[MIPS] tlbex.c: Cleanup __init usage.
Signed-off-by: Franck Bui-Huu <fbuihuu@gmail.com> Signed-off-by: Ralf Baechle <ralf@linux-mips.org>
This commit is contained in:
parent
2c4d13570d
commit
aaf76a3245
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@ -66,7 +66,7 @@ static inline int __maybe_unused r10000_llsc_war(void)
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* why; it's not an issue caused by the core RTL.
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*
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*/
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static __init int __attribute__((unused)) m4kc_tlbp_war(void)
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static int __init m4kc_tlbp_war(void)
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{
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return (current_cpu_data.processor_id & 0xffff00) ==
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(PRID_COMP_MIPS | PRID_IMP_4KC);
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@ -140,7 +140,7 @@ struct insn {
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| (e) << RE_SH \
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| (f) << FUNC_SH)
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static __initdata struct insn insn_table[] = {
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static struct insn insn_table[] __initdata = {
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{ insn_addiu, M(addiu_op, 0, 0, 0, 0, 0), RS | RT | SIMM },
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{ insn_addu, M(spec_op, 0, 0, 0, 0, addu_op), RS | RT | RD },
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{ insn_and, M(spec_op, 0, 0, 0, 0, and_op), RS | RT | RD },
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@ -193,7 +193,7 @@ static __initdata struct insn insn_table[] = {
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#undef M
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static __init u32 build_rs(u32 arg)
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static u32 __init build_rs(u32 arg)
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{
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if (arg & ~RS_MASK)
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printk(KERN_WARNING "TLB synthesizer field overflow\n");
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@ -201,7 +201,7 @@ static __init u32 build_rs(u32 arg)
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return (arg & RS_MASK) << RS_SH;
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}
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static __init u32 build_rt(u32 arg)
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static u32 __init build_rt(u32 arg)
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{
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if (arg & ~RT_MASK)
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printk(KERN_WARNING "TLB synthesizer field overflow\n");
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@ -209,7 +209,7 @@ static __init u32 build_rt(u32 arg)
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return (arg & RT_MASK) << RT_SH;
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}
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static __init u32 build_rd(u32 arg)
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static u32 __init build_rd(u32 arg)
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{
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if (arg & ~RD_MASK)
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printk(KERN_WARNING "TLB synthesizer field overflow\n");
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@ -217,7 +217,7 @@ static __init u32 build_rd(u32 arg)
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return (arg & RD_MASK) << RD_SH;
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}
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static __init u32 build_re(u32 arg)
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static u32 __init build_re(u32 arg)
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{
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if (arg & ~RE_MASK)
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printk(KERN_WARNING "TLB synthesizer field overflow\n");
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@ -225,7 +225,7 @@ static __init u32 build_re(u32 arg)
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return (arg & RE_MASK) << RE_SH;
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}
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static __init u32 build_simm(s32 arg)
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static u32 __init build_simm(s32 arg)
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{
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if (arg > 0x7fff || arg < -0x8000)
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printk(KERN_WARNING "TLB synthesizer field overflow\n");
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@ -233,7 +233,7 @@ static __init u32 build_simm(s32 arg)
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return arg & 0xffff;
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}
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static __init u32 build_uimm(u32 arg)
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static u32 __init build_uimm(u32 arg)
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{
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if (arg & ~IMM_MASK)
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printk(KERN_WARNING "TLB synthesizer field overflow\n");
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@ -241,7 +241,7 @@ static __init u32 build_uimm(u32 arg)
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return arg & IMM_MASK;
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}
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static __init u32 build_bimm(s32 arg)
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static u32 __init build_bimm(s32 arg)
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{
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if (arg > 0x1ffff || arg < -0x20000)
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printk(KERN_WARNING "TLB synthesizer field overflow\n");
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@ -252,7 +252,7 @@ static __init u32 build_bimm(s32 arg)
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return ((arg < 0) ? (1 << 15) : 0) | ((arg >> 2) & 0x7fff);
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}
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static __init u32 build_jimm(u32 arg)
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static u32 __init build_jimm(u32 arg)
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{
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if (arg & ~((JIMM_MASK) << 2))
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printk(KERN_WARNING "TLB synthesizer field overflow\n");
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@ -260,7 +260,7 @@ static __init u32 build_jimm(u32 arg)
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return (arg >> 2) & JIMM_MASK;
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}
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static __init u32 build_func(u32 arg)
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static u32 __init build_func(u32 arg)
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{
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if (arg & ~FUNC_MASK)
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printk(KERN_WARNING "TLB synthesizer field overflow\n");
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@ -268,7 +268,7 @@ static __init u32 build_func(u32 arg)
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return arg & FUNC_MASK;
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}
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static __init u32 build_set(u32 arg)
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static u32 __init build_set(u32 arg)
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{
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if (arg & ~SET_MASK)
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printk(KERN_WARNING "TLB synthesizer field overflow\n");
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@ -315,69 +315,69 @@ static void __init build_insn(u32 **buf, enum opcode opc, ...)
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}
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#define I_u1u2u3(op) \
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static inline void __init i##op(u32 **buf, unsigned int a, \
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static inline void i##op(u32 **buf, unsigned int a, \
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unsigned int b, unsigned int c) \
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{ \
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build_insn(buf, insn##op, a, b, c); \
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}
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#define I_u2u1u3(op) \
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static inline void __init i##op(u32 **buf, unsigned int a, \
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static inline void i##op(u32 **buf, unsigned int a, \
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unsigned int b, unsigned int c) \
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{ \
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build_insn(buf, insn##op, b, a, c); \
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}
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#define I_u3u1u2(op) \
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static inline void __init i##op(u32 **buf, unsigned int a, \
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static inline void i##op(u32 **buf, unsigned int a, \
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unsigned int b, unsigned int c) \
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{ \
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build_insn(buf, insn##op, b, c, a); \
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}
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#define I_u1u2s3(op) \
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static inline void __init i##op(u32 **buf, unsigned int a, \
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static inline void i##op(u32 **buf, unsigned int a, \
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unsigned int b, signed int c) \
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{ \
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build_insn(buf, insn##op, a, b, c); \
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}
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#define I_u2s3u1(op) \
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static inline void __init i##op(u32 **buf, unsigned int a, \
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static inline void i##op(u32 **buf, unsigned int a, \
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signed int b, unsigned int c) \
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{ \
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build_insn(buf, insn##op, c, a, b); \
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}
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#define I_u2u1s3(op) \
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static inline void __init i##op(u32 **buf, unsigned int a, \
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static inline void i##op(u32 **buf, unsigned int a, \
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unsigned int b, signed int c) \
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{ \
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build_insn(buf, insn##op, b, a, c); \
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}
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#define I_u1u2(op) \
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static inline void __init i##op(u32 **buf, unsigned int a, \
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static inline void i##op(u32 **buf, unsigned int a, \
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unsigned int b) \
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{ \
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build_insn(buf, insn##op, a, b); \
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}
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#define I_u1s2(op) \
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static inline void __init i##op(u32 **buf, unsigned int a, \
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static inline void i##op(u32 **buf, unsigned int a, \
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signed int b) \
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{ \
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build_insn(buf, insn##op, a, b); \
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}
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#define I_u1(op) \
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static inline void __init i##op(u32 **buf, unsigned int a) \
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static inline void i##op(u32 **buf, unsigned int a) \
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{ \
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build_insn(buf, insn##op, a); \
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}
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#define I_0(op) \
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static inline void __init i##op(u32 **buf) \
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static inline void i##op(u32 **buf) \
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{ \
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build_insn(buf, insn##op); \
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}
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@ -457,7 +457,7 @@ struct label {
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enum label_id lab;
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};
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static __init void build_label(struct label **lab, u32 *addr,
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static void __init build_label(struct label **lab, u32 *addr,
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enum label_id l)
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{
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(*lab)->addr = addr;
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@ -526,34 +526,34 @@ L_LA(_r3000_write_probe_fail)
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#define i_ehb(buf) i_sll(buf, 0, 0, 3)
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#ifdef CONFIG_64BIT
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static __init int __maybe_unused in_compat_space_p(long addr)
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static int __init __maybe_unused in_compat_space_p(long addr)
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{
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/* Is this address in 32bit compat space? */
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return (((addr) & 0xffffffff00000000L) == 0xffffffff00000000L);
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}
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static __init int __maybe_unused rel_highest(long val)
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static int __init __maybe_unused rel_highest(long val)
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{
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return ((((val + 0x800080008000L) >> 48) & 0xffff) ^ 0x8000) - 0x8000;
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}
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static __init int __maybe_unused rel_higher(long val)
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static int __init __maybe_unused rel_higher(long val)
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{
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return ((((val + 0x80008000L) >> 32) & 0xffff) ^ 0x8000) - 0x8000;
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}
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#endif
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static __init int rel_hi(long val)
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static int __init rel_hi(long val)
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{
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return ((((val + 0x8000L) >> 16) & 0xffff) ^ 0x8000) - 0x8000;
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}
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static __init int rel_lo(long val)
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static int __init rel_lo(long val)
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{
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return ((val & 0xffff) ^ 0x8000) - 0x8000;
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}
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static __init void i_LA_mostly(u32 **buf, unsigned int rs, long addr)
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static void __init i_LA_mostly(u32 **buf, unsigned int rs, long addr)
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{
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#ifdef CONFIG_64BIT
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if (!in_compat_space_p(addr)) {
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@ -571,7 +571,7 @@ static __init void i_LA_mostly(u32 **buf, unsigned int rs, long addr)
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i_lui(buf, rs, rel_hi(addr));
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}
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static __init void __maybe_unused i_LA(u32 **buf, unsigned int rs,
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static void __init __maybe_unused i_LA(u32 **buf, unsigned int rs,
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long addr)
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{
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i_LA_mostly(buf, rs, addr);
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@ -589,7 +589,7 @@ struct reloc {
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enum label_id lab;
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};
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static __init void r_mips_pc16(struct reloc **rel, u32 *addr,
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static void __init r_mips_pc16(struct reloc **rel, u32 *addr,
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enum label_id l)
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{
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(*rel)->addr = addr;
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@ -614,7 +614,7 @@ static inline void __resolve_relocs(struct reloc *rel, struct label *lab)
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}
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}
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static __init void resolve_relocs(struct reloc *rel, struct label *lab)
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static void __init resolve_relocs(struct reloc *rel, struct label *lab)
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{
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struct label *l;
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@ -624,7 +624,7 @@ static __init void resolve_relocs(struct reloc *rel, struct label *lab)
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__resolve_relocs(rel, l);
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}
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static __init void move_relocs(struct reloc *rel, u32 *first, u32 *end,
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static void __init move_relocs(struct reloc *rel, u32 *first, u32 *end,
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long off)
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{
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for (; rel->lab != label_invalid; rel++)
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@ -632,7 +632,7 @@ static __init void move_relocs(struct reloc *rel, u32 *first, u32 *end,
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rel->addr += off;
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}
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static __init void move_labels(struct label *lab, u32 *first, u32 *end,
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static void __init move_labels(struct label *lab, u32 *first, u32 *end,
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long off)
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{
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for (; lab->lab != label_invalid; lab++)
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@ -640,7 +640,7 @@ static __init void move_labels(struct label *lab, u32 *first, u32 *end,
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lab->addr += off;
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}
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static __init void copy_handler(struct reloc *rel, struct label *lab,
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static void __init copy_handler(struct reloc *rel, struct label *lab,
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u32 *first, u32 *end, u32 *target)
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{
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long off = (long)(target - first);
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@ -651,7 +651,7 @@ static __init void copy_handler(struct reloc *rel, struct label *lab,
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move_labels(lab, first, end, off);
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}
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static __init int __maybe_unused insn_has_bdelay(struct reloc *rel,
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static int __init __maybe_unused insn_has_bdelay(struct reloc *rel,
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u32 *addr)
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{
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for (; rel->lab != label_invalid; rel++) {
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@ -743,11 +743,11 @@ il_bgez(u32 **p, struct reloc **r, unsigned int reg, enum label_id l)
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* We deliberately chose a buffer size of 128, so we won't scribble
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* over anything important on overflow before we panic.
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*/
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static __initdata u32 tlb_handler[128];
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static u32 tlb_handler[128] __initdata;
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/* simply assume worst case size for labels and relocs */
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static __initdata struct label labels[128];
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static __initdata struct reloc relocs[128];
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static struct label labels[128] __initdata;
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static struct reloc relocs[128] __initdata;
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/*
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* The R3000 TLB handler is simple.
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@ -801,7 +801,7 @@ static void __init build_r3000_tlb_refill_handler(void)
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* other one.To keep things simple, we first assume linear space,
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* then we relocate it to the final handler layout as needed.
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*/
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static __initdata u32 final_handler[64];
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static u32 final_handler[64] __initdata;
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/*
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* Hazards
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@ -825,7 +825,7 @@ static __initdata u32 final_handler[64];
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*
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* As if we MIPS hackers wouldn't know how to nop pipelines happy ...
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*/
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static __init void __maybe_unused build_tlb_probe_entry(u32 **p)
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static void __init __maybe_unused build_tlb_probe_entry(u32 **p)
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{
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switch (current_cpu_type()) {
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/* Found by experiment: R4600 v2.0 needs this, too. */
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@ -849,7 +849,7 @@ static __init void __maybe_unused build_tlb_probe_entry(u32 **p)
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*/
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enum tlb_write_entry { tlb_random, tlb_indexed };
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static __init void build_tlb_write_entry(u32 **p, struct label **l,
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static void __init build_tlb_write_entry(u32 **p, struct label **l,
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struct reloc **r,
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enum tlb_write_entry wmode)
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{
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@ -993,7 +993,7 @@ static __init void build_tlb_write_entry(u32 **p, struct label **l,
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* TMP and PTR are scratch.
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* TMP will be clobbered, PTR will hold the pmd entry.
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*/
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static __init void
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static void __init
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build_get_pmde64(u32 **p, struct label **l, struct reloc **r,
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unsigned int tmp, unsigned int ptr)
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{
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@ -1054,7 +1054,7 @@ build_get_pmde64(u32 **p, struct label **l, struct reloc **r,
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* BVADDR is the faulting address, PTR is scratch.
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* PTR will hold the pgd for vmalloc.
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*/
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static __init void
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static void __init
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build_get_pgd_vmalloc64(u32 **p, struct label **l, struct reloc **r,
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unsigned int bvaddr, unsigned int ptr)
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{
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@ -1118,7 +1118,7 @@ build_get_pgd_vmalloc64(u32 **p, struct label **l, struct reloc **r,
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* TMP and PTR are scratch.
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* TMP will be clobbered, PTR will hold the pgd entry.
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*/
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static __init void __maybe_unused
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static void __init __maybe_unused
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build_get_pgde32(u32 **p, unsigned int tmp, unsigned int ptr)
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{
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long pgdc = (long)pgd_current;
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@ -1153,7 +1153,7 @@ build_get_pgde32(u32 **p, unsigned int tmp, unsigned int ptr)
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#endif /* !CONFIG_64BIT */
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static __init void build_adjust_context(u32 **p, unsigned int ctx)
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static void __init build_adjust_context(u32 **p, unsigned int ctx)
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{
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unsigned int shift = 4 - (PTE_T_LOG2 + 1) + PAGE_SHIFT - 12;
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unsigned int mask = (PTRS_PER_PTE / 2 - 1) << (PTE_T_LOG2 + 1);
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@ -1179,7 +1179,7 @@ static __init void build_adjust_context(u32 **p, unsigned int ctx)
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i_andi(p, ctx, ctx, mask);
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}
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static __init void build_get_ptep(u32 **p, unsigned int tmp, unsigned int ptr)
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static void __init build_get_ptep(u32 **p, unsigned int tmp, unsigned int ptr)
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{
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/*
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* Bug workaround for the Nevada. It seems as if under certain
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@ -1204,7 +1204,7 @@ static __init void build_get_ptep(u32 **p, unsigned int tmp, unsigned int ptr)
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i_ADDU(p, ptr, ptr, tmp); /* add in offset */
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}
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static __init void build_update_entries(u32 **p, unsigned int tmp,
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static void __init build_update_entries(u32 **p, unsigned int tmp,
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unsigned int ptep)
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{
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/*
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