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spec/util_iterators_spec.lua @ 13537:fb970df95374
util.crypto: Add more ECC methods
pkey_meth_derive: to derive a shared symmetric key from two ECC keys
pkey_meth_public_raw: to get the raw form of the public key
import_public_ec_raw: to import the raw form of the public key
generate_p256_keypair: key generation for the P-256 curve
author | Stephen Paul Weber <singpolyma@singpolyma.net> |
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date | Tue, 29 Oct 2024 09:15:50 -0500 |
parent | 12744:e894677359e5 |
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local iter = require "util.iterators"; describe("util.iterators", function () describe("join", function () it("should produce a joined iterator", function () local expect = { "a", "b", "c", 1, 2, 3 }; local output = {}; for x in iter.join(iter.values({"a", "b", "c"})):append(iter.values({1, 2, 3})) do table.insert(output, x); end assert.same(output, expect); end); it("should work with only a single iterator", function () local expect = { "a", "b", "c" }; local output = {}; for x in iter.join(iter.values({"a", "b", "c"})) do table.insert(output, x); end assert.same(output, expect); end); end); describe("sorted_pairs", function () it("should produce sorted pairs", function () local orig = { b = 1, c = 2, a = "foo", d = false }; local n, last_key = 0, nil; for k, v in iter.sorted_pairs(orig) do n = n + 1; if last_key then assert(k > last_key, "Expected "..k.." > "..last_key) end assert.equal(orig[k], v); last_key = k; end assert.equal("d", last_key); assert.equal(4, n); end); it("should allow a custom sort function", function () local orig = { b = 1, c = 2, a = "foo", d = false }; local n, last_key = 0, nil; for k, v in iter.sorted_pairs(orig, function (a, b) return a > b end) do n = n + 1; if last_key then assert(k < last_key, "Expected "..k.." > "..last_key) end assert.equal(orig[k], v); last_key = k; end assert.equal("a", last_key); assert.equal(4, n); end); end); end);