#Developer: Curly60e #PyBLOCK its a clock of the Bitcoin blockchain. #Version: 0.2.0 import os import os.path import time as t import pickle import psutil import qrcode from clone import * from donation import * from feed import * from art import * from logos import * from sysinf import * from pblogo import * from apisnd import * from fxmain import * from terminal_matrix.matrix import * def console(): # get into the console from bitcoin-cli print("\t\033[0;37;40mThis is \033[1;33;40mBitcoin-cli's \033[0;37;40mconsole. Type your respective commands you want to display.\n\n") while True: cle = input("\033[1;32;40mconsole $>: \033[0;37;40m") lsd = os.popen(path + " " + cle) lsd0 = lsd.read() lsd1 = str(lsd0) print(lsd1) lsd.close() def screensv(): try: doit() except (KeyboardInterrupt, SystemExit): matrix.close() clear() ptr() menu() #-------------------Lighitning network------------------------------------- def LNInvoice(): qr = qrcode.QRCode( version=1, error_correction=qrcode.constants.ERROR_CORRECT_L, box_size=10, border=4, ) lncli = " addinvoice " print("\nLeave the Amount blank if you want to receive a random amount.\n") amt = input("Amount: ") sh = os.popen(pathLN + lncli + amt) shh = sh.read() shh0 = str(shh) shh1 = shh0.split(',') shh2 = shh1[1] lnbc1R = shh2.split(':') lnbc1W = lnbc1R[1] ln = str(lnbc1W) ln1 = ln.strip('"') ln2 = ln1.split('"') ln3 = ln2[1] print("\033[1;30;47m") qr.add_data(ln3) qr.print_ascii() print("\033[0;37;40m") print("Lightning Invoice: " + ln3) while True: sha = os.popen(pathLN + " decodepayreq " + ln3) sha1 = sha.read() sha2 = str(sha1) sha3 = sha2.split(',') sha4 = sha3[5] sha5= sha4.split(':') sha6 = sha5[1] lna = str(sha6) lna1 = lna.split('"') lna2 = lna1[1] hshid = sha3[1] hshid0 = hshid.split(':') hshid1 = hshid0[1] hshid2 = str(hshid1) hshid3 = hshid2.split('"') hashid = hshid3[1] sh1 = os.popen(pathLN + " lookupinvoice " + hashid) sh2 = sh1.read() sh3 = str(sh2) sh4 = sh3.split(',') sh5 = sh4[20] if 'SETTLED' in sh5: clear() prt() print("\033[1;32;40m") tick() print("\033[0;37;40m") t.sleep(2) break def payinvoice(): lncli = " payinvoice " invoice = input("Pay Invoice: ") #----------decode invoice----- lnclideq = " decodepayreq " sh = os.popen(pathLN + lnclideq + invoice) shh = sh.read() shh0 = str(shh) shh1 = shh0.split(',') shh2 = shh1[2] #----amount---- lnbc1R = shh2.split(':') lnbc1W = lnbc1R[1] ln = str(lnbc1W) ln1 = ln.split('"') ln3 = ln1[1] if ln3 == "0": amt = " --amt " amount = input("Amount in satoshis: ") os.system(pathLN + lncli + invoice + amt + amount) else: os.system(pathLN + lncli + invoice) tmp() #-------------------From this line the program starts---------------------- def connected(info): # here we complete the connection to the external node if info == "Y" or info == "y": clear() prt() print("\nAdd your node information\n") menuUserConn() else: menu() def nodeinfo(): print("\n\033[1;31;40mWARNING! This is not a safe method of connection. The best method is doing this locally.\n") connected(input("WARNING! Are you sure you want to connect to a node? Y/n: \033[0;37;40m")) # call 'connected' function to make the connection with the node information def artist(): # here we convert the result of the command 'getblockcount' on a random art design custom = input("Do you want random designs? Y/n: ") if custom == "Y" or custom == "y": while True: try: clear() close() design() tmp() except (KeyboardInterrupt, SystemExit): menu() raise else: while True: try: clear() close() getblockcount() tmp() except (KeyboardInterrupt, SystemExit): menu() raise def design(): bitcoinclient = path + " getblockcount" block = os.popen(str(bitcoinclient)).read() # 'getblockcount' convert to string b = block print("\033[1;32;40m") tprint(b, font="rnd-large") print("\033[0;37;40m") #------------------------------------------- SSH connection external node -------------------------------------------- def userconn(): # All the connection to a remote node option = input("\033[1;32;40mSelect option: \033[0;37;40m") if option == "A" or option == "a": # Execution of the secondary Menu menuUserConn user = input("\033[1;36;40mUSER\033[0;37;40m@\033[1;33;40mNODE: \033[0;37;40m") s = input("Do you want to continue Y/n: ") if s == "Y" or s == "y": clear() c = input("Do you want to see custom design? Y/n: ") if c == "Y" or c == "y": while True: # connection via ssh try: clear() close() sshb = "ssh " + user + " '" + "{}".format(path) + "'" + " getblockcount" sshc = os.popen(sshb) lsd0 = sshc.read() lsd1 = str(lsd0) sshd = lsd1 print("\033[1;32;40m") tprint(sshd, font="rnd-large") print("\033[0;37;40m") tmp() sshc.close() except (KeyboardInterrupt, SystemExit): menuUserConn() raise else: menu() else: while True: # connection via ssh try: clear() close() sshb = "ssh " + user + " '" + "{}".format(path) + "'" + " getblockchaininfo" os.system(sshb) tmp() except (KeyboardInterrupt, SystemExit): menuUserConn() raise else: menu() elif option == "B" or option == "b": # Decode Block 0 on HEX for external node user = input("\033[1;36;40mUSER\033[0;37;40m@\033[1;33;40mNODE: \033[0;37;40m") while True: clear() prt() sshb = "ssh " + user + " '" + "{}".format(path) + "'" + " getblock 000000000019d6689c085ae165831e934ff763ae46a2a6c172b3f1b60a8ce26f 0 | xxd -r -p | hexyl -n 256" os.system(sshb) a = input("Do you want to return to the Node Connection Menu? Y/n: ") if a == "Y" or a == "y": menuUserConn() else: b = input("Do you want to exit? Y/n: ") if b == "Y" or b == "y": exit() else: menuUserConn() tmp() elif option == "C" or option == "c": # Block decoder to HEX for external node readHexBlockSsh() while True: m = input("Do you want to continue decoding? Y/n: ") if m == "Y" or m == "y": readHexBlockSsh() else: menuUserConn() elif option == "D" or option == "d": readHexTXSsh() while True: m = input("Do you want to continue decoding? Y/n: ") if m == "Y" or m == "y": readHexTXSsh() else: menuUserConn() elif option == "R" or option == "r": menu() #------------------------------------------- End SSH connection external node -------------------------------------------- #--------------------------------- Hex Block Decoder Functions ------------------------------------- def readHexBlockSsh(): # Hex Decoder using Hexyl on an external node user = input("\033[1;36;40mUSER\033[0;37;40m@\033[1;33;40mNODE: \033[0;37;40m") clear() prt() hexa = input("Add the Block Hash you want to decode: ") blocknumber = input("Add the Block number: ") decodeBlock = "ssh " + user + " '" + "{}".format(path) + "'" + " getblock {} {}".format(hexa, blocknumber) + " | xxd -r -p | hexyl -n 256" clear() prt() os.system(decodeBlock) def readHexTXSsh(): # Hex Decoder using Hexyl on an external node user = input("\033[1;36;40mUSER\033[0;37;40m@\033[1;33;40mNODE: \033[0;37;40m") clear() prt() hexa = input("Add the Transaction ID. you want to decode: ") decodeTX = "ssh " + user + " '" + "{}".format(path) + "'" + " getrawtransaction {}".format(hexa) + " | xxd -r -p | hexyl -n 256" clear() prt() os.system(decodeTX) def getrawtx(): # show confirmatins from transactions tx = input("Insert your TxID: ") while True: try: clear() prt() close() bitcoincli = " getrawtransaction " if tx == "4a5e1e4baab89f3a32518a88c31bc87f618f76673e2cc77ab2127b7afdeda33b": print("""\t\t\n\033[1;35;40mThis transaction it's the first one of the Bitcoin Blockchain on Block 0 by Satoshi Nakamoto. You can decode that block in HEX and see what's inside.\033[0;37;40m""") t.sleep(10) else: lsd = os.popen(path + bitcoincli + tx + " 1") lsd0 = lsd.read() lsd1 = str(lsd0) lsda = lsd1.split(',') lsdb = lsda[-3] lsdc = str(lsdb) print("\033[0;37;40mTransaction " + "\033[1;31;40m{}\033[0;37;40m".format(tx) + " has:\n" + "\033[1;31;40m{}\033[0;37;40m".format(lsdc)) tmp() lsd.close() except (KeyboardInterrupt, SystemExit): menu() #--------------------------------- End Hex Block Decoder Functions ------------------------------------- #--------------------------------- Menu section ----------------------------------- def menu(): #Main Menu clear() prt() sysinfo() print("""\t\t \033[1;31;40mPyBLOCK\033[0;37;40m Menu Version 0.2.0 \033[1;31;40mA.\033[0;37;40m Run PyBLOCK in your own node \033[1;32;40mB.\033[0;37;40m Show Blockchain information in your own node \033[1;32;40mC.\033[0;37;40m Show the Genesis Block \033[1;32;40mD.\033[0;37;40m Decode in HEX any block \033[1;32;40mE.\033[0;37;40m Decode in HEX any transaction \033[1;32;40mF.\033[0;37;40m Show confirmations from a transaction \033[1;32;40mG.\033[0;37;40m Connect to an external node through SSH \033[1;32;40mH.\033[0;37;40m Advanced \033[1;33;40mL.\033[0;37;40m Lightning Network \033[1;34;40mS.\033[0;37;40m SatNode \033[1;35;40mX.\033[0;37;40m Donate \033[1;33;40mQ.\033[0;37;40m Exit \n\n""") menuA(input("\033[1;32;40mSelect option: \033[0;37;40m")) def menuUserConn(): #Menu before connection over ssh clear() prt() sysinfo() print("""\t\t \033[1;31;40mPyBLOCK\033[0;37;40m Menu Version 0.2.0 \033[1;32;40mA.\033[0;37;40m Run PyBLOCK in this external node \033[1;32;40mB.\033[0;37;40m Show the Genesis Block \033[1;32;40mC.\033[0;37;40m Decode in HEX any block \033[1;32;40mD.\033[0;37;40m Decode in HEX any transaction \033[1;36;40mR.\033[0;37;40m Return Main Menu \n\n""") userconn() def advanceMenu(): # Advanced Menu clear() prt() sysinfo() print("""\t\t \033[1;31;40mPyBLOCK\033[0;37;40m Menu Version 0.2.0 \033[1;32;40mA.\033[0;37;40m Bitconi-cli Console \033[1;32;40mB.\033[0;37;40m FunB \033[1;32;40mC.\033[0;37;40m Show QR from a Bitcoin Address \033[1;32;40mS.\033[0;37;40m Sysinfo \033[1;36;40mR.\033[0;37;40m Return Main Menu \n\n""") menuB(input("\033[1;32;40mSelect option: \033[0;37;40m")) def dnt(): # Donation selection menu clear() prt() sysinfo() print("""\t\t \033[1;31;40mPyBLOCK\033[0;37;40m Menu Version 0.2.0 \033[1;32;40mA.\033[0;37;40m Developers Donation \033[1;32;40mB.\033[0;37;40m Testers Donation \033[1;36;40mR.\033[0;37;40m Return Main Menu \n\n""") menuC(input("\033[1;32;40mSelect option: \033[0;37;40m")) def dntDev(): # Dev Donation Menu clear() prt() sysinfo() print("""\t\t \033[1;31;40mPyBLOCK\033[0;37;40m Menu Version 0.2.0 \033[1;32;40mA.\033[0;37;40m PayNym \033[1;32;40mB.\033[0;37;40m Bitcoin Address \033[1;32;40mC.\033[0;37;40m Lightning Network \033[1;36;40mR.\033[0;37;40m Return Main Menu \n\n""") menuE(input("\033[1;32;40mSelect option: \033[0;37;40m")) def dntTst(): # Tester Donation Menu clear() prt() sysinfo() print("""\t\t \033[1;31;40mPyBLOCK\033[0;37;40m Menu Version 0.2.0 \033[1;32;40mA.\033[0;37;40m Bitcoin Address \033[1;32;40mB.\033[0;37;40m Lightning Network \033[1;36;40mR.\033[0;37;40m Return Main Menu \n\n""") menuF(input("\033[1;32;40mSelect option: \033[0;37;40m")) def satnodeMenu(): # Satnode Menu clear() prt() sysinfo() print("""\t\t \033[1;31;40mPyBLOCK\033[0;37;40m Menu Version 0.2.0 \033[1;32;40mA.\033[0;37;40m Start SatNode \033[1;32;40mB.\033[0;37;40m Feed \033[1;32;40mC.\033[0;37;40m Setup \033[1;34;40mS.\033[0;37;40m Send a Message to Space \033[1;36;40mD.\033[0;37;40m Return Main Menu \n\n""") menuD(input("\033[1;32;40mSelect option: \033[0;37;40m")) def menuLND(): clear() prt() sysinfo() print("""\t\t \033[1;31;40mPyBLOCK\033[0;37;40m Lightning Network Menu Version 0.2.0 \033[1;32;40mI.\033[0;37;40m New Invoice \033[1;31;40mP.\033[0;37;40m Pay Invoice \033[1;36;40mR.\033[0;37;40m Return Main Menu \n\n""") menuLN(input("\033[1;32;40mSelect option: \033[0;37;40m")) #--------------------------------- End Menu section ----------------------------------- #--------------------------------- Main Menu execution -------------------------------- def menuA(menuS): #Execution of the Main Menu options if menuS == "A" or menuS == "a": artist() elif menuS == "B" or menuS == "b": while True: try: clear() close() getblock() tmp() except (KeyboardInterrupt, SystemExit): menu() raise elif menuS == "C" or menuS == "c": clear() prt() getgenesis() a = input("Do you want to return to the Main Menu? Y/n: ") if a == "Y" or a == "y": menu() else: b = input("Do you want to exit? Y/n: ") if b == "Y" or b == "y": os._exit(0) apisnd.close() donation.close() clone.close() logos.close() feed.close() sysinf.close() fxmain.close() exit() else: menu() elif menuS == "D" or menuS == "d": clear() prt() readHexBlock() while True: r = input("Do you want to continue decoding? Y/n: ") if r == "Y" or r == "y": clear() prt() readHexBlock() else: menu() elif menuS == "E" or menuS == "e": clear() prt() readHexTx() while True: r = input("Do you want to continue decoding? Y/n: ") if r == "Y" or r == "y": clear() prt() sysinfo() readHexTx() else: menu() elif menuS == "F" or menuS == "f": getrawtx() elif menuS == "H" or menuS == "h": advanceMenu() elif menuS == "L" or menuS == "l": clear() prt() menuLND() elif menuS == "Q" or menuS == "q": os._exit(0) apisnd.close() donation.close() clone.close() logos.close() feed.close() sysinf.close() fxmain.close() exit() elif menuS == "S" or menuS == "s": clear() prt() satnodeMenu() elif menuS == "G" or menuS == "g": nodeinfo() elif menuS == "X" or menuS == "x": dnt() elif menuS == "T" or menuS == "t": #Test feature fast access print("This is a test access. \n") screensv() #------------------------------------------ def menuLN(menuLL): if menuLL == "I" or menuLL == "i": clear() prt() LNInvoice() elif menuLL == "P" or menuLL == "p": clear() prt() payinvoice() elif menuLL == "R" or menuLL == "r": menu() #------------------------------------------ def menuB(menuR): # Advanced access Menu if menuR == "A" or menuR == "a": while True: try: clear() prt() sysinfo() close() console() t.sleep(5) except (KeyboardInterrupt, SystemExit): advanceMenu() raise elif menuR == "B" or menuR == "b": while True: try: clear() prt() close() logoA() tmp() clear() prt() close() logoB() tmp() clear() prt() close() logoC() tmp() except (KeyboardInterrupt, SystemExit): advanceMenu() raise elif menuR == "C" or menuR == "c": while True: try: clear() prt() sysinfo() close() decodeQR() t.sleep(50) except (KeyboardInterrupt, SystemExit): advanceMenu() raise elif menuR == "S" or menuR == "s": while True: try: clear() prt() close() sysinfoDetail() t.sleep(1) except (KeyboardInterrupt, SystemExit): advanceMenu() raise elif menuR == "R" or menuR == "r": try: menu() except (KeyboardInterrupt, SystemExit): os._exit(0) apisnd.close() donation.close() clone.close() logos.close() feed.close() sysinf.close() exit() def menuC(menuO): # Donation access Menu if menuO == "A" or menuO == "a": dntDev() elif menuO == "B" or menuO == "b": dntTst() elif menuO == "R" or menuO == "r": menu() def menuD(menuN): # Satnode access Menu if menuN == "A" or menuN == "a": satnode() elif menuN == "B" or menuN == "b": readFile() elif menuN == "S" or menuN == "s": try: close() message = input("\n\033[0;37;40mYour message it's a \033[1;34;40mF\033[0;37;40mile or a plain \033[1;32;40mT\033[0;37;40mext? \033[1;34;40mF\033[0;37;40m/\033[1;32;40mT\033[0;37;40m: ") if message == "F" or message == "f": try: clear() prt() close() apisenderFile() t.sleep(30) menu() except (KeyboardInterrupt, SystemExit): menu() raise elif message == "T" or message == "t": try: clear() prt() close() apisender() t.sleep(30) menu() except (KeyboardInterrupt, SystemExit): menu() raise except (KeyboardInterrupt, SystemExit): menu() raise elif menuN == "C" or menuN == "c": print("\n\t This only will work on Linux or Unix systems.\n") a = input("Do we continue? Y/n: ") if a == "Y" or a == "y": gitclone() else: menu() def menuE(menuQ): # Dev Donation access Menu if menuQ == "A" or menuQ == "a": try: clear() prt() close() donationPN() t.sleep(50) menu() except (KeyboardInterrupt, SystemExit): menu() raise elif menuQ == "B" or menuQ == "b": try: clear() prt() close() donationAddr() t.sleep(50) menu() except (KeyboardInterrupt, SystemExit): menu() raise elif menuQ == "C" or menuQ == "c": try: clear() prt() close() donationLN() t.sleep(50) menu() except (KeyboardInterrupt, SystemExit): menu() raise elif menuQ == "R" or menuQ == "r": menu() def menuF(menuV): # Tester Donation access Menu if menuV == "A" or menuV == "a": try: clear() prt() close() donationAddrTst() t.sleep(50) menu() except (KeyboardInterrupt, SystemExit): menu() raise elif menuV == "B" or menuV == "b": try: clear() prt() close() donationLNTst() t.sleep(50) menu() except (KeyboardInterrupt, SystemExit): menu() raise elif menuV == "R" or menuV == "r": menu() #--------------------------------- End Main Menu execution -------------------------------- while True: # Loop clear() path = "" pathLN = "" #matrixsc() if os.path.isfile('bclock.conf') or os.path.isfile('blnclock.conf'): # Check if the file 'bclock.conf' is in the same folder pathv = pickle.load(open("bclock.conf", "rb")) # Load the file 'bclock.conf' path = pathv # Copy the variable pathv to 'path' pathLNv = pickle.load(open("blnclock.conf", "rb")) pathLN = pathLNv menu() else: prt() print("Welcome to \033[1;31;40mPyBLOCK\033[0;37;40m\n\n") path = input("Insert the Path to Bitcoin-Cli: ") pickle.dump(path, open("bclock.conf", "wb")) pathLN = input("Insert the Path to Lncli: ") pickle.dump(pathLN, open("blnclock.conf", "wb")) menu()