mk20dx256vlh7 working!
- Interrupt vector table position fix (affected everything in the firmware) - Added fault debug messages - Fixed usbMuxUart
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@ -91,7 +91,10 @@ endforeach()
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###
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# Directory Includes
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#
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include_directories( ${CMAKE_SOURCE_DIR}/../Lib )
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include_directories (
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${CMAKE_SOURCE_DIR}/../Lib
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${CMAKE_SOURCE_DIR}
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)
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@ -64,7 +64,7 @@ void _print( const char* s )
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{
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Output_putchar( c );
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}
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#elif defined(_mk20dx128_) || defined(_mk20dx128vlf5_) || defined(_mk20dx256_) // ARM
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#elif defined(_mk20dx128_) || defined(_mk20dx128vlf5_) || defined(_mk20dx256_) || defined(_mk20dx256vlh7_) // ARM
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Output_putstr( (char*)s );
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#endif
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}
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63
Lib/mk20dx.c
63
Lib/mk20dx.c
@ -31,6 +31,14 @@
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// ----- Includes -----
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// Debug Includes
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#if defined(_bootloader_)
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#include <inttypes.h>
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#include <debug.h>
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#else
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#include <print.h>
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#endif
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// Local Includes
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#include "mk20dx.h"
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@ -62,6 +70,7 @@ void ResetHandler();
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// NVIC - Default ISR
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void fault_isr()
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{
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print("Fault!");
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while ( 1 )
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{
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// keep polling some communication while in fault
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@ -87,12 +96,47 @@ void systick_default_isr()
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}
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// NVIC - Non-Maskable Interrupt ISR
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void nmi_default_isr()
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{
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print("NMI!");
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}
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// NVIC - Hard Fault ISR
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void hard_fault_default_isr()
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{
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print("Hard Fault!");
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}
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// NVIC - Memory Manager Fault ISR
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void memmanage_fault_default_isr()
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{
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print("Memory Manager Fault!");
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}
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// NVIC - Bus Fault ISR
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void bus_fault_default_isr()
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{
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print("Bus Fault!");
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}
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// NVIC - Usage Fault ISR
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void usage_fault_default_isr()
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{
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print("Usage Fault!");
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}
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// NVIC - Default ISR/Vector Linking
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void nmi_isr() __attribute__ ((weak, alias("unused_isr")));
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void hard_fault_isr() __attribute__ ((weak, alias("unused_isr")));
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void memmanage_fault_isr() __attribute__ ((weak, alias("unused_isr")));
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void bus_fault_isr() __attribute__ ((weak, alias("unused_isr")));
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void usage_fault_isr() __attribute__ ((weak, alias("unused_isr")));
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void nmi_isr() __attribute__ ((weak, alias("nmi_default_isr")));
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void hard_fault_isr() __attribute__ ((weak, alias("hard_fault_default_isr")));
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void memmanage_fault_isr() __attribute__ ((weak, alias("memmanage_fault_default_isr")));
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void bus_fault_isr() __attribute__ ((weak, alias("bus_fault_default_isr")));
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void usage_fault_isr() __attribute__ ((weak, alias("usage_fault_default_isr")));
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void svcall_isr() __attribute__ ((weak, alias("unused_isr")));
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void debugmonitor_isr() __attribute__ ((weak, alias("unused_isr")));
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void pendablesrvreq_isr() __attribute__ ((weak, alias("unused_isr")));
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@ -394,7 +438,7 @@ const uint8_t flashconfigbytes[16] = {
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// http://cache.freescale.com/files/microcontrollers/doc/app_note/AN4507.pdf
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// http://cache.freescale.com/files/32bit/doc/ref_manual/K20P64M72SF1RM.pdf (28.34.6)
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//
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0xFF, 0xFF, 0xFF, 0xFF, // Program Flash Protection Bytes FPROT0-3 // XXX TODO PROTECT
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0xFF, 0xFF, 0xFF, 0xFE, // Program Flash Protection Bytes FPROT0-3
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0xBE, // Flash security byte FSEC
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0x03, // Flash nonvolatile option byte FOPT
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@ -503,7 +547,7 @@ void ResetHandler()
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SIM_SCGC6 = SIM_SCGC6_FTM0 | SIM_SCGC6_FTM1 | SIM_SCGC6_ADC0 | SIM_SCGC6_FTFL;
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#if defined(_mk20dx128_)
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SIM_SCGC6 |= SIM_SCGC6_RTC;
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#elif defined(_mk20dx256_)
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#elif defined(_mk20dx256_) || defined(_mk20dx256vlh7_)
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SIM_SCGC3 = SIM_SCGC3_ADC1 | SIM_SCGC3_FTM2;
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SIM_SCGC6 |= SIM_SCGC6_RTC;
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#endif
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@ -544,7 +588,10 @@ void ResetHandler()
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// Teensy 3.0 and 3.1 and Kiibohd-dfu (mk20dx256vlh7)
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#else
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SCB_VTOR = 0; // use vector table in flash
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#if defined(_mk20dx128_) || defined(_mk20dx256_)
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// use vector table in flash
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SCB_VTOR = 0;
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#endif
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// default all interrupts to medium priority level
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for ( unsigned int i = 0; i < NVIC_NUM_INTERRUPTS; i++ )
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@ -40,8 +40,7 @@ SECTIONS
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{
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.text :
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{
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. = 0;
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KEEP(* (.vectors))
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. = 0; KEEP(* (.vectors)) /* MUST BE AT 0 */
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*(.startup*)
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. = 0x400; KEEP(* (.flashconfig)) /* MUST BE AT 0x400 */
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*(.text*)
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@ -113,8 +113,7 @@ void uart2_status_isr()
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// Cleanup
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available = UART_D;
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UART_CFIFO = UART_CFIFO_RXFLUSH;
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sei();
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return;
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goto done;
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}
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// Read UART0 into buffer until FIFO is empty
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@ -143,6 +142,7 @@ void uart2_status_isr()
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}
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}
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done:
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sei(); // Re-enable Interrupts
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}
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@ -229,6 +229,21 @@ void Output_consCtrlSend_capability( uint8_t state, uint8_t stateType, uint8_t *
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}
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// Ignores the given key status update
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// Used to prevent fall-through, this is the None keyword in KLL
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void Output_noneSend_capability( uint8_t state, uint8_t stateType, uint8_t *args )
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{
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// Display capability name
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if ( stateType == 0xFF && state == 0xFF )
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{
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print("Output_noneSend()");
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return;
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}
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// Nothing to do, because that's the point :P
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}
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// Sends a System Control code to the USB Output buffer
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void Output_sysCtrlSend_capability( uint8_t state, uint8_t stateType, uint8_t *args )
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{
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@ -36,7 +36,7 @@
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// Max size of key buffer needed for NKRO
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// Boot mode uses only the first 6 bytes
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#define USB_NKRO_BITFIELD_SIZE_KEYS 26
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#define USB_NKRO_BITFIELD_SIZE_KEYS 27
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#define USB_BOOT_MAX_KEYS 6
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@ -51,9 +51,10 @@ typedef enum USBKeyChangeState {
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USBKeyChangeState_MainKeys = 0x02,
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USBKeyChangeState_SecondaryKeys = 0x04,
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USBKeyChangeState_TertiaryKeys = 0x08,
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USBKeyChangeState_System = 0x10,
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USBKeyChangeState_Consumer = 0x20,
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USBKeyChangeState_All = 0x3F,
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USBKeyChangeState_QuartiaryKeys = 0x10,
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USBKeyChangeState_System = 0x20,
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USBKeyChangeState_Consumer = 0x40,
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USBKeyChangeState_All = 0x7F,
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} USBKeyChangeState;
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@ -87,6 +88,7 @@ extern uint8_t Output_DebugMode; // 0 - Debug disabled, 1 - Debug enab
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// ----- Capabilities -----
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void Output_consCtrlSend_capability( uint8_t state, uint8_t stateType, uint8_t *args );
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void Output_noneSend_capability( uint8_t state, uint8_t stateType, uint8_t *args );
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void Output_sysCtrlSend_capability( uint8_t state, uint8_t stateType, uint8_t *args );
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void Output_usbCodeSend_capability( uint8_t state, uint8_t stateType, uint8_t *args );
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