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eval.c
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eval.c
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/* vi:set ts=8 sts=4 sw=4 noet:
*
* VIM - Vi IMproved by Bram Moolenaar
*
* Do ":help uganda" in Vim to read copying and usage conditions.
* Do ":help credits" in Vim to see a list of people who contributed.
* See README.txt for an overview of the Vim source code.
*/
/*
* eval.c: Expression evaluation.
*/
#define USING_FLOAT_STUFF
#include "vim.h"
#if defined(FEAT_EVAL) || defined(PROTO)
#ifdef VMS
# include <float.h>
#endif
#define NAMESPACE_CHAR (char_u *)"abglstvw"
/*
* When recursively copying lists and dicts we need to remember which ones we
* have done to avoid endless recursiveness. This unique ID is used for that.
* The last bit is used for previous_funccal, ignored when comparing.
*/
static int current_copyID = 0;
static int eval2(char_u **arg, typval_T *rettv, evalarg_T *evalarg);
static int eval3(char_u **arg, typval_T *rettv, evalarg_T *evalarg);
static int eval4(char_u **arg, typval_T *rettv, evalarg_T *evalarg);
static int eval5(char_u **arg, typval_T *rettv, evalarg_T *evalarg);
static int eval6(char_u **arg, typval_T *rettv, evalarg_T *evalarg);
static int eval7(char_u **arg, typval_T *rettv, evalarg_T *evalarg, int want_string);
static int eval8(char_u **arg, typval_T *rettv, evalarg_T *evalarg, int want_string);
static int eval9(char_u **arg, typval_T *rettv, evalarg_T *evalarg, int want_string);
static int eval9_leader(typval_T *rettv, int numeric_only, char_u *start_leader, char_u **end_leaderp);
static int free_unref_items(int copyID);
static char_u *make_expanded_name(char_u *in_start, char_u *expr_start, char_u *expr_end, char_u *in_end);
/*
* Return "n1" divided by "n2", taking care of dividing by zero.
* If "failed" is not NULL set it to TRUE when dividing by zero fails.
*/
varnumber_T
num_divide(varnumber_T n1, varnumber_T n2, int *failed)
{
varnumber_T result;
if (n2 == 0)
{
if (in_vim9script())
{
emsg(_(e_divide_by_zero));
if (failed != NULL)
*failed = TRUE;
}
if (n1 == 0)
result = VARNUM_MIN; // similar to NaN
else if (n1 < 0)
result = -VARNUM_MAX;
else
result = VARNUM_MAX;
}
else if (n1 == VARNUM_MIN && n2 == -1)
{
// specific case: trying to do VARNUM_MIN / -1 results in a positive
// number that doesn't fit in varnumber_T and causes an FPE
result = VARNUM_MAX;
}
else
result = n1 / n2;
return result;
}
/*
* Return "n1" modulus "n2", taking care of dividing by zero.
* If "failed" is not NULL set it to TRUE when dividing by zero fails.
*/
varnumber_T
num_modulus(varnumber_T n1, varnumber_T n2, int *failed)
{
if (n2 == 0 && in_vim9script())
{
emsg(_(e_divide_by_zero));
if (failed != NULL)
*failed = TRUE;
}
return (n2 == 0) ? 0 : (n1 % n2);
}
/*
* Initialize the global and v: variables.
*/
void
eval_init(void)
{
evalvars_init();
func_init();
}
#if defined(EXITFREE) || defined(PROTO)
void
eval_clear(void)
{
evalvars_clear();
free_scriptnames(); // must come after evalvars_clear().
free_locales();
// autoloaded script names
free_autoload_scriptnames();
// unreferenced lists and dicts
(void)garbage_collect(FALSE);
// functions not garbage collected
free_all_functions();
}
#endif
void
fill_evalarg_from_eap(evalarg_T *evalarg, exarg_T *eap, int skip)
{
init_evalarg(evalarg);
evalarg->eval_flags = skip ? 0 : EVAL_EVALUATE;
if (eap == NULL)
return;
evalarg->eval_cstack = eap->cstack;
if (sourcing_a_script(eap) || eap->ea_getline == get_list_line)
{
evalarg->eval_getline = eap->ea_getline;
evalarg->eval_cookie = eap->cookie;
}
}
/*
* Top level evaluation function, returning a boolean.
* Sets "error" to TRUE if there was an error.
* Return TRUE or FALSE.
*/
int
eval_to_bool(
char_u *arg,
int *error,
exarg_T *eap,
int skip, // only parse, don't execute
int use_simple_function)
{
typval_T tv;
varnumber_T retval = FALSE;
evalarg_T evalarg;
int r;
fill_evalarg_from_eap(&evalarg, eap, skip);
if (skip)
++emsg_skip;
if (use_simple_function)
r = eval0_simple_funccal(arg, &tv, eap, &evalarg);
else
r = eval0(arg, &tv, eap, &evalarg);
if (r == FAIL)
*error = TRUE;
else
{
*error = FALSE;
if (!skip)
{
if (in_vim9script())
retval = tv_get_bool_chk(&tv, error);
else
retval = (tv_get_number_chk(&tv, error) != 0);
clear_tv(&tv);
}
}
if (skip)
--emsg_skip;
clear_evalarg(&evalarg, eap);
return (int)retval;
}
/*
* Call eval1() and give an error message if not done at a lower level.
*/
static int
eval1_emsg(char_u **arg, typval_T *rettv, exarg_T *eap)
{
char_u *start = *arg;
int ret;
int did_emsg_before = did_emsg;
int called_emsg_before = called_emsg;
evalarg_T evalarg;
fill_evalarg_from_eap(&evalarg, eap, eap != NULL && eap->skip);
ret = eval1(arg, rettv, &evalarg);
if (ret == FAIL)
{
// Report the invalid expression unless the expression evaluation has
// been cancelled due to an aborting error, an interrupt, or an
// exception, or we already gave a more specific error.
// Also check called_emsg for when using assert_fails().
if (!aborting() && did_emsg == did_emsg_before
&& called_emsg == called_emsg_before)
semsg(_(e_invalid_expression_str), start);
}
clear_evalarg(&evalarg, eap);
return ret;
}
/*
* Return whether a typval is a valid expression to pass to eval_expr_typval()
* or eval_expr_to_bool(). An empty string returns FALSE;
*/
int
eval_expr_valid_arg(typval_T *tv)
{
return tv->v_type != VAR_UNKNOWN
&& (tv->v_type != VAR_STRING
|| (tv->vval.v_string != NULL && *tv->vval.v_string != NUL));
}
/*
* When calling eval_expr_typval() many times we only need one funccall_T.
* Returns NULL when no funccall_T is to be used.
* When returning non-NULL remove_funccal() must be called later.
*/
funccall_T *
eval_expr_get_funccal(typval_T *expr, typval_T *rettv)
{
if (expr->v_type != VAR_PARTIAL)
return NULL;
partial_T *partial = expr->vval.v_partial;
if (partial == NULL)
return NULL;
if (partial->pt_func == NULL
|| partial->pt_func->uf_def_status == UF_NOT_COMPILED)
return NULL;
return create_funccal(partial->pt_func, rettv);
}
/*
* Evaluate an expression, which can be a function, partial or string.
* Pass arguments "argv[argc]".
* If "want_func" is TRUE treat a string as a function name, not an expression.
* "fc_arg" is from eval_expr_get_funccal() or NULL;
* Return the result in "rettv" and OK or FAIL.
*/
int
eval_expr_typval(
typval_T *expr,
int want_func,
typval_T *argv,
int argc,
funccall_T *fc_arg,
typval_T *rettv)
{
char_u *s;
char_u buf[NUMBUFLEN];
funcexe_T funcexe;
if (expr->v_type == VAR_PARTIAL)
{
partial_T *partial = expr->vval.v_partial;
if (partial == NULL)
return FAIL;
if (partial->pt_func != NULL
&& partial->pt_func->uf_def_status != UF_NOT_COMPILED)
{
funccall_T *fc = fc_arg != NULL ? fc_arg
: create_funccal(partial->pt_func, rettv);
int r;
if (fc == NULL)
return FAIL;
// Shortcut to call a compiled function with minimal overhead.
r = call_def_function(partial->pt_func, argc, argv,
DEF_USE_PT_ARGV, partial, NULL, fc, rettv);
if (fc_arg == NULL)
remove_funccal();
if (r == FAIL)
return FAIL;
}
else
{
s = partial_name(partial);
if (s == NULL || *s == NUL)
return FAIL;
CLEAR_FIELD(funcexe);
funcexe.fe_evaluate = TRUE;
funcexe.fe_partial = partial;
if (call_func(s, -1, rettv, argc, argv, &funcexe) == FAIL)
return FAIL;
}
}
else if (expr->v_type == VAR_INSTR)
{
return exe_typval_instr(expr, rettv);
}
else if (expr->v_type == VAR_FUNC || want_func)
{
s = expr->v_type == VAR_FUNC
? expr->vval.v_string
: tv_get_string_buf_chk_strict(expr, buf, in_vim9script());
if (s == NULL || *s == NUL)
return FAIL;
CLEAR_FIELD(funcexe);
funcexe.fe_evaluate = TRUE;
if (call_func(s, -1, rettv, argc, argv, &funcexe) == FAIL)
return FAIL;
}
else
{
s = tv_get_string_buf_chk_strict(expr, buf, in_vim9script());
if (s == NULL)
return FAIL;
s = skipwhite(s);
if (eval1_emsg(&s, rettv, NULL) == FAIL)
return FAIL;
if (*skipwhite(s) != NUL) // check for trailing chars after expr
{
clear_tv(rettv);
semsg(_(e_invalid_expression_str), s);
return FAIL;
}
}
return OK;
}
/*
* Like eval_to_bool() but using a typval_T instead of a string.
* Works for string, funcref and partial.
*/
int
eval_expr_to_bool(typval_T *expr, int *error)
{
typval_T rettv;
int res;
if (eval_expr_typval(expr, FALSE, NULL, 0, NULL, &rettv) == FAIL)
{
*error = TRUE;
return FALSE;
}
res = (tv_get_bool_chk(&rettv, error) != 0);
clear_tv(&rettv);
return res;
}
/*
* Top level evaluation function, returning a string. If "skip" is TRUE,
* only parsing to "nextcmd" is done, without reporting errors. Return
* pointer to allocated memory, or NULL for failure or when "skip" is TRUE.
*/
char_u *
eval_to_string_skip(
char_u *arg,
exarg_T *eap,
int skip) // only parse, don't execute
{
typval_T tv;
char_u *retval;
evalarg_T evalarg;
fill_evalarg_from_eap(&evalarg, eap, skip);
if (skip)
++emsg_skip;
if (eval0(arg, &tv, eap, &evalarg) == FAIL || skip)
retval = NULL;
else
{
retval = vim_strsave(tv_get_string(&tv));
clear_tv(&tv);
}
if (skip)
--emsg_skip;
clear_evalarg(&evalarg, eap);
return retval;
}
/*
* Initialize "evalarg" for use.
*/
void
init_evalarg(evalarg_T *evalarg)
{
CLEAR_POINTER(evalarg);
ga_init2(&evalarg->eval_tofree_ga, sizeof(char_u *), 20);
}
/*
* If "evalarg->eval_tofree" is not NULL free it later.
* Caller is expected to overwrite "evalarg->eval_tofree" next.
*/
static void
free_eval_tofree_later(evalarg_T *evalarg)
{
if (evalarg->eval_tofree == NULL)
return;
if (ga_grow(&evalarg->eval_tofree_ga, 1) == OK)
((char_u **)evalarg->eval_tofree_ga.ga_data)
[evalarg->eval_tofree_ga.ga_len++]
= evalarg->eval_tofree;
else
vim_free(evalarg->eval_tofree);
}
/*
* After using "evalarg" filled from "eap": free the memory.
*/
void
clear_evalarg(evalarg_T *evalarg, exarg_T *eap)
{
if (evalarg == NULL)
return;
garray_T *etga = &evalarg->eval_tofree_ga;
if (evalarg->eval_tofree != NULL || evalarg->eval_using_cmdline)
{
if (eap != NULL)
{
// We may need to keep the original command line, e.g. for
// ":let" it has the variable names. But we may also need
// the new one, "nextcmd" points into it. Keep both.
vim_free(eap->cmdline_tofree);
eap->cmdline_tofree = *eap->cmdlinep;
if (evalarg->eval_using_cmdline && etga->ga_len > 0)
{
// "nextcmd" points into the last line in eval_tofree_ga,
// need to keep it around.
--etga->ga_len;
*eap->cmdlinep = ((char_u **)etga->ga_data)[etga->ga_len];
vim_free(evalarg->eval_tofree);
}
else
*eap->cmdlinep = evalarg->eval_tofree;
}
else
vim_free(evalarg->eval_tofree);
evalarg->eval_tofree = NULL;
}
ga_clear_strings(etga);
VIM_CLEAR(evalarg->eval_tofree_lambda);
}
/*
* Skip over an expression at "*pp".
* Return FAIL for an error, OK otherwise.
*/
int
skip_expr(char_u **pp, evalarg_T *evalarg)
{
typval_T rettv;
*pp = skipwhite(*pp);
return eval1(pp, &rettv, evalarg);
}
/*
* Skip over an expression at "*arg".
* If in Vim9 script and line breaks are encountered, the lines are
* concatenated. "evalarg->eval_tofree" will be set accordingly.
* "arg" is advanced to just after the expression.
* "start" is set to the start of the expression, "end" to just after the end.
* Also when the expression is copied to allocated memory.
* Return FAIL for an error, OK otherwise.
*/
int
skip_expr_concatenate(
char_u **arg,
char_u **start,
char_u **end,
evalarg_T *evalarg)
{
typval_T rettv;
int res;
int vim9script = in_vim9script();
garray_T *gap = evalarg == NULL ? NULL : &evalarg->eval_ga;
garray_T *freegap = evalarg == NULL ? NULL : &evalarg->eval_freega;
int save_flags = evalarg == NULL ? 0 : evalarg->eval_flags;
int evaluate = evalarg == NULL
? FALSE : (evalarg->eval_flags & EVAL_EVALUATE);
if (vim9script && evaluate
&& (evalarg->eval_cookie != NULL || evalarg->eval_cctx != NULL))
{
ga_init2(gap, sizeof(char_u *), 10);
// leave room for "start"
if (ga_grow(gap, 1) == OK)
++gap->ga_len;
ga_init2(freegap, sizeof(char_u *), 10);
}
*start = *arg;
// Don't evaluate the expression.
if (evalarg != NULL)
evalarg->eval_flags &= ~EVAL_EVALUATE;
*arg = skipwhite(*arg);
res = eval1(arg, &rettv, evalarg);
*end = *arg;
if (evalarg != NULL)
evalarg->eval_flags = save_flags;
if (vim9script && evaluate
&& (evalarg->eval_cookie != NULL || evalarg->eval_cctx != NULL))
{
if (evalarg->eval_ga.ga_len == 1)
{
// just the one line, no need to concatenate
ga_clear(gap);
gap->ga_itemsize = 0;
}
else
{
char_u *p;
size_t endoff = STRLEN(*arg);
// Line breaks encountered, concatenate all the lines.
*((char_u **)gap->ga_data) = *start;
p = ga_concat_strings(gap, " ");
// free the lines only when using getsourceline()
if (evalarg->eval_cookie != NULL)
{
// Do not free the first line, the caller can still use it.
*((char_u **)gap->ga_data) = NULL;
// Do not free the last line, "arg" points into it, free it
// later. Also free "eval_tofree" later if needed.
free_eval_tofree_later(evalarg);
evalarg->eval_tofree =
((char_u **)gap->ga_data)[gap->ga_len - 1];
((char_u **)gap->ga_data)[gap->ga_len - 1] = NULL;
ga_clear_strings(gap);
}
else
{
ga_clear(gap);
// free lines that were explicitly marked for freeing
ga_clear_strings(freegap);
}
gap->ga_itemsize = 0;
if (p == NULL)
return FAIL;
*start = p;
vim_free(evalarg->eval_tofree_lambda);
evalarg->eval_tofree_lambda = p;
// Compute "end" relative to the end.
*end = *start + STRLEN(*start) - endoff;
}
}
return res;
}
/*
* Convert "tv" to a string.
* When "convert" is TRUE convert a List into a sequence of lines.
* Returns an allocated string (NULL when out of memory).
*/
char_u *
typval2string(typval_T *tv, int convert)
{
garray_T ga;
char_u *retval;
if (convert && tv->v_type == VAR_LIST)
{
ga_init2(&ga, sizeof(char), 80);
if (tv->vval.v_list != NULL)
{
list_join(&ga, tv->vval.v_list, (char_u *)"\n", TRUE, FALSE, 0);
if (tv->vval.v_list->lv_len > 0)
ga_append(&ga, NL);
}
ga_append(&ga, NUL);
retval = (char_u *)ga.ga_data;
}
else
retval = vim_strsave(tv_get_string(tv));
return retval;
}
/*
* Top level evaluation function, returning a string. Does not handle line
* breaks.
* When "convert" is TRUE convert a List into a sequence of lines.
* Return pointer to allocated memory, or NULL for failure.
*/
char_u *
eval_to_string_eap(
char_u *arg,
int convert,
exarg_T *eap,
int use_simple_function)
{
typval_T tv;
char_u *retval;
evalarg_T evalarg;
int r;
fill_evalarg_from_eap(&evalarg, eap, eap != NULL && eap->skip);
if (use_simple_function)
r = eval0_simple_funccal(arg, &tv, NULL, &evalarg);
else
r = eval0(arg, &tv, NULL, &evalarg);
if (r == FAIL)
retval = NULL;
else
{
retval = typval2string(&tv, convert);
clear_tv(&tv);
}
clear_evalarg(&evalarg, NULL);
return retval;
}
char_u *
eval_to_string(
char_u *arg,
int convert,
int use_simple_function)
{
return eval_to_string_eap(arg, convert, NULL, use_simple_function);
}
/*
* Call eval_to_string() without using current local variables and using
* textlock. When "use_sandbox" is TRUE use the sandbox.
* Use legacy Vim script syntax.
*/
char_u *
eval_to_string_safe(
char_u *arg,
int use_sandbox,
int keep_script_version,
int use_simple_function)
{
char_u *retval;
funccal_entry_T funccal_entry;
int save_sc_version = current_sctx.sc_version;
int save_garbage = may_garbage_collect;
if (!keep_script_version)
current_sctx.sc_version = 1;
save_funccal(&funccal_entry);
if (use_sandbox)
++sandbox;
++textlock;
may_garbage_collect = FALSE;
retval = eval_to_string(arg, FALSE, use_simple_function);
if (use_sandbox)
--sandbox;
--textlock;
may_garbage_collect = save_garbage;
restore_funccal();
current_sctx.sc_version = save_sc_version;
return retval;
}
/*
* Top level evaluation function, returning a number.
* Evaluates "expr" silently.
* Returns -1 for an error.
*/
varnumber_T
eval_to_number(char_u *expr, int use_simple_function)
{
typval_T rettv;
varnumber_T retval;
char_u *p = skipwhite(expr);
int r = NOTDONE;
++emsg_off;
if (use_simple_function)
r = may_call_simple_func(expr, &rettv);
if (r == NOTDONE)
r = eval1(&p, &rettv, &EVALARG_EVALUATE);
if (r == FAIL)
retval = -1;
else
{
retval = tv_get_number_chk(&rettv, NULL);
clear_tv(&rettv);
}
--emsg_off;
return retval;
}
/*
* Top level evaluation function.
* Returns an allocated typval_T with the result.
* Returns NULL when there is an error.
*/
typval_T *
eval_expr(char_u *arg, exarg_T *eap)
{
return eval_expr_ext(arg, eap, FALSE);
}
typval_T *
eval_expr_ext(char_u *arg, exarg_T *eap, int use_simple_function)
{
typval_T *tv;
evalarg_T evalarg;
fill_evalarg_from_eap(&evalarg, eap, eap != NULL && eap->skip);
tv = ALLOC_ONE(typval_T);
if (tv != NULL)
{
int r = NOTDONE;
if (use_simple_function)
r = eval0_simple_funccal(arg, tv, eap, &evalarg);
if (r == NOTDONE)
r = eval0(arg, tv, eap, &evalarg);
if (r == FAIL)
VIM_CLEAR(tv);
}
clear_evalarg(&evalarg, eap);
return tv;
}
/*
* "*arg" points to what can be a function name in the form of "import.Name" or
* "Funcref". Return the name of the function. Set "tofree" to something that
* was allocated.
* If "verbose" is FALSE no errors are given.
* Return NULL for any failure.
*/
static char_u *
deref_function_name(
char_u **arg,
char_u **tofree,
evalarg_T *evalarg,
int verbose)
{
typval_T ref;
char_u *name = *arg;
int save_flags = 0;
ref.v_type = VAR_UNKNOWN;
if (evalarg != NULL)
{
// need to evaluate this to get an import, like in "a.Func"
save_flags = evalarg->eval_flags;
evalarg->eval_flags |= EVAL_EVALUATE;
}
if (eval9(arg, &ref, evalarg, FALSE) == FAIL)
{
dictitem_T *v;
// If <SID>VarName was used it would not be found, try another way.
v = find_var_also_in_script(name, NULL, FALSE);
if (v == NULL)
{
name = NULL;
goto theend;
}
copy_tv(&v->di_tv, &ref);
}
if (*skipwhite(*arg) != NUL)
{
if (verbose)
semsg(_(e_trailing_characters_str), *arg);
name = NULL;
}
else if (ref.v_type == VAR_FUNC && ref.vval.v_string != NULL)
{
name = ref.vval.v_string;
ref.vval.v_string = NULL;
*tofree = name;
}
else if (ref.v_type == VAR_PARTIAL && ref.vval.v_partial != NULL)
{
if (ref.vval.v_partial->pt_argc > 0
|| ref.vval.v_partial->pt_dict != NULL)
{
if (verbose)
emsg(_(e_cannot_use_partial_here));
name = NULL;
}
else
{
name = vim_strsave(partial_name(ref.vval.v_partial));
*tofree = name;
}
}
else
{
if (verbose)
semsg(_(e_not_callable_type_str), name);
name = NULL;
}
theend:
clear_tv(&ref);
if (evalarg != NULL)
evalarg->eval_flags = save_flags;
return name;
}
/*
* Call some Vim script function and return the result in "*rettv".
* Uses argv[0] to argv[argc - 1] for the function arguments. argv[argc]
* should have type VAR_UNKNOWN.
* Returns OK or FAIL.
*/
int
call_vim_function(
char_u *func,
int argc,
typval_T *argv,
typval_T *rettv)
{
int ret;
funcexe_T funcexe;
char_u *arg;
char_u *name;
char_u *tofree = NULL;
int ignore_errors;
rettv->v_type = VAR_UNKNOWN; // clear_tv() uses this
CLEAR_FIELD(funcexe);
funcexe.fe_firstline = curwin->w_cursor.lnum;
funcexe.fe_lastline = curwin->w_cursor.lnum;
funcexe.fe_evaluate = TRUE;
// The name might be "import.Func" or "Funcref". We don't know, we need to
// ignore errors for an undefined name. But we do want errors when an
// autoload script has errors. Guess that when there is a dot in the name
// showing errors is the right choice.
ignore_errors = vim_strchr(func, '.') == NULL;
arg = func;
if (ignore_errors)
++emsg_off;
name = deref_function_name(&arg, &tofree, &EVALARG_EVALUATE, FALSE);
if (ignore_errors)
--emsg_off;
if (name == NULL)
name = func;
ret = call_func(name, -1, rettv, argc, argv, &funcexe);
if (ret == FAIL)
clear_tv(rettv);
vim_free(tofree);
return ret;
}
/*
* Call Vim script function "func" and return the result as a string.
* Uses "argv[0]" to "argv[argc - 1]" for the function arguments. "argv[argc]"
* should have type VAR_UNKNOWN.
* Returns NULL when calling the function fails.
*/
void *
call_func_retstr(
char_u *func,
int argc,
typval_T *argv)
{
typval_T rettv;
char_u *retval;
if (call_vim_function(func, argc, argv, &rettv) == FAIL)
return NULL;
retval = vim_strsave(tv_get_string(&rettv));
clear_tv(&rettv);
return retval;
}
/*
* Call Vim script function "func" and return the result as a List.
* Uses "argv" and "argc" as call_func_retstr().
* Returns NULL when there is something wrong.
* Gives an error when the returned value is not a list.
*/
void *
call_func_retlist(
char_u *func,
int argc,
typval_T *argv)
{
typval_T rettv;
if (call_vim_function(func, argc, argv, &rettv) == FAIL)
return NULL;
if (rettv.v_type != VAR_LIST)
{
semsg(_(e_custom_list_completion_function_does_not_return_list_but_str),
vartype_name(rettv.v_type));
clear_tv(&rettv);
return NULL;
}
return rettv.vval.v_list;
}
#if defined(FEAT_FOLDING) || defined(PROTO)
/*
* Evaluate "arg", which is 'foldexpr'.
* Note: caller must set "curwin" to match "arg".
* Returns the foldlevel, and any character preceding it in "*cp". Doesn't
* give error messages.
*/
int
eval_foldexpr(win_T *wp, int *cp)
{
char_u *arg;
typval_T tv;
varnumber_T retval;
char_u *s;
sctx_T saved_sctx = current_sctx;
int use_sandbox = was_set_insecurely((char_u *)"foldexpr",
OPT_LOCAL);
arg = skipwhite(wp->w_p_fde);
current_sctx = wp->w_p_script_ctx[WV_FDE];
++emsg_off;
if (use_sandbox)
++sandbox;
++textlock;
*cp = NUL;
// Evaluate the expression. If the expression is "FuncName()" call the
// function directly.
if (eval0_simple_funccal(arg, &tv, NULL, &EVALARG_EVALUATE) == FAIL)
retval = 0;
else
{
// If the result is a number, just return the number.
if (tv.v_type == VAR_NUMBER)
retval = tv.vval.v_number;
else if (tv.v_type != VAR_STRING || tv.vval.v_string == NULL)
retval = 0;
else
{
// If the result is a string, check if there is a non-digit before
// the number.
s = tv.vval.v_string;
if (*s != NUL && !VIM_ISDIGIT(*s) && *s != '-')
*cp = *s++;
retval = atol((char *)s);
}
clear_tv(&tv);
}
--emsg_off;
if (use_sandbox)
--sandbox;
--textlock;
clear_evalarg(&EVALARG_EVALUATE, NULL);
current_sctx = saved_sctx;
return (int)retval;
}
#endif
#ifdef LOG_LOCKVAR
typedef struct flag_string_S
{
int flag;
char *str;
} flag_string_T;
static char *
flags_tostring(int flags, flag_string_T *_fstring, char *buf, size_t n)
{
char *p = buf;
*p = NUL;
for (flag_string_T *fstring = _fstring; fstring->flag; ++fstring)