/* 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. */ /* * vim9execute.c: execute Vim9 script instructions */ #define USING_FLOAT_STUFF #include "vim.h" #if defined(FEAT_EVAL) || defined(PROTO) #ifdef VMS # include #endif #include "vim9.h" // Structure put on ec_trystack when ISN_TRY is encountered. typedef struct { int tcd_frame; // ec_frame when ISN_TRY was encountered int tcd_catch_idx; // instruction of the first catch int tcd_finally_idx; // instruction of the finally block int tcd_caught; // catch block entered int tcd_return; // when TRUE return from end of :finally } trycmd_T; // A stack is used to store: // - arguments passed to a :def function // - info about the calling function, to use when returning // - local variables // - temporary values // // In detail (FP == Frame Pointer): // arg1 first argument from caller (if present) // arg2 second argument from caller (if present) // extra_arg1 any missing optional argument default value // FP -> cur_func calling function // current previous instruction pointer // frame_ptr previous Frame Pointer // var1 space for local variable // var2 space for local variable // .... fixed space for max. number of local variables // temp temporary values // .... flexible space for temporary values (can grow big) /* * Execution context. */ typedef struct { garray_T ec_stack; // stack of typval_T values int ec_frame; // index in ec_stack: context of ec_dfunc_idx garray_T ec_trystack; // stack of trycmd_T values int ec_in_catch; // when TRUE in catch or finally block int ec_dfunc_idx; // current function index isn_T *ec_instr; // array with instructions int ec_iidx; // index in ec_instr: instruction to execute } ectx_T; // Get pointer to item relative to the bottom of the stack, -1 is the last one. #define STACK_TV_BOT(idx) (((typval_T *)ectx->ec_stack.ga_data) + ectx->ec_stack.ga_len + idx) /* * Return the number of arguments, including optional arguments and any vararg. */ static int ufunc_argcount(ufunc_T *ufunc) { return ufunc->uf_args.ga_len + (ufunc->uf_va_name != NULL ? 1 : 0); } /* * Set the instruction index, depending on omitted arguments, where the default * values are to be computed. If all optional arguments are present, start * with the function body. * The expression evaluation is at the start of the instructions: * 0 -> EVAL default1 * STORE arg[-2] * 1 -> EVAL default2 * STORE arg[-1] * 2 -> function body */ static void init_instr_idx(ufunc_T *ufunc, int argcount, ectx_T *ectx) { if (ufunc->uf_def_args.ga_len == 0) ectx->ec_iidx = 0; else { int defcount = ufunc->uf_args.ga_len - argcount; // If there is a varargs argument defcount can be negative, no defaults // to evaluate then. if (defcount < 0) defcount = 0; ectx->ec_iidx = ufunc->uf_def_arg_idx[ ufunc->uf_def_args.ga_len - defcount]; } } /* * Call compiled function "cdf_idx" from compiled code. * * Stack has: * - current arguments (already there) * - omitted optional argument (default values) added here * - stack frame: * - pointer to calling function * - Index of next instruction in calling function * - previous frame pointer * - reserved space for local variables */ static int call_dfunc(int cdf_idx, int argcount, ectx_T *ectx) { dfunc_T *dfunc = ((dfunc_T *)def_functions.ga_data) + cdf_idx; ufunc_T *ufunc = dfunc->df_ufunc; int optcount = ufunc_argcount(ufunc) - argcount; int idx; if (dfunc->df_deleted) { emsg_funcname(e_func_deleted, ufunc->uf_name); return FAIL; } if (ga_grow(&ectx->ec_stack, optcount + 3 + dfunc->df_varcount) == FAIL) return FAIL; if (optcount < 0) { emsg("argument count wrong?"); return FAIL; } // Reserve space for omitted optional arguments, filled in soon. // Also any empty varargs argument. ectx->ec_stack.ga_len += optcount; // Store current execution state in stack frame for ISN_RETURN. // TODO: If the actual number of arguments doesn't match what the called // function expects things go bad. STACK_TV_BOT(0)->vval.v_number = ectx->ec_dfunc_idx; STACK_TV_BOT(1)->vval.v_number = ectx->ec_iidx; STACK_TV_BOT(2)->vval.v_number = ectx->ec_frame; ectx->ec_frame = ectx->ec_stack.ga_len; // Initialize local variables for (idx = 0; idx < dfunc->df_varcount; ++idx) STACK_TV_BOT(STACK_FRAME_SIZE + idx)->v_type = VAR_UNKNOWN; ectx->ec_stack.ga_len += STACK_FRAME_SIZE + dfunc->df_varcount; // Set execution state to the start of the called function. ectx->ec_dfunc_idx = cdf_idx; ectx->ec_instr = dfunc->df_instr; estack_push_ufunc(ETYPE_UFUNC, dfunc->df_ufunc, 1); // Decide where to start execution, handles optional arguments. init_instr_idx(ufunc, argcount, ectx); return OK; } // Get pointer to item in the stack. #define STACK_TV(idx) (((typval_T *)ectx->ec_stack.ga_data) + idx) /* * Return from the current function. */ static void func_return(ectx_T *ectx) { int idx; dfunc_T *dfunc; int top; // execution context goes one level up estack_pop(); // Clear the local variables and temporary values, but not // the return value. for (idx = ectx->ec_frame + STACK_FRAME_SIZE; idx < ectx->ec_stack.ga_len - 1; ++idx) clear_tv(STACK_TV(idx)); // Clear the arguments. dfunc = ((dfunc_T *)def_functions.ga_data) + ectx->ec_dfunc_idx; top = ectx->ec_frame - ufunc_argcount(dfunc->df_ufunc); for (idx = top; idx < ectx->ec_frame; ++idx) clear_tv(STACK_TV(idx)); // Restore the previous frame. ectx->ec_dfunc_idx = STACK_TV(ectx->ec_frame)->vval.v_number; ectx->ec_iidx = STACK_TV(ectx->ec_frame + 1)->vval.v_number; ectx->ec_frame = STACK_TV(ectx->ec_frame + 2)->vval.v_number; dfunc = ((dfunc_T *)def_functions.ga_data) + ectx->ec_dfunc_idx; ectx->ec_instr = dfunc->df_instr; // Reset the stack to the position before the call, move the return value // to the top of the stack. idx = ectx->ec_stack.ga_len - 1; ectx->ec_stack.ga_len = top + 1; *STACK_TV_BOT(-1) = *STACK_TV(idx); } #undef STACK_TV /* * Prepare arguments and rettv for calling a builtin or user function. */ static int call_prepare(int argcount, typval_T *argvars, ectx_T *ectx) { int idx; typval_T *tv; // Move arguments from bottom of the stack to argvars[] and add terminator. for (idx = 0; idx < argcount; ++idx) argvars[idx] = *STACK_TV_BOT(idx - argcount); argvars[argcount].v_type = VAR_UNKNOWN; // Result replaces the arguments on the stack. if (argcount > 0) ectx->ec_stack.ga_len -= argcount - 1; else if (ga_grow(&ectx->ec_stack, 1) == FAIL) return FAIL; else ++ectx->ec_stack.ga_len; // Default return value is zero. tv = STACK_TV_BOT(-1); tv->v_type = VAR_NUMBER; tv->vval.v_number = 0; return OK; } /* * Call a builtin function by index. */ static int call_bfunc(int func_idx, int argcount, ectx_T *ectx) { typval_T argvars[MAX_FUNC_ARGS]; int idx; if (call_prepare(argcount, argvars, ectx) == FAIL) return FAIL; // Call the builtin function. call_internal_func_by_idx(func_idx, argvars, STACK_TV_BOT(-1)); // Clear the arguments. for (idx = 0; idx < argcount; ++idx) clear_tv(&argvars[idx]); return OK; } /* * Execute a user defined function. * "iptr" can be used to replace the instruction with a more efficient one. */ static int call_ufunc(ufunc_T *ufunc, int argcount, ectx_T *ectx, isn_T *iptr) { typval_T argvars[MAX_FUNC_ARGS]; funcexe_T funcexe; int error; int idx; if (ufunc->uf_dfunc_idx >= 0) { // The function has been compiled, can call it quickly. For a function // that was defined later: we can call it directly next time. if (iptr != NULL) { iptr->isn_type = ISN_DCALL; iptr->isn_arg.dfunc.cdf_idx = ufunc->uf_dfunc_idx; iptr->isn_arg.dfunc.cdf_argcount = argcount; } return call_dfunc(ufunc->uf_dfunc_idx, argcount, ectx); } if (call_prepare(argcount, argvars, ectx) == FAIL) return FAIL; vim_memset(&funcexe, 0, sizeof(funcexe)); funcexe.evaluate = TRUE; // Call the user function. Result goes in last position on the stack. // TODO: add selfdict if there is one error = call_user_func_check(ufunc, argcount, argvars, STACK_TV_BOT(-1), &funcexe, NULL); // Clear the arguments. for (idx = 0; idx < argcount; ++idx) clear_tv(&argvars[idx]); if (error != FCERR_NONE) { user_func_error(error, ufunc->uf_name); return FAIL; } return OK; } /* * Execute a function by "name". * This can be a builtin function or a user function. * "iptr" can be used to replace the instruction with a more efficient one. * Returns FAIL if not found without an error message. */ static int call_by_name(char_u *name, int argcount, ectx_T *ectx, isn_T *iptr) { ufunc_T *ufunc; if (builtin_function(name, -1)) { int func_idx = find_internal_func(name); if (func_idx < 0) return FAIL; if (check_internal_func(func_idx, argcount) == FAIL) return FAIL; return call_bfunc(func_idx, argcount, ectx); } ufunc = find_func(name, NULL); if (ufunc != NULL) return call_ufunc(ufunc, argcount, ectx, iptr); return FAIL; } static int call_partial(typval_T *tv, int argcount, ectx_T *ectx) { char_u *name; int called_emsg_before = called_emsg; if (tv->v_type == VAR_PARTIAL) { partial_T *pt = tv->vval.v_partial; if (pt->pt_func != NULL) return call_ufunc(pt->pt_func, argcount, ectx, NULL); name = pt->pt_name; } else name = tv->vval.v_string; if (call_by_name(name, argcount, ectx, NULL) == FAIL) { if (called_emsg == called_emsg_before) semsg(_(e_unknownfunc), name); return FAIL; } return OK; } /* * Store "tv" in variable "name". * This is for s: and g: variables. */ static void store_var(char_u *name, typval_T *tv) { funccal_entry_T entry; save_funccal(&entry); set_var_const(name, NULL, tv, FALSE, 0); restore_funccal(); } /* * Execute a function by "name". * This can be a builtin function, user function or a funcref. * "iptr" can be used to replace the instruction with a more efficient one. */ static int call_eval_func(char_u *name, int argcount, ectx_T *ectx, isn_T *iptr) { int called_emsg_before = called_emsg; if (call_by_name(name, argcount, ectx, iptr) == FAIL && called_emsg == called_emsg_before) { // "name" may be a variable that is a funcref or partial // if find variable // call_partial() // else // semsg(_(e_unknownfunc), name); emsg("call_eval_func(partial) not implemented yet"); return FAIL; } return OK; } /* * Call a "def" function from old Vim script. * Return OK or FAIL. */ int call_def_function( ufunc_T *ufunc, int argc, // nr of arguments typval_T *argv, // arguments typval_T *rettv) // return value { ectx_T ectx; // execution context int initial_frame_ptr; typval_T *tv; int idx; int ret = FAIL; dfunc_T *dfunc; int defcount = ufunc->uf_args.ga_len - argc; // Get pointer to item in the stack. #define STACK_TV(idx) (((typval_T *)ectx.ec_stack.ga_data) + idx) // Get pointer to item at the bottom of the stack, -1 is the bottom. #undef STACK_TV_BOT #define STACK_TV_BOT(idx) (((typval_T *)ectx.ec_stack.ga_data) + ectx.ec_stack.ga_len + idx) // Get pointer to local variable on the stack. #define STACK_TV_VAR(idx) (((typval_T *)ectx.ec_stack.ga_data) + ectx.ec_frame + STACK_FRAME_SIZE + idx) vim_memset(&ectx, 0, sizeof(ectx)); ga_init2(&ectx.ec_stack, sizeof(typval_T), 500); if (ga_grow(&ectx.ec_stack, 20) == FAIL) goto failed; ectx.ec_dfunc_idx = ufunc->uf_dfunc_idx; ga_init2(&ectx.ec_trystack, sizeof(trycmd_T), 10); // Put arguments on the stack. for (idx = 0; idx < argc; ++idx) { copy_tv(&argv[idx], STACK_TV_BOT(0)); ++ectx.ec_stack.ga_len; } // Make space for omitted arguments, will store default value below. if (defcount > 0) for (idx = 0; idx < defcount; ++idx) { STACK_TV_BOT(0)->v_type = VAR_UNKNOWN; ++ectx.ec_stack.ga_len; } // Frame pointer points to just after arguments. ectx.ec_frame = ectx.ec_stack.ga_len; initial_frame_ptr = ectx.ec_frame; // dummy frame entries for (idx = 0; idx < STACK_FRAME_SIZE; ++idx) { STACK_TV(ectx.ec_stack.ga_len)->v_type = VAR_UNKNOWN; ++ectx.ec_stack.ga_len; } // Reserve space for local variables. dfunc = ((dfunc_T *)def_functions.ga_data) + ufunc->uf_dfunc_idx; for (idx = 0; idx < dfunc->df_varcount; ++idx) STACK_TV_VAR(idx)->v_type = VAR_UNKNOWN; ectx.ec_stack.ga_len += dfunc->df_varcount; ectx.ec_instr = dfunc->df_instr; // Decide where to start execution, handles optional arguments. init_instr_idx(ufunc, argc, &ectx); for (;;) { isn_T *iptr; trycmd_T *trycmd = NULL; if (did_throw && !ectx.ec_in_catch) { garray_T *trystack = &ectx.ec_trystack; // An exception jumps to the first catch, finally, or returns from // the current function. if (trystack->ga_len > 0) trycmd = ((trycmd_T *)trystack->ga_data) + trystack->ga_len - 1; if (trycmd != NULL && trycmd->tcd_frame == ectx.ec_frame) { // jump to ":catch" or ":finally" ectx.ec_in_catch = TRUE; ectx.ec_iidx = trycmd->tcd_catch_idx; } else { // not inside try or need to return from current functions. if (ectx.ec_frame == initial_frame_ptr) { // At the toplevel we are done. Push a dummy return value. if (ga_grow(&ectx.ec_stack, 1) == FAIL) goto failed; tv = STACK_TV_BOT(0); tv->v_type = VAR_NUMBER; tv->vval.v_number = 0; ++ectx.ec_stack.ga_len; need_rethrow = TRUE; goto done; } func_return(&ectx); } continue; } iptr = &ectx.ec_instr[ectx.ec_iidx++]; switch (iptr->isn_type) { // execute Ex command line case ISN_EXEC: do_cmdline_cmd(iptr->isn_arg.string); break; // execute :echo {string} ... case ISN_ECHO: { int count = iptr->isn_arg.echo.echo_count; int atstart = TRUE; int needclr = TRUE; for (idx = 0; idx < count; ++idx) { tv = STACK_TV_BOT(idx - count); echo_one(tv, iptr->isn_arg.echo.echo_with_white, &atstart, &needclr); clear_tv(tv); } if (needclr) msg_clr_eos(); ectx.ec_stack.ga_len -= count; } break; // execute :execute {string} ... case ISN_EXECUTE: { int count = iptr->isn_arg.number; garray_T ga; char_u buf[NUMBUFLEN]; char_u *p; int len; int failed = FALSE; ga_init2(&ga, 1, 80); for (idx = 0; idx < count; ++idx) { tv = STACK_TV_BOT(idx - count); if (tv->v_type == VAR_CHANNEL || tv->v_type == VAR_JOB) { emsg(_(e_inval_string)); break; } else p = tv_get_string_buf(tv, buf); len = (int)STRLEN(p); if (ga_grow(&ga, len + 2) == FAIL) failed = TRUE; else { if (ga.ga_len > 0) ((char_u *)(ga.ga_data))[ga.ga_len++] = ' '; STRCPY((char_u *)(ga.ga_data) + ga.ga_len, p); ga.ga_len += len; } clear_tv(tv); } ectx.ec_stack.ga_len -= count; if (!failed && ga.ga_data != NULL) do_cmdline_cmd((char_u *)ga.ga_data); ga_clear(&ga); } break; // load local variable or argument case ISN_LOAD: if (ga_grow(&ectx.ec_stack, 1) == FAIL) goto failed; copy_tv(STACK_TV_VAR(iptr->isn_arg.number), STACK_TV_BOT(0)); ++ectx.ec_stack.ga_len; break; // load v: variable case ISN_LOADV: if (ga_grow(&ectx.ec_stack, 1) == FAIL) goto failed; copy_tv(get_vim_var_tv(iptr->isn_arg.number), STACK_TV_BOT(0)); ++ectx.ec_stack.ga_len; break; // load s: variable in Vim9 script case ISN_LOADSCRIPT: { scriptitem_T *si = SCRIPT_ITEM(iptr->isn_arg.script.script_sid); svar_T *sv; sv = ((svar_T *)si->sn_var_vals.ga_data) + iptr->isn_arg.script.script_idx; if (ga_grow(&ectx.ec_stack, 1) == FAIL) goto failed; copy_tv(sv->sv_tv, STACK_TV_BOT(0)); ++ectx.ec_stack.ga_len; } break; // load s: variable in old script case ISN_LOADS: { hashtab_T *ht = &SCRIPT_VARS( iptr->isn_arg.loadstore.ls_sid); char_u *name = iptr->isn_arg.loadstore.ls_name; dictitem_T *di = find_var_in_ht(ht, 0, name, TRUE); if (di == NULL) { semsg(_(e_undefvar), name); goto failed; } else { if (ga_grow(&ectx.ec_stack, 1) == FAIL) goto failed; copy_tv(&di->di_tv, STACK_TV_BOT(0)); ++ectx.ec_stack.ga_len; } } break; // load g: variable case ISN_LOADG: { dictitem_T *di = find_var_in_ht(get_globvar_ht(), 0, iptr->isn_arg.string, TRUE); if (di == NULL) { semsg(_("E121: Undefined variable: g:%s"), iptr->isn_arg.string); goto failed; } else { if (ga_grow(&ectx.ec_stack, 1) == FAIL) goto failed; copy_tv(&di->di_tv, STACK_TV_BOT(0)); ++ectx.ec_stack.ga_len; } } break; // load &option case ISN_LOADOPT: { typval_T optval; char_u *name = iptr->isn_arg.string; if (ga_grow(&ectx.ec_stack, 1) == FAIL) goto failed; if (get_option_tv(&name, &optval, TRUE) == FAIL) goto failed; *STACK_TV_BOT(0) = optval; ++ectx.ec_stack.ga_len; } break; // load $ENV case ISN_LOADENV: { typval_T optval; char_u *name = iptr->isn_arg.string; if (ga_grow(&ectx.ec_stack, 1) == FAIL) goto failed; // name is always valid, checked when compiling (void)get_env_tv(&name, &optval, TRUE); *STACK_TV_BOT(0) = optval; ++ectx.ec_stack.ga_len; } break; // load @register case ISN_LOADREG: if (ga_grow(&ectx.ec_stack, 1) == FAIL) goto failed; tv = STACK_TV_BOT(0); tv->v_type = VAR_STRING; tv->vval.v_string = get_reg_contents( iptr->isn_arg.number, GREG_EXPR_SRC); ++ectx.ec_stack.ga_len; break; // store local variable case ISN_STORE: --ectx.ec_stack.ga_len; tv = STACK_TV_VAR(iptr->isn_arg.number); clear_tv(tv); *tv = *STACK_TV_BOT(0); break; // store s: variable in old script case ISN_STORES: { hashtab_T *ht = &SCRIPT_VARS( iptr->isn_arg.loadstore.ls_sid); char_u *name = iptr->isn_arg.loadstore.ls_name; dictitem_T *di = find_var_in_ht(ht, 0, name + 2, TRUE); --ectx.ec_stack.ga_len; if (di == NULL) store_var(iptr->isn_arg.string, STACK_TV_BOT(0)); else { clear_tv(&di->di_tv); di->di_tv = *STACK_TV_BOT(0); } } break; // store script-local variable in Vim9 script case ISN_STORESCRIPT: { scriptitem_T *si = SCRIPT_ITEM( iptr->isn_arg.script.script_sid); svar_T *sv = ((svar_T *)si->sn_var_vals.ga_data) + iptr->isn_arg.script.script_idx; --ectx.ec_stack.ga_len; clear_tv(sv->sv_tv); *sv->sv_tv = *STACK_TV_BOT(0); } break; // store option case ISN_STOREOPT: { long n = 0; char_u *s = NULL; char *msg; --ectx.ec_stack.ga_len; tv = STACK_TV_BOT(0); if (tv->v_type == VAR_STRING) { s = tv->vval.v_string; if (s == NULL) s = (char_u *)""; } else if (tv->v_type == VAR_NUMBER) n = tv->vval.v_number; else { emsg(_("E1051: Expected string or number")); goto failed; } msg = set_option_value(iptr->isn_arg.storeopt.so_name, n, s, iptr->isn_arg.storeopt.so_flags); if (msg != NULL) { emsg(_(msg)); goto failed; } clear_tv(tv); } break; // store $ENV case ISN_STOREENV: --ectx.ec_stack.ga_len; vim_setenv_ext(iptr->isn_arg.string, tv_get_string(STACK_TV_BOT(0))); break; // store @r case ISN_STOREREG: { int reg = iptr->isn_arg.number; --ectx.ec_stack.ga_len; tv = STACK_TV_BOT(0); write_reg_contents(reg == '@' ? '"' : reg, tv_get_string(tv), -1, FALSE); clear_tv(tv); } break; // store v: variable case ISN_STOREV: --ectx.ec_stack.ga_len; if (set_vim_var_tv(iptr->isn_arg.number, STACK_TV_BOT(0)) == FAIL) goto failed; break; // store g: variable case ISN_STOREG: { dictitem_T *di; --ectx.ec_stack.ga_len; di = find_var_in_ht(get_globvar_ht(), 0, iptr->isn_arg.string + 2, TRUE); if (di == NULL) store_var(iptr->isn_arg.string, STACK_TV_BOT(0)); else { clear_tv(&di->di_tv); di->di_tv = *STACK_TV_BOT(0); } } break; // store number in local variable case ISN_STORENR: tv = STACK_TV_VAR(iptr->isn_arg.storenr.str_idx); clear_tv(tv); tv->v_type = VAR_NUMBER; tv->vval.v_number = iptr->isn_arg.storenr.str_val; break; // push constant case ISN_PUSHNR: case ISN_PUSHBOOL: case ISN_PUSHSPEC: case ISN_PUSHF: case ISN_PUSHS: case ISN_PUSHBLOB: if (ga_grow(&ectx.ec_stack, 1) == FAIL) goto failed; tv = STACK_TV_BOT(0); ++ectx.ec_stack.ga_len; switch (iptr->isn_type) { case ISN_PUSHNR: tv->v_type = VAR_NUMBER; tv->vval.v_number = iptr->isn_arg.number; break; case ISN_PUSHBOOL: tv->v_type = VAR_BOOL; tv->vval.v_number = iptr->isn_arg.number; break; case ISN_PUSHSPEC: tv->v_type = VAR_SPECIAL; tv->vval.v_number = iptr->isn_arg.number; break; #ifdef FEAT_FLOAT case ISN_PUSHF: tv->v_type = VAR_FLOAT; tv->vval.v_float = iptr->isn_arg.fnumber; break; #endif case ISN_PUSHBLOB: blob_copy(iptr->isn_arg.blob, tv); break; default: tv->v_type = VAR_STRING; tv->vval.v_string = vim_strsave(iptr->isn_arg.string); } break; // create a list from items on the stack; uses a single allocation // for the list header and the items case ISN_NEWLIST: { int count = iptr->isn_arg.number; list_T *list = list_alloc_with_items(count); if (list == NULL) goto failed; for (idx = 0; idx < count; ++idx) list_set_item(list, idx, STACK_TV_BOT(idx - count)); if (count > 0) ectx.ec_stack.ga_len -= count - 1; else if (ga_grow(&ectx.ec_stack, 1) == FAIL) goto failed; else ++ectx.ec_stack.ga_len; tv = STACK_TV_BOT(-1); tv->v_type = VAR_LIST; tv->vval.v_list = list; ++list->lv_refcount; } break; // create a dict from items on the stack case ISN_NEWDICT: { int count = iptr->isn_arg.number; dict_T *dict = dict_alloc(); dictitem_T *item; if (dict == NULL) goto failed; for (idx = 0; idx < count; ++idx) { // check key type is VAR_STRING tv = STACK_TV_BOT(2 * (idx - count)); item = dictitem_alloc(tv->vval.v_string); clear_tv(tv); if (item == NULL) goto failed; item->di_tv = *STACK_TV_BOT(2 * (idx - count) + 1); item->di_tv.v_lock = 0; if (dict_add(dict, item) == FAIL) goto failed; } if (count > 0) ectx.ec_stack.ga_len -= 2 * count - 1; else if (ga_grow(&ectx.ec_stack, 1) == FAIL) goto failed; else ++ectx.ec_stack.ga_len; tv = STACK_TV_BOT(-1); tv->v_type = VAR_DICT; tv->vval.v_dict = dict; ++dict->dv_refcount; } break; // call a :def function case ISN_DCALL: if (call_dfunc(iptr->isn_arg.dfunc.cdf_idx, iptr->isn_arg.dfunc.cdf_argcount, &ectx) == FAIL) goto failed; break; // call a builtin function case ISN_BCALL: SOURCING_LNUM = iptr->isn_lnum; if (call_bfunc(iptr->isn_arg.bfunc.cbf_idx, iptr->isn_arg.bfunc.cbf_argcount, &ectx) == FAIL) goto failed; break; // call a funcref or partial case ISN_PCALL: { cpfunc_T *pfunc = &iptr->isn_arg.pfunc; int r; typval_T partial; SOURCING_LNUM = iptr->isn_lnum; if (pfunc->cpf_top) { // funcref is above the arguments tv = STACK_TV_BOT(-pfunc->cpf_argcount - 1); } else { // Get the funcref from the stack. --ectx.ec_stack.ga_len; partial = *STACK_TV_BOT(0); tv = &partial; } r = call_partial(tv, pfunc->cpf_argcount, &ectx); if (tv == &partial) clear_tv(&partial); if (r == FAIL) goto failed; if (pfunc->cpf_top) { // Get the funcref from the stack, overwrite with the // return value. clear_tv(tv); --ectx.ec_stack.ga_len; *STACK_TV_BOT(-1) = *STACK_TV_BOT(0); } } break; // call a user defined function or funcref/partial case ISN_UCALL: { cufunc_T *cufunc = &iptr->isn_arg.ufunc; SOURCING_LNUM = iptr->isn_lnum; if (call_eval_func(cufunc->cuf_name, cufunc->cuf_argcount, &ectx, iptr) == FAIL) goto failed; } break; // return from a :def function call case ISN_RETURN: { garray_T *trystack = &ectx.ec_trystack; if (trystack->ga_len > 0) trycmd = ((trycmd_T *)trystack->ga_data) + trystack->ga_len - 1; if (trycmd != NULL && trycmd->tcd_frame == ectx.ec_frame && trycmd->tcd_finally_idx != 0) { // jump to ":finally" ectx.ec_iidx = trycmd->tcd_finally_idx; trycmd->tcd_return = TRUE; } else { // Restore previous function. If the frame pointer // is zero then there is none and we are done. if (ectx.ec_frame == initial_frame_ptr) goto done; func_return(&ectx); } } break; // push a function reference to a compiled function case ISN_FUNCREF: { partial_T *pt = NULL; pt = ALLOC_CLEAR_ONE(partial_T); if (pt == NULL) goto failed; dfunc = ((dfunc_T *)def_functions.ga_data) + iptr->isn_arg.number; pt->pt_func = dfunc->df_ufunc; pt->pt_refcount = 1; ++dfunc->df_ufunc->uf_refcount; if (ga_grow(&ectx.ec_stack, 1) == FAIL) goto failed; tv = STACK_TV_BOT(0); ++ectx.ec_stack.ga_len; tv->vval.v_partial = pt; tv->v_type = VAR_PARTIAL; } break; // jump if a condition is met case ISN_JUMP: { jumpwhen_T when = iptr->isn_arg.jump.jump_when; int jump = TRUE; if (when != JUMP_ALWAYS) { tv = STACK_TV_BOT(-1); jump = tv2bool(tv); if (when == JUMP_IF_FALSE || when == JUMP_AND_KEEP_IF_FALSE) jump = !jump; if (when == JUMP_IF_FALSE || !jump) { // drop the value from the stack clear_tv(tv); --ectx.ec_stack.ga_len; } } if (jump) ectx.ec_iidx = iptr->isn_arg.jump.jump_where; } break; // top of a for loop case ISN_FOR: { list_T *list = STACK_TV_BOT(-1)->vval.v_list; typval_T *idxtv = STACK_TV_VAR(iptr->isn_arg.forloop.for_idx); // push the next item from the list if (ga_grow(&ectx.ec_stack, 1) == FAIL) goto failed; if (++idxtv->vval.v_number >= list->lv_len) // past the end of the list, jump to "endfor" ectx.ec_iidx = iptr->isn_arg.forloop.for_end; else if (list->lv_first == &range_list_item) { // non-materialized range() list tv = STACK_TV_BOT(0); tv->v_type = VAR_NUMBER; tv->vval.v_number = list_find_nr( list, idxtv->vval.v_number, NULL); ++ectx.ec_stack.ga_len; } else { listitem_T *li = list_find(list, idxtv->vval.v_number); if (li == NULL) goto failed; copy_tv(&li->li_tv, STACK_TV_BOT(0)); ++ectx.ec_stack.ga_len; } } break; // start of ":try" block case ISN_TRY: { if (ga_grow(&ectx.ec_trystack, 1) == FAIL) goto failed; trycmd = ((trycmd_T *)ectx.ec_trystack.ga_data) + ectx.ec_trystack.ga_len; ++ectx.ec_trystack.ga_len; ++trylevel; trycmd->tcd_frame = ectx.ec_frame; trycmd->tcd_catch_idx = iptr->isn_arg.try.try_catch; trycmd->tcd_finally_idx = iptr->isn_arg.try.try_finally; trycmd->tcd_caught = FALSE; } break; case ISN_PUSHEXC: if (current_exception == NULL) { iemsg("Evaluating catch while current_exception is NULL"); goto failed; } if (ga_grow(&ectx.ec_stack, 1) == FAIL) goto failed; tv = STACK_TV_BOT(0); ++ectx.ec_stack.ga_len; tv->v_type = VAR_STRING; tv->vval.v_string = vim_strsave( (char_u *)current_exception->value); break; case ISN_CATCH: { garray_T *trystack = &ectx.ec_trystack; if (trystack->ga_len > 0) { trycmd = ((trycmd_T *)trystack->ga_data) + trystack->ga_len - 1; trycmd->tcd_caught = TRUE; } did_emsg = got_int = did_throw = FALSE; catch_exception(current_exception); } break; // end of ":try" block case ISN_ENDTRY: { garray_T *trystack = &ectx.ec_trystack; if (trystack->ga_len > 0) { --trystack->ga_len; --trylevel; trycmd = ((trycmd_T *)trystack->ga_data) + trystack->ga_len; if (trycmd->tcd_caught && current_exception != NULL) { // discard the exception if (caught_stack == current_exception) caught_stack = caught_stack->caught; discard_current_exception(); } if (trycmd->tcd_return) { // Restore previous function. If the frame pointer // is zero then there is none and we are done. if (ectx.ec_frame == initial_frame_ptr) goto done; func_return(&ectx); } } } break; case ISN_THROW: --ectx.ec_stack.ga_len; tv = STACK_TV_BOT(0); if (throw_exception(tv->vval.v_string, ET_USER, NULL) == FAIL) { vim_free(tv->vval.v_string); goto failed; } did_throw = TRUE; break; // compare with special values case ISN_COMPAREBOOL: case ISN_COMPARESPECIAL: { typval_T *tv1 = STACK_TV_BOT(-2); typval_T *tv2 = STACK_TV_BOT(-1); varnumber_T arg1 = tv1->vval.v_number; varnumber_T arg2 = tv2->vval.v_number; int res; switch (iptr->isn_arg.op.op_type) { case EXPR_EQUAL: res = arg1 == arg2; break; case EXPR_NEQUAL: res = arg1 != arg2; break; default: res = 0; break; } --ectx.ec_stack.ga_len; tv1->v_type = VAR_BOOL; tv1->vval.v_number = res ? VVAL_TRUE : VVAL_FALSE; } break; // Operation with two number arguments case ISN_OPNR: case ISN_COMPARENR: { typval_T *tv1 = STACK_TV_BOT(-2); typval_T *tv2 = STACK_TV_BOT(-1); varnumber_T arg1 = tv1->vval.v_number; varnumber_T arg2 = tv2->vval.v_number; varnumber_T res; switch (iptr->isn_arg.op.op_type) { case EXPR_MULT: res = arg1 * arg2; break; case EXPR_DIV: res = arg1 / arg2; break; case EXPR_REM: res = arg1 % arg2; break; case EXPR_SUB: res = arg1 - arg2; break; case EXPR_ADD: res = arg1 + arg2; break; case EXPR_EQUAL: res = arg1 == arg2; break; case EXPR_NEQUAL: res = arg1 != arg2; break; case EXPR_GREATER: res = arg1 > arg2; break; case EXPR_GEQUAL: res = arg1 >= arg2; break; case EXPR_SMALLER: res = arg1 < arg2; break; case EXPR_SEQUAL: res = arg1 <= arg2; break; default: res = 0; break; } --ectx.ec_stack.ga_len; if (iptr->isn_type == ISN_COMPARENR) { tv1->v_type = VAR_BOOL; tv1->vval.v_number = res ? VVAL_TRUE : VVAL_FALSE; } else tv1->vval.v_number = res; } break; // Computation with two float arguments case ISN_OPFLOAT: case ISN_COMPAREFLOAT: #ifdef FEAT_FLOAT { typval_T *tv1 = STACK_TV_BOT(-2); typval_T *tv2 = STACK_TV_BOT(-1); float_T arg1 = tv1->vval.v_float; float_T arg2 = tv2->vval.v_float; float_T res = 0; int cmp = FALSE; switch (iptr->isn_arg.op.op_type) { case EXPR_MULT: res = arg1 * arg2; break; case EXPR_DIV: res = arg1 / arg2; break; case EXPR_SUB: res = arg1 - arg2; break; case EXPR_ADD: res = arg1 + arg2; break; case EXPR_EQUAL: cmp = arg1 == arg2; break; case EXPR_NEQUAL: cmp = arg1 != arg2; break; case EXPR_GREATER: cmp = arg1 > arg2; break; case EXPR_GEQUAL: cmp = arg1 >= arg2; break; case EXPR_SMALLER: cmp = arg1 < arg2; break; case EXPR_SEQUAL: cmp = arg1 <= arg2; break; default: cmp = 0; break; } --ectx.ec_stack.ga_len; if (iptr->isn_type == ISN_COMPAREFLOAT) { tv1->v_type = VAR_BOOL; tv1->vval.v_number = cmp ? VVAL_TRUE : VVAL_FALSE; } else tv1->vval.v_float = res; } #endif break; case ISN_COMPARELIST: { typval_T *tv1 = STACK_TV_BOT(-2); typval_T *tv2 = STACK_TV_BOT(-1); list_T *arg1 = tv1->vval.v_list; list_T *arg2 = tv2->vval.v_list; int cmp = FALSE; int ic = iptr->isn_arg.op.op_ic; switch (iptr->isn_arg.op.op_type) { case EXPR_EQUAL: cmp = list_equal(arg1, arg2, ic, FALSE); break; case EXPR_NEQUAL: cmp = !list_equal(arg1, arg2, ic, FALSE); break; case EXPR_IS: cmp = arg1 == arg2; break; case EXPR_ISNOT: cmp = arg1 != arg2; break; default: cmp = 0; break; } --ectx.ec_stack.ga_len; clear_tv(tv1); clear_tv(tv2); tv1->v_type = VAR_BOOL; tv1->vval.v_number = cmp ? VVAL_TRUE : VVAL_FALSE; } break; case ISN_COMPAREBLOB: { typval_T *tv1 = STACK_TV_BOT(-2); typval_T *tv2 = STACK_TV_BOT(-1); blob_T *arg1 = tv1->vval.v_blob; blob_T *arg2 = tv2->vval.v_blob; int cmp = FALSE; switch (iptr->isn_arg.op.op_type) { case EXPR_EQUAL: cmp = blob_equal(arg1, arg2); break; case EXPR_NEQUAL: cmp = !blob_equal(arg1, arg2); break; case EXPR_IS: cmp = arg1 == arg2; break; case EXPR_ISNOT: cmp = arg1 != arg2; break; default: cmp = 0; break; } --ectx.ec_stack.ga_len; clear_tv(tv1); clear_tv(tv2); tv1->v_type = VAR_BOOL; tv1->vval.v_number = cmp ? VVAL_TRUE : VVAL_FALSE; } break; // TODO: handle separately case ISN_COMPARESTRING: case ISN_COMPAREDICT: case ISN_COMPAREFUNC: case ISN_COMPAREPARTIAL: case ISN_COMPAREANY: { typval_T *tv1 = STACK_TV_BOT(-2); typval_T *tv2 = STACK_TV_BOT(-1); exptype_T exptype = iptr->isn_arg.op.op_type; int ic = iptr->isn_arg.op.op_ic; typval_compare(tv1, tv2, exptype, ic); clear_tv(tv2); tv1->v_type = VAR_BOOL; tv1->vval.v_number = tv1->vval.v_number ? VVAL_TRUE : VVAL_FALSE; --ectx.ec_stack.ga_len; } break; case ISN_ADDLIST: case ISN_ADDBLOB: { typval_T *tv1 = STACK_TV_BOT(-2); typval_T *tv2 = STACK_TV_BOT(-1); if (iptr->isn_type == ISN_ADDLIST) eval_addlist(tv1, tv2); else eval_addblob(tv1, tv2); clear_tv(tv2); --ectx.ec_stack.ga_len; } break; // Computation with two arguments of unknown type case ISN_OPANY: { typval_T *tv1 = STACK_TV_BOT(-2); typval_T *tv2 = STACK_TV_BOT(-1); varnumber_T n1, n2; #ifdef FEAT_FLOAT float_T f1 = 0, f2 = 0; #endif int error = FALSE; if (iptr->isn_arg.op.op_type == EXPR_ADD) { if (tv1->v_type == VAR_LIST && tv2->v_type == VAR_LIST) { eval_addlist(tv1, tv2); clear_tv(tv2); --ectx.ec_stack.ga_len; break; } else if (tv1->v_type == VAR_BLOB && tv2->v_type == VAR_BLOB) { eval_addblob(tv1, tv2); clear_tv(tv2); --ectx.ec_stack.ga_len; break; } } #ifdef FEAT_FLOAT if (tv1->v_type == VAR_FLOAT) { f1 = tv1->vval.v_float; n1 = 0; } else #endif { n1 = tv_get_number_chk(tv1, &error); if (error) goto failed; #ifdef FEAT_FLOAT if (tv2->v_type == VAR_FLOAT) f1 = n1; #endif } #ifdef FEAT_FLOAT if (tv2->v_type == VAR_FLOAT) { f2 = tv2->vval.v_float; n2 = 0; } else #endif { n2 = tv_get_number_chk(tv2, &error); if (error) goto failed; #ifdef FEAT_FLOAT if (tv1->v_type == VAR_FLOAT) f2 = n2; #endif } #ifdef FEAT_FLOAT // if there is a float on either side the result is a float if (tv1->v_type == VAR_FLOAT || tv2->v_type == VAR_FLOAT) { switch (iptr->isn_arg.op.op_type) { case EXPR_MULT: f1 = f1 * f2; break; case EXPR_DIV: f1 = f1 / f2; break; case EXPR_SUB: f1 = f1 - f2; break; case EXPR_ADD: f1 = f1 + f2; break; default: emsg(_(e_modulus)); goto failed; } clear_tv(tv1); clear_tv(tv2); tv1->v_type = VAR_FLOAT; tv1->vval.v_float = f1; --ectx.ec_stack.ga_len; } else #endif { switch (iptr->isn_arg.op.op_type) { case EXPR_MULT: n1 = n1 * n2; break; case EXPR_DIV: n1 = num_divide(n1, n2); break; case EXPR_SUB: n1 = n1 - n2; break; case EXPR_ADD: n1 = n1 + n2; break; default: n1 = num_modulus(n1, n2); break; } clear_tv(tv1); clear_tv(tv2); tv1->v_type = VAR_NUMBER; tv1->vval.v_number = n1; --ectx.ec_stack.ga_len; } } break; case ISN_CONCAT: { char_u *str1 = STACK_TV_BOT(-2)->vval.v_string; char_u *str2 = STACK_TV_BOT(-1)->vval.v_string; char_u *res; res = concat_str(str1, str2); clear_tv(STACK_TV_BOT(-2)); clear_tv(STACK_TV_BOT(-1)); --ectx.ec_stack.ga_len; STACK_TV_BOT(-1)->vval.v_string = res; } break; case ISN_INDEX: { list_T *list; varnumber_T n; listitem_T *li; // list index: list is at stack-2, index at stack-1 tv = STACK_TV_BOT(-2); if (tv->v_type != VAR_LIST) { emsg(_(e_listreq)); goto failed; } list = tv->vval.v_list; tv = STACK_TV_BOT(-1); if (tv->v_type != VAR_NUMBER) { emsg(_(e_number_exp)); goto failed; } n = tv->vval.v_number; clear_tv(tv); if ((li = list_find(list, n)) == NULL) { semsg(_(e_listidx), n); goto failed; } --ectx.ec_stack.ga_len; clear_tv(STACK_TV_BOT(-1)); copy_tv(&li->li_tv, STACK_TV_BOT(-1)); } break; // dict member with string key case ISN_MEMBER: { dict_T *dict; dictitem_T *di; tv = STACK_TV_BOT(-1); if (tv->v_type != VAR_DICT || tv->vval.v_dict == NULL) { emsg(_(e_dictreq)); goto failed; } dict = tv->vval.v_dict; if ((di = dict_find(dict, iptr->isn_arg.string, -1)) == NULL) { semsg(_(e_dictkey), iptr->isn_arg.string); goto failed; } clear_tv(tv); copy_tv(&di->di_tv, tv); } break; case ISN_NEGATENR: tv = STACK_TV_BOT(-1); tv->vval.v_number = -tv->vval.v_number; break; case ISN_CHECKNR: { int error = FALSE; tv = STACK_TV_BOT(-1); if (check_not_string(tv) == FAIL) goto failed; (void)tv_get_number_chk(tv, &error); if (error) goto failed; } break; case ISN_CHECKTYPE: { checktype_T *ct = &iptr->isn_arg.type; tv = STACK_TV_BOT(ct->ct_off); if (tv->v_type != ct->ct_type) { semsg(_("E1029: Expected %s but got %s"), vartype_name(ct->ct_type), vartype_name(tv->v_type)); goto failed; } } break; case ISN_2BOOL: { int n; tv = STACK_TV_BOT(-1); n = tv2bool(tv); if (iptr->isn_arg.number) // invert n = !n; clear_tv(tv); tv->v_type = VAR_BOOL; tv->vval.v_number = n ? VVAL_TRUE : VVAL_FALSE; } break; case ISN_2STRING: { char_u *str; tv = STACK_TV_BOT(iptr->isn_arg.number); if (tv->v_type != VAR_STRING) { str = typval_tostring(tv); clear_tv(tv); tv->v_type = VAR_STRING; tv->vval.v_string = str; } } break; case ISN_DROP: --ectx.ec_stack.ga_len; clear_tv(STACK_TV_BOT(0)); break; } } done: // function finished, get result from the stack. tv = STACK_TV_BOT(-1); *rettv = *tv; tv->v_type = VAR_UNKNOWN; ret = OK; failed: // When failed need to unwind the call stack. while (ectx.ec_frame != initial_frame_ptr) func_return(&ectx); for (idx = 0; idx < ectx.ec_stack.ga_len; ++idx) clear_tv(STACK_TV(idx)); vim_free(ectx.ec_stack.ga_data); return ret; } /* * ":dissassemble". * We don't really need this at runtime, but we do have tests that require it, * so always include this. */ void ex_disassemble(exarg_T *eap) { char_u *arg = eap->arg; char_u *fname; ufunc_T *ufunc; dfunc_T *dfunc; isn_T *instr; int current; int line_idx = 0; int prev_current = 0; fname = trans_function_name(&arg, FALSE, TFN_INT | TFN_QUIET | TFN_NO_AUTOLOAD | TFN_NO_DEREF, NULL, NULL); if (fname == NULL) { semsg(_(e_invarg2), eap->arg); return; } ufunc = find_func(fname, NULL); vim_free(fname); if (ufunc == NULL) { semsg(_("E1061: Cannot find function %s"), eap->arg); return; } if (ufunc->uf_dfunc_idx < 0) { semsg(_("E1062: Function %s is not compiled"), eap->arg); return; } if (ufunc->uf_name_exp != NULL) msg((char *)ufunc->uf_name_exp); else msg((char *)ufunc->uf_name); dfunc = ((dfunc_T *)def_functions.ga_data) + ufunc->uf_dfunc_idx; instr = dfunc->df_instr; for (current = 0; current < dfunc->df_instr_count; ++current) { isn_T *iptr = &instr[current]; char *line; while (line_idx < iptr->isn_lnum && line_idx < ufunc->uf_lines.ga_len) { if (current > prev_current) { msg_puts("\n\n"); prev_current = current; } line = ((char **)ufunc->uf_lines.ga_data)[line_idx++]; if (line != NULL) msg(line); } switch (iptr->isn_type) { case ISN_EXEC: smsg("%4d EXEC %s", current, iptr->isn_arg.string); break; case ISN_ECHO: { echo_T *echo = &iptr->isn_arg.echo; smsg("%4d %s %d", current, echo->echo_with_white ? "ECHO" : "ECHON", echo->echo_count); } break; case ISN_EXECUTE: smsg("%4d EXECUTE %d", current, iptr->isn_arg.number); break; case ISN_LOAD: if (iptr->isn_arg.number < 0) smsg("%4d LOAD arg[%lld]", current, iptr->isn_arg.number + STACK_FRAME_SIZE); else smsg("%4d LOAD $%lld", current, iptr->isn_arg.number); break; case ISN_LOADV: smsg("%4d LOADV v:%s", current, get_vim_var_name(iptr->isn_arg.number)); break; case ISN_LOADSCRIPT: { scriptitem_T *si = SCRIPT_ITEM(iptr->isn_arg.script.script_sid); svar_T *sv = ((svar_T *)si->sn_var_vals.ga_data) + iptr->isn_arg.script.script_idx; smsg("%4d LOADSCRIPT %s from %s", current, sv->sv_name, si->sn_name); } break; case ISN_LOADS: { scriptitem_T *si = SCRIPT_ITEM( iptr->isn_arg.loadstore.ls_sid); smsg("%4d LOADS s:%s from %s", current, iptr->isn_arg.string, si->sn_name); } break; case ISN_LOADG: smsg("%4d LOADG g:%s", current, iptr->isn_arg.string); break; case ISN_LOADOPT: smsg("%4d LOADOPT %s", current, iptr->isn_arg.string); break; case ISN_LOADENV: smsg("%4d LOADENV %s", current, iptr->isn_arg.string); break; case ISN_LOADREG: smsg("%4d LOADREG @%c", current, iptr->isn_arg.number); break; case ISN_STORE: if (iptr->isn_arg.number < 0) smsg("%4d STORE arg[%lld]", current, iptr->isn_arg.number + STACK_FRAME_SIZE); else smsg("%4d STORE $%lld", current, iptr->isn_arg.number); break; case ISN_STOREV: smsg("%4d STOREV v:%s", current, get_vim_var_name(iptr->isn_arg.number)); break; case ISN_STOREG: smsg("%4d STOREG %s", current, iptr->isn_arg.string); break; case ISN_STORES: { scriptitem_T *si = SCRIPT_ITEM( iptr->isn_arg.loadstore.ls_sid); smsg("%4d STORES %s in %s", current, iptr->isn_arg.string, si->sn_name); } break; case ISN_STORESCRIPT: { scriptitem_T *si = SCRIPT_ITEM(iptr->isn_arg.script.script_sid); svar_T *sv = ((svar_T *)si->sn_var_vals.ga_data) + iptr->isn_arg.script.script_idx; smsg("%4d STORESCRIPT %s in %s", current, sv->sv_name, si->sn_name); } break; case ISN_STOREOPT: smsg("%4d STOREOPT &%s", current, iptr->isn_arg.storeopt.so_name); break; case ISN_STOREENV: smsg("%4d STOREENV $%s", current, iptr->isn_arg.string); break; case ISN_STOREREG: smsg("%4d STOREREG @%c", current, iptr->isn_arg.number); break; case ISN_STORENR: smsg("%4d STORE %lld in $%d", current, iptr->isn_arg.storenr.str_val, iptr->isn_arg.storenr.str_idx); break; // constants case ISN_PUSHNR: smsg("%4d PUSHNR %lld", current, iptr->isn_arg.number); break; case ISN_PUSHBOOL: case ISN_PUSHSPEC: smsg("%4d PUSH %s", current, get_var_special_name(iptr->isn_arg.number)); break; case ISN_PUSHF: #ifdef FEAT_FLOAT smsg("%4d PUSHF %g", current, iptr->isn_arg.fnumber); #endif break; case ISN_PUSHS: smsg("%4d PUSHS \"%s\"", current, iptr->isn_arg.string); break; case ISN_PUSHBLOB: { char_u *r; char_u numbuf[NUMBUFLEN]; char_u *tofree; r = blob2string(iptr->isn_arg.blob, &tofree, numbuf); smsg("%4d PUSHBLOB %s", current, r); vim_free(tofree); } break; case ISN_PUSHEXC: smsg("%4d PUSH v:exception", current); break; case ISN_NEWLIST: smsg("%4d NEWLIST size %lld", current, iptr->isn_arg.number); break; case ISN_NEWDICT: smsg("%4d NEWDICT size %lld", current, iptr->isn_arg.number); break; // function call case ISN_BCALL: { cbfunc_T *cbfunc = &iptr->isn_arg.bfunc; smsg("%4d BCALL %s(argc %d)", current, internal_func_name(cbfunc->cbf_idx), cbfunc->cbf_argcount); } break; case ISN_DCALL: { cdfunc_T *cdfunc = &iptr->isn_arg.dfunc; dfunc_T *df = ((dfunc_T *)def_functions.ga_data) + cdfunc->cdf_idx; smsg("%4d DCALL %s(argc %d)", current, df->df_ufunc->uf_name_exp != NULL ? df->df_ufunc->uf_name_exp : df->df_ufunc->uf_name, cdfunc->cdf_argcount); } break; case ISN_UCALL: { cufunc_T *cufunc = &iptr->isn_arg.ufunc; smsg("%4d UCALL %s(argc %d)", current, cufunc->cuf_name, cufunc->cuf_argcount); } break; case ISN_PCALL: { cpfunc_T *cpfunc = &iptr->isn_arg.pfunc; smsg("%4d PCALL%s (argc %d)", current, cpfunc->cpf_top ? " top" : "", cpfunc->cpf_argcount); } break; case ISN_RETURN: smsg("%4d RETURN", current); break; case ISN_FUNCREF: { dfunc_T *df = ((dfunc_T *)def_functions.ga_data) + iptr->isn_arg.number; smsg("%4d FUNCREF %s", current, df->df_ufunc->uf_name); } break; case ISN_JUMP: { char *when = "?"; switch (iptr->isn_arg.jump.jump_when) { case JUMP_ALWAYS: when = "JUMP"; break; case JUMP_AND_KEEP_IF_TRUE: when = "JUMP_AND_KEEP_IF_TRUE"; break; case JUMP_IF_FALSE: when = "JUMP_IF_FALSE"; break; case JUMP_AND_KEEP_IF_FALSE: when = "JUMP_AND_KEEP_IF_FALSE"; break; } smsg("%4d %s -> %lld", current, when, iptr->isn_arg.jump.jump_where); } break; case ISN_FOR: { forloop_T *forloop = &iptr->isn_arg.forloop; smsg("%4d FOR $%d -> %d", current, forloop->for_idx, forloop->for_end); } break; case ISN_TRY: { try_T *try = &iptr->isn_arg.try; smsg("%4d TRY catch -> %d, finally -> %d", current, try->try_catch, try->try_finally); } break; case ISN_CATCH: // TODO smsg("%4d CATCH", current); break; case ISN_ENDTRY: smsg("%4d ENDTRY", current); break; case ISN_THROW: smsg("%4d THROW", current); break; // expression operations on number case ISN_OPNR: case ISN_OPFLOAT: case ISN_OPANY: { char *what; char *ins; switch (iptr->isn_arg.op.op_type) { case EXPR_MULT: what = "*"; break; case EXPR_DIV: what = "/"; break; case EXPR_REM: what = "%"; break; case EXPR_SUB: what = "-"; break; case EXPR_ADD: what = "+"; break; default: what = "???"; break; } switch (iptr->isn_type) { case ISN_OPNR: ins = "OPNR"; break; case ISN_OPFLOAT: ins = "OPFLOAT"; break; case ISN_OPANY: ins = "OPANY"; break; default: ins = "???"; break; } smsg("%4d %s %s", current, ins, what); } break; case ISN_COMPAREBOOL: case ISN_COMPARESPECIAL: case ISN_COMPARENR: case ISN_COMPAREFLOAT: case ISN_COMPARESTRING: case ISN_COMPAREBLOB: case ISN_COMPARELIST: case ISN_COMPAREDICT: case ISN_COMPAREFUNC: case ISN_COMPAREPARTIAL: case ISN_COMPAREANY: { char *p; char buf[10]; char *type; switch (iptr->isn_arg.op.op_type) { case EXPR_EQUAL: p = "=="; break; case EXPR_NEQUAL: p = "!="; break; case EXPR_GREATER: p = ">"; break; case EXPR_GEQUAL: p = ">="; break; case EXPR_SMALLER: p = "<"; break; case EXPR_SEQUAL: p = "<="; break; case EXPR_MATCH: p = "=~"; break; case EXPR_IS: p = "is"; break; case EXPR_ISNOT: p = "isnot"; break; case EXPR_NOMATCH: p = "!~"; break; default: p = "???"; break; } STRCPY(buf, p); if (iptr->isn_arg.op.op_ic == TRUE) strcat(buf, "?"); switch(iptr->isn_type) { case ISN_COMPAREBOOL: type = "COMPAREBOOL"; break; case ISN_COMPARESPECIAL: type = "COMPARESPECIAL"; break; case ISN_COMPARENR: type = "COMPARENR"; break; case ISN_COMPAREFLOAT: type = "COMPAREFLOAT"; break; case ISN_COMPARESTRING: type = "COMPARESTRING"; break; case ISN_COMPAREBLOB: type = "COMPAREBLOB"; break; case ISN_COMPARELIST: type = "COMPARELIST"; break; case ISN_COMPAREDICT: type = "COMPAREDICT"; break; case ISN_COMPAREFUNC: type = "COMPAREFUNC"; break; case ISN_COMPAREPARTIAL: type = "COMPAREPARTIAL"; break; case ISN_COMPAREANY: type = "COMPAREANY"; break; default: type = "???"; break; } smsg("%4d %s %s", current, type, buf); } break; case ISN_ADDLIST: smsg("%4d ADDLIST", current); break; case ISN_ADDBLOB: smsg("%4d ADDBLOB", current); break; // expression operations case ISN_CONCAT: smsg("%4d CONCAT", current); break; case ISN_INDEX: smsg("%4d INDEX", current); break; case ISN_MEMBER: smsg("%4d MEMBER %s", current, iptr->isn_arg.string); break; case ISN_NEGATENR: smsg("%4d NEGATENR", current); break; case ISN_CHECKNR: smsg("%4d CHECKNR", current); break; case ISN_CHECKTYPE: smsg("%4d CHECKTYPE %s stack[%d]", current, vartype_name(iptr->isn_arg.type.ct_type), iptr->isn_arg.type.ct_off); break; case ISN_2BOOL: if (iptr->isn_arg.number) smsg("%4d INVERT (!val)", current); else smsg("%4d 2BOOL (!!val)", current); break; case ISN_2STRING: smsg("%4d 2STRING stack[%d]", current, iptr->isn_arg.number); break; case ISN_DROP: smsg("%4d DROP", current); break; } } } /* * Return TRUE when "tv" is not falsey: non-zero, non-empty string, non-empty * list, etc. Mostly like what JavaScript does, except that empty list and * empty dictionary are FALSE. */ int tv2bool(typval_T *tv) { switch (tv->v_type) { case VAR_NUMBER: return tv->vval.v_number != 0; case VAR_FLOAT: #ifdef FEAT_FLOAT return tv->vval.v_float != 0.0; #else break; #endif case VAR_PARTIAL: return tv->vval.v_partial != NULL; case VAR_FUNC: case VAR_STRING: return tv->vval.v_string != NULL && *tv->vval.v_string != NUL; case VAR_LIST: return tv->vval.v_list != NULL && tv->vval.v_list->lv_len > 0; case VAR_DICT: return tv->vval.v_dict != NULL && tv->vval.v_dict->dv_hashtab.ht_used > 0; case VAR_BOOL: case VAR_SPECIAL: return tv->vval.v_number == VVAL_TRUE ? TRUE : FALSE; case VAR_JOB: #ifdef FEAT_JOB_CHANNEL return tv->vval.v_job != NULL; #else break; #endif case VAR_CHANNEL: #ifdef FEAT_JOB_CHANNEL return tv->vval.v_channel != NULL; #else break; #endif case VAR_BLOB: return tv->vval.v_blob != NULL && tv->vval.v_blob->bv_ga.ga_len > 0; case VAR_UNKNOWN: case VAR_VOID: break; } return FALSE; } /* * If "tv" is a string give an error and return FAIL. */ int check_not_string(typval_T *tv) { if (tv->v_type == VAR_STRING) { emsg(_("E1030: Using a String as a Number")); clear_tv(tv); return FAIL; } return OK; } #endif // FEAT_EVAL