liquidhaskell-0.7.0.0: docs/slides/ETH14/lhs/02_Measures.lhs
{#measures}
============
Measuring Data Types
--------------------
<div class="hidden">
\begin{code}
{-# LIQUID "--no-termination" #-}
{-# LIQUID "--full" #-}
module Measures where
import Prelude hiding ((!!), length)
import Language.Haskell.Liquid.Prelude
length :: L a -> Int
(!) :: L a -> Int -> a
insert :: Ord a => a -> L a -> L a
insertSort :: Ord a => [a] -> L a
infixr `C`
\end{code}
</div>
Measuring Data Types
====================
Recap
-----
1. <div class="fragment">**Refinements:** Types + Predicates</div>
2. <div class="fragment">**Subtyping:** SMT Implication</div>
Example: Length of a List
-------------------------
Given a type for lists:
<br>
\begin{code}
data L a = N | C a (L a)
\end{code}
<div class="fragment">
<br>
We can define the **length** as:
<br>
\begin{code}
{-@ measure llen :: (L a) -> Int
llen (N) = 0
llen (C x xs) = 1 + (llen xs) @-}
\end{code}
<div class="hidden">
\begin{code}
{-@ data L [llen] a = N | C {hd :: a, tl :: L a } @-}
{-@ invariant {v: L a | 0 <= llen v} @-}
\end{code}
</div>
Example: Length of a List
-------------------------
\begin{spec}
{-@ measure llen :: (L a) -> Int
llen (N) = 0
llen (C x xs) = 1 + llen xs @-}
\end{spec}
<br>
We **strengthen** data constructor types
<br>
\begin{spec} <div/>
data L a where
N :: {v: L a | (llen v) = 0}
C :: a -> t:_ -> {v:_| llen v = 1 + llen t}
\end{spec}
Measures Are Uninterpreted
--------------------------
\begin{spec} <br>
data L a where
N :: {v: L a | (llen v) = 0}
C :: a -> t:_ -> {v:_| llen v = 1 + llen t}
\end{spec}
<br>
`llen` is an **uninterpreted function** in SMT logic
Measures Are Uninterpreted
--------------------------
<br>
In SMT, [uninterpreted function](http://fm.csl.sri.com/SSFT12/smt-euf-arithmetic.pdf) $f$ obeys **congruence** axiom:
<br>
$$\forall \overline{x}, \overline{y}. \overline{x} = \overline{y} \Rightarrow
f(\overline{x}) = f(\overline{y})$$
<br>
<div class="fragment">
Other properties of `llen` asserted when typing **fold** & **unfold**
</div>
<br>
<div class="fragment">
Crucial for *efficient*, *decidable* and *predictable* verification.
</div>
Measures Are Uninterpreted
--------------------------
Other properties of `llen` asserted when typing **fold** & **unfold**
<br>
<div class="fragment">
\begin{spec}**Fold**<br>
z = C x y -- z :: {v | llen v = 1 + llen y}
\end{spec}
</div>
<br>
<div class="fragment">
\begin{spec}**Unfold**<br>
case z of
N -> e1 -- z :: {v | llen v = 0}
C x y -> e2 -- z :: {v | llen v = 1 + llen y}
\end{spec}
</div>
Measured Refinements
--------------------
Now, we can verify:
<br>
\begin{code}
{-@ length :: xs:L a -> EqLen xs @-}
length N = 0
length (C _ xs) = 1 + length xs
\end{code}
<div class="fragment">
<br>
Where `EqLen` is a type alias:
\begin{code}
{-@ type EqLen Xs = {v:Nat | v = llen Xs} @-}
\end{code}
</div>
List Indexing Redux
-------------------
We can type list lookup:
\begin{code}
{-@ (!) :: xs:L a -> LtLen xs -> a @-}
(C x _) ! 0 = x
(C _ xs) ! i = xs ! (i - 1)
_ ! _ = liquidError "never happens!"
\end{code}
<br>
<div class="fragment">
Where `LtLen` is a type alias:
\begin{code}
{-@ type LtLen Xs = {v:Nat | v < llen Xs} @-}
\end{code}
<br>
<a href="http://goto.ucsd.edu:8090/index.html#?demo=HaskellMeasure.hs" target= "_blank">Demo:</a>
What if we *remove* the precondition?
</div>
Multiple Measures
-----------------
<br>
**Multiple** measures by **conjoining** refinements.
<br>
<div class="fragment">
e.g. Red Black Tree
+ Height
+ Color
+ Nodes, etc.
<br>
Refined Data Constructors
=========================
{#refined-data-cons}
---------------------
Can encode *other* invariants **inside constructors**
<div class="fragment">
<br>
\begin{code}
{-@ data L a = N
| C { x :: a
, xs :: L {v:a| x <= v} } @-}
\end{code}
</div>
<br>
<div class="fragment">
Head `x` is less than **every** element of tail `xs`
</div>
<br>
<div class="fragment">
i.e. specifies **increasing** Lists
</div>
Increasing Lists
----------------
\begin{spec} <br>
data L a where
N :: L a
C :: x:a -> xs: L {v:a | x <= v} -> L a
\end{spec}
<br>
- <div class="fragment">We **check** property when **folding** `C`</div>
- <div class="fragment">We **assume** property when **unfolding** `C`</div>
Increasing Lists
----------------
<a href="http://goto.ucsd.edu:8090/index.html#?demo=HaskellInsertSort.hs" target= "_blank">Demo: Insertion Sort</a> (hover for inferred types)
<br>
\begin{code}
insertSort xs = foldr insert N xs
insert y (x `C` xs)
| y <= x = y `C` (x `C` xs)
| otherwise = x `C` insert y xs
insert y N = y `C` N
\end{code}
<br>
Recap
-----
<br>
<br>
1. Refinements: Types + Predicates
2. Subtyping: SMT Implication
3. **Measures:** Strengthened Constructors
<br>
<div class="fragment">Logic + Analysis for Collections</div>
<br>
<br>
<div class="fragment"><a href="03_HigherOrderFunctions.lhs.slides.html" target="_blank">[continue]</a></div>