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Rev | Author | Line No. | Line |
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1215 | decky | 1 | /* |
2071 | jermar | 2 | * Copyright (c) 2006 Martin Decky |
1215 | decky | 3 | * All rights reserved. |
4 | * |
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5 | * Redistribution and use in source and binary forms, with or without |
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6 | * modification, are permitted provided that the following conditions |
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7 | * are met: |
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8 | * |
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9 | * - Redistributions of source code must retain the above copyright |
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10 | * notice, this list of conditions and the following disclaimer. |
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11 | * - Redistributions in binary form must reproduce the above copyright |
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12 | * notice, this list of conditions and the following disclaimer in the |
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13 | * documentation and/or other materials provided with the distribution. |
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14 | * - The name of the author may not be used to endorse or promote products |
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15 | * derived from this software without specific prior written permission. |
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16 | * |
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17 | * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR |
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18 | * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES |
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19 | * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. |
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20 | * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, |
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21 | * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT |
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22 | * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, |
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23 | * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY |
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24 | * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT |
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25 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF |
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26 | * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
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27 | */ |
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28 | |||
1730 | decky | 29 | /** @addtogroup ppc32mm |
1702 | cejka | 30 | * @{ |
31 | */ |
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32 | /** @file |
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33 | */ |
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34 | |||
1215 | decky | 35 | #include <mm/tlb.h> |
1730 | decky | 36 | #include <arch/mm/tlb.h> |
37 | #include <arch/interrupt.h> |
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38 | #include <mm/as.h> |
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39 | #include <arch.h> |
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40 | #include <print.h> |
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41 | #include <symtab.h> |
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1215 | decky | 42 | |
43 | |||
1730 | decky | 44 | /** Try to find PTE for faulting address |
1215 | decky | 45 | * |
1730 | decky | 46 | * Try to find PTE for faulting address. |
47 | * The as->lock must be held on entry to this function |
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48 | * if lock is true. |
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1215 | decky | 49 | * |
3193 | jermar | 50 | * @param as Address space. |
51 | * @param lock Lock/unlock the address space. |
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52 | * @param badvaddr Faulting virtual address. |
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53 | * @param access Access mode that caused the fault. |
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54 | * @param istate Pointer to interrupted state. |
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55 | * @param pfrc Pointer to variable where as_page_fault() return code |
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56 | * will be stored. |
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57 | * @return PTE on success, NULL otherwise. |
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1730 | decky | 58 | * |
1215 | decky | 59 | */ |
3193 | jermar | 60 | static pte_t * |
61 | find_mapping_and_check(as_t *as, bool lock, uintptr_t badvaddr, int access, |
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62 | istate_t *istate, int *pfrc) |
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1730 | decky | 63 | { |
64 | /* |
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65 | * Check if the mapping exists in page tables. |
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66 | */ |
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67 | pte_t *pte = page_mapping_find(as, badvaddr); |
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68 | if ((pte) && (pte->p)) { |
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69 | /* |
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70 | * Mapping found in page tables. |
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71 | * Immediately succeed. |
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72 | */ |
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73 | return pte; |
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74 | } else { |
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75 | int rc; |
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76 | |||
77 | /* |
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78 | * Mapping not found in page tables. |
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79 | * Resort to higher-level page fault handler. |
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80 | */ |
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81 | page_table_unlock(as, lock); |
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82 | switch (rc = as_page_fault(badvaddr, access, istate)) { |
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3193 | jermar | 83 | case AS_PF_OK: |
84 | /* |
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85 | * The higher-level page fault handler succeeded, |
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86 | * The mapping ought to be in place. |
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87 | */ |
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88 | page_table_lock(as, lock); |
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89 | pte = page_mapping_find(as, badvaddr); |
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90 | ASSERT((pte) && (pte->p)); |
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91 | *pfrc = 0; |
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92 | return pte; |
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93 | case AS_PF_DEFER: |
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94 | page_table_lock(as, lock); |
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95 | *pfrc = rc; |
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96 | return NULL; |
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97 | case AS_PF_FAULT: |
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98 | page_table_lock(as, lock); |
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99 | *pfrc = rc; |
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100 | return NULL; |
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101 | default: |
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102 | panic("unexpected rc (%d)\n", rc); |
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1730 | decky | 103 | } |
104 | } |
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105 | } |
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106 | |||
107 | |||
1780 | jermar | 108 | static void pht_refill_fail(uintptr_t badvaddr, istate_t *istate) |
1730 | decky | 109 | { |
110 | char *symbol = ""; |
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111 | char *sym2 = ""; |
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112 | |||
113 | char *s = get_symtab_entry(istate->pc); |
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114 | if (s) |
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115 | symbol = s; |
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116 | s = get_symtab_entry(istate->lr); |
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117 | if (s) |
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118 | sym2 = s; |
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3193 | jermar | 119 | panic("%p: PHT Refill Exception at %p (%s<-%s)\n", badvaddr, |
120 | istate->pc, symbol, sym2); |
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1730 | decky | 121 | } |
122 | |||
123 | |||
1780 | jermar | 124 | static void pht_insert(const uintptr_t vaddr, const pfn_t pfn) |
1730 | decky | 125 | { |
1780 | jermar | 126 | uint32_t page = (vaddr >> 12) & 0xffff; |
127 | uint32_t api = (vaddr >> 22) & 0x3f; |
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1730 | decky | 128 | |
1780 | jermar | 129 | uint32_t vsid; |
1730 | decky | 130 | asm volatile ( |
131 | "mfsrin %0, %1\n" |
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132 | : "=r" (vsid) |
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133 | : "r" (vaddr) |
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134 | ); |
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135 | |||
1780 | jermar | 136 | uint32_t sdr1; |
1730 | decky | 137 | asm volatile ( |
138 | "mfsdr1 %0\n" |
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139 | : "=r" (sdr1) |
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140 | ); |
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141 | phte_t *phte = (phte_t *) PA2KA(sdr1 & 0xffff0000); |
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142 | |||
143 | /* Primary hash (xor) */ |
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1780 | jermar | 144 | uint32_t h = 0; |
145 | uint32_t hash = vsid ^ page; |
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146 | uint32_t base = (hash & 0x3ff) << 3; |
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147 | uint32_t i; |
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1730 | decky | 148 | bool found = false; |
149 | |||
150 | /* Find unused or colliding |
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151 | PTE in PTEG */ |
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152 | for (i = 0; i < 8; i++) { |
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3193 | jermar | 153 | if ((!phte[base + i].v) || ((phte[base + i].vsid == vsid) && |
154 | (phte[base + i].api == api))) { |
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1730 | decky | 155 | found = true; |
156 | break; |
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157 | } |
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158 | } |
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159 | |||
160 | if (!found) { |
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161 | /* Secondary hash (not) */ |
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1780 | jermar | 162 | uint32_t base2 = (~hash & 0x3ff) << 3; |
1730 | decky | 163 | |
164 | /* Find unused or colliding |
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165 | PTE in PTEG */ |
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166 | for (i = 0; i < 8; i++) { |
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3193 | jermar | 167 | if ((!phte[base2 + i].v) || |
168 | ((phte[base2 + i].vsid == vsid) && |
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169 | (phte[base2 + i].api == api))) { |
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1730 | decky | 170 | found = true; |
171 | base = base2; |
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172 | h = 1; |
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173 | break; |
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174 | } |
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175 | } |
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176 | |||
177 | if (!found) { |
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178 | // TODO: A/C precedence groups |
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179 | i = page % 8; |
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180 | } |
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181 | } |
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182 | |||
183 | phte[base + i].v = 1; |
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184 | phte[base + i].vsid = vsid; |
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185 | phte[base + i].h = h; |
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186 | phte[base + i].api = api; |
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187 | phte[base + i].rpn = pfn; |
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188 | phte[base + i].r = 0; |
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189 | phte[base + i].c = 0; |
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190 | phte[base + i].pp = 2; // FIXME |
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191 | } |
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192 | |||
193 | |||
1780 | jermar | 194 | static void pht_real_insert(const uintptr_t vaddr, const pfn_t pfn) |
1730 | decky | 195 | { |
1780 | jermar | 196 | uint32_t page = (vaddr >> 12) & 0xffff; |
197 | uint32_t api = (vaddr >> 22) & 0x3f; |
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1730 | decky | 198 | |
1780 | jermar | 199 | uint32_t vsid; |
1730 | decky | 200 | asm volatile ( |
201 | "mfsrin %0, %1\n" |
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202 | : "=r" (vsid) |
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203 | : "r" (vaddr) |
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204 | ); |
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205 | |||
1780 | jermar | 206 | uint32_t sdr1; |
1730 | decky | 207 | asm volatile ( |
208 | "mfsdr1 %0\n" |
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209 | : "=r" (sdr1) |
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210 | ); |
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211 | phte_t *phte_physical = (phte_t *) (sdr1 & 0xffff0000); |
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212 | |||
213 | /* Primary hash (xor) */ |
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1780 | jermar | 214 | uint32_t h = 0; |
215 | uint32_t hash = vsid ^ page; |
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216 | uint32_t base = (hash & 0x3ff) << 3; |
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217 | uint32_t i; |
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1730 | decky | 218 | bool found = false; |
219 | |||
220 | /* Find unused or colliding |
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221 | PTE in PTEG */ |
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222 | for (i = 0; i < 8; i++) { |
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3193 | jermar | 223 | if ((!phte_physical[base + i].v) || |
224 | ((phte_physical[base + i].vsid == vsid) && |
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225 | (phte_physical[base + i].api == api))) { |
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1730 | decky | 226 | found = true; |
227 | break; |
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228 | } |
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229 | } |
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230 | |||
231 | if (!found) { |
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232 | /* Secondary hash (not) */ |
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1780 | jermar | 233 | uint32_t base2 = (~hash & 0x3ff) << 3; |
1730 | decky | 234 | |
235 | /* Find unused or colliding |
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236 | PTE in PTEG */ |
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237 | for (i = 0; i < 8; i++) { |
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3193 | jermar | 238 | if ((!phte_physical[base2 + i].v) || |
239 | ((phte_physical[base2 + i].vsid == vsid) && |
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240 | (phte_physical[base2 + i].api == api))) { |
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1730 | decky | 241 | found = true; |
242 | base = base2; |
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243 | h = 1; |
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244 | break; |
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245 | } |
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246 | } |
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247 | |||
248 | if (!found) { |
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249 | // TODO: A/C precedence groups |
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250 | i = page % 8; |
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251 | } |
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252 | } |
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253 | |||
254 | phte_physical[base + i].v = 1; |
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255 | phte_physical[base + i].vsid = vsid; |
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256 | phte_physical[base + i].h = h; |
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257 | phte_physical[base + i].api = api; |
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258 | phte_physical[base + i].rpn = pfn; |
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259 | phte_physical[base + i].r = 0; |
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260 | phte_physical[base + i].c = 0; |
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261 | phte_physical[base + i].pp = 2; // FIXME |
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262 | } |
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263 | |||
264 | |||
265 | /** Process Instruction/Data Storage Interrupt |
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266 | * |
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3193 | jermar | 267 | * @param n Interrupt vector number. |
268 | * @param istate Interrupted register context. |
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1730 | decky | 269 | * |
270 | */ |
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271 | void pht_refill(int n, istate_t *istate) |
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272 | { |
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1780 | jermar | 273 | uintptr_t badvaddr; |
1730 | decky | 274 | pte_t *pte; |
275 | int pfrc; |
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276 | as_t *as; |
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277 | bool lock; |
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278 | |||
279 | if (AS == NULL) { |
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280 | as = AS_KERNEL; |
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281 | lock = false; |
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282 | } else { |
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283 | as = AS; |
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284 | lock = true; |
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285 | } |
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286 | |||
287 | if (n == VECTOR_DATA_STORAGE) { |
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288 | asm volatile ( |
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289 | "mfdar %0\n" |
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290 | : "=r" (badvaddr) |
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291 | ); |
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292 | } else |
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293 | badvaddr = istate->pc; |
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294 | |||
295 | page_table_lock(as, lock); |
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296 | |||
3193 | jermar | 297 | pte = find_mapping_and_check(as, lock, badvaddr, |
298 | PF_ACCESS_READ /* FIXME */, istate, &pfrc); |
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1730 | decky | 299 | if (!pte) { |
300 | switch (pfrc) { |
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3193 | jermar | 301 | case AS_PF_FAULT: |
302 | goto fail; |
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303 | break; |
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304 | case AS_PF_DEFER: |
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305 | /* |
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306 | * The page fault came during copy_from_uspace() |
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307 | * or copy_to_uspace(). |
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308 | */ |
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309 | page_table_unlock(as, lock); |
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310 | return; |
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311 | default: |
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312 | panic("Unexpected pfrc (%d)\n", pfrc); |
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1730 | decky | 313 | } |
314 | } |
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315 | |||
316 | pte->a = 1; /* Record access to PTE */ |
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317 | pht_insert(badvaddr, pte->pfn); |
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318 | |||
319 | page_table_unlock(as, lock); |
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320 | return; |
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321 | |||
322 | fail: |
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323 | page_table_unlock(as, lock); |
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324 | pht_refill_fail(badvaddr, istate); |
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325 | } |
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326 | |||
327 | |||
328 | /** Process Instruction/Data Storage Interrupt in Real Mode |
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329 | * |
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3193 | jermar | 330 | * @param n Interrupt vector number. |
331 | * @param istate Interrupted register context. |
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1730 | decky | 332 | * |
333 | */ |
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334 | bool pht_real_refill(int n, istate_t *istate) |
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335 | { |
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1780 | jermar | 336 | uintptr_t badvaddr; |
1730 | decky | 337 | |
338 | if (n == VECTOR_DATA_STORAGE) { |
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339 | asm volatile ( |
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340 | "mfdar %0\n" |
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341 | : "=r" (badvaddr) |
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342 | ); |
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343 | } else |
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344 | badvaddr = istate->pc; |
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345 | |||
1780 | jermar | 346 | uint32_t physmem; |
1730 | decky | 347 | asm volatile ( |
348 | "mfsprg3 %0\n" |
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349 | : "=r" (physmem) |
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350 | ); |
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351 | |||
352 | if ((badvaddr >= PA2KA(0)) && (badvaddr < PA2KA(physmem))) { |
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353 | pht_real_insert(badvaddr, KA2PA(badvaddr) >> 12); |
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354 | return true; |
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355 | } |
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356 | |||
357 | return false; |
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358 | } |
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359 | |||
360 | |||
1215 | decky | 361 | void tlb_arch_init(void) |
362 | { |
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1384 | decky | 363 | tlb_invalidate_all(); |
364 | } |
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365 | |||
366 | |||
367 | void tlb_invalidate_all(void) |
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368 | { |
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1269 | decky | 369 | asm volatile ( |
1374 | decky | 370 | "tlbia\n" |
1384 | decky | 371 | "tlbsync\n" |
1269 | decky | 372 | ); |
1215 | decky | 373 | } |
374 | |||
375 | |||
1384 | decky | 376 | void tlb_invalidate_asid(asid_t asid) |
1328 | decky | 377 | { |
1780 | jermar | 378 | uint32_t sdr1; |
1758 | decky | 379 | asm volatile ( |
380 | "mfsdr1 %0\n" |
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381 | : "=r" (sdr1) |
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382 | ); |
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383 | phte_t *phte = (phte_t *) PA2KA(sdr1 & 0xffff0000); |
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384 | |||
1780 | jermar | 385 | uint32_t i; |
1758 | decky | 386 | for (i = 0; i < 8192; i++) { |
3193 | jermar | 387 | if ((phte[i].v) && (phte[i].vsid >= (asid << 4)) && |
388 | (phte[i].vsid < ((asid << 4) + 16))) |
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1758 | decky | 389 | phte[i].v = 0; |
390 | } |
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1384 | decky | 391 | tlb_invalidate_all(); |
1328 | decky | 392 | } |
393 | |||
1730 | decky | 394 | |
1780 | jermar | 395 | void tlb_invalidate_pages(asid_t asid, uintptr_t page, count_t cnt) |
1384 | decky | 396 | { |
1730 | decky | 397 | // TODO |
1384 | decky | 398 | tlb_invalidate_all(); |
399 | } |
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1328 | decky | 400 | |
1384 | decky | 401 | |
1736 | decky | 402 | #define PRINT_BAT(name, ureg, lreg) \ |
403 | asm volatile ( \ |
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404 | "mfspr %0," #ureg "\n" \ |
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405 | "mfspr %1," #lreg "\n" \ |
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406 | : "=r" (upper), "=r" (lower) \ |
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407 | ); \ |
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408 | mask = (upper & 0x1ffc) >> 2; \ |
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409 | if (upper & 3) { \ |
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1780 | jermar | 410 | uint32_t tmp = mask; \ |
1736 | decky | 411 | length = 128; \ |
412 | while (tmp) { \ |
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413 | if ((tmp & 1) == 0) { \ |
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414 | printf("ibat[0]: error in mask\n"); \ |
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415 | break; \ |
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416 | } \ |
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417 | length <<= 1; \ |
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418 | tmp >>= 1; \ |
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419 | } \ |
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420 | } else \ |
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421 | length = 0; \ |
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3193 | jermar | 422 | printf(name ": page=%.*p frame=%.*p length=%d KB (mask=%#x)%s%s\n", \ |
423 | sizeof(upper) * 2, upper & 0xffff0000, sizeof(lower) * 2, \ |
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424 | lower & 0xffff0000, length, mask, \ |
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425 | ((upper >> 1) & 1) ? " supervisor" : "", \ |
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426 | (upper & 1) ? " user" : ""); |
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1736 | decky | 427 | |
428 | |||
1215 | decky | 429 | void tlb_print(void) |
430 | { |
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1780 | jermar | 431 | uint32_t sr; |
1733 | decky | 432 | |
433 | for (sr = 0; sr < 16; sr++) { |
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1780 | jermar | 434 | uint32_t vsid; |
1733 | decky | 435 | asm volatile ( |
436 | "mfsrin %0, %1\n" |
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437 | : "=r" (vsid) |
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438 | : "r" (sr << 28) |
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439 | ); |
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3193 | jermar | 440 | printf("vsid[%d]: VSID=%.*p (ASID=%d)%s%s\n", sr, |
441 | sizeof(vsid) * 2, vsid & 0xffffff, (vsid & 0xffffff) >> 4, |
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442 | ((vsid >> 30) & 1) ? " supervisor" : "", |
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443 | ((vsid >> 29) & 1) ? " user" : ""); |
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1733 | decky | 444 | } |
1736 | decky | 445 | |
1780 | jermar | 446 | uint32_t upper; |
447 | uint32_t lower; |
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448 | uint32_t mask; |
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449 | uint32_t length; |
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1736 | decky | 450 | |
451 | PRINT_BAT("ibat[0]", 528, 529); |
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452 | PRINT_BAT("ibat[1]", 530, 531); |
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453 | PRINT_BAT("ibat[2]", 532, 533); |
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454 | PRINT_BAT("ibat[3]", 534, 535); |
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455 | |||
456 | PRINT_BAT("dbat[0]", 536, 537); |
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457 | PRINT_BAT("dbat[1]", 538, 539); |
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458 | PRINT_BAT("dbat[2]", 540, 541); |
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459 | PRINT_BAT("dbat[3]", 542, 543); |
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1215 | decky | 460 | } |
1702 | cejka | 461 | |
1730 | decky | 462 | /** @} |
1702 | cejka | 463 | */ |