import MathMLToLaTeX from '../src'; describe('#convert', () => { describe('given math string with mi tag', () => { test('convert mi to simple a text', () => { const mathml = 'a'; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('a'); }); }); describe('given math tag outside any other tag', () => { test('convert mi to simple b text', () => { const mathml = 'b'; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('b'); }); }); describe('given math string with mi tag with space on it', () => { test('should trim empty space', () => { const mathml = ' a '; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('a'); }); }); describe('given math string with mo tag with simple operator', () => { test('convert mo passing it operator as string', () => { const mathml = ` + `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('+'); }); }); describe('given math string with mrow tag', () => { test('convert mrow just wrapping its content', () => { const mathml = ` 2 + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('2 + 2'); }); }); describe('given math string with msqrt tag', () => { describe('single mn tag is inside', () => { test('convert msqrt wrapping its content inside sqrt LaTeX command', () => { const mathml = ` 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\sqrt{2}'); }); }); describe('there are many children inside sqrt tag', () => { test('convert msqrt wrapping its content inside sqrt LaTeX command', () => { const mathml = ` 2 + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\sqrt{2 + 2}'); }); }); describe('sqrt tag has single mrow child', () => { test('convert msqrt wrapping its content inside sqrt LaTeX command', () => { const mathml = ` 2 + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\sqrt{2 + 2}'); }); }); describe('there is no content inside msqrt', () => { test('empty sqrt is given', () => { const mathml = ` `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\sqrt{}'); }); }); }); describe('given mfenced tag', () => { describe('with single content and no attr', () => { test('convert mfenced wrapping it content in dots', () => { const mathml = ` 3 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\left(3\\right)'); }); }); describe('with single content and open attribute in bracket char', () => { test('convert mfenced wrapping it content between bracket and parenthesis', () => { const mathml = ` 3 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\left{3\\right)'); }); }); describe('with single content and open and closes attributes in parenthesis char', () => { test('convert mfenced wrapping it content between parenthesis', () => { const mathml = ` 3 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\left(3\\right)'); }); }); describe('with single content and open attribute in parenthesis char and close attribute without value', () => { test('convert mfenced wrapping it content between bracket and parenthesis', () => { const mathml = ` 3 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\left{3\\right)'); }); }); describe('with more than one content and no attr', () => { test('convert mfenced wrapping it content inside parenthesis and joining using commas', () => { const mathml = ` 3 2 1 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\left(3,2,1\\right)'); }); }); describe('with four contents with separator attribute as empty string', () => { test('convert mfenced wrapping it content inside parentheses and joining using commas', () => { const mathml = ` 3 2 1 7 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\left(3,2,1,7\\right)'); }); }); describe("with mfenced with three contents with separator attribute ';;;'", () => { test("parse mfenced wrapping it content inside parentheses and joining using ';'", () => { const mathml = ` 3 2 1 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\left(3;2;1\\right)'); }); }); describe("with four contents with separator attribute ';.'", () => { test("convert mfenced wrapping it content inside parentheses and joining using ';' for the first, '.' for the second and on", () => { const mathml = ` 3 2 1 7 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\left(3;2.1.7\\right)'); }); }); }); describe('given mfrac tag', () => { describe('containing single char contents', () => { test('convert mfrac wrap inside \\frac command', () => { const mathml = ` x 3 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\frac{x}{3}'); }); }); }); describe('containing multiple char contents', () => { test('convert mfrac wrap inside \\frac command', () => { const mathml = ` a + 2 b - 3 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\frac{a + 2}{b - 3}'); }); }); describe('containing two contents with bevelled attribute marked as true', () => { test('convert mfrac joining its two char contents with //', () => { const mathml = ` 1 x 3 + 3 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('1/\\left(x^{3} + 3\\right)'); }); }); describe('given math string with mroot containing two content', () => { test('convert mroot tag wrapping its contents inside \\sqrt command and root parameter', () => { const mathml = ` x + 2 3 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\sqrt[3]{x + 2}'); }); }); describe('given math string with mpadded tag', () => { test('convert mpadded just wrapping its content', () => { const mathml = ` 2 + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('2 + 2'); }); }); describe('given math string with maction tag', () => { describe('without any attribute', () => { test('convert maction just joining its content separating them by =>', () => { const mathml = ` a + 2 b - 3 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('a + 2 \\Longrightarrow b - 3'); }); }); describe('with toggle attribute', () => { test('convert maction just joining its content separating them by =>', () => { const mathml = ` a + 2 b - 3 a + b `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('a + 2 \\Longrightarrow b - 3'); }); }); describe('with actiontype attribute as toggle', () => { test('convert maction just joining its content separating them by =>', () => { const mathml = ` a + 2 b - 3 a + b `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('a + 2 \\Longrightarrow b - 3'); }); }); describe('with actiontype attribute as statusline', () => { test('convert maction just taking the first child', () => { const mathml = ` a + 2 b - 3 a + b `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('a + 2'); }); }); describe('with actiontype attribute as tooltip', () => { test('convert maction just taking the first child', () => { const mathml = ` a + 2 b - 3 a + b `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('a + 2'); }); }); }); describe('given math string with menclose tag', () => { describe('without any attribute', () => { test('convert menclose tag just joining its content inside long division latex equivalent commands', () => { const mathml = ` a + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\overline{\\left.\\right)a + 2}'); }); }); describe('with notation attribute as longdiv', () => { test('convert menclose tag just joining its content inside long division latex equivalent commands', () => { const mathml = ` a + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\overline{\\left.\\right)a + 2}'); }); }); describe('with notation attribute as actuarial', () => { test('convert menclose tag just joining its content inside actuarial latex equivalent commands', () => { const mathml = ` a + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\overline{\\left.a + 2\\right|}'); }); }); describe('with notation attribute as box', () => { test('convert menclose tag just joining its content inside boxed command', () => { const mathml = ` E = m c 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\boxed{E = m c^{2}}'); }); }); describe('with notation attribute as roundedbox', () => { test('convert menclose tag just joining its content inside boxed command', () => { const mathml = ` E = m c 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\boxed{E = m c^{2}}'); }); }); describe('with notation attribute as circle', () => { test('convert menclose tag just joining its content inside boxed command', () => { const mathml = ` E = m c 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\boxed{E = m c^{2}}'); }); }); describe('with notation attribute as left', () => { test('convert menclose tag just joining its content with left bar', () => { const mathml = ` E = m c 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\left|E = m c^{2}'); }); }); describe('with notation attribute as right', () => { test('convert menclose tag just joining its content with right bar', () => { const mathml = ` E = m c 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('E = m c^{2}\\right|'); }); }); describe('with notation attribute as top', () => { test('convert menclose tag just joining its content with overline command', () => { const mathml = ` E = m c 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\overline{E = m c^{2}}'); }); }); describe('with notation attribute as bottom', () => { test('convert menclose tag just joining its content with underline command', () => { const mathml = ` a + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\underline{a + 2}'); }); }); describe('with notation attribute as updiagonalstrike', () => { test('convert menclose tag just joining its content with left bottom to right top cross', () => { const mathml = ` a + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\cancel{a + 2}'); }); }); describe('with notation attribute as downdiagonalstrike', () => { test('convert menclose tag just joining its content with left top to right bottom cross', () => { const mathml = ` a + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\bcancel{a + 2}'); }); }); describe('with notation attribute as horizontalstrike', () => { test('convert menclose tag just joining its content with horizontal cross', () => { const mathml = ` a + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\hcancel{a + 2}'); }); }); describe('with notation attribute as verticalstrike', () => { test('convert menclose tag just joining its content with horizontal cross', () => { const mathml = ` a + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\hcancel{a + 2}'); }); }); describe('with notation attribute as updiagonalarrow', () => { test('convert menclose tag just joining its content with underline and right bar', () => { const mathml = ` a + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\cancelto{}{a + 2}'); }); }); describe('with notation attribute as madruwb', () => { test('convert menclose tag just joining its content with underline and right bar', () => { const mathml = ` a + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\underline{a + 2\\right|}'); }); }); describe('with notation attribute as phasorangle', () => { test('convert menclose tag just joining its content with underline and right bar', () => { const mathml = ` a + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('{\\angle \\underline{a + 2}}'); }); }); }); describe('given math string with merror tag', () => { test('convert merror placing its content inside \\color{red}', () => { const mathml = ` 2 + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\color{red}{2 + 2}'); }); }); describe('given math string with mglyph tag', () => { test('ignore it', () => { const mathml = ` `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe(''); }); }); describe('given math string with mover tag', () => { describe('where its first child is a mrow and second is mo containing ⏞', () => { test('wrap it content inside overbrace command', () => { const mathml = ` x + y + z `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\overbrace{x + y + z}'); }); }); describe('where its first child is a mrow and second is mo containing hat mo as utf-8', () => { test('wrap it content inside hat command', () => { const mathml = ` x + y + z ^ `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\hat{x + y + z}'); }); }); describe('where its first child is a mrow and second is mo containing hat mo as encoded', () => { test('wrap it content inside hat command', () => { const mathml = ` x + y + z ˆ `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\hat{x + y + z}'); }); }); describe('where its first child is a mrow and second is mo containing generic char', () => { test('wrap it content inside overset making generic char on top', () => { const mathml = ` x + y + z a + b `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\overset{a + b}{x + y + z}'); }); }); }); describe('given math string with mphantom tag', () => { it('replaces every character inside tag by normalized empty space', () => { const mathml = ` x + y + z `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('x + z'); }); }); describe('given math string with msup tag', () => { describe('msup tag contains single char contents', () => { test('convert msup joining its two char contents with ^ and wrap exponent in brackets', () => { const mathml = ` x 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('x^{2}'); }); }); describe('msup tag contains base with single char content and exponent with more than one char content', () => { test('convert msup joining its two char contents with ^ and wrap exponent in brackets', () => { const mathml = ` x a + b `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('x^{a + b}'); }); }); describe('msup tag contains exponent with single char content and base with more than one char content', () => { test('convert msup joining its multi char contents with ^ and wrap base in parenthesis', () => { const mathml = ` x + y 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\left(x + y\\right)^{2}'); }); }); describe('msup tag contains both exponent and base with more than one char content', () => { test('convert msup joining its multi char contents with ^, wrap base in parenthesis and exponent in brackets', () => { const mathml = ` x + y 2 + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\left(x + y\\right)^{2 + 2}'); }); }); }); describe('given math string with msub tag', () => { describe('msub tag contains single char contents', () => { test('convert msub joining its two char contents with _ and wrap subscript in brackets', () => { const mathml = ` x 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('x_{2}'); }); }); describe('msub tag contains base with single char content and subscript with more than one char content', () => { test('convert msub joining its two char contents with _ and wrap exponent in brackets', () => { const mathml = ` x a + b `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('x_{a + b}'); }); }); describe('msub tag contains subscript with single char content and base with more than one char content', () => { test('convert msub joining its multi char contents with _ and wrap base in parenthesis', () => { const mathml = ` x + y 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\left(x + y\\right)_{2}'); }); }); describe('msub tag contains both base and subscript with more than one char content', () => { test('convert msub joining its multi char contents with _, wrap base in parenthesis and subscript in brackets', () => { const mathml = ` x + y 2 + 2 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toMatch('\\left(x + y\\right)_{2 + 2}'); }); }); }); describe('given math string with msubsup tag', () => { it('join its children using _ and ^ and wrapping in brackets', () => { const mathml = ` 0 1 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\int_{0}^{1}'); }); it('wraps base inside parentheses when there are empty spaces on it', () => { const mathml = ` x + y 0 1 `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\left(x + y\\right)_{0}^{1}'); }); }); describe('given math string with mtext', () => { describe('mtext without any attribute', () => { it('wrap its content inside text command', () => { const mathml = ` Theorem of Pythagoras `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\text{ Theorem of Pythagoras }'); }); }); describe('mtext with mathvariant attribute setted as "normal"', () => { const mathml = ` Theorem of Pythagoras `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\text{ Theorem of Pythagoras }'); }); describe('mtext with mathvariant attribute setted as "bold"', () => { const mathml = ` Theorem of Pythagoras `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\textbf{ Theorem of Pythagoras }'); }); describe('mtext with mathvariant attribute setted as "italic"', () => { const mathml = ` Theorem of Pythagoras `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\textit{ Theorem of Pythagoras }'); }); describe('mtext with mathvariant attribute setted as "bold-italic"', () => { const mathml = ` Theorem of Pythagoras `; const result = MathMLToLaTeX.convert(mathml); expect(result).toBe('\\textbf{\\textit{ Theorem of Pythagoras }}'); }); }); });