Commit 16e36101 authored by Pawel Laszczak's avatar Pawel Laszczak Committed by Peter Chen

usb: cdnsp: Fixes for sparse warnings

Patch fixes all sparse warnings in cdsnp driver.

It fixes the following warnings:
cdnsp-ring.c:1441: warning: incorrect type in assignment
cdnsp-ring.c:1444: warning: restricted __le32 degrades to integer
cdnsp-ring.c:2200: warning: dubious: x | !y
cdnsp-gadget.c:501: warning: incorrect type in assignment
cdnsp-gadget.c:504: warning: restricted __le32 degrades to integer
cdnsp-gadget.c:507: warning: restricted __le32 degrades to integer
cdnsp-gadget.c:508: warning: restricted __le32 degrades to integer
cdnsp-gadget.c:509: warning: invalid assignment: |=
cdnsp-gadget.c:510: warning: cast from restricted __le32
cdnsp-gadget.c:558: warning: incorrect type in assignment
cdnsp-gadget.c:561: warning: restricted __le32 degrades to integer
cdnsp-gadget.c:570: warning: restricted __le32 degrades to integer
cdnsp-gadget.c:1571: warning: incorrect type in argument 1
cdnsp-gadget.c:1602: warning: restricted __le32 degrades to integer
cdnsp-gadget.c:1760: warning: incorrect type in assignment
cdnsp-gadget.c:1762: warning: incorrect type in assignment
cdnsp-gadget.c:1763: warning: incorrect type in assignment
cdnsp-gadget.c:1764: warning: incorrect type in assignment
cdnsp-gadget.c:1765: warning: incorrect type in assignment
cdnsp-gadget.c:1766: warning: incorrect type in assignment
cdnsp-gadget.c:1767: warning: incorrect type in assignment
cdnsp-gadget.c:458: warning: cast truncates bits from constant value
                    (ffffffff07ffffff becomes 7ffffff)
cdnsp-gadget.c:666: warning: cast truncates bits from constant value
                    (ffffffff07ffffff becomes 7ffffff)
cdnsp-mem.c:762: warning: incorrect type in assignment
cdnsp-mem.c:763: warning: incorrect type in assignment
cdnsp-mem.c:928: warning: cast from restricted __le16
cdnsp-mem.c:1187: warning: incorrect type in assignment
cdnsp-mem.c:1191: warning: incorrect type in assignment
cdnsp-ep0.c:142: warning: incorrect type in assignment
cdnsp-ep0.c:144: warning: restricted __le32 degrades to integer
cdnsp-ep0.c:147: warning: restricted __le32 degrades to integer
cdnsp-ep0.c:148: warning: restricted __le32 degrades to integer
cdnsp-ep0.c:179: warning: incorrect type in argument 1
cdnsp-ep0.c:311: warning: incorrect type in argument 1
cdnsp-ep0.c:469: warning: incorrect type in assignment
cdnsp-trace.h:611:1: warning: cast from restricted __le32
Reported-by: default avatarkernel test robot <lkp@intel.com>
Signed-off-by: default avatarPawel Laszczak <pawell@cadence.com>
Signed-off-by: default avatarPeter Chen <peter.chen@nxp.com>
parent fba8701b
......@@ -414,7 +414,7 @@ static inline const char *cdnsp_decode_slot_context(u32 info, u32 info2,
s = "UNKNOWN speed";
}
ret = sprintf(str, "%s Ctx Entries %ld",
ret = sprintf(str, "%s Ctx Entries %d",
s, (info & LAST_CTX_MASK) >> 27);
ret += sprintf(str + ret, " [Intr %ld] Addr %ld State %s",
......
......@@ -137,10 +137,8 @@ int cdnsp_status_stage(struct cdnsp_device *pdev)
return cdnsp_ep_enqueue(pdev->ep0_preq.pep, &pdev->ep0_preq);
}
static int cdnsp_w_index_to_ep_index(__le32 wIndex)
static int cdnsp_w_index_to_ep_index(u16 wIndex)
{
wIndex = le32_to_cpu(wIndex);
if (!(wIndex & USB_ENDPOINT_NUMBER_MASK))
return 0;
......@@ -176,7 +174,8 @@ static int cdnsp_ep0_handle_status(struct cdnsp_device *pdev,
*/
return cdnsp_ep0_delegate_req(pdev, ctrl);
case USB_RECIP_ENDPOINT:
pep = &pdev->eps[cdnsp_w_index_to_ep_index(ctrl->wIndex)];
ep_sts = cdnsp_w_index_to_ep_index(le16_to_cpu(ctrl->wIndex));
pep = &pdev->eps[ep_sts];
ep_sts = GET_EP_CTX_STATE(pep->out_ctx);
/* check if endpoint is stalled */
......@@ -305,10 +304,10 @@ static int cdnsp_ep0_handle_feature_endpoint(struct cdnsp_device *pdev,
int set)
{
struct cdnsp_ep *pep;
u32 wValue;
u16 wValue;
wValue = le16_to_cpu(ctrl->wValue);
pep = &pdev->eps[cdnsp_w_index_to_ep_index(ctrl->wIndex)];
pep = &pdev->eps[cdnsp_w_index_to_ep_index(le16_to_cpu(ctrl->wIndex))];
switch (wValue) {
case USB_ENDPOINT_HALT:
......@@ -435,7 +434,7 @@ void cdnsp_setup_analyze(struct cdnsp_device *pdev)
{
struct usb_ctrlrequest *ctrl = &pdev->setup;
int ret = 0;
__le16 len;
u16 len;
trace_cdnsp_ctrl_req(ctrl);
......
......@@ -491,7 +491,7 @@ static void cdnsp_invalidate_ep_events(struct cdnsp_device *pdev,
struct cdnsp_segment *segment;
union cdnsp_trb *event;
u32 cycle_state;
__le32 data;
u32 data;
event = pdev->event_ring->dequeue;
segment = pdev->event_ring->deq_seg;
......@@ -527,9 +527,9 @@ int cdnsp_wait_for_cmd_compl(struct cdnsp_device *pdev)
dma_addr_t cmd_deq_dma;
union cdnsp_trb *event;
u32 cycle_state;
__le32 flags;
int ret, val;
u64 cmd_dma;
u32 flags;
cmd_trb = pdev->cmd.command_trb;
pdev->cmd.status = 0;
......@@ -1568,7 +1568,7 @@ static void cdnsp_get_ep_buffering(struct cdnsp_device *pdev,
return;
}
endpoints = HCS_ENDPOINTS(readl(&pdev->hcs_params1)) / 2;
endpoints = HCS_ENDPOINTS(pdev->hcs_params1) / 2;
/* Set to XBUF_TX_TAG_MASK_0 register. */
reg += XBUF_TX_CMD_OFFSET + (endpoints * 2 + 2) * sizeof(u32);
......@@ -1754,22 +1754,16 @@ void cdnsp_irq_reset(struct cdnsp_device *pdev)
static void cdnsp_get_rev_cap(struct cdnsp_device *pdev)
{
void __iomem *reg = &pdev->cap_regs->hc_capbase;
struct cdnsp_rev_cap *rev_cap;
reg += cdnsp_find_next_ext_cap(reg, 0, RTL_REV_CAP);
rev_cap = reg;
pdev->rev_cap.ctrl_revision = readl(&rev_cap->ctrl_revision);
pdev->rev_cap.rtl_revision = readl(&rev_cap->rtl_revision);
pdev->rev_cap.ep_supported = readl(&rev_cap->ep_supported);
pdev->rev_cap.ext_cap = readl(&rev_cap->ext_cap);
pdev->rev_cap.rx_buff_size = readl(&rev_cap->rx_buff_size);
pdev->rev_cap.tx_buff_size = readl(&rev_cap->tx_buff_size);
pdev->rev_cap = reg;
dev_info(pdev->dev, "Rev: %08x/%08x, eps: %08x, buff: %08x/%08x\n",
pdev->rev_cap.ctrl_revision, pdev->rev_cap.rtl_revision,
pdev->rev_cap.ep_supported, pdev->rev_cap.rx_buff_size,
pdev->rev_cap.tx_buff_size);
readl(&pdev->rev_cap->ctrl_revision),
readl(&pdev->rev_cap->rtl_revision),
readl(&pdev->rev_cap->ep_supported),
readl(&pdev->rev_cap->rx_buff_size),
readl(&pdev->rev_cap->tx_buff_size));
}
static int cdnsp_gen_setup(struct cdnsp_device *pdev)
......
......@@ -493,11 +493,12 @@ struct cdnsp_3xport_cap {
#define CDNSP_VER_1 0x00000000
#define CDNSP_VER_2 0x10000000
#define CDNSP_IF_EP_EXIST(pdev, ep_num, dir) ((pdev)->rev_cap.ep_supported & \
(BIT(ep_num) << ((dir) ? 0 : 16)))
#define CDNSP_IF_EP_EXIST(pdev, ep_num, dir) \
(readl(&(pdev)->rev_cap->ep_supported) & \
(BIT(ep_num) << ((dir) ? 0 : 16)))
/**
* struct cdnsp_rev_cap - controller capabilities .
* struct cdnsp_rev_cap - controller capabilities.
* @ext_cap: Header for RTL Revision Extended Capability.
* @rtl_revision: RTL revision.
* @rx_buff_size: Rx buffer sizes.
......@@ -594,7 +595,7 @@ struct cdnsp_slot_ctx {
#define DEV_SPEED GENMASK(23, 20)
#define GET_DEV_SPEED(n) (((n) & DEV_SPEED) >> 20)
/* Index of the last valid endpoint context in this device context - 27:31. */
#define LAST_CTX_MASK GENMASK(31, 27)
#define LAST_CTX_MASK ((unsigned int)GENMASK(31, 27))
#define LAST_CTX(p) ((p) << 27)
#define LAST_CTX_TO_EP_NUM(p) (((p) >> 27) - 1)
#define SLOT_FLAG BIT(0)
......@@ -1351,9 +1352,9 @@ struct cdnsp_port {
* @ir_set: Current interrupter register set.
* @port20_regs: Port 2.0 Peripheral Configuration Registers.
* @port3x_regs: USB3.x Port Peripheral Configuration Registers.
* @rev_cap: Controller Capabilities Registers.
* @hcs_params1: Cached register copies of read-only HCSPARAMS1
* @hcc_params: Cached register copies of read-only HCCPARAMS1
* @rev_cap: Controller capability.
* @setup: Temporary buffer for setup packet.
* @ep0_preq: Internal allocated request used during enumeration.
* @ep0_stage: ep0 stage during enumeration process.
......@@ -1402,12 +1403,12 @@ struct cdnsp_device {
struct cdnsp_intr_reg __iomem *ir_set;
struct cdnsp_20port_cap __iomem *port20_regs;
struct cdnsp_3xport_cap __iomem *port3x_regs;
struct cdnsp_rev_cap __iomem *rev_cap;
/* Cached register copies of read-only CDNSP data */
__u32 hcs_params1;
__u32 hcs_params3;
__u32 hcc_params;
struct cdnsp_rev_cap rev_cap;
/* Lock used in interrupt thread context. */
spinlock_t lock;
struct usb_ctrlrequest setup;
......
......@@ -759,8 +759,9 @@ int cdnsp_setup_addressable_priv_dev(struct cdnsp_device *pdev)
port = DEV_PORT(pdev->active_port->port_num);
slot_ctx->dev_port |= cpu_to_le32(port);
slot_ctx->dev_state = (pdev->device_address & DEV_ADDR_MASK);
ep0_ctx->tx_info = EP_AVG_TRB_LENGTH(0x8);
slot_ctx->dev_state = cpu_to_le32((pdev->device_address &
DEV_ADDR_MASK));
ep0_ctx->tx_info = cpu_to_le32(EP_AVG_TRB_LENGTH(0x8));
ep0_ctx->ep_info2 = cpu_to_le32(EP_TYPE(CTRL_EP));
ep0_ctx->ep_info2 |= cpu_to_le32(MAX_BURST(0) | ERROR_COUNT(3) |
max_packets);
......@@ -925,7 +926,7 @@ static u32 cdnsp_get_max_esit_payload(struct usb_gadget *g,
/* SuperSpeedPlus Isoc ep sending over 48k per EIST. */
if (g->speed >= USB_SPEED_SUPER_PLUS &&
USB_SS_SSP_ISOC_COMP(pep->endpoint.desc->bmAttributes))
return le32_to_cpu(pep->endpoint.comp_desc->wBytesPerInterval);
return le16_to_cpu(pep->endpoint.comp_desc->wBytesPerInterval);
/* SuperSpeed or SuperSpeedPlus Isoc ep with less than 48k per esit */
else if (g->speed >= USB_SPEED_SUPER)
return le16_to_cpu(pep->endpoint.comp_desc->wBytesPerInterval);
......@@ -1184,11 +1185,11 @@ static int cdnsp_setup_port_arrays(struct cdnsp_device *pdev)
trace_cdnsp_init("Found USB 2.0 ports and USB 3.0 ports.");
pdev->usb2_port.regs = (struct cdnsp_port_regs *)
pdev->usb2_port.regs = (struct cdnsp_port_regs __iomem *)
(&pdev->op_regs->port_reg_base + NUM_PORT_REGS *
(pdev->usb2_port.port_num - 1));
pdev->usb3_port.regs = (struct cdnsp_port_regs *)
pdev->usb3_port.regs = (struct cdnsp_port_regs __iomem *)
(&pdev->op_regs->port_reg_base + NUM_PORT_REGS *
(pdev->usb3_port.port_num - 1));
......
......@@ -1432,7 +1432,7 @@ static bool cdnsp_handle_event(struct cdnsp_device *pdev)
unsigned int comp_code;
union cdnsp_trb *event;
bool update_ptrs = true;
__le32 cycle_bit;
u32 cycle_bit;
int ret = 0;
u32 flags;
......@@ -2198,7 +2198,7 @@ static int cdnsp_queue_isoc_tx(struct cdnsp_device *pdev,
* inverted in the first TDs isoc TRB.
*/
field = TRB_TYPE(TRB_ISOC) | TRB_TLBPC(last_burst_pkt) |
!start_cycle | TRB_SIA | TRB_TBC(burst_count);
start_cycle ? 0 : 1 | TRB_SIA | TRB_TBC(burst_count);
/* Fill the rest of the TRB fields, and remaining normal TRBs. */
for (i = 0; i < trbs_per_td; i++) {
......
......@@ -620,7 +620,7 @@ DECLARE_EVENT_CLASS(cdnsp_log_slot_ctx,
TP_fast_assign(
__entry->info = le32_to_cpu(ctx->dev_info);
__entry->info2 = le32_to_cpu(ctx->dev_port);
__entry->int_target = le64_to_cpu(ctx->int_target);
__entry->int_target = le32_to_cpu(ctx->int_target);
__entry->state = le32_to_cpu(ctx->dev_state);
),
TP_printk("%s", cdnsp_decode_slot_context(__entry->info,
......
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