424 lines
10 KiB
C
424 lines
10 KiB
C
/*
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* $Id$
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*
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Copyright (c) 2016-2018 Chung, Hyung-Hwan. All rights reserved.
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions
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are met:
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1. Redistributions of source code must retain the above copyright
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notice, this list of conditions and the following disclaimer.
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2. Redistributions in binary form must reproduce the above copyright
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notice, this list of conditions and the following disclaimer in the
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documentation and/or other materials provided with the distribution.
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THIS SOFTWARE IS PROVIDED BY THE AUTHOR "AS IS" AND ANY EXPRESS OR
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IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "hcl-prv.h"
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struct pf_t
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{
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hcl_oow_t minargs;
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hcl_oow_t maxargs;
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hcl_pfimpl_t impl;
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hcl_oow_t namelen;
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hcl_ooch_t name[10];
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};
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typedef struct pf_t pf_t;
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/* ------------------------------------------------------------------------- */
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hcl_oop_t hcl_makeprim (hcl_t* hcl, hcl_pfimpl_t primimpl, hcl_oow_t minargs, hcl_oow_t maxargs)
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{
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hcl_oop_word_t obj;
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obj = (hcl_oop_word_t)hcl_allocwordobj (hcl, HCL_BRAND_PRIM, HCL_NULL, 3);
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if (obj)
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{
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obj->slot[0] = (hcl_oow_t)primimpl;
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obj->slot[1] = minargs;
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obj->slot[2] = maxargs;
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}
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return (hcl_oop_t)obj;
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}
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/* ------------------------------------------------------------------------- */
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static void log_char_object (hcl_t* hcl, hcl_oow_t mask, hcl_oop_char_t msg)
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{
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hcl_ooi_t n;
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hcl_oow_t rem;
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const hcl_ooch_t* ptr;
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HCL_ASSERT (hcl, HCL_OBJ_GET_FLAGS_TYPE(msg) == HCL_OBJ_TYPE_CHAR);
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rem = HCL_OBJ_GET_SIZE(msg);
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ptr = msg->slot;
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start_over:
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while (rem > 0)
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{
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if (*ptr == '\0')
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{
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n = hcl_logbfmt (hcl, mask, "%C", *ptr);
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HCL_ASSERT (hcl, n == 1);
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rem -= n;
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ptr += n;
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goto start_over;
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}
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n = hcl_logbfmt (hcl, mask, "%.*S", rem, ptr);
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if (n <= -1) break;
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if (n == 0)
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{
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/* to skip the unprinted character.
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* actually, this check is not needed because of '\0' skipping
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* at the beginning of the loop */
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n = hcl_logbfmt (hcl, mask, "%C", *ptr);
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HCL_ASSERT (hcl, n == 1);
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}
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rem -= n;
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ptr += n;
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}
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}
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static hcl_pfrc_t pf_log (hcl_t* hcl, hcl_ooi_t nargs)
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{
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/* TODO: accept log level */
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hcl_oop_t msg;
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hcl_oow_t mask;
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hcl_ooi_t k;
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/*level = HCL_STACK_GET(hcl, hcl->sp - nargs + 1);
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if (!HCL_OOP_IS_SMOOI(level)) mask = HCL_LOG_APP | HCL_LOG_INFO;
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else mask = HCL_LOG_APP | HCL_OOP_TO_SMOOI(level);*/
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mask = HCL_LOG_APP | HCL_LOG_FATAL; /* TODO: accept logging level .. */
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for (k = 0; k < nargs; k++)
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{
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msg = HCL_STACK_GETARG (hcl, nargs, k);
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if (msg == hcl->_nil || msg == hcl->_true || msg == hcl->_false)
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{
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goto dump_object;
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}
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else if (HCL_OOP_IS_POINTER(msg))
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{
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if (HCL_OBJ_GET_FLAGS_TYPE(msg) == HCL_OBJ_TYPE_CHAR)
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{
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log_char_object (hcl, mask, (hcl_oop_char_t)msg);
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}
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else if (HCL_OBJ_GET_FLAGS_TYPE(msg) == HCL_OBJ_TYPE_OOP)
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{
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/* visit only 1-level down into an array-like object */
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hcl_oop_t inner;
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hcl_oow_t i;
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int brand;
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brand = HCL_OBJ_GET_FLAGS_BRAND(msg);
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if (brand != HCL_BRAND_ARRAY) goto dump_object;
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for (i = 0; i < HCL_OBJ_GET_SIZE(msg); i++)
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{
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inner = ((hcl_oop_oop_t)msg)->slot[i];
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if (i > 0) hcl_logbfmt (hcl, mask, " ");
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if (HCL_OOP_IS_POINTER(inner) &&
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HCL_OBJ_GET_FLAGS_TYPE(inner) == HCL_OBJ_TYPE_CHAR)
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{
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log_char_object (hcl, mask, (hcl_oop_char_t)inner);
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}
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else
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{
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hcl_logbfmt (hcl, mask, "%O", inner);
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}
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}
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}
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else goto dump_object;
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}
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else
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{
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dump_object:
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hcl_logbfmt (hcl, mask, "%O", msg);
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}
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}
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HCL_STACK_SETRET (hcl, nargs, hcl->_nil);
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return HCL_PF_SUCCESS;
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}
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/* ------------------------------------------------------------------------- */
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static hcl_pfrc_t pf_eqv (hcl_t* hcl, hcl_ooi_t nargs)
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{
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hcl_oop_t a0, a1, rv;
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a0 = HCL_STACK_GETARG(hcl, nargs, 0);
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a1 = HCL_STACK_GETARG(hcl, nargs, 1);
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rv = (a0 == a1? hcl->_true: hcl->_false);
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HCL_STACK_SETRET (hcl, nargs, rv);
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return HCL_PF_SUCCESS;
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}
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static hcl_pfrc_t pf_eql (hcl_t* hcl, hcl_ooi_t nargs)
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{
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int n;
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n = hcl_equalobjs(hcl, HCL_STACK_GETARG(hcl, nargs, 0), HCL_STACK_GETARG(hcl, nargs, 1));
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if (n <= -1) return HCL_PF_FAILURE;
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HCL_STACK_SETRET (hcl, nargs, (n? hcl->_true: hcl->_false));
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return HCL_PF_SUCCESS;
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}
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static hcl_pfrc_t pf_not (hcl_t* hcl, hcl_ooi_t nargs)
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{
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hcl_oop_t arg, rv;
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arg = HCL_STACK_GETARG(hcl, nargs, 0);
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if (arg == hcl->_true) rv = hcl->_false;
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else if (arg == hcl->_false) rv = hcl->_true;
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else
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{
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hcl_seterrbfmt (hcl, HCL_EINVAL, "boolean parameter expected - %O", arg);
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return HCL_PF_FAILURE;
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}
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HCL_STACK_SETRET (hcl, nargs, rv);
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return HCL_PF_SUCCESS;
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}
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static hcl_pfrc_t pf_and (hcl_t* hcl, hcl_ooi_t nargs)
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{
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hcl_oop_t arg, rv;
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hcl_oow_t i;
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rv = hcl->_true;
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for (i = 1; i < nargs; i++)
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{
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arg = HCL_STACK_GETARG(hcl, nargs, i);
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if (arg == hcl->_true)
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{
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/* do nothing */
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}
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else if (arg == hcl->_false)
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{
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rv = hcl->_false;
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break;
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}
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else
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{
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hcl_seterrbfmt (hcl, HCL_EINVAL, "boolean parameter expected - %O", arg);
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return HCL_PF_FAILURE;
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}
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}
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HCL_STACK_SETRET (hcl, nargs, rv);
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return HCL_PF_SUCCESS;
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}
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static hcl_pfrc_t pf_or (hcl_t* hcl, hcl_ooi_t nargs)
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{
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hcl_oop_t arg, rv;
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hcl_oow_t i;
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rv = hcl->_false;
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for (i = 1; i < nargs; i++)
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{
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arg = HCL_STACK_GETARG(hcl, nargs, i);
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if (arg == hcl->_true)
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{
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rv = hcl->_true;
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break;
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}
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else if (arg == hcl->_false)
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{
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/* do nothing */
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}
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else
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{
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hcl_seterrbfmt (hcl, HCL_EINVAL, "boolean parameter expected - %O", arg);
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return HCL_PF_FAILURE;
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}
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}
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HCL_STACK_SETRET (hcl, nargs, rv);
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return HCL_PF_SUCCESS;
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}
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/* ------------------------------------------------------------------------- */
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static hcl_pfrc_t pf_integer_add (hcl_t* hcl, hcl_ooi_t nargs)
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{
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hcl_oow_t i;
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hcl_oop_t arg, ret;
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ret = HCL_STACK_GETARG(hcl, nargs, 0);
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for (i = 1; i < nargs; i++)
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{
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arg = HCL_STACK_GETARG(hcl, nargs, i);
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ret = hcl_addints(hcl, ret, arg);
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if (!ret) return HCL_PF_FAILURE;
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}
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HCL_STACK_SETRET (hcl, nargs, ret);
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return HCL_PF_SUCCESS;
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}
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static hcl_pfrc_t pf_integer_sub (hcl_t* hcl, hcl_ooi_t nargs)
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{
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hcl_oow_t i;
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hcl_oop_t arg, ret;
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ret = HCL_STACK_GETARG(hcl, nargs, 0);
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for (i = 1; i < nargs; i++)
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{
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arg = HCL_STACK_GETARG(hcl, nargs, i);
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ret = hcl_subints(hcl, ret, arg);
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if (!ret) return HCL_PF_FAILURE;
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}
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HCL_STACK_SETRET (hcl, nargs, ret);
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return HCL_PF_SUCCESS;
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}
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static hcl_pfrc_t pf_integer_mul (hcl_t* hcl, hcl_ooi_t nargs)
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{
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hcl_oow_t i;
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hcl_oop_t arg, ret;
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ret = HCL_STACK_GETARG(hcl, nargs, 0);
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for (i = 1; i < nargs; i++)
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{
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arg = HCL_STACK_GETARG(hcl, nargs, i);
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ret = hcl_mulints(hcl, ret, arg);
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if (!ret) return HCL_PF_FAILURE;
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}
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HCL_STACK_SETRET (hcl, nargs, ret);
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return HCL_PF_SUCCESS;
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}
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static hcl_pfrc_t pf_integer_quo (hcl_t* hcl, hcl_ooi_t nargs)
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{
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hcl_oow_t i;
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hcl_oop_t arg, ret;
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ret = HCL_STACK_GETARG(hcl, nargs, 0);
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for (i = 1; i < nargs; i++)
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{
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arg = HCL_STACK_GETARG(hcl, nargs, i);
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ret = hcl_divints(hcl, ret, arg, 0, HCL_NULL);
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if (!ret) return HCL_PF_FAILURE;
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}
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HCL_STACK_SETRET (hcl, nargs, ret);
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return HCL_PF_SUCCESS;
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}
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static hcl_pfrc_t pf_integer_rem (hcl_t* hcl, hcl_ooi_t nargs)
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{
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hcl_oow_t i;
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hcl_oop_t arg, ret, rem;
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ret = HCL_STACK_GETARG(hcl, nargs, 0);
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for (i = 1; i < nargs; i++)
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{
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arg = HCL_STACK_GETARG(hcl, nargs, i);
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ret = hcl_divints(hcl, ret, arg, 0, &rem);
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if (!ret) return HCL_PF_FAILURE;
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ret = rem;
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}
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HCL_STACK_SETRET (hcl, nargs, ret);
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return HCL_PF_SUCCESS;
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}
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static hcl_pfrc_t pf_printf (hcl_t* hcl, hcl_ooi_t nargs)
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{
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/* TODO: */
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HCL_STACK_SETRET (hcl, nargs, hcl->_false);
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return HCL_PF_SUCCESS;
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}
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/* ------------------------------------------------------------------------- */
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static pf_t builtin_prims[] =
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{
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{ 0, HCL_TYPE_MAX(hcl_oow_t), pf_log, 3, { 'l','o','g' } },
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{ 1, 1, pf_not, 3, { 'n','o','t' } },
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{ 2, HCL_TYPE_MAX(hcl_oow_t), pf_and, 3, { 'a','n','d' } },
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{ 2, HCL_TYPE_MAX(hcl_oow_t), pf_or, 2, { 'o','r' } },
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{ 2, 2, pf_eqv, 4, { 'e','q','v','?' } },
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{ 2, 2, pf_eql, 4, { 'e','q','l','?' } },
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/*
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{ 2, 2, pf_gt, 1, { '>' } },
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{ 2, 2, pf_ge, 2, { '>','=' } },
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{ 2, 2, pf_lt, 1, { '<' } },
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{ 2, 2, pf_le, 2, { '<','=' } },
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{ 2, 2, pf_eq, 1, { '=' } },
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{ 2, 2, pf_ne, 2, { '/','=' } },
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{ 2, 2, pf_max, 3, { 'm','a','x' } },
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{ 2, 2, pf_min, 3, { 'm','i','n' } },
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*/
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{ 1, HCL_TYPE_MAX(hcl_oow_t), pf_integer_add, 1, { '+' } },
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{ 1, HCL_TYPE_MAX(hcl_oow_t), pf_integer_sub, 1, { '-' } },
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{ 1, HCL_TYPE_MAX(hcl_oow_t), pf_integer_mul, 1, { '*' } },
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{ 1, HCL_TYPE_MAX(hcl_oow_t), pf_integer_quo, 1, { '/' } },
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{ 2, HCL_TYPE_MAX(hcl_oow_t), pf_integer_rem, 3, { 'm','o','d' } },
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{ 0, HCL_TYPE_MAX(hcl_oow_t), pf_printf, 6, { 'p','r','i','n','t','f' } },
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};
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int hcl_addbuiltinprims (hcl_t* hcl)
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{
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hcl_oow_t i;
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hcl_oop_t prim, name;
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hcl_oop_cons_t cons;
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for (i = 0; i < HCL_COUNTOF(builtin_prims); i++)
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{
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prim = hcl_makeprim(hcl, builtin_prims[i].impl, builtin_prims[i].minargs, builtin_prims[i].maxargs);
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if (!prim) return -1;
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hcl_pushtmp (hcl, &prim);
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name = hcl_makesymbol(hcl, builtin_prims[i].name, builtin_prims[i].namelen);
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hcl_poptmp (hcl);
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if (!name) return -1;
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hcl_pushtmp (hcl, &name);
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cons = hcl_putatsysdic(hcl, name, prim);
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hcl_poptmp (hcl);
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if (!cons) return -1;
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/* turn on the kernel bit in the symbol associated with a primitive
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* function. 'set' prevents this symbol from being used as a variable
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* name */
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HCL_OBJ_SET_FLAGS_KERNEL (name, 1);
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}
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return 0;
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}
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