Home | History | Annotate | Line # | Download | only in hpcboot
memory.cpp revision 1.5.16.1
      1 /*	$NetBSD: memory.cpp,v 1.5.16.1 2004/08/12 11:41:05 skrll Exp $	*/
      2 
      3 /*-
      4  * Copyright (c) 2001, 2002 The NetBSD Foundation, Inc.
      5  * All rights reserved.
      6  *
      7  * This code is derived from software contributed to The NetBSD Foundation
      8  * by UCHIYAMA Yasushi.
      9  *
     10  * Redistribution and use in source and binary forms, with or without
     11  * modification, are permitted provided that the following conditions
     12  * are met:
     13  * 1. Redistributions of source code must retain the above copyright
     14  *    notice, this list of conditions and the following disclaimer.
     15  * 2. Redistributions in binary form must reproduce the above copyright
     16  *    notice, this list of conditions and the following disclaimer in the
     17  *    documentation and/or other materials provided with the distribution.
     18  * 3. All advertising materials mentioning features or use of this software
     19  *    must display the following acknowledgement:
     20  *        This product includes software developed by the NetBSD
     21  *        Foundation, Inc. and its contributors.
     22  * 4. Neither the name of The NetBSD Foundation nor the names of its
     23  *    contributors may be used to endorse or promote products derived
     24  *    from this software without specific prior written permission.
     25  *
     26  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     27  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     28  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     29  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     30  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     31  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     32  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     33  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     34  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     35  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     36  * POSSIBILITY OF SUCH DAMAGE.
     37  */
     38 
     39 #include <memory.h>
     40 #include <console.h>
     41 
     42 MemoryManager::MemoryManager(Console *&cons, size_t pagesize)
     43 	: _cons(cons)
     44 {
     45 	_debug = FALSE;
     46 	_page_size = pagesize;
     47 
     48 	int mask = _page_size;
     49 	for (_page_shift = 0; !(mask & 1); _page_shift++)
     50 		mask >>= 1;
     51 
     52 	_page_per_region = WCE_REGION_SIZE / _page_size;
     53 	_nbank = 0;
     54 	_addr_table_idx = 0;
     55 	_addr_table = 0;
     56 	_memory = 0;
     57 }
     58 
     59 MemoryManager::~MemoryManager(void)
     60 {
     61 	if (_memory)
     62 		VirtualFree(LPVOID(_memory), 0, MEM_RELEASE);
     63 }
     64 
     65 void
     66 MemoryManager::loadBank(paddr_t paddr, psize_t psize)
     67 {
     68 	struct MemoryManager::bank *b = &_bank[_nbank++];
     69 	b->addr = paddr;
     70 	b->size = psize;
     71 	DPRINTF((TEXT("[%d] 0x%08x size 0x%08x\n"), _nbank - 1,
     72 	    b->addr, b->size));
     73 }
     74 
     75 BOOL
     76 MemoryManager::reservePage(vsize_t size, BOOL page_commit)
     77 {
     78 	// My virtual memory space
     79 	vaddr_t vbase;
     80 	vsize_t vsize;
     81 
     82 	int i, npage;
     83 
     84 	if (size == 0)
     85 		return FALSE;
     86 
     87 	// reserve all virtual memory.
     88 	vsize = roundRegion(size);
     89 	npage = roundPage(size) / _page_size;
     90 
     91 	size_t tabsz = sizeof(struct AddressTranslationTable) * npage;
     92 	_addr_table = static_cast <struct AddressTranslationTable *>
     93 	    (malloc(tabsz));
     94 	if (_addr_table == NULL) {
     95 		DPRINTF((TEXT("can't allocate memory for translation table.\n")));
     96 		return FALSE;
     97 	}
     98 	DPRINTF((TEXT("address translation table %d pages.(%d byte)\n"), npage,
     99 	    tabsz));
    100 
    101 	if (page_commit)
    102 		vbase = vaddr_t(VirtualAlloc(0, vsize, MEM_RESERVE,
    103 		    PAGE_NOACCESS));
    104 	else
    105 		vbase = vaddr_t(VirtualAlloc(0, vsize, MEM_COMMIT,
    106 		    PAGE_READWRITE | PAGE_NOCACHE));
    107 
    108 	if (vbase == 0) {
    109 		DPRINTF((TEXT("can't allocate memory\n")));
    110 		return FALSE;
    111 	}
    112 	_memory = vbase;
    113 
    114 	// find physical address of allocated page.
    115 	AddressTranslationTable *tab = _addr_table;
    116 	_naddr_table = 0;
    117 	for (i = 0; i < npage; i++) {
    118 		vaddr_t vaddr;
    119 		paddr_t paddr = ~0;
    120 
    121 		if (page_commit)
    122 			// now map to physical page.
    123 			vaddr = vaddr_t(VirtualAlloc(
    124 				LPVOID(vbase + _page_size * i),
    125 				_page_size, MEM_COMMIT,
    126 				PAGE_READWRITE | PAGE_NOCACHE));
    127 		else
    128 			vaddr = vbase + _page_size * i;
    129 
    130 		paddr = searchPage(vaddr);
    131 
    132 		if (paddr == ~0) {
    133 			DPRINTF((TEXT("page#%d not found\n"), i));
    134 			break;
    135 		} else {
    136 #ifdef MEMORY_MAP_DEBUG
    137 			DPRINTF((TEXT("page %d vaddr=0x%08x paddr=0x%08x\n"),
    138 			    _naddr_table, vaddr, paddr));
    139 #endif
    140 			tab->vaddr = vaddr;
    141 			tab->paddr = paddr;
    142 			++tab;
    143 			++_naddr_table;
    144 		}
    145 	}
    146 
    147 #ifdef MEMORY_MAP_DEBUG
    148 	// dump virtual <-> physical address table
    149 	tab = _addr_table;
    150 	for (i = 0; i < _naddr_table;) {
    151 		for (int j = 0; j < 4; j++, i++, tab++)
    152 			DPRINTF((TEXT("%08x=%08x "), tab->vaddr, tab->paddr));
    153 		DPRINTF((TEXT("\n")));
    154 	}
    155 #endif
    156 	DPRINTF((TEXT("allocated %d page. mapped %d page.\n"), npage,
    157 	    _naddr_table));
    158 
    159 	return TRUE;
    160 }
    161 
    162 BOOL
    163 MemoryManager::getPage(vaddr_t &vaddr, paddr_t &paddr)
    164 {
    165 	/* get plain page from the top */
    166 	if (_addr_table_idx >= _naddr_table ||
    167 	    _addr_table == NULL)
    168 		return FALSE;
    169 
    170 	int idx = --_naddr_table;
    171 
    172 	AddressTranslationTable *tab = &_addr_table[idx];
    173 	vaddr = tab->vaddr;
    174 	paddr = tab->paddr;
    175 
    176 	return TRUE;
    177 }
    178 
    179 BOOL
    180 MemoryManager::getTaggedPage(vaddr_t &vaddr, paddr_t &paddr)
    181 {
    182 	/* get tagged page from the bottom */
    183 	if (_addr_table_idx >= _naddr_table ||
    184 	    _addr_table == NULL) {
    185 		DPRINTF((TEXT("page insufficient.\n")));
    186 		return FALSE;
    187 	}
    188 	AddressTranslationTable *tab =
    189 	    &_addr_table[_addr_table_idx++];
    190 	vaddr = tab->vaddr;
    191 	paddr = tab->paddr;
    192 
    193 	return TRUE;
    194 }
    195 
    196 BOOL
    197 MemoryManager::getTaggedPage(vaddr_t &v, paddr_t &p,
    198     struct PageTag **pvec, paddr_t &pvec_paddr)
    199 {
    200 	if (!getTaggedPage(v, p))
    201 		return FALSE;
    202 
    203 	*pvec =(struct PageTag *)v;
    204 	memset(*pvec, 0, sizeof(struct PageTag));
    205 	v += sizeof(struct PageTag);
    206 	pvec_paddr = p;
    207 	p += sizeof(struct PageTag);
    208 
    209 	return TRUE;
    210 }
    211 
    212 vaddr_t
    213 MemoryManager::mapPhysicalPage(paddr_t paddr, psize_t size, u_int32_t flags)
    214 {
    215 	paddr_t pstart = truncPage(paddr);
    216 	paddr_t pend = roundPage(paddr + size);
    217 	psize_t psize = pend - pstart;
    218 
    219 	LPVOID p = VirtualAlloc(0, psize, MEM_RESERVE, PAGE_NOACCESS);
    220 
    221 	int ok = VirtualCopy(p, LPVOID(pstart >> 8), psize,
    222 	    flags | PAGE_NOCACHE | PAGE_PHYSICAL);
    223 	if (!ok) {
    224 		DPRINTF((TEXT("can't map physical address 0x%08x\n"), paddr));
    225 		return ~0;
    226 	}
    227 #if 0
    228 	DPRINTF((TEXT("start=0x%08x end=0x%08x size=0x%08x return=0x%08x\n"),
    229 	    pstart, pend, psize, vaddr_t(p) + vaddr_t(paddr - pstart)));
    230 #endif
    231 	return vaddr_t(p) + vaddr_t(paddr - pstart);
    232 }
    233 
    234 void
    235 MemoryManager::unmapPhysicalPage(vaddr_t vaddr)
    236 {
    237 	int ok = VirtualFree(LPVOID(truncPage(vaddr)), 0, MEM_RELEASE);
    238 	if (!ok)
    239 		DPRINTF((TEXT("can't release memory\n")));
    240 }
    241 
    242 u_int32_t
    243 MemoryManager::readPhysical4(paddr_t paddr)
    244 {
    245 	vaddr_t v = mapPhysicalPage(paddr, 4, PAGE_READONLY);
    246 	u_int32_t val = *(u_int32_t *)v;
    247 	unmapPhysicalPage(v);
    248 	return val;
    249 }
    250 
    251 //
    252 //	Use LockPages()
    253 //
    254 MemoryManager_LockPages::MemoryManager_LockPages
    255 (BOOL(*lock_pages)(LPVOID, DWORD, PDWORD, int),
    256     BOOL(*unlock_pages)(LPVOID, DWORD),
    257     Console *&cons, size_t pagesize, int shift)
    258 	:  MemoryManager(cons, pagesize)
    259 {
    260 	_lock_pages	= lock_pages;
    261 	_unlock_pages	= unlock_pages;
    262 	_shift = shift;
    263 	DPRINTF((TEXT("MemoryManager: LockPages\n")));
    264 }
    265 
    266 MemoryManager_LockPages::~MemoryManager_LockPages(void)
    267 {
    268 }
    269 
    270 paddr_t
    271 MemoryManager_LockPages::searchPage(vaddr_t vaddr)
    272 {
    273 	paddr_t paddr = ~0;
    274 
    275 	if (!_lock_pages(LPVOID(vaddr), _page_size, PDWORD(&paddr), 1))
    276 		return paddr;
    277 
    278 	if (!_unlock_pages(LPVOID(vaddr), _page_size)) {
    279 		DPRINTF((TEXT("can't unlock pages\n")));
    280 	}
    281 
    282 	return(paddr >>(_page_shift - _shift)) << _page_shift;
    283 }
    284 
    285 //
    286 //	Use VirtualCopy()
    287 //
    288 MemoryManager_VirtualCopy::MemoryManager_VirtualCopy(Console *&cons,
    289     size_t pagesize)
    290 	: MemoryManager(cons, pagesize)
    291 {
    292 	_search_guess = 0;
    293 	DPRINTF((TEXT("MemoryManager: VirtualCopy\n")));
    294 }
    295 
    296 MemoryManager_VirtualCopy::~MemoryManager_VirtualCopy(void)
    297 {
    298 }
    299 
    300 paddr_t
    301 MemoryManager_VirtualCopy::searchPage(vaddr_t vaddr)
    302 {
    303 	paddr_t paddr = ~0;
    304 	int i;
    305 
    306 	// search all D-RAM bank.
    307 	setMagic(vaddr);
    308  retry:
    309 	for (i = 0; i < _nbank; i++) {
    310 		paddr = searchBank(i);
    311 		if (paddr != ~0)
    312 			break;
    313 	}
    314 	if (_search_guess != 0 && paddr == ~0) {
    315 		_search_guess = 0;
    316 		goto retry;
    317 	}
    318 
    319 	clearMagic();
    320 
    321 	return paddr;
    322 }
    323 
    324 paddr_t
    325 MemoryManager_VirtualCopy::searchBank(int banknum)
    326 {
    327 	LPVOID ref;
    328 	paddr_t paddr, pstart, pend, pfound = ~0;
    329 	paddr_t bstart, bend;
    330 	vaddr_t ofs;
    331 
    332 	bstart = _bank[banknum].addr;
    333 	bend = _bank[banknum].addr + _bank[banknum].size;
    334 
    335 	pstart = _search_guess ? _search_guess : bstart;
    336 	pend = bend;
    337 
    338 	if (pstart < bstart || pstart >= pend)
    339 		return pfound;
    340 
    341 	// reserve physical reference region
    342 	ref = VirtualAlloc(0, BLOCK_SIZE, MEM_RESERVE, PAGE_NOACCESS);
    343 	if (ref == 0) {
    344 		DPRINTF((TEXT("can't allocate virtual memory.\n")));
    345 		return pfound;
    346 	}
    347 
    348 	for (paddr = pstart; paddr < pend; paddr += BLOCK_SIZE) {
    349 		if (!VirtualCopy(ref, LPVOID(paddr >> 8), BLOCK_SIZE,
    350 		    PAGE_READONLY | PAGE_NOCACHE | PAGE_PHYSICAL)) {
    351 			DPRINTF((TEXT("can't map physical addr 0x%08x(->0x%08x)\n"),
    352 			    ref, paddr));
    353 			goto release;
    354 		}
    355 
    356 		// search magic in this region.
    357 		ofs = checkMagicRegion(vaddr_t(ref), BLOCK_SIZE, _page_size);
    358 
    359 		// decommit reference region.
    360 		if (!VirtualFree(ref, BLOCK_SIZE, MEM_DECOMMIT)) {
    361 			DPRINTF((TEXT("can't decommit addr 0x%08x(->0x%08x)\n"),
    362 			    ref, paddr));
    363 			goto release;
    364 		}
    365 
    366 		if (ofs != ~0) {
    367 			pfound = paddr + ofs;
    368 			_search_guess = paddr;
    369 			break;
    370 		}
    371 	}
    372  release:
    373 	if (!VirtualFree(ref, 0, MEM_RELEASE))
    374 		DPRINTF((TEXT("can't release memory\n")));
    375 
    376 	return pfound;
    377 }
    378