核心功能: - ✅ Categories/Series双视图管理(category_view.rs + import_markdown.rs) - ✅ FUSE Multi-Volume支持(tree_type参数) - ✅ SSH/SFTP/SCP/rsync协议完整实现(4042行) - ✅ NFS/SMB Module Phase 1-3完成 - ✅ Archive Module Phase 1-4完成(2916行) - ✅ Download Center API完整实现 - ✅ S3兼容API实现(560行) Git配置修正: - ✅ 删除错误origin(gitea.momentry.ddns.net) - ✅ 删除m5max128(指向机器名) - ✅ 设置origin = m5max128gitea.momentry.ddns.net/admin/markbase - ✅ 设置m4minigitea = m4minigitea.momentry.ddns.net/warren/markbase 数据清理: - ✅ 删除38个临时SQLite(保留accusys.sqlite、demo.sqlite) - ✅ 删除.bak、test_*.bin、调试脚本等临时文件 - ✅ 删除临时目录(build/、download files/、raid_test/等) - ✅ 更新.gitignore排除临时文件 架构优化: - 52个文件修改,2434行新增,4739行删除 - Workspace成员整合(16个crate) - 数据库状态:accusys.sqlite保留(主demo测试) 远程同步: - ✅ 准备推送到m5max128gitea(远程Gitea) - ✅ 准备推送到m4minigitea(本地Gitea)
146 lines
5.8 KiB
C
146 lines
5.8 KiB
C
// Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com) All rights reserved.
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// SPDX-License-Identifier: Apache-2.0
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#ifndef OPENSSL_HEADER_BASE64_H
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#define OPENSSL_HEADER_BASE64_H
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#include <openssl/base.h>
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#if defined(__cplusplus)
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extern "C" {
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#endif
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// base64 functions.
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//
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// For historical reasons, these functions have the EVP_ prefix but just do
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// base64 encoding and decoding. Note that BoringSSL is a cryptography library,
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// so these functions are implemented with side channel protections, at a
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// performance cost. For other base64 uses, use a general-purpose base64
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// implementation.
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// Encoding
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// EVP_EncodeBlock encodes |src_len| bytes from |src| and writes the
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// result to |dst| with a trailing NUL. It returns the number of bytes
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// written, not including this trailing NUL.
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OPENSSL_EXPORT size_t EVP_EncodeBlock(uint8_t *dst, const uint8_t *src,
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size_t src_len);
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// EVP_EncodedLength sets |*out_len| to the number of bytes that will be needed
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// to call |EVP_EncodeBlock| on an input of length |len|. This includes the
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// final NUL that |EVP_EncodeBlock| writes. It returns one on success or zero
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// on error.
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OPENSSL_EXPORT int EVP_EncodedLength(size_t *out_len, size_t len);
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// Decoding
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// EVP_DecodedLength sets |*out_len| to the maximum number of bytes that will
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// be needed to call |EVP_DecodeBase64| on an input of length |len|. It returns
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// one on success or zero if |len| is not a valid length for a base64-encoded
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// string.
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OPENSSL_EXPORT int EVP_DecodedLength(size_t *out_len, size_t len);
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// EVP_DecodeBase64 decodes |in_len| bytes from base64 and writes
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// |*out_len| bytes to |out|. |max_out| is the size of the output
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// buffer. If it is not enough for the maximum output size, the
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// operation fails. It returns one on success or zero on error.
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OPENSSL_EXPORT int EVP_DecodeBase64(uint8_t *out, size_t *out_len,
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size_t max_out, const uint8_t *in,
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size_t in_len);
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// Deprecated functions.
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//
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// OpenSSL provides a streaming base64 implementation, however its behavior is
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// very specific to PEM. It is also very lenient of invalid input. Use of any of
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// these functions is thus deprecated.
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// EVP_ENCODE_CTX_new returns a newly-allocated |EVP_ENCODE_CTX| or NULL on
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// error. The caller must release the result with |EVP_ENCODE_CTX_free| when
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// done.
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OPENSSL_EXPORT EVP_ENCODE_CTX *EVP_ENCODE_CTX_new(void);
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// EVP_ENCODE_CTX_free releases memory associated with |ctx|.
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OPENSSL_EXPORT void EVP_ENCODE_CTX_free(EVP_ENCODE_CTX *ctx);
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// EVP_EncodeInit initialises |*ctx|, which is typically stack
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// allocated, for an encoding operation.
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//
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// NOTE: The encoding operation breaks its output with newlines every
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// 64 characters of output (48 characters of input). Use
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// EVP_EncodeBlock to encode raw base64.
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OPENSSL_EXPORT void EVP_EncodeInit(EVP_ENCODE_CTX *ctx);
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// EVP_EncodeUpdate encodes |in_len| bytes from |in| and writes an encoded
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// version of them to |out| and sets |*out_len| to the number of bytes written.
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// Some state may be contained in |ctx| so |EVP_EncodeFinal| must be used to
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// flush it before using the encoded data.
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OPENSSL_EXPORT int EVP_EncodeUpdate(EVP_ENCODE_CTX *ctx, uint8_t *out,
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int *out_len, const uint8_t *in,
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size_t in_len);
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// EVP_EncodeFinal flushes any remaining output bytes from |ctx| to |out| and
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// sets |*out_len| to the number of bytes written.
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OPENSSL_EXPORT void EVP_EncodeFinal(EVP_ENCODE_CTX *ctx, uint8_t *out,
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int *out_len);
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// EVP_DecodeInit initialises |*ctx|, which is typically stack allocated, for
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// a decoding operation.
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//
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// TODO(davidben): This isn't a straight-up base64 decode either. Document
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// and/or fix exactly what's going on here; maximum line length and such.
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OPENSSL_EXPORT void EVP_DecodeInit(EVP_ENCODE_CTX *ctx);
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// EVP_DecodeUpdate decodes |in_len| bytes from |in| and writes the decoded
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// data to |out| and sets |*out_len| to the number of bytes written. Some state
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// may be contained in |ctx| so |EVP_DecodeFinal| must be used to flush it
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// before using the encoded data.
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//
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// It returns -1 on error, one if a full line of input was processed and zero
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// if the line was short (i.e. it was the last line).
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OPENSSL_EXPORT int EVP_DecodeUpdate(EVP_ENCODE_CTX *ctx, uint8_t *out,
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int *out_len, const uint8_t *in,
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size_t in_len);
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// EVP_DecodeFinal flushes any remaining output bytes from |ctx| to |out| and
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// sets |*out_len| to the number of bytes written. It returns one on success
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// and minus one on error.
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OPENSSL_EXPORT int EVP_DecodeFinal(EVP_ENCODE_CTX *ctx, uint8_t *out,
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int *out_len);
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// EVP_DecodeBlock encodes |src_len| bytes from |src| and writes the result to
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// |dst|. It returns the number of bytes written or -1 on error.
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//
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// WARNING: EVP_DecodeBlock's return value does not take padding into
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// account. It also strips leading whitespace and trailing
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// whitespace and minuses.
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OPENSSL_EXPORT int EVP_DecodeBlock(uint8_t *dst, const uint8_t *src,
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size_t src_len);
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struct evp_encode_ctx_st {
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// data_used indicates the number of bytes of |data| that are valid. When
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// encoding, |data| will be filled and encoded as a lump. When decoding, only
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// the first four bytes of |data| will be used.
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unsigned data_used;
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uint8_t data[48];
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// eof_seen indicates that the end of the base64 data has been seen when
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// decoding. Only whitespace can follow.
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char eof_seen;
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// error_encountered indicates that invalid base64 data was found. This will
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// cause all future calls to fail.
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char error_encountered;
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};
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#if defined(__cplusplus)
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} // extern C
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#endif
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#endif // OPENSSL_HEADER_BASE64_H
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