[1] | 1 | /* |
---|
[683] | 2 | * vmm.c - virtual memory manager related operations implementation. |
---|
[1] | 3 | * |
---|
[672] | 4 | * Authors Ghassan Almaless (2008,2009,2010,2011,2012) |
---|
| 5 | * Alain Greiner (2016,2017,2018,2019,2020) |
---|
[21] | 6 | * |
---|
[1] | 7 | * Copyright (c) UPMC Sorbonne Universites |
---|
| 8 | * |
---|
| 9 | * This file is part of ALMOS-MKH. |
---|
| 10 | * |
---|
| 11 | * ALMOS-MKH is free software; you can redistribute it and/or modify it |
---|
| 12 | * under the terms of the GNU General Public License as published by |
---|
| 13 | * the Free Software Foundation; version 2.0 of the License. |
---|
| 14 | * |
---|
| 15 | * ALMOS-MKH is distributed in the hope that it will be useful, but |
---|
| 16 | * WITHOUT ANY WARRANTY; without even the implied warranty of |
---|
| 17 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU |
---|
| 18 | * General Public License for more details. |
---|
| 19 | * |
---|
| 20 | * You should have received a copy of the GNU General Public License |
---|
| 21 | * along with ALMOS-MKH; if not, write to the Free Software Foundation, |
---|
| 22 | * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA |
---|
| 23 | */ |
---|
| 24 | |
---|
[14] | 25 | #include <kernel_config.h> |
---|
[457] | 26 | #include <hal_kernel_types.h> |
---|
[1] | 27 | #include <hal_special.h> |
---|
| 28 | #include <hal_gpt.h> |
---|
[409] | 29 | #include <hal_vmm.h> |
---|
[641] | 30 | #include <hal_irqmask.h> |
---|
[577] | 31 | #include <hal_macros.h> |
---|
[1] | 32 | #include <printk.h> |
---|
[23] | 33 | #include <memcpy.h> |
---|
[567] | 34 | #include <remote_queuelock.h> |
---|
[1] | 35 | #include <list.h> |
---|
[408] | 36 | #include <xlist.h> |
---|
[1] | 37 | #include <bits.h> |
---|
| 38 | #include <process.h> |
---|
| 39 | #include <thread.h> |
---|
| 40 | #include <vseg.h> |
---|
| 41 | #include <cluster.h> |
---|
| 42 | #include <scheduler.h> |
---|
| 43 | #include <vfs.h> |
---|
| 44 | #include <mapper.h> |
---|
| 45 | #include <page.h> |
---|
| 46 | #include <kmem.h> |
---|
| 47 | #include <vmm.h> |
---|
[585] | 48 | #include <hal_exception.h> |
---|
[1] | 49 | |
---|
[635] | 50 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
[1] | 51 | // Extern global variables |
---|
[635] | 52 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
[1] | 53 | |
---|
[567] | 54 | extern process_t process_zero; // allocated in cluster.c |
---|
[1] | 55 | |
---|
[625] | 56 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
[651] | 57 | // This static function is called by the vmm_user_init() function. |
---|
| 58 | // It initialises the free lists of vsegs used by the VMM MMAP allocator. |
---|
| 59 | // It makes the assumption that HEAP_BASE == 1 Gbytes and HEAP_SIZE == 2 Gbytes. |
---|
| 60 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 61 | static void vmm_stack_init( vmm_t * vmm ) |
---|
| 62 | { |
---|
| 63 | |
---|
| 64 | // check STACK zone |
---|
[672] | 65 | assert( __FUNCTION__, ((CONFIG_VMM_STACK_SIZE * CONFIG_THREADS_MAX_PER_CLUSTER) <= |
---|
[651] | 66 | (CONFIG_VMM_VSPACE_SIZE - CONFIG_VMM_STACK_BASE)) , "STACK zone too small\n"); |
---|
| 67 | |
---|
| 68 | // get pointer on STACK allocator |
---|
| 69 | stack_mgr_t * mgr = &vmm->stack_mgr; |
---|
| 70 | |
---|
| 71 | mgr->bitmap = 0; |
---|
| 72 | mgr->vpn_base = CONFIG_VMM_STACK_BASE; |
---|
| 73 | busylock_init( &mgr->lock , LOCK_VMM_STACK ); |
---|
| 74 | |
---|
| 75 | } |
---|
| 76 | |
---|
| 77 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
[625] | 78 | // This static function is called by the vmm_create_vseg() function, and implements |
---|
[651] | 79 | // the VMM STACK specific allocator. Depending on the local thread index <ltid>, |
---|
| 80 | // it ckeks availability of the corresponding slot in the process STACKS region, |
---|
| 81 | // allocates a vseg descriptor, and initializes the "vpn_base" and "vpn_size" fields. |
---|
[625] | 82 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 83 | // @ vmm : [in] pointer on VMM. |
---|
| 84 | // @ ltid : [in] requested slot == local user thread identifier. |
---|
| 85 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
[651] | 86 | static vseg_t * vmm_stack_alloc( vmm_t * vmm, |
---|
| 87 | ltid_t ltid ) |
---|
[21] | 88 | { |
---|
[625] | 89 | |
---|
| 90 | // check ltid argument |
---|
[683] | 91 | assert( __FUNCTION__, |
---|
| 92 | (ltid <= ((CONFIG_VMM_VSPACE_SIZE - CONFIG_VMM_STACK_BASE) / CONFIG_VMM_STACK_SIZE)), |
---|
[625] | 93 | "slot index %d too large for an user stack vseg", ltid ); |
---|
| 94 | |
---|
| 95 | // get stack allocator pointer |
---|
| 96 | stack_mgr_t * mgr = &vmm->stack_mgr; |
---|
| 97 | |
---|
[651] | 98 | // get lock protecting stack allocator |
---|
[625] | 99 | busylock_acquire( &mgr->lock ); |
---|
| 100 | |
---|
| 101 | // check requested slot is available |
---|
[672] | 102 | assert( __FUNCTION__, (bitmap_state( &mgr->bitmap , ltid ) == false), |
---|
[625] | 103 | "slot index %d already allocated", ltid ); |
---|
| 104 | |
---|
[651] | 105 | // allocate a vseg descriptor |
---|
| 106 | vseg_t * vseg = vseg_alloc(); |
---|
| 107 | |
---|
| 108 | if( vseg == NULL ) |
---|
| 109 | { |
---|
[683] | 110 | |
---|
| 111 | #if DEBUG_VMM_ERROR |
---|
| 112 | printk("\n[ERROR] %s cannot allocate memory for vseg in cluster %x\n", |
---|
| 113 | __FUNCTION__ , local_cxy ); |
---|
| 114 | #endif |
---|
[651] | 115 | busylock_release( &mgr->lock ); |
---|
| 116 | return NULL; |
---|
| 117 | } |
---|
| 118 | |
---|
[625] | 119 | // update bitmap |
---|
| 120 | bitmap_set( &mgr->bitmap , ltid ); |
---|
| 121 | |
---|
| 122 | // release lock on stack allocator |
---|
| 123 | busylock_release( &mgr->lock ); |
---|
| 124 | |
---|
[651] | 125 | // set "vpn_base" & "vpn_size" fields (first page non allocated) |
---|
| 126 | vseg->vpn_base = mgr->vpn_base + (ltid * CONFIG_VMM_STACK_SIZE) + 1; |
---|
| 127 | vseg->vpn_size = CONFIG_VMM_STACK_SIZE - 1; |
---|
[625] | 128 | |
---|
[651] | 129 | return vseg; |
---|
| 130 | |
---|
[625] | 131 | } // end vmm_stack_alloc() |
---|
| 132 | |
---|
| 133 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 134 | // This static function is called by the vmm_remove_vseg() function, and implements |
---|
| 135 | // the VMM STACK specific desallocator. |
---|
[651] | 136 | // It updates the bitmap to release the corresponding slot in the process STACKS region, |
---|
| 137 | // and releases memory allocated to vseg descriptor. |
---|
[625] | 138 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 139 | // @ vmm : [in] pointer on VMM. |
---|
| 140 | // @ vseg : [in] pointer on released vseg. |
---|
| 141 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 142 | static void vmm_stack_free( vmm_t * vmm, |
---|
| 143 | vseg_t * vseg ) |
---|
| 144 | { |
---|
| 145 | // get stack allocator pointer |
---|
| 146 | stack_mgr_t * mgr = &vmm->stack_mgr; |
---|
| 147 | |
---|
| 148 | // compute slot index |
---|
| 149 | uint32_t index = (vseg->vpn_base - 1 - mgr->vpn_base) / CONFIG_VMM_STACK_SIZE; |
---|
| 150 | |
---|
| 151 | // check index |
---|
[672] | 152 | assert( __FUNCTION__, (index <= ((CONFIG_VMM_VSPACE_SIZE - CONFIG_VMM_STACK_BASE) / CONFIG_VMM_STACK_SIZE)), |
---|
[625] | 153 | "slot index %d too large for an user stack vseg", index ); |
---|
| 154 | |
---|
| 155 | // check released slot is allocated |
---|
[672] | 156 | assert( __FUNCTION__, (bitmap_state( &mgr->bitmap , index ) == true), |
---|
[625] | 157 | "released slot index %d non allocated", index ); |
---|
| 158 | |
---|
| 159 | // get lock on stack allocator |
---|
| 160 | busylock_acquire( &mgr->lock ); |
---|
| 161 | |
---|
| 162 | // update stacks_bitmap |
---|
| 163 | bitmap_clear( &mgr->bitmap , index ); |
---|
| 164 | |
---|
| 165 | // release lock on stack allocator |
---|
| 166 | busylock_release( &mgr->lock ); |
---|
| 167 | |
---|
[651] | 168 | // release memory allocated to vseg descriptor |
---|
| 169 | vseg_free( vseg ); |
---|
| 170 | |
---|
[625] | 171 | } // end vmm_stack_free() |
---|
| 172 | |
---|
[651] | 173 | |
---|
| 174 | |
---|
[625] | 175 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
[651] | 176 | // This function display the current state of the VMM MMAP allocator of a process VMM |
---|
| 177 | // identified by the <vmm> argument. |
---|
| 178 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 179 | void vmm_mmap_display( vmm_t * vmm ) |
---|
| 180 | { |
---|
| 181 | uint32_t order; |
---|
| 182 | xptr_t root_xp; |
---|
| 183 | xptr_t iter_xp; |
---|
| 184 | |
---|
| 185 | // get pointer on process |
---|
| 186 | process_t * process = (process_t *)(((char*)vmm) - OFFSETOF( process_t , vmm )); |
---|
| 187 | |
---|
| 188 | // get process PID |
---|
| 189 | pid_t pid = process->pid; |
---|
| 190 | |
---|
| 191 | // get pointer on VMM MMAP allocator |
---|
| 192 | mmap_mgr_t * mgr = &vmm->mmap_mgr; |
---|
| 193 | |
---|
| 194 | // display header |
---|
| 195 | printk("***** VMM MMAP allocator / process %x *****\n", pid ); |
---|
| 196 | |
---|
| 197 | // scan the array of free lists of vsegs |
---|
| 198 | for( order = 0 ; order <= CONFIG_VMM_HEAP_MAX_ORDER ; order++ ) |
---|
| 199 | { |
---|
| 200 | root_xp = XPTR( local_cxy , &mgr->free_list_root[order] ); |
---|
| 201 | |
---|
| 202 | if( !xlist_is_empty( root_xp ) ) |
---|
| 203 | { |
---|
| 204 | printk(" - %d (%x pages) : ", order , 1<<order ); |
---|
| 205 | |
---|
| 206 | XLIST_FOREACH( root_xp , iter_xp ) |
---|
| 207 | { |
---|
| 208 | xptr_t vseg_xp = XLIST_ELEMENT( iter_xp , vseg_t , xlist ); |
---|
| 209 | vseg_t * vseg = GET_PTR( vseg_xp ); |
---|
| 210 | |
---|
| 211 | printk("%x | ", vseg->vpn_base ); |
---|
| 212 | } |
---|
| 213 | |
---|
| 214 | printk("\n"); |
---|
| 215 | } |
---|
| 216 | } |
---|
| 217 | } // end vmm_mmap_display() |
---|
| 218 | |
---|
| 219 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 220 | // This static function is called by the vmm_user_init() function. |
---|
| 221 | // It initialises the free lists of vsegs used by the VMM MMAP allocator. |
---|
| 222 | // TODO this function is only valid for 32 bits cores, and makes three assumptions: |
---|
| 223 | // HEAP_BASE == 1 Gbytes / HEAP_SIZE == 2 Gbytes / MMAP_MAX_SIZE == 1 Gbytes |
---|
| 224 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 225 | void vmm_mmap_init( vmm_t * vmm ) |
---|
| 226 | { |
---|
| 227 | |
---|
| 228 | // check HEAP base and size |
---|
[672] | 229 | assert( __FUNCTION__, (CONFIG_VMM_HEAP_BASE == 0x40000) & (CONFIG_VMM_STACK_BASE == 0xc0000), |
---|
[651] | 230 | "CONFIG_VMM_HEAP_BASE != 0x40000 or CONFIG_VMM_STACK_BASE != 0xc0000" ); |
---|
| 231 | |
---|
| 232 | // check MMAP vseg max order |
---|
[672] | 233 | assert( __FUNCTION__, (CONFIG_VMM_HEAP_MAX_ORDER == 18), "max mmap vseg size is 256K pages" ); |
---|
[651] | 234 | |
---|
| 235 | // get pointer on MMAP allocator |
---|
| 236 | mmap_mgr_t * mgr = &vmm->mmap_mgr; |
---|
| 237 | |
---|
| 238 | // initialize HEAP base and size |
---|
| 239 | mgr->vpn_base = CONFIG_VMM_HEAP_BASE; |
---|
| 240 | mgr->vpn_size = CONFIG_VMM_STACK_BASE - CONFIG_VMM_HEAP_BASE; |
---|
| 241 | |
---|
| 242 | // initialize lock |
---|
| 243 | busylock_init( &mgr->lock , LOCK_VMM_MMAP ); |
---|
| 244 | |
---|
| 245 | // initialize free lists |
---|
| 246 | uint32_t i; |
---|
| 247 | for( i = 0 ; i <= CONFIG_VMM_HEAP_MAX_ORDER ; i++ ) |
---|
| 248 | { |
---|
| 249 | xlist_root_init( XPTR( local_cxy , &mgr->free_list_root[i] ) ); |
---|
| 250 | } |
---|
| 251 | |
---|
| 252 | // allocate and register first 1 Gbytes vseg |
---|
| 253 | vseg_t * vseg0 = vseg_alloc(); |
---|
| 254 | |
---|
[672] | 255 | assert( __FUNCTION__, (vseg0 != NULL) , "cannot allocate vseg" ); |
---|
[651] | 256 | |
---|
| 257 | vseg0->vpn_base = CONFIG_VMM_HEAP_BASE; |
---|
| 258 | vseg0->vpn_size = CONFIG_VMM_HEAP_BASE; |
---|
| 259 | |
---|
| 260 | xlist_add_first( XPTR( local_cxy , &mgr->free_list_root[CONFIG_VMM_HEAP_MAX_ORDER] ), |
---|
| 261 | XPTR( local_cxy , &vseg0->xlist ) ); |
---|
| 262 | |
---|
| 263 | // allocate and register second 1 Gbytes vseg |
---|
| 264 | vseg_t * vseg1 = vseg_alloc(); |
---|
| 265 | |
---|
[672] | 266 | assert( __FUNCTION__, (vseg1 != NULL) , "cannot allocate vseg" ); |
---|
[651] | 267 | |
---|
| 268 | vseg1->vpn_base = CONFIG_VMM_HEAP_BASE << 1; |
---|
| 269 | vseg1->vpn_size = CONFIG_VMM_HEAP_BASE; |
---|
| 270 | |
---|
| 271 | xlist_add_first( XPTR( local_cxy , &mgr->free_list_root[CONFIG_VMM_HEAP_MAX_ORDER] ), |
---|
| 272 | XPTR( local_cxy , &vseg1->xlist ) ); |
---|
| 273 | |
---|
| 274 | #if DEBUG_VMM_MMAP |
---|
| 275 | thread_t * this = CURRENT_THREAD; |
---|
| 276 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
---|
| 277 | printk("\n[%s] thread[%x,%x] / cycle %d\n", |
---|
| 278 | __FUNCTION__, this->process->pid, this->trdid, cycle ); |
---|
| 279 | vmm_mmap_display( vmm ); |
---|
| 280 | #endif |
---|
| 281 | |
---|
| 282 | } // end vmm_mmap_init() |
---|
| 283 | |
---|
| 284 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
[625] | 285 | // This static function is called by the vmm_create_vseg() function, and implements |
---|
[651] | 286 | // the VMM MMAP specific allocator. Depending on the requested number of pages <npages>, |
---|
| 287 | // it get a free vseg from the relevant free_list, and initializes the "vpn_base" and |
---|
| 288 | // "vpn_size" fields. |
---|
[625] | 289 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 290 | // @ vmm : [in] pointer on VMM. |
---|
| 291 | // @ npages : [in] requested number of pages. |
---|
[651] | 292 | // @ returns local pointer on vseg if success / returns NULL if failure. |
---|
[625] | 293 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
[651] | 294 | static vseg_t * vmm_mmap_alloc( vmm_t * vmm, |
---|
| 295 | vpn_t npages ) |
---|
[625] | 296 | { |
---|
| 297 | |
---|
[651] | 298 | #if DEBUG_VMM_MMAP |
---|
[625] | 299 | thread_t * this = CURRENT_THREAD; |
---|
| 300 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
---|
[651] | 301 | if( DEBUG_VMM_MMAP < cycle ) |
---|
| 302 | printk("\n[%s] thread[%x,%x] for %x pages / cycle %d\n", |
---|
| 303 | __FUNCTION__, this->process->pid, this->trdid, npages, cycle ); |
---|
[625] | 304 | #endif |
---|
| 305 | |
---|
| 306 | // number of allocated pages must be power of 2 |
---|
| 307 | // compute actual size and order |
---|
[651] | 308 | vpn_t required_vpn_size = POW2_ROUNDUP( npages ); |
---|
| 309 | uint32_t required_order = bits_log2( required_vpn_size ); |
---|
[625] | 310 | |
---|
| 311 | // get mmap allocator pointer |
---|
| 312 | mmap_mgr_t * mgr = &vmm->mmap_mgr; |
---|
| 313 | |
---|
[651] | 314 | // take lock protecting free lists in MMAP allocator |
---|
[625] | 315 | busylock_acquire( &mgr->lock ); |
---|
| 316 | |
---|
[651] | 317 | // initialises the while loop variables |
---|
| 318 | uint32_t current_order = required_order; |
---|
| 319 | vseg_t * current_vseg = NULL; |
---|
[625] | 320 | |
---|
[651] | 321 | // search a free vseg equal or larger than requested size |
---|
| 322 | while( current_order <= CONFIG_VMM_HEAP_MAX_ORDER ) |
---|
| 323 | { |
---|
| 324 | // build extended pointer on free_pages_root[current_order] |
---|
| 325 | xptr_t root_xp = XPTR( local_cxy , &mgr->free_list_root[current_order] ); |
---|
[625] | 326 | |
---|
[651] | 327 | if( !xlist_is_empty( root_xp ) ) |
---|
| 328 | { |
---|
| 329 | // get extended pointer on first vseg in this free_list |
---|
| 330 | xptr_t current_vseg_xp = XLIST_FIRST( root_xp , vseg_t , xlist ); |
---|
| 331 | current_vseg = GET_PTR( current_vseg_xp ); |
---|
| 332 | |
---|
| 333 | // build extended pointer on xlist field in vseg descriptor |
---|
| 334 | xptr_t list_entry_xp = XPTR( local_cxy , ¤t_vseg->xlist ); |
---|
| 335 | |
---|
| 336 | // remove this vseg from the free_list |
---|
| 337 | xlist_unlink( list_entry_xp ); |
---|
| 338 | |
---|
| 339 | break; |
---|
| 340 | } |
---|
| 341 | |
---|
| 342 | // increment loop index |
---|
| 343 | current_order++; |
---|
| 344 | |
---|
| 345 | } // end while loop |
---|
| 346 | |
---|
| 347 | if( current_vseg == NULL ) // return failure |
---|
[625] | 348 | { |
---|
[683] | 349 | |
---|
| 350 | #if DEBUG_VMM_ERROR |
---|
| 351 | printk("\n[ERROR] %s cannot allocate ) %d page(s) in cluster %x\n", |
---|
| 352 | __FUNCTION__, npages , local_cxy ); |
---|
| 353 | #endif |
---|
[651] | 354 | busylock_release( &mgr->lock ); |
---|
| 355 | return NULL; |
---|
[625] | 356 | } |
---|
| 357 | |
---|
[651] | 358 | // split recursively the found vseg in smaller vsegs |
---|
| 359 | // if required, and update the free-lists accordingly |
---|
| 360 | while( current_order > required_order ) |
---|
| 361 | { |
---|
| 362 | // get found vseg base and size |
---|
| 363 | vpn_t vpn_base = current_vseg->vpn_base; |
---|
| 364 | vpn_t vpn_size = current_vseg->vpn_size; |
---|
| 365 | |
---|
| 366 | // allocate a new vseg for the upper half of current vseg |
---|
| 367 | vseg_t * new_vseg = vseg_alloc(); |
---|
[625] | 368 | |
---|
[651] | 369 | if( new_vseg == NULL ) |
---|
| 370 | { |
---|
[683] | 371 | |
---|
| 372 | #if DEBUG_VMM_ERROR |
---|
| 373 | printk("\n[ERROR] %s cannot allocate memory for vseg in cluster %x\n", |
---|
| 374 | __FUNCTION__ , local_cxy ); |
---|
| 375 | #endif |
---|
[651] | 376 | busylock_release( &mgr->lock ); |
---|
| 377 | return NULL; |
---|
| 378 | } |
---|
| 379 | |
---|
| 380 | // initialise new vseg (upper half of found vseg) |
---|
| 381 | new_vseg->vmm = vmm; |
---|
| 382 | new_vseg->vpn_base = vpn_base + (vpn_size >> 1); |
---|
| 383 | new_vseg->vpn_size = vpn_size >> 1; |
---|
| 384 | |
---|
| 385 | // insert new vseg in relevant free_list |
---|
| 386 | xlist_add_first( XPTR( local_cxy , &mgr->free_list_root[current_order-1] ), |
---|
| 387 | XPTR( local_cxy , &new_vseg->xlist ) ); |
---|
| 388 | |
---|
| 389 | // update found vseg |
---|
| 390 | current_vseg->vpn_size = vpn_size>>1; |
---|
| 391 | |
---|
| 392 | // update order |
---|
| 393 | current_order --; |
---|
| 394 | } |
---|
| 395 | |
---|
| 396 | // release lock protecting free lists |
---|
| 397 | busylock_release( &mgr->lock ); |
---|
| 398 | |
---|
| 399 | #if DEBUG_VMM_MMAP |
---|
| 400 | vmm_mmap_display( vmm ); |
---|
[625] | 401 | #endif |
---|
| 402 | |
---|
[651] | 403 | return current_vseg; |
---|
[625] | 404 | |
---|
| 405 | } // end vmm_mmap_alloc() |
---|
| 406 | |
---|
| 407 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
[641] | 408 | // This static function implements the VMM MMAP specific desallocator. |
---|
| 409 | // It is called by the vmm_remove_vseg() function. |
---|
[651] | 410 | // It releases the vseg to the relevant free_list, after trying (recursively) to |
---|
| 411 | // merge it to the buddy vseg. |
---|
[625] | 412 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 413 | // @ vmm : [in] pointer on VMM. |
---|
| 414 | // @ vseg : [in] pointer on released vseg. |
---|
| 415 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 416 | static void vmm_mmap_free( vmm_t * vmm, |
---|
| 417 | vseg_t * vseg ) |
---|
| 418 | { |
---|
[651] | 419 | |
---|
| 420 | #if DEBUG_VMM_MMAP |
---|
| 421 | thread_t * this = CURRENT_THREAD; |
---|
| 422 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
---|
| 423 | if( DEBUG_VMM_MMAP < cycle ) |
---|
| 424 | printk("\n[%s] thread[%x,%x] for vpn_base %x / vpn_size %x / cycle %d\n", |
---|
| 425 | __FUNCTION__, this->process->pid, this->trdid, vseg->vpn_base, vseg->vpn_size, cycle ); |
---|
| 426 | #endif |
---|
| 427 | |
---|
| 428 | vseg_t * buddy_vseg; |
---|
| 429 | |
---|
| 430 | // get mmap allocator pointer |
---|
[625] | 431 | mmap_mgr_t * mgr = &vmm->mmap_mgr; |
---|
| 432 | |
---|
[651] | 433 | // take lock protecting free lists |
---|
[625] | 434 | busylock_acquire( &mgr->lock ); |
---|
| 435 | |
---|
[651] | 436 | // initialise loop variables |
---|
| 437 | // released_vseg is the currently released vseg |
---|
| 438 | vseg_t * released_vseg = vseg; |
---|
| 439 | uint32_t released_order = bits_log2( vseg->vpn_size ); |
---|
[625] | 440 | |
---|
[651] | 441 | // iteratively merge the released vseg to the buddy vseg |
---|
| 442 | // release the current page and exit when buddy not found |
---|
| 443 | while( released_order <= CONFIG_VMM_HEAP_MAX_ORDER ) |
---|
| 444 | { |
---|
| 445 | // compute buddy_vseg vpn_base |
---|
| 446 | vpn_t buddy_vpn_base = released_vseg->vpn_base ^ (1 << released_order); |
---|
| 447 | |
---|
| 448 | // build extended pointer on free_pages_root[current_order] |
---|
| 449 | xptr_t root_xp = XPTR( local_cxy , &mgr->free_list_root[released_order] ); |
---|
| 450 | |
---|
| 451 | // scan this free list to find the buddy vseg |
---|
| 452 | xptr_t iter_xp; |
---|
| 453 | buddy_vseg = NULL; |
---|
| 454 | XLIST_FOREACH( root_xp , iter_xp ) |
---|
| 455 | { |
---|
| 456 | xptr_t current_vseg_xp = XLIST_ELEMENT( iter_xp , vseg_t , xlist ); |
---|
| 457 | vseg_t * current_vseg = GET_PTR( current_vseg_xp ); |
---|
| 458 | |
---|
| 459 | if( current_vseg->vpn_base == buddy_vpn_base ) |
---|
| 460 | { |
---|
| 461 | buddy_vseg = current_vseg; |
---|
| 462 | break; |
---|
| 463 | } |
---|
| 464 | } |
---|
| 465 | |
---|
| 466 | if( buddy_vseg != NULL ) // buddy found => merge released & buddy |
---|
| 467 | { |
---|
| 468 | // update released vseg fields |
---|
| 469 | released_vseg->vpn_size = buddy_vseg->vpn_size<<1; |
---|
| 470 | if( released_vseg->vpn_base > buddy_vseg->vpn_base) |
---|
| 471 | released_vseg->vpn_base = buddy_vseg->vpn_base; |
---|
| 472 | |
---|
| 473 | // remove buddy vseg from free_list |
---|
| 474 | xlist_unlink( XPTR( local_cxy , &buddy_vseg->xlist ) ); |
---|
| 475 | |
---|
| 476 | // release memory allocated to buddy descriptor |
---|
| 477 | vseg_free( buddy_vseg ); |
---|
| 478 | } |
---|
| 479 | else // buddy not found => register & exit |
---|
| 480 | { |
---|
| 481 | // register released vseg in free list |
---|
| 482 | xlist_add_first( root_xp , XPTR( local_cxy , &released_vseg->xlist ) ); |
---|
| 483 | |
---|
| 484 | // exit while loop |
---|
| 485 | break; |
---|
| 486 | } |
---|
| 487 | |
---|
| 488 | // increment released_order |
---|
| 489 | released_order++; |
---|
| 490 | } |
---|
| 491 | |
---|
[625] | 492 | // release lock |
---|
| 493 | busylock_release( &mgr->lock ); |
---|
| 494 | |
---|
[651] | 495 | #if DEBUG_VMM_MMAP |
---|
| 496 | vmm_mmap_display( vmm ); |
---|
| 497 | #endif |
---|
[625] | 498 | |
---|
[651] | 499 | } // end vmm_mmap_free() |
---|
| 500 | |
---|
[625] | 501 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 502 | // This static function registers one vseg in the VSL of a local process descriptor. |
---|
| 503 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 504 | // vmm : [in] pointer on VMM. |
---|
| 505 | // vseg : [in] pointer on vseg. |
---|
| 506 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 507 | void vmm_attach_vseg_to_vsl( vmm_t * vmm, |
---|
| 508 | vseg_t * vseg ) |
---|
| 509 | { |
---|
| 510 | // update vseg descriptor |
---|
| 511 | vseg->vmm = vmm; |
---|
| 512 | |
---|
| 513 | // increment vsegs number |
---|
| 514 | vmm->vsegs_nr++; |
---|
| 515 | |
---|
| 516 | // add vseg in vmm list |
---|
| 517 | xlist_add_last( XPTR( local_cxy , &vmm->vsegs_root ), |
---|
| 518 | XPTR( local_cxy , &vseg->xlist ) ); |
---|
| 519 | |
---|
[683] | 520 | } // end vmm_attach_vseg_to_vsl() |
---|
[625] | 521 | |
---|
| 522 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 523 | // This static function removes one vseg from the VSL of a local process descriptor. |
---|
| 524 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 525 | // vmm : [in] pointer on VMM. |
---|
| 526 | // vseg : [in] pointer on vseg. |
---|
| 527 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 528 | void vmm_detach_vseg_from_vsl( vmm_t * vmm, |
---|
| 529 | vseg_t * vseg ) |
---|
| 530 | { |
---|
| 531 | // update vseg descriptor |
---|
| 532 | vseg->vmm = NULL; |
---|
| 533 | |
---|
| 534 | // decrement vsegs number |
---|
| 535 | vmm->vsegs_nr--; |
---|
| 536 | |
---|
| 537 | // remove vseg from VSL |
---|
| 538 | xlist_unlink( XPTR( local_cxy , &vseg->xlist ) ); |
---|
| 539 | |
---|
[683] | 540 | } // end vmm_detach_vseg_from_vsl() |
---|
[625] | 541 | |
---|
| 542 | //////////////////////////////////////////// |
---|
| 543 | error_t vmm_user_init( process_t * process ) |
---|
| 544 | { |
---|
[1] | 545 | |
---|
[625] | 546 | #if DEBUG_VMM_USER_INIT |
---|
[567] | 547 | thread_t * this = CURRENT_THREAD; |
---|
[433] | 548 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
---|
[625] | 549 | if( DEBUG_VMM_USER_INIT ) |
---|
[614] | 550 | printk("\n[%s] thread[%x,%x] enter for process %x in cluster %x / cycle %d\n", |
---|
| 551 | __FUNCTION__ , this->process->pid, this->trdid, process->pid, local_cxy, cycle ); |
---|
[433] | 552 | #endif |
---|
[204] | 553 | |
---|
[1] | 554 | // get pointer on VMM |
---|
| 555 | vmm_t * vmm = &process->vmm; |
---|
| 556 | |
---|
[625] | 557 | // check UTILS zone |
---|
[672] | 558 | assert( __FUNCTION__ , ((CONFIG_VMM_ARGS_SIZE + CONFIG_VMM_ENVS_SIZE) <= |
---|
| 559 | (CONFIG_VMM_ELF_BASE - CONFIG_VMM_UTILS_BASE)) , "UTILS zone too small\n" ); |
---|
[21] | 560 | |
---|
[651] | 561 | // initialize lock protecting the VSL |
---|
[640] | 562 | remote_queuelock_init( XPTR( local_cxy , &vmm->vsl_lock ) , LOCK_VMM_VSL ); |
---|
[635] | 563 | |
---|
[651] | 564 | // initialize STACK allocator |
---|
| 565 | vmm_stack_init( vmm ); |
---|
| 566 | |
---|
| 567 | // initialize MMAP allocator |
---|
| 568 | vmm_mmap_init( vmm ); |
---|
| 569 | |
---|
| 570 | // initialize instrumentation counters |
---|
| 571 | vmm->false_pgfault_nr = 0; |
---|
| 572 | vmm->local_pgfault_nr = 0; |
---|
| 573 | vmm->global_pgfault_nr = 0; |
---|
| 574 | vmm->false_pgfault_cost = 0; |
---|
| 575 | vmm->local_pgfault_cost = 0; |
---|
| 576 | vmm->global_pgfault_cost = 0; |
---|
| 577 | |
---|
[124] | 578 | hal_fence(); |
---|
[1] | 579 | |
---|
[625] | 580 | #if DEBUG_VMM_USER_INIT |
---|
[433] | 581 | cycle = (uint32_t)hal_get_cycles(); |
---|
[625] | 582 | if( DEBUG_VMM_USER_INIT ) |
---|
[614] | 583 | printk("\n[%s] thread[%x,%x] exit for process %x in cluster %x / cycle %d\n", |
---|
| 584 | __FUNCTION__, this->process->pid, this->trdid, process->pid, local_cxy, cycle ); |
---|
[433] | 585 | #endif |
---|
[204] | 586 | |
---|
[415] | 587 | return 0; |
---|
| 588 | |
---|
[625] | 589 | } // end vmm_user_init() |
---|
[204] | 590 | |
---|
[611] | 591 | ////////////////////////////////////////// |
---|
[625] | 592 | void vmm_user_reset( process_t * process ) |
---|
[567] | 593 | { |
---|
[625] | 594 | xptr_t vseg_xp; |
---|
| 595 | vseg_t * vseg; |
---|
| 596 | vseg_type_t vseg_type; |
---|
[567] | 597 | |
---|
[625] | 598 | #if DEBUG_VMM_USER_RESET |
---|
[635] | 599 | uint32_t cycle; |
---|
[625] | 600 | thread_t * this = CURRENT_THREAD; |
---|
[635] | 601 | #endif |
---|
| 602 | |
---|
| 603 | #if (DEBUG_VMM_USER_RESET & 1 ) |
---|
| 604 | cycle = (uint32_t)hal_get_cycles(); |
---|
[625] | 605 | if( DEBUG_VMM_USER_RESET < cycle ) |
---|
| 606 | printk("\n[%s] thread[%x,%x] enter for process %x in cluster %x / cycle %d\n", |
---|
| 607 | __FUNCTION__, this->process->pid, this->trdid, process->pid, local_cxy, cycle ); |
---|
| 608 | #endif |
---|
[567] | 609 | |
---|
[625] | 610 | #if (DEBUG_VMM_USER_RESET & 1 ) |
---|
| 611 | if( DEBUG_VMM_USER_RESET < cycle ) |
---|
[635] | 612 | hal_vmm_display( XPTR( local_cxy , process ) , true ); |
---|
[625] | 613 | #endif |
---|
[567] | 614 | |
---|
[625] | 615 | // get pointer on local VMM |
---|
| 616 | vmm_t * vmm = &process->vmm; |
---|
[624] | 617 | |
---|
[625] | 618 | // build extended pointer on VSL root and VSL lock |
---|
| 619 | xptr_t root_xp = XPTR( local_cxy , &vmm->vsegs_root ); |
---|
| 620 | xptr_t lock_xp = XPTR( local_cxy , &vmm->vsl_lock ); |
---|
[567] | 621 | |
---|
[625] | 622 | // take the VSL lock |
---|
[640] | 623 | remote_queuelock_acquire( lock_xp ); |
---|
[567] | 624 | |
---|
[625] | 625 | // scan the VSL to delete all non kernel vsegs |
---|
| 626 | // (we don't use a FOREACH in case of item deletion) |
---|
| 627 | xptr_t iter_xp; |
---|
| 628 | xptr_t next_xp; |
---|
| 629 | for( iter_xp = hal_remote_l64( root_xp ) ; |
---|
| 630 | iter_xp != root_xp ; |
---|
| 631 | iter_xp = next_xp ) |
---|
| 632 | { |
---|
| 633 | // save extended pointer on next item in xlist |
---|
| 634 | next_xp = hal_remote_l64( iter_xp ); |
---|
[611] | 635 | |
---|
[625] | 636 | // get pointers on current vseg in VSL |
---|
| 637 | vseg_xp = XLIST_ELEMENT( iter_xp , vseg_t , xlist ); |
---|
| 638 | vseg = GET_PTR( vseg_xp ); |
---|
| 639 | vseg_type = vseg->type; |
---|
[567] | 640 | |
---|
[625] | 641 | #if( DEBUG_VMM_USER_RESET & 1 ) |
---|
| 642 | if( DEBUG_VMM_USER_RESET < cycle ) |
---|
| 643 | printk("\n[%s] found %s vseg / vpn_base %x / vpn_size %d\n", |
---|
| 644 | __FUNCTION__ , vseg_type_str( vseg->type ), vseg->vpn_base, vseg->vpn_size ); |
---|
| 645 | #endif |
---|
| 646 | // delete non kernel vseg |
---|
| 647 | if( (vseg_type != VSEG_TYPE_KCODE) && |
---|
| 648 | (vseg_type != VSEG_TYPE_KDATA) && |
---|
| 649 | (vseg_type != VSEG_TYPE_KDEV ) ) |
---|
| 650 | { |
---|
| 651 | // remove vseg from VSL |
---|
| 652 | vmm_remove_vseg( process , vseg ); |
---|
[567] | 653 | |
---|
[625] | 654 | #if( DEBUG_VMM_USER_RESET & 1 ) |
---|
| 655 | if( DEBUG_VMM_USER_RESET < cycle ) |
---|
| 656 | printk("\n[%s] %s vseg deleted / vpn_base %x / vpn_size %d\n", |
---|
| 657 | __FUNCTION__ , vseg_type_str( vseg->type ), vseg->vpn_base, vseg->vpn_size ); |
---|
| 658 | #endif |
---|
| 659 | } |
---|
| 660 | else |
---|
| 661 | { |
---|
[567] | 662 | |
---|
[625] | 663 | #if( DEBUG_VMM_USER_RESET & 1 ) |
---|
| 664 | if( DEBUG_VMM_USER_RESET < cycle ) |
---|
| 665 | printk("\n[%s] keep %s vseg / vpn_base %x / vpn_size %d\n", |
---|
| 666 | __FUNCTION__ , vseg_type_str( vseg->type ), vseg->vpn_base, vseg->vpn_size ); |
---|
| 667 | #endif |
---|
| 668 | } |
---|
| 669 | } // end loop on vsegs in VSL |
---|
[567] | 670 | |
---|
[625] | 671 | // release the VSL lock |
---|
[640] | 672 | remote_queuelock_release( lock_xp ); |
---|
[567] | 673 | |
---|
[625] | 674 | // FIXME il faut gérer les process copies... |
---|
[611] | 675 | |
---|
[672] | 676 | // re-initialise VMM |
---|
| 677 | vmm_user_init( process ); |
---|
| 678 | |
---|
[625] | 679 | #if DEBUG_VMM_USER_RESET |
---|
| 680 | cycle = (uint32_t)hal_get_cycles(); |
---|
| 681 | if( DEBUG_VMM_USER_RESET < cycle ) |
---|
| 682 | printk("\n[%s] thread[%x,%x] exit for process %x in cluster %x / cycle %d\n", |
---|
| 683 | __FUNCTION__, this->process->pid, this->trdid, process->pid, local_cxy , cycle ); |
---|
| 684 | #endif |
---|
[611] | 685 | |
---|
[635] | 686 | #if (DEBUG_VMM_USER_RESET & 1 ) |
---|
| 687 | if( DEBUG_VMM_USER_RESET < cycle ) |
---|
| 688 | hal_vmm_display( XPTR( local_cxy , process ) , true ); |
---|
| 689 | #endif |
---|
| 690 | |
---|
[625] | 691 | } // end vmm_user_reset() |
---|
[611] | 692 | |
---|
[640] | 693 | ///////////////////////////////////////////////// |
---|
| 694 | void vmm_global_delete_vseg( process_t * process, |
---|
| 695 | intptr_t base ) |
---|
| 696 | { |
---|
| 697 | cxy_t owner_cxy; |
---|
| 698 | lpid_t owner_lpid; |
---|
[641] | 699 | reg_t save_sr; |
---|
[640] | 700 | |
---|
[641] | 701 | xptr_t process_lock_xp; |
---|
[640] | 702 | xptr_t process_root_xp; |
---|
| 703 | xptr_t process_iter_xp; |
---|
| 704 | |
---|
| 705 | xptr_t remote_process_xp; |
---|
| 706 | cxy_t remote_process_cxy; |
---|
| 707 | process_t * remote_process_ptr; |
---|
| 708 | |
---|
| 709 | xptr_t vsl_root_xp; |
---|
| 710 | xptr_t vsl_lock_xp; |
---|
| 711 | xptr_t vsl_iter_xp; |
---|
| 712 | |
---|
[641] | 713 | rpc_desc_t rpc; // shared rpc descriptor for parallel RPCs |
---|
| 714 | uint32_t responses; // RPC responses counter |
---|
| 715 | |
---|
| 716 | thread_t * this = CURRENT_THREAD; |
---|
| 717 | pid_t pid = process->pid; |
---|
| 718 | cluster_t * cluster = LOCAL_CLUSTER; |
---|
| 719 | |
---|
[640] | 720 | #if DEBUG_VMM_GLOBAL_DELETE_VSEG |
---|
| 721 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
---|
| 722 | #endif |
---|
| 723 | |
---|
| 724 | #if (DEBUG_VMM_GLOBAL_DELETE_VSEG & 1) |
---|
| 725 | if( DEBUG_VMM_GLOBAL_DELETE_VSEG < cycle ) |
---|
[641] | 726 | printk("\n[%s] thread[%x,%x] enters / process %x / base %x / cycle %d\n", |
---|
[640] | 727 | __FUNCTION__, this->process->pid, this->trdid, process->pid, base, cycle ); |
---|
| 728 | #endif |
---|
| 729 | |
---|
[641] | 730 | // initialize a shared RPC descriptor |
---|
| 731 | rpc.rsp = &responses; |
---|
| 732 | rpc.blocking = false; // non blocking behaviour for rpc_send() |
---|
| 733 | rpc.index = RPC_VMM_REMOVE_VSEG; |
---|
| 734 | rpc.thread = this; |
---|
| 735 | rpc.lid = this->core->lid; |
---|
| 736 | rpc.args[0] = this->process->pid; |
---|
| 737 | rpc.args[1] = base; |
---|
| 738 | |
---|
[640] | 739 | // get owner process cluster and local index |
---|
| 740 | owner_cxy = CXY_FROM_PID( pid ); |
---|
| 741 | owner_lpid = LPID_FROM_PID( pid ); |
---|
| 742 | |
---|
[641] | 743 | // get extended pointer on root and lock of process copies xlist in owner cluster |
---|
| 744 | process_root_xp = XPTR( owner_cxy , &cluster->pmgr.copies_root[owner_lpid] ); |
---|
| 745 | process_lock_xp = XPTR( owner_cxy , &cluster->pmgr.copies_lock[owner_lpid] ); |
---|
[640] | 746 | |
---|
[641] | 747 | // mask IRQs |
---|
| 748 | hal_disable_irq( &save_sr ); |
---|
| 749 | |
---|
| 750 | // client thread blocks itself |
---|
| 751 | thread_block( XPTR( local_cxy , this ) , THREAD_BLOCKED_RPC ); |
---|
| 752 | |
---|
| 753 | // take the lock protecting process copies |
---|
| 754 | remote_queuelock_acquire( process_lock_xp ); |
---|
| 755 | |
---|
| 756 | // initialize responses counter |
---|
| 757 | responses = 0; |
---|
| 758 | |
---|
[640] | 759 | // loop on process copies |
---|
| 760 | XLIST_FOREACH( process_root_xp , process_iter_xp ) |
---|
| 761 | { |
---|
| 762 | // get cluster and local pointer on remote process |
---|
| 763 | remote_process_xp = XLIST_ELEMENT( process_iter_xp , process_t , copies_list ); |
---|
| 764 | remote_process_ptr = GET_PTR( remote_process_xp ); |
---|
| 765 | remote_process_cxy = GET_CXY( remote_process_xp ); |
---|
| 766 | |
---|
| 767 | // build extended pointers on remote VSL root and lock |
---|
| 768 | vsl_root_xp = XPTR( remote_process_cxy , &remote_process_ptr->vmm.vsegs_root ); |
---|
| 769 | vsl_lock_xp = XPTR( remote_process_cxy , &remote_process_ptr->vmm.vsl_lock ); |
---|
| 770 | |
---|
| 771 | // get lock on remote VSL |
---|
| 772 | remote_queuelock_acquire( vsl_lock_xp ); |
---|
| 773 | |
---|
| 774 | // loop on vsegs in remote process VSL |
---|
| 775 | XLIST_FOREACH( vsl_root_xp , vsl_iter_xp ) |
---|
| 776 | { |
---|
| 777 | // get pointers on current vseg |
---|
| 778 | xptr_t vseg_xp = XLIST_ELEMENT( vsl_iter_xp , vseg_t , xlist ); |
---|
| 779 | vseg_t * vseg_ptr = GET_PTR( vseg_xp ); |
---|
| 780 | |
---|
| 781 | // get current vseg base address |
---|
| 782 | intptr_t vseg_base = (intptr_t)hal_remote_lpt( XPTR( remote_process_cxy, |
---|
| 783 | &vseg_ptr->min ) ); |
---|
| 784 | |
---|
| 785 | if( vseg_base == base ) // found searched vseg |
---|
| 786 | { |
---|
[641] | 787 | // atomically increment responses counter |
---|
| 788 | hal_atomic_add( &responses , 1 ); |
---|
[640] | 789 | |
---|
| 790 | #if (DEBUG_VMM_GLOBAL_DELETE_VSEG & 1) |
---|
| 791 | if( DEBUG_VMM_GLOBAL_DELETE_VSEG < cycle ) |
---|
[641] | 792 | printk("\n[%s] thread[%x,%x] register RPC request in cluster %x\n", |
---|
| 793 | __FUNCTION__, this->process->pid, this->trdid, remote_process_cxy ); |
---|
[640] | 794 | #endif |
---|
[641] | 795 | // send RPC to remote cluster |
---|
| 796 | rpc_send( remote_process_cxy , &rpc ); |
---|
[640] | 797 | |
---|
[641] | 798 | // exit loop on vsegs |
---|
| 799 | break; |
---|
[640] | 800 | } |
---|
| 801 | } // end of loop on vsegs |
---|
| 802 | |
---|
[641] | 803 | // release lock on remote VSL |
---|
| 804 | remote_queuelock_release( vsl_lock_xp ); |
---|
| 805 | |
---|
| 806 | } // end of loop on process copies |
---|
| 807 | |
---|
| 808 | // release the lock protecting process copies |
---|
| 809 | remote_queuelock_release( process_lock_xp ); |
---|
| 810 | |
---|
[640] | 811 | #if (DEBUG_VMM_GLOBAL_DELETE_VSEG & 1) |
---|
| 812 | if( DEBUG_VMM_GLOBAL_DELETE_VSEG < cycle ) |
---|
[641] | 813 | printk("\n[%s] thread[%x,%x] deschedule / process %x / base %x\n", |
---|
| 814 | __FUNCTION__, this->process->pid, this->trdid, process->pid, base ); |
---|
[640] | 815 | #endif |
---|
| 816 | |
---|
[641] | 817 | // client thread deschedule |
---|
| 818 | sched_yield("blocked on rpc_vmm_delete_vseg"); |
---|
| 819 | |
---|
| 820 | // restore IRQs |
---|
| 821 | hal_restore_irq( save_sr ); |
---|
[640] | 822 | |
---|
| 823 | #if DEBUG_VMM_GLOBAL_DELETE_VSEG |
---|
| 824 | cycle = (uint32_t)hal_get_cycles(); |
---|
| 825 | if( DEBUG_VMM_GLOBAL_DELETE_VSEG < cycle ) |
---|
[641] | 826 | printk("\n[%s] thread[%x,%x] exit / process %x / base %x / cycle %d\n", |
---|
| 827 | __FUNCTION__, this->process->pid, this->trdid, process->pid, base, cycle ); |
---|
[640] | 828 | #endif |
---|
| 829 | |
---|
| 830 | } // end vmm_global_delete_vseg() |
---|
| 831 | |
---|
[595] | 832 | //////////////////////////////////////////////// |
---|
[640] | 833 | void vmm_global_resize_vseg( process_t * process, |
---|
| 834 | intptr_t base, |
---|
| 835 | intptr_t new_base, |
---|
| 836 | intptr_t new_size ) |
---|
| 837 | { |
---|
| 838 | cxy_t owner_cxy; |
---|
| 839 | lpid_t owner_lpid; |
---|
[641] | 840 | reg_t save_sr; |
---|
[640] | 841 | |
---|
[641] | 842 | xptr_t process_lock_xp; |
---|
[640] | 843 | xptr_t process_root_xp; |
---|
| 844 | xptr_t process_iter_xp; |
---|
| 845 | |
---|
| 846 | xptr_t remote_process_xp; |
---|
| 847 | cxy_t remote_process_cxy; |
---|
| 848 | process_t * remote_process_ptr; |
---|
| 849 | |
---|
| 850 | xptr_t vsl_root_xp; |
---|
| 851 | xptr_t vsl_lock_xp; |
---|
| 852 | xptr_t vsl_iter_xp; |
---|
| 853 | |
---|
[641] | 854 | rpc_desc_t rpc; // shared rpc descriptor for parallel RPCs |
---|
| 855 | uint32_t responses; // RPC responses counter |
---|
| 856 | |
---|
| 857 | thread_t * this = CURRENT_THREAD; |
---|
| 858 | pid_t pid = process->pid; |
---|
| 859 | cluster_t * cluster = LOCAL_CLUSTER; |
---|
| 860 | |
---|
[640] | 861 | #if DEBUG_VMM_GLOBAL_RESIZE_VSEG |
---|
| 862 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
---|
| 863 | #endif |
---|
| 864 | |
---|
| 865 | #if (DEBUG_VMM_GLOBAL_RESIZE_VSEG & 1) |
---|
| 866 | if( DEBUG_VMM_GLOBAL_RESIZE_VSEG < cycle ) |
---|
| 867 | printk("\n[%s] thread[%x,%x] : process %x / base %x / new_base %x / new_size %x / cycle %d\n", |
---|
| 868 | __FUNCTION__, this->process->pid, this->trdid, process->pid, base, new_base, new_size, cycle ); |
---|
| 869 | #endif |
---|
| 870 | |
---|
[641] | 871 | // initialize a shared RPC descriptor |
---|
| 872 | rpc.rsp = &responses; |
---|
| 873 | rpc.blocking = false; // non blocking behaviour for rpc_send() |
---|
| 874 | rpc.index = RPC_VMM_REMOVE_VSEG; |
---|
| 875 | rpc.thread = this; |
---|
| 876 | rpc.lid = this->core->lid; |
---|
| 877 | rpc.args[0] = this->process->pid; |
---|
| 878 | rpc.args[1] = base; |
---|
| 879 | rpc.args[2] = new_base; |
---|
| 880 | rpc.args[3] = new_size; |
---|
| 881 | |
---|
| 882 | // get owner process cluster and local index |
---|
[640] | 883 | owner_cxy = CXY_FROM_PID( pid ); |
---|
| 884 | owner_lpid = LPID_FROM_PID( pid ); |
---|
| 885 | |
---|
[641] | 886 | // get extended pointer on root and lock of process copies xlist in owner cluster |
---|
| 887 | process_root_xp = XPTR( owner_cxy , &cluster->pmgr.copies_root[owner_lpid] ); |
---|
| 888 | process_lock_xp = XPTR( owner_cxy , &cluster->pmgr.copies_lock[owner_lpid] ); |
---|
[640] | 889 | |
---|
[641] | 890 | // mask IRQs |
---|
| 891 | hal_disable_irq( &save_sr ); |
---|
| 892 | |
---|
| 893 | // client thread blocks itself |
---|
| 894 | thread_block( XPTR( local_cxy , this ) , THREAD_BLOCKED_RPC ); |
---|
| 895 | |
---|
| 896 | // take the lock protecting process copies |
---|
| 897 | remote_queuelock_acquire( process_lock_xp ); |
---|
| 898 | |
---|
| 899 | // initialize responses counter |
---|
| 900 | responses = 0; |
---|
| 901 | |
---|
[640] | 902 | // loop on process copies |
---|
| 903 | XLIST_FOREACH( process_root_xp , process_iter_xp ) |
---|
| 904 | { |
---|
| 905 | // get cluster and local pointer on remote process |
---|
| 906 | remote_process_xp = XLIST_ELEMENT( process_iter_xp , process_t , copies_list ); |
---|
| 907 | remote_process_ptr = GET_PTR( remote_process_xp ); |
---|
| 908 | remote_process_cxy = GET_CXY( remote_process_xp ); |
---|
| 909 | |
---|
| 910 | // build extended pointers on remote VSL root and lock |
---|
| 911 | vsl_root_xp = XPTR( remote_process_cxy , &remote_process_ptr->vmm.vsegs_root ); |
---|
| 912 | vsl_lock_xp = XPTR( remote_process_cxy , &remote_process_ptr->vmm.vsl_lock ); |
---|
| 913 | |
---|
| 914 | // get lock on remote VSL |
---|
| 915 | remote_queuelock_acquire( vsl_lock_xp ); |
---|
| 916 | |
---|
| 917 | // loop on vsegs in remote process VSL |
---|
| 918 | XLIST_FOREACH( vsl_root_xp , vsl_iter_xp ) |
---|
| 919 | { |
---|
| 920 | // get pointers on current vseg |
---|
| 921 | xptr_t vseg_xp = XLIST_ELEMENT( vsl_iter_xp , vseg_t , xlist ); |
---|
| 922 | vseg_t * vseg_ptr = GET_PTR( vseg_xp ); |
---|
| 923 | |
---|
| 924 | // get current vseg base address |
---|
| 925 | intptr_t vseg_base = (intptr_t)hal_remote_lpt( XPTR( remote_process_cxy, |
---|
| 926 | &vseg_ptr->min ) ); |
---|
| 927 | |
---|
| 928 | if( vseg_base == base ) // found searched vseg |
---|
| 929 | { |
---|
[641] | 930 | // atomically increment responses counter |
---|
| 931 | hal_atomic_add( &responses , 1 ); |
---|
| 932 | |
---|
[640] | 933 | #if (DEBUG_VMM_GLOBAL_RESIZE_VSEG & 1) |
---|
| 934 | if( DEBUG_VMM_GLOBAL_RESIZE_VSEG < cycle ) |
---|
[641] | 935 | printk("\n[%s] thread[%x,%x] register RPC request in cluster %x\n", |
---|
| 936 | __FUNCTION__, this->process->pid, this->trdid, remote_process_cxy ); |
---|
[640] | 937 | #endif |
---|
[641] | 938 | // send RPC to remote cluster |
---|
| 939 | rpc_send( remote_process_cxy , & rpc ); |
---|
[640] | 940 | |
---|
[641] | 941 | // exit loop on vsegs |
---|
| 942 | break; |
---|
[640] | 943 | } |
---|
[641] | 944 | |
---|
[640] | 945 | } // end of loop on vsegs |
---|
| 946 | |
---|
| 947 | #if (DEBUG_VMM_GLOBAL_RESIZE_VSEG & 1) |
---|
| 948 | if( DEBUG_VMM_GLOBAL_RESIZE_VSEG < cycle ) |
---|
| 949 | hal_vmm_display( remote_process_xp , false ); |
---|
| 950 | #endif |
---|
| 951 | |
---|
| 952 | // release lock on remote VSL |
---|
| 953 | remote_queuelock_release( vsl_lock_xp ); |
---|
[641] | 954 | |
---|
[640] | 955 | } // end of loop on process copies |
---|
| 956 | |
---|
[641] | 957 | // release the lock protecting process copies |
---|
| 958 | remote_queuelock_release( process_lock_xp ); |
---|
| 959 | |
---|
| 960 | #if (DEBUG_VMM_GLOBAL_RESIZE_VSEG & 1) |
---|
| 961 | if( DEBUG_VMM_GLOBAL_RESIZE_VSEG < cycle ) |
---|
| 962 | printk("\n[%s] thread[%x,%x] deschedule / process %x / base %x\n", |
---|
| 963 | __FUNCTION__, this->process->pid, this->trdid, process->pid, base ); |
---|
| 964 | #endif |
---|
| 965 | |
---|
| 966 | // client thread deschedule |
---|
| 967 | sched_yield("blocked on rpc_vmm_delete_vseg"); |
---|
| 968 | |
---|
| 969 | // restore IRQs |
---|
| 970 | hal_restore_irq( save_sr ); |
---|
| 971 | |
---|
[640] | 972 | #if DEBUG_VMM_GLOBAL_RESIZE_VSEG |
---|
| 973 | cycle = (uint32_t)hal_get_cycles(); |
---|
| 974 | if( DEBUG_VMM_GLOBAL_RESIZE_VSEG < cycle ) |
---|
| 975 | printk("\n[%s] thread[%x,%x] exit for process %x / base %x / cycle %d\n", |
---|
| 976 | __FUNCTION__, this->process->pid, this->trdid, process->pid , base, cycle ); |
---|
| 977 | #endif |
---|
| 978 | |
---|
| 979 | } // end vmm_global_resize_vseg() |
---|
| 980 | |
---|
| 981 | //////////////////////////////////////////////// |
---|
[433] | 982 | void vmm_global_update_pte( process_t * process, |
---|
| 983 | vpn_t vpn, |
---|
| 984 | uint32_t attr, |
---|
| 985 | ppn_t ppn ) |
---|
[23] | 986 | { |
---|
[640] | 987 | pid_t pid; |
---|
| 988 | cxy_t owner_cxy; |
---|
| 989 | lpid_t owner_lpid; |
---|
| 990 | |
---|
[408] | 991 | xlist_entry_t * process_root_ptr; |
---|
| 992 | xptr_t process_root_xp; |
---|
| 993 | xptr_t process_iter_xp; |
---|
[23] | 994 | |
---|
[408] | 995 | xptr_t remote_process_xp; |
---|
| 996 | cxy_t remote_process_cxy; |
---|
| 997 | process_t * remote_process_ptr; |
---|
| 998 | xptr_t remote_gpt_xp; |
---|
[23] | 999 | |
---|
[640] | 1000 | #if DEBUG_VMM_GLOBAL_UPDATE_PTE |
---|
[433] | 1001 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
---|
[595] | 1002 | thread_t * this = CURRENT_THREAD; |
---|
[640] | 1003 | #endif |
---|
| 1004 | |
---|
| 1005 | |
---|
| 1006 | #if (DEBUG_VMM_GLOBAL_UPDATE_PTE & 1) |
---|
| 1007 | if( DEBUG_VMM_GLOBAL_UPDATE_PTE < cycle ) |
---|
[635] | 1008 | printk("\n[%s] thread[%x,%x] enter for process %x / vpn %x / attr %x / ppn %x / ycle %d\n", |
---|
| 1009 | __FUNCTION__, this->process->pid, this->trdid, process->pid, vpn, attr, ppn, cycle ); |
---|
[433] | 1010 | #endif |
---|
| 1011 | |
---|
[640] | 1012 | // get owner process cluster and local index |
---|
[408] | 1013 | pid = process->pid; |
---|
| 1014 | owner_cxy = CXY_FROM_PID( pid ); |
---|
| 1015 | owner_lpid = LPID_FROM_PID( pid ); |
---|
[640] | 1016 | |
---|
| 1017 | // get extended pointer on root of process copies xlist in owner cluster |
---|
[408] | 1018 | process_root_ptr = &LOCAL_CLUSTER->pmgr.copies_root[owner_lpid]; |
---|
| 1019 | process_root_xp = XPTR( owner_cxy , process_root_ptr ); |
---|
[23] | 1020 | |
---|
[640] | 1021 | // loop on process copies |
---|
[408] | 1022 | XLIST_FOREACH( process_root_xp , process_iter_xp ) |
---|
| 1023 | { |
---|
| 1024 | // get cluster and local pointer on remote process |
---|
| 1025 | remote_process_xp = XLIST_ELEMENT( process_iter_xp , process_t , copies_list ); |
---|
[433] | 1026 | remote_process_ptr = GET_PTR( remote_process_xp ); |
---|
[408] | 1027 | remote_process_cxy = GET_CXY( remote_process_xp ); |
---|
[407] | 1028 | |
---|
[640] | 1029 | #if (DEBUG_VMM_GLOBAL_UPDATE_PTE & 1) |
---|
| 1030 | if( DEBUG_VMM_GLOBAL_UPDATE_PTE < cycle ) |
---|
[635] | 1031 | printk("\n[%s] thread[%x,%x] handling vpn %x for process %x in cluster %x\n", |
---|
[595] | 1032 | __FUNCTION__, this->process->pid, this->trdid, vpn, process->pid, remote_process_cxy ); |
---|
[433] | 1033 | #endif |
---|
| 1034 | |
---|
[408] | 1035 | // get extended pointer on remote gpt |
---|
| 1036 | remote_gpt_xp = XPTR( remote_process_cxy , &remote_process_ptr->vmm.gpt ); |
---|
| 1037 | |
---|
[433] | 1038 | // update remote GPT |
---|
| 1039 | hal_gpt_update_pte( remote_gpt_xp, vpn, attr, ppn ); |
---|
[408] | 1040 | } |
---|
| 1041 | |
---|
[640] | 1042 | #if DEBUG_VMM_GLOBAL_UPDATE_PTE |
---|
[433] | 1043 | cycle = (uint32_t)hal_get_cycles(); |
---|
[640] | 1044 | if( DEBUG_VMM_GLOBAL_UPDATE_PTE < cycle ) |
---|
[595] | 1045 | printk("\n[%s] thread[%x,%x] exit for process %x / vpn %x / cycle %d\n", |
---|
| 1046 | __FUNCTION__, this->process->pid, this->trdid, process->pid , vpn , cycle ); |
---|
[433] | 1047 | #endif |
---|
| 1048 | |
---|
[640] | 1049 | #if (DEBUG_VMM_GLOBAL_UPDATE_PTE & 1) |
---|
[635] | 1050 | hal_vmm_display( process , true ); |
---|
| 1051 | #endif |
---|
| 1052 | |
---|
[433] | 1053 | } // end vmm_global_update_pte() |
---|
| 1054 | |
---|
[408] | 1055 | /////////////////////////////////////// |
---|
| 1056 | void vmm_set_cow( process_t * process ) |
---|
| 1057 | { |
---|
| 1058 | vmm_t * vmm; |
---|
| 1059 | |
---|
| 1060 | xlist_entry_t * process_root_ptr; |
---|
| 1061 | xptr_t process_root_xp; |
---|
| 1062 | xptr_t process_iter_xp; |
---|
| 1063 | |
---|
| 1064 | xptr_t remote_process_xp; |
---|
| 1065 | cxy_t remote_process_cxy; |
---|
| 1066 | process_t * remote_process_ptr; |
---|
| 1067 | xptr_t remote_gpt_xp; |
---|
| 1068 | |
---|
| 1069 | xptr_t vseg_root_xp; |
---|
| 1070 | xptr_t vseg_iter_xp; |
---|
| 1071 | |
---|
| 1072 | xptr_t vseg_xp; |
---|
| 1073 | vseg_t * vseg; |
---|
| 1074 | |
---|
| 1075 | pid_t pid; |
---|
| 1076 | cxy_t owner_cxy; |
---|
| 1077 | lpid_t owner_lpid; |
---|
| 1078 | |
---|
[635] | 1079 | // get target process PID |
---|
| 1080 | pid = process->pid; |
---|
| 1081 | |
---|
[438] | 1082 | #if DEBUG_VMM_SET_COW |
---|
[595] | 1083 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
---|
| 1084 | thread_t * this = CURRENT_THREAD; |
---|
[438] | 1085 | if( DEBUG_VMM_SET_COW < cycle ) |
---|
[595] | 1086 | printk("\n[%s] thread[%x,%x] enter for process %x / cycle %d\n", |
---|
[635] | 1087 | __FUNCTION__, this->process->pid, this->trdid, pid , cycle ); |
---|
[433] | 1088 | #endif |
---|
[408] | 1089 | |
---|
[635] | 1090 | #if (DEBUG_VMM_SET_COW & 1) |
---|
| 1091 | if( DEBUG_VMM_SET_COW < cycle ) |
---|
| 1092 | hal_vmm_display( process , true ); |
---|
| 1093 | #endif |
---|
| 1094 | |
---|
[567] | 1095 | // check cluster is reference |
---|
[672] | 1096 | assert( __FUNCTION__, (XPTR( local_cxy , process ) == process->ref_xp), |
---|
[635] | 1097 | "local cluster must be process reference cluster\n"); |
---|
[408] | 1098 | |
---|
| 1099 | // get pointer on reference VMM |
---|
| 1100 | vmm = &process->vmm; |
---|
| 1101 | |
---|
| 1102 | // get extended pointer on root of process copies xlist in owner cluster |
---|
| 1103 | owner_cxy = CXY_FROM_PID( pid ); |
---|
| 1104 | owner_lpid = LPID_FROM_PID( pid ); |
---|
| 1105 | process_root_ptr = &LOCAL_CLUSTER->pmgr.copies_root[owner_lpid]; |
---|
| 1106 | process_root_xp = XPTR( owner_cxy , process_root_ptr ); |
---|
| 1107 | |
---|
| 1108 | // get extended pointer on root of vsegs xlist from reference VMM |
---|
| 1109 | vseg_root_xp = XPTR( local_cxy , &vmm->vsegs_root ); |
---|
| 1110 | |
---|
[635] | 1111 | // loop on target process copies |
---|
[408] | 1112 | XLIST_FOREACH( process_root_xp , process_iter_xp ) |
---|
| 1113 | { |
---|
[635] | 1114 | // get cluster and local pointer on remote process copy |
---|
[408] | 1115 | remote_process_xp = XLIST_ELEMENT( process_iter_xp , process_t , copies_list ); |
---|
[433] | 1116 | remote_process_ptr = GET_PTR( remote_process_xp ); |
---|
[408] | 1117 | remote_process_cxy = GET_CXY( remote_process_xp ); |
---|
| 1118 | |
---|
[595] | 1119 | #if (DEBUG_VMM_SET_COW & 1) |
---|
[438] | 1120 | if( DEBUG_VMM_SET_COW < cycle ) |
---|
[635] | 1121 | printk("\n[%s] thread[%x,%x] (%x) handles process %x in cluster %x\n", |
---|
| 1122 | __FUNCTION__, this->process->pid, this->trdid, this, pid, remote_process_cxy ); |
---|
[433] | 1123 | #endif |
---|
[408] | 1124 | |
---|
| 1125 | // get extended pointer on remote gpt |
---|
| 1126 | remote_gpt_xp = XPTR( remote_process_cxy , &remote_process_ptr->vmm.gpt ); |
---|
| 1127 | |
---|
| 1128 | // loop on vsegs in (local) reference process VSL |
---|
| 1129 | XLIST_FOREACH( vseg_root_xp , vseg_iter_xp ) |
---|
| 1130 | { |
---|
| 1131 | // get pointer on vseg |
---|
| 1132 | vseg_xp = XLIST_ELEMENT( vseg_iter_xp , vseg_t , xlist ); |
---|
[433] | 1133 | vseg = GET_PTR( vseg_xp ); |
---|
[408] | 1134 | |
---|
| 1135 | // get vseg type, base and size |
---|
| 1136 | uint32_t type = vseg->type; |
---|
| 1137 | vpn_t vpn_base = vseg->vpn_base; |
---|
| 1138 | vpn_t vpn_size = vseg->vpn_size; |
---|
| 1139 | |
---|
[595] | 1140 | #if (DEBUG_VMM_SET_COW & 1) |
---|
[438] | 1141 | if( DEBUG_VMM_SET_COW < cycle ) |
---|
[635] | 1142 | printk("\n[%s] thread[%x,%x] found vseg %s / vpn_base = %x / vpn_size = %x\n", |
---|
[595] | 1143 | __FUNCTION__, this->process->pid, this->trdid, vseg_type_str(type), vpn_base, vpn_size ); |
---|
[433] | 1144 | #endif |
---|
| 1145 | // only DATA, ANON and REMOTE vsegs |
---|
[408] | 1146 | if( (type == VSEG_TYPE_DATA) || |
---|
| 1147 | (type == VSEG_TYPE_ANON) || |
---|
| 1148 | (type == VSEG_TYPE_REMOTE) ) |
---|
| 1149 | { |
---|
[433] | 1150 | vpn_t vpn; |
---|
| 1151 | uint32_t attr; |
---|
| 1152 | ppn_t ppn; |
---|
| 1153 | xptr_t page_xp; |
---|
| 1154 | cxy_t page_cxy; |
---|
| 1155 | page_t * page_ptr; |
---|
| 1156 | xptr_t forks_xp; |
---|
[469] | 1157 | xptr_t lock_xp; |
---|
[433] | 1158 | |
---|
| 1159 | // update flags in remote GPT |
---|
| 1160 | hal_gpt_set_cow( remote_gpt_xp, |
---|
| 1161 | vpn_base, |
---|
| 1162 | vpn_size ); |
---|
| 1163 | |
---|
| 1164 | // atomically increment pending forks counter in physical pages, |
---|
[635] | 1165 | // this is only done once, when handling the reference copy |
---|
[433] | 1166 | if( remote_process_cxy == local_cxy ) |
---|
| 1167 | { |
---|
[635] | 1168 | |
---|
| 1169 | #if (DEBUG_VMM_SET_COW & 1) |
---|
| 1170 | if( DEBUG_VMM_SET_COW < cycle ) |
---|
| 1171 | printk("\n[%s] thread[%x,%x] handles vseg %s / vpn_base = %x / vpn_size = %x\n", |
---|
| 1172 | __FUNCTION__, this->process->pid, this->trdid, vseg_type_str(type), vpn_base, vpn_size ); |
---|
| 1173 | #endif |
---|
[433] | 1174 | // scan all pages in vseg |
---|
| 1175 | for( vpn = vpn_base ; vpn < (vpn_base + vpn_size) ; vpn++ ) |
---|
| 1176 | { |
---|
| 1177 | // get page attributes and PPN from reference GPT |
---|
[585] | 1178 | hal_gpt_get_pte( remote_gpt_xp , vpn , &attr , &ppn ); |
---|
[433] | 1179 | |
---|
| 1180 | // atomically update pending forks counter if page is mapped |
---|
| 1181 | if( attr & GPT_MAPPED ) |
---|
| 1182 | { |
---|
[469] | 1183 | // get pointers and cluster on page descriptor |
---|
[433] | 1184 | page_xp = ppm_ppn2page( ppn ); |
---|
| 1185 | page_cxy = GET_CXY( page_xp ); |
---|
| 1186 | page_ptr = GET_PTR( page_xp ); |
---|
[469] | 1187 | |
---|
| 1188 | // get extended pointers on "forks" and "lock" |
---|
[433] | 1189 | forks_xp = XPTR( page_cxy , &page_ptr->forks ); |
---|
[469] | 1190 | lock_xp = XPTR( page_cxy , &page_ptr->lock ); |
---|
| 1191 | |
---|
[567] | 1192 | // take lock protecting "forks" counter |
---|
| 1193 | remote_busylock_acquire( lock_xp ); |
---|
| 1194 | |
---|
[469] | 1195 | // increment "forks" |
---|
[433] | 1196 | hal_remote_atomic_add( forks_xp , 1 ); |
---|
[567] | 1197 | |
---|
| 1198 | // release lock protecting "forks" counter |
---|
| 1199 | remote_busylock_release( lock_xp ); |
---|
[433] | 1200 | } |
---|
| 1201 | } // end loop on vpn |
---|
[635] | 1202 | |
---|
| 1203 | #if (DEBUG_VMM_SET_COW & 1) |
---|
| 1204 | if( DEBUG_VMM_SET_COW < cycle ) |
---|
| 1205 | printk("\n[%s] thread[%x,%x] completes vseg %s / vpn_base = %x / vpn_size = %x\n", |
---|
| 1206 | __FUNCTION__, this->process->pid, this->trdid, vseg_type_str(type), vpn_base, vpn_size ); |
---|
| 1207 | #endif |
---|
[433] | 1208 | } // end if local |
---|
| 1209 | } // end if vseg type |
---|
| 1210 | } // end loop on vsegs |
---|
[408] | 1211 | } // end loop on process copies |
---|
| 1212 | |
---|
[438] | 1213 | #if DEBUG_VMM_SET_COW |
---|
[433] | 1214 | cycle = (uint32_t)hal_get_cycles(); |
---|
[438] | 1215 | if( DEBUG_VMM_SET_COW < cycle ) |
---|
[595] | 1216 | printk("\n[%s] thread[%x,%x] exit for process %x / cycle %d\n", |
---|
| 1217 | __FUNCTION__, this->process->pid, this->trdid, process->pid , cycle ); |
---|
[433] | 1218 | #endif |
---|
[408] | 1219 | |
---|
| 1220 | } // end vmm_set-cow() |
---|
| 1221 | |
---|
| 1222 | ///////////////////////////////////////////////// |
---|
| 1223 | error_t vmm_fork_copy( process_t * child_process, |
---|
| 1224 | xptr_t parent_process_xp ) |
---|
| 1225 | { |
---|
| 1226 | error_t error; |
---|
| 1227 | cxy_t parent_cxy; |
---|
| 1228 | process_t * parent_process; |
---|
| 1229 | vmm_t * parent_vmm; |
---|
| 1230 | xptr_t parent_lock_xp; |
---|
| 1231 | vmm_t * child_vmm; |
---|
| 1232 | xptr_t iter_xp; |
---|
| 1233 | xptr_t parent_vseg_xp; |
---|
| 1234 | vseg_t * parent_vseg; |
---|
| 1235 | vseg_t * child_vseg; |
---|
| 1236 | uint32_t type; |
---|
| 1237 | vpn_t vpn; |
---|
| 1238 | vpn_t vpn_base; |
---|
| 1239 | vpn_t vpn_size; |
---|
| 1240 | xptr_t parent_root_xp; |
---|
| 1241 | bool_t mapped; |
---|
| 1242 | ppn_t ppn; |
---|
| 1243 | |
---|
[438] | 1244 | #if DEBUG_VMM_FORK_COPY |
---|
[433] | 1245 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
---|
[595] | 1246 | thread_t * this = CURRENT_THREAD; |
---|
[438] | 1247 | if( DEBUG_VMM_FORK_COPY < cycle ) |
---|
[595] | 1248 | printk("\n[%s] thread %x enter / cycle %d\n", |
---|
| 1249 | __FUNCTION__ , this->process->pid, this->trdid, cycle ); |
---|
[433] | 1250 | #endif |
---|
[408] | 1251 | |
---|
| 1252 | // get parent process cluster and local pointer |
---|
| 1253 | parent_cxy = GET_CXY( parent_process_xp ); |
---|
[433] | 1254 | parent_process = GET_PTR( parent_process_xp ); |
---|
[408] | 1255 | |
---|
| 1256 | // get local pointers on parent and child VMM |
---|
| 1257 | parent_vmm = &parent_process->vmm; |
---|
| 1258 | child_vmm = &child_process->vmm; |
---|
| 1259 | |
---|
[625] | 1260 | // build extended pointer on parent VSL root and lock |
---|
[408] | 1261 | parent_root_xp = XPTR( parent_cxy , &parent_vmm->vsegs_root ); |
---|
[625] | 1262 | parent_lock_xp = XPTR( parent_cxy , &parent_vmm->vsl_lock ); |
---|
[408] | 1263 | |
---|
[640] | 1264 | // take the lock protecting the parent VSL |
---|
| 1265 | remote_queuelock_acquire( parent_lock_xp ); |
---|
[415] | 1266 | |
---|
[408] | 1267 | // loop on parent VSL xlist |
---|
| 1268 | XLIST_FOREACH( parent_root_xp , iter_xp ) |
---|
[23] | 1269 | { |
---|
[625] | 1270 | // get pointers on current parent vseg |
---|
[408] | 1271 | parent_vseg_xp = XLIST_ELEMENT( iter_xp , vseg_t , xlist ); |
---|
[433] | 1272 | parent_vseg = GET_PTR( parent_vseg_xp ); |
---|
[23] | 1273 | |
---|
[408] | 1274 | // get vseg type |
---|
[567] | 1275 | type = hal_remote_l32( XPTR( parent_cxy , &parent_vseg->type ) ); |
---|
[408] | 1276 | |
---|
[438] | 1277 | #if DEBUG_VMM_FORK_COPY |
---|
[433] | 1278 | cycle = (uint32_t)hal_get_cycles(); |
---|
[438] | 1279 | if( DEBUG_VMM_FORK_COPY < cycle ) |
---|
[595] | 1280 | printk("\n[%s] thread[%x,%x] found parent vseg %s / vpn_base = %x / cycle %d\n", |
---|
| 1281 | __FUNCTION__ , this->process->pid, this->trdid, vseg_type_str(type), |
---|
[567] | 1282 | hal_remote_l32( XPTR( parent_cxy , &parent_vseg->vpn_base ) ) , cycle ); |
---|
[433] | 1283 | #endif |
---|
[23] | 1284 | |
---|
[623] | 1285 | // all parent vsegs - but STACK and kernel vsegs - must be copied in child VSL |
---|
| 1286 | if( (type != VSEG_TYPE_STACK) && (type != VSEG_TYPE_KCODE) && |
---|
| 1287 | (type != VSEG_TYPE_KDATA) && (type != VSEG_TYPE_KDEV) ) |
---|
[23] | 1288 | { |
---|
[408] | 1289 | // allocate memory for a new child vseg |
---|
| 1290 | child_vseg = vseg_alloc(); |
---|
| 1291 | if( child_vseg == NULL ) // release all allocated vsegs |
---|
[23] | 1292 | { |
---|
[683] | 1293 | |
---|
| 1294 | #if DEBUG_VMM_ERROR |
---|
| 1295 | printk("\n[ERROR] in %s : cannot create vseg for child in cluster %x\n", |
---|
| 1296 | __FUNCTION__, local_cxy ); |
---|
| 1297 | #endif |
---|
[408] | 1298 | vmm_destroy( child_process ); |
---|
| 1299 | return -1; |
---|
[23] | 1300 | } |
---|
| 1301 | |
---|
[408] | 1302 | // copy parent vseg to child vseg |
---|
| 1303 | vseg_init_from_ref( child_vseg , parent_vseg_xp ); |
---|
[23] | 1304 | |
---|
[640] | 1305 | // build extended pointer on child VSL lock |
---|
| 1306 | xptr_t child_lock_xp = XPTR( local_cxy , &child_vmm->vsl_lock ); |
---|
[625] | 1307 | |
---|
[640] | 1308 | // take the child VSL lock |
---|
| 1309 | remote_queuelock_acquire( child_lock_xp ); |
---|
[625] | 1310 | |
---|
[408] | 1311 | // register child vseg in child VSL |
---|
[611] | 1312 | vmm_attach_vseg_to_vsl( child_vmm , child_vseg ); |
---|
[407] | 1313 | |
---|
[640] | 1314 | // release the child VSL lock |
---|
| 1315 | remote_queuelock_release( child_lock_xp ); |
---|
[625] | 1316 | |
---|
[438] | 1317 | #if DEBUG_VMM_FORK_COPY |
---|
[433] | 1318 | cycle = (uint32_t)hal_get_cycles(); |
---|
[438] | 1319 | if( DEBUG_VMM_FORK_COPY < cycle ) |
---|
[595] | 1320 | printk("\n[%s] thread[%x,%x] copied vseg %s / vpn_base = %x to child VSL / cycle %d\n", |
---|
| 1321 | __FUNCTION__ , this->process->pid, this->trdid, vseg_type_str(type), |
---|
[567] | 1322 | hal_remote_l32( XPTR( parent_cxy , &parent_vseg->vpn_base ) ) , cycle ); |
---|
[433] | 1323 | #endif |
---|
[625] | 1324 | // copy DATA, ANON, REMOTE, FILE parent GPT entries to child GPT |
---|
[408] | 1325 | if( type != VSEG_TYPE_CODE ) |
---|
| 1326 | { |
---|
[625] | 1327 | // activate the COW for DATA, ANON, REMOTE vsegs only |
---|
[635] | 1328 | // cow = ( type != VSEG_TYPE_FILE ); |
---|
[23] | 1329 | |
---|
[408] | 1330 | vpn_base = child_vseg->vpn_base; |
---|
| 1331 | vpn_size = child_vseg->vpn_size; |
---|
[23] | 1332 | |
---|
[408] | 1333 | // scan pages in parent vseg |
---|
| 1334 | for( vpn = vpn_base ; vpn < (vpn_base + vpn_size) ; vpn++ ) |
---|
| 1335 | { |
---|
| 1336 | error = hal_gpt_pte_copy( &child_vmm->gpt, |
---|
[625] | 1337 | vpn, |
---|
[408] | 1338 | XPTR( parent_cxy , &parent_vmm->gpt ), |
---|
| 1339 | vpn, |
---|
[635] | 1340 | false, // does not handle COW flag |
---|
| 1341 | &ppn, // unused |
---|
| 1342 | &mapped ); // unused |
---|
[408] | 1343 | if( error ) |
---|
| 1344 | { |
---|
[683] | 1345 | |
---|
| 1346 | #if DEBUG_VMM_ERROR |
---|
| 1347 | printk("\n[ERROR] in %s : cannot copy GPT\n", |
---|
| 1348 | __FUNCTION__ ); |
---|
| 1349 | #endif |
---|
[408] | 1350 | vmm_destroy( child_process ); |
---|
| 1351 | return -1; |
---|
| 1352 | } |
---|
| 1353 | |
---|
[438] | 1354 | #if DEBUG_VMM_FORK_COPY |
---|
[433] | 1355 | cycle = (uint32_t)hal_get_cycles(); |
---|
[438] | 1356 | if( DEBUG_VMM_FORK_COPY < cycle ) |
---|
[595] | 1357 | printk("\n[%s] thread[%x,%x] copied vpn %x to child GPT / cycle %d\n", |
---|
| 1358 | __FUNCTION__ , this->process->pid, this->trdid , vpn , cycle ); |
---|
[433] | 1359 | #endif |
---|
[408] | 1360 | } |
---|
| 1361 | } // end if no code & no stack |
---|
| 1362 | } // end if no stack |
---|
| 1363 | } // end loop on vsegs |
---|
| 1364 | |
---|
[567] | 1365 | // release the parent VSL lock in read mode |
---|
[640] | 1366 | remote_queuelock_release( parent_lock_xp ); |
---|
[408] | 1367 | |
---|
| 1368 | // copy base addresses from parent VMM to child VMM |
---|
| 1369 | child_vmm->args_vpn_base = (vpn_t)hal_remote_lpt(XPTR(parent_cxy, &parent_vmm->args_vpn_base)); |
---|
| 1370 | child_vmm->envs_vpn_base = (vpn_t)hal_remote_lpt(XPTR(parent_cxy, &parent_vmm->envs_vpn_base)); |
---|
| 1371 | child_vmm->heap_vpn_base = (vpn_t)hal_remote_lpt(XPTR(parent_cxy, &parent_vmm->heap_vpn_base)); |
---|
| 1372 | child_vmm->code_vpn_base = (vpn_t)hal_remote_lpt(XPTR(parent_cxy, &parent_vmm->code_vpn_base)); |
---|
| 1373 | child_vmm->data_vpn_base = (vpn_t)hal_remote_lpt(XPTR(parent_cxy, &parent_vmm->data_vpn_base)); |
---|
[23] | 1374 | |
---|
[408] | 1375 | child_vmm->entry_point = (intptr_t)hal_remote_lpt(XPTR(parent_cxy, &parent_vmm->entry_point)); |
---|
[23] | 1376 | |
---|
[124] | 1377 | hal_fence(); |
---|
[23] | 1378 | |
---|
[438] | 1379 | #if DEBUG_VMM_FORK_COPY |
---|
[433] | 1380 | cycle = (uint32_t)hal_get_cycles(); |
---|
[438] | 1381 | if( DEBUG_VMM_FORK_COPY < cycle ) |
---|
[595] | 1382 | printk("\n[%s] thread[%x,%x] exit successfully / cycle %d\n", |
---|
| 1383 | __FUNCTION__ , this->process->pid, this->trdid , cycle ); |
---|
[433] | 1384 | #endif |
---|
| 1385 | |
---|
[23] | 1386 | return 0; |
---|
| 1387 | |
---|
[408] | 1388 | } // vmm_fork_copy() |
---|
[204] | 1389 | |
---|
[1] | 1390 | /////////////////////////////////////// |
---|
| 1391 | void vmm_destroy( process_t * process ) |
---|
| 1392 | { |
---|
[408] | 1393 | xptr_t vseg_xp; |
---|
[1] | 1394 | vseg_t * vseg; |
---|
| 1395 | |
---|
[438] | 1396 | #if DEBUG_VMM_DESTROY |
---|
[635] | 1397 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
---|
| 1398 | thread_t * this = CURRENT_THREAD; |
---|
[438] | 1399 | if( DEBUG_VMM_DESTROY < cycle ) |
---|
[595] | 1400 | printk("\n[%s] thread[%x,%x] enter for process %x in cluster %x / cycle %d\n", |
---|
| 1401 | __FUNCTION__, this->process->pid, this->trdid, process->pid, local_cxy, cycle ); |
---|
[433] | 1402 | #endif |
---|
[416] | 1403 | |
---|
[438] | 1404 | #if (DEBUG_VMM_DESTROY & 1 ) |
---|
[443] | 1405 | if( DEBUG_VMM_DESTROY < cycle ) |
---|
[635] | 1406 | hal_vmm_display( XPTR( local_cxy, process ) , true ); |
---|
[437] | 1407 | #endif |
---|
| 1408 | |
---|
[433] | 1409 | // get pointer on local VMM |
---|
[1] | 1410 | vmm_t * vmm = &process->vmm; |
---|
| 1411 | |
---|
[625] | 1412 | // build extended pointer on VSL root, VSL lock and GPT lock |
---|
| 1413 | xptr_t vsl_root_xp = XPTR( local_cxy , &vmm->vsegs_root ); |
---|
| 1414 | xptr_t vsl_lock_xp = XPTR( local_cxy , &vmm->vsl_lock ); |
---|
[408] | 1415 | |
---|
[625] | 1416 | // take the VSL lock |
---|
[640] | 1417 | remote_queuelock_acquire( vsl_lock_xp ); |
---|
[625] | 1418 | |
---|
[611] | 1419 | // scan the VSL to delete all registered vsegs |
---|
[625] | 1420 | // (we don't use a FOREACH in case of item deletion) |
---|
| 1421 | xptr_t iter_xp; |
---|
| 1422 | xptr_t next_xp; |
---|
| 1423 | for( iter_xp = hal_remote_l64( vsl_root_xp ) ; |
---|
| 1424 | iter_xp != vsl_root_xp ; |
---|
| 1425 | iter_xp = next_xp ) |
---|
[1] | 1426 | { |
---|
[625] | 1427 | // save extended pointer on next item in xlist |
---|
| 1428 | next_xp = hal_remote_l64( iter_xp ); |
---|
[409] | 1429 | |
---|
[625] | 1430 | // get pointers on current vseg in VSL |
---|
| 1431 | vseg_xp = XLIST_ELEMENT( iter_xp , vseg_t , xlist ); |
---|
| 1432 | vseg = GET_PTR( vseg_xp ); |
---|
| 1433 | |
---|
[611] | 1434 | // delete vseg and release physical pages |
---|
[625] | 1435 | vmm_remove_vseg( process , vseg ); |
---|
[409] | 1436 | |
---|
[443] | 1437 | #if( DEBUG_VMM_DESTROY & 1 ) |
---|
| 1438 | if( DEBUG_VMM_DESTROY < cycle ) |
---|
[611] | 1439 | printk("\n[%s] %s vseg deleted / vpn_base %x / vpn_size %d\n", |
---|
[443] | 1440 | __FUNCTION__ , vseg_type_str( vseg->type ), vseg->vpn_base, vseg->vpn_size ); |
---|
| 1441 | #endif |
---|
| 1442 | |
---|
[1] | 1443 | } |
---|
| 1444 | |
---|
[625] | 1445 | // release the VSL lock |
---|
[640] | 1446 | remote_queuelock_release( vsl_lock_xp ); |
---|
[625] | 1447 | |
---|
[651] | 1448 | // remove all registered MMAP vsegs from free_lists in MMAP allocator |
---|
[1] | 1449 | uint32_t i; |
---|
[651] | 1450 | for( i = 0 ; i <= CONFIG_VMM_HEAP_MAX_ORDER ; i++ ) |
---|
[1] | 1451 | { |
---|
[651] | 1452 | // build extended pointer on free list root |
---|
| 1453 | xptr_t root_xp = XPTR( local_cxy , &vmm->mmap_mgr.free_list_root[i] ); |
---|
[625] | 1454 | |
---|
| 1455 | // scan zombi_list[i] |
---|
| 1456 | while( !xlist_is_empty( root_xp ) ) |
---|
[1] | 1457 | { |
---|
[625] | 1458 | vseg_xp = XLIST_FIRST( root_xp , vseg_t , xlist ); |
---|
| 1459 | vseg = GET_PTR( vseg_xp ); |
---|
[443] | 1460 | |
---|
| 1461 | #if( DEBUG_VMM_DESTROY & 1 ) |
---|
| 1462 | if( DEBUG_VMM_DESTROY < cycle ) |
---|
[595] | 1463 | printk("\n[%s] found zombi vseg / vpn_base %x / vpn_size %d\n", |
---|
[443] | 1464 | __FUNCTION__ , vseg_type_str( vseg->type ), vseg->vpn_base, vseg->vpn_size ); |
---|
| 1465 | #endif |
---|
[611] | 1466 | // clean vseg descriptor |
---|
| 1467 | vseg->vmm = NULL; |
---|
| 1468 | |
---|
[625] | 1469 | // remove vseg from zombi_list |
---|
[611] | 1470 | xlist_unlink( XPTR( local_cxy , &vseg->xlist ) ); |
---|
| 1471 | |
---|
| 1472 | // release vseg descriptor |
---|
[1] | 1473 | vseg_free( vseg ); |
---|
[443] | 1474 | |
---|
| 1475 | #if( DEBUG_VMM_DESTROY & 1 ) |
---|
| 1476 | if( DEBUG_VMM_DESTROY < cycle ) |
---|
[595] | 1477 | printk("\n[%s] zombi vseg released / vpn_base %x / vpn_size %d\n", |
---|
[443] | 1478 | __FUNCTION__ , vseg_type_str( vseg->type ), vseg->vpn_base, vseg->vpn_size ); |
---|
| 1479 | #endif |
---|
[1] | 1480 | } |
---|
| 1481 | } |
---|
| 1482 | |
---|
[409] | 1483 | // release memory allocated to the GPT itself |
---|
[1] | 1484 | hal_gpt_destroy( &vmm->gpt ); |
---|
| 1485 | |
---|
[438] | 1486 | #if DEBUG_VMM_DESTROY |
---|
[433] | 1487 | cycle = (uint32_t)hal_get_cycles(); |
---|
[438] | 1488 | if( DEBUG_VMM_DESTROY < cycle ) |
---|
[595] | 1489 | printk("\n[%s] thread[%x,%x] exit for process %x in cluster %x / cycle %d\n", |
---|
| 1490 | __FUNCTION__, this->process->pid, this->trdid, process->pid, local_cxy , cycle ); |
---|
[433] | 1491 | #endif |
---|
[416] | 1492 | |
---|
[204] | 1493 | } // end vmm_destroy() |
---|
| 1494 | |
---|
[1] | 1495 | ///////////////////////////////////////////////// |
---|
| 1496 | vseg_t * vmm_check_conflict( process_t * process, |
---|
[21] | 1497 | vpn_t vpn_base, |
---|
[1] | 1498 | vpn_t vpn_size ) |
---|
| 1499 | { |
---|
| 1500 | vmm_t * vmm = &process->vmm; |
---|
[408] | 1501 | |
---|
| 1502 | // scan the VSL |
---|
[1] | 1503 | vseg_t * vseg; |
---|
[408] | 1504 | xptr_t iter_xp; |
---|
| 1505 | xptr_t vseg_xp; |
---|
| 1506 | xptr_t root_xp = XPTR( local_cxy , &vmm->vsegs_root ); |
---|
[1] | 1507 | |
---|
[408] | 1508 | XLIST_FOREACH( root_xp , iter_xp ) |
---|
[1] | 1509 | { |
---|
[408] | 1510 | vseg_xp = XLIST_ELEMENT( iter_xp , vseg_t , xlist ); |
---|
[433] | 1511 | vseg = GET_PTR( vseg_xp ); |
---|
[204] | 1512 | |
---|
[21] | 1513 | if( ((vpn_base + vpn_size) > vseg->vpn_base) && |
---|
| 1514 | (vpn_base < (vseg->vpn_base + vseg->vpn_size)) ) return vseg; |
---|
[1] | 1515 | } |
---|
| 1516 | return NULL; |
---|
| 1517 | |
---|
[204] | 1518 | } // end vmm_check_conflict() |
---|
| 1519 | |
---|
[407] | 1520 | //////////////////////////////////////////////// |
---|
| 1521 | vseg_t * vmm_create_vseg( process_t * process, |
---|
| 1522 | vseg_type_t type, |
---|
[635] | 1523 | intptr_t base, // ltid for VSEG_TYPE_STACK |
---|
[407] | 1524 | uint32_t size, |
---|
| 1525 | uint32_t file_offset, |
---|
| 1526 | uint32_t file_size, |
---|
| 1527 | xptr_t mapper_xp, |
---|
| 1528 | cxy_t cxy ) |
---|
[1] | 1529 | { |
---|
[651] | 1530 | vseg_t * vseg; // pointer on allocated vseg descriptor |
---|
[1] | 1531 | |
---|
[640] | 1532 | #if DEBUG_VMM_CREATE_VSEG |
---|
| 1533 | thread_t * this = CURRENT_THREAD; |
---|
| 1534 | uint32_t cycle; |
---|
| 1535 | #endif |
---|
| 1536 | |
---|
[635] | 1537 | #if (DEBUG_VMM_CREATE_VSEG & 1) |
---|
[640] | 1538 | cycle = (uint32_t)hal_get_cycles(); |
---|
[438] | 1539 | if( DEBUG_VMM_CREATE_VSEG < cycle ) |
---|
[635] | 1540 | printk("\n[%s] thread[%x,%x] enter / process %x / %s / base %x / cxy %x / cycle %d\n", |
---|
| 1541 | __FUNCTION__, this->process->pid, this->trdid, |
---|
| 1542 | process->pid, vseg_type_str(type), base, cxy, cycle ); |
---|
[433] | 1543 | #endif |
---|
[21] | 1544 | |
---|
[407] | 1545 | // get pointer on VMM |
---|
| 1546 | vmm_t * vmm = &process->vmm; |
---|
[21] | 1547 | |
---|
[651] | 1548 | // allocate a vseg descriptor and initialize it, depending on type |
---|
| 1549 | // we use specific allocators for "stack" and "mmap" types |
---|
[595] | 1550 | |
---|
[651] | 1551 | ///////////////////////////// |
---|
[1] | 1552 | if( type == VSEG_TYPE_STACK ) |
---|
| 1553 | { |
---|
[651] | 1554 | // get vseg from STACK allocator |
---|
| 1555 | vseg = vmm_stack_alloc( vmm , base ); // base == ltid |
---|
| 1556 | |
---|
| 1557 | if( vseg == NULL ) |
---|
| 1558 | { |
---|
[683] | 1559 | |
---|
| 1560 | #if DEBUG_VMM_ERROR |
---|
| 1561 | printk("\n[ERROR] %s cannot create %s vseg for process %x in cluster %x\n", |
---|
| 1562 | __FUNCTION__ , vseg_type_str( type ) , process->pid , local_cxy ); |
---|
| 1563 | #endif |
---|
[651] | 1564 | return NULL; |
---|
| 1565 | } |
---|
[1] | 1566 | |
---|
[651] | 1567 | // initialize vseg |
---|
| 1568 | vseg->type = type; |
---|
| 1569 | vseg->vmm = vmm; |
---|
[683] | 1570 | vseg->min = vseg->vpn_base << CONFIG_PPM_PAGE_ORDER; |
---|
| 1571 | vseg->max = vseg->min + (vseg->vpn_size << CONFIG_PPM_PAGE_ORDER); |
---|
[651] | 1572 | vseg->cxy = cxy; |
---|
| 1573 | |
---|
| 1574 | vseg_init_flags( vseg , type ); |
---|
[1] | 1575 | } |
---|
[651] | 1576 | ///////////////////////////////// |
---|
[595] | 1577 | else if( type == VSEG_TYPE_FILE ) |
---|
| 1578 | { |
---|
[651] | 1579 | // compute page index (in mapper) for first and last byte |
---|
[683] | 1580 | vpn_t vpn_min = file_offset >> CONFIG_PPM_PAGE_ORDER; |
---|
| 1581 | vpn_t vpn_max = (file_offset + size - 1) >> CONFIG_PPM_PAGE_ORDER; |
---|
[595] | 1582 | |
---|
[651] | 1583 | // compute offset in first page and number of pages |
---|
[595] | 1584 | uint32_t offset = file_offset & CONFIG_PPM_PAGE_MASK; |
---|
| 1585 | vpn_t npages = vpn_max - vpn_min + 1; |
---|
| 1586 | |
---|
[651] | 1587 | // get vseg from MMAP allocator |
---|
| 1588 | vseg = vmm_mmap_alloc( vmm , npages ); |
---|
| 1589 | |
---|
| 1590 | if( vseg == NULL ) |
---|
[595] | 1591 | { |
---|
[683] | 1592 | |
---|
| 1593 | #if DEBUG_VMM_ERROR |
---|
| 1594 | printk("\n[ERROR] %s cannot create %s vseg for process %x in cluster %x\n", |
---|
| 1595 | __FUNCTION__ , vseg_type_str( type ) , process->pid , local_cxy ); |
---|
| 1596 | #endif |
---|
[595] | 1597 | return NULL; |
---|
| 1598 | } |
---|
| 1599 | |
---|
[651] | 1600 | // initialize vseg |
---|
| 1601 | vseg->type = type; |
---|
| 1602 | vseg->vmm = vmm; |
---|
[683] | 1603 | vseg->min = (vseg->vpn_base << CONFIG_PPM_PAGE_ORDER) + offset; |
---|
[651] | 1604 | vseg->max = vseg->min + size; |
---|
| 1605 | vseg->file_offset = file_offset; |
---|
| 1606 | vseg->file_size = file_size; |
---|
| 1607 | vseg->mapper_xp = mapper_xp; |
---|
| 1608 | vseg->cxy = cxy; |
---|
| 1609 | |
---|
| 1610 | vseg_init_flags( vseg , type ); |
---|
[595] | 1611 | } |
---|
[651] | 1612 | ///////////////////////////////////////////////////////////////// |
---|
| 1613 | else if( (type == VSEG_TYPE_ANON) || (type == VSEG_TYPE_REMOTE) ) |
---|
[1] | 1614 | { |
---|
[595] | 1615 | // compute number of required pages in virtual space |
---|
[683] | 1616 | vpn_t npages = size >> CONFIG_PPM_PAGE_ORDER; |
---|
[595] | 1617 | if( size & CONFIG_PPM_PAGE_MASK) npages++; |
---|
| 1618 | |
---|
[651] | 1619 | // allocate vseg from MMAP allocator |
---|
| 1620 | vseg = vmm_mmap_alloc( vmm , npages ); |
---|
| 1621 | |
---|
| 1622 | if( vseg == NULL ) |
---|
[1] | 1623 | { |
---|
[683] | 1624 | |
---|
| 1625 | #if DEBUG_VMM_ERROR |
---|
| 1626 | printk("\n[ERROR] %s cannot create %s vseg for process %x in cluster %x\n", |
---|
| 1627 | __FUNCTION__ , vseg_type_str( type ) , process->pid , local_cxy ); |
---|
| 1628 | #endif |
---|
[1] | 1629 | return NULL; |
---|
| 1630 | } |
---|
| 1631 | |
---|
[651] | 1632 | // initialize vseg |
---|
| 1633 | vseg->type = type; |
---|
| 1634 | vseg->vmm = vmm; |
---|
[683] | 1635 | vseg->min = vseg->vpn_base << CONFIG_PPM_PAGE_ORDER; |
---|
| 1636 | vseg->max = vseg->min + (vseg->vpn_size << CONFIG_PPM_PAGE_ORDER); |
---|
[651] | 1637 | vseg->cxy = cxy; |
---|
| 1638 | |
---|
| 1639 | vseg_init_flags( vseg , type ); |
---|
[1] | 1640 | } |
---|
[651] | 1641 | ///////////////////////////////////////////////////////////////// |
---|
[623] | 1642 | else // VSEG_TYPE_DATA, VSEG_TYPE_CODE or KERNEL vseg |
---|
[1] | 1643 | { |
---|
[683] | 1644 | uint32_t vpn_min = base >> CONFIG_PPM_PAGE_ORDER; |
---|
| 1645 | uint32_t vpn_max = (base + size - 1) >> CONFIG_PPM_PAGE_ORDER; |
---|
[204] | 1646 | |
---|
[651] | 1647 | // allocate vseg descriptor |
---|
| 1648 | vseg = vseg_alloc(); |
---|
| 1649 | |
---|
| 1650 | if( vseg == NULL ) |
---|
| 1651 | { |
---|
[683] | 1652 | |
---|
| 1653 | #if DEBUG_VMM_ERROR |
---|
| 1654 | printk("\n[ERROR] %s cannot create %s vseg for process %x in cluster %x\n", |
---|
| 1655 | __FUNCTION__ , vseg_type_str( type ) , process->pid , local_cxy ); |
---|
| 1656 | #endif |
---|
[651] | 1657 | return NULL; |
---|
| 1658 | } |
---|
[683] | 1659 | |
---|
[651] | 1660 | // initialize vseg |
---|
| 1661 | vseg->type = type; |
---|
| 1662 | vseg->vmm = vmm; |
---|
| 1663 | vseg->min = base; |
---|
| 1664 | vseg->max = base + size; |
---|
[683] | 1665 | vseg->vpn_base = base >> CONFIG_PPM_PAGE_ORDER; |
---|
[651] | 1666 | vseg->vpn_size = vpn_max - vpn_min + 1; |
---|
| 1667 | vseg->file_offset = file_offset; |
---|
| 1668 | vseg->file_size = file_size; |
---|
| 1669 | vseg->mapper_xp = mapper_xp; |
---|
| 1670 | vseg->cxy = cxy; |
---|
| 1671 | |
---|
| 1672 | vseg_init_flags( vseg , type ); |
---|
[1] | 1673 | } |
---|
| 1674 | |
---|
| 1675 | // check collisions |
---|
[651] | 1676 | vseg_t * existing_vseg = vmm_check_conflict( process , vseg->vpn_base , vseg->vpn_size ); |
---|
[624] | 1677 | |
---|
[651] | 1678 | if( existing_vseg != NULL ) |
---|
[1] | 1679 | { |
---|
[683] | 1680 | |
---|
| 1681 | #if DEBUG_VMM_ERROR |
---|
| 1682 | printk("\n[ERROR] in %s for process %x : new vseg %s [vpn_base %x / vpn_size %x]\n" |
---|
| 1683 | " overlap existing vseg %s [vpn_base %x / vpn_size %x]\n", |
---|
| 1684 | __FUNCTION__ , process->pid, vseg_type_str(vseg->type), vseg->vpn_base, vseg->vpn_size, |
---|
| 1685 | vseg_type_str(existing_vseg->type), existing_vseg->vpn_base, existing_vseg->vpn_size ); |
---|
| 1686 | #endif |
---|
[651] | 1687 | vseg_free( vseg ); |
---|
[1] | 1688 | return NULL; |
---|
| 1689 | } |
---|
| 1690 | |
---|
[625] | 1691 | // build extended pointer on VSL lock |
---|
| 1692 | xptr_t lock_xp = XPTR( local_cxy , &vmm->vsl_lock ); |
---|
| 1693 | |
---|
| 1694 | // take the VSL lock in write mode |
---|
[640] | 1695 | remote_queuelock_acquire( lock_xp ); |
---|
[625] | 1696 | |
---|
[408] | 1697 | // attach vseg to VSL |
---|
[611] | 1698 | vmm_attach_vseg_to_vsl( vmm , vseg ); |
---|
[1] | 1699 | |
---|
[625] | 1700 | // release the VSL lock |
---|
[640] | 1701 | remote_queuelock_release( lock_xp ); |
---|
[625] | 1702 | |
---|
[651] | 1703 | #if DEBUG_VMM_CREATE_VSEG |
---|
[433] | 1704 | cycle = (uint32_t)hal_get_cycles(); |
---|
[651] | 1705 | if( DEBUG_VMM_CREATE_VSEG < cycle ) |
---|
| 1706 | printk("\n[%s] thread[%x,%x] exit / %s / vpn_base %x / vpn_size %x / cycle %d\n", |
---|
| 1707 | __FUNCTION__, this->process->pid, this->trdid, |
---|
| 1708 | vseg_type_str(type), vseg->vpn_base, vseg->vpn_size, cycle ); |
---|
[433] | 1709 | #endif |
---|
[21] | 1710 | |
---|
[1] | 1711 | return vseg; |
---|
| 1712 | |
---|
[406] | 1713 | } // vmm_create_vseg() |
---|
| 1714 | |
---|
[640] | 1715 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
[656] | 1716 | // This static function is called by the vmm_remove_vseg() and vmm_resize_vseg() functions |
---|
| 1717 | // to update the physical page descriptor identified by the <ppn> argument. |
---|
| 1718 | // It decrements the refcount, set the dirty bit when required, and releases the physical |
---|
| 1719 | // page to kmem depending on the vseg type. |
---|
| 1720 | // - KERNEL : refcount decremented / not released to kmem / dirty bit not set |
---|
| 1721 | // - FILE : refcount decremented / not released to kmem / dirty bit set when required. |
---|
| 1722 | // - CODE : refcount decremented / released to kmem / dirty bit not set. |
---|
| 1723 | // - STAK : refcount decremented / released to kmem / dirty bit not set. |
---|
| 1724 | // - DATA : refcount decremented / released to kmem if ref / dirty bit not set. |
---|
| 1725 | // - MMAP : refcount decremented / released to kmem if ref / dirty bit not set. |
---|
[640] | 1726 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 1727 | // @ process : local pointer on process. |
---|
| 1728 | // @ vseg : local pointer on vseg. |
---|
| 1729 | // @ ppn : released pysical page index. |
---|
[656] | 1730 | // @ dirty : set the dirty bit in page descriptor when non zero. |
---|
[640] | 1731 | //////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 1732 | static void vmm_ppn_release( process_t * process, |
---|
| 1733 | vseg_t * vseg, |
---|
[656] | 1734 | ppn_t ppn, |
---|
| 1735 | uint32_t dirty ) |
---|
[640] | 1736 | { |
---|
[656] | 1737 | bool_t do_kmem_release; |
---|
[625] | 1738 | |
---|
[640] | 1739 | // get vseg type |
---|
| 1740 | vseg_type_t type = vseg->type; |
---|
| 1741 | |
---|
[656] | 1742 | // compute is_ref <=> this vseg is the reference vseg |
---|
[640] | 1743 | bool_t is_ref = (GET_CXY( process->ref_xp ) == local_cxy); |
---|
| 1744 | |
---|
| 1745 | // get pointers on physical page descriptor |
---|
| 1746 | xptr_t page_xp = ppm_ppn2page( ppn ); |
---|
| 1747 | cxy_t page_cxy = GET_CXY( page_xp ); |
---|
| 1748 | page_t * page_ptr = GET_PTR( page_xp ); |
---|
| 1749 | |
---|
| 1750 | // decrement page refcount |
---|
| 1751 | xptr_t count_xp = XPTR( page_cxy , &page_ptr->refcount ); |
---|
| 1752 | hal_remote_atomic_add( count_xp , -1 ); |
---|
| 1753 | |
---|
[656] | 1754 | // compute the do_kmem_release condition depending on vseg type |
---|
| 1755 | if( (type == VSEG_TYPE_KCODE) || |
---|
[640] | 1756 | (type == VSEG_TYPE_KDATA) || |
---|
| 1757 | (type == VSEG_TYPE_KDEV) ) |
---|
| 1758 | { |
---|
[656] | 1759 | // no physical page release for KERNEL |
---|
| 1760 | do_kmem_release = false; |
---|
[640] | 1761 | } |
---|
[656] | 1762 | else if( type == VSEG_TYPE_FILE ) |
---|
| 1763 | { |
---|
| 1764 | // no physical page release for KERNEL |
---|
| 1765 | do_kmem_release = false; |
---|
| 1766 | |
---|
| 1767 | // set dirty bit if required |
---|
| 1768 | if( dirty ) ppm_page_do_dirty( page_xp ); |
---|
| 1769 | } |
---|
[640] | 1770 | else if( (type == VSEG_TYPE_CODE) || |
---|
| 1771 | (type == VSEG_TYPE_STACK) ) |
---|
| 1772 | { |
---|
| 1773 | // always release physical page for private vsegs |
---|
[656] | 1774 | do_kmem_release = true; |
---|
[640] | 1775 | } |
---|
| 1776 | else if( (type == VSEG_TYPE_ANON) || |
---|
| 1777 | (type == VSEG_TYPE_REMOTE) ) |
---|
| 1778 | { |
---|
| 1779 | // release physical page if reference cluster |
---|
[656] | 1780 | do_kmem_release = is_ref; |
---|
[640] | 1781 | } |
---|
| 1782 | else if( is_ref ) // vseg_type == DATA in reference cluster |
---|
| 1783 | { |
---|
| 1784 | // get extended pointers on forks and lock field in page descriptor |
---|
| 1785 | xptr_t forks_xp = XPTR( page_cxy , &page_ptr->forks ); |
---|
| 1786 | xptr_t lock_xp = XPTR( page_cxy , &page_ptr->lock ); |
---|
| 1787 | |
---|
| 1788 | // take lock protecting "forks" counter |
---|
| 1789 | remote_busylock_acquire( lock_xp ); |
---|
| 1790 | |
---|
| 1791 | // get number of pending forks from page descriptor |
---|
| 1792 | uint32_t forks = hal_remote_l32( forks_xp ); |
---|
| 1793 | |
---|
| 1794 | // decrement pending forks counter if required |
---|
| 1795 | if( forks ) hal_remote_atomic_add( forks_xp , -1 ); |
---|
| 1796 | |
---|
| 1797 | // release lock protecting "forks" counter |
---|
| 1798 | remote_busylock_release( lock_xp ); |
---|
| 1799 | |
---|
| 1800 | // release physical page if forks == 0 |
---|
[656] | 1801 | do_kmem_release = (forks == 0); |
---|
[640] | 1802 | } |
---|
| 1803 | else // vseg_type == DATA not in reference cluster |
---|
| 1804 | { |
---|
| 1805 | // no physical page release if not in reference cluster |
---|
[656] | 1806 | do_kmem_release = false; |
---|
[640] | 1807 | } |
---|
| 1808 | |
---|
| 1809 | // release physical page to relevant kmem when required |
---|
[656] | 1810 | if( do_kmem_release ) |
---|
[640] | 1811 | { |
---|
[683] | 1812 | // get physical page order |
---|
| 1813 | uint32_t order = CONFIG_PPM_PAGE_ORDER + |
---|
| 1814 | hal_remote_l32( XPTR( page_cxy , &page_ptr->order )); |
---|
[640] | 1815 | |
---|
[683] | 1816 | // get physical page base |
---|
| 1817 | void * base = GET_PTR( ppm_ppn2base( ppn ) ); |
---|
[656] | 1818 | |
---|
[683] | 1819 | // release physical page |
---|
| 1820 | kmem_remote_free( page_cxy , base , order ); |
---|
| 1821 | |
---|
[640] | 1822 | #if DEBUG_VMM_PPN_RELEASE |
---|
| 1823 | thread_t * this = CURRENT_THREAD; |
---|
| 1824 | if( DEBUG_VMM_PPN_RELEASE < cycle ) |
---|
| 1825 | printk("\n[%s] thread[%x,%x] released ppn %x to kmem\n", |
---|
| 1826 | __FUNCTION__, this->process->pid, this->trdid, ppn ); |
---|
| 1827 | #endif |
---|
| 1828 | |
---|
| 1829 | } |
---|
| 1830 | } // end vmm_ppn_release() |
---|
| 1831 | |
---|
[625] | 1832 | ////////////////////////////////////////// |
---|
| 1833 | void vmm_remove_vseg( process_t * process, |
---|
| 1834 | vseg_t * vseg ) |
---|
[1] | 1835 | { |
---|
[625] | 1836 | uint32_t vseg_type; // vseg type |
---|
[21] | 1837 | vpn_t vpn; // VPN of current PTE |
---|
| 1838 | vpn_t vpn_min; // VPN of first PTE |
---|
[1] | 1839 | vpn_t vpn_max; // VPN of last PTE (excluded) |
---|
[409] | 1840 | ppn_t ppn; // current PTE ppn value |
---|
| 1841 | uint32_t attr; // current PTE attributes |
---|
[1] | 1842 | |
---|
[625] | 1843 | // check arguments |
---|
[672] | 1844 | assert( __FUNCTION__, (process != NULL), "process argument is NULL" ); |
---|
| 1845 | assert( __FUNCTION__, (vseg != NULL), "vseg argument is NULL" ); |
---|
[409] | 1846 | |
---|
[625] | 1847 | // get pointers on local process VMM |
---|
[640] | 1848 | vmm_t * vmm = &process->vmm; |
---|
[611] | 1849 | |
---|
[629] | 1850 | // build extended pointer on GPT |
---|
[640] | 1851 | xptr_t gpt_xp = XPTR( local_cxy , &vmm->gpt ); |
---|
[629] | 1852 | |
---|
[623] | 1853 | // get relevant vseg infos |
---|
[624] | 1854 | vseg_type = vseg->type; |
---|
| 1855 | vpn_min = vseg->vpn_base; |
---|
| 1856 | vpn_max = vpn_min + vseg->vpn_size; |
---|
[623] | 1857 | |
---|
[625] | 1858 | #if DEBUG_VMM_REMOVE_VSEG |
---|
| 1859 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
---|
| 1860 | thread_t * this = CURRENT_THREAD; |
---|
[640] | 1861 | #endif |
---|
| 1862 | |
---|
| 1863 | #if (DEBUG_VMM_REMOVE_VSEG & 1 ) |
---|
[625] | 1864 | if( DEBUG_VMM_REMOVE_VSEG < cycle ) |
---|
[641] | 1865 | printk("\n[%s] thread[%x,%x] enters / process %x / type %s / base %x / cycle %d\n", |
---|
[625] | 1866 | __FUNCTION__, this->process->pid, this->trdid, |
---|
| 1867 | process->pid, vseg_type_str(vseg->type), vseg->min, cycle ); |
---|
| 1868 | #endif |
---|
| 1869 | |
---|
[683] | 1870 | // the loop on PTEs in GPT to unmap all mapped PTEs |
---|
| 1871 | for( vpn = vpn_min ; vpn < vpn_max ; vpn++ ) |
---|
[1] | 1872 | { |
---|
[625] | 1873 | // get ppn and attr |
---|
[629] | 1874 | hal_gpt_get_pte( gpt_xp , vpn , &attr , &ppn ); |
---|
[409] | 1875 | |
---|
[625] | 1876 | if( attr & GPT_MAPPED ) // PTE is mapped |
---|
[409] | 1877 | { |
---|
[437] | 1878 | |
---|
[625] | 1879 | #if( DEBUG_VMM_REMOVE_VSEG & 1 ) |
---|
| 1880 | if( DEBUG_VMM_REMOVE_VSEG < cycle ) |
---|
[641] | 1881 | printk("\n[%s] thread[%x,%x] unmap vpn %x / ppn %x / type %s\n", |
---|
[640] | 1882 | __FUNCTION__, this->process->pid, this->trdid, vpn , ppn, vseg_type_str(vseg_type) ); |
---|
[437] | 1883 | #endif |
---|
[585] | 1884 | // unmap GPT entry in local GPT |
---|
[629] | 1885 | hal_gpt_reset_pte( gpt_xp , vpn ); |
---|
[409] | 1886 | |
---|
[656] | 1887 | // release physical page depending on vseg type |
---|
| 1888 | vmm_ppn_release( process , vseg , ppn , attr & GPT_DIRTY ); |
---|
[409] | 1889 | } |
---|
[1] | 1890 | } |
---|
[433] | 1891 | |
---|
[625] | 1892 | // remove vseg from VSL |
---|
[611] | 1893 | vmm_detach_vseg_from_vsl( vmm , vseg ); |
---|
| 1894 | |
---|
[625] | 1895 | // release vseg descriptor depending on vseg type |
---|
| 1896 | if( vseg_type == VSEG_TYPE_STACK ) |
---|
| 1897 | { |
---|
| 1898 | // release slot to local stack allocator |
---|
| 1899 | vmm_stack_free( vmm , vseg ); |
---|
| 1900 | } |
---|
| 1901 | else if( (vseg_type == VSEG_TYPE_ANON) || |
---|
| 1902 | (vseg_type == VSEG_TYPE_FILE) || |
---|
| 1903 | (vseg_type == VSEG_TYPE_REMOTE) ) |
---|
| 1904 | { |
---|
| 1905 | // release vseg to local mmap allocator |
---|
| 1906 | vmm_mmap_free( vmm , vseg ); |
---|
| 1907 | } |
---|
| 1908 | else |
---|
| 1909 | { |
---|
| 1910 | // release vseg descriptor to local kmem |
---|
| 1911 | vseg_free( vseg ); |
---|
| 1912 | } |
---|
| 1913 | |
---|
| 1914 | #if DEBUG_VMM_REMOVE_VSEG |
---|
[433] | 1915 | cycle = (uint32_t)hal_get_cycles(); |
---|
[625] | 1916 | if( DEBUG_VMM_REMOVE_VSEG < cycle ) |
---|
[641] | 1917 | printk("\n[%s] thread[%x,%x] exit / process %x / type %s / base %x / cycle %d\n", |
---|
[625] | 1918 | __FUNCTION__, this->process->pid, this->trdid, |
---|
| 1919 | process->pid, vseg_type_str(vseg->type), vseg->min, cycle ); |
---|
[433] | 1920 | #endif |
---|
| 1921 | |
---|
[625] | 1922 | } // end vmm_remove_vseg() |
---|
[1] | 1923 | |
---|
[611] | 1924 | ///////////////////////////////////////////// |
---|
[640] | 1925 | void vmm_resize_vseg( process_t * process, |
---|
| 1926 | vseg_t * vseg, |
---|
| 1927 | intptr_t new_base, |
---|
| 1928 | intptr_t new_size ) |
---|
[406] | 1929 | { |
---|
[640] | 1930 | vpn_t vpn; |
---|
| 1931 | ppn_t ppn; |
---|
| 1932 | uint32_t attr; |
---|
[406] | 1933 | |
---|
[640] | 1934 | // check arguments |
---|
[672] | 1935 | assert( __FUNCTION__, (process != NULL), "process argument is NULL" ); |
---|
| 1936 | assert( __FUNCTION__, (vseg != NULL), "vseg argument is NULL" ); |
---|
[406] | 1937 | |
---|
[623] | 1938 | #if DEBUG_VMM_RESIZE_VSEG |
---|
| 1939 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
---|
| 1940 | thread_t * this = CURRENT_THREAD; |
---|
[640] | 1941 | #endif |
---|
| 1942 | |
---|
| 1943 | #if (DEBUG_VMM_RESIZE_VSEG & 1) |
---|
[623] | 1944 | if( DEBUG_VMM_RESIZE_VSEG < cycle ) |
---|
[640] | 1945 | printk("\n[%s] thread[%x,%x] enter / process %x / %s / base %x / cycle %d\n", |
---|
| 1946 | __FUNCTION__, this->process->pid, this->trdid, |
---|
| 1947 | process->pid, vseg_type_str(vseg->type), old_base, cycle ); |
---|
[623] | 1948 | #endif |
---|
| 1949 | |
---|
[640] | 1950 | // get existing vseg vpn_min and vpn_max |
---|
| 1951 | vpn_t old_vpn_min = vseg->vpn_base; |
---|
| 1952 | vpn_t old_vpn_max = old_vpn_min + vseg->vpn_size - 1; |
---|
[1] | 1953 | |
---|
[640] | 1954 | // compute new vseg vpn_min & vpn_max |
---|
| 1955 | intptr_t min = new_base; |
---|
| 1956 | intptr_t max = new_base + new_size; |
---|
[683] | 1957 | vpn_t new_vpn_min = min >> CONFIG_PPM_PAGE_ORDER; |
---|
| 1958 | vpn_t new_vpn_max = (max - 1) >> CONFIG_PPM_PAGE_ORDER; |
---|
[1] | 1959 | |
---|
[640] | 1960 | // build extended pointer on GPT |
---|
| 1961 | xptr_t gpt_xp = XPTR( local_cxy , &process->vmm.gpt ); |
---|
[1] | 1962 | |
---|
[657] | 1963 | // loop on PTEs in GPT to unmap PTE if (old_vpn_min <= vpn < new_vpn_min) |
---|
[640] | 1964 | for( vpn = old_vpn_min ; vpn < new_vpn_min ; vpn++ ) |
---|
[623] | 1965 | { |
---|
[640] | 1966 | // get ppn and attr |
---|
| 1967 | hal_gpt_get_pte( gpt_xp , vpn , &attr , &ppn ); |
---|
[21] | 1968 | |
---|
[640] | 1969 | if( attr & GPT_MAPPED ) // PTE is mapped |
---|
| 1970 | { |
---|
[623] | 1971 | |
---|
| 1972 | #if( DEBUG_VMM_RESIZE_VSEG & 1 ) |
---|
| 1973 | if( DEBUG_VMM_RESIZE_VSEG < cycle ) |
---|
[640] | 1974 | printk("\n[%s] thread[%x,%x] unmap vpn %x / ppn %x / %s", |
---|
| 1975 | __FUNCTION__, this->process->pid, this->trdid, vpn , ppn, vseg_type_str(vseg_type) ); |
---|
[623] | 1976 | #endif |
---|
[640] | 1977 | // unmap GPT entry |
---|
| 1978 | hal_gpt_reset_pte( gpt_xp , vpn ); |
---|
[623] | 1979 | |
---|
[640] | 1980 | // release physical page when required |
---|
[656] | 1981 | vmm_ppn_release( process , vseg , ppn , attr & GPT_DIRTY ); |
---|
[640] | 1982 | } |
---|
[1] | 1983 | } |
---|
[640] | 1984 | |
---|
| 1985 | // loop on PTEs in GPT to unmap PTE if (new vpn_max <= vpn < old_vpn_max) |
---|
| 1986 | for( vpn = new_vpn_max ; vpn < old_vpn_max ; vpn++ ) |
---|
[1] | 1987 | { |
---|
[640] | 1988 | // get ppn and attr |
---|
| 1989 | hal_gpt_get_pte( gpt_xp , vpn , &attr , &ppn ); |
---|
[623] | 1990 | |
---|
[640] | 1991 | if( attr & GPT_MAPPED ) // PTE is mapped |
---|
| 1992 | { |
---|
| 1993 | |
---|
[641] | 1994 | #if( DEBUG_VMM_RESIZE_VSEG & 1 ) |
---|
[623] | 1995 | if( DEBUG_VMM_RESIZE_VSEG < cycle ) |
---|
[640] | 1996 | printk("\n[%s] thread[%x,%x] unmap vpn %x / ppn %x / %s", |
---|
| 1997 | __FUNCTION__, this->process->pid, this->trdid, vpn , ppn, vseg_type_str(vseg_type) ); |
---|
[623] | 1998 | #endif |
---|
[640] | 1999 | // unmap GPT entry in local GPT |
---|
| 2000 | hal_gpt_reset_pte( gpt_xp , vpn ); |
---|
[406] | 2001 | |
---|
[640] | 2002 | // release physical page when required |
---|
[656] | 2003 | vmm_ppn_release( process , vseg , ppn , attr & GPT_DIRTY ); |
---|
[640] | 2004 | } |
---|
[1] | 2005 | } |
---|
[623] | 2006 | |
---|
[640] | 2007 | // resize vseg in VSL |
---|
| 2008 | vseg->min = min; |
---|
| 2009 | vseg->max = max; |
---|
| 2010 | vseg->vpn_base = new_vpn_min; |
---|
| 2011 | vseg->vpn_size = new_vpn_max - new_vpn_min + 1; |
---|
| 2012 | |
---|
| 2013 | #if DEBUG_VMM_RESIZE_VSEG |
---|
| 2014 | cycle = (uint32_t)hal_get_cycles(); |
---|
[623] | 2015 | if( DEBUG_VMM_RESIZE_VSEG < cycle ) |
---|
[640] | 2016 | printk("[%s] thread[%x,%x] exit / process %x / %s / base %x / cycle %d\n", |
---|
| 2017 | __FUNCTION__, this->process->pid, this->trdid, |
---|
| 2018 | process->pid, vseg_type_str(vseg->type), vseg->min, cycle ); |
---|
[623] | 2019 | #endif |
---|
[406] | 2020 | |
---|
[640] | 2021 | } // end vmm_resize_vseg |
---|
[623] | 2022 | |
---|
[640] | 2023 | ///////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 2024 | // This static function is called twice by the vmm_get_vseg() function. |
---|
| 2025 | // It scan the - possibly remote - VSL defined by the <vmm_xp> argument to find the vseg |
---|
| 2026 | // containing a given virtual address <vaddr>. It uses remote accesses to access the remote |
---|
| 2027 | // VSL if required. The VSL lock protecting the VSL must be taken by the caller. |
---|
| 2028 | ///////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 2029 | // @ vmm_xp : extended pointer on the process VMM. |
---|
| 2030 | // @ vaddr : virtual address. |
---|
| 2031 | // @ return local pointer on remote vseg if success / return NULL if not found. |
---|
| 2032 | ///////////////////////////////////////////////////////////////////////////////////////////// |
---|
| 2033 | static vseg_t * vmm_vseg_from_vaddr( xptr_t vmm_xp, |
---|
| 2034 | intptr_t vaddr ) |
---|
| 2035 | { |
---|
| 2036 | xptr_t iter_xp; |
---|
| 2037 | xptr_t vseg_xp; |
---|
| 2038 | vseg_t * vseg; |
---|
| 2039 | intptr_t min; |
---|
| 2040 | intptr_t max; |
---|
[623] | 2041 | |
---|
[640] | 2042 | // get cluster and local pointer on target VMM |
---|
| 2043 | vmm_t * vmm_ptr = GET_PTR( vmm_xp ); |
---|
| 2044 | cxy_t vmm_cxy = GET_CXY( vmm_xp ); |
---|
[623] | 2045 | |
---|
[640] | 2046 | // build extended pointer on VSL root |
---|
| 2047 | xptr_t root_xp = XPTR( vmm_cxy , &vmm_ptr->vsegs_root ); |
---|
[406] | 2048 | |
---|
[640] | 2049 | // scan the list of vsegs in VSL |
---|
| 2050 | XLIST_FOREACH( root_xp , iter_xp ) |
---|
| 2051 | { |
---|
| 2052 | vseg_xp = XLIST_ELEMENT( iter_xp , vseg_t , xlist ); |
---|
| 2053 | vseg = GET_PTR( vseg_xp ); |
---|
[406] | 2054 | |
---|
[640] | 2055 | min = hal_remote_l32( XPTR( vmm_cxy , &vseg->min ) ); |
---|
| 2056 | max = hal_remote_l32( XPTR( vmm_cxy , &vseg->max ) ); |
---|
[407] | 2057 | |
---|
[640] | 2058 | // return success when match |
---|
| 2059 | if( (vaddr >= min) && (vaddr < max) ) return vseg; |
---|
[1] | 2060 | } |
---|
| 2061 | |
---|
[640] | 2062 | // return failure |
---|
| 2063 | return NULL; |
---|
[1] | 2064 | |
---|
[640] | 2065 | } // end vmm_vseg_from_vaddr() |
---|
[1] | 2066 | |
---|
| 2067 | /////////////////////////////////////////// |
---|
[388] | 2068 | error_t vmm_get_vseg( process_t * process, |
---|
[394] | 2069 | intptr_t vaddr, |
---|
[388] | 2070 | vseg_t ** found_vseg ) |
---|
[1] | 2071 | { |
---|
[640] | 2072 | xptr_t loc_lock_xp; // extended pointer on local VSL lock |
---|
| 2073 | xptr_t ref_lock_xp; // extended pointer on reference VSL lock |
---|
| 2074 | vseg_t * loc_vseg; // local pointer on local vseg |
---|
| 2075 | vseg_t * ref_vseg; // local pointer on reference vseg |
---|
[1] | 2076 | |
---|
[640] | 2077 | // build extended pointer on local VSL lock |
---|
| 2078 | loc_lock_xp = XPTR( local_cxy , &process->vmm.vsl_lock ); |
---|
| 2079 | |
---|
| 2080 | // get local VSL lock |
---|
| 2081 | remote_queuelock_acquire( loc_lock_xp ); |
---|
[1] | 2082 | |
---|
[665] | 2083 | // try to get vseg from local VSL |
---|
[640] | 2084 | loc_vseg = vmm_vseg_from_vaddr( XPTR( local_cxy, &process->vmm ) , vaddr ); |
---|
[440] | 2085 | |
---|
[640] | 2086 | if (loc_vseg == NULL) // vseg not found => access reference VSL |
---|
| 2087 | { |
---|
[388] | 2088 | // get extended pointer on reference process |
---|
| 2089 | xptr_t ref_xp = process->ref_xp; |
---|
[1] | 2090 | |
---|
[640] | 2091 | // get cluster and local pointer on reference process |
---|
[388] | 2092 | cxy_t ref_cxy = GET_CXY( ref_xp ); |
---|
[433] | 2093 | process_t * ref_ptr = GET_PTR( ref_xp ); |
---|
[388] | 2094 | |
---|
[665] | 2095 | if( ref_cxy == local_cxy ) // local is ref => return error |
---|
[640] | 2096 | { |
---|
[388] | 2097 | |
---|
[683] | 2098 | #if DEBUG_VMM_ERROR |
---|
| 2099 | printk("\n[ERROR] in %s : vaddr %x in process %x out of segment\n", |
---|
| 2100 | __FUNCTION__, vaddr, process->pid ); |
---|
| 2101 | #endif |
---|
[665] | 2102 | remote_queuelock_release( loc_lock_xp ); |
---|
[640] | 2103 | return -1; |
---|
| 2104 | } |
---|
[665] | 2105 | else // ref != local => access ref VSL |
---|
[640] | 2106 | { |
---|
[665] | 2107 | // build extended pointer on reference VSL lock |
---|
| 2108 | ref_lock_xp = XPTR( ref_cxy , &ref_ptr->vmm.vsl_lock ); |
---|
| 2109 | |
---|
| 2110 | // get reference VSL lock |
---|
| 2111 | remote_queuelock_acquire( ref_lock_xp ); |
---|
[625] | 2112 | |
---|
[665] | 2113 | // try to get vseg from reference VSL |
---|
| 2114 | ref_vseg = vmm_vseg_from_vaddr( XPTR( ref_cxy , &ref_ptr->vmm ) , vaddr ); |
---|
| 2115 | |
---|
| 2116 | if( ref_vseg == NULL ) // vseg not found => return error |
---|
[640] | 2117 | { |
---|
[683] | 2118 | |
---|
| 2119 | #if DEBUG_VMM_ERROR |
---|
| 2120 | printk("\n[ERROR] in %s : vaddr %x in process %x out of segment\n", |
---|
| 2121 | __FUNCTION__, vaddr, process->pid ); |
---|
| 2122 | #endif |
---|
[665] | 2123 | remote_queuelock_release( loc_lock_xp ); |
---|
| 2124 | remote_queuelock_release( ref_lock_xp ); |
---|
[640] | 2125 | return -1; |
---|
| 2126 | } |
---|
[665] | 2127 | else // vseg found => try to update local VSL |
---|
[640] | 2128 | { |
---|
[665] | 2129 | // allocate a local vseg descriptor |
---|
| 2130 | loc_vseg = vseg_alloc(); |
---|
[640] | 2131 | |
---|
[665] | 2132 | if( loc_vseg == NULL ) // no memory => return error |
---|
| 2133 | { |
---|
[640] | 2134 | |
---|
[683] | 2135 | #if DEBUG_VMM_ERROR |
---|
| 2136 | printk("\n[ERROR] in %s : vaddr %x in process %x / no memory\n", |
---|
| 2137 | __FUNCTION__, vaddr, process->pid ); |
---|
| 2138 | #endif |
---|
[665] | 2139 | remote_queuelock_release( ref_lock_xp ); |
---|
| 2140 | remote_queuelock_release( loc_lock_xp ); |
---|
| 2141 | return -1; |
---|
| 2142 | } |
---|
| 2143 | else // update local VSL and return success |
---|
| 2144 | { |
---|
| 2145 | // initialize local vseg |
---|
| 2146 | vseg_init_from_ref( loc_vseg , XPTR( ref_cxy , ref_vseg ) ); |
---|
| 2147 | |
---|
| 2148 | // register local vseg in local VSL |
---|
| 2149 | vmm_attach_vseg_to_vsl( &process->vmm , loc_vseg ); |
---|
| 2150 | |
---|
| 2151 | // release both VSL locks |
---|
| 2152 | remote_queuelock_release( ref_lock_xp ); |
---|
| 2153 | remote_queuelock_release( loc_lock_xp ); |
---|
| 2154 | |
---|
| 2155 | *found_vseg = loc_vseg; |
---|
| 2156 | return 0; |
---|
| 2157 | } |
---|
[640] | 2158 | } |
---|
| 2159 | } |
---|
| 2160 | } |
---|
| 2161 | else // vseg found in local VSL => return success |
---|
| 2162 | { |
---|
[665] | 2163 | // release local VSL lock |
---|
[640] | 2164 | remote_queuelock_release( loc_lock_xp ); |
---|
| 2165 | |
---|
| 2166 | *found_vseg = loc_vseg; |
---|
| 2167 | return 0; |
---|
| 2168 | } |
---|
[388] | 2169 | } // end vmm_get_vseg() |
---|
| 2170 | |
---|
[407] | 2171 | ////////////////////////////////////////////////////////////////////////////////////// |
---|
| 2172 | // This static function compute the target cluster to allocate a physical page |
---|
[683] | 2173 | // for a given <vpn> in a given <vseg>, allocates the physical page from a local |
---|
| 2174 | // or remote cluster (depending on the vseg type), and returns an extended pointer |
---|
| 2175 | // on the allocated page descriptor. |
---|
[407] | 2176 | // The vseg cannot have the FILE type. |
---|
| 2177 | ////////////////////////////////////////////////////////////////////////////////////// |
---|
[640] | 2178 | // @ vseg : local pointer on vseg. |
---|
| 2179 | // @ vpn : unmapped vpn. |
---|
[683] | 2180 | // @ return xptr on page descriptor if success / return XPTR_NULL if failure |
---|
[640] | 2181 | ////////////////////////////////////////////////////////////////////////////////////// |
---|
[407] | 2182 | static xptr_t vmm_page_allocate( vseg_t * vseg, |
---|
| 2183 | vpn_t vpn ) |
---|
| 2184 | { |
---|
[433] | 2185 | |
---|
[632] | 2186 | #if DEBUG_VMM_PAGE_ALLOCATE |
---|
[619] | 2187 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
---|
| 2188 | thread_t * this = CURRENT_THREAD; |
---|
[632] | 2189 | if( DEBUG_VMM_PAGE_ALLOCATE < cycle ) |
---|
[595] | 2190 | printk("\n[%s] thread[%x,%x] enter for vpn %x / cycle %d\n", |
---|
| 2191 | __FUNCTION__ , this->process->pid, this->trdid, vpn, cycle ); |
---|
[433] | 2192 | #endif |
---|
| 2193 | |
---|
[632] | 2194 | xptr_t page_xp; |
---|
[407] | 2195 | cxy_t page_cxy; |
---|
[577] | 2196 | uint32_t index; |
---|
[407] | 2197 | |
---|
[577] | 2198 | uint32_t type = vseg->type; |
---|
| 2199 | uint32_t flags = vseg->flags; |
---|
| 2200 | uint32_t x_size = LOCAL_CLUSTER->x_size; |
---|
| 2201 | uint32_t y_size = LOCAL_CLUSTER->y_size; |
---|
[407] | 2202 | |
---|
[567] | 2203 | // check vseg type |
---|
[672] | 2204 | assert( __FUNCTION__, ( type != VSEG_TYPE_FILE ) , "illegal vseg type\n" ); |
---|
[407] | 2205 | |
---|
[656] | 2206 | // compute target cluster identifier |
---|
[407] | 2207 | if( flags & VSEG_DISTRIB ) // distributed => cxy depends on vpn LSB |
---|
| 2208 | { |
---|
[577] | 2209 | index = vpn & ((x_size * y_size) - 1); |
---|
| 2210 | page_cxy = HAL_CXY_FROM_XY( (index / y_size) , (index % y_size) ); |
---|
[561] | 2211 | |
---|
[577] | 2212 | // If the cluster selected from VPN's LSBs is empty, we select one randomly |
---|
| 2213 | if ( cluster_is_active( page_cxy ) == false ) |
---|
| 2214 | { |
---|
| 2215 | page_cxy = cluster_random_select(); |
---|
[561] | 2216 | } |
---|
[407] | 2217 | } |
---|
| 2218 | else // other cases => cxy specified in vseg |
---|
| 2219 | { |
---|
[561] | 2220 | page_cxy = vseg->cxy; |
---|
[407] | 2221 | } |
---|
| 2222 | |
---|
[656] | 2223 | // get local pointer on page base |
---|
[683] | 2224 | void * ptr = kmem_remote_alloc( page_cxy , CONFIG_PPM_PAGE_ORDER , AF_ZERO ); |
---|
[635] | 2225 | |
---|
[683] | 2226 | if( ptr == NULL ) |
---|
| 2227 | { |
---|
| 2228 | |
---|
| 2229 | #if DEBUG_VMM_ERROR |
---|
| 2230 | printk("\n[ERROR] in %s : cannot allocate memory from cluster %x\n", |
---|
| 2231 | __FUNCTION__, page_cxy ); |
---|
| 2232 | #endif |
---|
| 2233 | return XPTR_NULL; |
---|
| 2234 | } |
---|
[656] | 2235 | // get extended pointer on page descriptor |
---|
| 2236 | page_xp = ppm_base2page( XPTR( page_cxy , ptr ) ); |
---|
| 2237 | |
---|
[632] | 2238 | #if DEBUG_VMM_PAGE_ALLOCATE |
---|
[595] | 2239 | cycle = (uint32_t)hal_get_cycles(); |
---|
[632] | 2240 | if( DEBUG_VMM_PAGE_ALLOCATE < cycle ) |
---|
[635] | 2241 | printk("\n[%s] thread[%x,%x] exit for vpn %x / ppn %x / cycle %d\n", |
---|
| 2242 | __FUNCTION__ , this->process->pid, this->trdid, vpn, ppm_page2ppn(page_xp), cycle ); |
---|
[433] | 2243 | #endif |
---|
| 2244 | |
---|
[632] | 2245 | return page_xp; |
---|
[407] | 2246 | |
---|
| 2247 | } // end vmm_page_allocate() |
---|
| 2248 | |
---|
[313] | 2249 | //////////////////////////////////////// |
---|
| 2250 | error_t vmm_get_one_ppn( vseg_t * vseg, |
---|
| 2251 | vpn_t vpn, |
---|
| 2252 | ppn_t * ppn ) |
---|
| 2253 | { |
---|
| 2254 | error_t error; |
---|
[407] | 2255 | xptr_t page_xp; // extended pointer on physical page descriptor |
---|
[606] | 2256 | uint32_t page_id; // missing page index in vseg mapper |
---|
[406] | 2257 | uint32_t type; // vseg type; |
---|
[313] | 2258 | |
---|
[406] | 2259 | type = vseg->type; |
---|
[606] | 2260 | page_id = vpn - vseg->vpn_base; |
---|
[313] | 2261 | |
---|
[438] | 2262 | #if DEBUG_VMM_GET_ONE_PPN |
---|
[595] | 2263 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
---|
| 2264 | thread_t * this = CURRENT_THREAD; |
---|
[656] | 2265 | if( DEBUG_VMM_GET_ONE_PPN < cycle ) |
---|
| 2266 | printk("\n[%s] thread[%x,%x] enter for vpn %x / vseg %s / page_id %d / cycle %d\n", |
---|
[606] | 2267 | __FUNCTION__, this->process->pid, this->trdid, vpn, vseg_type_str(type), page_id, cycle ); |
---|
[433] | 2268 | #endif |
---|
[313] | 2269 | |
---|
[656] | 2270 | #if (DEBUG_VMM_GET_ONE_PPN & 2) |
---|
| 2271 | if( DEBUG_VMM_GET_ONE_PPN < cycle ) |
---|
| 2272 | hal_vmm_display( XPTR( local_cxy , this->process ) , true ); |
---|
| 2273 | #endif |
---|
| 2274 | |
---|
[406] | 2275 | // FILE type : get the physical page from the file mapper |
---|
[313] | 2276 | if( type == VSEG_TYPE_FILE ) |
---|
| 2277 | { |
---|
[406] | 2278 | // get extended pointer on mapper |
---|
[407] | 2279 | xptr_t mapper_xp = vseg->mapper_xp; |
---|
[313] | 2280 | |
---|
[672] | 2281 | assert( __FUNCTION__, (mapper_xp != XPTR_NULL), |
---|
[567] | 2282 | "mapper not defined for a FILE vseg\n" ); |
---|
[406] | 2283 | |
---|
[606] | 2284 | // get extended pointer on page descriptor |
---|
[657] | 2285 | page_xp = mapper_get_page( mapper_xp , page_id ); |
---|
[406] | 2286 | |
---|
[606] | 2287 | if ( page_xp == XPTR_NULL ) return EINVAL; |
---|
[313] | 2288 | } |
---|
| 2289 | |
---|
[406] | 2290 | // Other types : allocate a physical page from target cluster, |
---|
[407] | 2291 | // as defined by vseg type and vpn value |
---|
[313] | 2292 | else |
---|
| 2293 | { |
---|
[433] | 2294 | // allocate one physical page |
---|
[407] | 2295 | page_xp = vmm_page_allocate( vseg , vpn ); |
---|
[406] | 2296 | |
---|
[635] | 2297 | if( page_xp == XPTR_NULL ) return -1; |
---|
[313] | 2298 | |
---|
[406] | 2299 | // initialise missing page from .elf file mapper for DATA and CODE types |
---|
[440] | 2300 | // the vseg->mapper_xp field is an extended pointer on the .elf file mapper |
---|
[313] | 2301 | if( (type == VSEG_TYPE_CODE) || (type == VSEG_TYPE_DATA) ) |
---|
| 2302 | { |
---|
[406] | 2303 | // get extended pointer on mapper |
---|
| 2304 | xptr_t mapper_xp = vseg->mapper_xp; |
---|
[313] | 2305 | |
---|
[672] | 2306 | assert( __FUNCTION__, (mapper_xp != XPTR_NULL), |
---|
[567] | 2307 | "mapper not defined for a CODE or DATA vseg\n" ); |
---|
[406] | 2308 | |
---|
| 2309 | // compute missing page offset in vseg |
---|
[683] | 2310 | uint32_t offset = page_id << CONFIG_PPM_PAGE_ORDER; |
---|
[406] | 2311 | |
---|
[313] | 2312 | // compute missing page offset in .elf file |
---|
[406] | 2313 | uint32_t elf_offset = vseg->file_offset + offset; |
---|
[313] | 2314 | |
---|
[438] | 2315 | #if (DEBUG_VMM_GET_ONE_PPN & 0x1) |
---|
[656] | 2316 | if( DEBUG_VMM_GET_ONE_PPN < cycle ) |
---|
[595] | 2317 | printk("\n[%s] thread[%x,%x] for vpn = %x / elf_offset = %x\n", |
---|
| 2318 | __FUNCTION__, this->process->pid, this->trdid, vpn, elf_offset ); |
---|
[433] | 2319 | #endif |
---|
[406] | 2320 | // compute extended pointer on page base |
---|
[407] | 2321 | xptr_t base_xp = ppm_page2base( page_xp ); |
---|
[313] | 2322 | |
---|
[406] | 2323 | // file_size (in .elf mapper) can be smaller than vseg_size (BSS) |
---|
| 2324 | uint32_t file_size = vseg->file_size; |
---|
| 2325 | |
---|
| 2326 | if( file_size < offset ) // missing page fully in BSS |
---|
[313] | 2327 | { |
---|
[406] | 2328 | |
---|
[438] | 2329 | #if (DEBUG_VMM_GET_ONE_PPN & 0x1) |
---|
[656] | 2330 | if( DEBUG_VMM_GET_ONE_PPN < cycle ) |
---|
[595] | 2331 | printk("\n[%s] thread[%x,%x] for vpn %x / fully in BSS\n", |
---|
| 2332 | __FUNCTION__, this->process->pid, this->trdid, vpn ); |
---|
[433] | 2333 | #endif |
---|
[407] | 2334 | if( GET_CXY( page_xp ) == local_cxy ) |
---|
[313] | 2335 | { |
---|
[315] | 2336 | memset( GET_PTR( base_xp ) , 0 , CONFIG_PPM_PAGE_SIZE ); |
---|
[313] | 2337 | } |
---|
| 2338 | else |
---|
| 2339 | { |
---|
[315] | 2340 | hal_remote_memset( base_xp , 0 , CONFIG_PPM_PAGE_SIZE ); |
---|
[313] | 2341 | } |
---|
| 2342 | } |
---|
[406] | 2343 | else if( file_size >= (offset + CONFIG_PPM_PAGE_SIZE) ) // fully in mapper |
---|
[315] | 2344 | { |
---|
[406] | 2345 | |
---|
[438] | 2346 | #if (DEBUG_VMM_GET_ONE_PPN & 0x1) |
---|
[656] | 2347 | if( DEBUG_VMM_GET_ONE_PPN < cycle ) |
---|
[595] | 2348 | printk("\n[%s] thread[%x,%x] for vpn %x / fully in mapper\n", |
---|
| 2349 | __FUNCTION__, this->process->pid, this->trdid, vpn ); |
---|
[433] | 2350 | #endif |
---|
[606] | 2351 | error = mapper_move_kernel( mapper_xp, |
---|
| 2352 | true, // to_buffer |
---|
| 2353 | elf_offset, |
---|
| 2354 | base_xp, |
---|
| 2355 | CONFIG_PPM_PAGE_SIZE ); |
---|
[313] | 2356 | if( error ) return EINVAL; |
---|
| 2357 | } |
---|
[406] | 2358 | else // both in mapper and in BSS : |
---|
| 2359 | // - (file_size - offset) bytes from mapper |
---|
| 2360 | // - (page_size + offset - file_size) bytes from BSS |
---|
[313] | 2361 | { |
---|
[406] | 2362 | |
---|
[438] | 2363 | #if (DEBUG_VMM_GET_ONE_PPN & 0x1) |
---|
[656] | 2364 | if( DEBUG_VMM_GET_ONE_PPN < cycle ) |
---|
[610] | 2365 | printk("\n[%s] thread[%x,%x] for vpn %x / both mapper & BSS\n" |
---|
[433] | 2366 | " %d bytes from mapper / %d bytes from BSS\n", |
---|
[595] | 2367 | __FUNCTION__, this->process->pid, this->trdid, vpn, |
---|
[407] | 2368 | file_size - offset , offset + CONFIG_PPM_PAGE_SIZE - file_size ); |
---|
[433] | 2369 | #endif |
---|
[313] | 2370 | // initialize mapper part |
---|
[606] | 2371 | error = mapper_move_kernel( mapper_xp, |
---|
| 2372 | true, // to buffer |
---|
| 2373 | elf_offset, |
---|
| 2374 | base_xp, |
---|
| 2375 | file_size - offset ); |
---|
[313] | 2376 | if( error ) return EINVAL; |
---|
| 2377 | |
---|
| 2378 | // initialize BSS part |
---|
[407] | 2379 | if( GET_CXY( page_xp ) == local_cxy ) |
---|
[313] | 2380 | { |
---|
[406] | 2381 | memset( GET_PTR( base_xp ) + file_size - offset , 0 , |
---|
| 2382 | offset + CONFIG_PPM_PAGE_SIZE - file_size ); |
---|
[313] | 2383 | } |
---|
| 2384 | else |
---|
| 2385 | { |
---|
[406] | 2386 | hal_remote_memset( base_xp + file_size - offset , 0 , |
---|
| 2387 | offset + CONFIG_PPM_PAGE_SIZE - file_size ); |
---|
[313] | 2388 | } |
---|
| 2389 | } |
---|
[656] | 2390 | |
---|
| 2391 | } // end if CODE or DATA types |
---|
[313] | 2392 | } |
---|
| 2393 | |
---|
| 2394 | // return ppn |
---|
[407] | 2395 | *ppn = ppm_page2ppn( page_xp ); |
---|
[406] | 2396 | |
---|
[438] | 2397 | #if DEBUG_VMM_GET_ONE_PPN |
---|
[656] | 2398 | if( DEBUG_VMM_GET_ONE_PPN < cycle ) |
---|
[635] | 2399 | printk("\n[%s] thread[%x,%x] exit for vpn %x / ppn %x / cycle %d\n", |
---|
[595] | 2400 | __FUNCTION__ , this->process->pid, this->trdid , vpn , *ppn, cycle ); |
---|
[433] | 2401 | #endif |
---|
[406] | 2402 | |
---|
[656] | 2403 | #if (DEBUG_VMM_GET_ONE_PPN & 2) |
---|
| 2404 | if( DEBUG_VMM_GET_ONE_PPN < cycle ) |
---|
| 2405 | hal_vmm_display( XPTR( local_cxy , this->process ) , true ); |
---|
| 2406 | #endif |
---|
| 2407 | |
---|
[313] | 2408 | return 0; |
---|
| 2409 | |
---|
| 2410 | } // end vmm_get_one_ppn() |
---|
| 2411 | |
---|
[585] | 2412 | /////////////////////////////////////////////////// |
---|
| 2413 | error_t vmm_handle_page_fault( process_t * process, |
---|
| 2414 | vpn_t vpn ) |
---|
[1] | 2415 | { |
---|
[585] | 2416 | vseg_t * vseg; // vseg containing vpn |
---|
[629] | 2417 | uint32_t attr; // PTE_ATTR value |
---|
| 2418 | ppn_t ppn; // PTE_PPN value |
---|
[585] | 2419 | uint32_t ref_attr; // PTE_ATTR value in reference GPT |
---|
| 2420 | ppn_t ref_ppn; // PTE_PPN value in reference GPT |
---|
| 2421 | cxy_t ref_cxy; // reference cluster for missing vpn |
---|
| 2422 | process_t * ref_ptr; // reference process for missing vpn |
---|
| 2423 | xptr_t local_gpt_xp; // extended pointer on local GPT |
---|
| 2424 | xptr_t ref_gpt_xp; // extended pointer on reference GPT |
---|
| 2425 | error_t error; // value returned by called functions |
---|
[1] | 2426 | |
---|
[629] | 2427 | thread_t * this = CURRENT_THREAD; |
---|
| 2428 | |
---|
| 2429 | #if (CONFIG_INSTRUMENTATION_PGFAULTS || DEBUG_VMM_HANDLE_PAGE_FAULT) |
---|
| 2430 | uint32_t start_cycle = (uint32_t)hal_get_cycles(); |
---|
| 2431 | #endif |
---|
| 2432 | |
---|
[625] | 2433 | #if DEBUG_VMM_HANDLE_PAGE_FAULT |
---|
[656] | 2434 | if( (start_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) & (vpn > 0) ) |
---|
[625] | 2435 | printk("\n[%s] thread[%x,%x] enter for vpn %x / cycle %d\n", |
---|
[629] | 2436 | __FUNCTION__, this->process->pid, this->trdid, vpn, start_cycle ); |
---|
[625] | 2437 | #endif |
---|
| 2438 | |
---|
[656] | 2439 | #if (DEBUG_VMM_HANDLE_PAGE_FAULT & 2) |
---|
[635] | 2440 | if( (start_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) && (vpn > 0) ) |
---|
[656] | 2441 | hal_vmm_display( XPTR( local_cxy , this->process ) , true ); |
---|
[629] | 2442 | #endif |
---|
| 2443 | |
---|
[585] | 2444 | // get local vseg (access to reference VSL can be required) |
---|
| 2445 | error = vmm_get_vseg( process, |
---|
[683] | 2446 | (intptr_t)vpn<<CONFIG_PPM_PAGE_ORDER, |
---|
[585] | 2447 | &vseg ); |
---|
| 2448 | if( error ) |
---|
| 2449 | { |
---|
[629] | 2450 | printk("\n[ERROR] in %s : vpn %x in thread[%x,%x] not in registered vseg\n", |
---|
| 2451 | __FUNCTION__ , vpn , process->pid, this->trdid ); |
---|
[585] | 2452 | |
---|
| 2453 | return EXCP_USER_ERROR; |
---|
| 2454 | } |
---|
| 2455 | |
---|
[635] | 2456 | #if (DEBUG_VMM_HANDLE_PAGE_FAULT & 1) |
---|
| 2457 | if( (start_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) && (vpn > 0) ) |
---|
[634] | 2458 | printk("\n[%s] thread[%x,%x] found vseg %s\n", |
---|
| 2459 | __FUNCTION__, this->process->pid, this->trdid, vseg_type_str(vseg->type) ); |
---|
[433] | 2460 | #endif |
---|
[406] | 2461 | |
---|
[629] | 2462 | // build extended pointer on local GPT |
---|
| 2463 | local_gpt_xp = XPTR( local_cxy , &process->vmm.gpt ); |
---|
| 2464 | |
---|
[632] | 2465 | // lock PTE in local GPT and get current PPN and attributes |
---|
[629] | 2466 | error = hal_gpt_lock_pte( local_gpt_xp, |
---|
| 2467 | vpn, |
---|
| 2468 | &attr, |
---|
| 2469 | &ppn ); |
---|
| 2470 | if( error ) |
---|
[438] | 2471 | { |
---|
[629] | 2472 | printk("\n[PANIC] in %s : cannot lock PTE in local GPT / vpn %x / process %x\n", |
---|
| 2473 | __FUNCTION__ , vpn , process->pid ); |
---|
| 2474 | |
---|
| 2475 | return EXCP_KERNEL_PANIC; |
---|
| 2476 | } |
---|
[407] | 2477 | |
---|
[635] | 2478 | #if (DEBUG_VMM_HANDLE_PAGE_FAULT & 1) |
---|
| 2479 | if( (start_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) && (vpn > 0) ) |
---|
| 2480 | printk("\n[%s] thread[%x,%x] locked vpn %x in cluster %x\n", |
---|
[634] | 2481 | __FUNCTION__, this->process->pid, this->trdid, vpn, local_cxy ); |
---|
[632] | 2482 | #endif |
---|
| 2483 | |
---|
| 2484 | // handle page fault only if local PTE still unmapped after lock |
---|
[629] | 2485 | if( (attr & GPT_MAPPED) == 0 ) |
---|
| 2486 | { |
---|
| 2487 | // get reference process cluster and local pointer |
---|
| 2488 | ref_cxy = GET_CXY( process->ref_xp ); |
---|
| 2489 | ref_ptr = GET_PTR( process->ref_xp ); |
---|
[407] | 2490 | |
---|
[630] | 2491 | /////////////// private vseg or (local == reference) |
---|
| 2492 | /////////////// => access only the local GPT |
---|
[629] | 2493 | if( (vseg->type == VSEG_TYPE_STACK) || |
---|
| 2494 | (vseg->type == VSEG_TYPE_CODE) || |
---|
| 2495 | (ref_cxy == local_cxy ) ) |
---|
| 2496 | { |
---|
[632] | 2497 | |
---|
[635] | 2498 | #if (DEBUG_VMM_HANDLE_PAGE_FAULT & 1) |
---|
| 2499 | if( (start_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) && (vpn > 0) ) |
---|
| 2500 | printk("\n[%s] thread[%x,%x] access local gpt : cxy %x / ref_cxy %x / type %s / cycle %d\n", |
---|
| 2501 | __FUNCTION__, this->process->pid, this->trdid, |
---|
| 2502 | local_cxy, ref_cxy, vseg_type_str(vseg->type), (uint32_t)hal_get_cycles() ); |
---|
[632] | 2503 | #endif |
---|
| 2504 | // allocate and initialise a physical page |
---|
[629] | 2505 | error = vmm_get_one_ppn( vseg , vpn , &ppn ); |
---|
[407] | 2506 | |
---|
[585] | 2507 | if( error ) |
---|
[408] | 2508 | { |
---|
[629] | 2509 | printk("\n[ERROR] in %s : no physical page / process = %x / vpn = %x\n", |
---|
[408] | 2510 | __FUNCTION__ , process->pid , vpn ); |
---|
[1] | 2511 | |
---|
[629] | 2512 | // unlock PTE in local GPT |
---|
| 2513 | hal_gpt_unlock_pte( local_gpt_xp , vpn ); |
---|
[406] | 2514 | |
---|
[585] | 2515 | return EXCP_KERNEL_PANIC; |
---|
[407] | 2516 | } |
---|
| 2517 | |
---|
[629] | 2518 | // define attr from vseg flags |
---|
[632] | 2519 | attr = GPT_MAPPED | GPT_SMALL | GPT_READABLE; |
---|
[629] | 2520 | if( vseg->flags & VSEG_USER ) attr |= GPT_USER; |
---|
| 2521 | if( vseg->flags & VSEG_WRITE ) attr |= GPT_WRITABLE; |
---|
| 2522 | if( vseg->flags & VSEG_EXEC ) attr |= GPT_EXECUTABLE; |
---|
| 2523 | if( vseg->flags & VSEG_CACHE ) attr |= GPT_CACHABLE; |
---|
[407] | 2524 | |
---|
[629] | 2525 | // set PTE to local GPT |
---|
[632] | 2526 | // it unlocks this PTE |
---|
[629] | 2527 | hal_gpt_set_pte( local_gpt_xp, |
---|
| 2528 | vpn, |
---|
| 2529 | attr, |
---|
| 2530 | ppn ); |
---|
[585] | 2531 | |
---|
[629] | 2532 | #if (CONFIG_INSTRUMENTATION_PGFAULTS || DEBUG_VMM_HANDLE_PAGE_FAULT) |
---|
| 2533 | uint32_t end_cycle = (uint32_t)hal_get_cycles(); |
---|
| 2534 | #endif |
---|
[585] | 2535 | |
---|
| 2536 | #if DEBUG_VMM_HANDLE_PAGE_FAULT |
---|
[635] | 2537 | if( (end_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) && (vpn > 0) ) |
---|
[632] | 2538 | printk("\n[%s] thread[%x,%x] handled local pgfault / ppn %x / attr %x / cycle %d\n", |
---|
| 2539 | __FUNCTION__, this->process->pid, this->trdid, ppn, attr, end_cycle ); |
---|
[585] | 2540 | #endif |
---|
| 2541 | |
---|
[656] | 2542 | #if (DEBUG_VMM_HANDLE_PAGE_FAULT & 2) |
---|
| 2543 | if( (end_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) && (vpn > 0) ) |
---|
| 2544 | hal_vmm_display( XPTR( local_cxy , this->process ) , true ); |
---|
| 2545 | #endif |
---|
| 2546 | |
---|
[629] | 2547 | #if CONFIG_INSTRUMENTATION_PGFAULTS |
---|
[656] | 2548 | uint32_t cost = end_cycle - start_cycle; |
---|
[629] | 2549 | this->info.local_pgfault_nr++; |
---|
[641] | 2550 | this->info.local_pgfault_cost += cost; |
---|
| 2551 | if( cost > this->info.local_pgfault_max ) this->info.local_pgfault_max = cost; |
---|
[629] | 2552 | #endif |
---|
| 2553 | return EXCP_NON_FATAL; |
---|
[585] | 2554 | |
---|
[629] | 2555 | } // end local GPT access |
---|
[585] | 2556 | |
---|
[630] | 2557 | /////////////////// public vseg and (local != reference) |
---|
| 2558 | /////////////////// => access ref GPT to update local GPT |
---|
[629] | 2559 | else |
---|
| 2560 | { |
---|
[632] | 2561 | |
---|
[635] | 2562 | #if (DEBUG_VMM_HANDLE_PAGE_FAULT & 1) |
---|
| 2563 | if( (start_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) && (vpn > 0) ) |
---|
| 2564 | printk("\n[%s] thread[%x,%x] access ref gpt : cxy %x / ref_cxy %x / type %s / cycle %d\n", |
---|
| 2565 | __FUNCTION__, this->process->pid, this->trdid, |
---|
| 2566 | local_cxy, ref_cxy, vseg_type_str(vseg->type), (uint32_t)hal_get_cycles() ); |
---|
[632] | 2567 | #endif |
---|
[629] | 2568 | // build extended pointer on reference GPT |
---|
| 2569 | ref_gpt_xp = XPTR( ref_cxy , &ref_ptr->vmm.gpt ); |
---|
[585] | 2570 | |
---|
[632] | 2571 | // lock PTE in reference GPT and get current PPN and attributes |
---|
| 2572 | error = hal_gpt_lock_pte( ref_gpt_xp, |
---|
| 2573 | vpn, |
---|
| 2574 | &ref_attr, |
---|
| 2575 | &ref_ppn ); |
---|
| 2576 | if( error ) |
---|
| 2577 | { |
---|
| 2578 | printk("\n[PANIC] in %s : cannot lock PTE in ref GPT / vpn %x / process %x\n", |
---|
| 2579 | __FUNCTION__ , vpn , process->pid ); |
---|
| 2580 | |
---|
| 2581 | // unlock PTE in local GPT |
---|
| 2582 | hal_gpt_unlock_pte( local_gpt_xp , vpn ); |
---|
| 2583 | |
---|
| 2584 | return EXCP_KERNEL_PANIC; |
---|
| 2585 | } |
---|
[1] | 2586 | |
---|
[635] | 2587 | #if (DEBUG_VMM_HANDLE_PAGE_FAULT & 1) |
---|
| 2588 | if( (start_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) && (vpn > 0) ) |
---|
[632] | 2589 | printk("\n[%s] thread[%x,%x] get pte from ref gpt / attr %x / ppn %x\n", |
---|
| 2590 | __FUNCTION__, this->process->pid, this->trdid, ref_attr, ref_ppn ); |
---|
| 2591 | #endif |
---|
| 2592 | |
---|
| 2593 | if( ref_attr & GPT_MAPPED ) // false page fault |
---|
[585] | 2594 | { |
---|
[629] | 2595 | // update local GPT from reference GPT values |
---|
[632] | 2596 | // this unlocks the PTE in local GPT |
---|
[629] | 2597 | hal_gpt_set_pte( local_gpt_xp, |
---|
| 2598 | vpn, |
---|
| 2599 | ref_attr, |
---|
| 2600 | ref_ppn ); |
---|
[585] | 2601 | |
---|
[635] | 2602 | #if (DEBUG_VMM_HANDLE_PAGE_FAULT & 1) |
---|
| 2603 | if( (start_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) && (vpn > 0) ) |
---|
[632] | 2604 | printk("\n[%s] thread[%x,%x] updated local gpt for a false pgfault\n", |
---|
| 2605 | __FUNCTION__, this->process->pid, this->trdid ); |
---|
| 2606 | #endif |
---|
| 2607 | |
---|
| 2608 | // unlock the PTE in reference GPT |
---|
| 2609 | hal_gpt_unlock_pte( ref_gpt_xp, vpn ); |
---|
| 2610 | |
---|
[635] | 2611 | #if (DEBUG_VMM_HANDLE_PAGE_FAULT &1) |
---|
| 2612 | if( (start_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) && (vpn > 0) ) |
---|
[632] | 2613 | printk("\n[%s] thread[%x,%x] unlock the ref gpt after a false pgfault\n", |
---|
| 2614 | __FUNCTION__, this->process->pid, this->trdid ); |
---|
| 2615 | #endif |
---|
| 2616 | |
---|
[629] | 2617 | #if (CONFIG_INSTRUMENTATION_PGFAULTS || DEBUG_VMM_HANDLE_PAGE_FAULT) |
---|
| 2618 | uint32_t end_cycle = (uint32_t)hal_get_cycles(); |
---|
| 2619 | #endif |
---|
| 2620 | |
---|
[585] | 2621 | #if DEBUG_VMM_HANDLE_PAGE_FAULT |
---|
[635] | 2622 | if( (end_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) && (vpn > 0) ) |
---|
[632] | 2623 | printk("\n[%s] thread[%x,%x] handled false pgfault / ppn %x / attr %x / cycle %d\n", |
---|
| 2624 | __FUNCTION__, this->process->pid, this->trdid, ref_ppn, ref_attr, end_cycle ); |
---|
[433] | 2625 | #endif |
---|
[406] | 2626 | |
---|
[656] | 2627 | #if (DEBUG_VMM_HANDLE_PAGE_FAULT & 2) |
---|
| 2628 | if( (end_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) && (vpn > 0) ) |
---|
| 2629 | hal_vmm_display( XPTR( local_cxy , this->process ) , true ); |
---|
| 2630 | #endif |
---|
| 2631 | |
---|
[629] | 2632 | #if CONFIG_INSTRUMENTATION_PGFAULTS |
---|
[656] | 2633 | uint32_t cost = end_cycle - start_cycle; |
---|
[629] | 2634 | this->info.false_pgfault_nr++; |
---|
[641] | 2635 | this->info.false_pgfault_cost += cost; |
---|
| 2636 | if( cost > this->info.false_pgfault_max ) this->info.false_pgfault_max = cost; |
---|
[629] | 2637 | #endif |
---|
| 2638 | return EXCP_NON_FATAL; |
---|
| 2639 | } |
---|
[632] | 2640 | else // true page fault |
---|
[629] | 2641 | { |
---|
[585] | 2642 | // allocate and initialise a physical page depending on the vseg type |
---|
[629] | 2643 | error = vmm_get_one_ppn( vseg , vpn , &ppn ); |
---|
[1] | 2644 | |
---|
[585] | 2645 | if( error ) |
---|
| 2646 | { |
---|
| 2647 | printk("\n[ERROR] in %s : no memory / process = %x / vpn = %x\n", |
---|
| 2648 | __FUNCTION__ , process->pid , vpn ); |
---|
[313] | 2649 | |
---|
[632] | 2650 | // unlock PTE in local GPT and in reference GPT |
---|
[629] | 2651 | hal_gpt_unlock_pte( local_gpt_xp , vpn ); |
---|
[632] | 2652 | hal_gpt_unlock_pte( ref_gpt_xp , vpn ); |
---|
[585] | 2653 | |
---|
[629] | 2654 | return EXCP_KERNEL_PANIC; |
---|
[585] | 2655 | } |
---|
[1] | 2656 | |
---|
[629] | 2657 | // define attr from vseg flags |
---|
[632] | 2658 | attr = GPT_MAPPED | GPT_SMALL | GPT_READABLE; |
---|
[629] | 2659 | if( vseg->flags & VSEG_USER ) attr |= GPT_USER; |
---|
| 2660 | if( vseg->flags & VSEG_WRITE ) attr |= GPT_WRITABLE; |
---|
| 2661 | if( vseg->flags & VSEG_EXEC ) attr |= GPT_EXECUTABLE; |
---|
| 2662 | if( vseg->flags & VSEG_CACHE ) attr |= GPT_CACHABLE; |
---|
[585] | 2663 | |
---|
[635] | 2664 | #if (DEBUG_VMM_HANDLE_PAGE_FAULT & 1) |
---|
| 2665 | if( (start_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) && (vpn > 0) ) |
---|
[632] | 2666 | printk("\n[%s] thread[%x,%x] build a new PTE for a true pgfault\n", |
---|
| 2667 | __FUNCTION__, this->process->pid, this->trdid ); |
---|
| 2668 | #endif |
---|
[629] | 2669 | // set PTE in reference GPT |
---|
[632] | 2670 | // this unlock the PTE |
---|
[629] | 2671 | hal_gpt_set_pte( ref_gpt_xp, |
---|
| 2672 | vpn, |
---|
| 2673 | attr, |
---|
| 2674 | ppn ); |
---|
| 2675 | |
---|
[635] | 2676 | #if (DEBUG_VMM_HANDLE_PAGE_FAULT & 1) |
---|
| 2677 | if( (start_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) && (vpn > 0) ) |
---|
[632] | 2678 | printk("\n[%s] thread[%x,%x] set new PTE in ref gpt for a true page fault\n", |
---|
| 2679 | __FUNCTION__, this->process->pid, this->trdid ); |
---|
| 2680 | #endif |
---|
| 2681 | |
---|
[629] | 2682 | // set PTE in local GPT |
---|
[632] | 2683 | // this unlock the PTE |
---|
[629] | 2684 | hal_gpt_set_pte( local_gpt_xp, |
---|
| 2685 | vpn, |
---|
| 2686 | attr, |
---|
| 2687 | ppn ); |
---|
| 2688 | |
---|
| 2689 | #if (CONFIG_INSTRUMENTATION_PGFAULTS || DEBUG_VMM_HANDLE_PAGE_FAULT) |
---|
| 2690 | uint32_t end_cycle = (uint32_t)hal_get_cycles(); |
---|
| 2691 | #endif |
---|
| 2692 | |
---|
[440] | 2693 | #if DEBUG_VMM_HANDLE_PAGE_FAULT |
---|
[635] | 2694 | if( (end_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) && (vpn > 0) ) |
---|
[632] | 2695 | printk("\n[%s] thread[%x,%x] handled global pgfault / ppn %x / attr %x / cycle %d\n", |
---|
| 2696 | __FUNCTION__, this->process->pid, this->trdid, ppn, attr, end_cycle ); |
---|
[435] | 2697 | #endif |
---|
[629] | 2698 | |
---|
[656] | 2699 | #if (DEBUG_VMM_HANDLE_PAGE_FAULT & 2) |
---|
| 2700 | if( (end_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) && (vpn > 0) ) |
---|
| 2701 | hal_vmm_display( XPTR( local_cxy , this->process ) , true ); |
---|
| 2702 | #endif |
---|
| 2703 | |
---|
[629] | 2704 | #if CONFIG_INSTRUMENTATION_PGFAULTS |
---|
[656] | 2705 | uint32_t cost = end_cycle - start_cycle; |
---|
[629] | 2706 | this->info.global_pgfault_nr++; |
---|
[641] | 2707 | this->info.global_pgfault_cost += cost; |
---|
| 2708 | if( cost > this->info.global_pgfault_max ) this->info.global_pgfault_max = cost; |
---|
[629] | 2709 | #endif |
---|
| 2710 | return EXCP_NON_FATAL; |
---|
| 2711 | } |
---|
[585] | 2712 | } |
---|
| 2713 | } |
---|
[629] | 2714 | else // page has been locally mapped by another concurrent thread |
---|
| 2715 | { |
---|
[632] | 2716 | // unlock the PTE in local GPT |
---|
[629] | 2717 | hal_gpt_unlock_pte( local_gpt_xp , vpn ); |
---|
| 2718 | |
---|
[632] | 2719 | #if (CONFIG_INSTRUMENTATION_PGFAULTS || DEBUG_VMM_HANDLE_PAGE_FAULT) |
---|
| 2720 | uint32_t end_cycle = (uint32_t)hal_get_cycles(); |
---|
| 2721 | #endif |
---|
| 2722 | |
---|
| 2723 | #if DEBUG_VMM_HANDLE_PAGE_FAULT |
---|
[635] | 2724 | if( (end_cycle > DEBUG_VMM_HANDLE_PAGE_FAULT) && (vpn > 0) ) |
---|
[632] | 2725 | printk("\n[%s] handled by another thread / vpn %x / ppn %x / attr %x / cycle %d\n", |
---|
| 2726 | __FUNCTION__, vpn, ppn, attr, end_cycle ); |
---|
| 2727 | #endif |
---|
| 2728 | |
---|
| 2729 | #if CONFIG_INSTRUMENTATION_PGFAULTS |
---|
[656] | 2730 | uint32_t cost = end_cycle - start_cycle; |
---|
[632] | 2731 | this->info.false_pgfault_nr++; |
---|
[641] | 2732 | this->info.false_pgfault_cost += cost; |
---|
| 2733 | if( cost > this->info.false_pgfault_max ) this->info.false_pgfault_max = cost; |
---|
[632] | 2734 | #endif |
---|
[629] | 2735 | return EXCP_NON_FATAL; |
---|
| 2736 | } |
---|
| 2737 | |
---|
[585] | 2738 | } // end vmm_handle_page_fault() |
---|
[435] | 2739 | |
---|
[585] | 2740 | //////////////////////////////////////////// |
---|
| 2741 | error_t vmm_handle_cow( process_t * process, |
---|
| 2742 | vpn_t vpn ) |
---|
| 2743 | { |
---|
| 2744 | vseg_t * vseg; // vseg containing vpn |
---|
[629] | 2745 | xptr_t gpt_xp; // extended pointer on GPT (local or reference) |
---|
| 2746 | gpt_t * gpt_ptr; // local pointer on GPT (local or reference) |
---|
| 2747 | cxy_t gpt_cxy; // GPT cluster identifier |
---|
[585] | 2748 | uint32_t old_attr; // current PTE_ATTR value |
---|
| 2749 | ppn_t old_ppn; // current PTE_PPN value |
---|
| 2750 | uint32_t new_attr; // new PTE_ATTR value |
---|
| 2751 | ppn_t new_ppn; // new PTE_PPN value |
---|
[629] | 2752 | cxy_t ref_cxy; // reference process cluster |
---|
| 2753 | process_t * ref_ptr; // local pointer on reference process |
---|
[585] | 2754 | error_t error; |
---|
[1] | 2755 | |
---|
[629] | 2756 | thread_t * this = CURRENT_THREAD; |
---|
[625] | 2757 | |
---|
[585] | 2758 | #if DEBUG_VMM_HANDLE_COW |
---|
[629] | 2759 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
---|
[640] | 2760 | if( (DEBUG_VMM_HANDLE_COW < cycle) && (vpn > 0) ) |
---|
[595] | 2761 | printk("\n[%s] thread[%x,%x] enter for vpn %x / core[%x,%d] / cycle %d\n", |
---|
[619] | 2762 | __FUNCTION__, this->process->pid, this->trdid, vpn, local_cxy, this->core->lid, cycle ); |
---|
[629] | 2763 | #endif |
---|
| 2764 | |
---|
[656] | 2765 | #if (DEBUG_VMM_HANDLE_COW & 2) |
---|
[640] | 2766 | hal_vmm_display( XPTR( local_cxy , process ) , true ); |
---|
[585] | 2767 | #endif |
---|
| 2768 | |
---|
| 2769 | // get local vseg |
---|
| 2770 | error = vmm_get_vseg( process, |
---|
[683] | 2771 | (intptr_t)vpn<<CONFIG_PPM_PAGE_ORDER, |
---|
[585] | 2772 | &vseg ); |
---|
[440] | 2773 | if( error ) |
---|
[1] | 2774 | { |
---|
[629] | 2775 | printk("\n[ERROR] in %s : vpn %x in thread[%x,%x] not in a registered vseg\n", |
---|
[625] | 2776 | __FUNCTION__, vpn, process->pid, this->trdid ); |
---|
[585] | 2777 | |
---|
[629] | 2778 | return EXCP_USER_ERROR; |
---|
[440] | 2779 | } |
---|
[407] | 2780 | |
---|
[629] | 2781 | #if DEBUG_VMM_HANDLE_COW |
---|
[640] | 2782 | if( (DEBUG_VMM_HANDLE_COW < cycle) && (vpn > 0) ) |
---|
[629] | 2783 | printk("\n[%s] thread[%x,%x] get vseg %s\n", |
---|
| 2784 | __FUNCTION__, this->process->pid, this->trdid, vseg_type_str(vseg->type) ); |
---|
[619] | 2785 | #endif |
---|
| 2786 | |
---|
[629] | 2787 | // get reference process cluster and local pointer |
---|
[585] | 2788 | ref_cxy = GET_CXY( process->ref_xp ); |
---|
| 2789 | ref_ptr = GET_PTR( process->ref_xp ); |
---|
[407] | 2790 | |
---|
[629] | 2791 | // build pointers on relevant GPT |
---|
| 2792 | // - access only local GPT for a private vseg |
---|
| 2793 | // - access reference GPT and all copies for a public vseg |
---|
[585] | 2794 | if( (vseg->type == VSEG_TYPE_STACK) || (vseg->type == VSEG_TYPE_CODE) ) |
---|
[440] | 2795 | { |
---|
[629] | 2796 | gpt_cxy = local_cxy; |
---|
| 2797 | gpt_ptr = &process->vmm.gpt; |
---|
| 2798 | gpt_xp = XPTR( gpt_cxy , gpt_ptr ); |
---|
[1] | 2799 | } |
---|
[440] | 2800 | else |
---|
[1] | 2801 | { |
---|
[629] | 2802 | gpt_cxy = ref_cxy; |
---|
| 2803 | gpt_ptr = &ref_ptr->vmm.gpt; |
---|
| 2804 | gpt_xp = XPTR( gpt_cxy , gpt_ptr ); |
---|
[1] | 2805 | } |
---|
| 2806 | |
---|
[629] | 2807 | // lock target PTE in relevant GPT (local or reference) |
---|
[632] | 2808 | // and get current PTE value |
---|
[629] | 2809 | error = hal_gpt_lock_pte( gpt_xp, |
---|
| 2810 | vpn, |
---|
| 2811 | &old_attr, |
---|
| 2812 | &old_ppn ); |
---|
| 2813 | if( error ) |
---|
| 2814 | { |
---|
| 2815 | printk("\n[PANIC] in %s : cannot lock PTE in GPT / cxy %x / vpn %x / process %x\n", |
---|
| 2816 | __FUNCTION__ , gpt_cxy, vpn , process->pid ); |
---|
| 2817 | |
---|
| 2818 | return EXCP_KERNEL_PANIC; |
---|
| 2819 | } |
---|
[441] | 2820 | |
---|
[629] | 2821 | #if DEBUG_VMM_HANDLE_COW |
---|
[640] | 2822 | if( (DEBUG_VMM_HANDLE_COW < cycle) && (vpn > 0) ) |
---|
[619] | 2823 | printk("\n[%s] thread[%x,%x] get pte for vpn %x : ppn %x / attr %x\n", |
---|
| 2824 | __FUNCTION__, this->process->pid, this->trdid, vpn, old_ppn, old_attr ); |
---|
| 2825 | #endif |
---|
| 2826 | |
---|
[629] | 2827 | // return user error if COW attribute not set or PTE2 unmapped |
---|
| 2828 | if( ((old_attr & GPT_COW) == 0) || ((old_attr & GPT_MAPPED) == 0) ) |
---|
[585] | 2829 | { |
---|
[629] | 2830 | hal_gpt_unlock_pte( gpt_xp , vpn ); |
---|
[407] | 2831 | |
---|
[629] | 2832 | return EXCP_USER_ERROR; |
---|
[407] | 2833 | } |
---|
| 2834 | |
---|
[619] | 2835 | // get pointers on physical page descriptor |
---|
[585] | 2836 | xptr_t page_xp = ppm_ppn2page( old_ppn ); |
---|
| 2837 | cxy_t page_cxy = GET_CXY( page_xp ); |
---|
| 2838 | page_t * page_ptr = GET_PTR( page_xp ); |
---|
[435] | 2839 | |
---|
[585] | 2840 | // get extended pointers on forks and lock field in page descriptor |
---|
| 2841 | xptr_t forks_xp = XPTR( page_cxy , &page_ptr->forks ); |
---|
| 2842 | xptr_t forks_lock_xp = XPTR( page_cxy , &page_ptr->lock ); |
---|
[407] | 2843 | |
---|
[585] | 2844 | // take lock protecting "forks" counter |
---|
| 2845 | remote_busylock_acquire( forks_lock_xp ); |
---|
[407] | 2846 | |
---|
[585] | 2847 | // get number of pending forks from page descriptor |
---|
| 2848 | uint32_t forks = hal_remote_l32( forks_xp ); |
---|
[441] | 2849 | |
---|
[629] | 2850 | #if DEBUG_VMM_HANDLE_COW |
---|
[640] | 2851 | if( (DEBUG_VMM_HANDLE_COW < cycle) && (vpn > 0) ) |
---|
[619] | 2852 | printk("\n[%s] thread[%x,%x] get forks = %d for vpn %x\n", |
---|
| 2853 | __FUNCTION__, this->process->pid, this->trdid, forks, vpn ); |
---|
| 2854 | #endif |
---|
| 2855 | |
---|
[585] | 2856 | if( forks ) // pending fork => allocate a new page, and copy old to new |
---|
| 2857 | { |
---|
[619] | 2858 | // decrement pending forks counter in page descriptor |
---|
| 2859 | hal_remote_atomic_add( forks_xp , -1 ); |
---|
| 2860 | |
---|
| 2861 | // release lock protecting "forks" counter |
---|
| 2862 | remote_busylock_release( forks_lock_xp ); |
---|
| 2863 | |
---|
[629] | 2864 | // allocate a new physical page depending on vseg type |
---|
[585] | 2865 | page_xp = vmm_page_allocate( vseg , vpn ); |
---|
[619] | 2866 | |
---|
[585] | 2867 | if( page_xp == XPTR_NULL ) |
---|
| 2868 | { |
---|
| 2869 | printk("\n[PANIC] in %s : no memory for vpn %x in process %x\n", |
---|
| 2870 | __FUNCTION__ , vpn, process->pid ); |
---|
[441] | 2871 | |
---|
[629] | 2872 | hal_gpt_unlock_pte( gpt_xp , vpn ); |
---|
[441] | 2873 | |
---|
[585] | 2874 | return EXCP_KERNEL_PANIC; |
---|
| 2875 | } |
---|
[441] | 2876 | |
---|
[585] | 2877 | // compute allocated page PPN |
---|
| 2878 | new_ppn = ppm_page2ppn( page_xp ); |
---|
[441] | 2879 | |
---|
[629] | 2880 | #if DEBUG_VMM_HANDLE_COW |
---|
[640] | 2881 | if( (DEBUG_VMM_HANDLE_COW < cycle) && (vpn > 0) ) |
---|
[619] | 2882 | printk("\n[%s] thread[%x,%x] get new ppn %x for vpn %x\n", |
---|
| 2883 | __FUNCTION__, this->process->pid, this->trdid, new_ppn, vpn ); |
---|
| 2884 | #endif |
---|
| 2885 | |
---|
[585] | 2886 | // copy old page content to new page |
---|
[619] | 2887 | hal_remote_memcpy( ppm_ppn2base( new_ppn ), |
---|
| 2888 | ppm_ppn2base( old_ppn ), |
---|
| 2889 | CONFIG_PPM_PAGE_SIZE ); |
---|
[441] | 2890 | |
---|
[629] | 2891 | #if DEBUG_VMM_HANDLE_COW |
---|
[640] | 2892 | if( (DEBUG_VMM_HANDLE_COW < cycle) && (vpn > 0) ) |
---|
[619] | 2893 | printk("\n[%s] thread[%x,%x] copied old page to new page\n", |
---|
| 2894 | __FUNCTION__, this->process->pid, this->trdid ); |
---|
[585] | 2895 | #endif |
---|
[440] | 2896 | |
---|
[585] | 2897 | } |
---|
| 2898 | else // no pending fork => keep the existing page |
---|
| 2899 | { |
---|
[619] | 2900 | // release lock protecting "forks" counter |
---|
| 2901 | remote_busylock_release( forks_lock_xp ); |
---|
[1] | 2902 | |
---|
[585] | 2903 | #if(DEBUG_VMM_HANDLE_COW & 1) |
---|
[640] | 2904 | if( (DEBUG_VMM_HANDLE_COW < cycle) && (vpn > 0) ) |
---|
[635] | 2905 | printk("\n[%s] thread[%x,%x] no pending forks / keep existing PPN %x\n", |
---|
[619] | 2906 | __FUNCTION__, this->process->pid, this->trdid, old_ppn ); |
---|
[585] | 2907 | #endif |
---|
| 2908 | new_ppn = old_ppn; |
---|
| 2909 | } |
---|
[1] | 2910 | |
---|
[629] | 2911 | // build new_attr : set WRITABLE, reset COW, reset LOCKED |
---|
| 2912 | new_attr = (((old_attr | GPT_WRITABLE) & (~GPT_COW)) & (~GPT_LOCKED)); |
---|
[585] | 2913 | |
---|
[635] | 2914 | #if(DEBUG_VMM_HANDLE_COW & 1) |
---|
[640] | 2915 | if( (DEBUG_VMM_HANDLE_COW < cycle) && (vpn > 0) ) |
---|
[635] | 2916 | printk("\n[%s] thread[%x,%x] new_attr %x / new_ppn %x\n", |
---|
| 2917 | __FUNCTION__, this->process->pid, this->trdid, new_attr, new_ppn ); |
---|
| 2918 | #endif |
---|
| 2919 | |
---|
[629] | 2920 | // update the relevant GPT(s) |
---|
| 2921 | // - private vseg => update only the local GPT |
---|
| 2922 | // - public vseg => update the reference GPT AND all the GPT copies |
---|
[585] | 2923 | if( (vseg->type == VSEG_TYPE_STACK) || (vseg->type == VSEG_TYPE_CODE) ) |
---|
[1] | 2924 | { |
---|
[635] | 2925 | // set new PTE in local gpt |
---|
[585] | 2926 | hal_gpt_set_pte( gpt_xp, |
---|
| 2927 | vpn, |
---|
| 2928 | new_attr, |
---|
| 2929 | new_ppn ); |
---|
[1] | 2930 | } |
---|
[585] | 2931 | else |
---|
[1] | 2932 | { |
---|
[640] | 2933 | // set new PTE in all GPT copies |
---|
| 2934 | vmm_global_update_pte( process, |
---|
| 2935 | vpn, |
---|
| 2936 | new_attr, |
---|
| 2937 | new_ppn ); |
---|
[1] | 2938 | } |
---|
| 2939 | |
---|
[585] | 2940 | #if DEBUG_VMM_HANDLE_COW |
---|
| 2941 | cycle = (uint32_t)hal_get_cycles(); |
---|
[640] | 2942 | if( (DEBUG_VMM_HANDLE_COW < cycle) && (vpn > 0) ) |
---|
[595] | 2943 | printk("\n[%s] thread[%x,%x] exit for vpn %x / core[%x,%d] / cycle %d\n", |
---|
[619] | 2944 | __FUNCTION__, this->process->pid, this->trdid, vpn, local_cxy, this->core->lid, cycle ); |
---|
[585] | 2945 | #endif |
---|
[313] | 2946 | |
---|
[656] | 2947 | #if (DEBUG_VMM_HANDLE_COW & 2) |
---|
[640] | 2948 | hal_vmm_display( XPTR( local_cxy , process ) , true ); |
---|
[635] | 2949 | #endif |
---|
| 2950 | |
---|
[585] | 2951 | return EXCP_NON_FATAL; |
---|
[1] | 2952 | |
---|
[585] | 2953 | } // end vmm_handle_cow() |
---|
| 2954 | |
---|