x86: cpu architecture debug code, build fix, cleanup
[firewire-audio.git] / arch / x86 / include / asm / desc.h
blob5623c50d67b268a00c10dc60f8a5013f04bb28aa
1 #ifndef _ASM_X86_DESC_H
2 #define _ASM_X86_DESC_H
4 #ifndef __ASSEMBLY__
5 #include <asm/desc_defs.h>
6 #include <asm/ldt.h>
7 #include <asm/mmu.h>
8 #include <linux/smp.h>
10 static inline void fill_ldt(struct desc_struct *desc,
11 const struct user_desc *info)
13 desc->limit0 = info->limit & 0x0ffff;
14 desc->base0 = info->base_addr & 0x0000ffff;
16 desc->base1 = (info->base_addr & 0x00ff0000) >> 16;
17 desc->type = (info->read_exec_only ^ 1) << 1;
18 desc->type |= info->contents << 2;
19 desc->s = 1;
20 desc->dpl = 0x3;
21 desc->p = info->seg_not_present ^ 1;
22 desc->limit = (info->limit & 0xf0000) >> 16;
23 desc->avl = info->useable;
24 desc->d = info->seg_32bit;
25 desc->g = info->limit_in_pages;
26 desc->base2 = (info->base_addr & 0xff000000) >> 24;
28 * Don't allow setting of the lm bit. It is useless anyway
29 * because 64bit system calls require __USER_CS:
31 desc->l = 0;
34 extern struct desc_ptr idt_descr;
35 extern gate_desc idt_table[];
37 struct gdt_page {
38 struct desc_struct gdt[GDT_ENTRIES];
39 } __attribute__((aligned(PAGE_SIZE)));
40 DECLARE_PER_CPU(struct gdt_page, gdt_page);
42 static inline struct desc_struct *get_cpu_gdt_table(unsigned int cpu)
44 return per_cpu(gdt_page, cpu).gdt;
47 #ifdef CONFIG_X86_64
49 static inline void pack_gate(gate_desc *gate, unsigned type, unsigned long func,
50 unsigned dpl, unsigned ist, unsigned seg)
52 gate->offset_low = PTR_LOW(func);
53 gate->segment = __KERNEL_CS;
54 gate->ist = ist;
55 gate->p = 1;
56 gate->dpl = dpl;
57 gate->zero0 = 0;
58 gate->zero1 = 0;
59 gate->type = type;
60 gate->offset_middle = PTR_MIDDLE(func);
61 gate->offset_high = PTR_HIGH(func);
64 #else
65 static inline void pack_gate(gate_desc *gate, unsigned char type,
66 unsigned long base, unsigned dpl, unsigned flags,
67 unsigned short seg)
69 gate->a = (seg << 16) | (base & 0xffff);
70 gate->b = (base & 0xffff0000) |
71 (((0x80 | type | (dpl << 5)) & 0xff) << 8);
74 #endif
76 static inline int desc_empty(const void *ptr)
78 const u32 *desc = ptr;
79 return !(desc[0] | desc[1]);
82 #ifdef CONFIG_PARAVIRT
83 #include <asm/paravirt.h>
84 #else
85 #define load_TR_desc() native_load_tr_desc()
86 #define load_gdt(dtr) native_load_gdt(dtr)
87 #define load_idt(dtr) native_load_idt(dtr)
88 #define load_tr(tr) asm volatile("ltr %0"::"m" (tr))
89 #define load_ldt(ldt) asm volatile("lldt %0"::"m" (ldt))
91 #define store_gdt(dtr) native_store_gdt(dtr)
92 #define store_idt(dtr) native_store_idt(dtr)
93 #define store_tr(tr) (tr = native_store_tr())
95 #define load_TLS(t, cpu) native_load_tls(t, cpu)
96 #define set_ldt native_set_ldt
98 #define write_ldt_entry(dt, entry, desc) \
99 native_write_ldt_entry(dt, entry, desc)
100 #define write_gdt_entry(dt, entry, desc, type) \
101 native_write_gdt_entry(dt, entry, desc, type)
102 #define write_idt_entry(dt, entry, g) \
103 native_write_idt_entry(dt, entry, g)
105 static inline void paravirt_alloc_ldt(struct desc_struct *ldt, unsigned entries)
109 static inline void paravirt_free_ldt(struct desc_struct *ldt, unsigned entries)
112 #endif /* CONFIG_PARAVIRT */
114 #define store_ldt(ldt) asm("sldt %0" : "=m"(ldt))
116 static inline void native_write_idt_entry(gate_desc *idt, int entry,
117 const gate_desc *gate)
119 memcpy(&idt[entry], gate, sizeof(*gate));
122 static inline void native_write_ldt_entry(struct desc_struct *ldt, int entry,
123 const void *desc)
125 memcpy(&ldt[entry], desc, 8);
128 static inline void native_write_gdt_entry(struct desc_struct *gdt, int entry,
129 const void *desc, int type)
131 unsigned int size;
132 switch (type) {
133 case DESC_TSS:
134 size = sizeof(tss_desc);
135 break;
136 case DESC_LDT:
137 size = sizeof(ldt_desc);
138 break;
139 default:
140 size = sizeof(struct desc_struct);
141 break;
143 memcpy(&gdt[entry], desc, size);
146 static inline void pack_descriptor(struct desc_struct *desc, unsigned long base,
147 unsigned long limit, unsigned char type,
148 unsigned char flags)
150 desc->a = ((base & 0xffff) << 16) | (limit & 0xffff);
151 desc->b = (base & 0xff000000) | ((base & 0xff0000) >> 16) |
152 (limit & 0x000f0000) | ((type & 0xff) << 8) |
153 ((flags & 0xf) << 20);
154 desc->p = 1;
158 static inline void set_tssldt_descriptor(void *d, unsigned long addr,
159 unsigned type, unsigned size)
161 #ifdef CONFIG_X86_64
162 struct ldttss_desc64 *desc = d;
163 memset(desc, 0, sizeof(*desc));
164 desc->limit0 = size & 0xFFFF;
165 desc->base0 = PTR_LOW(addr);
166 desc->base1 = PTR_MIDDLE(addr) & 0xFF;
167 desc->type = type;
168 desc->p = 1;
169 desc->limit1 = (size >> 16) & 0xF;
170 desc->base2 = (PTR_MIDDLE(addr) >> 8) & 0xFF;
171 desc->base3 = PTR_HIGH(addr);
172 #else
173 pack_descriptor((struct desc_struct *)d, addr, size, 0x80 | type, 0);
174 #endif
177 static inline void __set_tss_desc(unsigned cpu, unsigned int entry, void *addr)
179 struct desc_struct *d = get_cpu_gdt_table(cpu);
180 tss_desc tss;
183 * sizeof(unsigned long) coming from an extra "long" at the end
184 * of the iobitmap. See tss_struct definition in processor.h
186 * -1? seg base+limit should be pointing to the address of the
187 * last valid byte
189 set_tssldt_descriptor(&tss, (unsigned long)addr, DESC_TSS,
190 IO_BITMAP_OFFSET + IO_BITMAP_BYTES +
191 sizeof(unsigned long) - 1);
192 write_gdt_entry(d, entry, &tss, DESC_TSS);
195 #define set_tss_desc(cpu, addr) __set_tss_desc(cpu, GDT_ENTRY_TSS, addr)
197 static inline void native_set_ldt(const void *addr, unsigned int entries)
199 if (likely(entries == 0))
200 asm volatile("lldt %w0"::"q" (0));
201 else {
202 unsigned cpu = smp_processor_id();
203 ldt_desc ldt;
205 set_tssldt_descriptor(&ldt, (unsigned long)addr, DESC_LDT,
206 entries * LDT_ENTRY_SIZE - 1);
207 write_gdt_entry(get_cpu_gdt_table(cpu), GDT_ENTRY_LDT,
208 &ldt, DESC_LDT);
209 asm volatile("lldt %w0"::"q" (GDT_ENTRY_LDT*8));
213 static inline void native_load_tr_desc(void)
215 asm volatile("ltr %w0"::"q" (GDT_ENTRY_TSS*8));
218 static inline void native_load_gdt(const struct desc_ptr *dtr)
220 asm volatile("lgdt %0"::"m" (*dtr));
223 static inline void native_load_idt(const struct desc_ptr *dtr)
225 asm volatile("lidt %0"::"m" (*dtr));
228 static inline void native_store_gdt(struct desc_ptr *dtr)
230 asm volatile("sgdt %0":"=m" (*dtr));
233 static inline void native_store_idt(struct desc_ptr *dtr)
235 asm volatile("sidt %0":"=m" (*dtr));
238 static inline unsigned long native_store_tr(void)
240 unsigned long tr;
241 asm volatile("str %0":"=r" (tr));
242 return tr;
245 static inline void native_load_tls(struct thread_struct *t, unsigned int cpu)
247 unsigned int i;
248 struct desc_struct *gdt = get_cpu_gdt_table(cpu);
250 for (i = 0; i < GDT_ENTRY_TLS_ENTRIES; i++)
251 gdt[GDT_ENTRY_TLS_MIN + i] = t->tls_array[i];
254 #define _LDT_empty(info) \
255 ((info)->base_addr == 0 && \
256 (info)->limit == 0 && \
257 (info)->contents == 0 && \
258 (info)->read_exec_only == 1 && \
259 (info)->seg_32bit == 0 && \
260 (info)->limit_in_pages == 0 && \
261 (info)->seg_not_present == 1 && \
262 (info)->useable == 0)
264 #ifdef CONFIG_X86_64
265 #define LDT_empty(info) (_LDT_empty(info) && ((info)->lm == 0))
266 #else
267 #define LDT_empty(info) (_LDT_empty(info))
268 #endif
270 static inline void clear_LDT(void)
272 set_ldt(NULL, 0);
276 * load one particular LDT into the current CPU
278 static inline void load_LDT_nolock(mm_context_t *pc)
280 set_ldt(pc->ldt, pc->size);
283 static inline void load_LDT(mm_context_t *pc)
285 preempt_disable();
286 load_LDT_nolock(pc);
287 preempt_enable();
290 static inline unsigned long get_desc_base(const struct desc_struct *desc)
292 return desc->base0 | ((desc->base1) << 16) | ((desc->base2) << 24);
295 static inline unsigned long get_desc_limit(const struct desc_struct *desc)
297 return desc->limit0 | (desc->limit << 16);
300 static inline void _set_gate(int gate, unsigned type, void *addr,
301 unsigned dpl, unsigned ist, unsigned seg)
303 gate_desc s;
304 pack_gate(&s, type, (unsigned long)addr, dpl, ist, seg);
306 * does not need to be atomic because it is only done once at
307 * setup time
309 write_idt_entry(idt_table, gate, &s);
313 * This needs to use 'idt_table' rather than 'idt', and
314 * thus use the _nonmapped_ version of the IDT, as the
315 * Pentium F0 0F bugfix can have resulted in the mapped
316 * IDT being write-protected.
318 static inline void set_intr_gate(unsigned int n, void *addr)
320 BUG_ON((unsigned)n > 0xFF);
321 _set_gate(n, GATE_INTERRUPT, addr, 0, 0, __KERNEL_CS);
324 extern int first_system_vector;
325 /* used_vectors is BITMAP for irq is not managed by percpu vector_irq */
326 extern unsigned long used_vectors[];
328 static inline void alloc_system_vector(int vector)
330 if (!test_bit(vector, used_vectors)) {
331 set_bit(vector, used_vectors);
332 if (first_system_vector > vector)
333 first_system_vector = vector;
334 } else
335 BUG();
338 static inline void alloc_intr_gate(unsigned int n, void *addr)
340 alloc_system_vector(n);
341 set_intr_gate(n, addr);
345 * This routine sets up an interrupt gate at directory privilege level 3.
347 static inline void set_system_intr_gate(unsigned int n, void *addr)
349 BUG_ON((unsigned)n > 0xFF);
350 _set_gate(n, GATE_INTERRUPT, addr, 0x3, 0, __KERNEL_CS);
353 static inline void set_system_trap_gate(unsigned int n, void *addr)
355 BUG_ON((unsigned)n > 0xFF);
356 _set_gate(n, GATE_TRAP, addr, 0x3, 0, __KERNEL_CS);
359 static inline void set_trap_gate(unsigned int n, void *addr)
361 BUG_ON((unsigned)n > 0xFF);
362 _set_gate(n, GATE_TRAP, addr, 0, 0, __KERNEL_CS);
365 static inline void set_task_gate(unsigned int n, unsigned int gdt_entry)
367 BUG_ON((unsigned)n > 0xFF);
368 _set_gate(n, GATE_TASK, (void *)0, 0, 0, (gdt_entry<<3));
371 static inline void set_intr_gate_ist(int n, void *addr, unsigned ist)
373 BUG_ON((unsigned)n > 0xFF);
374 _set_gate(n, GATE_INTERRUPT, addr, 0, ist, __KERNEL_CS);
377 static inline void set_system_intr_gate_ist(int n, void *addr, unsigned ist)
379 BUG_ON((unsigned)n > 0xFF);
380 _set_gate(n, GATE_INTERRUPT, addr, 0x3, ist, __KERNEL_CS);
383 #else
385 * GET_DESC_BASE reads the descriptor base of the specified segment.
387 * Args:
388 * idx - descriptor index
389 * gdt - GDT pointer
390 * base - 32bit register to which the base will be written
391 * lo_w - lo word of the "base" register
392 * lo_b - lo byte of the "base" register
393 * hi_b - hi byte of the low word of the "base" register
395 * Example:
396 * GET_DESC_BASE(GDT_ENTRY_ESPFIX_SS, %ebx, %eax, %ax, %al, %ah)
397 * Will read the base address of GDT_ENTRY_ESPFIX_SS and put it into %eax.
399 #define GET_DESC_BASE(idx, gdt, base, lo_w, lo_b, hi_b) \
400 movb idx * 8 + 4(gdt), lo_b; \
401 movb idx * 8 + 7(gdt), hi_b; \
402 shll $16, base; \
403 movw idx * 8 + 2(gdt), lo_w;
406 #endif /* __ASSEMBLY__ */
408 #endif /* _ASM_X86_DESC_H */