#!/usr/bin/r -t # hey emacs, please make this use -*- tab-width: 4 -*- # # Copyright (C) 2010 - 2014 Dirk Eddelbuettel and Romain Francois # # This file is part of Rcpp. # # Rcpp is free software: you can redistribute it and/or modify it # under the terms of the GNU General Public License as published by # the Free Software Foundation, either version 2 of the License, or # (at your option) any later version. # # Rcpp is distributed in the hope that it will be useful, but # WITHOUT ANY WARRANTY; without even the implied warranty of # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the # GNU General Public License for more details. # # You should have received a copy of the GNU General Public License # along with Rcpp. If not, see . .runThisTest <- Sys.getenv("RunAllRcppTests") == "yes" if (.runThisTest) { .setUp <- Rcpp:::unitTestSetup("language.cpp") test.Language <- function(){ checkEquals( runit_language( call("rnorm") ), call("rnorm" ), msg = "Language( LANGSXP )" ) checkException( runit_language(test.Language), msg = "Language not compatible with function" ) checkException( runit_language(new.env()), msg = "Language not compatible with environment" ) checkException( runit_language(1:10), msg = "Language not compatible with integer" ) checkException( runit_language(TRUE), msg = "Language not compatible with logical" ) checkException( runit_language(1.3), msg = "Language not compatible with numeric" ) checkException( runit_language(as.raw(1) ), msg = "Language not compatible with raw" ) } test.Language.variadic <- function(){ checkEquals( runit_lang_variadic_1(), call("rnorm", 10L, 0.0, 2.0 ), msg = "variadic templates" ) checkEquals( runit_lang_variadic_2(), call("rnorm", 10L, mean = 0.0, 2.0 ), msg = "variadic templates (with names)" ) } # same as above but without variadic templates test.Language.push.back <- function(){ checkEquals( runit_lang_push_back(), call("rnorm", 10L, mean = 0.0, 2.0 ), msg = "Language::push_back" ) } test.Language.square <- function(){ checkEquals( runit_lang_square_rv(), 10.0, msg = "Language::operator[] used as rvalue" ) checkEquals( runit_lang_square_lv(), call("rnorm", "foobar", 20.0, 20.0) , msg = "Pairlist::operator[] used as lvalue" ) } test.Language.function <- function(){ checkEquals( runit_lang_fun(sort, sample(1:10)), 1:10, msg = "Language( Function ) " ) } test.Language.inputoperator <- function(){ checkEquals( runit_lang_inputop(), call("rnorm", 10L, sd = 10L ) , msg = "Language<<" ) } test.Language.unary.call <- function(){ checkEquals( runit_lang_unarycall( 1:10 ), lapply( 1:10, function(n) seq(from=n, to = 0 ) ), msg = "c++ lapply using calls" ) } test.Language.unary.call.index <- function(){ checkEquals( runit_lang_unarycallindex( 1:10 ), lapply( 1:10, function(n) seq(from=10, to = n ) ), msg = "c++ lapply using calls" ) } test.Language.binary.call <- function(){ checkEquals( runit_lang_binarycall( 1:10, 11:20 ), lapply( 1:10, function(n) seq(n, n+10) ), msg = "c++ lapply using calls" ) } test.Language.fixed.call <- function(){ set.seed(123) res <- runit_lang_fixedcall() set.seed(123) exp <- lapply( 1:10, function(n) rnorm(10) ) checkEquals( res, exp, msg = "std::generate" ) } test.Language.in.env <- function(){ e <- new.env() e[["y"]] <- 1:10 checkEquals( runit_lang_inenv(e), sum(1:10), msg = "Language::eval( SEXP )" ) } test.Pairlist <- function(){ checkEquals( runit_pairlist( pairlist("rnorm") ), pairlist("rnorm" ), msg = "Pairlist( LISTSXP )" ) checkEquals( runit_pairlist( call("rnorm") ), pairlist(as.name("rnorm")), msg = "Pairlist( LANGSXP )" ) checkEquals( runit_pairlist(1:10), as.pairlist(1:10) , msg = "Pairlist( INTSXP) " ) checkEquals( runit_pairlist(TRUE), as.pairlist( TRUE) , msg = "Pairlist( LGLSXP )" ) checkEquals( runit_pairlist(1.3), as.pairlist(1.3), msg = "Pairlist( REALSXP) " ) checkEquals( runit_pairlist(as.raw(1) ), as.pairlist(as.raw(1)), msg = "Pairlist( RAWSXP)" ) checkException( runit_pairlist(runit_pairlist), msg = "Pairlist not compatible with function" ) checkException( runit_pairlist(new.env()), msg = "Pairlist not compatible with environment" ) } test.Pairlist.variadic <- function(){ checkEquals( runit_pl_variadic_1(), pairlist("rnorm", 10L, 0.0, 2.0 ), msg = "variadic templates" ) checkEquals( runit_pl_variadic_2(), pairlist("rnorm", 10L, mean = 0.0, 2.0 ), msg = "variadic templates (with names)" ) } test.Pairlist.push.front <- function(){ checkEquals( runit_pl_push_front(), pairlist( foobar = 10, "foo", 10.0, 1L), msg = "Pairlist::push_front" ) } test.Pairlist.push.back <- function(){ checkEquals( runit_pl_push_back(), pairlist( 1L, 10.0, "foo", foobar = 10), msg = "Pairlist::push_back" ) } test.Pairlist.insert <- function(){ checkEquals( runit_pl_insert(), pairlist( 30.0, 1L, bla = "bla", 10.0, 20.0, "foobar" ), msg = "Pairlist::replace" ) } test.Pairlist.replace <- function(){ checkEquals( runit_pl_replace(), pairlist( first = 1, 20.0 , FALSE), msg = "Pairlist::replace" ) } test.Pairlist.size <- function(){ checkEquals( runit_pl_size(), 3L, msg = "Pairlist::size()" ) } test.Pairlist.remove <- function(){ checkEquals( runit_pl_remove_1(), pairlist(10.0, 20.0), msg = "Pairlist::remove(0)" ) checkEquals( runit_pl_remove_2(), pairlist(1L, 10.0), msg = "Pairlist::remove(0)" ) checkEquals( runit_pl_remove_3(), pairlist(1L, 20.0), msg = "Pairlist::remove(0)" ) } test.Pairlist.square <- function(){ checkEquals( runit_pl_square_1(), 10.0, msg = "Pairlist::operator[] used as rvalue" ) checkEquals( runit_pl_square_2(), pairlist(1L, "foobar", 1L) , msg = "Pairlist::operator[] used as lvalue" ) } test.Formula <- function(){ checkEquals( runit_formula_(), x ~ y + z, msg = "Formula( string )" ) } test.Formula.SEXP <- function(){ checkEquals( runit_formula_SEXP( x ~ y + z), x ~ y + z, msg = "Formula( SEXP = formula )" ) checkEquals( runit_formula_SEXP( "x ~ y + z" ), x ~ y + z, msg = "Formula( SEXP = STRSXP )" ) checkEquals( runit_formula_SEXP( parse( text = "x ~ y + z") ), x ~ y + z, msg = "Formula( SEXP = EXPRSXP )" ) checkEquals( runit_formula_SEXP( list( "x ~ y + z") ), x ~ y + z, msg = "Formula( SEXP = VECSXP(1 = STRSXP) )" ) checkEquals( runit_formula_SEXP( list( x ~ y + z) ), x ~ y + z, msg = "Formula( SEXP = VECSXP(1 = formula) )" ) } }