275 строки
7.7 KiB
C
275 строки
7.7 KiB
C
/*
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* linux/arch/alpha/kernel/err_ev6.c
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*
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* Copyright (C) 2000 Jeff Wiedemeier (Compaq Computer Corporation)
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*
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* Error handling code supporting Alpha systems
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*/
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#include <linux/init.h>
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#include <linux/sched.h>
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#include <asm/io.h>
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#include <asm/irq_regs.h>
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#include <asm/hwrpb.h>
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#include <asm/smp.h>
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#include <asm/err_common.h>
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#include <asm/err_ev6.h>
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#include "err_impl.h"
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#include "proto.h"
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static int
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ev6_parse_ibox(u64 i_stat, int print)
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{
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int status = MCHK_DISPOSITION_REPORT;
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#define EV6__I_STAT__PAR (1UL << 29)
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#define EV6__I_STAT__ERRMASK (EV6__I_STAT__PAR)
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if (!(i_stat & EV6__I_STAT__ERRMASK))
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return MCHK_DISPOSITION_UNKNOWN_ERROR;
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if (!print)
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return status;
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if (i_stat & EV6__I_STAT__PAR)
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printk("%s Icache parity error\n", err_print_prefix);
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return status;
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}
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static int
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ev6_parse_mbox(u64 mm_stat, u64 d_stat, u64 c_stat, int print)
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{
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int status = MCHK_DISPOSITION_REPORT;
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#define EV6__MM_STAT__DC_TAG_PERR (1UL << 10)
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#define EV6__MM_STAT__ERRMASK (EV6__MM_STAT__DC_TAG_PERR)
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#define EV6__D_STAT__TPERR_P0 (1UL << 0)
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#define EV6__D_STAT__TPERR_P1 (1UL << 1)
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#define EV6__D_STAT__ECC_ERR_ST (1UL << 2)
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#define EV6__D_STAT__ECC_ERR_LD (1UL << 3)
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#define EV6__D_STAT__SEO (1UL << 4)
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#define EV6__D_STAT__ERRMASK (EV6__D_STAT__TPERR_P0 | \
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EV6__D_STAT__TPERR_P1 | \
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EV6__D_STAT__ECC_ERR_ST | \
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EV6__D_STAT__ECC_ERR_LD | \
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EV6__D_STAT__SEO)
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if (!(d_stat & EV6__D_STAT__ERRMASK) &&
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!(mm_stat & EV6__MM_STAT__ERRMASK))
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return MCHK_DISPOSITION_UNKNOWN_ERROR;
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if (!print)
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return status;
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if (mm_stat & EV6__MM_STAT__DC_TAG_PERR)
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printk("%s Dcache tag parity error on probe\n",
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err_print_prefix);
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if (d_stat & EV6__D_STAT__TPERR_P0)
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printk("%s Dcache tag parity error - pipe 0\n",
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err_print_prefix);
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if (d_stat & EV6__D_STAT__TPERR_P1)
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printk("%s Dcache tag parity error - pipe 1\n",
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err_print_prefix);
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if (d_stat & EV6__D_STAT__ECC_ERR_ST)
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printk("%s ECC error occurred on a store\n",
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err_print_prefix);
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if (d_stat & EV6__D_STAT__ECC_ERR_LD)
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printk("%s ECC error occurred on a %s load\n",
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err_print_prefix,
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c_stat ? "" : "speculative ");
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if (d_stat & EV6__D_STAT__SEO)
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printk("%s Dcache second error\n", err_print_prefix);
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return status;
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}
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static int
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ev6_parse_cbox(u64 c_addr, u64 c1_syn, u64 c2_syn,
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u64 c_stat, u64 c_sts, int print)
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{
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char *sourcename[] = { "UNKNOWN", "UNKNOWN", "UNKNOWN",
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"MEMORY", "BCACHE", "DCACHE",
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"BCACHE PROBE", "BCACHE PROBE" };
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char *streamname[] = { "D", "I" };
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char *bitsname[] = { "SINGLE", "DOUBLE" };
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int status = MCHK_DISPOSITION_REPORT;
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int source = -1, stream = -1, bits = -1;
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#define EV6__C_STAT__BC_PERR (0x01)
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#define EV6__C_STAT__DC_PERR (0x02)
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#define EV6__C_STAT__DSTREAM_MEM_ERR (0x03)
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#define EV6__C_STAT__DSTREAM_BC_ERR (0x04)
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#define EV6__C_STAT__DSTREAM_DC_ERR (0x05)
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#define EV6__C_STAT__PROBE_BC_ERR0 (0x06) /* both 6 and 7 indicate... */
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#define EV6__C_STAT__PROBE_BC_ERR1 (0x07) /* ...probe bc error. */
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#define EV6__C_STAT__ISTREAM_MEM_ERR (0x0B)
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#define EV6__C_STAT__ISTREAM_BC_ERR (0x0C)
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#define EV6__C_STAT__DSTREAM_MEM_DBL (0x13)
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#define EV6__C_STAT__DSTREAM_BC_DBL (0x14)
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#define EV6__C_STAT__ISTREAM_MEM_DBL (0x1B)
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#define EV6__C_STAT__ISTREAM_BC_DBL (0x1C)
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#define EV6__C_STAT__SOURCE_MEMORY (0x03)
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#define EV6__C_STAT__SOURCE_BCACHE (0x04)
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#define EV6__C_STAT__SOURCE__S (0)
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#define EV6__C_STAT__SOURCE__M (0x07)
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#define EV6__C_STAT__ISTREAM__S (3)
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#define EV6__C_STAT__ISTREAM__M (0x01)
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#define EV6__C_STAT__DOUBLE__S (4)
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#define EV6__C_STAT__DOUBLE__M (0x01)
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#define EV6__C_STAT__ERRMASK (0x1F)
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#define EV6__C_STS__SHARED (1 << 0)
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#define EV6__C_STS__DIRTY (1 << 1)
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#define EV6__C_STS__VALID (1 << 2)
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#define EV6__C_STS__PARITY (1 << 3)
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if (!(c_stat & EV6__C_STAT__ERRMASK))
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return MCHK_DISPOSITION_UNKNOWN_ERROR;
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if (!print)
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return status;
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source = EXTRACT(c_stat, EV6__C_STAT__SOURCE);
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stream = EXTRACT(c_stat, EV6__C_STAT__ISTREAM);
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bits = EXTRACT(c_stat, EV6__C_STAT__DOUBLE);
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if (c_stat & EV6__C_STAT__BC_PERR) {
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printk("%s Bcache tag parity error\n", err_print_prefix);
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source = -1;
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}
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if (c_stat & EV6__C_STAT__DC_PERR) {
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printk("%s Dcache tag parity error\n", err_print_prefix);
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source = -1;
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}
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if (c_stat == EV6__C_STAT__PROBE_BC_ERR0 ||
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c_stat == EV6__C_STAT__PROBE_BC_ERR1) {
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printk("%s Bcache single-bit error on a probe hit\n",
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err_print_prefix);
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source = -1;
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}
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if (source != -1)
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printk("%s %s-STREAM %s-BIT ECC error from %s\n",
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err_print_prefix,
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streamname[stream], bitsname[bits], sourcename[source]);
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printk("%s Address: 0x%016llx\n"
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" Syndrome[upper.lower]: %02llx.%02llx\n",
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err_print_prefix,
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c_addr,
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c2_syn, c1_syn);
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if (source == EV6__C_STAT__SOURCE_MEMORY ||
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source == EV6__C_STAT__SOURCE_BCACHE)
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printk("%s Block status: %s%s%s%s\n",
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err_print_prefix,
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(c_sts & EV6__C_STS__SHARED) ? "SHARED " : "",
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(c_sts & EV6__C_STS__DIRTY) ? "DIRTY " : "",
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(c_sts & EV6__C_STS__VALID) ? "VALID " : "",
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(c_sts & EV6__C_STS__PARITY) ? "PARITY " : "");
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return status;
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}
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void
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ev6_register_error_handlers(void)
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{
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/* None right now. */
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}
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int
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ev6_process_logout_frame(struct el_common *mchk_header, int print)
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{
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struct el_common_EV6_mcheck *ev6mchk =
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(struct el_common_EV6_mcheck *)mchk_header;
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int status = MCHK_DISPOSITION_UNKNOWN_ERROR;
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status |= ev6_parse_ibox(ev6mchk->I_STAT, print);
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status |= ev6_parse_mbox(ev6mchk->MM_STAT, ev6mchk->DC_STAT,
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ev6mchk->C_STAT, print);
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status |= ev6_parse_cbox(ev6mchk->C_ADDR, ev6mchk->DC1_SYNDROME,
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ev6mchk->DC0_SYNDROME, ev6mchk->C_STAT,
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ev6mchk->C_STS, print);
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if (!print)
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return status;
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if (status != MCHK_DISPOSITION_DISMISS) {
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char *saved_err_prefix = err_print_prefix;
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/*
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* Dump some additional information from the frame
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*/
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printk("%s EXC_ADDR: 0x%016lx IER_CM: 0x%016lx"
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" ISUM: 0x%016lx\n"
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" PAL_BASE: 0x%016lx I_CTL: 0x%016lx"
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" PCTX: 0x%016lx\n",
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err_print_prefix,
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ev6mchk->EXC_ADDR, ev6mchk->IER_CM, ev6mchk->ISUM,
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ev6mchk->PAL_BASE, ev6mchk->I_CTL, ev6mchk->PCTX);
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if (status == MCHK_DISPOSITION_UNKNOWN_ERROR) {
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printk("%s UNKNOWN error, frame follows:\n",
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err_print_prefix);
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} else {
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/* had decode -- downgrade print level for frame */
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err_print_prefix = KERN_NOTICE;
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}
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mchk_dump_logout_frame(mchk_header);
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err_print_prefix = saved_err_prefix;
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}
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return status;
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}
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void
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ev6_machine_check(unsigned long vector, unsigned long la_ptr)
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{
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struct el_common *mchk_header = (struct el_common *)la_ptr;
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/*
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* Sync the processor
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*/
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mb();
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draina();
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/*
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* Parse the logout frame without printing first. If the only error(s)
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* found are have a disposition of "dismiss", then just dismiss them
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* and don't print any message
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*/
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if (ev6_process_logout_frame(mchk_header, 0) !=
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MCHK_DISPOSITION_DISMISS) {
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char *saved_err_prefix = err_print_prefix;
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err_print_prefix = KERN_CRIT;
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/*
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* Either a nondismissable error was detected or no
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* recognized error was detected in the logout frame
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* -- report the error in either case
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*/
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printk("%s*CPU %s Error (Vector 0x%x) reported on CPU %d:\n",
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err_print_prefix,
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(vector == SCB_Q_PROCERR)?"Correctable":"Uncorrectable",
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(unsigned int)vector, (int)smp_processor_id());
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ev6_process_logout_frame(mchk_header, 1);
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dik_show_regs(get_irq_regs(), NULL);
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err_print_prefix = saved_err_prefix;
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}
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/*
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* Release the logout frame
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*/
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wrmces(0x7);
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mb();
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}
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