package slice
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A Slice type for bigstrings and bytes
Install
dune-project
Dependency
Authors
Maintainers
Sources
bstr-0.1.0.tbz
sha256=4a9073caf8c5eb502e002a54910b1477300f1bc27aadfa286370e336ade3ba8e
sha512=510478a62438caffa6eece71938bc4eb24305ed31743ab1389ec9951e85a22242c1392bf4872051497e7be80613c7a68e9c8cb74e4ed36c106e8fa0f5d24181c
doc/src/slice.bytes/bytes_labels.ml.html
Source file bytes_labels.ml
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250(* * Copyright (c) 2024 Romain Calascibetta <romain.calascibetta@gmail.com> * * Permission to use, copy, modify, and distribute this software for any * purpose with or without fee is hereby granted, provided that the above * copyright notice and this permission notice appear in all copies. * * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. *) include Bytes let[@inline always] blit src ~src_off dst ~dst_off ~len = Bytes.blit src src_off dst dst_off len let[@inline always] blit_to_bytes src ~src_off dst ~dst_off ~len = Bytes.blit src src_off dst dst_off len let[@inline always] blit_from_bytes src ~src_off dst ~dst_off ~len = Bytes.blit src src_off dst dst_off len let[@inline always] blit_from_string src ~src_off dst ~dst_off ~len = Bytes.blit_string src src_off dst dst_off len let[@inline always] unsafe_blit src ~src_off dst ~dst_off ~len = Bytes.unsafe_blit src src_off dst dst_off len let[@inline always] unsafe_blit_from_bytes src ~src_off dst ~dst_off ~len = Bytes.unsafe_blit src src_off dst dst_off len let[@inline always] unsafe_blit_to_bytes src ~src_off dst ~dst_off ~len = Bytes.unsafe_blit src src_off dst dst_off len let[@inline always] unsafe_blit_from_string src ~src_off dst ~dst_off ~len = Bytes.unsafe_blit_string src src_off dst dst_off len let[@inline always] unsafe_fill t ~off ~len chr = Bytes.unsafe_fill t off len chr let fill t ?(off = 0) ?len chr = let len = match len with Some len -> len | None -> Bytes.length t - off in Bytes.fill t off len chr (* NOTE(dinosaure): according to our test, [string] must do a copy. We should not use [Bytes.unsafe_of_string] (even if we would like to have a sub-part of the given string) because it can returns an alias of it. *) let string ?(off = 0) ?len str = let len = match len with Some len -> len | None -> String.length str - off in if len < 0 || off < 0 || off > String.length str - len then invalid_arg "Bytes.string"; let buf = Bytes.create len in Bytes.blit_string str off buf 0 len; buf let overlap a b = if a == b then Some (Bytes.length a, 0, 0) else None let sub t ~off ~len = Bytes.sub t off len let memchr t ~off ~len chr = if len < 0 || off < 0 || off > Bytes.length t - len then invalid_arg "Bytes.memchr"; let max_idx = off + len - 1 in let rec go idx = if idx > max_idx then -1 else if Bytes.unsafe_get t idx == chr then idx else go (idx + 1) in go off external unsafe_get : bytes -> int -> char = "%bytes_unsafe_get" external unsafe_set : bytes -> int -> char -> unit = "%bytes_unsafe_set" external unsafe_get_uint16_ne : bytes -> int -> int = "%caml_bytes_get16u" external unsafe_set_uint16_ne : bytes -> int -> int -> unit = "%caml_bytes_set16u" external unsafe_get_int32_ne : bytes -> int -> int32 = "%caml_bytes_get32u" external unsafe_set_int32_ne : bytes -> int -> int32 -> unit = "%caml_bytes_set32u" external unsafe_get_int64_ne : bytes -> int -> int64 = "%caml_bytes_get64u" external unsafe_set_int64_ne : bytes -> int -> int64 -> unit = "%caml_bytes_set64u" external swap16 : int -> int = "%bswap16" external swap32 : int32 -> int32 = "%bswap_int32" external swap64 : int64 -> int64 = "%bswap_int64" let unsafe_get_uint8 buf i = Char.code (unsafe_get buf i) [@@inline] let unsafe_set_uint8 buf i v = unsafe_set buf i (Char.unsafe_chr v) [@@inline] let unsafe_get_int8 buf i = (unsafe_get_uint8 buf i lsl (Sys.int_size - 8)) asr (Sys.int_size - 8) [@@inline] let unsafe_set_int8 = unsafe_set_uint8 let unsafe_get_uint16_le buf i = if Sys.big_endian then swap16 (unsafe_get_uint16_ne buf i) else unsafe_get_uint16_ne buf i [@@inline] let unsafe_get_uint16_be buf i = if not Sys.big_endian then swap16 (unsafe_get_uint16_ne buf i) else unsafe_get_uint16_ne buf i [@@inline] let unsafe_get_int16_ne buf i = (unsafe_get_uint16_ne buf i lsl (Sys.int_size - 16)) asr (Sys.int_size - 16) [@@inline] let unsafe_get_int16_le buf i = (unsafe_get_uint16_le buf i lsl (Sys.int_size - 16)) asr (Sys.int_size - 16) [@@inline] let unsafe_get_int16_be buf i = (unsafe_get_uint16_be buf i lsl (Sys.int_size - 16)) asr (Sys.int_size - 16) [@@inline] let unsafe_set_int16_ne = unsafe_set_uint16_ne let unsafe_set_int16_le buf i v = if Sys.big_endian then unsafe_set_uint16_ne buf i (swap16 v) else unsafe_set_uint16_ne buf i v [@@inline] let unsafe_set_int16_be buf i v = if not Sys.big_endian then unsafe_set_uint16_ne buf i (swap16 v) else unsafe_set_uint16_ne buf i v [@@inline] let unsafe_set_uint16_le = unsafe_set_int16_le let unsafe_set_uint16_be = unsafe_set_int16_be let unsafe_get_int32_le buf i = if Sys.big_endian then swap32 (unsafe_get_int32_ne buf i) else unsafe_get_int32_ne buf i [@@inline] let unsafe_get_int32_be buf i = if not Sys.big_endian then swap32 (unsafe_get_int32_ne buf i) else unsafe_get_int32_ne buf i [@@inline] let unsafe_set_int32_le buf i v = if Sys.big_endian then unsafe_set_int32_ne buf i (swap32 v) else unsafe_set_int32_ne buf i v [@@inline] let unsafe_set_int32_be buf i v = if not Sys.big_endian then unsafe_set_int32_ne buf i (swap32 v) else unsafe_set_int32_ne buf i v [@@inline] let unsafe_get_int64_le buf i = if Sys.big_endian then swap64 (unsafe_get_int64_ne buf i) else unsafe_get_int64_ne buf i [@@inline] let unsafe_get_int64_be buf i = if not Sys.big_endian then swap64 (unsafe_get_int64_ne buf i) else unsafe_get_int64_ne buf i [@@inline] let unsafe_set_int64_le buf i v = if Sys.big_endian then unsafe_set_int64_ne buf i (swap64 v) else unsafe_set_int64_ne buf i v [@@inline] let unsafe_set_int64_be buf i v = if not Sys.big_endian then unsafe_set_int64_ne buf i (swap64 v) else unsafe_set_int64_ne buf i v [@@inline] (* NOTE(dinosaure): here, we implement a fast equal function where we don't use local functions (to avoid closure allocations) and unroll the equality on words (8 and 64) to speed-up the computation. *) let rec equal_bytes a src_off b dst_off idx len = idx >= len || Bytes.unsafe_get a (src_off + idx) == Bytes.unsafe_get b (dst_off + idx) && equal_bytes a src_off b dst_off (idx + 1) len let[@inline always] eq_word a src_off b dst_off idx = Int64.equal (unsafe_get_int64_ne a (src_off + idx)) (unsafe_get_int64_ne b (dst_off + idx)) (* unroll by 8 bytes *) let rec equal_word a src_off b dst_off idx len = if idx + 8 > len then equal_bytes a src_off b dst_off idx len else eq_word a src_off b dst_off idx && equal_word a src_off b dst_off (idx + 8) len (* unroll by 64 bytes *) let rec equal_words a src_off b dst_off idx len = if idx + 64 > len then equal_word a src_off b dst_off idx len else eq_word a src_off b dst_off idx && eq_word a src_off b dst_off (idx + 8) && eq_word a src_off b dst_off (idx + 16) && eq_word a src_off b dst_off (idx + 24) && eq_word a src_off b dst_off (idx + 32) && eq_word a src_off b dst_off (idx + 40) && eq_word a src_off b dst_off (idx + 48) && eq_word a src_off b dst_off (idx + 56) && equal_words a src_off b dst_off (idx + 64) len let[@inline always] unsafe_equal a ~src_off b ~dst_off ~len = equal_words a src_off b dst_off 0 len let rec compare_bytes a src_off b dst_off idx len = if idx >= len then 0 else let x = Bytes.unsafe_get a (src_off + idx) and y = Bytes.unsafe_get b (dst_off + idx) in if x == y then compare_bytes a src_off b dst_off (idx + 1) len else if x < y then -1 else 1 let rec compare_words a src_off b dst_off idx len = if idx + 8 > len then compare_bytes a src_off b dst_off idx len else let x = unsafe_get_int64_be a (src_off + idx) and y = unsafe_get_int64_be b (dst_off + idx) in if Int64.equal x y then compare_words a src_off b dst_off (idx + 8) len else Int64.unsigned_compare x y let[@inline always] unsafe_memcmp a ~src_off b ~dst_off ~len = compare_words a src_off b dst_off 0 len let memcmp a ~src_off b ~dst_off ~len = if len < 0 || src_off < 0 || src_off > Bytes.length a - len || dst_off < 0 || dst_off > Bytes.length b - len then invalid_arg "Bytes.memcmp"; unsafe_memcmp a ~src_off b ~dst_off ~len
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