cpuport.c 4.6 KB

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  1. /*
  2. * File : cpuport.c
  3. * This file is part of RT-Thread RTOS
  4. * COPYRIGHT (C) 2006 - 2012, RT-Thread Development Team
  5. *
  6. * The license and distribution terms for this file may be
  7. * found in the file LICENSE in this distribution or at
  8. * http://www.rt-thread.org/license/LICENSE
  9. *
  10. * Change Logs:
  11. * Date Author Notes
  12. * 2011-10-21 Bernard the first version.
  13. * 2011-10-27 aozima update for cortex-M4 FPU.
  14. * 2011-12-31 aozima fixed stack align issues.
  15. * 2012-01-01 aozima support context switch load/store FPU register.
  16. * 2012-12-11 lgnq fixed the coding style.
  17. * 2012-12-23 aozima stack addr align to 8byte.
  18. */
  19. #include <rtthread.h>
  20. #define USE_FPU /* ARMCC */ ( (defined ( __CC_ARM ) && defined ( __TARGET_FPU_VFP )) \
  21. /* IAR */ || (defined ( __ICCARM__ ) && defined ( __ARMVFP__ )) \
  22. /* GNU */ || (defined ( __GNUC__ ) && defined ( __VFP_FP__ ) && !defined(__SOFTFP__)) )
  23. /* exception and interrupt handler table */
  24. rt_uint32_t rt_interrupt_from_thread;
  25. rt_uint32_t rt_interrupt_to_thread;
  26. rt_uint32_t rt_thread_switch_interrupt_flag;
  27. struct exception_stack_frame
  28. {
  29. rt_uint32_t r0;
  30. rt_uint32_t r1;
  31. rt_uint32_t r2;
  32. rt_uint32_t r3;
  33. rt_uint32_t r12;
  34. rt_uint32_t lr;
  35. rt_uint32_t pc;
  36. rt_uint32_t psr;
  37. #if USE_FPU
  38. /* FPU register */
  39. rt_uint32_t S0;
  40. rt_uint32_t S1;
  41. rt_uint32_t S2;
  42. rt_uint32_t S3;
  43. rt_uint32_t S4;
  44. rt_uint32_t S5;
  45. rt_uint32_t S6;
  46. rt_uint32_t S7;
  47. rt_uint32_t S8;
  48. rt_uint32_t S9;
  49. rt_uint32_t S10;
  50. rt_uint32_t S11;
  51. rt_uint32_t S12;
  52. rt_uint32_t S13;
  53. rt_uint32_t S14;
  54. rt_uint32_t S15;
  55. rt_uint32_t FPSCR;
  56. rt_uint32_t NO_NAME;
  57. #endif
  58. };
  59. struct stack_frame
  60. {
  61. /* r4 ~ r11 register */
  62. rt_uint32_t r4;
  63. rt_uint32_t r5;
  64. rt_uint32_t r6;
  65. rt_uint32_t r7;
  66. rt_uint32_t r8;
  67. rt_uint32_t r9;
  68. rt_uint32_t r10;
  69. rt_uint32_t r11;
  70. #if USE_FPU
  71. /* FPU register s16 ~ s31 */
  72. rt_uint32_t s16;
  73. rt_uint32_t s17;
  74. rt_uint32_t s18;
  75. rt_uint32_t s19;
  76. rt_uint32_t s20;
  77. rt_uint32_t s21;
  78. rt_uint32_t s22;
  79. rt_uint32_t s23;
  80. rt_uint32_t s24;
  81. rt_uint32_t s25;
  82. rt_uint32_t s26;
  83. rt_uint32_t s27;
  84. rt_uint32_t s28;
  85. rt_uint32_t s29;
  86. rt_uint32_t s30;
  87. rt_uint32_t s31;
  88. #endif
  89. struct exception_stack_frame exception_stack_frame;
  90. };
  91. rt_uint8_t *rt_hw_stack_init(void *tentry,
  92. void *parameter,
  93. rt_uint8_t *stack_addr,
  94. void *texit)
  95. {
  96. struct stack_frame *stack_frame;
  97. rt_uint8_t *stk;
  98. unsigned long i;
  99. stk = stack_addr + sizeof(rt_uint32_t);
  100. stk = (rt_uint8_t *)RT_ALIGN_DOWN((rt_uint32_t)stk, 8);
  101. stk -= sizeof(struct stack_frame);
  102. stack_frame = (struct stack_frame *)stk;
  103. /* init all register */
  104. for (i = 0; i < sizeof(struct stack_frame) / sizeof(rt_uint32_t); i ++)
  105. {
  106. ((rt_uint32_t *)stack_frame)[i] = 0xdeadbeef;
  107. }
  108. stack_frame->exception_stack_frame.r0 = (unsigned long)parameter; /* r0 : argument */
  109. stack_frame->exception_stack_frame.r1 = 0; /* r1 */
  110. stack_frame->exception_stack_frame.r2 = 0; /* r2 */
  111. stack_frame->exception_stack_frame.r3 = 0; /* r3 */
  112. stack_frame->exception_stack_frame.r12 = 0; /* r12 */
  113. stack_frame->exception_stack_frame.lr = (unsigned long)texit; /* lr */
  114. stack_frame->exception_stack_frame.pc = (unsigned long)tentry; /* entry point, pc */
  115. stack_frame->exception_stack_frame.psr = 0x01000000L; /* PSR */
  116. /* return task's current stack address */
  117. return stk;
  118. }
  119. extern void rt_hw_interrupt_thread_switch(void);
  120. extern long list_thread(void);
  121. extern rt_thread_t rt_current_thread;
  122. void rt_hw_hard_fault_exception(struct exception_stack_frame *exception_stack)
  123. {
  124. rt_kprintf("psr: 0x%08x\n", exception_stack->psr);
  125. rt_kprintf(" pc: 0x%08x\n", exception_stack->pc);
  126. rt_kprintf(" lr: 0x%08x\n", exception_stack->lr);
  127. rt_kprintf("r12: 0x%08x\n", exception_stack->r12);
  128. rt_kprintf("r03: 0x%08x\n", exception_stack->r3);
  129. rt_kprintf("r02: 0x%08x\n", exception_stack->r2);
  130. rt_kprintf("r01: 0x%08x\n", exception_stack->r1);
  131. rt_kprintf("r00: 0x%08x\n", exception_stack->r0);
  132. rt_kprintf("hard fault on thread: %s\n", rt_current_thread->name);
  133. #ifdef RT_USING_FINSH
  134. list_thread();
  135. #endif
  136. while (1);
  137. }
  138. void rt_hw_cpu_shutdown(void)
  139. {
  140. rt_kprintf("shutdown...\n");
  141. RT_ASSERT(0);
  142. }