1f81ef4a9SWill Deacon /* 2f81ef4a9SWill Deacon * This program is free software; you can redistribute it and/or modify 3f81ef4a9SWill Deacon * it under the terms of the GNU General Public License version 2 as 4f81ef4a9SWill Deacon * published by the Free Software Foundation. 5f81ef4a9SWill Deacon * 6f81ef4a9SWill Deacon * This program is distributed in the hope that it will be useful, 7f81ef4a9SWill Deacon * but WITHOUT ANY WARRANTY; without even the implied warranty of 8f81ef4a9SWill Deacon * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 9f81ef4a9SWill Deacon * GNU General Public License for more details. 10f81ef4a9SWill Deacon * 11f81ef4a9SWill Deacon * You should have received a copy of the GNU General Public License 12f81ef4a9SWill Deacon * along with this program; if not, write to the Free Software 13f81ef4a9SWill Deacon * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. 14f81ef4a9SWill Deacon * 15f81ef4a9SWill Deacon * Copyright (C) 2009, 2010 ARM Limited 16f81ef4a9SWill Deacon * 17f81ef4a9SWill Deacon * Author: Will Deacon <will.deacon@arm.com> 18f81ef4a9SWill Deacon */ 19f81ef4a9SWill Deacon 20f81ef4a9SWill Deacon /* 21f81ef4a9SWill Deacon * HW_breakpoint: a unified kernel/user-space hardware breakpoint facility, 22f81ef4a9SWill Deacon * using the CPU's debug registers. 23f81ef4a9SWill Deacon */ 24f81ef4a9SWill Deacon #define pr_fmt(fmt) "hw-breakpoint: " fmt 25f81ef4a9SWill Deacon 26f81ef4a9SWill Deacon #include <linux/errno.h> 277e202696SWill Deacon #include <linux/hardirq.h> 28f81ef4a9SWill Deacon #include <linux/perf_event.h> 29f81ef4a9SWill Deacon #include <linux/hw_breakpoint.h> 30f81ef4a9SWill Deacon #include <linux/smp.h> 31f81ef4a9SWill Deacon 32f81ef4a9SWill Deacon #include <asm/cacheflush.h> 33f81ef4a9SWill Deacon #include <asm/cputype.h> 34f81ef4a9SWill Deacon #include <asm/current.h> 35f81ef4a9SWill Deacon #include <asm/hw_breakpoint.h> 36f81ef4a9SWill Deacon #include <asm/kdebug.h> 37f81ef4a9SWill Deacon #include <asm/system.h> 38f81ef4a9SWill Deacon #include <asm/traps.h> 39f81ef4a9SWill Deacon 40f81ef4a9SWill Deacon /* Breakpoint currently in use for each BRP. */ 41f81ef4a9SWill Deacon static DEFINE_PER_CPU(struct perf_event *, bp_on_reg[ARM_MAX_BRP]); 42f81ef4a9SWill Deacon 43f81ef4a9SWill Deacon /* Watchpoint currently in use for each WRP. */ 44f81ef4a9SWill Deacon static DEFINE_PER_CPU(struct perf_event *, wp_on_reg[ARM_MAX_WRP]); 45f81ef4a9SWill Deacon 46f81ef4a9SWill Deacon /* Number of BRP/WRP registers on this CPU. */ 47f81ef4a9SWill Deacon static int core_num_brps; 480017ff42SWill Deacon static int core_num_reserved_brps; 49f81ef4a9SWill Deacon static int core_num_wrps; 50f81ef4a9SWill Deacon 51f81ef4a9SWill Deacon /* Debug architecture version. */ 52f81ef4a9SWill Deacon static u8 debug_arch; 53f81ef4a9SWill Deacon 54f81ef4a9SWill Deacon /* Maximum supported watchpoint length. */ 55f81ef4a9SWill Deacon static u8 max_watchpoint_len; 56f81ef4a9SWill Deacon 57f81ef4a9SWill Deacon #define READ_WB_REG_CASE(OP2, M, VAL) \ 58f81ef4a9SWill Deacon case ((OP2 << 4) + M): \ 59f81ef4a9SWill Deacon ARM_DBG_READ(c ## M, OP2, VAL); \ 60f81ef4a9SWill Deacon break 61f81ef4a9SWill Deacon 62f81ef4a9SWill Deacon #define WRITE_WB_REG_CASE(OP2, M, VAL) \ 63f81ef4a9SWill Deacon case ((OP2 << 4) + M): \ 64f81ef4a9SWill Deacon ARM_DBG_WRITE(c ## M, OP2, VAL);\ 65f81ef4a9SWill Deacon break 66f81ef4a9SWill Deacon 67f81ef4a9SWill Deacon #define GEN_READ_WB_REG_CASES(OP2, VAL) \ 68f81ef4a9SWill Deacon READ_WB_REG_CASE(OP2, 0, VAL); \ 69f81ef4a9SWill Deacon READ_WB_REG_CASE(OP2, 1, VAL); \ 70f81ef4a9SWill Deacon READ_WB_REG_CASE(OP2, 2, VAL); \ 71f81ef4a9SWill Deacon READ_WB_REG_CASE(OP2, 3, VAL); \ 72f81ef4a9SWill Deacon READ_WB_REG_CASE(OP2, 4, VAL); \ 73f81ef4a9SWill Deacon READ_WB_REG_CASE(OP2, 5, VAL); \ 74f81ef4a9SWill Deacon READ_WB_REG_CASE(OP2, 6, VAL); \ 75f81ef4a9SWill Deacon READ_WB_REG_CASE(OP2, 7, VAL); \ 76f81ef4a9SWill Deacon READ_WB_REG_CASE(OP2, 8, VAL); \ 77f81ef4a9SWill Deacon READ_WB_REG_CASE(OP2, 9, VAL); \ 78f81ef4a9SWill Deacon READ_WB_REG_CASE(OP2, 10, VAL); \ 79f81ef4a9SWill Deacon READ_WB_REG_CASE(OP2, 11, VAL); \ 80f81ef4a9SWill Deacon READ_WB_REG_CASE(OP2, 12, VAL); \ 81f81ef4a9SWill Deacon READ_WB_REG_CASE(OP2, 13, VAL); \ 82f81ef4a9SWill Deacon READ_WB_REG_CASE(OP2, 14, VAL); \ 83f81ef4a9SWill Deacon READ_WB_REG_CASE(OP2, 15, VAL) 84f81ef4a9SWill Deacon 85f81ef4a9SWill Deacon #define GEN_WRITE_WB_REG_CASES(OP2, VAL) \ 86f81ef4a9SWill Deacon WRITE_WB_REG_CASE(OP2, 0, VAL); \ 87f81ef4a9SWill Deacon WRITE_WB_REG_CASE(OP2, 1, VAL); \ 88f81ef4a9SWill Deacon WRITE_WB_REG_CASE(OP2, 2, VAL); \ 89f81ef4a9SWill Deacon WRITE_WB_REG_CASE(OP2, 3, VAL); \ 90f81ef4a9SWill Deacon WRITE_WB_REG_CASE(OP2, 4, VAL); \ 91f81ef4a9SWill Deacon WRITE_WB_REG_CASE(OP2, 5, VAL); \ 92f81ef4a9SWill Deacon WRITE_WB_REG_CASE(OP2, 6, VAL); \ 93f81ef4a9SWill Deacon WRITE_WB_REG_CASE(OP2, 7, VAL); \ 94f81ef4a9SWill Deacon WRITE_WB_REG_CASE(OP2, 8, VAL); \ 95f81ef4a9SWill Deacon WRITE_WB_REG_CASE(OP2, 9, VAL); \ 96f81ef4a9SWill Deacon WRITE_WB_REG_CASE(OP2, 10, VAL); \ 97f81ef4a9SWill Deacon WRITE_WB_REG_CASE(OP2, 11, VAL); \ 98f81ef4a9SWill Deacon WRITE_WB_REG_CASE(OP2, 12, VAL); \ 99f81ef4a9SWill Deacon WRITE_WB_REG_CASE(OP2, 13, VAL); \ 100f81ef4a9SWill Deacon WRITE_WB_REG_CASE(OP2, 14, VAL); \ 101f81ef4a9SWill Deacon WRITE_WB_REG_CASE(OP2, 15, VAL) 102f81ef4a9SWill Deacon 103f81ef4a9SWill Deacon static u32 read_wb_reg(int n) 104f81ef4a9SWill Deacon { 105f81ef4a9SWill Deacon u32 val = 0; 106f81ef4a9SWill Deacon 107f81ef4a9SWill Deacon switch (n) { 108f81ef4a9SWill Deacon GEN_READ_WB_REG_CASES(ARM_OP2_BVR, val); 109f81ef4a9SWill Deacon GEN_READ_WB_REG_CASES(ARM_OP2_BCR, val); 110f81ef4a9SWill Deacon GEN_READ_WB_REG_CASES(ARM_OP2_WVR, val); 111f81ef4a9SWill Deacon GEN_READ_WB_REG_CASES(ARM_OP2_WCR, val); 112f81ef4a9SWill Deacon default: 113f81ef4a9SWill Deacon pr_warning("attempt to read from unknown breakpoint " 114f81ef4a9SWill Deacon "register %d\n", n); 115f81ef4a9SWill Deacon } 116f81ef4a9SWill Deacon 117f81ef4a9SWill Deacon return val; 118f81ef4a9SWill Deacon } 119f81ef4a9SWill Deacon 120f81ef4a9SWill Deacon static void write_wb_reg(int n, u32 val) 121f81ef4a9SWill Deacon { 122f81ef4a9SWill Deacon switch (n) { 123f81ef4a9SWill Deacon GEN_WRITE_WB_REG_CASES(ARM_OP2_BVR, val); 124f81ef4a9SWill Deacon GEN_WRITE_WB_REG_CASES(ARM_OP2_BCR, val); 125f81ef4a9SWill Deacon GEN_WRITE_WB_REG_CASES(ARM_OP2_WVR, val); 126f81ef4a9SWill Deacon GEN_WRITE_WB_REG_CASES(ARM_OP2_WCR, val); 127f81ef4a9SWill Deacon default: 128f81ef4a9SWill Deacon pr_warning("attempt to write to unknown breakpoint " 129f81ef4a9SWill Deacon "register %d\n", n); 130f81ef4a9SWill Deacon } 131f81ef4a9SWill Deacon isb(); 132f81ef4a9SWill Deacon } 133f81ef4a9SWill Deacon 1340017ff42SWill Deacon /* Determine debug architecture. */ 1350017ff42SWill Deacon static u8 get_debug_arch(void) 1360017ff42SWill Deacon { 1370017ff42SWill Deacon u32 didr; 1380017ff42SWill Deacon 1390017ff42SWill Deacon /* Do we implement the extended CPUID interface? */ 1400017ff42SWill Deacon if (((read_cpuid_id() >> 16) & 0xf) != 0xf) { 1410017ff42SWill Deacon pr_warning("CPUID feature registers not supported. " 1420017ff42SWill Deacon "Assuming v6 debug is present.\n"); 1430017ff42SWill Deacon return ARM_DEBUG_ARCH_V6; 1440017ff42SWill Deacon } 1450017ff42SWill Deacon 1460017ff42SWill Deacon ARM_DBG_READ(c0, 0, didr); 1470017ff42SWill Deacon return (didr >> 16) & 0xf; 1480017ff42SWill Deacon } 1490017ff42SWill Deacon 1500017ff42SWill Deacon u8 arch_get_debug_arch(void) 1510017ff42SWill Deacon { 1520017ff42SWill Deacon return debug_arch; 1530017ff42SWill Deacon } 1540017ff42SWill Deacon 1550017ff42SWill Deacon /* Determine number of BRP register available. */ 1560017ff42SWill Deacon static int get_num_brp_resources(void) 1570017ff42SWill Deacon { 1580017ff42SWill Deacon u32 didr; 1590017ff42SWill Deacon ARM_DBG_READ(c0, 0, didr); 1600017ff42SWill Deacon return ((didr >> 24) & 0xf) + 1; 1610017ff42SWill Deacon } 1620017ff42SWill Deacon 1630017ff42SWill Deacon /* Does this core support mismatch breakpoints? */ 1640017ff42SWill Deacon static int core_has_mismatch_brps(void) 1650017ff42SWill Deacon { 1660017ff42SWill Deacon return (get_debug_arch() >= ARM_DEBUG_ARCH_V7_ECP14 && 1670017ff42SWill Deacon get_num_brp_resources() > 1); 1680017ff42SWill Deacon } 1690017ff42SWill Deacon 1700017ff42SWill Deacon /* Determine number of usable WRPs available. */ 1710017ff42SWill Deacon static int get_num_wrps(void) 1720017ff42SWill Deacon { 1730017ff42SWill Deacon /* 1740017ff42SWill Deacon * FIXME: When a watchpoint fires, the only way to work out which 1750017ff42SWill Deacon * watchpoint it was is by disassembling the faulting instruction 1760017ff42SWill Deacon * and working out the address of the memory access. 1770017ff42SWill Deacon * 1780017ff42SWill Deacon * Furthermore, we can only do this if the watchpoint was precise 1790017ff42SWill Deacon * since imprecise watchpoints prevent us from calculating register 1800017ff42SWill Deacon * based addresses. 1810017ff42SWill Deacon * 1820017ff42SWill Deacon * Providing we have more than 1 breakpoint register, we only report 1830017ff42SWill Deacon * a single watchpoint register for the time being. This way, we always 1840017ff42SWill Deacon * know which watchpoint fired. In the future we can either add a 1850017ff42SWill Deacon * disassembler and address generation emulator, or we can insert a 1860017ff42SWill Deacon * check to see if the DFAR is set on watchpoint exception entry 1870017ff42SWill Deacon * [the ARM ARM states that the DFAR is UNKNOWN, but experience shows 1880017ff42SWill Deacon * that it is set on some implementations]. 1890017ff42SWill Deacon */ 1900017ff42SWill Deacon 1910017ff42SWill Deacon #if 0 1920017ff42SWill Deacon int wrps; 1930017ff42SWill Deacon u32 didr; 1940017ff42SWill Deacon ARM_DBG_READ(c0, 0, didr); 1950017ff42SWill Deacon wrps = ((didr >> 28) & 0xf) + 1; 1960017ff42SWill Deacon #endif 1970017ff42SWill Deacon int wrps = 1; 1980017ff42SWill Deacon 1990017ff42SWill Deacon if (core_has_mismatch_brps() && wrps >= get_num_brp_resources()) 2000017ff42SWill Deacon wrps = get_num_brp_resources() - 1; 2010017ff42SWill Deacon 2020017ff42SWill Deacon return wrps; 2030017ff42SWill Deacon } 2040017ff42SWill Deacon 2050017ff42SWill Deacon /* We reserve one breakpoint for each watchpoint. */ 2060017ff42SWill Deacon static int get_num_reserved_brps(void) 2070017ff42SWill Deacon { 2080017ff42SWill Deacon if (core_has_mismatch_brps()) 2090017ff42SWill Deacon return get_num_wrps(); 2100017ff42SWill Deacon return 0; 2110017ff42SWill Deacon } 2120017ff42SWill Deacon 2130017ff42SWill Deacon /* Determine number of usable BRPs available. */ 2140017ff42SWill Deacon static int get_num_brps(void) 2150017ff42SWill Deacon { 2160017ff42SWill Deacon int brps = get_num_brp_resources(); 2170017ff42SWill Deacon if (core_has_mismatch_brps()) 2180017ff42SWill Deacon brps -= get_num_reserved_brps(); 2190017ff42SWill Deacon return brps; 2200017ff42SWill Deacon } 2210017ff42SWill Deacon 2220017ff42SWill Deacon int hw_breakpoint_slots(int type) 2230017ff42SWill Deacon { 2240017ff42SWill Deacon /* 2250017ff42SWill Deacon * We can be called early, so don't rely on 2260017ff42SWill Deacon * our static variables being initialised. 2270017ff42SWill Deacon */ 2280017ff42SWill Deacon switch (type) { 2290017ff42SWill Deacon case TYPE_INST: 2300017ff42SWill Deacon return get_num_brps(); 2310017ff42SWill Deacon case TYPE_DATA: 2320017ff42SWill Deacon return get_num_wrps(); 2330017ff42SWill Deacon default: 2340017ff42SWill Deacon pr_warning("unknown slot type: %d\n", type); 2350017ff42SWill Deacon return 0; 2360017ff42SWill Deacon } 2370017ff42SWill Deacon } 2380017ff42SWill Deacon 239f81ef4a9SWill Deacon /* 240f81ef4a9SWill Deacon * In order to access the breakpoint/watchpoint control registers, 241f81ef4a9SWill Deacon * we must be running in debug monitor mode. Unfortunately, we can 242f81ef4a9SWill Deacon * be put into halting debug mode at any time by an external debugger 243f81ef4a9SWill Deacon * but there is nothing we can do to prevent that. 244f81ef4a9SWill Deacon */ 245f81ef4a9SWill Deacon static int enable_monitor_mode(void) 246f81ef4a9SWill Deacon { 247f81ef4a9SWill Deacon u32 dscr; 248f81ef4a9SWill Deacon int ret = 0; 249f81ef4a9SWill Deacon 250f81ef4a9SWill Deacon ARM_DBG_READ(c1, 0, dscr); 251f81ef4a9SWill Deacon 252f81ef4a9SWill Deacon /* Ensure that halting mode is disabled. */ 253f81ef4a9SWill Deacon if (WARN_ONCE(dscr & ARM_DSCR_HDBGEN, "halting debug mode enabled." 254f81ef4a9SWill Deacon "Unable to access hardware resources.")) { 255f81ef4a9SWill Deacon ret = -EPERM; 256f81ef4a9SWill Deacon goto out; 257f81ef4a9SWill Deacon } 258f81ef4a9SWill Deacon 259f81ef4a9SWill Deacon /* Write to the corresponding DSCR. */ 260f81ef4a9SWill Deacon switch (debug_arch) { 261f81ef4a9SWill Deacon case ARM_DEBUG_ARCH_V6: 262f81ef4a9SWill Deacon case ARM_DEBUG_ARCH_V6_1: 263f81ef4a9SWill Deacon ARM_DBG_WRITE(c1, 0, (dscr | ARM_DSCR_MDBGEN)); 264f81ef4a9SWill Deacon break; 265f81ef4a9SWill Deacon case ARM_DEBUG_ARCH_V7_ECP14: 266f81ef4a9SWill Deacon ARM_DBG_WRITE(c2, 2, (dscr | ARM_DSCR_MDBGEN)); 267f81ef4a9SWill Deacon break; 268f81ef4a9SWill Deacon default: 269f81ef4a9SWill Deacon ret = -ENODEV; 270f81ef4a9SWill Deacon goto out; 271f81ef4a9SWill Deacon } 272f81ef4a9SWill Deacon 273f81ef4a9SWill Deacon /* Check that the write made it through. */ 274f81ef4a9SWill Deacon ARM_DBG_READ(c1, 0, dscr); 275f81ef4a9SWill Deacon if (WARN_ONCE(!(dscr & ARM_DSCR_MDBGEN), 276f81ef4a9SWill Deacon "failed to enable monitor mode.")) { 277f81ef4a9SWill Deacon ret = -EPERM; 278f81ef4a9SWill Deacon } 279f81ef4a9SWill Deacon 280f81ef4a9SWill Deacon out: 281f81ef4a9SWill Deacon return ret; 282f81ef4a9SWill Deacon } 283f81ef4a9SWill Deacon 284f81ef4a9SWill Deacon /* 285f81ef4a9SWill Deacon * Check if 8-bit byte-address select is available. 286f81ef4a9SWill Deacon * This clobbers WRP 0. 287f81ef4a9SWill Deacon */ 288f81ef4a9SWill Deacon static u8 get_max_wp_len(void) 289f81ef4a9SWill Deacon { 290f81ef4a9SWill Deacon u32 ctrl_reg; 291f81ef4a9SWill Deacon struct arch_hw_breakpoint_ctrl ctrl; 292f81ef4a9SWill Deacon u8 size = 4; 293f81ef4a9SWill Deacon 294f81ef4a9SWill Deacon if (debug_arch < ARM_DEBUG_ARCH_V7_ECP14) 295f81ef4a9SWill Deacon goto out; 296f81ef4a9SWill Deacon 297f81ef4a9SWill Deacon if (enable_monitor_mode()) 298f81ef4a9SWill Deacon goto out; 299f81ef4a9SWill Deacon 300f81ef4a9SWill Deacon memset(&ctrl, 0, sizeof(ctrl)); 301f81ef4a9SWill Deacon ctrl.len = ARM_BREAKPOINT_LEN_8; 302f81ef4a9SWill Deacon ctrl_reg = encode_ctrl_reg(ctrl); 303f81ef4a9SWill Deacon 304f81ef4a9SWill Deacon write_wb_reg(ARM_BASE_WVR, 0); 305f81ef4a9SWill Deacon write_wb_reg(ARM_BASE_WCR, ctrl_reg); 306f81ef4a9SWill Deacon if ((read_wb_reg(ARM_BASE_WCR) & ctrl_reg) == ctrl_reg) 307f81ef4a9SWill Deacon size = 8; 308f81ef4a9SWill Deacon 309f81ef4a9SWill Deacon out: 310f81ef4a9SWill Deacon return size; 311f81ef4a9SWill Deacon } 312f81ef4a9SWill Deacon 313f81ef4a9SWill Deacon u8 arch_get_max_wp_len(void) 314f81ef4a9SWill Deacon { 315f81ef4a9SWill Deacon return max_watchpoint_len; 316f81ef4a9SWill Deacon } 317f81ef4a9SWill Deacon 318f81ef4a9SWill Deacon /* 319f81ef4a9SWill Deacon * Install a perf counter breakpoint. 320f81ef4a9SWill Deacon */ 321f81ef4a9SWill Deacon int arch_install_hw_breakpoint(struct perf_event *bp) 322f81ef4a9SWill Deacon { 323f81ef4a9SWill Deacon struct arch_hw_breakpoint *info = counter_arch_bp(bp); 324f81ef4a9SWill Deacon struct perf_event **slot, **slots; 325f81ef4a9SWill Deacon int i, max_slots, ctrl_base, val_base, ret = 0; 32693a04a34SWill Deacon u32 addr, ctrl; 327f81ef4a9SWill Deacon 328f81ef4a9SWill Deacon /* Ensure that we are in monitor mode and halting mode is disabled. */ 329f81ef4a9SWill Deacon ret = enable_monitor_mode(); 330f81ef4a9SWill Deacon if (ret) 331f81ef4a9SWill Deacon goto out; 332f81ef4a9SWill Deacon 33393a04a34SWill Deacon addr = info->address; 33493a04a34SWill Deacon ctrl = encode_ctrl_reg(info->ctrl) | 0x1; 33593a04a34SWill Deacon 336f81ef4a9SWill Deacon if (info->ctrl.type == ARM_BREAKPOINT_EXECUTE) { 337f81ef4a9SWill Deacon /* Breakpoint */ 338f81ef4a9SWill Deacon ctrl_base = ARM_BASE_BCR; 339f81ef4a9SWill Deacon val_base = ARM_BASE_BVR; 340f81ef4a9SWill Deacon slots = __get_cpu_var(bp_on_reg); 3410017ff42SWill Deacon max_slots = core_num_brps; 342*9ebb3cbcSWill Deacon if (info->step_ctrl.enabled) { 343*9ebb3cbcSWill Deacon /* Override the breakpoint data with the step data. */ 344*9ebb3cbcSWill Deacon addr = info->trigger & ~0x3; 345*9ebb3cbcSWill Deacon ctrl = encode_ctrl_reg(info->step_ctrl); 346*9ebb3cbcSWill Deacon } 347f81ef4a9SWill Deacon } else { 348f81ef4a9SWill Deacon /* Watchpoint */ 34993a04a34SWill Deacon if (info->step_ctrl.enabled) { 35093a04a34SWill Deacon /* Install into the reserved breakpoint region. */ 35193a04a34SWill Deacon ctrl_base = ARM_BASE_BCR + core_num_brps; 35293a04a34SWill Deacon val_base = ARM_BASE_BVR + core_num_brps; 35393a04a34SWill Deacon /* Override the watchpoint data with the step data. */ 35493a04a34SWill Deacon addr = info->trigger & ~0x3; 35593a04a34SWill Deacon ctrl = encode_ctrl_reg(info->step_ctrl); 35693a04a34SWill Deacon } else { 357f81ef4a9SWill Deacon ctrl_base = ARM_BASE_WCR; 358f81ef4a9SWill Deacon val_base = ARM_BASE_WVR; 35993a04a34SWill Deacon } 360f81ef4a9SWill Deacon slots = __get_cpu_var(wp_on_reg); 361f81ef4a9SWill Deacon max_slots = core_num_wrps; 362f81ef4a9SWill Deacon } 363f81ef4a9SWill Deacon 364f81ef4a9SWill Deacon for (i = 0; i < max_slots; ++i) { 365f81ef4a9SWill Deacon slot = &slots[i]; 366f81ef4a9SWill Deacon 367f81ef4a9SWill Deacon if (!*slot) { 368f81ef4a9SWill Deacon *slot = bp; 369f81ef4a9SWill Deacon break; 370f81ef4a9SWill Deacon } 371f81ef4a9SWill Deacon } 372f81ef4a9SWill Deacon 373f81ef4a9SWill Deacon if (WARN_ONCE(i == max_slots, "Can't find any breakpoint slot")) { 374f81ef4a9SWill Deacon ret = -EBUSY; 375f81ef4a9SWill Deacon goto out; 376f81ef4a9SWill Deacon } 377f81ef4a9SWill Deacon 378f81ef4a9SWill Deacon /* Setup the address register. */ 37993a04a34SWill Deacon write_wb_reg(val_base + i, addr); 380f81ef4a9SWill Deacon 381f81ef4a9SWill Deacon /* Setup the control register. */ 38293a04a34SWill Deacon write_wb_reg(ctrl_base + i, ctrl); 383f81ef4a9SWill Deacon 384f81ef4a9SWill Deacon out: 385f81ef4a9SWill Deacon return ret; 386f81ef4a9SWill Deacon } 387f81ef4a9SWill Deacon 388f81ef4a9SWill Deacon void arch_uninstall_hw_breakpoint(struct perf_event *bp) 389f81ef4a9SWill Deacon { 390f81ef4a9SWill Deacon struct arch_hw_breakpoint *info = counter_arch_bp(bp); 391f81ef4a9SWill Deacon struct perf_event **slot, **slots; 392f81ef4a9SWill Deacon int i, max_slots, base; 393f81ef4a9SWill Deacon 394f81ef4a9SWill Deacon if (info->ctrl.type == ARM_BREAKPOINT_EXECUTE) { 395f81ef4a9SWill Deacon /* Breakpoint */ 396f81ef4a9SWill Deacon base = ARM_BASE_BCR; 397f81ef4a9SWill Deacon slots = __get_cpu_var(bp_on_reg); 3980017ff42SWill Deacon max_slots = core_num_brps; 399f81ef4a9SWill Deacon } else { 400f81ef4a9SWill Deacon /* Watchpoint */ 40193a04a34SWill Deacon if (info->step_ctrl.enabled) 40293a04a34SWill Deacon base = ARM_BASE_BCR + core_num_brps; 40393a04a34SWill Deacon else 404f81ef4a9SWill Deacon base = ARM_BASE_WCR; 405f81ef4a9SWill Deacon slots = __get_cpu_var(wp_on_reg); 406f81ef4a9SWill Deacon max_slots = core_num_wrps; 407f81ef4a9SWill Deacon } 408f81ef4a9SWill Deacon 409f81ef4a9SWill Deacon /* Remove the breakpoint. */ 410f81ef4a9SWill Deacon for (i = 0; i < max_slots; ++i) { 411f81ef4a9SWill Deacon slot = &slots[i]; 412f81ef4a9SWill Deacon 413f81ef4a9SWill Deacon if (*slot == bp) { 414f81ef4a9SWill Deacon *slot = NULL; 415f81ef4a9SWill Deacon break; 416f81ef4a9SWill Deacon } 417f81ef4a9SWill Deacon } 418f81ef4a9SWill Deacon 419f81ef4a9SWill Deacon if (WARN_ONCE(i == max_slots, "Can't find any breakpoint slot")) 420f81ef4a9SWill Deacon return; 421f81ef4a9SWill Deacon 422f81ef4a9SWill Deacon /* Reset the control register. */ 423f81ef4a9SWill Deacon write_wb_reg(base + i, 0); 424f81ef4a9SWill Deacon } 425f81ef4a9SWill Deacon 426f81ef4a9SWill Deacon static int get_hbp_len(u8 hbp_len) 427f81ef4a9SWill Deacon { 428f81ef4a9SWill Deacon unsigned int len_in_bytes = 0; 429f81ef4a9SWill Deacon 430f81ef4a9SWill Deacon switch (hbp_len) { 431f81ef4a9SWill Deacon case ARM_BREAKPOINT_LEN_1: 432f81ef4a9SWill Deacon len_in_bytes = 1; 433f81ef4a9SWill Deacon break; 434f81ef4a9SWill Deacon case ARM_BREAKPOINT_LEN_2: 435f81ef4a9SWill Deacon len_in_bytes = 2; 436f81ef4a9SWill Deacon break; 437f81ef4a9SWill Deacon case ARM_BREAKPOINT_LEN_4: 438f81ef4a9SWill Deacon len_in_bytes = 4; 439f81ef4a9SWill Deacon break; 440f81ef4a9SWill Deacon case ARM_BREAKPOINT_LEN_8: 441f81ef4a9SWill Deacon len_in_bytes = 8; 442f81ef4a9SWill Deacon break; 443f81ef4a9SWill Deacon } 444f81ef4a9SWill Deacon 445f81ef4a9SWill Deacon return len_in_bytes; 446f81ef4a9SWill Deacon } 447f81ef4a9SWill Deacon 448f81ef4a9SWill Deacon /* 449f81ef4a9SWill Deacon * Check whether bp virtual address is in kernel space. 450f81ef4a9SWill Deacon */ 451f81ef4a9SWill Deacon int arch_check_bp_in_kernelspace(struct perf_event *bp) 452f81ef4a9SWill Deacon { 453f81ef4a9SWill Deacon unsigned int len; 454f81ef4a9SWill Deacon unsigned long va; 455f81ef4a9SWill Deacon struct arch_hw_breakpoint *info = counter_arch_bp(bp); 456f81ef4a9SWill Deacon 457f81ef4a9SWill Deacon va = info->address; 458f81ef4a9SWill Deacon len = get_hbp_len(info->ctrl.len); 459f81ef4a9SWill Deacon 460f81ef4a9SWill Deacon return (va >= TASK_SIZE) && ((va + len - 1) >= TASK_SIZE); 461f81ef4a9SWill Deacon } 462f81ef4a9SWill Deacon 463f81ef4a9SWill Deacon /* 464f81ef4a9SWill Deacon * Extract generic type and length encodings from an arch_hw_breakpoint_ctrl. 465f81ef4a9SWill Deacon * Hopefully this will disappear when ptrace can bypass the conversion 466f81ef4a9SWill Deacon * to generic breakpoint descriptions. 467f81ef4a9SWill Deacon */ 468f81ef4a9SWill Deacon int arch_bp_generic_fields(struct arch_hw_breakpoint_ctrl ctrl, 469f81ef4a9SWill Deacon int *gen_len, int *gen_type) 470f81ef4a9SWill Deacon { 471f81ef4a9SWill Deacon /* Type */ 472f81ef4a9SWill Deacon switch (ctrl.type) { 473f81ef4a9SWill Deacon case ARM_BREAKPOINT_EXECUTE: 474f81ef4a9SWill Deacon *gen_type = HW_BREAKPOINT_X; 475f81ef4a9SWill Deacon break; 476f81ef4a9SWill Deacon case ARM_BREAKPOINT_LOAD: 477f81ef4a9SWill Deacon *gen_type = HW_BREAKPOINT_R; 478f81ef4a9SWill Deacon break; 479f81ef4a9SWill Deacon case ARM_BREAKPOINT_STORE: 480f81ef4a9SWill Deacon *gen_type = HW_BREAKPOINT_W; 481f81ef4a9SWill Deacon break; 482f81ef4a9SWill Deacon case ARM_BREAKPOINT_LOAD | ARM_BREAKPOINT_STORE: 483f81ef4a9SWill Deacon *gen_type = HW_BREAKPOINT_RW; 484f81ef4a9SWill Deacon break; 485f81ef4a9SWill Deacon default: 486f81ef4a9SWill Deacon return -EINVAL; 487f81ef4a9SWill Deacon } 488f81ef4a9SWill Deacon 489f81ef4a9SWill Deacon /* Len */ 490f81ef4a9SWill Deacon switch (ctrl.len) { 491f81ef4a9SWill Deacon case ARM_BREAKPOINT_LEN_1: 492f81ef4a9SWill Deacon *gen_len = HW_BREAKPOINT_LEN_1; 493f81ef4a9SWill Deacon break; 494f81ef4a9SWill Deacon case ARM_BREAKPOINT_LEN_2: 495f81ef4a9SWill Deacon *gen_len = HW_BREAKPOINT_LEN_2; 496f81ef4a9SWill Deacon break; 497f81ef4a9SWill Deacon case ARM_BREAKPOINT_LEN_4: 498f81ef4a9SWill Deacon *gen_len = HW_BREAKPOINT_LEN_4; 499f81ef4a9SWill Deacon break; 500f81ef4a9SWill Deacon case ARM_BREAKPOINT_LEN_8: 501f81ef4a9SWill Deacon *gen_len = HW_BREAKPOINT_LEN_8; 502f81ef4a9SWill Deacon break; 503f81ef4a9SWill Deacon default: 504f81ef4a9SWill Deacon return -EINVAL; 505f81ef4a9SWill Deacon } 506f81ef4a9SWill Deacon 507f81ef4a9SWill Deacon return 0; 508f81ef4a9SWill Deacon } 509f81ef4a9SWill Deacon 510f81ef4a9SWill Deacon /* 511f81ef4a9SWill Deacon * Construct an arch_hw_breakpoint from a perf_event. 512f81ef4a9SWill Deacon */ 513f81ef4a9SWill Deacon static int arch_build_bp_info(struct perf_event *bp) 514f81ef4a9SWill Deacon { 515f81ef4a9SWill Deacon struct arch_hw_breakpoint *info = counter_arch_bp(bp); 516f81ef4a9SWill Deacon 517f81ef4a9SWill Deacon /* Type */ 518f81ef4a9SWill Deacon switch (bp->attr.bp_type) { 519f81ef4a9SWill Deacon case HW_BREAKPOINT_X: 520f81ef4a9SWill Deacon info->ctrl.type = ARM_BREAKPOINT_EXECUTE; 521f81ef4a9SWill Deacon break; 522f81ef4a9SWill Deacon case HW_BREAKPOINT_R: 523f81ef4a9SWill Deacon info->ctrl.type = ARM_BREAKPOINT_LOAD; 524f81ef4a9SWill Deacon break; 525f81ef4a9SWill Deacon case HW_BREAKPOINT_W: 526f81ef4a9SWill Deacon info->ctrl.type = ARM_BREAKPOINT_STORE; 527f81ef4a9SWill Deacon break; 528f81ef4a9SWill Deacon case HW_BREAKPOINT_RW: 529f81ef4a9SWill Deacon info->ctrl.type = ARM_BREAKPOINT_LOAD | ARM_BREAKPOINT_STORE; 530f81ef4a9SWill Deacon break; 531f81ef4a9SWill Deacon default: 532f81ef4a9SWill Deacon return -EINVAL; 533f81ef4a9SWill Deacon } 534f81ef4a9SWill Deacon 535f81ef4a9SWill Deacon /* Len */ 536f81ef4a9SWill Deacon switch (bp->attr.bp_len) { 537f81ef4a9SWill Deacon case HW_BREAKPOINT_LEN_1: 538f81ef4a9SWill Deacon info->ctrl.len = ARM_BREAKPOINT_LEN_1; 539f81ef4a9SWill Deacon break; 540f81ef4a9SWill Deacon case HW_BREAKPOINT_LEN_2: 541f81ef4a9SWill Deacon info->ctrl.len = ARM_BREAKPOINT_LEN_2; 542f81ef4a9SWill Deacon break; 543f81ef4a9SWill Deacon case HW_BREAKPOINT_LEN_4: 544f81ef4a9SWill Deacon info->ctrl.len = ARM_BREAKPOINT_LEN_4; 545f81ef4a9SWill Deacon break; 546f81ef4a9SWill Deacon case HW_BREAKPOINT_LEN_8: 547f81ef4a9SWill Deacon info->ctrl.len = ARM_BREAKPOINT_LEN_8; 548f81ef4a9SWill Deacon if ((info->ctrl.type != ARM_BREAKPOINT_EXECUTE) 549f81ef4a9SWill Deacon && max_watchpoint_len >= 8) 550f81ef4a9SWill Deacon break; 551f81ef4a9SWill Deacon default: 552f81ef4a9SWill Deacon return -EINVAL; 553f81ef4a9SWill Deacon } 554f81ef4a9SWill Deacon 5556ee33c27SWill Deacon /* 5566ee33c27SWill Deacon * Breakpoints must be of length 2 (thumb) or 4 (ARM) bytes. 5576ee33c27SWill Deacon * Watchpoints can be of length 1, 2, 4 or 8 bytes if supported 5586ee33c27SWill Deacon * by the hardware and must be aligned to the appropriate number of 5596ee33c27SWill Deacon * bytes. 5606ee33c27SWill Deacon */ 5616ee33c27SWill Deacon if (info->ctrl.type == ARM_BREAKPOINT_EXECUTE && 5626ee33c27SWill Deacon info->ctrl.len != ARM_BREAKPOINT_LEN_2 && 5636ee33c27SWill Deacon info->ctrl.len != ARM_BREAKPOINT_LEN_4) 5646ee33c27SWill Deacon return -EINVAL; 5656ee33c27SWill Deacon 566f81ef4a9SWill Deacon /* Address */ 567f81ef4a9SWill Deacon info->address = bp->attr.bp_addr; 568f81ef4a9SWill Deacon 569f81ef4a9SWill Deacon /* Privilege */ 570f81ef4a9SWill Deacon info->ctrl.privilege = ARM_BREAKPOINT_USER; 57193a04a34SWill Deacon if (arch_check_bp_in_kernelspace(bp)) 572f81ef4a9SWill Deacon info->ctrl.privilege |= ARM_BREAKPOINT_PRIV; 573f81ef4a9SWill Deacon 574f81ef4a9SWill Deacon /* Enabled? */ 575f81ef4a9SWill Deacon info->ctrl.enabled = !bp->attr.disabled; 576f81ef4a9SWill Deacon 577f81ef4a9SWill Deacon /* Mismatch */ 578f81ef4a9SWill Deacon info->ctrl.mismatch = 0; 579f81ef4a9SWill Deacon 580f81ef4a9SWill Deacon return 0; 581f81ef4a9SWill Deacon } 582f81ef4a9SWill Deacon 583f81ef4a9SWill Deacon /* 584f81ef4a9SWill Deacon * Validate the arch-specific HW Breakpoint register settings. 585f81ef4a9SWill Deacon */ 586f81ef4a9SWill Deacon int arch_validate_hwbkpt_settings(struct perf_event *bp) 587f81ef4a9SWill Deacon { 588f81ef4a9SWill Deacon struct arch_hw_breakpoint *info = counter_arch_bp(bp); 589f81ef4a9SWill Deacon int ret = 0; 5906ee33c27SWill Deacon u32 offset, alignment_mask = 0x3; 591f81ef4a9SWill Deacon 592f81ef4a9SWill Deacon /* Build the arch_hw_breakpoint. */ 593f81ef4a9SWill Deacon ret = arch_build_bp_info(bp); 594f81ef4a9SWill Deacon if (ret) 595f81ef4a9SWill Deacon goto out; 596f81ef4a9SWill Deacon 597f81ef4a9SWill Deacon /* Check address alignment. */ 598f81ef4a9SWill Deacon if (info->ctrl.len == ARM_BREAKPOINT_LEN_8) 599f81ef4a9SWill Deacon alignment_mask = 0x7; 6006ee33c27SWill Deacon offset = info->address & alignment_mask; 6016ee33c27SWill Deacon switch (offset) { 6026ee33c27SWill Deacon case 0: 6036ee33c27SWill Deacon /* Aligned */ 6046ee33c27SWill Deacon break; 6056ee33c27SWill Deacon case 1: 6066ee33c27SWill Deacon /* Allow single byte watchpoint. */ 6076ee33c27SWill Deacon if (info->ctrl.len == ARM_BREAKPOINT_LEN_1) 6086ee33c27SWill Deacon break; 6096ee33c27SWill Deacon case 2: 6106ee33c27SWill Deacon /* Allow halfword watchpoints and breakpoints. */ 6116ee33c27SWill Deacon if (info->ctrl.len == ARM_BREAKPOINT_LEN_2) 6126ee33c27SWill Deacon break; 6136ee33c27SWill Deacon default: 6146ee33c27SWill Deacon ret = -EINVAL; 615f81ef4a9SWill Deacon goto out; 616f81ef4a9SWill Deacon } 617f81ef4a9SWill Deacon 6186ee33c27SWill Deacon info->address &= ~alignment_mask; 619f81ef4a9SWill Deacon info->ctrl.len <<= offset; 620f81ef4a9SWill Deacon 621f81ef4a9SWill Deacon /* 622f81ef4a9SWill Deacon * Currently we rely on an overflow handler to take 623f81ef4a9SWill Deacon * care of single-stepping the breakpoint when it fires. 624f81ef4a9SWill Deacon * In the case of userspace breakpoints on a core with V7 debug, 625f81ef4a9SWill Deacon * we can use the mismatch feature as a poor-man's hardware single-step. 626f81ef4a9SWill Deacon */ 627f81ef4a9SWill Deacon if (WARN_ONCE(!bp->overflow_handler && 6280017ff42SWill Deacon (arch_check_bp_in_kernelspace(bp) || !core_has_mismatch_brps()), 629f81ef4a9SWill Deacon "overflow handler required but none found")) { 630f81ef4a9SWill Deacon ret = -EINVAL; 631f81ef4a9SWill Deacon } 632f81ef4a9SWill Deacon out: 633f81ef4a9SWill Deacon return ret; 634f81ef4a9SWill Deacon } 635f81ef4a9SWill Deacon 636*9ebb3cbcSWill Deacon /* 637*9ebb3cbcSWill Deacon * Enable/disable single-stepping over the breakpoint bp at address addr. 638*9ebb3cbcSWill Deacon */ 639*9ebb3cbcSWill Deacon static void enable_single_step(struct perf_event *bp, u32 addr) 640f81ef4a9SWill Deacon { 641*9ebb3cbcSWill Deacon struct arch_hw_breakpoint *info = counter_arch_bp(bp); 642f81ef4a9SWill Deacon 643*9ebb3cbcSWill Deacon arch_uninstall_hw_breakpoint(bp); 644*9ebb3cbcSWill Deacon info->step_ctrl.mismatch = 1; 645*9ebb3cbcSWill Deacon info->step_ctrl.len = ARM_BREAKPOINT_LEN_4; 646*9ebb3cbcSWill Deacon info->step_ctrl.type = ARM_BREAKPOINT_EXECUTE; 647*9ebb3cbcSWill Deacon info->step_ctrl.privilege = info->ctrl.privilege; 648*9ebb3cbcSWill Deacon info->step_ctrl.enabled = 1; 649*9ebb3cbcSWill Deacon info->trigger = addr; 650*9ebb3cbcSWill Deacon arch_install_hw_breakpoint(bp); 651f81ef4a9SWill Deacon } 652*9ebb3cbcSWill Deacon 653*9ebb3cbcSWill Deacon static void disable_single_step(struct perf_event *bp) 654*9ebb3cbcSWill Deacon { 655*9ebb3cbcSWill Deacon arch_uninstall_hw_breakpoint(bp); 656*9ebb3cbcSWill Deacon counter_arch_bp(bp)->step_ctrl.enabled = 0; 657*9ebb3cbcSWill Deacon arch_install_hw_breakpoint(bp); 658f81ef4a9SWill Deacon } 659f81ef4a9SWill Deacon 660f81ef4a9SWill Deacon static void watchpoint_handler(unsigned long unknown, struct pt_regs *regs) 661f81ef4a9SWill Deacon { 662f81ef4a9SWill Deacon int i; 66393a04a34SWill Deacon struct perf_event *wp, **slots = __get_cpu_var(wp_on_reg); 664f81ef4a9SWill Deacon struct arch_hw_breakpoint *info; 665f81ef4a9SWill Deacon 666f81ef4a9SWill Deacon /* Without a disassembler, we can only handle 1 watchpoint. */ 667f81ef4a9SWill Deacon BUG_ON(core_num_wrps > 1); 668f81ef4a9SWill Deacon 669f81ef4a9SWill Deacon for (i = 0; i < core_num_wrps; ++i) { 670f81ef4a9SWill Deacon rcu_read_lock(); 671f81ef4a9SWill Deacon 67293a04a34SWill Deacon wp = slots[i]; 67393a04a34SWill Deacon 67493a04a34SWill Deacon if (wp == NULL) { 675f81ef4a9SWill Deacon rcu_read_unlock(); 676f81ef4a9SWill Deacon continue; 677f81ef4a9SWill Deacon } 678f81ef4a9SWill Deacon 679f81ef4a9SWill Deacon /* 680f81ef4a9SWill Deacon * The DFAR is an unknown value. Since we only allow a 681f81ef4a9SWill Deacon * single watchpoint, we can set the trigger to the lowest 682f81ef4a9SWill Deacon * possible faulting address. 683f81ef4a9SWill Deacon */ 68493a04a34SWill Deacon info = counter_arch_bp(wp); 68593a04a34SWill Deacon info->trigger = wp->attr.bp_addr; 686f81ef4a9SWill Deacon pr_debug("watchpoint fired: address = 0x%x\n", info->trigger); 68793a04a34SWill Deacon perf_bp_event(wp, regs); 688f81ef4a9SWill Deacon 689f81ef4a9SWill Deacon /* 690f81ef4a9SWill Deacon * If no overflow handler is present, insert a temporary 691f81ef4a9SWill Deacon * mismatch breakpoint so we can single-step over the 692f81ef4a9SWill Deacon * watchpoint trigger. 693f81ef4a9SWill Deacon */ 694*9ebb3cbcSWill Deacon if (!wp->overflow_handler) 695*9ebb3cbcSWill Deacon enable_single_step(wp, instruction_pointer(regs)); 696f81ef4a9SWill Deacon 697f81ef4a9SWill Deacon rcu_read_unlock(); 698f81ef4a9SWill Deacon } 699f81ef4a9SWill Deacon } 700f81ef4a9SWill Deacon 70193a04a34SWill Deacon static void watchpoint_single_step_handler(unsigned long pc) 70293a04a34SWill Deacon { 70393a04a34SWill Deacon int i; 70493a04a34SWill Deacon struct perf_event *wp, **slots = __get_cpu_var(wp_on_reg); 70593a04a34SWill Deacon struct arch_hw_breakpoint *info; 70693a04a34SWill Deacon 70793a04a34SWill Deacon for (i = 0; i < core_num_reserved_brps; ++i) { 70893a04a34SWill Deacon rcu_read_lock(); 70993a04a34SWill Deacon 71093a04a34SWill Deacon wp = slots[i]; 71193a04a34SWill Deacon 71293a04a34SWill Deacon if (wp == NULL) 71393a04a34SWill Deacon goto unlock; 71493a04a34SWill Deacon 71593a04a34SWill Deacon info = counter_arch_bp(wp); 71693a04a34SWill Deacon if (!info->step_ctrl.enabled) 71793a04a34SWill Deacon goto unlock; 71893a04a34SWill Deacon 71993a04a34SWill Deacon /* 72093a04a34SWill Deacon * Restore the original watchpoint if we've completed the 72193a04a34SWill Deacon * single-step. 72293a04a34SWill Deacon */ 723*9ebb3cbcSWill Deacon if (info->trigger != pc) 724*9ebb3cbcSWill Deacon disable_single_step(wp); 72593a04a34SWill Deacon 72693a04a34SWill Deacon unlock: 72793a04a34SWill Deacon rcu_read_unlock(); 72893a04a34SWill Deacon } 72993a04a34SWill Deacon } 73093a04a34SWill Deacon 731f81ef4a9SWill Deacon static void breakpoint_handler(unsigned long unknown, struct pt_regs *regs) 732f81ef4a9SWill Deacon { 733f81ef4a9SWill Deacon int i; 734f81ef4a9SWill Deacon u32 ctrl_reg, val, addr; 735f81ef4a9SWill Deacon struct perf_event *bp, **slots = __get_cpu_var(bp_on_reg); 736f81ef4a9SWill Deacon struct arch_hw_breakpoint *info; 737f81ef4a9SWill Deacon struct arch_hw_breakpoint_ctrl ctrl; 738f81ef4a9SWill Deacon 739f81ef4a9SWill Deacon /* The exception entry code places the amended lr in the PC. */ 740f81ef4a9SWill Deacon addr = regs->ARM_pc; 741f81ef4a9SWill Deacon 74293a04a34SWill Deacon /* Check the currently installed breakpoints first. */ 74393a04a34SWill Deacon for (i = 0; i < core_num_brps; ++i) { 744f81ef4a9SWill Deacon rcu_read_lock(); 745f81ef4a9SWill Deacon 746f81ef4a9SWill Deacon bp = slots[i]; 747f81ef4a9SWill Deacon 748*9ebb3cbcSWill Deacon if (bp == NULL) 749*9ebb3cbcSWill Deacon goto unlock; 750f81ef4a9SWill Deacon 751*9ebb3cbcSWill Deacon info = counter_arch_bp(bp); 752f81ef4a9SWill Deacon 753f81ef4a9SWill Deacon /* Check if the breakpoint value matches. */ 754f81ef4a9SWill Deacon val = read_wb_reg(ARM_BASE_BVR + i); 755f81ef4a9SWill Deacon if (val != (addr & ~0x3)) 756*9ebb3cbcSWill Deacon goto mismatch; 757f81ef4a9SWill Deacon 758f81ef4a9SWill Deacon /* Possible match, check the byte address select to confirm. */ 759f81ef4a9SWill Deacon ctrl_reg = read_wb_reg(ARM_BASE_BCR + i); 760f81ef4a9SWill Deacon decode_ctrl_reg(ctrl_reg, &ctrl); 761f81ef4a9SWill Deacon if ((1 << (addr & 0x3)) & ctrl.len) { 762f81ef4a9SWill Deacon info->trigger = addr; 763f81ef4a9SWill Deacon pr_debug("breakpoint fired: address = 0x%x\n", addr); 764f81ef4a9SWill Deacon perf_bp_event(bp, regs); 765*9ebb3cbcSWill Deacon if (!bp->overflow_handler) 766*9ebb3cbcSWill Deacon enable_single_step(bp, addr); 767*9ebb3cbcSWill Deacon goto unlock; 768f81ef4a9SWill Deacon } 769f81ef4a9SWill Deacon 770*9ebb3cbcSWill Deacon mismatch: 771*9ebb3cbcSWill Deacon /* If we're stepping a breakpoint, it can now be restored. */ 772*9ebb3cbcSWill Deacon if (info->step_ctrl.enabled) 773*9ebb3cbcSWill Deacon disable_single_step(bp); 774*9ebb3cbcSWill Deacon unlock: 775f81ef4a9SWill Deacon rcu_read_unlock(); 776f81ef4a9SWill Deacon } 77793a04a34SWill Deacon 77893a04a34SWill Deacon /* Handle any pending watchpoint single-step breakpoints. */ 77993a04a34SWill Deacon watchpoint_single_step_handler(addr); 780f81ef4a9SWill Deacon } 781f81ef4a9SWill Deacon 782f81ef4a9SWill Deacon /* 783f81ef4a9SWill Deacon * Called from either the Data Abort Handler [watchpoint] or the 7847e202696SWill Deacon * Prefetch Abort Handler [breakpoint] with preemption disabled. 785f81ef4a9SWill Deacon */ 786f81ef4a9SWill Deacon static int hw_breakpoint_pending(unsigned long addr, unsigned int fsr, 787f81ef4a9SWill Deacon struct pt_regs *regs) 788f81ef4a9SWill Deacon { 7897e202696SWill Deacon int ret = 0; 790f81ef4a9SWill Deacon u32 dscr; 791f81ef4a9SWill Deacon 7927e202696SWill Deacon /* We must be called with preemption disabled. */ 7937e202696SWill Deacon WARN_ON(preemptible()); 7947e202696SWill Deacon 795f81ef4a9SWill Deacon /* We only handle watchpoints and hardware breakpoints. */ 796f81ef4a9SWill Deacon ARM_DBG_READ(c1, 0, dscr); 797f81ef4a9SWill Deacon 798f81ef4a9SWill Deacon /* Perform perf callbacks. */ 799f81ef4a9SWill Deacon switch (ARM_DSCR_MOE(dscr)) { 800f81ef4a9SWill Deacon case ARM_ENTRY_BREAKPOINT: 801f81ef4a9SWill Deacon breakpoint_handler(addr, regs); 802f81ef4a9SWill Deacon break; 803f81ef4a9SWill Deacon case ARM_ENTRY_ASYNC_WATCHPOINT: 804235584b6SJoe Perches WARN(1, "Asynchronous watchpoint exception taken. Debugging results may be unreliable\n"); 805f81ef4a9SWill Deacon case ARM_ENTRY_SYNC_WATCHPOINT: 806f81ef4a9SWill Deacon watchpoint_handler(addr, regs); 807f81ef4a9SWill Deacon break; 808f81ef4a9SWill Deacon default: 8097e202696SWill Deacon ret = 1; /* Unhandled fault. */ 810f81ef4a9SWill Deacon } 811f81ef4a9SWill Deacon 8127e202696SWill Deacon /* 8137e202696SWill Deacon * Re-enable preemption after it was disabled in the 8147e202696SWill Deacon * low-level exception handling code. 8157e202696SWill Deacon */ 8167e202696SWill Deacon preempt_enable(); 8177e202696SWill Deacon 818f81ef4a9SWill Deacon return ret; 819f81ef4a9SWill Deacon } 820f81ef4a9SWill Deacon 821f81ef4a9SWill Deacon /* 822f81ef4a9SWill Deacon * One-time initialisation. 823f81ef4a9SWill Deacon */ 8247d99331eSWill Deacon static void reset_ctrl_regs(void *unused) 825f81ef4a9SWill Deacon { 826f81ef4a9SWill Deacon int i; 827f81ef4a9SWill Deacon 828ac88e071SWill Deacon /* 829ac88e071SWill Deacon * v7 debug contains save and restore registers so that debug state 830ac88e071SWill Deacon * can be maintained across low-power modes without leaving 831ac88e071SWill Deacon * the debug logic powered up. It is IMPLEMENTATION DEFINED whether 832ac88e071SWill Deacon * we can write to the debug registers out of reset, so we must 833ac88e071SWill Deacon * unlock the OS Lock Access Register to avoid taking undefined 834ac88e071SWill Deacon * instruction exceptions later on. 835ac88e071SWill Deacon */ 836ac88e071SWill Deacon if (debug_arch >= ARM_DEBUG_ARCH_V7_ECP14) { 837ac88e071SWill Deacon /* 838ac88e071SWill Deacon * Unconditionally clear the lock by writing a value 839ac88e071SWill Deacon * other than 0xC5ACCE55 to the access register. 840ac88e071SWill Deacon */ 841ac88e071SWill Deacon asm volatile("mcr p14, 0, %0, c1, c0, 4" : : "r" (0)); 842ac88e071SWill Deacon isb(); 843ac88e071SWill Deacon } 844ac88e071SWill Deacon 845f81ef4a9SWill Deacon if (enable_monitor_mode()) 846f81ef4a9SWill Deacon return; 847f81ef4a9SWill Deacon 8480017ff42SWill Deacon /* We must also reset any reserved registers. */ 8490017ff42SWill Deacon for (i = 0; i < core_num_brps + core_num_reserved_brps; ++i) { 850f81ef4a9SWill Deacon write_wb_reg(ARM_BASE_BCR + i, 0UL); 851f81ef4a9SWill Deacon write_wb_reg(ARM_BASE_BVR + i, 0UL); 852f81ef4a9SWill Deacon } 853f81ef4a9SWill Deacon 854f81ef4a9SWill Deacon for (i = 0; i < core_num_wrps; ++i) { 855f81ef4a9SWill Deacon write_wb_reg(ARM_BASE_WCR + i, 0UL); 856f81ef4a9SWill Deacon write_wb_reg(ARM_BASE_WVR + i, 0UL); 857f81ef4a9SWill Deacon } 858f81ef4a9SWill Deacon } 859f81ef4a9SWill Deacon 8607d99331eSWill Deacon static int __cpuinit dbg_reset_notify(struct notifier_block *self, 8617d99331eSWill Deacon unsigned long action, void *cpu) 8627d99331eSWill Deacon { 8637d99331eSWill Deacon if (action == CPU_ONLINE) 8647d99331eSWill Deacon smp_call_function_single((int)cpu, reset_ctrl_regs, NULL, 1); 8657d99331eSWill Deacon return NOTIFY_OK; 8667d99331eSWill Deacon } 8677d99331eSWill Deacon 8687d99331eSWill Deacon static struct notifier_block __cpuinitdata dbg_reset_nb = { 8697d99331eSWill Deacon .notifier_call = dbg_reset_notify, 8707d99331eSWill Deacon }; 8717d99331eSWill Deacon 872f81ef4a9SWill Deacon static int __init arch_hw_breakpoint_init(void) 873f81ef4a9SWill Deacon { 874f81ef4a9SWill Deacon int ret = 0; 875f81ef4a9SWill Deacon u32 dscr; 876f81ef4a9SWill Deacon 877f81ef4a9SWill Deacon debug_arch = get_debug_arch(); 878f81ef4a9SWill Deacon 879f81ef4a9SWill Deacon if (debug_arch > ARM_DEBUG_ARCH_V7_ECP14) { 880f81ef4a9SWill Deacon pr_info("debug architecture 0x%x unsupported.\n", debug_arch); 881f81ef4a9SWill Deacon ret = -ENODEV; 882f81ef4a9SWill Deacon goto out; 883f81ef4a9SWill Deacon } 884f81ef4a9SWill Deacon 885f81ef4a9SWill Deacon /* Determine how many BRPs/WRPs are available. */ 886f81ef4a9SWill Deacon core_num_brps = get_num_brps(); 8870017ff42SWill Deacon core_num_reserved_brps = get_num_reserved_brps(); 888f81ef4a9SWill Deacon core_num_wrps = get_num_wrps(); 889f81ef4a9SWill Deacon 890f81ef4a9SWill Deacon pr_info("found %d breakpoint and %d watchpoint registers.\n", 8910017ff42SWill Deacon core_num_brps + core_num_reserved_brps, core_num_wrps); 892f81ef4a9SWill Deacon 8930017ff42SWill Deacon if (core_num_reserved_brps) 8940017ff42SWill Deacon pr_info("%d breakpoint(s) reserved for watchpoint " 8950017ff42SWill Deacon "single-step.\n", core_num_reserved_brps); 896f81ef4a9SWill Deacon 897f81ef4a9SWill Deacon ARM_DBG_READ(c1, 0, dscr); 898f81ef4a9SWill Deacon if (dscr & ARM_DSCR_HDBGEN) { 899f81ef4a9SWill Deacon pr_warning("halting debug mode enabled. Assuming maximum " 900f81ef4a9SWill Deacon "watchpoint size of 4 bytes."); 901f81ef4a9SWill Deacon } else { 902f81ef4a9SWill Deacon /* 903f81ef4a9SWill Deacon * Reset the breakpoint resources. We assume that a halting 904f81ef4a9SWill Deacon * debugger will leave the world in a nice state for us. 905f81ef4a9SWill Deacon */ 906f81ef4a9SWill Deacon smp_call_function(reset_ctrl_regs, NULL, 1); 907f81ef4a9SWill Deacon reset_ctrl_regs(NULL); 908ac88e071SWill Deacon 909ac88e071SWill Deacon /* Work out the maximum supported watchpoint length. */ 910ac88e071SWill Deacon max_watchpoint_len = get_max_wp_len(); 911ac88e071SWill Deacon pr_info("maximum watchpoint size is %u bytes.\n", 912ac88e071SWill Deacon max_watchpoint_len); 913f81ef4a9SWill Deacon } 914f81ef4a9SWill Deacon 915f81ef4a9SWill Deacon /* Register debug fault handler. */ 916f81ef4a9SWill Deacon hook_fault_code(2, hw_breakpoint_pending, SIGTRAP, TRAP_HWBKPT, 917f81ef4a9SWill Deacon "watchpoint debug exception"); 918f81ef4a9SWill Deacon hook_ifault_code(2, hw_breakpoint_pending, SIGTRAP, TRAP_HWBKPT, 919f81ef4a9SWill Deacon "breakpoint debug exception"); 920f81ef4a9SWill Deacon 9217d99331eSWill Deacon /* Register hotplug notifier. */ 9227d99331eSWill Deacon register_cpu_notifier(&dbg_reset_nb); 923f81ef4a9SWill Deacon out: 924f81ef4a9SWill Deacon return ret; 925f81ef4a9SWill Deacon } 926f81ef4a9SWill Deacon arch_initcall(arch_hw_breakpoint_init); 927f81ef4a9SWill Deacon 928f81ef4a9SWill Deacon void hw_breakpoint_pmu_read(struct perf_event *bp) 929f81ef4a9SWill Deacon { 930f81ef4a9SWill Deacon } 931f81ef4a9SWill Deacon 932f81ef4a9SWill Deacon /* 933f81ef4a9SWill Deacon * Dummy function to register with die_notifier. 934f81ef4a9SWill Deacon */ 935f81ef4a9SWill Deacon int hw_breakpoint_exceptions_notify(struct notifier_block *unused, 936f81ef4a9SWill Deacon unsigned long val, void *data) 937f81ef4a9SWill Deacon { 938f81ef4a9SWill Deacon return NOTIFY_DONE; 939f81ef4a9SWill Deacon } 940