186 lines
4.9 KiB
Nim
186 lines
4.9 KiB
Nim
import std/[strutils, parseutils]
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import stew/[byteutils, base10]
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import ../presto/common
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type
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CustomKind* {.pure.} = enum
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Level1, Level2, Level3
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CustomType1* = object
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case kind*: CustomKind
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of Level1:
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level1*: int
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of Level2:
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level2*: string
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of Level3:
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level3*: seq[byte]
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GenericType*[T] = object
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data*: T
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proc decodeString*(t: typedesc[GenericType[int]],
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value: string): RestResult[GenericType[int]] =
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var v: int
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if parseSaturatedNatural(value, v) == 0:
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err("Unable to decode decimal string")
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else:
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if v == high(int):
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err("Integer overflow")
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else:
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ok(GenericType[int](data: v))
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proc decodeString*(t: typedesc[GenericType[string]],
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value: string): RestResult[GenericType[string]] =
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ok(GenericType[string](data: value))
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proc decodeString*(t: typedesc[GenericType[seq[byte]]],
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value: string): RestResult[GenericType[seq[byte]]] =
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try:
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let bytes = hexToSeqByte(value)
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let res = GenericType[seq[byte]](data: bytes)
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return ok(res)
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except ValueError:
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discard
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err("Unable to decode hex string")
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proc decodeString*(t: typedesc[CustomType1],
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value: string): RestResult[CustomType1] =
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if value.startsWith("p1_"):
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let res = value[3 .. ^1]
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var v: int
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if parseSaturatedNatural(res, v) == 0:
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err("Unable to decode decimal string")
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else:
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if v == high(int):
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err("Integer overflow")
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else:
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ok(CustomType1(kind: CustomKind.Level1, level1: v))
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elif value.startsWith("p2_"):
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let res = value[3 .. ^1]
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ok(CustomType1(kind: CustomKind.Level2, level2: res))
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elif value.startsWith("p3_"):
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let res = value[3 .. ^1]
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try:
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return ok(CustomType1(kind: CustomKind.Level3, level3: hexToSeqByte(res)))
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except ValueError:
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discard
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err("Unable to decode hex string")
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else:
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err("Unable to decode value")
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proc decodeBytes*(t: typedesc[CustomType1], value: openarray[byte],
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contentType: string): RestResult[CustomType1] =
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discard
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proc decodeBytes*(t: typedesc[string], value: openarray[byte],
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contentType: string): RestResult[string] =
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var res: string
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if len(value) > 0:
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res = newString(len(value))
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copyMem(addr res[0], unsafeAddr value[0], len(value))
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ok(res)
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proc decodeBytes*(t: typedesc[int], value: openarray[byte],
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contentType: string): RestResult[int] =
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if len(value) == 0:
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err("Could not find any integer")
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else:
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let res = Base10.decode(uint16, value)
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if res.isErr():
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err(res.error())
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else:
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ok(int(res.get()))
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proc encodeBytes*(value: CustomType1,
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contentType: string): RestResult[seq[byte]] =
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discard
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proc encodeBytes*(value: string,
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contentType: string): RestResult[seq[byte]] =
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var res: seq[byte]
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if len(value) > 0:
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res = newSeq[byte](len(value))
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copyMem(addr res[0], unsafeAddr value[0], len(value))
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ok(res)
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proc encodeString*(value: CustomType1): RestResult[string] =
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case value.kind
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of CustomKind.Level1:
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ok("p1_" & Base10.toString(uint64(value.level1)))
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of CustomKind.Level2:
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ok("p2_" & value.level2)
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of CustomKind.Level3:
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ok("p3_" & toHex(value.level3))
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proc encodeString*(value: int): RestResult[string] =
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if value < 0:
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err("Negative integer")
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else:
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ok(Base10.toString(uint64(value)))
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proc encodeString*(value: string): RestResult[string] =
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ok(value)
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proc encodeString*(value: openarray[byte]): RestResult[string] =
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ok(toHex(value))
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proc decodeString*(t: typedesc[int], value: string): RestResult[int] =
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var v: int
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if parseSaturatedNatural(value, v) == 0:
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err("Unable to decode decimal string")
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else:
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if v == high(int):
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err("Integer overflow")
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else:
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ok(v)
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proc decodeString*(t: typedesc[string], value: string): RestResult[string] =
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return ok(value)
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proc decodeString*(t: typedesc[seq[byte]],
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value: string): RestResult[seq[byte]] =
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try:
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return ok(hexToSeqByte(value))
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except ValueError:
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discard
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err("Unable to decode hex string")
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proc match*(value: string, charset: set[char]): bool =
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for ch in value:
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if ch notin charset:
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return false
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true
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proc testValidate*(pattern: string, value: string): int =
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let res =
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case pattern
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of "{pat1}":
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if value.startsWith("p1_"): 0 else: 1
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of "{pat2}":
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if value.startsWith("p2_"): 0 else: 1
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of "{pat3}":
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if value.startsWith("p3_"): 0 else: 1
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of "{smp1}":
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if value.match({'0' .. '9'}): 0 else: 1
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of "{smp2}":
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0
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of "{smp3}":
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if value.match({'0' .. '9', 'a' .. 'f', 'A' .. 'F', 'x'}): 0 else: 1
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of "{let}":
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if value.match({'0' .. '9'}): 0 else: 1
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else:
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1
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res
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proc `==`*(a, b: CustomType1): bool =
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(a.kind == b.kind) and
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(
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case a.kind
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of Level1:
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a.level1 == b.level1
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of Level2:
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a.level2 == b.level2
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of Level3:
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a.level3 == b.level3
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)
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