add section about conditional compilation
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1 changed files with 98 additions and 4 deletions
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@ -545,7 +545,7 @@ flag `--boundcheck=off`.
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#### Static arrays
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Static arrays are stored on he stack or in static memory, depending on where
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they are defined. They have a fixed, compile-time known length. The length is
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they are defined. They have a fixed, compile time known length. The length is
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part of the type:
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```D
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@ -1357,8 +1357,8 @@ the `-cov` flag. When using DUB, just add the flag `--coverage`.
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### String mixins
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The mixin expression takes an arbitrary string and compiles it and generates instructions accordingly. This is a compile-time feature, so ths string needs
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to be known at compile-time.
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The mixin expression takes an arbitrary string and compiles it and generates instructions accordingly. This is a compile time feature, so ths string needs
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to be known at compile time.
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```D
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mixin("int b = 5"); // compiles just fine
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@ -1369,7 +1369,7 @@ mixin(compileTimeKnownString); // so does this
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assert(c == 5);
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immutable runTimeString = q{int c =5;};
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mixin(runTimeString); // compile error, runTimeString is not known at compile-time
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mixin(runTimeString); // compile error, runTimeString is not known at compile time
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```
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### Compile Time Function Evaluation (CTFE)
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@ -1413,3 +1413,97 @@ void main() {
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cn);
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}
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```
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### Conditional compilation
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D has several methods of conditional compilation which can be used for code
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generation. D’s traits and the module `std.traits` contain many usefull tools
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which can be used with the following constructs.
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#### `static if` & `is`
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`static if` conditionally compiles a code block based on a condition that can be
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evaluated at compile time:
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```D
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foo(int x)() { // x is a template parameter and thus known at compile time
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static if(x == 0)
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writeln("x is 0");
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else
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writeln()
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}
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```
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The `is` expression is used to check for valid types and to compare types:
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```D
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foo(T)() {
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static if(is(T)) {
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writeln("T is a valid type");
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}
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static if(is(T == int)) {
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writeln("T is int");
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}
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static if(is(T : int)) {
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writeln("T implicitly converts to int");
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}
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}
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```
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#### `static foreach`
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`static foreach` allows you to iterate at compile time in order to generate
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code. It is best explained by an example: The code
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```D
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import std.stdio;
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void main() {
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static foreach(element; ["foo", "bar", "baz"]) {
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writeln(element);
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}
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}
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```
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effectively lowers to
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```D
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import std.stdio;
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void main() {
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writeln("foo");
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writeln("bar");
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writeln("baz");
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}
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```
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which means there is no loop at runtime.
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#### Template constraints
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A template may be defined with any number of constraints that enforce some
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properties of the template parameters:
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```D
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void foo(T)(T value)
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if (is(T : long)) { // foo!T only valid if T implicitly converts to long
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}
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foo(42); // compiles, 42 is of type int which implicitly converts to long
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foo("someString"); // compile error, strings do not implicitly convert to long
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```
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```D
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void bar(T)(T value)
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if (__traits(compiles, {T t = T.init; t.fly();})) { // bar!T only valid if we can initialize T and T has a method called fly which takes no parameters
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}
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struct MyStruct {
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void fly() {}
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}
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MyStruct myStruct;
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bar(myStruct); // compiles
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bar(42); // compile error
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```
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