1a43d431bSSoby Mathew/* 21c3ea103SAntonio Nino Diaz * Copyright (c) 2014-2016, ARM Limited and Contributors. All rights reserved. 3a43d431bSSoby Mathew * 4a43d431bSSoby Mathew * Redistribution and use in source and binary forms, with or without 5a43d431bSSoby Mathew * modification, are permitted provided that the following conditions are met: 6a43d431bSSoby Mathew * 7a43d431bSSoby Mathew * Redistributions of source code must retain the above copyright notice, this 8a43d431bSSoby Mathew * list of conditions and the following disclaimer. 9a43d431bSSoby Mathew * 10a43d431bSSoby Mathew * Redistributions in binary form must reproduce the above copyright notice, 11a43d431bSSoby Mathew * this list of conditions and the following disclaimer in the documentation 12a43d431bSSoby Mathew * and/or other materials provided with the distribution. 13a43d431bSSoby Mathew * 14a43d431bSSoby Mathew * Neither the name of ARM nor the names of its contributors may be used 15a43d431bSSoby Mathew * to endorse or promote products derived from this software without specific 16a43d431bSSoby Mathew * prior written permission. 17a43d431bSSoby Mathew * 18a43d431bSSoby Mathew * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" 19a43d431bSSoby Mathew * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 20a43d431bSSoby Mathew * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 21a43d431bSSoby Mathew * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE 22a43d431bSSoby Mathew * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 23a43d431bSSoby Mathew * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 24a43d431bSSoby Mathew * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 25a43d431bSSoby Mathew * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 26a43d431bSSoby Mathew * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 27a43d431bSSoby Mathew * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 28a43d431bSSoby Mathew * POSSIBILITY OF SUCH DAMAGE. 29a43d431bSSoby Mathew */ 30a43d431bSSoby Mathew#include <arch.h> 31a43d431bSSoby Mathew#include <asm_macros.S> 32a43d431bSSoby Mathew#include <context.h> 335e910074SAndrew Thoelke#include <cpu_data.h> 34a43d431bSSoby Mathew#include <plat_macros.S> 35e4d13389SSandrine Bailleux#include <platform_def.h> 36a43d431bSSoby Mathew 37626ed510SSoby Mathew .globl report_unhandled_exception 38626ed510SSoby Mathew .globl report_unhandled_interrupt 39626ed510SSoby Mathew .globl el3_panic 40a43d431bSSoby Mathew 419c22b323SAndrew Thoelke#if CRASH_REPORTING 42626ed510SSoby Mathew#define REG_SIZE 0x8 43626ed510SSoby Mathew 44a43d431bSSoby Mathew /* ------------------------------------------------------ 45a43d431bSSoby Mathew * The below section deals with dumping the system state 46a43d431bSSoby Mathew * when an unhandled exception is taken in EL3. 47a43d431bSSoby Mathew * The layout and the names of the registers which will 48a43d431bSSoby Mathew * be dumped during a unhandled exception is given below. 49a43d431bSSoby Mathew * ------------------------------------------------------ 50a43d431bSSoby Mathew */ 51626ed510SSoby Mathew.section .rodata.crash_prints, "aS" 52626ed510SSoby Mathewprint_spacer: 53626ed510SSoby Mathew .asciz " =\t\t0x" 54a43d431bSSoby Mathew 55626ed510SSoby Mathewgp_regs: 56626ed510SSoby Mathew .asciz "x0", "x1", "x2", "x3", "x4", "x5", "x6", "x7",\ 57626ed510SSoby Mathew "x8", "x9", "x10", "x11", "x12", "x13", "x14", "x15",\ 58626ed510SSoby Mathew "x16", "x17", "x18", "x19", "x20", "x21", "x22",\ 59626ed510SSoby Mathew "x23", "x24", "x25", "x26", "x27", "x28", "x29", "" 60626ed510SSoby Mathewel3_sys_regs: 61626ed510SSoby Mathew .asciz "scr_el3", "sctlr_el3", "cptr_el3", "tcr_el3",\ 62626ed510SSoby Mathew "daif", "mair_el3", "spsr_el3", "elr_el3", "ttbr0_el3",\ 63626ed510SSoby Mathew "esr_el3", "far_el3", "" 64a43d431bSSoby Mathew 65626ed510SSoby Mathewnon_el3_sys_regs: 66626ed510SSoby Mathew .asciz "spsr_el1", "elr_el1", "spsr_abt", "spsr_und",\ 67a43d431bSSoby Mathew "spsr_irq", "spsr_fiq", "sctlr_el1", "actlr_el1", "cpacr_el1",\ 68a43d431bSSoby Mathew "csselr_el1", "sp_el1", "esr_el1", "ttbr0_el1", "ttbr1_el1",\ 69626ed510SSoby Mathew "mair_el1", "amair_el1", "tcr_el1", "tpidr_el1", "tpidr_el0",\ 70626ed510SSoby Mathew "tpidrro_el0", "dacr32_el2", "ifsr32_el2", "par_el1",\ 71626ed510SSoby Mathew "mpidr_el1", "afsr0_el1", "afsr1_el1", "contextidr_el1",\ 72626ed510SSoby Mathew "vbar_el1", "cntp_ctl_el0", "cntp_cval_el0", "cntv_ctl_el0",\ 736b836cf9SGerald Lejeune "cntv_cval_el0", "cntkctl_el1", "fpexc32_el2", "sp_el0",\ 746b836cf9SGerald Lejeune "isr_el1", "" 75a43d431bSSoby Mathew 76626ed510SSoby Mathewpanic_msg: 77626ed510SSoby Mathew .asciz "PANIC in EL3 at x30 = 0x" 78626ed510SSoby Mathewexcpt_msg: 79626ed510SSoby Mathew .asciz "Unhandled Exception in EL3.\nx30 =\t\t0x" 80626ed510SSoby Mathewintr_excpt_msg: 81626ed510SSoby Mathew .asciz "Unhandled Interrupt Exception in EL3.\nx30 =\t\t0x" 82626ed510SSoby Mathew 83626ed510SSoby Mathew /* 84626ed510SSoby Mathew * Helper function to print newline to console. 85626ed510SSoby Mathew */ 86626ed510SSoby Mathewfunc print_newline 87626ed510SSoby Mathew mov x0, '\n' 88626ed510SSoby Mathew b plat_crash_console_putc 898b779620SKévin Petitendfunc print_newline 90626ed510SSoby Mathew 91626ed510SSoby Mathew /* 92626ed510SSoby Mathew * Helper function to print from crash buf. 93626ed510SSoby Mathew * The print loop is controlled by the buf size and 94626ed510SSoby Mathew * ascii reg name list which is passed in x6. The 95626ed510SSoby Mathew * function returns the crash buf address in x0. 96626ed510SSoby Mathew * Clobbers : x0 - x7, sp 97626ed510SSoby Mathew */ 98626ed510SSoby Mathewfunc size_controlled_print 99626ed510SSoby Mathew /* Save the lr */ 100626ed510SSoby Mathew mov sp, x30 101626ed510SSoby Mathew /* load the crash buf address */ 102626ed510SSoby Mathew mrs x7, tpidr_el3 103626ed510SSoby Mathewtest_size_list: 104626ed510SSoby Mathew /* Calculate x5 always as it will be clobbered by asm_print_hex */ 105626ed510SSoby Mathew mrs x5, tpidr_el3 106626ed510SSoby Mathew add x5, x5, #CPU_DATA_CRASH_BUF_SIZE 107626ed510SSoby Mathew /* Test whether we have reached end of crash buf */ 108626ed510SSoby Mathew cmp x7, x5 109626ed510SSoby Mathew b.eq exit_size_print 110626ed510SSoby Mathew ldrb w4, [x6] 111626ed510SSoby Mathew /* Test whether we are at end of list */ 112626ed510SSoby Mathew cbz w4, exit_size_print 113626ed510SSoby Mathew mov x4, x6 114626ed510SSoby Mathew /* asm_print_str updates x4 to point to next entry in list */ 115626ed510SSoby Mathew bl asm_print_str 116626ed510SSoby Mathew /* update x6 with the updated list pointer */ 117626ed510SSoby Mathew mov x6, x4 118626ed510SSoby Mathew adr x4, print_spacer 119626ed510SSoby Mathew bl asm_print_str 120626ed510SSoby Mathew ldr x4, [x7], #REG_SIZE 121626ed510SSoby Mathew bl asm_print_hex 122626ed510SSoby Mathew bl print_newline 123626ed510SSoby Mathew b test_size_list 124626ed510SSoby Mathewexit_size_print: 125626ed510SSoby Mathew mov x30, sp 126626ed510SSoby Mathew ret 1278b779620SKévin Petitendfunc size_controlled_print 128626ed510SSoby Mathew 129626ed510SSoby Mathew /* 130626ed510SSoby Mathew * Helper function to store x8 - x15 registers to 131626ed510SSoby Mathew * the crash buf. The system registers values are 132626ed510SSoby Mathew * copied to x8 to x15 by the caller which are then 133626ed510SSoby Mathew * copied to the crash buf by this function. 134626ed510SSoby Mathew * x0 points to the crash buf. It then calls 135626ed510SSoby Mathew * size_controlled_print to print to console. 136626ed510SSoby Mathew * Clobbers : x0 - x7, sp 137626ed510SSoby Mathew */ 138626ed510SSoby Mathewfunc str_in_crash_buf_print 139626ed510SSoby Mathew /* restore the crash buf address in x0 */ 140626ed510SSoby Mathew mrs x0, tpidr_el3 141626ed510SSoby Mathew stp x8, x9, [x0] 142626ed510SSoby Mathew stp x10, x11, [x0, #REG_SIZE * 2] 143626ed510SSoby Mathew stp x12, x13, [x0, #REG_SIZE * 4] 144626ed510SSoby Mathew stp x14, x15, [x0, #REG_SIZE * 6] 145626ed510SSoby Mathew b size_controlled_print 1468b779620SKévin Petitendfunc str_in_crash_buf_print 147626ed510SSoby Mathew 148626ed510SSoby Mathew /* ------------------------------------------------------ 149626ed510SSoby Mathew * This macro calculates the offset to crash buf from 150626ed510SSoby Mathew * cpu_data and stores it in tpidr_el3. It also saves x0 151626ed510SSoby Mathew * and x1 in the crash buf by using sp as a temporary 152626ed510SSoby Mathew * register. 153626ed510SSoby Mathew * ------------------------------------------------------ 154626ed510SSoby Mathew */ 155626ed510SSoby Mathew .macro prepare_crash_buf_save_x0_x1 156626ed510SSoby Mathew /* we can corrupt this reg to free up x0 */ 157626ed510SSoby Mathew mov sp, x0 158626ed510SSoby Mathew /* tpidr_el3 contains the address to cpu_data structure */ 159626ed510SSoby Mathew mrs x0, tpidr_el3 160626ed510SSoby Mathew /* Calculate the Crash buffer offset in cpu_data */ 161626ed510SSoby Mathew add x0, x0, #CPU_DATA_CRASH_BUF_OFFSET 162626ed510SSoby Mathew /* Store crash buffer address in tpidr_el3 */ 163626ed510SSoby Mathew msr tpidr_el3, x0 164626ed510SSoby Mathew str x1, [x0, #REG_SIZE] 165626ed510SSoby Mathew mov x1, sp 166626ed510SSoby Mathew str x1, [x0] 167626ed510SSoby Mathew .endm 168a43d431bSSoby Mathew 169a43d431bSSoby Mathew /* ----------------------------------------------------- 170626ed510SSoby Mathew * This function allows to report a crash (if crash 171626ed510SSoby Mathew * reporting is enabled) when an unhandled exception 172626ed510SSoby Mathew * occurs. It prints the CPU state via the crash console 173626ed510SSoby Mathew * making use of the crash buf. This function will 174626ed510SSoby Mathew * not return. 175a43d431bSSoby Mathew * ----------------------------------------------------- 176a43d431bSSoby Mathew */ 177626ed510SSoby Mathewfunc report_unhandled_exception 178626ed510SSoby Mathew prepare_crash_buf_save_x0_x1 179626ed510SSoby Mathew adr x0, excpt_msg 180626ed510SSoby Mathew mov sp, x0 181626ed510SSoby Mathew /* This call will not return */ 182626ed510SSoby Mathew b do_crash_reporting 1838b779620SKévin Petitendfunc report_unhandled_exception 184a43d431bSSoby Mathew 185a43d431bSSoby Mathew 186626ed510SSoby Mathew /* ----------------------------------------------------- 187626ed510SSoby Mathew * This function allows to report a crash (if crash 188626ed510SSoby Mathew * reporting is enabled) when an unhandled interrupt 189626ed510SSoby Mathew * occurs. It prints the CPU state via the crash console 190626ed510SSoby Mathew * making use of the crash buf. This function will 191626ed510SSoby Mathew * not return. 192626ed510SSoby Mathew * ----------------------------------------------------- 193626ed510SSoby Mathew */ 194626ed510SSoby Mathewfunc report_unhandled_interrupt 195626ed510SSoby Mathew prepare_crash_buf_save_x0_x1 196626ed510SSoby Mathew adr x0, intr_excpt_msg 197626ed510SSoby Mathew mov sp, x0 198626ed510SSoby Mathew /* This call will not return */ 199626ed510SSoby Mathew b do_crash_reporting 2008b779620SKévin Petitendfunc report_unhandled_interrupt 201a43d431bSSoby Mathew 202626ed510SSoby Mathew /* ----------------------------------------------------- 203626ed510SSoby Mathew * This function allows to report a crash (if crash 204626ed510SSoby Mathew * reporting is enabled) when panic() is invoked from 205626ed510SSoby Mathew * C Runtime. It prints the CPU state via the crash 206626ed510SSoby Mathew * console making use of the crash buf. This function 207626ed510SSoby Mathew * will not return. 208626ed510SSoby Mathew * ----------------------------------------------------- 209626ed510SSoby Mathew */ 210626ed510SSoby Mathewfunc el3_panic 211626ed510SSoby Mathew msr spsel, #1 212626ed510SSoby Mathew prepare_crash_buf_save_x0_x1 213626ed510SSoby Mathew adr x0, panic_msg 214626ed510SSoby Mathew mov sp, x0 215626ed510SSoby Mathew /* This call will not return */ 216626ed510SSoby Mathew b do_crash_reporting 2178b779620SKévin Petitendfunc el3_panic 218a43d431bSSoby Mathew 219626ed510SSoby Mathew /* ------------------------------------------------------------ 220626ed510SSoby Mathew * The common crash reporting functionality. It requires x0 221626ed510SSoby Mathew * and x1 has already been stored in crash buf, sp points to 222626ed510SSoby Mathew * crash message and tpidr_el3 contains the crash buf address. 223626ed510SSoby Mathew * The function does the following: 224626ed510SSoby Mathew * - Retrieve the crash buffer from tpidr_el3 225626ed510SSoby Mathew * - Store x2 to x6 in the crash buffer 226626ed510SSoby Mathew * - Initialise the crash console. 227626ed510SSoby Mathew * - Print the crash message by using the address in sp. 228626ed510SSoby Mathew * - Print x30 value to the crash console. 229626ed510SSoby Mathew * - Print x0 - x7 from the crash buf to the crash console. 230626ed510SSoby Mathew * - Print x8 - x29 (in groups of 8 registers) using the 231626ed510SSoby Mathew * crash buf to the crash console. 232626ed510SSoby Mathew * - Print el3 sys regs (in groups of 8 registers) using the 233626ed510SSoby Mathew * crash buf to the crash console. 234626ed510SSoby Mathew * - Print non el3 sys regs (in groups of 8 registers) using 235626ed510SSoby Mathew * the crash buf to the crash console. 236626ed510SSoby Mathew * ------------------------------------------------------------ 237626ed510SSoby Mathew */ 238626ed510SSoby Mathewfunc do_crash_reporting 239626ed510SSoby Mathew /* Retrieve the crash buf from tpidr_el3 */ 240626ed510SSoby Mathew mrs x0, tpidr_el3 241626ed510SSoby Mathew /* Store x2 - x6, x30 in the crash buffer */ 242626ed510SSoby Mathew stp x2, x3, [x0, #REG_SIZE * 2] 243626ed510SSoby Mathew stp x4, x5, [x0, #REG_SIZE * 4] 244626ed510SSoby Mathew stp x6, x30, [x0, #REG_SIZE * 6] 245626ed510SSoby Mathew /* Initialize the crash console */ 246626ed510SSoby Mathew bl plat_crash_console_init 247626ed510SSoby Mathew /* Verify the console is initialized */ 248626ed510SSoby Mathew cbz x0, crash_panic 249626ed510SSoby Mathew /* Print the crash message. sp points to the crash message */ 250626ed510SSoby Mathew mov x4, sp 251626ed510SSoby Mathew bl asm_print_str 252626ed510SSoby Mathew /* load the crash buf address */ 253626ed510SSoby Mathew mrs x0, tpidr_el3 254626ed510SSoby Mathew /* report x30 first from the crash buf */ 255626ed510SSoby Mathew ldr x4, [x0, #REG_SIZE * 7] 256626ed510SSoby Mathew bl asm_print_hex 257626ed510SSoby Mathew bl print_newline 258626ed510SSoby Mathew /* Load the crash buf address */ 259626ed510SSoby Mathew mrs x0, tpidr_el3 260626ed510SSoby Mathew /* Now mov x7 into crash buf */ 261626ed510SSoby Mathew str x7, [x0, #REG_SIZE * 7] 262a43d431bSSoby Mathew 263626ed510SSoby Mathew /* Report x0 - x29 values stored in crash buf*/ 264626ed510SSoby Mathew /* Store the ascii list pointer in x6 */ 265626ed510SSoby Mathew adr x6, gp_regs 266626ed510SSoby Mathew /* Print x0 to x7 from the crash buf */ 267626ed510SSoby Mathew bl size_controlled_print 268626ed510SSoby Mathew /* Store x8 - x15 in crash buf and print */ 269626ed510SSoby Mathew bl str_in_crash_buf_print 270626ed510SSoby Mathew /* Load the crash buf address */ 271626ed510SSoby Mathew mrs x0, tpidr_el3 272626ed510SSoby Mathew /* Store the rest of gp regs and print */ 273626ed510SSoby Mathew stp x16, x17, [x0] 274626ed510SSoby Mathew stp x18, x19, [x0, #REG_SIZE * 2] 275626ed510SSoby Mathew stp x20, x21, [x0, #REG_SIZE * 4] 276626ed510SSoby Mathew stp x22, x23, [x0, #REG_SIZE * 6] 277626ed510SSoby Mathew bl size_controlled_print 278626ed510SSoby Mathew /* Load the crash buf address */ 279626ed510SSoby Mathew mrs x0, tpidr_el3 280626ed510SSoby Mathew stp x24, x25, [x0] 281626ed510SSoby Mathew stp x26, x27, [x0, #REG_SIZE * 2] 282626ed510SSoby Mathew stp x28, x29, [x0, #REG_SIZE * 4] 283626ed510SSoby Mathew bl size_controlled_print 284a43d431bSSoby Mathew 285626ed510SSoby Mathew /* Print the el3 sys registers */ 286626ed510SSoby Mathew adr x6, el3_sys_regs 287626ed510SSoby Mathew mrs x8, scr_el3 288626ed510SSoby Mathew mrs x9, sctlr_el3 289626ed510SSoby Mathew mrs x10, cptr_el3 290626ed510SSoby Mathew mrs x11, tcr_el3 291626ed510SSoby Mathew mrs x12, daif 292626ed510SSoby Mathew mrs x13, mair_el3 293626ed510SSoby Mathew mrs x14, spsr_el3 294626ed510SSoby Mathew mrs x15, elr_el3 295626ed510SSoby Mathew bl str_in_crash_buf_print 296626ed510SSoby Mathew mrs x8, ttbr0_el3 297626ed510SSoby Mathew mrs x9, esr_el3 298626ed510SSoby Mathew mrs x10, far_el3 299626ed510SSoby Mathew bl str_in_crash_buf_print 300a43d431bSSoby Mathew 301626ed510SSoby Mathew /* Print the non el3 sys registers */ 302626ed510SSoby Mathew adr x6, non_el3_sys_regs 303626ed510SSoby Mathew mrs x8, spsr_el1 304626ed510SSoby Mathew mrs x9, elr_el1 305626ed510SSoby Mathew mrs x10, spsr_abt 306626ed510SSoby Mathew mrs x11, spsr_und 307626ed510SSoby Mathew mrs x12, spsr_irq 308626ed510SSoby Mathew mrs x13, spsr_fiq 309626ed510SSoby Mathew mrs x14, sctlr_el1 310626ed510SSoby Mathew mrs x15, actlr_el1 311626ed510SSoby Mathew bl str_in_crash_buf_print 312626ed510SSoby Mathew mrs x8, cpacr_el1 313626ed510SSoby Mathew mrs x9, csselr_el1 314a43d431bSSoby Mathew mrs x10, sp_el1 315a43d431bSSoby Mathew mrs x11, esr_el1 316a43d431bSSoby Mathew mrs x12, ttbr0_el1 317a43d431bSSoby Mathew mrs x13, ttbr1_el1 318a43d431bSSoby Mathew mrs x14, mair_el1 319a43d431bSSoby Mathew mrs x15, amair_el1 320626ed510SSoby Mathew bl str_in_crash_buf_print 321626ed510SSoby Mathew mrs x8, tcr_el1 322626ed510SSoby Mathew mrs x9, tpidr_el1 323626ed510SSoby Mathew mrs x10, tpidr_el0 324626ed510SSoby Mathew mrs x11, tpidrro_el0 325626ed510SSoby Mathew mrs x12, dacr32_el2 326626ed510SSoby Mathew mrs x13, ifsr32_el2 327626ed510SSoby Mathew mrs x14, par_el1 328626ed510SSoby Mathew mrs x15, mpidr_el1 329626ed510SSoby Mathew bl str_in_crash_buf_print 330626ed510SSoby Mathew mrs x8, afsr0_el1 331626ed510SSoby Mathew mrs x9, afsr1_el1 332626ed510SSoby Mathew mrs x10, contextidr_el1 333626ed510SSoby Mathew mrs x11, vbar_el1 334626ed510SSoby Mathew mrs x12, cntp_ctl_el0 335626ed510SSoby Mathew mrs x13, cntp_cval_el0 336626ed510SSoby Mathew mrs x14, cntv_ctl_el0 337626ed510SSoby Mathew mrs x15, cntv_cval_el0 338626ed510SSoby Mathew bl str_in_crash_buf_print 339626ed510SSoby Mathew mrs x8, cntkctl_el1 340626ed510SSoby Mathew mrs x9, fpexc32_el2 341626ed510SSoby Mathew mrs x10, sp_el0 3426b836cf9SGerald Lejeune mrs x11, isr_el1 343626ed510SSoby Mathew bl str_in_crash_buf_print 344a43d431bSSoby Mathew 345d3f70af6SSoby Mathew /* Get the cpu specific registers to report */ 346d3f70af6SSoby Mathew bl do_cpu_reg_dump 347d3f70af6SSoby Mathew bl str_in_crash_buf_print 3488c106902SSoby Mathew 349*9ff67fa6SGerald Lejeune /* Print some platform registers */ 350*9ff67fa6SGerald Lejeune plat_crash_print_regs 3518c106902SSoby Mathew 352626ed510SSoby Mathew /* Done reporting */ 3531c3ea103SAntonio Nino Diaz bl plat_panic_handler 3548b779620SKévin Petitendfunc do_crash_reporting 355a43d431bSSoby Mathew 356626ed510SSoby Mathew#else /* CRASH_REPORTING */ 357626ed510SSoby Mathewfunc report_unhandled_exception 358626ed510SSoby Mathewreport_unhandled_interrupt: 3591c3ea103SAntonio Nino Diaz bl plat_panic_handler 3608b779620SKévin Petitendfunc report_unhandled_exception 3611645d3eeSSandrine Bailleux#endif /* CRASH_REPORTING */ 3629c22b323SAndrew Thoelke 363a43d431bSSoby Mathew 364626ed510SSoby Mathewfunc crash_panic 3651c3ea103SAntonio Nino Diaz bl plat_panic_handler 3668b779620SKévin Petitendfunc crash_panic 367