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seriow32.c
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/*
* Copyright (c) 2008 Rainer Clasen
*
* This program is free software; you can redistribute it and/or modify
* it under the terms described in the file LICENSE included in this
* distribution.
*
*/
#include "serio.h"
#ifdef HAVE_WINDOWS_H
# include <windows.h>
#endif
static const DWORD _srmio_iow32_baud[srmio_io_baud_max] = {
CBR_2400,
CBR_4800,
CBR_9600,
CBR_19200,
CBR_38400,
};
/*
* handle
*/
struct _srmio_iow32_t {
char *fname;
HANDLE fh;
};
typedef struct _srmio_iow32_t *srmio_iow32_t;
#define SELF(x) ((srmio_iow32_t)x->child)
static int _srmio_iow32_write( srmio_io_t h, const unsigned char *buf,
size_t len, srmio_error_t *err )
{
DWORD cBytes = 0;
assert( h );
assert( SELF(h)->fh != INVALID_HANDLE_VALUE );
assert( buf );
if( ! WriteFile( SELF(h)->fh, buf, len, &cBytes, NULL ) ){
srmio_error_win( err, "WriteFile" );
return -1;
}
if( ! FlushFileBuffers( SELF(h)->fh ) ){
srmio_error_win( err, "FlushFileBuffers" );
return -1;
}
return cBytes;
}
static int _srmio_iow32_read( srmio_io_t h, unsigned char *buf, size_t len,
srmio_error_t *err )
{
DWORD cBytes = 0;
assert( h );
assert( SELF(h)->fh != INVALID_HANDLE_VALUE );
assert( buf );
if( ! ReadFile( SELF(h)->fh, buf, len, &cBytes, NULL ) ){
srmio_error_win( err, "ReadFile" );
return -1;
}
return cBytes;
}
static bool _srmio_iow32_flush( srmio_io_t h, srmio_error_t *err )
{
assert( h );
assert( SELF(h)->fh != INVALID_HANDLE_VALUE );
if( ! PurgeComm( SELF(h)->fh, PURGE_RXABORT | PURGE_RXCLEAR
| PURGE_TXABORT | PURGE_TXCLEAR ) ){
srmio_error_win( err, "PurgeComm" );
return false;
}
return true;
}
static bool _srmio_iow32_send_break( srmio_io_t h, srmio_error_t *err )
{
assert( h );
assert( SELF(h)->fh != INVALID_HANDLE_VALUE );
if( ! SetCommBreak( SELF(h)->fh ) ){
srmio_error_win(err, "SetCommBreak" );
return false;
}
#ifdef HAVE_MSEC_SLEEP
Sleep(250);
#else
# error missing Sleep()
#endif
if( ! ClearCommBreak( SELF(h)->fh ) ){
srmio_error_win(err, "ClearCommBreak" );
return false;
}
return true;
}
static bool _srmio_iow32_update( srmio_io_t h, srmio_error_t *err )
{
COMMTIMEOUTS timeouts = {
.ReadIntervalTimeout = 1000,
.ReadTotalTimeoutConstant = 0,
.ReadTotalTimeoutMultiplier = 1000,
.WriteTotalTimeoutConstant = 0,
.WriteTotalTimeoutMultiplier = 500,
};
DCB dcb;
if( ! GetCommState( SELF(h)->fh, &dcb ) ){
srmio_error_win( err, "GetCommState" );
return false;
}
dcb.fBinary = TRUE;
dcb.fAbortOnError = FALSE;
dcb.ErrorChar = 0;
dcb.EofChar = 0;
dcb.EvtChar = 0;
dcb.ByteSize = 8;
dcb.StopBits = ONESTOPBIT;
// TODO: XonChar, XoffChar, XonLim, XoffLim
switch( h->flow ){
case srmio_io_flow_none:
dcb.fOutX = FALSE;
dcb.fInX = FALSE;
dcb.fOutxCtsFlow = FALSE;
dcb.fRtsControl = RTS_CONTROL_DISABLE;
dcb.fOutxDsrFlow = FALSE;
dcb.fDsrSensitivity = FALSE;
dcb.fDtrControl = DTR_CONTROL_DISABLE;
break;
case srmio_io_flow_xonoff:
dcb.fOutX = TRUE;
dcb.fInX = TRUE;
dcb.fOutxCtsFlow = FALSE;
dcb.fRtsControl = RTS_CONTROL_DISABLE;
dcb.fOutxDsrFlow = FALSE;
dcb.fDsrSensitivity = FALSE;
dcb.fDtrControl = DTR_CONTROL_DISABLE;
break;
case srmio_io_flow_rtscts:
dcb.fOutX = FALSE;
dcb.fInX = FALSE;
dcb.fOutxCtsFlow = TRUE;
dcb.fRtsControl = RTS_CONTROL_HANDSHAKE;
dcb.fOutxDsrFlow = FALSE;
dcb.fDsrSensitivity = FALSE;
dcb.fDtrControl = DTR_CONTROL_DISABLE;
break;
default:
srmio_error_set( err, "ios invalid flow control: %u", h->flow);
return false;
}
switch( h->parity ){
case srmio_io_parity_none:
dcb.Parity = NOPARITY;
break;
case srmio_io_parity_even:
dcb.Parity = EVENPARITY;
break;
case srmio_io_parity_odd:
dcb.Parity = ODDPARITY;
break;
default:
srmio_error_set( err, "ios invalid parity: %u", h->parity );
return false;
}
assert( h->baudrate < srmio_io_baud_max );
dcb.BaudRate = _srmio_iow32_baud[h->baudrate];
if( ! SetCommState( SELF(h)->fh, &dcb )){
srmio_error_win( err, "SetCommState" );
return false;
}
if( ! SetCommTimeouts(SELF(h)->fh, &timeouts) ){
srmio_error_win( err, "SetCommTimeouts" );
return false;
}
return true;
}
static bool _srmio_iow32_close( srmio_io_t h, srmio_error_t *err )
{
(void)err;
assert( h );
assert( SELF(h)->fh != INVALID_HANDLE_VALUE );
CloseHandle( SELF(h)->fh );
SELF(h)->fh = INVALID_HANDLE_VALUE;
return true;
}
static bool _srmio_iow32_open( srmio_io_t h, srmio_error_t *err )
{
char path[PATH_MAX];
wchar_t wname[PATH_MAX];
assert( h );
assert( SELF(h)->fh == INVALID_HANDLE_VALUE );
if( PATH_MAX <= snprintf( path, PATH_MAX, "\\\\.\\%s",
SELF(h)->fname ) ){
srmio_error_errno( err, "build filname failed" );
return false;
}
if( ! MultiByteToWideChar( CP_ACP, 0,
path, -1, wname, PATH_MAX ) ){
srmio_error_set( err, "failed to convert filename" );
return false;
}
SELF(h)->fh = CreateFile( wname,
GENERIC_READ|GENERIC_WRITE,
FILE_SHARE_DELETE|FILE_SHARE_WRITE|FILE_SHARE_READ,
NULL, OPEN_EXISTING, 0, NULL);
if( SELF(h)->fh == INVALID_HANDLE_VALUE){
srmio_error_win( err, "CreateFile" );
return false;
}
if( ! srmio_io_update( h, err ) )
goto clean;
return true;
clean:
CloseHandle( SELF(h)->fh );
SELF(h)->fh = INVALID_HANDLE_VALUE;
return false;
}
static void _srmio_iow32_free( srmio_io_t h )
{
free(SELF(h)->fname);
free(SELF(h));
}
static const srmio_io_methods_t _iow32_methods = {
.free = _srmio_iow32_free,
.open = _srmio_iow32_open,
.close = _srmio_iow32_close,
.update = _srmio_iow32_update,
.read = _srmio_iow32_read,
.write = _srmio_iow32_write,
.flush = _srmio_iow32_flush,
.send_break = _srmio_iow32_send_break,
};
srmio_io_t srmio_iow32_new( const char *fname, srmio_error_t *err )
{
srmio_iow32_t self;
srmio_io_t h;
assert( fname );
if( NULL == ( self = malloc( sizeof(struct _srmio_iow32_t)))){
srmio_error_errno( err, "ios new" );
return NULL;
}
self->fh = INVALID_HANDLE_VALUE;
if( NULL == ( self->fname = strdup( fname ) )){
srmio_error_errno( err, "ios new fname" );
goto clean1;
}
if( NULL == ( h = srmio_io_new( &_iow32_methods, (void*)self, err ) ))
goto clean2;
return h;
clean2:
free( self->fname );
clean1:
free( self );
return NULL;
}