dummy_buf
char dummy_buf[2];
buf = dummy_buf;
u8 *dummy_buf;
dummy_buf = kzalloc(EFINIX_SPI_IDLE_CYCLES_BYTES, GFP_KERNEL);
if (!dummy_buf) {
clk_cycles.tx_buf = dummy_buf;
kfree(dummy_buf);
uint8_t dummy_buf[1] = {0};
&dummy_buf[0], 1);
&dummy_buf[0], 1);
&dummy_buf[0], 1);
uint8_t dummy_buf[1] = {0};
&dummy_buf[0], 1);
dummy_buf[0] = 0x01;
&dummy_buf[0], 1,
struct unicam_buffer dummy_buf;
node->dummy_buf.size = UNICAM_DUMMY_BUF_SIZE;
node->dummy_buf.size,
&node->dummy_buf.dma_addr,
dma_free_coherent(unicam->dev, node->dummy_buf.size,
node->dummy_buf.dma_addr);
dma_free_coherent(unicam->dev, node->dummy_buf.size,
node->dummy_buf.dma_addr);
(buf != &node->dummy_buf ? buf->size : 0);
unicam_wr_dma_addr(node, &node->dummy_buf);
struct rkisp1_dummy_buffer *dummy_buf = &cap->buf.dummy;
dummy_buf->size = max3(rkisp1_pixfmt_comp_size(pixm, RKISP1_PLANE_Y),
dummy_buf->vaddr = dma_alloc_attrs(cap->rkisp1->dev,
dummy_buf->size,
&dummy_buf->dma_addr,
if (!dummy_buf->vaddr)
xfers[index].tx_buf = ddata->dummy_buf;
ddata->dummy_buf = devm_kzalloc(dev, ddata->spi_padding_bytes, GFP_KERNEL);
if (!ddata->dummy_buf)
void *dummy_buf;
uint8_t *dummy_buf;
lpc32xx_read_page(chip, host->dummy_buf, 1, page);
host->dummy_buf = devm_kzalloc(dev, mtd->writesize, GFP_KERNEL);
if (!host->dummy_buf)
kfree(dummy_buf);
dummy_buf = NULL;
if (dummy_buf == NULL) {
dummy_buf = kmalloc(RX_BUFLEN+2, GFP_KERNEL);
if (dummy_buf == NULL)
data = dummy_buf;
data = skb? skb->data: dummy_buf;
static unsigned char *dummy_buf;
src_vq->buf_struct_size = sizeof(struct dummy_buf);
dst_vq->buf_struct_size = sizeof(struct dummy_buf);
void *dummy_buf)
sg_set_buf(&sg_out[0], dummy_buf, sync_size);
dummy_buf += sync_size;
sg_set_buf(&sg_out[2], dummy_buf, cipher_desc->tag);
void *buf, *iv, *aad, *dummy_buf, *salt;
dummy_buf = aad + TLS_AAD_SPACE_SIZE;
payload_len, sync_size, dummy_buf);