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/*
 *  R : A Computer Language for Statistical Data Analysis
 *  Copyright (C) 1995, 1996  Robert Gentleman and Ross Ihaka
 *
 *  This program is free software; you can redistribute it and/or modify
 *  it under the terms of the GNU General Public License as published by
 *  the Free Software Foundation; either version 2 of the License, or
 *  (at your option) any later version.
 *
 *  This program is distributed in the hope that it will be useful,
 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 *  GNU General Public License for more details.
 *
 *  You should have received a copy of the GNU General Public License
 *  along with this program; if not, write to the Free Software
 *  Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
 *
 *
 *  See ./printutils.c   for general remarks on Printing
 *                       and the Encode.. utils.
 *
 *  See ./format.c   for the  format_Foo_  functions.
 */

#ifdef HAVE_CONFIG_H
#include <config.h>
#endif

#include "Defn.h"
#include "Print.h"

/*  .Internal(paste(args, sep, collapse))
 *
 * do_paste uses two passes to paste the arguments (in CAR(args)) together.
 * The first pass calculates the width of the paste buffer,
 * then it is alloc-ed and the second pass stuffs the information in.
 */

SEXP do_paste(SEXP call, SEXP op, SEXP args, SEXP env)
{
    SEXP ans, collapse, sep, x, tmpchar;
    int i, j, k, maxlen, nx, pwidth, sepw;
    char *s, *buf;

    checkArity(op, args);

    /* We use formatting and so we */
    /* must initialize printing. */

    PrintDefaults(env);

    /* Check the arguments */

    x = CAR(args);
    if (!isVectorList(x))
    errorcall(call, "invalid first argument");

    sep = CADR(args);
    if (!isString(sep) || LENGTH(sep) <= 0)
    errorcall(call, "invalid separator");
    sep = STRING_ELT(sep, 0);
    sepw = LENGTH(sep);

    collapse = CADDR(args);
    if (!isNull(collapse))
    if(!isString(collapse) || LENGTH(collapse) <= 0)
        errorcall(call, "invalid collapse argument");

    /* Maximum argument length and */
    /* check for arguments of list type */

    nx = length(x);
    maxlen = 0;
    for (j = 0; j < nx; j++) {
    if (!isString(VECTOR_ELT(x, j)))
        error("non-string argument to Internal paste");
    if(length(VECTOR_ELT(x, j)) > maxlen)
        maxlen = length(VECTOR_ELT(x, j));
    }
    if(maxlen == 0)
    return mkString("");

    PROTECT(ans = allocVector(STRSXP, maxlen));

    for (i = 0; i < maxlen; i++) {
    pwidth = 0;
    for (j = 0; j < nx; j++) {
        k = length(VECTOR_ELT(x, j));
        if (k > 0)
        pwidth += LENGTH(STRING_ELT(VECTOR_ELT(x, j), i % k));
    }
    pwidth += (nx - 1) * sepw;
    tmpchar = allocString(pwidth);
    buf = CHAR(tmpchar);
    for (j = 0; j < nx; j++) {
        k = length(VECTOR_ELT(x, j));
        if (k > 0) {
        s = CHAR(STRING_ELT(VECTOR_ELT(x, j), i % k));
        sprintf(buf, "%s", s);
        buf += LENGTH(STRING_ELT(VECTOR_ELT(x, j), i % k));
        }
        if (j != nx - 1 && sepw != 0) {
        sprintf(buf, "%s", CHAR(sep));
        buf += sepw;
        }
    }
    SET_STRING_ELT(ans, i, tmpchar);
    }

    /* Now collapse, if required. */

    if(collapse != R_NilValue && (nx=LENGTH(ans)) != 0) {
    sep = STRING_ELT(collapse, 0);
    sepw = LENGTH(sep);
    pwidth = 0;
    for (i = 0; i < nx; i++)
        pwidth += LENGTH(STRING_ELT(ans, i));
    pwidth += (nx - 1) * sepw;
    tmpchar = allocString(pwidth);
    buf = CHAR(tmpchar);
    for (i = 0; i < nx; i++) {
        if(i > 0) {
        sprintf(buf, "%s", CHAR(sep));
        buf += sepw;
        }
        s = CHAR(STRING_ELT(ans, i));
        sprintf(buf, "%s", s);
        while (*buf)
        buf++;
    }
    PROTECT(tmpchar);
    ans = allocVector(STRSXP, 1);
    UNPROTECT(1);
    SET_STRING_ELT(ans, 0, tmpchar);
    }
    UNPROTECT(1);
    return ans;
}

/* format.default(x, trim) : ../library/base/R/format.R 
 * --------------   See "FIXME" in that file ! 
 */
SEXP do_format(SEXP call, SEXP op, SEXP args, SEXP env)
{
    SEXP l, x, y;
    int i, n, trim=0;
    int w, d, e;
    int wi, di, ei;
    char *strp;

    PrintDefaults(env);

    switch (length(args)) {
    case 1:
    trim = 0;
    break;
    case 2:
    trim = asLogical(CADR(args));
    if (trim == NA_INTEGER)
        errorcall(call, "invalid \"trim\" argument");
    break;
    default:
    errorcall(call, "incorrect number of arguments");
    }

    if (!isVector(x = CAR(args)))
    errorcall(call, "first argument must be atomic");

    if ((n = LENGTH(x)) <= 0)
    return allocVector(STRSXP, 0);

    switch (TYPEOF(x)) {

    case LGLSXP:
    PROTECT(y = allocVector(STRSXP, n));
    if (trim)
        w = 0;
    else
        formatLogical(LOGICAL(x), n, &w);
    for (i = 0; i < n; i++) {
        strp = EncodeLogical(LOGICAL(x)[i], w);
        SET_STRING_ELT(y, i, mkChar(strp));
    }
    UNPROTECT(1);
    break;

    case INTSXP:
    PROTECT(y = allocVector(STRSXP, n));
    if (trim) w = 0;
    else formatInteger(INTEGER(x), n, &w);
    for (i = 0; i < n; i++) {
        strp = EncodeInteger(INTEGER(x)[i], w);
        SET_STRING_ELT(y, i, mkChar(strp));
    }
    UNPROTECT(1);
    break;

    case REALSXP:
    formatReal(REAL(x), n, &w, &d, &e);
    if (trim) w = 0;
    PROTECT(y = allocVector(STRSXP, n));
    for (i = 0; i < n; i++) {
        strp = EncodeReal(REAL(x)[i], w, d, e);
        SET_STRING_ELT(y, i, mkChar(strp));
    }
    UNPROTECT(1);
    break;

    case CPLXSXP:
    formatComplex(COMPLEX(x), n, &w, &d, &e, &wi, &di, &ei);
    if (trim) wi = w = 0;
    PROTECT(y = allocVector(STRSXP, n));
    for (i = 0; i < n; i++) {
        strp = EncodeComplex(COMPLEX(x)[i], w, d, e, wi, di, ei);
        SET_STRING_ELT(y, i, mkChar(strp));
    }
    UNPROTECT(1);
    break;

    case STRSXP: /* this is *UN*used now (1.2) */

    formatString(STRING_PTR(x), n, &w, 0);
    if (trim) w = 0;
    PROTECT(y = allocVector(STRSXP, n));
    for (i = 0; i < n; i++) {
        strp = EncodeString(CHAR(STRING_ELT(x, i)), w, 0, Rprt_adj_left);
        SET_STRING_ELT(y, i, mkChar(strp));
    }
    UNPROTECT(1);
    break;
    default:
    errorcall(call, "Impossible mode ( x )"); y = R_NilValue;/* -Wall */
    }
    PROTECT(y);
    if((l = getAttrib(x, R_DimSymbol)) != R_NilValue)
    setAttrib(y, R_DimSymbol, l);
    if((l = getAttrib(x, R_DimNamesSymbol)) != R_NilValue)
    setAttrib(y, R_DimNamesSymbol, l);
    UNPROTECT(1);
    return y;
}

/* format.info(obj)  --> 3 integers  (w,d,e) with the formatting information
 *          w = total width (#{chars}) per item
 *          d = #{digits} to RIGHT of "."
 *          e = {0:2}.   0: Fixpoint;
 *                 1,2: exponential with 2/3 digit expon.
 *
 * for complex : 2 x 3 integers for (Re, Im)
 */

SEXP do_formatinfo(SEXP call, SEXP op, SEXP args, SEXP env)
{
    SEXP x;
    int n, w, d, e;
    int wi, di, ei;
    checkArity(op, args);
    x = CAR(args);
    n = LENGTH(x);
    w = 0;
    d = 0;
    e = 0;
    switch (TYPEOF(x)) {

    case LGLSXP:
    formatLogical(LOGICAL(x), n, &w);
    break;

    case INTSXP:
    formatInteger(INTEGER(x), n, &w);
    break;

    case REALSXP:
    formatReal(REAL(x), n, &w, &d, &e);
    break;

    case CPLXSXP:
    wi = di = ei = 0;
    formatComplex(COMPLEX(x), n, &w, &d, &e, &wi, &di, &ei);
    n = -1;/* complex 'code' */
    break;

    case STRSXP:
    formatString(STRING_PTR(x), n, &w, 0);
    break;

    default:
    errorcall(call, "vector arguments only");
    }
    x = allocVector(INTSXP, (n >= 0) ? 3 : 6);
    INTEGER(x)[0] = w;
    INTEGER(x)[1] = d;
    INTEGER(x)[2] = e;
    if(n < 0) { /*- complex -*/
    INTEGER(x)[3] = wi;
    INTEGER(x)[4] = di;
    INTEGER(x)[5] = ei;
    }
    return x;
}