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s390/boot: Replace boot_printk() with loglevel-specific helpers
Replaces boot_printk() calls with appropriate loglevel-specific helpers such as boot_emerg(), boot_warn(), and boot_debug(). Using functions with explicit log levels improves log clarity and aligns the boot code with standard kernel logging practices. This makes it easier to filter and manage boot-time messages based on their severity. Signed-off-by: Vasily Gorbik <gor@linux.ibm.com> Acked-by: Heiko Carstens <hca@linux.ibm.com> Signed-off-by: Alexander Gordeev <agordeev@linux.ibm.com>
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parent
d538fdc49a
commit
42fc158c7e
6 changed files with 48 additions and 48 deletions
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@ -46,7 +46,7 @@ void print_missing_facilities(void)
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* z/VM adds a four character prefix.
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*/
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if (strlen(als_str) > 70) {
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boot_printk("%s\n", als_str);
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boot_emerg("%s\n", als_str);
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*als_str = '\0';
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}
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u16_to_decimal(val_str, i * BITS_PER_LONG + j);
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@ -54,7 +54,7 @@ void print_missing_facilities(void)
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first = 0;
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}
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}
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boot_printk("%s\n", als_str);
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boot_emerg("%s\n", als_str);
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}
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static void facility_mismatch(void)
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@ -62,10 +62,10 @@ static void facility_mismatch(void)
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struct cpuid id;
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get_cpu_id(&id);
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boot_printk("The Linux kernel requires more recent processor hardware\n");
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boot_printk("Detected machine-type number: %4x\n", id.machine);
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boot_emerg("The Linux kernel requires more recent processor hardware\n");
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boot_emerg("Detected machine-type number: %4x\n", id.machine);
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print_missing_facilities();
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boot_printk("See Principles of Operations for facility bits\n");
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boot_emerg("See Principles of Operations for facility bits\n");
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disabled_wait();
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}
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@ -215,7 +215,7 @@ static void check_cleared_facilities(void)
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for (i = 0; i < ARRAY_SIZE(als); i++) {
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if ((stfle_fac_list[i] & als[i]) != als[i]) {
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boot_printk("Warning: The Linux kernel requires facilities cleared via command line option\n");
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boot_emerg("The Linux kernel requires facilities cleared via command line option\n");
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print_missing_facilities();
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break;
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}
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@ -32,7 +32,7 @@ struct prng_parm {
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static int check_prng(void)
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{
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if (!cpacf_query_func(CPACF_KMC, CPACF_KMC_PRNG)) {
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boot_printk("KASLR disabled: CPU has no PRNG\n");
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boot_warn("KASLR disabled: CPU has no PRNG\n");
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return 0;
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}
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if (cpacf_query_func(CPACF_PRNO, CPACF_PRNO_TRNG))
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@ -17,13 +17,14 @@ void print_stacktrace(unsigned long sp)
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(unsigned long)_stack_end };
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bool first = true;
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boot_printk("Call Trace:\n");
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boot_emerg("Call Trace:\n");
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while (!(sp & 0x7) && on_stack(&boot_stack, sp, sizeof(struct stack_frame))) {
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struct stack_frame *sf = (struct stack_frame *)sp;
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boot_printk(first ? "(sp:%016lx [<%016lx>] %pS)\n" :
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" sp:%016lx [<%016lx>] %pS\n",
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sp, sf->gprs[8], (void *)sf->gprs[8]);
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if (first)
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boot_emerg("(sp:%016lx [<%016lx>] %pS)\n", sp, sf->gprs[8], (void *)sf->gprs[8]);
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else
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boot_emerg(" sp:%016lx [<%016lx>] %pS\n", sp, sf->gprs[8], (void *)sf->gprs[8]);
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if (sf->back_chain <= sp)
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break;
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sp = sf->back_chain;
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@ -36,30 +37,28 @@ void print_pgm_check_info(void)
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unsigned long *gpregs = (unsigned long *)get_lowcore()->gpregs_save_area;
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struct psw_bits *psw = &psw_bits(get_lowcore()->psw_save_area);
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boot_printk("Linux version %s\n", kernel_version);
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boot_emerg("Linux version %s\n", kernel_version);
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if (!is_prot_virt_guest() && early_command_line[0])
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boot_printk("Kernel command line: %s\n", early_command_line);
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boot_printk("Kernel fault: interruption code %04x ilc:%x\n",
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get_lowcore()->pgm_code, get_lowcore()->pgm_ilc >> 1);
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boot_emerg("Kernel command line: %s\n", early_command_line);
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boot_emerg("Kernel fault: interruption code %04x ilc:%x\n",
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get_lowcore()->pgm_code, get_lowcore()->pgm_ilc >> 1);
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if (kaslr_enabled()) {
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boot_printk("Kernel random base: %lx\n", __kaslr_offset);
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boot_printk("Kernel random base phys: %lx\n", __kaslr_offset_phys);
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boot_emerg("Kernel random base: %lx\n", __kaslr_offset);
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boot_emerg("Kernel random base phys: %lx\n", __kaslr_offset_phys);
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}
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boot_printk("PSW : %016lx %016lx (%pS)\n",
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get_lowcore()->psw_save_area.mask,
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get_lowcore()->psw_save_area.addr,
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(void *)get_lowcore()->psw_save_area.addr);
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boot_printk(
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" R:%x T:%x IO:%x EX:%x Key:%x M:%x W:%x P:%x AS:%x CC:%x PM:%x RI:%x EA:%x\n",
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psw->per, psw->dat, psw->io, psw->ext, psw->key, psw->mcheck,
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psw->wait, psw->pstate, psw->as, psw->cc, psw->pm, psw->ri,
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psw->eaba);
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boot_printk("GPRS: %016lx %016lx %016lx %016lx\n", gpregs[0], gpregs[1], gpregs[2], gpregs[3]);
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boot_printk(" %016lx %016lx %016lx %016lx\n", gpregs[4], gpregs[5], gpregs[6], gpregs[7]);
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boot_printk(" %016lx %016lx %016lx %016lx\n", gpregs[8], gpregs[9], gpregs[10], gpregs[11]);
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boot_printk(" %016lx %016lx %016lx %016lx\n", gpregs[12], gpregs[13], gpregs[14], gpregs[15]);
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boot_emerg("PSW : %016lx %016lx (%pS)\n",
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get_lowcore()->psw_save_area.mask,
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get_lowcore()->psw_save_area.addr,
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(void *)get_lowcore()->psw_save_area.addr);
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boot_emerg(" R:%x T:%x IO:%x EX:%x Key:%x M:%x W:%x P:%x AS:%x CC:%x PM:%x RI:%x EA:%x\n",
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psw->per, psw->dat, psw->io, psw->ext, psw->key, psw->mcheck,
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psw->wait, psw->pstate, psw->as, psw->cc, psw->pm, psw->ri, psw->eaba);
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boot_emerg("GPRS: %016lx %016lx %016lx %016lx\n", gpregs[0], gpregs[1], gpregs[2], gpregs[3]);
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boot_emerg(" %016lx %016lx %016lx %016lx\n", gpregs[4], gpregs[5], gpregs[6], gpregs[7]);
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boot_emerg(" %016lx %016lx %016lx %016lx\n", gpregs[8], gpregs[9], gpregs[10], gpregs[11]);
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boot_emerg(" %016lx %016lx %016lx %016lx\n", gpregs[12], gpregs[13], gpregs[14], gpregs[15]);
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print_stacktrace(get_lowcore()->gpregs_save_area[15]);
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boot_printk("Last Breaking-Event-Address:\n");
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boot_printk(" [<%016lx>] %pS\n", (unsigned long)get_lowcore()->pgm_last_break,
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(void *)get_lowcore()->pgm_last_break);
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boot_emerg("Last Breaking-Event-Address:\n");
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boot_emerg(" [<%016lx>] %pS\n", (unsigned long)get_lowcore()->pgm_last_break,
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(void *)get_lowcore()->pgm_last_break);
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}
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@ -241,27 +241,27 @@ static void die_oom(unsigned long size, unsigned long align, unsigned long min,
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enum reserved_range_type t;
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int i;
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boot_printk("Linux version %s\n", kernel_version);
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boot_emerg("Linux version %s\n", kernel_version);
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if (!is_prot_virt_guest() && early_command_line[0])
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boot_printk("Kernel command line: %s\n", early_command_line);
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boot_printk("Out of memory allocating %lx bytes %lx aligned in range %lx:%lx\n",
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size, align, min, max);
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boot_printk("Reserved memory ranges:\n");
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boot_emerg("Kernel command line: %s\n", early_command_line);
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boot_emerg("Out of memory allocating %lx bytes %lx aligned in range %lx:%lx\n",
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size, align, min, max);
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boot_emerg("Reserved memory ranges:\n");
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for_each_physmem_reserved_range(t, range, &start, &end) {
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boot_printk("%016lx %016lx %s\n", start, end, get_rr_type_name(t));
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boot_emerg("%016lx %016lx %s\n", start, end, get_rr_type_name(t));
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total_reserved_mem += end - start;
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}
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boot_printk("Usable online memory ranges (info source: %s [%x]):\n",
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get_physmem_info_source(), physmem_info.info_source);
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boot_emerg("Usable online memory ranges (info source: %s [%x]):\n",
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get_physmem_info_source(), physmem_info.info_source);
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for_each_physmem_usable_range(i, &start, &end) {
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boot_printk("%016lx %016lx\n", start, end);
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boot_emerg("%016lx %016lx\n", start, end);
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total_mem += end - start;
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}
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boot_printk("Usable online memory total: %lx Reserved: %lx Free: %lx\n",
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total_mem, total_reserved_mem,
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total_mem > total_reserved_mem ? total_mem - total_reserved_mem : 0);
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boot_emerg("Usable online memory total: %lx Reserved: %lx Free: %lx\n",
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total_mem, total_reserved_mem,
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total_mem > total_reserved_mem ? total_mem - total_reserved_mem : 0);
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print_stacktrace(current_frame_address());
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boot_printk("\n\n -- System halted\n");
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boot_emerg(" -- System halted\n");
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disabled_wait();
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}
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@ -42,7 +42,8 @@ struct machine_info machine;
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void error(char *x)
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{
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boot_printk("\n\n%s\n\n -- System halted", x);
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boot_emerg("%s\n", x);
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boot_emerg(" -- System halted\n");
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disabled_wait();
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}
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@ -305,7 +306,7 @@ static unsigned long setup_kernel_memory_layout(unsigned long kernel_size)
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kernel_start = round_down(kernel_end - kernel_size, THREAD_SIZE);
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} else if (vmax < __NO_KASLR_END_KERNEL || vsize > __NO_KASLR_END_KERNEL) {
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kernel_start = round_down(vmax - kernel_size, THREAD_SIZE);
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boot_printk("The kernel base address is forced to %lx\n", kernel_start);
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boot_debug("The kernel base address is forced to %lx\n", kernel_start);
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} else {
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kernel_start = __NO_KASLR_START_KERNEL;
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}
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