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authorSreeraj S Kurup <sreekuttan2156239@gmail.com>2026-07-28 12:28:10 +0000
committerManivannan Sadhasivam <manivannan.sadhasivam@oss.qualcomm.com>2026-09-10 10:09:58 +0200
commit13335fca4c23b1a6736ec9c7efc3750154a2ca24 (patch)
tree87c5e4f76e724b33c174cb9527c26f04a4bc6da4
parentcee9395acd8043be0644b25c34bfa86623f2b935 (diff)
downloadlinux-next-13335fca4c23b1a6736ec9c7efc3750154a2ca24.tar.gz
linux-next-13335fca4c23b1a6736ec9c7efc3750154a2ca24.zip
PCI: mediatek-gen3: Fix 64-bit type truncation in mtk_pcie_set_trans_table()
The variables cpu_addr, pci_addr, and remaining in mtk_pcie_set_trans_table() are of type resource_size_t, which is 64-bit on 64-bit architectures. Using 32-bit helpers fls(), ffs(), and BIT() causes 64-bit integer truncation when computing window sizes and address alignments above 4GB. Fix this by switching to fls64(), __ffs64(), and BIT_ULL(). Note that __ffs64() uses 0-based indexing, so the '- 1' offset is removed. Additionally, return -ENOMEM when translation tables are exhausted to prevent silent failure. Signed-off-by: Sreeraj S Kurup <sreekuttan2156239@gmail.com> Signed-off-by: Manivannan Sadhasivam <manivannan.sadhasivam@oss.qualcomm.com> Link: https://patch.msgid.link/20260728122810.3475-1-sreekuttan2156239@gmail.com
-rw-r--r--drivers/pci/controller/pcie-mediatek-gen3.c15
1 files changed, 10 insertions, 5 deletions
diff --git a/drivers/pci/controller/pcie-mediatek-gen3.c b/drivers/pci/controller/pcie-mediatek-gen3.c
index bcbd08c82a5c..e2fb6e372ede 100644
--- a/drivers/pci/controller/pcie-mediatek-gen3.c
+++ b/drivers/pci/controller/pcie-mediatek-gen3.c
@@ -7,6 +7,8 @@
*/
#include <linux/bitfield.h>
+#include <linux/bitops.h>
+#include <linux/bits.h>
#include <linux/clk.h>
#include <linux/clk-provider.h>
#include <linux/delay.h>
@@ -334,10 +336,10 @@ static int mtk_pcie_set_trans_table(struct mtk_gen3_pcie *pcie,
while (remaining && (*num < PCIE_MAX_TRANS_TABLES)) {
/* Table size needs to be a power of 2 */
- table_size = BIT(fls(remaining) - 1);
+ table_size = BIT_ULL(fls64(remaining) - 1);
if (cpu_addr > 0) {
- addr_align = BIT(ffs(cpu_addr) - 1);
+ addr_align = BIT_ULL(__ffs64(cpu_addr));
table_size = min(table_size, addr_align);
}
@@ -349,7 +351,8 @@ static int mtk_pcie_set_trans_table(struct mtk_gen3_pcie *pcie,
}
table = pcie->base + PCIE_TRANS_TABLE_BASE_REG + *num * PCIE_ATR_TLB_SET_OFFSET;
- writel_relaxed(lower_32_bits(cpu_addr) | PCIE_ATR_SIZE(fls(table_size) - 1), table);
+ writel_relaxed(lower_32_bits(cpu_addr) |
+ PCIE_ATR_SIZE(fls64(table_size) - 1), table);
writel_relaxed(upper_32_bits(cpu_addr), table + PCIE_ATR_SRC_ADDR_MSB_OFFSET);
writel_relaxed(lower_32_bits(pci_addr), table + PCIE_ATR_TRSL_ADDR_LSB_OFFSET);
writel_relaxed(upper_32_bits(pci_addr), table + PCIE_ATR_TRSL_ADDR_MSB_OFFSET);
@@ -375,9 +378,11 @@ static int mtk_pcie_set_trans_table(struct mtk_gen3_pcie *pcie,
(*num)++;
}
- if (remaining)
- dev_warn(pcie->dev, "not enough translate table for addr: %#llx, limited to [%d]\n",
+ if (remaining) {
+ dev_err(pcie->dev, "not enough translate table for addr: %#llx, limited to [%d]\n",
(unsigned long long)cpu_addr, PCIE_MAX_TRANS_TABLES);
+ return -ENOMEM;
+ }
return 0;
}