Painless: Restructure/Clean Up of Spec Documentation (#31013)
Full restructure of the spec into new sections for operators, statements, scripts, functions, lambdas, and regexes. Split of operators into 6 sections, a table, reference, array, numeric, boolean, and general. Clean up of all operators sections. Sporadic clean up else where.
2018-06-07 20:11:56 -04:00
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[[painless-operators-general]]
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=== Operators: General
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[[precedence-operator]]
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==== Precedence
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Use the `precedence operator '()'` to guarantee the order of evaluation for an
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expression. An expression encapsulated by the precedence operator (enclosed in
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parentheses) overrides existing precedence relationships between operators and
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is evaluated prior to other expressions in inward-to-outward order.
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*Grammar*
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[source,ANTLR4]
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----
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precedence: '(' expression ')';
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----
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*Examples*
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* Precedence with numeric operators.
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+
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[source,Painless]
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----
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2019-04-04 08:41:30 -04:00
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int x = (5+4)*6; <1>
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int y = 12/(x-50); <2>
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Painless: Restructure/Clean Up of Spec Documentation (#31013)
Full restructure of the spec into new sections for operators, statements, scripts, functions, lambdas, and regexes. Split of operators into 6 sections, a table, reference, array, numeric, boolean, and general. Clean up of all operators sections. Sporadic clean up else where.
2018-06-07 20:11:56 -04:00
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----
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+
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<1> declare `int x`;
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add `int 5` and `int 4` -> `int 9`;
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multiply `int 9` and `int 6` -> `int 54`;
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store `int 54` to `x`;
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(note the add is evaluated before the multiply due to the precedence
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operator)
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<2> declare `int y`;
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load from `x` -> `int 54`;
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subtract `int 50` from `int 54` -> `int 4`;
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divide `int 12` by `int 4` -> `int 3`;
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store `int 3` to `y`;
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(note the subtract is evaluated before the divide due to the precedence
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operator)
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[[function-call-operator]]
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==== Function Call
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Use the `function call operator ()` to call an existing function. A
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<<painless-functions, function call>> is defined within a script.
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*Grammar*
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[source,ANTLR4]
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----
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function_call: ID '(' ( expression (',' expression)* )? ')'';
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----
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*Examples*
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* A function call.
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[source,Painless]
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----
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2019-04-04 08:41:30 -04:00
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int add(int x, int y) { <1>
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Painless: Restructure/Clean Up of Spec Documentation (#31013)
Full restructure of the spec into new sections for operators, statements, scripts, functions, lambdas, and regexes. Split of operators into 6 sections, a table, reference, array, numeric, boolean, and general. Clean up of all operators sections. Sporadic clean up else where.
2018-06-07 20:11:56 -04:00
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return x + y;
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}
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2019-04-04 08:41:30 -04:00
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int z = add(1, 2); <2>
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Painless: Restructure/Clean Up of Spec Documentation (#31013)
Full restructure of the spec into new sections for operators, statements, scripts, functions, lambdas, and regexes. Split of operators into 6 sections, a table, reference, array, numeric, boolean, and general. Clean up of all operators sections. Sporadic clean up else where.
2018-06-07 20:11:56 -04:00
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----
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+
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<1> define function `add` that returns `int` and has parameters (`int x`,
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`int y`)
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<2> declare `int z`;
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call `add` with arguments (`int 1`, `int 2`) -> `int 3`;
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store `int 3` to `z`
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[[cast-operator]]
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==== Cast
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An explicit cast converts the value of an original type to the equivalent value
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of a target type forcefully as an operation. Use the `cast operator '()'` to
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specify an explicit cast. Refer to <<painless-casting, casting>> for more
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information.
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[[conditional-operator]]
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==== Conditional
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A conditional consists of three expressions. The first expression is evaluated
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with an expected boolean result type. If the first expression evaluates to true
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then the second expression will be evaluated. If the first expression evaluates
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to false then the third expression will be evaluated. The second and third
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expressions will be <<promotion, promoted>> if the evaluated values are not the
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same type. Use the `conditional operator '? :'` as a shortcut to avoid the need
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for a full if/else branch in certain expressions.
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*Errors*
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* If the first expression does not evaluate to a boolean type value.
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* If the values for the second and third expressions cannot be promoted.
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*Grammar*
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[source,ANTLR4]
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----
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conditional: expression '?' expression ':' expression;
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----
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*Promotion*
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[cols="<1,^1,^1,^1,^1,^1,^1,^1,^1,^1"]
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|====
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| | byte | short | char | int | long | float | double | Reference | def
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| byte | int | int | int | int | long | float | double | - | def
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| short | int | int | int | int | long | float | double | - | def
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| char | int | int | int | int | long | float | double | - | def
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| int | int | int | int | int | long | float | double | - | def
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| long | long | long | long | long | long | float | double | - | def
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| float | float | float | float | float | float | float | double | - | def
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| double | double | double | double | double | double | double | double | - | def
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| Reference | - | - | - | - | - | - | - | Object @ | def
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| def | def | def | def | def | def | def | def | def | def
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|====
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@ If the two reference type values are the same then this promotion will not
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occur.
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*Examples*
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* Evaluation of conditionals.
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[source,Painless]
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----
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2019-04-04 08:41:30 -04:00
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boolean b = true; <1>
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int x = b ? 1 : 2; <2>
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List y = x > 1 ? new ArrayList() : null; <3>
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def z = x < 2 ? x : 2.0; <4>
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Painless: Restructure/Clean Up of Spec Documentation (#31013)
Full restructure of the spec into new sections for operators, statements, scripts, functions, lambdas, and regexes. Split of operators into 6 sections, a table, reference, array, numeric, boolean, and general. Clean up of all operators sections. Sporadic clean up else where.
2018-06-07 20:11:56 -04:00
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----
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<1> declare `boolean b`;
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store `boolean true` to `b`
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<2> declare `int x`;
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load from `b` -> `boolean true`
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evaluate 1st expression: `int 1` -> `int 1`;
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store `int 1` to `x`
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<3> declare `List y`;
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load from `x` -> `int 1`;
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`int 1` greater than `int 1` -> `boolean false`;
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evaluate 2nd expression: `null` -> `null`;
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store `null` to `y`;
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<4> declare `def z`;
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load from `x` -> `int 1`;
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`int 1` less than `int 2` -> `boolean true`;
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evaluate 1st expression: load from `x` -> `int 1`;
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promote `int 1` and `double 2.0`: result `double`;
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implicit cast `int 1` to `double 1.0` -> `double 1.0`;
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implicit cast `double 1.0` to `def` -> `def`;
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store `def` to `z`;
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[[assignment-operator]]
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==== Assignment
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Use the `assignment operator '='` to store a value in a variable or reference
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type member field for use in subsequent operations. Any operation that produces
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a value can be assigned to any variable/field as long as the
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<<painless-types, types>> are the same or the resultant type can be
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<<painless-casting, implicitly cast>> to the variable/field type.
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See <<variable-assignment, variable assignment>> for examples using variables.
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*Errors*
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* If the type of value is unable to match the type of variable or field.
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*Grammar*
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[source,ANTLR4]
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----
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assignment: field '=' expression
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----
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*Examples*
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The examples use the following reference type definition:
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[source,Painless]
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----
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name:
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Example
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non-static member fields:
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* int x
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* def y
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* List z
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----
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* Field assignments of different type values.
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[source,Painless]
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----
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2019-04-04 08:41:30 -04:00
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Example example = new Example(); <1>
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example.x = 1; <2>
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example.y = 2.0; <3>
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example.z = new ArrayList(); <4>
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Painless: Restructure/Clean Up of Spec Documentation (#31013)
Full restructure of the spec into new sections for operators, statements, scripts, functions, lambdas, and regexes. Split of operators into 6 sections, a table, reference, array, numeric, boolean, and general. Clean up of all operators sections. Sporadic clean up else where.
2018-06-07 20:11:56 -04:00
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----
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+
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<1> declare `Example example`;
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allocate `Example` instance -> `Example reference`;
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store `Example reference` to `example`
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<2> load from `example` -> `Example reference`;
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store `int 1` to `x` of `Example reference`
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<3> load from `example` -> `Example reference`;
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implicit cast `double 2.0` to `def` -> `def`;
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store `def` to `y` of `Example reference`
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<4> load from `example` -> `Example reference`;
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allocate `ArrayList` instance -> `ArrayList reference`;
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implicit cast `ArrayList reference` to `List reference` -> `List reference`;
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store `List reference` to `z` of `Example reference`
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* A field assignment from a field access.
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[source,Painless]
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----
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2019-04-04 08:41:30 -04:00
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Example example = new Example(); <1>
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example.x = 1; <2>
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example.y = example.x; <3>
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Painless: Restructure/Clean Up of Spec Documentation (#31013)
Full restructure of the spec into new sections for operators, statements, scripts, functions, lambdas, and regexes. Split of operators into 6 sections, a table, reference, array, numeric, boolean, and general. Clean up of all operators sections. Sporadic clean up else where.
2018-06-07 20:11:56 -04:00
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----
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+
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<1> declare `Example example`;
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allocate `Example` instance -> `Example reference`;
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store `Example reference` to `example`
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<2> load from `example` -> `Example reference`;
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store `int 1` to `x` of `Example reference`
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<3> load from `example` -> `Example reference @0`;
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load from `example` -> `Example reference @1`;
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load from `x` of `Example reference @1` -> `int 1`;
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implicit cast `int 1` to `def` -> `def`;
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store `def` to `y` of `Example reference @0`;
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(note `Example reference @0` and `Example reference @1` are the same)
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[[compound-assignment-operator]]
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==== Compound Assignment
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Use the `compound assignment operator '$='` as a shortcut for an assignment
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where a binary operation would occur between the variable/field as the
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left-hand side expression and a separate right-hand side expression.
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A compound assignment is equivalent to the expression below where V is the
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variable/field and T is the type of variable/member.
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[source,Painless]
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----
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V = (T)(V op expression);
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----
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*Operators*
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The table below shows the available operators for use in a compound assignment.
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Each operator follows the casting/promotion rules according to their regular
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definition. For numeric operations there is an extra implicit cast when
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necessary to return the promoted numeric type value to the original numeric type
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value of the variable/field and can result in data loss.
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|====
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|Operator|Compound Symbol
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|Multiplication|*=
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|Division|/=
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|Remainder|%=
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|Addition|+=
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|Subtraction|-=
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2020-03-04 08:42:37 -05:00
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|Left Shift|+++<<=+++
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Painless: Restructure/Clean Up of Spec Documentation (#31013)
Full restructure of the spec into new sections for operators, statements, scripts, functions, lambdas, and regexes. Split of operators into 6 sections, a table, reference, array, numeric, boolean, and general. Clean up of all operators sections. Sporadic clean up else where.
2018-06-07 20:11:56 -04:00
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|Right Shift|>>=
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|Unsigned Right Shift|>>>=
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|Bitwise And|&=
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|Boolean And|&=
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|Bitwise Xor|^=
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|Boolean Xor|^=
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|Bitwise Or|\|=
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|Boolean Or|\|=
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|String Concatenation|+=
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|====
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*Errors*
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* If the type of value is unable to match the type of variable or field.
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*Grammar*
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[source,ANTLR4]
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----
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compound_assignment: ( ID | field ) '$=' expression;
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----
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Note the use of the `$=` represents the use of any of the possible binary
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operators.
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*Examples*
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* Compound assignment for each numeric operator.
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+
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[source,Painless]
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----
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2019-04-04 08:41:30 -04:00
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int i = 10; <1>
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i *= 2; <2>
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i /= 5; <3>
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i %= 3; <4>
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i += 5; <5>
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i -= 5; <6>
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i <<= 2; <7>
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i >>= 1; <8>
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i >>>= 1; <9>
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i &= 15; <10>
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i ^= 12; <11>
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i |= 2; <12>
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Painless: Restructure/Clean Up of Spec Documentation (#31013)
Full restructure of the spec into new sections for operators, statements, scripts, functions, lambdas, and regexes. Split of operators into 6 sections, a table, reference, array, numeric, boolean, and general. Clean up of all operators sections. Sporadic clean up else where.
2018-06-07 20:11:56 -04:00
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----
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+
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<1> declare `int i`;
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store `int 10` to `i`
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<2> load from `i` -> `int 10`;
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multiply `int 10` and `int 2` -> `int 20`;
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store `int 20` to `i`;
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(note this is equivalent to `i = i*2`)
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<3> load from `i` -> `int 20`;
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divide `int 20` by `int 5` -> `int 4`;
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store `int 4` to `i`;
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(note this is equivalent to `i = i/5`)
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<4> load from `i` -> `int 4`;
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remainder `int 4` by `int 3` -> `int 1`;
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store `int 1` to `i`;
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(note this is equivalent to `i = i%3`)
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<5> load from `i` -> `int 1`;
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add `int 1` and `int 5` -> `int 6`;
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store `int 6` to `i`;
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(note this is equivalent to `i = i+5`)
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<6> load from `i` -> `int 6`;
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subtract `int 5` from `int 6` -> `int 1`;
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store `int 1` to `i`;
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(note this is equivalent to `i = i-5`)
|
|
|
|
<7> load from `i` -> `int 1`;
|
|
|
|
left shift `int 1` by `int 2` -> `int 4`;
|
|
|
|
store `int 4` to `i`;
|
|
|
|
(note this is equivalent to `i = i<<2`)
|
|
|
|
<8> load from `i` -> `int 4`;
|
|
|
|
right shift `int 4` by `int 1` -> `int 2`;
|
|
|
|
store `int 2` to `i`;
|
|
|
|
(note this is equivalent to `i = i>>1`)
|
|
|
|
<9> load from `i` -> `int 2`;
|
|
|
|
unsigned right shift `int 2` by `int 1` -> `int 1`;
|
|
|
|
store `int 1` to `i`;
|
|
|
|
(note this is equivalent to `i = i>>>1`)
|
|
|
|
<10> load from `i` -> `int 1`;
|
|
|
|
bitwise and `int 1` and `int 15` -> `int 1`;
|
|
|
|
store `int 1` to `i`;
|
|
|
|
(note this is equivalent to `i = i&2`)
|
|
|
|
<11> load from `i` -> `int 1`;
|
|
|
|
bitwise xor `int 1` and `int 12` -> `int 13`;
|
|
|
|
store `int 13` to `i`;
|
|
|
|
(note this is equivalent to `i = i^2`)
|
|
|
|
<12> load from `i` -> `int 13`;
|
|
|
|
bitwise or `int 13` and `int 2` -> `int 15`;
|
|
|
|
store `int 15` to `i`;
|
|
|
|
(note this is equivalent to `i = i|2`)
|
|
|
|
+
|
|
|
|
* Compound assignment for each boolean operator.
|
|
|
|
+
|
|
|
|
[source,Painless]
|
|
|
|
----
|
2019-04-04 08:41:30 -04:00
|
|
|
boolean b = true; <1>
|
|
|
|
b &= false; <2>
|
|
|
|
b ^= false; <3>
|
|
|
|
b |= true; <4>
|
Painless: Restructure/Clean Up of Spec Documentation (#31013)
Full restructure of the spec into new sections for operators, statements, scripts, functions, lambdas, and regexes. Split of operators into 6 sections, a table, reference, array, numeric, boolean, and general. Clean up of all operators sections. Sporadic clean up else where.
2018-06-07 20:11:56 -04:00
|
|
|
----
|
|
|
|
+
|
|
|
|
<1> declare `boolean b`;
|
|
|
|
store `boolean true` in `b`;
|
|
|
|
<2> load from `b` -> `boolean true`;
|
|
|
|
boolean and `boolean true` and `boolean false` -> `boolean false`;
|
|
|
|
store `boolean false` to `b`;
|
|
|
|
(note this is equivalent to `b = b && false`)
|
|
|
|
<3> load from `b` -> `boolean false`;
|
|
|
|
boolean xor `boolean false` and `boolean false` -> `boolean false`;
|
|
|
|
store `boolean false` to `b`;
|
|
|
|
(note this is equivalent to `b = b ^ false`)
|
|
|
|
<4> load from `b` -> `boolean true`;
|
|
|
|
boolean or `boolean false` and `boolean true` -> `boolean true`;
|
|
|
|
store `boolean true` to `b`;
|
|
|
|
(note this is equivalent to `b = b || true`)
|
|
|
|
+
|
|
|
|
* A compound assignment with the string concatenation operator.
|
|
|
|
+
|
|
|
|
[source,Painless]
|
|
|
|
----
|
2019-04-04 08:41:30 -04:00
|
|
|
String s = 'compound'; <1>
|
|
|
|
s += ' assignment'; <2>
|
Painless: Restructure/Clean Up of Spec Documentation (#31013)
Full restructure of the spec into new sections for operators, statements, scripts, functions, lambdas, and regexes. Split of operators into 6 sections, a table, reference, array, numeric, boolean, and general. Clean up of all operators sections. Sporadic clean up else where.
2018-06-07 20:11:56 -04:00
|
|
|
----
|
|
|
|
<1> declare `String s`;
|
|
|
|
store `String 'compound'` to `s`;
|
|
|
|
<2> load from `s` -> `String 'compound'`;
|
|
|
|
string concat `String 'compound'` and `String ' assignment''`
|
|
|
|
-> `String 'compound assignment'`;
|
|
|
|
store `String 'compound assignment'` to `s`;
|
|
|
|
(note this is equivalent to `s = s + ' assignment'`)
|
|
|
|
+
|
|
|
|
* A compound assignment with the `def` type.
|
|
|
|
+
|
|
|
|
[source,Painless]
|
|
|
|
----
|
2019-04-04 08:41:30 -04:00
|
|
|
def x = 1; <1>
|
|
|
|
x += 2; <2>
|
Painless: Restructure/Clean Up of Spec Documentation (#31013)
Full restructure of the spec into new sections for operators, statements, scripts, functions, lambdas, and regexes. Split of operators into 6 sections, a table, reference, array, numeric, boolean, and general. Clean up of all operators sections. Sporadic clean up else where.
2018-06-07 20:11:56 -04:00
|
|
|
----
|
|
|
|
<1> declare `def x`;
|
|
|
|
implicit cast `int 1` to `def`;
|
|
|
|
store `def` to `x`;
|
|
|
|
<2> load from `x` -> `def`;
|
|
|
|
implicit cast `def` to `int 1` -> `int 1`;
|
|
|
|
add `int 1` and `int 2` -> `int 3`;
|
|
|
|
implicit cast `int 3` to `def` -> `def`;
|
|
|
|
store `def` to `x`;
|
|
|
|
(note this is equivalent to `x = x+2`)
|
|
|
|
+
|
|
|
|
* A compound assignment with an extra implicit cast.
|
|
|
|
+
|
|
|
|
[source,Painless]
|
|
|
|
----
|
2019-04-04 08:41:30 -04:00
|
|
|
byte b = 1; <1>
|
|
|
|
b += 2; <2>
|
Painless: Restructure/Clean Up of Spec Documentation (#31013)
Full restructure of the spec into new sections for operators, statements, scripts, functions, lambdas, and regexes. Split of operators into 6 sections, a table, reference, array, numeric, boolean, and general. Clean up of all operators sections. Sporadic clean up else where.
2018-06-07 20:11:56 -04:00
|
|
|
----
|
|
|
|
<1> declare `byte b`;
|
|
|
|
store `byte 1` to `x`;
|
|
|
|
<2> load from `x` -> `byte 1`;
|
|
|
|
implicit cast `byte 1 to `int 1` -> `int 1`;
|
|
|
|
add `int 1` and `int 2` -> `int 3`;
|
|
|
|
implicit cast `int 3` to `byte 3` -> `byte 3`;
|
|
|
|
store `byte 3` to `b`;
|
|
|
|
(note this is equivalent to `b = b+2`)
|