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//*****************************************************************************
//
// sysctl.c - Driver for the system controller.
//
// Copyright (c) 2005-2020 Texas Instruments Incorporated. All rights reserved.
// Software License Agreement
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions
// are met:
//
// Redistributions of source code must retain the above copyright
// notice, this list of conditions and the following disclaimer.
//
// Redistributions in binary form must reproduce the above copyright
// notice, this list of conditions and the following disclaimer in the
// documentation and/or other materials provided with the
// distribution.
//
// Neither the name of Texas Instruments Incorporated nor the names of
// its contributors may be used to endorse or promote products derived
// from this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
//
// This is part of revision 2.2.0.295 of the Tiva Peripheral Driver Library.
//
//*****************************************************************************
//*****************************************************************************
//
//! \addtogroup sysctl_api
//! @{
//
//*****************************************************************************
#include <stdbool.h>
#include <stdint.h>
#include "inc/hw_ints.h"
#include "inc/hw_nvic.h"
#include "inc/hw_sysctl.h"
#include "inc/hw_types.h"
#include "inc/hw_flash.h"
#include "driverlib/cpu.h"
#include "driverlib/debug.h"
#include "driverlib/interrupt.h"
#include "driverlib/sysctl.h"
//*****************************************************************************
//
// The flash shift used in the math to calculate the flash sector size.
//
//*****************************************************************************
#ifndef FLASH_PP_MAINSS_S
#define FLASH_PP_MAINSS_S 16
#endif
//*****************************************************************************
//
// This macro converts the XTAL value provided in the ui32Config parameter to
// an index to the g_pui32Xtals array.
//
//*****************************************************************************
#define SysCtlXtalCfgToIndex(a) ((a & 0x7c0) >> 6)
//*****************************************************************************
//
// An array that maps the crystal number in RCC to a frequency.
//
//*****************************************************************************
static const uint32_t g_pui32Xtals[] =
{
1000000,
1843200,
2000000,
2457600,
3579545,
3686400,
4000000,
4096000,
4915200,
5000000,
5120000,
6000000,
6144000,
7372800,
8000000,
8192000,
10000000,
12000000,
12288000,
13560000,
14318180,
16000000,
16384000,
18000000,
20000000,
24000000,
25000000
};
//*****************************************************************************
//
// Maximum number of VCO entries in the g_pui32XTALtoVCO and
// g_pui32VCOFrequencies structures for a device.
//
//*****************************************************************************
#define MAX_VCO_ENTRIES 2
#define MAX_XTAL_ENTRIES 18
//*****************************************************************************
//
// These macros are used in the g_pui32XTALtoVCO table to make it more
// readable.
//
//*****************************************************************************
#define PLL_M_TO_REG(mi, mf) \
((uint32_t)mi | (uint32_t)(mf << SYSCTL_PLLFREQ0_MFRAC_S))
#define PLL_N_TO_REG(n) \
((uint32_t)(n - 1) << SYSCTL_PLLFREQ1_N_S)
#define PLL_Q_TO_REG(q) \
((uint32_t)(q - 1) << SYSCTL_PLLFREQ1_Q_S)
//*****************************************************************************
//
// Look up of the values that go into the PLLFREQ0 and PLLFREQ1 registers.
//
//*****************************************************************************
static const uint32_t g_pppui32XTALtoVCO[MAX_VCO_ENTRIES][MAX_XTAL_ENTRIES][3] =
{
{
//
// VCO 320 MHz
//
{ PLL_M_TO_REG(64, 0), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 5 MHz
{ PLL_M_TO_REG(62, 512), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 5.12 MHz
{ PLL_M_TO_REG(160, 0), PLL_N_TO_REG(3), PLL_Q_TO_REG(2) }, // 6 MHz
{ PLL_M_TO_REG(52, 85), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 6.144 MHz
{ PLL_M_TO_REG(43, 412), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 7.3728 MHz
{ PLL_M_TO_REG(40, 0), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 8 MHz
{ PLL_M_TO_REG(39, 64), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 8.192 MHz
{ PLL_M_TO_REG(32, 0), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 10 MHz
{ PLL_M_TO_REG(80, 0), PLL_N_TO_REG(3), PLL_Q_TO_REG(2) }, // 12 MHz
{ PLL_M_TO_REG(26, 43), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 12.288 MHz
{ PLL_M_TO_REG(23, 613), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 13.56 MHz
{ PLL_M_TO_REG(22, 358), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 14.318180 MHz
{ PLL_M_TO_REG(20, 0), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 16 MHz
{ PLL_M_TO_REG(19, 544), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 16.384 MHz
{ PLL_M_TO_REG(160, 0), PLL_N_TO_REG(9), PLL_Q_TO_REG(2) }, // 18 MHz
{ PLL_M_TO_REG(16, 0), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 20 MHz
{ PLL_M_TO_REG(40, 0), PLL_N_TO_REG(3), PLL_Q_TO_REG(2) }, // 24 MHz
{ PLL_M_TO_REG(64, 0), PLL_N_TO_REG(5), PLL_Q_TO_REG(2) }, // 25 MHz
},
{
//
// VCO 480 MHz
//
{ PLL_M_TO_REG(96, 0), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 5 MHz
{ PLL_M_TO_REG(93, 768), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 5.12 MHz
{ PLL_M_TO_REG(80, 0), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 6 MHz
{ PLL_M_TO_REG(78, 128), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 6.144 MHz
{ PLL_M_TO_REG(65, 107), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 7.3728 MHz
{ PLL_M_TO_REG(60, 0), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 8 MHz
{ PLL_M_TO_REG(58, 608), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 8.192 MHz
{ PLL_M_TO_REG(48, 0), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 10 MHz
{ PLL_M_TO_REG(40, 0), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 12 MHz
{ PLL_M_TO_REG(39, 64), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 12.288 MHz
{ PLL_M_TO_REG(35, 408), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 13.56 MHz
{ PLL_M_TO_REG(33, 536), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 14.318180 MHz
{ PLL_M_TO_REG(30, 0), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 16 MHz
{ PLL_M_TO_REG(29, 304), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 16.384 MHz
{ PLL_M_TO_REG(80, 0), PLL_N_TO_REG(3), PLL_Q_TO_REG(2) }, // 18 MHz
{ PLL_M_TO_REG(24, 0), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 20 MHz
{ PLL_M_TO_REG(20, 0), PLL_N_TO_REG(1), PLL_Q_TO_REG(2) }, // 24 MHz
{ PLL_M_TO_REG(96, 0), PLL_N_TO_REG(5), PLL_Q_TO_REG(2) }, // 25 MHz
},
};
//*****************************************************************************
//
// The mapping of system clock frequency to flash memory timing parameters.
//
//*****************************************************************************
static const struct
{
uint32_t ui32Frequency;
uint32_t ui32MemTiming;
}
g_sXTALtoMEMTIM[] =
{
{ 16000000, (SYSCTL_MEMTIM0_FBCHT_0_5 | SYSCTL_MEMTIM0_FBCE |
(0 << SYSCTL_MEMTIM0_FWS_S) |
SYSCTL_MEMTIM0_EBCHT_0_5 | SYSCTL_MEMTIM0_EBCE |
(0 << SYSCTL_MEMTIM0_EWS_S) |
SYSCTL_MEMTIM0_MB1) },
{ 40000000, (SYSCTL_MEMTIM0_FBCHT_1_5 | (1 << SYSCTL_MEMTIM0_FWS_S) |
SYSCTL_MEMTIM0_EBCHT_1_5 | (1 << SYSCTL_MEMTIM0_EWS_S) |
SYSCTL_MEMTIM0_MB1) },
{ 60000000, (SYSCTL_MEMTIM0_FBCHT_2 | (2 << SYSCTL_MEMTIM0_FWS_S) |
SYSCTL_MEMTIM0_EBCHT_2 | (2 << SYSCTL_MEMTIM0_EWS_S) |
SYSCTL_MEMTIM0_MB1) },
{ 80000000, (SYSCTL_MEMTIM0_FBCHT_2_5 | (3 << SYSCTL_MEMTIM0_FWS_S) |
SYSCTL_MEMTIM0_EBCHT_2_5 | (3 << SYSCTL_MEMTIM0_EWS_S) |
SYSCTL_MEMTIM0_MB1) },
{ 100000000, (SYSCTL_MEMTIM0_FBCHT_3 | (4 << SYSCTL_MEMTIM0_FWS_S) |
SYSCTL_MEMTIM0_EBCHT_3 | (4 << SYSCTL_MEMTIM0_EWS_S) |
SYSCTL_MEMTIM0_MB1) },
{ 120000000, (SYSCTL_MEMTIM0_FBCHT_3_5 | (5 << SYSCTL_MEMTIM0_FWS_S) |
SYSCTL_MEMTIM0_EBCHT_3_5 | (5 << SYSCTL_MEMTIM0_EWS_S) |
SYSCTL_MEMTIM0_MB1) },
};
//*****************************************************************************
//
// Get the correct memory timings for a given system clock value.
//
//*****************************************************************************
static uint32_t
_SysCtlMemTimingGet(uint32_t ui32SysClock)
{
uint_fast8_t ui8Idx;
//
// Loop through the flash memory timings.
//
for(ui8Idx = 0;
ui8Idx < (sizeof(g_sXTALtoMEMTIM) / sizeof(g_sXTALtoMEMTIM[0]));
ui8Idx++)
{
//
// See if the system clock frequency is less than the maximum frequency
// for this flash memory timing.
//
if(ui32SysClock <= g_sXTALtoMEMTIM[ui8Idx].ui32Frequency)
{
//
// This flash memory timing is the best choice for the system clock
// frequency, so return it now.
//
return(g_sXTALtoMEMTIM[ui8Idx].ui32MemTiming);
}
}
//
// An appropriate flash memory timing could not be found, so the device is
// being clocked too fast. Return the default flash memory timing.
//
return(0);
}
//*****************************************************************************
//
// Calculate the system frequency from the register settings base on the
// oscillator input.
//
//*****************************************************************************
static uint32_t
_SysCtlFrequencyGet(uint32_t ui32Xtal)
{
uint32_t ui32Result;
uint_fast16_t ui16F1, ui16F2;
uint_fast16_t ui16PInt, ui16PFract;
uint_fast8_t ui8Q, ui8N;
//
// Extract all of the values from the hardware registers.
//
ui16PFract = ((HWREG(SYSCTL_PLLFREQ0) & SYSCTL_PLLFREQ0_MFRAC_M) >>
SYSCTL_PLLFREQ0_MFRAC_S);
ui16PInt = HWREG(SYSCTL_PLLFREQ0) & SYSCTL_PLLFREQ0_MINT_M;
ui8Q = (((HWREG(SYSCTL_PLLFREQ1) & SYSCTL_PLLFREQ1_Q_M) >>
SYSCTL_PLLFREQ1_Q_S) + 1);
ui8N = (((HWREG(SYSCTL_PLLFREQ1) & SYSCTL_PLLFREQ1_N_M) >>
SYSCTL_PLLFREQ1_N_S) + 1);
//
// Divide the crystal value by N.
//
ui32Xtal /= (uint32_t)ui8N;
//
// Calculate the multiplier for bits 9:5.
//
ui16F1 = ui16PFract / 32;
//
// Calculate the multiplier for bits 4:0.
//
ui16F2 = ui16PFract - (ui16F1 * 32);
//
// Get the integer portion.
//
ui32Result = ui32Xtal * (uint32_t)ui16PInt;
//
// Add first fractional bits portion(9:0).
//
ui32Result += (ui32Xtal * (uint32_t)ui16F1) / 32;
//
// Add the second fractional bits portion(4:0).
//
ui32Result += (ui32Xtal * (uint32_t)ui16F2) / 1024;
//
// Divide the result by Q.
//
ui32Result = ui32Result / (uint32_t)ui8Q;
//
// Return the resulting PLL frequency.
//
return(ui32Result);
}
//*****************************************************************************
//
// Look up of the possible VCO frequencies.
//
//*****************************************************************************
static const uint32_t g_pui32VCOFrequencies[MAX_VCO_ENTRIES] =
{
160000000, // VCO 320
240000000, // VCO 480
};
//*****************************************************************************
//
// The base addresses of the various peripheral control registers.
//
//*****************************************************************************
#define SYSCTL_PPBASE 0x400fe300
#define SYSCTL_SRBASE 0x400fe500
#define SYSCTL_RCGCBASE 0x400fe600
#define SYSCTL_SCGCBASE 0x400fe700
#define SYSCTL_DCGCBASE 0x400fe800
#define SYSCTL_PCBASE 0x400fe900
#define SYSCTL_PRBASE 0x400fea00
//*****************************************************************************
//
//! \internal
//! Checks a peripheral identifier.
//!
//! \param ui32Peripheral is the peripheral identifier.
//!
//! This function determines if a peripheral identifier is valid.
//!
//! \return Returns \b true if the peripheral identifier is valid and \b false
//! otherwise.
//
//*****************************************************************************
#ifdef DEBUG
static bool
_SysCtlPeripheralValid(uint32_t ui32Peripheral)
{
return((ui32Peripheral == SYSCTL_PERIPH_ADC0) ||
(ui32Peripheral == SYSCTL_PERIPH_ADC1) ||
(ui32Peripheral == SYSCTL_PERIPH_CAN0) ||
(ui32Peripheral == SYSCTL_PERIPH_CAN1) ||
(ui32Peripheral == SYSCTL_PERIPH_COMP0) ||
(ui32Peripheral == SYSCTL_PERIPH_CCM0) ||
(ui32Peripheral == SYSCTL_PERIPH_EEPROM0) ||
(ui32Peripheral == SYSCTL_PERIPH_EPHY0) ||
(ui32Peripheral == SYSCTL_PERIPH_EMAC0) ||
(ui32Peripheral == SYSCTL_PERIPH_EPI0) ||
(ui32Peripheral == SYSCTL_PERIPH_FAN0) ||
(ui32Peripheral == SYSCTL_PERIPH_GPIOA) ||
(ui32Peripheral == SYSCTL_PERIPH_GPIOB) ||
(ui32Peripheral == SYSCTL_PERIPH_GPIOC) ||
(ui32Peripheral == SYSCTL_PERIPH_GPIOD) ||
(ui32Peripheral == SYSCTL_PERIPH_GPIOE) ||
(ui32Peripheral == SYSCTL_PERIPH_GPIOF) ||
(ui32Peripheral == SYSCTL_PERIPH_GPIOG) ||
(ui32Peripheral == SYSCTL_PERIPH_GPIOH) ||
(ui32Peripheral == SYSCTL_PERIPH_GPIOJ) ||
(ui32Peripheral == SYSCTL_PERIPH_GPIOK) ||
(ui32Peripheral == SYSCTL_PERIPH_GPIOL) ||
(ui32Peripheral == SYSCTL_PERIPH_GPIOM) ||
(ui32Peripheral == SYSCTL_PERIPH_GPION) ||
(ui32Peripheral == SYSCTL_PERIPH_GPIOP) ||
(ui32Peripheral == SYSCTL_PERIPH_GPIOQ) ||
(ui32Peripheral == SYSCTL_PERIPH_GPIOR) ||
(ui32Peripheral == SYSCTL_PERIPH_GPIOS) ||
(ui32Peripheral == SYSCTL_PERIPH_GPIOT) ||
(ui32Peripheral == SYSCTL_PERIPH_HIBERNATE) ||
(ui32Peripheral == SYSCTL_PERIPH_I2C0) ||
(ui32Peripheral == SYSCTL_PERIPH_I2C1) ||
(ui32Peripheral == SYSCTL_PERIPH_I2C2) ||
(ui32Peripheral == SYSCTL_PERIPH_I2C3) ||
(ui32Peripheral == SYSCTL_PERIPH_I2C4) ||
(ui32Peripheral == SYSCTL_PERIPH_I2C5) ||
(ui32Peripheral == SYSCTL_PERIPH_I2C6) ||
(ui32Peripheral == SYSCTL_PERIPH_I2C7) ||
(ui32Peripheral == SYSCTL_PERIPH_I2C8) ||
(ui32Peripheral == SYSCTL_PERIPH_I2C9) ||
(ui32Peripheral == SYSCTL_PERIPH_LCD0) ||
(ui32Peripheral == SYSCTL_PERIPH_PWM0) ||
(ui32Peripheral == SYSCTL_PERIPH_PWM1) ||
(ui32Peripheral == SYSCTL_PERIPH_QEI0) ||
(ui32Peripheral == SYSCTL_PERIPH_QEI1) ||
(ui32Peripheral == SYSCTL_PERIPH_SSI0) ||
(ui32Peripheral == SYSCTL_PERIPH_SSI1) ||
(ui32Peripheral == SYSCTL_PERIPH_SSI2) ||
(ui32Peripheral == SYSCTL_PERIPH_SSI3) ||
(ui32Peripheral == SYSCTL_PERIPH_TIMER0) ||
(ui32Peripheral == SYSCTL_PERIPH_TIMER1) ||
(ui32Peripheral == SYSCTL_PERIPH_TIMER2) ||
(ui32Peripheral == SYSCTL_PERIPH_TIMER3) ||
(ui32Peripheral == SYSCTL_PERIPH_TIMER4) ||
(ui32Peripheral == SYSCTL_PERIPH_TIMER5) ||
(ui32Peripheral == SYSCTL_PERIPH_TIMER6) ||
(ui32Peripheral == SYSCTL_PERIPH_TIMER7) ||
(ui32Peripheral == SYSCTL_PERIPH_UART0) ||
(ui32Peripheral == SYSCTL_PERIPH_UART1) ||
(ui32Peripheral == SYSCTL_PERIPH_UART2) ||
(ui32Peripheral == SYSCTL_PERIPH_UART3) ||
(ui32Peripheral == SYSCTL_PERIPH_UART4) ||
(ui32Peripheral == SYSCTL_PERIPH_UART5) ||
(ui32Peripheral == SYSCTL_PERIPH_UART6) ||
(ui32Peripheral == SYSCTL_PERIPH_UART7) ||
(ui32Peripheral == SYSCTL_PERIPH_UDMA) ||
(ui32Peripheral == SYSCTL_PERIPH_USB0) ||
(ui32Peripheral == SYSCTL_PERIPH_WDOG0) ||
(ui32Peripheral == SYSCTL_PERIPH_WDOG1) ||
(ui32Peripheral == SYSCTL_PERIPH_WTIMER0) ||
(ui32Peripheral == SYSCTL_PERIPH_WTIMER1) ||
(ui32Peripheral == SYSCTL_PERIPH_WTIMER2) ||
(ui32Peripheral == SYSCTL_PERIPH_WTIMER3) ||
(ui32Peripheral == SYSCTL_PERIPH_WTIMER4) ||
(ui32Peripheral == SYSCTL_PERIPH_WTIMER5));
}
#endif
//*****************************************************************************
//
//! Gets the size of the SRAM.
//!
//! This function determines the size of the SRAM on the Tiva device.
//!
//! \return The total number of bytes of SRAM.
//
//*****************************************************************************
uint32_t
SysCtlSRAMSizeGet(void)
{
return((HWREG(FLASH_SSIZE) + 1) * 256);
}
//*****************************************************************************
//
//! Gets the size of the flash.
//!
//! This function determines the size of the flash on the Tiva device.
//!
//! \return The total number of bytes of flash.
//
//*****************************************************************************
uint32_t
SysCtlFlashSizeGet(void)
{
//
// TM4C123 devices report the flash size in DC0.
//
if(CLASS_IS_TM4C123)
{
//
// Compute the size of the flash.
//
return(((HWREG(SYSCTL_DC0) & SYSCTL_DC0_FLASHSZ_M) << 11) + 0x800);
}
else
{
//
// Get the flash size from the FLASH_PP register.
//
return(2048 * ((HWREG(FLASH_PP) & FLASH_PP_SIZE_M) + 1));
}
}
//*****************************************************************************
//
//! Gets the size of a single eraseable sector of flash.
//!
//! This function determines the flash sector size on the Tiva device.
//! This size determines the erase granularity of the device flash.
//!
//! \return The number of bytes in a single flash sector.
//
//*****************************************************************************
uint32_t
SysCtlFlashSectorSizeGet(void)
{
//
// TM4C129 devices store the value in a different register.
//
if(CLASS_IS_TM4C129)
{
//
// Get the flash sector size from the FLASH_PP register.
//
return(1 << (10 +
((HWREG(FLASH_PP) &
FLASH_PP_MAINSS_M) >> FLASH_PP_MAINSS_S)));
}
else
{
//
// The sector size is fixed at 1KB.
//
return(1024);
}
}
//*****************************************************************************
//
//! Determines if a peripheral is present.
//!
//! \param ui32Peripheral is the peripheral in question.
//!
//! This function determines if a particular peripheral is present in the
//! device. Each member of the Tiva family has a different peripheral
//! set; this function determines which peripherals are present on this device.
//!
//! The \e ui32Peripheral parameter must be only one of the following values:
//! \b SYSCTL_PERIPH_ADC0, \b SYSCTL_PERIPH_ADC1, \b SYSCTL_PERIPH_CAN0,
//! \b SYSCTL_PERIPH_CAN1, \b SYSCTL_PERIPH_CCM0,\b SYSCTL_PERIPH_COMP0,
//! \b SYSCTL_PERIPH_EEPROM0, \b SYSCTL_PERIPH_EMAC, \b SYSCTL_PERIPH_EPHY,
//! \b SYSCTL_PERIPH_EPI0,
//! \b SYSCTL_PERIPH_GPIOA, \b SYSCTL_PERIPH_GPIOB, \b SYSCTL_PERIPH_GPIOC,
//! \b SYSCTL_PERIPH_GPIOD, \b SYSCTL_PERIPH_GPIOE, \b SYSCTL_PERIPH_GPIOF,
//! \b SYSCTL_PERIPH_GPIOG, \b SYSCTL_PERIPH_GPIOH, \b SYSCTL_PERIPH_GPIOJ,
//! \b SYSCTL_PERIPH_GPIOK, \b SYSCTL_PERIPH_GPIOL, \b SYSCTL_PERIPH_GPIOM,
//! \b SYSCTL_PERIPH_GPION, \b SYSCTL_PERIPH_GPIOP, \b SYSCTL_PERIPH_GPIOQ,
//! \b SYSCTL_PERIPH_GPIOR, \b SYSCTL_PERIPH_GPIOS, \b SYSCTL_PERIPH_GPIOT,
//! \b SYSCTL_PERIPH_HIBERNATE,
//! \b SYSCTL_PERIPH_I2C0, \b SYSCTL_PERIPH_I2C1, \b SYSCTL_PERIPH_I2C2,
//! \b SYSCTL_PERIPH_I2C3, \b SYSCTL_PERIPH_I2C4, \b SYSCTL_PERIPH_I2C5,
//! \b SYSCTL_PERIPH_I2C6, \b SYSCTL_PERIPH_I2C7, \b SYSCTL_PERIPH_I2C8,
//! \b SYSCTL_PERIPH_I2C9, \b SYSCTL_PERIPH_LCD0,
//! \b SYSCTL_PERIPH_ONEWIRE0,
//! \b SYSCTL_PERIPH_PWM0, \b SYSCTL_PERIPH_PWM1, \b SYSCTL_PERIPH_QEI0,
//! \b SYSCTL_PERIPH_QEI1, \b SYSCTL_PERIPH_SSI0, \b SYSCTL_PERIPH_SSI1,
//! \b SYSCTL_PERIPH_SSI2, \b SYSCTL_PERIPH_SSI3, \b SYSCTL_PERIPH_TIMER0,
//! \b SYSCTL_PERIPH_TIMER1, \b SYSCTL_PERIPH_TIMER2, \b SYSCTL_PERIPH_TIMER3,
//! \b SYSCTL_PERIPH_TIMER4, \b SYSCTL_PERIPH_TIMER5, \b SYSCTL_PERIPH_TIMER6,
//! \b SYSCTL_PERIPH_TIMER7, \b SYSCTL_PERIPH_UART0, \b SYSCTL_PERIPH_UART1,
//! \b SYSCTL_PERIPH_UART2, \b SYSCTL_PERIPH_UART3, \b SYSCTL_PERIPH_UART4,
//! \b SYSCTL_PERIPH_UART5, \b SYSCTL_PERIPH_UART6, \b SYSCTL_PERIPH_UART7,
//! \b SYSCTL_PERIPH_UDMA, \b SYSCTL_PERIPH_USB0, \b SYSCTL_PERIPH_WDOG0,
//! \b SYSCTL_PERIPH_WDOG1, \b SYSCTL_PERIPH_WTIMER0, \b SYSCTL_PERIPH_WTIMER1,
//! \b SYSCTL_PERIPH_WTIMER2, \b SYSCTL_PERIPH_WTIMER3,
//! \b SYSCTL_PERIPH_WTIMER4, or \b SYSCTL_PERIPH_WTIMER5
//!
//! \return Returns \b true if the specified peripheral is present and \b false
//! if it is not.
//
//*****************************************************************************
bool
SysCtlPeripheralPresent(uint32_t ui32Peripheral)
{
//
// Check the arguments.
//
ASSERT(_SysCtlPeripheralValid(ui32Peripheral));
//
// See if this peripheral is present.
//
return(HWREGBITW(SYSCTL_PPBASE + ((ui32Peripheral & 0xff00) >> 8),
ui32Peripheral & 0xff));
}
//*****************************************************************************
//
//! Determines if a peripheral is ready.
//!
//! \param ui32Peripheral is the peripheral in question.
//!
//! This function determines if a particular peripheral is ready to be
//! accessed. The peripheral may be in a non-ready state if it is not enabled,
//! is being held in reset, or is in the process of becoming ready after being
//! enabled or taken out of reset.
//!
//! The \e ui32Peripheral parameter must be only one of the following values:
//! \b SYSCTL_PERIPH_ADC0, \b SYSCTL_PERIPH_ADC1, \b SYSCTL_PERIPH_CAN0,
//! \b SYSCTL_PERIPH_CAN1, \b SYSCTL_PERIPH_CCM0,\b SYSCTL_PERIPH_COMP0,
//! \b SYSCTL_PERIPH_EEPROM0, \b SYSCTL_PERIPH_EMAC, \b SYSCTL_PERIPH_EPHY,
//! \b SYSCTL_PERIPH_EPI0,
//! \b SYSCTL_PERIPH_GPIOA, \b SYSCTL_PERIPH_GPIOB, \b SYSCTL_PERIPH_GPIOC,
//! \b SYSCTL_PERIPH_GPIOD, \b SYSCTL_PERIPH_GPIOE, \b SYSCTL_PERIPH_GPIOF,
//! \b SYSCTL_PERIPH_GPIOG, \b SYSCTL_PERIPH_GPIOH, \b SYSCTL_PERIPH_GPIOJ,
//! \b SYSCTL_PERIPH_GPIOK, \b SYSCTL_PERIPH_GPIOL, \b SYSCTL_PERIPH_GPIOM,
//! \b SYSCTL_PERIPH_GPION, \b SYSCTL_PERIPH_GPIOP, \b SYSCTL_PERIPH_GPIOQ,
//! \b SYSCTL_PERIPH_GPIOR, \b SYSCTL_PERIPH_GPIOS, \b SYSCTL_PERIPH_GPIOT,
//! \b SYSCTL_PERIPH_HIBERNATE,
//! \b SYSCTL_PERIPH_I2C0, \b SYSCTL_PERIPH_I2C1, \b SYSCTL_PERIPH_I2C2,
//! \b SYSCTL_PERIPH_I2C3, \b SYSCTL_PERIPH_I2C4, \b SYSCTL_PERIPH_I2C5,
//! \b SYSCTL_PERIPH_I2C6, \b SYSCTL_PERIPH_I2C7, \b SYSCTL_PERIPH_I2C8,
//! \b SYSCTL_PERIPH_I2C9, \b SYSCTL_PERIPH_LCD0,
//! \b SYSCTL_PERIPH_ONEWIRE0,
//! \b SYSCTL_PERIPH_PWM0, \b SYSCTL_PERIPH_PWM1, \b SYSCTL_PERIPH_QEI0,
//! \b SYSCTL_PERIPH_QEI1, \b SYSCTL_PERIPH_SSI0, \b SYSCTL_PERIPH_SSI1,
//! \b SYSCTL_PERIPH_SSI2, \b SYSCTL_PERIPH_SSI3, \b SYSCTL_PERIPH_TIMER0,
//! \b SYSCTL_PERIPH_TIMER1, \b SYSCTL_PERIPH_TIMER2, \b SYSCTL_PERIPH_TIMER3,
//! \b SYSCTL_PERIPH_TIMER4, \b SYSCTL_PERIPH_TIMER5, \b SYSCTL_PERIPH_TIMER6,
//! \b SYSCTL_PERIPH_TIMER7, \b SYSCTL_PERIPH_UART0, \b SYSCTL_PERIPH_UART1,
//! \b SYSCTL_PERIPH_UART2, \b SYSCTL_PERIPH_UART3, \b SYSCTL_PERIPH_UART4,
//! \b SYSCTL_PERIPH_UART5, \b SYSCTL_PERIPH_UART6, \b SYSCTL_PERIPH_UART7,
//! \b SYSCTL_PERIPH_UDMA, \b SYSCTL_PERIPH_USB0, \b SYSCTL_PERIPH_WDOG0,
//! \b SYSCTL_PERIPH_WDOG1, \b SYSCTL_PERIPH_WTIMER0, \b SYSCTL_PERIPH_WTIMER1,
//! \b SYSCTL_PERIPH_WTIMER2, \b SYSCTL_PERIPH_WTIMER3,
//! \b SYSCTL_PERIPH_WTIMER4, or \b SYSCTL_PERIPH_WTIMER5
//!
//! \note The ability to check for a peripheral being ready varies based on the
//! Tiva part in use. Please consult the data sheet for the part you are
//! using to determine if this feature is available.
//!
//! \return Returns \b true if the specified peripheral is ready and \b false
//! if it is not.
//
//*****************************************************************************
bool
SysCtlPeripheralReady(uint32_t ui32Peripheral)
{
//
// Check the arguments.
//
ASSERT(_SysCtlPeripheralValid(ui32Peripheral));
//
// See if this peripheral is ready.
//
return(HWREGBITW(SYSCTL_PRBASE + ((ui32Peripheral & 0xff00) >> 8),
ui32Peripheral & 0xff));
}
//*****************************************************************************
//
//! Powers on a peripheral.
//!
//! \param ui32Peripheral is the peripheral to be powered on.
//!
//! This function turns on the power to a peripheral. The peripheral continues
//! to receive power even when its clock is not enabled.
//!
//! The \e ui32Peripheral parameter must be only one of the following values:
//! \b SYSCTL_PERIPH_CAN0,\b SYSCTL_PERIPH_CAN1, \b SYSCTL_PERIPH_EMAC,
//! \b SYSCTL_PERIPH_EPHY, \b SYSCTL_PERIPH_LCD0, \b SYSCTL_PERIPH_USB0
//!
//! \note The ability to power off a peripheral varies based on the Tiva
//! part in use. Please consult the data sheet for the part you are using to
//! determine if this feature is available.
//!
//! \return None.
//
//*****************************************************************************
void
SysCtlPeripheralPowerOn(uint32_t ui32Peripheral)
{
//
// Check the arguments.
//
ASSERT(_SysCtlPeripheralValid(ui32Peripheral));
//
// Power on this peripheral.
//
HWREGBITW(SYSCTL_PCBASE + ((ui32Peripheral & 0xff00) >> 8),
ui32Peripheral & 0xff) = 1;
}
//*****************************************************************************
//
//! Powers off a peripheral.
//!
//! \param ui32Peripheral is the peripheral to be powered off.
//!
//! This function allows the power to a peripheral to be turned off. The
//! peripheral continues to receive power when its clock is enabled, but
//! the power is removed when its clock is disabled.
//!
//! The \e ui32Peripheral parameter must be only one of the following values:
//! \b SYSCTL_PERIPH_CAN0,\b SYSCTL_PERIPH_CAN1, \b SYSCTL_PERIPH_EMAC,
//! \b SYSCTL_PERIPH_EPHY, \b SYSCTL_PERIPH_LCD0, \b SYSCTL_PERIPH_USB0
//!
//! \note The ability to power off a peripheral varies based on the Tiva
//! part in use. Please consult the data sheet for the part you are using to
//! determine if this feature is available.
//!
//! \return None.
//
//*****************************************************************************
void
SysCtlPeripheralPowerOff(uint32_t ui32Peripheral)
{
//
// Check the arguments.
//
ASSERT(_SysCtlPeripheralValid(ui32Peripheral));
//
// Power off this peripheral.
//
HWREGBITW(SYSCTL_PCBASE + ((ui32Peripheral & 0xff00) >> 8),
ui32Peripheral & 0xff) = 0;
}
//*****************************************************************************
//
//! Performs a software reset of a peripheral.
//!
//! \param ui32Peripheral is the peripheral to reset.
//!
//! This function performs a software reset of the specified peripheral. An
//! individual peripheral reset signal is asserted for a brief period and then
//! de-asserted, returning the internal state of the peripheral to its reset
//! condition.
//!
//! The \e ui32Peripheral parameter must be only one of the following values:
//! \b SYSCTL_PERIPH_ADC0, \b SYSCTL_PERIPH_ADC1, \b SYSCTL_PERIPH_CAN0,
//! \b SYSCTL_PERIPH_CAN1, \b SYSCTL_PERIPH_CCM0,\b SYSCTL_PERIPH_COMP0,
//! \b SYSCTL_PERIPH_EEPROM0, \b SYSCTL_PERIPH_EMAC, \b SYSCTL_PERIPH_EPHY,
//! \b SYSCTL_PERIPH_EPI0,
//! \b SYSCTL_PERIPH_GPIOA, \b SYSCTL_PERIPH_GPIOB, \b SYSCTL_PERIPH_GPIOC,
//! \b SYSCTL_PERIPH_GPIOD, \b SYSCTL_PERIPH_GPIOE, \b SYSCTL_PERIPH_GPIOF,
//! \b SYSCTL_PERIPH_GPIOG, \b SYSCTL_PERIPH_GPIOH, \b SYSCTL_PERIPH_GPIOJ,
//! \b SYSCTL_PERIPH_GPIOK, \b SYSCTL_PERIPH_GPIOL, \b SYSCTL_PERIPH_GPIOM,
//! \b SYSCTL_PERIPH_GPION, \b SYSCTL_PERIPH_GPIOP, \b SYSCTL_PERIPH_GPIOQ,
//! \b SYSCTL_PERIPH_GPIOR, \b SYSCTL_PERIPH_GPIOS, \b SYSCTL_PERIPH_GPIOT,
//! \b SYSCTL_PERIPH_HIBERNATE,
//! \b SYSCTL_PERIPH_I2C0, \b SYSCTL_PERIPH_I2C1, \b SYSCTL_PERIPH_I2C2,
//! \b SYSCTL_PERIPH_I2C3, \b SYSCTL_PERIPH_I2C4, \b SYSCTL_PERIPH_I2C5,
//! \b SYSCTL_PERIPH_I2C6, \b SYSCTL_PERIPH_I2C7, \b SYSCTL_PERIPH_I2C8,
//! \b SYSCTL_PERIPH_I2C9, \b SYSCTL_PERIPH_LCD0,
//! \b SYSCTL_PERIPH_ONEWIRE0,
//! \b SYSCTL_PERIPH_PWM0, \b SYSCTL_PERIPH_PWM1, \b SYSCTL_PERIPH_QEI0,
//! \b SYSCTL_PERIPH_QEI1, \b SYSCTL_PERIPH_SSI0, \b SYSCTL_PERIPH_SSI1,
//! \b SYSCTL_PERIPH_SSI2, \b SYSCTL_PERIPH_SSI3, \b SYSCTL_PERIPH_TIMER0,
//! \b SYSCTL_PERIPH_TIMER1, \b SYSCTL_PERIPH_TIMER2, \b SYSCTL_PERIPH_TIMER3,
//! \b SYSCTL_PERIPH_TIMER4, \b SYSCTL_PERIPH_TIMER5, \b SYSCTL_PERIPH_TIMER6,
//! \b SYSCTL_PERIPH_TIMER7, \b SYSCTL_PERIPH_UART0, \b SYSCTL_PERIPH_UART1,
//! \b SYSCTL_PERIPH_UART2, \b SYSCTL_PERIPH_UART3, \b SYSCTL_PERIPH_UART4,
//! \b SYSCTL_PERIPH_UART5, \b SYSCTL_PERIPH_UART6, \b SYSCTL_PERIPH_UART7,
//! \b SYSCTL_PERIPH_UDMA, \b SYSCTL_PERIPH_USB0, \b SYSCTL_PERIPH_WDOG0,
//! \b SYSCTL_PERIPH_WDOG1, \b SYSCTL_PERIPH_WTIMER0, \b SYSCTL_PERIPH_WTIMER1,
//! \b SYSCTL_PERIPH_WTIMER2, \b SYSCTL_PERIPH_WTIMER3,
//! \b SYSCTL_PERIPH_WTIMER4, or \b SYSCTL_PERIPH_WTIMER5
//!
//! \return None.
//
//*****************************************************************************
void
SysCtlPeripheralReset(uint32_t ui32Peripheral)
{
volatile uint_fast8_t ui8Delay;
//
// Check the arguments.
//
ASSERT(_SysCtlPeripheralValid(ui32Peripheral));
//
// Put the peripheral into the reset state.
//
HWREGBITW(SYSCTL_SRBASE + ((ui32Peripheral & 0xff00) >> 8),
ui32Peripheral & 0xff) = 1;
//
// Delay for a little bit.
//
for(ui8Delay = 0; ui8Delay < 16; ui8Delay++)
{
}
//
// Take the peripheral out of the reset state.
//
HWREGBITW(SYSCTL_SRBASE + ((ui32Peripheral & 0xff00) >> 8),
ui32Peripheral & 0xff) = 0;
}
//*****************************************************************************
//
//! Enables a peripheral.
//!
//! \param ui32Peripheral is the peripheral to enable.
//!
//! This function enables a peripheral. At power-up, all peripherals are
//! disabled; they must be enabled in order to operate or respond to register
//! reads/writes.
//!
//! The \e ui32Peripheral parameter must be only one of the following values:
//! \b SYSCTL_PERIPH_ADC0, \b SYSCTL_PERIPH_ADC1, \b SYSCTL_PERIPH_CAN0,
//! \b SYSCTL_PERIPH_CAN1, \b SYSCTL_PERIPH_CCM0,\b SYSCTL_PERIPH_COMP0,
//! \b SYSCTL_PERIPH_EEPROM0, \b SYSCTL_PERIPH_EMAC, \b SYSCTL_PERIPH_EPHY,
//! \b SYSCTL_PERIPH_EPI0,
//! \b SYSCTL_PERIPH_GPIOA, \b SYSCTL_PERIPH_GPIOB, \b SYSCTL_PERIPH_GPIOC,
//! \b SYSCTL_PERIPH_GPIOD, \b SYSCTL_PERIPH_GPIOE, \b SYSCTL_PERIPH_GPIOF,
//! \b SYSCTL_PERIPH_GPIOG, \b SYSCTL_PERIPH_GPIOH, \b SYSCTL_PERIPH_GPIOJ,
//! \b SYSCTL_PERIPH_GPIOK, \b SYSCTL_PERIPH_GPIOL, \b SYSCTL_PERIPH_GPIOM,
//! \b SYSCTL_PERIPH_GPION, \b SYSCTL_PERIPH_GPIOP, \b SYSCTL_PERIPH_GPIOQ,
//! \b SYSCTL_PERIPH_GPIOR, \b SYSCTL_PERIPH_GPIOS, \b SYSCTL_PERIPH_GPIOT,
//! \b SYSCTL_PERIPH_HIBERNATE,
//! \b SYSCTL_PERIPH_I2C0, \b SYSCTL_PERIPH_I2C1, \b SYSCTL_PERIPH_I2C2,
//! \b SYSCTL_PERIPH_I2C3, \b SYSCTL_PERIPH_I2C4, \b SYSCTL_PERIPH_I2C5,
//! \b SYSCTL_PERIPH_I2C6, \b SYSCTL_PERIPH_I2C7, \b SYSCTL_PERIPH_I2C8,
//! \b SYSCTL_PERIPH_I2C9, \b SYSCTL_PERIPH_LCD0,
//! \b SYSCTL_PERIPH_ONEWIRE0,
//! \b SYSCTL_PERIPH_PWM0, \b SYSCTL_PERIPH_PWM1, \b SYSCTL_PERIPH_QEI0,
//! \b SYSCTL_PERIPH_QEI1, \b SYSCTL_PERIPH_SSI0, \b SYSCTL_PERIPH_SSI1,
//! \b SYSCTL_PERIPH_SSI2, \b SYSCTL_PERIPH_SSI3, \b SYSCTL_PERIPH_TIMER0,
//! \b SYSCTL_PERIPH_TIMER1, \b SYSCTL_PERIPH_TIMER2, \b SYSCTL_PERIPH_TIMER3,
//! \b SYSCTL_PERIPH_TIMER4, \b SYSCTL_PERIPH_TIMER5, \b SYSCTL_PERIPH_TIMER6,
//! \b SYSCTL_PERIPH_TIMER7, \b SYSCTL_PERIPH_UART0, \b SYSCTL_PERIPH_UART1,
//! \b SYSCTL_PERIPH_UART2, \b SYSCTL_PERIPH_UART3, \b SYSCTL_PERIPH_UART4,
//! \b SYSCTL_PERIPH_UART5, \b SYSCTL_PERIPH_UART6, \b SYSCTL_PERIPH_UART7,
//! \b SYSCTL_PERIPH_UDMA, \b SYSCTL_PERIPH_USB0, \b SYSCTL_PERIPH_WDOG0,
//! \b SYSCTL_PERIPH_WDOG1, \b SYSCTL_PERIPH_WTIMER0, \b SYSCTL_PERIPH_WTIMER1,
//! \b SYSCTL_PERIPH_WTIMER2, \b SYSCTL_PERIPH_WTIMER3,
//! \b SYSCTL_PERIPH_WTIMER4, or \b SYSCTL_PERIPH_WTIMER5
//!
//! \note It takes five clock cycles after the write to enable a peripheral
//! before the the peripheral is actually enabled. During this time, attempts
//! to access the peripheral result in a bus fault. Care should be taken
//! to ensure that the peripheral is not accessed during this brief time
//! period.
//!
//! \return None.
//
//*****************************************************************************
void
SysCtlPeripheralEnable(uint32_t ui32Peripheral)
{
//
// Check the arguments.
//
ASSERT(_SysCtlPeripheralValid(ui32Peripheral));
//
// Enable this peripheral.
//
HWREGBITW(SYSCTL_RCGCBASE + ((ui32Peripheral & 0xff00) >> 8),
ui32Peripheral & 0xff) = 1;
}
//*****************************************************************************
//
//! Disables a peripheral.
//!
//! \param ui32Peripheral is the peripheral to disable.
//!
//! This function disables a peripheral. Once disabled, they do not operate or
//! respond to register reads/writes.
//!
//! The \e ui32Peripheral parameter must be only one of the following values:
//! \b SYSCTL_PERIPH_ADC0, \b SYSCTL_PERIPH_ADC1, \b SYSCTL_PERIPH_CAN0,
//! \b SYSCTL_PERIPH_CAN1, \b SYSCTL_PERIPH_CCM0,\b SYSCTL_PERIPH_COMP0,
//! \b SYSCTL_PERIPH_EEPROM0, \b SYSCTL_PERIPH_EMAC, \b SYSCTL_PERIPH_EPHY,
//! \b SYSCTL_PERIPH_EPI0,
//! \b SYSCTL_PERIPH_GPIOA, \b SYSCTL_PERIPH_GPIOB, \b SYSCTL_PERIPH_GPIOC,
//! \b SYSCTL_PERIPH_GPIOD, \b SYSCTL_PERIPH_GPIOE, \b SYSCTL_PERIPH_GPIOF,
//! \b SYSCTL_PERIPH_GPIOG, \b SYSCTL_PERIPH_GPIOH, \b SYSCTL_PERIPH_GPIOJ,
//! \b SYSCTL_PERIPH_GPIOK, \b SYSCTL_PERIPH_GPIOL, \b SYSCTL_PERIPH_GPIOM,
//! \b SYSCTL_PERIPH_GPION, \b SYSCTL_PERIPH_GPIOP, \b SYSCTL_PERIPH_GPIOQ,
//! \b SYSCTL_PERIPH_GPIOR, \b SYSCTL_PERIPH_GPIOS, \b SYSCTL_PERIPH_GPIOT,
//! \b SYSCTL_PERIPH_HIBERNATE,
//! \b SYSCTL_PERIPH_I2C0, \b SYSCTL_PERIPH_I2C1, \b SYSCTL_PERIPH_I2C2,
//! \b SYSCTL_PERIPH_I2C3, \b SYSCTL_PERIPH_I2C4, \b SYSCTL_PERIPH_I2C5,
//! \b SYSCTL_PERIPH_I2C6, \b SYSCTL_PERIPH_I2C7, \b SYSCTL_PERIPH_I2C8,
//! \b SYSCTL_PERIPH_I2C9, \b SYSCTL_PERIPH_LCD0,
//! \b SYSCTL_PERIPH_ONEWIRE0,
//! \b SYSCTL_PERIPH_PWM0, \b SYSCTL_PERIPH_PWM1, \b SYSCTL_PERIPH_QEI0,
//! \b SYSCTL_PERIPH_QEI1, \b SYSCTL_PERIPH_SSI0, \b SYSCTL_PERIPH_SSI1,
//! \b SYSCTL_PERIPH_SSI2, \b SYSCTL_PERIPH_SSI3, \b SYSCTL_PERIPH_TIMER0,
//! \b SYSCTL_PERIPH_TIMER1, \b SYSCTL_PERIPH_TIMER2, \b SYSCTL_PERIPH_TIMER3,
//! \b SYSCTL_PERIPH_TIMER4, \b SYSCTL_PERIPH_TIMER5, \b SYSCTL_PERIPH_TIMER6,
//! \b SYSCTL_PERIPH_TIMER7, \b SYSCTL_PERIPH_UART0, \b SYSCTL_PERIPH_UART1,
//! \b SYSCTL_PERIPH_UART2, \b SYSCTL_PERIPH_UART3, \b SYSCTL_PERIPH_UART4,
//! \b SYSCTL_PERIPH_UART5, \b SYSCTL_PERIPH_UART6, \b SYSCTL_PERIPH_UART7,
//! \b SYSCTL_PERIPH_UDMA, \b SYSCTL_PERIPH_USB0, \b SYSCTL_PERIPH_WDOG0,
//! \b SYSCTL_PERIPH_WDOG1, \b SYSCTL_PERIPH_WTIMER0, \b SYSCTL_PERIPH_WTIMER1,
//! \b SYSCTL_PERIPH_WTIMER2, \b SYSCTL_PERIPH_WTIMER3,
//! \b SYSCTL_PERIPH_WTIMER4, or \b SYSCTL_PERIPH_WTIMER5
//!
//! \return None.
//
//*****************************************************************************
void
SysCtlPeripheralDisable(uint32_t ui32Peripheral)
{
//
// Check the arguments.
//
ASSERT(_SysCtlPeripheralValid(ui32Peripheral));
//
// Disable this peripheral.
//
HWREGBITW(SYSCTL_RCGCBASE + ((ui32Peripheral & 0xff00) >> 8),
ui32Peripheral & 0xff) = 0;
}
//*****************************************************************************
//
//! Enables a peripheral in sleep mode.
//!
//! \param ui32Peripheral is the peripheral to enable in sleep mode.
//!
//! This function allows a peripheral to continue operating when the processor
//! goes into sleep mode. Because the clocking configuration of the device
//! does not change, any peripheral can safely continue operating while the
//! processor is in sleep mode and can therefore wake the processor from sleep
//! mode.
//!
//! Sleep mode clocking of peripherals must be enabled via
//! SysCtlPeripheralClockGating(); if disabled, the peripheral sleep mode
//! configuration is maintained but has no effect when sleep mode is entered.
//!
//! The \e ui32Peripheral parameter must be only one of the following values:
//! \b SYSCTL_PERIPH_ADC0, \b SYSCTL_PERIPH_ADC1, \b SYSCTL_PERIPH_CAN0,
//! \b SYSCTL_PERIPH_CAN1, \b SYSCTL_PERIPH_CCM0,\b SYSCTL_PERIPH_COMP0,
//! \b SYSCTL_PERIPH_EEPROM0, \b SYSCTL_PERIPH_EMAC, \b SYSCTL_PERIPH_EPHY,
//! \b SYSCTL_PERIPH_EPI0,
//! \b SYSCTL_PERIPH_GPIOA, \b SYSCTL_PERIPH_GPIOB, \b SYSCTL_PERIPH_GPIOC,
//! \b SYSCTL_PERIPH_GPIOD, \b SYSCTL_PERIPH_GPIOE, \b SYSCTL_PERIPH_GPIOF,
//! \b SYSCTL_PERIPH_GPIOG, \b SYSCTL_PERIPH_GPIOH, \b SYSCTL_PERIPH_GPIOJ,
//! \b SYSCTL_PERIPH_GPIOK, \b SYSCTL_PERIPH_GPIOL, \b SYSCTL_PERIPH_GPIOM,
//! \b SYSCTL_PERIPH_GPION, \b SYSCTL_PERIPH_GPIOP, \b SYSCTL_PERIPH_GPIOQ,
//! \b SYSCTL_PERIPH_GPIOR, \b SYSCTL_PERIPH_GPIOS, \b SYSCTL_PERIPH_GPIOT,
//! \b SYSCTL_PERIPH_HIBERNATE,
//! \b SYSCTL_PERIPH_I2C0, \b SYSCTL_PERIPH_I2C1, \b SYSCTL_PERIPH_I2C2,
//! \b SYSCTL_PERIPH_I2C3, \b SYSCTL_PERIPH_I2C4, \b SYSCTL_PERIPH_I2C5,
//! \b SYSCTL_PERIPH_I2C6, \b SYSCTL_PERIPH_I2C7, \b SYSCTL_PERIPH_I2C8,
//! \b SYSCTL_PERIPH_I2C9, \b SYSCTL_PERIPH_LCD0,
//! \b SYSCTL_PERIPH_ONEWIRE0,
//! \b SYSCTL_PERIPH_PWM0, \b SYSCTL_PERIPH_PWM1, \b SYSCTL_PERIPH_QEI0,
//! \b SYSCTL_PERIPH_QEI1, \b SYSCTL_PERIPH_SSI0, \b SYSCTL_PERIPH_SSI1,
//! \b SYSCTL_PERIPH_SSI2, \b SYSCTL_PERIPH_SSI3, \b SYSCTL_PERIPH_TIMER0,
//! \b SYSCTL_PERIPH_TIMER1, \b SYSCTL_PERIPH_TIMER2, \b SYSCTL_PERIPH_TIMER3,
//! \b SYSCTL_PERIPH_TIMER4, \b SYSCTL_PERIPH_TIMER5, \b SYSCTL_PERIPH_TIMER6,
//! \b SYSCTL_PERIPH_TIMER7, \b SYSCTL_PERIPH_UART0, \b SYSCTL_PERIPH_UART1,
//! \b SYSCTL_PERIPH_UART2, \b SYSCTL_PERIPH_UART3, \b SYSCTL_PERIPH_UART4,
//! \b SYSCTL_PERIPH_UART5, \b SYSCTL_PERIPH_UART6, \b SYSCTL_PERIPH_UART7,
//! \b SYSCTL_PERIPH_UDMA, \b SYSCTL_PERIPH_USB0, \b SYSCTL_PERIPH_WDOG0,
//! \b SYSCTL_PERIPH_WDOG1, \b SYSCTL_PERIPH_WTIMER0, \b SYSCTL_PERIPH_WTIMER1,
//! \b SYSCTL_PERIPH_WTIMER2, \b SYSCTL_PERIPH_WTIMER3,
//! \b SYSCTL_PERIPH_WTIMER4, or \b SYSCTL_PERIPH_WTIMER5
//!
//! \return None.
//
//*****************************************************************************
void
SysCtlPeripheralSleepEnable(uint32_t ui32Peripheral)
{
//
// Check the arguments.
//
ASSERT(_SysCtlPeripheralValid(ui32Peripheral));
//
// Enable this peripheral in sleep mode.
//
HWREGBITW(SYSCTL_SCGCBASE + ((ui32Peripheral & 0xff00) >> 8),
ui32Peripheral & 0xff) = 1;
}
//*****************************************************************************
//
//! Disables a peripheral in sleep mode.
//!
//! \param ui32Peripheral is the peripheral to disable in sleep mode.
//!
//! This function causes a peripheral to stop operating when the processor goes
//! into sleep mode. Disabling peripherals while in sleep mode helps to lower
//! the current draw of the device. If enabled (via SysCtlPeripheralEnable()),
//! the peripheral automatically resumes operation when the processor
//! leaves sleep mode, maintaining its entire state from before sleep mode was
//! entered.
//!
//! Sleep mode clocking of peripherals must be enabled via
//! SysCtlPeripheralClockGating(); if disabled, the peripheral sleep mode
//! configuration is maintained but has no effect when sleep mode is entered.
//!
//! The \e ui32Peripheral parameter must be only one of the following values:
//! \b SYSCTL_PERIPH_ADC0, \b SYSCTL_PERIPH_ADC1, \b SYSCTL_PERIPH_CAN0,
//! \b SYSCTL_PERIPH_CAN1, \b SYSCTL_PERIPH_CCM0,\b SYSCTL_PERIPH_COMP0,
//! \b SYSCTL_PERIPH_EEPROM0, \b SYSCTL_PERIPH_EMAC, \b SYSCTL_PERIPH_EPHY,