SZ_512
mapbase, SZ_512 - 1);
mapbase, SZ_512 - 1);
(ALIGN_DOWN(start_addr, SZ_512) != ALIGN_DOWN(end_addr - 1, SZ_512)))
#define CXL_HEADERLOG_SIZE SZ_512
#define CXL_HEADERLOG_SIZE_U32 SZ_512 / sizeof(u32)
#define DSS_SZ_REGS SZ_512
return SZ_512;
#define AUDIO_DMA_SIZE_MIN SZ_512
SZ_512 * MMC_NUM_BOOT_PARTITION;
case SZ_512:
.stepsize = SZ_512,
case SZ_512:
case SZ_512:
if (mtd->writesize <= SZ_512)
case SZ_512:
case SZ_512:
if (!nfc->caps->is_nfcv2 && mtd->writesize != SZ_512 &&
if (!nand_read_data_op(chip, NULL, SZ_512, true, true))
SZ_2K, SZ_128, SZ_128K, 0, 8, 64, NAND_ECC_INFO(1, SZ_512), },
SZ_4K, SZ_512, SZ_256K, 0, 8, 224, NAND_ECC_INFO(4, SZ_512) },
SZ_4K, SZ_512, SZ_256K, 0, 8, 256, NAND_ECC_INFO(8, SZ_512) },
SZ_4K, SZ_1K, SZ_256K, 0, 8, 232, NAND_ECC_INFO(4, SZ_512) },
SZ_2K, SZ_512, SZ_128K, 0, 5, 128, NAND_ECC_INFO(8, SZ_512) },
SZ_4K, SZ_1K, SZ_256K, 0, 5, 256, NAND_ECC_INFO(8, SZ_512)},
case SZ_512:
if (mtd->writesize < SZ_512 || mtd->writesize > SZ_2K) {
chip->ecc.size = SZ_512;
if (mtd->writesize <= SZ_512)
case SZ_512:
for (offset = 0; offset + SZ_512 <= orom_size; offset += SZ_512) {
BUILD_BUG_ON(sizeof(*tmp) > SZ_512);
efuse->config.size = SZ_512;
.txfifo = SZ_512,
.txfifo = SZ_512,
.txfifo = SZ_512,
.ahb_buf_size = SZ_512,
case SZ_512:
.rxfifo = SZ_512, /* (64 * 64 bits) */
.rxfifo = SZ_512, /* (64 * 64 bits) */
.rxfifo = SZ_512, /* (64 * 64 bits) */
.rxfifo = SZ_512, /* (64 * 64 bits) */
.rxfifo = SZ_512, /* (64 * 64 bits) */
.rxfifo = SZ_512, /* (128 * 4 bytes) */
#define DSS_SZ_REGS SZ_512
phys_addr_t r2_size = SZ_512;
phys_addr_t r2_size = SZ_512;
r1.base = memblock_end_of_DRAM() - SZ_512;
r1.size = SZ_512;
r2.base = r1.base - SZ_512;
phys_addr_t r1_size = SZ_512;
phys_addr_t r2_size = SZ_512;
r1.size = SZ_512;
r2.base = r1.base + r1.size + SZ_512;
phys_addr_t size = SZ_512;
size = SZ_512;
phys_addr_t size = SZ_512;
size = SZ_512;
phys_addr_t size = SZ_512;
max_addr = min_addr + SZ_512 + misalign;
phys_addr_t size = SZ_512;
phys_addr_t size = SZ_512;
size = SZ_512;
phys_addr_t size = SZ_512;
phys_addr_t size = SZ_512;
size = SZ_512;
min_addr = memblock_start_of_DRAM() + SZ_512;
phys_addr_t size = SZ_512;
max_addr = min_addr + SZ_512;
max_addr = min_addr + SZ_512;
max_addr = min_addr + SZ_512;
min_addr = memblock_start_of_DRAM() + SZ_512;