| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758759760761762763764765766767768769770771772773774775776777778779780781782783784785786787788789790791792793794795796797798799800801802803804805806807808809810811812813814815816817818819820821822823824825826827828829830831832833834835836837838839840841842843844845846847848849850851852853854855856857858859860861862863864865866867868869870871872873874875876877878879880881882883884885886887888889890891892893894895896897898899900901902903904905906907908909910911912913914915916917918919920921922923924925926927928929930931932933934935936937938939940941942943944945946947948949950951952953954955956957958959960961962963964965966967968969970971972973974975976977978979980981982983984985986987988989990991992993994995996997998999100010011002100310041005100610071008100910101011101210131014101510161017101810191020102110221023102410251026102710281029103010311032103310341035103610371038103910401041104210431044104510461047104810491050105110521053105410551056105710581059106010611062106310641065106610671068106910701071107210731074107510761077107810791080108110821083108410851086108710881089109010911092109310941095109610971098109911001101110211031104110511061107110811091110 |
- /* Copyright Statement:
- *
- * This software/firmware and related documentation ("MediaTek Software") are
- * protected under relevant copyright laws. The information contained herein
- * is confidential and proprietary to MediaTek Inc. and/or its licensors.
- * Without the prior written permission of MediaTek inc. and/or its licensors,
- * any reproduction, modification, use or disclosure of MediaTek Software,
- * and information contained herein, in whole or in part, shall be strictly prohibited.
- */
- /* MediaTek Inc. (C) 2015. All rights reserved.
- *
- * BY OPENING THIS FILE, RECEIVER HEREBY UNEQUIVOCALLY ACKNOWLEDGES AND AGREES
- * THAT THE SOFTWARE/FIRMWARE AND ITS DOCUMENTATIONS ("MEDIATEK SOFTWARE")
- * RECEIVED FROM MEDIATEK AND/OR ITS REPRESENTATIVES ARE PROVIDED TO RECEIVER ON
- * AN "AS-IS" BASIS ONLY. MEDIATEK EXPRESSLY DISCLAIMS ANY AND ALL WARRANTIES,
- * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE IMPLIED WARRANTIES OF
- * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE OR NONINFRINGEMENT.
- * NEITHER DOES MEDIATEK PROVIDE ANY WARRANTY WHATSOEVER WITH RESPECT TO THE
- * SOFTWARE OF ANY THIRD PARTY WHICH MAY BE USED BY, INCORPORATED IN, OR
- * SUPPLIED WITH THE MEDIATEK SOFTWARE, AND RECEIVER AGREES TO LOOK ONLY TO SUCH
- * THIRD PARTY FOR ANY WARRANTY CLAIM RELATING THERETO. RECEIVER EXPRESSLY ACKNOWLEDGES
- * THAT IT IS RECEIVER'S SOLE RESPONSIBILITY TO OBTAIN FROM ANY THIRD PARTY ALL PROPER LICENSES
- * CONTAINED IN MEDIATEK SOFTWARE. MEDIATEK SHALL ALSO NOT BE RESPONSIBLE FOR ANY MEDIATEK
- * SOFTWARE RELEASES MADE TO RECEIVER'S SPECIFICATION OR TO CONFORM TO A PARTICULAR
- * STANDARD OR OPEN FORUM. RECEIVER'S SOLE AND EXCLUSIVE REMEDY AND MEDIATEK'S ENTIRE AND
- * CUMULATIVE LIABILITY WITH RESPECT TO THE MEDIATEK SOFTWARE RELEASED HEREUNDER WILL BE,
- * AT MEDIATEK'S OPTION, TO REVISE OR REPLACE THE MEDIATEK SOFTWARE AT ISSUE,
- * OR REFUND ANY SOFTWARE LICENSE FEES OR SERVICE CHARGE PAID BY RECEIVER TO
- * MEDIATEK FOR SUCH MEDIATEK SOFTWARE AT ISSUE.
- */
- #include "ufs_aio_cfg.h"
- #include "ufs_aio_types.h"
- #include "ufs_aio.h"
- #include "ufs_aio_hcd.h"
- #include "ufs_aio_core.h"
- #include "ufs_aio_utils.h"
- #include "ufs_aio_error.h"
- #include "ufs_aio_rpmb.h"
- #if defined(MTK_UFS_DRV_PRELOADER)
- #include "blkdev.h"
- #include "boot_device.h"
- #include "storage_api.h"
- static blkdev_t g_ufs_dev;
- int ufs_switch_part(u32 part_id)
- {
- u8 lun;
- switch (part_id) {
- case UFS_LU_BOOT1:
- lun = UFS_LU_0;
- break;
- case UFS_LU_BOOT2:
- lun = UFS_LU_1;
- break;
- case UFS_LU_USER:
- lun = UFS_LU_2;
- break;
- default:
- UFS_DBG_LOGE("[UFS] err: ufs_switch_part, invalid UFS LU %d\n", part_id);
- return UFS_ERR_INVALID_LU;
- }
- UFS_DBG_LOGV("[UFS] switch to part %d, lun %d\n", part_id, lun);
- return (int)lun;
- }
- static int ufs_bread(blkdev_t *bdev, u32 blknr, u32 blks, u8 *buf, u32 part_id)
- {
- int lun;
- UFS_DBG_LOGV("[UFS] info: r, %d, %d, %d\n", blknr, blks, part_id);
- lun = ufs_switch_part(part_id);
- if (lun < 0)
- return lun;
- return ufs_aio_block_read(0, (u32)lun, blknr, blks, (unsigned long *)buf);
- }
- static int ufs_bwrite(blkdev_t *bdev, u32 blknr, u32 blks, u8 *buf, u32 part_id)
- {
- int lun;
- UFS_DBG_LOGV("[UFS] info: w, %d, %d, %d\n", blknr, blks, part_id);
- lun = ufs_switch_part(part_id);
- if (lun < 0)
- return lun;
- return ufs_aio_block_write(0, (u32)lun, blknr, blks, (unsigned long *)buf);
- }
- static u64 ufs_get_part_size(blkdev_t *dev, u32 part_id)
- {
- struct ufs_hba * hba = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- int lun;
- int ret;
- u32 blk_size = 0, blk_cnt = 0;
- u64 size_in_bytes;
- lun = ufs_switch_part(part_id);
- if (lun < 0)
- return lun;
- ret = ufs_aio_get_lu_size(hba, (u32)lun, &blk_size, &blk_cnt);
- size_in_bytes = (u64)blk_size * (u64)blk_cnt;
- if (ret < 0) {
- UFS_DBG_LOGE("[UFS] err: ufs_get_part_size fail, part_id %d, ret %d\n", part_id, ret);
- return 0;
- }
- UFS_DBG_LOGV("[UFS] info: ufs_get_part_size, %d, %llx\n", part_id, size_in_bytes);
- return size_in_bytes;
- }
- //==========================================================
- // UFS Common Interface - Init
- //==========================================================
- u32 ufs_init_device(void)
- {
- struct ufs_hba * hba = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- int ret;
- #ifdef UFS_CFG_HQA_MODE
- ufs_aio_hqa_mode();
- #endif
- if (!blkdev_get(BOOTDEV_UFS)) {
- ret = ufs_aio_cfg_mode(UFS_DEFAULT_HOST_ID, UFS_MODE_DEFAULT);
- if (ret != 0) {
- UFS_DBG_LOGD("[UFS] err: ufs_aio_cfg_mode failed\n");
- return ret;
- }
- ret = ufshcd_init();
- if (ret != 0) {
- UFS_DBG_LOGD("[UFS] err: ufshcd_init failed\n");
- return ret;
- }
- memset(&g_ufs_dev, 0, sizeof(blkdev_t));
- /*
- * Some blkdev_t members are not used by upper layer, can be undefined.
- * Necessary members: type, blksz, blkbuf, next, bread and bwrite.
- */
- g_ufs_dev.type = BOOTDEV_UFS;
- g_ufs_dev.blksz = UFS_BLOCK_SIZE;
- g_ufs_dev.bread = ufs_bread;
- g_ufs_dev.bwrite = ufs_bwrite;
- g_ufs_dev.get_part_size = ufs_get_part_size;
- g_ufs_dev.erasesz = UFS_BLOCK_SIZE;
- /*
- * Use SRAM buffer for blkdev operations.
- *
- * Since MT6799, storage device shall be initialized before DRAM init.
- * In such case, make sure all buffers that we will touch are all located
- * in SRAM.
- */
- g_ufs_dev.blkbuf = NULL;
- g_ufs_dev.priv = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- blkdev_register(&g_ufs_dev);
- }
- return 0;
- }
- int ufs_rpmb_get_rw_size(void)
- {
- return ufs_aio_rpmb_get_rw_size();
- }
- u64 ufs_rpmb_get_lu_size(void)
- {
- return ufs_aio_rpmb_get_lu_size();
- }
- int ufs_get_device_id(u8 * id, u32 buf_len, u32 * fw_len)
- {
- struct ufs_hba * hba;
- u32 id_len, i;
- if (0 != ufs_init_device())
- return -1;
- hba = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- if (0 == hba->dev_info.wmanufacturerid)
- return -1;
- id_len = strlen(hba->dev_info.product_id);
- id_len = min_t(u32, id_len, buf_len);
- memcpy(id, hba->dev_info.product_id, id_len);
- *fw_len = id_len;
- for (i = 0; i < id_len; i++)
- UFS_DBG_LOGE("%x" , *(id+i));
- UFS_DBG_LOGE("\nufs id:%s, len:%d\n", id, id_len);
- return 0;
- }
- int ufs_get_boot_part(int *part_id)
- {
- struct ufs_hba * hba;
- int ret;
- u32 b_boot_lun = 0;
- hba = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- ret = ufs_aio_get_boot_lu(hba, &b_boot_lun);
- if (0 != ret)
- UFS_DBG_LOGD("[UFS] err: ufs_aio_get_boot_lu error: %d\n", ret);
- else {
- if (b_boot_lun == ATTR_B_BOOT_LUN_EN_BOOT_LU_A)
- *part_id = STORAGE_PHYS_PART_BOOT1;
- else if (b_boot_lun == ATTR_B_BOOT_LUN_EN_BOOT_LU_B)
- *part_id = STORAGE_PHYS_PART_BOOT2;
- UFS_DBG_LOGD("[UFS] info: ufs_aio_get_boot_lu, part_id=%d\n", *part_id);
- }
- return ret;
- }
- int ufs_set_boot_part(int part_id)
- {
- struct ufs_hba * hba;
- int ret;
- u32 b_boot_lun = 0;
- hba = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- if (part_id == STORAGE_PHYS_PART_BOOT1)
- b_boot_lun = ATTR_B_BOOT_LUN_EN_BOOT_LU_A;
- else if (part_id == STORAGE_PHYS_PART_BOOT2)
- b_boot_lun = ATTR_B_BOOT_LUN_EN_BOOT_LU_B;
- ret = ufs_aio_set_boot_lu(hba, b_boot_lun);
- return ret;
- }
- #endif /* MTK_UFS_DRV_PRELOADER */
- #if defined(MTK_UFS_DRV_LK)
- #include "block_generic_interface.h"
- static block_dev_desc_t g_ufs_dev[UFS_AIO_MAX_DEVICE];
- static part_dev_t g_ufs_boot_dev;
- unsigned long ufs_wrap_bread(int dev_num, unsigned long blknr, lbaint_t blkcnt, void *dst, unsigned int part_id)
- {
- int lun;
- int ret;
- lun = ufs_switch_part(part_id);
- if (lun < 0)
- return (unsigned long) -1;
- ret = ufs_aio_block_read(dev_num, lun, blknr, blkcnt, (unsigned long *)dst);
- UFS_DBG_LOGD("[UFS] r, %lu, %lu, %d, %d\n", blknr, blkcnt, lun, ret);
- if (!ret)
- return blkcnt;
- else
- return (unsigned long) -1;
- }
- unsigned long ufs_wrap_bwrite(int dev_num, unsigned long blknr, lbaint_t blkcnt, const void *src, unsigned int part_id)
- {
- int lun;
- int ret;
- lun = ufs_switch_part(part_id);
- if (lun < 0)
- return (unsigned long) -1;
- ret = ufs_aio_block_write(dev_num, lun, blknr, blkcnt, (unsigned long *)src);
- UFS_DBG_LOGD("[UFS] w, %lu, %lu, %d, %d\n", blknr, blkcnt, lun, ret);
- if (!ret)
- return blkcnt;
- else
- return (unsigned long) -1;
- }
- int ufs_lk_get_active_boot_part(u32 *active_boot_part)
- {
- struct ufs_hba * hba = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- u32 b_boot_lun_en;
- int ret;
- if (!active_boot_part)
- return -1;
- ret = hba->query_attr(hba, UPIU_QUERY_OPCODE_READ_ATTR, ATTR_B_BOOT_LUN_EN, 0, 0, &b_boot_lun_en);
- if (UFS_ERR_NONE != ret) {
- UFS_DBG_LOGE("[UFS] err: read ATTR_B_BOOT_LUN_EN error: %d\n", ret);
- return ret;
- }
- if (ATTR_B_BOOT_LUN_EN_BOOT_LU_A == b_boot_lun_en) // Enabled boot from Boot LU A
- *active_boot_part = UFS_LU_BOOT1;
- else if (ATTR_B_BOOT_LUN_EN_BOOT_LU_B == b_boot_lun_en) // Enabled boot from Boot LU B
- *active_boot_part = UFS_LU_BOOT2;
- else {
- UFS_DBG_LOGE("[UFS] err: invalid ATTR_B_BOOT_LUN_EN %d\n", *active_boot_part);
- return -1;
- }
- return ret;
- }
- static u64 ufs_lk_get_part_size(part_dev_t *dev, u32 part_id)
- {
- struct ufs_hba * hba = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- int lun;
- int ret;
- u32 blk_size = 0, blk_cnt = 0;
- u64 size_in_bytes;
- lun = ufs_switch_part(part_id);
- if (lun < UFS_ERR_NONE)
- return lun;
- ret = ufs_aio_get_lu_size(hba, (u32)lun, &blk_size, &blk_cnt);
- size_in_bytes = (u64)blk_size * (u64)blk_cnt;
- if (ret < 0) {
- UFS_DBG_LOGE("[UFS] err: ufs_get_part_size fail, part_id %d, ret %d\n", part_id, ret);
- return 0;
- }
- UFS_DBG_LOGV("[UFS] info: ufs_get_part_size, %d, %llx\n", part_id, size_in_bytes);
- return size_in_bytes;
- }
- unsigned long long ufs_lk_get_device_size()
- {
- struct ufs_hba *hba = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- unsigned long long size;
- u32 i;
- for (i = 0, size = 0; i < UFS_LU_INTERNAL_CNT; i++)
- size += (unsigned long long)hba->blk_cnt[i] * (unsigned long long)UFS_BLOCK_SIZE;
- return size;
- }
- static int ufs_lk_erase(int dev_num, u64 start_addr, u64 len,u32 part_id);
- int ufs_lk_init()
- {
- struct ufs_hba * hba = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- int ret;
- int i;
- block_dev_desc_t *bdev;
- bdev = &g_ufs_dev[UFS_DEFAULT_HOST_ID];
- ufs_aio_cfg_mode(UFS_DEFAULT_HOST_ID, UFS_MODE_DEFAULT);
- ret = ufshcd_init();
- if (ret != 0) {
- UFS_DBG_LOGE("[UFS] err: ufshcd_init failed\n");
- return ret;
- }
- if (ret == UFS_ERR_NONE) {
- // fill in device description
- bdev->dev = UFS_DEFAULT_HOST_ID;
- bdev->type = BOOTDEV_UFS;
- bdev->blksz = UFS_BLOCK_SIZE;
- bdev->blk_bits = 12;
- bdev->part_boot1 = UFS_LU_BOOT1;
- bdev->part_boot2 = UFS_LU_BOOT2;
- bdev->part_user = UFS_LU_USER;
- bdev->block_read = ufs_wrap_bread;
- bdev->block_write = ufs_wrap_bwrite;
- g_ufs_boot_dev.id = UFS_DEFAULT_HOST_ID;
- g_ufs_boot_dev.init = 1;
- g_ufs_boot_dev.blkdev = bdev;
- g_ufs_boot_dev.erase = ufs_lk_erase;
- g_ufs_boot_dev.get_part_size = ufs_lk_get_part_size;
- /*
- * Leave g_ufs_boot_dev.read and g_ufs_boot_dev.write as NULL for mt_part_register_device().
- *
- * This will let mt_part_register_device() hook mt_part_generic_read() and mt_part_generic_write()
- * to structure part_dev_t to handle non-aligned (including start address and length) access.
- */
- mt_part_register_device(&g_ufs_boot_dev);
- UFS_DBG_LOGI("[UFS] info: boot device found\n");
- // get LU size
- for (i = 0; i < UFS_LU_INTERNAL_CNT; i++) {
- ret = ufs_aio_get_lu_size(hba, i, NULL, &(hba->blk_cnt[i]));
- if (ret) {
- UFS_DBG_LOGE("[UFS] err: ufs_aio_get_lu_size(%d) fail, ret %d\n", i, ret);
- break;
- }
- }
- }
- UFS_DBG_LOGI("[UFS] info: ufs init OK\n");
- return ret;
- }
- int ufs_lk_erase(int dev_num, u64 start_addr, u64 len,u32 part_id)
- {
- struct ufs_hba *hba = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- block_dev_desc_t *bdev = &g_ufs_dev[UFS_DEFAULT_HOST_ID];
- u32 start_blk, end_blk;
- int lun;
- int ret;
- if (!len) {
- UFS_DBG_LOGE("[UFS] err: nvalid erase size! len: 0x%llx\n", len);
- return UFS_ERR_INVALID_ERASE_SIZE;
- }
- if ((start_addr % bdev->blksz) || (len % bdev->blksz)) {
- UFS_DBG_LOGE("[UFS] err: non-alignment erase address or length! start: 0x%llx, len: 0x%llx\n", start_addr, len);
- return UFS_ERR_INVALID_ALIGNMENT;
- }
- lun = ufs_switch_part(part_id);
- if (lun < UFS_ERR_NONE) {
- UFS_DBG_LOGE("[UFS] err: swtich partition failed, part %d, ret %d\n", part_id, lun);
- return lun;
- }
- end_blk = (u32)((start_addr + len) / (u64)bdev->blksz) - 1;
- if (end_blk >= hba->blk_cnt[lun]) {
- UFS_DBG_LOGE("[UFS] err: erase address out of range! lun %d, blk_cnt %d, start <0x%llx>, len <0x%llx>, end_blk %d\n", lun, hba->blk_cnt[lun], start_addr, len, end_blk);
- return UFS_ERR_OUT_OF_RANGE;
- }
- start_blk = (u32)(start_addr / (u64)bdev->blksz);
- ret = hba->blk_erase(hba, lun, start_blk, end_blk - start_blk + 1);
- if (ret)
- UFS_DBG_LOGE("[UFS] err: erase fail <0x%llx - 0x%llx>, <%d - %d> ret %d\n", start_addr, start_addr + len, start_blk, end_blk, ret);
- return ret;
- }
- int ufs_lk_otp_lock_req(char *otp_part_name)
- {
- return ufs_aio_otp_lock_req(otp_part_name);
- }
- int ufs_lk_otp_read(u32 current_user_id, off_t offset, u8* data, size_t size)
- {
- return ufs_aio_otp_read(current_user_id, offset, data, size);
- }
- int ufs_lk_otp_write(u32 current_user_id, off_t offset, u8* data, size_t size)
- {
- return ufs_aio_otp_write(current_user_id, offset, data, size);
- }
- int ufs_lk_otp_lock(void)
- {
- return ufs_aio_otp_lock();
- }
- int ufs_get_unique_id(struct ufs_unique_id *id)
- {
- struct ufs_hba *hba;
- hba = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- memset(id, 0, sizeof(struct ufs_unique_id));
- if (0 == hba->dev_info.wmanufacturerid)
- return -1;
- /* UFS vendor id */
- id->vid = hba->dev_info.wmanufacturerid;
- /* UFS product ID */
- if (hba->dev_info.product_id[0] != 0)
- strlcpy((char *)id->pid, hba->dev_info.product_id, MAX_PRODUCT_ID_LEN + 1);
- /* UFS serial number */
- if (hba->dev_info.serial_number_len != 0)
- strlcpy((char *)id->sn, hba->dev_info.serial_number, hba->dev_info.serial_number_len * 2 + 1);
- return 0;
- }
- #endif
- #if defined(MTK_UFS_DRV_DA)
- #include "boot/dev_interface/ufs_interface.h"
- #include "interface_struct.h"
- #include "debug.h"
- #include "lib/string.h"
- #include "ufs_aio_blkdev.h"
- #include "boot/dev_interface/gpt_timer_interface.h"
- static ufs_aio_blkdev_t g_ufs_dev;
- static u32 g_ufs_internal_buf[UFS_BLOCK_SIZE / sizeof(u32)];
- #ifdef UFS_CFG_PERFORMANCE_PROFILING
- u32 g_ufs_last_read_time = 0;
- u32 g_ufs_last_write_time = 0;
- #endif
- __WEAK int ufs_bread(ufs_aio_blkdev_t *bdev, u32 blknr, u32 blks, u8 *buf, u32 lun)
- {
- int ret;
- #ifdef UFS_CFG_PERFORMANCE_PROFILING
- u32 time_start, time_end;
- #endif
- UFS_DBG_LOGD("[UFS] ufs_bread,%d,%d,%d\n", blknr, blks, (int)lun);
- #ifdef UFS_CFG_PERFORMANCE_PROFILING
- time_start = Get_Current_Time_us();
- #endif
- ret = ufs_aio_block_read(UFS_DEFAULT_HOST_ID, lun, blknr, blks, (unsigned long *)buf);
- #ifdef UFS_CFG_PERFORMANCE_PROFILING
- time_end = Get_Current_Time_us();
- if (time_start != time_end)
- UFS_DBG_LOGD("[UFS] perf (ufs_bread): r,%d,%d,%d,%d KB/s\n", lun, blknr, blks, (blks * 4 * 1000000) / (time_end - time_start));
- #endif
- UFS_DBG_LOGD("[UFS] ufs_bread,ret=%d\n", ret);
- return ret;
- }
- __WEAK int ufs_bwrite(ufs_aio_blkdev_t *bdev, u32 blknr, u32 blks, u8 *buf, u32 lun)
- {
- int ret;
- #ifdef UFS_CFG_PERFORMANCE_PROFILING
- u32 time_start, time_end;
- #endif
- UFS_DBG_LOGD("[UFS] ufs_bwrite,%d,%d,%d\n", blknr, blks, (int)lun);
- #ifdef UFS_CFG_PERFORMANCE_PROFILING
- time_start = Get_Current_Time_us();
- #endif
- ret = ufs_aio_block_write(UFS_DEFAULT_HOST_ID, lun, blknr, blks, (unsigned long *)buf);
- #ifdef UFS_CFG_PERFORMANCE_PROFILING
- time_end = Get_Current_Time_us();
- if (time_start != time_end)
- UFS_DBG_LOGD("[UFS] perf (ufs_bwrite): w,%d,%d,%d,%d KB/s\n", lun, blknr, blks, (blks * 4 * 1000000) / (time_end - time_start));
- #endif
- UFS_DBG_LOGD("[UFS] ufs_bwrite,ret=%d\n", ret);
- return ret;
- }
- __WEAK status_t interface_ufs_init(u32 boot_channel)
- {
- status_t ret;
- struct ufs_hba * hba = &g_ufs_hba;
- ufs_aio_blkdev_t *bdev = &g_ufs_dev;
- LOGI("[UFS] info: ufs init start\n");
- ufs_aio_cfg_mode(UFS_DEFAULT_HOST_ID, UFS_MODE_DEFAULT);
- ret = ufshcd_init();
- hba->active_lun = -1;
- if (UFS_ERR_NONE != ret) {
- LOGI("[UFS] err: ufshcd_init failed, err: %d\n", ret);
- return STATUS_UFS_ERR;
- }
- memset(bdev, 0, sizeof(ufs_aio_blkdev_t));
- bdev->type = BLKDEV_UFS;
- bdev->blkbuf = (u8 *)&g_ufs_internal_buf[0];
- bdev->blksz = UFS_BLOCK_SIZE;
- bdev->erasesz = UFS_BLOCK_SIZE;
- bdev->bread = ufs_bread;
- bdev->bwrite = ufs_bwrite;
- //bdev->blks = card->nblks;
- //bdev->priv = NULL;
- if (0 != ufs_aio_blkdev_register(bdev)) {
- LOGI("[UFS] err: blkdev_register failed, err: %d\n", ret);
- return STATUS_UFS_ERR;
- }
- #ifdef UFS_CFG_PERFORMANCE_PROFILING
- GPT_Timer_Init();
- #endif
- LOGI("[UFS] info: ufs clear write protect\n");
- if (ufs_clr_write_protect())
- LOGE("[UFS] err: clear write protect fail!!!\n");
- LOGI("[UFS] info: ufs init ok\n");
- return STATUS_OK;
- }
- __WEAK status_t interface_switch_ufs_section(u32 section)
- {
- struct ufs_hba *hba = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- u8 lun;
- LOGV("[UFS] switch to section %d\n", section);
- switch (section) {
- case UFS_SECTION_LU0:
- lun = 0;
- break;
- case UFS_SECTION_LU1:
- lun = 1;
- break;
- case UFS_SECTION_LU2:
- lun = 2;
- break;
- default:
- LOGE("[UFS] err: interface_switch_ufs_section: Invalid UFS LU %d\n", section);
- return STATUS_UFS_ERR;
- }
- hba->active_lun = lun;
- return STATUS_OK;
- }
- __WEAK status_t interface_ufs_write(u64 address, u8* buffer, u64 length)
- {
- int ret = STATUS_OK;
- struct ufs_hba *hba = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- #ifdef UFS_CFG_PERFORMANCE_PROFILING
- u32 time_start, time_end;
- u32 last_write_time;
- #endif
- if (-1 == hba->active_lun) {
- LOGD("[UFS] err: interface_ufs_write: active_lun is not initialized");
- return STATUS_UFS_ERR;
- }
- UFS_DBG_LOGD("[UFS] interface_ufs_write, %llx, %llx, 0x%x\n", address, length, (u32)&buffer[0]);
- #ifdef UFS_CFG_PERFORMANCE_PROFILING
- time_start = Get_Current_Time_us();
- last_write_time = g_ufs_last_write_time;
- g_ufs_last_write_time = time_start;
- #endif
- ret = ufs_aio_generic_write(address, buffer, length);
- #ifdef UFS_CFG_PERFORMANCE_PROFILING
- time_end = Get_Current_Time_us();
- if (time_start != time_end)
- UFS_DBG_LOGD("[UFS] perf (interface_ufs_write): w,%d,%lld,%d,%d KB/s,%d us\n", hba->active_lun, address, (u32)length, (u32)((length / 1024) * 1000000) / (time_end - time_start), time_start - last_write_time);
- #endif
- LOGD("[UFS] interface_ufs_write, ret: %d\n", ret);
- return ufs_aio_err_trans(ret);
- }
- __WEAK status_t interface_ufs_read(u64 address, u8* buffer, u64 length)
- {
- int ret = STATUS_OK;
- struct ufs_hba *hba = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- #ifdef UFS_CFG_PERFORMANCE_PROFILING
- u32 time_start, time_end;
- u32 last_read_time;
- #endif
- if (-1 == hba->active_lun) {
- LOGD("[UFS] err: interface_ufs_write: active_lun is not initialized");
- return STATUS_UFS_ERR;
- }
- UFS_DBG_LOGD("[UFS] interface_ufs_read,%llx, %llx, 0x%x\n", address, length, (u32)&buffer[0]);
- #ifdef UFS_CFG_PERFORMANCE_PROFILING
- time_start = Get_Current_Time_us();
- last_read_time = g_ufs_last_read_time;
- g_ufs_last_read_time = time_start;
- #endif
- ret = ufs_aio_generic_read(address, buffer, length);
- #ifdef UFS_CFG_PERFORMANCE_PROFILING
- time_end = Get_Current_Time_us();
- if (time_start != time_end)
- UFS_DBG_LOGD("[UFS] perf (interface_ufs_read): r,%d,%lld,%d,%d KB/s,%d us\n", hba->active_lun, address, (u32)length, (u32)((length / 1024) * 1000000) / (time_end - time_start), time_start - last_read_time);
- #endif
- LOGD("[UFS] interface_ufs_read, ret: %d\n", ret);
- return ufs_aio_err_trans(ret);
- }
- __WEAK status_t interface_ufs_erase(u64 address, u64 length, const struct progress_cb* cb)
- {
- int ret = STATUS_OK;
- uint32 stop_flag = 0;
- uint32 progress = 0;
- struct ufs_hba *hba = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- u32 blk_start = (u32)(address / (u64)UFS_BLOCK_SIZE);
- u32 blk_cnt = (u32)(length / (u64)UFS_BLOCK_SIZE);
- u32 blk_cnt_1_100;
- if (-1 == hba->active_lun) {
- LOGE("[UFS] err: interface_ufs_write: active_lun is not initialized");
- return STATUS_UFS_ERR;
- }
- UFS_DBG_LOGD("[UFS] info: erase %llx,%llx,%d,%d,%d\n", address, length, hba->active_lun, blk_start, blk_cnt);
- /* If erase size < 4MB, no separate, erase in one time */
- blk_cnt_1_100 = (blk_cnt / 100) & (0xFFFFFC00);
- while (blk_cnt) {
- if ((blk_cnt >= blk_cnt_1_100) && (blk_cnt_1_100 > 0)) {
- ret = hba->blk_erase(hba, hba->active_lun, blk_start, blk_cnt_1_100);
- if (ret != UFS_ERR_NONE) {
- LOGE("[UFS] err: erase failed, ret: %d\n", ret);
- break;
- }
- blk_start += blk_cnt_1_100;
- blk_cnt -= blk_cnt_1_100;
- if ((cb) && (progress < 100)) {
- ret = cb->cb(cb->user_arg, progress, &stop_flag);
- if(FAIL(ret))
- break;
- progress++;
- }
- } else {
- ret = hba->blk_erase(hba, hba->active_lun, blk_start, blk_cnt);
- if (ret != UFS_ERR_NONE) {
- LOGE("[UFS] err: erase failed, ret: %d\n", ret);
- break;
- }
- if (cb)
- cb->cb(cb->user_arg, 100, &stop_flag);
- break;
- }
- }
- return ufs_aio_err_trans(ret);
- }
- __WEAK status_t interface_get_ufs_info(struct ufs_info_struct* info)
- {
- int ret, i;
- u32 blk_size=0, blk_cnt=0;
- struct ufs_hba *hba = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- memset(info, 0, sizeof(struct ufs_info_struct));
- // get type
- info->type = STORAGE_UFS;
- // get LU size
- ret = ufs_aio_read_unit_desc_cfg_param(hba);
- if (UFS_ERR_NONE != ret) {
- UFS_DBG_LOGD("[UFS] err: interface_get_ufs_info is failed\n");
- return STATUS_UFS_ERR;
- }
- for (i = 0; i < UFS_UPIU_MAX_GENERAL_LUN; i++) {
- if (hba->unit_desc_cfg_param[i].b_lu_enable) {
- ufs_aio_get_lu_size(hba, i, &blk_size, &blk_cnt);
- *((u64 *)&info->lu0_size + i) = (u64)blk_size * (u64)blk_cnt;
- }
- }
- info->block_size = blk_size;
- // get UFS product ID and fw ver.
- if (hba->dev_info.product_id[0] != 0) {
- strlcpy((char *)info->cid, hba->dev_info.product_id, MAX_PRODUCT_ID_LEN + 1);
- UFS_DBG_LOGE("[UFS] ufs id : %s\n", info->cid);
- }
- if (hba->dev_info.product_revision_level[0] != 0) {
- strlcpy((char *)info->fwver, hba->dev_info.product_revision_level, MAX_PRODUCT_REVISION_LEVEL_LEN + 1);
- UFS_DBG_LOGE("[UFS] fwver: %s\n", info->fwver);
- }
- // get UFS serial number
- if (hba->dev_info.serial_number_len != 0) {
- strlcpy((char *)info->sn, hba->dev_info.serial_number, hba->dev_info.serial_number_len * 2 + 1);
- UFS_DBG_LOGE("[UFS] sn: %s\n", info->sn);
- }
- // get UFS vendor id
- info->vendor_id = hba->dev_info.wmanufacturerid;
- UFS_DBG_LOGE("[UFS] vendor id: 0x%x\n", info->vendor_id);
- // get UFS health
- info->pre_eol_info = hba->dev_info.pre_eol_info;
- info->life_time_est_a = hba->dev_info.life_time_est_a;
- info->life_time_est_b = hba->dev_info.life_time_est_b;
- return STATUS_OK;
- }
- __WEAK extern status_t interface_ufs_device_ctrl(u32 ctrl_code, void* in, u32 in_len, void* out, u32 out_len, u32* ret_len)
- {
- int ret = STATUS_OK;;
- struct ufs_hba *hba = ufs_aio_get_host(UFS_DEFAULT_HOST_ID);
- u64 otp_start_address = 0;
- switch (ctrl_code) {
- case STORAGE_CRCODE_GET_ACTIVE_BOOT_SECTION:
- /* deprecated */
- break;
- case STORAGE_CRCODE_OTP_LOCK:
- otp_start_address = *(u64*)in;
- UFS_DBG_LOGD("[UFS][%s] STORAGE_CRCODE_OTP_LOCK, otp_start: %llx (blk %d), otp_len: %d\n",
- __func__, otp_start_address, (u32)(otp_start_address / UFS_BLOCK_SIZE), in_len);
- #if !defined(UFS_CFG_OTP_FOR_SQC_UNLOCK)
- ret = ufs_aio_otp_lock(hba, otp_start_address);
- #else
- ret = ufs_aio_otp_unlock(hba, otp_start_address);
- #endif
- UFS_DBG_LOGD("[UFS][%s] STORAGE_CRCODE_OTP_LOCK, ret: %d\n", __func__, ret);
- ret = ufs_aio_err_trans(ret);
- break;
- case STORAGE_CRCODE_CHECK_OTP_LOCK_STATUS:
- otp_start_address = *(u64*)in;
- ret = ufs_aio_otp_get_lock_status(hba, otp_start_address);
- if (ret < 0) {
- UFS_DBG_LOGE("[UFS][%s] ERROR: get lock status failed\n", __func__);
- break;
- }
- UFS_DBG_LOGD("[UFS][%s] STORAGE_CRCODE_CHECK_OTP_LOCK_STATUS, ret: %d (1: locked, 0: unlocked)\n", __func__, ret);
- if (ret == 1)
- ret = STATUS_OTP_LOCKED;
- else
- ret = STATUS_OTP_UNLOCKED;
- break;
- case STORAGE_CRCODE_RECTIFY_OTP_ADDRESS:
- #define ROUND_TO_BLOCK(x,y) (((x) + (y-1)) & (~(y-1)))
- otp_start_address = *(u64*)in;
- UFS_DBG_LOGD("[UFS][%s] STORAGE_CRCODE_RECTIFY_OTP_ADDRESS, otp_start: %llx (blk %d)\n",
- __func__, otp_start_address, (u32)(otp_start_address / UFS_BLOCK_SIZE));
- otp_start_address = ROUND_TO_BLOCK(otp_start_address, (u64)UFS_BLOCK_SIZE);
- *(u64*)out = otp_start_address ;
- UFS_DBG_LOGD("[UFS][%s] STORAGE_CRCODE_RECTIFY_OTP_ADDRESS, otp_start (aligned): %llx (blk %d)\n",
- __func__, otp_start_address, (u32)(otp_start_address / UFS_BLOCK_SIZE));
- if (ret_len != NULL)
- *ret_len = sizeof(u64);
- break;
- case STORAGE_CRCODE_DOWNLOAD_BL_PROCESS:
- // in DA, always set boot from LU A
- // this attribute may be changed by OTA(MOTA/FOTA) process in the future
- ret = ufs_aio_set_boot_lu(hba, ATTR_B_BOOT_LUN_EN_BOOT_LU_A);
- break;
- case STORAGE_CRCODE_STOR_LIFE_CYCLE_CHECK:
- if (hba->dev_info.pre_eol_info == 0x3
- || hba->dev_info.life_time_est_a >= 0xa || hba->dev_info.life_time_est_b >= 0xa)
- ret = STATUS_STOR_LIFE_EXHAUST;
- else if (hba->dev_info.pre_eol_info == 0x2
- || hba->dev_info.life_time_est_a == 0x9 || hba->dev_info.life_time_est_b == 0x9)
- ret = STATUS_STOR_LIFE_WARN;
- else if (hba->dev_info.pre_eol_info == 0x1 || (hba->dev_info.life_time_est_a >= 0x1 && hba->dev_info.life_time_est_a <= 0x8)
- || (hba->dev_info.life_time_est_b >= 0x1 && hba->dev_info.life_time_est_b <= 0x8))
- ret = STATUS_OK;
- break;
- case STORAGE_CRCODE_FIELD_FIRMWARE_UPDATE:
- ret = hba->ffu_write(hba, in, in_len);
- if (ret == UFS_ERR_NONE) {
- UFS_DBG_LOGI("[UFS] ffu success, fw size=%d\n", in_len);
- /* Clear bootable to make sure device desc update and provision */
- hba->dev_info.bootable = 0;
- } else {
- ret = STATUS_UFS_ERR;
- UFS_DBG_LOGE("[UFS] ffu fail, fw size=%d\n", in_len);
- }
- break;
- /* For custom setting */
- case STORAGE_CRCODE_SET_UFS_FORCE_PROVISION:
- hba->custom_info.force_provision = TRUE;
- hba->custom_info.custom_flag |= CUSTOM_FORCE_PROVISION;
- break;
- case STORAGE_CRCODE_SET_UFS_TW_GB:
- hba->custom_info.tw_size_gb = *(u32*) in;;
- hba->custom_info.custom_flag |= CUSTOM_TW_GB;
- break;
- case STORAGE_CRCODE_SET_UFS_TW_NO_RED:
- hba->custom_info.tw_no_red = *(u32*) in;;
- hba->custom_info.custom_flag |= CUSTOM_TW_NO_RED;
- break;
- case STORAGE_CRCODE_SET_UFS_HPB_REGION_COUNT:
- hba->custom_info.hpb_size_gb = *(u32*) in;
- hba->custom_info.custom_flag |= CUSTOM_HPB_REGION_COUNT;
- break;
- default:
- UFS_DBG_LOGI("[UFS] unsupport ctrl_code=%d", ctrl_code);
- ret = STATUS_UNSUPPORT_OP;
- break;
- }
- return ret;
- }
- #endif
- #if defined(MTK_UFS_DRV_CTP)
- __WEAK int ufs_ctp_write(u32 blknr, u32 blkcnt, u8 *buf, u8 lu)
- {
- int ret;
- ret = ufs_aio_block_write(UFS_DEFAULT_HOST_ID, lu, blknr, blkcnt, (unsigned long *)buf);
- return ret;
- }
- __WEAK int ufs_ctp_read(u32 blknr, u32 blkcnt, u8 *buf, u8 lu)
- {
- int ret;
- ret = ufs_aio_block_read(UFS_DEFAULT_HOST_ID, lu, blknr, blkcnt, (unsigned long *)buf);
- return ret;
- }
- __WEAK int ufs_ctp_init(void)
- {
- int ret;
- UFS_DBG_LOGI("[UFS] info: ufs init start\n");
- ufs_aio_cfg_mode(UFS_DEFAULT_HOST_ID, UFS_MODE_DEFAULT);
- ret = ufshcd_init();
- if (UFS_ERR_NONE != ret) {
- UFS_DBG_LOGI("[UFS] err: ufshcd_init failed, err: %d\n", ret);
- goto out;
- }
- if (ret) {
- UFS_DBG_LOGI("[UFS] err: blkdev_register failed, err: %d\n", ret);
- goto out;
- }
- UFS_DBG_LOGI("[UFS] info: ufs init ok\n");
- out:
- return ret;
- }
- int ufs_switch_part(u32 part_id)
- {
- u8 lun;
- switch (part_id) {
- case UFS_LU_BOOT1:
- lun = UFS_LU_0;
- break;
- case UFS_LU_BOOT2:
- lun = UFS_LU_1;
- break;
- case UFS_LU_USER:
- lun = UFS_LU_2;
- break;
- default:
- UFS_DBG_LOGD("[UFS] err: ufs_switch_part, invalid UFS LU %d\n", part_id);
- return UFS_ERR_INVALID_LU;
- }
- UFS_DBG_LOGD("[UFS] switch to part %d, lun %d\n", part_id, lun);
- return (int)lun;
- }
- /* Exported API for read storage device initialization */
- void storage_init(void)
- {
- return ufs_ctp_init();
- }
- /* Exported API for read user partition */
- int storage_read(u32 blk_start, u32 blk_cnt, void *buf)
- {
- int lun;
- if ((unsigned long)buf % 4) {
- UFS_DBG_LOGE("[UFS] ERROR: %s: buf 0x%x shall be 4-byte aligned\n", __func__, (unsigned long *)buf);
- return UFS_ERR_INVALID_ALIGNMENT;
- }
- UFS_DBG_LOGV("[UFS] storage_ctp_read: r, %d, %d, 0x%x\n", __func__, blk_start, blk_cnt, (unsigned long *)buf);
- lun = ufs_switch_part(UFS_LU_USER);
- if (lun < 0)
- return lun;
- return ufs_ctp_read(blk_start, blk_cnt, buf, lun);
- }
- /* Exported API for write user partition */
- int storage_write(u32 blk_start, u32 blk_cnt, void *buf)
- {
- int lun;
- if ((unsigned long)buf % 4) {
- UFS_DBG_LOGE("[UFS] ERROR: %s: buf 0x%x shall be 4-byte aligned\n", __func__, (unsigned long *)buf);
- return UFS_ERR_INVALID_ALIGNMENT;
- }
- UFS_DBG_LOGV("[UFS] %s: r, %d, %d, 0x%x\n", __func__, blk_start, blk_cnt, (unsigned long *)buf);
- lun = ufs_switch_part(UFS_LU_USER);
- if (lun < 0)
- return lun;
- return ufs_ctp_write(blk_start, blk_cnt, buf, lun);
- }
- #endif
|