Files
mruby-mruby/src/proc.c
T
KOBAYASHI Shuji 89f591485b Change name and usage of presym macros
To be also able to build mruby without presym in the future. However,
`MRB_QSYM` has been removed and changed as follows:

### Example

|       Type                | Symbol |  Previous Style  |   New Style    |
|---------------------------|--------|------------------|----------------|
| Operator                  | &      | MRB_QSYM(and)    | MRB_OPSYM(and) |
| Class Variable            | @@foo  | MRB_QSYM(00_foo) | MRB_CVSYM(foo) |
| Instance Variable         | @foo   | MRB_QSYM(0_foo)  | MRB_IVSYM(foo) |
| Method with Bang          | foo!   | MRB_QSYM(foo_b)  | MRB_SYM_B(foo) |
| Method with Question mark | foo?   | MRB_QSYM(foo_p)  | MRB_SYM_Q(foo) |
| Mmethod with Equal        | foo=   | MRB_QSYM(foo_e)  | MRB_SYM_E(foo) |

This change makes it possible to define, for example, `MRB_IVSYM(foo)` as
`mrb_intern_lit(mrb, "@" "foo")`, which is useful if we support building
without presym in the future.
2020-11-13 13:41:20 +09:00

323 lines
7.9 KiB
C

/*
** proc.c - Proc class
**
** See Copyright Notice in mruby.h
*/
#include <mruby.h>
#include <mruby/class.h>
#include <mruby/proc.h>
#include <mruby/opcode.h>
#include <mruby/data.h>
static const mrb_code call_iseq[] = {
OP_CALL,
};
static const mrb_irep call_irep = {
0, /* nlocals */
2, /* nregs */
0, /* clen */
MRB_ISEQ_NO_FREE | MRB_IREP_NO_FREE, /* flags */
call_iseq, /* iseq */
NULL, /* pool */
NULL, /* syms */
NULL, /* reps */
NULL, /* lv */
NULL, /* debug_info */
1, /* ilen */
0, /* plen */
0, /* slen */
1, /* rlen */
0, /* refcnt */
};
struct RProc*
mrb_proc_new(mrb_state *mrb, const mrb_irep *irep)
{
struct RProc *p;
mrb_callinfo *ci = mrb->c->ci;
p = (struct RProc*)mrb_obj_alloc(mrb, MRB_TT_PROC, mrb->proc_class);
if (ci) {
struct RClass *tc = NULL;
if (ci->proc) {
tc = MRB_PROC_TARGET_CLASS(ci->proc);
}
if (tc == NULL) {
tc = ci->target_class;
}
p->upper = ci->proc;
p->e.target_class = tc;
}
p->body.irep = irep;
mrb_irep_incref(mrb, (mrb_irep*)irep);
return p;
}
struct REnv*
mrb_env_new(mrb_state *mrb, struct mrb_context *c, mrb_callinfo *ci, int nstacks, mrb_value *stack, struct RClass *tc)
{
struct REnv *e;
mrb_int bidx;
e = (struct REnv*)mrb_obj_alloc(mrb, MRB_TT_ENV, tc);
MRB_ENV_SET_LEN(e, nstacks);
bidx = ci->argc;
if (bidx < 0) bidx = 2;
else bidx += 1;
MRB_ENV_SET_BIDX(e, bidx);
e->mid = ci->mid;
e->stack = stack;
e->cxt = c;
return e;
}
static void
closure_setup(mrb_state *mrb, struct RProc *p)
{
mrb_callinfo *ci = mrb->c->ci;
const struct RProc *up = p->upper;
struct REnv *e = NULL;
if (ci && ci->env) {
e = ci->env;
}
else if (up) {
struct RClass *tc = MRB_PROC_TARGET_CLASS(p);
e = mrb_env_new(mrb, mrb->c, ci, up->body.irep->nlocals, mrb->c->stack, tc);
ci->env = e;
if (MRB_PROC_ENV_P(up) && MRB_PROC_ENV(up)->cxt == NULL) {
e->mid = MRB_PROC_ENV(up)->mid;
}
}
if (e) {
p->e.env = e;
p->flags |= MRB_PROC_ENVSET;
mrb_field_write_barrier(mrb, (struct RBasic*)p, (struct RBasic*)e);
}
}
struct RProc*
mrb_closure_new(mrb_state *mrb, const mrb_irep *irep)
{
struct RProc *p = mrb_proc_new(mrb, irep);
closure_setup(mrb, p);
return p;
}
MRB_API struct RProc*
mrb_proc_new_cfunc(mrb_state *mrb, mrb_func_t func)
{
struct RProc *p;
p = (struct RProc*)mrb_obj_alloc(mrb, MRB_TT_PROC, mrb->proc_class);
p->body.func = func;
p->flags |= MRB_PROC_CFUNC_FL;
p->upper = 0;
p->e.target_class = 0;
return p;
}
MRB_API struct RProc*
mrb_proc_new_cfunc_with_env(mrb_state *mrb, mrb_func_t func, mrb_int argc, const mrb_value *argv)
{
struct RProc *p = mrb_proc_new_cfunc(mrb, func);
struct REnv *e;
int i;
p->e.env = e = mrb_env_new(mrb, mrb->c, mrb->c->ci, 0, NULL, NULL);
p->flags |= MRB_PROC_ENVSET;
mrb_field_write_barrier(mrb, (struct RBasic*)p, (struct RBasic*)e);
MRB_ENV_CLOSE(e);
e->stack = (mrb_value*)mrb_malloc(mrb, sizeof(mrb_value) * argc);
MRB_ENV_SET_LEN(e, argc);
if (argv) {
for (i = 0; i < argc; ++i) {
e->stack[i] = argv[i];
}
}
else {
for (i = 0; i < argc; ++i) {
SET_NIL_VALUE(e->stack[i]);
}
}
return p;
}
MRB_API struct RProc*
mrb_closure_new_cfunc(mrb_state *mrb, mrb_func_t func, int nlocals)
{
return mrb_proc_new_cfunc_with_env(mrb, func, nlocals, NULL);
}
MRB_API mrb_value
mrb_proc_cfunc_env_get(mrb_state *mrb, mrb_int idx)
{
const struct RProc *p = mrb->c->ci->proc;
struct REnv *e;
if (!p || !MRB_PROC_CFUNC_P(p)) {
mrb_raise(mrb, E_TYPE_ERROR, "Can't get cfunc env from non-cfunc proc.");
}
e = MRB_PROC_ENV(p);
if (!e) {
mrb_raise(mrb, E_TYPE_ERROR, "Can't get cfunc env from cfunc Proc without REnv.");
}
if (idx < 0 || MRB_ENV_LEN(e) <= idx) {
mrb_raisef(mrb, E_INDEX_ERROR, "Env index out of range: %i (expected: 0 <= index < %i)",
idx, MRB_ENV_LEN(e));
}
return e->stack[idx];
}
void
mrb_proc_copy(struct RProc *a, struct RProc *b)
{
if (a->body.irep) {
/* already initialized proc */
return;
}
a->flags = b->flags;
a->body = b->body;
if (!MRB_PROC_CFUNC_P(a) && a->body.irep) {
mrb_irep_incref(NULL, (mrb_irep*)a->body.irep);
}
a->upper = b->upper;
a->e.env = b->e.env;
/* a->e.target_class = a->e.target_class; */
}
static mrb_value
mrb_proc_s_new(mrb_state *mrb, mrb_value proc_class)
{
mrb_value blk;
mrb_value proc;
struct RProc *p;
/* Calling Proc.new without a block is not implemented yet */
mrb_get_args(mrb, "&!", &blk);
p = (struct RProc *)mrb_obj_alloc(mrb, MRB_TT_PROC, mrb_class_ptr(proc_class));
mrb_proc_copy(p, mrb_proc_ptr(blk));
proc = mrb_obj_value(p);
mrb_funcall_with_block(mrb, proc, MRB_SYM(initialize), 0, NULL, proc);
if (!MRB_PROC_STRICT_P(p) &&
mrb->c->ci > mrb->c->cibase && MRB_PROC_ENV(p) == mrb->c->ci[-1].env) {
p->flags |= MRB_PROC_ORPHAN;
}
return proc;
}
static mrb_value
mrb_proc_init_copy(mrb_state *mrb, mrb_value self)
{
mrb_value proc = mrb_get_arg1(mrb);
if (!mrb_proc_p(proc)) {
mrb_raise(mrb, E_ARGUMENT_ERROR, "not a proc");
}
mrb_proc_copy(mrb_proc_ptr(self), mrb_proc_ptr(proc));
return self;
}
/* 15.2.17.4.2 */
static mrb_value
proc_arity(mrb_state *mrb, mrb_value self)
{
return mrb_int_value(mrb, mrb_proc_arity(mrb_proc_ptr(self)));
}
/* 15.3.1.2.6 */
/* 15.3.1.3.27 */
/*
* call-seq:
* lambda { |...| block } -> a_proc
*
* Equivalent to <code>Proc.new</code>, except the resulting Proc objects
* check the number of parameters passed when called.
*/
static mrb_value
proc_lambda(mrb_state *mrb, mrb_value self)
{
mrb_value blk;
struct RProc *p;
mrb_get_args(mrb, "&", &blk);
if (mrb_nil_p(blk)) {
mrb_raise(mrb, E_ARGUMENT_ERROR, "tried to create Proc object without a block");
}
if (!mrb_proc_p(blk)) {
mrb_raise(mrb, E_ARGUMENT_ERROR, "not a proc");
}
p = mrb_proc_ptr(blk);
if (!MRB_PROC_STRICT_P(p)) {
struct RProc *p2 = (struct RProc*)mrb_obj_alloc(mrb, MRB_TT_PROC, p->c);
mrb_proc_copy(p2, p);
p2->flags |= MRB_PROC_STRICT;
return mrb_obj_value(p2);
}
return blk;
}
mrb_int
mrb_proc_arity(const struct RProc *p)
{
const mrb_irep *irep;
const mrb_code *pc;
mrb_aspec aspec;
int ma, op, ra, pa, arity;
if (MRB_PROC_CFUNC_P(p)) {
/* TODO cfunc aspec not implemented yet */
return -1;
}
irep = p->body.irep;
if (!irep) {
return 0;
}
pc = irep->iseq;
/* arity is depend on OP_ENTER */
if (*pc != OP_ENTER) {
return 0;
}
aspec = PEEK_W(pc+1);
ma = MRB_ASPEC_REQ(aspec);
op = MRB_ASPEC_OPT(aspec);
ra = MRB_ASPEC_REST(aspec);
pa = MRB_ASPEC_POST(aspec);
arity = ra || (MRB_PROC_STRICT_P(p) && op) ? -(ma + pa + 1) : ma + pa;
return arity;
}
void
mrb_init_proc(mrb_state *mrb)
{
struct RProc *p;
mrb_method_t m;
mrb_define_class_method(mrb, mrb->proc_class, "new", mrb_proc_s_new, MRB_ARGS_NONE()|MRB_ARGS_BLOCK());
mrb_define_method(mrb, mrb->proc_class, "initialize_copy", mrb_proc_init_copy, MRB_ARGS_REQ(1));
mrb_define_method(mrb, mrb->proc_class, "arity", proc_arity, MRB_ARGS_NONE());
p = mrb_proc_new(mrb, &call_irep);
MRB_METHOD_FROM_PROC(m, p);
mrb_define_method_raw(mrb, mrb->proc_class, MRB_SYM(call), m);
mrb_define_method_raw(mrb, mrb->proc_class, MRB_OPSYM(aref), m);
mrb_define_class_method(mrb, mrb->kernel_module, "lambda", proc_lambda, MRB_ARGS_NONE()|MRB_ARGS_BLOCK()); /* 15.3.1.2.6 */
mrb_define_method(mrb, mrb->kernel_module, "lambda", proc_lambda, MRB_ARGS_NONE()|MRB_ARGS_BLOCK()); /* 15.3.1.3.27 */
}