PcAtChipsetPkg: Apply uncrustify changes

REF: https://bugzilla.tianocore.org/show_bug.cgi?id=3737

Apply uncrustify changes to .c/.h files in the PcAtChipsetPkg package

Cc: Andrew Fish <afish@apple.com>
Cc: Leif Lindholm <leif@nuviainc.com>
Cc: Michael D Kinney <michael.d.kinney@intel.com>
Signed-off-by: Michael Kubacki <michael.kubacki@microsoft.com>
Reviewed-by: Ray Ni <ray.ni@intel.com>
This commit is contained in:
Michael Kubacki
2021-12-05 14:54:10 -08:00
committed by mergify[bot]
parent ac0a286f4d
commit 5220bd211d
18 changed files with 663 additions and 606 deletions

View File

@@ -10,39 +10,39 @@
#include <Library/IoLib.h>
#include <Library/SerialPortLib.h>
//---------------------------------------------
// ---------------------------------------------
// UART Register Offsets
//---------------------------------------------
#define BAUD_LOW_OFFSET 0x00
#define BAUD_HIGH_OFFSET 0x01
#define IER_OFFSET 0x01
#define LCR_SHADOW_OFFSET 0x01
#define FCR_SHADOW_OFFSET 0x02
#define IR_CONTROL_OFFSET 0x02
#define FCR_OFFSET 0x02
#define EIR_OFFSET 0x02
#define BSR_OFFSET 0x03
#define LCR_OFFSET 0x03
#define MCR_OFFSET 0x04
#define LSR_OFFSET 0x05
#define MSR_OFFSET 0x06
// ---------------------------------------------
#define BAUD_LOW_OFFSET 0x00
#define BAUD_HIGH_OFFSET 0x01
#define IER_OFFSET 0x01
#define LCR_SHADOW_OFFSET 0x01
#define FCR_SHADOW_OFFSET 0x02
#define IR_CONTROL_OFFSET 0x02
#define FCR_OFFSET 0x02
#define EIR_OFFSET 0x02
#define BSR_OFFSET 0x03
#define LCR_OFFSET 0x03
#define MCR_OFFSET 0x04
#define LSR_OFFSET 0x05
#define MSR_OFFSET 0x06
//---------------------------------------------
// ---------------------------------------------
// UART Register Bit Defines
//---------------------------------------------
#define LSR_TXRDY 0x20
#define LSR_RXDA 0x01
#define DLAB 0x01
#define MCR_DTRC 0x01
#define MCR_RTS 0x02
#define MSR_CTS 0x10
#define MSR_DSR 0x20
#define MSR_RI 0x40
#define MSR_DCD 0x80
// ---------------------------------------------
#define LSR_TXRDY 0x20
#define LSR_RXDA 0x01
#define DLAB 0x01
#define MCR_DTRC 0x01
#define MCR_RTS 0x02
#define MSR_CTS 0x10
#define MSR_DSR 0x20
#define MSR_RI 0x40
#define MSR_DCD 0x80
//---------------------------------------------
// ---------------------------------------------
// UART Settings
//---------------------------------------------
// ---------------------------------------------
UINT16 gUartBase = 0x3F8;
UINTN gBps = 115200;
UINT8 gData = 8;
@@ -74,7 +74,7 @@ SerialPortInitialize (
//
// Map 5..8 to 0..3
//
Data = (UINT8) (gData - (UINT8) 5);
Data = (UINT8)(gData - (UINT8)5);
//
// Calculate divisor for baud generator
@@ -84,19 +84,19 @@ SerialPortInitialize (
//
// Set communications format
//
OutputData = (UINT8) ((DLAB << 7) | (gBreakSet << 6) | (gParity << 3) | (gStop << 2) | Data);
OutputData = (UINT8)((DLAB << 7) | (gBreakSet << 6) | (gParity << 3) | (gStop << 2) | Data);
IoWrite8 (gUartBase + LCR_OFFSET, OutputData);
//
// Configure baud rate
//
IoWrite8 (gUartBase + BAUD_HIGH_OFFSET, (UINT8) (Divisor >> 8));
IoWrite8 (gUartBase + BAUD_LOW_OFFSET, (UINT8) (Divisor & 0xff));
IoWrite8 (gUartBase + BAUD_HIGH_OFFSET, (UINT8)(Divisor >> 8));
IoWrite8 (gUartBase + BAUD_LOW_OFFSET, (UINT8)(Divisor & 0xff));
//
// Switch back to bank 0
//
OutputData = (UINT8) ( (gBreakSet << 6) | (gParity << 3) | (gStop << 2) | Data);
OutputData = (UINT8)((gBreakSet << 6) | (gParity << 3) | (gStop << 2) | Data);
IoWrite8 (gUartBase + LCR_OFFSET, OutputData);
return RETURN_SUCCESS;
@@ -124,9 +124,9 @@ SerialPortInitialize (
UINTN
EFIAPI
SerialPortWrite (
IN UINT8 *Buffer,
IN UINTN NumberOfBytes
)
IN UINT8 *Buffer,
IN UINTN NumberOfBytes
)
{
UINTN Result;
UINT8 Data;
@@ -142,15 +142,15 @@ SerialPortWrite (
// Wait for the serial port to be ready.
//
do {
Data = IoRead8 ((UINT16) gUartBase + LSR_OFFSET);
Data = IoRead8 ((UINT16)gUartBase + LSR_OFFSET);
} while ((Data & LSR_TXRDY) == 0);
IoWrite8 ((UINT16) gUartBase, *Buffer++);
IoWrite8 ((UINT16)gUartBase, *Buffer++);
}
return Result;
}
/**
Reads data from a serial device into a buffer.
@@ -165,9 +165,9 @@ SerialPortWrite (
UINTN
EFIAPI
SerialPortRead (
OUT UINT8 *Buffer,
IN UINTN NumberOfBytes
)
OUT UINT8 *Buffer,
IN UINTN NumberOfBytes
)
{
UINTN Result;
UINT8 Data;
@@ -183,10 +183,10 @@ SerialPortRead (
// Wait for the serial port to be ready.
//
do {
Data = IoRead8 ((UINT16) gUartBase + LSR_OFFSET);
Data = IoRead8 ((UINT16)gUartBase + LSR_OFFSET);
} while ((Data & LSR_RXDA) == 0);
*Buffer++ = IoRead8 ((UINT16) gUartBase);
*Buffer++ = IoRead8 ((UINT16)gUartBase);
}
return Result;
@@ -214,9 +214,9 @@ SerialPortPoll (
//
// Read the serial port status.
//
Data = IoRead8 ((UINT16) gUartBase + LSR_OFFSET);
Data = IoRead8 ((UINT16)gUartBase + LSR_OFFSET);
return (BOOLEAN) ((Data & LSR_RXDA) != 0);
return (BOOLEAN)((Data & LSR_RXDA) != 0);
}
/**
@@ -232,10 +232,10 @@ SerialPortPoll (
RETURN_STATUS
EFIAPI
SerialPortSetControl (
IN UINT32 Control
IN UINT32 Control
)
{
UINT8 Mcr;
UINT8 Mcr;
//
// First determine the parameter is invalid.
@@ -247,7 +247,7 @@ SerialPortSetControl (
//
// Read the Modem Control Register.
//
Mcr = IoRead8 ((UINT16) gUartBase + MCR_OFFSET);
Mcr = IoRead8 ((UINT16)gUartBase + MCR_OFFSET);
Mcr &= (~(MCR_DTRC | MCR_RTS));
if ((Control & EFI_SERIAL_DATA_TERMINAL_READY) == EFI_SERIAL_DATA_TERMINAL_READY) {
@@ -261,7 +261,7 @@ SerialPortSetControl (
//
// Write the Modem Control Register.
//
IoWrite8 ((UINT16) gUartBase + MCR_OFFSET, Mcr);
IoWrite8 ((UINT16)gUartBase + MCR_OFFSET, Mcr);
return RETURN_SUCCESS;
}
@@ -279,19 +279,19 @@ SerialPortSetControl (
RETURN_STATUS
EFIAPI
SerialPortGetControl (
OUT UINT32 *Control
OUT UINT32 *Control
)
{
UINT8 Msr;
UINT8 Mcr;
UINT8 Lsr;
UINT8 Msr;
UINT8 Mcr;
UINT8 Lsr;
*Control = 0;
//
// Read the Modem Status Register.
//
Msr = IoRead8 ((UINT16) gUartBase + MSR_OFFSET);
Msr = IoRead8 ((UINT16)gUartBase + MSR_OFFSET);
if ((Msr & MSR_CTS) == MSR_CTS) {
*Control |= EFI_SERIAL_CLEAR_TO_SEND;
@@ -312,7 +312,7 @@ SerialPortGetControl (
//
// Read the Modem Control Register.
//
Mcr = IoRead8 ((UINT16) gUartBase + MCR_OFFSET);
Mcr = IoRead8 ((UINT16)gUartBase + MCR_OFFSET);
if ((Mcr & MCR_DTRC) == MCR_DTRC) {
*Control |= EFI_SERIAL_DATA_TERMINAL_READY;
@@ -325,7 +325,7 @@ SerialPortGetControl (
//
// Read the Line Status Register.
//
Lsr = IoRead8 ((UINT16) gUartBase + LSR_OFFSET);
Lsr = IoRead8 ((UINT16)gUartBase + LSR_OFFSET);
if ((Lsr & LSR_TXRDY) == LSR_TXRDY) {
*Control |= EFI_SERIAL_OUTPUT_BUFFER_EMPTY;
@@ -374,19 +374,19 @@ SerialPortGetControl (
RETURN_STATUS
EFIAPI
SerialPortSetAttributes (
IN OUT UINT64 *BaudRate,
IN OUT UINT32 *ReceiveFifoDepth,
IN OUT UINT32 *Timeout,
IN OUT EFI_PARITY_TYPE *Parity,
IN OUT UINT8 *DataBits,
IN OUT EFI_STOP_BITS_TYPE *StopBits
IN OUT UINT64 *BaudRate,
IN OUT UINT32 *ReceiveFifoDepth,
IN OUT UINT32 *Timeout,
IN OUT EFI_PARITY_TYPE *Parity,
IN OUT UINT8 *DataBits,
IN OUT EFI_STOP_BITS_TYPE *StopBits
)
{
UINTN Divisor;
UINT8 OutputData;
UINT8 LcrData;
UINT8 LcrParity;
UINT8 LcrStop;
UINTN Divisor;
UINT8 OutputData;
UINT8 LcrData;
UINT8 LcrParity;
UINT8 LcrStop;
//
// Check for default settings and fill in actual values.
@@ -414,7 +414,7 @@ SerialPortSetAttributes (
//
// Map 5..8 to 0..3
//
LcrData = (UINT8) (*DataBits - (UINT8) 5);
LcrData = (UINT8)(*DataBits - (UINT8)5);
switch (*Parity) {
case NoParity:
@@ -458,26 +458,25 @@ SerialPortSetAttributes (
//
// Calculate divisor for baud generator
//
Divisor = 115200 / (UINTN) *BaudRate;
Divisor = 115200 / (UINTN)*BaudRate;
//
// Set communications format
//
OutputData = (UINT8) ((DLAB << 7) | (gBreakSet << 6) | (LcrParity << 3) | (LcrStop << 2) | LcrData);
OutputData = (UINT8)((DLAB << 7) | (gBreakSet << 6) | (LcrParity << 3) | (LcrStop << 2) | LcrData);
IoWrite8 (gUartBase + LCR_OFFSET, OutputData);
//
// Configure baud rate
//
IoWrite8 (gUartBase + BAUD_HIGH_OFFSET, (UINT8) (Divisor >> 8));
IoWrite8 (gUartBase + BAUD_LOW_OFFSET, (UINT8) (Divisor & 0xff));
IoWrite8 (gUartBase + BAUD_HIGH_OFFSET, (UINT8)(Divisor >> 8));
IoWrite8 (gUartBase + BAUD_LOW_OFFSET, (UINT8)(Divisor & 0xff));
//
// Switch back to bank 0
//
OutputData = (UINT8) ((gBreakSet << 6) | (LcrParity << 3) | (LcrStop << 2) | LcrData);
OutputData = (UINT8)((gBreakSet << 6) | (LcrParity << 3) | (LcrStop << 2) | LcrData);
IoWrite8 (gUartBase + LCR_OFFSET, OutputData);
return RETURN_SUCCESS;
}