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#include <arch/debugger.h>
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#include <arch/debugger.h>
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#include <arch/barrier.h>
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#include <arch/barrier.h>
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#include <memstr.h>
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#include <memstr.h>
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#include <console/kconsole.h>
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#include <console/kconsole.h>
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#include <console/cmd.h>
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#include <console/cmd.h>
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#include <symtab.h>
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#include <print.h>
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#include <print.h>
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#include <panic.h>
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#include <panic.h>
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#include <arch.h>
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#include <arch.h>
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#include <arch/cp0.h>
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#include <arch/cp0.h>
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#include <func.h>
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#include <func.h>
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#include <symtab.h>
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bpinfo_t breakpoints[BKPOINTS_MAX];
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bpinfo_t breakpoints[BKPOINTS_MAX];
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SPINLOCK_INITIALIZE(bkpoint_lock);
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SPINLOCK_INITIALIZE(bkpoint_lock);
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#ifdef CONFIG_KCONSOLE
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#ifdef CONFIG_KCONSOLE
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    printf("#  Count Address    INPROG ONESHOT FUNCCALL In symbol\n");
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    printf("#  Count Address    INPROG ONESHOT FUNCCALL In symbol\n");
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    printf("-- ----- ---------- ------ ------- -------- ---------\n");
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    printf("-- ----- ---------- ------ ------- -------- ---------\n");
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    for (i = 0; i < BKPOINTS_MAX; i++)
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    for (i = 0; i < BKPOINTS_MAX; i++)
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        if (breakpoints[i].address) {
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        if (breakpoints[i].address) {
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            symbol = symtab_fmt_name_lookup(
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            symbol = get_symtab_entry(breakpoints[i].address);
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                breakpoints[i].address);
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            printf("%-2u %-5d %#10zx %-6s %-7s %-8s %s\n", i,
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            printf("%-2u %-5d %#10zx %-6s %-7s %-8s %s\n", i,
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                breakpoints[i].counter, breakpoints[i].address,
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                breakpoints[i].counter, breakpoints[i].address,
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                ((breakpoints[i].flags & BKPOINT_INPROG) ? "true" :
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                ((breakpoints[i].flags & BKPOINT_INPROG) ? "true" :
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                "false"), ((breakpoints[i].flags & BKPOINT_ONESHOT)
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                "false"), ((breakpoints[i].flags & BKPOINT_ONESHOT)
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                ? "true" : "false"), ((breakpoints[i].flags &
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                ? "true" : "false"), ((breakpoints[i].flags &
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            return;
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            return;
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        }
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        }
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        if (cur->flags & BKPOINT_INPROG)
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        if (cur->flags & BKPOINT_INPROG)
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            printf("Warning: breakpoint recursion\n");
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            printf("Warning: breakpoint recursion\n");
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        if (!(cur->flags & BKPOINT_FUNCCALL))
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        if (!(cur->flags & BKPOINT_FUNCCALL)) {
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            printf("***Breakpoint %d: %p in %s.\n", i, fireaddr,
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            printf("***Breakpoint %d: %p in %s.\n", i, fireaddr,
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                get_symtab_entry(istate->epc));
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                symtab_fmt_name_lookup(istate->epc));
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        }
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        /* Return first instruction back */
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        /* Return first instruction back */
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        ((uint32_t *)cur->address)[0] = cur->instruction;
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        ((uint32_t *)cur->address)[0] = cur->instruction;
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        smc_coherence(cur->address);
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        smc_coherence(cur->address);
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            ((uint32_t *)cur->address)[1] = 0x0d;
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            ((uint32_t *)cur->address)[1] = 0x0d;
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            cur->flags |= BKPOINT_REINST;
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            cur->flags |= BKPOINT_REINST;
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        }
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        }
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        cur->flags |= BKPOINT_INPROG;
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        cur->flags |= BKPOINT_INPROG;
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    } else {
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    } else {
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        printf("***Breakpoint %p in %s.\n", fireaddr,
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        printf("***Breakpoint %d: %p in %s.\n", i, fireaddr,
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               get_symtab_entry(fireaddr));
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            symtab_fmt_name_lookup(fireaddr));
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        /* Move on to next instruction */
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        /* Move on to next instruction */
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        istate->epc += 4;
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        istate->epc += 4;
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    }
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    }
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    if (cur)
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    if (cur)
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        cur->counter++;
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        cur->counter++;
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         *   so this is a good idea
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         *   so this is a good idea
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         */
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         */
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        atomic_set(&haltstate, 1);
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        atomic_set(&haltstate, 1);
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        spinlock_unlock(&bkpoint_lock);
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        spinlock_unlock(&bkpoint_lock);
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        kconsole("debug", "Debug console ready (type 'exit' to continue)\n", false);
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        kconsole("debug", "Debug console ready.\n", false);
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        spinlock_lock(&bkpoint_lock);
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        spinlock_lock(&bkpoint_lock);
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        atomic_set(&haltstate, 0);
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        atomic_set(&haltstate, 0);
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#endif
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#endif
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    }
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    }