habanalabs/goya: move dma direction enum to uapi file

The values in this enum are not used by h/w but are a contract
between userspace and the kernel driver so they must be defined
in the uapi file.

Signed-off-by: Oded Gabbay <ogabbay@kernel.org>
This commit is contained in:
Oded Gabbay 2022-06-24 13:36:10 +03:00
parent 7659c30d19
commit 5125aa3368
3 changed files with 41 additions and 26 deletions

View file

@ -3403,7 +3403,7 @@ static int goya_validate_dma_pkt_host(struct hl_device *hdev,
{
u64 device_memory_addr, addr;
enum dma_data_direction dir;
enum goya_dma_direction user_dir;
enum hl_goya_dma_direction user_dir;
bool sram_addr = true;
bool skip_host_mem_pin = false;
bool user_memset;
@ -3419,7 +3419,7 @@ static int goya_validate_dma_pkt_host(struct hl_device *hdev,
GOYA_PKT_LIN_DMA_CTL_MEMSET_SHIFT;
switch (user_dir) {
case DMA_HOST_TO_DRAM:
case HL_DMA_HOST_TO_DRAM:
dev_dbg(hdev->dev, "DMA direction is HOST --> DRAM\n");
dir = DMA_TO_DEVICE;
sram_addr = false;
@ -3429,7 +3429,7 @@ static int goya_validate_dma_pkt_host(struct hl_device *hdev,
skip_host_mem_pin = true;
break;
case DMA_DRAM_TO_HOST:
case HL_DMA_DRAM_TO_HOST:
dev_dbg(hdev->dev, "DMA direction is DRAM --> HOST\n");
dir = DMA_FROM_DEVICE;
sram_addr = false;
@ -3437,7 +3437,7 @@ static int goya_validate_dma_pkt_host(struct hl_device *hdev,
device_memory_addr = le64_to_cpu(user_dma_pkt->src_addr);
break;
case DMA_HOST_TO_SRAM:
case HL_DMA_HOST_TO_SRAM:
dev_dbg(hdev->dev, "DMA direction is HOST --> SRAM\n");
dir = DMA_TO_DEVICE;
addr = le64_to_cpu(user_dma_pkt->src_addr);
@ -3446,14 +3446,14 @@ static int goya_validate_dma_pkt_host(struct hl_device *hdev,
skip_host_mem_pin = true;
break;
case DMA_SRAM_TO_HOST:
case HL_DMA_SRAM_TO_HOST:
dev_dbg(hdev->dev, "DMA direction is SRAM --> HOST\n");
dir = DMA_FROM_DEVICE;
addr = le64_to_cpu(user_dma_pkt->dst_addr);
device_memory_addr = le64_to_cpu(user_dma_pkt->src_addr);
break;
default:
dev_err(hdev->dev, "DMA direction is undefined\n");
dev_err(hdev->dev, "DMA direction %d is unsupported/undefined\n", user_dir);
return -EFAULT;
}
@ -3505,14 +3505,14 @@ static int goya_validate_dma_pkt_no_host(struct hl_device *hdev,
struct packet_lin_dma *user_dma_pkt)
{
u64 sram_memory_addr, dram_memory_addr;
enum goya_dma_direction user_dir;
enum hl_goya_dma_direction user_dir;
u32 ctl;
ctl = le32_to_cpu(user_dma_pkt->ctl);
user_dir = (ctl & GOYA_PKT_LIN_DMA_CTL_DMA_DIR_MASK) >>
GOYA_PKT_LIN_DMA_CTL_DMA_DIR_SHIFT;
if (user_dir == DMA_DRAM_TO_SRAM) {
if (user_dir == HL_DMA_DRAM_TO_SRAM) {
dev_dbg(hdev->dev, "DMA direction is DRAM --> SRAM\n");
dram_memory_addr = le64_to_cpu(user_dma_pkt->src_addr);
sram_memory_addr = le64_to_cpu(user_dma_pkt->dst_addr);
@ -3549,7 +3549,7 @@ static int goya_validate_dma_pkt_no_mmu(struct hl_device *hdev,
struct hl_cs_parser *parser,
struct packet_lin_dma *user_dma_pkt)
{
enum goya_dma_direction user_dir;
enum hl_goya_dma_direction user_dir;
u32 ctl;
int rc;
@ -3574,7 +3574,7 @@ static int goya_validate_dma_pkt_no_mmu(struct hl_device *hdev,
return -EINVAL;
}
if ((user_dir == DMA_DRAM_TO_SRAM) || (user_dir == DMA_SRAM_TO_DRAM))
if ((user_dir == HL_DMA_DRAM_TO_SRAM) || (user_dir == HL_DMA_SRAM_TO_DRAM))
rc = goya_validate_dma_pkt_no_host(hdev, parser, user_dma_pkt);
else
rc = goya_validate_dma_pkt_host(hdev, parser, user_dma_pkt);
@ -3781,7 +3781,7 @@ static int goya_patch_dma_packet(struct hl_device *hdev,
u32 count, dma_desc_cnt;
u64 len, len_next;
dma_addr_t dma_addr, dma_addr_next;
enum goya_dma_direction user_dir;
enum hl_goya_dma_direction user_dir;
u64 device_memory_addr, addr;
enum dma_data_direction dir;
struct sg_table *sgt;
@ -3797,14 +3797,14 @@ static int goya_patch_dma_packet(struct hl_device *hdev,
user_memset = (ctl & GOYA_PKT_LIN_DMA_CTL_MEMSET_MASK) >>
GOYA_PKT_LIN_DMA_CTL_MEMSET_SHIFT;
if ((user_dir == DMA_DRAM_TO_SRAM) || (user_dir == DMA_SRAM_TO_DRAM) ||
if ((user_dir == HL_DMA_DRAM_TO_SRAM) || (user_dir == HL_DMA_SRAM_TO_DRAM) ||
(user_dma_pkt->tsize == 0)) {
memcpy(new_dma_pkt, user_dma_pkt, sizeof(*new_dma_pkt));
*new_dma_pkt_size = sizeof(*new_dma_pkt);
return 0;
}
if ((user_dir == DMA_HOST_TO_DRAM) || (user_dir == DMA_HOST_TO_SRAM)) {
if ((user_dir == HL_DMA_HOST_TO_DRAM) || (user_dir == HL_DMA_HOST_TO_SRAM)) {
addr = le64_to_cpu(user_dma_pkt->src_addr);
device_memory_addr = le64_to_cpu(user_dma_pkt->dst_addr);
dir = DMA_TO_DEVICE;
@ -4804,7 +4804,7 @@ static int goya_memset_device_memory(struct hl_device *hdev, u64 addr, u64 size,
(1 << GOYA_PKT_LIN_DMA_CTL_WO_SHIFT) |
(1 << GOYA_PKT_CTL_RB_SHIFT) |
(1 << GOYA_PKT_CTL_MB_SHIFT));
ctl |= (is_dram ? DMA_HOST_TO_DRAM : DMA_HOST_TO_SRAM) <<
ctl |= (is_dram ? HL_DMA_HOST_TO_DRAM : HL_DMA_HOST_TO_SRAM) <<
GOYA_PKT_LIN_DMA_CTL_DMA_DIR_SHIFT;
lin_dma_pkt->ctl = cpu_to_le32(ctl);

View file

@ -28,18 +28,6 @@ enum packet_id {
PACKET_HEADER_PACKET_ID_SHIFT) + 1
};
enum goya_dma_direction {
DMA_HOST_TO_DRAM,
DMA_HOST_TO_SRAM,
DMA_DRAM_TO_SRAM,
DMA_SRAM_TO_DRAM,
DMA_SRAM_TO_HOST,
DMA_DRAM_TO_HOST,
DMA_DRAM_TO_DRAM,
DMA_SRAM_TO_SRAM,
DMA_ENUM_MAX
};
#define GOYA_PKT_CTL_OPCODE_SHIFT 24
#define GOYA_PKT_CTL_OPCODE_MASK 0x1F000000

View file

@ -275,6 +275,33 @@ enum hl_gaudi_pll_index {
HL_GAUDI_PLL_MAX
};
/**
* enum hl_goya_dma_direction - Direction of DMA operation inside a LIN_DMA packet that is
* submitted to the GOYA's DMA QMAN. This attribute is not relevant
* to the H/W but the kernel driver use it to parse the packet's
* addresses and patch/validate them.
* @HL_DMA_HOST_TO_DRAM: DMA operation from Host memory to GOYA's DDR.
* @HL_DMA_HOST_TO_SRAM: DMA operation from Host memory to GOYA's SRAM.
* @HL_DMA_DRAM_TO_SRAM: DMA operation from GOYA's DDR to GOYA's SRAM.
* @HL_DMA_SRAM_TO_DRAM: DMA operation from GOYA's SRAM to GOYA's DDR.
* @HL_DMA_SRAM_TO_HOST: DMA operation from GOYA's SRAM to Host memory.
* @HL_DMA_DRAM_TO_HOST: DMA operation from GOYA's DDR to Host memory.
* @HL_DMA_DRAM_TO_DRAM: DMA operation from GOYA's DDR to GOYA's DDR.
* @HL_DMA_SRAM_TO_SRAM: DMA operation from GOYA's SRAM to GOYA's SRAM.
* @HL_DMA_ENUM_MAX: number of values in enum
*/
enum hl_goya_dma_direction {
HL_DMA_HOST_TO_DRAM,
HL_DMA_HOST_TO_SRAM,
HL_DMA_DRAM_TO_SRAM,
HL_DMA_SRAM_TO_DRAM,
HL_DMA_SRAM_TO_HOST,
HL_DMA_DRAM_TO_HOST,
HL_DMA_DRAM_TO_DRAM,
HL_DMA_SRAM_TO_SRAM,
HL_DMA_ENUM_MAX
};
/**
* enum hl_device_status - Device status information.
* @HL_DEVICE_STATUS_OPERATIONAL: Device is operational.