481 lines
13 KiB
C++
481 lines
13 KiB
C++
/*
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* IBAN: PostgreSQL functions and datatype
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* Copyright © 2016 Yorick de Wid <yorick17@outlook.com>
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see
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* <http://www.gnu.org/licenses/>.
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*
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*********************************************************************/
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extern "C"
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{
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#include "postgres.h"
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#include "utils/builtins.h"
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#include "libpq/pqformat.h"
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}
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#include <regex>
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extern "C"
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{
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PG_MODULE_MAGIC;
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using Iban = char;
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}
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class Specification {
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public:
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Specification(std::string structure, size_t length)
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: structure{ structure }
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, m_length{ length }
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{
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};
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inline size_t getLength() const noexcept
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{
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return m_length;
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}
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std::string structure;
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private:
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size_t m_length;
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};
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class Validate {
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public:
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Validate();
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bool isValid(std::string arg);
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void addSpecification(std::string countryCode, size_t length, std::string structure) noexcept
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{
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specifications.emplace(countryCode, std::make_unique<Specification>(structure, length));
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}
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std::map<std::string, std::unique_ptr<Specification>> specifications;
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};
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/* Validator global instance. */
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static Validate validator;
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/**
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* Calculates the MOD 97 10 of the passed IBAN as specified in ISO7064.
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*
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* @param string iban
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* @returns {bool}
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*/
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static bool iso7064Mod97_10(std::string iban) {
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std::rotate(iban.begin(), iban.begin() + 4, iban.end());
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/* Will contain the letter substitutions */
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std::string numberstring;
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numberstring.reserve(iban.size());
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for (const auto& c : iban) {
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if (std::isdigit(c)) {
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numberstring += c;
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}
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if (std::isupper(c)) {
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numberstring += std::to_string(static_cast<int>(c) - 55);
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}
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}
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/*
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* Implements a stepwise check for mod 97 in chunks of 9 at the first time
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* then in chunks of seven prepended by the last mod 97 operation converted
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* to a string
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*/
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size_t segstart = 0;
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int step = 9;
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std::string prepended;
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long number = 0;
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while (segstart < numberstring.length() - step) {
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number = std::stol(prepended + numberstring.substr(segstart, step));
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int remainder = number % 97;
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prepended = std::to_string(remainder);
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if (remainder < 10) {
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prepended = "0" + prepended;
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}
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segstart = segstart + step;
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step = 7;
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}
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number = std::stol(prepended + numberstring.substr(segstart));
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return number % 97 == 1;
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}
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/**
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* parse the bban structure used to configure each iban specification and returns a matching regular expression.
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* a structure is composed of blocks of 3 characters (one letter and 2 digits). each block represents
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* a logical group in the typical representation of the bban. for each group, the letter indicates which characters
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* are allowed in this group and the following 2-digits number tells the length of the group.
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*
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* @param {string} structure the structure to parse
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* @returns {regexp}
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*/
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static std::regex parseStructure(std::string structure) {
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std::smatch match;
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std::string::const_iterator text_iter = structure.cbegin();
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std::ostringstream result;
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while (std::regex_search(text_iter, structure.cend(), match, std::regex("(.{3})"))) {
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std::string format;
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char pattern = match[0].str()[0];
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int repeats = std::stoi((match[0].str().substr(1)));
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/* Parse each structure block (1-char + 2-digits) */
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switch (pattern) {
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case 'A': format = "0-9A-ZA-Z"; break;
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case 'B': format = "0-9A-Z"; break;
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case 'C': format = "A-ZA-Z"; break;
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case 'F': format = "0-9"; break;
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case 'L': format = "A-Z"; break;
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case 'U': format = "A-Z"; break;
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case 'W': format = "0-9A-Z"; break;
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}
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result << "([" << format << "]{" << repeats << "})";
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text_iter = match[0].second;
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}
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std::string regex = "^" + result.str() + "$";
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return std::regex(regex.c_str());
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}
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bool Validate::isValid(std::string account) {
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/* Convert uppercase */
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std::transform(account.begin(), account.end(), account.begin(), toupper);
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/* Reject anything too small */
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if (account.length() < 3) {
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return false;
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}
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/* Match on country */
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const std::string& countryCode = account.substr(0, 2);
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const std::string& shortened = account.substr(4);
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const std::unique_ptr<Specification>& specFound = specifications[countryCode];
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if (!specFound) {
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return false;
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}
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/* Test accountnumber */
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return specFound->getLength() == account.length()
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&& std::regex_match(shortened, parseStructure(specFound->structure))
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&& iso7064Mod97_10(account);
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}
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Validate::Validate() {
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addSpecification(
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"AD", 24, "F04F04A12");
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addSpecification(
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"AE", 23, "F03F16");
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addSpecification(
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"AL", 28, "F08A16");
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addSpecification(
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"AT", 20, "F05F11");
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addSpecification(
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"AZ", 28, "U04A20");
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addSpecification(
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"BA", 20, "F03F03F08F02");
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addSpecification(
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"BE", 16, "F03F07F02");
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addSpecification(
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"BG", 22, "U04F04F02A08");
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addSpecification(
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"BH", 22, "U04A14");
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addSpecification(
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"BR", 29, "F08F05F10U01A01");
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addSpecification(
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"CH", 21, "F05A12");
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addSpecification(
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"CR", 21, "F03F14");
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addSpecification(
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"CY", 28, "F03F05A16");
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addSpecification(
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"CZ", 24, "F04F06F10");
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addSpecification(
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"DE", 22, "F08F10");
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addSpecification(
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"DK", 18, "F04F09F01");
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addSpecification(
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"DO", 28, "U04F20");
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addSpecification(
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"EE", 20, "F02F02F11F01");
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addSpecification(
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"ES", 24, "F04F04F01F01F10");
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addSpecification(
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"FI", 18, "F06F07F01");
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addSpecification(
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"FO", 18, "F04F09F01");
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addSpecification(
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"FR", 27, "F05F05A11F02");
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addSpecification(
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"GB", 22, "U04F06F08");
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addSpecification(
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"GE", 22, "U02F16");
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addSpecification(
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"GI", 23, "U04A15");
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addSpecification(
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"GL", 18, "F04F09F01");
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addSpecification(
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"GR", 27, "F03F04A16");
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addSpecification(
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"GT", 28, "A04A20");
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addSpecification(
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"HR", 21, "F07F10");
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addSpecification(
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"HU", 28, "F03F04F01F15F01");
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addSpecification(
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"IE", 22, "U04F06F08");
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addSpecification(
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"IL", 23, "F03F03F13");
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addSpecification(
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"IS", 26, "F04F02F06F10");
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addSpecification(
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"IT", 27, "U01F05F05A12");
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addSpecification(
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"KW", 30, "U04A22");
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addSpecification(
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"KZ", 20, "F03A13");
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addSpecification(
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"LB", 28, "F04A20");
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addSpecification(
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"LC", 32, "U04F24");
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addSpecification(
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"LI", 21, "F05A12");
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addSpecification(
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"LT", 20, "F05F11");
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addSpecification(
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"LU", 20, "F03A13");
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addSpecification(
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"LV", 21, "U04A13");
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addSpecification(
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"MC", 27, "F05F05A11F02");
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addSpecification(
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"MD", 24, "U02A18");
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addSpecification(
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"ME", 22, "F03F13F02");
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addSpecification(
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"MK", 19, "F03A10F02");
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addSpecification(
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"MR", 27, "F05F05F11F02");
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addSpecification(
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"MT", 31, "U04F05A18");
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addSpecification(
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"MU", 30, "U04F02F02F12F03U03");
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addSpecification(
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"NL", 18, "U04F10");
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addSpecification(
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"NO", 15, "F04F06F01");
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addSpecification(
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"PK", 24, "U04A16");
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addSpecification(
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"PL", 28, "F08F16");
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addSpecification(
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"PS", 29, "U04A21");
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addSpecification(
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"PT", 25, "F04F04F11F02");
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addSpecification(
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"RO", 24, "U04A16");
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addSpecification(
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"RS", 22, "F03F13F02");
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addSpecification(
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"SA", 24, "F02A18");
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addSpecification(
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"SE", 24, "F03F16F01");
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addSpecification(
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"SI", 19, "F05F08F02");
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addSpecification(
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"SK", 24, "F04F06F10");
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addSpecification(
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"SM", 27, "U01F05F05A12");
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addSpecification(
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"ST", 25, "F08F11F02");
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addSpecification(
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"TL", 23, "F03F14F02");
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addSpecification(
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"TN", 24, "F02F03F13F02");
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addSpecification(
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"TR", 26, "F05F01A16");
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addSpecification(
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"VG", 24, "U04F16");
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addSpecification(
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"XK", 20, "F04F10F02");
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addSpecification(
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"AO", 25, "F21");
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addSpecification(
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"BF", 27, "F23");
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addSpecification(
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"BI", 16, "F12");
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addSpecification(
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"BJ", 28, "F24");
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addSpecification(
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"CI", 28, "U01F23");
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addSpecification(
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"CM", 27, "F23");
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addSpecification(
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"CV", 25, "F21");
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addSpecification(
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"DZ", 24, "F20");
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addSpecification(
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"IR", 26, "F22");
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addSpecification(
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"JO", 30, "A04F22");
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addSpecification(
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"MG", 27, "F23");
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addSpecification(
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"ML", 28, "U01F23");
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addSpecification(
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"MZ", 25, "F21");
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addSpecification(
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"QA", 29, "U04A21");
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addSpecification(
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"SN", 28, "U01F23");
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addSpecification(
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"UA", 29, "F25");
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addSpecification(
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"EG", 27, "F23");
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addSpecification(
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"CG", 27, "F23");
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addSpecification(
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"GA", 27, "F23");
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}
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/**
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* Separate CXX and C logic to minimize unexpected or malformed symbols due to
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* language conversions. Also catch all exceptions the std++ can throw since
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* PostgreSQL is not able to handle them.
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*
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* @param {string} iban
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* @returns {bool}
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*/
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namespace {
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bool account_validate_text(text *iban) {
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char *ciban;
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bool result;
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ciban = text_to_cstring(iban);
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try {
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result = validator.isValid(ciban);
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} catch (std::exception& e) {
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elog(ERROR, "%s", e.what());
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return false;
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}
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return result;
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}
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bool account_validate_str(char *iban) {
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bool result;
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try {
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result = validator.isValid(iban);
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} catch (std::exception& e) {
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elog(ERROR, "%s", e.what());
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return false;
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}
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return result;
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}
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} // namespace
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extern "C"
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{
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/**************************************************************************
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* Input/Output functions
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**************************************************************************/
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PG_FUNCTION_INFO_V1(ibanin);
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Datum
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ibanin(PG_FUNCTION_ARGS) {
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char *inputText = PG_GETARG_CSTRING(0);
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if (!account_validate_str(inputText))
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ereport(ERROR,
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(errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
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errmsg("invalid iban format for value: \"%s\"",
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inputText)));
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PG_RETURN_TEXT_P(cstring_to_text(inputText));
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}
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/* Convert type output */
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PG_FUNCTION_INFO_V1(ibanout);
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Datum
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ibanout(PG_FUNCTION_ARGS) {
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Iban *iban = (Iban *) PG_GETARG_DATUM(0);
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PG_RETURN_CSTRING(TextDatumGetCString(iban));
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}
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/**************************************************************************
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* Binary Input/Output functions
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**************************************************************************/
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PG_FUNCTION_INFO_V1(ibanrecv);
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Datum
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ibanrecv(PG_FUNCTION_ARGS) {
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StringInfo buf = (StringInfo) PG_GETARG_POINTER(0);
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text *result;
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Iban *str;
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int nbytes;
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str = pq_getmsgtext(buf, buf->len - buf->cursor, &nbytes);
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result = cstring_to_text_with_len(str, nbytes);
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pfree(str);
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PG_RETURN_TEXT_P(result);
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}
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PG_FUNCTION_INFO_V1(ibansend);
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Datum
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ibansend(PG_FUNCTION_ARGS) {
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text *t = PG_GETARG_TEXT_PP(0);
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StringInfoData buf;
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pq_begintypsend(&buf);
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pq_sendtext(&buf, VARDATA_ANY(t), VARSIZE_ANY_EXHDR(t));
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PG_RETURN_BYTEA_P(pq_endtypsend(&buf));
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}
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/* Manually verify a text */
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PG_FUNCTION_INFO_V1(iban_validate);
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Datum
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iban_validate(PG_FUNCTION_ARGS) {
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text *iban = PG_GETARG_TEXT_P(0);
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bool result = account_validate_text(iban);
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PG_RETURN_BOOL(result);
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}
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}
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