245 lines
7.4 KiB
R
245 lines
7.4 KiB
R
context("Basic Matlab functions")
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test_that("rand works properly", {
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expect_equal(dim(rand()), c(1, 1))
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expect_equal(dim(rand(1, 2)), c(1, 2))
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expect_equal(dim(rand(3, 2)), c(3, 2))
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})
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test_that("repmat works properly", {
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mx0 <- c(1:4) # when converted to matrix, results in a column vector
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mx1 <- matrix(5:8)
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mx2 <- matrix(0:-3, 2)
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expect_error(repmat(mx0))
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expect_equal(repmat(mx0, 1), t(as.matrix(mx0)))
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expect_equal(
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object = repmat(mx0, 2),
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expected = unname(cbind(rbind(mx0, mx0), rbind(mx0, mx0)))
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)
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expect_equal(
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object = repmat(mx1, 2),
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expected = unname(cbind(rbind(mx1, mx1), rbind(mx1, mx1)))
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)
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expect_equal(
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object = repmat(mx2, c(2, 3)),
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expected = cbind(rbind(mx2, mx2), rbind(mx2, mx2), rbind(mx2, mx2))
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)
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expect_equal(
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object = repmat(mx2, c(4, 1)),
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expected = rbind(mx2, mx2, mx2, mx2)
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)
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expect_equal(
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object = repmat(mx2, c(1, 1, 2)),
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expected = array(mx2, c(2, 2, 2))
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)
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expect_equal(repmat(1:2, 3), matrix(rep(1:2, 9), 3, 6, byrow = TRUE))
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expect_equal(repmat(10, c(3, 2)), matrix(10, 3, 2))
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})
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test_that("zeros and ones work as expected", {
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expect_equal(zeros(1), matrix(0, 1))
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expect_equal(zeros(2), matrix(0, 2, 2))
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expect_equal(zeros(2, 1), matrix(0, 2, 1))
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expect_equal(zeros(1, 10), matrix(0, 1, 10))
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expect_equal(zeros(3, 2, 4), array(0, c(3, 2, 4)))
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expect_equal(ones(8), matrix(1, 8, 8))
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expect_equal(ones(5, 2), matrix(1, 5, 2))
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expect_equal(ones(2, 100), matrix(1, 2, 100))
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expect_equal(ones(3, 2, 4, 2), array(1, c(3, 2, 4, 2)))
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})
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test_that("times works as expected", {
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expect_equal(times(9, 6), as.matrix(54))
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expect_equal(times(9, c(.8, 9)), as.matrix(c(7.2, 81)))
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expect_equal(times(c(.8, 9), 5), as.matrix(c(4, 45)))
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expect_equal(times(matrix(1:4, 2), 5), matrix(c(5, 10, 15, 20), 2))
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expect_equal(times(5, matrix(1:4, 2)), matrix(c(5, 10, 15, 20), 2))
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expect_equal(times(matrix(1:4, 2), c(10, 3)), matrix(c(10, 6, 30, 12), 2))
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expect_equal(
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object = times(matrix(1:4, 2), matrix(c(10, 3), 1)),
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expected = matrix(c(10, 20, 9, 12), 2)
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)
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expect_equal(times(c(10, 3), matrix(1:4, 2)), matrix(c(10, 6, 30, 12), 2))
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expect_equal(
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object = times(matrix(c(10, -5, 3, 9), 2), matrix(1:4, 2)),
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expected = matrix(c(10, -10, 9, 36), 2)
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)
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expect_equal(
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object = times(matrix(c(-1.6, 5), 1), c(8, 1)),
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expected = matrix(c(-12.8, -1.6, 40, 5), 2)
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)
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})
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test_that("colon works as expected (hee hee)", {
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expect_equal(colon(1, 4), 1:4)
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expect_length(colon(4, 1), 0)
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})
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test_that("size works as on MATLAB", {
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sk <- 10
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vk <- 1:4
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mx <- matrix(1:6, 2)
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ra <- array(1:24, c(2, 3, 4))
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expect_equal(size(sk), 1)
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expect_equal(size(vk), c(1, 4))
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expect_equal(size(mx), c(2, 3))
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expect_equal(size(ra), c(2, 3, 4))
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expect_equal(size(sk, 199), 1)
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expect_equal(size(vk, 199), 1)
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expect_equal(size(mx, 199), 1)
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expect_equal(size(ra, 199), 1)
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expect_equal(size(vk, 2), 4)
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expect_equal(size(mx, 2), 3)
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expect_equal(size(ra, 2), 3)
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expect_equal(size(ra, 3), 4)
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})
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test_that("reshape reshapes properly", {
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mx <- matrix(1:4, 2)
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ra <- array(1:12, c(2, 3, 2))
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expect_equal(reshape(mx, c(1, 4)), matrix(1:4, 1))
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expect_equal(reshape(mx, c(2, 2)), mx)
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expect_equal(reshape(mx, c(1, 1, 4)), array(mx, c(1, 1, 4)))
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expect_error(reshape(mx, c(1, 2, 3)))
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expect_error(reshape(ra, c(1, 2, 3)))
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expect_equal(reshape(ra, c(3, 2, 2)), array(ra, c(3, 2, 2)))
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})
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test_that("isfield works as on Matlab", {
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S <- list()
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S$x <- rnorm(100)
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S$y <- sin(S$x)
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S$title <- "y = sin(x)"
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expect_true(isfield(S, "title"))
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expect_equivalent(
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object = isfield(S, c("x", "y", "z", "title", "error")),
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expected = c(TRUE, TRUE, FALSE, TRUE, FALSE)
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)
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})
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test_that("strcmp works as expected", {
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yes <- "Yes"
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no <- "No"
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ja <- "Yes"
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expect_false(strcmp(yes, no))
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expect_true(strcmp(yes, ja))
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s1 <- "upon"
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s2 <- matrix(c("Once", "upon", "a", "time"), 2, byrow = TRUE)
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s3 <- c("Once", "upon", "a", "time")
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s4 <- matrix(c("A", "bc", "def", "G"), 2, byrow = TRUE)
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s5 <- matrix(c("B", "c", "def", "G"), 2, byrow = TRUE)
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expect_equal(strcmp(s1, s2), matrix(c(FALSE, FALSE, TRUE, FALSE), 2))
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expect_equivalent(strcmp(s1, s3), c(FALSE, TRUE, FALSE, FALSE))
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expect_error(strcmp(s2, s3))
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expect_equal(strcmp(s4, s5), matrix(c(FALSE, TRUE, FALSE, TRUE), 2))
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})
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test_that("isempty works as expected", {
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A <- array(dim = c(0, 2, 2))
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B <- matrix(rep(NA, 4), 2)
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C <- matrix(rep(0, 4), 2)
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cat1 <- as.factor(c(NA, NA))
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cat2 <- as.factor(c())
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str1 <- matrix(rep("", 3))
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expect_true(isempty(A))
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expect_false(isempty(B))
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expect_false(isempty(C))
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expect_false(isempty(cat1))
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expect_true(isempty(cat2))
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expect_false(isempty(str1))
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})
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test_that("find works as expected", {
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X <- matrix(c(1, 0, 2, 0, 1, 1, 0, 0, 4), 3, byrow = TRUE)
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Y <- seq(1, 19, 2)
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expect_equal(find(X), c(1, 5, 7, 8, 9))
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expect_equal(find(!X), c(2, 3, 4, 6))
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expect_equal(find(Y == 13), 7)
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})
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test_that("sortrows works as expected", {
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mx <- matrix(c(3, 2, 2, 1, 1, 10, 0, pi), 4)
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expect_equal(sortrows(mx), matrix(c(1, 2, 2, 3, pi, 10, 0, 1), 4))
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expect_equal(sortrows(mx, 2), matrix(c(2, 3, 1, 2, 0, 1, pi, 10), 4))
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expect_equal(sortrows(mx, 1:2), mx[order(mx[, 1], mx[, 2]), ])
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})
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test_that("cell works as expected", {
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expect_equivalent(cell(0), array(0, dim = c(0, 0)))
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expect_equivalent(cell(1), array(0, dim = c(1, 1)))
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expect_equivalent(cell(2), array(0, dim = c(2, 2)))
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expect_equivalent(cell(3, 4), array(0, dim = c(3, 4)))
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expect_equivalent(cell(5, 7, 6), array(0, dim = c(5, 7, 6)))
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})
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test_that("blanks works as expected", {
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expect_warning(blanks(-1))
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expect_equal(suppressWarnings(blanks(-1)), "")
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expect_equal(blanks(0), "")
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expect_equal(blanks(1), " ")
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expect_equal(blanks(10), " ")
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})
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test_that("squeeze works as expected", {
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A <- array(dim = c(2, 1, 2))
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A[, , 1] <- c(1, 2)
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A[, , 2] <- c(3, 4)
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expect_equal(squeeze(A), matrix(1:4, 2))
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A <- array(0, dim = c(1, 1, 3))
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A[, , 1:3] <- 1:3
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expect_equal(squeeze(A), matrix(1:3, 3))
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})
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test_that("fix works as expected", {
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X <- matrix(c(-1.9, -3.4, 1.6, 2.5, -4.5, 4.5), 3, byrow = TRUE)
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Y <- matrix(c(-1, -3, 1, 2, -4, 4), 3, byrow = TRUE)
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expect_identical(fix(X), Y)
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})
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test_that("isspace works as expected", {
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chr <- "123 Main St."
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X <- "\t a b\tcde f"
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expect_identical(isspace(chr), c(0, 0, 0, 1, 0, 0, 0, 0, 1, 0, 0, 0))
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expect_identical(isspace(X), c(1, 1, 0, 1, 0, 1, 0, 0, 0, 1, 0))
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})
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test_that("nargin works correctly", {
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addme <- function(a, b) {
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if (nargin() == 2) {
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c <- a + b
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} else if (nargin() == 1) {
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c <- a + a
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} else {
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c <- 0
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}
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return(c)
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}
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expect_equal(addme(13, 42), 55)
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expect_equal(addme(13), 26)
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expect_equal(addme(), 0)
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})
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test_that("setdiff works as expected", {
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A <- c(3, 6, 2, 1, 5, 1, 1)
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B <- c(2, 4, 6)
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C <- c(1, 3, 5)
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expect_equal(setdiff_MATLAB(A, B), C)
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A <- data.frame(
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Var1 = 1:5,
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Var2 = LETTERS[1:5],
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Var3 = c(FALSE, TRUE, FALSE, TRUE, FALSE)
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)
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B <- data.frame(
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Var1 = seq(1, 9, by = 2),
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Var2 = LETTERS[seq(1, 9, by = 2)],
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Var3 = rep(FALSE, 5)
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)
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C <- data.frame(
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Var1 = c(2, 4),
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Var2 = c("B", "D"),
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Var3 = c(TRUE, TRUE)
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)
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row.names(C) <- c(2L, 4L)
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expect_equal(setdiff_MATLAB(A, B), C) # TODO: implement for data frames
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# TODO: add more examples from https://se.mathworks.com/help/matlab/ref/double.setdiff.html;jsessionid=0d8d42582d4d299b8224403899f1
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})
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