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-rw-r--r--arch/sh/kernel/cpu/init.c125
1 files changed, 75 insertions, 50 deletions
diff --git a/arch/sh/kernel/cpu/init.c b/arch/sh/kernel/cpu/init.c
index 89b4b76c0d7..c736422344e 100644
--- a/arch/sh/kernel/cpu/init.c
+++ b/arch/sh/kernel/cpu/init.c
@@ -24,22 +24,32 @@
#include <asm/elf.h>
#include <asm/io.h>
#include <asm/smp.h>
-#ifdef CONFIG_SUPERH32
-#include <asm/ubc.h>
+#include <asm/sh_bios.h>
+
+#ifdef CONFIG_SH_FPU
+#define cpu_has_fpu 1
+#else
+#define cpu_has_fpu 0
+#endif
+
+#ifdef CONFIG_SH_DSP
+#define cpu_has_dsp 1
+#else
+#define cpu_has_dsp 0
#endif
/*
* Generic wrapper for command line arguments to disable on-chip
* peripherals (nofpu, nodsp, and so forth).
*/
-#define onchip_setup(x) \
-static int x##_disabled __initdata = 0; \
- \
-static int __init x##_setup(char *opts) \
-{ \
- x##_disabled = 1; \
- return 1; \
-} \
+#define onchip_setup(x) \
+static int x##_disabled __initdata = !cpu_has_##x; \
+ \
+static int __init x##_setup(char *opts) \
+{ \
+ x##_disabled = 1; \
+ return 1; \
+} \
__setup("no" __stringify(x), x##_setup);
onchip_setup(fpu);
@@ -52,10 +62,10 @@ onchip_setup(dsp);
static void __init speculative_execution_init(void)
{
/* Clear RABD */
- ctrl_outl(ctrl_inl(CPUOPM) & ~CPUOPM_RABD, CPUOPM);
+ __raw_writel(__raw_readl(CPUOPM) & ~CPUOPM_RABD, CPUOPM);
/* Flush the update */
- (void)ctrl_inl(CPUOPM);
+ (void)__raw_readl(CPUOPM);
ctrl_barrier();
}
#else
@@ -89,7 +99,7 @@ static void __init expmask_init(void)
#endif
/* 2nd-level cache init */
-void __uses_jump_to_uncached __attribute__ ((weak)) l2_cache_init(void)
+void __attribute__ ((weak)) l2_cache_init(void)
{
}
@@ -97,12 +107,12 @@ void __uses_jump_to_uncached __attribute__ ((weak)) l2_cache_init(void)
* Generic first-level cache init
*/
#ifdef CONFIG_SUPERH32
-static void __uses_jump_to_uncached cache_init(void)
+static void cache_init(void)
{
unsigned long ccr, flags;
jump_to_uncached();
- ccr = ctrl_inl(CCR);
+ ccr = __raw_readl(CCR);
/*
* At this point we don't know whether the cache is enabled or not - a
@@ -146,7 +156,7 @@ static void __uses_jump_to_uncached cache_init(void)
for (addr = addrstart;
addr < addrstart + waysize;
addr += current_cpu_data.dcache.linesz)
- ctrl_outl(0, addr);
+ __raw_writel(0, addr);
addrstart += current_cpu_data.dcache.way_incr;
} while (--ways);
@@ -179,7 +189,7 @@ static void __uses_jump_to_uncached cache_init(void)
l2_cache_init();
- ctrl_outl(flags, CCR);
+ __raw_writel(flags, CCR);
back_to_cached();
}
#else
@@ -207,6 +217,18 @@ static void detect_cache_shape(void)
l2_cache_shape = -1; /* No S-cache */
}
+static void __init fpu_init(void)
+{
+ /* Disable the FPU */
+ if (fpu_disabled && (current_cpu_data.flags & CPU_HAS_FPU)) {
+ printk("FPU Disabled\n");
+ current_cpu_data.flags &= ~CPU_HAS_FPU;
+ }
+
+ disable_fpu();
+ clear_used_math();
+}
+
#ifdef CONFIG_SH_DSP
static void __init release_dsp(void)
{
@@ -244,28 +266,35 @@ static void __init dsp_init(void)
if (sr & SR_DSP)
current_cpu_data.flags |= CPU_HAS_DSP;
+ /* Disable the DSP */
+ if (dsp_disabled && (current_cpu_data.flags & CPU_HAS_DSP)) {
+ printk("DSP Disabled\n");
+ current_cpu_data.flags &= ~CPU_HAS_DSP;
+ }
+
/* Now that we've determined the DSP status, clear the DSP bit. */
release_dsp();
}
+#else
+static inline void __init dsp_init(void) { }
#endif /* CONFIG_SH_DSP */
/**
* sh_cpu_init
*
- * This is our initial entry point for each CPU, and is invoked on the boot
- * CPU prior to calling start_kernel(). For SMP, a combination of this and
- * start_secondary() will bring up each processor to a ready state prior
- * to hand forking the idle loop.
+ * This is our initial entry point for each CPU, and is invoked on the
+ * boot CPU prior to calling start_kernel(). For SMP, a combination of
+ * this and start_secondary() will bring up each processor to a ready
+ * state prior to hand forking the idle loop.
*
- * We do all of the basic processor init here, including setting up the
- * caches, FPU, DSP, kicking the UBC, etc. By the time start_kernel() is
- * hit (and subsequently platform_setup()) things like determining the
- * CPU subtype and initial configuration will all be done.
+ * We do all of the basic processor init here, including setting up
+ * the caches, FPU, DSP, etc. By the time start_kernel() is hit (and
+ * subsequently platform_setup()) things like determining the CPU
+ * subtype and initial configuration will all be done.
*
* Each processor family is still responsible for doing its own probing
* and cache configuration in detect_cpu_and_cache_system().
*/
-
asmlinkage void __init sh_cpu_init(void)
{
current_thread_info()->cpu = hard_smp_processor_id();
@@ -302,18 +331,8 @@ asmlinkage void __init sh_cpu_init(void)
detect_cache_shape();
}
- /* Disable the FPU */
- if (fpu_disabled) {
- printk("FPU Disabled\n");
- current_cpu_data.flags &= ~CPU_HAS_FPU;
- }
-
- /* FPU initialization */
- disable_fpu();
- if ((current_cpu_data.flags & CPU_HAS_FPU)) {
- current_thread_info()->status &= ~TS_USEDFPU;
- clear_used_math();
- }
+ fpu_init();
+ dsp_init();
/*
* Initialize the per-CPU ASID cache very early, since the
@@ -321,18 +340,24 @@ asmlinkage void __init sh_cpu_init(void)
*/
current_cpu_data.asid_cache = NO_CONTEXT;
-#ifdef CONFIG_SH_DSP
- /* Probe for DSP */
- dsp_init();
-
- /* Disable the DSP */
- if (dsp_disabled) {
- printk("DSP Disabled\n");
- current_cpu_data.flags &= ~CPU_HAS_DSP;
- release_dsp();
- }
-#endif
-
speculative_execution_init();
expmask_init();
+
+ /* Do the rest of the boot processor setup */
+ if (raw_smp_processor_id() == 0) {
+ /* Save off the BIOS VBR, if there is one */
+ sh_bios_vbr_init();
+
+ /*
+ * Setup VBR for boot CPU. Secondary CPUs do this through
+ * start_secondary().
+ */
+ per_cpu_trap_init();
+
+ /*
+ * Boot processor to setup the FP and extended state
+ * context info.
+ */
+ init_thread_xstate();
+ }
}