format generator
This commit is contained in:
@ -4,85 +4,13 @@
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#include <iostream>
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#include <map>
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#include <memory>
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#include <vector>
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#include "miniz.h"
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//====
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//
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// base64 encoding and decoding with C++.
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// Version: 2.rc.09 (release candidate)
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//
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#ifndef BASE64_H_C0CE2A47_D10E_42C9_A27C_C883944E704A
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#define BASE64_H_C0CE2A47_D10E_42C9_A27C_C883944E704A
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#include <string>
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#if __cplusplus >= 201703L
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#include <string_view>
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#endif // __cplusplus >= 201703L
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std::string base64_encode(std::string const &s, bool url = false);
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std::string base64_encode_pem(std::string const &s);
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std::string base64_encode_mime(std::string const &s);
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std::string base64_decode(std::string const &s, bool remove_linebreaks = false);
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std::string base64_encode(unsigned char const *, size_t len, bool url = false);
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#if __cplusplus >= 201703L
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//
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// Interface with std::string_view rather than const std::string&
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// Requires C++17
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// Provided by Yannic Bonenberger (https://github.com/Yannic)
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//
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std::string base64_encode(std::string_view s, bool url = false);
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std::string base64_encode_pem(std::string_view s);
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std::string base64_encode_mime(std::string_view s);
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std::string base64_decode(std::string_view s, bool remove_linebreaks = false);
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#endif // __cplusplus >= 201703L
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#endif /* BASE64_H_C0CE2A47_D10E_42C9_A27C_C883944E704A */
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/*
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base64.cpp and base64.h
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base64 encoding and decoding with C++.
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More information at
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https://renenyffenegger.ch/notes/development/Base64/Encoding-and-decoding-base-64-with-cpp
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Version: 2.rc.09 (release candidate)
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Copyright (C) 2004-2017, 2020-2022 René Nyffenegger
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This source code is provided 'as-is', without any express or implied
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warranty. In no event will the author be held liable for any damages
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arising from the use of this software.
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Permission is granted to anyone to use this software for any purpose,
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including commercial applications, and to alter it and redistribute it
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freely, subject to the following restrictions:
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1. The origin of this source code must not be misrepresented; you must not
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claim that you wrote the original source code. If you use this source code
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in a product, an acknowledgment in the product documentation would be
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appreciated but is not required.
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2. Altered source versions must be plainly marked as such, and must not be
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misrepresented as being the original source code.
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3. This notice may not be removed or altered from any source distribution.
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René Nyffenegger rene.nyffenegger@adp-gmbh.ch
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*/
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#include <algorithm>
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#include <stdexcept>
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#include <string>
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#include <string_view>
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#include <vector>
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#include "miniz.h"
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//
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// Depending on the url parameter in base64_chars, one of
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// two sets of base64 characters needs to be chosen.
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// They differ in their last two characters.
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//
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static const char *base64_chars[2] = {
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"ABCDEFGHIJKLMNOPQRSTUVWXYZ"
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"abcdefghijklmnopqrstuvwxyz"
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@ -118,45 +46,6 @@ static unsigned int pos_of_char(const unsigned char chr) {
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throw std::runtime_error("Input is not valid base64-encoded data.");
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}
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static std::string insert_linebreaks(std::string str, size_t distance) {
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//
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// Provided by https://github.com/JomaCorpFX, adapted by me.
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//
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if (!str.length()) {
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return "";
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}
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size_t pos = distance;
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while (pos < str.size()) {
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str.insert(pos, "\n");
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pos += distance + 1;
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}
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return str;
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}
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template <typename String, unsigned int line_length>
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static std::string encode_with_line_breaks(String s) {
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return insert_linebreaks(base64_encode(s, false), line_length);
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}
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template <typename String>
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static std::string encode_pem(String s) {
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return encode_with_line_breaks<String, 64>(s);
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}
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template <typename String>
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static std::string encode_mime(String s) {
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return encode_with_line_breaks<String, 76>(s);
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}
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template <typename String>
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static std::string encode(String s, bool url) {
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return base64_encode(reinterpret_cast<const unsigned char *>(s.data()),
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s.length(), url);
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}
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std::string base64_encode(unsigned char const *bytes_to_encode, size_t in_len,
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bool url) {
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size_t len_encoded = (in_len + 2) / 3 * 4;
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@ -205,127 +94,6 @@ std::string base64_encode(unsigned char const *bytes_to_encode, size_t in_len,
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return ret;
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}
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template <typename String>
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static std::string decode(String const &encoded_string,
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bool remove_linebreaks) {
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//
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// decode(…) is templated so that it can be used with String = const
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// std::string& or std::string_view (requires at least C++17)
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//
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if (encoded_string.empty()) return std::string();
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if (remove_linebreaks) {
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std::string copy(encoded_string);
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copy.erase(std::remove(copy.begin(), copy.end(), '\n'), copy.end());
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return base64_decode(copy, false);
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}
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size_t length_of_string = encoded_string.length();
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size_t pos = 0;
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//
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// The approximate length (bytes) of the decoded string might be one or
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// two bytes smaller, depending on the amount of trailing equal signs
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// in the encoded string. This approximation is needed to reserve
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// enough space in the string to be returned.
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//
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size_t approx_length_of_decoded_string = length_of_string / 4 * 3;
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std::string ret;
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ret.reserve(approx_length_of_decoded_string);
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while (pos < length_of_string) {
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//
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// Iterate over encoded input string in chunks. The size of all
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// chunks except the last one is 4 bytes.
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//
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// The last chunk might be padded with equal signs or dots
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// in order to make it 4 bytes in size as well, but this
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// is not required as per RFC 2045.
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//
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// All chunks except the last one produce three output bytes.
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//
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// The last chunk produces at least one and up to three bytes.
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//
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size_t pos_of_char_1 = pos_of_char(encoded_string.at(pos + 1));
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//
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// Emit the first output byte that is produced in each chunk:
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//
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ret.push_back(static_cast<std::string::value_type>(
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((pos_of_char(encoded_string.at(pos + 0))) << 2) +
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((pos_of_char_1 & 0x30) >> 4)));
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if ((pos + 2 <
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length_of_string) && // Check for data that is not padded with equal
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// signs (which is allowed by RFC 2045)
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encoded_string.at(pos + 2) != '=' &&
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encoded_string.at(pos + 2) !=
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'.' // accept URL-safe base 64 strings, too, so check for '.' also.
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) {
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//
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// Emit a chunk's second byte (which might not be produced in the last
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// chunk).
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//
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unsigned int pos_of_char_2 = pos_of_char(encoded_string.at(pos + 2));
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ret.push_back(static_cast<std::string::value_type>(
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((pos_of_char_1 & 0x0f) << 4) + ((pos_of_char_2 & 0x3c) >> 2)));
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if ((pos + 3 < length_of_string) && encoded_string.at(pos + 3) != '=' &&
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encoded_string.at(pos + 3) != '.') {
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//
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// Emit a chunk's third byte (which might not be produced in the last
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// chunk).
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//
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ret.push_back(static_cast<std::string::value_type>(
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((pos_of_char_2 & 0x03) << 6) +
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pos_of_char(encoded_string.at(pos + 3))));
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}
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}
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pos += 4;
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}
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return ret;
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}
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std::string base64_decode(std::string const &s, bool remove_linebreaks) {
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return decode(s, remove_linebreaks);
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}
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std::string base64_encode(std::string const &s, bool url) {
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return encode(s, url);
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}
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std::string base64_encode_pem(std::string const &s) { return encode_pem(s); }
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std::string base64_encode_mime(std::string const &s) { return encode_mime(s); }
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#if __cplusplus >= 201703L
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//
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// Interface with std::string_view rather than const std::string&
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// Requires C++17
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// Provided by Yannic Bonenberger (https://github.com/Yannic)
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//
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std::string base64_encode(std::string_view s, bool url) {
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return encode(s, url);
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}
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std::string base64_encode_pem(std::string_view s) { return encode_pem(s); }
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std::string base64_encode_mime(std::string_view s) { return encode_mime(s); }
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std::string base64_decode(std::string_view s, bool remove_linebreaks) {
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return decode(s, remove_linebreaks);
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}
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#endif // __cplusplus >= 201703L
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//====
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using namespace std;
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typedef long long LL;
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int rid[15] = {0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 2, 2, 2, 2, 2};
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@ -375,8 +143,8 @@ void dfs(int depth, LL status) {
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// dfs(depth + 1, status * 3 + 1); // 1 = no mine and unclicked
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// dfs(depth + 1, status * 3 + 2); // 2 = no mine and clicked
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}
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const int buf_size=4412555 * 4;
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unsigned char buf[buf_size],buf2[buf_size];
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const int buf_size = 4412555 * 4;
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unsigned char buf[buf_size], buf2[buf_size];
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int bcnt = 0;
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void CalculateProbability() {
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for (auto it = visible_to_inner.begin(); it != visible_to_inner.end(); ++it) {
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@ -389,28 +157,31 @@ void CalculateProbability() {
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buf[bcnt++] = int((double(mine_cnt) / it->second.size()) * 255);
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}
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}
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size_t compressData(const unsigned char* inputData, size_t inputSize, unsigned char* compressedData, size_t compressedSize) {
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mz_ulong compressedSizeOut = compressedSize;
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int compressResult = mz_compress2(compressedData, &compressedSizeOut,
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inputData, inputSize, MZ_BEST_COMPRESSION);
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size_t compressData(const unsigned char *inputData, size_t inputSize,
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unsigned char *compressedData, size_t compressedSize) {
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mz_ulong compressedSizeOut = compressedSize;
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int compressResult = mz_compress2(compressedData, &compressedSizeOut,
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inputData, inputSize, MZ_BEST_COMPRESSION);
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if (compressResult != Z_OK) {
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throw(std::runtime_error("Compression failed."));
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}
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if (compressResult != Z_OK) {
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throw(std::runtime_error("Compression failed."));
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}
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return compressedSizeOut;
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return compressedSizeOut;
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}
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size_t decompressData(const unsigned char* compressedData, size_t compressedSize, unsigned char* decompressedData, size_t decompressedSize) {
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mz_ulong decompressedSizeOut = decompressedSize;
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int decompressResult = mz_uncompress(decompressedData, &decompressedSizeOut,
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compressedData, compressedSize);
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size_t decompressData(const unsigned char *compressedData,
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size_t compressedSize, unsigned char *decompressedData,
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size_t decompressedSize) {
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mz_ulong decompressedSizeOut = decompressedSize;
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int decompressResult = mz_uncompress(decompressedData, &decompressedSizeOut,
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compressedData, compressedSize);
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if (decompressResult != Z_OK) {
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throw(std::runtime_error("Decompression failed."));
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}
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if (decompressResult != Z_OK) {
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throw(std::runtime_error("Decompression failed."));
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}
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return decompressedSizeOut;
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return decompressedSizeOut;
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}
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int main() {
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dfs(0, 0);
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@ -420,8 +191,8 @@ int main() {
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string raw = base64_encode(buf, bcnt, false);
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cout << raw << endl;
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freopen("tmp/compressed.txt", "w", stdout);
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size_t real_size=compressData(buf, bcnt, buf2, buf_size);
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string compressed=base64_encode(buf2,real_size,false);
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cout<<compressed<<endl;
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size_t real_size = compressData(buf, bcnt, buf2, buf_size);
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string compressed = base64_encode(buf2, real_size, false);
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cout << compressed << endl;
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return 0;
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}
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