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https://github.com/ethereum/solidity
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Change terminology used for input output parameters
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@ -2,23 +2,22 @@
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Expressions and Control Structures
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##################################
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.. index:: ! parameter, parameter;input, parameter;output, parameter;multiple
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.. index:: ! parameter, parameter;input, parameter;output, function parameter, parameter;function, return variable, variable;return, return
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Input Parameters and Output Parameters
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======================================
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Function Parameters and Return Variables
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========================================
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As in Javascript, functions may take parameters as input;
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unlike in Javascript and C, they may also return arbitrary number of
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parameters as output.
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As in JavaScript, functions may take parameters as input. Unlike in JavaScript
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and C, functions may also return an arbitrary number of values as output.
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Input Parameters
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----------------
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Function Parameters
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-------------------
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The input parameters are declared the same way as variables are.
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The name of unused parameters can be omitted.
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For example, suppose we want our contract to
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accept one kind of external calls with two integers, we would write
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something like::
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Function parameters are declared the same way as variables, and the name of
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unused parameters can be omitted.
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For example, if you want your contract to accept one kind of external call
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with two integers, you would use something like::
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pragma solidity >=0.4.16 <0.6.0;
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@ -29,18 +28,18 @@ something like::
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}
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}
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Input parameters can be used just as any other local variable
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can be used, they can also be assigned to.
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Function parameters can be used as any other local variable and they can also be assigned to.
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.. index:: return array, return string, array, string, array of strings, dynamic array, variably sized array, return struct, struct
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Output Parameters
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-----------------
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Return Variables
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----------------
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The output parameters can be declared with the same syntax after the
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``returns`` keyword. For example, suppose we wished to return two results:
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the sum and the product of the two given integers, then we would
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write::
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Function return variables are declared with the same syntax after the
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``returns`` keyword.
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For example, suppose you want to return two results: the sum and the product of
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two integers passed as function parameters, then you use something like::
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pragma solidity >=0.4.16 <0.6.0;
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@ -55,12 +54,31 @@ write::
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}
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}
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The names of output parameters can be omitted.
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The return values can be specified using ``return`` statements,
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which are also capable of :ref:`returning multiple values<multi-return>`.
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Return parameters can be used as any other local variable and they
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are zero-initialized; if they are not explicitly
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set, they stay zero.
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The names of return variables can be omitted.
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Return variables can be used as any other local variable and they
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are zero-initialized. If they are not explicitly
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set, they stay zero value.
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You can either explicitly assign to return variables and
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then leave the function using ``return;``,
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or you can provide return values
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(either a single or :ref:`multiple ones<multi-return>`) directly with the ``return``
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statement::
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pragma solidity >=0.4.16 <0.6.0;
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contract Simple {
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function arithmetic(uint _a, uint _b)
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public
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pure
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returns (uint o_sum, uint o_product)
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{
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return (_a + _b, _a * _b);
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}
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}
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This form is equivalent to first assigning values to the
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return variables and then using ``return;`` to leave the function.
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.. note::
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@ -90,12 +108,12 @@ Solidity.
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.. _multi-return:
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Returning Multiple Values
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-------------------------
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Returning Multiple Variables
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----------------------------
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When a function has multiple output parameters, ``return (v0, v1, ...,
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When a function has multiple return types, ``return (v0, v1, ...,
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vn)`` can return multiple values. The number of components must be
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the same as the number of output parameters.
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the same as the number of return types.
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.. index:: ! function;call, function;internal, function;external
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