1*91f16700Schasinglulu /* 2*91f16700Schasinglulu * Copyright (c) 2020, ARM Limited and Contributors. All rights reserved. 3*91f16700Schasinglulu * 4*91f16700Schasinglulu * SPDX-License-Identifier: BSD-3-Clause 5*91f16700Schasinglulu */ 6*91f16700Schasinglulu #include <assert.h> 7*91f16700Schasinglulu 8*91f16700Schasinglulu #include <common/debug.h> 9*91f16700Schasinglulu #include <common/fdt_wrappers.h> 10*91f16700Schasinglulu #include <libfdt.h> 11*91f16700Schasinglulu #include <plat/arm/common/fconf_sec_intr_config.h> 12*91f16700Schasinglulu 13*91f16700Schasinglulu #define G0_INTR_NUM(i) g0_intr_prop[3U * (i)] 14*91f16700Schasinglulu #define G0_INTR_PRIORITY(i) g0_intr_prop[3U * (i) + 1] 15*91f16700Schasinglulu #define G0_INTR_CONFIG(i) g0_intr_prop[3U * (i) + 2] 16*91f16700Schasinglulu 17*91f16700Schasinglulu #define G1S_INTR_NUM(i) g1s_intr_prop[3U * (i)] 18*91f16700Schasinglulu #define G1S_INTR_PRIORITY(i) g1s_intr_prop[3U * (i) + 1] 19*91f16700Schasinglulu #define G1S_INTR_CONFIG(i) g1s_intr_prop[3U * (i) + 2] 20*91f16700Schasinglulu 21*91f16700Schasinglulu struct sec_intr_prop_t sec_intr_prop; 22*91f16700Schasinglulu 23*91f16700Schasinglulu static void print_intr_prop(interrupt_prop_t prop) 24*91f16700Schasinglulu { 25*91f16700Schasinglulu VERBOSE("FCONF: Secure Interrupt NUM: %d, PRI: %d, TYPE: %d\n", 26*91f16700Schasinglulu prop.intr_num, prop.intr_pri, prop.intr_cfg); 27*91f16700Schasinglulu } 28*91f16700Schasinglulu 29*91f16700Schasinglulu int fconf_populate_sec_intr_config(uintptr_t config) 30*91f16700Schasinglulu { 31*91f16700Schasinglulu int node, err; 32*91f16700Schasinglulu uint32_t g0_intr_count, g1s_intr_count; 33*91f16700Schasinglulu uint32_t g0_intr_prop[SEC_INT_COUNT_MAX * 3]; 34*91f16700Schasinglulu uint32_t g1s_intr_prop[SEC_INT_COUNT_MAX * 3]; 35*91f16700Schasinglulu 36*91f16700Schasinglulu /* Necessary to work with libfdt APIs */ 37*91f16700Schasinglulu const void *hw_config_dtb = (const void *)config; 38*91f16700Schasinglulu 39*91f16700Schasinglulu node = fdt_node_offset_by_compatible(hw_config_dtb, -1, 40*91f16700Schasinglulu "arm,secure_interrupt_desc"); 41*91f16700Schasinglulu if (node < 0) { 42*91f16700Schasinglulu ERROR("FCONF: Unable to locate node with %s compatible property\n", 43*91f16700Schasinglulu "arm,secure_interrupt_desc"); 44*91f16700Schasinglulu return node; 45*91f16700Schasinglulu } 46*91f16700Schasinglulu 47*91f16700Schasinglulu /* Read number of Group 0 interrupts specified by platform */ 48*91f16700Schasinglulu err = fdt_read_uint32(hw_config_dtb, node, "g0_intr_cnt", &g0_intr_count); 49*91f16700Schasinglulu if (err < 0) { 50*91f16700Schasinglulu ERROR("FCONF: Could not locate g0s_intr_cnt property\n"); 51*91f16700Schasinglulu return err; 52*91f16700Schasinglulu } 53*91f16700Schasinglulu 54*91f16700Schasinglulu /* At least 1 Group 0 interrupt description has to be provided*/ 55*91f16700Schasinglulu if (g0_intr_count < 1U) { 56*91f16700Schasinglulu ERROR("FCONF: Invalid number of Group 0 interrupts count specified\n"); 57*91f16700Schasinglulu return -1; 58*91f16700Schasinglulu } 59*91f16700Schasinglulu 60*91f16700Schasinglulu /* Read number of Group 1 secure interrupts specified by platform */ 61*91f16700Schasinglulu err = fdt_read_uint32(hw_config_dtb, node, "g1s_intr_cnt", 62*91f16700Schasinglulu &g1s_intr_count); 63*91f16700Schasinglulu if (err < 0) { 64*91f16700Schasinglulu ERROR("FCONF: Could not locate g1s_intr_cnt property\n"); 65*91f16700Schasinglulu return err; 66*91f16700Schasinglulu } 67*91f16700Schasinglulu 68*91f16700Schasinglulu /* At least one Group 1 interrupt description has to be provided*/ 69*91f16700Schasinglulu if (g1s_intr_count < 1U) { 70*91f16700Schasinglulu ERROR("FCONF: Invalid number of Group 1 secure interrupts count specified\n"); 71*91f16700Schasinglulu return -1; 72*91f16700Schasinglulu } 73*91f16700Schasinglulu 74*91f16700Schasinglulu /* 75*91f16700Schasinglulu * Check if the total number of secure interrupts described are within 76*91f16700Schasinglulu * the limit defined statically by the platform. 77*91f16700Schasinglulu */ 78*91f16700Schasinglulu if ((g0_intr_count + g1s_intr_count) > SEC_INT_COUNT_MAX) { 79*91f16700Schasinglulu ERROR("FCONF: Total number of secure interrupts exceed limit the of %d\n", 80*91f16700Schasinglulu SEC_INT_COUNT_MAX); 81*91f16700Schasinglulu return -1; 82*91f16700Schasinglulu } 83*91f16700Schasinglulu 84*91f16700Schasinglulu sec_intr_prop.count = g0_intr_count + g1s_intr_count; 85*91f16700Schasinglulu 86*91f16700Schasinglulu /* Read the Group 0 interrupt descriptors */ 87*91f16700Schasinglulu err = fdt_read_uint32_array(hw_config_dtb, node, "g0_intr_desc", 88*91f16700Schasinglulu g0_intr_count * 3, g0_intr_prop); 89*91f16700Schasinglulu if (err < 0) { 90*91f16700Schasinglulu ERROR("FCONF: Read cell failed for 'g0s_intr_desc': %d\n", err); 91*91f16700Schasinglulu return err; 92*91f16700Schasinglulu } 93*91f16700Schasinglulu 94*91f16700Schasinglulu /* Read the Group 1 secure interrupt descriptors */ 95*91f16700Schasinglulu err = fdt_read_uint32_array(hw_config_dtb, node, "g1s_intr_desc", 96*91f16700Schasinglulu g1s_intr_count * 3, g1s_intr_prop); 97*91f16700Schasinglulu if (err < 0) { 98*91f16700Schasinglulu ERROR("FCONF: Read cell failed for 'g1s_intr_desc': %d\n", err); 99*91f16700Schasinglulu return err; 100*91f16700Schasinglulu } 101*91f16700Schasinglulu 102*91f16700Schasinglulu /* Populate Group 0 interrupt descriptors into fconf based C struct */ 103*91f16700Schasinglulu for (uint32_t i = 0; i < g0_intr_count; i++) { 104*91f16700Schasinglulu interrupt_prop_t sec_intr_property; 105*91f16700Schasinglulu 106*91f16700Schasinglulu /* Secure Interrupt Group: INTR_GROUP0 i.e., 0x1 */ 107*91f16700Schasinglulu sec_intr_property.intr_grp = 1; 108*91f16700Schasinglulu sec_intr_property.intr_num = G0_INTR_NUM(i); 109*91f16700Schasinglulu sec_intr_property.intr_pri = G0_INTR_PRIORITY(i); 110*91f16700Schasinglulu sec_intr_property.intr_cfg = G0_INTR_CONFIG(i); 111*91f16700Schasinglulu sec_intr_prop.descriptor[i] = sec_intr_property; 112*91f16700Schasinglulu print_intr_prop(sec_intr_property); 113*91f16700Schasinglulu } 114*91f16700Schasinglulu 115*91f16700Schasinglulu /* Populate G1 secure interrupt descriptors into fconf based C struct */ 116*91f16700Schasinglulu for (uint32_t i = 0; i < g1s_intr_count; i++) { 117*91f16700Schasinglulu interrupt_prop_t sec_intr_property; 118*91f16700Schasinglulu 119*91f16700Schasinglulu /* Secure Interrupt Group: INTR_GROUP1S i.e., 0x0 */ 120*91f16700Schasinglulu sec_intr_property.intr_grp = 0; 121*91f16700Schasinglulu sec_intr_property.intr_num = G1S_INTR_NUM(i); 122*91f16700Schasinglulu sec_intr_property.intr_pri = G1S_INTR_PRIORITY(i); 123*91f16700Schasinglulu sec_intr_property.intr_cfg = G1S_INTR_CONFIG(i); 124*91f16700Schasinglulu sec_intr_prop.descriptor[i + g0_intr_count] = sec_intr_property; 125*91f16700Schasinglulu print_intr_prop(sec_intr_property); 126*91f16700Schasinglulu } 127*91f16700Schasinglulu 128*91f16700Schasinglulu return 0; 129*91f16700Schasinglulu } 130*91f16700Schasinglulu 131*91f16700Schasinglulu FCONF_REGISTER_POPULATOR(HW_CONFIG, sec_intr_prop, fconf_populate_sec_intr_config); 132