adding null
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@ -18,7 +18,6 @@ Holey-Bytes-Language (hblang for short) (*.hb) is the only true language targeti
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hblang knows what it isn't, because it knows what it is, hblang computes this by sub...
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hblang knows what it isn't, because it knows what it is, hblang computes this by sub...
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## Examples
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## Examples
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Examples are also used in tests. To add an example that runs during testing add:
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Examples are also used in tests. To add an example that runs during testing add:
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@ -30,9 +29,9 @@ Examples are also used in tests. To add an example that runs during testing add:
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</pre>
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</pre>
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and also:
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and also:
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```rs
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```rs
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<name> => README;
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<name>;
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```
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```
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to the `run_tests` macro at the bottom of the `src/codegen.rs`.
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to the `run_tests` macro at the bottom of the `src/son.rs`.
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### Tour Examples
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### Tour Examples
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@ -129,6 +128,9 @@ fib := fn(n: uint): uint {
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#### pointers
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#### pointers
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```hb
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```hb
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main := fn(): uint {
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main := fn(): uint {
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n := @as(^uint, null)
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if n != null return 9001
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a := 1
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a := 1
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b := &a
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b := &a
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@ -289,14 +291,14 @@ foo := fn(): uint return 0
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arbitrary text
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arbitrary text
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```
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```
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- `@use(<string>)`: imports a module based of string, the string is passed to a loader that can be customized, default loader uses following syntax:
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- `@use(<string>)`: imports a module based on relative path, cycles are allowed when importing
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- `((rel:|)(<path>)|git:<git-addr>:<path>)`: `rel:` and `''` prefixes both mean module is located at `path` relavive to the current file, `git:` takes a git url without `https://` passed as `git-addr`, `path` then refers to file within the repository
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- `@TypeOf(<expr>)`: results into literal type of whatever the type of `<expr>` is, `<expr>` is not included in final binary
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- `@TypeOf(<expr>)`: results into literal type of whatever the type of `<expr>` is, `<expr>` is not included in final binary
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- `@as(<ty>, <expr>)`: huint to the compiler that `@TypeOf(<expr>) == <ty>`
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- `@as(<ty>, <expr>)`: hint to the compiler that `@TypeOf(<expr>) == <ty>`
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- `@intcast(<expr>)`: needs to be used when conversion of `@TypeOf(<expr>)` would loose precision (widening of integers is implicit)
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- `@intcast(<expr>)`: needs to be used when conversion of `@TypeOf(<expr>)` would loose precision (widening of integers is implicit)
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- `@sizeof(<ty>), @alignof(<ty>)`: I think explaining this would insult your intelligence
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- `@sizeof(<ty>), @alignof(<ty>)`: get size and align of a type in bytes
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- `@bitcast(<expr>)`: tell compiler to assume `@TypeOf(<expr>)` is whatever is inferred, so long as size and alignment did not change
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- `@bitcast(<expr>)`: tell compiler to assume `@TypeOf(<expr>)` is whatever is inferred, so long as size matches
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- `@eca(<ty>, ...<expr>)`: invoke `eca` instruction, where `<ty>` is the type this will return and `<expr>...` are arguments passed to the call
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- `@eca(...<expr>)`: invoke `eca` instruction, where return type is inferred and `<expr>...` are arguments passed to the call in the standard call convention
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- `@embed(<string>)`: include relative file as an array of bytes
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- `@inline(<func>, ...<args>)`: equivalent to `<func>(...<args>)` but function is guaranteed to inline, compiler will otherwise never inline
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- `@inline(<func>, ...<args>)`: equivalent to `<func>(...<args>)` but function is guaranteed to inline, compiler will otherwise never inline
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#### c_strings
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#### c_strings
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@ -396,6 +398,7 @@ main := fn(): uint {
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return big_array[42]
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return big_array[42]
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}
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}
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```
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```
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note: this does not work on scalar values
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#### generic_functions
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#### generic_functions
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```hb
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```hb
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@ -368,6 +368,7 @@ impl<'a> Formatter<'a> {
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}
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}
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Expr::Bool { value, .. } => f.write_str(if value { "true" } else { "false" }),
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Expr::Bool { value, .. } => f.write_str(if value { "true" } else { "false" }),
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Expr::Idk { .. } => f.write_str("idk"),
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Expr::Idk { .. } => f.write_str("idk"),
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Expr::Null { .. } => f.write_str("null"),
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Expr::BinOp {
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Expr::BinOp {
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left,
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left,
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op: TokenKind::Assign,
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op: TokenKind::Assign,
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@ -131,6 +131,7 @@ pub enum TokenKind {
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Packed,
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Packed,
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True,
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True,
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False,
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False,
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Null,
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Idk,
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Idk,
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Ctor,
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Ctor,
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@ -267,6 +268,7 @@ gen_token_kind! {
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Packed = b"packed",
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Packed = b"packed",
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True = b"true",
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True = b"true",
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False = b"false",
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False = b"false",
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Null = b"null",
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Idk = b"idk",
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Idk = b"idk",
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#[punkt]
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#[punkt]
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Ctor = ".{",
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Ctor = ".{",
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@ -335,6 +335,7 @@ impl<'a, 'b> Parser<'a, 'b> {
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},
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},
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T::True => E::Bool { pos, value: true },
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T::True => E::Bool { pos, value: true },
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T::False => E::Bool { pos, value: false },
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T::False => E::Bool { pos, value: false },
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T::Null => E::Null { pos },
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T::Idk => E::Idk { pos },
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T::Idk => E::Idk { pos },
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T::DQuote => E::String { pos, literal: self.tok_str(token) },
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T::DQuote => E::String { pos, literal: self.tok_str(token) },
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T::Packed => {
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T::Packed => {
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@ -881,6 +882,10 @@ generate_expr! {
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pos: Pos,
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pos: Pos,
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value: bool,
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value: bool,
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},
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},
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/// `'null'`
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Null {
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pos: Pos,
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},
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/// `'idk'`
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/// `'idk'`
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Idk {
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Idk {
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pos: Pos,
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pos: Pos,
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@ -1714,6 +1714,30 @@ impl<'a> Codegen<'a> {
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fn raw_expr_ctx(&mut self, expr: &Expr, ctx: Ctx) -> Option<Value> {
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fn raw_expr_ctx(&mut self, expr: &Expr, ctx: Ctx) -> Option<Value> {
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// ordered by complexity of the expression
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// ordered by complexity of the expression
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match *expr {
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match *expr {
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Expr::Null { pos } => {
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let Some(ty) = ctx.ty else {
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self.report(
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pos,
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"resulting pointer cannot be inferred from context, \
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consider using `@as(^<ty>, null)` to hint the type",
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);
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return Value::NEVER;
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};
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if !ty.is_pointer() {
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self.report(
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pos,
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fa!(
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"'null' expression was inferred to be '{}',
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which is not a pointer (and that is not supported yet)",
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self.ty_display(ty)
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),
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);
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return Value::NEVER;
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}
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Some(self.ci.nodes.new_node_lit(ty, Kind::CInt { value: 0 }, [VOID]))
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}
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Expr::Idk { pos } => {
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Expr::Idk { pos } => {
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let Some(ty) = ctx.ty else {
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let Some(ty) = ctx.ty else {
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self.report(
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self.report(
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}
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}
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ref e => {
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ref e => {
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self.report_unhandled_ast(e, "bruh");
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self.report_unhandled_ast(e, "bruh");
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Some(Value::VOID)
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Value::NEVER
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}
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}
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}
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}
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}
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}
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