Add the ability to ignore errors in ExprTags
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README.md
14
README.md
@ -26,6 +26,7 @@ Salix's syntax is similar to Leaf and (in my opinion at least), it's much more f
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- [Global Functions](#global-functions)
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- [Adding Custom Functions](#adding-custom-functions)
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- [Expressions](#expressions)
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- [Ignoring errors](#ignoring-errors)
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- [Ternary Expressions](#ternary-expressions)
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- [Coalescing operator](#coalescing-operator)
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- [The `in` operator](#the-in-operator)
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@ -189,6 +190,19 @@ You can include custom functions as variables using the WithVarMap method on tem
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Salix's expressions mostly work like Go's, but there are some extra features worth mentioning.
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### Ignoring errors
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If you'd like to ignore errors in an expression tag, you can do that by adding a question mark at the end.
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```html
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<!-- This would return an error if example wasn't defined or if it didn't have an Example() method -->
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#(example.Example())
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<!-- This would ignore any error and keep executing the rest of the template -->
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#(example.Example())?
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```
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### Ternary Expressions
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Salix supports ternary expressions, which allow you to choose a value based on whether a condition is true. For example:
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@ -32,8 +32,9 @@ func (t Tag) Pos() Position {
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}
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type ExprTag struct {
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Value Node
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Position Position
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Value Node
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IgnoreError bool
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Position Position
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}
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func (et ExprTag) Pos() Position {
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@ -13,4 +13,4 @@
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</div>
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#!for
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</body>
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</html>
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</html>
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647
parser/parser.go
647
parser/parser.go
File diff suppressed because it is too large
Load Diff
@ -75,10 +75,11 @@ EndTag = "#!" name:Ident {
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}, nil
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}
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ExprTag = "#(" item:Expr ')' {
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ExprTag = "#(" item:Expr ')' ignoreErr:'?'? {
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return ast.ExprTag{
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Value: item.(ast.Node),
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Position: getPos(c),
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Value: item.(ast.Node),
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IgnoreError: ignoreErr != nil,
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Position: getPos(c),
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}, nil
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}
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@ -248,4 +249,4 @@ ArithmeticOp = ('+' / '-' / '/' / '*' / '%') {
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Text = . [^#]* { return ast.Text{Data: c.text, Position: getPos(c)}, nil }
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_ "whitespace" ← [ \t\r\n]*
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_ "whitespace" ← [ \t\r\n]*
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6
salix.go
6
salix.go
@ -112,7 +112,11 @@ func (t *Template) execute(w io.Writer, nodes []ast.Node, local map[string]any)
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case ast.ExprTag:
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v, err := t.getValue(node.Value, local)
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if err != nil {
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return err
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if node.IgnoreError {
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continue
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} else {
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return err
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}
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}
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if _, ok := v.(ast.Assignment); ok {
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continue
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