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gpgscm: Refactor checking for opcode arguments.

* tests/gpgscm/scheme.c (op_code_info): Fix type, add forward
declaration.
(check_arguments): New function.
(Eval_cycle): Use the new function.

Signed-off-by: Justus Winter <justus@g10code.com>
This commit is contained in:
Justus Winter 2017-04-03 11:25:49 +02:00
parent b628e62b5b
commit f3d1f68677
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GPG Key ID: DD1A52F9DA8C9020

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@ -438,6 +438,14 @@ static pointer reverse_in_place(scheme *sc, pointer term, pointer list);
static pointer revappend(scheme *sc, pointer a, pointer b);
static void dump_stack_mark(scheme *);
static pointer opexe_0(scheme *sc, enum scheme_opcodes op);
struct op_code_info {
char name[31]; /* strlen ("call-with-current-continuation") + 1 */
unsigned char min_arity;
unsigned char max_arity;
char arg_tests_encoding[3];
};
static const struct op_code_info dispatch_table[];
static int check_arguments (scheme *sc, const struct op_code_info *pcd, char *msg, size_t msg_size);
static void Eval_Cycle(scheme *sc, enum scheme_opcodes op);
static void assign_syntax(scheme *sc, enum scheme_opcodes op, char *name);
static int syntaxnum(scheme *sc, pointer p);
@ -5230,16 +5238,9 @@ static const struct {
#define TST_INTEGER "\015"
#define TST_NATURAL "\016"
typedef struct {
char name[31]; /* strlen ("call-with-current-continuation") + 1 */
unsigned char min_arity;
unsigned char max_arity;
char arg_tests_encoding[3];
} op_code_info;
#define INF_ARG 0xff
static const op_code_info dispatch_table[]= {
static const struct op_code_info dispatch_table[]= {
#define _OP_DEF(A,B,C,D,OP) {{A},B,C,{D}},
#include "opdefines.h"
#undef _OP_DEF
@ -5255,64 +5256,73 @@ static const char *procname(pointer x) {
return name;
}
static int
check_arguments (scheme *sc, const struct op_code_info *pcd, char *msg, size_t msg_size)
{
int ok = 1;
int n = list_length(sc, sc->args);
/* Check number of arguments */
if (n < pcd->min_arity) {
ok = 0;
snprintf(msg, msg_size, "%s: needs%s %d argument(s)",
pcd->name,
pcd->min_arity == pcd->max_arity ? "" : " at least",
pcd->min_arity);
}
if (ok && n>pcd->max_arity) {
ok = 0;
snprintf(msg, msg_size, "%s: needs%s %d argument(s)",
pcd->name,
pcd->min_arity == pcd->max_arity ? "" : " at most",
pcd->max_arity);
}
if (ok) {
if (pcd->arg_tests_encoding[0] != 0) {
int i = 0;
int j;
const char *t = pcd->arg_tests_encoding;
pointer arglist = sc->args;
do {
pointer arg = car(arglist);
j = (int)t[0];
if (j == TST_LIST[0]) {
if (arg != sc->NIL && !is_pair(arg)) break;
} else {
if (!tests[j].fct(arg)) break;
}
if (t[1] != 0 && i < sizeof pcd->arg_tests_encoding) {
/* last test is replicated as necessary */
t++;
}
arglist = cdr(arglist);
i++;
} while (i < n);
if (i < n) {
ok = 0;
snprintf(msg, msg_size, "%s: argument %d must be: %s, got: %s",
pcd->name,
i + 1,
tests[j].kind,
type_to_string(type(car(arglist))));
}
}
}
return ok;
}
/* kernel of this interpreter */
static void Eval_Cycle(scheme *sc, enum scheme_opcodes op) {
sc->op = op;
for (;;) {
const op_code_info *pcd=dispatch_table+sc->op;
const struct op_code_info *pcd=dispatch_table+sc->op;
if (pcd->name[0] != 0) { /* if built-in function, check arguments */
char msg[STRBUFFSIZE];
int ok=1;
int n=list_length(sc,sc->args);
/* Check number of arguments */
if(n<pcd->min_arity) {
ok=0;
snprintf(msg, STRBUFFSIZE, "%s: needs%s %d argument(s)",
pcd->name,
pcd->min_arity==pcd->max_arity?"":" at least",
pcd->min_arity);
}
if(ok && n>pcd->max_arity) {
ok=0;
snprintf(msg, STRBUFFSIZE, "%s: needs%s %d argument(s)",
pcd->name,
pcd->min_arity==pcd->max_arity?"":" at most",
pcd->max_arity);
}
if(ok) {
if (pcd->arg_tests_encoding[0] != 0) {
int i=0;
int j;
const char *t=pcd->arg_tests_encoding;
pointer arglist=sc->args;
do {
pointer arg=car(arglist);
j=(int)t[0];
if(j==TST_LIST[0]) {
if(arg!=sc->NIL && !is_pair(arg)) break;
} else {
if(!tests[j].fct(arg)) break;
}
if (t[1] != 0 && i < sizeof pcd->arg_tests_encoding) {
/* last test is replicated as necessary */
t++;
}
arglist=cdr(arglist);
i++;
} while(i<n);
if(i<n) {
ok=0;
snprintf(msg, STRBUFFSIZE, "%s: argument %d must be: %s, got: %s",
pcd->name,
i+1,
tests[j].kind,
type_to_string(type(car(arglist))));
}
}
}
if(!ok) {
if (! check_arguments (sc, pcd, msg, sizeof msg)) {
if(_Error_1(sc,msg,0)==sc->NIL) {
return;
}