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print("none guy")
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return True
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try:
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db.session.delete(result)
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db.session.commit()
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db.session.flush()
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return True
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except Exception as ex:
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db.session.rollback()
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return False
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@classmethod
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def add(cls, slate, receivingAddress):
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from funding.factory import db
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@ -130,73 +112,3 @@ class Slate(db.Model):
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except Exception as ex:
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db.session.rollback()
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raise
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class Cancel(db.Model):
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__tablename__ = "cancels"
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id = db.Column(db.Integer, primary_key=True)
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slate_id = db.Column(db.String())
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# TODO: clear slatse that have been in the database past a certain time
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posted_time = db.Column(db.DateTime)
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receivingAddress = db.Column(db.String(52), nullable=False)
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sendersAddress = db.Column(db.String(52), nullable=False)
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def __init__(self, slate_id, receivingAddress, sendersAddress):
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from funding.factory import bcrypt
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self.slate_id = slate_id
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self.receivingAddress = receivingAddress
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self.sendersAddress = sendersAddress
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self.posted_time = datetime.utcnow()
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def __repr__(self):
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return "<Cancel(slate_id='%s', receivingAddress='%s', sendersAddress='%s', posted_time='%s)>" % (
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self.slate_id, self.receivingAddress, self.sendersAddress, self.posted_time)
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@classmethod
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def find_slate_ids(cls, address):
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q = cls.query
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q = q.filter(Cancel.receivingAddress == address)
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result = q.all()
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print(f'{result}')
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list_slates = []
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for slate_db in result:
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list_slates.append({slate_db.slate_id: slate_db.sendersAddress})
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return list_slates
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@classmethod
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def delete_slate_id(cls, address, slate_id):
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q = cls.query
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q = q.filter(and_(Cancel.receivingAddress == address, Cancel.slate_id == slate_id))
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result = q.first()
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if result is None:
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print("none guy")
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return True
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try:
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db.session.delete(result)
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db.session.commit()
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db.session.flush()
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return True
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except Exception as ex:
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db.session.rollback()
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return False
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@classmethod
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def add(cls, slate_id, receivingAddress, sendersAddress):
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from funding.factory import db
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try:
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previous = cls.query.filter(Cancel.slate_id == slate_id).first()
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if previous is not None:
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print(previous)
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print("was inputted before")
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return
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# put in new one
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new_cancel_request = Cancel(slate_id=slate_id, receivingAddress=receivingAddress, sendersAddress=sendersAddress)
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db.session.add(new_cancel_request)
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db.session.commit()
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db.session.flush()
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return new_cancel_request
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except Exception as ex:
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db.session.rollback()
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raise
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@ -8,10 +8,7 @@ import json
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import settings
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from funding.factory import app, db, cache
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from funding.orm import Address, Slate, Cancel
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import secp256k1
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import base58
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from funding.orm import Address, Slate
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@app.route('/')
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@ -53,162 +50,15 @@ def postSlate(receivingAddress, slate):
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@app.route('/getSlates', methods=['POST'])
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@endpoint.api(
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parameter('receivingAddress', type=str, required=True),
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parameter('signature', type=str, required=True)
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)
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def getSlates(receivingAddress, signature):
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def getSlates(receivingAddress):
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try:
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if receivingAddress is None or signature is None:
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if receivingAddress is None:
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return make_response(jsonify({'status': 'failure', 'error': str("missing correct arguments")}))
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# Deserialize the base-58 address to an internal public key format
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# NOTE: This assumes that the network version (which is not part of the key) is exactly 2 bytes
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public_key = secp256k1.PublicKey(base58.b58decode_check(receivingAddress)[2:], raw=True)
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# Prepare the message bound to the signature: a domain separator and the encoded address
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# For some reason, the original client code calls this the "challenge"
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message = 'SubscribeRequest_' + receivingAddress
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# Deserialize and verify the provided signature against the message and address public key
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if not public_key.ecdsa_verify(message.encode(),
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public_key.ecdsa_deserialize(bytes(bytearray.fromhex(signature)))):
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return make_response(jsonify({'status': 'failure', 'error': str("bad signature")}))
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slates = Slate.find_slates(address=receivingAddress)
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return make_response(jsonify({'status': 'success', 'slates': slates}))
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except Exception as ex:
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print(f'{ex}')
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return make_response(jsonify({'status': 'failure', 'error': str(ex)}))
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@app.route('/deleteSlate', methods=['POST'])
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@endpoint.api(
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parameter('receivingAddress', type=str, required=True),
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parameter('signature', type=str, required=True),
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parameter('slate', type=str, required=True)
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)
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def deleteSlate(receivingAddress, signature, slate):
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try:
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if slate is None or signature is None or receivingAddress is None:
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return make_response(jsonify({'status': 'failure', 'error': str("missing correct arguments")}))
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# Deserialize the base-58 address to an internal public key format
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# NOTE: This assumes that the network version (which is not part of the key) is exactly 2 bytes
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public_key = secp256k1.PublicKey(base58.b58decode_check(receivingAddress)[2:], raw=True)
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# Prepare the message bound to the signature: a domain separator and the encoded address
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# For some reason, the original client code calls this the "challenge"
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message = 'SubscribeRequest_' + receivingAddress
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# Deserialize and verify the provided signature against the message and address public key
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if not public_key.ecdsa_verify(message.encode(),
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public_key.ecdsa_deserialize(bytes(bytearray.fromhex(signature)))):
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return make_response(jsonify({'status': 'failure', 'error': str("bad signature")}))
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is_deleted = Slate.delete_slate(address=receivingAddress, slate=slate)
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return make_response(jsonify({'status': 'success', 'is_deleted': is_deleted}))
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except Exception as ex:
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print(f'{ex}')
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return make_response(jsonify({'status': 'failure', 'error': str(ex)}))
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@app.route('/postCancel', methods=['POST'])
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@endpoint.api(
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parameter('receivingAddress', type=str, required=True),
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parameter('signature', type=str, required=True),
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parameter('slate', type=str, required=True),
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parameter('sendersAddress', type=str, required=True),
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)
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def postCancel(receivingAddress, signature, slate, sendersAddress):
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try:
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if sendersAddress is None or slate is None or signature is None or receivingAddress is None:
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return make_response(jsonify({'status': 'failure', 'error': str("missing correct arguments")}))
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# Deserialize the base-58 address to an internal public key format
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# NOTE: This assumes that the network version (which is not part of the key) is exactly 2 bytes
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public_key = secp256k1.PublicKey(base58.b58decode_check(sendersAddress)[2:], raw=True)
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# Prepare the message bound to the signature: a domain separator and the encoded address
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# For some reason, the original client code calls this the "challenge"
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message = 'SubscribeRequest_' + sendersAddress
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# Deserialize and verify the provided signature against the message and address public key
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if not public_key.ecdsa_verify(message.encode(),
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public_key.ecdsa_deserialize(bytes(bytearray.fromhex(signature)))):
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return make_response(jsonify({'status': 'failure', 'error': str("bad signature")}))
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try:
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Cancel.add(receivingAddress=receivingAddress, slate_id=slate, sendersAddress=sendersAddress)
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except Exception as ex:
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print(f'{ex}')
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return make_response(jsonify({'status': 'success'}))
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except Exception as ex:
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print(f'{ex}')
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return make_response(jsonify({'status': 'failure', 'error': str(ex)}))
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@app.route('/getCancels', methods=['POST'])
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@endpoint.api(
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parameter('receivingAddress', type=str, required=True),
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parameter('signature', type=str, required=True),
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)
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def getCancels(receivingAddress, signature):
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try:
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if receivingAddress is None or signature is None:
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return make_response(jsonify({'status': 'failure', 'error': str("missing correct arguments")}))
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# Deserialize the base-58 address to an internal public key format
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# NOTE: This assumes that the network version (which is not part of the key) is exactly 2 bytes
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public_key = secp256k1.PublicKey(base58.b58decode_check(receivingAddress)[2:], raw=True)
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# Prepare the message bound to the signature: a domain separator and the encoded address
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# For some reason, the original client code calls this the "challenge"
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message = 'SubscribeRequest_' + receivingAddress
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# Deserialize and verify the provided signature against the message and address public key
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if not public_key.ecdsa_verify(message.encode(),
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public_key.ecdsa_deserialize(bytes(bytearray.fromhex(signature)))):
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return make_response(jsonify({'status': 'failure', 'error': str("bad signature")}))
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slates = Cancel.find_slate_ids(address=receivingAddress)
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return make_response(jsonify({'status': 'success', 'canceled_slates': slates}))
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except Exception as ex:
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print(f'{ex}')
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return make_response(jsonify({'status': 'failure', 'error': str(ex)}))
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@app.route('/deleteCancels', methods=['POST'])
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@endpoint.api(
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parameter('receivingAddress', type=str, required=True),
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parameter('signature', type=str, required=True),
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parameter('slate', type=str, required=True)
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)
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def deleteCancels(receivingAddress, signature, slate):
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try:
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if slate is None or signature is None or receivingAddress is None:
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return make_response(jsonify({'status': 'failure', 'error': str("missing correct arguments")}))
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# Deserialize the base-58 address to an internal public key format
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# NOTE: This assumes that the network version (which is not part of the key) is exactly 2 bytes
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public_key = secp256k1.PublicKey(base58.b58decode_check(receivingAddress)[2:], raw=True)
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# Prepare the message bound to the signature: a domain separator and the encoded address
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# For some reason, the original client code calls this the "challenge"
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message = 'SubscribeRequest_' + receivingAddress
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# Deserialize and verify the provided signature against the message and address public key
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if not public_key.ecdsa_verify(message.encode(),
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public_key.ecdsa_deserialize(bytes(bytearray.fromhex(signature)))):
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return make_response(jsonify({'status': 'failure', 'error': str("bad signature")}))
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is_deleted = Cancel.delete_slate_id(address=receivingAddress, slate_id=slate)
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return make_response(jsonify({'status': 'success', 'is_deleted': is_deleted}))
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except Exception as ex:
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print(f'{ex}')
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return make_response(jsonify({'status': 'failure', 'error': str(ex)}))
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@ -14,6 +14,4 @@ pypng
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pillow-simd
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Flask-Caching
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flask-sqlalchemy
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sqlalchemy_json
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secp256k1
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base58
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sqlalchemy_json
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