Marathi मराठी

BCP 47 language tag: mr

Lokalized supports cardinality, cardinality range, and ordinality rules for Marathi.

Marathi is most often spoken in India.

Cardinalities

  • CARDINALITY_ONE

    Matches n = 1

    Example Integers: 1

    Example Decimals: 1.0, 1.00, 1.000, 1.0000

  • CARDINALITY_OTHER

    Matches all other values

    Example Integers: 0, 2, 16, 100, 1000, 10000, 100000, 1000000, …

    Example Decimals: 0.0, 0.9, 1.1, 1.6, 10.0, 100.0, 1000.0, 10000.0, 100000.0, 1000000.0, …

Cardinality example

This localized strings example uses complete, page-local CLDR minimal-pair patterns to demonstrate every cardinality category defined for the locale. Minimal-pair text contrasts grammatical forms; it is language-reference data, not reusable application copy.

Source: Unicode CLDR 48.2 mr locale data.

Sample localized strings file
mr.json Localized Strings File (Marathi)
{
  "Cardinality.MinimalPair": {
    "commentary": "Demonstrates every CLDR cardinal category defined for this locale.",
    "translation": "{{cardinalityExample}}",
    "placeholders": {
      "cardinalityExample": {
        "value": "cardinalityValue",
        "translations": {
          "CARDINALITY_ONE": "{{formattedCardinalityValue}} घर",
          "CARDINALITY_OTHER": "{{formattedCardinalityValue}} घरे"
        }
      }
    }
  }
}
Usage and expected results

JavaScript

The JavaScript code passes each raw number for cardinality selection and formats its display value separately with Intl.NumberFormat.

import { cardinalityForNumber, createStrings } from "lokalized";
import { readStringsFromDirectory } from "lokalized/node";

const locale = "mr";

const strings = createStrings({
  localizedStringSupplier: () => readStringsFromDirectory("strings").catalogs,
  fallbackLocale: locale,
  localeSupplier: () => locale,
});

const numberFormat = new Intl.NumberFormat(locale);

// Raw numbers select language forms; Intl.NumberFormat produces the display values

// CARDINALITY_ONE
const oneCardinality = 1;
const oneFormattedCardinalityValue = numberFormat.format(oneCardinality);

cardinalityForNumber(oneCardinality, locale).name;   // => "CARDINALITY_ONE"
strings.get("Cardinality.MinimalPair", {
  cardinalityValue: oneCardinality,
  formattedCardinalityValue: oneFormattedCardinalityValue,
});   // => "१ घर"

// CARDINALITY_OTHER
const otherCardinality = 0;
const otherFormattedCardinalityValue = numberFormat.format(otherCardinality);

cardinalityForNumber(otherCardinality, locale).name;   // => "CARDINALITY_OTHER"
strings.get("Cardinality.MinimalPair", {
  cardinalityValue: otherCardinality,
  formattedCardinalityValue: otherFormattedCardinalityValue,
});   // => "० घरे"

Java

The Java code passes each raw number for cardinality selection and formats its display value separately with NumberFormat.

Locale locale = Locale.forLanguageTag("mr");

Strings strings = Strings.withFallbackLocale(locale)
  .localizedStringSupplier(() -> LocalizedStringLoader.loadFromFilesystem(Paths.get("strings")))
  .localeSupplier((matcher) -> matcher.bestMatchFor(locale))
  .build();

NumberFormat numberFormat = NumberFormat.getNumberInstance(locale);

// Raw numbers select language forms; NumberFormat produces the display values

// CARDINALITY_ONE
Number oneCardinality = 1;
String oneFormattedCardinalityValue = numberFormat.format(oneCardinality);

assertEquals(Cardinality.ONE, Cardinality.forNumber(oneCardinality, locale));

// Expected: १ घर
assertEquals(oneFormattedCardinalityValue + " घर", strings.get(
  "Cardinality.MinimalPair",
  Map.of("cardinalityValue", oneCardinality, "formattedCardinalityValue", oneFormattedCardinalityValue)
));

// CARDINALITY_OTHER
Number otherCardinality = 0;
String otherFormattedCardinalityValue = numberFormat.format(otherCardinality);

assertEquals(Cardinality.OTHER, Cardinality.forNumber(otherCardinality, locale));

// Expected: ० घरे
assertEquals(otherFormattedCardinalityValue + " घरे", strings.get(
  "Cardinality.MinimalPair",
  Map.of(
    "cardinalityValue", otherCardinality,
    "formattedCardinalityValue", otherFormattedCardinalityValue
  )
));

Swift

Swift uses pinned CLDR rules for raw numeric values. The display strings in these assertions are fixed examples; applications format display values separately with Foundation. Default .rtlLocales bidi isolation adds FSI/PDI to interpolated values in right-to-left output.

import Foundation
import Lokalized

let locale = try LocaleTag("mr")
let files = try LocalizedStringLoader.loadFromDirectory(URL(fileURLWithPath: "strings"))
let catalogs = files.mapValues { LocalizedCatalog(strings: $0.strings) }

let strings = try DefaultStrings(configuration: StringsConfiguration(
  localizedStringSupplier: { catalogs }, localeSupplier: { _ in locale },
  fallbackLocale: locale
))

// CARDINALITY_ONE
let number1 = try NumericValue.forDecimal("1")
let category1 = try Cardinality.forNumber(number1, locale: locale.tag)
assert(category1 == .one)
// This fixed display value makes the translation assertion reproducible.
let display1 = "१"
let message1 = try strings.get("Cardinality.MinimalPair", placeholders: [
  "cardinalityValue": .number(number1),
  "formattedCardinalityValue": .text(display1),
])
assert(ExactString(message1) == ExactString("१ घर"))

// CARDINALITY_OTHER
let number2 = try NumericValue.forDecimal("0")
let category2 = try Cardinality.forNumber(number2, locale: locale.tag)
assert(category2 == .other)
// This fixed display value makes the translation assertion reproducible.
let display2 = "०"
let message2 = try strings.get("Cardinality.MinimalPair", placeholders: [
  "cardinalityValue": .number(number2),
  "formattedCardinalityValue": .text(display2),
])
assert(ExactString(message2) == ExactString("० घरे"))

Cardinality Ranges

These are CLDR's explicit range mappings. For any start/end pair not listed, the range falls back to the ending cardinality.

  • CARDINALITY_ONE - CARDINALITY_ONE

    Matches CARDINALITY_ONE

  • CARDINALITY_ONE - CARDINALITY_OTHER

    Matches CARDINALITY_OTHER

  • CARDINALITY_OTHER - CARDINALITY_OTHER

    Matches CARDINALITY_OTHER

Ordinalities

  • ORDINALITY_ONE

    Matches n = 1

    Example Integers: 1

  • ORDINALITY_TWO

    Matches n = 2,3

    Example Integers: 2, 3

  • ORDINALITY_FEW

    Matches n = 4

    Example Integers: 4

  • ORDINALITY_OTHER

    Matches all other values

    Example Integers: 0, 5, 19, 100, 1000, 10000, 100000, 1000000, …

Ordinality example

This localized strings example uses complete CLDR minimal-pair patterns to demonstrate every ordinality category defined for the locale.

Source: Unicode CLDR 48.2 mr locale data.

Sample localized strings file
mr.json Localized Strings File (Marathi)
{
  "Ordinal.MinimalPair": {
    "commentary": "Demonstrates every CLDR ordinal category defined for this locale.",
    "translation": "{{ordinalExample}}",
    "placeholders": {
      "ordinalExample": {
        "value": "ordinalValue",
        "translations": {
          "ORDINALITY_ONE": "{{formattedOrdinalValue}}ले उजवे वळण घ्या.",
          "ORDINALITY_TWO": "{{formattedOrdinalValue}}रे उजवे वळण घ्या.",
          "ORDINALITY_FEW": "{{formattedOrdinalValue}}थे उजवे वळण घ्या.",
          "ORDINALITY_OTHER": "{{formattedOrdinalValue}}वे उजवे वळण घ्या."
        }
      }
    }
  }
}
Usage and expected results

JavaScript

The JavaScript code passes each raw number to ordinalityForNumber(...) and formats its display value separately with Intl.NumberFormat. Ordinal rules are an optional import, lokalized/data/ordinal.

import { createStrings } from "lokalized";
import { ordinalData, ordinalityForNumber } from "lokalized/data/ordinal";
import { readStringsFromDirectory } from "lokalized/node";

const locale = "mr";

const strings = createStrings({
  localizedStringSupplier: () => readStringsFromDirectory("strings").catalogs,
  fallbackLocale: locale,
  localeSupplier: () => locale,
  pluralData: { ordinal: ordinalData },
});

const numberFormat = new Intl.NumberFormat(locale);

// Raw numbers select language forms; Intl.NumberFormat produces the display values

// ORDINALITY_ONE
const oneOrdinalValue = 1;
const oneFormattedOrdinalValue = numberFormat.format(oneOrdinalValue);

ordinalityForNumber(oneOrdinalValue, locale).name;   // => "ORDINALITY_ONE"
strings.get("Ordinal.MinimalPair", {
  ordinalValue: oneOrdinalValue,
  formattedOrdinalValue: oneFormattedOrdinalValue,
});   // => "१ले उजवे वळण घ्या."

// ORDINALITY_TWO
const twoOrdinalValue = 2;
const twoFormattedOrdinalValue = numberFormat.format(twoOrdinalValue);

ordinalityForNumber(twoOrdinalValue, locale).name;   // => "ORDINALITY_TWO"
strings.get("Ordinal.MinimalPair", {
  ordinalValue: twoOrdinalValue,
  formattedOrdinalValue: twoFormattedOrdinalValue,
});   // => "२रे उजवे वळण घ्या."

// ORDINALITY_FEW
const fewOrdinalValue = 4;
const fewFormattedOrdinalValue = numberFormat.format(fewOrdinalValue);

ordinalityForNumber(fewOrdinalValue, locale).name;   // => "ORDINALITY_FEW"
strings.get("Ordinal.MinimalPair", {
  ordinalValue: fewOrdinalValue,
  formattedOrdinalValue: fewFormattedOrdinalValue,
});   // => "४थे उजवे वळण घ्या."

// ORDINALITY_OTHER
const otherOrdinalValue = 5;
const otherFormattedOrdinalValue = numberFormat.format(otherOrdinalValue);

ordinalityForNumber(otherOrdinalValue, locale).name;   // => "ORDINALITY_OTHER"
strings.get("Ordinal.MinimalPair", {
  ordinalValue: otherOrdinalValue,
  formattedOrdinalValue: otherFormattedOrdinalValue,
});   // => "५वे उजवे वळण घ्या."

Java

The Java code passes each raw number to Ordinality.forNumber(...) and formats its display value separately with NumberFormat.

Locale locale = Locale.forLanguageTag("mr");

Strings strings = Strings.withFallbackLocale(locale)
  .localizedStringSupplier(() -> LocalizedStringLoader.loadFromFilesystem(Paths.get("strings")))
  .localeSupplier((matcher) -> matcher.bestMatchFor(locale))
  .build();

NumberFormat numberFormat = NumberFormat.getNumberInstance(locale);

// Raw numbers select language forms; NumberFormat produces the display values

// ORDINALITY_ONE
Number oneOrdinalValue = 1;
String oneFormattedOrdinalValue = numberFormat.format(oneOrdinalValue);

assertEquals(Ordinality.ONE, Ordinality.forNumber(oneOrdinalValue, locale));

// Expected: १ले उजवे वळण घ्या.
assertEquals(oneFormattedOrdinalValue + "ले उजवे वळण घ्या.", strings.get(
  "Ordinal.MinimalPair",
  Map.of("ordinalValue", oneOrdinalValue, "formattedOrdinalValue", oneFormattedOrdinalValue)
));

// ORDINALITY_TWO
Number twoOrdinalValue = 2;
String twoFormattedOrdinalValue = numberFormat.format(twoOrdinalValue);

assertEquals(Ordinality.TWO, Ordinality.forNumber(twoOrdinalValue, locale));

// Expected: २रे उजवे वळण घ्या.
assertEquals(twoFormattedOrdinalValue + "रे उजवे वळण घ्या.", strings.get(
  "Ordinal.MinimalPair",
  Map.of("ordinalValue", twoOrdinalValue, "formattedOrdinalValue", twoFormattedOrdinalValue)
));

// ORDINALITY_FEW
Number fewOrdinalValue = 4;
String fewFormattedOrdinalValue = numberFormat.format(fewOrdinalValue);

assertEquals(Ordinality.FEW, Ordinality.forNumber(fewOrdinalValue, locale));

// Expected: ४थे उजवे वळण घ्या.
assertEquals(fewFormattedOrdinalValue + "थे उजवे वळण घ्या.", strings.get(
  "Ordinal.MinimalPair",
  Map.of("ordinalValue", fewOrdinalValue, "formattedOrdinalValue", fewFormattedOrdinalValue)
));

// ORDINALITY_OTHER
Number otherOrdinalValue = 5;
String otherFormattedOrdinalValue = numberFormat.format(otherOrdinalValue);

assertEquals(Ordinality.OTHER, Ordinality.forNumber(otherOrdinalValue, locale));

// Expected: ५वे उजवे वळण घ्या.
assertEquals(otherFormattedOrdinalValue + "वे उजवे वळण घ्या.", strings.get(
  "Ordinal.MinimalPair",
  Map.of("ordinalValue", otherOrdinalValue, "formattedOrdinalValue", otherFormattedOrdinalValue)
));

Swift

Swift uses pinned CLDR rules for raw numeric values. The display strings in these assertions are fixed examples; applications format display values separately with Foundation. Default .rtlLocales bidi isolation adds FSI/PDI to interpolated values in right-to-left output.

import Foundation
import Lokalized

let locale = try LocaleTag("mr")
let files = try LocalizedStringLoader.loadFromDirectory(URL(fileURLWithPath: "strings"))
let catalogs = files.mapValues { LocalizedCatalog(strings: $0.strings) }

let strings = try DefaultStrings(configuration: StringsConfiguration(
  localizedStringSupplier: { catalogs }, localeSupplier: { _ in locale },
  fallbackLocale: locale
))

let number1 = try NumericValue.forDecimal("1")
let category1 = try Ordinality.forNumber(number1, locale: locale.tag)
assert(category1 == .one)
let message1 = try strings.get("Ordinal.MinimalPair", placeholders: [
  "ordinalValue": .number(number1),
  "formattedOrdinalValue": .text("१"),
])
assert(ExactString(message1) == ExactString("१ले उजवे वळण घ्या."))

let number2 = try NumericValue.forDecimal("2")
let category2 = try Ordinality.forNumber(number2, locale: locale.tag)
assert(category2 == .two)
let message2 = try strings.get("Ordinal.MinimalPair", placeholders: [
  "ordinalValue": .number(number2),
  "formattedOrdinalValue": .text("२"),
])
assert(ExactString(message2) == ExactString("२रे उजवे वळण घ्या."))

let number3 = try NumericValue.forDecimal("4")
let category3 = try Ordinality.forNumber(number3, locale: locale.tag)
assert(category3 == .few)
let message3 = try strings.get("Ordinal.MinimalPair", placeholders: [
  "ordinalValue": .number(number3),
  "formattedOrdinalValue": .text("४"),
])
assert(ExactString(message3) == ExactString("४थे उजवे वळण घ्या."))

let number4 = try NumericValue.forDecimal("5")
let category4 = try Ordinality.forNumber(number4, locale: locale.tag)
assert(category4 == .other)
let message4 = try strings.get("Ordinal.MinimalPair", placeholders: [
  "ordinalValue": .number(number4),
  "formattedOrdinalValue": .text("५"),
])
assert(ExactString(message4) == ExactString("५वे उजवे वळण घ्या."))

Addendum: Language Form Rules

The language form expressions above are specified by Unicode Technical Standard #35 and use the following notation:

  • n absolute value of the source number (integer and decimals)
  • i integer digits of n
  • v number of visible fraction digits in n, with trailing zeros
  • w number of visible fraction digits in n, without trailing zeros
  • f visible fractional digits in n, with trailing zeros
  • t visible fractional digits in n, without trailing zeros
  • c/e compact decimal exponent operands used by some CLDR compact-number rules