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https://github.com/PHPOffice/PhpSpreadsheet.git
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ec4098c8fd
While we might never be able to have 100% of our code strict, we can at the very least do it for all of our tests. This ensures that our tests are using our API with the types as intended by the test author, and not silently be cast to what our API requires.
100 lines
3.3 KiB
PHP
100 lines
3.3 KiB
PHP
<?php
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declare(strict_types=1);
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namespace PhpOffice\PhpSpreadsheetTests\Calculation\Functions\MathTrig;
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use PhpOffice\PhpSpreadsheet\Calculation\Calculation;
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class RoundDownTest extends AllSetupTeardown
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{
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/**
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* @dataProvider providerRoundDown
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*/
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public function testRoundDown(mixed $expectedResult, mixed $formula): void
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{
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$this->mightHaveException($expectedResult);
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$sheet = $this->getSheet();
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$sheet->setCellValue('A2', 1.3);
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$sheet->setCellValue('A3', 2.7);
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$sheet->setCellValue('A4', -3.8);
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$sheet->setCellValue('A5', -5.2);
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$sheet->getCell('A1')->setValue("=ROUNDDOWN($formula)");
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$result = $sheet->getCell('A1')->getCalculatedValue();
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self::assertEqualsWithDelta($expectedResult, $result, 1E-12);
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}
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public static function providerRoundDown(): array
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{
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return require 'tests/data/Calculation/MathTrig/ROUNDDOWN.php';
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}
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/**
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* @dataProvider providerRoundDownArray
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*/
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public function testRoundDownArray(array $expectedResult, string $argument1, string $argument2): void
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{
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$calculation = Calculation::getInstance();
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$formula = "=ROUNDDOWN({$argument1},{$argument2})";
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$result = $calculation->_calculateFormulaValue($formula);
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self::assertEqualsWithDelta($expectedResult, $result, 1.0e-14);
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}
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public static function providerRoundDownArray(): array
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{
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return [
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'first argument row vector' => [
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[[0.145, 1.372, -931.682, 3.141]],
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'{0.14527, 1.3725, -931.6829, 3.14159265}',
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'3',
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],
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'first argument column vector' => [
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[[0.145], [1.372], [-931.682], [3.141]],
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'{0.14527; 1.3725; -931.6829; 3.14159265}',
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'3',
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],
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'first argument matrix' => [
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[[0.145, 1.372], [-931.682, 3.141]],
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'{0.14527, 1.3725; -931.6829, 3.14159265}',
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'3',
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],
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'second argument row vector' => [
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[[0.1, 0.14, 0.145, 0.1452, 0.14527]],
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'0.14527',
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'{1, 2, 3, 4, 5}',
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],
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'second argument column vector' => [
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[[0.1], [0.14], [0.145], [0.1452], [0.14527]],
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'0.14527',
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'{1; 2; 3; 4; 5}',
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],
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'second argument matrix' => [
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[[0.1, 0.14], [0.145, 0.1452]],
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'0.14527',
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'{1, 2; 3, 4}',
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],
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'A row and a column vector' => [
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[
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[0.1, 0.14, 0.145, 0.1452],
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[1.3, 1.37, 1.372, 1.3725],
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[-931.6, -931.68, -931.682, -931.6829],
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[3.1, 3.14, 3.141, 3.1415],
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],
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'{0.14527; 1.37250; -931.68290; 3.14159265}',
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'{1, 2, 3, 4}',
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],
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'Two row vectors' => [
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[[0.1, 1.37, -931.682, 3.1415]],
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'{0.14527, 1.37250, -931.68290, 3.14159265}',
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'{1, 2, 3, 4}',
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],
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'Two column vectors' => [
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[[0.1], [1.37], [-931.682], [3.1415]],
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'{0.14527; 1.37250; -931.68290; 3.14159265}',
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'{1; 2; 3; 4}',
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],
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];
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}
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}
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