blob: aa12927243e3859124fb0094e0a17179182966e5 [file] [log] [blame]
Ken Chend27d6c92021-10-21 22:18:59 +08001/*
2 * Copyright (C) 2017 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#ifndef NETUTILS_SLICE_H
18#define NETUTILS_SLICE_H
19
20#include <algorithm>
21#include <array>
22#include <cstring>
23#include <ostream>
24#include <tuple>
Tomasz Wasilczyk661ec162024-01-09 11:01:22 -080025#include <type_traits>
Ken Chend27d6c92021-10-21 22:18:59 +080026#include <vector>
27
28namespace android {
29namespace netdutils {
30
31// Immutable wrapper for a linear region of unowned bytes.
32// Slice represents memory as a half-closed interval [base, limit).
33//
34// Note that without manually invoking the Slice() constructor, it is
35// impossible to increase the size of a slice. This guarantees that
36// applications that properly use the slice API will never access
37// memory outside of a slice.
38//
39// Note that const Slice still wraps mutable memory, however copy
40// assignment and move assignment to slice are disabled.
41class Slice {
42 public:
43 Slice() = default;
44
45 // Create a slice beginning at base and continuing to but not including limit
46 Slice(void* base, void* limit) : mBase(toUint8(base)), mLimit(toUint8(limit)) {}
47
48 // Create a slice beginning at base and continuing for size bytes
49 Slice(void* base, size_t size) : Slice(base, toUint8(base) + size) {}
50
51 // Return the address of the first byte in this slice
52 uint8_t* base() const { return mBase; }
53
54 // Return the address of the first byte following this slice
55 uint8_t* limit() const { return mLimit; }
56
57 // Return the size of this slice in bytes
58 size_t size() const { return limit() - base(); }
59
60 // Return true if size() == 0
61 bool empty() const { return base() == limit(); }
62
63 private:
64 static uint8_t* toUint8(void* ptr) { return reinterpret_cast<uint8_t*>(ptr); }
65
66 uint8_t* mBase = nullptr;
67 uint8_t* mLimit = nullptr;
68};
69
70// Return slice representation of ref which must be a POD type
71template <typename T>
72inline const Slice makeSlice(const T& ref) {
73 static_assert(std::is_pod<T>::value, "value must be a POD type");
74 static_assert(!std::is_pointer<T>::value, "value must not be a pointer type");
75 return {const_cast<T*>(&ref), sizeof(ref)};
76}
77
78// Return slice representation of string data()
79inline const Slice makeSlice(const std::string& s) {
80 using ValueT = std::string::value_type;
81 return {const_cast<ValueT*>(s.data()), s.size() * sizeof(ValueT)};
82}
83
84// Return slice representation of vector data()
85template <typename T>
86inline const Slice makeSlice(const std::vector<T>& v) {
87 return {const_cast<T*>(v.data()), v.size() * sizeof(T)};
88}
89
90// Return slice representation of array data()
91template <typename U, size_t V>
92inline const Slice makeSlice(const std::array<U, V>& a) {
93 return {const_cast<U*>(a.data()), a.size() * sizeof(U)};
94}
95
96// Return prefix and suffix of Slice s ending and starting at position cut
97inline std::pair<const Slice, const Slice> split(const Slice s, size_t cut) {
98 const size_t tmp = std::min(cut, s.size());
99 return {{s.base(), s.base() + tmp}, {s.base() + tmp, s.limit()}};
100}
101
102// Return prefix of Slice s ending at position cut
103inline const Slice take(const Slice s, size_t cut) {
104 return std::get<0>(split(s, cut));
105}
106
107// Return suffix of Slice s starting at position cut
108inline const Slice drop(const Slice s, size_t cut) {
109 return std::get<1>(split(s, cut));
110}
111
112// Copy from src into dst. Bytes copied is the lesser of dst.size() and src.size()
113inline size_t copy(const Slice dst, const Slice src) {
114 const auto min = std::min(dst.size(), src.size());
115 memcpy(dst.base(), src.base(), min);
116 return min;
117}
118
119// Base case for variadic extract below
120template <typename Head>
121inline size_t extract(const Slice src, Head& head) {
122 return copy(makeSlice(head), src);
123}
124
125// Copy from src into one or more pointers to POD data. If src.size()
126// is less than the sum of all data pointers a suffix of data will be
127// left unmodified. Return the number of bytes copied.
128template <typename Head, typename... Tail>
129inline size_t extract(const Slice src, Head& head, Tail&... tail) {
130 const auto extracted = extract(src, head);
131 return extracted + extract(drop(src, extracted), tail...);
132}
133
134// Return a string containing a copy of the contents of s
135std::string toString(const Slice s);
136
137// Return a string containing a hexadecimal representation of the contents of s.
138// This function inserts a newline into its output every wrap bytes.
139std::string toHex(const Slice s, int wrap = INT_MAX);
140
141inline bool operator==(const Slice& lhs, const Slice& rhs) {
142 return (lhs.base() == rhs.base()) && (lhs.limit() == rhs.limit());
143}
144
145inline bool operator!=(const Slice& lhs, const Slice& rhs) {
146 return !(lhs == rhs);
147}
148
149std::ostream& operator<<(std::ostream& os, const Slice& slice);
150
151// Return suffix of Slice s starting at the first match of byte c. If no matched
152// byte, return an empty Slice.
153inline const Slice findFirstMatching(const Slice s, uint8_t c) {
154 uint8_t* match = (uint8_t*)memchr(s.base(), c, s.size());
155 if (!match) return Slice();
156 return drop(s, match - s.base());
157}
158
159} // namespace netdutils
160} // namespace android
161
162#endif /* NETUTILS_SLICE_H */