2000-01-28 14:55:50 +00:00
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/*
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* Program to control ICOM radios
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*
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* This is a ripoff of the utility routines in the ICOM software
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* distribution. The only function provided is to load the radio
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* frequency. All other parameters must be manually set before use.
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*/
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#include "icom.h"
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#include <unistd.h>
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#include <stdio.h>
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#include <fcntl.h>
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#include <errno.h>
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2001-08-29 14:35:15 +00:00
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#include "ntp_tty.h"
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2000-01-28 14:55:50 +00:00
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/*
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* Scraps
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*/
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#define BMAX 50 /* max command length */
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#define DICOM /dev/icom/ /* ICOM port link */
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/*
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* FSA definitions
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*/
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#define S_IDLE 0 /* idle */
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#define S_HDR 1 /* header */
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#define S_TX 2 /* address */
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#define S_DATA 3 /* data */
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#define S_ERROR 4 /* error */
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/*
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* Local function prototypes
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*/
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static void doublefreq P((double, u_char *, int));
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static int sndpkt P((int, int, u_char *, u_char *));
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static int sndoctet P((int, int));
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static int rcvoctet P((int));
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/*
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* Local variables
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*/
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static int flags; /* trace flags */
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static int state; /* fsa state */
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/*
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* icom_freq(fd, ident, freq) - load radio frequency
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*/
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int
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icom_freq( /* returns 0 (ok), EIO (error) */
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int fd, /* file descriptor */
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int ident, /* ICOM radio identifier */
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double freq /* frequency (MHz) */
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)
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{
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u_char cmd[BMAX], rsp[BMAX];
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int temp;
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cmd[0] = V_SFREQ;
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if (ident == IC735)
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temp = 4;
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else
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temp = 5;
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doublefreq(freq * 1e6, &cmd[1], temp);
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temp = sndpkt(fd, ident, cmd, rsp);
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if (temp < 1 || rsp[0] != ACK)
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return (EIO);
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return (0);
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}
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/*
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* doublefreq(freq, y, len) - double to ICOM frequency with padding
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*/
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static void
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doublefreq( /* returns void */
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double freq, /* frequency */
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u_char *x, /* radio frequency */
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int len /* length (octets) */
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)
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{
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int i;
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char s1[11];
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char *y;
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sprintf(s1, " %10.0f", freq);
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y = s1 + 10;
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i = 0;
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while (*y != ' ') {
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x[i] = *y-- & 0x0f;
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x[i] = x[i] | ((*y-- & 0x0f) << 4);
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i++;
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}
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for (; i < len; i++)
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x[i] = 0;
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x[i] = FI;
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}
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/*
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* Packet routines
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*
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* These routines send a packet and receive the response. If an error
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* (collision) occurs on transmit, the packet is resent. If an error
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* occurs on receive (timeout), all input to the terminating FI is
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* discarded and the packet is resent. If the maximum number of retries
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* is not exceeded, the program returns the number of octets in the user
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* buffer; otherwise, it returns zero.
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*
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* ICOM frame format
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*
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* Frames begin with a two-octet preamble PR-PR followyd by the
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* transceiver address RE, controller address TX, control code CN, zero
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* or more data octets DA (depending on command), and terminator FI.
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* Since the bus is bidirectional, every octet output is echoed on
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* input. Every valid frame sent is answered with a frame in the same
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* format, but with the RE and TX fields interchanged. The CN field is
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* set to NAK if an error has occurred. Otherwise, the data are returned
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* in this and following DA octets. If no data are returned, the CN
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* octet is set to ACK.
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*
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* +------+------+------+------+------+--//--+------+
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* | PR | PR | RE | TX | CN | DA | FI |
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* +------+------+------+------+------+--//--+------+
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*/
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/*
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* icom_open() - open and initialize serial interface
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*
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* This routine opens the serial interface for raw transmission; that
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* is, character-at-a-time, no stripping, checking or monkeying with the
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* bits. For Unix, an input operation ends either with the receipt of a
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* character or a 0.5-s timeout.
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*/
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int
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icom_init(
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char *device, /* device name/link */
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int speed, /* line speed */
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int trace /* trace flags */ )
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{
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2001-08-29 14:35:15 +00:00
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TTY ttyb;
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2000-01-28 14:55:50 +00:00
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int fd;
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flags = trace;
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fd = open(device, O_RDWR, 0777);
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if (fd < 0)
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return (fd);
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tcgetattr(fd, &ttyb);
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ttyb.c_iflag = 0; /* input modes */
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ttyb.c_oflag = 0; /* output modes */
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ttyb.c_cflag = IBAUD|CS8|CREAD|CLOCAL; /* control modes */
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ttyb.c_lflag = 0; /* local modes */
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ttyb.c_cc[VMIN] = 0; /* min chars */
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ttyb.c_cc[VTIME] = 5; /* receive timeout */
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cfsetispeed(&ttyb, (u_int)speed);
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cfsetospeed(&ttyb, (u_int)speed);
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tcsetattr(fd, TCSANOW, &ttyb);
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return (fd);
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}
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/*
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* sndpkt(r, x, y) - send packet and receive response
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*
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* This routine sends a command frame, which consists of all except the
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* preamble octets PR-PR. It then listens for the response frame and
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* returns the payload to the caller. The routine checks for correct
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* response header format; that is, the length of the response vector
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* returned to the caller must be at least 2 and the RE and TX octets
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* must be interchanged; otherwise, the operation is retried up to
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* the number of times specified in a global variable.
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*
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* The trace function, which is enabled by the P_TRACE bit of the global
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* flags variable, prints all characters received or echoed on the bus
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* preceded by a T (transmit) or R (receive). The P_ERMSG bit of the
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* flags variable enables printing of bus error messages.
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*
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* Note that the first octet sent is a PAD in order to allow time for
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* the radio to flush its receive buffer after sending the previous
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* response. Even with this precaution, some of the older radios
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* occasionally fail to receive a command and it has to be sent again.
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*/
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static int
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sndpkt( /* returns octet count */
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int fd, /* file descriptor */
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int r, /* radio address */
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u_char *cmd, /* command vector */
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u_char *rsp /* response vector */
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)
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{
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int i, j, temp;
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(void)tcflush(fd, TCIOFLUSH);
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for (i = 0; i < RETRY; i++) {
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state = S_IDLE;
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/*
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* Transmit packet.
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*/
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if (flags & P_TRACE)
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printf("icom T:");
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sndoctet(fd, PAD); /* send header */
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sndoctet(fd, PR);
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sndoctet(fd, PR);
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sndoctet(fd, r);
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sndoctet(fd, TX);
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for (j = 0; j < BMAX; j++) { /* send body */
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if (sndoctet(fd, cmd[j]) == FI)
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break;
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}
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while (rcvoctet(fd) != FI); /* purge echos */
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if (cmd[0] == V_FREQT || cmd[0] == V_MODET)
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return (0); /* shortcut for broadcast */
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/*
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* Receive packet. First, delete all characters
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* preceeding a PR, then discard all PRs. Check that the
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* RE and TX fields are correctly interchanged, then
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* copy the remaining data and FI to the user buffer.
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*/
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if (flags & P_TRACE)
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printf("\nicom R:");
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j = 0;
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while ((temp = rcvoctet(fd)) != FI) {
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switch (state) {
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case S_IDLE:
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if (temp != PR)
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continue;
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state = S_HDR;
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break;
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case S_HDR:
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if (temp == PR) {
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continue;
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} else if (temp != TX) {
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if (flags & P_ERMSG)
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printf(
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"icom: TX error\n");
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state = S_ERROR;
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}
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state = S_TX;
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break;
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case S_TX:
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if (temp != r) {
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if (flags & P_ERMSG)
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printf(
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"icom: RE error\n");
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state = S_ERROR;
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}
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state = S_DATA;
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break;
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case S_DATA:
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if (j >= BMAX ) {
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if (flags & P_ERMSG)
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printf(
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"icom: buffer overrun\n");
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state = S_ERROR;
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j = 0;
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}
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rsp[j++] = (u_char)temp;
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break;
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case S_ERROR:
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break;
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}
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}
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if (flags & P_TRACE)
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printf("\n");
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if (j > 0) {
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rsp[j++] = FI;
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return (j);
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}
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}
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if (flags & P_ERMSG)
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printf("icom: retries exceeded\n");
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return (0);
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}
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/*
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* Interface routines
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*
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* These routines read and write octets on the bus. In case of receive
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* timeout a FI code is returned. In case of output collision (echo
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* does not match octet sent), the remainder of the collision frame
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* (including the trailing FI) is discarded.
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*/
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/*
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* sndoctet(fd, x) - send octet
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*/
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static int
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sndoctet( /* returns octet */
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int fd, /* file descriptor */
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int x /* octet */
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)
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{
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u_char y;
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y = (u_char)x;
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write(fd, &y, 1);
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return (x);
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}
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/*
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* rcvoctet(fd) - receive octet
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*/
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static int
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rcvoctet( /* returns octet */
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int fd /* file descriptor */
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)
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{
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u_char y;
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if (read(fd, &y, 1) < 1)
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y = FI; /* come here if timeout */
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if (flags & P_TRACE && y != PAD)
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printf(" %02x", y);
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return (y);
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}
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/* end program */
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