1 //*****************************************************************************
2 // MKE14Z7 startup code for use with MCUXpresso IDE
3 //
4 // Version : 160420
5 //*****************************************************************************
6 //
7 // Copyright 2016-2020 NXP
8 // All rights reserved.
9 //
10 // SPDX-License-Identifier: BSD-3-Clause
11 //*****************************************************************************
12 
13 #if defined (DEBUG)
14 #pragma GCC push_options
15 #pragma GCC optimize ("Og")
16 #endif // (DEBUG)
17 
18 #if defined (__cplusplus)
19 #ifdef __REDLIB__
20 #error Redlib does not support C++
21 #else
22 //*****************************************************************************
23 //
24 // The entry point for the C++ library startup
25 //
26 //*****************************************************************************
27 extern "C" {
28     extern void __libc_init_array(void);
29 }
30 #endif
31 #endif
32 
33 #define WEAK __attribute__ ((weak))
34 #define WEAK_AV __attribute__ ((weak, section(".after_vectors")))
35 #define ALIAS(f) __attribute__ ((weak, alias (#f)))
36 
37 //*****************************************************************************
38 #if defined (__cplusplus)
39 extern "C" {
40 #endif
41 
42 //*****************************************************************************
43 // Flash Configuration block : 16-byte flash configuration field that stores
44 // default protection settings (loaded on reset) and security information that
45 // allows the MCU to restrict access to the Flash Memory module.
46 // Placed at address 0x400 by the linker script.
47 //*****************************************************************************
48 __attribute__ ((used,section(".FlashConfig"))) const struct {
49     unsigned int word1;
50     unsigned int word2;
51     unsigned int word3;
52     unsigned int word4;
53 } Flash_Config = {0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFF7DFE};
54 //*****************************************************************************
55 // Declaration of external SystemInit function
56 //*****************************************************************************
57 #if defined (__USE_CMSIS)
58 extern void SystemInit(void);
59 #endif // (__USE_CMSIS)
60 
61 //*****************************************************************************
62 // Forward declaration of the core exception handlers.
63 // When the application defines a handler (with the same name), this will
64 // automatically take precedence over these weak definitions.
65 // If your application is a C++ one, then any interrupt handlers defined
66 // in C++ files within in your main application will need to have C linkage
67 // rather than C++ linkage. To do this, make sure that you are using extern "C"
68 // { .... } around the interrupt handler within your main application code.
69 //*****************************************************************************
70      void ResetISR(void);
71 WEAK void NMI_Handler(void);
72 WEAK void HardFault_Handler(void);
73 WEAK void SVC_Handler(void);
74 WEAK void PendSV_Handler(void);
75 WEAK void SysTick_Handler(void);
76 WEAK void IntDefaultHandler(void);
77 
78 //*****************************************************************************
79 // Forward declaration of the application IRQ handlers. When the application
80 // defines a handler (with the same name), this will automatically take
81 // precedence over weak definitions below
82 //*****************************************************************************
83 WEAK void DMA0_04_IRQHandler(void);
84 WEAK void DMA0_15_IRQHandler(void);
85 WEAK void DMA0_26_IRQHandler(void);
86 WEAK void DMA0_37_IRQHandler(void);
87 WEAK void DMA_Error_IRQHandler(void);
88 WEAK void FTFE_IRQHandler(void);
89 WEAK void LVD_LVW_IRQHandler(void);
90 WEAK void PORTAE_IRQHandler(void);
91 WEAK void LPI2C0_IRQHandler(void);
92 WEAK void LPI2C1_IRQHandler(void);
93 WEAK void LPSPI0_IRQHandler(void);
94 WEAK void LPSPI1_IRQHandler(void);
95 WEAK void LPUART0_IRQHandler(void);
96 WEAK void LPUART1_IRQHandler(void);
97 WEAK void LPUART2_IRQHandler(void);
98 WEAK void ADC0_IRQHandler(void);
99 WEAK void CMP0_IRQHandler(void);
100 WEAK void FTM0_IRQHandler(void);
101 WEAK void FTM1_IRQHandler(void);
102 WEAK void FTM2_IRQHandler(void);
103 WEAK void RTC_IRQHandler(void);
104 WEAK void CMP1_IRQHandler(void);
105 WEAK void LPIT0_IRQHandler(void);
106 WEAK void FLEXIO_IRQHandler(void);
107 WEAK void Reserved40_IRQHandler(void);
108 WEAK void PDB0_IRQHandler(void);
109 WEAK void PORTBCD_IRQHandler(void);
110 WEAK void SCG_IRQHandler(void);
111 WEAK void WDOG_EWM_IRQHandler(void);
112 WEAK void PWT_LPTMR0_IRQHandler(void);
113 WEAK void ADC1_IRQHandler(void);
114 WEAK void RCM_IRQHandler(void);
115 
116 //*****************************************************************************
117 // Forward declaration of the driver IRQ handlers. These are aliased
118 // to the IntDefaultHandler, which is a 'forever' loop. When the driver
119 // defines a handler (with the same name), this will automatically take
120 // precedence over these weak definitions
121 //*****************************************************************************
122 void DMA0_04_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
123 void DMA0_15_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
124 void DMA0_26_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
125 void DMA0_37_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
126 void DMA_Error_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
127 void FTFE_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
128 void LVD_LVW_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
129 void PORTAE_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
130 void LPI2C0_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
131 void LPI2C1_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
132 void LPSPI0_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
133 void LPSPI1_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
134 void LPUART0_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
135 void LPUART1_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
136 void LPUART2_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
137 void ADC0_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
138 void CMP0_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
139 void FTM0_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
140 void FTM1_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
141 void FTM2_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
142 void RTC_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
143 void CMP1_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
144 void LPIT0_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
145 void FLEXIO_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
146 void Reserved40_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
147 void PDB0_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
148 void PORTBCD_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
149 void SCG_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
150 void WDOG_EWM_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
151 void PWT_LPTMR0_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
152 void ADC1_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
153 void RCM_DriverIRQHandler(void) ALIAS(IntDefaultHandler);
154 
155 //*****************************************************************************
156 // The entry point for the application.
157 // __main() is the entry point for Redlib based applications
158 // main() is the entry point for Newlib based applications
159 //*****************************************************************************
160 #if defined (__REDLIB__)
161 extern void __main(void);
162 #endif
163 extern int main(void);
164 
165 //*****************************************************************************
166 // External declaration for the pointer to the stack top from the Linker Script
167 //*****************************************************************************
168 extern void _vStackTop(void);
169 //*****************************************************************************
170 #if defined (__cplusplus)
171 } // extern "C"
172 #endif
173 //*****************************************************************************
174 // The vector table.
175 // This relies on the linker script to place at correct location in memory.
176 //*****************************************************************************
177 
178 
179 
180 extern void (* const g_pfnVectors[])(void);
181 extern void * __Vectors __attribute__ ((alias ("g_pfnVectors")));
182 
183 __attribute__ ((used, section(".isr_vector")))
184 void (* const g_pfnVectors[])(void) = {
185     // Core Level - CM0P
186     &_vStackTop,                       // The initial stack pointer
187     ResetISR,                          // The reset handler
188     NMI_Handler,                       // The NMI handler
189     HardFault_Handler,                 // The hard fault handler
190     0,                                 // Reserved
191     0,                                 // Reserved
192     0,                                 // Reserved
193     0,                                 // Reserved
194     0,                                 // Reserved
195     0,                                 // Reserved
196     0,                                 // Reserved
197     SVC_Handler,                       // SVCall handler
198     0,                                 // Reserved
199     0,                                 // Reserved
200     PendSV_Handler,                    // The PendSV handler
201     SysTick_Handler,                   // The SysTick handler
202 
203     // Chip Level - MKE14Z7
204     DMA0_04_IRQHandler,      // 16: DMA channel 0 or 4 transfer complete
205     DMA0_15_IRQHandler,      // 17: DMA channel 1 or 5 transfer complete
206     DMA0_26_IRQHandler,      // 18: DMA channel 2 or 6 transfer complete
207     DMA0_37_IRQHandler,      // 19: DMA channel 3 or 7 transfer complete
208     DMA_Error_IRQHandler,    // 20: DMA error interrupt channels 0-7
209     FTFE_IRQHandler,         // 21: Single interrupt vector for all sources
210     LVD_LVW_IRQHandler,      // 22: Low-voltage detect, low-voltage warning
211     PORTAE_IRQHandler,       // 23: Pin detect (Port A, E)
212     LPI2C0_IRQHandler,       // 24: Inter-integrated circuit 0 interrupt
213     LPI2C1_IRQHandler,       // 25: Inter-integrated circuit 1 interrupt
214     LPSPI0_IRQHandler,       // 26: Serial peripheral Interface 0 interrupt
215     LPSPI1_IRQHandler,       // 27: Serial peripheral Interface 1 interrupt
216     LPUART0_IRQHandler,      // 28: Single interrupt vector for all sources
217     LPUART1_IRQHandler,      // 29: Single interrupt vector for all sources
218     LPUART2_IRQHandler,      // 30: Single interrupt vector for all sources
219     ADC0_IRQHandler,         // 31: ADC0 conversion complete interrupt
220     CMP0_IRQHandler,         // 32: CMP0 interrupt
221     FTM0_IRQHandler,         // 33: FTM0 single interrupt vector for all sources
222     FTM1_IRQHandler,         // 34: FTM1 single interrupt vector for all sources
223     FTM2_IRQHandler,         // 35: FTM2 single interrupt vector for all sources
224     RTC_IRQHandler,          // 36: Single interrupt vector for all sources
225     CMP1_IRQHandler,         // 37: CMP1 interrupt
226     LPIT0_IRQHandler,        // 38: LPIT interrupt
227     FLEXIO_IRQHandler,       // 39: FLEXIO interrupt
228     Reserved40_IRQHandler,   // 40: Reserved interrupt
229     PDB0_IRQHandler,         // 41: Programmable delay block interrupt
230     PORTBCD_IRQHandler,      // 42: Pin detect (Port B, C, D)
231     SCG_IRQHandler,          // 43: System clock generator interrupt
232     WDOG_EWM_IRQHandler,     // 44: Single interrupt vector for WDOG and EWM
233     PWT_LPTMR0_IRQHandler,   // 45: Single interrupt vector for PWT and LPTMR0
234     ADC1_IRQHandler,         // 46: ADC1 conversion complete interrupt
235     RCM_IRQHandler,          // 47: RCM interrupt
236 
237 
238 }; /* End of g_pfnVectors */
239 
240 //*****************************************************************************
241 // Functions to carry out the initialization of RW and BSS data sections. These
242 // are written as separate functions rather than being inlined within the
243 // ResetISR() function in order to cope with MCUs with multiple banks of
244 // memory.
245 //*****************************************************************************
246 __attribute__ ((section(".after_vectors.init_data")))
data_init(unsigned int romstart,unsigned int start,unsigned int len)247 void data_init(unsigned int romstart, unsigned int start, unsigned int len) {
248     unsigned int *pulDest = (unsigned int*) start;
249     unsigned int *pulSrc = (unsigned int*) romstart;
250     unsigned int loop;
251     for (loop = 0; loop < len; loop = loop + 4)
252         *pulDest++ = *pulSrc++;
253 }
254 
255 __attribute__ ((section(".after_vectors.init_bss")))
bss_init(unsigned int start,unsigned int len)256 void bss_init(unsigned int start, unsigned int len) {
257     unsigned int *pulDest = (unsigned int*) start;
258     unsigned int loop;
259     for (loop = 0; loop < len; loop = loop + 4)
260         *pulDest++ = 0;
261 }
262 
263 //*****************************************************************************
264 // The following symbols are constructs generated by the linker, indicating
265 // the location of various points in the "Global Section Table". This table is
266 // created by the linker via the Code Red managed linker script mechanism. It
267 // contains the load address, execution address and length of each RW data
268 // section and the execution and length of each BSS (zero initialized) section.
269 //*****************************************************************************
270 extern unsigned int __data_section_table;
271 extern unsigned int __data_section_table_end;
272 extern unsigned int __bss_section_table;
273 extern unsigned int __bss_section_table_end;
274 
275 //*****************************************************************************
276 // Reset entry point for your code.
277 // Sets up a simple runtime environment and initializes the C/C++
278 // library.
279 //*****************************************************************************
280 __attribute__ ((naked, section(".after_vectors.reset")))
ResetISR(void)281 void ResetISR(void) {
282 
283     // Disable interrupts
284     __asm volatile ("cpsid i");
285 
286 
287 #if defined (__USE_CMSIS)
288 // If __USE_CMSIS defined, then call CMSIS SystemInit code
289     SystemInit();
290 
291 #else
292     // Disable Watchdog
293     // Write watchdog update key to unlock
294     *((volatile unsigned int *)0x40052004) = 0xD928C520;
295     // Set timeout value
296     *((volatile unsigned int *)0x40052008) = 0xFFFF;
297     // Now disable watchdog via control register
298     volatile unsigned int *WDOG_CS = (unsigned int *) 0x40052000;
299     *WDOG_CS = (*WDOG_CS & ~(1 << 7)) | (1 << 5);
300 #endif // (__USE_CMSIS)
301 
302     //
303     // Copy the data sections from flash to SRAM.
304     //
305     unsigned int LoadAddr, ExeAddr, SectionLen;
306     unsigned int *SectionTableAddr;
307 
308     // Load base address of Global Section Table
309     SectionTableAddr = &__data_section_table;
310 
311     // Copy the data sections from flash to SRAM.
312     while (SectionTableAddr < &__data_section_table_end) {
313         LoadAddr = *SectionTableAddr++;
314         ExeAddr = *SectionTableAddr++;
315         SectionLen = *SectionTableAddr++;
316         data_init(LoadAddr, ExeAddr, SectionLen);
317     }
318 
319     // At this point, SectionTableAddr = &__bss_section_table;
320     // Zero fill the bss segment
321     while (SectionTableAddr < &__bss_section_table_end) {
322         ExeAddr = *SectionTableAddr++;
323         SectionLen = *SectionTableAddr++;
324         bss_init(ExeAddr, SectionLen);
325     }
326 
327 
328 #if !defined (__USE_CMSIS)
329 // Assume that if __USE_CMSIS defined, then CMSIS SystemInit code
330 // will setup the VTOR register
331 
332     // Check to see if we are running the code from a non-zero
333     // address (eg RAM, external flash), in which case we need
334     // to modify the VTOR register to tell the CPU that the
335     // vector table is located at a non-0x0 address.
336     unsigned int * pSCB_VTOR = (unsigned int *) 0xE000ED08;
337     if ((unsigned int *)g_pfnVectors!=(unsigned int *) 0x00000000) {
338         *pSCB_VTOR = (unsigned int)g_pfnVectors;
339     }
340 #endif // (__USE_CMSIS)
341 #if defined (__cplusplus)
342     //
343     // Call C++ library initialisation
344     //
345     __libc_init_array();
346 #endif
347 
348     // Reenable interrupts
349     __asm volatile ("cpsie i");
350 
351 #if defined (__REDLIB__)
352     // Call the Redlib library, which in turn calls main()
353     __main();
354 #else
355     main();
356 #endif
357 
358     //
359     // main() shouldn't return, but if it does, we'll just enter an infinite loop
360     //
361     while (1) {
362         ;
363     }
364 }
365 
366 //*****************************************************************************
367 // Default core exception handlers. Override the ones here by defining your own
368 // handler routines in your application code.
369 //*****************************************************************************
NMI_Handler(void)370 WEAK_AV void NMI_Handler(void)
371 { while(1) {}
372 }
373 
HardFault_Handler(void)374 WEAK_AV void HardFault_Handler(void)
375 { while(1) {}
376 }
377 
SVC_Handler(void)378 WEAK_AV void SVC_Handler(void)
379 { while(1) {}
380 }
381 
PendSV_Handler(void)382 WEAK_AV void PendSV_Handler(void)
383 { while(1) {}
384 }
385 
SysTick_Handler(void)386 WEAK_AV void SysTick_Handler(void)
387 { while(1) {}
388 }
389 
390 //*****************************************************************************
391 // Processor ends up here if an unexpected interrupt occurs or a specific
392 // handler is not present in the application code.
393 //*****************************************************************************
IntDefaultHandler(void)394 WEAK_AV void IntDefaultHandler(void)
395 { while(1) {}
396 }
397 
398 //*****************************************************************************
399 // Default application exception handlers. Override the ones here by defining
400 // your own handler routines in your application code. These routines call
401 // driver exception handlers or IntDefaultHandler() if no driver exception
402 // handler is included.
403 //*****************************************************************************
DMA0_04_IRQHandler(void)404 WEAK_AV void DMA0_04_IRQHandler(void)
405 {   DMA0_04_DriverIRQHandler();
406 }
407 
DMA0_15_IRQHandler(void)408 WEAK_AV void DMA0_15_IRQHandler(void)
409 {   DMA0_15_DriverIRQHandler();
410 }
411 
DMA0_26_IRQHandler(void)412 WEAK_AV void DMA0_26_IRQHandler(void)
413 {   DMA0_26_DriverIRQHandler();
414 }
415 
DMA0_37_IRQHandler(void)416 WEAK_AV void DMA0_37_IRQHandler(void)
417 {   DMA0_37_DriverIRQHandler();
418 }
419 
DMA_Error_IRQHandler(void)420 WEAK_AV void DMA_Error_IRQHandler(void)
421 {   DMA_Error_DriverIRQHandler();
422 }
423 
FTFE_IRQHandler(void)424 WEAK_AV void FTFE_IRQHandler(void)
425 {   FTFE_DriverIRQHandler();
426 }
427 
LVD_LVW_IRQHandler(void)428 WEAK_AV void LVD_LVW_IRQHandler(void)
429 {   LVD_LVW_DriverIRQHandler();
430 }
431 
PORTAE_IRQHandler(void)432 WEAK_AV void PORTAE_IRQHandler(void)
433 {   PORTAE_DriverIRQHandler();
434 }
435 
LPI2C0_IRQHandler(void)436 WEAK_AV void LPI2C0_IRQHandler(void)
437 {   LPI2C0_DriverIRQHandler();
438 }
439 
LPI2C1_IRQHandler(void)440 WEAK_AV void LPI2C1_IRQHandler(void)
441 {   LPI2C1_DriverIRQHandler();
442 }
443 
LPSPI0_IRQHandler(void)444 WEAK_AV void LPSPI0_IRQHandler(void)
445 {   LPSPI0_DriverIRQHandler();
446 }
447 
LPSPI1_IRQHandler(void)448 WEAK_AV void LPSPI1_IRQHandler(void)
449 {   LPSPI1_DriverIRQHandler();
450 }
451 
LPUART0_IRQHandler(void)452 WEAK_AV void LPUART0_IRQHandler(void)
453 {   LPUART0_DriverIRQHandler();
454 }
455 
LPUART1_IRQHandler(void)456 WEAK_AV void LPUART1_IRQHandler(void)
457 {   LPUART1_DriverIRQHandler();
458 }
459 
LPUART2_IRQHandler(void)460 WEAK_AV void LPUART2_IRQHandler(void)
461 {   LPUART2_DriverIRQHandler();
462 }
463 
ADC0_IRQHandler(void)464 WEAK_AV void ADC0_IRQHandler(void)
465 {   ADC0_DriverIRQHandler();
466 }
467 
CMP0_IRQHandler(void)468 WEAK_AV void CMP0_IRQHandler(void)
469 {   CMP0_DriverIRQHandler();
470 }
471 
FTM0_IRQHandler(void)472 WEAK_AV void FTM0_IRQHandler(void)
473 {   FTM0_DriverIRQHandler();
474 }
475 
FTM1_IRQHandler(void)476 WEAK_AV void FTM1_IRQHandler(void)
477 {   FTM1_DriverIRQHandler();
478 }
479 
FTM2_IRQHandler(void)480 WEAK_AV void FTM2_IRQHandler(void)
481 {   FTM2_DriverIRQHandler();
482 }
483 
RTC_IRQHandler(void)484 WEAK_AV void RTC_IRQHandler(void)
485 {   RTC_DriverIRQHandler();
486 }
487 
CMP1_IRQHandler(void)488 WEAK_AV void CMP1_IRQHandler(void)
489 {   CMP1_DriverIRQHandler();
490 }
491 
LPIT0_IRQHandler(void)492 WEAK_AV void LPIT0_IRQHandler(void)
493 {   LPIT0_DriverIRQHandler();
494 }
495 
FLEXIO_IRQHandler(void)496 WEAK_AV void FLEXIO_IRQHandler(void)
497 {   FLEXIO_DriverIRQHandler();
498 }
499 
Reserved40_IRQHandler(void)500 WEAK_AV void Reserved40_IRQHandler(void)
501 {   Reserved40_DriverIRQHandler();
502 }
503 
PDB0_IRQHandler(void)504 WEAK_AV void PDB0_IRQHandler(void)
505 {   PDB0_DriverIRQHandler();
506 }
507 
PORTBCD_IRQHandler(void)508 WEAK_AV void PORTBCD_IRQHandler(void)
509 {   PORTBCD_DriverIRQHandler();
510 }
511 
SCG_IRQHandler(void)512 WEAK_AV void SCG_IRQHandler(void)
513 {   SCG_DriverIRQHandler();
514 }
515 
WDOG_EWM_IRQHandler(void)516 WEAK_AV void WDOG_EWM_IRQHandler(void)
517 {   WDOG_EWM_DriverIRQHandler();
518 }
519 
PWT_LPTMR0_IRQHandler(void)520 WEAK_AV void PWT_LPTMR0_IRQHandler(void)
521 {   PWT_LPTMR0_DriverIRQHandler();
522 }
523 
ADC1_IRQHandler(void)524 WEAK_AV void ADC1_IRQHandler(void)
525 {   ADC1_DriverIRQHandler();
526 }
527 
RCM_IRQHandler(void)528 WEAK_AV void RCM_IRQHandler(void)
529 {   RCM_DriverIRQHandler();
530 }
531 
532 //*****************************************************************************
533 
534 #if defined (DEBUG)
535 #pragma GCC pop_options
536 #endif // (DEBUG)
537