* (GNU GPL), version 2 or later.
*/
-#include "dma.h"
+#include "sysemu/dma.h"
#include "trace.h"
-#include "range.h"
-#include "qemu-thread.h"
+#include "qemu/range.h"
+#include "qemu/thread.h"
+#include "qemu/main-loop.h"
/* #define DEBUG_IOMMU */
-static void do_dma_memory_set(dma_addr_t addr, uint8_t c, dma_addr_t len)
+int dma_memory_set(AddressSpace *as, dma_addr_t addr, uint8_t c, dma_addr_t len)
{
+ dma_barrier(as, DMA_DIRECTION_FROM_DEVICE);
+
#define FILLBUF_SIZE 512
uint8_t fillbuf[FILLBUF_SIZE];
int l;
+ bool error = false;
memset(fillbuf, c, FILLBUF_SIZE);
while (len > 0) {
l = len < FILLBUF_SIZE ? len : FILLBUF_SIZE;
- cpu_physical_memory_rw(addr, fillbuf, l, true);
- len -= len;
- addr += len;
- }
-}
-
-int dma_memory_set(DMAContext *dma, dma_addr_t addr, uint8_t c, dma_addr_t len)
-{
- dma_barrier(dma, DMA_DIRECTION_FROM_DEVICE);
-
- if (dma_has_iommu(dma)) {
- return iommu_dma_memory_set(dma, addr, c, len);
+ error |= address_space_rw(as, addr, fillbuf, l, true);
+ len -= l;
+ addr += l;
}
- do_dma_memory_set(addr, c, len);
- return 0;
+ return error;
}
-void qemu_sglist_init(QEMUSGList *qsg, int alloc_hint, DMAContext *dma)
+void qemu_sglist_init(QEMUSGList *qsg, DeviceState *dev, int alloc_hint,
+ AddressSpace *as)
{
qsg->sg = g_malloc(alloc_hint * sizeof(ScatterGatherEntry));
qsg->nsg = 0;
qsg->nalloc = alloc_hint;
qsg->size = 0;
- qsg->dma = dma;
+ qsg->as = as;
+ qsg->dev = dev;
+ object_ref(OBJECT(dev));
}
void qemu_sglist_add(QEMUSGList *qsg, dma_addr_t base, dma_addr_t len)
void qemu_sglist_destroy(QEMUSGList *qsg)
{
+ object_unref(OBJECT(qsg->dev));
g_free(qsg->sg);
+ memset(qsg, 0, sizeof(*qsg));
}
typedef struct {
int i;
for (i = 0; i < dbs->iov.niov; ++i) {
- dma_memory_unmap(dbs->sg->dma, dbs->iov.iov[i].iov_base,
+ dma_memory_unmap(dbs->sg->as, dbs->iov.iov[i].iov_base,
dbs->iov.iov[i].iov_len, dbs->dir,
dbs->iov.iov[i].iov_len);
}
while (dbs->sg_cur_index < dbs->sg->nsg) {
cur_addr = dbs->sg->sg[dbs->sg_cur_index].base + dbs->sg_cur_byte;
cur_len = dbs->sg->sg[dbs->sg_cur_index].len - dbs->sg_cur_byte;
- mem = dma_memory_map(dbs->sg->dma, cur_addr, &cur_len, dbs->dir);
+ mem = dma_memory_map(dbs->sg->as, cur_addr, &cur_len, dbs->dir);
if (!mem)
break;
qemu_iovec_add(&dbs->iov, mem, cur_len);
dma_complete(dbs, 0);
}
-static AIOPool dma_aio_pool = {
+static const AIOCBInfo dma_aiocb_info = {
.aiocb_size = sizeof(DMAAIOCB),
.cancel = dma_aio_cancel,
};
DMAIOFunc *io_func, BlockDriverCompletionFunc *cb,
void *opaque, DMADirection dir)
{
- DMAAIOCB *dbs = qemu_aio_get(&dma_aio_pool, bs, cb, opaque);
+ DMAAIOCB *dbs = qemu_aio_get(&dma_aiocb_info, bs, cb, opaque);
trace_dma_bdrv_io(dbs, bs, sector_num, (dir == DMA_DIRECTION_TO_DEVICE));
while (len > 0) {
ScatterGatherEntry entry = sg->sg[sg_cur_index++];
int32_t xfer = MIN(len, entry.len);
- dma_memory_rw(sg->dma, entry.base, ptr, xfer, dir);
+ dma_memory_rw(sg->as, entry.base, ptr, xfer, dir);
ptr += xfer;
len -= xfer;
resid -= xfer;
{
bdrv_acct_start(bs, cookie, sg->size, type);
}
-
-bool iommu_dma_memory_valid(DMAContext *dma, dma_addr_t addr, dma_addr_t len,
- DMADirection dir)
-{
- target_phys_addr_t paddr, plen;
-
-#ifdef DEBUG_IOMMU
- fprintf(stderr, "dma_memory_check context=%p addr=0x" DMA_ADDR_FMT
- " len=0x" DMA_ADDR_FMT " dir=%d\n", dma, addr, len, dir);
-#endif
-
- while (len) {
- if (dma->translate(dma, addr, &paddr, &plen, dir) != 0) {
- return false;
- }
-
- /* The translation might be valid for larger regions. */
- if (plen > len) {
- plen = len;
- }
-
- len -= plen;
- addr += plen;
- }
-
- return true;
-}
-
-int iommu_dma_memory_rw(DMAContext *dma, dma_addr_t addr,
- void *buf, dma_addr_t len, DMADirection dir)
-{
- target_phys_addr_t paddr, plen;
- int err;
-
-#ifdef DEBUG_IOMMU
- fprintf(stderr, "dma_memory_rw context=%p addr=0x" DMA_ADDR_FMT " len=0x"
- DMA_ADDR_FMT " dir=%d\n", dma, addr, len, dir);
-#endif
-
- while (len) {
- err = dma->translate(dma, addr, &paddr, &plen, dir);
- if (err) {
- /*
- * In case of failure on reads from the guest, we clean the
- * destination buffer so that a device that doesn't test
- * for errors will not expose qemu internal memory.
- */
- memset(buf, 0, len);
- return -1;
- }
-
- /* The translation might be valid for larger regions. */
- if (plen > len) {
- plen = len;
- }
-
- cpu_physical_memory_rw(paddr, buf, plen,
- dir == DMA_DIRECTION_FROM_DEVICE);
-
- len -= plen;
- addr += plen;
- buf += plen;
- }
-
- return 0;
-}
-
-int iommu_dma_memory_set(DMAContext *dma, dma_addr_t addr, uint8_t c,
- dma_addr_t len)
-{
- target_phys_addr_t paddr, plen;
- int err;
-
-#ifdef DEBUG_IOMMU
- fprintf(stderr, "dma_memory_set context=%p addr=0x" DMA_ADDR_FMT
- " len=0x" DMA_ADDR_FMT "\n", dma, addr, len);
-#endif
-
- while (len) {
- err = dma->translate(dma, addr, &paddr, &plen,
- DMA_DIRECTION_FROM_DEVICE);
- if (err) {
- return err;
- }
-
- /* The translation might be valid for larger regions. */
- if (plen > len) {
- plen = len;
- }
-
- do_dma_memory_set(paddr, c, plen);
-
- len -= plen;
- addr += plen;
- }
-
- return 0;
-}
-
-void dma_context_init(DMAContext *dma, DMATranslateFunc translate,
- DMAMapFunc map, DMAUnmapFunc unmap)
-{
-#ifdef DEBUG_IOMMU
- fprintf(stderr, "dma_context_init(%p, %p, %p, %p)\n",
- dma, translate, map, unmap);
-#endif
- dma->translate = translate;
- dma->map = map;
- dma->unmap = unmap;
-}
-
-void *iommu_dma_memory_map(DMAContext *dma, dma_addr_t addr, dma_addr_t *len,
- DMADirection dir)
-{
- int err;
- target_phys_addr_t paddr, plen;
- void *buf;
-
- if (dma->map) {
- return dma->map(dma, addr, len, dir);
- }
-
- plen = *len;
- err = dma->translate(dma, addr, &paddr, &plen, dir);
- if (err) {
- return NULL;
- }
-
- /*
- * If this is true, the virtual region is contiguous,
- * but the translated physical region isn't. We just
- * clamp *len, much like cpu_physical_memory_map() does.
- */
- if (plen < *len) {
- *len = plen;
- }
-
- buf = cpu_physical_memory_map(paddr, &plen,
- dir == DMA_DIRECTION_FROM_DEVICE);
- *len = plen;
-
- return buf;
-}
-
-void iommu_dma_memory_unmap(DMAContext *dma, void *buffer, dma_addr_t len,
- DMADirection dir, dma_addr_t access_len)
-{
- if (dma->unmap) {
- dma->unmap(dma, buffer, len, dir, access_len);
- return;
- }
-
- cpu_physical_memory_unmap(buffer, len,
- dir == DMA_DIRECTION_FROM_DEVICE,
- access_len);
-
-}