}
}
-static bool within(uint32_t addr, uint32_t start, uint32_t end)
+static bool within(uint64_t addr, uint64_t start, uint64_t end)
{
return start <= addr && addr < end;
}
-static void edu_check_range(uint32_t addr, uint32_t size1, uint32_t start,
- uint32_t size2)
+static void edu_check_range(uint64_t addr, uint64_t size1, uint64_t start,
+ uint64_t size2)
{
- uint32_t end1 = addr + size1;
- uint32_t end2 = start + size2;
+ uint64_t end1 = addr + size1;
+ uint64_t end2 = start + size2;
if (within(addr, start, end2) &&
end1 > addr && within(end1, start, end2)) {
return;
}
- hw_error("EDU: DMA range 0x%.8x-0x%.8x out of bounds (0x%.8x-0x%.8x)!",
+ hw_error("EDU: DMA range 0x%016"PRIx64"-0x%016"PRIx64
+ " out of bounds (0x%016"PRIx64"-0x%016"PRIx64")!",
addr, end1 - 1, start, end2 - 1);
}
}
if (EDU_DMA_DIR(edu->dma.cmd) == EDU_DMA_FROM_PCI) {
- uint32_t dst = edu->dma.dst;
+ uint64_t dst = edu->dma.dst;
edu_check_range(dst, edu->dma.cnt, DMA_START, DMA_SIZE);
dst -= DMA_START;
pci_dma_read(&edu->pdev, edu_clamp_addr(edu, edu->dma.src),
edu->dma_buf + dst, edu->dma.cnt);
} else {
- uint32_t src = edu->dma.src;
+ uint64_t src = edu->dma.src;
edu_check_range(src, edu->dma.cnt, DMA_START, DMA_SIZE);
src -= DMA_START;
pci_dma_write(&edu->pdev, edu_clamp_addr(edu, edu->dma.dst),