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powerpc/pseries: Add driver for PAPR SCM regions
Adds a driver that implements support for enabling and accessing PAPR SCM regions. Unfortunately due to how the PAPR interface works we can't use the existing of_pmem driver (yet) because: a) The guest is required to use the H_SCM_BIND_MEM h-call to add add the SCM region to it's physical address space, and b) There is currently no mechanism for relating a bare of_pmem region to the backing DIMM (or not-a-DIMM for our case). Both of these are easily handled by rolling the functionality into a seperate driver so here we are... Acked-by: Dan Williams <dan.j.williams@intel.com> Signed-off-by: Oliver O'Halloran <oohall@gmail.com> Signed-off-by: Michael Ellerman <mpe@ellerman.id.au>
This commit is contained in:
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4c5d87db49
commit
b5beae5e22
@ -138,3 +138,10 @@ config IBMEBUS
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bool "Support for GX bus based adapters"
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help
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Bus device driver for GX bus based adapters.
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config PAPR_SCM
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depends on PPC_PSERIES && MEMORY_HOTPLUG
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select LIBNVDIMM
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tristate "Support for the PAPR Storage Class Memory interface"
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help
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Enable access to hypervisor provided storage class memory.
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@ -24,6 +24,7 @@ obj-$(CONFIG_IO_EVENT_IRQ) += io_event_irq.o
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obj-$(CONFIG_LPARCFG) += lparcfg.o
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obj-$(CONFIG_IBMVIO) += vio.o
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obj-$(CONFIG_IBMEBUS) += ibmebus.o
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obj-$(CONFIG_PAPR_SCM) += papr_scm.o
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ifdef CONFIG_PPC_PSERIES
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obj-$(CONFIG_SUSPEND) += suspend.o
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345
arch/powerpc/platforms/pseries/papr_scm.c
Normal file
345
arch/powerpc/platforms/pseries/papr_scm.c
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@ -0,0 +1,345 @@
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// SPDX-License-Identifier: GPL-2.0
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#define pr_fmt(fmt) "papr-scm: " fmt
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#include <linux/of.h>
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#include <linux/kernel.h>
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#include <linux/module.h>
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#include <linux/ioport.h>
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#include <linux/slab.h>
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#include <linux/ndctl.h>
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#include <linux/sched.h>
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#include <linux/libnvdimm.h>
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#include <linux/platform_device.h>
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#include <asm/plpar_wrappers.h>
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#define BIND_ANY_ADDR (~0ul)
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#define PAPR_SCM_DIMM_CMD_MASK \
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((1ul << ND_CMD_GET_CONFIG_SIZE) | \
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(1ul << ND_CMD_GET_CONFIG_DATA) | \
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(1ul << ND_CMD_SET_CONFIG_DATA))
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struct papr_scm_priv {
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struct platform_device *pdev;
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struct device_node *dn;
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uint32_t drc_index;
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uint64_t blocks;
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uint64_t block_size;
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int metadata_size;
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uint64_t bound_addr;
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struct nvdimm_bus_descriptor bus_desc;
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struct nvdimm_bus *bus;
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struct nvdimm *nvdimm;
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struct resource res;
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struct nd_region *region;
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struct nd_interleave_set nd_set;
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};
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static int drc_pmem_bind(struct papr_scm_priv *p)
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{
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unsigned long ret[PLPAR_HCALL_BUFSIZE];
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uint64_t rc, token;
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/*
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* When the hypervisor cannot map all the requested memory in a single
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* hcall it returns H_BUSY and we call again with the token until
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* we get H_SUCCESS. Aborting the retry loop before getting H_SUCCESS
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* leave the system in an undefined state, so we wait.
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*/
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token = 0;
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do {
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rc = plpar_hcall(H_SCM_BIND_MEM, ret, p->drc_index, 0,
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p->blocks, BIND_ANY_ADDR, token);
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token = be64_to_cpu(ret[0]);
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cond_resched();
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} while (rc == H_BUSY);
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if (rc) {
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dev_err(&p->pdev->dev, "bind err: %lld\n", rc);
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return -ENXIO;
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}
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p->bound_addr = be64_to_cpu(ret[1]);
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dev_dbg(&p->pdev->dev, "bound drc %x to %pR\n", p->drc_index, &p->res);
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return 0;
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}
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static int drc_pmem_unbind(struct papr_scm_priv *p)
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{
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unsigned long ret[PLPAR_HCALL_BUFSIZE];
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uint64_t rc, token;
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token = 0;
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/* NB: unbind has the same retry requirements mentioned above */
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do {
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rc = plpar_hcall(H_SCM_UNBIND_MEM, ret, p->drc_index,
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p->bound_addr, p->blocks, token);
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token = be64_to_cpu(ret);
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cond_resched();
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} while (rc == H_BUSY);
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if (rc)
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dev_err(&p->pdev->dev, "unbind error: %lld\n", rc);
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return !!rc;
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}
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static int papr_scm_meta_get(struct papr_scm_priv *p,
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struct nd_cmd_get_config_data_hdr *hdr)
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{
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unsigned long data[PLPAR_HCALL_BUFSIZE];
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int64_t ret;
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if (hdr->in_offset >= p->metadata_size || hdr->in_length != 1)
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return -EINVAL;
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ret = plpar_hcall(H_SCM_READ_METADATA, data, p->drc_index,
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hdr->in_offset, 1);
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if (ret == H_PARAMETER) /* bad DRC index */
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return -ENODEV;
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if (ret)
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return -EINVAL; /* other invalid parameter */
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hdr->out_buf[0] = data[0] & 0xff;
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return 0;
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}
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static int papr_scm_meta_set(struct papr_scm_priv *p,
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struct nd_cmd_set_config_hdr *hdr)
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{
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int64_t ret;
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if (hdr->in_offset >= p->metadata_size || hdr->in_length != 1)
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return -EINVAL;
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ret = plpar_hcall_norets(H_SCM_WRITE_METADATA,
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p->drc_index, hdr->in_offset, hdr->in_buf[0], 1);
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if (ret == H_PARAMETER) /* bad DRC index */
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return -ENODEV;
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if (ret)
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return -EINVAL; /* other invalid parameter */
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return 0;
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}
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int papr_scm_ndctl(struct nvdimm_bus_descriptor *nd_desc, struct nvdimm *nvdimm,
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unsigned int cmd, void *buf, unsigned int buf_len, int *cmd_rc)
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{
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struct nd_cmd_get_config_size *get_size_hdr;
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struct papr_scm_priv *p;
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/* Only dimm-specific calls are supported atm */
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if (!nvdimm)
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return -EINVAL;
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p = nvdimm_provider_data(nvdimm);
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switch (cmd) {
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case ND_CMD_GET_CONFIG_SIZE:
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get_size_hdr = buf;
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get_size_hdr->status = 0;
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get_size_hdr->max_xfer = 1;
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get_size_hdr->config_size = p->metadata_size;
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*cmd_rc = 0;
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break;
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case ND_CMD_GET_CONFIG_DATA:
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*cmd_rc = papr_scm_meta_get(p, buf);
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break;
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case ND_CMD_SET_CONFIG_DATA:
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*cmd_rc = papr_scm_meta_set(p, buf);
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break;
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default:
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return -EINVAL;
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}
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dev_dbg(&p->pdev->dev, "returned with cmd_rc = %d\n", *cmd_rc);
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return 0;
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}
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static const struct attribute_group *region_attr_groups[] = {
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&nd_region_attribute_group,
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&nd_device_attribute_group,
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&nd_mapping_attribute_group,
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&nd_numa_attribute_group,
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NULL,
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};
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static const struct attribute_group *bus_attr_groups[] = {
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&nvdimm_bus_attribute_group,
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NULL,
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};
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static const struct attribute_group *papr_scm_dimm_groups[] = {
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&nvdimm_attribute_group,
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&nd_device_attribute_group,
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NULL,
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};
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static int papr_scm_nvdimm_init(struct papr_scm_priv *p)
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{
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struct device *dev = &p->pdev->dev;
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struct nd_mapping_desc mapping;
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struct nd_region_desc ndr_desc;
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unsigned long dimm_flags;
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p->bus_desc.ndctl = papr_scm_ndctl;
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p->bus_desc.module = THIS_MODULE;
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p->bus_desc.of_node = p->pdev->dev.of_node;
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p->bus_desc.attr_groups = bus_attr_groups;
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p->bus_desc.provider_name = kstrdup(p->pdev->name, GFP_KERNEL);
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if (!p->bus_desc.provider_name)
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return -ENOMEM;
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p->bus = nvdimm_bus_register(NULL, &p->bus_desc);
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if (!p->bus) {
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dev_err(dev, "Error creating nvdimm bus %pOF\n", p->dn);
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return -ENXIO;
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}
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dimm_flags = 0;
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set_bit(NDD_ALIASING, &dimm_flags);
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p->nvdimm = nvdimm_create(p->bus, p, papr_scm_dimm_groups,
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dimm_flags, PAPR_SCM_DIMM_CMD_MASK, 0, NULL);
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if (!p->nvdimm) {
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dev_err(dev, "Error creating DIMM object for %pOF\n", p->dn);
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goto err;
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}
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/* now add the region */
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memset(&mapping, 0, sizeof(mapping));
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mapping.nvdimm = p->nvdimm;
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mapping.start = 0;
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mapping.size = p->blocks * p->block_size; // XXX: potential overflow?
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memset(&ndr_desc, 0, sizeof(ndr_desc));
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ndr_desc.attr_groups = region_attr_groups;
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ndr_desc.numa_node = dev_to_node(&p->pdev->dev);
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ndr_desc.res = &p->res;
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ndr_desc.of_node = p->dn;
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ndr_desc.provider_data = p;
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ndr_desc.mapping = &mapping;
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ndr_desc.num_mappings = 1;
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ndr_desc.nd_set = &p->nd_set;
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set_bit(ND_REGION_PAGEMAP, &ndr_desc.flags);
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p->region = nvdimm_pmem_region_create(p->bus, &ndr_desc);
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if (!p->region) {
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dev_err(dev, "Error registering region %pR from %pOF\n",
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ndr_desc.res, p->dn);
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goto err;
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}
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return 0;
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err: nvdimm_bus_unregister(p->bus);
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kfree(p->bus_desc.provider_name);
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return -ENXIO;
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}
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static int papr_scm_probe(struct platform_device *pdev)
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{
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uint32_t drc_index, metadata_size, unit_cap[2];
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struct device_node *dn = pdev->dev.of_node;
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struct papr_scm_priv *p;
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int rc;
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/* check we have all the required DT properties */
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if (of_property_read_u32(dn, "ibm,my-drc-index", &drc_index)) {
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dev_err(&pdev->dev, "%pOF: missing drc-index!\n", dn);
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return -ENODEV;
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}
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if (of_property_read_u32_array(dn, "ibm,unit-capacity", unit_cap, 2)) {
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dev_err(&pdev->dev, "%pOF: missing unit-capacity!\n", dn);
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return -ENODEV;
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}
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p = kzalloc(sizeof(*p), GFP_KERNEL);
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if (!p)
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return -ENOMEM;
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/* optional DT properties */
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of_property_read_u32(dn, "ibm,metadata-size", &metadata_size);
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p->dn = dn;
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p->drc_index = drc_index;
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p->block_size = unit_cap[0];
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p->blocks = unit_cap[1];
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/* might be zero */
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p->metadata_size = metadata_size;
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p->pdev = pdev;
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/* request the hypervisor to bind this region to somewhere in memory */
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rc = drc_pmem_bind(p);
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if (rc)
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goto err;
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/* setup the resource for the newly bound range */
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p->res.start = p->bound_addr;
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p->res.end = p->bound_addr + p->blocks * p->block_size;
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p->res.name = pdev->name;
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p->res.flags = IORESOURCE_MEM;
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rc = papr_scm_nvdimm_init(p);
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if (rc)
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goto err2;
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platform_set_drvdata(pdev, p);
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return 0;
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err2: drc_pmem_unbind(p);
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err: kfree(p);
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return rc;
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}
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static int papr_scm_remove(struct platform_device *pdev)
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{
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struct papr_scm_priv *p = platform_get_drvdata(pdev);
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nvdimm_bus_unregister(p->bus);
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drc_pmem_unbind(p);
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kfree(p);
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return 0;
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}
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static const struct of_device_id papr_scm_match[] = {
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{ .compatible = "ibm,pmemory" },
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{ },
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};
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static struct platform_driver papr_scm_driver = {
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.probe = papr_scm_probe,
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.remove = papr_scm_remove,
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.driver = {
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.name = "papr_scm",
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.owner = THIS_MODULE,
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.of_match_table = papr_scm_match,
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},
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};
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module_platform_driver(papr_scm_driver);
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MODULE_DEVICE_TABLE(of, papr_scm_match);
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MODULE_LICENSE("GPL");
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MODULE_AUTHOR("IBM Corporation");
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