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## compare_shells: dash bash mksh
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## code: foo()
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## status: 2
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## BUG mksh status: 0
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## code: foo() {
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## status: 2
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## OK mksh status: 1
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## code: foo(ls)
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## status: 2
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## OK mksh status: 1
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# dash allows this, but bash does not. The POSIX grammar might not allow
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# this? Because a function body needs a compound command.
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# function_body : compound_command
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# | compound_command redirect_list /* Apply rule 9 */
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## code: one_line() ls; one_line;
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## status: 0
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## OK bash/osh status: 2
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# NOTE: Newline after ( is not OK.
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fun ( ) { echo in-func; }; fun
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## stdout: in-func
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# bash allows this.
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i=0
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j=0
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inc() { i=$((i+5)); }
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inc_subshell() ( j=$((j+5)); )
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inc
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inc_subshell
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echo $i $j
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## stdout: 5 0
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rbrace() { echo }; }; rbrace
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## stdout: }
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# bash accepts; dash doesn't
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func-name.ext ( ) { echo func-name.ext; }
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func-name.ext
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## stdout: func-name.ext
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## OK dash status: 2
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## OK dash stdout-json: ""
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# WOW, bash is so lenient. foo=bar is a command, I suppose. I think I'm doing
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# to disallow this one.
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func-name=ext ( ) { echo func-name=ext; }
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func-name=ext
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## stdout: func-name=ext
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## OK dash status: 2
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## OK dash stdout-json: ""
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## OK mksh status: 1
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## OK mksh stdout-json: ""
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$foo-bar() { ls ; }
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## status: 2
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## OK bash/mksh status: 1
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foo-$(echo hi)() { ls ; }
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## status: 2
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## OK bash/mksh status: 1
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# bash allows this; dash doesn't.
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foo!bar() { ls ; }
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## status: 0
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## OK dash status: 2
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# bash allows this; dash doesn't.
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foo-bar() { ls ; }
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## status: 0
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## OK dash status: 2
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# newline is always a token in "normal" state.
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echo hi; fun ( )
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{ echo in-func; }
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fun
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## STDOUT:
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hi
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in-func
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## END
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# A function definition is a command, so it can be nested
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fun() {
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nested_func() { echo nested; }
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nested_func
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}
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fun
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## stdout: nested
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