mirror of
https://github.com/idris-lang/Idris2.git
synced 2024-12-21 10:41:59 +03:00
333 lines
11 KiB
Idris
333 lines
11 KiB
Idris
module Data.Buffer
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import System.Directory
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import System.File
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import Data.List
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-- Reading and writing binary buffers. Note that this primitives are unsafe,
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-- in that they don't check that buffer locations are within bounds.
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-- We really need a safe wrapper!
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-- They are used in the Idris compiler itself for reading/writing checked
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-- files.
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-- This is known to the compiler, so maybe ought to be moved to Builtin
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export
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data Buffer : Type where [external]
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%foreign "scheme:blodwen-buffer-size"
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"node:lambda:b => BigInt(b.length)"
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prim__bufferSize : Buffer -> Int
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export
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rawSize : HasIO io => Buffer -> io Int
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rawSize buf = pure (prim__bufferSize buf)
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%foreign "scheme:blodwen-new-buffer"
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"node:lambda:s=>Buffer.alloc(Number(s))"
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prim__newBuffer : Int -> PrimIO Buffer
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export
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newBuffer : HasIO io => Int -> io (Maybe Buffer)
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newBuffer size
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= do buf <- primIO (prim__newBuffer size)
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pure $ Just buf
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-- if prim__nullAnyPtr buf /= 0
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-- then pure Nothing
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-- else pure $ Just $ MkBuffer buf size 0
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-- might be needed if we do this in C...
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export
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freeBuffer : HasIO io => Buffer -> io ()
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freeBuffer buf = pure ()
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%foreign "scheme:blodwen-buffer-setbyte"
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"node:lambda:(buf,offset,value)=>buf.writeUInt8(Number(value), Number(offset))"
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prim__setByte : Buffer -> Int -> Int -> PrimIO ()
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%foreign "scheme:blodwen-buffer-setbyte"
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"node:lambda:(buf,offset,value)=>buf.writeUInt8(Number(value), Number(offset))"
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prim__setBits8 : Buffer -> Int -> Bits8 -> PrimIO ()
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-- Assumes val is in the range 0-255
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export
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setByte : HasIO io => Buffer -> (loc : Int) -> (val : Int) -> io ()
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setByte buf loc val
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= primIO (prim__setByte buf loc val)
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export
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setBits8 : HasIO io => Buffer -> (loc : Int) -> (val : Bits8) -> io ()
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setBits8 buf loc val
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= primIO (prim__setBits8 buf loc val)
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%foreign "scheme:blodwen-buffer-getbyte"
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"node:lambda:(buf,offset)=>BigInt(buf.readUInt8(Number(offset)))"
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prim__getByte : Buffer -> Int -> PrimIO Int
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%foreign "scheme:blodwen-buffer-getbyte"
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"node:lambda:(buf,offset)=>BigInt(buf.readUInt8(Number(offset)))"
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prim__getBits8 : Buffer -> Int -> PrimIO Bits8
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export
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getByte : HasIO io => Buffer -> (loc : Int) -> io Int
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getByte buf loc
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= primIO (prim__getByte buf loc)
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export
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getBits8 : HasIO io => Buffer -> (loc : Int) -> io Bits8
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getBits8 buf loc
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= primIO (prim__getBits8 buf loc)
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%foreign "scheme:blodwen-buffer-setbits16"
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"node:lambda:(buf,offset,value)=>buf.writeUInt16LE(Number(value), Number(offset))"
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prim__setBits16 : Buffer -> Int -> Bits16 -> PrimIO ()
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export
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setBits16 : HasIO io => Buffer -> (loc : Int) -> (val : Bits16) -> io ()
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setBits16 buf loc val
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= primIO (prim__setBits16 buf loc val)
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%foreign "scheme:blodwen-buffer-getbits16"
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"node:lambda:(buf,offset)=>BigInt(buf.readUInt16LE(Number(offset)))"
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prim__getBits16 : Buffer -> Int -> PrimIO Bits16
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export
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getBits16 : HasIO io => Buffer -> (loc : Int) -> io Bits16
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getBits16 buf loc
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= primIO (prim__getBits16 buf loc)
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%foreign "scheme:blodwen-buffer-setbits32"
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"node:lambda:(buf,offset,value)=>buf.writeUInt32LE(Number(value), Number(offset))"
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prim__setBits32 : Buffer -> Int -> Bits32 -> PrimIO ()
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export
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setBits32 : HasIO io => Buffer -> (loc : Int) -> (val : Bits32) -> io ()
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setBits32 buf loc val
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= primIO (prim__setBits32 buf loc val)
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%foreign "scheme:blodwen-buffer-getbits32"
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"node:lambda:(buf,offset)=>BigInt(buf.readUInt32LE(Number(offset)))"
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prim__getBits32 : Buffer -> Int -> PrimIO Bits32
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export
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getBits32 : HasIO io => Buffer -> (loc : Int) -> io Bits32
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getBits32 buf loc
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= primIO (prim__getBits32 buf loc)
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%foreign "scheme:blodwen-buffer-setbits64"
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prim__setBits64 : Buffer -> Int -> Bits64 -> PrimIO ()
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export
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setBits64 : HasIO io => Buffer -> (loc : Int) -> (val : Bits64) -> io ()
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setBits64 buf loc val
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= primIO (prim__setBits64 buf loc val)
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%foreign "scheme:blodwen-buffer-getbits64"
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prim__getBits64 : Buffer -> Int -> PrimIO Bits64
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export
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getBits64 : HasIO io => Buffer -> (loc : Int) -> io Bits64
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getBits64 buf loc
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= primIO (prim__getBits64 buf loc)
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%foreign "scheme:blodwen-buffer-setint32"
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"node:lambda:(buf,offset,value)=>buf.writeInt32LE(Number(value), Number(offset))"
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prim__setInt32 : Buffer -> Int -> Int -> PrimIO ()
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export
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setInt32 : HasIO io => Buffer -> (loc : Int) -> (val : Int) -> io ()
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setInt32 buf loc val
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= primIO (prim__setInt32 buf loc val)
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%foreign "scheme:blodwen-buffer-getint32"
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"node:lambda:(buf,offset)=>BigInt(buf.readInt32LE(Number(offset)))"
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prim__getInt32 : Buffer -> Int -> PrimIO Int
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export
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getInt32 : HasIO io => Buffer -> (loc : Int) -> io Int
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getInt32 buf loc
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= primIO (prim__getInt32 buf loc)
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%foreign "scheme:blodwen-buffer-setint"
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"node:lambda:(buf,offset,value)=>buf.writeInt64(Number(value), Number(offset))"
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prim__setInt : Buffer -> Int -> Int -> PrimIO ()
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export
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setInt : HasIO io => Buffer -> (loc : Int) -> (val : Int) -> io ()
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setInt buf loc val
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= primIO (prim__setInt buf loc val)
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%foreign "scheme:blodwen-buffer-getint"
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"node:lambda:(buf,offset)=>BigInt(buf.readInt64(Number(offset)))"
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prim__getInt : Buffer -> Int -> PrimIO Int
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export
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getInt : HasIO io => Buffer -> (loc : Int) -> io Int
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getInt buf loc
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= primIO (prim__getInt buf loc)
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%foreign "scheme:blodwen-buffer-setdouble"
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"node:lambda:(buf,offset,value)=>buf.writeDoubleLE(value, Number(offset))"
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prim__setDouble : Buffer -> Int -> Double -> PrimIO ()
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export
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setDouble : HasIO io => Buffer -> (loc : Int) -> (val : Double) -> io ()
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setDouble buf loc val
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= primIO (prim__setDouble buf loc val)
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%foreign "scheme:blodwen-buffer-getdouble"
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"node:lambda:(buf,offset)=>buf.readDoubleLE(Number(offset))"
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prim__getDouble : Buffer -> Int -> PrimIO Double
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export
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getDouble : HasIO io => Buffer -> (loc : Int) -> io Double
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getDouble buf loc
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= primIO (prim__getDouble buf loc)
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-- Get the length of a string in bytes, rather than characters
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export
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%foreign "C:strlen,libc 6"
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stringByteLength : String -> Int
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%foreign "scheme:blodwen-buffer-setstring"
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"node:lambda:(buf,offset,value)=>buf.write(value, Number(offset),buf.length - Number(offset), 'utf-8')"
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prim__setString : Buffer -> Int -> String -> PrimIO ()
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export
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setString : HasIO io => Buffer -> (loc : Int) -> (val : String) -> io ()
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setString buf loc val
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= primIO (prim__setString buf loc val)
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%foreign "scheme:blodwen-buffer-getstring"
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"node:lambda:(buf,offset,len)=>buf.slice(Number(offset), Number(offset+len)).toString('utf-8')"
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prim__getString : Buffer -> Int -> Int -> PrimIO String
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export
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getString : HasIO io => Buffer -> (loc : Int) -> (len : Int) -> io String
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getString buf loc len
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= primIO (prim__getString buf loc len)
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export
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bufferData : HasIO io => Buffer -> io (List Int)
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bufferData buf
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= do len <- rawSize buf
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unpackTo [] len
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where
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unpackTo : List Int -> Int -> io (List Int)
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unpackTo acc 0 = pure acc
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unpackTo acc loc
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= do val <- getByte buf (loc - 1)
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unpackTo (val :: acc) (loc - 1)
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%foreign "scheme:blodwen-buffer-copydata"
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"node:lambda:(b1,o1,length,b2,o2)=>b1.copy(b2,Number(o2), Number(o1), Number(o1+length))"
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prim__copyData : Buffer -> Int -> Int -> Buffer -> Int -> PrimIO ()
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export
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copyData : HasIO io => (src : Buffer) -> (start, len : Int) ->
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(dest : Buffer) -> (loc : Int) -> io ()
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copyData src start len dest loc
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= primIO (prim__copyData src start len dest loc)
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%foreign "C:idris2_readBufferData,libidris2_support"
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"node:lambda:(f,b,l,m) => BigInt(require('fs').readSync(f.fd,b,Number(l), Number(m)))"
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prim__readBufferData : FilePtr -> Buffer -> Int -> Int -> PrimIO Int
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%foreign "C:idris2_writeBufferData,libidris2_support"
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"node:lambda:(f,b,l,m) => BigInt(require('fs').writeSync(f.fd,b,Number(l), Number(m)))"
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prim__writeBufferData : FilePtr -> Buffer -> Int -> Int -> PrimIO Int
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export
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readBufferData : HasIO io => File -> Buffer ->
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(loc : Int) -> -- position in buffer to start adding
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(maxbytes : Int) -> -- maximums size to read, which must not
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-- exceed buffer length
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io (Either FileError ())
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readBufferData (FHandle h) buf loc max
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= do read <- primIO (prim__readBufferData h buf loc max)
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if read >= 0
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then pure (Right ())
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else pure (Left FileReadError)
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export
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writeBufferData : HasIO io => File -> Buffer ->
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(loc : Int) -> -- position in buffer to write from
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(maxbytes : Int) -> -- maximums size to write, which must not
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-- exceed buffer length
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io (Either FileError ())
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writeBufferData (FHandle h) buf loc max
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= do written <- primIO (prim__writeBufferData h buf loc max)
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if written >= 0
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then pure (Right ())
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else pure (Left FileWriteError)
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export
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writeBufferToFile : HasIO io => String -> Buffer -> Int -> io (Either FileError ())
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writeBufferToFile fn buf max
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= do Right f <- openFile fn WriteTruncate
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| Left err => pure (Left err)
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Right ok <- writeBufferData f buf 0 max
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| Left err => pure (Left err)
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closeFile f
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pure (Right ok)
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export
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createBufferFromFile : HasIO io => String -> io (Either FileError Buffer)
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createBufferFromFile fn
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= do Right f <- openFile fn Read
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| Left err => pure (Left err)
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Right size <- fileSize f
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| Left err => pure (Left err)
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Just buf <- newBuffer size
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| Nothing => pure (Left FileReadError)
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Right ok <- readBufferData f buf 0 size
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| Left err => pure (Left err)
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closeFile f
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pure (Right buf)
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export
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resizeBuffer : HasIO io => Buffer -> Int -> io (Maybe Buffer)
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resizeBuffer old newsize
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= do Just buf <- newBuffer newsize
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| Nothing => pure Nothing
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-- If the new buffer is smaller than the old one, just copy what
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-- fits
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oldsize <- rawSize old
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let len = if newsize < oldsize then newsize else oldsize
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copyData old 0 len buf 0
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freeBuffer old
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pure (Just buf)
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||| Create a buffer containing the concatenated content from a
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||| list of buffers.
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export
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concatBuffers : HasIO io => List Buffer -> io (Maybe Buffer)
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concatBuffers xs
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= do let sizes = map prim__bufferSize xs
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let (totalSize, revCumulative) = foldl scanSize (0,[]) sizes
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let cumulative = reverse revCumulative
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Just buf <- newBuffer totalSize
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| Nothing => pure Nothing
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traverse_ (\(b, size, watermark) => copyData b 0 size buf watermark) (zip3 xs sizes cumulative)
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pure (Just buf)
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where
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scanSize : (Int, List Int) -> Int -> (Int, List Int)
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scanSize (s, cs) x = (s+x, s::cs)
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||| Split a buffer into two at a position.
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export
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splitBuffer : HasIO io => Buffer -> Int -> io (Maybe (Buffer, Buffer))
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splitBuffer buf pos = do size <- rawSize buf
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if pos > 0 && pos < size
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then do Just first <- newBuffer pos
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| Nothing => pure Nothing
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Just second <- newBuffer (size - pos)
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| Nothing => pure Nothing
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copyData buf 0 pos first 0
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copyData buf pos (size-pos) second 0
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pure $ Just (first, second)
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else pure Nothing
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