mirror of
https://github.com/LadybirdBrowser/ladybird.git
synced 2025-01-26 19:22:30 -05:00
424 lines
13 KiB
C++
424 lines
13 KiB
C++
/*
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* Copyright (c) 2021, the SerenityOS developers.
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/Utf8View.h>
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#include <LibCrypto/ASN1/DER.h>
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namespace Crypto::ASN1 {
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Result<Tag, DecodeError> Decoder::read_tag()
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{
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auto byte_or_error = read_byte();
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if (byte_or_error.is_error())
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return byte_or_error.error();
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auto byte = byte_or_error.value();
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u8 class_ = byte & 0xc0;
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u8 type = byte & 0x20;
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u8 kind = byte & 0x1f;
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if (kind == 0x1f) {
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kind = 0;
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while (byte & 0x80) {
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auto byte_or_error = read_byte();
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if (byte_or_error.is_error())
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return byte_or_error.error();
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byte = byte_or_error.value();
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kind = (kind << 7) | (byte & 0x7f);
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}
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}
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return Tag { (Kind)kind, (Class)class_, (Type)type };
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}
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Result<size_t, DecodeError> Decoder::read_length()
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{
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auto byte_or_error = read_byte();
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if (byte_or_error.is_error())
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return byte_or_error.error();
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auto byte = byte_or_error.value();
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size_t length = byte;
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if (byte & 0x80) {
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auto count = byte & 0x7f;
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if (count == 0x7f)
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return DecodeError::InvalidInputFormat;
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auto data_or_error = read_bytes(count);
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if (data_or_error.is_error())
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return data_or_error.error();
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auto data = data_or_error.value();
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length = 0;
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if (data.size() > sizeof(size_t))
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return DecodeError::Overflow;
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for (auto&& byte : data)
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length = (length << 8) | (size_t)byte;
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}
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return length;
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}
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Result<u8, DecodeError> Decoder::read_byte()
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{
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if (m_stack.is_empty())
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return DecodeError::NoInput;
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auto& entry = m_stack.last();
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if (entry.is_empty())
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return DecodeError::NotEnoughData;
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auto byte = entry[0];
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entry = entry.slice(1);
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return byte;
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}
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Result<ReadonlyBytes, DecodeError> Decoder::read_bytes(size_t length)
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{
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if (m_stack.is_empty())
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return DecodeError::NoInput;
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auto& entry = m_stack.last();
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if (entry.size() < length)
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return DecodeError::NotEnoughData;
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auto bytes = entry.slice(0, length);
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entry = entry.slice(length);
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return bytes;
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}
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Result<bool, DecodeError> Decoder::decode_boolean(ReadonlyBytes data)
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{
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if (data.size() != 1)
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return DecodeError::InvalidInputFormat;
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return data[0] == 0;
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}
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Result<UnsignedBigInteger, DecodeError> Decoder::decode_arbitrary_sized_integer(ReadonlyBytes data)
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{
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if (data.size() < 1)
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return DecodeError::NotEnoughData;
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if (data.size() > 1
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&& ((data[0] == 0xff && data[1] & 0x80)
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|| (data[0] == 0x00 && !(data[1] & 0x80)))) {
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return DecodeError::InvalidInputFormat;
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}
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bool is_negative = data[0] & 0x80;
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if (is_negative)
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return DecodeError::UnsupportedFormat;
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return UnsignedBigInteger::import_data(data.data(), data.size());
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}
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Result<StringView, DecodeError> Decoder::decode_octet_string(ReadonlyBytes bytes)
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{
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return StringView { bytes.data(), bytes.size() };
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}
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Result<std::nullptr_t, DecodeError> Decoder::decode_null(ReadonlyBytes data)
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{
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if (data.size() != 0)
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return DecodeError::InvalidInputFormat;
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return nullptr;
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}
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Result<Vector<int>, DecodeError> Decoder::decode_object_identifier(ReadonlyBytes data)
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{
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Vector<int> result;
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result.append(0); // Reserved space.
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u32 value = 0;
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for (auto&& byte : data) {
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if (value == 0 && byte == 0x80)
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return DecodeError::InvalidInputFormat;
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value = (value << 7) | (byte & 0x7f);
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if (!(byte & 0x80)) {
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result.append(value);
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value = 0;
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}
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}
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if (result.size() == 1 || result[1] >= 1600)
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return DecodeError::InvalidInputFormat;
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result[0] = result[1] / 40;
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result[1] = result[1] % 40;
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return result;
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}
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Result<StringView, DecodeError> Decoder::decode_printable_string(ReadonlyBytes data)
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{
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Utf8View view { data };
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if (!view.validate())
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return DecodeError::InvalidInputFormat;
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return StringView { data };
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}
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Result<const BitmapView, DecodeError> Decoder::decode_bit_string(ReadonlyBytes data)
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{
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if (data.size() < 1)
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return DecodeError::InvalidInputFormat;
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auto unused_bits = data[0];
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auto total_size_in_bits = (data.size() - 1) * 8;
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if (unused_bits > total_size_in_bits)
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return DecodeError::Overflow;
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return BitmapView { const_cast<u8*>(data.offset_pointer(1)), total_size_in_bits - unused_bits };
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}
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Result<Tag, DecodeError> Decoder::peek()
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{
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if (m_stack.is_empty())
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return DecodeError::NoInput;
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if (eof())
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return DecodeError::EndOfStream;
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if (m_current_tag.has_value())
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return m_current_tag.value();
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auto tag_or_error = read_tag();
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if (tag_or_error.is_error())
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return tag_or_error.error();
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m_current_tag = tag_or_error.value();
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return m_current_tag.value();
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}
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bool Decoder::eof() const
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{
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return m_stack.is_empty() || m_stack.last().is_empty();
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}
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Optional<DecodeError> Decoder::enter()
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{
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if (m_stack.is_empty())
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return DecodeError::NoInput;
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auto tag_or_error = peek();
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if (tag_or_error.is_error())
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return tag_or_error.error();
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auto tag = tag_or_error.value();
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if (tag.type != Type::Constructed)
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return DecodeError::EnteringNonConstructedTag;
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auto length_or_error = read_length();
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if (length_or_error.is_error())
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return length_or_error.error();
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auto length = length_or_error.value();
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auto data_or_error = read_bytes(length);
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if (data_or_error.is_error())
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return data_or_error.error();
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m_current_tag.clear();
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auto data = data_or_error.value();
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m_stack.append(data);
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return {};
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}
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Optional<DecodeError> Decoder::leave()
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{
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if (m_stack.is_empty())
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return DecodeError::NoInput;
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if (m_stack.size() == 1)
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return DecodeError::LeavingMainContext;
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m_stack.take_last();
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m_current_tag.clear();
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return {};
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}
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void pretty_print(Decoder& decoder, OutputStream& stream, int indent)
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{
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while (!decoder.eof()) {
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auto tag = decoder.peek();
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if (tag.is_error()) {
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dbgln("PrettyPrint error: {}", tag.error());
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return;
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}
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StringBuilder builder;
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for (int i = 0; i < indent; ++i)
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builder.append(' ');
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builder.appendff("<{}> ", class_name(tag.value().class_));
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if (tag.value().type == Type::Constructed) {
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builder.appendff("[{}] {} ({})", type_name(tag.value().type), static_cast<u8>(tag.value().kind), kind_name(tag.value().kind));
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if (auto error = decoder.enter(); error.has_value()) {
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dbgln("Constructed PrettyPrint error: {}", error.value());
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return;
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}
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builder.append('\n');
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stream.write(builder.string_view().bytes());
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pretty_print(decoder, stream, indent + 2);
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if (auto error = decoder.leave(); error.has_value()) {
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dbgln("Constructed PrettyPrint error: {}", error.value());
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return;
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}
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continue;
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} else {
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if (tag.value().class_ != Class::Universal)
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builder.appendff("[{}] {} {}", type_name(tag.value().type), static_cast<u8>(tag.value().kind), kind_name(tag.value().kind));
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else
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builder.appendff("[{}] {}", type_name(tag.value().type), kind_name(tag.value().kind));
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switch (tag.value().kind) {
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case Kind::Eol: {
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auto value = decoder.read<ReadonlyBytes>();
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if (value.is_error()) {
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dbgln("EOL PrettyPrint error: {}", value.error());
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return;
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}
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break;
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}
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case Kind::Boolean: {
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auto value = decoder.read<bool>();
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if (value.is_error()) {
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dbgln("Bool PrettyPrint error: {}", value.error());
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return;
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}
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builder.appendff(" {}", value.value());
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break;
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}
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case Kind::Integer: {
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auto value = decoder.read<ReadonlyBytes>();
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if (value.is_error()) {
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dbgln("Integer PrettyPrint error: {}", value.error());
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return;
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}
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builder.append(" 0x");
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for (auto ch : value.value())
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builder.appendff("{:0>2x}", ch);
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break;
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}
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case Kind::BitString: {
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auto value = decoder.read<const BitmapView>();
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if (value.is_error()) {
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dbgln("BitString PrettyPrint error: {}", value.error());
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return;
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}
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builder.append(" 0b");
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for (size_t i = 0; i < value.value().size(); ++i)
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builder.append(value.value().get(i) ? '1' : '0');
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break;
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}
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case Kind::OctetString: {
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auto value = decoder.read<StringView>();
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if (value.is_error()) {
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dbgln("OctetString PrettyPrint error: {}", value.error());
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return;
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}
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builder.append(" 0x");
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for (auto ch : value.value())
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builder.appendff("{:0>2x}", ch);
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break;
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}
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case Kind::Null: {
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auto value = decoder.read<decltype(nullptr)>();
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if (value.is_error()) {
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dbgln("Bool PrettyPrint error: {}", value.error());
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return;
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}
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break;
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}
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case Kind::ObjectIdentifier: {
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auto value = decoder.read<Vector<int>>();
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if (value.is_error()) {
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dbgln("Identifier PrettyPrint error: {}", value.error());
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return;
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}
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for (auto& id : value.value())
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builder.appendff(" {}", id);
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break;
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}
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case Kind::UTCTime:
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case Kind::GeneralizedTime:
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case Kind::IA5String:
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case Kind::PrintableString: {
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auto value = decoder.read<StringView>();
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if (value.is_error()) {
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dbgln("String PrettyPrint error: {}", value.error());
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return;
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}
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builder.append(' ');
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builder.append(value.value());
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break;
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}
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case Kind::Utf8String: {
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auto value = decoder.read<Utf8View>();
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if (value.is_error()) {
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dbgln("UTF8 PrettyPrint error: {}", value.error());
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return;
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}
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builder.append(' ');
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for (auto cp : value.value())
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builder.append_code_point(cp);
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break;
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}
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case Kind::Sequence:
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case Kind::Set:
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dbgln("Seq/Sequence PrettyPrint error: Unexpected Primtive");
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return;
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}
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}
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builder.append('\n');
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stream.write(builder.string_view().bytes());
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}
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}
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}
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void AK::Formatter<Crypto::ASN1::DecodeError>::format(FormatBuilder& fmtbuilder, Crypto::ASN1::DecodeError error)
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{
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using Crypto::ASN1::DecodeError;
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switch (error) {
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case DecodeError::NoInput:
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return Formatter<StringView>::format(fmtbuilder, "DecodeError(No input provided)");
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case DecodeError::NonConformingType:
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return Formatter<StringView>::format(fmtbuilder, "DecodeError(Tried to read with a non-conforming type)");
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case DecodeError::EndOfStream:
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return Formatter<StringView>::format(fmtbuilder, "DecodeError(End of stream)");
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case DecodeError::NotEnoughData:
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return Formatter<StringView>::format(fmtbuilder, "DecodeError(Not enough data)");
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case DecodeError::EnteringNonConstructedTag:
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return Formatter<StringView>::format(fmtbuilder, "DecodeError(Tried to enter a primitive tag)");
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case DecodeError::LeavingMainContext:
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return Formatter<StringView>::format(fmtbuilder, "DecodeError(Tried to leave the main context)");
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case DecodeError::InvalidInputFormat:
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return Formatter<StringView>::format(fmtbuilder, "DecodeError(Input data contained invalid syntax/data)");
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case DecodeError::Overflow:
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return Formatter<StringView>::format(fmtbuilder, "DecodeError(Construction would overflow)");
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case DecodeError::UnsupportedFormat:
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return Formatter<StringView>::format(fmtbuilder, "DecodeError(Input data format not supported by this parser)");
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default:
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return Formatter<StringView>::format(fmtbuilder, "DecodeError(Unknown)");
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}
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}
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