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										 |  |  | /*
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											2009-06-16 10:30:52 +02:00
										 |  |  |  * Copyright IBM Corp. 2008, 2009 | 
					
						
							|  |  |  |  * | 
					
						
							|  |  |  |  * Author(s): Heiko Carstens <heiko.carstens@de.ibm.com> | 
					
						
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										 |  |  |  */ | 
					
						
							|  |  |  | 
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							|  |  |  | #include <linux/kernel.h>
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							|  |  |  | #include <linux/module.h>
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							|  |  |  | #include <asm/ipl.h>
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							|  |  |  | #include <asm/sclp.h>
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							|  |  |  | #include <asm/setup.h>
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							|  |  |  | #define ADDR2G (1ULL << 31)
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										 |  |  | static void find_memory_chunks(struct mem_chunk chunk[], unsigned long maxsize) | 
					
						
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										 |  |  | { | 
					
						
							|  |  |  | 	unsigned long long memsize, rnmax, rzm; | 
					
						
							|  |  |  | 	unsigned long addr = 0, size; | 
					
						
							|  |  |  | 	int i = 0, type; | 
					
						
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							|  |  |  | 	rzm = sclp_get_rzm(); | 
					
						
							|  |  |  | 	rnmax = sclp_get_rnmax(); | 
					
						
							|  |  |  | 	memsize = rzm * rnmax; | 
					
						
							|  |  |  | 	if (!rzm) | 
					
						
							|  |  |  | 		rzm = 1ULL << 17; | 
					
						
							|  |  |  | 	if (sizeof(long) == 4) { | 
					
						
							|  |  |  | 		rzm = min(ADDR2G, rzm); | 
					
						
							|  |  |  | 		memsize = memsize ? min(ADDR2G, memsize) : ADDR2G; | 
					
						
							|  |  |  | 	} | 
					
						
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										 |  |  | 	if (maxsize) | 
					
						
							|  |  |  | 		memsize = memsize ? min((unsigned long)memsize, maxsize) : maxsize; | 
					
						
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										 |  |  | 	do { | 
					
						
							|  |  |  | 		size = 0; | 
					
						
							|  |  |  | 		type = tprot(addr); | 
					
						
							|  |  |  | 		do { | 
					
						
							|  |  |  | 			size += rzm; | 
					
						
							|  |  |  | 			if (memsize && addr + size >= memsize) | 
					
						
							|  |  |  | 				break; | 
					
						
							|  |  |  | 		} while (type == tprot(addr + size)); | 
					
						
							|  |  |  | 		if (type == CHUNK_READ_WRITE || type == CHUNK_READ_ONLY) { | 
					
						
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										 |  |  | 			if (memsize && (addr + size > memsize)) | 
					
						
							|  |  |  | 				size = memsize - addr; | 
					
						
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										 |  |  | 			chunk[i].addr = addr; | 
					
						
							|  |  |  | 			chunk[i].size = size; | 
					
						
							|  |  |  | 			chunk[i].type = type; | 
					
						
							|  |  |  | 			i++; | 
					
						
							|  |  |  | 		} | 
					
						
							|  |  |  | 		addr += size; | 
					
						
							|  |  |  | 	} while (addr < memsize && i < MEMORY_CHUNKS); | 
					
						
							|  |  |  | } | 
					
						
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										 |  |  | /**
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							|  |  |  |  * detect_memory_layout - fill mem_chunk array with memory layout data | 
					
						
							|  |  |  |  * @chunk: mem_chunk array to be filled | 
					
						
							|  |  |  |  * @maxsize: maximum address where memory detection should stop | 
					
						
							|  |  |  |  * | 
					
						
							|  |  |  |  * Fills the passed in memory chunk array with the memory layout of the | 
					
						
							|  |  |  |  * machine. The array must have a size of at least MEMORY_CHUNKS and will | 
					
						
							|  |  |  |  * be fully initialized afterwards. | 
					
						
							|  |  |  |  * If the maxsize paramater has a value > 0 memory detection will stop at | 
					
						
							|  |  |  |  * that address. It is guaranteed that all chunks have an ending address | 
					
						
							|  |  |  |  * that is smaller than maxsize. | 
					
						
							|  |  |  |  * If maxsize is 0 all memory will be detected. | 
					
						
							|  |  |  |  */ | 
					
						
							|  |  |  | void detect_memory_layout(struct mem_chunk chunk[], unsigned long maxsize) | 
					
						
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										 |  |  | { | 
					
						
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										 |  |  | 	unsigned long flags, flags_dat, cr0; | 
					
						
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							|  |  |  | 	memset(chunk, 0, MEMORY_CHUNKS * sizeof(struct mem_chunk)); | 
					
						
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										 |  |  | 	/*
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							|  |  |  | 	 * Disable IRQs, DAT and low address protection so tprot does the | 
					
						
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										 |  |  | 	 * right thing and we don't get scheduled away with low address | 
					
						
							|  |  |  | 	 * protection disabled. | 
					
						
							|  |  |  | 	 */ | 
					
						
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										 |  |  | 	local_irq_save(flags); | 
					
						
							|  |  |  | 	flags_dat = __arch_local_irq_stnsm(0xfb); | 
					
						
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										 |  |  | 	/*
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							|  |  |  | 	 * In case DAT was enabled, make sure chunk doesn't reside in vmalloc | 
					
						
							|  |  |  | 	 * space. We have disabled DAT and any access to vmalloc area will | 
					
						
							|  |  |  | 	 * cause an exception. | 
					
						
							|  |  |  | 	 * If DAT was disabled we are called from early ipl code. | 
					
						
							|  |  |  | 	 */ | 
					
						
							|  |  |  | 	if (test_bit(5, &flags_dat)) { | 
					
						
							|  |  |  | 		if (WARN_ON_ONCE(is_vmalloc_or_module_addr(chunk))) | 
					
						
							|  |  |  | 			goto out; | 
					
						
							|  |  |  | 	} | 
					
						
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										 |  |  | 	__ctl_store(cr0, 0, 0); | 
					
						
							|  |  |  | 	__ctl_clear_bit(0, 28); | 
					
						
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										 |  |  | 	find_memory_chunks(chunk, maxsize); | 
					
						
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										 |  |  | 	__ctl_load(cr0, 0, 0); | 
					
						
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										 |  |  | out: | 
					
						
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										 |  |  | 	__arch_local_irq_ssm(flags_dat); | 
					
						
							|  |  |  | 	local_irq_restore(flags); | 
					
						
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										 |  |  | } | 
					
						
							|  |  |  | EXPORT_SYMBOL(detect_memory_layout); | 
					
						
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										 |  |  | /*
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										 |  |  |  * Create memory hole with given address and size. | 
					
						
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										 |  |  |  */ | 
					
						
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										 |  |  | void create_mem_hole(struct mem_chunk mem_chunk[], unsigned long addr, | 
					
						
							|  |  |  | 		     unsigned long size) | 
					
						
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										 |  |  | { | 
					
						
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										 |  |  | 	int i; | 
					
						
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							|  |  |  | 	for (i = 0; i < MEMORY_CHUNKS; i++) { | 
					
						
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										 |  |  | 		struct mem_chunk *chunk = &mem_chunk[i]; | 
					
						
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										 |  |  | 		if (chunk->size == 0) | 
					
						
							|  |  |  | 			continue; | 
					
						
							|  |  |  | 		if (addr > chunk->addr + chunk->size) | 
					
						
							|  |  |  | 			continue; | 
					
						
							|  |  |  | 		if (addr + size <= chunk->addr) | 
					
						
							|  |  |  | 			continue; | 
					
						
							|  |  |  | 		/* Split */ | 
					
						
							|  |  |  | 		if ((addr > chunk->addr) && | 
					
						
							|  |  |  | 		    (addr + size < chunk->addr + chunk->size)) { | 
					
						
							|  |  |  | 			struct mem_chunk *new = chunk + 1; | 
					
						
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										 |  |  | 			memmove(new, chunk, (MEMORY_CHUNKS-i-1) * sizeof(*new)); | 
					
						
							|  |  |  | 			new->addr = addr + size; | 
					
						
							|  |  |  | 			new->size = chunk->addr + chunk->size - new->addr; | 
					
						
							|  |  |  | 			chunk->size = addr - chunk->addr; | 
					
						
							|  |  |  | 			continue; | 
					
						
							|  |  |  | 		} else if ((addr <= chunk->addr) && | 
					
						
							|  |  |  | 			   (addr + size >= chunk->addr + chunk->size)) { | 
					
						
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										 |  |  | 			memmove(chunk, chunk + 1, (MEMORY_CHUNKS-i-1) * sizeof(*chunk)); | 
					
						
							|  |  |  | 			memset(&mem_chunk[MEMORY_CHUNKS-1], 0, sizeof(*chunk)); | 
					
						
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										 |  |  | 		} else if (addr + size < chunk->addr + chunk->size) { | 
					
						
							|  |  |  | 			chunk->size =  chunk->addr + chunk->size - addr - size; | 
					
						
							|  |  |  | 			chunk->addr = addr + size; | 
					
						
							|  |  |  | 		} else if (addr > chunk->addr) { | 
					
						
							|  |  |  | 			chunk->size = addr - chunk->addr; | 
					
						
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										 |  |  | 		} | 
					
						
							|  |  |  | 	} | 
					
						
							|  |  |  | } |