gxl_bl31_setup.c 5.0 KB

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  1. /*
  2. * Copyright (c) 2018-2019, ARM Limited and Contributors. All rights reserved.
  3. *
  4. * SPDX-License-Identifier: BSD-3-Clause
  5. */
  6. #include <assert.h>
  7. #include <common/bl_common.h>
  8. #include <common/interrupt_props.h>
  9. #include <drivers/arm/gicv2.h>
  10. #include <lib/mmio.h>
  11. #include <lib/xlat_tables/xlat_mmu_helpers.h>
  12. #include <plat/common/platform.h>
  13. #include <platform_def.h>
  14. #include "aml_private.h"
  15. /*
  16. * Placeholder variables for copying the arguments that have been passed to
  17. * BL31 from BL2.
  18. */
  19. static entry_point_info_t bl33_image_ep_info;
  20. static image_info_t bl30_image_info;
  21. static image_info_t bl301_image_info;
  22. /*******************************************************************************
  23. * Return a pointer to the 'entry_point_info' structure of the next image for
  24. * the security state specified. BL33 corresponds to the non-secure image type
  25. * while BL32 corresponds to the secure image type. A NULL pointer is returned
  26. * if the image does not exist.
  27. ******************************************************************************/
  28. entry_point_info_t *bl31_plat_get_next_image_ep_info(uint32_t type)
  29. {
  30. entry_point_info_t *next_image_info;
  31. assert(type == NON_SECURE);
  32. next_image_info = &bl33_image_ep_info;
  33. /* None of the images can have 0x0 as the entrypoint. */
  34. if (next_image_info->pc != 0U) {
  35. return next_image_info;
  36. } else {
  37. return NULL;
  38. }
  39. }
  40. /*******************************************************************************
  41. * Perform any BL31 early platform setup. Here is an opportunity to copy
  42. * parameters passed by the calling EL (S-EL1 in BL2 & S-EL3 in BL1) before
  43. * they are lost (potentially). This needs to be done before the MMU is
  44. * initialized so that the memory layout can be used while creating page
  45. * tables. BL2 has flushed this information to memory, so we are guaranteed
  46. * to pick up good data.
  47. ******************************************************************************/
  48. struct gxl_bl31_param {
  49. param_header_t h;
  50. image_info_t *bl31_image_info;
  51. entry_point_info_t *bl32_ep_info;
  52. image_info_t *bl32_image_info;
  53. entry_point_info_t *bl33_ep_info;
  54. image_info_t *bl33_image_info;
  55. image_info_t *scp_image_info[];
  56. };
  57. void bl31_early_platform_setup2(u_register_t arg0, u_register_t arg1,
  58. u_register_t arg2, u_register_t arg3)
  59. {
  60. struct gxl_bl31_param *from_bl2;
  61. /* Initialize the console to provide early debug support */
  62. aml_console_init();
  63. /* Check that params passed from BL2 are not NULL. */
  64. from_bl2 = (struct gxl_bl31_param *) arg0;
  65. /* Check params passed from BL2 are not NULL. */
  66. assert(from_bl2 != NULL);
  67. assert(from_bl2->h.type == PARAM_BL31);
  68. assert(from_bl2->h.version >= VERSION_1);
  69. /*
  70. * Copy BL33 entry point information. It is stored in Secure RAM, in
  71. * BL2's address space.
  72. */
  73. bl33_image_ep_info = *from_bl2->bl33_ep_info;
  74. if (bl33_image_ep_info.pc == 0U) {
  75. ERROR("BL31: BL33 entrypoint not obtained from BL2\n");
  76. panic();
  77. }
  78. bl30_image_info = *from_bl2->scp_image_info[0];
  79. bl301_image_info = *from_bl2->scp_image_info[1];
  80. }
  81. void bl31_plat_arch_setup(void)
  82. {
  83. aml_setup_page_tables();
  84. enable_mmu_el3(0);
  85. }
  86. static inline bool gxl_scp_ready(void)
  87. {
  88. return AML_AO_RTI_SCP_IS_READY(mmio_read_32(AML_AO_RTI_SCP_STAT));
  89. }
  90. static inline void gxl_scp_boot(void)
  91. {
  92. aml_scpi_upload_scp_fw(bl30_image_info.image_base,
  93. bl30_image_info.image_size, 0);
  94. aml_scpi_upload_scp_fw(bl301_image_info.image_base,
  95. bl301_image_info.image_size, 1);
  96. while (!gxl_scp_ready())
  97. ;
  98. }
  99. /*******************************************************************************
  100. * GICv2 driver setup information
  101. ******************************************************************************/
  102. static const interrupt_prop_t gxl_interrupt_props[] = {
  103. INTR_PROP_DESC(IRQ_SEC_PHY_TIMER, GIC_HIGHEST_SEC_PRIORITY,
  104. GICV2_INTR_GROUP0, GIC_INTR_CFG_LEVEL),
  105. INTR_PROP_DESC(IRQ_SEC_SGI_0, GIC_HIGHEST_SEC_PRIORITY,
  106. GICV2_INTR_GROUP0, GIC_INTR_CFG_LEVEL),
  107. INTR_PROP_DESC(IRQ_SEC_SGI_1, GIC_HIGHEST_SEC_PRIORITY,
  108. GICV2_INTR_GROUP0, GIC_INTR_CFG_LEVEL),
  109. INTR_PROP_DESC(IRQ_SEC_SGI_2, GIC_HIGHEST_SEC_PRIORITY,
  110. GICV2_INTR_GROUP0, GIC_INTR_CFG_LEVEL),
  111. INTR_PROP_DESC(IRQ_SEC_SGI_3, GIC_HIGHEST_SEC_PRIORITY,
  112. GICV2_INTR_GROUP0, GIC_INTR_CFG_LEVEL),
  113. INTR_PROP_DESC(IRQ_SEC_SGI_4, GIC_HIGHEST_SEC_PRIORITY,
  114. GICV2_INTR_GROUP0, GIC_INTR_CFG_LEVEL),
  115. INTR_PROP_DESC(IRQ_SEC_SGI_5, GIC_HIGHEST_SEC_PRIORITY,
  116. GICV2_INTR_GROUP0, GIC_INTR_CFG_LEVEL),
  117. INTR_PROP_DESC(IRQ_SEC_SGI_6, GIC_HIGHEST_SEC_PRIORITY,
  118. GICV2_INTR_GROUP0, GIC_INTR_CFG_LEVEL),
  119. INTR_PROP_DESC(IRQ_SEC_SGI_7, GIC_HIGHEST_SEC_PRIORITY,
  120. GICV2_INTR_GROUP0, GIC_INTR_CFG_LEVEL),
  121. };
  122. static const gicv2_driver_data_t gxl_gic_data = {
  123. .gicd_base = AML_GICD_BASE,
  124. .gicc_base = AML_GICC_BASE,
  125. .interrupt_props = gxl_interrupt_props,
  126. .interrupt_props_num = ARRAY_SIZE(gxl_interrupt_props),
  127. };
  128. void bl31_platform_setup(void)
  129. {
  130. aml_mhu_secure_init();
  131. gicv2_driver_init(&gxl_gic_data);
  132. gicv2_distif_init();
  133. gicv2_pcpu_distif_init();
  134. gicv2_cpuif_enable();
  135. gxl_scp_boot();
  136. aml_thermal_unknown();
  137. }