checkIntegerish(x, tol = sqrt(.Machine$double.eps), lower = -Inf,
upper = Inf, any.missing = TRUE, all.missing = TRUE, len = NULL,
min.len = NULL, max.len = NULL, unique = FALSE, names = NULL)assertIntegerish(x, tol = sqrt(.Machine$double.eps), lower = -Inf,
upper = Inf, any.missing = TRUE, all.missing = TRUE, len = NULL,
min.len = NULL, max.len = NULL, unique = FALSE, names = NULL,
.var.name)
testIntegerish(x, tol = sqrt(.Machine$double.eps), lower = -Inf,
upper = Inf, any.missing = TRUE, all.missing = TRUE, len = NULL,
min.len = NULL, max.len = NULL, unique = FALSE, names = NULL)
x. Defaults to a heuristic to determine
the name using deparse and substitute.double(1)]
Numerical tolerance used to check whether a double or complex can be converted.
Default is sqrt(.Machine$double.eps).numeric(1)]
Lower value all elements of x must be greater than.numeric(1)]
Upper value all elements of x must be lower than.logical(1)]
Are vectors with missing values allowed? Default is TRUE.logical(1)]
Are vectors with only missing values allowed? Default is TRUE.integer(1)]
Exact expected length of x.integer(1)]
Minimal length of x.integer(1)]
Maximal length of x.logical(1)]
Must all values be unique? Default is FALSE.character(1)]
Check for names. See checkNamed for possible values.
Default is TRUE.
If the check is not successful, assertIntegerish throws an error message,
testIntegerish returns FALSE and checkIntegerish returns
a string with the error message.NA, NA_integer_, NA_real_, NA_complex_
NA_character_ and NaN.assertArray,
checkArray, testArray;
assertAtomicVector,
checkAtomicVector,
testAtomicVector;
assertAtomic, checkAtomic,
testAtomic; assertCharacter,
checkCharacter,
testCharacter; assertComplex,
checkComplex, testComplex;
assertDataFrame,
checkDataFrame,
testDataFrame;
assertEnvironment,
checkEnvironment,
testEnvironment;
assertFactor, checkFactor,
testFactor; assertFunction,
checkFunction, testFunction;
assertInteger, checkInteger,
testInteger; assertList,
checkList, testList;
assertLogical, checkLogical,
testLogical; assertMatrix,
checkMatrix, testMatrix;
assertNumeric, checkNumeric,
testNumeric; assertVector,
checkVector, testVectortestIntegerish(1L)
testIntegerish(1.)
testIntegerish(1:2, lower = 1L, upper = 2L, any.missing = FALSE)Run the code above in your browser using DataLab