2018-04-25 19:21:25 +00:00
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# Stint
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2018-04-21 11:50:43 +00:00
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# Copyright 2018 Status Research & Development GmbH
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# Licensed under either of
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#
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# * Apache License, version 2.0, ([LICENSE-APACHE](LICENSE-APACHE) or http://www.apache.org/licenses/LICENSE-2.0)
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# * MIT license ([LICENSE-MIT](LICENSE-MIT) or http://opensource.org/licenses/MIT)
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#
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# at your option. This file may not be copied, modified, or distributed except according to those terms.
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2018-06-18 14:44:29 +00:00
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import ./datatypes, ./conversion, macros
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2018-04-21 11:50:43 +00:00
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2018-06-18 10:54:25 +00:00
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# #########################################################################
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# Multi-precision ints to compile-time array of words
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2018-04-21 11:50:43 +00:00
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2018-06-18 10:54:25 +00:00
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proc asWordsImpl(x: NimNode, current_path: NimNode, result: var NimNode) =
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## Transforms an UintImpl/IntImpl into an array of words
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## at compile-time. Recursive implementation.
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## Result is from most significant word to least significant
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let node = x.getTypeInst
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if node.kind == nnkBracketExpr:
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assert eqIdent(node[0], "UintImpl") or eqIdent(node[0], "IntImpl")
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let hi = nnkDotExpr.newTree(current_path, newIdentNode("hi"))
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let lo = nnkDotExpr.newTree(current_path, newIdentNode("lo"))
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asWordsImpl(node[1], hi, result)
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asWordsImpl(node[1], lo, result)
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2018-04-21 11:50:43 +00:00
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else:
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2018-06-18 10:54:25 +00:00
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result.add current_path
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# #########################################################################
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# Accessors
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macro asWords(x: UintImpl or IntImpl, idx: static[int]): untyped =
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## Access a single element from a multiprecision ints
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## as if if was stored as an array
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## x.asWords[0] is the most significant word
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var words = nnkBracket.newTree()
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asWordsImpl(x, x, words)
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result = words[idx]
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macro most_significant_word*(x: UintImpl or IntImpl): untyped =
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result = getAST(asWords(x, 0))
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macro least_significant_word*(x: UintImpl or IntImpl): untyped =
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var words = nnkBracket.newTree()
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asWordsImpl(x, x, words)
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result = words[words.len - 1]
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macro second_least_significant_word*(x: UintImpl or IntImpl): untyped =
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var words = nnkBracket.newTree()
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asWordsImpl(x, x, words)
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result = words[words.len - 2]
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2018-04-21 11:50:43 +00:00
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2018-06-18 10:54:25 +00:00
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# #########################################################################
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# Iteration macros
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2018-04-25 13:41:59 +00:00
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2018-04-25 15:02:44 +00:00
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proc replaceNodes*(ast: NimNode, replacing: NimNode, to_replace: NimNode): NimNode =
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2018-04-21 15:21:14 +00:00
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# Args:
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# - The full syntax tree
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# - an array of replacement value
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# - an array of identifiers to replace
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proc inspect(node: NimNode): NimNode =
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case node.kind:
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of {nnkIdent, nnkSym}:
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for i, c in to_replace:
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if node.eqIdent($c):
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return replacing[i]
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return node
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of nnkEmpty:
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return node
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of nnkLiterals:
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return node
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else:
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var rTree = node.kind.newTree()
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for child in node:
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rTree.add inspect(child)
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return rTree
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result = inspect(ast)
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2018-06-18 14:44:29 +00:00
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macro asWordsIterate(wordsIdents: untyped, sid0, sid1, sid2: typed, signed: static[bool], loopBody: untyped): untyped =
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# TODO: We can't use varargs[typed] without losing type info - https://github.com/nim-lang/Nim/issues/7737
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# So we need a workaround we accept fixed 3 args sid0, sid1, sid2 and will just ignore what is not used
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result = newStmtList()
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let NbStints = wordsIdents.len
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# 1. Get the words of each stint
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# + Workaround varargs[typed] losing type info https://github.com/nim-lang/Nim/issues/7737
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var words = nnkBracket.newTree
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block:
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var wordList = nnkBracket.newTree
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asWordsImpl(sid0, sid0, wordList)
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words.add wordList
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if NbStints > 1:
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var wordList = nnkBracket.newTree
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asWordsImpl(sid1, sid1, wordList)
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words.add wordList
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if NbStints > 2:
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var wordList = nnkBracket.newTree
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asWordsImpl(sid2, sid2, wordList)
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words.add wordList
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# 2. Construct an unrolled loop
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# We replace each occurence of each words
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# in the original loop by how to access it.
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let NbWords = words[0].len
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for currDepth in 0 ..< NbWords:
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var replacing = nnkBracket.newTree
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for currStint in 0 ..< NbStints:
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var w = words[currStint][currDepth]
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if currDepth == 0 and signed:
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let toInt = bindSym"toInt"
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w = quote do: `toInt`(`w`)
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replacing.add w
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let body = replaceNodes(loopBody, replacing, to_replace = wordsIdents)
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result.add quote do:
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block: `body`
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2018-06-18 14:44:29 +00:00
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template asWordsParse(): untyped {.dirty.}=
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# ##### Tree representation
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# for word_a, word_b in asWords(a, b):
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# discard
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# ForStmt
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# Ident "word_a"
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# Ident "word_b"
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# Call
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# Ident "asWords"
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# Ident "a"
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# Ident "b"
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# StmtList
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# DiscardStmt
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# Empty
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# 1. Get the words variable idents
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var wordsIdents = nnkBracket.newTree
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var idx = 0
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while x[idx].kind == nnkIdent:
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wordsIdents.add x[idx]
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inc idx
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# 2. Get the multiprecision ints idents
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var stintsIdents = nnkArgList.newTree # nnkArgList allows to keep the type when passing to varargs[typed]
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# but varargs[typed] has further issues ¯\_(ツ)_/¯
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idx = 1
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while idx < x[wordsIdents.len].len and x[wordsIdents.len][idx].kind == nnkIdent:
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stintsIdents.add x[wordsIdents.len][idx]
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inc idx
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assert wordsIdents.len == stintsIdents.len, "The number of loop variables and multiprecision integers t iterate on must be the same"
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# 3. Get the body and pass the bucket to a typed macro
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# + unroll varargs[typed] manually as workaround for https://github.com/nim-lang/Nim/issues/7737
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var body = x[x.len - 1]
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let sid0 = stintsIdents[0]
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let sid1 = if stintsIdents.len > 1: stintsIdents[1] else: newEmptyNode()
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let sid2 = if stintsIdents.len > 2: stintsIdents[2] else: newEmptyNode()
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2018-06-18 14:44:29 +00:00
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macro asWords*(x: ForLoopStmt): untyped =
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## This unrolls the body of the for loop and applies it for each word.
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## Words are processed from most significant word to least significant.
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asWordsParse()
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result = quote do: asWordsIterate(`wordsIdents`, `sid0`, `sid1`, `sid2`, false, `body`)
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macro asSignedWords*(x: ForLoopStmt): untyped =
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## This unrolls the body of the for loop and applies it for each word.
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## Words are processed from most significant word to least significant.
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## The most significant word is returned signed for proper comparison.
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asWordsParse()
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result = quote do: asWordsIterate(`wordsIdents`, `sid0`, `sid1`, `sid2`, true, `body`)
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