#ifdef M_RCSID
#ifndef lint
static char rcsID[] = "$Header: /rd/src/libc/xcurses/rcs/tputs.c 1.4 1995/07/19 12:44:45 ant Exp $";
#endif
#endif
#include <private.h>
#include <ctype.h>
#include <string.h>
#include <stdlib.h>
int
__m_putchar(byte)
int byte;
{
return putchar(byte);
}
int
(putp)(const char *s)
{
int code;
#ifdef M_CURSES_TRACE
__m_trace("putp(%p = \"%s\")", s, s);
#endif
code = tputs(s, 1, __m_putchar);
return __m_return_code("putp", code);
}
int
tputs(string, affcnt, putout)
const char *string;
int affcnt;
int (*putout)(int);
{
char *mark;
int i, baud, len, null, number;
#ifdef M_CURSES_TRACE
__m_trace("tputs(%p = \"%s\", %d, %p)", string, string, affcnt, putout);
#endif
baud = baudrate();
null = pad_char == (char *) 0 ? '\0' : pad_char[0];
for (len = 0; *string; ++string){
if (*string == '$'
&& string[1] == '<'
&& (isdigit(string[2]) || string[2] == '.')
&& (mark = strchr(string, '>'))){
number = atoi(string+2) * 10;
if ((string = strchr(string, '.')) != (char *) 0)
number += *++string-'0';
string = mark;
if (*--mark == '*')
number *= affcnt;
if (padding_baud_rate && baud >= padding_baud_rate
&& !xon_xoff) {
number = (baud/10 * number)/1000;
len += number;
if (putout != (int (*)(int)) 0) {
for (i=0; i < number; i++)
(void) (*putout)(null);
}
}
} else {
++len;
if (putout != (int (*)(int)) 0)
(void) (*putout)(*string);
}
}
return __m_return_int("tputs", len);
}