/* * zgetdump - Tool for copying and converting System z dumps * * S390 dump format common functions * * Copyright IBM Corp. 2001, 2018 * * s390-tools is free software; you can redistribute it and/or modify * it under the terms of the MIT license. See LICENSE for details. */ #include #include #include #include #include #include #include #include "zgetdump.h" /* * Check, if we can access the lowcore information in the dump */ static int check_addr_max(struct df_s390_hdr *hdr, u64 addr_max) { unsigned int i, lc_size; lc_size = dfi_lc_size(df_s390_to_dfi_arch(hdr->arch)); for (i = 0; i < hdr->cpu_cnt; i++) { if (hdr->lc_vec[i] + lc_size > addr_max) return -1; } return 0; } /* * Convert lowcore information into internal CPU representation */ void df_s390_cpu_info_add(struct df_s390_hdr *hdr, u64 addr_max) { unsigned int i; if (hdr->version < 5 && hdr->magic == DF_S390_MAGIC) { /* No Prefix registers in header */ hdr->cpu_cnt = 0; dfi_cpu_info_init(DFI_CPU_CONTENT_NONE); } else if (check_addr_max(hdr, addr_max) != 0) { /* Only lowcore pointers available */ dfi_cpu_info_init(DFI_CPU_CONTENT_LC); } else { /* All register info available */ dfi_cpu_info_init(DFI_CPU_CONTENT_ALL); } for (i = 0; i < hdr->cpu_cnt; i++) dfi_cpu_add_from_lc(hdr->lc_vec[i]); } /* * Convert s390 TOD clock into timeval structure */ static void tod2timeval(struct timeval *xtime, u64 todval) { /* adjust todclock to 1970 */ todval -= 0x8126d60e46000000LL - (0x3c26700LL * 1000000 * 4096); todval >>= 12; xtime->tv_sec = todval / 1000000; xtime->tv_usec = todval % 1000000; } /* * Convert s390 header information into internal representation */ void df_s390_hdr_add(struct df_s390_hdr *hdr) { struct timeval timeval; if (hdr->tod) { tod2timeval(&timeval, hdr->tod); dfi_attr_time_set(&timeval); } dfi_attr_version_set(hdr->version); dfi_arch_set(df_s390_to_dfi_arch(hdr->arch)); if (hdr->cpu_id) dfi_attr_cpu_id_set(hdr->cpu_id); if ((hdr->version >= 2 || hdr->magic == DF_S390_MAGIC_EXT) && hdr->build_arch) dfi_attr_build_arch_set(df_s390_to_dfi_arch(hdr->build_arch)); if ((hdr->version >= 3 || hdr->magic == DF_S390_MAGIC_EXT) && hdr->mem_size_real) dfi_attr_mem_size_real_set(hdr->mem_size_real); if ((hdr->version >= 5 || hdr->magic == DF_S390_MAGIC_EXT) && hdr->real_cpu_cnt) dfi_attr_real_cpu_cnt_set(hdr->real_cpu_cnt); } /* * Add end marker information to internal representation */ void df_s390_em_add(struct df_s390_em *em) { struct timeval timeval; if (em->tod) { tod2timeval(&timeval, em->tod); dfi_attr_time_end_set(&timeval); } } /* * Verify end marker */ int df_s390_em_verify(struct df_s390_em *em, struct df_s390_hdr *hdr) { if (strncmp(em->str, DF_S390_EM_STR, strlen(DF_S390_EM_STR)) != 0) return -EINVAL; if (hdr->tod > em->tod) return -EINVAL; return 0; } /* * Read s390 dump tool from DASD with given block size */ void df_s390_dumper_read(struct zg_fh *fh, int blk_size, struct df_s390_dumper *dumper) { int bytes_to_read, offset = DF_S390_MAGIC_BLK_ECKD * blk_size; /* * First read 3 fields at the start of the dumper. The magic number, * version and one extra field for the old dumper case (no magic * number, checking for specific assembler instructions). */ bytes_to_read = offsetof(struct df_s390_dumper, force); zg_seek(fh, offset, ZG_CHECK); zg_read(fh, dumper, bytes_to_read, ZG_CHECK); if (memcmp(dumper->magic, OLD_DUMPER_HEX_INSTR1, 4) == 0 && memcmp(&dumper->size, OLD_DUMPER_HEX_INSTR2, 2) == 0) /* We found basr r13,0 (old dumper) */ dumper->version = 0; switch (dumper->version) { case 1: if (strncmp(dumper->magic, DF_S390_DUMPER_MAGIC_EXT, 7) == 0 || strncmp(dumper->magic, DF_S390_DUMPER_MAGIC_MV_EXT, 7) == 0) dumper->size = DF_S390_DUMPER_SIZE_V3; else dumper->size = DF_S390_DUMPER_SIZE_V1; break; case 2: dumper->size = DF_S390_DUMPER_SIZE_V2; break; case 3: default: dumper->size = DF_S390_DUMPER_SIZE_V3; } /* Read force and mem fields in the end of the dumper */ bytes_to_read = sizeof(dumper->force) + sizeof(dumper->mem); offset += dumper->size - bytes_to_read; zg_seek(fh, offset, ZG_CHECK); zg_read(fh, &dumper->force, bytes_to_read, ZG_CHECK); }