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forked from aniani/vim

patch 9.0.1250: cannot use an object method with :defer

Problem:    Cannot use an object method with :defer. (Ernie Rael)
Solution:   Find the object method and generate code to call it.
            (closes #11886)
This commit is contained in:
Bram Moolenaar
2023-01-27 20:14:02 +00:00
parent 657aea7fc4
commit 8dbab1d8ce
8 changed files with 99 additions and 21 deletions

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@@ -5,7 +5,7 @@ isn_T *generate_instr_type(cctx_T *cctx, isntype_T isn_type, type_T *type);
isn_T *generate_instr_debug(cctx_T *cctx); isn_T *generate_instr_debug(cctx_T *cctx);
int generate_CONSTRUCT(cctx_T *cctx, class_T *cl); int generate_CONSTRUCT(cctx_T *cctx, class_T *cl);
int generate_GET_OBJ_MEMBER(cctx_T *cctx, int idx, type_T *type); int generate_GET_OBJ_MEMBER(cctx_T *cctx, int idx, type_T *type);
int generate_GET_ITF_MEMBER(cctx_T *cctx, class_T *itf, int itf_idx, type_T *type); int generate_GET_ITF_MEMBER(cctx_T *cctx, class_T *itf, int idx, type_T *type);
int generate_STORE_THIS(cctx_T *cctx, int idx); int generate_STORE_THIS(cctx_T *cctx, int idx);
int may_generate_2STRING(int offset, int tolerant, cctx_T *cctx); int may_generate_2STRING(int offset, int tolerant, cctx_T *cctx);
int generate_add_instr(cctx_T *cctx, vartype_T vartype, type_T *type1, type_T *type2, exprtype_T expr_type); int generate_add_instr(cctx_T *cctx, vartype_T vartype, type_T *type1, type_T *type2, exprtype_T expr_type);
@@ -61,7 +61,7 @@ int generate_CALL(cctx_T *cctx, ufunc_T *ufunc, int pushed_argcount);
int generate_UCALL(cctx_T *cctx, char_u *name, int argcount); int generate_UCALL(cctx_T *cctx, char_u *name, int argcount);
int check_func_args_from_type(cctx_T *cctx, type_T *type, int argcount, int at_top, char_u *name); int check_func_args_from_type(cctx_T *cctx, type_T *type, int argcount, int at_top, char_u *name);
int generate_PCALL(cctx_T *cctx, int argcount, char_u *name, type_T *type, int at_top); int generate_PCALL(cctx_T *cctx, int argcount, char_u *name, type_T *type, int at_top);
int generate_DEFER(cctx_T *cctx, int var_idx, int argcount); int generate_DEFER(cctx_T *cctx, int var_idx, int obj_method, int argcount);
int generate_STRINGMEMBER(cctx_T *cctx, char_u *name, size_t len); int generate_STRINGMEMBER(cctx_T *cctx, char_u *name, size_t len);
int generate_ECHO(cctx_T *cctx, int with_white, int count); int generate_ECHO(cctx_T *cctx, int with_white, int count);
int generate_MULT_EXPR(cctx_T *cctx, isntype_T isn_type, int count); int generate_MULT_EXPR(cctx_T *cctx, isntype_T isn_type, int count);

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@@ -1331,5 +1331,35 @@ def Test_closure_in_class()
v9.CheckScriptSuccess(lines) v9.CheckScriptSuccess(lines)
enddef enddef
def Test_defer_with_object()
var lines =<< trim END
vim9script
class CWithEE
def Enter()
g:result ..= "entered/"
enddef
def Exit()
g:result ..= "exited"
enddef
endclass
def With(ee: CWithEE, F: func)
ee.Enter()
defer ee.Exit()
F()
enddef
g:result = ''
var obj = CWithEE.new()
obj->With(() => {
g:result ..= "called/"
})
assert_equal('entered/called/exited', g:result)
END
v9.CheckScriptSuccess(lines)
unlet g:result
enddef
" vim: ts=8 sw=2 sts=2 expandtab tw=80 fdm=marker " vim: ts=8 sw=2 sts=2 expandtab tw=80 fdm=marker

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@@ -695,6 +695,8 @@ static char *(features[]) =
static int included_patches[] = static int included_patches[] =
{ /* Add new patch number below this line */ { /* Add new patch number below this line */
/**/
1250,
/**/ /**/
1249, 1249,
/**/ /**/

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@@ -122,6 +122,7 @@ typedef enum {
ISN_NEWFUNC, // create a global function from a lambda function ISN_NEWFUNC, // create a global function from a lambda function
ISN_DEF, // list functions ISN_DEF, // list functions
ISN_DEFER, // :defer argument count is isn_arg.number ISN_DEFER, // :defer argument count is isn_arg.number
ISN_DEFEROBJ, // idem, function is an object method
// expression operations // expression operations
ISN_JUMP, // jump if condition is matched isn_arg.jump ISN_JUMP, // jump if condition is matched isn_arg.jump

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@@ -1910,6 +1910,7 @@ compile_defer(char_u *arg_start, cctx_T *cctx)
int defer_var_idx; int defer_var_idx;
type_T *type; type_T *type;
int func_idx; int func_idx;
int obj_method = 0;
// Get a funcref for the function name. // Get a funcref for the function name.
// TODO: better way to find the "(". // TODO: better way to find the "(".
@@ -1925,8 +1926,15 @@ compile_defer(char_u *arg_start, cctx_T *cctx)
// TODO: better type // TODO: better type
generate_PUSHFUNC(cctx, (char_u *)internal_func_name(func_idx), generate_PUSHFUNC(cctx, (char_u *)internal_func_name(func_idx),
&t_func_any, FALSE); &t_func_any, FALSE);
else if (compile_expr0(&arg, cctx) == FAIL) else
return NULL; {
int typecount = cctx->ctx_type_stack.ga_len;
if (compile_expr0(&arg, cctx) == FAIL)
return NULL;
if (cctx->ctx_type_stack.ga_len >= typecount + 2)
// must have seen "obj.Func", pushed an object and a function
obj_method = 1;
}
*paren = '('; *paren = '(';
// check for function type // check for function type
@@ -1958,7 +1966,7 @@ compile_defer(char_u *arg_start, cctx_T *cctx)
defer_var_idx = get_defer_var_idx(cctx); defer_var_idx = get_defer_var_idx(cctx);
if (defer_var_idx == 0) if (defer_var_idx == 0)
return NULL; return NULL;
if (generate_DEFER(cctx, defer_var_idx - 1, argcount) == FAIL) if (generate_DEFER(cctx, defer_var_idx - 1, obj_method, argcount) == FAIL)
return NULL; return NULL;
return skipwhite(arg); return skipwhite(arg);

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@@ -973,9 +973,10 @@ add_defer_item(int var_idx, int argcount, ectx_T *ectx)
* Returns OK or FAIL. * Returns OK or FAIL.
*/ */
static int static int
defer_command(int var_idx, int argcount, ectx_T *ectx) defer_command(int var_idx, int has_obj, int argcount, ectx_T *ectx)
{ {
list_T *l = add_defer_item(var_idx, argcount, ectx); int obj_off = has_obj ? 1 : 0;
list_T *l = add_defer_item(var_idx, argcount + obj_off, ectx);
int i; int i;
typval_T *func_tv; typval_T *func_tv;
@@ -983,23 +984,25 @@ defer_command(int var_idx, int argcount, ectx_T *ectx)
return FAIL; return FAIL;
func_tv = STACK_TV_BOT(-argcount - 1); func_tv = STACK_TV_BOT(-argcount - 1);
if (func_tv->v_type != VAR_FUNC && func_tv->v_type != VAR_PARTIAL) if (has_obj ? func_tv->v_type != VAR_PARTIAL : func_tv->v_type != VAR_FUNC)
{ {
semsg(_(e_expected_str_but_got_str), semsg(_(e_expected_str_but_got_str),
"function or partial", has_obj ? "partial" : "function",
vartype_name(func_tv->v_type)); vartype_name(func_tv->v_type));
return FAIL; return FAIL;
} }
list_set_item(l, 0, func_tv); list_set_item(l, 0, func_tv);
if (has_obj)
list_set_item(l, 1, STACK_TV_BOT(-argcount - 2));
for (i = 0; i < argcount; ++i) for (i = 0; i < argcount; ++i)
list_set_item(l, i + 1, STACK_TV_BOT(-argcount + i)); list_set_item(l, i + 1 + obj_off, STACK_TV_BOT(-argcount + i));
ectx->ec_stack.ga_len -= argcount + 1; ectx->ec_stack.ga_len -= argcount + 1 + obj_off;
return OK; return OK;
} }
/* /*
* Add a deferred function "name" with one argument "arg_tv". * Add a deferred call for "name" with arguments "argvars[argcount]".
* Consumes "name", also on failure. * Consumes "name", also on failure.
* Only to be called when in_def_function() returns TRUE. * Only to be called when in_def_function() returns TRUE.
*/ */
@@ -1056,19 +1059,31 @@ invoke_defer_funcs(ectx_T *ectx)
typval_T argvars[MAX_FUNC_ARGS]; typval_T argvars[MAX_FUNC_ARGS];
int i; int i;
listitem_T *arg_li = l->lv_first; listitem_T *arg_li = l->lv_first;
funcexe_T funcexe; typval_T *functv = &l->lv_first->li_tv;
int obj_off = functv->v_type == VAR_PARTIAL ? 1 : 0;
int argcount = l->lv_len - 1 - obj_off;
for (i = 0; i < l->lv_len - 1; ++i) if (obj_off == 1)
arg_li = arg_li->li_next; // second list item is the object
for (i = 0; i < argcount; ++i)
{ {
arg_li = arg_li->li_next; arg_li = arg_li->li_next;
argvars[i] = arg_li->li_tv; argvars[i] = arg_li->li_tv;
} }
funcexe_T funcexe;
CLEAR_FIELD(funcexe); CLEAR_FIELD(funcexe);
funcexe.fe_evaluate = TRUE; funcexe.fe_evaluate = TRUE;
rettv.v_type = VAR_UNKNOWN; rettv.v_type = VAR_UNKNOWN;
(void)call_func(l->lv_first->li_tv.vval.v_string, -1, if (functv->v_type == VAR_PARTIAL)
&rettv, l->lv_len - 1, argvars, &funcexe); {
funcexe.fe_partial = functv->vval.v_partial;
funcexe.fe_object = l->lv_first->li_next->li_tv.vval.v_object;
if (funcexe.fe_object != NULL)
++funcexe.fe_object->obj_refcount;
}
(void)call_func(functv->vval.v_string, -1,
&rettv, argcount, argvars, &funcexe);
clear_tv(&rettv); clear_tv(&rettv);
} }
} }
@@ -4170,7 +4185,9 @@ exec_instructions(ectx_T *ectx)
// :defer func(arg) // :defer func(arg)
case ISN_DEFER: case ISN_DEFER:
case ISN_DEFEROBJ:
if (defer_command(iptr->isn_arg.defer.defer_var_idx, if (defer_command(iptr->isn_arg.defer.defer_var_idx,
iptr->isn_type == ISN_DEFEROBJ,
iptr->isn_arg.defer.defer_argcount, ectx) == FAIL) iptr->isn_arg.defer.defer_argcount, ectx) == FAIL)
goto on_error; goto on_error;
break; break;
@@ -6640,7 +6657,9 @@ list_instructions(char *pfx, isn_T *instr, int instr_count, ufunc_T *ufunc)
smsg("%s%4d PCALL end", pfx, current); smsg("%s%4d PCALL end", pfx, current);
break; break;
case ISN_DEFER: case ISN_DEFER:
smsg("%s%4d DEFER %d args", pfx, current, case ISN_DEFEROBJ:
smsg("%s%4d %s %d args", pfx, current,
iptr->isn_type == ISN_DEFER ? "DEFER" : "DEFEROBJ",
(int)iptr->isn_arg.defer.defer_argcount); (int)iptr->isn_arg.defer.defer_argcount);
break; break;
case ISN_RETURN: case ISN_RETURN:

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@@ -370,6 +370,17 @@ compile_class_object_index(cctx_T *cctx, char_u **arg, type_T *type)
} }
} }
// Could be a function reference: "obj.Func".
for (int i = 0; i < cl->class_obj_method_count; ++i)
{
ufunc_T *fp = cl->class_obj_methods[i];
// Use a separate pointer to avoid that ASAN complains about
// uf_name[] only being 4 characters.
char_u *ufname = (char_u *)fp->uf_name;
if (STRNCMP(name, ufname, len) == 0 && ufname[len] == NUL)
return generate_FUNCREF(cctx, fp, NULL);
}
semsg(_(e_member_not_found_on_object_str_str), cl->class_name, name); semsg(_(e_member_not_found_on_object_str_str), cl->class_name, name);
} }
else else

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@@ -1329,8 +1329,6 @@ generate_NEWDICT(cctx_T *cctx, int count, int use_null)
/* /*
* Generate an ISN_FUNCREF instruction. * Generate an ISN_FUNCREF instruction.
* "isnp" is set to the instruction, so that fr_dfunc_idx can be set later. * "isnp" is set to the instruction, so that fr_dfunc_idx can be set later.
* If variables were declared inside a loop "loop_var_idx" is the index of the
* first one and "loop_var_count" the number of variables declared.
*/ */
int int
generate_FUNCREF( generate_FUNCREF(
@@ -1362,7 +1360,12 @@ generate_FUNCREF(
if (ufunc->uf_def_status == UF_NOT_COMPILED) if (ufunc->uf_def_status == UF_NOT_COMPILED)
extra->fre_func_name = vim_strsave(ufunc->uf_name); extra->fre_func_name = vim_strsave(ufunc->uf_name);
else else
{
if (isnp == NULL && ufunc->uf_def_status == UF_TO_BE_COMPILED)
// compile the function now, we need the uf_dfunc_idx value
(void)compile_def_function(ufunc, FALSE, CT_NONE, NULL);
isn->isn_arg.funcref.fr_dfunc_idx = ufunc->uf_dfunc_idx; isn->isn_arg.funcref.fr_dfunc_idx = ufunc->uf_dfunc_idx;
}
// Reserve an extra variable to keep track of the number of closures // Reserve an extra variable to keep track of the number of closures
// created. // created.
@@ -1942,14 +1945,17 @@ generate_PCALL(
/* /*
* Generate an ISN_DEFER instruction. * Generate an ISN_DEFER instruction.
* "obj_method" is one for "obj.Method()", zero otherwise.
*/ */
int int
generate_DEFER(cctx_T *cctx, int var_idx, int argcount) generate_DEFER(cctx_T *cctx, int var_idx, int obj_method, int argcount)
{ {
isn_T *isn; isn_T *isn;
RETURN_OK_IF_SKIP(cctx); RETURN_OK_IF_SKIP(cctx);
if ((isn = generate_instr_drop(cctx, ISN_DEFER, argcount + 1)) == NULL) if ((isn = generate_instr_drop(cctx,
obj_method == 0 ? ISN_DEFER : ISN_DEFEROBJ,
argcount + 1)) == NULL)
return FAIL; return FAIL;
isn->isn_arg.defer.defer_var_idx = var_idx; isn->isn_arg.defer.defer_var_idx = var_idx;
isn->isn_arg.defer.defer_argcount = argcount; isn->isn_arg.defer.defer_argcount = argcount;
@@ -2568,6 +2574,7 @@ delete_instr(isn_T *isn)
case ISN_COND2BOOL: case ISN_COND2BOOL:
case ISN_DEBUG: case ISN_DEBUG:
case ISN_DEFER: case ISN_DEFER:
case ISN_DEFEROBJ:
case ISN_DROP: case ISN_DROP:
case ISN_ECHO: case ISN_ECHO:
case ISN_ECHOCONSOLE: case ISN_ECHOCONSOLE: