highlevel.c

来自「linux 内核源代码」· C语言 代码 · 共 694 行 · 第 1/2 页

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	if (start == CSR1212_INVALID_ADDR_SPACE &&	    end   == CSR1212_INVALID_ADDR_SPACE) {		start = host->middle_addr_space;		end   = CSR1212_ALL_SPACE_END;	}	if (((start|end) & ~align_mask) || (start >= end) ||	    (end > CSR1212_ALL_SPACE_END)) {		HPSB_ERR("%s called with invalid addresses "			 "(start = %012Lx  end = %012Lx)", __FUNCTION__,			 (unsigned long long)start,(unsigned long long)end);		return retval;	}	as = kmalloc(sizeof(*as), GFP_KERNEL);	if (!as)		return retval;	INIT_LIST_HEAD(&as->host_list);	INIT_LIST_HEAD(&as->hl_list);	as->op = ops;	as->host = host;	write_lock_irqsave(&addr_space_lock, flags);	list_for_each(entry, &host->addr_space) {		u64 a1sa, a1ea;		u64 a2sa, a2ea;		a1 = list_entry(entry, struct hpsb_address_serve, host_list);		a2 = list_entry(entry->next, struct hpsb_address_serve,				host_list);		a1sa = a1->start & align_mask;		a1ea = (a1->end + alignment -1) & align_mask;		a2sa = a2->start & align_mask;		a2ea = (a2->end + alignment -1) & align_mask;		if ((a2sa - a1ea >= size) && (a2sa - start >= size) &&		    (a2sa > start)) {			as->start = max(start, a1ea);			as->end = as->start + size;			list_add(&as->host_list, entry);			list_add_tail(&as->hl_list, &hl->addr_list);			retval = as->start;			break;		}	}	write_unlock_irqrestore(&addr_space_lock, flags);	if (retval == CSR1212_INVALID_ADDR_SPACE)		kfree(as);	return retval;}/** * hpsb_register_addrspace - register a host address space * * @start and @end are 48 bit pointers and have to be quadlet aligned. * @end points to the first address behind the handled addresses.  This * function can be called multiple times for a single hpsb_highlevel @hl to * implement sparse register sets.  The requested region must not overlap any * previously allocated region, otherwise registering will fail. * * It returns true for successful allocation.  Address spaces can be * unregistered with hpsb_unregister_addrspace.  All remaining address spaces * are automatically deallocated together with the hpsb_highlevel @hl. */int hpsb_register_addrspace(struct hpsb_highlevel *hl, struct hpsb_host *host,			    struct hpsb_address_ops *ops, u64 start, u64 end){	struct hpsb_address_serve *as;	struct list_head *lh;	int retval = 0;	unsigned long flags;	if (((start|end) & 3) || (start >= end) ||	    (end > CSR1212_ALL_SPACE_END)) {		HPSB_ERR("%s called with invalid addresses", __FUNCTION__);		return 0;	}	as = kmalloc(sizeof(*as), GFP_ATOMIC);	if (!as)		return 0;	INIT_LIST_HEAD(&as->host_list);	INIT_LIST_HEAD(&as->hl_list);	as->op = ops;	as->start = start;	as->end = end;	as->host = host;	write_lock_irqsave(&addr_space_lock, flags);	list_for_each(lh, &host->addr_space) {		struct hpsb_address_serve *as_this =			list_entry(lh, struct hpsb_address_serve, host_list);		struct hpsb_address_serve *as_next =			list_entry(lh->next, struct hpsb_address_serve,				   host_list);		if (as_this->end > as->start)			break;		if (as_next->start >= as->end) {			list_add(&as->host_list, lh);			list_add_tail(&as->hl_list, &hl->addr_list);			retval = 1;			break;		}	}	write_unlock_irqrestore(&addr_space_lock, flags);	if (retval == 0)		kfree(as);	return retval;}int hpsb_unregister_addrspace(struct hpsb_highlevel *hl, struct hpsb_host *host,			      u64 start){	int retval = 0;	struct hpsb_address_serve *as;	struct list_head *lh, *next;	unsigned long flags;	write_lock_irqsave(&addr_space_lock, flags);	list_for_each_safe (lh, next, &hl->addr_list) {		as = list_entry(lh, struct hpsb_address_serve, hl_list);		if (as->start == start && as->host == host) {			__delete_addr(as);			retval = 1;			break;		}	}	write_unlock_irqrestore(&addr_space_lock, flags);	return retval;}static void init_hpsb_highlevel(struct hpsb_host *host){	INIT_LIST_HEAD(&dummy_zero_addr.host_list);	INIT_LIST_HEAD(&dummy_zero_addr.hl_list);	INIT_LIST_HEAD(&dummy_max_addr.host_list);	INIT_LIST_HEAD(&dummy_max_addr.hl_list);	dummy_zero_addr.op = dummy_max_addr.op = &dummy_ops;	dummy_zero_addr.start = dummy_zero_addr.end = 0;	dummy_max_addr.start = dummy_max_addr.end = ((u64) 1) << 48;	list_add_tail(&dummy_zero_addr.host_list, &host->addr_space);	list_add_tail(&dummy_max_addr.host_list, &host->addr_space);}void highlevel_add_host(struct hpsb_host *host){	struct hpsb_highlevel *hl;	init_hpsb_highlevel(host);	down_read(&hl_drivers_sem);	list_for_each_entry(hl, &hl_drivers, hl_list) {		if (hl->add_host)			hl->add_host(host);	}	up_read(&hl_drivers_sem);	if (host->update_config_rom && hpsb_update_config_rom_image(host) < 0)		HPSB_ERR("Failed to generate Configuration ROM image for host "			 "%s-%d", hl->name, host->id);}void highlevel_remove_host(struct hpsb_host *host){	struct hpsb_highlevel *hl;	down_read(&hl_drivers_sem);	list_for_each_entry(hl, &hl_drivers, hl_list)		__unregister_host(hl, host, 0);	up_read(&hl_drivers_sem);}void highlevel_host_reset(struct hpsb_host *host){	unsigned long flags;	struct hpsb_highlevel *hl;	read_lock_irqsave(&hl_irqs_lock, flags);	list_for_each_entry(hl, &hl_irqs, irq_list) {		if (hl->host_reset)			hl->host_reset(host);	}	read_unlock_irqrestore(&hl_irqs_lock, flags);}void highlevel_fcp_request(struct hpsb_host *host, int nodeid, int direction,			   void *data, size_t length){	unsigned long flags;	struct hpsb_highlevel *hl;	int cts = ((quadlet_t *)data)[0] >> 4;	read_lock_irqsave(&hl_irqs_lock, flags);	list_for_each_entry(hl, &hl_irqs, irq_list) {		if (hl->fcp_request)			hl->fcp_request(host, nodeid, direction, cts, data,					length);	}	read_unlock_irqrestore(&hl_irqs_lock, flags);}/* * highlevel_read, highlevel_write, highlevel_lock, highlevel_lock64: * * These functions are called to handle transactions. They are called when a * packet arrives.  The flags argument contains the second word of the first * header quadlet of the incoming packet (containing transaction label, retry * code, transaction code and priority).  These functions either return a * response code or a negative number.  In the first case a response will be * generated.  In the latter case, no response will be sent and the driver which * handled the request will send the response itself. */int highlevel_read(struct hpsb_host *host, int nodeid, void *data, u64 addr,		   unsigned int length, u16 flags){	struct hpsb_address_serve *as;	unsigned int partlength;	int rcode = RCODE_ADDRESS_ERROR;	read_lock(&addr_space_lock);	list_for_each_entry(as, &host->addr_space, host_list) {		if (as->start > addr)			break;		if (as->end > addr) {			partlength = min(as->end - addr, (u64) length);			if (as->op->read)				rcode = as->op->read(host, nodeid, data,						     addr, partlength, flags);			else				rcode = RCODE_TYPE_ERROR;			data += partlength;			length -= partlength;			addr += partlength;			if ((rcode != RCODE_COMPLETE) || !length)				break;		}	}	read_unlock(&addr_space_lock);	if (length && (rcode == RCODE_COMPLETE))		rcode = RCODE_ADDRESS_ERROR;	return rcode;}int highlevel_write(struct hpsb_host *host, int nodeid, int destid, void *data,		    u64 addr, unsigned int length, u16 flags){	struct hpsb_address_serve *as;	unsigned int partlength;	int rcode = RCODE_ADDRESS_ERROR;	read_lock(&addr_space_lock);	list_for_each_entry(as, &host->addr_space, host_list) {		if (as->start > addr)			break;		if (as->end > addr) {			partlength = min(as->end - addr, (u64) length);			if (as->op->write)				rcode = as->op->write(host, nodeid, destid,						      data, addr, partlength,						      flags);			else				rcode = RCODE_TYPE_ERROR;			data += partlength;			length -= partlength;			addr += partlength;			if ((rcode != RCODE_COMPLETE) || !length)				break;		}	}	read_unlock(&addr_space_lock);	if (length && (rcode == RCODE_COMPLETE))		rcode = RCODE_ADDRESS_ERROR;	return rcode;}int highlevel_lock(struct hpsb_host *host, int nodeid, quadlet_t *store,		   u64 addr, quadlet_t data, quadlet_t arg, int ext_tcode,		   u16 flags){	struct hpsb_address_serve *as;	int rcode = RCODE_ADDRESS_ERROR;	read_lock(&addr_space_lock);	list_for_each_entry(as, &host->addr_space, host_list) {		if (as->start > addr)			break;		if (as->end > addr) {			if (as->op->lock)				rcode = as->op->lock(host, nodeid, store, addr,						     data, arg, ext_tcode,						     flags);			else				rcode = RCODE_TYPE_ERROR;			break;		}	}	read_unlock(&addr_space_lock);	return rcode;}int highlevel_lock64(struct hpsb_host *host, int nodeid, octlet_t *store,		     u64 addr, octlet_t data, octlet_t arg, int ext_tcode,		     u16 flags){	struct hpsb_address_serve *as;	int rcode = RCODE_ADDRESS_ERROR;	read_lock(&addr_space_lock);	list_for_each_entry(as, &host->addr_space, host_list) {		if (as->start > addr)			break;		if (as->end > addr) {			if (as->op->lock64)				rcode = as->op->lock64(host, nodeid, store,						       addr, data, arg,						       ext_tcode, flags);			else				rcode = RCODE_TYPE_ERROR;			break;		}	}	read_unlock(&addr_space_lock);	return rcode;}

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