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883 lines
23 KiB
Markdown
883 lines
23 KiB
Markdown
Valinor • PHP object mapper with strong type support
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====================================================
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[![Total Downloads](http://poser.pugx.org/cuyz/valinor/downloads)][link-packagist]
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[![Latest Stable Version](http://poser.pugx.org/cuyz/valinor/v)][link-packagist]
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[![PHP Version Require](http://poser.pugx.org/cuyz/valinor/require/php)][link-packagist]
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[![Mutation testing badge](https://img.shields.io/endpoint?style=flat&url=https%3A%2F%2Fbadge-api.stryker-mutator.io%2Fgithub.com%2FCuyZ%2FValinor%2Fmaster)](https://dashboard.stryker-mutator.io/reports/github.com/CuyZ/Valinor/master)
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Valinor is a PHP library that helps to map any input into a strongly-typed value
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object structure.
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The conversion can handle native PHP types as well as other well-known advanced
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type annotations like array shapes, generics and more.
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## Why?
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There are many benefits of using value objects instead of plain arrays and
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scalar values in a modern codebase, among which:
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1. **Data and behaviour encapsulation** — locks an object's behaviour inside its
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class, preventing it from being scattered across the codebase.
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2. **Data validation** — guarantees the valid state of an object.
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3. **Immutability** — ensures the state of an object cannot be changed during
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runtime.
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When mapping any source to an object structure, this library will ensure that
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all input values are properly converted to match the types of the nodes — class
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properties or method parameters. Any value that cannot be converted to the
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correct type will trigger an error and prevent the mapping from completing.
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These checks guarantee that if the mapping succeeds, the object structure is
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perfectly valid, hence there is no need for further validation nor type
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conversion: the objects are ready to be used.
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### Static analysis
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A strongly-typed codebase allows the usage of static analysis tools like
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[PHPStan] and [Psalm] that can identify issues in a codebase without running it.
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Moreover, static analysis can help during a refactoring of a codebase with tools
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like an IDE or [Rector].
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## Usage
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### Installation
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```bash
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composer require cuyz/valinor
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```
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### Example
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An application must handle the data coming from an external API; the response
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has a JSON format and describes a thread and its answers. The validity of this
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input is unsure, besides manipulating a raw JSON string is laborious and
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inefficient.
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```json
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{
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"id": 1337,
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"content": "Do you like potatoes?",
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"date": "1957-07-23 13:37:42",
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"answers": [
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{
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"user": "Ella F.",
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"message": "I like potatoes",
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"date": "1957-07-31 15:28:12"
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},
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{
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"user": "Louis A.",
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"message": "And I like tomatoes",
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"date": "1957-08-13 09:05:24"
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}
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]
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}
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```
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The application must be certain that it can handle this data correctly; wrapping
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the input in a value object will help.
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---
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A schema representing the needed structure must be provided, using classes.
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```php
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final class Thread
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{
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public function __construct(
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public readonly int $id,
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public readonly string $content,
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public readonly DateTimeInterface $date,
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/** @var Answer[] */
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public readonly array $answers,
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) {}
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}
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final class Answer
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{
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public function __construct(
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public readonly string $user,
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public readonly string $message,
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public readonly DateTimeInterface $date,
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) {}
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}
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```
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Then a mapper is used to hydrate a source into these objects.
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```php
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public function getThread(int $id): Thread
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{
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$rawJson = $this->client->request("https://example.com/thread/$id");
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try {
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return (new \CuyZ\Valinor\MapperBuilder())
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->mapper()
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->map(
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Thread::class,
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new \CuyZ\Valinor\Mapper\Source\JsonSource($rawJson)
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);
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} catch (\CuyZ\Valinor\Mapper\MappingError $error) {
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// Do something…
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}
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}
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```
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### Mapping advanced types
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Although it is recommended to map an input to a value object, in some cases
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mapping to another type can be easier/more flexible.
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It is for instance possible to map to an array of objects:
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```php
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try {
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$objects = (new \CuyZ\Valinor\MapperBuilder())
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->mapper()
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->map(
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'array<' . SomeClass::class . '>',
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[/* … */]
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);
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} catch (\CuyZ\Valinor\Mapper\MappingError $error) {
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// Do something…
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}
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```
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For simple use-cases, an array shape can be used:
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```php
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try {
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$array = (new \CuyZ\Valinor\MapperBuilder())
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->mapper()
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->map(
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'array{foo: string, bar: int}',
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[/* … */]
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);
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echo $array['foo'];
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echo $array['bar'] * 2;
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} catch (\CuyZ\Valinor\Mapper\MappingError $error) {
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// Do something…
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}
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```
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### Validation
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The source given to a mapper can never be trusted, this is actually the very
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goal of this library: transforming an unstructured input to a well-defined
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object structure. If the mapper cannot guess how to cast a certain value, it
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means that it is not able to guarantee the validity of the desired object thus
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it will fail.
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Any issue encountered during the mapping will add an error to an upstream
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exception of type `\CuyZ\Valinor\Mapper\MappingError`. It is therefore always
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recommended wrapping the mapping function call with a try/catch statement and
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handle the error properly.
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More specific validation should be done in the constructor of the value object,
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by throwing an exception if something is wrong with the given data. A good
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practice would be to use lightweight validation tools like [Webmozart Assert].
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When the mapping fails, the exception gives access to the root node. This
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recursive object allows retrieving all needed information through the whole
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mapping tree: path, values, types and messages, including the issues that caused
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the exception.
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```php
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final class SomeClass
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{
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public function __construct(private string $someValue)
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{
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Assert::startsWith($someValue, 'foo_');
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}
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}
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try {
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(new \CuyZ\Valinor\MapperBuilder())
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->mapper()
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->map(
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SomeClass::class,
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['someValue' => 'bar_baz']
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);
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} catch (\CuyZ\Valinor\Mapper\MappingError $error) {
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$node = $error->node();
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// The name of a node can be accessed
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$name = $node->name();
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// The logical path of a node contains dot separated names of its parents
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$path = $node->path();
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// The type of the node can be cast to string to enhance suggestion messages
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$type = (string)$node->type();
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// If the node is a branch, its children can be recursively accessed
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foreach ($node->children() as $child) {
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// Do something…
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}
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// Get flatten list of all messages through the whole nodes tree
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$messages = new \CuyZ\Valinor\Mapper\Tree\Message\MessagesFlattener($node);
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// If only errors are wanted, they can be filtered
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$errorMessages = $messages->errors();
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// Should print something similar to:
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// > Expected a value to start with "foo_". Got: "bar_baz"
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foreach ($errorsMessages as $message) {
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echo $message;
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}
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}
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```
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### Message customization / translation
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When working with messages, it can sometimes be useful to customize the content
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of a message — for instance to translate it.
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The helper class `\CuyZ\Valinor\Mapper\Tree\Message\MessageMapFormatter` can be
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used to provide a list of new formats. It can be instantiated with an array
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where each key represents either:
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- The code of the message to be replaced
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- The content of the message to be replaced
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- The class name of the message to be replaced
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If none of those is found, the content of the message will stay unchanged unless
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a default one is given to the class.
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If one of these keys is found, the array entry will be used to replace the
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content of the message. This entry can be either a plain text or a callable that
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takes the message as a parameter and returns a string; it is for instance
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advised to use a callable in cases where a translation service is used — to
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avoid useless greedy operations.
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In any case, the content can contain placeholders that will automatically be
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replaced by, in order:
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1. The original code of the message
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2. The original content of the message
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3. A string representation of the node type
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4. The name of the node
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5. The path of the node
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```php
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try {
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(new \CuyZ\Valinor\MapperBuilder())
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->mapper()
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->map(SomeClass::class, [/* … */]);
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} catch (\CuyZ\Valinor\Mapper\MappingError $error) {
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$node = $error->node();
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$messages = new \CuyZ\Valinor\Mapper\Tree\Message\MessagesFlattener($node);
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$formatter = (new \CuyZ\Valinor\Mapper\Tree\Message\Formatter\MessageMapFormatter([
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// Will match if the given message has this exact code
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'some_code' => 'new content / previous code was: %1$s',
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// Will match if the given message has this exact content
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'Some message content' => 'new content / previous message: %2$s',
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// Will match if the given message is an instance of `SomeError`
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SomeError::class => '
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- Original code of the message: %1$s
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- Original content of the message: %2$s
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- Node type: %3$s
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- Node name: %4$s
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- Node path: %5$s
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',
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// A callback can be used to get access to the message instance
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OtherError::class => function (NodeMessage $message): string {
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if ((string)$message->type() === 'string|int') {
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// …
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}
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return 'Some message content';
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},
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// For greedy operation, it is advised to use a lazy-callback
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'foo' => fn () => $this->translator->translate('foo.bar'),
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]))
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->defaultsTo('some default message')
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// …or…
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->defaultsTo(fn () => $this->translator->translate('default_message'));
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foreach ($messages as $message) {
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echo $formatter->format($message);
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}
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}
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```
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### Source
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Any source can be given to the mapper, be it an array, some json, yaml or even a file:
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```php
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function map($source) {
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return (new \CuyZ\Valinor\MapperBuilder())
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->mapper()
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->map(SomeClass::class, $source);
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}
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map(\CuyZ\Valinor\Mapper\Source\Source::array($someData));
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map(\CuyZ\Valinor\Mapper\Source\Source::json($jsonString));
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map(\CuyZ\Valinor\Mapper\Source\Source::yaml($yamlString));
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// File containing valid Json or Yaml content and with valid extension
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map(new \CuyZ\Valinor\Mapper\Source\Source::file(
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new SplFileObject('path/to/my/file.json')
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));
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```
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#### Modifiers
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Sometimes the source is not in the same format and/or organised in the same
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way as a value object. Modifiers can be used to change a source before the
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mapping occurs.
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##### Camel case keys
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This modifier recursively forces all keys to be in camelCase format.
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```php
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final class SomeClass
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{
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public readonly string $someValue;
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}
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$source = \CuyZ\Valinor\Mapper\Source\Source::array([
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'some_value' => 'foo',
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// …or…
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'some-value' => 'foo',
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// …or…
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'some value' => 'foo',
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// …will be replaced by `['someValue' => 'foo']`
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])
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->camelCaseKeys();
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(new \CuyZ\Valinor\MapperBuilder())
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->mapper()
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->map(SomeClass::class, $source);
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```
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##### Path mapping
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This modifier can be used to change paths in the source data using a dot
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notation.
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The mapping is done using an associative array of path mappings. This array must
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have the source path as key and the target path as value.
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The source path uses the dot notation (eg `A.B.C`) and can contain one `*` for
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array paths (eg `A.B.*.C`).
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```php
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final class Country
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{
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/** @var City[] */
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public readonly array $cities;
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}
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final class City
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{
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public readonly string $name;
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}
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$source = \CuyZ\Valinor\Mapper\Source\Source::array([
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'towns' => [
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['label' => 'Ankh Morpork'],
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['label' => 'Minas Tirith'],
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],
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])
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->map([
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'towns' => 'cities',
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'towns.*.label' => 'name',
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]);
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// After modification this is what the source will look like:
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[
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'cities' => [
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['name' => 'Ankh Morpork'],
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['name' => 'Minas Tirith'],
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],
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];
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(new \CuyZ\Valinor\MapperBuilder())
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->mapper()
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->map(Country::class, $source);
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```
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#### Custom source
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The source is just an iterable, so it's easy to create a custom one.
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It can even be combined with the provided builder.
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```php
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final class AcmeSource implements IteratorAggregate
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{
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private iterable $source;
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public function __construct(iterable $source)
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{
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$this->source = $this->doSomething($source);
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}
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private function doSomething(iterable $source): iterable
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{
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// Do something with $source
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return $source;
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}
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public function getIterator()
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{
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yield from $this->source;
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}
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}
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$source = \CuyZ\Valinor\Mapper\Source\Source::iterable(new AcmeSource(['value' => 'foo']))
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->camelCaseKeys();
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(new \CuyZ\Valinor\MapperBuilder())
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->mapper()
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->map(SomeClass::class, $source);
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```
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### Construction strategy
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During the mapping, instances of objects are recursively created and hydrated
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with transformed values. Construction strategies will determine what values are
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needed and how an object is built.
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#### Native constructor
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If a constructor exists and is public, its arguments will determine which values
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are needed from the input.
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```php
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final class SomeClass
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{
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public function __construct(
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public readonly string $foo,
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public readonly int $bar,
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) {}
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}
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```
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#### Custom constructor
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An object may have custom ways of being created, in such cases these
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constructors need to be registered to the mapper to be used. A constructor is a
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callable that can be either:
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1. A named constructor, also known as a static factory method
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2. The method of a service — for instance a repository
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3. A "callable object" — a class that declares an `__invoke` method
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4. Any other callable — including anonymous functions
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In any case, the return type of the callable will be resolved by the mapper to
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know when to use it. Any argument can be provided and will automatically be
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mapped using the given source. These arguments can then be used to instantiate
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the object in the desired way.
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Registering any constructor will disable the native constructor — the
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`__construct` method — of the targeted class. If for some reason it still needs
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to be handled as well, the name of the class must be given to the
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registration method.
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```php
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(new \CuyZ\Valinor\MapperBuilder())
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->registerConstructor(
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// Allow the native constructor to be used
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Color::class,
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// Register a named constructor
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Color::fromHex(...),
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// …or for PHP < 8.1:
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[Color::class, 'fromHex'],
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/**
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* An anonymous function can also be used, for instance when the desired
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* object is an external dependency that cannot be modified.
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*
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* @param 'red'|'green'|'blue' $color
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* @param 'dark'|'light' $darkness
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*/
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function (string $color, string $darkness): stdClass {
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$main = $darkness === 'dark' ? 128 : 255;
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$other = $darkness === 'dark' ? 0 : 128;
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return new Color(
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$color === 'red' ? $main : $other,
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$color === 'green' ? $main : $other,
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$color === 'blue' ? $main : $other,
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);
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}
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)
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->mapper()
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->map(Color::class, [/* … */]);
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final class Color
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{
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/**
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* @param int<0, 255> $red
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* @param int<0, 255> $green
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* @param int<0, 255> $blue
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*/
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public function __construct(
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public readonly int $red,
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public readonly int $green,
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public readonly int $blue
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) {}
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/**
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* @param non-empty-string $hex
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*/
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public static function fromHex(string $hex): self
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{
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if (strlen($hex) !== 6) {
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throw new DomainException('Must be 6 characters long');
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}
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/** @var int<0, 255> $red */
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$red = hexdec(substr($hex, 0, 2));
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/** @var int<0, 255> $green */
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$green = hexdec(substr($hex, 2, 2));
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/** @var int<0, 255> $blue */
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$blue = hexdec(substr($hex, 4, 2));
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return new self($red, $green, $blue);
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}
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}
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```
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#### Properties
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If no constructor is registered, properties will determine which values are
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needed from the input.
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|
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```php
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final class SomeClass
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{
|
|
public readonly string $foo;
|
|
|
|
public readonly int $bar;
|
|
}
|
|
```
|
|
|
|
### Inferring interfaces
|
|
|
|
When the mapper meets an interface, it needs to understand which implementation
|
|
(a class that implements this interface) will be used — this information must be
|
|
provided in the mapper builder, using the method `infer()`.
|
|
|
|
The callback given to this method must return the name of a class that
|
|
implements the interface. Any arguments can be required by the callback; they
|
|
will be mapped properly using the given source.
|
|
|
|
```php
|
|
$mapper = (new \CuyZ\Valinor\MapperBuilder())
|
|
->infer(UuidInterface::class, fn () => MyUuid::class)
|
|
->infer(SomeInterface::class, fn (string $type) => match($type) {
|
|
'first' => FirstImplementation::class,
|
|
'second' => SecondImplementation::class,
|
|
default => throw new DomainException("Unhandled type `$type`.")
|
|
})->mapper();
|
|
|
|
// Will return an instance of `FirstImplementation`
|
|
$mapper->map(SomeInterface::class, [
|
|
'type' => 'first',
|
|
'uuid' => 'a6868d61-acba-406d-bcff-30ecd8c0ceb6',
|
|
'someString' => 'foo',
|
|
]);
|
|
|
|
// Will return an instance of `SecondImplementation`
|
|
$mapper->map(SomeInterface::class, [
|
|
'type' => 'second',
|
|
'uuid' => 'a6868d61-acba-406d-bcff-30ecd8c0ceb6',
|
|
'someInt' => 42,
|
|
]);
|
|
|
|
interface SomeInterface {}
|
|
|
|
final class FirstImplementation implements SomeInterface
|
|
{
|
|
public readonly UuidInterface $uuid;
|
|
|
|
public readonly string $someString;
|
|
}
|
|
|
|
final class SecondImplementation implements SomeInterface
|
|
{
|
|
public readonly UuidInterface $uuid;
|
|
|
|
public readonly int $someInt;
|
|
}
|
|
```
|
|
|
|
### Modifiers
|
|
|
|
Sometimes the source is not in the same format and/or organised in the same
|
|
way as a value object. Modifiers can be used to change a source before the
|
|
mapping occurs.
|
|
|
|
#### Camel case keys
|
|
|
|
This modifier recursively forces all keys to be in camelCase format.
|
|
|
|
```php
|
|
final class SomeClass
|
|
{
|
|
public readonly string $someValue;
|
|
}
|
|
|
|
$source = new \CuyZ\Valinor\Mapper\Source\Modifier\CamelCaseKeys([
|
|
'some_value' => 'foo',
|
|
// …or…
|
|
'some-value' => 'foo',
|
|
// …or…
|
|
'some value' => 'foo',
|
|
// …will be replaced by `['someValue' => 'foo']`
|
|
]);
|
|
|
|
(new \CuyZ\Valinor\MapperBuilder())
|
|
->mapper()
|
|
->map(SomeClass::class, $source);
|
|
```
|
|
|
|
## Handled types
|
|
|
|
To prevent conflicts or duplication of the type annotations, this library tries
|
|
to handle most of the type annotations that are accepted by [PHPStan] and
|
|
[Psalm].
|
|
|
|
### Scalar
|
|
|
|
```php
|
|
final class SomeClass
|
|
{
|
|
public function __construct(
|
|
private bool $boolean,
|
|
|
|
private float $float,
|
|
|
|
private int $integer,
|
|
|
|
/** @var positive-int */
|
|
private int $positiveInteger,
|
|
|
|
/** @var negative-int */
|
|
private int $negativeInteger,
|
|
|
|
/** @var int<-42, 1337> */
|
|
private int $integerRange,
|
|
|
|
/** @var int<min, 0> */
|
|
private int $integerRangeWithMinRange,
|
|
|
|
/** @var int<0, max> */
|
|
private int $integerRangeWithMaxRange,
|
|
|
|
private string $string,
|
|
|
|
/** @var non-empty-string */
|
|
private string $nonEmptyString,
|
|
|
|
/** @var class-string */
|
|
private string $classString,
|
|
|
|
/** @var class-string<SomeInterface> */
|
|
private string $classStringOfAnInterface,
|
|
) {}
|
|
}
|
|
```
|
|
|
|
### Object
|
|
|
|
```php
|
|
final class SomeClass
|
|
{
|
|
public function __construct(
|
|
private SomeClass $class,
|
|
|
|
private DateTimeInterface $interface,
|
|
|
|
/** @var SomeInterface&AnotherInterface */
|
|
private object $intersection,
|
|
|
|
/** @var SomeCollection<SomeClass> */
|
|
private SomeCollection $classWithGeneric,
|
|
) {}
|
|
}
|
|
|
|
/**
|
|
* @template T of object
|
|
*/
|
|
final class SomeCollection
|
|
{
|
|
public function __construct(
|
|
/** @var array<T> */
|
|
private array $objects,
|
|
) {}
|
|
}
|
|
```
|
|
|
|
### Array & lists
|
|
|
|
```php
|
|
final class SomeClass
|
|
{
|
|
public function __construct(
|
|
/** @var string[] */
|
|
private array $simpleArray,
|
|
|
|
/** @var array<string> */
|
|
private array $arrayOfStrings,
|
|
|
|
/** @var array<string, SomeClass> */
|
|
private array $arrayOfClassWithStringKeys,
|
|
|
|
/** @var array<int, SomeClass> */
|
|
private array $arrayOfClassWithIntegerKeys,
|
|
|
|
/** @var non-empty-array<string> */
|
|
private array $nonEmptyArrayOfStrings,
|
|
|
|
/** @var non-empty-array<string, SomeClass> */
|
|
private array $nonEmptyArrayWithStringKeys,
|
|
|
|
/** @var list<string> */
|
|
private array $listOfStrings,
|
|
|
|
/** @var non-empty-list<string> */
|
|
private array $nonEmptyListOfStrings,
|
|
|
|
/** @var array{foo: string, bar: int} */
|
|
private array $shapedArray,
|
|
|
|
/** @var array{foo: string, bar?: int} */
|
|
private array $shapedArrayWithOptionalElement,
|
|
|
|
/** @var array{string, bar: int} */
|
|
private array $shapedArrayWithUndefinedKey,
|
|
) {}
|
|
}
|
|
```
|
|
|
|
### Union
|
|
|
|
```php
|
|
final class SomeClass
|
|
{
|
|
public function __construct(
|
|
private int|string $simpleUnion,
|
|
|
|
/** @var class-string<SomeInterface|AnotherInterface> */
|
|
private string $unionOfClassString,
|
|
|
|
/** @var array<SomeInterface|AnotherInterface> */
|
|
private array $unionInsideArray,
|
|
) {}
|
|
}
|
|
```
|
|
|
|
## Static analysis
|
|
|
|
To help static analysis of a codebase using this library, an extension for
|
|
[PHPStan] and a plugin for [Psalm] are provided. They enable these tools to
|
|
better understand the behaviour of the mapper.
|
|
|
|
Considering at least one of those tools are installed on a project, below are
|
|
examples of the kind of errors that would be reported.
|
|
|
|
**Mapping to an array of classes**
|
|
|
|
```php
|
|
final class SomeClass
|
|
{
|
|
public function __construct(
|
|
public readonly string $foo,
|
|
public readonly int $bar,
|
|
) {}
|
|
}
|
|
|
|
$objects = (new \CuyZ\Valinor\MapperBuilder())
|
|
->mapper()
|
|
->map(
|
|
'array<' . SomeClass::class . '>',
|
|
[/* … */]
|
|
);
|
|
|
|
foreach ($objects as $object) {
|
|
// ✅
|
|
echo $object->foo;
|
|
|
|
// ✅
|
|
echo $object->bar * 2;
|
|
|
|
// ❌ Cannot perform operation between `string` and `int`
|
|
echo $object->foo * $object->bar;
|
|
|
|
// ❌ Property `SomeClass::$fiz` is not defined
|
|
echo $object->fiz;
|
|
}
|
|
```
|
|
|
|
**Mapping to a shaped array**
|
|
|
|
```php
|
|
$array = (new \CuyZ\Valinor\MapperBuilder())
|
|
->mapper()
|
|
->map(
|
|
'array{foo: string, bar: int}',
|
|
[/* … */]
|
|
);
|
|
|
|
// ✅
|
|
echo $array['foo'];
|
|
|
|
// ❌ Expected `string` but got `int`
|
|
echo strtolower($array['bar']);
|
|
|
|
// ❌ Cannot perform operation between `string` and `int`
|
|
echo $array['foo'] * $array['bar'];
|
|
|
|
// ❌ Offset `fiz` does not exist on array
|
|
echo $array['fiz'];
|
|
```
|
|
|
|
---
|
|
|
|
To activate this feature, the configuration must be updated for the installed
|
|
tool(s):
|
|
|
|
**PHPStan**
|
|
|
|
```yaml
|
|
includes:
|
|
- vendor/cuyz/valinor/qa/PHPStan/valinor-phpstan-configuration.php
|
|
```
|
|
|
|
**Psalm**
|
|
|
|
```xml
|
|
|
|
<plugins>
|
|
<plugin filename="vendor/cuyz/valinor/qa/Psalm/Plugin/TreeMapperPsalmPlugin.php"/>
|
|
</plugins>
|
|
```
|
|
|
|
[PHPStan]: https://phpstan.org/
|
|
|
|
[Psalm]: https://psalm.dev/
|
|
|
|
[Rector]: https://github.com/rectorphp/rector
|
|
|
|
[Webmozart Assert]: https://github.com/webmozarts/assert
|
|
|
|
[link-packagist]: https://packagist.org/packages/cuyz/valinor
|