Files
PhpSpreadsheet/tests/PhpSpreadsheetTests/Calculation/Functions/Engineering/ImExpTest.php
T
oleibman 5cfe66e18f Fixes for 32-bit
I check from time to time. There are a number of problems now, mostly due to the elimination of Php 7.4 and replacement of doc-block typing with explicit Php typing.
- Bitwise functions were particularly affected by PR #3718 and PR #3793.
- Chart/Axis and Writer/Xlsx were amusingly affected by PR #3836, which added a scaling option which included an array indexed by the known allowable factors, one of which is 1 trillion, which cannot be represented as an integer on a 32-bit system. Issue3833Test, introduced by the same PR (and not suffering any errors) was expanded to test this value.
- Some minor changes to Reader/Xls and Shared/OLE/PPS to accommodate hex values which are negative in 32-bit but which Php-32 may wind up casting to large floating point numbers; it is not clear to me why these hadn't shown up as problems previously. Possibly this is the result of changes in the most recent Php versions.
- BitAndTest, BitOrTest, BitXorTest and Shared/DateTest were adversely affected by PR #3859 when arguments and/or expected results too large for a 32-bit integer were supplied.
- ImExpTest required a slightly reduced precision for 32-bit. No idea why this hadn't shown up earlier.
2024-01-16 13:09:57 -08:00

146 lines
4.9 KiB
PHP

<?php
declare(strict_types=1);
namespace PhpOffice\PhpSpreadsheetTests\Calculation\Functions\Engineering;
use PhpOffice\PhpSpreadsheet\Calculation\Calculation;
use PhpOffice\PhpSpreadsheet\Calculation\Engineering\ComplexFunctions;
use PhpOffice\PhpSpreadsheet\Calculation\Exception as CalculationException;
use PhpOffice\PhpSpreadsheet\Calculation\Functions;
use PhpOffice\PhpSpreadsheet\Spreadsheet;
use PhpOffice\PhpSpreadsheetTests\Calculation\Functions\FormulaArguments;
use PhpOffice\PhpSpreadsheetTests\Custom\ComplexAssert;
use PHPUnit\Framework\TestCase;
class ImExpTest extends TestCase
{
const COMPLEX_PRECISION = (PHP_INT_SIZE > 4) ? 1E-12 : 1E-9;
private \PhpOffice\PhpSpreadsheetTests\Custom\ComplexAssert $complexAssert;
protected function setUp(): void
{
Functions::setCompatibilityMode(Functions::COMPATIBILITY_EXCEL);
$this->complexAssert = new ComplexAssert();
}
/**
* @dataProvider providerIMEXP
*/
public function testDirectCallToIMEXP(string $expectedResult, string $arg): void
{
$result = ComplexFunctions::IMEXP($arg);
self::assertTrue(
$this->complexAssert->assertComplexEquals($expectedResult, $result, self::COMPLEX_PRECISION),
$this->complexAssert->getErrorMessage()
);
}
private function trimIfQuoted(string $value): string
{
return trim($value, '"');
}
/**
* @dataProvider providerIMEXP
*/
public function testIMEXPAsFormula(mixed $expectedResult, mixed ...$args): void
{
$arguments = new FormulaArguments(...$args);
$calculation = Calculation::getInstance();
$formula = "=IMEXP({$arguments})";
/** @var float|int|string */
$result = $calculation->_calculateFormulaValue($formula);
self::assertTrue(
$this->complexAssert->assertComplexEquals($expectedResult, $this->trimIfQuoted((string) $result), self::COMPLEX_PRECISION),
$this->complexAssert->getErrorMessage()
);
}
/**
* @dataProvider providerIMEXP
*/
public function testIMEXPInWorksheet(mixed $expectedResult, mixed ...$args): void
{
$arguments = new FormulaArguments(...$args);
$spreadsheet = new Spreadsheet();
$worksheet = $spreadsheet->getActiveSheet();
$argumentCells = $arguments->populateWorksheet($worksheet);
$formula = "=IMEXP({$argumentCells})";
$result = $worksheet->setCellValue('A1', $formula)
->getCell('A1')
->getCalculatedValue();
self::assertTrue(
$this->complexAssert->assertComplexEquals($expectedResult, $result, self::COMPLEX_PRECISION),
$this->complexAssert->getErrorMessage()
);
$spreadsheet->disconnectWorksheets();
}
public static function providerIMEXP(): array
{
return require 'tests/data/Calculation/Engineering/IMEXP.php';
}
/**
* @dataProvider providerUnhappyIMEXP
*/
public function testIMEXPUnhappyPath(string $expectedException, mixed ...$args): void
{
$arguments = new FormulaArguments(...$args);
$spreadsheet = new Spreadsheet();
$worksheet = $spreadsheet->getActiveSheet();
$argumentCells = $arguments->populateWorksheet($worksheet);
$formula = "=IMEXP({$argumentCells})";
$this->expectException(CalculationException::class);
$this->expectExceptionMessage($expectedException);
$worksheet->setCellValue('A1', $formula)
->getCell('A1')
->getCalculatedValue();
$spreadsheet->disconnectWorksheets();
}
public static function providerUnhappyIMEXP(): array
{
return [
['Formula Error: Wrong number of arguments for IMEXP() function'],
];
}
/**
* @dataProvider providerImExpArray
*/
public function testImExpArray(array $expectedResult, string $complex): void
{
$calculation = Calculation::getInstance();
$formula = "=IMEXP({$complex})";
$result = $calculation->_calculateFormulaValue($formula);
self::assertEquals($expectedResult, $result);
}
public static function providerImExpArray(): array
{
return [
'row/column vector' => [
[
['-0.29472426558547-0.22016559792964i', '-0.80114361554693-0.59847214410396i', '-2.1777341321272-1.6268159541567i'],
['0.19876611034641-0.30955987565311i', '0.54030230586814-0.8414709848079i', '1.4686939399159-2.2873552871788i'],
['0.19876611034641+0.30955987565311i', '0.54030230586814+0.8414709848079i', '1.4686939399159+2.2873552871788i'],
['-0.29472426558547+0.22016559792964i', '-0.80114361554693+0.59847214410396i', '-2.1777341321272+1.6268159541567i'],
],
'{"-1-2.5i", "-2.5i", "1-2.5i"; "-1-i", "-i", "1-i"; "-1+i", "i", "1+1"; "-1+2.5i", "+2.5i", "1+2.5i"}',
],
];
}
}