Nothing
context("C routines for kappa estimation")
## Test results
test_that("computed values are correct", {
expect_equal(
solve_kappa_Newton_Fourier(0.1,100,useC = FALSE),
solve_kappa_Newton_Fourier(0.1,100,useC = TRUE)
)
expect_equal(
.Call("Ginv", 0.1, 0.2, 0.3),
movMF:::Ginv(0.1,0.2,0.3)
)
expect_equal(
.Call("Rinv_lower_Amos_bound", 0.3, 0.3),
movMF:::Rinv_lower_Amos_bound(0.3, 0.3)
)
expect_equal(
.Call("Rinv_upper_Amos_bound", 0.3, 0.3),
movMF:::Rinv_upper_Amos_bound(0.3, 0.3)
)
expect_equal(
.Call("Rinv_upper_Amos_bound", 0.3, 2),
movMF:::Rinv_upper_Amos_bound(0.3, 2)
)
expect_equal(
.Call("A_GCF", 0.3, 1.1),
movMF:::A(0.3, 1.1, method = "GCF")
)
expect_equal(
.Call("A_GCF", 0.3, 2),
movMF:::A(0.3, 2, method = "GCF")
)
expect_equal(
.Call("Aprime_GCF", 0.1, 1.1, 0.3),
movMF:::Aprime(0.1, 1.1, A = 0.3, method = "GCF")
)
expect_equal(
.Call("Aprime_GCF", 0.1, 0.1, 2),
movMF:::Aprime(0.1, 0.1, A = 2, method = "GCF")
)
})
## Small helper function
compare_times <- function(t_R, t_C, label = "R vs C", output = c("text", "numeric")) {
output <- match.arg(output)
t_R <- as.numeric(t_R[3L], units = "secs")
t_C <- as.numeric(t_C[3L], units = "secs")
inc <- 100 * (t_R/t_C - 1);
if(output == "text"){
cat(sprintf("\nTiming for \"%s\"\n", label))
cat(sprintf(" R: %10.5f sek C: %10.5f sek (%4.1f percent %s)\n",
t_R, t_C, inc, ifelse(inc < 0, "slower in C", "faster in C")))
} else {
inc
}
}
## Test performance
r <- rnorm(5)
fun <- function(r, ...) solve_kappa_Newton_Fourier(r, 100, ...)
n <- 100000
t_R <- system.time(sapply(rep(0.1,n), fun, useC = FALSE))
t_C <- system.time(sapply(rep(0.1,n), fun, useC = TRUE))
test_that("time for c-routines are faster", {
expect_true(compare_times(t_R, t_C, output = "numeric") > -10)
})
#compare_times(t_R, t_C, "solve kappa")
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