* [PATCH net-next 0/4] net: ethernet: qualcomm: ppe: Add IPQ5332 support
@ 2026-10-05 15:29 Til Kaiser
2026-10-05 15:29 ` [PATCH net-next 1/4] net: ethernet: qualcomm: ppe: Select hardware configuration by SoC Til Kaiser
` (3 more replies)
0 siblings, 4 replies; 5+ messages in thread
From: Til Kaiser @ 2026-10-05 15:29 UTC (permalink / raw)
To: netdev
Cc: Luo Jie, Andrew Lunn, David S. Miller, Eric Dumazet,
Jakub Kicinski, Paolo Abeni, Rob Herring, Krzysztof Kozlowski,
Conor Dooley, Simon Horman, Jonathan Corbet, Shuah Khan,
Randy Dunlap, Lei Wei, Suruchi Agarwal, Pavithra R,
linux-arm-msm, devicetree, linux-kernel, linux-doc
IPQ5332 uses the same PPE architecture as IPQ9574, but has two front
panel ports, a 200 MHz PPE clock, and different interconnect, buffer
and scheduler settings. This series adds support for it.
Patch 1 moves the IPQ9574 settings into per-SoC match data and a
hardware configuration structure, renames the shared regmap configuration,
and makes the reserved scheduler resource lookup independent of the port
count. Patch 2 tightens the port node constraints in the DT schema.
Patch 3 adds IPQ5332 to the schema with per-SoC interconnect, clock, EDMA
reset and interrupt constraints, while retaining the original binding
filename. Patch 4 adds the IPQ5332 configuration to the driver and adds
its port and UNIPHY counts to the documentation.
The IPQ5332 values come from the PPE initialization in Qualcomm's
downstream QSDK 14.0.1595.1665, qca-ssdk revision
48484d531927b070b996685f1570aff3bccb9c32 (src/init/ssdk_hppe.c,
src/init/ssdk_appe.c and src/adpt/hppe/adpt_hppe_qm.c).
IPQ5332 requires the GCC IM sleep clock in addition to the four PPE
clocks, two EDMA resets instead of one, and 49 EDMA interrupts instead
of 65. These differences are constrained without changing the existing
IPQ9574 layouts.
Tested on the Ubiquiti UniFi 7 Pro XGS access point, using the EDMA
driver from OpenWrt, which is not yet upstream. The device has a
single Ethernet port, connected to PPE port 1. The second front
panel port and its configuration are untested from my side.
Thanks,
Til
Til Kaiser (4):
net: ethernet: qualcomm: ppe: Select hardware configuration by SoC
dt-bindings: net: qcom,ipq9574-ppe: Tighten ethernet port node
constraints
dt-bindings: net: qcom,ipq9574-ppe: Add IPQ5332 support
net: ethernet: qualcomm: ppe: Add IPQ5332 support
.../bindings/net/qcom,ipq9574-ppe.yaml | 103 +++++++++-
.../ethernet/qualcomm/ppe/ppe.rst | 9 +-
drivers/net/ethernet/qualcomm/ppe/ppe.c | 81 ++++++--
.../net/ethernet/qualcomm/ppe/ppe_config.c | 185 ++++++++++++++++--
.../net/ethernet/qualcomm/ppe/ppe_config.h | 35 +++-
5 files changed, 369 insertions(+), 44 deletions(-)
base-commit: 8b4e7209c842d8cb9516f1f5ef0a88aa2d8831a6
--
2.55.0
^ permalink raw reply [flat|nested] 5+ messages in thread
* [PATCH net-next 1/4] net: ethernet: qualcomm: ppe: Select hardware configuration by SoC
2026-10-05 15:29 [PATCH net-next 0/4] net: ethernet: qualcomm: ppe: Add IPQ5332 support Til Kaiser
@ 2026-10-05 15:29 ` Til Kaiser
2026-10-05 15:29 ` [PATCH net-next 2/4] dt-bindings: net: qcom,ipq9574-ppe: Tighten ethernet port node constraints Til Kaiser
` (2 subsequent siblings)
3 siblings, 0 replies; 5+ messages in thread
From: Til Kaiser @ 2026-10-05 15:29 UTC (permalink / raw)
To: netdev
Cc: Luo Jie, Andrew Lunn, David S. Miller, Eric Dumazet,
Jakub Kicinski, Paolo Abeni, Rob Herring, Krzysztof Kozlowski,
Conor Dooley, Simon Horman, Jonathan Corbet, Shuah Khan,
Randy Dunlap, Lei Wei, Suruchi Agarwal, Pavithra R,
linux-arm-msm, devicetree, linux-kernel, linux-doc, Til Kaiser
The PPE driver hardcodes IPQ9574 parameters: the PPE clock rate,
interconnect paths, port count, buffer limits and scheduler arbitration
tables. Other SoCs with the same PPE architecture need different values.
Move these into per-SoC platform match data, and collect the buffer
manager (BM), queue manager (QM) and scheduler tables in a new struct
ppe_soc_config that is passed to the hardware initialization code. The
IPQ9574 values are unchanged; no functional change intended.
The IPQ9574 scheduler resource table has nine entries, with the reserved
pool at index 8. Select that final entry for port ID num_ports, preserving
the IPQ9574 lookup while allowing a smaller port count on other SoCs.
Rename regmap_config_ipq9574 to ppe_reg_config for the shared PPE
register layout.
Signed-off-by: Til Kaiser <mail@tk154.de>
---
drivers/net/ethernet/qualcomm/ppe/ppe.c | 48 ++++++++++-----
.../net/ethernet/qualcomm/ppe/ppe_config.c | 58 +++++++++++++------
.../net/ethernet/qualcomm/ppe/ppe_config.h | 34 ++++++++++-
3 files changed, 106 insertions(+), 34 deletions(-)
diff --git a/drivers/net/ethernet/qualcomm/ppe/ppe.c b/drivers/net/ethernet/qualcomm/ppe/ppe.c
index 3c301e609d3e..0ef72c20364b 100644
--- a/drivers/net/ethernet/qualcomm/ppe/ppe.c
+++ b/drivers/net/ethernet/qualcomm/ppe/ppe.c
@@ -11,6 +11,7 @@
#include <linux/module.h>
#include <linux/of.h>
#include <linux/platform_device.h>
+#include <linux/property.h>
#include <linux/regmap.h>
#include <linux/reset.h>
@@ -18,13 +19,15 @@
#include "ppe_config.h"
#include "ppe_debugfs.h"
-#define PPE_PORT_MAX 8
-#define PPE_CLK_RATE 353000000
+struct ppe_plat_data {
+ const struct ppe_soc_config *soc_cfg;
+ const struct icc_bulk_data *icc_data;
+ unsigned long ppe_clk_rate;
+ unsigned int num_icc, num_ports;
+};
-/* ICC clocks for enabling PPE device. The avg_bw and peak_bw with value 0
- * will be updated by the clock rate of PPE.
- */
-static const struct icc_bulk_data ppe_icc_data[] = {
+/* IPQ9574 interconnect paths. Zero bandwidths use the PPE clock rate. */
+static const struct icc_bulk_data ipq9574_icc_data[] = {
{
.name = "ppe",
.avg_bw = 0,
@@ -62,6 +65,15 @@ static const struct icc_bulk_data ppe_icc_data[] = {
},
};
+static const struct ppe_plat_data ipq9574_ppe_data = {
+ .soc_cfg = &ipq9574_soc_config,
+ .icc_data = ipq9574_icc_data,
+ .ppe_clk_rate = 353000000,
+ .num_icc = ARRAY_SIZE(ipq9574_icc_data),
+ .num_ports = 8,
+};
+
+/* PPE register access ranges. */
static const struct regmap_range ppe_readable_ranges[] = {
regmap_reg_range(0x0, 0x1ff), /* Global */
regmap_reg_range(0x400, 0x5ff), /* LPI CSR */
@@ -99,7 +111,7 @@ static const struct regmap_access_table ppe_reg_table = {
.n_yes_ranges = ARRAY_SIZE(ppe_readable_ranges),
};
-static const struct regmap_config regmap_config_ipq9574 = {
+static const struct regmap_config ppe_reg_config = {
.reg_bits = 32,
.reg_stride = 4,
.val_bits = 32,
@@ -108,7 +120,8 @@ static const struct regmap_config regmap_config_ipq9574 = {
.max_register = 0xbef800,
};
-static int ppe_clock_init_and_reset(struct ppe_device *ppe_dev)
+static int ppe_clock_init_and_reset(struct ppe_device *ppe_dev,
+ const struct icc_bulk_data *ppe_icc_data)
{
unsigned long ppe_rate = ppe_dev->clk_rate;
struct device *dev = ppe_dev->dev;
@@ -172,12 +185,17 @@ static int ppe_clock_init_and_reset(struct ppe_device *ppe_dev)
static int qcom_ppe_probe(struct platform_device *pdev)
{
+ const struct ppe_plat_data *plat_data;
struct device *dev = &pdev->dev;
struct ppe_device *ppe_dev;
void __iomem *base;
int ret, num_icc;
- num_icc = ARRAY_SIZE(ppe_icc_data);
+ plat_data = device_get_match_data(dev);
+ if (!plat_data)
+ return -EINVAL;
+
+ num_icc = plat_data->num_icc;
ppe_dev = devm_kzalloc(dev, struct_size(ppe_dev, icc_paths, num_icc),
GFP_KERNEL);
if (!ppe_dev)
@@ -187,20 +205,20 @@ static int qcom_ppe_probe(struct platform_device *pdev)
if (IS_ERR(base))
return dev_err_probe(dev, PTR_ERR(base), "PPE ioremap failed\n");
- ppe_dev->regmap = devm_regmap_init_mmio(dev, base, ®map_config_ipq9574);
+ ppe_dev->regmap = devm_regmap_init_mmio(dev, base, &ppe_reg_config);
if (IS_ERR(ppe_dev->regmap))
return dev_err_probe(dev, PTR_ERR(ppe_dev->regmap),
"PPE initialize regmap failed\n");
ppe_dev->dev = dev;
- ppe_dev->clk_rate = PPE_CLK_RATE;
- ppe_dev->num_ports = PPE_PORT_MAX;
+ ppe_dev->clk_rate = plat_data->ppe_clk_rate;
+ ppe_dev->num_ports = plat_data->num_ports;
ppe_dev->num_icc_paths = num_icc;
- ret = ppe_clock_init_and_reset(ppe_dev);
+ ret = ppe_clock_init_and_reset(ppe_dev, plat_data->icc_data);
if (ret)
return dev_err_probe(dev, ret, "PPE clock config failed\n");
- ret = ppe_hw_config(ppe_dev);
+ ret = ppe_hw_config(ppe_dev, plat_data->soc_cfg);
if (ret)
return dev_err_probe(dev, ret, "PPE HW config failed\n");
@@ -219,7 +237,7 @@ static void qcom_ppe_remove(struct platform_device *pdev)
}
static const struct of_device_id qcom_ppe_of_match[] = {
- { .compatible = "qcom,ipq9574-ppe" },
+ { .compatible = "qcom,ipq9574-ppe", .data = &ipq9574_ppe_data },
{}
};
MODULE_DEVICE_TABLE(of, qcom_ppe_of_match);
diff --git a/drivers/net/ethernet/qualcomm/ppe/ppe_config.c b/drivers/net/ethernet/qualcomm/ppe/ppe_config.c
index 125b73be92b1..65ac6c0841d5 100644
--- a/drivers/net/ethernet/qualcomm/ppe/ppe_config.c
+++ b/drivers/net/ethernet/qualcomm/ppe/ppe_config.c
@@ -835,6 +835,19 @@ static const struct ppe_port_schedule_resource ppe_scheduler_res[] = {
},
};
+const struct ppe_soc_config ipq9574_soc_config = {
+ .bm_group_config = ipq9574_ppe_bm_group_config,
+ .bm_port_config = ipq9574_ppe_bm_port_config,
+ .bm_port_config_cnt = ARRAY_SIZE(ipq9574_ppe_bm_port_config),
+ .qm_group_config = ipq9574_ppe_qm_group_config,
+ .qm_queue_config = ipq9574_ppe_qm_queue_config,
+ .qm_queue_config_cnt = ARRAY_SIZE(ipq9574_ppe_qm_queue_config),
+ .sch_bm_config = ipq9574_ppe_sch_bm_config,
+ .sch_bm_config_cnt = ARRAY_SIZE(ipq9574_ppe_sch_bm_config),
+ .sch_qm_config = ipq9574_ppe_sch_qm_config,
+ .sch_qm_config_cnt = ARRAY_SIZE(ipq9574_ppe_sch_qm_config),
+};
+
/* Set the PPE queue level scheduler configuration. */
static int ppe_scheduler_l0_queue_map_set(struct ppe_device *ppe_dev,
int node_id, int port,
@@ -1080,7 +1093,12 @@ int ppe_port_resource_get(struct ppe_device *ppe_dev, int port,
if (port > ppe_dev->num_ports)
return -EINVAL;
- res = ppe_scheduler_res[port];
+ /* Port ID num_ports selects the reserved pool in the final entry. */
+ if (port == ppe_dev->num_ports)
+ res = ppe_scheduler_res[ARRAY_SIZE(ppe_scheduler_res) - 1];
+ else
+ res = ppe_scheduler_res[port];
+
switch (type) {
case PPE_RES_UCAST:
*res_start = res.ucastq_start;
@@ -1427,7 +1445,8 @@ static int ppe_config_bm_threshold(struct ppe_device *ppe_dev, int bm_port_id,
}
/* Configure the buffer threshold for the port flow control function. */
-static int ppe_config_bm(struct ppe_device *ppe_dev)
+static int ppe_config_bm(struct ppe_device *ppe_dev,
+ const struct ppe_soc_config *soc_cfg)
{
const struct ppe_bm_port_config *port_cfg;
unsigned int i, bm_port_id, port_cfg_cnt;
@@ -1440,7 +1459,7 @@ static int ppe_config_bm(struct ppe_device *ppe_dev)
*/
reg = PPE_BM_SHARED_GROUP_CFG_ADDR;
val = FIELD_PREP(PPE_BM_SHARED_GROUP_CFG_SHARED_LIMIT,
- ipq9574_ppe_bm_group_config);
+ soc_cfg->bm_group_config);
ret = regmap_update_bits(ppe_dev->regmap, reg,
PPE_BM_SHARED_GROUP_CFG_SHARED_LIMIT,
val);
@@ -1448,8 +1467,8 @@ static int ppe_config_bm(struct ppe_device *ppe_dev)
goto bm_config_fail;
/* Configure buffer thresholds for the BM ports. */
- port_cfg = ipq9574_ppe_bm_port_config;
- port_cfg_cnt = ARRAY_SIZE(ipq9574_ppe_bm_port_config);
+ port_cfg = soc_cfg->bm_port_config;
+ port_cfg_cnt = soc_cfg->bm_port_config_cnt;
for (i = 0; i < port_cfg_cnt; i++) {
for (bm_port_id = port_cfg[i].port_id_start;
bm_port_id <= port_cfg[i].port_id_end; bm_port_id++) {
@@ -1470,7 +1489,8 @@ static int ppe_config_bm(struct ppe_device *ppe_dev)
/* Configure PPE hardware queue depth, which is decided by the threshold
* of queue.
*/
-static int ppe_config_qm(struct ppe_device *ppe_dev)
+static int ppe_config_qm(struct ppe_device *ppe_dev,
+ const struct ppe_soc_config *soc_cfg)
{
const struct ppe_qm_queue_config *queue_cfg;
int ret, i, queue_id, queue_cfg_count;
@@ -1485,15 +1505,15 @@ static int ppe_config_qm(struct ppe_device *ppe_dev)
if (ret)
goto qm_config_fail;
- PPE_AC_GRP_SET_BUF_LIMIT(group_cfg, ipq9574_ppe_qm_group_config);
+ PPE_AC_GRP_SET_BUF_LIMIT(group_cfg, soc_cfg->qm_group_config);
ret = regmap_bulk_write(ppe_dev->regmap, reg,
group_cfg, ARRAY_SIZE(group_cfg));
if (ret)
goto qm_config_fail;
- queue_cfg = ipq9574_ppe_qm_queue_config;
- queue_cfg_count = ARRAY_SIZE(ipq9574_ppe_qm_queue_config);
+ queue_cfg = soc_cfg->qm_queue_config;
+ queue_cfg_count = soc_cfg->qm_queue_config_cnt;
for (i = 0; i < queue_cfg_count; i++) {
queue_id = queue_cfg[i].queue_start;
@@ -1625,7 +1645,8 @@ static int ppe_node_scheduler_config(struct ppe_device *ppe_dev,
/* Initialize scheduler settings for PPE buffer utilization and dispatching
* packet on PPE queue.
*/
-static int ppe_config_scheduler(struct ppe_device *ppe_dev)
+static int ppe_config_scheduler(struct ppe_device *ppe_dev,
+ const struct ppe_soc_config *soc_cfg)
{
const struct ppe_scheduler_port_config *port_cfg;
const struct ppe_scheduler_qm_config *qm_cfg;
@@ -1633,8 +1654,8 @@ static int ppe_config_scheduler(struct ppe_device *ppe_dev)
int ret, i, count;
u32 val, reg;
- count = ARRAY_SIZE(ipq9574_ppe_sch_bm_config);
- bm_cfg = ipq9574_ppe_sch_bm_config;
+ count = soc_cfg->sch_bm_config_cnt;
+ bm_cfg = soc_cfg->sch_bm_config;
/* Configure the depth of BM scheduler entries. */
val = FIELD_PREP(PPE_BM_SCH_CTRL_SCH_DEPTH, count);
@@ -1664,8 +1685,8 @@ static int ppe_config_scheduler(struct ppe_device *ppe_dev)
goto sch_config_fail;
}
- count = ARRAY_SIZE(ipq9574_ppe_sch_qm_config);
- qm_cfg = ipq9574_ppe_sch_qm_config;
+ count = soc_cfg->sch_qm_config_cnt;
+ qm_cfg = soc_cfg->sch_qm_config;
/* Configure the depth of QM scheduler entries. */
val = FIELD_PREP(PPE_PSCH_SCH_DEPTH_CFG_SCH_DEPTH, count);
@@ -1995,19 +2016,20 @@ static int ppe_bridge_init(struct ppe_device *ppe_dev)
return 0;
}
-int ppe_hw_config(struct ppe_device *ppe_dev)
+int ppe_hw_config(struct ppe_device *ppe_dev,
+ const struct ppe_soc_config *soc_cfg)
{
int ret;
- ret = ppe_config_bm(ppe_dev);
+ ret = ppe_config_bm(ppe_dev, soc_cfg);
if (ret)
return ret;
- ret = ppe_config_qm(ppe_dev);
+ ret = ppe_config_qm(ppe_dev, soc_cfg);
if (ret)
return ret;
- ret = ppe_config_scheduler(ppe_dev);
+ ret = ppe_config_scheduler(ppe_dev, soc_cfg);
if (ret)
return ret;
diff --git a/drivers/net/ethernet/qualcomm/ppe/ppe_config.h b/drivers/net/ethernet/qualcomm/ppe/ppe_config.h
index 60493e51e0a4..0dafab264743 100644
--- a/drivers/net/ethernet/qualcomm/ppe/ppe_config.h
+++ b/drivers/net/ethernet/qualcomm/ppe/ppe_config.h
@@ -287,7 +287,39 @@ struct ppe_rss_hash_cfg {
u8 hash_fin_outer[PPE_RSS_HASH_TUPLES];
};
-int ppe_hw_config(struct ppe_device *ppe_dev);
+/**
+ * struct ppe_soc_config - SoC-specific PPE hardware configuration.
+ * @bm_group_config: Buffer Management (BM) group configuration.
+ * @bm_port_config: Pointer to the BM port configuration array.
+ * @bm_port_config_cnt: Number of entries in the BM port configuration array.
+ * @qm_group_config: Queue Management (QM) group configuration.
+ * @qm_queue_config: Pointer to the QM queue configuration array.
+ * @qm_queue_config_cnt: Number of entries in the QM queue configuration array.
+ * @sch_bm_config: Pointer to the BM scheduler arbitration array.
+ * @sch_bm_config_cnt: Number of entries in the BM scheduler arbitration array.
+ * @sch_qm_config: Pointer to the QM scheduler arbitration array.
+ * @sch_qm_config_cnt: Number of entries in the QM scheduler arbitration array.
+ */
+struct ppe_soc_config {
+ int bm_group_config;
+ const struct ppe_bm_port_config *bm_port_config;
+ unsigned int bm_port_config_cnt;
+
+ int qm_group_config;
+ const struct ppe_qm_queue_config *qm_queue_config;
+ unsigned int qm_queue_config_cnt;
+
+ const struct ppe_scheduler_bm_config *sch_bm_config;
+ unsigned int sch_bm_config_cnt;
+
+ const struct ppe_scheduler_qm_config *sch_qm_config;
+ unsigned int sch_qm_config_cnt;
+};
+
+extern const struct ppe_soc_config ipq9574_soc_config;
+
+int ppe_hw_config(struct ppe_device *ppe_dev,
+ const struct ppe_soc_config *soc_cfg);
int ppe_queue_scheduler_set(struct ppe_device *ppe_dev,
int node_id, bool flow_level, int port,
struct ppe_scheduler_cfg scheduler_cfg);
--
2.56.0
^ permalink raw reply [flat|nested] 5+ messages in thread
* [PATCH net-next 2/4] dt-bindings: net: qcom,ipq9574-ppe: Tighten ethernet port node constraints
2026-10-05 15:29 [PATCH net-next 0/4] net: ethernet: qualcomm: ppe: Add IPQ5332 support Til Kaiser
2026-10-05 15:29 ` [PATCH net-next 1/4] net: ethernet: qualcomm: ppe: Select hardware configuration by SoC Til Kaiser
@ 2026-10-05 15:29 ` Til Kaiser
2026-10-05 15:29 ` [PATCH net-next 3/4] dt-bindings: net: qcom,ipq9574-ppe: Add IPQ5332 support Til Kaiser
2026-10-05 15:29 ` [PATCH net-next 4/4] net: ethernet: qualcomm: ppe: " Til Kaiser
3 siblings, 0 replies; 5+ messages in thread
From: Til Kaiser @ 2026-10-05 15:29 UTC (permalink / raw)
To: netdev
Cc: Luo Jie, Andrew Lunn, David S. Miller, Eric Dumazet,
Jakub Kicinski, Paolo Abeni, Rob Herring, Krzysztof Kozlowski,
Conor Dooley, Simon Horman, Jonathan Corbet, Shuah Khan,
Randy Dunlap, Lei Wei, Suruchi Agarwal, Pavithra R,
linux-arm-msm, devicetree, linux-kernel, linux-doc, Til Kaiser
The port node pattern "^ethernet-port@[1-6]+$" also matches multi-digit
unit addresses such as ethernet-port@11, which the reg property does not
allow. Drop the stray '+'.
Also restrict the ethernet-ports object to its declared properties.
Without this, nodes outside the port pattern are accepted through the
generic ethernet-switch schema.
Signed-off-by: Til Kaiser <mail@tk154.de>
---
.../devicetree/bindings/net/qcom,ipq9574-ppe.yaml | 11 ++++++++++-
1 file changed, 10 insertions(+), 1 deletion(-)
diff --git a/Documentation/devicetree/bindings/net/qcom,ipq9574-ppe.yaml b/Documentation/devicetree/bindings/net/qcom,ipq9574-ppe.yaml
index 6d0b21a10732..1a78e2c82b90 100644
--- a/Documentation/devicetree/bindings/net/qcom,ipq9574-ppe.yaml
+++ b/Documentation/devicetree/bindings/net/qcom,ipq9574-ppe.yaml
@@ -174,8 +174,17 @@ properties:
- interrupt-names
ethernet-ports:
+ type: object
+ additionalProperties: false
+
+ properties:
+ '#address-cells':
+ const: 1
+ '#size-cells':
+ const: 0
+
patternProperties:
- "^ethernet-port@[1-6]+$":
+ "^ethernet-port@[1-6]$":
type: object
unevaluatedProperties: false
$ref: ethernet-switch-port.yaml#
--
2.56.0
^ permalink raw reply [flat|nested] 5+ messages in thread
* [PATCH net-next 3/4] dt-bindings: net: qcom,ipq9574-ppe: Add IPQ5332 support
2026-10-05 15:29 [PATCH net-next 0/4] net: ethernet: qualcomm: ppe: Add IPQ5332 support Til Kaiser
2026-10-05 15:29 ` [PATCH net-next 1/4] net: ethernet: qualcomm: ppe: Select hardware configuration by SoC Til Kaiser
2026-10-05 15:29 ` [PATCH net-next 2/4] dt-bindings: net: qcom,ipq9574-ppe: Tighten ethernet port node constraints Til Kaiser
@ 2026-10-05 15:29 ` Til Kaiser
2026-10-05 15:29 ` [PATCH net-next 4/4] net: ethernet: qualcomm: ppe: " Til Kaiser
3 siblings, 0 replies; 5+ messages in thread
From: Til Kaiser @ 2026-10-05 15:29 UTC (permalink / raw)
To: netdev
Cc: Luo Jie, Andrew Lunn, David S. Miller, Eric Dumazet,
Jakub Kicinski, Paolo Abeni, Rob Herring, Krzysztof Kozlowski,
Conor Dooley, Simon Horman, Jonathan Corbet, Shuah Khan,
Randy Dunlap, Lei Wei, Suruchi Agarwal, Pavithra R,
linux-arm-msm, devicetree, linux-kernel, linux-doc, Til Kaiser
IPQ5332 uses the same PPE architecture as IPQ9574, but has two front
panel ports instead of six and four interconnect paths instead of seven.
Add the qcom,ipq5332-ppe compatible and constrain the interconnects
and port nodes per SoC: IPQ5332 takes four interconnects and only
ethernet-port@1 and ethernet-port@2, while IPQ9574 keeps seven
interconnects.
The PPE core, EDMA and MAC clock functions are shared, but IPQ5332 also
needs the GCC IM sleep clock. The PPE core uses one reset and each MAC
uses three resets on both SoCs. IPQ5332 EDMA needs separate system and
configuration resets; IPQ9574 uses one combined reset. Constrain the
clock and reset counts accordingly. Keep EDMA resets positional, with
the system reset first and the configuration reset second on IPQ5332,
consistent with the existing unnamed IPQ9574 reset.
IPQ5332 EDMA has 24 TX/completion rings, 16 RX descriptor rings and eight
RX fill rings, so the full EDMA interrupt set comprises 49 interrupts.
Constrain the interrupt counts and ring names per SoC as well.
The IPQ5332 clock and reset functions are described by Qualcomm's NSSCC
driver submission. Its sleep clock is also listed in Qualcomm's
PPE DTS submission. The ring limits come from QSDK 14.0.1595.1665,
qca-nss-dp hal/soc_ops/ipq53xx/nss_ipq53xx.h.
Link: https://lore.kernel.org/r/20240829082830.56959-7-quic_varada@quicinc.com
Link: https://lore.kernel.org/r/20240110112059.2498-3-quic_luoj@quicinc.com
Signed-off-by: Til Kaiser <mail@tk154.de>
---
.../bindings/net/qcom,ipq9574-ppe.yaml | 92 +++++++++++++++++--
1 file changed, 84 insertions(+), 8 deletions(-)
diff --git a/Documentation/devicetree/bindings/net/qcom,ipq9574-ppe.yaml b/Documentation/devicetree/bindings/net/qcom,ipq9574-ppe.yaml
index 1a78e2c82b90..29dd34210ac8 100644
--- a/Documentation/devicetree/bindings/net/qcom,ipq9574-ppe.yaml
+++ b/Documentation/devicetree/bindings/net/qcom,ipq9574-ppe.yaml
@@ -28,11 +28,15 @@ description: |
supporting various modes such as SGMII/QSGMII/PSGMII/USXGMII/10G-BASER. There
are 3 UNIPHY (PCS) instances supported on the IPQ9574.
- Ethernet DMA is used to transmit and receive packets between the six Ethernet
+ IPQ5332 uses the same PPE architecture with two front panel ports and two
+ UNIPHY (PCS) instances. Its Ethernet datapath has a CPU port (port0) and
+ two GMAC/XGMAC ports (port1 and port2).
+
+ Ethernet DMA is used to transmit and receive packets between the Ethernet
ports and ARM host CPU.
- The follow diagram shows the PPE hardware block along with its connectivity
- to the external hardware blocks such clock hardware blocks (CMNPLL, GCC,
+ The following diagram shows the IPQ9574 PPE hardware block and its
+ connectivity to external clock hardware blocks (CMNPLL, GCC,
NSS clock controller) and Ethernet PCS/PHY blocks. For depicting the PHY
connectivity, one 4x1 Gbps PHY (QCA8075) and two 10 GBps PHYs are used as an
example.
@@ -77,24 +81,29 @@ description: |
properties:
compatible:
enum:
+ - qcom,ipq5332-ppe
- qcom,ipq9574-ppe
reg:
maxItems: 1
clocks:
+ minItems: 4
items:
- description: PPE core clock
- description: PPE APB (Advanced Peripheral Bus) clock
- description: PPE IPE (Ingress Process Engine) clock
- description: PPE BM, QM and scheduler clock
+ - description: PPE sleep clock from GCC
clock-names:
+ minItems: 4
items:
- const: ppe
- const: apb
- const: ipe
- const: btq
+ - const: sleep
resets:
maxItems: 1
@@ -105,6 +114,7 @@ properties:
description: PPE switch miscellaneous interrupt
interconnects:
+ minItems: 4
items:
- description: Bus interconnect path leading to PPE switch core function
- description: Bus interconnect path leading to PPE register access
@@ -115,6 +125,7 @@ properties:
- description: Bus interconnect path leading to enhanced memory NOC from NSS NOC
interconnect-names:
+ minItems: 4
items:
- const: ppe
- const: ppe_cfg
@@ -130,7 +141,9 @@ properties:
description:
EDMA (Ethernet DMA) is used to transmit packets between PPE and ARM
host CPU. There are 32 TX descriptor rings, 32 TX completion rings,
- 24 RX descriptor rings and 8 RX fill rings supported.
+ 24 RX descriptor rings and 8 RX fill rings supported on IPQ9574.
+ IPQ5332 supports 24 TX descriptor rings, 24 TX completion rings,
+ 16 RX descriptor rings and 8 RX fill rings.
properties:
clocks:
@@ -144,15 +157,18 @@ properties:
- const: apb
resets:
- maxItems: 1
- description: EDMA reset
+ minItems: 1
+ items:
+ - description:
+ EDMA system reset. On IPQ9574 this also resets the configuration.
+ - description: EDMA configuration reset
interrupts:
- minItems: 65
+ minItems: 49
maxItems: 65
interrupt-names:
- minItems: 65
+ minItems: 49
maxItems: 65
items:
oneOf:
@@ -165,6 +181,7 @@ properties:
Interrupts "rxfill_[0-7]" are the Ethernet DMA RX fill ring interrupts.
Interrupts "rxdesc_[0-23]" are the Ethernet DMA RX Descriptor ring interrupts.
Interrupt "misc" is the Ethernet DMA miscellaneous error interrupt.
+ On IPQ5332, only "txcmpl_[0-23]" and "rxdesc_[0-15]" are supported.
required:
- clocks
@@ -238,6 +255,65 @@ required:
allOf:
- $ref: ethernet-switch.yaml
+ - if:
+ properties:
+ compatible:
+ contains:
+ const: qcom,ipq5332-ppe
+ then:
+ properties:
+ clocks:
+ minItems: 5
+ clock-names:
+ minItems: 5
+ interconnects:
+ maxItems: 4
+ interconnect-names:
+ maxItems: 4
+ ethernet-dma:
+ properties:
+ resets:
+ minItems: 2
+ interrupts:
+ maxItems: 49
+ interrupt-names:
+ maxItems: 49
+ items:
+ oneOf:
+ - pattern: '^txcmpl_(1?[0-9]|2[0-3])$'
+ - pattern: '^rxfill_[0-7]$'
+ - pattern: '^rxdesc_([0-9]|1[0-5])$'
+ - const: misc
+ ethernet-ports:
+ patternProperties:
+ "^ethernet-port@[1-2]$":
+ properties:
+ reg:
+ maximum: 2
+ "^ethernet-port@[3-6]$": false
+ - if:
+ properties:
+ compatible:
+ contains:
+ const: qcom,ipq9574-ppe
+ then:
+ properties:
+ clocks:
+ maxItems: 4
+ clock-names:
+ maxItems: 4
+ interconnects:
+ minItems: 7
+ interconnect-names:
+ minItems: 7
+ ethernet-dma:
+ properties:
+ resets:
+ maxItems: 1
+ interrupts:
+ minItems: 65
+ interrupt-names:
+ minItems: 65
unevaluatedProperties: false
--
2.56.0
^ permalink raw reply [flat|nested] 5+ messages in thread
* [PATCH net-next 4/4] net: ethernet: qualcomm: ppe: Add IPQ5332 support
2026-10-05 15:29 [PATCH net-next 0/4] net: ethernet: qualcomm: ppe: Add IPQ5332 support Til Kaiser
` (2 preceding siblings ...)
2026-10-05 15:29 ` [PATCH net-next 3/4] dt-bindings: net: qcom,ipq9574-ppe: Add IPQ5332 support Til Kaiser
@ 2026-10-05 15:29 ` Til Kaiser
3 siblings, 0 replies; 5+ messages in thread
From: Til Kaiser @ 2026-10-05 15:29 UTC (permalink / raw)
To: netdev
Cc: Luo Jie, Andrew Lunn, David S. Miller, Eric Dumazet,
Jakub Kicinski, Paolo Abeni, Rob Herring, Krzysztof Kozlowski,
Conor Dooley, Simon Horman, Jonathan Corbet, Shuah Khan,
Randy Dunlap, Lei Wei, Suruchi Agarwal, Pavithra R,
linux-arm-msm, devicetree, linux-kernel, linux-doc, Til Kaiser
IPQ5332 shares the IPQ9574 PPE architecture, but has only two front
panel ports and uses a different clock rate, interconnect paths, buffer
limits and scheduler arbitration.
Add match data for qcom,ipq5332-ppe: a 200 MHz PPE clock, four
interconnect paths and three PPE ports (the CPU port and two front panel
ports), together with its BM and QM limits and thresholds and its
scheduler arbitration tables. The values come from Qualcomm's QSDK
14.0.1595.1665 qca-ssdk revision 48484d531927b070b996685f1570aff3bccb9c32:
src/init/ssdk_hppe.c and ssdk_appe.c, and src/adpt/hppe/adpt_hppe_qm.c.
Reuse the IPQ9574 scheduler resources for ports 0 (CPU), 1 and 2.
The queue, flow and DRR node ranges for ports 1 and 2 match the
IPQ5332 port_scheduler_resource definitions in QSDK ipq5332.dtsi.
The CPU flow and DRR node ranges also match; retain the IPQ9574 CPU
and reserved queue partition. QSDK assigns CPU unicast queues 0-95
and multicast queues 256-263, while this driver uses 0-63 and 256-271.
The reserved pool is selected from the final resource-table entry
using port ID 3 on IPQ5332.
QSDK uses the same block base addresses and HPPE register offsets
for the common PPE blocks on IPQ5332 and IPQ9574, so retain the
existing regmap ranges and offsets for those blocks.
Document the IPQ5332 port and UNIPHY counts and add it to the list of
supported SoCs.
Signed-off-by: Til Kaiser <mail@tk154.de>
---
.../ethernet/qualcomm/ppe/ppe.rst | 9 +-
drivers/net/ethernet/qualcomm/ppe/ppe.c | 33 +++++
.../net/ethernet/qualcomm/ppe/ppe_config.c | 127 ++++++++++++++++++
.../net/ethernet/qualcomm/ppe/ppe_config.h | 1 +
4 files changed, 169 insertions(+), 1 deletion(-)
diff --git a/Documentation/networking/device_drivers/ethernet/qualcomm/ppe/ppe.rst b/Documentation/networking/device_drivers/ethernet/qualcomm/ppe/ppe.rst
index 4ab299a28969..caf8ab1431de 100644
--- a/Documentation/networking/device_drivers/ethernet/qualcomm/ppe/ppe.rst
+++ b/Documentation/networking/device_drivers/ethernet/qualcomm/ppe/ppe.rst
@@ -96,6 +96,10 @@ The port wrapper provides connections from the 6 GMAC/XGMACS to UNIPHY (PCS) sup
various modes such as SGMII/QSGMII/PSGMII/USXGMII/10G-BASER. There are 3 UNIPHY (PCS)
instances supported on the IPQ9574.
+IPQ5332 uses the same PPE architecture with two front panel ports and two UNIPHY
+(PCS) instances. Its Ethernet datapath has a CPU port (port0) and two GMAC/XGMAC
+ports (port1 and port2).
+
Ethernet DMA is used to transmit and receive packets between the Ethernet subsystem
and ARM host CPU.
@@ -118,6 +122,8 @@ PPE driver:
through the UNIPHY PCS block. Each MAC block includes the GMAC and XGMAC blocks and
the switch port can select to use GMAC or XMAC through a MUX selection according to
the external PHY's capability.
+ IPQ5332 has two MACs (MAC0 and MAC1), connected to switch ports port1 and
+ port2 through two UNIPHY instances.
- EDMA (Ethernet DMA)
The Ethernet DMA is used to transmit and receive Ethernet packets between the PPE
ports and the ARM cores.
@@ -164,8 +170,9 @@ CPU code counters and queue counters.
PPE Driver Supported SoCs
=========================
-The PPE driver supports the following IPQ SoC:
+The PPE driver supports the following IPQ SoCs:
+- IPQ5332
- IPQ9574
diff --git a/drivers/net/ethernet/qualcomm/ppe/ppe.c b/drivers/net/ethernet/qualcomm/ppe/ppe.c
index 0ef72c20364b..69e970db4a78 100644
--- a/drivers/net/ethernet/qualcomm/ppe/ppe.c
+++ b/drivers/net/ethernet/qualcomm/ppe/ppe.c
@@ -26,6 +26,30 @@ struct ppe_plat_data {
unsigned int num_icc, num_ports;
};
+/* IPQ5332 interconnect paths. Zero bandwidths use the PPE clock rate. */
+static const struct icc_bulk_data ipq5332_icc_data[] = {
+ {
+ .name = "ppe",
+ .avg_bw = 0,
+ .peak_bw = 0,
+ },
+ {
+ .name = "ppe_cfg",
+ .avg_bw = 0,
+ .peak_bw = 0,
+ },
+ {
+ .name = "qos_gen",
+ .avg_bw = 6000,
+ .peak_bw = 6000,
+ },
+ {
+ .name = "timeout_ref",
+ .avg_bw = 6000,
+ .peak_bw = 6000,
+ },
+};
+
/* IPQ9574 interconnect paths. Zero bandwidths use the PPE clock rate. */
static const struct icc_bulk_data ipq9574_icc_data[] = {
{
@@ -65,6 +89,14 @@ static const struct icc_bulk_data ipq9574_icc_data[] = {
},
};
+static const struct ppe_plat_data ipq5332_ppe_data = {
+ .soc_cfg = &ipq5332_soc_config,
+ .icc_data = ipq5332_icc_data,
+ .ppe_clk_rate = 200000000,
+ .num_icc = ARRAY_SIZE(ipq5332_icc_data),
+ .num_ports = 3,
+};
+
static const struct ppe_plat_data ipq9574_ppe_data = {
.soc_cfg = &ipq9574_soc_config,
.icc_data = ipq9574_icc_data,
@@ -237,6 +269,7 @@ static void qcom_ppe_remove(struct platform_device *pdev)
}
static const struct of_device_id qcom_ppe_of_match[] = {
+ { .compatible = "qcom,ipq5332-ppe", .data = &ipq5332_ppe_data },
{ .compatible = "qcom,ipq9574-ppe", .data = &ipq9574_ppe_data },
{}
};
diff --git a/drivers/net/ethernet/qualcomm/ppe/ppe_config.c b/drivers/net/ethernet/qualcomm/ppe/ppe_config.c
index 65ac6c0841d5..91e6ee9524a6 100644
--- a/drivers/net/ethernet/qualcomm/ppe/ppe_config.c
+++ b/drivers/net/ethernet/qualcomm/ppe/ppe_config.c
@@ -174,6 +174,9 @@ struct ppe_port_schedule_resource {
*/
static const int ipq9574_ppe_bm_group_config = 1550;
+/* IPQ5332 BM group0 shared buffer limit. */
+static const int ipq5332_ppe_bm_group_config = 360;
+
/* The buffer configurations per PPE port. There are 15 BM ports and
* 4 BM groups supported by PPE. BM port (0-7) is for EDMA port 0,
* BM port (8-13) is for PPE physical port 1-6 and BM port 14 is for
@@ -230,6 +233,34 @@ static const struct ppe_bm_port_config ipq9574_ppe_bm_port_config[] = {
},
};
+/* IPQ5332: BM ports 0-7 serve EDMA, ports 8-9 serve ports 1-2. */
+static const struct ppe_bm_port_config ipq5332_ppe_bm_port_config[] = {
+ {
+ /* Buffer configuration for the BM port ID 0-7 of EDMA. */
+ .port_id_start = 0,
+ .port_id_end = 7,
+ .pre_alloc = 12,
+ .in_fly_buf = 40,
+ .ceil = 30,
+ .weight = 7,
+ .resume_offset = 5,
+ .resume_ceil = 20,
+ .dynamic = true,
+ },
+ {
+ /* Buffer configuration for the BM port ID 8-9 of PPE ports. */
+ .port_id_start = 8,
+ .port_id_end = 9,
+ .pre_alloc = 12,
+ .in_fly_buf = 128,
+ .ceil = 48,
+ .weight = 7,
+ .resume_offset = 5,
+ .resume_ceil = 20,
+ .dynamic = true,
+ },
+};
+
/* QM fetches the packet from PPE buffer management for transmitting the
* packet out. The QM group configuration limits the total number of buffers
* enqueued by all PPE hardware queues.
@@ -240,6 +271,9 @@ static const struct ppe_bm_port_config ipq9574_ppe_bm_port_config[] = {
*/
static const int ipq9574_ppe_qm_group_config = 2000;
+/* IPQ5332 QM group0 buffer limit. */
+static const int ipq5332_ppe_qm_group_config = 500;
+
/* Default QM settings for unicast and multicast queues for IPQ9754. */
static const struct ppe_qm_queue_config ipq9574_ppe_qm_queue_config[] = {
{
@@ -264,6 +298,30 @@ static const struct ppe_qm_queue_config ipq9574_ppe_qm_queue_config[] = {
},
};
+/* IPQ5332 unicast and multicast queue thresholds. */
+static const struct ppe_qm_queue_config ipq5332_ppe_qm_queue_config[] = {
+ {
+ /* QM settings for unicast queues 0 to 255. */
+ .queue_start = 0,
+ .queue_end = 255,
+ .prealloc_buf = 0,
+ .ceil = 300,
+ .weight = 7,
+ .resume_offset = 18,
+ .dynamic = true,
+ },
+ {
+ /* QM settings for multicast queues 256 to 299. */
+ .queue_start = 256,
+ .queue_end = 299,
+ .prealloc_buf = 0,
+ .ceil = 50,
+ .weight = 0,
+ .resume_offset = 18,
+ .dynamic = false,
+ },
+};
+
/* PPE scheduler configuration for BM includes multiple entries. Each entry
* indicates the primary port to be assigned the buffers for the ingress or
* to release the buffers for the egress. Backup port ID will be used when
@@ -372,6 +430,44 @@ static const struct ppe_scheduler_bm_config ipq9574_ppe_sch_bm_config[] = {
{true, PPE_SCH_EGRESS, 7, false, 0},
};
+/* IPQ5332 BM arbitration. The invalid final slot is included in the
+ * 32-slot scheduler depth.
+ */
+static const struct ppe_scheduler_bm_config ipq5332_ppe_sch_bm_config[] = {
+ {true, PPE_SCH_INGRESS, 2, false, 0},
+ {true, PPE_SCH_EGRESS, 0, false, 0},
+ {true, PPE_SCH_INGRESS, 1, false, 0},
+ {true, PPE_SCH_EGRESS, 1, false, 0},
+ {true, PPE_SCH_INGRESS, 2, false, 0},
+ {true, PPE_SCH_EGRESS, 2, false, 0},
+ {true, PPE_SCH_INGRESS, 0, false, 0},
+ {true, PPE_SCH_EGRESS, 0, false, 0},
+ {true, PPE_SCH_INGRESS, 2, false, 0},
+ {true, PPE_SCH_EGRESS, 1, false, 0},
+ {true, PPE_SCH_INGRESS, 1, false, 0},
+ {true, PPE_SCH_EGRESS, 2, false, 0},
+ {true, PPE_SCH_INGRESS, 0, false, 0},
+ {true, PPE_SCH_EGRESS, 0, false, 0},
+ {true, PPE_SCH_INGRESS, 1, false, 0},
+ {true, PPE_SCH_EGRESS, 1, false, 0},
+ {true, PPE_SCH_INGRESS, 2, false, 0},
+ {true, PPE_SCH_EGRESS, 2, false, 0},
+ {true, PPE_SCH_INGRESS, 1, false, 0},
+ {true, PPE_SCH_EGRESS, 0, false, 0},
+ {true, PPE_SCH_INGRESS, 2, false, 0},
+ {true, PPE_SCH_EGRESS, 1, false, 0},
+ {true, PPE_SCH_INGRESS, 0, false, 0},
+ {true, PPE_SCH_EGRESS, 2, false, 0},
+ {true, PPE_SCH_INGRESS, 2, false, 0},
+ {true, PPE_SCH_EGRESS, 0, false, 0},
+ {true, PPE_SCH_INGRESS, 1, false, 0},
+ {true, PPE_SCH_EGRESS, 1, false, 0},
+ {true, PPE_SCH_INGRESS, 0, false, 0},
+ {true, PPE_SCH_EGRESS, 2, false, 0},
+ {true, PPE_SCH_INGRESS, 1, false, 0},
+ {false, PPE_SCH_INGRESS, 0, false, 0},
+};
+
/* PPE scheduler configuration for QM includes multiple entries. Each entry
* contains ports to be dispatched for enqueueing and dequeueing. The backup
* port for dequeueing is supported to be used when the primary port for
@@ -439,6 +535,22 @@ static const struct ppe_scheduler_qm_config ipq9574_ppe_sch_qm_config[] = {
{0x98, 6, 5, true, 2},
};
+/* IPQ5332 QM arbitration. The enqueue bitmap is zero in every slot;
+ * ensch_port identifies the enqueue port. Backup dequeue ports are disabled.
+ */
+static const struct ppe_scheduler_qm_config ipq5332_ppe_sch_qm_config[] = {
+ {0x0, 0x2, 0, false, 0x0},
+ {0x0, 0x1, 2, false, 0x0},
+ {0x0, 0x0, 1, false, 0x0},
+ {0x0, 0x0, 2, false, 0x0},
+ {0x0, 0x1, 0, false, 0x0},
+ {0x0, 0x2, 1, false, 0x0},
+ {0x0, 0x0, 2, false, 0x0},
+ {0x0, 0x0, 1, false, 0x0},
+ {0x0, 0x0, 2, false, 0x0},
+ {0x0, 0x0, 1, false, 0x0},
+};
+
static const struct ppe_scheduler_port_config ppe_port_sch_config[] = {
{
.port = 0,
@@ -732,6 +844,8 @@ static const struct ppe_scheduler_port_config ppe_port_sch_config[] = {
/* The scheduler resource is applied to each PPE port, The resource
* includes the unicast & multicast queues, flow nodes and DRR nodes.
+ * Entries 1 and 2 serve ports 1 and 2 on both IPQ5332 and IPQ9574.
+ * The reserved pool is the last entry.
*/
static const struct ppe_port_schedule_resource ppe_scheduler_res[] = {
{ .ucastq_start = 0,
@@ -835,6 +949,19 @@ static const struct ppe_port_schedule_resource ppe_scheduler_res[] = {
},
};
+const struct ppe_soc_config ipq5332_soc_config = {
+ .bm_group_config = ipq5332_ppe_bm_group_config,
+ .bm_port_config = ipq5332_ppe_bm_port_config,
+ .bm_port_config_cnt = ARRAY_SIZE(ipq5332_ppe_bm_port_config),
+ .qm_group_config = ipq5332_ppe_qm_group_config,
+ .qm_queue_config = ipq5332_ppe_qm_queue_config,
+ .qm_queue_config_cnt = ARRAY_SIZE(ipq5332_ppe_qm_queue_config),
+ .sch_bm_config = ipq5332_ppe_sch_bm_config,
+ .sch_bm_config_cnt = ARRAY_SIZE(ipq5332_ppe_sch_bm_config),
+ .sch_qm_config = ipq5332_ppe_sch_qm_config,
+ .sch_qm_config_cnt = ARRAY_SIZE(ipq5332_ppe_sch_qm_config),
+};
+
const struct ppe_soc_config ipq9574_soc_config = {
.bm_group_config = ipq9574_ppe_bm_group_config,
.bm_port_config = ipq9574_ppe_bm_port_config,
diff --git a/drivers/net/ethernet/qualcomm/ppe/ppe_config.h b/drivers/net/ethernet/qualcomm/ppe/ppe_config.h
index 0dafab264743..b42731aa3e7e 100644
--- a/drivers/net/ethernet/qualcomm/ppe/ppe_config.h
+++ b/drivers/net/ethernet/qualcomm/ppe/ppe_config.h
@@ -316,6 +316,7 @@ struct ppe_soc_config {
unsigned int sch_qm_config_cnt;
};
+extern const struct ppe_soc_config ipq5332_soc_config;
extern const struct ppe_soc_config ipq9574_soc_config;
int ppe_hw_config(struct ppe_device *ppe_dev,
--
2.56.0
^ permalink raw reply [flat|nested] 5+ messages in thread
end of thread, other threads:[~2026-10-05 15:36 UTC | newest]
Thread overview: 5+ messages (download: mbox.gz / follow: Atom feed)
-- links below jump to the message on this page --
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2026-10-05 15:29 ` [PATCH net-next 1/4] net: ethernet: qualcomm: ppe: Select hardware configuration by SoC Til Kaiser
2026-10-05 15:29 ` [PATCH net-next 2/4] dt-bindings: net: qcom,ipq9574-ppe: Tighten ethernet port node constraints Til Kaiser
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