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Line 40... Line 40...
40
#include <config.h>
40
#include <config.h>
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41
 
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#ifdef CONFIG_TSB
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#ifdef CONFIG_TSB
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#include <arch/mm/tsb.h>
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#include <arch/mm/tsb.h>
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#include <arch/memstr.h>
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#include <arch/memstr.h>
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#include <synch/mutex.h>
-
 
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#include <arch/asm.h>
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#include <arch/asm.h>
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#include <mm/frame.h>
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#include <mm/frame.h>
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#include <bitops.h>
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#include <bitops.h>
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#include <macros.h>
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#include <macros.h>
50
#endif /* CONFIG_TSB */
49
#endif /* CONFIG_TSB */
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}
58
}
60
 
59
 
61
int as_constructor_arch(as_t *as, int flags)
60
int as_constructor_arch(as_t *as, int flags)
62
{
61
{
63
#ifdef CONFIG_TSB
62
#ifdef CONFIG_TSB
-
 
63
    /*
-
 
64
     * The order must be calculated with respect to the emulated
-
 
65
     * 16K page size.
-
 
66
     */
64
    int order = fnzb32(((ITSB_ENTRY_COUNT + DTSB_ENTRY_COUNT) *
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    int order = fnzb32(((ITSB_ENTRY_COUNT + DTSB_ENTRY_COUNT) *
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        sizeof(tsb_entry_t)) >> FRAME_WIDTH);
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        sizeof(tsb_entry_t)) >> FRAME_WIDTH);
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    uintptr_t tsb = (uintptr_t) frame_alloc(order, flags | FRAME_KA);
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    uintptr_t tsb = (uintptr_t) frame_alloc(order, flags | FRAME_KA);
67
 
70
 
68
    if (!tsb)
71
    if (!tsb)
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        return -1;
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        return -1;
70
 
73
 
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    as->arch.itsb = (tsb_entry_t *) tsb;
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    as->arch.itsb = (tsb_entry_t *) tsb;
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    as->arch.dtsb = (tsb_entry_t *) (tsb + ITSB_ENTRY_COUNT *
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    as->arch.dtsb = (tsb_entry_t *) (tsb + ITSB_ENTRY_COUNT *
73
        sizeof(tsb_entry_t));
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        sizeof(tsb_entry_t));
74
    memsetb((uintptr_t) as->arch.itsb, (ITSB_ENTRY_COUNT + DTSB_ENTRY_COUNT)
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    memsetb((uintptr_t) as->arch.itsb,
75
        * sizeof(tsb_entry_t), 0);
78
        (ITSB_ENTRY_COUNT + DTSB_ENTRY_COUNT) * sizeof(tsb_entry_t), 0);
76
#endif
79
#endif
77
    return 0;
80
    return 0;
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}
81
}
79
 
82
 
80
int as_destructor_arch(as_t *as)
83
int as_destructor_arch(as_t *as)
81
{
84
{
82
#ifdef CONFIG_TSB
85
#ifdef CONFIG_TSB
-
 
86
    /*
-
 
87
     * The count must be calculated with respect to the emualted 16K page
-
 
88
     * size.
-
 
89
     */
83
    count_t cnt = ((ITSB_ENTRY_COUNT + DTSB_ENTRY_COUNT) *
90
    count_t cnt = ((ITSB_ENTRY_COUNT + DTSB_ENTRY_COUNT) *
84
        sizeof(tsb_entry_t)) >> FRAME_WIDTH;
91
        sizeof(tsb_entry_t)) >> FRAME_WIDTH;
85
    frame_free(KA2PA((uintptr_t) as->arch.itsb));
92
    frame_free(KA2PA((uintptr_t) as->arch.itsb));
86
    return cnt;
93
    return cnt;
87
#else
94
#else
88
    return 0;
95
    return 0;
89
#endif
96
#endif
90
}
97
}
91
 
98
 
92
int as_create_arch(as_t *as, int flags)
99
int as_create_arch(as_t *as, int flags)
93
{
100
{
94
#ifdef CONFIG_TSB
101
#ifdef CONFIG_TSB
95
    ipl_t ipl;
-
 
96
 
-
 
97
    ipl = interrupts_disable();
-
 
98
    mutex_lock_active(&as->lock);   /* completely unnecessary, but polite */
-
 
99
    tsb_invalidate(as, 0, (count_t) -1);
102
    tsb_invalidate(as, 0, (count_t) -1);
100
    mutex_unlock(&as->lock);
-
 
101
    interrupts_restore(ipl);
-
 
102
#endif
103
#endif
103
    return 0;
104
    return 0;
104
}
105
}
105
 
106
 
106
/** Perform sparc64-specific tasks when an address space becomes active on the
107
/** Perform sparc64-specific tasks when an address space becomes active on the
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void as_install_arch(as_t *as)
114
void as_install_arch(as_t *as)
114
{
115
{
115
    tlb_context_reg_t ctx;
116
    tlb_context_reg_t ctx;
116
   
117
   
117
    /*
118
    /*
118
     * Note that we don't lock the address space.
119
     * Note that we don't and may not lock the address space. That's ok
119
     * That's correct - we can afford it here
-
 
120
     * because we only read members that are
120
     * since we only read members that are currently read-only.
-
 
121
     *
121
     * currently read-only.
122
     * Moreover, the as->asid is protected by asidlock, which is being held.
122
     */
123
     */
123
   
124
   
124
    /*
125
    /*
125
     * Write ASID to secondary context register.
126
     * Write ASID to secondary context register. The primary context
126
     * The primary context register has to be set
-
 
127
     * from TL>0 so it will be filled from the
127
     * register has to be set from TL>0 so it will be filled from the
128
     * secondary context register from the TL=1
128
     * secondary context register from the TL=1 code just before switch to
129
     * code just before switch to userspace.
129
     * userspace.
130
     */
130
     */
131
    ctx.v = 0;
131
    ctx.v = 0;
132
    ctx.context = as->asid;
132
    ctx.context = as->asid;
133
    mmu_secondary_context_write(ctx.v);
133
    mmu_secondary_context_write(ctx.v);
134
 
134
 
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137
 
137
 
138
    ASSERT(as->arch.itsb && as->arch.dtsb);
138
    ASSERT(as->arch.itsb && as->arch.dtsb);
139
 
139
 
140
    uintptr_t tsb = (uintptr_t) as->arch.itsb;
140
    uintptr_t tsb = (uintptr_t) as->arch.itsb;
141
       
141
       
142
    if (!overlaps(tsb, 8 * PAGE_SIZE, base, 1 << KERNEL_PAGE_WIDTH)) {
142
    if (!overlaps(tsb, 8 * MMU_PAGE_SIZE, base, 1 << KERNEL_PAGE_WIDTH)) {
143
        /*
143
        /*
144
         * TSBs were allocated from memory not covered
144
         * TSBs were allocated from memory not covered
145
         * by the locked 4M kernel DTLB entry. We need
145
         * by the locked 4M kernel DTLB entry. We need
146
         * to map both TSBs explicitly.
146
         * to map both TSBs explicitly.
147
         */
147
         */
Line 156... Line 156...
156
       
156
       
157
    tsb_base.value = 0;
157
    tsb_base.value = 0;
158
    tsb_base.size = TSB_SIZE;
158
    tsb_base.size = TSB_SIZE;
159
    tsb_base.split = 0;
159
    tsb_base.split = 0;
160
 
160
 
161
    tsb_base.base = ((uintptr_t) as->arch.itsb) >> PAGE_WIDTH;
161
    tsb_base.base = ((uintptr_t) as->arch.itsb) >> MMU_PAGE_WIDTH;
162
    itsb_base_write(tsb_base.value);
162
    itsb_base_write(tsb_base.value);
163
    tsb_base.base = ((uintptr_t) as->arch.dtsb) >> PAGE_WIDTH;
163
    tsb_base.base = ((uintptr_t) as->arch.dtsb) >> MMU_PAGE_WIDTH;
164
    dtsb_base_write(tsb_base.value);
164
    dtsb_base_write(tsb_base.value);
165
#endif
165
#endif
166
}
166
}
167
 
167
 
168
/** Perform sparc64-specific tasks when an address space is removed from the
168
/** Perform sparc64-specific tasks when an address space is removed from the
Line 174... Line 174...
174
 */
174
 */
175
void as_deinstall_arch(as_t *as)
175
void as_deinstall_arch(as_t *as)
176
{
176
{
177
 
177
 
178
    /*
178
    /*
179
     * Note that we don't lock the address space.
179
     * Note that we don't and may not lock the address space. That's ok
180
     * That's correct - we can afford it here
-
 
181
     * because we only read members that are
180
     * since we only read members that are currently read-only.
-
 
181
     *
182
     * currently read-only.
182
     * Moreover, the as->asid is protected by asidlock, which is being held.
183
     */
183
     */
184
 
184
 
185
#ifdef CONFIG_TSB
185
#ifdef CONFIG_TSB
186
    uintptr_t base = ALIGN_DOWN(config.base, 1 << KERNEL_PAGE_WIDTH);
186
    uintptr_t base = ALIGN_DOWN(config.base, 1 << KERNEL_PAGE_WIDTH);
187
 
187
 
188
    ASSERT(as->arch.itsb && as->arch.dtsb);
188
    ASSERT(as->arch.itsb && as->arch.dtsb);
189
 
189
 
190
    uintptr_t tsb = (uintptr_t) as->arch.itsb;
190
    uintptr_t tsb = (uintptr_t) as->arch.itsb;
191
       
191
       
192
    if (!overlaps(tsb, 8 * PAGE_SIZE, base, 1 << KERNEL_PAGE_WIDTH)) {
192
    if (!overlaps(tsb, 8 * MMU_PAGE_SIZE, base, 1 << KERNEL_PAGE_WIDTH)) {
193
        /*
193
        /*
194
         * TSBs were allocated from memory not covered
194
         * TSBs were allocated from memory not covered
195
         * by the locked 4M kernel DTLB entry. We need
195
         * by the locked 4M kernel DTLB entry. We need
196
         * to demap the entry installed by as_install_arch().
196
         * to demap the entry installed by as_install_arch().
197
         */
197
         */