[PATCH v1 2/3] dmaengine: dw-edma: Enable Chan Separation via VSEC
From: Devendra K Verma
Date: Wed Jul 22 2026 - 07:24:49 EST
As per, 'Designware Cores PCI Express DM Controller - Reference
Manual', section 3.2.34.3, VSEC for DEVICE INFORMATION supports
the channel separation mechanisms. Basically, the HDMA IP allows
the user to configure the separation between DMA channel
registers and retrieve it via the VSEC capability mentioned
above.
HDMA IP supports the channel separation up to 32K but for
the simplicity channel separation support has been added till
4K. As and when required the function can be expanded to include
the higher sizes for channel separation.
Supported and missed out sizes are:
8K (0x5), 16K (0x6), 32K (0x7)
Signed-off-by: Devendra K Verma <devverma@xxxxxxx>
---
drivers/dma/dw-edma/dw-edma-pcie.c | 25 +++++++++++++++++++++++--
1 file changed, 23 insertions(+), 2 deletions(-)
diff --git a/drivers/dma/dw-edma/dw-edma-pcie.c b/drivers/dma/dw-edma/dw-edma-pcie.c
index ec5e057a0f11..6295d01ba2f7 100644
--- a/drivers/dma/dw-edma/dw-edma-pcie.c
+++ b/drivers/dma/dw-edma/dw-edma-pcie.c
@@ -33,6 +33,7 @@
#define DW_PCIE_XILINX_VSEC_ID 0x20
#define DW_PCIE_XILINX_VSEC_DMA_BAR GENMASK(10, 8)
#define DW_PCIE_XILINX_VSEC_DMA_MAP GENMASK(2, 0)
+#define DW_PCIE_XILINX_VSEC_CH_SEP GENMASK(18, 16)
#define DW_PCIE_XILINX_VSEC_DMA_WR_CH GENMASK(9, 0)
#define DW_PCIE_XILINX_VSEC_DMA_RD_CH GENMASK(25, 16)
@@ -73,6 +74,7 @@ struct dw_edma_pcie_data {
u16 wr_ch_cnt;
u16 rd_ch_cnt;
u64 devmem_phys_off;
+ u32 ch_sep_sz;
};
static const struct dw_edma_pcie_data snps_edda_data = {
@@ -127,7 +129,7 @@ static const struct dw_edma_pcie_data xilinx_mdb_data = {
};
static const struct dw_edma_pcie_data xilinx_cpm6_dma_data = {
- /* MDB registers location */
+ /* CPM6 registers location */
.rg.bar = BAR_0,
.rg.off = SZ_4K, /* 4 Kbytes */
.rg.sz = SZ_8K, /* 8 Kbytes */
@@ -189,6 +191,23 @@ static int dw_edma_pcie_irq_vector(struct device *dev, unsigned int nr)
return pci_irq_vector(to_pci_dev(dev), nr);
}
+static u32 dw_edma_get_ch_sep_sz(u32 ch_sep_val)
+{
+ switch (ch_sep_val) {
+ default:
+ case 0:
+ return 256;
+ case 1:
+ return 512;
+ case 2:
+ return 1024;
+ case 3:
+ return 2048;
+ case 4:
+ return 4096;
+ }
+}
+
static u64 dw_edma_pcie_address(struct device *dev, phys_addr_t cpu_addr)
{
struct pci_dev *pdev = to_pci_dev(dev);
@@ -278,6 +297,8 @@ static void dw_edma_pcie_get_xilinx_dma_data(struct pci_dev *pdev,
pdata->mf = map;
pdata->rg.bar = FIELD_GET(DW_PCIE_XILINX_VSEC_DMA_BAR, val);
+ pdata->ch_sep_sz = dw_edma_get_ch_sep_sz(FIELD_GET(DW_PCIE_XILINX_VSEC_CH_SEP,
+ val));
pci_read_config_dword(pdev, vsec + 0xc, &val);
pdata->wr_ch_cnt = min(pdata->wr_ch_cnt,
@@ -324,9 +345,9 @@ static int dw_edma_pcie_probe(struct pci_dev *pdev,
struct dw_edma_pcie_data *pdata = (void *)pid->driver_data;
struct device *dev = &pdev->dev;
struct dw_edma_chip *chip;
+ bool non_ll = false;
int err, nr_irqs;
int i, mask;
- bool non_ll = false;
if (!pdata)
return -ENODEV;
--
2.43.0