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Removed variable axis support from the HID_DESCRIPTOR_JOYSTICK() macro due to OS...
[pub/USBasp.git]
/
LUFA
/
Drivers
/
Peripheral
/
AVR8
/
SPI_AVR8.h
diff --git
a/LUFA/Drivers/Peripheral/AVR8/SPI_AVR8.h
b/LUFA/Drivers/Peripheral/AVR8/SPI_AVR8.h
index
2c0ca6e
..
2e396ed
100644
(file)
--- a/
LUFA/Drivers/Peripheral/AVR8/SPI_AVR8.h
+++ b/
LUFA/Drivers/Peripheral/AVR8/SPI_AVR8.h
@@
-100,61
+100,61
@@
/* Macros: */
/** \name SPI Prescaler Configuration Masks */
//@{
/* Macros: */
/** \name SPI Prescaler Configuration Masks */
//@{
- /** SPI prescaler mask for \
c
SPI_Init(). Divides the system clock by a factor of 2. */
+ /** SPI prescaler mask for \
ref
SPI_Init(). Divides the system clock by a factor of 2. */
#define SPI_SPEED_FCPU_DIV_2 SPI_USE_DOUBLESPEED
#define SPI_SPEED_FCPU_DIV_2 SPI_USE_DOUBLESPEED
- /** SPI prescaler mask for \
c
SPI_Init(). Divides the system clock by a factor of 4. */
+ /** SPI prescaler mask for \
ref
SPI_Init(). Divides the system clock by a factor of 4. */
#define SPI_SPEED_FCPU_DIV_4 0
#define SPI_SPEED_FCPU_DIV_4 0
- /** SPI prescaler mask for \
c
SPI_Init(). Divides the system clock by a factor of 8. */
+ /** SPI prescaler mask for \
ref
SPI_Init(). Divides the system clock by a factor of 8. */
#define SPI_SPEED_FCPU_DIV_8 (SPI_USE_DOUBLESPEED | (1 << SPR0))
#define SPI_SPEED_FCPU_DIV_8 (SPI_USE_DOUBLESPEED | (1 << SPR0))
- /** SPI prescaler mask for \
c
SPI_Init(). Divides the system clock by a factor of 16. */
+ /** SPI prescaler mask for \
ref
SPI_Init(). Divides the system clock by a factor of 16. */
#define SPI_SPEED_FCPU_DIV_16 (1 << SPR0)
#define SPI_SPEED_FCPU_DIV_16 (1 << SPR0)
- /** SPI prescaler mask for \
c
SPI_Init(). Divides the system clock by a factor of 32. */
+ /** SPI prescaler mask for \
ref
SPI_Init(). Divides the system clock by a factor of 32. */
#define SPI_SPEED_FCPU_DIV_32 (SPI_USE_DOUBLESPEED | (1 << SPR1))
#define SPI_SPEED_FCPU_DIV_32 (SPI_USE_DOUBLESPEED | (1 << SPR1))
- /** SPI prescaler mask for \
c
SPI_Init(). Divides the system clock by a factor of 64. */
+ /** SPI prescaler mask for \
ref
SPI_Init(). Divides the system clock by a factor of 64. */
#define SPI_SPEED_FCPU_DIV_64 (SPI_USE_DOUBLESPEED | (1 << SPR1) | (1 << SPR0))
#define SPI_SPEED_FCPU_DIV_64 (SPI_USE_DOUBLESPEED | (1 << SPR1) | (1 << SPR0))
- /** SPI prescaler mask for \
c
SPI_Init(). Divides the system clock by a factor of 128. */
+ /** SPI prescaler mask for \
ref
SPI_Init(). Divides the system clock by a factor of 128. */
#define SPI_SPEED_FCPU_DIV_128 ((1 << SPR1) | (1 << SPR0))
//@}
/** \name SPI SCK Polarity Configuration Masks */
//@{
#define SPI_SPEED_FCPU_DIV_128 ((1 << SPR1) | (1 << SPR0))
//@}
/** \name SPI SCK Polarity Configuration Masks */
//@{
- /** SPI clock polarity mask for \
c
SPI_Init(). Indicates that the SCK should lead on the rising edge. */
+ /** SPI clock polarity mask for \
ref
SPI_Init(). Indicates that the SCK should lead on the rising edge. */
#define SPI_SCK_LEAD_RISING (0 << CPOL)
#define SPI_SCK_LEAD_RISING (0 << CPOL)
- /** SPI clock polarity mask for \
c
SPI_Init(). Indicates that the SCK should lead on the falling edge. */
+ /** SPI clock polarity mask for \
ref
SPI_Init(). Indicates that the SCK should lead on the falling edge. */
#define SPI_SCK_LEAD_FALLING (1 << CPOL)
//@}
/** \name SPI Sample Edge Configuration Masks */
//@{
#define SPI_SCK_LEAD_FALLING (1 << CPOL)
//@}
/** \name SPI Sample Edge Configuration Masks */
//@{
- /** SPI data sample mode mask for \
c
SPI_Init(). Indicates that the data should sampled on the leading edge. */
+ /** SPI data sample mode mask for \
ref
SPI_Init(). Indicates that the data should sampled on the leading edge. */
#define SPI_SAMPLE_LEADING (0 << CPHA)
#define SPI_SAMPLE_LEADING (0 << CPHA)
- /** SPI data sample mode mask for \
c
SPI_Init(). Indicates that the data should be sampled on the trailing edge. */
+ /** SPI data sample mode mask for \
ref
SPI_Init(). Indicates that the data should be sampled on the trailing edge. */
#define SPI_SAMPLE_TRAILING (1 << CPHA)
//@}
/** \name SPI Data Ordering Configuration Masks */
//@{
#define SPI_SAMPLE_TRAILING (1 << CPHA)
//@}
/** \name SPI Data Ordering Configuration Masks */
//@{
- /** SPI data order mask for \
c
SPI_Init(). Indicates that data should be shifted out MSB first. */
+ /** SPI data order mask for \
ref
SPI_Init(). Indicates that data should be shifted out MSB first. */
#define SPI_ORDER_MSB_FIRST (0 << DORD)
#define SPI_ORDER_MSB_FIRST (0 << DORD)
- /** SPI data order mask for \
c
SPI_Init(). Indicates that data should be shifted out LSB first. */
+ /** SPI data order mask for \
ref
SPI_Init(). Indicates that data should be shifted out LSB first. */
#define SPI_ORDER_LSB_FIRST (1 << DORD)
//@}
/** \name SPI Mode Configuration Masks */
//@{
#define SPI_ORDER_LSB_FIRST (1 << DORD)
//@}
/** \name SPI Mode Configuration Masks */
//@{
- /** SPI mode mask for \
c
SPI_Init(). Indicates that the SPI interface should be initialized into slave mode. */
+ /** SPI mode mask for \
ref
SPI_Init(). Indicates that the SPI interface should be initialized into slave mode. */
#define SPI_MODE_SLAVE (0 << MSTR)
#define SPI_MODE_SLAVE (0 << MSTR)
- /** SPI mode mask for \
c
SPI_Init(). Indicates that the SPI interface should be initialized into master mode. */
+ /** SPI mode mask for \
ref
SPI_Init(). Indicates that the SPI interface should be initialized into master mode. */
#define SPI_MODE_MASTER (1 << MSTR)
//@}
#define SPI_MODE_MASTER (1 << MSTR)
//@}