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path: root/drivers/net/ethernet/intel/ice/ice_nvm.c
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Diffstat (limited to 'drivers/net/ethernet/intel/ice/ice_nvm.c')
-rw-r--r--drivers/net/ethernet/intel/ice/ice_nvm.c90
1 files changed, 46 insertions, 44 deletions
diff --git a/drivers/net/ethernet/intel/ice/ice_nvm.c b/drivers/net/ethernet/intel/ice/ice_nvm.c
index 7e187a804dfa..21f3b615dbbf 100644
--- a/drivers/net/ethernet/intel/ice/ice_nvm.c
+++ b/drivers/net/ethernet/intel/ice/ice_nvm.c
@@ -53,17 +53,27 @@ int ice_aq_read_nvm(struct ice_hw *hw, u16 module_typeid, u32 offset,
* @length: (in) number of bytes to read; (out) number of bytes actually read
* @data: buffer to return data in (sized to fit the specified length)
* @read_shadow_ram: if true, read from shadow RAM instead of NVM
+ * @read_aq_err: if non-NULL, receives the AQ error status of the failing read
*
* Reads a portion of the NVM, as a flat memory space. This function correctly
* breaks read requests across Shadow RAM sectors and ensures that no single
* read request exceeds the maximum 4KB read for a single AdminQ command.
*
+ * FW caps the read lock at a maximum of 3000ms, so a read spanning multiple
+ * 4KB sectors cannot be done under a single lock without FW reclaiming it
+ * mid-read. The NVM lock is therefore acquired and released around each AQ
+ * read, so this function must be called without the lock held.
+ *
+ * Since ice_release_nvm() issues an AQ command that overwrites
+ * hw->adminq.sq_last_status, callers that need the failing read's AQ error
+ * must use @read_aq_err rather than inspecting sq_last_status afterwards.
+ *
* Returns a status code on failure. Note that the data pointer may be
* partially updated if some reads succeed before a failure.
*/
int
ice_read_flat_nvm(struct ice_hw *hw, u32 offset, u32 *length, u8 *data,
- bool read_shadow_ram)
+ bool read_shadow_ram, enum libie_aq_err *read_aq_err)
{
u32 inlen = *length;
u32 bytes_read = 0;
@@ -92,12 +102,30 @@ ice_read_flat_nvm(struct ice_hw *hw, u32 offset, u32 *length, u8 *data,
last_cmd = !(bytes_read + read_size < inlen);
+ status = ice_acquire_nvm(hw, ICE_RES_READ);
+ if (status) {
+ ice_debug(hw, ICE_DBG_NVM, "Failed to acquire NVM lock, err %d aq_err %s\n",
+ status, libie_aq_str(hw->adminq.sq_last_status));
+ break;
+ }
+
status = ice_aq_read_nvm(hw, ICE_AQC_NVM_START_POINT,
offset, read_size,
data + bytes_read, last_cmd,
read_shadow_ram, NULL);
- if (status)
+ if (status) {
+ /* Capture the read's AQ error before ice_release_nvm()
+ * issues its own AQ command and overwrites
+ * sq_last_status.
+ */
+ if (read_aq_err)
+ *read_aq_err = hw->adminq.sq_last_status;
+
+ ice_release_nvm(hw);
break;
+ }
+
+ ice_release_nvm(hw);
bytes_read += read_size;
offset += read_size;
@@ -177,14 +205,19 @@ int ice_aq_erase_nvm(struct ice_hw *hw, u16 module_typeid, struct ice_sq_cd *cd)
}
/**
- * ice_read_sr_word_aq - Reads Shadow RAM via AQ
+ * ice_read_sr_word - Reads Shadow RAM word
* @hw: pointer to the HW structure
* @offset: offset of the Shadow RAM word to read (0x000000 - 0x001FFF)
* @data: word read from the Shadow RAM
*
* Reads one 16 bit word from the Shadow RAM using ice_read_flat_nvm.
+ *
+ * The NVM lock is acquired and released internally by ice_read_flat_nvm()
+ * around the FW read, so this function must be called without the lock held.
+ *
+ * Return: zero on success, or a negative error code on failure.
*/
-static int ice_read_sr_word_aq(struct ice_hw *hw, u16 offset, u16 *data)
+int ice_read_sr_word(struct ice_hw *hw, u16 offset, u16 *data)
{
u32 bytes = sizeof(u16);
__le16 data_local;
@@ -194,7 +227,7 @@ static int ice_read_sr_word_aq(struct ice_hw *hw, u16 offset, u16 *data)
* Shadow RAM sector restrictions necessary when reading from the NVM.
*/
status = ice_read_flat_nvm(hw, offset * sizeof(u16), &bytes,
- (__force u8 *)&data_local, true);
+ (__force u8 *)&data_local, true, NULL);
if (status)
return status;
@@ -330,13 +363,8 @@ ice_read_flash_module(struct ice_hw *hw, enum ice_bank_select bank, u16 module,
return -EINVAL;
}
- status = ice_acquire_nvm(hw, ICE_RES_READ);
- if (status)
- return status;
-
- status = ice_read_flat_nvm(hw, start + offset, &length, data, false);
-
- ice_release_nvm(hw);
+ status = ice_read_flat_nvm(hw, start + offset, &length, data, false,
+ NULL);
return status;
}
@@ -419,27 +447,6 @@ ice_read_netlist_module(struct ice_hw *hw, enum ice_bank_select bank, u32 offset
}
/**
- * ice_read_sr_word - Reads Shadow RAM word and acquire NVM if necessary
- * @hw: pointer to the HW structure
- * @offset: offset of the Shadow RAM word to read (0x000000 - 0x001FFF)
- * @data: word read from the Shadow RAM
- *
- * Reads one 16 bit word from the Shadow RAM using the ice_read_sr_word_aq.
- */
-int ice_read_sr_word(struct ice_hw *hw, u16 offset, u16 *data)
-{
- int status;
-
- status = ice_acquire_nvm(hw, ICE_RES_READ);
- if (!status) {
- status = ice_read_sr_word_aq(hw, offset, data);
- ice_release_nvm(hw);
- }
-
- return status;
-}
-
-/**
* ice_get_pfa_module_tlv - Reads sub module TLV from NVM PFA
* @hw: pointer to hardware structure
* @module_tlv: pointer to module TLV to return
@@ -856,20 +863,18 @@ int ice_get_inactive_netlist_ver(struct ice_hw *hw, struct ice_netlist_info *net
static int ice_discover_flash_size(struct ice_hw *hw)
{
u32 min_size = 0, max_size = ICE_AQC_NVM_MAX_OFFSET + 1;
- int status;
-
- status = ice_acquire_nvm(hw, ICE_RES_READ);
- if (status)
- return status;
+ int status = 0;
while ((max_size - min_size) > 1) {
+ enum libie_aq_err read_aq_err = LIBIE_AQ_RC_OK;
u32 offset = (max_size + min_size) / 2;
u32 len = 1;
u8 data;
- status = ice_read_flat_nvm(hw, offset, &len, &data, false);
+ status = ice_read_flat_nvm(hw, offset, &len, &data, false,
+ &read_aq_err);
if (status == -EIO &&
- hw->adminq.sq_last_status == LIBIE_AQ_RC_EINVAL) {
+ read_aq_err == LIBIE_AQ_RC_EINVAL) {
ice_debug(hw, ICE_DBG_NVM, "%s: New upper bound of %u bytes\n",
__func__, offset);
status = 0;
@@ -880,7 +885,7 @@ static int ice_discover_flash_size(struct ice_hw *hw)
min_size = offset;
} else {
/* an unexpected error occurred */
- goto err_read_flat_nvm;
+ return status;
}
}
@@ -888,9 +893,6 @@ static int ice_discover_flash_size(struct ice_hw *hw)
hw->flash.flash_size = max_size;
-err_read_flat_nvm:
- ice_release_nvm(hw);
-
return status;
}