Source file bytes_labels.ml
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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
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]
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))
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
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