/* * ia64-specific cdb routines * cdb xen/ia64 by Isaku Yamahta * VA Linux Systems Japan K.K. * some routines are stolen from kgdb/ia64. */ /* * * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License as published by the * Free Software Foundation; either version 2, or (at your option) any * later version. * * This program is distributed in the hope that it will be useful, but * WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * General Public License for more details. * */ /* * Copyright (C) 2000-2001 VERITAS Software Corporation. */ /* * Contributor: Lake Stevens Instrument Division$ * Written by: Glenn Engel $ * Updated by: Amit Kale * Modified for 386 by Jim Kingdon, Cygnus Support. * Origianl kgdb, compatibility with 2.1.xx kernel by David Grothe * */ #include #include #include #include #include #define USE_UNWIND #ifdef USE_UNWIND #include #endif /* Printk isn't particularly safe just after we've trapped to the debugger. so avoid it. */ #define dbg_printk(...) //#define dbg_printk(...) printk(__VA_ARGS__) u16 gdb_arch_signal_num(struct cpu_user_regs *regs, unsigned long cookie) { /* XXX */ return 1; } void gdb_arch_read_reg_array(struct cpu_user_regs *regs, struct gdb_context *ctx) { gdb_send_reply("", ctx); } void gdb_arch_write_reg_array(struct cpu_user_regs *regs, const char* buf, struct gdb_context *ctx) { /* XXX TODO */ gdb_send_reply("E02", ctx); } /* Like copy_from_user, but safe to call with interrupts disabled. Trust me, and don't look behind the curtain. */ unsigned gdb_arch_copy_from_user(void *dest, const void *src, unsigned len) { int val; __asm__ __volatile__( "cmp4.eq p6, p0 = r0, %1\n" "(p6) br.cond.dptk 2f\n" "[1:]\n" ".xdata4 \"__ex_table\", 99f-., 2f-.;\n" "[99:] ld1 %0 = [%3], 1\n" ";;\n" ".xdata4 \"__ex_table\", 99f-., 2f-.;\n" "[99:] st1 [%2] = %0, 1\n" "adds %1 = -1, %1\n" ";;\n" "cmp4.eq p0, p6 = r0, %1\n" "(p6) br.cond.dptk 1b\n" "[2:]\n" : "=r"(val), "=r"(len), "=r"(dest), "=r"(src) : "1"(len), "2"(dest), "3"(src) : "memory", "p6"); return len; } unsigned int gdb_arch_copy_to_user(void *dest, const void *src, unsigned len) { /* XXX */ return len; } #define NUM_REGS 590 #define REGISTER_BYTES (NUM_REGS*8+128*8) #define REGISTER_BYTE(N) (((N) * 8) \ + ((N) <= IA64_FR0_REGNUM ? \ 0 : 8 * (((N) > IA64_FR127_REGNUM) ? 128 : (N) - IA64_FR0_REGNUM))) #define REGISTER_SIZE(N) \ (((N) >= IA64_FR0_REGNUM && (N) <= IA64_FR127_REGNUM) ? 16 : 8) #define IA64_GR0_REGNUM 0 #define IA64_FR0_REGNUM 128 #define IA64_FR127_REGNUM (IA64_FR0_REGNUM+127) #define IA64_PR0_REGNUM 256 #define IA64_BR0_REGNUM 320 #define IA64_VFP_REGNUM 328 #define IA64_PR_REGNUM 330 #define IA64_IP_REGNUM 331 #define IA64_PSR_REGNUM 332 #define IA64_CFM_REGNUM 333 #define IA64_AR0_REGNUM 334 #define IA64_NAT0_REGNUM 462 #define IA64_NAT31_REGNUM (IA64_NAT0_REGNUM+31) #define IA64_NAT32_REGNUM (IA64_NAT0_REGNUM+32) #define IA64_RSC_REGNUM (IA64_AR0_REGNUM+16) #define IA64_BSP_REGNUM (IA64_AR0_REGNUM+17) #define IA64_BSPSTORE_REGNUM (IA64_AR0_REGNUM+18) #define IA64_RNAT_REGNUM (IA64_AR0_REGNUM+19) #define IA64_FCR_REGNUM (IA64_AR0_REGNUM+21) #define IA64_EFLAG_REGNUM (IA64_AR0_REGNUM+24) #define IA64_CSD_REGNUM (IA64_AR0_REGNUM+25) #define IA64_SSD_REGNUM (IA64_AR0_REGNUM+26) #define IA64_CFLG_REGNUM (IA64_AR0_REGNUM+27) #define IA64_FSR_REGNUM (IA64_AR0_REGNUM+28) #define IA64_FIR_REGNUM (IA64_AR0_REGNUM+29) #define IA64_FDR_REGNUM (IA64_AR0_REGNUM+30) #define IA64_CCV_REGNUM (IA64_AR0_REGNUM+32) #define IA64_UNAT_REGNUM (IA64_AR0_REGNUM+36) #define IA64_FPSR_REGNUM (IA64_AR0_REGNUM+40) #define IA64_ITC_REGNUM (IA64_AR0_REGNUM+44) #define IA64_PFS_REGNUM (IA64_AR0_REGNUM+64) #define IA64_LC_REGNUM (IA64_AR0_REGNUM+65) #define IA64_EC_REGNUM (IA64_AR0_REGNUM+66) #ifndef USE_UNWIND struct regs_to_cpu_user_resgs_index { unsigned int reg; unsigned int ptregoff; }; #define ptoff(V) ((unsigned int)&((struct cpu_user_regs*)0x0)->V) // gr static const struct regs_to_cpu_user_resgs_index gr_reg_to_cpu_user_regs_index[] = { {IA64_GR0_REGNUM + 8, ptoff(r8)}, {IA64_GR0_REGNUM + 9, ptoff(r9)}, {IA64_GR0_REGNUM + 10, ptoff(r10)}, {IA64_GR0_REGNUM + 11, ptoff(r11)}, {IA64_GR0_REGNUM + 1, ptoff(r1)}, {IA64_GR0_REGNUM + 12, ptoff(r12)}, {IA64_GR0_REGNUM + 13, ptoff(r13)}, {IA64_GR0_REGNUM + 15, ptoff(r15)}, {IA64_GR0_REGNUM + 14, ptoff(r14)}, {IA64_GR0_REGNUM + 2, ptoff(r2)}, {IA64_GR0_REGNUM + 3, ptoff(r3)}, {IA64_GR0_REGNUM + 16, ptoff(r16)}, {IA64_GR0_REGNUM + 17, ptoff(r17)}, {IA64_GR0_REGNUM + 18, ptoff(r18)}, {IA64_GR0_REGNUM + 19, ptoff(r19)}, {IA64_GR0_REGNUM + 20, ptoff(r20)}, {IA64_GR0_REGNUM + 21, ptoff(r21)}, {IA64_GR0_REGNUM + 22, ptoff(r22)}, {IA64_GR0_REGNUM + 23, ptoff(r23)}, {IA64_GR0_REGNUM + 24, ptoff(r24)}, {IA64_GR0_REGNUM + 25, ptoff(r25)}, {IA64_GR0_REGNUM + 26, ptoff(r26)}, {IA64_GR0_REGNUM + 27, ptoff(r27)}, {IA64_GR0_REGNUM + 28, ptoff(r28)}, {IA64_GR0_REGNUM + 29, ptoff(r29)}, {IA64_GR0_REGNUM + 30, ptoff(r30)}, {IA64_GR0_REGNUM + 31, ptoff(r31)}, {IA64_GR0_REGNUM + 4, ptoff(r4)}, {IA64_GR0_REGNUM + 5, ptoff(r5)}, {IA64_GR0_REGNUM + 6, ptoff(r6)}, {IA64_GR0_REGNUM + 7, ptoff(r7)}, }; static const int gr_reg_to_cpu_user_regs_index_max = sizeof(gr_reg_to_cpu_user_regs_index) / sizeof(gr_reg_to_cpu_user_regs_index[0]); // br static const struct regs_to_cpu_user_resgs_index br_reg_to_cpu_user_regs_index[] = { {IA64_BR0_REGNUM + 0, ptoff(b0)}, {IA64_BR0_REGNUM + 6, ptoff(b6)}, {IA64_BR0_REGNUM + 7, ptoff(b7)}, }; static const int br_reg_to_cpu_user_regs_index_max = sizeof(br_reg_to_cpu_user_regs_index) / sizeof(br_reg_to_cpu_user_regs_index[0]); // f static const struct regs_to_cpu_user_resgs_index fr_reg_to_cpu_user_regs_index[] = { {IA64_FR0_REGNUM + 6, ptoff(f6)}, {IA64_FR0_REGNUM + 7, ptoff(f7)}, {IA64_FR0_REGNUM + 8, ptoff(f8)}, {IA64_FR0_REGNUM + 9, ptoff(f9)}, {IA64_FR0_REGNUM + 10, ptoff(f10)}, {IA64_FR0_REGNUM + 11, ptoff(f11)}, }; static const int fr_reg_to_cpu_user_regs_index_max = sizeof(fr_reg_to_cpu_user_regs_index) / sizeof(fr_reg_to_cpu_user_regs_index[0]); void gdb_arch_read_reg(unsigned long regnum, struct cpu_user_regs *regs, struct gdb_context *ctx) { unsigned long reg = IA64_IP_REGNUM; char buf[9]; int i; dbg_printk("Register read regnum = 0x%lx\n", regnum); if (IA64_GR0_REGNUM <= regnum && regnum <= IA64_GR0_REGNUM + 31) { for (i = 0; i < gr_reg_to_cpu_user_regs_index_max; i++) { if (gr_reg_to_cpu_user_regs_index[i].reg == regnum) { reg = *(unsigned long*)(((char*)regs) + gr_reg_to_cpu_user_regs_index[i].ptregoff); break; } } if (i == gr_reg_to_cpu_user_regs_index_max) { goto out_err; } } else if (IA64_BR0_REGNUM <= regnum && regnum <= IA64_BR0_REGNUM + 7) { for (i = 0; i < br_reg_to_cpu_user_regs_index_max; i++) { if (br_reg_to_cpu_user_regs_index[i].reg == regnum) { reg = *(unsigned long*)(((char*)regs) + br_reg_to_cpu_user_regs_index[i].ptregoff); break; } } if (i == br_reg_to_cpu_user_regs_index_max) { goto out_err; } } else if (IA64_FR0_REGNUM + 6 <= regnum && regnum <= IA64_FR0_REGNUM + 11) { for (i = 0; i < fr_reg_to_cpu_user_regs_index_max; i++) { if (fr_reg_to_cpu_user_regs_index[i].reg == regnum) { reg = *(unsigned long*)(((char*)regs) + fr_reg_to_cpu_user_regs_index[i].ptregoff); break; } } if (i == fr_reg_to_cpu_user_regs_index_max) { goto out_err; } } else if (regnum == IA64_CSD_REGNUM) { reg = regs->ar_csd; } else if (regnum == IA64_SSD_REGNUM) { reg = regs->ar_ssd; } else if (regnum == IA64_PSR_REGNUM) { reg = regs->cr_ipsr; } else if (regnum == IA64_IP_REGNUM) { reg = regs->cr_iip; } else if (regnum == IA64_CFM_REGNUM) { reg = regs->cr_ifs; } else if (regnum == IA64_UNAT_REGNUM) { reg = regs->ar_unat; } else if (regnum == IA64_PFS_REGNUM) { reg = regs->ar_pfs; } else if (regnum == IA64_RSC_REGNUM) { reg = regs->ar_rsc; } else if (regnum == IA64_RNAT_REGNUM) { reg = regs->ar_rnat; } else if (regnum == IA64_BSPSTORE_REGNUM) { reg = regs->ar_bspstore; } else if (regnum == IA64_PR_REGNUM) { reg = regs->pr; } else if (regnum == IA64_FPSR_REGNUM) { reg = regs->ar_fpsr; } else if (regnum == IA64_CCV_REGNUM) { reg = regs->ar_ccv; } else { // emul_unat, rfi_pfs goto out_err; } dbg_printk("Register read regnum = 0x%lx, val = 0x%lx\n", regnum, reg); snprintf(buf, sizeof(buf), "%.08lx", swab64(reg)); out: return gdb_send_reply(buf, ctx); out_err: dbg_printk("Register read unsupported regnum = 0x%lx\n", regnum); safe_strcpy(buf, "x"); goto out; } #else #define ptoff(V) ((unsigned int) &((struct pt_regs *)0x0)->V) struct reg_to_ptreg_index { unsigned int reg; unsigned int ptregoff; }; static struct reg_to_ptreg_index gr_reg_to_ptreg_index[] = { {IA64_GR0_REGNUM + 1, ptoff(r1)}, {IA64_GR0_REGNUM + 2, ptoff(r2)}, {IA64_GR0_REGNUM + 3, ptoff(r3)}, {IA64_GR0_REGNUM + 8, ptoff(r8)}, {IA64_GR0_REGNUM + 9, ptoff(r9)}, {IA64_GR0_REGNUM + 10, ptoff(r10)}, {IA64_GR0_REGNUM + 11, ptoff(r11)}, {IA64_GR0_REGNUM + 12, ptoff(r12)}, {IA64_GR0_REGNUM + 13, ptoff(r13)}, {IA64_GR0_REGNUM + 14, ptoff(r14)}, {IA64_GR0_REGNUM + 15, ptoff(r15)}, {IA64_GR0_REGNUM + 16, ptoff(r16)}, {IA64_GR0_REGNUM + 17, ptoff(r17)}, {IA64_GR0_REGNUM + 18, ptoff(r18)}, {IA64_GR0_REGNUM + 19, ptoff(r19)}, {IA64_GR0_REGNUM + 20, ptoff(r20)}, {IA64_GR0_REGNUM + 21, ptoff(r21)}, {IA64_GR0_REGNUM + 22, ptoff(r22)}, {IA64_GR0_REGNUM + 23, ptoff(r23)}, {IA64_GR0_REGNUM + 24, ptoff(r24)}, {IA64_GR0_REGNUM + 25, ptoff(r25)}, {IA64_GR0_REGNUM + 26, ptoff(r26)}, {IA64_GR0_REGNUM + 27, ptoff(r27)}, {IA64_GR0_REGNUM + 28, ptoff(r28)}, {IA64_GR0_REGNUM + 29, ptoff(r29)}, {IA64_GR0_REGNUM + 30, ptoff(r30)}, {IA64_GR0_REGNUM + 31, ptoff(r31)}, }; static struct reg_to_ptreg_index br_reg_to_ptreg_index[] = { {IA64_BR0_REGNUM, ptoff(b0)}, {IA64_BR0_REGNUM + 6, ptoff(b6)}, {IA64_BR0_REGNUM + 7, ptoff(b7)}, }; static struct reg_to_ptreg_index ar_reg_to_ptreg_index[] = { {IA64_PFS_REGNUM, ptoff(ar_pfs)}, {IA64_UNAT_REGNUM, ptoff(ar_unat)}, {IA64_RNAT_REGNUM, ptoff(ar_rnat)}, {IA64_BSPSTORE_REGNUM, ptoff(ar_bspstore)}, {IA64_RSC_REGNUM, ptoff(ar_rsc)}, {IA64_CSD_REGNUM, ptoff(ar_csd)}, {IA64_SSD_REGNUM, ptoff(ar_ssd)}, {IA64_FPSR_REGNUM, ptoff(ar_fpsr)}, {IA64_CCV_REGNUM, ptoff(ar_ccv)}, }; #ifndef XEN extern atomic_t cpu_doing_single_step; #endif static int kgdb_gr_reg(int regnum, struct unw_frame_info *info, unsigned long *reg, int rw) { char nat; if ((regnum >= IA64_GR0_REGNUM && regnum <= (IA64_GR0_REGNUM + 1)) || (regnum >= (IA64_GR0_REGNUM + 4) && regnum <= (IA64_GR0_REGNUM + 7))) return !unw_access_gr(info, regnum - IA64_GR0_REGNUM, reg, &nat, rw); else return 0; } static int kgdb_gr_ptreg(int regnum, struct pt_regs * ptregs, struct unw_frame_info *info, unsigned long *reg, int rw) { int i, result = 1; char nat; if (!((regnum >= (IA64_GR0_REGNUM + 2) && regnum <= (IA64_GR0_REGNUM + 3)) || (regnum >= (IA64_GR0_REGNUM + 8) && regnum <= (IA64_GR0_REGNUM + 15)) || (regnum >= (IA64_GR0_REGNUM + 16) && regnum <= (IA64_GR0_REGNUM + 31)))) return 0; else if (rw && ptregs) { for (i = 0; i < ARRAY_SIZE(gr_reg_to_ptreg_index); i++) if (gr_reg_to_ptreg_index[i].reg == regnum) { *((unsigned long *)(((void *)ptregs) + gr_reg_to_ptreg_index[i].ptregoff)) = *reg; break; } } else if (!rw && ptregs) { for (i = 0; i < ARRAY_SIZE(gr_reg_to_ptreg_index); i++) if (gr_reg_to_ptreg_index[i].reg == regnum) { *reg = *((unsigned long *) (((void *)ptregs) + gr_reg_to_ptreg_index[i].ptregoff)); break; } } else result = !unw_access_gr(info, regnum - IA64_GR0_REGNUM, reg, &nat, rw); return result; } static int kgdb_br_reg(int regnum, struct pt_regs * ptregs, struct unw_frame_info *info, unsigned long *reg, int rw) { int i, result = 1; if (!(regnum >= IA64_BR0_REGNUM && regnum <= (IA64_BR0_REGNUM + 7))) return 0; switch (regnum) { case IA64_BR0_REGNUM: case IA64_BR0_REGNUM + 6: case IA64_BR0_REGNUM + 7: if (rw) { for (i = 0; i < ARRAY_SIZE(br_reg_to_ptreg_index); i++) if (br_reg_to_ptreg_index[i].reg == regnum) { *((unsigned long *) (((void *)ptregs) + br_reg_to_ptreg_index[i].ptregoff)) = *reg; break; } } else for (i = 0; i < ARRAY_SIZE(br_reg_to_ptreg_index); i++) if (br_reg_to_ptreg_index[i].reg == regnum) { *reg = *((unsigned long *) (((void *)ptregs) + br_reg_to_ptreg_index[i]. ptregoff)); break; } break; case IA64_BR0_REGNUM + 1: case IA64_BR0_REGNUM + 2: case IA64_BR0_REGNUM + 3: case IA64_BR0_REGNUM + 4: case IA64_BR0_REGNUM + 5: result = !unw_access_br(info, regnum - IA64_BR0_REGNUM, reg, rw); break; } return result; } static int kgdb_fr_reg(int regnum, char *inbuffer, struct pt_regs * ptregs, struct unw_frame_info *info, unsigned long *reg, struct ia64_fpreg *freg, int rw) { int result = 1; if (!(regnum >= IA64_FR0_REGNUM && regnum <= (IA64_FR0_REGNUM + 127))) return 0; switch (regnum) { case IA64_FR0_REGNUM + 6: case IA64_FR0_REGNUM + 7: case IA64_FR0_REGNUM + 8: case IA64_FR0_REGNUM + 9: case IA64_FR0_REGNUM + 10: case IA64_FR0_REGNUM + 11: case IA64_FR0_REGNUM + 12: if (rw) { #ifndef XEN char *ptr = inbuffer; freg->u.bits[0] = *reg; kgdb_hex2long(&ptr, &freg->u.bits[1]); *(&ptregs->f6 + (regnum - (IA64_FR0_REGNUM + 6))) = *freg; #else printk("%s: %d: writing to fpreg is not supported.\n", __func__, __LINE__); #endif break; } else if (!ptregs) result = !unw_access_fr(info, regnum - IA64_FR0_REGNUM, freg, rw); else #ifndef XEN *freg = *(&ptregs->f6 + (regnum - (IA64_FR0_REGNUM + 6))); #else //XXX struct ia64_fpreg and struct pt_fpreg are same. *freg = *((struct ia64_fpreg*)(&ptregs->f6 + (regnum - (IA64_FR0_REGNUM + 6)))); #endif break; default: if (!rw) result = !unw_access_fr(info, regnum - IA64_FR0_REGNUM, freg, rw); else result = 0; break; } return result; } static int kgdb_ar_reg(int regnum, struct pt_regs * ptregs, struct unw_frame_info *info, unsigned long *reg, int rw) { int result = 0, i; if (!(regnum >= IA64_AR0_REGNUM && regnum <= IA64_EC_REGNUM)) return 0; if (rw && ptregs) { for (i = 0; i < ARRAY_SIZE(ar_reg_to_ptreg_index); i++) if (ar_reg_to_ptreg_index[i].reg == regnum) { *((unsigned long *) (((void *)ptregs) + ar_reg_to_ptreg_index[i].ptregoff)) = *reg; result = 1; break; } } else if (ptregs) { for (i = 0; i < ARRAY_SIZE(ar_reg_to_ptreg_index); i++) if (ar_reg_to_ptreg_index[i].reg == regnum) { *reg = *((unsigned long *) (((void *)ptregs) + ar_reg_to_ptreg_index[i].ptregoff)); result = 1; break; } } if (result) return result; result = 1; switch (regnum) { case IA64_CSD_REGNUM: result = !unw_access_ar(info, UNW_AR_CSD, reg, rw); break; case IA64_SSD_REGNUM: result = !unw_access_ar(info, UNW_AR_SSD, reg, rw); break; case IA64_UNAT_REGNUM: result = !unw_access_ar(info, UNW_AR_RNAT, reg, rw); break; case IA64_RNAT_REGNUM: result = !unw_access_ar(info, UNW_AR_RNAT, reg, rw); break; case IA64_BSPSTORE_REGNUM: result = !unw_access_ar(info, UNW_AR_RNAT, reg, rw); break; case IA64_PFS_REGNUM: result = !unw_access_ar(info, UNW_AR_RNAT, reg, rw); break; case IA64_LC_REGNUM: result = !unw_access_ar(info, UNW_AR_LC, reg, rw); break; case IA64_EC_REGNUM: result = !unw_access_ar(info, UNW_AR_EC, reg, rw); break; case IA64_FPSR_REGNUM: result = !unw_access_ar(info, UNW_AR_FPSR, reg, rw); break; case IA64_RSC_REGNUM: result = !unw_access_ar(info, UNW_AR_RSC, reg, rw); break; case IA64_CCV_REGNUM: result = !unw_access_ar(info, UNW_AR_CCV, reg, rw); break; default: result = 0; } return result; } #ifndef XEN void kgdb_get_reg(char *outbuffer, int regnum, struct unw_frame_info *info, struct pt_regs *ptregs) #else static int kgdb_get_reg(int regnum, struct unw_frame_info *info, struct cpu_user_regs* ptregs, unsigned long* __reg, struct ia64_fpreg* __freg) #endif { unsigned long reg, size = 0, *mem = ® struct ia64_fpreg freg; if (kgdb_gr_reg(regnum, info, ®, 0) || kgdb_gr_ptreg(regnum, ptregs, info, ®, 0) || kgdb_br_reg(regnum, ptregs, info, ®, 0) || kgdb_ar_reg(regnum, ptregs, info, ®, 0)) size = sizeof(reg); else if (kgdb_fr_reg(regnum, NULL, ptregs, info, ®, &freg, 0)) { size = sizeof(freg); mem = (unsigned long *)&freg; } else if (regnum == IA64_IP_REGNUM) { if (!ptregs) { unw_get_ip(info, ®); size = sizeof(reg); } else { reg = ptregs->cr_iip; size = sizeof(reg); } } else if (regnum == IA64_CFM_REGNUM) { if (!ptregs) unw_get_cfm(info, ®); else reg = ptregs->cr_ifs; size = sizeof(reg); } else if (regnum == IA64_PSR_REGNUM) { #ifndef XEN if (!ptregs && kgdb_usethread) ptregs = (struct pt_regs *) ((unsigned long)kgdb_usethread + IA64_STK_OFFSET) - 1; #endif if (ptregs) reg = ptregs->cr_ipsr; size = sizeof(reg); } else if (regnum == IA64_PR_REGNUM) { if (ptregs) reg = ptregs->pr; else unw_access_pr(info, ®, 0); size = sizeof(reg); } else if (regnum == IA64_BSP_REGNUM) { unw_get_bsp(info, ®); size = sizeof(reg); } #ifndef XEN if (size) { kgdb_mem2hex((char *) mem, outbuffer, size); outbuffer[size*2] = 0; } else strlcpy(outbuffer, "E0", sizeof("E0")); return; #else if (size) { if (size == sizeof(reg)) { *__reg = reg; } else { BUG_ON(size != sizeof(freg)); *__freg = freg; } return 0; } return -1; #endif } #ifndef XEN static int inline kgdb_get_blocked_state(struct task_struct *p, struct unw_frame_info *unw) #else static int kgdb_get_blocked_state(struct vcpu *p, struct cpu_user_regs *regs, struct unw_frame_info *unw) #endif { unsigned long ip; int count = 0; #ifndef XEN unw_init_from_blocked_task(unw, p); #endif ip = 0UL; do { if (unw_unwind(unw) < 0) return -1; unw_get_ip(unw, &ip); #ifndef XEN if (!in_sched_functions(ip)) break; #else dbg_printk("ip 0x%lx cr_iip 0x%lx\n", ip, regs->cr_iip); if (ip == regs->cr_iip) break; #endif } while (count++ < 16); if (!ip) return -1; else return 0; } struct gdb_callback_arg { struct cpu_user_regs* regs; unsigned long regnum; unsigned long* reg; struct pt_fpreg* freg; int error; // 1: not supported // 0: success // -1: failure }; static void gdb_get_reg_callback(struct unw_frame_info* info, void* __arg) { struct gdb_callback_arg* arg = (struct gdb_callback_arg*)__arg; if (kgdb_get_blocked_state(current, arg->regs, info) < 0) { dbg_printk("%s: kgdb_get_blocked_state failed\n", __func__); arg->error = -1; return; } //XXX struct ia64_fpreg and struct pt_fpreg are same. if (kgdb_get_reg(arg->regnum, info, arg->regs, arg->reg, (struct ia64_fpreg*)arg->freg) < 0) { dbg_printk("%s: kgdb_get_reg failed\n", __func__); arg->error = 1; return; } arg->error = 0; return; } void gdb_arch_read_reg(unsigned long regnum, struct cpu_user_regs *regs, struct gdb_context *ctx) { struct gdb_callback_arg arg; unsigned long reg; struct pt_fpreg freg; char buf[16 * 2 + 1]; if (regnum >= NUM_REGS) { dbg_printk("%s: regnum %ld\n", __func__, regnum); goto out_err; } arg.regs = regs; arg.regnum = regnum; arg.reg = ® arg.freg = &freg; arg.error = 0; unw_init_running(&gdb_get_reg_callback, (void*)&arg); if (arg.error < 0) { dbg_printk("%s: gdb_get_reg_callback failed\n", __func__); goto out_err; } if (arg.error > 0) { // notify gdb that this register is not supported. // see fetch_register_using_p() in gdb/remote.c. safe_strcpy(buf, "x"); } else if (IA64_FR0_REGNUM <= regnum && regnum <= IA64_FR0_REGNUM + 127) { snprintf(buf, sizeof(buf), "%.016lx", swab64(freg.u.bits[0])); snprintf(buf + 16, sizeof(buf) - 16, "%.016lx", swab64(freg.u.bits[1])); } else { snprintf(buf, sizeof(buf), "%.016lx", swab64(reg)); } out: return gdb_send_reply(buf, ctx); out_err: dbg_printk("Register read unsupported regnum = 0x%lx\n", regnum); safe_strcpy(buf, "E0"); goto out; } #endif void gdb_arch_resume(struct cpu_user_regs *regs, unsigned long addr, unsigned long type, struct gdb_context *ctx) { /* XXX */ if (type == GDB_STEP) { gdb_send_reply("S01", ctx); } } void gdb_arch_print_state(struct cpu_user_regs *regs) { /* XXX */ } void gdb_arch_enter(struct cpu_user_regs *regs) { /* nothing */ } void gdb_arch_exit(struct cpu_user_regs *regs) { /* nothing */ } /* * Local variables: * mode: C * c-set-style: "BSD" * c-basic-offset: 4 * tab-width: 4 * End: */ a> 536 537 538 539 540 541 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556 557 558 559 560 561 562 563 564 565 566 567 568 569 570 571 572 573 574 575 576 577 578 579 580 581 582 583 584 585 586 587 588 589 590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252
/*
 * Copyright (C) 2002 Roman Zippel <zippel@linux-m68k.org>
 * Released under the terms of the GNU GPL v2.0.
 */

#include <sys/stat.h>
#include <ctype.h>
#include <errno.h>
#include <fcntl.h>
#include <stdarg.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <time.h>
#include <unistd.h>

#include "lkc.h"

struct conf_printer {
	void (*print_symbol)(FILE *, struct symbol *, const char *, void *);
	void (*print_comment)(FILE *, const char *, void *);
};

static void conf_warning(const char *fmt, ...)
	__attribute__ ((format (printf, 1, 2)));

static void conf_message(const char *fmt, ...)
	__attribute__ ((format (printf, 1, 2)));

static const char *conf_filename;
static int conf_lineno, conf_warnings, conf_unsaved;

const char conf_defname[] = "arch/$ARCH/defconfig";

static void conf_warning(const char *fmt, ...)
{
	va_list ap;
	va_start(ap, fmt);
	fprintf(stderr, "%s:%d:warning: ", conf_filename, conf_lineno);
	vfprintf(stderr, fmt, ap);
	fprintf(stderr, "\n");
	va_end(ap);
	conf_warnings++;
}

static void conf_default_message_callback(const char *fmt, va_list ap)
{
	printf("#\n# ");
	vprintf(fmt, ap);
	printf("\n#\n");
}

static void (*conf_message_callback) (const char *fmt, va_list ap) =
	conf_default_message_callback;
void conf_set_message_callback(void (*fn) (const char *fmt, va_list ap))
{
	conf_message_callback = fn;
}

static void conf_message(const char *fmt, ...)
{
	va_list ap;

	va_start(ap, fmt);
	if (conf_message_callback)
		conf_message_callback(fmt, ap);
	va_end(ap);
}

const char *conf_get_configname(void)
{
	char *name = getenv("KCONFIG_CONFIG");

	return name ? name : ".config";
}

const char *conf_get_autoconfig_name(void)
{
	char *name = getenv("KCONFIG_AUTOCONFIG");

	return name ? name : "include/config/auto.conf";
}

static char *conf_expand_value(const char *in)
{
	struct symbol *sym;
	const char *src;
	static char res_value[SYMBOL_MAXLENGTH];
	char *dst, name[SYMBOL_MAXLENGTH];

	res_value[0] = 0;
	dst = name;
	while ((src = strchr(in, '$'))) {
		strncat(res_value, in, src - in);
		src++;
		dst = name;
		while (isalnum(*src) || *src == '_')
			*dst++ = *src++;
		*dst = 0;
		sym = sym_lookup(name, 0);
		sym_calc_value(sym);
		strcat(res_value, sym_get_string_value(sym));
		in = src;
	}
	strcat(res_value, in);

	return res_value;
}

char *conf_get_default_confname(void)
{
	struct stat buf;
	static char fullname[PATH_MAX+1];
	char *env, *name;

	name = conf_expand_value(conf_defname);
	env = getenv(SRCTREE);
	if (env) {
		sprintf(fullname, "%s/%s", env, name);
		if (!stat(fullname, &buf))
			return fullname;
	}
	return name;
}

static int conf_set_sym_val(struct symbol *sym, int def, int def_flags, char *p)
{
	char *p2;

	switch (sym->type) {
	case S_TRISTATE:
		if (p[0] == 'm') {
			sym->def[def].tri = mod;
			sym->flags |= def_flags;
			break;
		}
		/* fall through */
	case S_BOOLEAN:
		if (p[0] == 'y') {
			sym->def[def].tri = yes;
			sym->flags |= def_flags;
			break;
		}
		if (p[0] == 'n') {
			sym->def[def].tri = no;
			sym->flags |= def_flags;
			break;
		}
		if (def != S_DEF_AUTO)
			conf_warning("symbol value '%s' invalid for %s",
				     p, sym->name);
		return 1;
	case S_OTHER:
		if (*p != '"') {
			for (p2 = p; *p2 && !isspace(*p2); p2++)
				;
			sym->type = S_STRING;
			goto done;
		}
		/* fall through */
	case S_STRING:
		if (*p++ != '"')
			break;
		for (p2 = p; (p2 = strpbrk(p2, "\"\\")); p2++) {
			if (*p2 == '"') {
				*p2 = 0;
				break;
			}
			memmove(p2, p2 + 1, strlen(p2));
		}
		if (!p2) {
			if (def != S_DEF_AUTO)
				conf_warning("invalid string found");
			return 1;
		}
		/* fall through */
	case S_INT:
	case S_HEX:
	done:
		if (sym_string_valid(sym, p)) {
			sym->def[def].val = strdup(p);
			sym->flags |= def_flags;
		} else {
			if (def != S_DEF_AUTO)
				conf_warning("symbol value '%s' invalid for %s",
					     p, sym->name);
			return 1;
		}
		break;
	default:
		;
	}
	return 0;
}

#define LINE_GROWTH 16
static int add_byte(int c, char **lineptr, size_t slen, size_t *n)
{
	char *nline;
	size_t new_size = slen + 1;
	if (new_size > *n) {
		new_size += LINE_GROWTH - 1;
		new_size *= 2;
		nline = realloc(*lineptr, new_size);
		if (!nline)
			return -1;

		*lineptr = nline;
		*n = new_size;
	}

	(*lineptr)[slen] = c;

	return 0;
}

static ssize_t compat_getline(char **lineptr, size_t *n, FILE *stream)
{
	char *line = *lineptr;
	size_t slen = 0;

	for (;;) {
		int c = getc(stream);

		switch (c) {
		case '\n':
			if (add_byte(c, &line, slen, n) < 0)
				goto e_out;
			slen++;
			/* fall through */
		case EOF:
			if (add_byte('\0', &line, slen, n) < 0)
				goto e_out;
			*lineptr = line;
			if (slen == 0)
				return -1;
			return slen;
		default:
			if (add_byte(c, &line, slen, n) < 0)
				goto e_out;
			slen++;
		}
	}

e_out:
	line[slen-1] = '\0';
	*lineptr = line;
	return -1;
}

void conf_reset(int def)
{
	struct symbol *sym;
	int i, def_flags;

	def_flags = SYMBOL_DEF << def;
	for_all_symbols(i, sym) {
		sym->flags |= SYMBOL_CHANGED;
		sym->flags &= ~(def_flags|SYMBOL_VALID);
		if (sym_is_choice(sym))
			sym->flags |= def_flags;
		switch (sym->type) {
		case S_INT:
		case S_HEX:
		case S_STRING:
			if (sym->def[def].val)
				free(sym->def[def].val);
			/* fall through */
		default:
			sym->def[def].val = NULL;
			sym->def[def].tri = no;
		}
	}
}

int conf_read_simple(const char *name, int def)
{
	FILE *in = NULL;
	char   *line = NULL;
	size_t  line_asize = 0;
	char *p, *p2;
	struct symbol *sym;
	int def_flags;

	if (name) {
		in = zconf_fopen(name);
	} else {
		struct property *prop;

		name = conf_get_configname();
		in = zconf_fopen(name);
		if (in)
			goto load;
		sym_add_change_count(1);
		if (!sym_defconfig_list)
			return 1;

		for_all_defaults(sym_defconfig_list, prop) {
			if (expr_calc_value(prop->visible.expr) == no ||
			    prop->expr->type != E_SYMBOL)
				continue;
			name = conf_expand_value(prop->expr->left.sym->name);
			in = zconf_fopen(name);
			if (in) {
				conf_message(_("using defaults found in %s"),
					 name);
				goto load;
			}
		}
	}
	if (!in)
		return 1;

load:
	conf_filename = name;
	conf_lineno = 0;
	conf_warnings = 0;
	conf_unsaved = 0;

	def_flags = SYMBOL_DEF << def;
	conf_reset(def);

	while (compat_getline(&line, &line_asize, in) != -1) {
		conf_lineno++;
		sym = NULL;
		if (line[0] == '#') {
			if (memcmp(line + 2, CONFIG_, strlen(CONFIG_)))
				continue;
			p = strchr(line + 2 + strlen(CONFIG_), ' ');
			if (!p)
				continue;
			*p++ = 0;
			if (strncmp(p, "is not set", 10))
				continue;
			if (def == S_DEF_USER) {
				sym = sym_find(line + 2 + strlen(CONFIG_));
				if (!sym) {
					sym_add_change_count(1);
					goto setsym;
				}
			} else {
				sym = sym_lookup(line + 2 + strlen(CONFIG_), 0);
				if (sym->type == S_UNKNOWN)
					sym->type = S_BOOLEAN;
			}
			switch (sym->type) {
			case S_BOOLEAN:
			case S_TRISTATE:
				sym->def[def].tri = no;
				sym->flags |= def_flags;
				break;
			default:
				;
			}
		} else if (memcmp(line, CONFIG_, strlen(CONFIG_)) == 0) {
			p = strchr(line + strlen(CONFIG_), '=');
			if (!p)
				continue;
			*p++ = 0;
			p2 = strchr(p, '\n');
			if (p2) {
				*p2-- = 0;
				if (*p2 == '\r')
					*p2 = 0;
			}
			if (def == S_DEF_USER) {
				sym = sym_find(line + strlen(CONFIG_));
				if (!sym) {
					sym_add_change_count(1);
					goto setsym;
				}
			} else {
				sym = sym_lookup(line + strlen(CONFIG_), 0);
				if (sym->type == S_UNKNOWN)
					sym->type = S_OTHER;
			}
			if (conf_set_sym_val(sym, def, def_flags, p))
				continue;
		} else {
			if (line[0] != '\r' && line[0] != '\n')
				conf_warning("unexpected data: %.*s",
					     (int)strcspn(line, "\r\n"), line);

			continue;
		}
setsym:
		if (sym && sym_is_choice_value(sym)) {
			struct symbol *cs = prop_get_symbol(sym_get_choice_prop(sym));
			switch (sym->def[def].tri) {
			case no:
				break;
			case mod:
				if (cs->def[def].tri == yes) {
					conf_warning("%s creates inconsistent choice state", sym->name);
					cs->flags &= ~def_flags;
				}
				break;
			case yes:
				if (cs->def[def].tri != no)
					conf_warning("override: %s changes choice state", sym->name);
				cs->def[def].val = sym;
				break;
			}
			cs->def[def].tri = EXPR_OR(cs->def[def].tri, sym->def[def].tri);
		}
	}
	free(line);
	fclose(in);
	return 0;
}

int conf_read(const char *name)
{
	struct symbol *sym;
	int i;

	sym_set_change_count(0);

	if (conf_read_simple(name, S_DEF_USER)) {
		sym_calc_value(modules_sym);
		return 1;
	}

	sym_calc_value(modules_sym);

	for_all_symbols(i, sym) {
		sym_calc_value(sym);
		if (sym_is_choice(sym) || (sym->flags & SYMBOL_AUTO))
			continue;
		if (sym_has_value(sym) && (sym->flags & SYMBOL_WRITE)) {
			/* check that calculated value agrees with saved value */
			switch (sym->type) {
			case S_BOOLEAN:
			case S_TRISTATE:
				if (sym->def[S_DEF_USER].tri != sym_get_tristate_value(sym))
					break;
				if (!sym_is_choice(sym))
					continue;
				/* fall through */
			default:
				if (!strcmp(sym->curr.val, sym->def[S_DEF_USER].val))
					continue;
				break;
			}
		} else if (!sym_has_value(sym) && !(sym->flags & SYMBOL_WRITE))
			/* no previous value and not saved */
			continue;
		conf_unsaved++;
		/* maybe print value in verbose mode... */
	}

	for_all_symbols(i, sym) {
		if (sym_has_value(sym) && !sym_is_choice_value(sym)) {
			/* Reset values of generates values, so they'll appear
			 * as new, if they should become visible, but that
			 * doesn't quite work if the Kconfig and the saved
			 * configuration disagree.
			 */
			if (sym->visible == no && !conf_unsaved)
				sym->flags &= ~SYMBOL_DEF_USER;
			switch (sym->type) {
			case S_STRING:
			case S_INT:
			case S_HEX:
				/* Reset a string value if it's out of range */
				if (sym_string_within_range(sym, sym->def[S_DEF_USER].val))
					break;
				sym->flags &= ~(SYMBOL_VALID|SYMBOL_DEF_USER);
				conf_unsaved++;
				break;
			default:
				break;
			}
		}
	}

	sym_add_change_count(conf_warnings || conf_unsaved);

	return 0;
}

/*
 * Kconfig configuration printer
 *
 * This printer is used when generating the resulting configuration after
 * kconfig invocation and `defconfig' files. Unset symbol might be omitted by
 * passing a non-NULL argument to the printer.
 *
 */
static void
kconfig_print_symbol(FILE *fp, struct symbol *sym, const char *value, void *arg)
{

	switch (sym->type) {
	case S_BOOLEAN:
	case S_TRISTATE:
		if (*value == 'n') {
			bool skip_unset = (arg != NULL);

			if (!skip_unset)
				fprintf(fp, "# %s%s is not set\n",
				    CONFIG_, sym->name);
			return;
		}
		break;
	default:
		break;
	}

	fprintf(fp, "%s%s=%s\n", CONFIG_, sym->name, value);
}

static void
kconfig_print_comment(FILE *fp, const char *value, void *arg)
{
	const char *p = value;
	size_t l;

	for (;;) {
		l = strcspn(p, "\n");
		fprintf(fp, "#");
		if (l) {
			fprintf(fp, " ");
			xfwrite(p, l, 1, fp);
			p += l;
		}
		fprintf(fp, "\n");
		if (*p++ == '\0')
			break;
	}
}

static struct conf_printer kconfig_printer_cb =
{
	.print_symbol = kconfig_print_symbol,
	.print_comment = kconfig_print_comment,
};

/*
 * Header printer
 *
 * This printer is used when generating the `include/generated/autoconf.h' file.
 */
static void
header_print_symbol(FILE *fp, struct symbol *sym, const char *value, void *arg)
{

	switch (sym->type) {
	case S_BOOLEAN:
	case S_TRISTATE: {
		const char *suffix = "";

		switch (*value) {
		case 'n':
			break;
		case 'm':
			suffix = "_MODULE";
			/* fall through */
		default:
			fprintf(fp, "#define %s%s%s 1\n",
			    CONFIG_, sym->name, suffix);
		}
		break;
	}
	case S_HEX: {
		const char *prefix = "";

		if (value[0] != '0' || (value[1] != 'x' && value[1] != 'X'))
			prefix = "0x";
		fprintf(fp, "#define %s%s %s%s\n",
		    CONFIG_, sym->name, prefix, value);
		break;
	}
	case S_STRING:
	case S_INT:
		fprintf(fp, "#define %s%s %s\n",
		    CONFIG_, sym->name, value);
		break;
	default:
		break;
	}

}

static void
header_print_comment(FILE *fp, const char *value, void *arg)
{
	const char *p = value;
	size_t l;

	fprintf(fp, "/*\n");
	for (;;) {
		l = strcspn(p, "\n");
		fprintf(fp, " *");
		if (l) {
			fprintf(fp, " ");
			xfwrite(p, l, 1, fp);
			p += l;
		}
		fprintf(fp, "\n");
		if (*p++ == '\0')
			break;
	}
	fprintf(fp, " */\n");
}

static struct conf_printer header_printer_cb =
{
	.print_symbol = header_print_symbol,
	.print_comment = header_print_comment,
};

/*
 * Tristate printer
 *
 * This printer is used when generating the `include/config/tristate.conf' file.
 */
static void
tristate_print_symbol(FILE *fp, struct symbol *sym, const char *value, void *arg)
{

	if (sym->type == S_TRISTATE && *value != 'n')
		fprintf(fp, "%s%s=%c\n", CONFIG_, sym->name, (char)toupper(*value));
}

static struct conf_printer tristate_printer_cb =
{
	.print_symbol = tristate_print_symbol,
	.print_comment = kconfig_print_comment,
};

static void conf_write_symbol(FILE *fp, struct symbol *sym,
			      struct conf_printer *printer, void *printer_arg)
{
	const char *str;

	switch (sym->type) {
	case S_OTHER:
	case S_UNKNOWN:
		break;
	case S_STRING:
		str = sym_get_string_value(sym);
		str = sym_escape_string_value(str);
		printer->print_symbol(fp, sym, str, printer_arg);
		free((void *)str);
		break;
	default:
		str = sym_get_string_value(sym);
		printer->print_symbol(fp, sym, str, printer_arg);
	}
}

static void
conf_write_heading(FILE *fp, struct conf_printer *printer, void *printer_arg)
{
	char buf[256];

	snprintf(buf, sizeof(buf),
	    "\n"
	    "Automatically generated file; DO NOT EDIT.\n"
	    "%s\n",
	    rootmenu.prompt->text);

	printer->print_comment(fp, buf, printer_arg);
}

/*
 * Write out a minimal config.
 * All values that has default values are skipped as this is redundant.
 */
int conf_write_defconfig(const char *filename)
{
	struct symbol *sym;
	struct menu *menu;
	FILE *out;

	out = fopen(filename, "w");
	if (!out)
		return 1;

	sym_clear_all_valid();

	/* Traverse all menus to find all relevant symbols */
	menu = rootmenu.list;

	while (menu != NULL)
	{
		sym = menu->sym;
		if (sym == NULL) {
			if (!menu_is_visible(menu))
				goto next_menu;
		} else if (!sym_is_choice(sym)) {
			sym_calc_value(sym);
			if (!(sym->flags & SYMBOL_WRITE))
				goto next_menu;
			sym->flags &= ~SYMBOL_WRITE;
			/* If we cannot change the symbol - skip */
			if (!sym_is_changable(sym))
				goto next_menu;
			/* If symbol equals to default value - skip */
			if (strcmp(sym_get_string_value(sym), sym_get_string_default(sym)) == 0)
				goto next_menu;

			/*
			 * If symbol is a choice value and equals to the
			 * default for a choice - skip.
			 * But only if value is bool and equal to "y" and
			 * choice is not "optional".
			 * (If choice is "optional" then all values can be "n")
			 */
			if (sym_is_choice_value(sym)) {
				struct symbol *cs;
				struct symbol *ds;

				cs = prop_get_symbol(sym_get_choice_prop(sym));
				ds = sym_choice_default(cs);
				if (!sym_is_optional(cs) && sym == ds) {
					if ((sym->type == S_BOOLEAN) &&
					    sym_get_tristate_value(sym) == yes)
						goto next_menu;
				}
			}
			conf_write_symbol(out, sym, &kconfig_printer_cb, NULL);
		}
next_menu:
		if (menu->list != NULL) {
			menu = menu->list;
		}
		else if (menu->next != NULL) {
			menu = menu->next;
		} else {
			while ((menu = menu->parent)) {
				if (menu->next != NULL) {
					menu = menu->next;
					break;
				}
			}
		}
	}
	fclose(out);
	return 0;
}

int conf_write(const char *name)
{
	FILE *out;
	struct symbol *sym;
	struct menu *menu;
	const char *basename;
	const char *str;
	char dirname[PATH_MAX+1], tmpname[PATH_MAX+1], newname[PATH_MAX+1];
	char *env;

	dirname[0] = 0;
	if (name && name[0]) {
		struct stat st;
		char *slash;

		if (!stat(name, &st) && S_ISDIR(st.st_mode)) {
			strcpy(dirname, name);
			strcat(dirname, "/");
			basename = conf_get_configname();
		} else if ((slash = strrchr(name, '/'))) {
			int size = slash - name + 1;
			memcpy(dirname, name, size);
			dirname[size] = 0;
			if (slash[1])
				basename = slash + 1;
			else
				basename = conf_get_configname();
		} else
			basename = name;
	} else
		basename = conf_get_configname();

	sprintf(newname, "%s%s", dirname, basename);
	env = getenv("KCONFIG_OVERWRITECONFIG");
	if (!env || !*env) {
		sprintf(tmpname, "%s.tmpconfig.%d", dirname, (int)getpid());
		out = fopen(tmpname, "w");
	} else {
		*tmpname = 0;
		out = fopen(newname, "w");
	}
	if (!out)
		return 1;

	conf_write_heading(out, &kconfig_printer_cb, NULL);

	if (!conf_get_changed())
		sym_clear_all_valid();

	menu = rootmenu.list;
	while (menu) {
		sym = menu->sym;
		if (!sym) {
			if (!menu_is_visible(menu))
				goto next;
			str = menu_get_prompt(menu);
			fprintf(out, "\n"
				     "#\n"
				     "# %s\n"
				     "#\n", str);
		} else if (!(sym->flags & SYMBOL_CHOICE)) {
			sym_calc_value(sym);
			if (!(sym->flags & SYMBOL_WRITE))
				goto next;
			sym->flags &= ~SYMBOL_WRITE;

			conf_write_symbol(out, sym, &kconfig_printer_cb, NULL);
		}

next:
		if (menu->list) {
			menu = menu->list;
			continue;
		}
		if (menu->next)
			menu = menu->next;
		else while ((menu = menu->parent)) {
			if (menu->next) {
				menu = menu->next;
				break;
			}
		}
	}
	fclose(out);

	if (*tmpname) {
		strcat(dirname, basename);
		strcat(dirname, ".old");
		rename(newname, dirname);
		if (rename(tmpname, newname))
			return 1;
	}

	conf_message(_("configuration written to %s"), newname);

	sym_set_change_count(0);

	return 0;
}

static int conf_split_config(void)
{
	const char *name;
	char path[PATH_MAX+1];
	char *s, *d, c;
	struct symbol *sym;
	struct stat sb;
	int res, i, fd;

	name = conf_get_autoconfig_name();
	conf_read_simple(name, S_DEF_AUTO);
	sym_calc_value(modules_sym);

	if (chdir("include/config"))
		return 1;

	res = 0;
	for_all_symbols(i, sym) {
		sym_calc_value(sym);
		if ((sym->flags & SYMBOL_AUTO) || !sym->name)
			continue;
		if (sym->flags & SYMBOL_WRITE) {
			if (sym->flags & SYMBOL_DEF_AUTO) {
				/*
				 * symbol has old and new value,
				 * so compare them...
				 */
				switch (sym->type) {
				case S_BOOLEAN:
				case S_TRISTATE:
					if (sym_get_tristate_value(sym) ==
					    sym->def[S_DEF_AUTO].tri)
						continue;
					break;
				case S_STRING:
				case S_HEX:
				case S_INT:
					if (!strcmp(sym_get_string_value(sym),
						    sym->def[S_DEF_AUTO].val))
						continue;
					break;
				default:
					break;
				}
			} else {
				/*
				 * If there is no old value, only 'no' (unset)
				 * is allowed as new value.
				 */
				switch (sym->type) {
				case S_BOOLEAN:
				case S_TRISTATE:
					if (sym_get_tristate_value(sym) == no)
						continue;
					break;
				default:
					break;
				}
			}
		} else if (!(sym->flags & SYMBOL_DEF_AUTO))
			/* There is neither an old nor a new value. */
			continue;
		/* else
		 *	There is an old value, but no new value ('no' (unset)
		 *	isn't saved in auto.conf, so the old value is always
		 *	different from 'no').
		 */

		/* Replace all '_' and append ".h" */
		s = sym->name;
		d = path;
		while ((c = *s++)) {
			c = tolower(c);
			*d++ = (c == '_') ? '/' : c;
		}
		strcpy(d, ".h");

		/* Assume directory path already exists. */
		fd = open(path, O_WRONLY | O_CREAT | O_TRUNC, 0644);
		if (fd == -1) {
			if (errno != ENOENT) {
				res = 1;
				break;
			}
			/*
			 * Create directory components,
			 * unless they exist already.
			 */
			d = path;
			while ((d = strchr(d, '/'))) {
				*d = 0;
				if (stat(path, &sb) && mkdir(path, 0755)) {
					res = 1;
					goto out;
				}
				*d++ = '/';
			}
			/* Try it again. */
			fd = open(path, O_WRONLY | O_CREAT | O_TRUNC, 0644);
			if (fd == -1) {
				res = 1;
				break;
			}
		}
		close(fd);
	}
out:
	if (chdir("../.."))
		return 1;

	return res;
}

int conf_write_autoconf(void)
{
	struct symbol *sym;
	const char *name;
	FILE *out, *tristate, *out_h;
	int i;

	sym_clear_all_valid();

	file_write_dep("include/config/auto.conf.cmd");

	if (conf_split_config())
		return 1;

	out = fopen(".tmpconfig", "w");
	if (!out)
		return 1;

	tristate = fopen(".tmpconfig_tristate", "w");
	if (!tristate) {
		fclose(out);
		return 1;
	}

	out_h = fopen(".tmpconfig.h", "w");
	if (!out_h) {
		fclose(out);
		fclose(tristate);
		return 1;
	}

	conf_write_heading(out, &kconfig_printer_cb, NULL);

	conf_write_heading(tristate, &tristate_printer_cb, NULL);

	conf_write_heading(out_h, &header_printer_cb, NULL);

	for_all_symbols(i, sym) {
		sym_calc_value(sym);
		if (!(sym->flags & SYMBOL_WRITE) || !sym->name)
			continue;

		/* write symbol to auto.conf, tristate and header files */
		conf_write_symbol(out, sym, &kconfig_printer_cb, (void *)1);

		conf_write_symbol(tristate, sym, &tristate_printer_cb, (void *)1);

		conf_write_symbol(out_h, sym, &header_printer_cb, NULL);
	}
	fclose(out);
	fclose(tristate);
	fclose(out_h);

	name = getenv("KCONFIG_AUTOHEADER");
	if (!name)
		name = "include/generated/autoconf.h";
	if (rename(".tmpconfig.h", name))
		return 1;
	name = getenv("KCONFIG_TRISTATE");
	if (!name)
		name = "include/config/tristate.conf";
	if (rename(".tmpconfig_tristate", name))
		return 1;
	name = conf_get_autoconfig_name();
	/*
	 * This must be the last step, kbuild has a dependency on auto.conf
	 * and this marks the successful completion of the previous steps.
	 */
	if (rename(".tmpconfig", name))
		return 1;

	return 0;
}

static int sym_change_count;
static void (*conf_changed_callback)(void);

void sym_set_change_count(int count)
{
	int _sym_change_count = sym_change_count;
	sym_change_count = count;
	if (conf_changed_callback &&
	    (bool)_sym_change_count != (bool)count)
		conf_changed_callback();
}

void sym_add_change_count(int count)
{
	sym_set_change_count(count + sym_change_count);
}

bool conf_get_changed(void)
{
	return sym_change_count;
}

void conf_set_changed_callback(void (*fn)(void))
{
	conf_changed_callback = fn;
}

static bool randomize_choice_values(struct symbol *csym)
{
	struct property *prop;
	struct symbol *sym;
	struct expr *e;
	int cnt, def;

	/*
	 * If choice is mod then we may have more items selected
	 * and if no then no-one.
	 * In both cases stop.
	 */
	if (csym->curr.tri != yes)
		return false;

	prop = sym_get_choice_prop(csym);

	/* count entries in choice block */
	cnt = 0;
	expr_list_for_each_sym(prop->expr, e, sym)
		cnt++;

	/*
	 * find a random value and set it to yes,
	 * set the rest to no so we have only one set
	 */
	def = (rand() % cnt);

	cnt = 0;
	expr_list_for_each_sym(prop->expr, e, sym) {
		if (def == cnt++) {
			sym->def[S_DEF_USER].tri = yes;
			csym->def[S_DEF_USER].val = sym;
		}
		else {
			sym->def[S_DEF_USER].tri = no;
		}
		sym->flags |= SYMBOL_DEF_USER;
		/* clear VALID to get value calculated */
		sym->flags &= ~SYMBOL_VALID;
	}
	csym->flags |= SYMBOL_DEF_USER;
	/* clear VALID to get value calculated */
	csym->flags &= ~(SYMBOL_VALID);

	return true;
}

void set_all_choice_values(struct symbol *csym)
{
	struct property *prop;
	struct symbol *sym;
	struct expr *e;

	prop = sym_get_choice_prop(csym);

	/*
	 * Set all non-assinged choice values to no
	 */
	expr_list_for_each_sym(prop->expr, e, sym) {
		if (!sym_has_value(sym))
			sym->def[S_DEF_USER].tri = no;
	}
	csym->flags |= SYMBOL_DEF_USER;
	/* clear VALID to get value calculated */
	csym->flags &= ~(SYMBOL_VALID | SYMBOL_NEED_SET_CHOICE_VALUES);
}

bool conf_set_all_new_symbols(enum conf_def_mode mode)
{
	struct symbol *sym, *csym;
	int i, cnt, pby, pty, ptm;	/* pby: probability of boolean  = y
					 * pty: probability of tristate = y
					 * ptm: probability of tristate = m
					 */

	pby = 50; pty = ptm = 33; /* can't go as the default in switch-case
				   * below, otherwise gcc whines about
				   * -Wmaybe-uninitialized */
	if (mode == def_random) {
		int n, p[3];
		char *env = getenv("KCONFIG_PROBABILITY");
		n = 0;
		while( env && *env ) {
			char *endp;
			int tmp = strtol( env, &endp, 10 );
			if( tmp >= 0 && tmp <= 100 ) {
				p[n++] = tmp;
			} else {
				errno = ERANGE;
				perror( "KCONFIG_PROBABILITY" );
				exit( 1 );
			}
			env = (*endp == ':') ? endp+1 : endp;
			if( n >=3 ) {
				break;
			}
		}
		switch( n ) {
		case 1:
			pby = p[0]; ptm = pby/2; pty = pby-ptm;
			break;
		case 2:
			pty = p[0]; ptm = p[1]; pby = pty + ptm;
			break;
		case 3:
			pby = p[0]; pty = p[1]; ptm = p[2];
			break;
		}

		if( pty+ptm > 100 ) {
			errno = ERANGE;
			perror( "KCONFIG_PROBABILITY" );
			exit( 1 );
		}
	}
	bool has_changed = false;

	sym_clear_all_valid();

	for_all_symbols(i, sym) {
		if (sym_has_value(sym) || (sym->flags & SYMBOL_VALID))
			continue;
		switch (sym_get_type(sym)) {
		case S_BOOLEAN:
		case S_TRISTATE:
			has_changed = true;
			switch (mode) {
			case def_yes:
				sym->def[S_DEF_USER].tri = yes;
				break;
			case def_mod:
				sym->def[S_DEF_USER].tri = mod;
				break;
			case def_no:
				if (sym->flags & SYMBOL_ALLNOCONFIG_Y)
					sym->def[S_DEF_USER].tri = yes;
				else
					sym->def[S_DEF_USER].tri = no;
				break;
			case def_random:
				sym->def[S_DEF_USER].tri = no;
				cnt = rand() % 100;
				if (sym->type == S_TRISTATE) {
					if (cnt < pty)
						sym->def[S_DEF_USER].tri = yes;
					else if (cnt < (pty+ptm))
						sym->def[S_DEF_USER].tri = mod;
				} else if (cnt < pby)
					sym->def[S_DEF_USER].tri = yes;
				break;
			default:
				continue;
			}
			if (!(sym_is_choice(sym) && mode == def_random))
				sym->flags |= SYMBOL_DEF_USER;
			break;
		default:
			break;
		}

	}

	/*
	 * We have different type of choice blocks.
	 * If curr.tri equals to mod then we can select several
	 * choice symbols in one block.
	 * In this case we do nothing.
	 * If curr.tri equals yes then only one symbol can be
	 * selected in a choice block and we set it to yes,
	 * and the rest to no.
	 */
	if (mode != def_random) {
		for_all_symbols(i, csym) {
			if ((sym_is_choice(csym) && !sym_has_value(csym)) ||
			    sym_is_choice_value(csym))
				csym->flags |= SYMBOL_NEED_SET_CHOICE_VALUES;
		}
	}

	for_all_symbols(i, csym) {
		if (sym_has_value(csym) || !sym_is_choice(csym))
			continue;

		sym_calc_value(csym);
		if (mode == def_random)
			has_changed = randomize_choice_values(csym);
		else {
			set_all_choice_values(csym);
			has_changed = true;
		}
	}

	return has_changed;
}