ack/lang/m2/comp/program.g

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/*
* (c) copyright 1987 by the Vrije Universiteit, Amsterdam, The Netherlands.
* See the copyright notice in the ACK home directory, in the file "Copyright".
*
* Author: Ceriel J.H. Jacobs
*/
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/* O V E R A L L S T R U C T U R E */
/* $Header$ */
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{
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#include "debug.h"
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#include <alloc.h>
#include <em_arith.h>
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#include <em_label.h>
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#include "strict3rd.h"
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#include "main.h"
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#include "idf.h"
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#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 "node.h"
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#include "f_info.h"
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#include "warning.h"
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extern t_def *GetDefinitionModule();
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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
{
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register t_def *df;
t_node *exportlist;
int qualified;
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} :
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MODULE IDENT { df = DefineLocalModule(dot.TOK_IDF); }
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priority(&(df->mod_priority))
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';'
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import(1)*
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export(&qualified, &exportlist)
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{ if (options['g']) stb_string(df, D_MODULE); }
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block(&(df->mod_body))
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IDENT { EnterExportList(exportlist, qualified);
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if (options['g']) stb_string(df, D_END);
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close_scope(SC_CHKFORW|SC_CHKPROC|SC_REVERSE);
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match_id(df->df_idf, dot.TOK_IDF);
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}
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;
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priority(register t_node **prio;):
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[
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'[' ConstExpression(prio) ']'
{ if (! ((*prio)->nd_type->tp_fund & T_CARDINAL)) {
node_error(*prio, "illegal priority");
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}
}
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|
]
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;
export(int *QUALflag; t_node **ExportList;):
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{ *ExportList = 0; *QUALflag = D_EXPORTED; }
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[
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EXPORT
[
QUALIFIED
{ *QUALflag = D_QEXPORTED; }
|
]
IdentList(ExportList) ';'
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|
]
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;
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import(int local;)
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{
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t_node *ImportList;
register t_node *FromId = 0;
register t_def *df;
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} :
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/*
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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[ FROM
IDENT { FromId = dot2leaf(Name);
if (local) {
df = lookfor(FromId,enclosing(CurrVis),0,D_USED);
}
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else df = GetDefinitionModule(dot.TOK_IDF, 1);
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}
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IMPORT IdentList(&ImportList) ';'
{ EnterFromImportList(ImportList, df, FromId); }
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|
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IMPORT IdentList(&ImportList) ';'
{ EnterImportList(ImportList,
local,
enclosing(CurrVis)->sc_scope);
}
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]
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{
FreeNode(ImportList);
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}
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;
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DefinitionModule
{
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register t_def *df;
t_node *exportlist;
int dummy;
extern t_idf *DefId;
extern int ForeignFlag;
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extern char *sprint();
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register t_scope *currscope = CurrentScope;
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char buf[512];
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} :
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DEFINITION
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MODULE IDENT { df = define(dot.TOK_IDF, GlobalScope, D_MODULE);
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df->df_flags |= D_BUSY | ForeignFlag;
currscope->sc_definedby = df;
if (DefId && df->df_idf != DefId) {
error("DEFINITION MODULE name is \"%s\", not \"%s\"",
df->df_idf->id_text, DefId->id_text);
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}
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sprint(buf, "_%s_", df->df_idf->id_text);
currscope->sc_name = Salloc(buf, (unsigned) strlen(buf) + 1);
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df->mod_vis = CurrVis;
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df->df_type = standard_type(T_RECORD, 1, (arith) 1);
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df->df_type->rec_scope = currscope;
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DefinitionModule++;
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if (!Defined) {
Defined = df;
if (options['g']) stb_string(df, D_MODULE);
}
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}
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';'
import(0)*
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export(&dummy, &exportlist)
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/* New Modula-2 does not have export lists in definition
modules. Issue a warning.
*/
{
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if (exportlist) {
#ifndef STRICT_3RD_ED
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if (! options['3'])
node_warning(exportlist, W_OLDFASHIONED, "export list in definition module ignored");
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else
#endif
error("export list not allowed in definition module");
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FreeNode(exportlist);
}
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}
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definition* END IDENT
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{ end_definition_list(&(currscope->sc_def));
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DefinitionModule--;
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match_id(df->df_idf, dot.TOK_IDF);
df->df_flags &= ~D_BUSY;
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}
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'.'
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;
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definition
{
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register t_def *df;
t_def *dummy;
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} :
CONST [ %persistent ConstantDeclaration ';' ]*
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|
TYPE
[ %persistent
IDENT { df = define(dot.TOK_IDF, CurrentScope, D_TYPE); }
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[ '=' type(&(df->df_type))
{ SolveForwardTypeRefs(df); }
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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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df->df_type = construct_type(T_HIDDEN, NULLTYPE);
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}
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]
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';'
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{ if (options['g']) stb_string(df, D_TYPE); }
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]*
|
VAR [ %persistent VariableDeclaration ';' ]*
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|
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ProcedureHeading(&dummy, D_PROCHEAD) ';'
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;
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ProgramModule
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{
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register t_def *df;
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} :
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MODULE
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IDENT { if (state == IMPLEMENTATION) {
df = GetDefinitionModule(dot.TOK_IDF, 0);
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CurrVis = df->mod_vis;
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}
else {
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Defined = df = define(dot.TOK_IDF, GlobalScope, D_MODULE);
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open_scope(CLOSEDSCOPE);
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df->mod_vis = CurrVis;
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CurrentScope->sc_name = "__M2M_";
CurrentScope->sc_definedby = df;
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if (options['g']) stb_string(df, D_MODULE);
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}
}
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priority(&(df->mod_priority))
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';' import(0)*
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block(&(df->mod_body)) IDENT
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{ if (options['g']) stb_string(df, D_END);
close_scope(SC_CHKFORW|SC_CHKPROC|SC_REVERSE);
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match_id(df->df_idf, dot.TOK_IDF);
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}
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'.'
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;
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CompilationUnit:
{ error("Compiling a definition module");
open_scope(CLOSEDSCOPE);
state = DEFINITION;
}
DefinitionModule
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{ close_scope(SC_CHKFORW); }
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| %default
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[
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IMPLEMENTATION
{ state = IMPLEMENTATION; }
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|
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/* empty */
{ state = PROGRAM; }
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]
ProgramModule
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;