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The RTAS call can be normal where retrieves the data form the hypervisor once or sequence based RTAS call which has to issue multiple times until the complete data is obtained. For some of these sequence RTAS calls, the OS should not interleave calls with different input until the sequence is completed. The data is collected for each call and copy to the buffer for the entire sequence during ioctl() handle and then expose this buffer to the user space with read() handle. One such sequence RTAS call is ibm,get-vpd and its support is already included in the current code. To add the similar support for other sequence based calls, move the common functions in to separate file and update papr_rtas_sequence struct with the following callbacks so that RTAS call specific code will be defined and executed to complete the sequence. struct papr_rtas_sequence { int error; void params; void (*begin) (struct papr_rtas_sequence *); void (*end) (struct papr_rtas_sequence *); const char * (*work) (struct papr_rtas_sequence *, size_t *); }; params: Input parameters used to pass for RTAS call. Begin: RTAS call specific function to initialize data including work area allocation. End: RTAS call specific function to free up resources (free work area) after the sequence is completed. Work: The actual RTAS call specific function which collects the data from the hypervisor. Signed-off-by: Haren Myneni <haren@linux.ibm.com> Tested-by: Sathvika Vasireddy <sv@linux.ibm.com> Signed-off-by: Madhavan Srinivasan <maddy@linux.ibm.com> Link: https://patch.msgid.link/20250416225743.596462-2-haren@linux.ibm.com
275 lines
7.7 KiB
C
275 lines
7.7 KiB
C
// SPDX-License-Identifier: GPL-2.0-only
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#define pr_fmt(fmt) "papr-vpd: " fmt
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#include <linux/build_bug.h>
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#include <linux/file.h>
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#include <linux/fs.h>
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#include <linux/init.h>
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#include <linux/lockdep.h>
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#include <linux/kernel.h>
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#include <linux/miscdevice.h>
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#include <linux/signal.h>
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#include <linux/slab.h>
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#include <linux/string.h>
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#include <linux/string_helpers.h>
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#include <linux/uaccess.h>
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#include <asm/machdep.h>
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#include <asm/papr-vpd.h>
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#include <asm/rtas-work-area.h>
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#include <asm/rtas.h>
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#include <uapi/asm/papr-vpd.h>
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#include "papr-rtas-common.h"
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/**
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* struct rtas_ibm_get_vpd_params - Parameters (in and out) for ibm,get-vpd.
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* @loc_code: In: Caller-provided location code buffer. Must be RTAS-addressable.
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* @work_area: In: Caller-provided work area buffer for results.
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* @sequence: In: Sequence number. Out: Next sequence number.
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* @written: Out: Bytes written by ibm,get-vpd to @work_area.
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* @status: Out: RTAS call status.
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*/
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struct rtas_ibm_get_vpd_params {
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const struct papr_location_code *loc_code;
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struct rtas_work_area *work_area;
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u32 sequence;
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u32 written;
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s32 status;
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};
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/**
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* rtas_ibm_get_vpd() - Call ibm,get-vpd to fill a work area buffer.
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* @params: See &struct rtas_ibm_get_vpd_params.
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*
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* Calls ibm,get-vpd until it errors or successfully deposits data
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* into the supplied work area. Handles RTAS retry statuses. Maps RTAS
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* error statuses to reasonable errno values.
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*
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* The caller is expected to invoke rtas_ibm_get_vpd() multiple times
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* to retrieve all the VPD for the provided location code. Only one
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* sequence should be in progress at any time; starting a new sequence
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* will disrupt any sequence already in progress. Serialization of VPD
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* retrieval sequences is the responsibility of the caller.
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*
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* The caller should inspect @params.status to determine whether more
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* calls are needed to complete the sequence.
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*
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* Context: May sleep.
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* Return: -ve on error, 0 otherwise.
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*/
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static int rtas_ibm_get_vpd(struct rtas_ibm_get_vpd_params *params)
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{
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const struct papr_location_code *loc_code = params->loc_code;
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struct rtas_work_area *work_area = params->work_area;
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u32 rets[2];
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s32 fwrc;
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int ret;
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lockdep_assert_held(&rtas_ibm_get_vpd_lock);
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do {
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fwrc = rtas_call(rtas_function_token(RTAS_FN_IBM_GET_VPD), 4, 3,
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rets,
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__pa(loc_code),
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rtas_work_area_phys(work_area),
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rtas_work_area_size(work_area),
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params->sequence);
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} while (rtas_busy_delay(fwrc));
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switch (fwrc) {
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case RTAS_HARDWARE_ERROR:
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ret = -EIO;
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break;
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case RTAS_INVALID_PARAMETER:
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ret = -EINVAL;
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break;
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case RTAS_SEQ_START_OVER:
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ret = -EAGAIN;
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pr_info_ratelimited("VPD changed during retrieval, retrying\n");
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break;
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case RTAS_SEQ_MORE_DATA:
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params->sequence = rets[0];
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fallthrough;
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case RTAS_SEQ_COMPLETE:
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params->written = rets[1];
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/*
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* Kernel or firmware bug, do not continue.
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*/
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if (WARN(params->written > rtas_work_area_size(work_area),
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"possible write beyond end of work area"))
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ret = -EFAULT;
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else
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ret = 0;
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break;
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default:
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ret = -EIO;
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pr_err_ratelimited("unexpected ibm,get-vpd status %d\n", fwrc);
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break;
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}
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params->status = fwrc;
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return ret;
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}
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/*
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* Internal VPD sequence APIs. A VPD sequence is a series of calls to
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* ibm,get-vpd for a given location code. The sequence ends when an
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* error is encountered or all VPD for the location code has been
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* returned.
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*/
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/**
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* vpd_sequence_begin() - Begin a VPD retrieval sequence.
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* @seq: vpd call parameters from sequence struct
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*
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* Context: May sleep.
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*/
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static void vpd_sequence_begin(struct papr_rtas_sequence *seq)
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{
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struct rtas_ibm_get_vpd_params *vpd_params;
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/*
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* Use a static data structure for the location code passed to
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* RTAS to ensure it's in the RMA and avoid a separate work
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* area allocation. Guarded by the function lock.
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*/
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static struct papr_location_code static_loc_code;
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vpd_params = (struct rtas_ibm_get_vpd_params *)seq->params;
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/*
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* We could allocate the work area before acquiring the
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* function lock, but that would allow concurrent requests to
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* exhaust the limited work area pool for no benefit. So
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* allocate the work area under the lock.
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*/
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mutex_lock(&rtas_ibm_get_vpd_lock);
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static_loc_code = *(struct papr_location_code *)vpd_params->loc_code;
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vpd_params = (struct rtas_ibm_get_vpd_params *)seq->params;
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vpd_params->work_area = rtas_work_area_alloc(SZ_4K);
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vpd_params->loc_code = &static_loc_code;
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vpd_params->sequence = 1;
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vpd_params->status = 0;
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}
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/**
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* vpd_sequence_end() - Finalize a VPD retrieval sequence.
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* @seq: Sequence state.
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*
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* Releases resources obtained by vpd_sequence_begin().
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*/
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static void vpd_sequence_end(struct papr_rtas_sequence *seq)
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{
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struct rtas_ibm_get_vpd_params *vpd_params;
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vpd_params = (struct rtas_ibm_get_vpd_params *)seq->params;
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rtas_work_area_free(vpd_params->work_area);
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mutex_unlock(&rtas_ibm_get_vpd_lock);
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}
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/*
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* Generator function to be passed to papr_rtas_blob_generate().
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*/
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static const char *vpd_sequence_fill_work_area(struct papr_rtas_sequence *seq,
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size_t *len)
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{
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struct rtas_ibm_get_vpd_params *p;
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bool init_state;
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p = (struct rtas_ibm_get_vpd_params *)seq->params;
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init_state = (p->written == 0) ? true : false;
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if (papr_rtas_sequence_should_stop(seq, p->status, init_state))
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return NULL;
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if (papr_rtas_sequence_set_err(seq, rtas_ibm_get_vpd(p)))
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return NULL;
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*len = p->written;
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return rtas_work_area_raw_buf(p->work_area);
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}
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static const struct file_operations papr_vpd_handle_ops = {
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.read = papr_rtas_common_handle_read,
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.llseek = papr_rtas_common_handle_seek,
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.release = papr_rtas_common_handle_release,
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};
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/**
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* papr_vpd_create_handle() - Create a fd-based handle for reading VPD.
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* @ulc: Location code in user memory; defines the scope of the VPD to
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* retrieve.
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*
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* Handler for PAPR_VPD_IOC_CREATE_HANDLE ioctl command. Validates
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* @ulc and instantiates an immutable VPD "blob" for it. The blob is
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* attached to a file descriptor for reading by user space. The memory
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* backing the blob is freed when the file is released.
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*
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* The entire requested VPD is retrieved by this call and all
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* necessary RTAS interactions are performed before returning the fd
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* to user space. This keeps the read handler simple and ensures that
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* the kernel can prevent interleaving of ibm,get-vpd call sequences.
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*
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* Return: The installed fd number if successful, -ve errno otherwise.
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*/
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static long papr_vpd_create_handle(struct papr_location_code __user *ulc)
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{
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struct rtas_ibm_get_vpd_params vpd_params = {};
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struct papr_rtas_sequence seq = {};
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struct papr_location_code klc;
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int fd;
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if (copy_from_user(&klc, ulc, sizeof(klc)))
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return -EFAULT;
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if (!string_is_terminated(klc.str, ARRAY_SIZE(klc.str)))
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return -EINVAL;
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seq = (struct papr_rtas_sequence) {
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.begin = vpd_sequence_begin,
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.end = vpd_sequence_end,
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.work = vpd_sequence_fill_work_area,
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};
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vpd_params.loc_code = &klc;
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seq.params = (void *)&vpd_params;
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fd = papr_rtas_setup_file_interface(&seq, &papr_vpd_handle_ops,
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"[papr-vpd]");
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return fd;
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}
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/*
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* Top-level ioctl handler for /dev/papr-vpd.
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*/
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static long papr_vpd_dev_ioctl(struct file *filp, unsigned int ioctl, unsigned long arg)
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{
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void __user *argp = (__force void __user *)arg;
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long ret;
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switch (ioctl) {
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case PAPR_VPD_IOC_CREATE_HANDLE:
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ret = papr_vpd_create_handle(argp);
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break;
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default:
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ret = -ENOIOCTLCMD;
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break;
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}
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return ret;
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}
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static const struct file_operations papr_vpd_ops = {
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.unlocked_ioctl = papr_vpd_dev_ioctl,
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};
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static struct miscdevice papr_vpd_dev = {
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.minor = MISC_DYNAMIC_MINOR,
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.name = "papr-vpd",
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.fops = &papr_vpd_ops,
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};
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static __init int papr_vpd_init(void)
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{
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if (!rtas_function_implemented(RTAS_FN_IBM_GET_VPD))
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return -ENODEV;
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return misc_register(&papr_vpd_dev);
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}
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machine_device_initcall(pseries, papr_vpd_init);
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