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nouveau/instmem: use iomapping interface for instmem handling
This avoids constant need to ioremap when instobjs move at least on 64-bit systems. This create the io mapping on first use, because creating it at init time causes a resource mapping error, because nouveau hasn't kicked simpledrm off the hardware yet, but ioremap_wc the whole BAR causes an overlap with BOOTFB/simpledrm. I think the resource system could do better here, but it's easier to just delay creating the mapping until first use. Signed-off-by: Dave Airlie <airlied@redhat.com> Link: https://patch.msgid.link/20260706030520.857104-1-airlied@gmail.com Signed-off-by: Danilo Krummrich <dakr@kernel.org>
This commit is contained in:
parent
a284476db2
commit
34e27b9055
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@ -297,6 +297,7 @@ r535_fbsr = {
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static void *
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static void *
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r535_instmem_dtor(struct nvkm_instmem *imem)
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r535_instmem_dtor(struct nvkm_instmem *imem)
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{
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{
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nv50_instmem_dtor(imem);
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kfree(imem->func);
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kfree(imem->func);
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return imem;
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return imem;
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}
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}
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@ -30,10 +30,14 @@
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#include <subdev/gsp.h>
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#include <subdev/gsp.h>
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#include <subdev/mmu.h>
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#include <subdev/mmu.h>
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#include <linux/io-mapping.h>
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struct nv50_instmem {
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struct nv50_instmem {
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struct nvkm_instmem base;
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struct nvkm_instmem base;
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u64 addr;
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u64 addr;
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struct io_mapping iomap;
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/* Mappings that can be evicted when BAR2 space has been exhausted. */
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/* Mappings that can be evicted when BAR2 space has been exhausted. */
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struct list_head lru;
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struct list_head lru;
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};
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};
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@ -124,7 +128,6 @@ nv50_instobj_kmap(struct nv50_instobj *iobj, struct nvkm_vmm *vmm)
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struct nv50_instobj *eobj;
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struct nv50_instobj *eobj;
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struct nvkm_memory *memory = &iobj->base.memory;
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struct nvkm_memory *memory = &iobj->base.memory;
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struct nvkm_subdev *subdev = &imem->base.subdev;
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struct nvkm_subdev *subdev = &imem->base.subdev;
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struct nvkm_device *device = subdev->device;
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struct nvkm_vma *bar = NULL, *ebar;
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struct nvkm_vma *bar = NULL, *ebar;
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u64 size = nvkm_memory_size(memory);
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u64 size = nvkm_memory_size(memory);
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void *emap;
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void *emap;
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@ -155,7 +158,7 @@ nv50_instobj_kmap(struct nv50_instobj *iobj, struct nvkm_vmm *vmm)
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mutex_unlock(&imem->base.mutex);
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mutex_unlock(&imem->base.mutex);
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if (!eobj)
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if (!eobj)
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break;
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break;
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iounmap(emap);
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io_mapping_unmap(emap);
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nvkm_vmm_put(vmm, &ebar);
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nvkm_vmm_put(vmm, &ebar);
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}
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}
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@ -172,8 +175,7 @@ nv50_instobj_kmap(struct nv50_instobj *iobj, struct nvkm_vmm *vmm)
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/* Make the mapping visible to the host. */
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/* Make the mapping visible to the host. */
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iobj->bar = bar;
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iobj->bar = bar;
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iobj->map = ioremap_wc(device->func->resource_addr(device, NVKM_BAR2_INST) +
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iobj->map = io_mapping_map_wc(&imem->iomap, (u32)iobj->bar->addr, size);
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(u32)iobj->bar->addr, size);
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if (!iobj->map) {
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if (!iobj->map) {
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nvkm_warn(subdev, "PRAMIN ioremap failed\n");
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nvkm_warn(subdev, "PRAMIN ioremap failed\n");
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nvkm_vmm_put(vmm, &iobj->bar);
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nvkm_vmm_put(vmm, &iobj->bar);
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@ -188,6 +190,16 @@ nv50_instobj_map(struct nvkm_memory *memory, u64 offset, struct nvkm_vmm *vmm,
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return nvkm_memory_map(memory, offset, vmm, vma, argv, argc);
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return nvkm_memory_map(memory, offset, vmm, vma, argv, argc);
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}
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}
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static bool
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check_io_mapping(struct nv50_instmem *imem)
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{
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struct nvkm_device *device = imem->base.subdev.device;
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return io_mapping_init_wc(&imem->iomap,
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device->func->resource_addr(device, NVKM_BAR2_INST),
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device->func->resource_size(device, NVKM_BAR2_INST)) != NULL;
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}
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static void
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static void
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nv50_instobj_release(struct nvkm_memory *memory)
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nv50_instobj_release(struct nvkm_memory *memory)
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{
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{
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@ -239,7 +251,7 @@ nv50_instobj_acquire(struct nvkm_memory *memory)
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/* Attempt to get a direct CPU mapping of the object. */
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/* Attempt to get a direct CPU mapping of the object. */
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if ((vmm = nvkm_bar_bar2_vmm(imem->subdev.device))) {
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if ((vmm = nvkm_bar_bar2_vmm(imem->subdev.device))) {
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if (!iobj->map)
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if (!iobj->map && iobj->imem->iomap.size)
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nv50_instobj_kmap(iobj, vmm);
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nv50_instobj_kmap(iobj, vmm);
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map = iobj->map;
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map = iobj->map;
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}
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}
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@ -277,7 +289,12 @@ nv50_instobj_boot(struct nvkm_memory *memory, struct nvkm_vmm *vmm)
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iobj->lru.next = NULL;
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iobj->lru.next = NULL;
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}
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}
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nv50_instobj_kmap(iobj, vmm);
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/*
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* boot is only called on BAR2, if we can't remap the complete
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* BAR it's unlikely things are functioning well.
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*/
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if (check_io_mapping(iobj->imem))
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nv50_instobj_kmap(iobj, vmm);
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nvkm_instmem_boot(imem);
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nvkm_instmem_boot(imem);
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mutex_unlock(&imem->mutex);
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mutex_unlock(&imem->mutex);
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}
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}
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@ -330,7 +347,7 @@ nv50_instobj_dtor(struct nvkm_memory *memory)
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if (map) {
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if (map) {
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struct nvkm_vmm *vmm = nvkm_bar_bar2_vmm(imem->subdev.device);
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struct nvkm_vmm *vmm = nvkm_bar_bar2_vmm(imem->subdev.device);
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iounmap(map);
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io_mapping_unmap(map);
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if (likely(vmm)) /* Can be NULL during BAR destructor. */
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if (likely(vmm)) /* Can be NULL during BAR destructor. */
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nvkm_vmm_put(vmm, &bar);
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nvkm_vmm_put(vmm, &bar);
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}
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}
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@ -406,10 +423,14 @@ nv50_instmem_fini(struct nvkm_instmem *base)
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nv50_instmem(base)->addr = ~0ULL;
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nv50_instmem(base)->addr = ~0ULL;
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}
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}
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static void *
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void *
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nv50_instmem_dtor(struct nvkm_instmem *base)
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nv50_instmem_dtor(struct nvkm_instmem *base)
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{
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{
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return nv50_instmem(base);
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struct nv50_instmem *imem = nv50_instmem(base);
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if (imem->iomap.size)
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io_mapping_fini(&imem->iomap);
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return imem;
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}
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}
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static const struct nvkm_instmem_func
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static const struct nvkm_instmem_func
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@ -26,6 +26,7 @@ int nv50_instobj_new(struct nvkm_instmem *, u32 size, u32 align, bool zero,
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struct nvkm_memory **);
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struct nvkm_memory **);
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int nv50_instobj_wrap(struct nvkm_instmem *, struct nvkm_memory *vram,
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int nv50_instobj_wrap(struct nvkm_instmem *, struct nvkm_memory *vram,
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struct nvkm_memory **bar2);
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struct nvkm_memory **bar2);
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void *nv50_instmem_dtor(struct nvkm_instmem *base);
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void nvkm_instmem_ctor(const struct nvkm_instmem_func *, struct nvkm_device *,
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void nvkm_instmem_ctor(const struct nvkm_instmem_func *, struct nvkm_device *,
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enum nvkm_subdev_type, int, struct nvkm_instmem *);
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enum nvkm_subdev_type, int, struct nvkm_instmem *);
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