ack/lang/m2/comp/program.g

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/* O V E R A L L S T R U C T U R E */
{
static char *RcsId = "$Header$";
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#include <alloc.h>
#include <em_arith.h>
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#include <em_label.h>
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#include "idf.h"
#include "misc.h"
#include "main.h"
#include "LLlex.h"
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#include "scope.h"
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#include "def.h"
#include "type.h"
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#include "debug.h"
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}
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/*
The grammar as given by Wirth is already almost LL(1); the
main problem is that the full form of a qualified designator
may be:
[ module_ident '.' ]* IDENT [ '.' field_ident ]*
which is quite confusing to an LL(1) parser. Rather than
resorting to context-sensitive techniques, I have decided
to render this as:
IDENT [ '.' IDENT ]*
on the grounds that it is quite natural to consider the first
IDENT to be the name of the object and regard the others as
field identifiers.
*/
%lexical LLlex;
%start CompUnit, CompilationUnit;
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%start DefModule, DefinitionModule;
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ModuleDeclaration
{
struct idf *id;
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struct def *df;
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} :
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MODULE IDENT {
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id = dot.TOK_IDF;
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df = define(id, CurrentScope, D_MODULE);
open_scope(CLOSEDSCOPE, 0);
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df->mod_scope = CurrentScope->sc_scope;
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}
priority? ';'
import(1)*
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export(0)?
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block
IDENT { close_scope();
match_id(id, dot.TOK_IDF);
}
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;
priority:
'[' ConstExpression ']'
;
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export(int def;)
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{
struct id_list *ExportList;
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int QUALflag = 0;
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} :
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EXPORT
[
QUALIFIED { QUALflag = 1; }
]?
IdentList(&ExportList) ';'
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{
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if (!def) Export(ExportList, QUALflag);
else warning("export list in definition module ignored");
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FreeIdList(ExportList);
}
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;
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import(int local;)
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{
struct id_list *ImportList;
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struct idf *id = 0;
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} :
[ FROM
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IDENT { id = dot.TOK_IDF; }
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]?
IMPORT IdentList(&ImportList) ';'
/*
When parsing a global module, this is the place where we must
read already compiled definition modules.
If the FROM clause is present, the identifier in it is a module
name, otherwise the names in the import list are module names.
*/
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{
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Import(ImportList, id, local);
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FreeIdList(ImportList);
}
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;
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DefinitionModule
{
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register struct def *df;
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struct idf *id;
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} :
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DEFINITION { state = DEFINITION; }
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MODULE IDENT { id = dot.TOK_IDF;
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df = define(id, GlobalScope, D_MODULE);
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open_scope(CLOSEDSCOPE, 0);
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df->mod_scope = CurrentScope->sc_scope;
DO_DEBUG(debug(1, "Definition module \"%s\"", id->id_text));
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}
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';'
import(0)*
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export(1)?
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/* New Modula-2 does not have export lists in definition modules.
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*/
definition* END IDENT '.'
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{
df = CurrentScope->sc_def;
while (df) {
/* Make all definitions "QUALIFIED EXPORT" */
df->df_flags |= D_QEXPORTED;
df = df->df_nextinscope;
}
close_scope();
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match_id(id, dot.TOK_IDF);
}
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;
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definition
{
struct def *df;
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struct type *tp;
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} :
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CONST [ ConstantDeclaration ';' ]*
|
TYPE
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[ IDENT { df = define(dot.TOK_IDF, CurrentScope, D_TYPE); }
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[ '=' type(&tp)
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| /* empty */
/*
Here, the exported type has a hidden implementation.
The export is said to be opaque.
It is restricted to pointer types.
*/
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{ df->df_kind = D_HIDDEN; }
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]
';'
]*
|
VAR [ VariableDeclaration ';' ]*
|
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ProcedureHeading(&df, D_PROCHEAD) ';'
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;
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ProgramModule
{
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struct idf *id;
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struct def *df, *GetDefinitionModule();
int scope = 0;
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} :
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MODULE { if (state != IMPLEMENTATION) state = PROGRAM; }
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IDENT {
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id = dot.TOK_IDF;
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if (state == IMPLEMENTATION) {
df = GetDefinitionModule(id);
scope = df->mod_scope;
}
open_scope(CLOSEDSCOPE, scope);
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}
priority?
';' import(0)*
block IDENT
{ close_scope();
match_id(id, dot.TOK_IDF);
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}
'.'
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;
Module:
DefinitionModule
|
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[
IMPLEMENTATION { state = IMPLEMENTATION; }
]?
ProgramModule
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;
CompilationUnit:
Module
;