158f07778SDavid Daney /***********************license start***************
258f07778SDavid Daney * Author: Cavium Networks
358f07778SDavid Daney *
458f07778SDavid Daney * Contact: support@caviumnetworks.com
558f07778SDavid Daney * This file is part of the OCTEON SDK
658f07778SDavid Daney *
758f07778SDavid Daney * Copyright (c) 2003-2008 Cavium Networks
858f07778SDavid Daney *
958f07778SDavid Daney * This file is free software; you can redistribute it and/or modify
1058f07778SDavid Daney * it under the terms of the GNU General Public License, Version 2, as
1158f07778SDavid Daney * published by the Free Software Foundation.
1258f07778SDavid Daney *
1358f07778SDavid Daney * This file is distributed in the hope that it will be useful, but
1458f07778SDavid Daney * AS-IS and WITHOUT ANY WARRANTY; without even the implied warranty
1558f07778SDavid Daney * of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE, TITLE, or
1658f07778SDavid Daney * NONINFRINGEMENT. See the GNU General Public License for more
1758f07778SDavid Daney * details.
1858f07778SDavid Daney *
1958f07778SDavid Daney * You should have received a copy of the GNU General Public License
2058f07778SDavid Daney * along with this file; if not, write to the Free Software
2158f07778SDavid Daney * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
2258f07778SDavid Daney * or visit http://www.gnu.org/licenses/.
2358f07778SDavid Daney *
2458f07778SDavid Daney * This file may also be available under a different license from Cavium.
2558f07778SDavid Daney * Contact Cavium Networks for more information
2658f07778SDavid Daney ***********************license end**************************************/
2758f07778SDavid Daney
2858f07778SDavid Daney /*
2958f07778SDavid Daney * Simple allocate only memory allocator. Used to allocate memory at
3058f07778SDavid Daney * application start time.
3158f07778SDavid Daney */
3258f07778SDavid Daney
3326dd3e4fSPaul Gortmaker #include <linux/export.h>
3458f07778SDavid Daney #include <linux/kernel.h>
3558f07778SDavid Daney
3658f07778SDavid Daney #include <asm/octeon/cvmx.h>
3758f07778SDavid Daney #include <asm/octeon/cvmx-spinlock.h>
3858f07778SDavid Daney #include <asm/octeon/cvmx-bootmem.h>
3958f07778SDavid Daney
4058f07778SDavid Daney /*#define DEBUG */
4158f07778SDavid Daney
4258f07778SDavid Daney
4358f07778SDavid Daney static struct cvmx_bootmem_desc *cvmx_bootmem_desc;
4458f07778SDavid Daney
4558f07778SDavid Daney /* See header file for descriptions of functions */
4658f07778SDavid Daney
4716df55ceSRandy Dunlap /*
489438a86aSSteven J. Hill * This macro returns a member of the
499438a86aSSteven J. Hill * cvmx_bootmem_named_block_desc_t structure. These members can't
509438a86aSSteven J. Hill * be directly addressed as they might be in memory not directly
519438a86aSSteven J. Hill * reachable. In the case where bootmem is compiled with
529438a86aSSteven J. Hill * LINUX_HOST, the structure itself might be located on a remote
539438a86aSSteven J. Hill * Octeon. The argument "field" is the member name of the
549438a86aSSteven J. Hill * cvmx_bootmem_named_block_desc_t to read. Regardless of the type
559438a86aSSteven J. Hill * of the field, the return type is always a uint64_t. The "addr"
569438a86aSSteven J. Hill * parameter is the physical address of the structure.
579438a86aSSteven J. Hill */
589438a86aSSteven J. Hill #define CVMX_BOOTMEM_NAMED_GET_FIELD(addr, field) \
599438a86aSSteven J. Hill __cvmx_bootmem_desc_get(addr, \
609438a86aSSteven J. Hill offsetof(struct cvmx_bootmem_named_block_desc, field), \
61e4372329SPankaj Bharadiya sizeof_field(struct cvmx_bootmem_named_block_desc, field))
629438a86aSSteven J. Hill
6316df55ceSRandy Dunlap /*
649438a86aSSteven J. Hill * This function is the implementation of the get macros defined
659438a86aSSteven J. Hill * for individual structure members. The argument are generated
669438a86aSSteven J. Hill * by the macros inorder to read only the needed memory.
679438a86aSSteven J. Hill *
689438a86aSSteven J. Hill * @param base 64bit physical address of the complete structure
699438a86aSSteven J. Hill * @param offset Offset from the beginning of the structure to the member being
709438a86aSSteven J. Hill * accessed.
719438a86aSSteven J. Hill * @param size Size of the structure member.
729438a86aSSteven J. Hill *
739438a86aSSteven J. Hill * @return Value of the structure member promoted into a uint64_t.
749438a86aSSteven J. Hill */
__cvmx_bootmem_desc_get(uint64_t base,int offset,int size)759438a86aSSteven J. Hill static inline uint64_t __cvmx_bootmem_desc_get(uint64_t base, int offset,
769438a86aSSteven J. Hill int size)
779438a86aSSteven J. Hill {
789438a86aSSteven J. Hill base = (1ull << 63) | (base + offset);
799438a86aSSteven J. Hill switch (size) {
809438a86aSSteven J. Hill case 4:
819438a86aSSteven J. Hill return cvmx_read64_uint32(base);
829438a86aSSteven J. Hill case 8:
839438a86aSSteven J. Hill return cvmx_read64_uint64(base);
849438a86aSSteven J. Hill default:
859438a86aSSteven J. Hill return 0;
869438a86aSSteven J. Hill }
879438a86aSSteven J. Hill }
889438a86aSSteven J. Hill
8958f07778SDavid Daney /*
9058f07778SDavid Daney * Wrapper functions are provided for reading/writing the size and
9158f07778SDavid Daney * next block values as these may not be directly addressible (in 32
9258f07778SDavid Daney * bit applications, for instance.) Offsets of data elements in
9358f07778SDavid Daney * bootmem list, must match cvmx_bootmem_block_header_t.
9458f07778SDavid Daney */
9558f07778SDavid Daney #define NEXT_OFFSET 0
9658f07778SDavid Daney #define SIZE_OFFSET 8
9758f07778SDavid Daney
cvmx_bootmem_phy_set_size(uint64_t addr,uint64_t size)9858f07778SDavid Daney static void cvmx_bootmem_phy_set_size(uint64_t addr, uint64_t size)
9958f07778SDavid Daney {
10058f07778SDavid Daney cvmx_write64_uint64((addr + SIZE_OFFSET) | (1ull << 63), size);
10158f07778SDavid Daney }
10258f07778SDavid Daney
cvmx_bootmem_phy_set_next(uint64_t addr,uint64_t next)10358f07778SDavid Daney static void cvmx_bootmem_phy_set_next(uint64_t addr, uint64_t next)
10458f07778SDavid Daney {
10558f07778SDavid Daney cvmx_write64_uint64((addr + NEXT_OFFSET) | (1ull << 63), next);
10658f07778SDavid Daney }
10758f07778SDavid Daney
cvmx_bootmem_phy_get_size(uint64_t addr)10858f07778SDavid Daney static uint64_t cvmx_bootmem_phy_get_size(uint64_t addr)
10958f07778SDavid Daney {
11058f07778SDavid Daney return cvmx_read64_uint64((addr + SIZE_OFFSET) | (1ull << 63));
11158f07778SDavid Daney }
11258f07778SDavid Daney
cvmx_bootmem_phy_get_next(uint64_t addr)11358f07778SDavid Daney static uint64_t cvmx_bootmem_phy_get_next(uint64_t addr)
11458f07778SDavid Daney {
11558f07778SDavid Daney return cvmx_read64_uint64((addr + NEXT_OFFSET) | (1ull << 63));
11658f07778SDavid Daney }
11758f07778SDavid Daney
11816df55ceSRandy Dunlap /*
1195f35b33aSAaro Koskinen * Allocate a block of memory from the free list that was
1205f35b33aSAaro Koskinen * passed to the application by the bootloader within a specified
1215f35b33aSAaro Koskinen * address range. This is an allocate-only algorithm, so
1225f35b33aSAaro Koskinen * freeing memory is not possible. Allocation will fail if
1235f35b33aSAaro Koskinen * memory cannot be allocated in the requested range.
1245f35b33aSAaro Koskinen *
1255f35b33aSAaro Koskinen * @size: Size in bytes of block to allocate
1265f35b33aSAaro Koskinen * @min_addr: defines the minimum address of the range
1275f35b33aSAaro Koskinen * @max_addr: defines the maximum address of the range
1285f35b33aSAaro Koskinen * @alignment: Alignment required - must be power of 2
1295f35b33aSAaro Koskinen * Returns pointer to block of memory, NULL on error
1305f35b33aSAaro Koskinen */
cvmx_bootmem_alloc_range(uint64_t size,uint64_t alignment,uint64_t min_addr,uint64_t max_addr)1315f35b33aSAaro Koskinen static void *cvmx_bootmem_alloc_range(uint64_t size, uint64_t alignment,
13258f07778SDavid Daney uint64_t min_addr, uint64_t max_addr)
13358f07778SDavid Daney {
13458f07778SDavid Daney int64_t address;
13558f07778SDavid Daney address =
13658f07778SDavid Daney cvmx_bootmem_phy_alloc(size, min_addr, max_addr, alignment, 0);
13758f07778SDavid Daney
13858f07778SDavid Daney if (address > 0)
13958f07778SDavid Daney return cvmx_phys_to_ptr(address);
14058f07778SDavid Daney else
14158f07778SDavid Daney return NULL;
14258f07778SDavid Daney }
14358f07778SDavid Daney
cvmx_bootmem_alloc_address(uint64_t size,uint64_t address,uint64_t alignment)14458f07778SDavid Daney void *cvmx_bootmem_alloc_address(uint64_t size, uint64_t address,
14558f07778SDavid Daney uint64_t alignment)
14658f07778SDavid Daney {
14758f07778SDavid Daney return cvmx_bootmem_alloc_range(size, alignment, address,
14858f07778SDavid Daney address + size);
14958f07778SDavid Daney }
15058f07778SDavid Daney
cvmx_bootmem_alloc_named_range(uint64_t size,uint64_t min_addr,uint64_t max_addr,uint64_t align,char * name)1516fa044abSDavid Daney void *cvmx_bootmem_alloc_named_range(uint64_t size, uint64_t min_addr,
1526fa044abSDavid Daney uint64_t max_addr, uint64_t align,
1536fa044abSDavid Daney char *name)
1546fa044abSDavid Daney {
1556fa044abSDavid Daney int64_t addr;
1566fa044abSDavid Daney
1576fa044abSDavid Daney addr = cvmx_bootmem_phy_named_block_alloc(size, min_addr, max_addr,
1586fa044abSDavid Daney align, name, 0);
1596fa044abSDavid Daney if (addr >= 0)
1606fa044abSDavid Daney return cvmx_phys_to_ptr(addr);
1616fa044abSDavid Daney else
1626fa044abSDavid Daney return NULL;
1636fa044abSDavid Daney }
1646fa044abSDavid Daney
cvmx_bootmem_alloc_named(uint64_t size,uint64_t alignment,char * name)1656fa044abSDavid Daney void *cvmx_bootmem_alloc_named(uint64_t size, uint64_t alignment, char *name)
1666fa044abSDavid Daney {
1676fa044abSDavid Daney return cvmx_bootmem_alloc_named_range(size, 0, 0, alignment, name);
1686fa044abSDavid Daney }
1696fa044abSDavid Daney EXPORT_SYMBOL(cvmx_bootmem_alloc_named);
1706fa044abSDavid Daney
cvmx_bootmem_lock(void)17158f07778SDavid Daney void cvmx_bootmem_lock(void)
17258f07778SDavid Daney {
17358f07778SDavid Daney cvmx_spinlock_lock((cvmx_spinlock_t *) &(cvmx_bootmem_desc->lock));
17458f07778SDavid Daney }
17558f07778SDavid Daney
cvmx_bootmem_unlock(void)17658f07778SDavid Daney void cvmx_bootmem_unlock(void)
17758f07778SDavid Daney {
17858f07778SDavid Daney cvmx_spinlock_unlock((cvmx_spinlock_t *) &(cvmx_bootmem_desc->lock));
17958f07778SDavid Daney }
18058f07778SDavid Daney
cvmx_bootmem_init(void * mem_desc_ptr)18158f07778SDavid Daney int cvmx_bootmem_init(void *mem_desc_ptr)
18258f07778SDavid Daney {
18358f07778SDavid Daney /* Here we set the global pointer to the bootmem descriptor
18458f07778SDavid Daney * block. This pointer will be used directly, so we will set
18558f07778SDavid Daney * it up to be directly usable by the application. It is set
18658f07778SDavid Daney * up as follows for the various runtime/ABI combinations:
18758f07778SDavid Daney *
18858f07778SDavid Daney * Linux 64 bit: Set XKPHYS bit
18958f07778SDavid Daney * Linux 32 bit: use mmap to create mapping, use virtual address
19058f07778SDavid Daney * CVMX 64 bit: use physical address directly
19158f07778SDavid Daney * CVMX 32 bit: use physical address directly
19258f07778SDavid Daney *
19358f07778SDavid Daney * Note that the CVMX environment assumes the use of 1-1 TLB
19458f07778SDavid Daney * mappings so that the physical addresses can be used
19558f07778SDavid Daney * directly
19658f07778SDavid Daney */
19758f07778SDavid Daney if (!cvmx_bootmem_desc) {
19858f07778SDavid Daney #if defined(CVMX_ABI_64)
19958f07778SDavid Daney /* Set XKPHYS bit */
20058f07778SDavid Daney cvmx_bootmem_desc = cvmx_phys_to_ptr(CAST64(mem_desc_ptr));
20158f07778SDavid Daney #else
20258f07778SDavid Daney cvmx_bootmem_desc = (struct cvmx_bootmem_desc *) mem_desc_ptr;
20358f07778SDavid Daney #endif
20458f07778SDavid Daney }
20558f07778SDavid Daney
20658f07778SDavid Daney return 0;
20758f07778SDavid Daney }
20858f07778SDavid Daney
20958f07778SDavid Daney /*
21058f07778SDavid Daney * The cvmx_bootmem_phy* functions below return 64 bit physical
21158f07778SDavid Daney * addresses, and expose more features that the cvmx_bootmem_functions
21258f07778SDavid Daney * above. These are required for full memory space access in 32 bit
21358f07778SDavid Daney * applications, as well as for using some advance features. Most
21458f07778SDavid Daney * applications should not need to use these.
21558f07778SDavid Daney */
21658f07778SDavid Daney
cvmx_bootmem_phy_alloc(uint64_t req_size,uint64_t address_min,uint64_t address_max,uint64_t alignment,uint32_t flags)21758f07778SDavid Daney int64_t cvmx_bootmem_phy_alloc(uint64_t req_size, uint64_t address_min,
21858f07778SDavid Daney uint64_t address_max, uint64_t alignment,
21958f07778SDavid Daney uint32_t flags)
22058f07778SDavid Daney {
22158f07778SDavid Daney
22258f07778SDavid Daney uint64_t head_addr;
22358f07778SDavid Daney uint64_t ent_addr;
22458f07778SDavid Daney /* points to previous list entry, NULL current entry is head of list */
22558f07778SDavid Daney uint64_t prev_addr = 0;
22658f07778SDavid Daney uint64_t new_ent_addr = 0;
22758f07778SDavid Daney uint64_t desired_min_addr;
22858f07778SDavid Daney
22958f07778SDavid Daney #ifdef DEBUG
23058f07778SDavid Daney cvmx_dprintf("cvmx_bootmem_phy_alloc: req_size: 0x%llx, "
23158f07778SDavid Daney "min_addr: 0x%llx, max_addr: 0x%llx, align: 0x%llx\n",
23258f07778SDavid Daney (unsigned long long)req_size,
23358f07778SDavid Daney (unsigned long long)address_min,
23458f07778SDavid Daney (unsigned long long)address_max,
23558f07778SDavid Daney (unsigned long long)alignment);
23658f07778SDavid Daney #endif
23758f07778SDavid Daney
23858f07778SDavid Daney if (cvmx_bootmem_desc->major_version > 3) {
23958f07778SDavid Daney cvmx_dprintf("ERROR: Incompatible bootmem descriptor "
24058f07778SDavid Daney "version: %d.%d at addr: %p\n",
24158f07778SDavid Daney (int)cvmx_bootmem_desc->major_version,
24258f07778SDavid Daney (int)cvmx_bootmem_desc->minor_version,
24358f07778SDavid Daney cvmx_bootmem_desc);
24458f07778SDavid Daney goto error_out;
24558f07778SDavid Daney }
24658f07778SDavid Daney
24758f07778SDavid Daney /*
24858f07778SDavid Daney * Do a variety of checks to validate the arguments. The
24958f07778SDavid Daney * allocator code will later assume that these checks have
25058f07778SDavid Daney * been made. We validate that the requested constraints are
25158f07778SDavid Daney * not self-contradictory before we look through the list of
25258f07778SDavid Daney * available memory.
25358f07778SDavid Daney */
25458f07778SDavid Daney
25558f07778SDavid Daney /* 0 is not a valid req_size for this allocator */
25658f07778SDavid Daney if (!req_size)
25758f07778SDavid Daney goto error_out;
25858f07778SDavid Daney
25958f07778SDavid Daney /* Round req_size up to mult of minimum alignment bytes */
26058f07778SDavid Daney req_size = (req_size + (CVMX_BOOTMEM_ALIGNMENT_SIZE - 1)) &
26158f07778SDavid Daney ~(CVMX_BOOTMEM_ALIGNMENT_SIZE - 1);
26258f07778SDavid Daney
26358f07778SDavid Daney /*
26458f07778SDavid Daney * Convert !0 address_min and 0 address_max to special case of
26558f07778SDavid Daney * range that specifies an exact memory block to allocate. Do
26658f07778SDavid Daney * this before other checks and adjustments so that this
26758f07778SDavid Daney * tranformation will be validated.
26858f07778SDavid Daney */
26958f07778SDavid Daney if (address_min && !address_max)
27058f07778SDavid Daney address_max = address_min + req_size;
27158f07778SDavid Daney else if (!address_min && !address_max)
27258f07778SDavid Daney address_max = ~0ull; /* If no limits given, use max limits */
27358f07778SDavid Daney
27458f07778SDavid Daney
27558f07778SDavid Daney /*
27658f07778SDavid Daney * Enforce minimum alignment (this also keeps the minimum free block
27758f07778SDavid Daney * req_size the same as the alignment req_size.
27858f07778SDavid Daney */
27958f07778SDavid Daney if (alignment < CVMX_BOOTMEM_ALIGNMENT_SIZE)
28058f07778SDavid Daney alignment = CVMX_BOOTMEM_ALIGNMENT_SIZE;
28158f07778SDavid Daney
28258f07778SDavid Daney /*
28358f07778SDavid Daney * Adjust address minimum based on requested alignment (round
28458f07778SDavid Daney * up to meet alignment). Do this here so we can reject
28558f07778SDavid Daney * impossible requests up front. (NOP for address_min == 0)
28658f07778SDavid Daney */
28758f07778SDavid Daney if (alignment)
2882a5d6651SMatt Turner address_min = ALIGN(address_min, alignment);
28958f07778SDavid Daney
29058f07778SDavid Daney /*
29158f07778SDavid Daney * Reject inconsistent args. We have adjusted these, so this
29258f07778SDavid Daney * may fail due to our internal changes even if this check
29358f07778SDavid Daney * would pass for the values the user supplied.
29458f07778SDavid Daney */
29558f07778SDavid Daney if (req_size > address_max - address_min)
29658f07778SDavid Daney goto error_out;
29758f07778SDavid Daney
29858f07778SDavid Daney /* Walk through the list entries - first fit found is returned */
29958f07778SDavid Daney
30058f07778SDavid Daney if (!(flags & CVMX_BOOTMEM_FLAG_NO_LOCKING))
30158f07778SDavid Daney cvmx_bootmem_lock();
30258f07778SDavid Daney head_addr = cvmx_bootmem_desc->head_addr;
30358f07778SDavid Daney ent_addr = head_addr;
30458f07778SDavid Daney for (; ent_addr;
30558f07778SDavid Daney prev_addr = ent_addr,
30658f07778SDavid Daney ent_addr = cvmx_bootmem_phy_get_next(ent_addr)) {
30758f07778SDavid Daney uint64_t usable_base, usable_max;
30858f07778SDavid Daney uint64_t ent_size = cvmx_bootmem_phy_get_size(ent_addr);
30958f07778SDavid Daney
31058f07778SDavid Daney if (cvmx_bootmem_phy_get_next(ent_addr)
31158f07778SDavid Daney && ent_addr > cvmx_bootmem_phy_get_next(ent_addr)) {
31258f07778SDavid Daney cvmx_dprintf("Internal bootmem_alloc() error: ent: "
31358f07778SDavid Daney "0x%llx, next: 0x%llx\n",
31458f07778SDavid Daney (unsigned long long)ent_addr,
31558f07778SDavid Daney (unsigned long long)
31658f07778SDavid Daney cvmx_bootmem_phy_get_next(ent_addr));
31758f07778SDavid Daney goto error_out;
31858f07778SDavid Daney }
31958f07778SDavid Daney
32058f07778SDavid Daney /*
32194bd83e4SJulia Lawall * Determine if this is an entry that can satisfy the
32258f07778SDavid Daney * request Check to make sure entry is large enough to
32358f07778SDavid Daney * satisfy request.
32458f07778SDavid Daney */
32558f07778SDavid Daney usable_base =
3262a5d6651SMatt Turner ALIGN(max(address_min, ent_addr), alignment);
32758f07778SDavid Daney usable_max = min(address_max, ent_addr + ent_size);
32858f07778SDavid Daney /*
32958f07778SDavid Daney * We should be able to allocate block at address
33058f07778SDavid Daney * usable_base.
33158f07778SDavid Daney */
33258f07778SDavid Daney
33358f07778SDavid Daney desired_min_addr = usable_base;
33458f07778SDavid Daney /*
33558f07778SDavid Daney * Determine if request can be satisfied from the
33658f07778SDavid Daney * current entry.
33758f07778SDavid Daney */
33858f07778SDavid Daney if (!((ent_addr + ent_size) > usable_base
33958f07778SDavid Daney && ent_addr < address_max
34058f07778SDavid Daney && req_size <= usable_max - usable_base))
34158f07778SDavid Daney continue;
34258f07778SDavid Daney /*
34358f07778SDavid Daney * We have found an entry that has room to satisfy the
34458f07778SDavid Daney * request, so allocate it from this entry. If end
34558f07778SDavid Daney * CVMX_BOOTMEM_FLAG_END_ALLOC set, then allocate from
34658f07778SDavid Daney * the end of this block rather than the beginning.
34758f07778SDavid Daney */
34858f07778SDavid Daney if (flags & CVMX_BOOTMEM_FLAG_END_ALLOC) {
34958f07778SDavid Daney desired_min_addr = usable_max - req_size;
35058f07778SDavid Daney /*
35158f07778SDavid Daney * Align desired address down to required
35258f07778SDavid Daney * alignment.
35358f07778SDavid Daney */
35458f07778SDavid Daney desired_min_addr &= ~(alignment - 1);
35558f07778SDavid Daney }
35658f07778SDavid Daney
35758f07778SDavid Daney /* Match at start of entry */
35858f07778SDavid Daney if (desired_min_addr == ent_addr) {
35958f07778SDavid Daney if (req_size < ent_size) {
36058f07778SDavid Daney /*
36158f07778SDavid Daney * big enough to create a new block
36258f07778SDavid Daney * from top portion of block.
36358f07778SDavid Daney */
36458f07778SDavid Daney new_ent_addr = ent_addr + req_size;
36558f07778SDavid Daney cvmx_bootmem_phy_set_next(new_ent_addr,
36658f07778SDavid Daney cvmx_bootmem_phy_get_next(ent_addr));
36758f07778SDavid Daney cvmx_bootmem_phy_set_size(new_ent_addr,
36858f07778SDavid Daney ent_size -
36958f07778SDavid Daney req_size);
37058f07778SDavid Daney
37158f07778SDavid Daney /*
37258f07778SDavid Daney * Adjust next pointer as following
37358f07778SDavid Daney * code uses this.
37458f07778SDavid Daney */
37558f07778SDavid Daney cvmx_bootmem_phy_set_next(ent_addr,
37658f07778SDavid Daney new_ent_addr);
37758f07778SDavid Daney }
37858f07778SDavid Daney
37958f07778SDavid Daney /*
38058f07778SDavid Daney * adjust prev ptr or head to remove this
38158f07778SDavid Daney * entry from list.
38258f07778SDavid Daney */
38358f07778SDavid Daney if (prev_addr)
38458f07778SDavid Daney cvmx_bootmem_phy_set_next(prev_addr,
38558f07778SDavid Daney cvmx_bootmem_phy_get_next(ent_addr));
38658f07778SDavid Daney else
38758f07778SDavid Daney /*
38858f07778SDavid Daney * head of list being returned, so
38958f07778SDavid Daney * update head ptr.
39058f07778SDavid Daney */
39158f07778SDavid Daney cvmx_bootmem_desc->head_addr =
39258f07778SDavid Daney cvmx_bootmem_phy_get_next(ent_addr);
39358f07778SDavid Daney
39458f07778SDavid Daney if (!(flags & CVMX_BOOTMEM_FLAG_NO_LOCKING))
39558f07778SDavid Daney cvmx_bootmem_unlock();
39658f07778SDavid Daney return desired_min_addr;
39758f07778SDavid Daney }
39858f07778SDavid Daney /*
39958f07778SDavid Daney * block returned doesn't start at beginning of entry,
40058f07778SDavid Daney * so we know that we will be splitting a block off
40158f07778SDavid Daney * the front of this one. Create a new block from the
40258f07778SDavid Daney * beginning, add to list, and go to top of loop
40358f07778SDavid Daney * again.
40458f07778SDavid Daney *
40558f07778SDavid Daney * create new block from high portion of
40658f07778SDavid Daney * block, so that top block starts at desired
40758f07778SDavid Daney * addr.
40858f07778SDavid Daney */
40958f07778SDavid Daney new_ent_addr = desired_min_addr;
41058f07778SDavid Daney cvmx_bootmem_phy_set_next(new_ent_addr,
41158f07778SDavid Daney cvmx_bootmem_phy_get_next
41258f07778SDavid Daney (ent_addr));
41358f07778SDavid Daney cvmx_bootmem_phy_set_size(new_ent_addr,
41458f07778SDavid Daney cvmx_bootmem_phy_get_size
41558f07778SDavid Daney (ent_addr) -
41658f07778SDavid Daney (desired_min_addr -
41758f07778SDavid Daney ent_addr));
41858f07778SDavid Daney cvmx_bootmem_phy_set_size(ent_addr,
41958f07778SDavid Daney desired_min_addr - ent_addr);
42058f07778SDavid Daney cvmx_bootmem_phy_set_next(ent_addr, new_ent_addr);
42158f07778SDavid Daney /* Loop again to handle actual alloc from new block */
42258f07778SDavid Daney }
42358f07778SDavid Daney error_out:
42458f07778SDavid Daney /* We didn't find anything, so return error */
42558f07778SDavid Daney if (!(flags & CVMX_BOOTMEM_FLAG_NO_LOCKING))
42658f07778SDavid Daney cvmx_bootmem_unlock();
42758f07778SDavid Daney return -1;
42858f07778SDavid Daney }
42958f07778SDavid Daney
__cvmx_bootmem_phy_free(uint64_t phy_addr,uint64_t size,uint32_t flags)43058f07778SDavid Daney int __cvmx_bootmem_phy_free(uint64_t phy_addr, uint64_t size, uint32_t flags)
43158f07778SDavid Daney {
43258f07778SDavid Daney uint64_t cur_addr;
43358f07778SDavid Daney uint64_t prev_addr = 0; /* zero is invalid */
43458f07778SDavid Daney int retval = 0;
43558f07778SDavid Daney
43658f07778SDavid Daney #ifdef DEBUG
43758f07778SDavid Daney cvmx_dprintf("__cvmx_bootmem_phy_free addr: 0x%llx, size: 0x%llx\n",
43858f07778SDavid Daney (unsigned long long)phy_addr, (unsigned long long)size);
43958f07778SDavid Daney #endif
44058f07778SDavid Daney if (cvmx_bootmem_desc->major_version > 3) {
44158f07778SDavid Daney cvmx_dprintf("ERROR: Incompatible bootmem descriptor "
44258f07778SDavid Daney "version: %d.%d at addr: %p\n",
44358f07778SDavid Daney (int)cvmx_bootmem_desc->major_version,
44458f07778SDavid Daney (int)cvmx_bootmem_desc->minor_version,
44558f07778SDavid Daney cvmx_bootmem_desc);
44658f07778SDavid Daney return 0;
44758f07778SDavid Daney }
44858f07778SDavid Daney
44958f07778SDavid Daney /* 0 is not a valid size for this allocator */
45058f07778SDavid Daney if (!size)
45158f07778SDavid Daney return 0;
45258f07778SDavid Daney
45358f07778SDavid Daney if (!(flags & CVMX_BOOTMEM_FLAG_NO_LOCKING))
45458f07778SDavid Daney cvmx_bootmem_lock();
45558f07778SDavid Daney cur_addr = cvmx_bootmem_desc->head_addr;
45658f07778SDavid Daney if (cur_addr == 0 || phy_addr < cur_addr) {
45758f07778SDavid Daney /* add at front of list - special case with changing head ptr */
45858f07778SDavid Daney if (cur_addr && phy_addr + size > cur_addr)
45958f07778SDavid Daney goto bootmem_free_done; /* error, overlapping section */
46058f07778SDavid Daney else if (phy_addr + size == cur_addr) {
46158f07778SDavid Daney /* Add to front of existing first block */
46258f07778SDavid Daney cvmx_bootmem_phy_set_next(phy_addr,
46358f07778SDavid Daney cvmx_bootmem_phy_get_next
46458f07778SDavid Daney (cur_addr));
46558f07778SDavid Daney cvmx_bootmem_phy_set_size(phy_addr,
46658f07778SDavid Daney cvmx_bootmem_phy_get_size
46758f07778SDavid Daney (cur_addr) + size);
46858f07778SDavid Daney cvmx_bootmem_desc->head_addr = phy_addr;
46958f07778SDavid Daney
47058f07778SDavid Daney } else {
47158f07778SDavid Daney /* New block before first block. OK if cur_addr is 0 */
47258f07778SDavid Daney cvmx_bootmem_phy_set_next(phy_addr, cur_addr);
47358f07778SDavid Daney cvmx_bootmem_phy_set_size(phy_addr, size);
47458f07778SDavid Daney cvmx_bootmem_desc->head_addr = phy_addr;
47558f07778SDavid Daney }
47658f07778SDavid Daney retval = 1;
47758f07778SDavid Daney goto bootmem_free_done;
47858f07778SDavid Daney }
47958f07778SDavid Daney
48058f07778SDavid Daney /* Find place in list to add block */
48158f07778SDavid Daney while (cur_addr && phy_addr > cur_addr) {
48258f07778SDavid Daney prev_addr = cur_addr;
48358f07778SDavid Daney cur_addr = cvmx_bootmem_phy_get_next(cur_addr);
48458f07778SDavid Daney }
48558f07778SDavid Daney
48658f07778SDavid Daney if (!cur_addr) {
48758f07778SDavid Daney /*
48858f07778SDavid Daney * We have reached the end of the list, add on to end,
48958f07778SDavid Daney * checking to see if we need to combine with last
49058f07778SDavid Daney * block
49158f07778SDavid Daney */
49258f07778SDavid Daney if (prev_addr + cvmx_bootmem_phy_get_size(prev_addr) ==
49358f07778SDavid Daney phy_addr) {
49458f07778SDavid Daney cvmx_bootmem_phy_set_size(prev_addr,
49558f07778SDavid Daney cvmx_bootmem_phy_get_size
49658f07778SDavid Daney (prev_addr) + size);
49758f07778SDavid Daney } else {
49858f07778SDavid Daney cvmx_bootmem_phy_set_next(prev_addr, phy_addr);
49958f07778SDavid Daney cvmx_bootmem_phy_set_size(phy_addr, size);
50058f07778SDavid Daney cvmx_bootmem_phy_set_next(phy_addr, 0);
50158f07778SDavid Daney }
50258f07778SDavid Daney retval = 1;
50358f07778SDavid Daney goto bootmem_free_done;
50458f07778SDavid Daney } else {
50558f07778SDavid Daney /*
50658f07778SDavid Daney * insert between prev and cur nodes, checking for
50758f07778SDavid Daney * merge with either/both.
50858f07778SDavid Daney */
50958f07778SDavid Daney if (prev_addr + cvmx_bootmem_phy_get_size(prev_addr) ==
51058f07778SDavid Daney phy_addr) {
51158f07778SDavid Daney /* Merge with previous */
51258f07778SDavid Daney cvmx_bootmem_phy_set_size(prev_addr,
51358f07778SDavid Daney cvmx_bootmem_phy_get_size
51458f07778SDavid Daney (prev_addr) + size);
51558f07778SDavid Daney if (phy_addr + size == cur_addr) {
51658f07778SDavid Daney /* Also merge with current */
51758f07778SDavid Daney cvmx_bootmem_phy_set_size(prev_addr,
51858f07778SDavid Daney cvmx_bootmem_phy_get_size(cur_addr) +
51958f07778SDavid Daney cvmx_bootmem_phy_get_size(prev_addr));
52058f07778SDavid Daney cvmx_bootmem_phy_set_next(prev_addr,
52158f07778SDavid Daney cvmx_bootmem_phy_get_next(cur_addr));
52258f07778SDavid Daney }
52358f07778SDavid Daney retval = 1;
52458f07778SDavid Daney goto bootmem_free_done;
52558f07778SDavid Daney } else if (phy_addr + size == cur_addr) {
52658f07778SDavid Daney /* Merge with current */
52758f07778SDavid Daney cvmx_bootmem_phy_set_size(phy_addr,
52858f07778SDavid Daney cvmx_bootmem_phy_get_size
52958f07778SDavid Daney (cur_addr) + size);
53058f07778SDavid Daney cvmx_bootmem_phy_set_next(phy_addr,
53158f07778SDavid Daney cvmx_bootmem_phy_get_next
53258f07778SDavid Daney (cur_addr));
53358f07778SDavid Daney cvmx_bootmem_phy_set_next(prev_addr, phy_addr);
53458f07778SDavid Daney retval = 1;
53558f07778SDavid Daney goto bootmem_free_done;
53658f07778SDavid Daney }
53758f07778SDavid Daney
53858f07778SDavid Daney /* It is a standalone block, add in between prev and cur */
53958f07778SDavid Daney cvmx_bootmem_phy_set_size(phy_addr, size);
54058f07778SDavid Daney cvmx_bootmem_phy_set_next(phy_addr, cur_addr);
54158f07778SDavid Daney cvmx_bootmem_phy_set_next(prev_addr, phy_addr);
54258f07778SDavid Daney
54358f07778SDavid Daney }
54458f07778SDavid Daney retval = 1;
54558f07778SDavid Daney
54658f07778SDavid Daney bootmem_free_done:
54758f07778SDavid Daney if (!(flags & CVMX_BOOTMEM_FLAG_NO_LOCKING))
54858f07778SDavid Daney cvmx_bootmem_unlock();
54958f07778SDavid Daney return retval;
55058f07778SDavid Daney
55158f07778SDavid Daney }
55258f07778SDavid Daney
55316df55ceSRandy Dunlap /*
554a1afedbcSAaro Koskinen * Finds a named memory block by name.
555a1afedbcSAaro Koskinen * Also used for finding an unused entry in the named block table.
556a1afedbcSAaro Koskinen *
557a1afedbcSAaro Koskinen * @name: Name of memory block to find. If NULL pointer given, then
558a1afedbcSAaro Koskinen * finds unused descriptor, if available.
559a1afedbcSAaro Koskinen *
560a1afedbcSAaro Koskinen * @flags: Flags to control options for the allocation.
561a1afedbcSAaro Koskinen *
562a1afedbcSAaro Koskinen * Returns Pointer to memory block descriptor, NULL if not found.
563a1afedbcSAaro Koskinen * If NULL returned when name parameter is NULL, then no memory
564a1afedbcSAaro Koskinen * block descriptors are available.
565a1afedbcSAaro Koskinen */
566a1afedbcSAaro Koskinen static struct cvmx_bootmem_named_block_desc *
cvmx_bootmem_phy_named_block_find(char * name,uint32_t flags)56758f07778SDavid Daney cvmx_bootmem_phy_named_block_find(char *name, uint32_t flags)
56858f07778SDavid Daney {
56958f07778SDavid Daney unsigned int i;
57058f07778SDavid Daney struct cvmx_bootmem_named_block_desc *named_block_array_ptr;
57158f07778SDavid Daney
57258f07778SDavid Daney #ifdef DEBUG
57358f07778SDavid Daney cvmx_dprintf("cvmx_bootmem_phy_named_block_find: %s\n", name);
57458f07778SDavid Daney #endif
57558f07778SDavid Daney /*
57658f07778SDavid Daney * Lock the structure to make sure that it is not being
57758f07778SDavid Daney * changed while we are examining it.
57858f07778SDavid Daney */
57958f07778SDavid Daney if (!(flags & CVMX_BOOTMEM_FLAG_NO_LOCKING))
58058f07778SDavid Daney cvmx_bootmem_lock();
58158f07778SDavid Daney
58258f07778SDavid Daney /* Use XKPHYS for 64 bit linux */
58358f07778SDavid Daney named_block_array_ptr = (struct cvmx_bootmem_named_block_desc *)
58458f07778SDavid Daney cvmx_phys_to_ptr(cvmx_bootmem_desc->named_block_array_addr);
58558f07778SDavid Daney
58658f07778SDavid Daney #ifdef DEBUG
58758f07778SDavid Daney cvmx_dprintf
58858f07778SDavid Daney ("cvmx_bootmem_phy_named_block_find: named_block_array_ptr: %p\n",
58958f07778SDavid Daney named_block_array_ptr);
59058f07778SDavid Daney #endif
59158f07778SDavid Daney if (cvmx_bootmem_desc->major_version == 3) {
59258f07778SDavid Daney for (i = 0;
59358f07778SDavid Daney i < cvmx_bootmem_desc->named_block_num_blocks; i++) {
59458f07778SDavid Daney if ((name && named_block_array_ptr[i].size
59558f07778SDavid Daney && !strncmp(name, named_block_array_ptr[i].name,
59658f07778SDavid Daney cvmx_bootmem_desc->named_block_name_len
59758f07778SDavid Daney - 1))
59858f07778SDavid Daney || (!name && !named_block_array_ptr[i].size)) {
59958f07778SDavid Daney if (!(flags & CVMX_BOOTMEM_FLAG_NO_LOCKING))
60058f07778SDavid Daney cvmx_bootmem_unlock();
60158f07778SDavid Daney
60258f07778SDavid Daney return &(named_block_array_ptr[i]);
60358f07778SDavid Daney }
60458f07778SDavid Daney }
60558f07778SDavid Daney } else {
60658f07778SDavid Daney cvmx_dprintf("ERROR: Incompatible bootmem descriptor "
60758f07778SDavid Daney "version: %d.%d at addr: %p\n",
60858f07778SDavid Daney (int)cvmx_bootmem_desc->major_version,
60958f07778SDavid Daney (int)cvmx_bootmem_desc->minor_version,
61058f07778SDavid Daney cvmx_bootmem_desc);
61158f07778SDavid Daney }
61258f07778SDavid Daney if (!(flags & CVMX_BOOTMEM_FLAG_NO_LOCKING))
61358f07778SDavid Daney cvmx_bootmem_unlock();
61458f07778SDavid Daney
61558f07778SDavid Daney return NULL;
61658f07778SDavid Daney }
61758f07778SDavid Daney
cvmx_bootmem_alloc_named_range_once(uint64_t size,uint64_t min_addr,uint64_t max_addr,uint64_t align,char * name,void (* init)(void *))618bf2d401cSAaro Koskinen void *cvmx_bootmem_alloc_named_range_once(uint64_t size, uint64_t min_addr,
619bf2d401cSAaro Koskinen uint64_t max_addr, uint64_t align,
620bf2d401cSAaro Koskinen char *name,
621bf2d401cSAaro Koskinen void (*init) (void *))
622bf2d401cSAaro Koskinen {
623bf2d401cSAaro Koskinen int64_t addr;
624bf2d401cSAaro Koskinen void *ptr;
625bf2d401cSAaro Koskinen uint64_t named_block_desc_addr;
626bf2d401cSAaro Koskinen
627bf2d401cSAaro Koskinen named_block_desc_addr = (uint64_t)
628bf2d401cSAaro Koskinen cvmx_bootmem_phy_named_block_find(name,
629bf2d401cSAaro Koskinen (uint32_t)CVMX_BOOTMEM_FLAG_NO_LOCKING);
630bf2d401cSAaro Koskinen
631bf2d401cSAaro Koskinen if (named_block_desc_addr) {
632bf2d401cSAaro Koskinen addr = CVMX_BOOTMEM_NAMED_GET_FIELD(named_block_desc_addr,
633bf2d401cSAaro Koskinen base_addr);
634bf2d401cSAaro Koskinen return cvmx_phys_to_ptr(addr);
635bf2d401cSAaro Koskinen }
636bf2d401cSAaro Koskinen
637bf2d401cSAaro Koskinen addr = cvmx_bootmem_phy_named_block_alloc(size, min_addr, max_addr,
638bf2d401cSAaro Koskinen align, name,
639bf2d401cSAaro Koskinen (uint32_t)CVMX_BOOTMEM_FLAG_NO_LOCKING);
640bf2d401cSAaro Koskinen
641bf2d401cSAaro Koskinen if (addr < 0)
642bf2d401cSAaro Koskinen return NULL;
643bf2d401cSAaro Koskinen ptr = cvmx_phys_to_ptr(addr);
644bf2d401cSAaro Koskinen
645bf2d401cSAaro Koskinen if (init)
646bf2d401cSAaro Koskinen init(ptr);
647bf2d401cSAaro Koskinen else
648bf2d401cSAaro Koskinen memset(ptr, 0, size);
649bf2d401cSAaro Koskinen
650bf2d401cSAaro Koskinen return ptr;
651bf2d401cSAaro Koskinen }
652bf2d401cSAaro Koskinen EXPORT_SYMBOL(cvmx_bootmem_alloc_named_range_once);
653bf2d401cSAaro Koskinen
cvmx_bootmem_find_named_block(char * name)654bf2d401cSAaro Koskinen struct cvmx_bootmem_named_block_desc *cvmx_bootmem_find_named_block(char *name)
655bf2d401cSAaro Koskinen {
656bf2d401cSAaro Koskinen return cvmx_bootmem_phy_named_block_find(name, 0);
657bf2d401cSAaro Koskinen }
658bf2d401cSAaro Koskinen EXPORT_SYMBOL(cvmx_bootmem_find_named_block);
659bf2d401cSAaro Koskinen
66016df55ceSRandy Dunlap /*
661a1afedbcSAaro Koskinen * Frees a named block.
662a1afedbcSAaro Koskinen *
663a1afedbcSAaro Koskinen * @name: name of block to free
664a1afedbcSAaro Koskinen * @flags: flags for passing options
665a1afedbcSAaro Koskinen *
666a1afedbcSAaro Koskinen * Returns 0 on failure
667a1afedbcSAaro Koskinen * 1 on success
668a1afedbcSAaro Koskinen */
cvmx_bootmem_phy_named_block_free(char * name,uint32_t flags)669a1afedbcSAaro Koskinen static int cvmx_bootmem_phy_named_block_free(char *name, uint32_t flags)
67058f07778SDavid Daney {
67158f07778SDavid Daney struct cvmx_bootmem_named_block_desc *named_block_ptr;
67258f07778SDavid Daney
67358f07778SDavid Daney if (cvmx_bootmem_desc->major_version != 3) {
67458f07778SDavid Daney cvmx_dprintf("ERROR: Incompatible bootmem descriptor version: "
67558f07778SDavid Daney "%d.%d at addr: %p\n",
67658f07778SDavid Daney (int)cvmx_bootmem_desc->major_version,
67758f07778SDavid Daney (int)cvmx_bootmem_desc->minor_version,
67858f07778SDavid Daney cvmx_bootmem_desc);
67958f07778SDavid Daney return 0;
68058f07778SDavid Daney }
68158f07778SDavid Daney #ifdef DEBUG
68258f07778SDavid Daney cvmx_dprintf("cvmx_bootmem_phy_named_block_free: %s\n", name);
68358f07778SDavid Daney #endif
68458f07778SDavid Daney
68558f07778SDavid Daney /*
68658f07778SDavid Daney * Take lock here, as name lookup/block free/name free need to
68758f07778SDavid Daney * be atomic.
68858f07778SDavid Daney */
68958f07778SDavid Daney cvmx_bootmem_lock();
69058f07778SDavid Daney
69158f07778SDavid Daney named_block_ptr =
69258f07778SDavid Daney cvmx_bootmem_phy_named_block_find(name,
69358f07778SDavid Daney CVMX_BOOTMEM_FLAG_NO_LOCKING);
69458f07778SDavid Daney if (named_block_ptr) {
69558f07778SDavid Daney #ifdef DEBUG
69658f07778SDavid Daney cvmx_dprintf("cvmx_bootmem_phy_named_block_free: "
69758f07778SDavid Daney "%s, base: 0x%llx, size: 0x%llx\n",
69858f07778SDavid Daney name,
69958f07778SDavid Daney (unsigned long long)named_block_ptr->base_addr,
70058f07778SDavid Daney (unsigned long long)named_block_ptr->size);
70158f07778SDavid Daney #endif
70258f07778SDavid Daney __cvmx_bootmem_phy_free(named_block_ptr->base_addr,
70358f07778SDavid Daney named_block_ptr->size,
70458f07778SDavid Daney CVMX_BOOTMEM_FLAG_NO_LOCKING);
70558f07778SDavid Daney named_block_ptr->size = 0;
70658f07778SDavid Daney /* Set size to zero to indicate block not used. */
70758f07778SDavid Daney }
70858f07778SDavid Daney
70958f07778SDavid Daney cvmx_bootmem_unlock();
71058f07778SDavid Daney return named_block_ptr != NULL; /* 0 on failure, 1 on success */
71158f07778SDavid Daney }
7126fa044abSDavid Daney
cvmx_bootmem_free_named(char * name)713bf2d401cSAaro Koskinen int cvmx_bootmem_free_named(char *name)
714bf2d401cSAaro Koskinen {
715bf2d401cSAaro Koskinen return cvmx_bootmem_phy_named_block_free(name, 0);
716bf2d401cSAaro Koskinen }
717bf2d401cSAaro Koskinen
cvmx_bootmem_phy_named_block_alloc(uint64_t size,uint64_t min_addr,uint64_t max_addr,uint64_t alignment,char * name,uint32_t flags)7186fa044abSDavid Daney int64_t cvmx_bootmem_phy_named_block_alloc(uint64_t size, uint64_t min_addr,
7196fa044abSDavid Daney uint64_t max_addr,
7206fa044abSDavid Daney uint64_t alignment,
7216fa044abSDavid Daney char *name,
7226fa044abSDavid Daney uint32_t flags)
7236fa044abSDavid Daney {
7246fa044abSDavid Daney int64_t addr_allocated;
7256fa044abSDavid Daney struct cvmx_bootmem_named_block_desc *named_block_desc_ptr;
7266fa044abSDavid Daney
7276fa044abSDavid Daney #ifdef DEBUG
7286fa044abSDavid Daney cvmx_dprintf("cvmx_bootmem_phy_named_block_alloc: size: 0x%llx, min: "
7296fa044abSDavid Daney "0x%llx, max: 0x%llx, align: 0x%llx, name: %s\n",
7306fa044abSDavid Daney (unsigned long long)size,
7316fa044abSDavid Daney (unsigned long long)min_addr,
7326fa044abSDavid Daney (unsigned long long)max_addr,
7336fa044abSDavid Daney (unsigned long long)alignment,
7346fa044abSDavid Daney name);
7356fa044abSDavid Daney #endif
7366fa044abSDavid Daney if (cvmx_bootmem_desc->major_version != 3) {
7376fa044abSDavid Daney cvmx_dprintf("ERROR: Incompatible bootmem descriptor version: "
7386fa044abSDavid Daney "%d.%d at addr: %p\n",
7396fa044abSDavid Daney (int)cvmx_bootmem_desc->major_version,
7406fa044abSDavid Daney (int)cvmx_bootmem_desc->minor_version,
7416fa044abSDavid Daney cvmx_bootmem_desc);
7426fa044abSDavid Daney return -1;
7436fa044abSDavid Daney }
7446fa044abSDavid Daney
7456fa044abSDavid Daney /*
7466fa044abSDavid Daney * Take lock here, as name lookup/block alloc/name add need to
7476fa044abSDavid Daney * be atomic.
7486fa044abSDavid Daney */
7496fa044abSDavid Daney if (!(flags & CVMX_BOOTMEM_FLAG_NO_LOCKING))
7506fa044abSDavid Daney cvmx_spinlock_lock((cvmx_spinlock_t *)&(cvmx_bootmem_desc->lock));
7516fa044abSDavid Daney
7526fa044abSDavid Daney /* Get pointer to first available named block descriptor */
7536fa044abSDavid Daney named_block_desc_ptr =
7546fa044abSDavid Daney cvmx_bootmem_phy_named_block_find(NULL,
7556fa044abSDavid Daney flags | CVMX_BOOTMEM_FLAG_NO_LOCKING);
7566fa044abSDavid Daney
7576fa044abSDavid Daney /*
7586fa044abSDavid Daney * Check to see if name already in use, return error if name
7596fa044abSDavid Daney * not available or no more room for blocks.
7606fa044abSDavid Daney */
7616fa044abSDavid Daney if (cvmx_bootmem_phy_named_block_find(name,
7626fa044abSDavid Daney flags | CVMX_BOOTMEM_FLAG_NO_LOCKING) || !named_block_desc_ptr) {
7636fa044abSDavid Daney if (!(flags & CVMX_BOOTMEM_FLAG_NO_LOCKING))
7646fa044abSDavid Daney cvmx_spinlock_unlock((cvmx_spinlock_t *)&(cvmx_bootmem_desc->lock));
7656fa044abSDavid Daney return -1;
7666fa044abSDavid Daney }
7676fa044abSDavid Daney
7686fa044abSDavid Daney
7696fa044abSDavid Daney /*
7706fa044abSDavid Daney * Round size up to mult of minimum alignment bytes We need
7716fa044abSDavid Daney * the actual size allocated to allow for blocks to be
7724a79fb21SAndrea Gelmini * coalesced when they are freed. The alloc routine does the
7736fa044abSDavid Daney * same rounding up on all allocations.
7746fa044abSDavid Daney */
7752a5d6651SMatt Turner size = ALIGN(size, CVMX_BOOTMEM_ALIGNMENT_SIZE);
7766fa044abSDavid Daney
7776fa044abSDavid Daney addr_allocated = cvmx_bootmem_phy_alloc(size, min_addr, max_addr,
7786fa044abSDavid Daney alignment,
7796fa044abSDavid Daney flags | CVMX_BOOTMEM_FLAG_NO_LOCKING);
7806fa044abSDavid Daney if (addr_allocated >= 0) {
7816fa044abSDavid Daney named_block_desc_ptr->base_addr = addr_allocated;
7826fa044abSDavid Daney named_block_desc_ptr->size = size;
783*ef92750eSXu Panda strscpy(named_block_desc_ptr->name, name,
7846fa044abSDavid Daney cvmx_bootmem_desc->named_block_name_len);
7856fa044abSDavid Daney }
7866fa044abSDavid Daney
7876fa044abSDavid Daney if (!(flags & CVMX_BOOTMEM_FLAG_NO_LOCKING))
7886fa044abSDavid Daney cvmx_spinlock_unlock((cvmx_spinlock_t *)&(cvmx_bootmem_desc->lock));
7896fa044abSDavid Daney return addr_allocated;
7906fa044abSDavid Daney }
791abe77f90SRalf Baechle
cvmx_bootmem_get_desc(void)792abe77f90SRalf Baechle struct cvmx_bootmem_desc *cvmx_bootmem_get_desc(void)
793abe77f90SRalf Baechle {
794abe77f90SRalf Baechle return cvmx_bootmem_desc;
795abe77f90SRalf Baechle }
796