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@ -53,7 +53,13 @@
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*
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* void main(void)
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* {
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* [TODO]
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* // Start the internal 32MHz RC oscillator and switch the CPU core to run from it
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* AVR32CLK_StartInternalOscillator(CLOCK_SRC_INT_RC32MHZ);
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* XMEGACLK_SetCPUClockSource(CLOCK_SRC_INT_RC32MHZ, F_CPU);
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*
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* // Start the external oscillator and multiply up the frequency
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* AVR32CLK_StartExternalOscillator(EXOSC_FREQ_9MHZ_MAX, EXOSC_START_1KCLK);
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* AVR32CLK_StartPLL(CLOCK_SRC_XOSC, 8000000, F_USB);
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* }
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* \endcode
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*
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@ -73,13 +79,13 @@
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/* Public Interface - May be used in end-application: */
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/* Macros: */
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/** Enum for the possible external oscillator types. */
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enum XMEGA_Extern_OSC_ClockTypes_t
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/** Enum for the possible external oscillator frequency ranges. */
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enum XMEGA_Extern_OSC_ClockFrequency_t
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{
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EXOSC_MODE_2MHZ_MAX = OSC_FRQRANGE_04TO2_gc, /**< External crystal oscillator equal to or slower than 2MHz. */
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EXOSC_MODE_9MHZ_MAX = OSC_FRQRANGE_2TO9_gc, /**< External crystal oscillator equal to or slower than 9MHz. */
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EXOSC_MODE_12MHZ_MAX = OSC_FRQRANGE_9TO12_gc, /**< External crystal oscillator equal to or slower than 12MHz. */
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EXOSC_MODE_16MHZ_MAX = OSC_FRQRANGE_12TO16_gc, /**< External crystal oscillator equal to or slower than 16MHz. */
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EXOSC_FREQ_2MHZ_MAX = OSC_FRQRANGE_04TO2_gc, /**< External crystal oscillator equal to or slower than 2MHz. */
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EXOSC_FREQ_9MHZ_MAX = OSC_FRQRANGE_2TO9_gc, /**< External crystal oscillator equal to or slower than 9MHz. */
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EXOSC_FREQ_12MHZ_MAX = OSC_FRQRANGE_9TO12_gc, /**< External crystal oscillator equal to or slower than 12MHz. */
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EXOSC_FREQ_16MHZ_MAX = OSC_FRQRANGE_12TO16_gc, /**< External crystal oscillator equal to or slower than 16MHz. */
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};
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/** Enum for the possible external oscillator statup times. */
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@ -103,113 +109,183 @@
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};
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/* Inline Functions: */
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/** Starts the given external oscillator of the UC3 microcontroller, with the given options. This routine blocks until
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/** Starts the external oscillator of the XMEGA microcontroller, with the given options. This routine blocks until
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* the oscillator is ready for use.
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*
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* \param[in] Channel Index of the external oscillator to start.
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* \param[in] Type Type of clock attached to the given oscillator channel, a value from \ref XMEGA_Extern_OSC_ClockTypes_t.
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* \param[in] Startup Statup time of the external oscillator, a value from \ref XMEGA_Extern_OSC_ClockStartup_t.
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* \param[in] FreqRange Frequency range of the external oscillator, a value from \ref XMEGA_Extern_OSC_ClockFrequency_t.
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* \param[in] Startup Statup time of the external oscillator, a value from \ref XMEGA_Extern_OSC_ClockStartup_t.
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*
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* \return Boolean \c true if the external oscillator was successfully started, \c false if invalid parameters specified.
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*/
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static inline uint8_t AVR32CLK_StartExternalOscillator(const uint8_t Channel,
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const uint8_t Type,
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const uint8_t Startup) ATTR_ALWAYS_INLINE;
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static inline uint8_t AVR32CLK_StartExternalOscillator(const uint8_t Channel,
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const uint8_t Type,
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const uint8_t Startup)
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static inline bool AVR32CLK_StartExternalOscillator(const uint8_t FreqRange,
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const uint8_t Startup) ATTR_ALWAYS_INLINE;
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static inline bool AVR32CLK_StartExternalOscillator(const uint8_t FreqRange,
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const uint8_t Startup)
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{
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return false; // TODO
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OSC.XOSCCTRL = (FreqRange | ((Startup == EXOSC_START_32KCLK) ? OSC_X32KLPM_bm : 0) | Startup);
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OSC.CTRL |= OSC_XOSCEN_bm;
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while (!(OSC.STATUS & OSC_XOSCRDY_bm));
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return true;
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}
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/** Stops the given external oscillator of the UC3 microcontroller.
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*
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* \param[in] Channel Index of the external oscillator to stop.
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*/
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static inline void AVR32CLK_StopExternalOscillator(const uint8_t Channel) ATTR_ALWAYS_INLINE;
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static inline void AVR32CLK_StopExternalOscillator(const uint8_t Channel)
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/** Stops the external oscillator of the XMEGA microcontroller. */
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static inline void AVR32CLK_StopExternalOscillator(void) ATTR_ALWAYS_INLINE;
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static inline void AVR32CLK_StopExternalOscillator(void)
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{
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return; // TODO
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OSC.CTRL &= ~OSC_XOSCEN_bm;
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}
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/** Starts the given PLL of the UC3 microcontroller, with the given options. This routine blocks until the PLL is ready for use.
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/** Starts the given internal oscillator of the XMEGA microcontroller, with the given options. This routine blocks until
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* the oscillator is ready for use.
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*
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* \param[in] Channel Index of the PLL to start.
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* \param[in] Source Clock source for the PLL, a value from \ref XMEGA_System_ClockSource_t.
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* \param[in] SourceFreq Frequency of the PLL's clock source, in Hz.
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* \param[in] Frequency Target frequency of the PLL's output.
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* \param[in] Source Internal oscillator to start, a value from \ref XMEGA_System_ClockSource_t.
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*
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* \return Boolean \c true if the PLL was successfully started, \c false if invalid parameters specified.
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* \return Boolean \c true if the internal oscillator was successfully started, \c false if invalid parameters specified.
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*/
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static inline bool AVR32CLK_StartPLL(const uint8_t Channel,
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const uint8_t Source,
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const uint32_t SourceFreq,
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const uint32_t Frequency) ATTR_ALWAYS_INLINE;
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static inline bool AVR32CLK_StartPLL(const uint8_t Channel,
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const uint8_t Source,
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const uint32_t SourceFreq,
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const uint32_t Frequency)
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static inline uint8_t AVR32CLK_StartInternalOscillator(const uint8_t Source) ATTR_ALWAYS_INLINE;
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static inline uint8_t AVR32CLK_StartInternalOscillator(const uint8_t Source)
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{
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return false; // TODO
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switch (Source)
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{
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case CLOCK_SRC_INT_RC2MHZ:
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OSC.CTRL |= OSC_RC2MEN_bm;
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while (!(OSC.STATUS & OSC_RC2MRDY_bm));
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return true;
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case CLOCK_SRC_INT_RC32MHZ:
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OSC.CTRL |= OSC_RC32MEN_bm;
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while (!(OSC.STATUS & OSC_RC32MRDY_bm));
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return true;
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case CLOCK_SRC_INT_RC32KHZ:
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OSC.CTRL |= OSC_RC32KEN_bm;
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while (!(OSC.STATUS & OSC_RC32KRDY_bm));
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return true;
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}
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return false;
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}
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/** Stops the given PLL of the UC3 microcontroller.
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/** Stops the given internal oscillator of the XMEGA microcontroller.
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*
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* \param[in] Channel Index of the PLL to stop.
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*/
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static inline void AVR32CLK_StopPLL(const uint8_t Channel) ATTR_ALWAYS_INLINE;
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static inline void AVR32CLK_StopPLL(const uint8_t Channel)
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* \param[in] Source Internal oscillator to stop, a value from \ref XMEGA_System_ClockSource_t.
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*
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* \return Boolean \c true if the internal oscillator was successfully stopped, \c false if invalid parameters specified.
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*/
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static inline bool AVR32CLK_StopInternalOscillator(const uint8_t Source) ATTR_ALWAYS_INLINE;
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static inline bool AVR32CLK_StopInternalOscillator(const uint8_t Source)
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{
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// TODO
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}
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switch (Source)
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{
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case CLOCK_SRC_INT_RC2MHZ:
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OSC.CTRL &= ~OSC_RC2MEN_bm;
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return true;
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case CLOCK_SRC_INT_RC32MHZ:
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OSC.CTRL &= ~OSC_RC32MEN_bm;
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return true;
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case CLOCK_SRC_INT_RC32KHZ:
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OSC.CTRL &= ~OSC_RC32KEN_bm;
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return true;
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}
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/** Starts the given Generic Clock of the UC3 microcontroller, with the given options.
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return false;
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}
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/** Starts the PLL of the XMEGA microcontroller, with the given options. This routine blocks until the PLL is ready for use.
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*
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* \param[in] Channel Index of the Generic Clock to start.
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* \param[in] Source Clock source for the Generic Clock, a value from \ref XMEGA_System_ClockSource_t.
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* \param[in] SourceFreq Frequency of the Generic Clock's clock source, in Hz.
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* \param[in] Frequency Target frequency of the Generic Clock's output.
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* \note The output frequency must be equal to or greater than the source frequency.
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*
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* \return Boolean \c true if the Generic Clock was successfully started, \c false if invalid parameters specified.
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* \param[in] Source Clock source for the PLL, a value from \ref XMEGA_System_ClockSource_t.
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* \param[in] SourceFreq Frequency of the PLL's clock source, in Hz.
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* \param[in] Frequency Target frequency of the PLL's output.
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*
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* \return Boolean \c true if the PLL was successfully started, \c false if invalid parameters specified.
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*/
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static inline bool AVR32CLK_StartGenericClock(const uint8_t Channel,
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const uint8_t Source,
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const uint32_t SourceFreq,
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const uint32_t Frequency) ATTR_ALWAYS_INLINE;
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static inline bool AVR32CLK_StartGenericClock(const uint8_t Channel,
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const uint8_t Source,
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const uint32_t SourceFreq,
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const uint32_t Frequency)
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static inline bool AVR32CLK_StartPLL(const uint8_t Source,
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const uint32_t SourceFreq,
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const uint32_t Frequency) ATTR_ALWAYS_INLINE;
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static inline bool AVR32CLK_StartPLL(const uint8_t Source,
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const uint32_t SourceFreq,
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const uint32_t Frequency)
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{
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return false; // TODO
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}
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uint8_t MulFactor = (Frequency / SourceFreq);
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if (SourceFreq > Frequency)
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return false;
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/** Stops the given generic clock of the UC3 microcontroller.
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*
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* \param[in] Channel Index of the generic clock to stop.
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*/
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static inline void AVR32CLK_StopGenericClock(const uint8_t Channel) ATTR_ALWAYS_INLINE;
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static inline void AVR32CLK_StopGenericClock(const uint8_t Channel)
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switch (Source)
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{
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case CLOCK_SRC_INT_RC2MHZ:
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OSC.PLLCTRL = (OSC_PLLSRC_RC2M_gc | MulFactor);
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break;
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case CLOCK_SRC_INT_RC32MHZ:
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OSC.PLLCTRL = (OSC_PLLSRC_RC32M_gc | MulFactor);
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break;
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case CLOCK_SRC_XOSC:
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OSC.PLLCTRL = (OSC_PLLSRC_XOSC_gc | MulFactor);
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break;
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default:
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return false;
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}
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OSC.CTRL |= OSC_PLLEN_bm;
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while (!(OSC.STATUS & OSC_PLLRDY_bm));
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return true;
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}
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/** Stops the PLL of the XMEGA microcontroller. */
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static inline void AVR32CLK_StopPLL(void) ATTR_ALWAYS_INLINE;
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static inline void AVR32CLK_StopPLL(void)
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{
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// TODO
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OSC.CTRL &= ~OSC_PLLEN_bm;
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}
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/** Sets the clock source for the main microcontroller core. The given clock source should be configured
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* and ready for use before this function is called.
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*
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* This function will configure the FLASH controller's wait states automatically to suit the given clock source.
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*
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* \param[in] Source Clock source for the CPU core, a value from \ref XMEGA_System_ClockSource_t.
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* \param[in] SourceFreq Frequency of the CPU core's clock source, in Hz.
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*
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* \return Boolean \c true if the CPU core clock was sucessfully altered, \c false if invalid parameters specified.
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*/
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static inline bool AVR32CLK_SetCPUClockSource(const uint8_t Source,
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static inline bool XMEGACLK_SetCPUClockSource(const uint8_t Source,
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const uint32_t SourceFreq) ATTR_ALWAYS_INLINE;
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static inline bool AVR32CLK_SetCPUClockSource(const uint8_t Source,
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static inline bool XMEGACLK_SetCPUClockSource(const uint8_t Source,
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const uint32_t SourceFreq)
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{
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return false // TODO
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uint8_t ClockSourceMask = 0;
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switch (Source)
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{
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case CLOCK_SRC_INT_RC2MHZ:
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ClockSourceMask = CLK_SCLKSEL_RC2M_gc;
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break;
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case CLOCK_SRC_INT_RC32MHZ:
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ClockSourceMask = CLK_SCLKSEL_RC32M_gc;
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break;
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case CLOCK_SRC_INT_RC32KHZ:
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ClockSourceMask = CLK_SCLKSEL_RC32K_gc;
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break;
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case CLOCK_SRC_XOSC:
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ClockSourceMask = CLK_SCLKSEL_XOSC_gc;
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break;
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case CLOCK_SRC_PLL:
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ClockSourceMask = CLK_SCLKSEL_PLL_gc;
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break;
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default:
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return false;
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}
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uint_reg_t CurrentGlobalInt = GetGlobalInterruptMask();
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GlobalInterruptDisable();
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CCP = CCP_IOREG_gc;
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CLK.CTRL = ClockSourceMask;
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SetGlobalInterruptMask(CurrentGlobalInt);
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Delay_MS(1);
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return (CLK.CTRL == ClockSourceMask);
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}
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/* Disable C linkage for C++ Compilers: */
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