mirror of
https://github.com/janet-lang/janet
synced 2024-11-10 10:49:54 +00:00
39f1d81fd4
Also adds the janet_lengthv API call. This is needed because janet_length returns a 32 bit integer, where as lengthv lets us return larger values (useful for typed arrays). janet_mcall is an api function that should make it easier to call a janet method from C code. It shares a similar signature with janet_call.
132 lines
4.6 KiB
Plaintext
132 lines
4.6 KiB
Plaintext
# Copyright (c) 2019 Calvin Rose & contributors
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#
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# Permission is hereby granted, free of charge, to any person obtaining a copy
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# of this software and associated documentation files (the "Software"), to
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# deal in the Software without restriction, including without limitation the
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# rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
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# sell copies of the Software, and to permit persons to whom the Software is
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# furnished to do so, subject to the following conditions:
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#
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# The above copyright notice and this permission notice shall be included in
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# all copies or substantial portions of the Software.
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#
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# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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# FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
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# IN THE SOFTWARE.
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(import ./helper :prefix "" :exit true)
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(start-suite 5)
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# some tests typed array
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(defn inspect-tarray
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[x]
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(def a @[])
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(for i 0 (tarray/length x) (array/push a (x i)))
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(pp a))
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(assert-no-error
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"create some typed arrays"
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(do
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(def a (tarray/new :float64 10))
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(def b (tarray/new :float64 5 2 0 a))
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(def c (tarray/new :uint32 20))))
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(assert-no-error
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"create some typed arrays from a buffer"
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(do
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(def buf (tarray/buffer (+ 64 (* (+ 1 (* (- 10 1) 2)) 8))))
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(def b (tarray/new :float64 10 2 64 buf))))
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(def a (tarray/new :float64 10))
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(def b (tarray/new :float64 5 2 0 a))
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(assert-no-error
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"fill tarray"
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(for i 0 (tarray/length a)
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(set (a i) i)))
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(assert (= (tarray/buffer a) (tarray/buffer b)) "tarray views pointing same buffer")
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(assert (= (a 2) (b 1) ) "tarray views pointing same buffer")
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(assert (= ((tarray/slice b) 3) (b 3) (a 6) 6) "tarray slice")
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(assert (= ((tarray/slice b 1) 2) (b 3) (a 6) 6) "tarray slice")
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(assert (= (:length a) (length a)) "length method and function")
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(assert (= ((unmarshal (marshal b)) 3) (b 3)) "marshal")
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# Array remove
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(assert (deep= (array/remove @[1 2 3 4 5] 2) @[1 2 4 5]) "array/remove 1")
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(assert (deep= (array/remove @[1 2 3 4 5] 2 2) @[1 2 5]) "array/remove 2")
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(assert (deep= (array/remove @[1 2 3 4 5] 2 200) @[1 2]) "array/remove 3")
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(assert (deep= (array/remove @[1 2 3 4 5] -3 200) @[1 2 3]) "array/remove 4")
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# Break
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(var summation 0)
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(for i 0 10
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(+= summation i)
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(if (= i 7) (break)))
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(assert (= summation 28) "break 1")
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(assert (= nil ((fn [] (break) 4))) "break 2")
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# Break with value
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# Shouldn't error out
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(assert-no-error "break 3" (for i 0 10 (if (> i 8) (break i))))
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(assert-no-error "break 4" ((fn [i] (if (> i 8) (break i))) 100))
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# take
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(assert (deep= (take 0 []) []) "take 1")
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(assert (deep= (take 10 []) []) "take 2")
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(assert (deep= (take 0 [1 2 3 4 5]) []) "take 3")
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(assert (deep= (take 10 [1 2 3]) [1 2 3]) "take 4")
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(assert (deep= (take -1 [:a :b :c]) []) "take 5")
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(assert-error :invalid-type (take 3 {}) "take 6")
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# take-until
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(assert (deep= (take-until pos? @[]) []) "take-until 1")
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(assert (deep= (take-until pos? @[1 2 3]) []) "take-until 2")
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(assert (deep= (take-until pos? @[-1 -2 -3]) [-1 -2 -3]) "take-until 3")
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(assert (deep= (take-until pos? @[-1 -2 3]) [-1 -2]) "take-until 4")
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(assert (deep= (take-until pos? @[-1 1 -2]) [-1]) "take-until 5")
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(assert (deep= (take-until |(= $ 115) "books") "book") "take-until 6")
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# take-while
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(assert (deep= (take-while neg? @[]) []) "take-while 1")
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(assert (deep= (take-while neg? @[1 2 3]) []) "take-while 2")
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(assert (deep= (take-while neg? @[-1 -2 -3]) [-1 -2 -3]) "take-while 3")
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(assert (deep= (take-while neg? @[-1 -2 3]) [-1 -2]) "take-while 4")
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(assert (deep= (take-while neg? @[-1 1 -2]) [-1]) "take-while 5")
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# drop
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(assert (deep= (drop 0 []) []) "drop 1")
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(assert (deep= (drop 10 []) []) "drop 2")
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(assert (deep= (drop 0 [1 2 3 4 5]) [1 2 3 4 5]) "drop 3")
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(assert (deep= (drop 10 [1 2 3]) []) "drop 4")
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(assert (deep= (drop -2 [:a :b :c]) [:a :b :c]) "drop 5")
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(assert-error :invalid-type (drop 3 {}) "drop 6")
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# drop-until
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(assert (deep= (drop-until pos? @[]) []) "drop-until 1")
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(assert (deep= (drop-until pos? @[1 2 3]) [1 2 3]) "drop-until 2")
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(assert (deep= (drop-until pos? @[-1 -2 -3]) []) "drop-until 3")
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(assert (deep= (drop-until pos? @[-1 -2 3]) [3]) "drop-until 4")
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(assert (deep= (drop-until pos? @[-1 1 -2]) [1 -2]) "drop-until 5")
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(assert (deep= (drop-until |(= $ 115) "books") "s") "drop-until 6")
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# Quasiquote bracketed tuples
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(assert (= (tuple/type ~[1 2 3]) (tuple/type '[1 2 3])) "quasiquote bracket tuples")
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(end-suite)
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