ack/lang/m2/comp/scope.C

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/* S C O P E M E C H A N I S M */
static char *RcsId = "$Header$";
#include <assert.h>
#include <alloc.h>
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#include <em_arith.h>
#include <em_label.h>
#include "LLlex.h"
#include "idf.h"
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#include "scope.h"
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#include "type.h"
#include "def.h"
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#include "node.h"
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#include "debug.h"
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static int maxscope; /* maximum assigned scope number */
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struct scope *CurrentScope, *GlobalScope;
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/* STATICALLOCDEF "scope" */
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open_scope(scopetype, scope)
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{
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/* Open a scope that is either open (automatic imports) or closed.
A closed scope is handled by adding an extra entry to the list
with scope number 0. This has two purposes: it makes scope 0
visible, and it marks the end of a visibility list.
Scope 0 is the pervasive scope, the one that is always visible.
A disadvantage of this method is that we cannot open scope 0
explicitly.
*/
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register struct scope *sc = new_scope();
register struct scope *sc1;
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sc->sc_scope = scope == 0 ? ++maxscope : scope;
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sc->sc_forw = 0;
sc->sc_def = 0;
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assert(scopetype == OPENSCOPE || scopetype == CLOSEDSCOPE);
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DO_DEBUG(1, debug("Opening a %s scope",
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scopetype == OPENSCOPE ? "open" : "closed"));
sc1 = CurrentScope;
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if (scopetype == CLOSEDSCOPE) {
sc1 = new_scope();
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sc1->sc_scope = 0; /* Pervasive scope nr */
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sc1->sc_forw = 0;
sc1->sc_def = 0;
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sc1->next = CurrentScope;
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}
sc->next = sc1;
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CurrentScope = sc;
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}
init_scope()
{
register struct scope *sc = new_scope();
sc->sc_scope = 0;
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sc->sc_forw = 0;
sc->sc_def = 0;
CurrentScope = sc;
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}
int
uniq_scope()
{
return ++maxscope;
}
struct forwards {
struct forwards *next;
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struct node fo_tok;
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struct type **fo_ptyp;
};
/* STATICALLOCDEF "forwards" */
Forward(tk, ptp)
struct token *tk;
struct type **ptp;
{
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/* Enter a forward reference into a list belonging to the
current scope. This is used for POINTER declarations, which
may have forward references that must howewer be declared in the
same scope.
*/
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register struct forwards *f = new_forwards();
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f->fo_tok.nd_token = *tk;
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f->fo_ptyp = ptp;
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f->next = CurrentScope->sc_forw;
CurrentScope->sc_forw = f;
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}
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close_scope(flag)
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{
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/* Close a scope. If "flag" is set, check for forward declarations,
either POINTER declarations, or EXPORTs, or forward references
to MODULES
*/
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register struct scope *sc = CurrentScope;
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register struct def *df, *dfback = 0;
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assert(sc != 0);
DO_DEBUG(1, debug("Closing a scope"));
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if (flag) {
if (sc->sc_forw) rem_forwards(sc->sc_forw);
df = sc->sc_def;
while(df) {
if (flag & SC_CHKPROC) {
if (df->df_kind == D_PROCHEAD) {
/* A not defined procedure
*/
node_error(df->for_node, "procedure \"%s\" not defined", df->df_idf->id_text);
FreeNode(df->for_node);
}
}
if ((flag & SC_CHKFORW) &&
df->df_kind & (D_FORWARD|D_FORWMODULE)) {
/* These definitions must be found in
the enclosing closed scope, which of course
may be the scope that is now closed!
*/
struct def *df1 = df->df_nextinscope;
if (scopeclosed(CurrentScope)) {
/* Indeed, the scope was a closed
scope, so give error message
*/
node_error(df->for_node, "identifier \"%s\" not declared", df->df_idf->id_text);
FreeNode(df->for_node);
dfback = df;
}
else {
/* This scope was an open scope.
Maybe the definitions are in the
enclosing scope?
*/
struct scope *sc;
sc = enclosing(CurrentScope);
df->df_nextinscope = sc->sc_def;
sc->sc_def = df;
df->df_scope = sc->sc_scope;
if (dfback) dfback->df_nextinscope = df1;
else sc->sc_def = df1;
}
df = df1;
}
else {
dfback = df;
df = df->df_nextinscope;
}
}
}
if (sc->next && (sc->next->sc_scope == 0)) {
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sc = sc->next;
}
CurrentScope = sc->next;
}
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static
rem_forwards(fo)
struct forwards *fo;
{
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/* When closing a scope, all forward references must be resolved
*/
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register struct forwards *f;
register struct def *df;
struct def *lookfor();
while (f = fo) {
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df = lookfor(&(f->fo_tok), CurrentScope, 1);
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if (!(df->df_kind & (D_TYPE|D_HTYPE|D_ERROR))) {
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node_error(&(f->fo_tok), "identifier \"%s\" not a type",
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df->df_idf->id_text);
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}
*(f->fo_ptyp) = df->df_type;
fo = f->next;
free_forwards(f);
}
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}