package fluxt
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Extensions of flux to provide basic streams (compression, hash, format)
Install
dune-project
Dependency
Authors
Maintainers
Sources
flux-0.0.1.beta6.tbz
sha256=a73ac59332c252a7ec2bf1b6cf59f1f03e0a2bbd8fa93a059c31a1263527b759
sha512=c020ad017f3606b430bb717d45615baa4b875c1b3aee5945ac84a65d85b5c01ffad198bf7d3c3c65c864bfc53d702d474b82d5655eb4e926dd03bb10e55f1d3b
doc/src/fluxt.de/flux_de.ml.html
Source file flux_de.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 179type cfg = { level: int; q: De.Queue.t; w: De.Lz77.window } let _unsafe_ctz n = let t = ref 1 and r = ref 0 in while n land !t == 0 do t := !t lsl 1; incr r done; !r let _unsafe_power_of_two x = x land (x - 1) == 0 && x != 0 let config ?(level = 4) ?(size_of_queue = 0x1000) ?(size_of_window = 0x8000) () = if size_of_queue < 0 then invalid_arg "Flux_zl.config: invalid negative number for the size of queue"; if not (_unsafe_power_of_two size_of_queue) then invalid_arg "Flux_zl.config: the size of queue must be a power of two"; if size_of_window < 0 then invalid_arg "Flux_zl.config: invalid negative number for the size of window"; if not (_unsafe_power_of_two size_of_window) then invalid_arg "Flux_zl.config: the of size of window must be a power of two"; if _unsafe_ctz size_of_window > 15 then invalid_arg "Flux_zl.config: too big size of window"; let q = De.Queue.create size_of_queue in let w = De.Lz77.make_window ~bits:(_unsafe_ctz size_of_window) in { level; q; w } let deflate ~cfg = let open Flux in let flow (Sink k) = let rec emit cb encoder lz77 o acc = function | `Partial -> assert (not (k.full acc)); let len = Bstr.length o - De.Def.dst_rem encoder in let str = Bstr.sub_string o ~off:0 ~len in let acc = k.push acc str in De.Def.dst encoder o 0 (Bstr.length o); if k.full acc then cb encoder lz77 o (`Stop acc) else emit cb encoder lz77 o acc (De.Def.encode encoder `Await) | `Ok -> cb encoder lz77 o (`Continue acc) | `Block -> let literals = De.Lz77.literals lz77 in let distances = De.Lz77.distances lz77 in let dynamic = De.Def.dynamic_of_frequencies ~literals ~distances in let kind = De.Def.Dynamic dynamic in emit cb encoder lz77 o acc (De.Def.encode encoder (`Block { De.Def.kind; last= false })) in let rec compress encoder lz77 o acc = match De.Lz77.compress lz77 with | `Await -> `Continue (encoder, lz77, o, acc) | `Flush -> let literals = De.Lz77.literals lz77 in let distances = De.Lz77.distances lz77 in let dynamic = De.Def.dynamic_of_frequencies ~literals ~distances in let kind = De.Def.Dynamic dynamic in let cb encoder lz77 o = function | `Continue acc when not (k.full acc) -> compress encoder lz77 o acc | `Continue acc | `Stop acc -> `Stop acc in emit cb encoder lz77 o acc (De.Def.encode encoder (`Block { De.Def.kind; last= false })) | `End -> assert false in let rec remaining encoder lz77 o acc = match De.Lz77.compress lz77 with | `End -> assert (not (k.full acc)); let kind = De.Def.Fixed in let cb _encoder _lz77 _o = function | `Continue acc | `Stop acc -> acc in emit cb encoder lz77 o acc (De.Def.encode encoder (`Block { De.Def.kind; last= true })) | `Flush -> let literals = De.Lz77.literals lz77 in let distances = De.Lz77.distances lz77 in let dynamic = De.Def.dynamic_of_frequencies ~literals ~distances in let kind = De.Def.Dynamic dynamic in let cb encoder lz77 o = function | `Continue acc when not (k.full acc) -> remaining encoder lz77 o acc | `Continue acc | `Stop acc -> acc in emit cb encoder lz77 o acc (De.Def.encode encoder (`Block { De.Def.kind; last= false })) | `Await -> assert false in let init () = let w = cfg.w and q = cfg.q and level = cfg.level in let lz77 = De.Lz77.state ~level ~w ~q `Manual in let encoder = De.Def.encoder `Manual ~q in let o = Bstr.create 0x7ff in De.Queue.reset q; De.Def.dst encoder o 0 0x7ff; let acc = k.init () in `Continue (encoder, lz77, o, acc) in let push state bstr = match (state, Bstr.length bstr) with | _, 0 | `Stop _, _ -> state | `Continue (encoder, lz77, o, acc), _ -> De.Lz77.src lz77 bstr 0 (Bstr.length bstr); compress encoder lz77 o acc in let full = function `Continue (_, _, _, acc) | `Stop acc -> k.full acc in let stop = function | `Stop acc -> k.stop acc | `Continue (encoder, lz77, o, acc) when not (k.full acc) -> De.Lz77.src lz77 Bstr.empty 0 0; let acc = remaining encoder lz77 o acc in k.stop acc | `Continue (_, _, _, acc) -> k.stop acc in Sink { init; push; full; stop } in { flow } let inflate = let open Flux in let flow (Sink k) = let rec until_await_or_end decoder o acc = assert (not (k.full acc)); match De.Inf.decode decoder with | `Await -> `Continue (decoder, o, acc) | `Flush -> let len = Bstr.length o - De.Inf.dst_rem decoder in let str = Bstr.sub_string o ~off:0 ~len in let acc = k.push acc str in De.Inf.flush decoder; if k.full acc then `Stop acc else until_await_or_end decoder o acc | `Malformed _ -> `Stop acc | `End -> let len = Bstr.length o - De.Inf.dst_rem decoder in let str = Bstr.sub_string o ~off:0 ~len in let acc = k.push acc str in `Stop acc in let rec until_end decoder o acc = assert (not (k.full acc)); match De.Inf.decode decoder with | `Await -> acc | `Flush -> let len = Bstr.length o - De.Inf.dst_rem decoder in let str = Bstr.sub_string o ~off:0 ~len in let acc = k.push acc str in De.Inf.flush decoder; if k.full acc then acc else until_end decoder o acc | `Malformed _ -> acc | `End -> let len = Bstr.length o - De.Inf.dst_rem decoder in let str = Bstr.sub_string o ~off:0 ~len in k.push acc str in let init () = let o = Bstr.create 0x7ff in let w = De.make_window ~bits:15 in let decoder = De.Inf.decoder `Manual ~o ~w in let acc = k.init () in `Continue (decoder, o, acc) and push state bstr = match (state, Bstr.length bstr) with | _, 0 | `Stop _, _ -> state | `Continue (decoder, o, acc), _ -> De.Inf.src decoder bstr 0 (Bstr.length bstr); until_await_or_end decoder o acc and full = function `Continue (_, _, acc) | `Stop acc -> k.full acc and stop = function | `Stop acc -> k.stop acc | `Continue (decoder, o, acc) when k.full acc -> De.Inf.src decoder Bstr.empty 0 0; let acc = until_end decoder o acc in k.stop acc | `Continue (_, _, acc) -> k.stop acc in Sink { init; push; full; stop } in { flow }
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