return j->pld_slicr.bits.state;
}
-static BOOL SLIC_SetState(BYTE byState, IXJ *j)
+static bool SLIC_SetState(BYTE byState, IXJ *j)
{
- BOOL fRetVal = FALSE;
+ bool fRetVal = false;
if (j->cardtype == QTI_PHONECARD) {
if (j->flags.pcmciasct) {
case PLD_SLIC_STATE_OC:
j->pslic.bits.powerdown = 1;
j->pslic.bits.ring0 = j->pslic.bits.ring1 = 0;
- fRetVal = TRUE;
+ fRetVal = true;
break;
case PLD_SLIC_STATE_RINGING:
if (j->readers || j->writers) {
j->pslic.bits.powerdown = 0;
j->pslic.bits.ring0 = 1;
j->pslic.bits.ring1 = 0;
- fRetVal = TRUE;
+ fRetVal = true;
}
break;
case PLD_SLIC_STATE_OHT: /* On-hook transmit */
j->pslic.bits.powerdown = 1;
}
j->pslic.bits.ring0 = j->pslic.bits.ring1 = 0;
- fRetVal = TRUE;
+ fRetVal = true;
break;
case PLD_SLIC_STATE_APR: /* Active polarity reversal */
case PLD_SLIC_STATE_OHTPR: /* OHT polarity reversal */
default:
- fRetVal = FALSE;
+ fRetVal = false;
break;
}
j->psccr.bits.dev = 3;
j->pld_slicw.bits.c3 = 0;
j->pld_slicw.bits.b2en = 0;
outb_p(j->pld_slicw.byte, j->XILINXbase + 0x01);
- fRetVal = TRUE;
+ fRetVal = true;
break;
case PLD_SLIC_STATE_RINGING:
j->pld_slicw.bits.c1 = 1;
j->pld_slicw.bits.c3 = 0;
j->pld_slicw.bits.b2en = 1;
outb_p(j->pld_slicw.byte, j->XILINXbase + 0x01);
- fRetVal = TRUE;
+ fRetVal = true;
break;
case PLD_SLIC_STATE_ACTIVE:
j->pld_slicw.bits.c1 = 0;
j->pld_slicw.bits.c3 = 0;
j->pld_slicw.bits.b2en = 0;
outb_p(j->pld_slicw.byte, j->XILINXbase + 0x01);
- fRetVal = TRUE;
+ fRetVal = true;
break;
case PLD_SLIC_STATE_OHT: /* On-hook transmit */
j->pld_slicw.bits.c3 = 0;
j->pld_slicw.bits.b2en = 0;
outb_p(j->pld_slicw.byte, j->XILINXbase + 0x01);
- fRetVal = TRUE;
+ fRetVal = true;
break;
case PLD_SLIC_STATE_TIPOPEN:
j->pld_slicw.bits.c1 = 0;
j->pld_slicw.bits.c3 = 1;
j->pld_slicw.bits.b2en = 0;
outb_p(j->pld_slicw.byte, j->XILINXbase + 0x01);
- fRetVal = TRUE;
+ fRetVal = true;
break;
case PLD_SLIC_STATE_STANDBY:
j->pld_slicw.bits.c1 = 1;
j->pld_slicw.bits.c3 = 1;
j->pld_slicw.bits.b2en = 1;
outb_p(j->pld_slicw.byte, j->XILINXbase + 0x01);
- fRetVal = TRUE;
+ fRetVal = true;
break;
case PLD_SLIC_STATE_APR: /* Active polarity reversal */
j->pld_slicw.bits.c3 = 1;
j->pld_slicw.bits.b2en = 0;
outb_p(j->pld_slicw.byte, j->XILINXbase + 0x01);
- fRetVal = TRUE;
+ fRetVal = true;
break;
case PLD_SLIC_STATE_OHTPR: /* OHT polarity reversal */
j->pld_slicw.bits.c3 = 1;
j->pld_slicw.bits.b2en = 0;
outb_p(j->pld_slicw.byte, j->XILINXbase + 0x01);
- fRetVal = TRUE;
+ fRetVal = true;
break;
default:
- fRetVal = FALSE;
+ fRetVal = false;
break;
}
}
{
int i;
BYTES bytes;
- char CID[ALISDAA_CALLERID_SIZE], mContinue;
+ char CID[ALISDAA_CALLERID_SIZE];
+ bool mContinue;
char *pIn, *pOut;
if (!SCI_Prepare(j))
pIn = CID;
pOut = j->m_DAAShadowRegs.CAO_REGS.CAO.CallerID;
- mContinue = 1;
+ mContinue = true;
while (mContinue) {
if ((pIn[1] & 0x03) == 0x01) {
pOut[0] = pIn[0];
if ((pIn[4] & 0xc0) == 0x40) {
pOut[3] = ((pIn[4] & 0x3f) << 2) | ((pIn[3] & 0xc0) >> 6);
} else {
- mContinue = FALSE;
+ mContinue = false;
}
pIn += 5, pOut += 4;
}
return ((inb(wEEPROMAddress) >> 3) & 1);
}
-static BOOL PCIEE_ReadWord(WORD wAddress, WORD wLoc, WORD * pwResult)
+static bool PCIEE_ReadWord(WORD wAddress, WORD wLoc, WORD * pwResult)
{
BYTE lastLCC;
WORD wEEPROMAddress = wAddress + 3;