mirror of
https://github.com/hathach/tinyusb.git
synced 2025-01-17 05:32:55 +08:00
f638594536
current board that doesn work with flto is spresense and mimxrt10xx (due to xip image_vector_table is optimized out).
186 lines
6.4 KiB
C
186 lines
6.4 KiB
C
/*
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* The MIT License (MIT)
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*
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* Copyright (c) 2018, hathach (tinyusb.org)
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to deal
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* in the Software without restriction, including without limitation the rights
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* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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* THE SOFTWARE.
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*
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* This file is part of the TinyUSB stack.
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*/
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#include "../board.h"
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#include "fsl_device_registers.h"
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#include "fsl_gpio.h"
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#include "fsl_iomuxc.h"
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#include "fsl_clock.h"
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#include "clock_config.h"
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#define LED_PORT GPIO1
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#define LED_PIN 9
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#define LED_STATE_ON 0
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// SW8 button
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#define BUTTON_PORT GPIO5
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#define BUTTON_PIN 0
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#define BUTTON_STATE_ACTIVE 0
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const uint8_t dcd_data[] = { 0x00 };
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void board_init(void)
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{
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// Init clock
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BOARD_BootClockRUN();
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SystemCoreClockUpdate();
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// Enable IOCON clock
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CLOCK_EnableClock(kCLOCK_Iomuxc);
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// CLOCK_EnableClock(kCLOCK_IomuxcSnvs);
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/* GPIO_AD_B0_09 is configured as GPIO1_IO09 */
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IOMUXC_SetPinMux( IOMUXC_GPIO_AD_B0_09_GPIO1_IO09, 0U);
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IOMUXC_GPR->GPR26 = ((IOMUXC_GPR->GPR26 &
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(~(IOMUXC_GPR_GPR26_GPIO_MUX1_GPIO_SEL_MASK))) /* Mask bits to zero which are setting */
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| IOMUXC_GPR_GPR26_GPIO_MUX1_GPIO_SEL(0x00U) /* GPIO1 and GPIO6 share same IO MUX function, GPIO_MUX1 selects one GPIO function: 0x00U */
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);
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/* GPIO_AD_B0_09 PAD functional properties : */
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/* Slew Rate Field: Slow Slew Rate
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Drive Strength Field: R0/6
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Speed Field: medium(100MHz)
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Open Drain Enable Field: Open Drain Disabled
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Pull / Keep Enable Field: Pull/Keeper Enabled
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Pull / Keep Select Field: Keeper
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Pull Up / Down Config. Field: 100K Ohm Pull Down
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Hyst. Enable Field: Hysteresis Disabled */
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IOMUXC_SetPinConfig( IOMUXC_GPIO_AD_B0_09_GPIO1_IO09, 0x10B0U);
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// IOMUXC_SetPinMux(
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// IOMUXC_SNVS_WAKEUP_GPIO5_IO00, /* WAKEUP is configured as GPIO5_IO00 */
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// 0U); /* Software Input On Field: Input Path is determined by functionality */
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#if CFG_TUSB_OS == OPT_OS_NONE
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// 1ms tick timer
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SysTick_Config(SystemCoreClock / 1000);
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#elif CFG_TUSB_OS == OPT_OS_FREERTOS
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// If freeRTOS is used, IRQ priority is limit by max syscall ( smaller is higher )
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NVIC_SetPriority(USB0_IRQn, configLIBRARY_MAX_SYSCALL_INTERRUPT_PRIORITY );
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#endif
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// LED
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gpio_pin_config_t led_config = { kGPIO_DigitalOutput, 0, kGPIO_NoIntmode };
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GPIO_PinInit(LED_PORT, LED_PIN, &led_config);
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board_led_write(true);
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// Button
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// gpio_pin_config_t button_config = { kGPIO_DigitalInput, 0, kGPIO_IntRisingEdge, };
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// GPIO_PinInit(BUTTON_PORT, BUTTON_PIN, &button_config);
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#if 0
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// USB VBUS
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const uint32_t port0_pin22_config = (
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IOCON_PIO_FUNC7 | /* Pin is configured as USB0_VBUS */
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IOCON_PIO_MODE_INACT | /* No addition pin function */
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IOCON_PIO_SLEW_STANDARD | /* Standard mode, output slew rate control is enabled */
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IOCON_PIO_INV_DI | /* Input function is not inverted */
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IOCON_PIO_DIGITAL_EN | /* Enables digital function */
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IOCON_PIO_OPENDRAIN_DI /* Open drain is disabled */
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);
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/* PORT0 PIN22 (coords: 78) is configured as USB0_VBUS */
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IOCON_PinMuxSet(IOCON, 0U, 22U, port0_pin22_config);
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// USB Controller
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POWER_DisablePD(kPDRUNCFG_PD_USB0_PHY); /*Turn on USB0 Phy */
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POWER_DisablePD(kPDRUNCFG_PD_USB1_PHY); /*< Turn on USB1 Phy */
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/* reset the IP to make sure it's in reset state. */
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RESET_PeripheralReset(kUSB0D_RST_SHIFT_RSTn);
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RESET_PeripheralReset(kUSB0HSL_RST_SHIFT_RSTn);
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RESET_PeripheralReset(kUSB0HMR_RST_SHIFT_RSTn);
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RESET_PeripheralReset(kUSB1H_RST_SHIFT_RSTn);
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RESET_PeripheralReset(kUSB1D_RST_SHIFT_RSTn);
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RESET_PeripheralReset(kUSB1_RST_SHIFT_RSTn);
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RESET_PeripheralReset(kUSB1RAM_RST_SHIFT_RSTn);
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#if (defined USB_DEVICE_CONFIG_LPCIP3511HS) && (USB_DEVICE_CONFIG_LPCIP3511HS)
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CLOCK_EnableClock(kCLOCK_Usbh1);
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/* Put PHY powerdown under software control */
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*((uint32_t *)(USBHSH_BASE + 0x50)) = USBHSH_PORTMODE_SW_PDCOM_MASK;
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/* According to reference mannual, device mode setting has to be set by access usb host register */
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*((uint32_t *)(USBHSH_BASE + 0x50)) |= USBHSH_PORTMODE_DEV_ENABLE_MASK;
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/* enable usb1 host clock */
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CLOCK_DisableClock(kCLOCK_Usbh1);
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#endif
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#if 1 || (defined USB_DEVICE_CONFIG_LPCIP3511FS) && (USB_DEVICE_CONFIG_LPCIP3511FS)
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CLOCK_SetClkDiv(kCLOCK_DivUsb0Clk, 1, false);
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CLOCK_AttachClk(kFRO_HF_to_USB0_CLK);
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/* enable usb0 host clock */
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CLOCK_EnableClock(kCLOCK_Usbhsl0);
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/*According to reference mannual, device mode setting has to be set by access usb host register */
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*((uint32_t *)(USBFSH_BASE + 0x5C)) |= USBFSH_PORTMODE_DEV_ENABLE_MASK;
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/* disable usb0 host clock */
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CLOCK_DisableClock(kCLOCK_Usbhsl0);
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CLOCK_EnableUsbfs0DeviceClock(kCLOCK_UsbfsSrcFro, CLOCK_GetFreq(kCLOCK_FroHf)); /* enable USB Device clock */
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#endif
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#endif
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}
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//--------------------------------------------------------------------+
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// Board porting API
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//--------------------------------------------------------------------+
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void board_led_write(bool state)
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{
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GPIO_PinWrite(LED_PORT, LED_PIN, state ? LED_STATE_ON : (1-LED_STATE_ON));
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}
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uint32_t board_button_read(void)
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{
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// active low
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return BUTTON_STATE_ACTIVE == GPIO_PinRead(BUTTON_PORT, BUTTON_PIN);
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}
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int board_uart_read(uint8_t* buf, int len)
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{
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(void) buf; (void) len;
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return 0;
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}
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int board_uart_write(void const * buf, int len)
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{
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(void) buf; (void) len;
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return 0;
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}
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#if CFG_TUSB_OS == OPT_OS_NONE
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volatile uint32_t system_ticks = 0;
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void SysTick_Handler(void)
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{
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system_ticks++;
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}
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uint32_t board_millis(void)
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{
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return system_ticks;
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}
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#endif
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