forked from Minki/linux
staging "sep" Fix typos found while reading.
Signed-off-by: Justin P. Mattock <justinmattock@gmail.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
This commit is contained in:
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7a2ea600fc
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e34995148a
@ -807,7 +807,7 @@ end_function:
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* @size: size of parameter to copy (in bytes)
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* @max_size: size to move up offset; SEP mesg is in word sizes
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* @msg_offset: pointer to current offset (is updated)
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* @byte_array: flag ti indicate wheter endian must be changed
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* @byte_array: flag ti indicate whether endian must be changed
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* Copies data into the message area from caller
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*/
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static void sep_write_msg(struct this_task_ctx *ta_ctx, void *in_addr,
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@ -855,7 +855,7 @@ static void sep_make_header(struct this_task_ctx *ta_ctx, u32 *msg_offset,
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* @size: size of parameter to copy (in bytes)
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* @max_size: size to move up offset; SEP mesg is in word sizes
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* @msg_offset: pointer to current offset (is updated)
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* @byte_array: flag ti indicate wheter endian must be changed
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* @byte_array: flag ti indicate whether endian must be changed
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* Copies data out of the message area to caller
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*/
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static void sep_read_msg(struct this_task_ctx *ta_ctx, void *in_addr,
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@ -990,7 +990,7 @@ static void sep_clear_out(struct this_task_ctx *ta_ctx)
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/**
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* The following unlocks the sep and makes it available
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* to any other application
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* First, null out crypto entries in sep before relesing it
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* First, null out crypto entries in sep before releasing it
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*/
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ta_ctx->sep_used->current_hash_req = NULL;
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ta_ctx->sep_used->current_cypher_req = NULL;
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@ -1001,7 +1001,7 @@ static void sep_clear_out(struct this_task_ctx *ta_ctx)
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ta_ctx->call_status.status = 0;
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/* Remove anything confidentail */
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/* Remove anything confidential */
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memset(ta_ctx->sep_used->shared_addr, 0,
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SEP_DRIVER_MESSAGE_SHARED_AREA_SIZE_IN_BYTES);
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@ -1207,7 +1207,7 @@ static int sep_crypto_block_data(struct ablkcipher_request *req)
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req->nbytes, ta_ctx->walk.blocksize, &new_sg, 1);
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if (int_error < 0) {
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dev_warn(&ta_ctx->sep_used->pdev->dev, "oddball page eerror\n");
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dev_warn(&ta_ctx->sep_used->pdev->dev, "oddball page error\n");
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return -ENOMEM;
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} else if (int_error == 1) {
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ta_ctx->src_sg = new_sg;
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@ -1870,7 +1870,7 @@ static u32 hash_update_post_op(struct sep_device *sep)
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sizeof(struct sep_hash_private_context));
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/**
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* Following is only for finup; if we just completd the
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* Following is only for finup; if we just completed the
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* data portion of finup, we now need to kick off the
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* finish portion of finup.
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*/
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@ -2011,7 +2011,7 @@ static u32 hash_digest_post_op(struct sep_device *sep)
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}
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/**
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* The sep_finish function is the function that is schedule (via tasket)
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* The sep_finish function is the function that is scheduled (via tasklet)
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* by the interrupt service routine when the SEP sends and interrupt
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* This is only called by the interrupt handler as a tasklet.
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*/
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@ -2249,7 +2249,7 @@ static void sep_hash_update(void *data)
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head_len = (block_size - int_ctx->prev_update_bytes) % block_size;
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tail_len = (req->nbytes - head_len) % block_size;
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/* Make sure all pages are even block */
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/* Make sure all pages are an even block */
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int_error = sep_oddball_pages(ta_ctx->sep_used, req->src,
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req->nbytes,
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block_size, &new_sg, 1);
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@ -2482,7 +2482,7 @@ static void sep_hash_digest(void *data)
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dev_dbg(&ta_ctx->sep_used->pdev->dev, "block_size is %x\n", block_size);
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dev_dbg(&ta_ctx->sep_used->pdev->dev, "tail len is %x\n", tail_len);
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/* Make sure all pages are even block */
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/* Make sure all pages are an even block */
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int_error = sep_oddball_pages(ta_ctx->sep_used, req->src,
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req->nbytes,
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block_size, &new_sg, 1);
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@ -91,7 +91,7 @@ struct sep_dcblock {
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};
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/*
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command structure for building dcb block (currently for ext app only
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command structure for building dcb block (currently for ext app only)
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*/
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struct build_dcb_struct {
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/* address value of the data in */
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@ -234,7 +234,7 @@ struct sep_dma_context {
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u32 dmatables_len;
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/* size of input data */
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u32 input_data_len;
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/* secure dma use (for imr memory restriced area in output */
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/* secure dma use (for imr memory restricted area in output) */
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bool secure_dma;
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struct sep_dma_resource dma_res_arr[SEP_MAX_NUM_SYNC_DMA_OPS];
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/* Scatter gather for kernel crypto */
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@ -347,10 +347,10 @@ int sep_prepare_input_output_dma_table_in_dcb(struct sep_device *sep,
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/**
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* sep_free_dma_table_data_handler - free DMA table
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* @sep: pointere to struct sep_device
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* @sep: pointer to struct sep_device
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* @dma_ctx: dma context
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*
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* Handles the request to free DMA table for synchronic actions
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* Handles the request to free DMA table for synchronic actions
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*/
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int sep_free_dma_table_data_handler(struct sep_device *sep,
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struct sep_dma_context **dma_ctx);
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@ -43,7 +43,7 @@
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#define SEP_DRIVER_POLLING_MODE 0
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/* flag which defines if the shared area address should be
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reconfiged (send to SEP anew) during init of the driver */
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reconfigured (send to SEP anew) during init of the driver */
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#define SEP_DRIVER_RECONFIG_MESSAGE_AREA 0
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/* the mode for running on the ARM1172 Evaluation platform (flag is 1) */
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@ -166,7 +166,7 @@ held by the process (struct file) */
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(SEP_DRIVER_STATIC_AREA_OFFSET_IN_BYTES + \
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SEP_DRIVER_STATIC_AREA_SIZE_IN_BYTES)
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/* synhronic dma tables area offset */
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/* synchronic dma tables area offset */
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#define SYNCHRONIC_DMA_TABLES_AREA_OFFSET_BYTES \
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(SEP_DRIVER_DATA_POOL_AREA_OFFSET_IN_BYTES + \
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SEP_DRIVER_DATA_POOL_SHARED_AREA_SIZE_IN_BYTES)
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@ -94,7 +94,7 @@
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#endif
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/**
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* Currenlty, there is only one SEP device per platform;
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* Currently, there is only one SEP device per platform;
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* In event platforms in the future have more than one SEP
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* device, this will be a linked list
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*/
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@ -106,7 +106,7 @@ struct sep_device *sep_dev;
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* @sep: SEP device
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* @sep_queue_info: pointer to status queue
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*
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* This function will removes information about transaction from the queue.
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* This function will remove information about transaction from the queue.
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*/
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void sep_queue_status_remove(struct sep_device *sep,
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struct sep_queue_info **queue_elem)
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@ -294,7 +294,7 @@ int sep_wait_transaction(struct sep_device *sep)
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end_function_setpid:
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/*
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* The pid_doing_transaction indicates that this process
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* now owns the facilities to performa a transaction with
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* now owns the facilities to perform a transaction with
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* the SEP. While this process is performing a transaction,
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* no other process who has the SEP device open can perform
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* any transactions. This method allows more than one process
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@ -447,10 +447,10 @@ static int sep_open(struct inode *inode, struct file *filp)
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/**
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* sep_free_dma_table_data_handler - free DMA table
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* @sep: pointere to struct sep_device
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* @sep: pointer to struct sep_device
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* @dma_ctx: dma context
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*
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* Handles the request to free DMA table for synchronic actions
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* Handles the request to free DMA table for synchronic actions
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*/
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int sep_free_dma_table_data_handler(struct sep_device *sep,
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struct sep_dma_context **dma_ctx)
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@ -540,7 +540,7 @@ int sep_free_dma_table_data_handler(struct sep_device *sep,
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* don't have a page array; the page array is generated
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* only in the lock_user_pages, which is not called
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* for kernel crypto, which is what the sg (scatter gather
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* is used for exclusively
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* is used for exclusively)
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*/
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if (dma->src_sg) {
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dma_unmap_sg(&sep->pdev->dev, dma->src_sg,
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@ -1227,7 +1227,7 @@ static int sep_lock_user_pages(struct sep_device *sep,
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/* Map array */
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struct sep_dma_map *map_array;
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/* Set start and end pages and num pages */
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/* Set start and end pages and num pages */
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end_page = (app_virt_addr + data_size - 1) >> PAGE_SHIFT;
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start_page = app_virt_addr >> PAGE_SHIFT;
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num_pages = end_page - start_page + 1;
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@ -1431,7 +1431,7 @@ static int sep_lli_table_secure_dma(struct sep_device *sep,
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/* Array of lli */
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struct sep_lli_entry *lli_array;
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/* Set start and end pages and num pages */
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/* Set start and end pages and num pages */
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end_page = (app_virt_addr + data_size - 1) >> PAGE_SHIFT;
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start_page = app_virt_addr >> PAGE_SHIFT;
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num_pages = end_page - start_page + 1;
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@ -1602,7 +1602,7 @@ end_function:
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* @num_table_entries_ptr: pointer to number of tables
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* @table_data_size: total data size
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*
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* Builds ant lli table from the lli_array according to
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* Builds an lli table from the lli_array according to
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* the given size of data
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*/
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static void sep_build_lli_table(struct sep_device *sep,
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@ -1701,7 +1701,7 @@ static void sep_build_lli_table(struct sep_device *sep,
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* @virt_address: virtual address to convert
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*
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* This functions returns the physical address inside shared area according
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* to the virtual address. It can be either on the externa RAM device
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* to the virtual address. It can be either on the external RAM device
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* (ioremapped), or on the system RAM
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* This implementation is for the external RAM
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*/
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@ -1725,7 +1725,7 @@ static dma_addr_t sep_shared_area_virt_to_bus(struct sep_device *sep,
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*
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* This functions returns the virtual address inside shared area
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* according to the physical address. It can be either on the
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* externa RAM device (ioremapped), or on the system RAM
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* external RAM device (ioremapped), or on the system RAM
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* This implementation is for the external RAM
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*/
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static void *sep_shared_area_bus_to_virt(struct sep_device *sep,
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@ -1891,9 +1891,9 @@ static void sep_prepare_empty_lli_table(struct sep_device *sep,
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* @lli_table_ptr:
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* @num_entries_ptr:
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* @table_data_size_ptr:
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* @is_kva: set for kernel data (kernel cryptio call)
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* @is_kva: set for kernel data (kernel crypt io call)
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*
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* This function prepares only input DMA table for synhronic symmetric
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* This function prepares only input DMA table for synchronic symmetric
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* operations (HASH)
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* Note that all bus addresses that are passed to the SEP
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* are in 32 bit format; the SEP is a 32 bit device
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@ -2174,9 +2174,9 @@ static int sep_construct_dma_tables_from_lli(
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u32 last_table_flag = 0;
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/* The data size that should be in table */
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u32 table_data_size = 0;
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/* Number of etnries in the input table */
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/* Number of entries in the input table */
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u32 num_entries_in_table = 0;
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/* Number of etnries in the output table */
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/* Number of entries in the output table */
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u32 num_entries_out_table = 0;
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if (!dma_ctx) {
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@ -2401,7 +2401,7 @@ static int sep_construct_dma_tables_from_lli(
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* @table_data_size_ptr:
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* @is_kva: set for kernel data; used only for kernel crypto module
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*
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* This function builds input and output DMA tables for synhronic
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* This function builds input and output DMA tables for synchronic
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* symmetric operations (AES, DES, HASH). It also checks that each table
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* is of the modular block size
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* Note that all bus addresses that are passed to the SEP
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@ -2556,7 +2556,7 @@ static int sep_prepare_input_output_dma_table(struct sep_device *sep,
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"[PID%d] SEP_DRIVER_ENTRIES_PER_TABLE_IN_SEP is (hex) %x\n",
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current->pid, SEP_DRIVER_ENTRIES_PER_TABLE_IN_SEP);
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/* Call the fucntion that creates table from the lli arrays */
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/* Call the function that creates table from the lli arrays */
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dev_dbg(&sep->pdev->dev, "[PID%d] calling create table from lli\n",
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current->pid);
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error = sep_construct_dma_tables_from_lli(
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@ -3663,7 +3663,7 @@ static ssize_t sep_read(struct file *filp,
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goto end_function;
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}
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/* Checks that user has called necessarry apis */
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/* Checks that user has called necessary apis */
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if (0 == test_bit(SEP_FASTCALL_WRITE_DONE_OFFSET,
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&call_status->status)) {
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dev_warn(&sep->pdev->dev,
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