*
* @return bl31 params structure pointer
*/
-static struct bl31_params *bl2_plat_get_bl31_params(uintptr_t bl33_entry)
+static struct bl31_params *bl2_plat_get_bl31_params(uintptr_t bl32_entry,
+ uintptr_t bl33_entry,
+ uintptr_t fdt_addr)
{
+ struct entry_point_info *bl32_ep_info;
struct entry_point_info *bl33_ep_info;
/*
SET_PARAM_HEAD(bl2_to_bl31_params->bl31_image_info,
ATF_PARAM_IMAGE_BINARY, ATF_VERSION_1, 0);
- /* Fill BL32 related information if it exists */
+ /* Fill BL32 related information */
bl2_to_bl31_params->bl32_ep_info = &bl31_params_mem.bl32_ep_info;
- SET_PARAM_HEAD(bl2_to_bl31_params->bl32_ep_info, ATF_PARAM_EP,
- ATF_VERSION_1, 0);
+ bl32_ep_info = &bl31_params_mem.bl32_ep_info;
+ SET_PARAM_HEAD(bl32_ep_info, ATF_PARAM_EP, ATF_VERSION_1,
+ ATF_EP_SECURE);
+
+ /* secure payload is optional, so set pc to 0 if absent */
+ bl32_ep_info->args.arg3 = fdt_addr;
+ bl32_ep_info->pc = bl32_entry ? bl32_entry : 0;
+ bl32_ep_info->spsr = SPSR_64(MODE_EL1, MODE_SP_ELX,
+ DISABLE_ALL_EXECPTIONS);
+
bl2_to_bl31_params->bl32_image_info = &bl31_params_mem.bl32_image_info;
SET_PARAM_HEAD(bl2_to_bl31_params->bl32_image_info,
ATF_PARAM_IMAGE_BINARY, ATF_VERSION_1, 0);
-#ifndef BL32_BASE
- bl2_to_bl31_params->bl32_ep_info->pc = 0;
-#endif /* BL32_BASE */
/* Fill BL33 related information */
bl2_to_bl31_params->bl33_ep_info = &bl31_params_mem.bl33_ep_info;
typedef void (*atf_entry_t)(struct bl31_params *params, void *plat_params);
-static void bl31_entry(uintptr_t bl31_entry, uintptr_t bl33_entry,
- uintptr_t fdt_addr)
+static void bl31_entry(uintptr_t bl31_entry, uintptr_t bl32_entry,
+ uintptr_t bl33_entry, uintptr_t fdt_addr)
{
struct bl31_params *bl31_params;
atf_entry_t atf_entry = (atf_entry_t)bl31_entry;
- bl31_params = bl2_plat_get_bl31_params(bl33_entry);
+ bl31_params = bl2_plat_get_bl31_params(bl32_entry, bl33_entry,
+ fdt_addr);
raw_write_daif(SPSR_EXCEPTION_MASK);
dcache_disable();
atf_entry((void *)bl31_params, (void *)fdt_addr);
}
-static int spl_fit_images_find_uboot(void *blob)
+static int spl_fit_images_find(void *blob, int os)
{
int parent, node, ndepth;
const void *data;
if (!data)
continue;
- if (genimg_get_os_id(data) == IH_OS_U_BOOT)
+ if (genimg_get_os_id(data) == os)
return node;
};
void spl_invoke_atf(struct spl_image_info *spl_image)
{
+ uintptr_t bl32_entry = 0;
uintptr_t bl33_entry = CONFIG_SYS_TEXT_BASE;
void *blob = spl_image->fdt_addr;
uintptr_t platform_param = (uintptr_t)blob;
int node;
+ /*
+ * Find the OP-TEE binary (in /fit-images) load address or
+ * entry point (if different) and pass it as the BL3-2 entry
+ * point, this is optional.
+ */
+ node = spl_fit_images_find(blob, IH_OS_TEE);
+ if (node >= 0)
+ bl32_entry = spl_fit_images_get_entry(blob, node);
+
/*
* Find the U-Boot binary (in /fit-images) load addreess or
* entry point (if different) and pass it as the BL3-3 entry
* This will need to be extended to support Falcon mode.
*/
- node = spl_fit_images_find_uboot(blob);
+ node = spl_fit_images_find(blob, IH_OS_U_BOOT);
if (node >= 0)
bl33_entry = spl_fit_images_get_entry(blob, node);
* We don't provide a BL3-2 entry yet, but this will be possible
* using similar logic.
*/
- bl31_entry(spl_image->entry_point, bl33_entry, platform_param);
+ bl31_entry(spl_image->entry_point, bl32_entry,
+ bl33_entry, platform_param);
}