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denoland-deno/std/encoding/csv_test.ts

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TypeScript

// Test ported from Golang
// https://github.com/golang/go/blob/2cc15b1/src/encoding/csv/reader_test.go
// Copyright 2011 The Go Authors. All rights reserved. BSD license.
// https://github.com/golang/go/blob/master/LICENSE
// Copyright 2018-2020 the Deno authors. All rights reserved. MIT license.
import { assertEquals, assertThrowsAsync } from "../testing/asserts.ts";
import {
readMatrix,
parse,
ERR_BARE_QUOTE,
ERR_QUOTE,
ERR_INVALID_DELIM,
ERR_FIELD_COUNT,
ParseError,
} from "./csv.ts";
import { StringReader } from "../io/readers.ts";
import { BufReader } from "../io/bufio.ts";
const testCases = [
{
Name: "Simple",
Input: "a,b,c\n",
Output: [["a", "b", "c"]],
},
{
Name: "CRLF",
Input: "a,b\r\nc,d\r\n",
Output: [
["a", "b"],
["c", "d"],
],
},
{
Name: "BareCR",
Input: "a,b\rc,d\r\n",
Output: [["a", "b\rc", "d"]],
},
{
Name: "RFC4180test",
Input: `#field1,field2,field3
"aaa","bbb","ccc"
"a,a","bbb","ccc"
zzz,yyy,xxx`,
UseFieldsPerRecord: true,
FieldsPerRecord: 0,
Output: [
["#field1", "field2", "field3"],
["aaa", "bbb", "ccc"],
["a,a", `bbb`, "ccc"],
["zzz", "yyy", "xxx"],
],
},
{
Name: "NoEOLTest",
Input: "a,b,c",
Output: [["a", "b", "c"]],
},
{
Name: "Semicolon",
Input: "a;b;c\n",
Output: [["a", "b", "c"]],
Comma: ";",
},
{
Name: "MultiLine",
Input: `"two
line","one line","three
line
field"`,
Output: [["two\nline", "one line", "three\nline\nfield"]],
},
{
Name: "BlankLine",
Input: "a,b,c\n\nd,e,f\n\n",
Output: [
["a", "b", "c"],
["d", "e", "f"],
],
},
{
Name: "BlankLineFieldCount",
Input: "a,b,c\n\nd,e,f\n\n",
Output: [
["a", "b", "c"],
["d", "e", "f"],
],
UseFieldsPerRecord: true,
FieldsPerRecord: 0,
},
{
Name: "TrimSpace",
Input: " a, b, c\n",
Output: [["a", "b", "c"]],
TrimLeadingSpace: true,
},
{
Name: "LeadingSpace",
Input: " a, b, c\n",
Output: [[" a", " b", " c"]],
},
{
Name: "Comment",
Input: "#1,2,3\na,b,c\n#comment",
Output: [["a", "b", "c"]],
Comment: "#",
},
{
Name: "NoComment",
Input: "#1,2,3\na,b,c",
Output: [
["#1", "2", "3"],
["a", "b", "c"],
],
},
{
Name: "LazyQuotes",
Input: `a "word","1"2",a","b`,
Output: [[`a "word"`, `1"2`, `a"`, `b`]],
LazyQuotes: true,
},
{
Name: "BareQuotes",
Input: `a "word","1"2",a"`,
Output: [[`a "word"`, `1"2`, `a"`]],
LazyQuotes: true,
},
{
Name: "BareDoubleQuotes",
Input: `a""b,c`,
Output: [[`a""b`, `c`]],
LazyQuotes: true,
},
{
Name: "BadDoubleQuotes",
Input: `a""b,c`,
Error: new ParseError(1, 1, 1, ERR_BARE_QUOTE),
},
{
Name: "TrimQuote",
Input: ` "a"," b",c`,
Output: [["a", " b", "c"]],
TrimLeadingSpace: true,
},
{
Name: "BadBareQuote",
Input: `a "word","b"`,
Error: new ParseError(1, 1, 2, ERR_BARE_QUOTE),
},
{
Name: "BadTrailingQuote",
Input: `"a word",b"`,
Error: new ParseError(1, 1, 10, ERR_BARE_QUOTE),
},
{
Name: "ExtraneousQuote",
Input: `"a "word","b"`,
Error: new ParseError(1, 1, 3, ERR_QUOTE),
},
{
Name: "BadFieldCount",
Input: "a,b,c\nd,e",
Error: new ParseError(2, 2, null, ERR_FIELD_COUNT),
UseFieldsPerRecord: true,
FieldsPerRecord: 0,
},
{
Name: "BadFieldCount1",
Input: `a,b,c`,
UseFieldsPerRecord: true,
FieldsPerRecord: 2,
Error: new ParseError(1, 1, null, ERR_FIELD_COUNT),
},
{
Name: "FieldCount",
Input: "a,b,c\nd,e",
Output: [
["a", "b", "c"],
["d", "e"],
],
},
{
Name: "TrailingCommaEOF",
Input: "a,b,c,",
Output: [["a", "b", "c", ""]],
},
{
Name: "TrailingCommaEOL",
Input: "a,b,c,\n",
Output: [["a", "b", "c", ""]],
},
{
Name: "TrailingCommaSpaceEOF",
Input: "a,b,c, ",
Output: [["a", "b", "c", ""]],
TrimLeadingSpace: true,
},
{
Name: "TrailingCommaSpaceEOL",
Input: "a,b,c, \n",
Output: [["a", "b", "c", ""]],
TrimLeadingSpace: true,
},
{
Name: "TrailingCommaLine3",
Input: "a,b,c\nd,e,f\ng,hi,",
Output: [
["a", "b", "c"],
["d", "e", "f"],
["g", "hi", ""],
],
TrimLeadingSpace: true,
},
{
Name: "NotTrailingComma3",
Input: "a,b,c, \n",
Output: [["a", "b", "c", " "]],
},
{
Name: "CommaFieldTest",
Input: `x,y,z,w
x,y,z,
x,y,,
x,,,
,,,
"x","y","z","w"
"x","y","z",""
"x","y","",""
"x","","",""
"","","",""
`,
Output: [
["x", "y", "z", "w"],
["x", "y", "z", ""],
["x", "y", "", ""],
["x", "", "", ""],
["", "", "", ""],
["x", "y", "z", "w"],
["x", "y", "z", ""],
["x", "y", "", ""],
["x", "", "", ""],
["", "", "", ""],
],
},
{
Name: "TrailingCommaIneffective1",
Input: "a,b,\nc,d,e",
Output: [
["a", "b", ""],
["c", "d", "e"],
],
TrimLeadingSpace: true,
},
{
Name: "ReadAllReuseRecord",
Input: "a,b\nc,d",
Output: [
["a", "b"],
["c", "d"],
],
ReuseRecord: true,
},
{
Name: "StartLine1", // Issue 19019
Input: 'a,"b\nc"d,e',
Error: new ParseError(1, 2, 1, ERR_QUOTE),
},
{
Name: "StartLine2",
Input: 'a,b\n\"d\n\n,e',
Error: new ParseError(2, 5, 0, ERR_QUOTE),
},
{
Name: "CRLFInQuotedField", // Issue 21201
Input: 'A,"Hello\r\nHi",B\r\n',
Output: [["A", "Hello\nHi", "B"]],
},
{
Name: "BinaryBlobField", // Issue 19410
Input: "x09\x41\xb4\x1c,aktau",
Output: [["x09A\xb4\x1c", "aktau"]],
},
{
Name: "TrailingCR",
Input: "field1,field2\r",
Output: [["field1", "field2"]],
},
{
Name: "QuotedTrailingCR",
Input: '"field"\r',
Output: [["field"]],
},
{
Name: "QuotedTrailingCRCR",
Input: '"field"\r\r',
Error: new ParseError(1, 1, 6, ERR_QUOTE),
},
{
Name: "FieldCR",
Input: "field\rfield\r",
Output: [["field\rfield"]],
},
{
Name: "FieldCRCR",
Input: "field\r\rfield\r\r",
Output: [["field\r\rfield\r"]],
},
{
Name: "FieldCRCRLF",
Input: "field\r\r\nfield\r\r\n",
Output: [["field\r"], ["field\r"]],
},
{
Name: "FieldCRCRLFCR",
Input: "field\r\r\n\rfield\r\r\n\r",
Output: [["field\r"], ["\rfield\r"]],
},
{
Name: "FieldCRCRLFCRCR",
Input: "field\r\r\n\r\rfield\r\r\n\r\r",
Output: [["field\r"], ["\r\rfield\r"], ["\r"]],
},
{
Name: "MultiFieldCRCRLFCRCR",
Input: "field1,field2\r\r\n\r\rfield1,field2\r\r\n\r\r,",
Output: [
["field1", "field2\r"],
["\r\rfield1", "field2\r"],
["\r\r", ""],
],
},
{
Name: "NonASCIICommaAndComment",
Input: "a£b,c£ \td,e\n€ comment\n",
Output: [["a", "b,c", "d,e"]],
TrimLeadingSpace: true,
Comma: "£",
Comment: "€",
},
{
Name: "NonASCIICommaAndCommentWithQuotes",
Input: 'a€" b,"€ c\nλ comment\n',
Output: [["a", " b,", " c"]],
Comma: "€",
Comment: "λ",
},
{
// λ and θ start with the same byte.
// This tests that the parser doesn't confuse such characters.
Name: "NonASCIICommaConfusion",
Input: '"abθcd"λefθgh',
Output: [["abθcd", "efθgh"]],
Comma: "λ",
Comment: "€",
},
{
Name: "NonASCIICommentConfusion",
Input: "λ\nλ\nθ\nλ\n",
Output: [["λ"], ["λ"], ["λ"]],
Comment: "θ",
},
{
Name: "QuotedFieldMultipleLF",
Input: '"\n\n\n\n"',
Output: [["\n\n\n\n"]],
},
{
Name: "MultipleCRLF",
Input: "\r\n\r\n\r\n\r\n",
Output: [],
},
/**
* The implementation may read each line in several chunks if
* it doesn't fit entirely.
* in the read buffer, so we should test the code to handle that condition.
*/
{
Name: "HugeLines",
Input: "#ignore\n".repeat(10000) + "@".repeat(5000) + "," +
"*".repeat(5000),
Output: [["@".repeat(5000), "*".repeat(5000)]],
Comment: "#",
},
{
Name: "QuoteWithTrailingCRLF",
Input: '"foo"bar"\r\n',
Error: new ParseError(1, 1, 4, ERR_QUOTE),
},
{
Name: "LazyQuoteWithTrailingCRLF",
Input: '"foo"bar"\r\n',
Output: [[`foo"bar`]],
LazyQuotes: true,
},
{
Name: "DoubleQuoteWithTrailingCRLF",
Input: '"foo""bar"\r\n',
Output: [[`foo"bar`]],
},
{
Name: "EvenQuotes",
Input: `""""""""`,
Output: [[`"""`]],
},
{
Name: "OddQuotes",
Input: `"""""""`,
Error: new ParseError(1, 1, 7, ERR_QUOTE),
},
{
Name: "LazyOddQuotes",
Input: `"""""""`,
Output: [[`"""`]],
LazyQuotes: true,
},
{
Name: "BadComma1",
Comma: "\n",
Error: new Error(ERR_INVALID_DELIM),
},
{
Name: "BadComma2",
Comma: "\r",
Error: new Error(ERR_INVALID_DELIM),
},
{
Name: "BadComma3",
Comma: '"',
Error: new Error(ERR_INVALID_DELIM),
},
{
Name: "BadComment1",
Comment: "\n",
Error: new Error(ERR_INVALID_DELIM),
},
{
Name: "BadComment2",
Comment: "\r",
Error: new Error(ERR_INVALID_DELIM),
},
{
Name: "BadCommaComment",
Comma: "X",
Comment: "X",
Error: new Error(ERR_INVALID_DELIM),
},
];
for (const t of testCases) {
Deno.test({
name: `[CSV] ${t.Name}`,
async fn(): Promise<void> {
let comma = ",";
let comment: string | undefined;
let fieldsPerRec: number | undefined;
let trim = false;
let lazyquote = false;
if (t.Comma) {
comma = t.Comma;
}
if (t.Comment) {
comment = t.Comment;
}
if (t.TrimLeadingSpace) {
trim = true;
}
if (t.UseFieldsPerRecord) {
fieldsPerRec = t.FieldsPerRecord;
}
if (t.LazyQuotes) {
lazyquote = t.LazyQuotes;
}
let actual;
if (t.Error) {
const err = await assertThrowsAsync(async () => {
await readMatrix(
new BufReader(new StringReader(t.Input ?? "")),
{
comma: comma,
comment: comment,
trimLeadingSpace: trim,
fieldsPerRecord: fieldsPerRec,
lazyQuotes: lazyquote,
},
);
});
assertEquals(err, t.Error);
} else {
actual = await readMatrix(
new BufReader(new StringReader(t.Input ?? "")),
{
comma: comma,
comment: comment,
trimLeadingSpace: trim,
fieldsPerRecord: fieldsPerRec,
lazyQuotes: lazyquote,
},
);
const expected = t.Output;
assertEquals(actual, expected);
}
},
});
}
const parseTestCases = [
{
name: "simple",
in: "a,b,c",
header: false,
result: [["a", "b", "c"]],
},
{
name: "simple Bufreader",
in: new BufReader(new StringReader("a,b,c")),
header: false,
result: [["a", "b", "c"]],
},
{
name: "multiline",
in: "a,b,c\ne,f,g\n",
header: false,
result: [
["a", "b", "c"],
["e", "f", "g"],
],
},
{
name: "header mapping boolean",
in: "a,b,c\ne,f,g\n",
header: true,
result: [{ a: "e", b: "f", c: "g" }],
},
{
name: "header mapping array",
in: "a,b,c\ne,f,g\n",
header: ["this", "is", "sparta"],
result: [
{ this: "a", is: "b", sparta: "c" },
{ this: "e", is: "f", sparta: "g" },
],
},
{
name: "header mapping object",
in: "a,b,c\ne,f,g\n",
header: [{ name: "this" }, { name: "is" }, { name: "sparta" }],
result: [
{ this: "a", is: "b", sparta: "c" },
{ this: "e", is: "f", sparta: "g" },
],
},
{
name: "header mapping parse entry",
in: "a,b,c\ne,f,g\n",
header: [
{
name: "this",
parse: (e: string): string => {
return `b${e}$$`;
},
},
{
name: "is",
parse: (e: string): number => {
return e.length;
},
},
{
name: "sparta",
parse: (e: string): unknown => {
return { bim: `boom-${e}` };
},
},
],
result: [
{ this: "ba$$", is: 1, sparta: { bim: `boom-c` } },
{ this: "be$$", is: 1, sparta: { bim: `boom-g` } },
],
},
{
name: "multiline parse",
in: "a,b,c\ne,f,g\n",
parse: (e: string[]): unknown => {
return { super: e[0], street: e[1], fighter: e[2] };
},
header: false,
result: [
{ super: "a", street: "b", fighter: "c" },
{ super: "e", street: "f", fighter: "g" },
],
},
{
name: "header mapping object parseline",
in: "a,b,c\ne,f,g\n",
header: [{ name: "this" }, { name: "is" }, { name: "sparta" }],
parse: (e: Record<string, unknown>): unknown => {
return { super: e.this, street: e.is, fighter: e.sparta };
},
result: [
{ super: "a", street: "b", fighter: "c" },
{ super: "e", street: "f", fighter: "g" },
],
},
];
for (const testCase of parseTestCases) {
Deno.test({
name: `[CSV] Parse ${testCase.name}`,
async fn(): Promise<void> {
const r = await parse(testCase.in, {
header: testCase.header,
parse: testCase.parse as (input: unknown) => unknown,
});
assertEquals(r, testCase.result);
},
});
}
Deno.test({
name: "[CSV] ParseError.message",
fn(): void {
assertEquals(
new ParseError(2, 2, null, ERR_FIELD_COUNT).message,
`record on line 2: ${ERR_FIELD_COUNT}`,
);
assertEquals(
new ParseError(1, 2, 1, ERR_QUOTE).message,
`record on line 1; parse error on line 2, column 1: ${ERR_QUOTE}`,
);
assertEquals(
new ParseError(1, 1, 7, ERR_QUOTE).message,
`parse error on line 1, column 7: ${ERR_QUOTE}`,
);
},
});