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authorDaniel Baumann <daniel.baumann@progress-linux.org>2024-04-27 10:05:51 +0000
committerDaniel Baumann <daniel.baumann@progress-linux.org>2024-04-27 10:05:51 +0000
commit5d1646d90e1f2cceb9f0828f4b28318cd0ec7744 (patch)
treea94efe259b9009378be6d90eb30d2b019d95c194 /drivers/misc/genwqe
parentInitial commit. (diff)
downloadlinux-upstream.tar.xz
linux-upstream.zip
Adding upstream version 5.10.209.upstream/5.10.209upstream
Signed-off-by: Daniel Baumann <daniel.baumann@progress-linux.org>
Diffstat (limited to 'drivers/misc/genwqe')
-rw-r--r--drivers/misc/genwqe/Kconfig19
-rw-r--r--drivers/misc/genwqe/Makefile8
-rw-r--r--drivers/misc/genwqe/card_base.c1416
-rw-r--r--drivers/misc/genwqe/card_base.h577
-rw-r--r--drivers/misc/genwqe/card_ddcb.c1411
-rw-r--r--drivers/misc/genwqe/card_ddcb.h179
-rw-r--r--drivers/misc/genwqe/card_debugfs.c378
-rw-r--r--drivers/misc/genwqe/card_dev.c1391
-rw-r--r--drivers/misc/genwqe/card_sysfs.c295
-rw-r--r--drivers/misc/genwqe/card_utils.c1049
-rw-r--r--drivers/misc/genwqe/genwqe_driver.h69
11 files changed, 6792 insertions, 0 deletions
diff --git a/drivers/misc/genwqe/Kconfig b/drivers/misc/genwqe/Kconfig
new file mode 100644
index 000000000..97f64bcf9
--- /dev/null
+++ b/drivers/misc/genwqe/Kconfig
@@ -0,0 +1,19 @@
+# SPDX-License-Identifier: GPL-2.0-only
+#
+# IBM Accelerator Family 'GenWQE'
+#
+
+menuconfig GENWQE
+ tristate "GenWQE PCIe Accelerator"
+ depends on PCI && 64BIT
+ select CRC_ITU_T
+ help
+ Enables PCIe card driver for IBM GenWQE accelerators.
+ The user-space interface is described in
+ include/linux/genwqe/genwqe_card.h.
+
+config GENWQE_PLATFORM_ERROR_RECOVERY
+ int "Use platform recovery procedures (0=off, 1=on)"
+ depends on GENWQE
+ default 1 if PPC64
+ default 0
diff --git a/drivers/misc/genwqe/Makefile b/drivers/misc/genwqe/Makefile
new file mode 100644
index 000000000..d9811ecbe
--- /dev/null
+++ b/drivers/misc/genwqe/Makefile
@@ -0,0 +1,8 @@
+# SPDX-License-Identifier: GPL-2.0-only
+#
+# Makefile for GenWQE driver
+#
+
+obj-$(CONFIG_GENWQE) := genwqe_card.o
+genwqe_card-objs := card_base.o card_dev.o card_ddcb.o card_sysfs.o \
+ card_debugfs.o card_utils.o
diff --git a/drivers/misc/genwqe/card_base.c b/drivers/misc/genwqe/card_base.c
new file mode 100644
index 000000000..c9b886618
--- /dev/null
+++ b/drivers/misc/genwqe/card_base.c
@@ -0,0 +1,1416 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/**
+ * IBM Accelerator Family 'GenWQE'
+ *
+ * (C) Copyright IBM Corp. 2013
+ *
+ * Author: Frank Haverkamp <haver@linux.vnet.ibm.com>
+ * Author: Joerg-Stephan Vogt <jsvogt@de.ibm.com>
+ * Author: Michael Jung <mijung@gmx.net>
+ * Author: Michael Ruettger <michael@ibmra.de>
+ */
+
+/*
+ * Module initialization and PCIe setup. Card health monitoring and
+ * recovery functionality. Character device creation and deletion are
+ * controlled from here.
+ */
+
+#include <linux/types.h>
+#include <linux/pci.h>
+#include <linux/err.h>
+#include <linux/aer.h>
+#include <linux/string.h>
+#include <linux/sched.h>
+#include <linux/wait.h>
+#include <linux/delay.h>
+#include <linux/dma-mapping.h>
+#include <linux/module.h>
+#include <linux/notifier.h>
+#include <linux/device.h>
+#include <linux/log2.h>
+
+#include "card_base.h"
+#include "card_ddcb.h"
+
+MODULE_AUTHOR("Frank Haverkamp <haver@linux.vnet.ibm.com>");
+MODULE_AUTHOR("Michael Ruettger <michael@ibmra.de>");
+MODULE_AUTHOR("Joerg-Stephan Vogt <jsvogt@de.ibm.com>");
+MODULE_AUTHOR("Michael Jung <mijung@gmx.net>");
+
+MODULE_DESCRIPTION("GenWQE Card");
+MODULE_VERSION(DRV_VERSION);
+MODULE_LICENSE("GPL");
+
+static char genwqe_driver_name[] = GENWQE_DEVNAME;
+static struct class *class_genwqe;
+static struct dentry *debugfs_genwqe;
+static struct genwqe_dev *genwqe_devices[GENWQE_CARD_NO_MAX];
+
+/* PCI structure for identifying device by PCI vendor and device ID */
+static const struct pci_device_id genwqe_device_table[] = {
+ { .vendor = PCI_VENDOR_ID_IBM,
+ .device = PCI_DEVICE_GENWQE,
+ .subvendor = PCI_SUBVENDOR_ID_IBM,
+ .subdevice = PCI_SUBSYSTEM_ID_GENWQE5,
+ .class = (PCI_CLASSCODE_GENWQE5 << 8),
+ .class_mask = ~0,
+ .driver_data = 0 },
+
+ /* Initial SR-IOV bring-up image */
+ { .vendor = PCI_VENDOR_ID_IBM,
+ .device = PCI_DEVICE_GENWQE,
+ .subvendor = PCI_SUBVENDOR_ID_IBM_SRIOV,
+ .subdevice = PCI_SUBSYSTEM_ID_GENWQE5_SRIOV,
+ .class = (PCI_CLASSCODE_GENWQE5_SRIOV << 8),
+ .class_mask = ~0,
+ .driver_data = 0 },
+
+ { .vendor = PCI_VENDOR_ID_IBM, /* VF Vendor ID */
+ .device = 0x0000, /* VF Device ID */
+ .subvendor = PCI_SUBVENDOR_ID_IBM_SRIOV,
+ .subdevice = PCI_SUBSYSTEM_ID_GENWQE5_SRIOV,
+ .class = (PCI_CLASSCODE_GENWQE5_SRIOV << 8),
+ .class_mask = ~0,
+ .driver_data = 0 },
+
+ /* Fixed up image */
+ { .vendor = PCI_VENDOR_ID_IBM,
+ .device = PCI_DEVICE_GENWQE,
+ .subvendor = PCI_SUBVENDOR_ID_IBM_SRIOV,
+ .subdevice = PCI_SUBSYSTEM_ID_GENWQE5,
+ .class = (PCI_CLASSCODE_GENWQE5_SRIOV << 8),
+ .class_mask = ~0,
+ .driver_data = 0 },
+
+ { .vendor = PCI_VENDOR_ID_IBM, /* VF Vendor ID */
+ .device = 0x0000, /* VF Device ID */
+ .subvendor = PCI_SUBVENDOR_ID_IBM_SRIOV,
+ .subdevice = PCI_SUBSYSTEM_ID_GENWQE5,
+ .class = (PCI_CLASSCODE_GENWQE5_SRIOV << 8),
+ .class_mask = ~0,
+ .driver_data = 0 },
+
+ /* Even one more ... */
+ { .vendor = PCI_VENDOR_ID_IBM,
+ .device = PCI_DEVICE_GENWQE,
+ .subvendor = PCI_SUBVENDOR_ID_IBM,
+ .subdevice = PCI_SUBSYSTEM_ID_GENWQE5_NEW,
+ .class = (PCI_CLASSCODE_GENWQE5 << 8),
+ .class_mask = ~0,
+ .driver_data = 0 },
+
+ { 0, } /* 0 terminated list. */
+};
+
+MODULE_DEVICE_TABLE(pci, genwqe_device_table);
+
+/**
+ * genwqe_dev_alloc() - Create and prepare a new card descriptor
+ *
+ * Return: Pointer to card descriptor, or ERR_PTR(err) on error
+ */
+static struct genwqe_dev *genwqe_dev_alloc(void)
+{
+ unsigned int i = 0, j;
+ struct genwqe_dev *cd;
+
+ for (i = 0; i < GENWQE_CARD_NO_MAX; i++) {
+ if (genwqe_devices[i] == NULL)
+ break;
+ }
+ if (i >= GENWQE_CARD_NO_MAX)
+ return ERR_PTR(-ENODEV);
+
+ cd = kzalloc(sizeof(struct genwqe_dev), GFP_KERNEL);
+ if (!cd)
+ return ERR_PTR(-ENOMEM);
+
+ cd->card_idx = i;
+ cd->class_genwqe = class_genwqe;
+ cd->debugfs_genwqe = debugfs_genwqe;
+
+ /*
+ * This comes from kernel config option and can be overritten via
+ * debugfs.
+ */
+ cd->use_platform_recovery = CONFIG_GENWQE_PLATFORM_ERROR_RECOVERY;
+
+ init_waitqueue_head(&cd->queue_waitq);
+
+ spin_lock_init(&cd->file_lock);
+ INIT_LIST_HEAD(&cd->file_list);
+
+ cd->card_state = GENWQE_CARD_UNUSED;
+ spin_lock_init(&cd->print_lock);
+
+ cd->ddcb_software_timeout = GENWQE_DDCB_SOFTWARE_TIMEOUT;
+ cd->kill_timeout = GENWQE_KILL_TIMEOUT;
+
+ for (j = 0; j < GENWQE_MAX_VFS; j++)
+ cd->vf_jobtimeout_msec[j] = GENWQE_VF_JOBTIMEOUT_MSEC;
+
+ genwqe_devices[i] = cd;
+ return cd;
+}
+
+static void genwqe_dev_free(struct genwqe_dev *cd)
+{
+ if (!cd)
+ return;
+
+ genwqe_devices[cd->card_idx] = NULL;
+ kfree(cd);
+}
+
+/**
+ * genwqe_bus_reset() - Card recovery
+ * @cd: GenWQE device information
+ *
+ * pci_reset_function() will recover the device and ensure that the
+ * registers are accessible again when it completes with success. If
+ * not, the card will stay dead and registers will be unaccessible
+ * still.
+ */
+static int genwqe_bus_reset(struct genwqe_dev *cd)
+{
+ int rc = 0;
+ struct pci_dev *pci_dev = cd->pci_dev;
+ void __iomem *mmio;
+
+ if (cd->err_inject & GENWQE_INJECT_BUS_RESET_FAILURE)
+ return -EIO;
+
+ mmio = cd->mmio;
+ cd->mmio = NULL;
+ pci_iounmap(pci_dev, mmio);
+
+ pci_release_mem_regions(pci_dev);
+
+ /*
+ * Firmware/BIOS might change memory mapping during bus reset.
+ * Settings like enable bus-mastering, ... are backuped and
+ * restored by the pci_reset_function().
+ */
+ dev_dbg(&pci_dev->dev, "[%s] pci_reset function ...\n", __func__);
+ rc = pci_reset_function(pci_dev);
+ if (rc) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: failed reset func (rc %d)\n", __func__, rc);
+ return rc;
+ }
+ dev_dbg(&pci_dev->dev, "[%s] done with rc=%d\n", __func__, rc);
+
+ /*
+ * Here is the right spot to clear the register read
+ * failure. pci_bus_reset() does this job in real systems.
+ */
+ cd->err_inject &= ~(GENWQE_INJECT_HARDWARE_FAILURE |
+ GENWQE_INJECT_GFIR_FATAL |
+ GENWQE_INJECT_GFIR_INFO);
+
+ rc = pci_request_mem_regions(pci_dev, genwqe_driver_name);
+ if (rc) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: request bars failed (%d)\n", __func__, rc);
+ return -EIO;
+ }
+
+ cd->mmio = pci_iomap(pci_dev, 0, 0);
+ if (cd->mmio == NULL) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: mapping BAR0 failed\n", __func__);
+ return -ENOMEM;
+ }
+ return 0;
+}
+
+/*
+ * Hardware circumvention section. Certain bitstreams in our test-lab
+ * had different kinds of problems. Here is where we adjust those
+ * bitstreams to function will with this version of our device driver.
+ *
+ * Thise circumventions are applied to the physical function only.
+ * The magical numbers below are identifying development/manufacturing
+ * versions of the bitstream used on the card.
+ *
+ * Turn off error reporting for old/manufacturing images.
+ */
+
+bool genwqe_need_err_masking(struct genwqe_dev *cd)
+{
+ return (cd->slu_unitcfg & 0xFFFF0ull) < 0x32170ull;
+}
+
+static void genwqe_tweak_hardware(struct genwqe_dev *cd)
+{
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ /* Mask FIRs for development images */
+ if (((cd->slu_unitcfg & 0xFFFF0ull) >= 0x32000ull) &&
+ ((cd->slu_unitcfg & 0xFFFF0ull) <= 0x33250ull)) {
+ dev_warn(&pci_dev->dev,
+ "FIRs masked due to bitstream %016llx.%016llx\n",
+ cd->slu_unitcfg, cd->app_unitcfg);
+
+ __genwqe_writeq(cd, IO_APP_SEC_LEM_DEBUG_OVR,
+ 0xFFFFFFFFFFFFFFFFull);
+
+ __genwqe_writeq(cd, IO_APP_ERR_ACT_MASK,
+ 0x0000000000000000ull);
+ }
+}
+
+/**
+ * genwqe_recovery_on_fatal_gfir_required() - Version depended actions
+ * @cd: GenWQE device information
+ *
+ * Bitstreams older than 2013-02-17 have a bug where fatal GFIRs must
+ * be ignored. This is e.g. true for the bitstream we gave to the card
+ * manufacturer, but also for some old bitstreams we released to our
+ * test-lab.
+ */
+int genwqe_recovery_on_fatal_gfir_required(struct genwqe_dev *cd)
+{
+ return (cd->slu_unitcfg & 0xFFFF0ull) >= 0x32170ull;
+}
+
+int genwqe_flash_readback_fails(struct genwqe_dev *cd)
+{
+ return (cd->slu_unitcfg & 0xFFFF0ull) < 0x32170ull;
+}
+
+/**
+ * genwqe_T_psec() - Calculate PF/VF timeout register content
+ * @cd: GenWQE device information
+ *
+ * Note: From a design perspective it turned out to be a bad idea to
+ * use codes here to specifiy the frequency/speed values. An old
+ * driver cannot understand new codes and is therefore always a
+ * problem. Better is to measure out the value or put the
+ * speed/frequency directly into a register which is always a valid
+ * value for old as well as for new software.
+ */
+/* T = 1/f */
+static int genwqe_T_psec(struct genwqe_dev *cd)
+{
+ u16 speed; /* 1/f -> 250, 200, 166, 175 */
+ static const int T[] = { 4000, 5000, 6000, 5714 };
+
+ speed = (u16)((cd->slu_unitcfg >> 28) & 0x0full);
+ if (speed >= ARRAY_SIZE(T))
+ return -1; /* illegal value */
+
+ return T[speed];
+}
+
+/**
+ * genwqe_setup_pf_jtimer() - Setup PF hardware timeouts for DDCB execution
+ * @cd: GenWQE device information
+ *
+ * Do this _after_ card_reset() is called. Otherwise the values will
+ * vanish. The settings need to be done when the queues are inactive.
+ *
+ * The max. timeout value is 2^(10+x) * T (6ns for 166MHz) * 15/16.
+ * The min. timeout value is 2^(10+x) * T (6ns for 166MHz) * 14/16.
+ */
+static bool genwqe_setup_pf_jtimer(struct genwqe_dev *cd)
+{
+ u32 T = genwqe_T_psec(cd);
+ u64 x;
+
+ if (GENWQE_PF_JOBTIMEOUT_MSEC == 0)
+ return false;
+
+ /* PF: large value needed, flash update 2sec per block */
+ x = ilog2(GENWQE_PF_JOBTIMEOUT_MSEC *
+ 16000000000uL/(T * 15)) - 10;
+
+ genwqe_write_vreg(cd, IO_SLC_VF_APPJOB_TIMEOUT,
+ 0xff00 | (x & 0xff), 0);
+ return true;
+}
+
+/**
+ * genwqe_setup_vf_jtimer() - Setup VF hardware timeouts for DDCB execution
+ * @cd: GenWQE device information
+ */
+static bool genwqe_setup_vf_jtimer(struct genwqe_dev *cd)
+{
+ struct pci_dev *pci_dev = cd->pci_dev;
+ unsigned int vf;
+ u32 T = genwqe_T_psec(cd);
+ u64 x;
+ int totalvfs;
+
+ totalvfs = pci_sriov_get_totalvfs(pci_dev);
+ if (totalvfs <= 0)
+ return false;
+
+ for (vf = 0; vf < totalvfs; vf++) {
+
+ if (cd->vf_jobtimeout_msec[vf] == 0)
+ continue;
+
+ x = ilog2(cd->vf_jobtimeout_msec[vf] *
+ 16000000000uL/(T * 15)) - 10;
+
+ genwqe_write_vreg(cd, IO_SLC_VF_APPJOB_TIMEOUT,
+ 0xff00 | (x & 0xff), vf + 1);
+ }
+ return true;
+}
+
+static int genwqe_ffdc_buffs_alloc(struct genwqe_dev *cd)
+{
+ unsigned int type, e = 0;
+
+ for (type = 0; type < GENWQE_DBG_UNITS; type++) {
+ switch (type) {
+ case GENWQE_DBG_UNIT0:
+ e = genwqe_ffdc_buff_size(cd, 0);
+ break;
+ case GENWQE_DBG_UNIT1:
+ e = genwqe_ffdc_buff_size(cd, 1);
+ break;
+ case GENWQE_DBG_UNIT2:
+ e = genwqe_ffdc_buff_size(cd, 2);
+ break;
+ case GENWQE_DBG_REGS:
+ e = GENWQE_FFDC_REGS;
+ break;
+ }
+
+ /* currently support only the debug units mentioned here */
+ cd->ffdc[type].entries = e;
+ cd->ffdc[type].regs =
+ kmalloc_array(e, sizeof(struct genwqe_reg),
+ GFP_KERNEL);
+ /*
+ * regs == NULL is ok, the using code treats this as no regs,
+ * Printing warning is ok in this case.
+ */
+ }
+ return 0;
+}
+
+static void genwqe_ffdc_buffs_free(struct genwqe_dev *cd)
+{
+ unsigned int type;
+
+ for (type = 0; type < GENWQE_DBG_UNITS; type++) {
+ kfree(cd->ffdc[type].regs);
+ cd->ffdc[type].regs = NULL;
+ }
+}
+
+static int genwqe_read_ids(struct genwqe_dev *cd)
+{
+ int err = 0;
+ int slu_id;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ cd->slu_unitcfg = __genwqe_readq(cd, IO_SLU_UNITCFG);
+ if (cd->slu_unitcfg == IO_ILLEGAL_VALUE) {
+ dev_err(&pci_dev->dev,
+ "err: SLUID=%016llx\n", cd->slu_unitcfg);
+ err = -EIO;
+ goto out_err;
+ }
+
+ slu_id = genwqe_get_slu_id(cd);
+ if (slu_id < GENWQE_SLU_ARCH_REQ || slu_id == 0xff) {
+ dev_err(&pci_dev->dev,
+ "err: incompatible SLU Architecture %u\n", slu_id);
+ err = -ENOENT;
+ goto out_err;
+ }
+
+ cd->app_unitcfg = __genwqe_readq(cd, IO_APP_UNITCFG);
+ if (cd->app_unitcfg == IO_ILLEGAL_VALUE) {
+ dev_err(&pci_dev->dev,
+ "err: APPID=%016llx\n", cd->app_unitcfg);
+ err = -EIO;
+ goto out_err;
+ }
+ genwqe_read_app_id(cd, cd->app_name, sizeof(cd->app_name));
+
+ /*
+ * Is access to all registers possible? If we are a VF the
+ * answer is obvious. If we run fully virtualized, we need to
+ * check if we can access all registers. If we do not have
+ * full access we will cause an UR and some informational FIRs
+ * in the PF, but that should not harm.
+ */
+ if (pci_dev->is_virtfn)
+ cd->is_privileged = 0;
+ else
+ cd->is_privileged = (__genwqe_readq(cd, IO_SLU_BITSTREAM)
+ != IO_ILLEGAL_VALUE);
+
+ out_err:
+ return err;
+}
+
+static int genwqe_start(struct genwqe_dev *cd)
+{
+ int err;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ err = genwqe_read_ids(cd);
+ if (err)
+ return err;
+
+ if (genwqe_is_privileged(cd)) {
+ /* do this after the tweaks. alloc fail is acceptable */
+ genwqe_ffdc_buffs_alloc(cd);
+ genwqe_stop_traps(cd);
+
+ /* Collect registers e.g. FIRs, UNITIDs, traces ... */
+ genwqe_read_ffdc_regs(cd, cd->ffdc[GENWQE_DBG_REGS].regs,
+ cd->ffdc[GENWQE_DBG_REGS].entries, 0);
+
+ genwqe_ffdc_buff_read(cd, GENWQE_DBG_UNIT0,
+ cd->ffdc[GENWQE_DBG_UNIT0].regs,
+ cd->ffdc[GENWQE_DBG_UNIT0].entries);
+
+ genwqe_ffdc_buff_read(cd, GENWQE_DBG_UNIT1,
+ cd->ffdc[GENWQE_DBG_UNIT1].regs,
+ cd->ffdc[GENWQE_DBG_UNIT1].entries);
+
+ genwqe_ffdc_buff_read(cd, GENWQE_DBG_UNIT2,
+ cd->ffdc[GENWQE_DBG_UNIT2].regs,
+ cd->ffdc[GENWQE_DBG_UNIT2].entries);
+
+ genwqe_start_traps(cd);
+
+ if (cd->card_state == GENWQE_CARD_FATAL_ERROR) {
+ dev_warn(&pci_dev->dev,
+ "[%s] chip reload/recovery!\n", __func__);
+
+ /*
+ * Stealth Mode: Reload chip on either hot
+ * reset or PERST.
+ */
+ cd->softreset = 0x7Cull;
+ __genwqe_writeq(cd, IO_SLC_CFGREG_SOFTRESET,
+ cd->softreset);
+
+ err = genwqe_bus_reset(cd);
+ if (err != 0) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: bus reset failed!\n",
+ __func__);
+ goto out;
+ }
+
+ /*
+ * Re-read the IDs because
+ * it could happen that the bitstream load
+ * failed!
+ */
+ err = genwqe_read_ids(cd);
+ if (err)
+ goto out;
+ }
+ }
+
+ err = genwqe_setup_service_layer(cd); /* does a reset to the card */
+ if (err != 0) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: could not setup servicelayer!\n", __func__);
+ err = -ENODEV;
+ goto out;
+ }
+
+ if (genwqe_is_privileged(cd)) { /* code is running _after_ reset */
+ genwqe_tweak_hardware(cd);
+
+ genwqe_setup_pf_jtimer(cd);
+ genwqe_setup_vf_jtimer(cd);
+ }
+
+ err = genwqe_device_create(cd);
+ if (err < 0) {
+ dev_err(&pci_dev->dev,
+ "err: chdev init failed! (err=%d)\n", err);
+ goto out_release_service_layer;
+ }
+ return 0;
+
+ out_release_service_layer:
+ genwqe_release_service_layer(cd);
+ out:
+ if (genwqe_is_privileged(cd))
+ genwqe_ffdc_buffs_free(cd);
+ return -EIO;
+}
+
+/**
+ * genwqe_stop() - Stop card operation
+ * @cd: GenWQE device information
+ *
+ * Recovery notes:
+ * As long as genwqe_thread runs we might access registers during
+ * error data capture. Same is with the genwqe_health_thread.
+ * When genwqe_bus_reset() fails this function might called two times:
+ * first by the genwqe_health_thread() and later by genwqe_remove() to
+ * unbind the device. We must be able to survive that.
+ *
+ * This function must be robust enough to be called twice.
+ */
+static int genwqe_stop(struct genwqe_dev *cd)
+{
+ genwqe_finish_queue(cd); /* no register access */
+ genwqe_device_remove(cd); /* device removed, procs killed */
+ genwqe_release_service_layer(cd); /* here genwqe_thread is stopped */
+
+ if (genwqe_is_privileged(cd)) {
+ pci_disable_sriov(cd->pci_dev); /* access pci config space */
+ genwqe_ffdc_buffs_free(cd);
+ }
+
+ return 0;
+}
+
+/**
+ * genwqe_recover_card() - Try to recover the card if it is possible
+ * @cd: GenWQE device information
+ * @fatal_err: Indicate whether to attempt soft reset
+ *
+ * If fatal_err is set no register access is possible anymore. It is
+ * likely that genwqe_start fails in that situation. Proper error
+ * handling is required in this case.
+ *
+ * genwqe_bus_reset() will cause the pci code to call genwqe_remove()
+ * and later genwqe_probe() for all virtual functions.
+ */
+static int genwqe_recover_card(struct genwqe_dev *cd, int fatal_err)
+{
+ int rc;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ genwqe_stop(cd);
+
+ /*
+ * Make sure chip is not reloaded to maintain FFDC. Write SLU
+ * Reset Register, CPLDReset field to 0.
+ */
+ if (!fatal_err) {
+ cd->softreset = 0x70ull;
+ __genwqe_writeq(cd, IO_SLC_CFGREG_SOFTRESET, cd->softreset);
+ }
+
+ rc = genwqe_bus_reset(cd);
+ if (rc != 0) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: card recovery impossible!\n", __func__);
+ return rc;
+ }
+
+ rc = genwqe_start(cd);
+ if (rc < 0) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: failed to launch device!\n", __func__);
+ return rc;
+ }
+ return 0;
+}
+
+static int genwqe_health_check_cond(struct genwqe_dev *cd, u64 *gfir)
+{
+ *gfir = __genwqe_readq(cd, IO_SLC_CFGREG_GFIR);
+ return (*gfir & GFIR_ERR_TRIGGER) &&
+ genwqe_recovery_on_fatal_gfir_required(cd);
+}
+
+/**
+ * genwqe_fir_checking() - Check the fault isolation registers of the card
+ * @cd: GenWQE device information
+ *
+ * If this code works ok, can be tried out with help of the genwqe_poke tool:
+ * sudo ./tools/genwqe_poke 0x8 0xfefefefefef
+ *
+ * Now the relevant FIRs/sFIRs should be printed out and the driver should
+ * invoke recovery (devices are removed and readded).
+ */
+static u64 genwqe_fir_checking(struct genwqe_dev *cd)
+{
+ int j, iterations = 0;
+ u64 mask, fir, fec, uid, gfir, gfir_masked, sfir, sfec;
+ u32 fir_addr, fir_clr_addr, fec_addr, sfir_addr, sfec_addr;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ healthMonitor:
+ iterations++;
+ if (iterations > 16) {
+ dev_err(&pci_dev->dev, "* exit looping after %d times\n",
+ iterations);
+ goto fatal_error;
+ }
+
+ gfir = __genwqe_readq(cd, IO_SLC_CFGREG_GFIR);
+ if (gfir != 0x0)
+ dev_err(&pci_dev->dev, "* 0x%08x 0x%016llx\n",
+ IO_SLC_CFGREG_GFIR, gfir);
+ if (gfir == IO_ILLEGAL_VALUE)
+ goto fatal_error;
+
+ /*
+ * Avoid printing when to GFIR bit is on prevents contignous
+ * printout e.g. for the following bug:
+ * FIR set without a 2ndary FIR/FIR cannot be cleared
+ * Comment out the following if to get the prints:
+ */
+ if (gfir == 0)
+ return 0;
+
+ gfir_masked = gfir & GFIR_ERR_TRIGGER; /* fatal errors */
+
+ for (uid = 0; uid < GENWQE_MAX_UNITS; uid++) { /* 0..2 in zEDC */
+
+ /* read the primary FIR (pfir) */
+ fir_addr = (uid << 24) + 0x08;
+ fir = __genwqe_readq(cd, fir_addr);
+ if (fir == 0x0)
+ continue; /* no error in this unit */
+
+ dev_err(&pci_dev->dev, "* 0x%08x 0x%016llx\n", fir_addr, fir);
+ if (fir == IO_ILLEGAL_VALUE)
+ goto fatal_error;
+
+ /* read primary FEC */
+ fec_addr = (uid << 24) + 0x18;
+ fec = __genwqe_readq(cd, fec_addr);
+
+ dev_err(&pci_dev->dev, "* 0x%08x 0x%016llx\n", fec_addr, fec);
+ if (fec == IO_ILLEGAL_VALUE)
+ goto fatal_error;
+
+ for (j = 0, mask = 1ULL; j < 64; j++, mask <<= 1) {
+
+ /* secondary fir empty, skip it */
+ if ((fir & mask) == 0x0)
+ continue;
+
+ sfir_addr = (uid << 24) + 0x100 + 0x08 * j;
+ sfir = __genwqe_readq(cd, sfir_addr);
+
+ if (sfir == IO_ILLEGAL_VALUE)
+ goto fatal_error;
+ dev_err(&pci_dev->dev,
+ "* 0x%08x 0x%016llx\n", sfir_addr, sfir);
+
+ sfec_addr = (uid << 24) + 0x300 + 0x08 * j;
+ sfec = __genwqe_readq(cd, sfec_addr);
+
+ if (sfec == IO_ILLEGAL_VALUE)
+ goto fatal_error;
+ dev_err(&pci_dev->dev,
+ "* 0x%08x 0x%016llx\n", sfec_addr, sfec);
+
+ gfir = __genwqe_readq(cd, IO_SLC_CFGREG_GFIR);
+ if (gfir == IO_ILLEGAL_VALUE)
+ goto fatal_error;
+
+ /* gfir turned on during routine! get out and
+ start over. */
+ if ((gfir_masked == 0x0) &&
+ (gfir & GFIR_ERR_TRIGGER)) {
+ goto healthMonitor;
+ }
+
+ /* do not clear if we entered with a fatal gfir */
+ if (gfir_masked == 0x0) {
+
+ /* NEW clear by mask the logged bits */
+ sfir_addr = (uid << 24) + 0x100 + 0x08 * j;
+ __genwqe_writeq(cd, sfir_addr, sfir);
+
+ dev_dbg(&pci_dev->dev,
+ "[HM] Clearing 2ndary FIR 0x%08x with 0x%016llx\n",
+ sfir_addr, sfir);
+
+ /*
+ * note, these cannot be error-Firs
+ * since gfir_masked is 0 after sfir
+ * was read. Also, it is safe to do
+ * this write if sfir=0. Still need to
+ * clear the primary. This just means
+ * there is no secondary FIR.
+ */
+
+ /* clear by mask the logged bit. */
+ fir_clr_addr = (uid << 24) + 0x10;
+ __genwqe_writeq(cd, fir_clr_addr, mask);
+
+ dev_dbg(&pci_dev->dev,
+ "[HM] Clearing primary FIR 0x%08x with 0x%016llx\n",
+ fir_clr_addr, mask);
+ }
+ }
+ }
+ gfir = __genwqe_readq(cd, IO_SLC_CFGREG_GFIR);
+ if (gfir == IO_ILLEGAL_VALUE)
+ goto fatal_error;
+
+ if ((gfir_masked == 0x0) && (gfir & GFIR_ERR_TRIGGER)) {
+ /*
+ * Check once more that it didn't go on after all the
+ * FIRS were cleared.
+ */
+ dev_dbg(&pci_dev->dev, "ACK! Another FIR! Recursing %d!\n",
+ iterations);
+ goto healthMonitor;
+ }
+ return gfir_masked;
+
+ fatal_error:
+ return IO_ILLEGAL_VALUE;
+}
+
+/**
+ * genwqe_pci_fundamental_reset() - trigger a PCIe fundamental reset on the slot
+ * @pci_dev: PCI device information struct
+ *
+ * Note: pci_set_pcie_reset_state() is not implemented on all archs, so this
+ * reset method will not work in all cases.
+ *
+ * Return: 0 on success or error code from pci_set_pcie_reset_state()
+ */
+static int genwqe_pci_fundamental_reset(struct pci_dev *pci_dev)
+{
+ int rc;
+
+ /*
+ * lock pci config space access from userspace,
+ * save state and issue PCIe fundamental reset
+ */
+ pci_cfg_access_lock(pci_dev);
+ pci_save_state(pci_dev);
+ rc = pci_set_pcie_reset_state(pci_dev, pcie_warm_reset);
+ if (!rc) {
+ /* keep PCIe reset asserted for 250ms */
+ msleep(250);
+ pci_set_pcie_reset_state(pci_dev, pcie_deassert_reset);
+ /* Wait for 2s to reload flash and train the link */
+ msleep(2000);
+ }
+ pci_restore_state(pci_dev);
+ pci_cfg_access_unlock(pci_dev);
+ return rc;
+}
+
+
+static int genwqe_platform_recovery(struct genwqe_dev *cd)
+{
+ struct pci_dev *pci_dev = cd->pci_dev;
+ int rc;
+
+ dev_info(&pci_dev->dev,
+ "[%s] resetting card for error recovery\n", __func__);
+
+ /* Clear out error injection flags */
+ cd->err_inject &= ~(GENWQE_INJECT_HARDWARE_FAILURE |
+ GENWQE_INJECT_GFIR_FATAL |
+ GENWQE_INJECT_GFIR_INFO);
+
+ genwqe_stop(cd);
+
+ /* Try recoverying the card with fundamental reset */
+ rc = genwqe_pci_fundamental_reset(pci_dev);
+ if (!rc) {
+ rc = genwqe_start(cd);
+ if (!rc)
+ dev_info(&pci_dev->dev,
+ "[%s] card recovered\n", __func__);
+ else
+ dev_err(&pci_dev->dev,
+ "[%s] err: cannot start card services! (err=%d)\n",
+ __func__, rc);
+ } else {
+ dev_err(&pci_dev->dev,
+ "[%s] card reset failed\n", __func__);
+ }
+
+ return rc;
+}
+
+/**
+ * genwqe_reload_bistream() - reload card bitstream
+ * @cd: GenWQE device information
+ *
+ * Set the appropriate register and call fundamental reset to reaload the card
+ * bitstream.
+ *
+ * Return: 0 on success, error code otherwise
+ */
+static int genwqe_reload_bistream(struct genwqe_dev *cd)
+{
+ struct pci_dev *pci_dev = cd->pci_dev;
+ int rc;
+
+ dev_info(&pci_dev->dev,
+ "[%s] resetting card for bitstream reload\n",
+ __func__);
+
+ genwqe_stop(cd);
+
+ /*
+ * Cause a CPLD reprogram with the 'next_bitstream'
+ * partition on PCIe hot or fundamental reset
+ */
+ __genwqe_writeq(cd, IO_SLC_CFGREG_SOFTRESET,
+ (cd->softreset & 0xcull) | 0x70ull);
+
+ rc = genwqe_pci_fundamental_reset(pci_dev);
+ if (rc) {
+ /*
+ * A fundamental reset failure can be caused
+ * by lack of support on the arch, so we just
+ * log the error and try to start the card
+ * again.
+ */
+ dev_err(&pci_dev->dev,
+ "[%s] err: failed to reset card for bitstream reload\n",
+ __func__);
+ }
+
+ rc = genwqe_start(cd);
+ if (rc) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: cannot start card services! (err=%d)\n",
+ __func__, rc);
+ return rc;
+ }
+ dev_info(&pci_dev->dev,
+ "[%s] card reloaded\n", __func__);
+ return 0;
+}
+
+
+/**
+ * genwqe_health_thread() - Health checking thread
+ * @data: GenWQE device information
+ *
+ * This thread is only started for the PF of the card.
+ *
+ * This thread monitors the health of the card. A critical situation
+ * is when we read registers which contain -1 (IO_ILLEGAL_VALUE). In
+ * this case we need to be recovered from outside. Writing to
+ * registers will very likely not work either.
+ *
+ * This thread must only exit if kthread_should_stop() becomes true.
+ *
+ * Condition for the health-thread to trigger:
+ * a) when a kthread_stop() request comes in or
+ * b) a critical GFIR occured
+ *
+ * Informational GFIRs are checked and potentially printed in
+ * GENWQE_HEALTH_CHECK_INTERVAL seconds.
+ */
+static int genwqe_health_thread(void *data)
+{
+ int rc, should_stop = 0;
+ struct genwqe_dev *cd = data;
+ struct pci_dev *pci_dev = cd->pci_dev;
+ u64 gfir, gfir_masked, slu_unitcfg, app_unitcfg;
+
+ health_thread_begin:
+ while (!kthread_should_stop()) {
+ rc = wait_event_interruptible_timeout(cd->health_waitq,
+ (genwqe_health_check_cond(cd, &gfir) ||
+ (should_stop = kthread_should_stop())),
+ GENWQE_HEALTH_CHECK_INTERVAL * HZ);
+
+ if (should_stop)
+ break;
+
+ if (gfir == IO_ILLEGAL_VALUE) {
+ dev_err(&pci_dev->dev,
+ "[%s] GFIR=%016llx\n", __func__, gfir);
+ goto fatal_error;
+ }
+
+ slu_unitcfg = __genwqe_readq(cd, IO_SLU_UNITCFG);
+ if (slu_unitcfg == IO_ILLEGAL_VALUE) {
+ dev_err(&pci_dev->dev,
+ "[%s] SLU_UNITCFG=%016llx\n",
+ __func__, slu_unitcfg);
+ goto fatal_error;
+ }
+
+ app_unitcfg = __genwqe_readq(cd, IO_APP_UNITCFG);
+ if (app_unitcfg == IO_ILLEGAL_VALUE) {
+ dev_err(&pci_dev->dev,
+ "[%s] APP_UNITCFG=%016llx\n",
+ __func__, app_unitcfg);
+ goto fatal_error;
+ }
+
+ gfir = __genwqe_readq(cd, IO_SLC_CFGREG_GFIR);
+ if (gfir == IO_ILLEGAL_VALUE) {
+ dev_err(&pci_dev->dev,
+ "[%s] %s: GFIR=%016llx\n", __func__,
+ (gfir & GFIR_ERR_TRIGGER) ? "err" : "info",
+ gfir);
+ goto fatal_error;
+ }
+
+ gfir_masked = genwqe_fir_checking(cd);
+ if (gfir_masked == IO_ILLEGAL_VALUE)
+ goto fatal_error;
+
+ /*
+ * GFIR ErrorTrigger bits set => reset the card!
+ * Never do this for old/manufacturing images!
+ */
+ if ((gfir_masked) && !cd->skip_recovery &&
+ genwqe_recovery_on_fatal_gfir_required(cd)) {
+
+ cd->card_state = GENWQE_CARD_FATAL_ERROR;
+
+ rc = genwqe_recover_card(cd, 0);
+ if (rc < 0) {
+ /* FIXME Card is unusable and needs unbind! */
+ goto fatal_error;
+ }
+ }
+
+ if (cd->card_state == GENWQE_CARD_RELOAD_BITSTREAM) {
+ /* Userspace requested card bitstream reload */
+ rc = genwqe_reload_bistream(cd);
+ if (rc)
+ goto fatal_error;
+ }
+
+ cd->last_gfir = gfir;
+ cond_resched();
+ }
+
+ return 0;
+
+ fatal_error:
+ if (cd->use_platform_recovery) {
+ /*
+ * Since we use raw accessors, EEH errors won't be detected
+ * by the platform until we do a non-raw MMIO or config space
+ * read
+ */
+ readq(cd->mmio + IO_SLC_CFGREG_GFIR);
+
+ /* We do nothing if the card is going over PCI recovery */
+ if (pci_channel_offline(pci_dev))
+ return -EIO;
+
+ /*
+ * If it's supported by the platform, we try a fundamental reset
+ * to recover from a fatal error. Otherwise, we continue to wait
+ * for an external recovery procedure to take care of it.
+ */
+ rc = genwqe_platform_recovery(cd);
+ if (!rc)
+ goto health_thread_begin;
+ }
+
+ dev_err(&pci_dev->dev,
+ "[%s] card unusable. Please trigger unbind!\n", __func__);
+
+ /* Bring down logical devices to inform user space via udev remove. */
+ cd->card_state = GENWQE_CARD_FATAL_ERROR;
+ genwqe_stop(cd);
+
+ /* genwqe_bus_reset failed(). Now wait for genwqe_remove(). */
+ while (!kthread_should_stop())
+ cond_resched();
+
+ return -EIO;
+}
+
+static int genwqe_health_check_start(struct genwqe_dev *cd)
+{
+ int rc;
+
+ if (GENWQE_HEALTH_CHECK_INTERVAL <= 0)
+ return 0; /* valid for disabling the service */
+
+ /* moved before request_irq() */
+ /* init_waitqueue_head(&cd->health_waitq); */
+
+ cd->health_thread = kthread_run(genwqe_health_thread, cd,
+ GENWQE_DEVNAME "%d_health",
+ cd->card_idx);
+ if (IS_ERR(cd->health_thread)) {
+ rc = PTR_ERR(cd->health_thread);
+ cd->health_thread = NULL;
+ return rc;
+ }
+ return 0;
+}
+
+static int genwqe_health_thread_running(struct genwqe_dev *cd)
+{
+ return cd->health_thread != NULL;
+}
+
+static int genwqe_health_check_stop(struct genwqe_dev *cd)
+{
+ if (!genwqe_health_thread_running(cd))
+ return -EIO;
+
+ kthread_stop(cd->health_thread);
+ cd->health_thread = NULL;
+ return 0;
+}
+
+/**
+ * genwqe_pci_setup() - Allocate PCIe related resources for our card
+ * @cd: GenWQE device information
+ */
+static int genwqe_pci_setup(struct genwqe_dev *cd)
+{
+ int err;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ err = pci_enable_device_mem(pci_dev);
+ if (err) {
+ dev_err(&pci_dev->dev,
+ "err: failed to enable pci memory (err=%d)\n", err);
+ goto err_out;
+ }
+
+ /* Reserve PCI I/O and memory resources */
+ err = pci_request_mem_regions(pci_dev, genwqe_driver_name);
+ if (err) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: request bars failed (%d)\n", __func__, err);
+ err = -EIO;
+ goto err_disable_device;
+ }
+
+ /* check for 64-bit DMA address supported (DAC) */
+ if (!pci_set_dma_mask(pci_dev, DMA_BIT_MASK(64))) {
+ err = pci_set_consistent_dma_mask(pci_dev, DMA_BIT_MASK(64));
+ if (err) {
+ dev_err(&pci_dev->dev,
+ "err: DMA64 consistent mask error\n");
+ err = -EIO;
+ goto out_release_resources;
+ }
+ /* check for 32-bit DMA address supported (SAC) */
+ } else if (!pci_set_dma_mask(pci_dev, DMA_BIT_MASK(32))) {
+ err = pci_set_consistent_dma_mask(pci_dev, DMA_BIT_MASK(32));
+ if (err) {
+ dev_err(&pci_dev->dev,
+ "err: DMA32 consistent mask error\n");
+ err = -EIO;
+ goto out_release_resources;
+ }
+ } else {
+ dev_err(&pci_dev->dev,
+ "err: neither DMA32 nor DMA64 supported\n");
+ err = -EIO;
+ goto out_release_resources;
+ }
+
+ pci_set_master(pci_dev);
+ pci_enable_pcie_error_reporting(pci_dev);
+
+ /* EEH recovery requires PCIe fundamental reset */
+ pci_dev->needs_freset = 1;
+
+ /* request complete BAR-0 space (length = 0) */
+ cd->mmio_len = pci_resource_len(pci_dev, 0);
+ cd->mmio = pci_iomap(pci_dev, 0, 0);
+ if (cd->mmio == NULL) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: mapping BAR0 failed\n", __func__);
+ err = -ENOMEM;
+ goto out_release_resources;
+ }
+
+ cd->num_vfs = pci_sriov_get_totalvfs(pci_dev);
+ if (cd->num_vfs < 0)
+ cd->num_vfs = 0;
+
+ err = genwqe_read_ids(cd);
+ if (err)
+ goto out_iounmap;
+
+ return 0;
+
+ out_iounmap:
+ pci_iounmap(pci_dev, cd->mmio);
+ out_release_resources:
+ pci_release_mem_regions(pci_dev);
+ err_disable_device:
+ pci_disable_device(pci_dev);
+ err_out:
+ return err;
+}
+
+/**
+ * genwqe_pci_remove() - Free PCIe related resources for our card
+ * @cd: GenWQE device information
+ */
+static void genwqe_pci_remove(struct genwqe_dev *cd)
+{
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ if (cd->mmio)
+ pci_iounmap(pci_dev, cd->mmio);
+
+ pci_release_mem_regions(pci_dev);
+ pci_disable_device(pci_dev);
+}
+
+/**
+ * genwqe_probe() - Device initialization
+ * @pci_dev: PCI device information struct
+ * @id: PCI device ID
+ *
+ * Callable for multiple cards. This function is called on bind.
+ *
+ * Return: 0 if succeeded, < 0 when failed
+ */
+static int genwqe_probe(struct pci_dev *pci_dev,
+ const struct pci_device_id *id)
+{
+ int err;
+ struct genwqe_dev *cd;
+
+ genwqe_init_crc32();
+
+ cd = genwqe_dev_alloc();
+ if (IS_ERR(cd)) {
+ dev_err(&pci_dev->dev, "err: could not alloc mem (err=%d)!\n",
+ (int)PTR_ERR(cd));
+ return PTR_ERR(cd);
+ }
+
+ dev_set_drvdata(&pci_dev->dev, cd);
+ cd->pci_dev = pci_dev;
+
+ err = genwqe_pci_setup(cd);
+ if (err < 0) {
+ dev_err(&pci_dev->dev,
+ "err: problems with PCI setup (err=%d)\n", err);
+ goto out_free_dev;
+ }
+
+ err = genwqe_start(cd);
+ if (err < 0) {
+ dev_err(&pci_dev->dev,
+ "err: cannot start card services! (err=%d)\n", err);
+ goto out_pci_remove;
+ }
+
+ if (genwqe_is_privileged(cd)) {
+ err = genwqe_health_check_start(cd);
+ if (err < 0) {
+ dev_err(&pci_dev->dev,
+ "err: cannot start health checking! (err=%d)\n",
+ err);
+ goto out_stop_services;
+ }
+ }
+ return 0;
+
+ out_stop_services:
+ genwqe_stop(cd);
+ out_pci_remove:
+ genwqe_pci_remove(cd);
+ out_free_dev:
+ genwqe_dev_free(cd);
+ return err;
+}
+
+/**
+ * genwqe_remove() - Called when device is removed (hot-plugable)
+ * @pci_dev: PCI device information struct
+ *
+ * Or when driver is unloaded respecitively when unbind is done.
+ */
+static void genwqe_remove(struct pci_dev *pci_dev)
+{
+ struct genwqe_dev *cd = dev_get_drvdata(&pci_dev->dev);
+
+ genwqe_health_check_stop(cd);
+
+ /*
+ * genwqe_stop() must survive if it is called twice
+ * sequentially. This happens when the health thread calls it
+ * and fails on genwqe_bus_reset().
+ */
+ genwqe_stop(cd);
+ genwqe_pci_remove(cd);
+ genwqe_dev_free(cd);
+}
+
+/**
+ * genwqe_err_error_detected() - Error detection callback
+ * @pci_dev: PCI device information struct
+ * @state: PCI channel state
+ *
+ * This callback is called by the PCI subsystem whenever a PCI bus
+ * error is detected.
+ */
+static pci_ers_result_t genwqe_err_error_detected(struct pci_dev *pci_dev,
+ pci_channel_state_t state)
+{
+ struct genwqe_dev *cd;
+
+ dev_err(&pci_dev->dev, "[%s] state=%d\n", __func__, state);
+
+ cd = dev_get_drvdata(&pci_dev->dev);
+ if (cd == NULL)
+ return PCI_ERS_RESULT_DISCONNECT;
+
+ /* Stop the card */
+ genwqe_health_check_stop(cd);
+ genwqe_stop(cd);
+
+ /*
+ * On permanent failure, the PCI code will call device remove
+ * after the return of this function.
+ * genwqe_stop() can be called twice.
+ */
+ if (state == pci_channel_io_perm_failure) {
+ return PCI_ERS_RESULT_DISCONNECT;
+ } else {
+ genwqe_pci_remove(cd);
+ return PCI_ERS_RESULT_NEED_RESET;
+ }
+}
+
+static pci_ers_result_t genwqe_err_slot_reset(struct pci_dev *pci_dev)
+{
+ int rc;
+ struct genwqe_dev *cd = dev_get_drvdata(&pci_dev->dev);
+
+ rc = genwqe_pci_setup(cd);
+ if (!rc) {
+ return PCI_ERS_RESULT_RECOVERED;
+ } else {
+ dev_err(&pci_dev->dev,
+ "err: problems with PCI setup (err=%d)\n", rc);
+ return PCI_ERS_RESULT_DISCONNECT;
+ }
+}
+
+static pci_ers_result_t genwqe_err_result_none(struct pci_dev *dev)
+{
+ return PCI_ERS_RESULT_NONE;
+}
+
+static void genwqe_err_resume(struct pci_dev *pci_dev)
+{
+ int rc;
+ struct genwqe_dev *cd = dev_get_drvdata(&pci_dev->dev);
+
+ rc = genwqe_start(cd);
+ if (!rc) {
+ rc = genwqe_health_check_start(cd);
+ if (rc)
+ dev_err(&pci_dev->dev,
+ "err: cannot start health checking! (err=%d)\n",
+ rc);
+ } else {
+ dev_err(&pci_dev->dev,
+ "err: cannot start card services! (err=%d)\n", rc);
+ }
+}
+
+static int genwqe_sriov_configure(struct pci_dev *dev, int numvfs)
+{
+ int rc;
+ struct genwqe_dev *cd = dev_get_drvdata(&dev->dev);
+
+ if (numvfs > 0) {
+ genwqe_setup_vf_jtimer(cd);
+ rc = pci_enable_sriov(dev, numvfs);
+ if (rc < 0)
+ return rc;
+ return numvfs;
+ }
+ if (numvfs == 0) {
+ pci_disable_sriov(dev);
+ return 0;
+ }
+ return 0;
+}
+
+static const struct pci_error_handlers genwqe_err_handler = {
+ .error_detected = genwqe_err_error_detected,
+ .mmio_enabled = genwqe_err_result_none,
+ .slot_reset = genwqe_err_slot_reset,
+ .resume = genwqe_err_resume,
+};
+
+static struct pci_driver genwqe_driver = {
+ .name = genwqe_driver_name,
+ .id_table = genwqe_device_table,
+ .probe = genwqe_probe,
+ .remove = genwqe_remove,
+ .sriov_configure = genwqe_sriov_configure,
+ .err_handler = &genwqe_err_handler,
+};
+
+/**
+ * genwqe_devnode() - Set default access mode for genwqe devices.
+ * @dev: Pointer to device (unused)
+ * @mode: Carrier to pass-back given mode (permissions)
+ *
+ * Default mode should be rw for everybody. Do not change default
+ * device name.
+ */
+static char *genwqe_devnode(struct device *dev, umode_t *mode)
+{
+ if (mode)
+ *mode = 0666;
+ return NULL;
+}
+
+/**
+ * genwqe_init_module() - Driver registration and initialization
+ */
+static int __init genwqe_init_module(void)
+{
+ int rc;
+
+ class_genwqe = class_create(THIS_MODULE, GENWQE_DEVNAME);
+ if (IS_ERR(class_genwqe)) {
+ pr_err("[%s] create class failed\n", __func__);
+ return -ENOMEM;
+ }
+
+ class_genwqe->devnode = genwqe_devnode;
+
+ debugfs_genwqe = debugfs_create_dir(GENWQE_DEVNAME, NULL);
+
+ rc = pci_register_driver(&genwqe_driver);
+ if (rc != 0) {
+ pr_err("[%s] pci_reg_driver (rc=%d)\n", __func__, rc);
+ goto err_out0;
+ }
+
+ return rc;
+
+ err_out0:
+ debugfs_remove(debugfs_genwqe);
+ class_destroy(class_genwqe);
+ return rc;
+}
+
+/**
+ * genwqe_exit_module() - Driver exit
+ */
+static void __exit genwqe_exit_module(void)
+{
+ pci_unregister_driver(&genwqe_driver);
+ debugfs_remove(debugfs_genwqe);
+ class_destroy(class_genwqe);
+}
+
+module_init(genwqe_init_module);
+module_exit(genwqe_exit_module);
diff --git a/drivers/misc/genwqe/card_base.h b/drivers/misc/genwqe/card_base.h
new file mode 100644
index 000000000..0e902977d
--- /dev/null
+++ b/drivers/misc/genwqe/card_base.h
@@ -0,0 +1,577 @@
+/* SPDX-License-Identifier: GPL-2.0-only */
+#ifndef __CARD_BASE_H__
+#define __CARD_BASE_H__
+
+/**
+ * IBM Accelerator Family 'GenWQE'
+ *
+ * (C) Copyright IBM Corp. 2013
+ *
+ * Author: Frank Haverkamp <haver@linux.vnet.ibm.com>
+ * Author: Joerg-Stephan Vogt <jsvogt@de.ibm.com>
+ * Author: Michael Jung <mijung@gmx.net>
+ * Author: Michael Ruettger <michael@ibmra.de>
+ */
+
+/*
+ * Interfaces within the GenWQE module. Defines genwqe_card and
+ * ddcb_queue as well as ddcb_requ.
+ */
+
+#include <linux/kernel.h>
+#include <linux/types.h>
+#include <linux/cdev.h>
+#include <linux/stringify.h>
+#include <linux/pci.h>
+#include <linux/semaphore.h>
+#include <linux/uaccess.h>
+#include <linux/io.h>
+#include <linux/debugfs.h>
+#include <linux/slab.h>
+
+#include <linux/genwqe/genwqe_card.h>
+#include "genwqe_driver.h"
+
+#define GENWQE_MSI_IRQS 4 /* Just one supported, no MSIx */
+
+#define GENWQE_MAX_VFS 15 /* maximum 15 VFs are possible */
+#define GENWQE_MAX_FUNCS 16 /* 1 PF and 15 VFs */
+#define GENWQE_CARD_NO_MAX (16 * GENWQE_MAX_FUNCS)
+
+/* Compile parameters, some of them appear in debugfs for later adjustment */
+#define GENWQE_DDCB_MAX 32 /* DDCBs on the work-queue */
+#define GENWQE_POLLING_ENABLED 0 /* in case of irqs not working */
+#define GENWQE_DDCB_SOFTWARE_TIMEOUT 10 /* timeout per DDCB in seconds */
+#define GENWQE_KILL_TIMEOUT 8 /* time until process gets killed */
+#define GENWQE_VF_JOBTIMEOUT_MSEC 250 /* 250 msec */
+#define GENWQE_PF_JOBTIMEOUT_MSEC 8000 /* 8 sec should be ok */
+#define GENWQE_HEALTH_CHECK_INTERVAL 4 /* <= 0: disabled */
+
+/* Sysfs attribute groups used when we create the genwqe device */
+extern const struct attribute_group *genwqe_attribute_groups[];
+
+/*
+ * Config space for Genwqe5 A7:
+ * 00:[14 10 4b 04]40 00 10 00[00 00 00 12]00 00 00 00
+ * 10: 0c 00 00 f0 07 3c 00 00 00 00 00 00 00 00 00 00
+ * 20: 00 00 00 00 00 00 00 00 00 00 00 00[14 10 4b 04]
+ * 30: 00 00 00 00 50 00 00 00 00 00 00 00 00 00 00 00
+ */
+#define PCI_DEVICE_GENWQE 0x044b /* Genwqe DeviceID */
+
+#define PCI_SUBSYSTEM_ID_GENWQE5 0x035f /* Genwqe A5 Subsystem-ID */
+#define PCI_SUBSYSTEM_ID_GENWQE5_NEW 0x044b /* Genwqe A5 Subsystem-ID */
+#define PCI_CLASSCODE_GENWQE5 0x1200 /* UNKNOWN */
+
+#define PCI_SUBVENDOR_ID_IBM_SRIOV 0x0000
+#define PCI_SUBSYSTEM_ID_GENWQE5_SRIOV 0x0000 /* Genwqe A5 Subsystem-ID */
+#define PCI_CLASSCODE_GENWQE5_SRIOV 0x1200 /* UNKNOWN */
+
+#define GENWQE_SLU_ARCH_REQ 2 /* Required SLU architecture level */
+
+/**
+ * struct genwqe_reg - Genwqe data dump functionality
+ */
+struct genwqe_reg {
+ u32 addr;
+ u32 idx;
+ u64 val;
+};
+
+/*
+ * enum genwqe_dbg_type - Specify chip unit to dump/debug
+ */
+enum genwqe_dbg_type {
+ GENWQE_DBG_UNIT0 = 0, /* captured before prev errs cleared */
+ GENWQE_DBG_UNIT1 = 1,
+ GENWQE_DBG_UNIT2 = 2,
+ GENWQE_DBG_UNIT3 = 3,
+ GENWQE_DBG_UNIT4 = 4,
+ GENWQE_DBG_UNIT5 = 5,
+ GENWQE_DBG_UNIT6 = 6,
+ GENWQE_DBG_UNIT7 = 7,
+ GENWQE_DBG_REGS = 8,
+ GENWQE_DBG_DMA = 9,
+ GENWQE_DBG_UNITS = 10, /* max number of possible debug units */
+};
+
+/* Software error injection to simulate card failures */
+#define GENWQE_INJECT_HARDWARE_FAILURE 0x00000001 /* injects -1 reg reads */
+#define GENWQE_INJECT_BUS_RESET_FAILURE 0x00000002 /* pci_bus_reset fail */
+#define GENWQE_INJECT_GFIR_FATAL 0x00000004 /* GFIR = 0x0000ffff */
+#define GENWQE_INJECT_GFIR_INFO 0x00000008 /* GFIR = 0xffff0000 */
+
+/*
+ * Genwqe card description and management data.
+ *
+ * Error-handling in case of card malfunction
+ * ------------------------------------------
+ *
+ * If the card is detected to be defective the outside environment
+ * will cause the PCI layer to call deinit (the cleanup function for
+ * probe). This is the same effect like doing a unbind/bind operation
+ * on the card.
+ *
+ * The genwqe card driver implements a health checking thread which
+ * verifies the card function. If this detects a problem the cards
+ * device is being shutdown and restarted again, along with a reset of
+ * the card and queue.
+ *
+ * All functions accessing the card device return either -EIO or -ENODEV
+ * code to indicate the malfunction to the user. The user has to close
+ * the file descriptor and open a new one, once the card becomes
+ * available again.
+ *
+ * If the open file descriptor is setup to receive SIGIO, the signal is
+ * genereated for the application which has to provide a handler to
+ * react on it. If the application does not close the open
+ * file descriptor a SIGKILL is send to enforce freeing the cards
+ * resources.
+ *
+ * I did not find a different way to prevent kernel problems due to
+ * reference counters for the cards character devices getting out of
+ * sync. The character device deallocation does not block, even if
+ * there is still an open file descriptor pending. If this pending
+ * descriptor is closed, the data structures used by the character
+ * device is reinstantiated, which will lead to the reference counter
+ * dropping below the allowed values.
+ *
+ * Card recovery
+ * -------------
+ *
+ * To test the internal driver recovery the following command can be used:
+ * sudo sh -c 'echo 0xfffff > /sys/class/genwqe/genwqe0_card/err_inject'
+ */
+
+
+/**
+ * struct dma_mapping_type - Mapping type definition
+ *
+ * To avoid memcpying data arround we use user memory directly. To do
+ * this we need to pin/swap-in the memory and request a DMA address
+ * for it.
+ */
+enum dma_mapping_type {
+ GENWQE_MAPPING_RAW = 0, /* contignous memory buffer */
+ GENWQE_MAPPING_SGL_TEMP, /* sglist dynamically used */
+ GENWQE_MAPPING_SGL_PINNED, /* sglist used with pinning */
+};
+
+/**
+ * struct dma_mapping - Information about memory mappings done by the driver
+ */
+struct dma_mapping {
+ enum dma_mapping_type type;
+
+ void *u_vaddr; /* user-space vaddr/non-aligned */
+ void *k_vaddr; /* kernel-space vaddr/non-aligned */
+ dma_addr_t dma_addr; /* physical DMA address */
+
+ struct page **page_list; /* list of pages used by user buff */
+ dma_addr_t *dma_list; /* list of dma addresses per page */
+ unsigned int nr_pages; /* number of pages */
+ unsigned int size; /* size in bytes */
+
+ struct list_head card_list; /* list of usr_maps for card */
+ struct list_head pin_list; /* list of pinned memory for dev */
+ int write; /* writable map? useful in unmapping */
+};
+
+static inline void genwqe_mapping_init(struct dma_mapping *m,
+ enum dma_mapping_type type)
+{
+ memset(m, 0, sizeof(*m));
+ m->type = type;
+ m->write = 1; /* Assume the maps we create are R/W */
+}
+
+/**
+ * struct ddcb_queue - DDCB queue data
+ * @ddcb_max: Number of DDCBs on the queue
+ * @ddcb_next: Next free DDCB
+ * @ddcb_act: Next DDCB supposed to finish
+ * @ddcb_seq: Sequence number of last DDCB
+ * @ddcbs_in_flight: Currently enqueued DDCBs
+ * @ddcbs_completed: Number of already completed DDCBs
+ * @return_on_busy: Number of -EBUSY returns on full queue
+ * @wait_on_busy: Number of waits on full queue
+ * @ddcb_daddr: DMA address of first DDCB in the queue
+ * @ddcb_vaddr: Kernel virtual address of first DDCB in the queue
+ * @ddcb_req: Associated requests (one per DDCB)
+ * @ddcb_waitqs: Associated wait queues (one per DDCB)
+ * @ddcb_lock: Lock to protect queuing operations
+ * @ddcb_waitq: Wait on next DDCB finishing
+ */
+
+struct ddcb_queue {
+ int ddcb_max; /* amount of DDCBs */
+ int ddcb_next; /* next available DDCB num */
+ int ddcb_act; /* DDCB to be processed */
+ u16 ddcb_seq; /* slc seq num */
+ unsigned int ddcbs_in_flight; /* number of ddcbs in processing */
+ unsigned int ddcbs_completed;
+ unsigned int ddcbs_max_in_flight;
+ unsigned int return_on_busy; /* how many times -EBUSY? */
+ unsigned int wait_on_busy;
+
+ dma_addr_t ddcb_daddr; /* DMA address */
+ struct ddcb *ddcb_vaddr; /* kernel virtual addr for DDCBs */
+ struct ddcb_requ **ddcb_req; /* ddcb processing parameter */
+ wait_queue_head_t *ddcb_waitqs; /* waitqueue per ddcb */
+
+ spinlock_t ddcb_lock; /* exclusive access to queue */
+ wait_queue_head_t busy_waitq; /* wait for ddcb processing */
+
+ /* registers or the respective queue to be used */
+ u32 IO_QUEUE_CONFIG;
+ u32 IO_QUEUE_STATUS;
+ u32 IO_QUEUE_SEGMENT;
+ u32 IO_QUEUE_INITSQN;
+ u32 IO_QUEUE_WRAP;
+ u32 IO_QUEUE_OFFSET;
+ u32 IO_QUEUE_WTIME;
+ u32 IO_QUEUE_ERRCNTS;
+ u32 IO_QUEUE_LRW;
+};
+
+/*
+ * GFIR, SLU_UNITCFG, APP_UNITCFG
+ * 8 Units with FIR/FEC + 64 * 2ndary FIRS/FEC.
+ */
+#define GENWQE_FFDC_REGS (3 + (8 * (2 + 2 * 64)))
+
+struct genwqe_ffdc {
+ unsigned int entries;
+ struct genwqe_reg *regs;
+};
+
+/**
+ * struct genwqe_dev - GenWQE device information
+ * @card_state: Card operation state, see above
+ * @ffdc: First Failure Data Capture buffers for each unit
+ * @card_thread: Working thread to operate the DDCB queue
+ * @card_waitq: Wait queue used in card_thread
+ * @queue: DDCB queue
+ * @health_thread: Card monitoring thread (only for PFs)
+ * @health_waitq: Wait queue used in health_thread
+ * @pci_dev: Associated PCI device (function)
+ * @mmio: Base address of 64-bit register space
+ * @mmio_len: Length of register area
+ * @file_lock: Lock to protect access to file_list
+ * @file_list: List of all processes with open GenWQE file descriptors
+ *
+ * This struct contains all information needed to communicate with a
+ * GenWQE card. It is initialized when a GenWQE device is found and
+ * destroyed when it goes away. It holds data to maintain the queue as
+ * well as data needed to feed the user interfaces.
+ */
+struct genwqe_dev {
+ enum genwqe_card_state card_state;
+ spinlock_t print_lock;
+
+ int card_idx; /* card index 0..CARD_NO_MAX-1 */
+ u64 flags; /* general flags */
+
+ /* FFDC data gathering */
+ struct genwqe_ffdc ffdc[GENWQE_DBG_UNITS];
+
+ /* DDCB workqueue */
+ struct task_struct *card_thread;
+ wait_queue_head_t queue_waitq;
+ struct ddcb_queue queue; /* genwqe DDCB queue */
+ unsigned int irqs_processed;
+
+ /* Card health checking thread */
+ struct task_struct *health_thread;
+ wait_queue_head_t health_waitq;
+
+ int use_platform_recovery; /* use platform recovery mechanisms */
+
+ /* char device */
+ dev_t devnum_genwqe; /* major/minor num card */
+ struct class *class_genwqe; /* reference to class object */
+ struct device *dev; /* for device creation */
+ struct cdev cdev_genwqe; /* char device for card */
+
+ struct dentry *debugfs_root; /* debugfs card root directory */
+ struct dentry *debugfs_genwqe; /* debugfs driver root directory */
+
+ /* pci resources */
+ struct pci_dev *pci_dev; /* PCI device */
+ void __iomem *mmio; /* BAR-0 MMIO start */
+ unsigned long mmio_len;
+ int num_vfs;
+ u32 vf_jobtimeout_msec[GENWQE_MAX_VFS];
+ int is_privileged; /* access to all regs possible */
+
+ /* config regs which we need often */
+ u64 slu_unitcfg;
+ u64 app_unitcfg;
+ u64 softreset;
+ u64 err_inject;
+ u64 last_gfir;
+ char app_name[5];
+
+ spinlock_t file_lock; /* lock for open files */
+ struct list_head file_list; /* list of open files */
+
+ /* debugfs parameters */
+ int ddcb_software_timeout; /* wait until DDCB times out */
+ int skip_recovery; /* circumvention if recovery fails */
+ int kill_timeout; /* wait after sending SIGKILL */
+};
+
+/**
+ * enum genwqe_requ_state - State of a DDCB execution request
+ */
+enum genwqe_requ_state {
+ GENWQE_REQU_NEW = 0,
+ GENWQE_REQU_ENQUEUED = 1,
+ GENWQE_REQU_TAPPED = 2,
+ GENWQE_REQU_FINISHED = 3,
+ GENWQE_REQU_STATE_MAX,
+};
+
+/**
+ * struct genwqe_sgl - Scatter gather list describing user-space memory
+ * @sgl: scatter gather list needs to be 128 byte aligned
+ * @sgl_dma_addr: dma address of sgl
+ * @sgl_size: size of area used for sgl
+ * @user_addr: user-space address of memory area
+ * @user_size: size of user-space memory area
+ * @page: buffer for partial pages if needed
+ * @page_dma_addr: dma address partial pages
+ * @write: should we write it back to userspace?
+ */
+struct genwqe_sgl {
+ dma_addr_t sgl_dma_addr;
+ struct sg_entry *sgl;
+ size_t sgl_size; /* size of sgl */
+
+ void __user *user_addr; /* user-space base-address */
+ size_t user_size; /* size of memory area */
+
+ int write;
+
+ unsigned long nr_pages;
+ unsigned long fpage_offs;
+ size_t fpage_size;
+ size_t lpage_size;
+
+ void *fpage;
+ dma_addr_t fpage_dma_addr;
+
+ void *lpage;
+ dma_addr_t lpage_dma_addr;
+};
+
+int genwqe_alloc_sync_sgl(struct genwqe_dev *cd, struct genwqe_sgl *sgl,
+ void __user *user_addr, size_t user_size, int write);
+
+int genwqe_setup_sgl(struct genwqe_dev *cd, struct genwqe_sgl *sgl,
+ dma_addr_t *dma_list);
+
+int genwqe_free_sync_sgl(struct genwqe_dev *cd, struct genwqe_sgl *sgl);
+
+/**
+ * struct ddcb_requ - Kernel internal representation of the DDCB request
+ * @cmd: User space representation of the DDCB execution request
+ */
+struct ddcb_requ {
+ /* kernel specific content */
+ enum genwqe_requ_state req_state; /* request status */
+ int num; /* ddcb_no for this request */
+ struct ddcb_queue *queue; /* associated queue */
+
+ struct dma_mapping dma_mappings[DDCB_FIXUPS];
+ struct genwqe_sgl sgls[DDCB_FIXUPS];
+
+ /* kernel/user shared content */
+ struct genwqe_ddcb_cmd cmd; /* ddcb_no for this request */
+ struct genwqe_debug_data debug_data;
+};
+
+/**
+ * struct genwqe_file - Information for open GenWQE devices
+ */
+struct genwqe_file {
+ struct genwqe_dev *cd;
+ struct genwqe_driver *client;
+ struct file *filp;
+
+ struct fasync_struct *async_queue;
+ struct pid *opener;
+ struct list_head list; /* entry in list of open files */
+
+ spinlock_t map_lock; /* lock for dma_mappings */
+ struct list_head map_list; /* list of dma_mappings */
+
+ spinlock_t pin_lock; /* lock for pinned memory */
+ struct list_head pin_list; /* list of pinned memory */
+};
+
+int genwqe_setup_service_layer(struct genwqe_dev *cd); /* for PF only */
+int genwqe_finish_queue(struct genwqe_dev *cd);
+int genwqe_release_service_layer(struct genwqe_dev *cd);
+
+/**
+ * genwqe_get_slu_id() - Read Service Layer Unit Id
+ * Return: 0x00: Development code
+ * 0x01: SLC1 (old)
+ * 0x02: SLC2 (sept2012)
+ * 0x03: SLC2 (feb2013, generic driver)
+ */
+static inline int genwqe_get_slu_id(struct genwqe_dev *cd)
+{
+ return (int)((cd->slu_unitcfg >> 32) & 0xff);
+}
+
+int genwqe_ddcbs_in_flight(struct genwqe_dev *cd);
+
+u8 genwqe_card_type(struct genwqe_dev *cd);
+int genwqe_card_reset(struct genwqe_dev *cd);
+int genwqe_set_interrupt_capability(struct genwqe_dev *cd, int count);
+void genwqe_reset_interrupt_capability(struct genwqe_dev *cd);
+
+int genwqe_device_create(struct genwqe_dev *cd);
+int genwqe_device_remove(struct genwqe_dev *cd);
+
+/* debugfs */
+void genwqe_init_debugfs(struct genwqe_dev *cd);
+void genqwe_exit_debugfs(struct genwqe_dev *cd);
+
+int genwqe_read_softreset(struct genwqe_dev *cd);
+
+/* Hardware Circumventions */
+int genwqe_recovery_on_fatal_gfir_required(struct genwqe_dev *cd);
+int genwqe_flash_readback_fails(struct genwqe_dev *cd);
+
+/**
+ * genwqe_write_vreg() - Write register in VF window
+ * @cd: genwqe device
+ * @reg: register address
+ * @val: value to write
+ * @func: 0: PF, 1: VF0, ..., 15: VF14
+ */
+int genwqe_write_vreg(struct genwqe_dev *cd, u32 reg, u64 val, int func);
+
+/**
+ * genwqe_read_vreg() - Read register in VF window
+ * @cd: genwqe device
+ * @reg: register address
+ * @func: 0: PF, 1: VF0, ..., 15: VF14
+ *
+ * Return: content of the register
+ */
+u64 genwqe_read_vreg(struct genwqe_dev *cd, u32 reg, int func);
+
+/* FFDC Buffer Management */
+int genwqe_ffdc_buff_size(struct genwqe_dev *cd, int unit_id);
+int genwqe_ffdc_buff_read(struct genwqe_dev *cd, int unit_id,
+ struct genwqe_reg *regs, unsigned int max_regs);
+int genwqe_read_ffdc_regs(struct genwqe_dev *cd, struct genwqe_reg *regs,
+ unsigned int max_regs, int all);
+int genwqe_ffdc_dump_dma(struct genwqe_dev *cd,
+ struct genwqe_reg *regs, unsigned int max_regs);
+
+int genwqe_init_debug_data(struct genwqe_dev *cd,
+ struct genwqe_debug_data *d);
+
+void genwqe_init_crc32(void);
+int genwqe_read_app_id(struct genwqe_dev *cd, char *app_name, int len);
+
+/* Memory allocation/deallocation; dma address handling */
+int genwqe_user_vmap(struct genwqe_dev *cd, struct dma_mapping *m,
+ void *uaddr, unsigned long size);
+
+int genwqe_user_vunmap(struct genwqe_dev *cd, struct dma_mapping *m);
+
+static inline bool dma_mapping_used(struct dma_mapping *m)
+{
+ if (!m)
+ return false;
+ return m->size != 0;
+}
+
+/**
+ * __genwqe_execute_ddcb() - Execute DDCB request with addr translation
+ *
+ * This function will do the address translation changes to the DDCBs
+ * according to the definitions required by the ATS field. It looks up
+ * the memory allocation buffer or does vmap/vunmap for the respective
+ * user-space buffers, inclusive page pinning and scatter gather list
+ * buildup and teardown.
+ */
+int __genwqe_execute_ddcb(struct genwqe_dev *cd,
+ struct genwqe_ddcb_cmd *cmd, unsigned int f_flags);
+
+/**
+ * __genwqe_execute_raw_ddcb() - Execute DDCB request without addr translation
+ *
+ * This version will not do address translation or any modification of
+ * the DDCB data. It is used e.g. for the MoveFlash DDCB which is
+ * entirely prepared by the driver itself. That means the appropriate
+ * DMA addresses are already in the DDCB and do not need any
+ * modification.
+ */
+int __genwqe_execute_raw_ddcb(struct genwqe_dev *cd,
+ struct genwqe_ddcb_cmd *cmd,
+ unsigned int f_flags);
+int __genwqe_enqueue_ddcb(struct genwqe_dev *cd,
+ struct ddcb_requ *req,
+ unsigned int f_flags);
+
+int __genwqe_wait_ddcb(struct genwqe_dev *cd, struct ddcb_requ *req);
+int __genwqe_purge_ddcb(struct genwqe_dev *cd, struct ddcb_requ *req);
+
+/* register access */
+int __genwqe_writeq(struct genwqe_dev *cd, u64 byte_offs, u64 val);
+u64 __genwqe_readq(struct genwqe_dev *cd, u64 byte_offs);
+int __genwqe_writel(struct genwqe_dev *cd, u64 byte_offs, u32 val);
+u32 __genwqe_readl(struct genwqe_dev *cd, u64 byte_offs);
+
+void *__genwqe_alloc_consistent(struct genwqe_dev *cd, size_t size,
+ dma_addr_t *dma_handle);
+void __genwqe_free_consistent(struct genwqe_dev *cd, size_t size,
+ void *vaddr, dma_addr_t dma_handle);
+
+/* Base clock frequency in MHz */
+int genwqe_base_clock_frequency(struct genwqe_dev *cd);
+
+/* Before FFDC is captured the traps should be stopped. */
+void genwqe_stop_traps(struct genwqe_dev *cd);
+void genwqe_start_traps(struct genwqe_dev *cd);
+
+/* Hardware circumvention */
+bool genwqe_need_err_masking(struct genwqe_dev *cd);
+
+/**
+ * genwqe_is_privileged() - Determine operation mode for PCI function
+ *
+ * On Intel with SRIOV support we see:
+ * PF: is_physfn = 1 is_virtfn = 0
+ * VF: is_physfn = 0 is_virtfn = 1
+ *
+ * On Systems with no SRIOV support _and_ virtualized systems we get:
+ * is_physfn = 0 is_virtfn = 0
+ *
+ * Other vendors have individual pci device ids to distinguish between
+ * virtual function drivers and physical function drivers. GenWQE
+ * unfortunately has just on pci device id for both, VFs and PF.
+ *
+ * The following code is used to distinguish if the card is running in
+ * privileged mode, either as true PF or in a virtualized system with
+ * full register access e.g. currently on PowerPC.
+ *
+ * if (pci_dev->is_virtfn)
+ * cd->is_privileged = 0;
+ * else
+ * cd->is_privileged = (__genwqe_readq(cd, IO_SLU_BITSTREAM)
+ * != IO_ILLEGAL_VALUE);
+ */
+static inline int genwqe_is_privileged(struct genwqe_dev *cd)
+{
+ return cd->is_privileged;
+}
+
+#endif /* __CARD_BASE_H__ */
diff --git a/drivers/misc/genwqe/card_ddcb.c b/drivers/misc/genwqe/card_ddcb.c
new file mode 100644
index 000000000..0db4000de
--- /dev/null
+++ b/drivers/misc/genwqe/card_ddcb.c
@@ -0,0 +1,1411 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * IBM Accelerator Family 'GenWQE'
+ *
+ * (C) Copyright IBM Corp. 2013
+ *
+ * Author: Frank Haverkamp <haver@linux.vnet.ibm.com>
+ * Author: Joerg-Stephan Vogt <jsvogt@de.ibm.com>
+ * Author: Michael Jung <mijung@gmx.net>
+ * Author: Michael Ruettger <michael@ibmra.de>
+ */
+
+/*
+ * Device Driver Control Block (DDCB) queue support. Definition of
+ * interrupt handlers for queue support as well as triggering the
+ * health monitor code in case of problems. The current hardware uses
+ * an MSI interrupt which is shared between error handling and
+ * functional code.
+ */
+
+#include <linux/types.h>
+#include <linux/sched.h>
+#include <linux/wait.h>
+#include <linux/pci.h>
+#include <linux/string.h>
+#include <linux/dma-mapping.h>
+#include <linux/delay.h>
+#include <linux/module.h>
+#include <linux/interrupt.h>
+#include <linux/crc-itu-t.h>
+
+#include "card_base.h"
+#include "card_ddcb.h"
+
+/*
+ * N: next DDCB, this is where the next DDCB will be put.
+ * A: active DDCB, this is where the code will look for the next completion.
+ * x: DDCB is enqueued, we are waiting for its completion.
+
+ * Situation (1): Empty queue
+ * +---+---+---+---+---+---+---+---+
+ * | 0 | 1 | 2 | 3 | 4 | 5 | 6 | 7 |
+ * | | | | | | | | |
+ * +---+---+---+---+---+---+---+---+
+ * A/N
+ * enqueued_ddcbs = A - N = 2 - 2 = 0
+ *
+ * Situation (2): Wrapped, N > A
+ * +---+---+---+---+---+---+---+---+
+ * | 0 | 1 | 2 | 3 | 4 | 5 | 6 | 7 |
+ * | | | x | x | | | | |
+ * +---+---+---+---+---+---+---+---+
+ * A N
+ * enqueued_ddcbs = N - A = 4 - 2 = 2
+ *
+ * Situation (3): Queue wrapped, A > N
+ * +---+---+---+---+---+---+---+---+
+ * | 0 | 1 | 2 | 3 | 4 | 5 | 6 | 7 |
+ * | x | x | | | x | x | x | x |
+ * +---+---+---+---+---+---+---+---+
+ * N A
+ * enqueued_ddcbs = queue_max - (A - N) = 8 - (4 - 2) = 6
+ *
+ * Situation (4a): Queue full N > A
+ * +---+---+---+---+---+---+---+---+
+ * | 0 | 1 | 2 | 3 | 4 | 5 | 6 | 7 |
+ * | x | x | x | x | x | x | x | |
+ * +---+---+---+---+---+---+---+---+
+ * A N
+ *
+ * enqueued_ddcbs = N - A = 7 - 0 = 7
+ *
+ * Situation (4a): Queue full A > N
+ * +---+---+---+---+---+---+---+---+
+ * | 0 | 1 | 2 | 3 | 4 | 5 | 6 | 7 |
+ * | x | x | x | | x | x | x | x |
+ * +---+---+---+---+---+---+---+---+
+ * N A
+ * enqueued_ddcbs = queue_max - (A - N) = 8 - (4 - 3) = 7
+ */
+
+static int queue_empty(struct ddcb_queue *queue)
+{
+ return queue->ddcb_next == queue->ddcb_act;
+}
+
+static int queue_enqueued_ddcbs(struct ddcb_queue *queue)
+{
+ if (queue->ddcb_next >= queue->ddcb_act)
+ return queue->ddcb_next - queue->ddcb_act;
+
+ return queue->ddcb_max - (queue->ddcb_act - queue->ddcb_next);
+}
+
+static int queue_free_ddcbs(struct ddcb_queue *queue)
+{
+ int free_ddcbs = queue->ddcb_max - queue_enqueued_ddcbs(queue) - 1;
+
+ if (WARN_ON_ONCE(free_ddcbs < 0)) { /* must never ever happen! */
+ return 0;
+ }
+ return free_ddcbs;
+}
+
+/*
+ * Use of the PRIV field in the DDCB for queue debugging:
+ *
+ * (1) Trying to get rid of a DDCB which saw a timeout:
+ * pddcb->priv[6] = 0xcc; # cleared
+ *
+ * (2) Append a DDCB via NEXT bit:
+ * pddcb->priv[7] = 0xaa; # appended
+ *
+ * (3) DDCB needed tapping:
+ * pddcb->priv[7] = 0xbb; # tapped
+ *
+ * (4) DDCB marked as correctly finished:
+ * pddcb->priv[6] = 0xff; # finished
+ */
+
+static inline void ddcb_mark_tapped(struct ddcb *pddcb)
+{
+ pddcb->priv[7] = 0xbb; /* tapped */
+}
+
+static inline void ddcb_mark_appended(struct ddcb *pddcb)
+{
+ pddcb->priv[7] = 0xaa; /* appended */
+}
+
+static inline void ddcb_mark_cleared(struct ddcb *pddcb)
+{
+ pddcb->priv[6] = 0xcc; /* cleared */
+}
+
+static inline void ddcb_mark_finished(struct ddcb *pddcb)
+{
+ pddcb->priv[6] = 0xff; /* finished */
+}
+
+static inline void ddcb_mark_unused(struct ddcb *pddcb)
+{
+ pddcb->priv_64 = cpu_to_be64(0); /* not tapped */
+}
+
+/**
+ * genwqe_crc16() - Generate 16-bit crc as required for DDCBs
+ * @buff: pointer to data buffer
+ * @len: length of data for calculation
+ * @init: initial crc (0xffff at start)
+ *
+ * Polynomial = x^16 + x^12 + x^5 + 1 (0x1021)
+ * Example: 4 bytes 0x01 0x02 0x03 0x04 with init = 0xffff
+ * should result in a crc16 of 0x89c3
+ *
+ * Return: crc16 checksum in big endian format !
+ */
+static inline u16 genwqe_crc16(const u8 *buff, size_t len, u16 init)
+{
+ return crc_itu_t(init, buff, len);
+}
+
+static void print_ddcb_info(struct genwqe_dev *cd, struct ddcb_queue *queue)
+{
+ int i;
+ struct ddcb *pddcb;
+ unsigned long flags;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ spin_lock_irqsave(&cd->print_lock, flags);
+
+ dev_info(&pci_dev->dev,
+ "DDCB list for card #%d (ddcb_act=%d / ddcb_next=%d):\n",
+ cd->card_idx, queue->ddcb_act, queue->ddcb_next);
+
+ pddcb = queue->ddcb_vaddr;
+ for (i = 0; i < queue->ddcb_max; i++) {
+ dev_err(&pci_dev->dev,
+ " %c %-3d: RETC=%03x SEQ=%04x HSI=%02X SHI=%02x PRIV=%06llx CMD=%03x\n",
+ i == queue->ddcb_act ? '>' : ' ',
+ i,
+ be16_to_cpu(pddcb->retc_16),
+ be16_to_cpu(pddcb->seqnum_16),
+ pddcb->hsi,
+ pddcb->shi,
+ be64_to_cpu(pddcb->priv_64),
+ pddcb->cmd);
+ pddcb++;
+ }
+ spin_unlock_irqrestore(&cd->print_lock, flags);
+}
+
+struct genwqe_ddcb_cmd *ddcb_requ_alloc(void)
+{
+ struct ddcb_requ *req;
+
+ req = kzalloc(sizeof(*req), GFP_KERNEL);
+ if (!req)
+ return NULL;
+
+ return &req->cmd;
+}
+
+void ddcb_requ_free(struct genwqe_ddcb_cmd *cmd)
+{
+ struct ddcb_requ *req = container_of(cmd, struct ddcb_requ, cmd);
+
+ kfree(req);
+}
+
+static inline enum genwqe_requ_state ddcb_requ_get_state(struct ddcb_requ *req)
+{
+ return req->req_state;
+}
+
+static inline void ddcb_requ_set_state(struct ddcb_requ *req,
+ enum genwqe_requ_state new_state)
+{
+ req->req_state = new_state;
+}
+
+static inline int ddcb_requ_collect_debug_data(struct ddcb_requ *req)
+{
+ return req->cmd.ddata_addr != 0x0;
+}
+
+/**
+ * ddcb_requ_finished() - Returns the hardware state of the associated DDCB
+ * @cd: pointer to genwqe device descriptor
+ * @req: DDCB work request
+ *
+ * Status of ddcb_requ mirrors this hardware state, but is copied in
+ * the ddcb_requ on interrupt/polling function. The lowlevel code
+ * should check the hardware state directly, the higher level code
+ * should check the copy.
+ *
+ * This function will also return true if the state of the queue is
+ * not GENWQE_CARD_USED. This enables us to purge all DDCBs in the
+ * shutdown case.
+ */
+static int ddcb_requ_finished(struct genwqe_dev *cd, struct ddcb_requ *req)
+{
+ return (ddcb_requ_get_state(req) == GENWQE_REQU_FINISHED) ||
+ (cd->card_state != GENWQE_CARD_USED);
+}
+
+#define RET_DDCB_APPENDED 1
+#define RET_DDCB_TAPPED 2
+/**
+ * enqueue_ddcb() - Enqueue a DDCB
+ * @cd: pointer to genwqe device descriptor
+ * @queue: queue this operation should be done on
+ * @pddcb: pointer to ddcb structure
+ * @ddcb_no: pointer to ddcb number being tapped
+ *
+ * Start execution of DDCB by tapping or append to queue via NEXT
+ * bit. This is done by an atomic 'compare and swap' instruction and
+ * checking SHI and HSI of the previous DDCB.
+ *
+ * This function must only be called with ddcb_lock held.
+ *
+ * Return: 1 if new DDCB is appended to previous
+ * 2 if DDCB queue is tapped via register/simulation
+ */
+static int enqueue_ddcb(struct genwqe_dev *cd, struct ddcb_queue *queue,
+ struct ddcb *pddcb, int ddcb_no)
+{
+ unsigned int try;
+ int prev_no;
+ struct ddcb *prev_ddcb;
+ __be32 old, new, icrc_hsi_shi;
+ u64 num;
+
+ /*
+ * For performance checks a Dispatch Timestamp can be put into
+ * DDCB It is supposed to use the SLU's free running counter,
+ * but this requires PCIe cycles.
+ */
+ ddcb_mark_unused(pddcb);
+
+ /* check previous DDCB if already fetched */
+ prev_no = (ddcb_no == 0) ? queue->ddcb_max - 1 : ddcb_no - 1;
+ prev_ddcb = &queue->ddcb_vaddr[prev_no];
+
+ /*
+ * It might have happened that the HSI.FETCHED bit is
+ * set. Retry in this case. Therefore I expect maximum 2 times
+ * trying.
+ */
+ ddcb_mark_appended(pddcb);
+ for (try = 0; try < 2; try++) {
+ old = prev_ddcb->icrc_hsi_shi_32; /* read SHI/HSI in BE32 */
+
+ /* try to append via NEXT bit if prev DDCB is not completed */
+ if ((old & DDCB_COMPLETED_BE32) != 0x00000000)
+ break;
+
+ new = (old | DDCB_NEXT_BE32);
+
+ wmb(); /* need to ensure write ordering */
+ icrc_hsi_shi = cmpxchg(&prev_ddcb->icrc_hsi_shi_32, old, new);
+
+ if (icrc_hsi_shi == old)
+ return RET_DDCB_APPENDED; /* appended to queue */
+ }
+
+ /* Queue must be re-started by updating QUEUE_OFFSET */
+ ddcb_mark_tapped(pddcb);
+ num = (u64)ddcb_no << 8;
+
+ wmb(); /* need to ensure write ordering */
+ __genwqe_writeq(cd, queue->IO_QUEUE_OFFSET, num); /* start queue */
+
+ return RET_DDCB_TAPPED;
+}
+
+/**
+ * copy_ddcb_results() - Copy output state from real DDCB to request
+ * @req: pointer to requsted DDCB parameters
+ * @ddcb_no: pointer to ddcb number being tapped
+ *
+ * Copy DDCB ASV to request struct. There is no endian
+ * conversion made, since data structure in ASV is still
+ * unknown here.
+ *
+ * This is needed by:
+ * - genwqe_purge_ddcb()
+ * - genwqe_check_ddcb_queue()
+ */
+static void copy_ddcb_results(struct ddcb_requ *req, int ddcb_no)
+{
+ struct ddcb_queue *queue = req->queue;
+ struct ddcb *pddcb = &queue->ddcb_vaddr[req->num];
+
+ memcpy(&req->cmd.asv[0], &pddcb->asv[0], DDCB_ASV_LENGTH);
+
+ /* copy status flags of the variant part */
+ req->cmd.vcrc = be16_to_cpu(pddcb->vcrc_16);
+ req->cmd.deque_ts = be64_to_cpu(pddcb->deque_ts_64);
+ req->cmd.cmplt_ts = be64_to_cpu(pddcb->cmplt_ts_64);
+
+ req->cmd.attn = be16_to_cpu(pddcb->attn_16);
+ req->cmd.progress = be32_to_cpu(pddcb->progress_32);
+ req->cmd.retc = be16_to_cpu(pddcb->retc_16);
+
+ if (ddcb_requ_collect_debug_data(req)) {
+ int prev_no = (ddcb_no == 0) ?
+ queue->ddcb_max - 1 : ddcb_no - 1;
+ struct ddcb *prev_pddcb = &queue->ddcb_vaddr[prev_no];
+
+ memcpy(&req->debug_data.ddcb_finished, pddcb,
+ sizeof(req->debug_data.ddcb_finished));
+ memcpy(&req->debug_data.ddcb_prev, prev_pddcb,
+ sizeof(req->debug_data.ddcb_prev));
+ }
+}
+
+/**
+ * genwqe_check_ddcb_queue() - Checks DDCB queue for completed work equests.
+ * @cd: pointer to genwqe device descriptor
+ * @queue: queue to be checked
+ *
+ * Return: Number of DDCBs which were finished
+ */
+static int genwqe_check_ddcb_queue(struct genwqe_dev *cd,
+ struct ddcb_queue *queue)
+{
+ unsigned long flags;
+ int ddcbs_finished = 0;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ spin_lock_irqsave(&queue->ddcb_lock, flags);
+
+ /* FIXME avoid soft locking CPU */
+ while (!queue_empty(queue) && (ddcbs_finished < queue->ddcb_max)) {
+
+ struct ddcb *pddcb;
+ struct ddcb_requ *req;
+ u16 vcrc, vcrc_16, retc_16;
+
+ pddcb = &queue->ddcb_vaddr[queue->ddcb_act];
+
+ if ((pddcb->icrc_hsi_shi_32 & DDCB_COMPLETED_BE32) ==
+ 0x00000000)
+ goto go_home; /* not completed, continue waiting */
+
+ wmb(); /* Add sync to decouple prev. read operations */
+
+ /* Note: DDCB could be purged */
+ req = queue->ddcb_req[queue->ddcb_act];
+ if (req == NULL) {
+ /* this occurs if DDCB is purged, not an error */
+ /* Move active DDCB further; Nothing to do anymore. */
+ goto pick_next_one;
+ }
+
+ /*
+ * HSI=0x44 (fetched and completed), but RETC is
+ * 0x101, or even worse 0x000.
+ *
+ * In case of seeing the queue in inconsistent state
+ * we read the errcnts and the queue status to provide
+ * a trigger for our PCIe analyzer stop capturing.
+ */
+ retc_16 = be16_to_cpu(pddcb->retc_16);
+ if ((pddcb->hsi == 0x44) && (retc_16 <= 0x101)) {
+ u64 errcnts, status;
+ u64 ddcb_offs = (u64)pddcb - (u64)queue->ddcb_vaddr;
+
+ errcnts = __genwqe_readq(cd, queue->IO_QUEUE_ERRCNTS);
+ status = __genwqe_readq(cd, queue->IO_QUEUE_STATUS);
+
+ dev_err(&pci_dev->dev,
+ "[%s] SEQN=%04x HSI=%02x RETC=%03x Q_ERRCNTS=%016llx Q_STATUS=%016llx DDCB_DMA_ADDR=%016llx\n",
+ __func__, be16_to_cpu(pddcb->seqnum_16),
+ pddcb->hsi, retc_16, errcnts, status,
+ queue->ddcb_daddr + ddcb_offs);
+ }
+
+ copy_ddcb_results(req, queue->ddcb_act);
+ queue->ddcb_req[queue->ddcb_act] = NULL; /* take from queue */
+
+ dev_dbg(&pci_dev->dev, "FINISHED DDCB#%d\n", req->num);
+ genwqe_hexdump(pci_dev, pddcb, sizeof(*pddcb));
+
+ ddcb_mark_finished(pddcb);
+
+ /* calculate CRC_16 to see if VCRC is correct */
+ vcrc = genwqe_crc16(pddcb->asv,
+ VCRC_LENGTH(req->cmd.asv_length),
+ 0xffff);
+ vcrc_16 = be16_to_cpu(pddcb->vcrc_16);
+ if (vcrc != vcrc_16) {
+ printk_ratelimited(KERN_ERR
+ "%s %s: err: wrong VCRC pre=%02x vcrc_len=%d bytes vcrc_data=%04x is not vcrc_card=%04x\n",
+ GENWQE_DEVNAME, dev_name(&pci_dev->dev),
+ pddcb->pre, VCRC_LENGTH(req->cmd.asv_length),
+ vcrc, vcrc_16);
+ }
+
+ ddcb_requ_set_state(req, GENWQE_REQU_FINISHED);
+ queue->ddcbs_completed++;
+ queue->ddcbs_in_flight--;
+
+ /* wake up process waiting for this DDCB, and
+ processes on the busy queue */
+ wake_up_interruptible(&queue->ddcb_waitqs[queue->ddcb_act]);
+ wake_up_interruptible(&queue->busy_waitq);
+
+pick_next_one:
+ queue->ddcb_act = (queue->ddcb_act + 1) % queue->ddcb_max;
+ ddcbs_finished++;
+ }
+
+ go_home:
+ spin_unlock_irqrestore(&queue->ddcb_lock, flags);
+ return ddcbs_finished;
+}
+
+/**
+ * __genwqe_wait_ddcb(): Waits until DDCB is completed
+ * @cd: pointer to genwqe device descriptor
+ * @req: pointer to requsted DDCB parameters
+ *
+ * The Service Layer will update the RETC in DDCB when processing is
+ * pending or done.
+ *
+ * Return: > 0 remaining jiffies, DDCB completed
+ * -ETIMEDOUT when timeout
+ * -ERESTARTSYS when ^C
+ * -EINVAL when unknown error condition
+ *
+ * When an error is returned the called needs to ensure that
+ * purge_ddcb() is being called to get the &req removed from the
+ * queue.
+ */
+int __genwqe_wait_ddcb(struct genwqe_dev *cd, struct ddcb_requ *req)
+{
+ int rc;
+ unsigned int ddcb_no;
+ struct ddcb_queue *queue;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ if (req == NULL)
+ return -EINVAL;
+
+ queue = req->queue;
+ if (queue == NULL)
+ return -EINVAL;
+
+ ddcb_no = req->num;
+ if (ddcb_no >= queue->ddcb_max)
+ return -EINVAL;
+
+ rc = wait_event_interruptible_timeout(queue->ddcb_waitqs[ddcb_no],
+ ddcb_requ_finished(cd, req),
+ GENWQE_DDCB_SOFTWARE_TIMEOUT * HZ);
+
+ /*
+ * We need to distinguish 3 cases here:
+ * 1. rc == 0 timeout occured
+ * 2. rc == -ERESTARTSYS signal received
+ * 3. rc > 0 remaining jiffies condition is true
+ */
+ if (rc == 0) {
+ struct ddcb_queue *queue = req->queue;
+ struct ddcb *pddcb;
+
+ /*
+ * Timeout may be caused by long task switching time.
+ * When timeout happens, check if the request has
+ * meanwhile completed.
+ */
+ genwqe_check_ddcb_queue(cd, req->queue);
+ if (ddcb_requ_finished(cd, req))
+ return rc;
+
+ dev_err(&pci_dev->dev,
+ "[%s] err: DDCB#%d timeout rc=%d state=%d req @ %p\n",
+ __func__, req->num, rc, ddcb_requ_get_state(req),
+ req);
+ dev_err(&pci_dev->dev,
+ "[%s] IO_QUEUE_STATUS=0x%016llx\n", __func__,
+ __genwqe_readq(cd, queue->IO_QUEUE_STATUS));
+
+ pddcb = &queue->ddcb_vaddr[req->num];
+ genwqe_hexdump(pci_dev, pddcb, sizeof(*pddcb));
+
+ print_ddcb_info(cd, req->queue);
+ return -ETIMEDOUT;
+
+ } else if (rc == -ERESTARTSYS) {
+ return rc;
+ /*
+ * EINTR: Stops the application
+ * ERESTARTSYS: Restartable systemcall; called again
+ */
+
+ } else if (rc < 0) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: DDCB#%d unknown result (rc=%d) %d!\n",
+ __func__, req->num, rc, ddcb_requ_get_state(req));
+ return -EINVAL;
+ }
+
+ /* Severe error occured. Driver is forced to stop operation */
+ if (cd->card_state != GENWQE_CARD_USED) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: DDCB#%d forced to stop (rc=%d)\n",
+ __func__, req->num, rc);
+ return -EIO;
+ }
+ return rc;
+}
+
+/**
+ * get_next_ddcb() - Get next available DDCB
+ * @cd: pointer to genwqe device descriptor
+ * @queue: DDCB queue
+ * @num: internal DDCB number
+ *
+ * DDCB's content is completely cleared but presets for PRE and
+ * SEQNUM. This function must only be called when ddcb_lock is held.
+ *
+ * Return: NULL if no empty DDCB available otherwise ptr to next DDCB.
+ */
+static struct ddcb *get_next_ddcb(struct genwqe_dev *cd,
+ struct ddcb_queue *queue,
+ int *num)
+{
+ u64 *pu64;
+ struct ddcb *pddcb;
+
+ if (queue_free_ddcbs(queue) == 0) /* queue is full */
+ return NULL;
+
+ /* find new ddcb */
+ pddcb = &queue->ddcb_vaddr[queue->ddcb_next];
+
+ /* if it is not completed, we are not allowed to use it */
+ /* barrier(); */
+ if ((pddcb->icrc_hsi_shi_32 & DDCB_COMPLETED_BE32) == 0x00000000)
+ return NULL;
+
+ *num = queue->ddcb_next; /* internal DDCB number */
+ queue->ddcb_next = (queue->ddcb_next + 1) % queue->ddcb_max;
+
+ /* clear important DDCB fields */
+ pu64 = (u64 *)pddcb;
+ pu64[0] = 0ULL; /* offs 0x00 (ICRC,HSI,SHI,...) */
+ pu64[1] = 0ULL; /* offs 0x01 (ACFUNC,CMD...) */
+
+ /* destroy previous results in ASV */
+ pu64[0x80/8] = 0ULL; /* offs 0x80 (ASV + 0) */
+ pu64[0x88/8] = 0ULL; /* offs 0x88 (ASV + 0x08) */
+ pu64[0x90/8] = 0ULL; /* offs 0x90 (ASV + 0x10) */
+ pu64[0x98/8] = 0ULL; /* offs 0x98 (ASV + 0x18) */
+ pu64[0xd0/8] = 0ULL; /* offs 0xd0 (RETC,ATTN...) */
+
+ pddcb->pre = DDCB_PRESET_PRE; /* 128 */
+ pddcb->seqnum_16 = cpu_to_be16(queue->ddcb_seq++);
+ return pddcb;
+}
+
+/**
+ * __genwqe_purge_ddcb() - Remove a DDCB from the workqueue
+ * @cd: genwqe device descriptor
+ * @req: DDCB request
+ *
+ * This will fail when the request was already FETCHED. In this case
+ * we need to wait until it is finished. Else the DDCB can be
+ * reused. This function also ensures that the request data structure
+ * is removed from ddcb_req[].
+ *
+ * Do not forget to call this function when genwqe_wait_ddcb() fails,
+ * such that the request gets really removed from ddcb_req[].
+ *
+ * Return: 0 success
+ */
+int __genwqe_purge_ddcb(struct genwqe_dev *cd, struct ddcb_requ *req)
+{
+ struct ddcb *pddcb = NULL;
+ unsigned int t;
+ unsigned long flags;
+ struct ddcb_queue *queue = req->queue;
+ struct pci_dev *pci_dev = cd->pci_dev;
+ u64 queue_status;
+ __be32 icrc_hsi_shi = 0x0000;
+ __be32 old, new;
+
+ /* unsigned long flags; */
+ if (GENWQE_DDCB_SOFTWARE_TIMEOUT <= 0) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: software timeout is not set!\n", __func__);
+ return -EFAULT;
+ }
+
+ pddcb = &queue->ddcb_vaddr[req->num];
+
+ for (t = 0; t < GENWQE_DDCB_SOFTWARE_TIMEOUT * 10; t++) {
+
+ spin_lock_irqsave(&queue->ddcb_lock, flags);
+
+ /* Check if req was meanwhile finished */
+ if (ddcb_requ_get_state(req) == GENWQE_REQU_FINISHED)
+ goto go_home;
+
+ /* try to set PURGE bit if FETCHED/COMPLETED are not set */
+ old = pddcb->icrc_hsi_shi_32; /* read SHI/HSI in BE32 */
+ if ((old & DDCB_FETCHED_BE32) == 0x00000000) {
+
+ new = (old | DDCB_PURGE_BE32);
+ icrc_hsi_shi = cmpxchg(&pddcb->icrc_hsi_shi_32,
+ old, new);
+ if (icrc_hsi_shi == old)
+ goto finish_ddcb;
+ }
+
+ /* normal finish with HSI bit */
+ barrier();
+ icrc_hsi_shi = pddcb->icrc_hsi_shi_32;
+ if (icrc_hsi_shi & DDCB_COMPLETED_BE32)
+ goto finish_ddcb;
+
+ spin_unlock_irqrestore(&queue->ddcb_lock, flags);
+
+ /*
+ * Here the check_ddcb() function will most likely
+ * discover this DDCB to be finished some point in
+ * time. It will mark the req finished and free it up
+ * in the list.
+ */
+
+ copy_ddcb_results(req, req->num); /* for the failing case */
+ msleep(100); /* sleep for 1/10 second and try again */
+ continue;
+
+finish_ddcb:
+ copy_ddcb_results(req, req->num);
+ ddcb_requ_set_state(req, GENWQE_REQU_FINISHED);
+ queue->ddcbs_in_flight--;
+ queue->ddcb_req[req->num] = NULL; /* delete from array */
+ ddcb_mark_cleared(pddcb);
+
+ /* Move active DDCB further; Nothing to do here anymore. */
+
+ /*
+ * We need to ensure that there is at least one free
+ * DDCB in the queue. To do that, we must update
+ * ddcb_act only if the COMPLETED bit is set for the
+ * DDCB we are working on else we treat that DDCB even
+ * if we PURGED it as occupied (hardware is supposed
+ * to set the COMPLETED bit yet!).
+ */
+ icrc_hsi_shi = pddcb->icrc_hsi_shi_32;
+ if ((icrc_hsi_shi & DDCB_COMPLETED_BE32) &&
+ (queue->ddcb_act == req->num)) {
+ queue->ddcb_act = ((queue->ddcb_act + 1) %
+ queue->ddcb_max);
+ }
+go_home:
+ spin_unlock_irqrestore(&queue->ddcb_lock, flags);
+ return 0;
+ }
+
+ /*
+ * If the card is dead and the queue is forced to stop, we
+ * might see this in the queue status register.
+ */
+ queue_status = __genwqe_readq(cd, queue->IO_QUEUE_STATUS);
+
+ dev_dbg(&pci_dev->dev, "UN/FINISHED DDCB#%d\n", req->num);
+ genwqe_hexdump(pci_dev, pddcb, sizeof(*pddcb));
+
+ dev_err(&pci_dev->dev,
+ "[%s] err: DDCB#%d not purged and not completed after %d seconds QSTAT=%016llx!!\n",
+ __func__, req->num, GENWQE_DDCB_SOFTWARE_TIMEOUT,
+ queue_status);
+
+ print_ddcb_info(cd, req->queue);
+
+ return -EFAULT;
+}
+
+int genwqe_init_debug_data(struct genwqe_dev *cd, struct genwqe_debug_data *d)
+{
+ int len;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ if (d == NULL) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: invalid memory for debug data!\n",
+ __func__);
+ return -EFAULT;
+ }
+
+ len = sizeof(d->driver_version);
+ snprintf(d->driver_version, len, "%s", DRV_VERSION);
+ d->slu_unitcfg = cd->slu_unitcfg;
+ d->app_unitcfg = cd->app_unitcfg;
+ return 0;
+}
+
+/**
+ * __genwqe_enqueue_ddcb() - Enqueue a DDCB
+ * @cd: pointer to genwqe device descriptor
+ * @req: pointer to DDCB execution request
+ * @f_flags: file mode: blocking, non-blocking
+ *
+ * Return: 0 if enqueuing succeeded
+ * -EIO if card is unusable/PCIe problems
+ * -EBUSY if enqueuing failed
+ */
+int __genwqe_enqueue_ddcb(struct genwqe_dev *cd, struct ddcb_requ *req,
+ unsigned int f_flags)
+{
+ struct ddcb *pddcb;
+ unsigned long flags;
+ struct ddcb_queue *queue;
+ struct pci_dev *pci_dev = cd->pci_dev;
+ u16 icrc;
+
+ retry:
+ if (cd->card_state != GENWQE_CARD_USED) {
+ printk_ratelimited(KERN_ERR
+ "%s %s: [%s] Card is unusable/PCIe problem Req#%d\n",
+ GENWQE_DEVNAME, dev_name(&pci_dev->dev),
+ __func__, req->num);
+ return -EIO;
+ }
+
+ queue = req->queue = &cd->queue;
+
+ /* FIXME circumvention to improve performance when no irq is
+ * there.
+ */
+ if (GENWQE_POLLING_ENABLED)
+ genwqe_check_ddcb_queue(cd, queue);
+
+ /*
+ * It must be ensured to process all DDCBs in successive
+ * order. Use a lock here in order to prevent nested DDCB
+ * enqueuing.
+ */
+ spin_lock_irqsave(&queue->ddcb_lock, flags);
+
+ pddcb = get_next_ddcb(cd, queue, &req->num); /* get ptr and num */
+ if (pddcb == NULL) {
+ int rc;
+
+ spin_unlock_irqrestore(&queue->ddcb_lock, flags);
+
+ if (f_flags & O_NONBLOCK) {
+ queue->return_on_busy++;
+ return -EBUSY;
+ }
+
+ queue->wait_on_busy++;
+ rc = wait_event_interruptible(queue->busy_waitq,
+ queue_free_ddcbs(queue) != 0);
+ dev_dbg(&pci_dev->dev, "[%s] waiting for free DDCB: rc=%d\n",
+ __func__, rc);
+ if (rc == -ERESTARTSYS)
+ return rc; /* interrupted by a signal */
+
+ goto retry;
+ }
+
+ if (queue->ddcb_req[req->num] != NULL) {
+ spin_unlock_irqrestore(&queue->ddcb_lock, flags);
+
+ dev_err(&pci_dev->dev,
+ "[%s] picked DDCB %d with req=%p still in use!!\n",
+ __func__, req->num, req);
+ return -EFAULT;
+ }
+ ddcb_requ_set_state(req, GENWQE_REQU_ENQUEUED);
+ queue->ddcb_req[req->num] = req;
+
+ pddcb->cmdopts_16 = cpu_to_be16(req->cmd.cmdopts);
+ pddcb->cmd = req->cmd.cmd;
+ pddcb->acfunc = req->cmd.acfunc; /* functional unit */
+
+ /*
+ * We know that we can get retc 0x104 with CRC error, do not
+ * stop the queue in those cases for this command. XDIR = 1
+ * does not work for old SLU versions.
+ *
+ * Last bitstream with the old XDIR behavior had SLU_ID
+ * 0x34199.
+ */
+ if ((cd->slu_unitcfg & 0xFFFF0ull) > 0x34199ull)
+ pddcb->xdir = 0x1;
+ else
+ pddcb->xdir = 0x0;
+
+
+ pddcb->psp = (((req->cmd.asiv_length / 8) << 4) |
+ ((req->cmd.asv_length / 8)));
+ pddcb->disp_ts_64 = cpu_to_be64(req->cmd.disp_ts);
+
+ /*
+ * If copying the whole DDCB_ASIV_LENGTH is impacting
+ * performance we need to change it to
+ * req->cmd.asiv_length. But simulation benefits from some
+ * non-architectured bits behind the architectured content.
+ *
+ * How much data is copied depends on the availability of the
+ * ATS field, which was introduced late. If the ATS field is
+ * supported ASIV is 8 bytes shorter than it used to be. Since
+ * the ATS field is copied too, the code should do exactly
+ * what it did before, but I wanted to make copying of the ATS
+ * field very explicit.
+ */
+ if (genwqe_get_slu_id(cd) <= 0x2) {
+ memcpy(&pddcb->__asiv[0], /* destination */
+ &req->cmd.__asiv[0], /* source */
+ DDCB_ASIV_LENGTH); /* req->cmd.asiv_length */
+ } else {
+ pddcb->n.ats_64 = cpu_to_be64(req->cmd.ats);
+ memcpy(&pddcb->n.asiv[0], /* destination */
+ &req->cmd.asiv[0], /* source */
+ DDCB_ASIV_LENGTH_ATS); /* req->cmd.asiv_length */
+ }
+
+ pddcb->icrc_hsi_shi_32 = cpu_to_be32(0x00000000); /* for crc */
+
+ /*
+ * Calculate CRC_16 for corresponding range PSP(7:4). Include
+ * empty 4 bytes prior to the data.
+ */
+ icrc = genwqe_crc16((const u8 *)pddcb,
+ ICRC_LENGTH(req->cmd.asiv_length), 0xffff);
+ pddcb->icrc_hsi_shi_32 = cpu_to_be32((u32)icrc << 16);
+
+ /* enable DDCB completion irq */
+ if (!GENWQE_POLLING_ENABLED)
+ pddcb->icrc_hsi_shi_32 |= DDCB_INTR_BE32;
+
+ dev_dbg(&pci_dev->dev, "INPUT DDCB#%d\n", req->num);
+ genwqe_hexdump(pci_dev, pddcb, sizeof(*pddcb));
+
+ if (ddcb_requ_collect_debug_data(req)) {
+ /* use the kernel copy of debug data. copying back to
+ user buffer happens later */
+
+ genwqe_init_debug_data(cd, &req->debug_data);
+ memcpy(&req->debug_data.ddcb_before, pddcb,
+ sizeof(req->debug_data.ddcb_before));
+ }
+
+ enqueue_ddcb(cd, queue, pddcb, req->num);
+ queue->ddcbs_in_flight++;
+
+ if (queue->ddcbs_in_flight > queue->ddcbs_max_in_flight)
+ queue->ddcbs_max_in_flight = queue->ddcbs_in_flight;
+
+ ddcb_requ_set_state(req, GENWQE_REQU_TAPPED);
+ spin_unlock_irqrestore(&queue->ddcb_lock, flags);
+ wake_up_interruptible(&cd->queue_waitq);
+
+ return 0;
+}
+
+/**
+ * __genwqe_execute_raw_ddcb() - Setup and execute DDCB
+ * @cd: pointer to genwqe device descriptor
+ * @cmd: user provided DDCB command
+ * @f_flags: file mode: blocking, non-blocking
+ */
+int __genwqe_execute_raw_ddcb(struct genwqe_dev *cd,
+ struct genwqe_ddcb_cmd *cmd,
+ unsigned int f_flags)
+{
+ int rc = 0;
+ struct pci_dev *pci_dev = cd->pci_dev;
+ struct ddcb_requ *req = container_of(cmd, struct ddcb_requ, cmd);
+
+ if (cmd->asiv_length > DDCB_ASIV_LENGTH) {
+ dev_err(&pci_dev->dev, "[%s] err: wrong asiv_length of %d\n",
+ __func__, cmd->asiv_length);
+ return -EINVAL;
+ }
+ if (cmd->asv_length > DDCB_ASV_LENGTH) {
+ dev_err(&pci_dev->dev, "[%s] err: wrong asv_length of %d\n",
+ __func__, cmd->asiv_length);
+ return -EINVAL;
+ }
+ rc = __genwqe_enqueue_ddcb(cd, req, f_flags);
+ if (rc != 0)
+ return rc;
+
+ rc = __genwqe_wait_ddcb(cd, req);
+ if (rc < 0) /* error or signal interrupt */
+ goto err_exit;
+
+ if (ddcb_requ_collect_debug_data(req)) {
+ if (copy_to_user((struct genwqe_debug_data __user *)
+ (unsigned long)cmd->ddata_addr,
+ &req->debug_data,
+ sizeof(struct genwqe_debug_data)))
+ return -EFAULT;
+ }
+
+ /*
+ * Higher values than 0x102 indicate completion with faults,
+ * lower values than 0x102 indicate processing faults. Note
+ * that DDCB might have been purged. E.g. Cntl+C.
+ */
+ if (cmd->retc != DDCB_RETC_COMPLETE) {
+ /* This might happen e.g. flash read, and needs to be
+ handled by the upper layer code. */
+ rc = -EBADMSG; /* not processed/error retc */
+ }
+
+ return rc;
+
+ err_exit:
+ __genwqe_purge_ddcb(cd, req);
+
+ if (ddcb_requ_collect_debug_data(req)) {
+ if (copy_to_user((struct genwqe_debug_data __user *)
+ (unsigned long)cmd->ddata_addr,
+ &req->debug_data,
+ sizeof(struct genwqe_debug_data)))
+ return -EFAULT;
+ }
+ return rc;
+}
+
+/**
+ * genwqe_next_ddcb_ready() - Figure out if the next DDCB is already finished
+ * @cd: pointer to genwqe device descriptor
+ *
+ * We use this as condition for our wait-queue code.
+ */
+static int genwqe_next_ddcb_ready(struct genwqe_dev *cd)
+{
+ unsigned long flags;
+ struct ddcb *pddcb;
+ struct ddcb_queue *queue = &cd->queue;
+
+ spin_lock_irqsave(&queue->ddcb_lock, flags);
+
+ if (queue_empty(queue)) { /* emtpy queue */
+ spin_unlock_irqrestore(&queue->ddcb_lock, flags);
+ return 0;
+ }
+
+ pddcb = &queue->ddcb_vaddr[queue->ddcb_act];
+ if (pddcb->icrc_hsi_shi_32 & DDCB_COMPLETED_BE32) { /* ddcb ready */
+ spin_unlock_irqrestore(&queue->ddcb_lock, flags);
+ return 1;
+ }
+
+ spin_unlock_irqrestore(&queue->ddcb_lock, flags);
+ return 0;
+}
+
+/**
+ * genwqe_ddcbs_in_flight() - Check how many DDCBs are in flight
+ * @cd: pointer to genwqe device descriptor
+ *
+ * Keep track on the number of DDCBs which ware currently in the
+ * queue. This is needed for statistics as well as conditon if we want
+ * to wait or better do polling in case of no interrupts available.
+ */
+int genwqe_ddcbs_in_flight(struct genwqe_dev *cd)
+{
+ unsigned long flags;
+ int ddcbs_in_flight = 0;
+ struct ddcb_queue *queue = &cd->queue;
+
+ spin_lock_irqsave(&queue->ddcb_lock, flags);
+ ddcbs_in_flight += queue->ddcbs_in_flight;
+ spin_unlock_irqrestore(&queue->ddcb_lock, flags);
+
+ return ddcbs_in_flight;
+}
+
+static int setup_ddcb_queue(struct genwqe_dev *cd, struct ddcb_queue *queue)
+{
+ int rc, i;
+ struct ddcb *pddcb;
+ u64 val64;
+ unsigned int queue_size;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ if (GENWQE_DDCB_MAX < 2)
+ return -EINVAL;
+
+ queue_size = roundup(GENWQE_DDCB_MAX * sizeof(struct ddcb), PAGE_SIZE);
+
+ queue->ddcbs_in_flight = 0; /* statistics */
+ queue->ddcbs_max_in_flight = 0;
+ queue->ddcbs_completed = 0;
+ queue->return_on_busy = 0;
+ queue->wait_on_busy = 0;
+
+ queue->ddcb_seq = 0x100; /* start sequence number */
+ queue->ddcb_max = GENWQE_DDCB_MAX;
+ queue->ddcb_vaddr = __genwqe_alloc_consistent(cd, queue_size,
+ &queue->ddcb_daddr);
+ if (queue->ddcb_vaddr == NULL) {
+ dev_err(&pci_dev->dev,
+ "[%s] **err: could not allocate DDCB **\n", __func__);
+ return -ENOMEM;
+ }
+ queue->ddcb_req = kcalloc(queue->ddcb_max, sizeof(struct ddcb_requ *),
+ GFP_KERNEL);
+ if (!queue->ddcb_req) {
+ rc = -ENOMEM;
+ goto free_ddcbs;
+ }
+
+ queue->ddcb_waitqs = kcalloc(queue->ddcb_max,
+ sizeof(wait_queue_head_t),
+ GFP_KERNEL);
+ if (!queue->ddcb_waitqs) {
+ rc = -ENOMEM;
+ goto free_requs;
+ }
+
+ for (i = 0; i < queue->ddcb_max; i++) {
+ pddcb = &queue->ddcb_vaddr[i]; /* DDCBs */
+ pddcb->icrc_hsi_shi_32 = DDCB_COMPLETED_BE32;
+ pddcb->retc_16 = cpu_to_be16(0xfff);
+
+ queue->ddcb_req[i] = NULL; /* requests */
+ init_waitqueue_head(&queue->ddcb_waitqs[i]); /* waitqueues */
+ }
+
+ queue->ddcb_act = 0;
+ queue->ddcb_next = 0; /* queue is empty */
+
+ spin_lock_init(&queue->ddcb_lock);
+ init_waitqueue_head(&queue->busy_waitq);
+
+ val64 = ((u64)(queue->ddcb_max - 1) << 8); /* lastptr */
+ __genwqe_writeq(cd, queue->IO_QUEUE_CONFIG, 0x07); /* iCRC/vCRC */
+ __genwqe_writeq(cd, queue->IO_QUEUE_SEGMENT, queue->ddcb_daddr);
+ __genwqe_writeq(cd, queue->IO_QUEUE_INITSQN, queue->ddcb_seq);
+ __genwqe_writeq(cd, queue->IO_QUEUE_WRAP, val64);
+ return 0;
+
+ free_requs:
+ kfree(queue->ddcb_req);
+ queue->ddcb_req = NULL;
+ free_ddcbs:
+ __genwqe_free_consistent(cd, queue_size, queue->ddcb_vaddr,
+ queue->ddcb_daddr);
+ queue->ddcb_vaddr = NULL;
+ queue->ddcb_daddr = 0ull;
+ return rc;
+
+}
+
+static int ddcb_queue_initialized(struct ddcb_queue *queue)
+{
+ return queue->ddcb_vaddr != NULL;
+}
+
+static void free_ddcb_queue(struct genwqe_dev *cd, struct ddcb_queue *queue)
+{
+ unsigned int queue_size;
+
+ queue_size = roundup(queue->ddcb_max * sizeof(struct ddcb), PAGE_SIZE);
+
+ kfree(queue->ddcb_req);
+ queue->ddcb_req = NULL;
+
+ if (queue->ddcb_vaddr) {
+ __genwqe_free_consistent(cd, queue_size, queue->ddcb_vaddr,
+ queue->ddcb_daddr);
+ queue->ddcb_vaddr = NULL;
+ queue->ddcb_daddr = 0ull;
+ }
+}
+
+static irqreturn_t genwqe_pf_isr(int irq, void *dev_id)
+{
+ u64 gfir;
+ struct genwqe_dev *cd = (struct genwqe_dev *)dev_id;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ /*
+ * In case of fatal FIR error the queue is stopped, such that
+ * we can safely check it without risking anything.
+ */
+ cd->irqs_processed++;
+ wake_up_interruptible(&cd->queue_waitq);
+
+ /*
+ * Checking for errors before kicking the queue might be
+ * safer, but slower for the good-case ... See above.
+ */
+ gfir = __genwqe_readq(cd, IO_SLC_CFGREG_GFIR);
+ if (((gfir & GFIR_ERR_TRIGGER) != 0x0) &&
+ !pci_channel_offline(pci_dev)) {
+
+ if (cd->use_platform_recovery) {
+ /*
+ * Since we use raw accessors, EEH errors won't be
+ * detected by the platform until we do a non-raw
+ * MMIO or config space read
+ */
+ readq(cd->mmio + IO_SLC_CFGREG_GFIR);
+
+ /* Don't do anything if the PCI channel is frozen */
+ if (pci_channel_offline(pci_dev))
+ goto exit;
+ }
+
+ wake_up_interruptible(&cd->health_waitq);
+
+ /*
+ * By default GFIRs causes recovery actions. This
+ * count is just for debug when recovery is masked.
+ */
+ dev_err_ratelimited(&pci_dev->dev,
+ "[%s] GFIR=%016llx\n",
+ __func__, gfir);
+ }
+
+ exit:
+ return IRQ_HANDLED;
+}
+
+static irqreturn_t genwqe_vf_isr(int irq, void *dev_id)
+{
+ struct genwqe_dev *cd = (struct genwqe_dev *)dev_id;
+
+ cd->irqs_processed++;
+ wake_up_interruptible(&cd->queue_waitq);
+
+ return IRQ_HANDLED;
+}
+
+/**
+ * genwqe_card_thread() - Work thread for the DDCB queue
+ * @data: pointer to genwqe device descriptor
+ *
+ * The idea is to check if there are DDCBs in processing. If there are
+ * some finished DDCBs, we process them and wakeup the
+ * requestors. Otherwise we give other processes time using
+ * cond_resched().
+ */
+static int genwqe_card_thread(void *data)
+{
+ int should_stop = 0;
+ struct genwqe_dev *cd = (struct genwqe_dev *)data;
+
+ while (!kthread_should_stop()) {
+
+ genwqe_check_ddcb_queue(cd, &cd->queue);
+
+ if (GENWQE_POLLING_ENABLED) {
+ wait_event_interruptible_timeout(
+ cd->queue_waitq,
+ genwqe_ddcbs_in_flight(cd) ||
+ (should_stop = kthread_should_stop()), 1);
+ } else {
+ wait_event_interruptible_timeout(
+ cd->queue_waitq,
+ genwqe_next_ddcb_ready(cd) ||
+ (should_stop = kthread_should_stop()), HZ);
+ }
+ if (should_stop)
+ break;
+
+ /*
+ * Avoid soft lockups on heavy loads; we do not want
+ * to disable our interrupts.
+ */
+ cond_resched();
+ }
+ return 0;
+}
+
+/**
+ * genwqe_setup_service_layer() - Setup DDCB queue
+ * @cd: pointer to genwqe device descriptor
+ *
+ * Allocate DDCBs. Configure Service Layer Controller (SLC).
+ *
+ * Return: 0 success
+ */
+int genwqe_setup_service_layer(struct genwqe_dev *cd)
+{
+ int rc;
+ struct ddcb_queue *queue;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ if (genwqe_is_privileged(cd)) {
+ rc = genwqe_card_reset(cd);
+ if (rc < 0) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: reset failed.\n", __func__);
+ return rc;
+ }
+ genwqe_read_softreset(cd);
+ }
+
+ queue = &cd->queue;
+ queue->IO_QUEUE_CONFIG = IO_SLC_QUEUE_CONFIG;
+ queue->IO_QUEUE_STATUS = IO_SLC_QUEUE_STATUS;
+ queue->IO_QUEUE_SEGMENT = IO_SLC_QUEUE_SEGMENT;
+ queue->IO_QUEUE_INITSQN = IO_SLC_QUEUE_INITSQN;
+ queue->IO_QUEUE_OFFSET = IO_SLC_QUEUE_OFFSET;
+ queue->IO_QUEUE_WRAP = IO_SLC_QUEUE_WRAP;
+ queue->IO_QUEUE_WTIME = IO_SLC_QUEUE_WTIME;
+ queue->IO_QUEUE_ERRCNTS = IO_SLC_QUEUE_ERRCNTS;
+ queue->IO_QUEUE_LRW = IO_SLC_QUEUE_LRW;
+
+ rc = setup_ddcb_queue(cd, queue);
+ if (rc != 0) {
+ rc = -ENODEV;
+ goto err_out;
+ }
+
+ init_waitqueue_head(&cd->queue_waitq);
+ cd->card_thread = kthread_run(genwqe_card_thread, cd,
+ GENWQE_DEVNAME "%d_thread",
+ cd->card_idx);
+ if (IS_ERR(cd->card_thread)) {
+ rc = PTR_ERR(cd->card_thread);
+ cd->card_thread = NULL;
+ goto stop_free_queue;
+ }
+
+ rc = genwqe_set_interrupt_capability(cd, GENWQE_MSI_IRQS);
+ if (rc)
+ goto stop_kthread;
+
+ /*
+ * We must have all wait-queues initialized when we enable the
+ * interrupts. Otherwise we might crash if we get an early
+ * irq.
+ */
+ init_waitqueue_head(&cd->health_waitq);
+
+ if (genwqe_is_privileged(cd)) {
+ rc = request_irq(pci_dev->irq, genwqe_pf_isr, IRQF_SHARED,
+ GENWQE_DEVNAME, cd);
+ } else {
+ rc = request_irq(pci_dev->irq, genwqe_vf_isr, IRQF_SHARED,
+ GENWQE_DEVNAME, cd);
+ }
+ if (rc < 0) {
+ dev_err(&pci_dev->dev, "irq %d not free.\n", pci_dev->irq);
+ goto stop_irq_cap;
+ }
+
+ cd->card_state = GENWQE_CARD_USED;
+ return 0;
+
+ stop_irq_cap:
+ genwqe_reset_interrupt_capability(cd);
+ stop_kthread:
+ kthread_stop(cd->card_thread);
+ cd->card_thread = NULL;
+ stop_free_queue:
+ free_ddcb_queue(cd, queue);
+ err_out:
+ return rc;
+}
+
+/**
+ * queue_wake_up_all() - Handles fatal error case
+ * @cd: pointer to genwqe device descriptor
+ *
+ * The PCI device got unusable and we have to stop all pending
+ * requests as fast as we can. The code after this must purge the
+ * DDCBs in question and ensure that all mappings are freed.
+ */
+static int queue_wake_up_all(struct genwqe_dev *cd)
+{
+ unsigned int i;
+ unsigned long flags;
+ struct ddcb_queue *queue = &cd->queue;
+
+ spin_lock_irqsave(&queue->ddcb_lock, flags);
+
+ for (i = 0; i < queue->ddcb_max; i++)
+ wake_up_interruptible(&queue->ddcb_waitqs[queue->ddcb_act]);
+
+ wake_up_interruptible(&queue->busy_waitq);
+ spin_unlock_irqrestore(&queue->ddcb_lock, flags);
+
+ return 0;
+}
+
+/**
+ * genwqe_finish_queue() - Remove any genwqe devices and user-interfaces
+ * @cd: pointer to genwqe device descriptor
+ *
+ * Relies on the pre-condition that there are no users of the card
+ * device anymore e.g. with open file-descriptors.
+ *
+ * This function must be robust enough to be called twice.
+ */
+int genwqe_finish_queue(struct genwqe_dev *cd)
+{
+ int i, rc = 0, in_flight;
+ int waitmax = GENWQE_DDCB_SOFTWARE_TIMEOUT;
+ struct pci_dev *pci_dev = cd->pci_dev;
+ struct ddcb_queue *queue = &cd->queue;
+
+ if (!ddcb_queue_initialized(queue))
+ return 0;
+
+ /* Do not wipe out the error state. */
+ if (cd->card_state == GENWQE_CARD_USED)
+ cd->card_state = GENWQE_CARD_UNUSED;
+
+ /* Wake up all requests in the DDCB queue such that they
+ should be removed nicely. */
+ queue_wake_up_all(cd);
+
+ /* We must wait to get rid of the DDCBs in flight */
+ for (i = 0; i < waitmax; i++) {
+ in_flight = genwqe_ddcbs_in_flight(cd);
+
+ if (in_flight == 0)
+ break;
+
+ dev_dbg(&pci_dev->dev,
+ " DEBUG [%d/%d] waiting for queue to get empty: %d requests!\n",
+ i, waitmax, in_flight);
+
+ /*
+ * Severe severe error situation: The card itself has
+ * 16 DDCB queues, each queue has e.g. 32 entries,
+ * each DDBC has a hardware timeout of currently 250
+ * msec but the PFs have a hardware timeout of 8 sec
+ * ... so I take something large.
+ */
+ msleep(1000);
+ }
+ if (i == waitmax) {
+ dev_err(&pci_dev->dev, " [%s] err: queue is not empty!!\n",
+ __func__);
+ rc = -EIO;
+ }
+ return rc;
+}
+
+/**
+ * genwqe_release_service_layer() - Shutdown DDCB queue
+ * @cd: genwqe device descriptor
+ *
+ * This function must be robust enough to be called twice.
+ */
+int genwqe_release_service_layer(struct genwqe_dev *cd)
+{
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ if (!ddcb_queue_initialized(&cd->queue))
+ return 1;
+
+ free_irq(pci_dev->irq, cd);
+ genwqe_reset_interrupt_capability(cd);
+
+ if (cd->card_thread != NULL) {
+ kthread_stop(cd->card_thread);
+ cd->card_thread = NULL;
+ }
+
+ free_ddcb_queue(cd, &cd->queue);
+ return 0;
+}
diff --git a/drivers/misc/genwqe/card_ddcb.h b/drivers/misc/genwqe/card_ddcb.h
new file mode 100644
index 000000000..a47ff49ae
--- /dev/null
+++ b/drivers/misc/genwqe/card_ddcb.h
@@ -0,0 +1,179 @@
+/* SPDX-License-Identifier: GPL-2.0-or-later */
+#ifndef __CARD_DDCB_H__
+#define __CARD_DDCB_H__
+
+/**
+ * IBM Accelerator Family 'GenWQE'
+ *
+ * (C) Copyright IBM Corp. 2013
+ *
+ * Author: Frank Haverkamp <haver@linux.vnet.ibm.com>
+ * Author: Joerg-Stephan Vogt <jsvogt@de.ibm.com>
+ * Author: Michael Jung <mijung@gmx.net>
+ * Author: Michael Ruettger <michael@ibmra.de>
+ */
+
+#include <linux/types.h>
+#include <asm/byteorder.h>
+
+#include "genwqe_driver.h"
+#include "card_base.h"
+
+/**
+ * struct ddcb - Device Driver Control Block DDCB
+ * @hsi: Hardware software interlock
+ * @shi: Software hardware interlock. Hsi and shi are used to interlock
+ * software and hardware activities. We are using a compare and
+ * swap operation to ensure that there are no races when
+ * activating new DDCBs on the queue, or when we need to
+ * purge a DDCB from a running queue.
+ * @acfunc: Accelerator function addresses a unit within the chip
+ * @cmd: Command to work on
+ * @cmdopts_16: Options for the command
+ * @asiv: Input data
+ * @asv: Output data
+ *
+ * The DDCB data format is big endian. Multiple consequtive DDBCs form
+ * a DDCB queue.
+ */
+#define ASIV_LENGTH 104 /* Old specification without ATS field */
+#define ASIV_LENGTH_ATS 96 /* New specification with ATS field */
+#define ASV_LENGTH 64
+
+struct ddcb {
+ union {
+ __be32 icrc_hsi_shi_32; /* iCRC, Hardware/SW interlock */
+ struct {
+ __be16 icrc_16;
+ u8 hsi;
+ u8 shi;
+ };
+ };
+ u8 pre; /* Preamble */
+ u8 xdir; /* Execution Directives */
+ __be16 seqnum_16; /* Sequence Number */
+
+ u8 acfunc; /* Accelerator Function.. */
+ u8 cmd; /* Command. */
+ __be16 cmdopts_16; /* Command Options */
+ u8 sur; /* Status Update Rate */
+ u8 psp; /* Protection Section Pointer */
+ __be16 rsvd_0e_16; /* Reserved invariant */
+
+ __be64 fwiv_64; /* Firmware Invariant. */
+
+ union {
+ struct {
+ __be64 ats_64; /* Address Translation Spec */
+ u8 asiv[ASIV_LENGTH_ATS]; /* New ASIV */
+ } n;
+ u8 __asiv[ASIV_LENGTH]; /* obsolete */
+ };
+ u8 asv[ASV_LENGTH]; /* Appl Spec Variant */
+
+ __be16 rsvd_c0_16; /* Reserved Variant */
+ __be16 vcrc_16; /* Variant CRC */
+ __be32 rsvd_32; /* Reserved unprotected */
+
+ __be64 deque_ts_64; /* Deque Time Stamp. */
+
+ __be16 retc_16; /* Return Code */
+ __be16 attn_16; /* Attention/Extended Error Codes */
+ __be32 progress_32; /* Progress indicator. */
+
+ __be64 cmplt_ts_64; /* Completion Time Stamp. */
+
+ /* The following layout matches the new service layer format */
+ __be32 ibdc_32; /* Inbound Data Count (* 256) */
+ __be32 obdc_32; /* Outbound Data Count (* 256) */
+
+ __be64 rsvd_SLH_64; /* Reserved for hardware */
+ union { /* private data for driver */
+ u8 priv[8];
+ __be64 priv_64;
+ };
+ __be64 disp_ts_64; /* Dispatch TimeStamp */
+} __attribute__((__packed__));
+
+/* CRC polynomials for DDCB */
+#define CRC16_POLYNOMIAL 0x1021
+
+/*
+ * SHI: Software to Hardware Interlock
+ * This 1 byte field is written by software to interlock the
+ * movement of one queue entry to another with the hardware in the
+ * chip.
+ */
+#define DDCB_SHI_INTR 0x04 /* Bit 2 */
+#define DDCB_SHI_PURGE 0x02 /* Bit 1 */
+#define DDCB_SHI_NEXT 0x01 /* Bit 0 */
+
+/*
+ * HSI: Hardware to Software interlock
+ * This 1 byte field is written by hardware to interlock the movement
+ * of one queue entry to another with the software in the chip.
+ */
+#define DDCB_HSI_COMPLETED 0x40 /* Bit 6 */
+#define DDCB_HSI_FETCHED 0x04 /* Bit 2 */
+
+/*
+ * Accessing HSI/SHI is done 32-bit wide
+ * Normally 16-bit access would work too, but on some platforms the
+ * 16 compare and swap operation is not supported. Therefore
+ * switching to 32-bit such that those platforms will work too.
+ *
+ * iCRC HSI/SHI
+ */
+#define DDCB_INTR_BE32 cpu_to_be32(0x00000004)
+#define DDCB_PURGE_BE32 cpu_to_be32(0x00000002)
+#define DDCB_NEXT_BE32 cpu_to_be32(0x00000001)
+#define DDCB_COMPLETED_BE32 cpu_to_be32(0x00004000)
+#define DDCB_FETCHED_BE32 cpu_to_be32(0x00000400)
+
+/* Definitions of DDCB presets */
+#define DDCB_PRESET_PRE 0x80
+#define ICRC_LENGTH(n) ((n) + 8 + 8 + 8) /* used ASIV + hdr fields */
+#define VCRC_LENGTH(n) ((n)) /* used ASV */
+
+/*
+ * Genwqe Scatter Gather list
+ * Each element has up to 8 entries.
+ * The chaining element is element 0 cause of prefetching needs.
+ */
+
+/*
+ * 0b0110 Chained descriptor. The descriptor is describing the next
+ * descriptor list.
+ */
+#define SG_CHAINED (0x6)
+
+/*
+ * 0b0010 First entry of a descriptor list. Start from a Buffer-Empty
+ * condition.
+ */
+#define SG_DATA (0x2)
+
+/*
+ * 0b0000 Early terminator. This is the last entry on the list
+ * irregardless of the length indicated.
+ */
+#define SG_END_LIST (0x0)
+
+/**
+ * struct sglist - Scatter gather list
+ * @target_addr: Either a dma addr of memory to work on or a
+ * dma addr or a subsequent sglist block.
+ * @len: Length of the data block.
+ * @flags: See above.
+ *
+ * Depending on the command the GenWQE card can use a scatter gather
+ * list to describe the memory it works on. Always 8 sg_entry's form
+ * a block.
+ */
+struct sg_entry {
+ __be64 target_addr;
+ __be32 len;
+ __be32 flags;
+};
+
+#endif /* __CARD_DDCB_H__ */
diff --git a/drivers/misc/genwqe/card_debugfs.c b/drivers/misc/genwqe/card_debugfs.c
new file mode 100644
index 000000000..491fb4482
--- /dev/null
+++ b/drivers/misc/genwqe/card_debugfs.c
@@ -0,0 +1,378 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * IBM Accelerator Family 'GenWQE'
+ *
+ * (C) Copyright IBM Corp. 2013
+ *
+ * Author: Frank Haverkamp <haver@linux.vnet.ibm.com>
+ * Author: Joerg-Stephan Vogt <jsvogt@de.ibm.com>
+ * Author: Michael Jung <mijung@gmx.net>
+ * Author: Michael Ruettger <michael@ibmra.de>
+ */
+
+/*
+ * Debugfs interfaces for the GenWQE card. Help to debug potential
+ * problems. Dump internal chip state for debugging and failure
+ * determination.
+ */
+
+#include <linux/module.h>
+#include <linux/kernel.h>
+#include <linux/debugfs.h>
+#include <linux/seq_file.h>
+#include <linux/uaccess.h>
+
+#include "card_base.h"
+#include "card_ddcb.h"
+
+static void dbg_uidn_show(struct seq_file *s, struct genwqe_reg *regs,
+ int entries)
+{
+ unsigned int i;
+ u32 v_hi, v_lo;
+
+ for (i = 0; i < entries; i++) {
+ v_hi = (regs[i].val >> 32) & 0xffffffff;
+ v_lo = (regs[i].val) & 0xffffffff;
+
+ seq_printf(s, " 0x%08x 0x%08x 0x%08x 0x%08x EXT_ERR_REC\n",
+ regs[i].addr, regs[i].idx, v_hi, v_lo);
+ }
+}
+
+static int curr_dbg_uidn_show(struct seq_file *s, void *unused, int uid)
+{
+ struct genwqe_dev *cd = s->private;
+ int entries;
+ struct genwqe_reg *regs;
+
+ entries = genwqe_ffdc_buff_size(cd, uid);
+ if (entries < 0)
+ return -EINVAL;
+
+ if (entries == 0)
+ return 0;
+
+ regs = kcalloc(entries, sizeof(*regs), GFP_KERNEL);
+ if (regs == NULL)
+ return -ENOMEM;
+
+ genwqe_stop_traps(cd); /* halt the traps while dumping data */
+ genwqe_ffdc_buff_read(cd, uid, regs, entries);
+ genwqe_start_traps(cd);
+
+ dbg_uidn_show(s, regs, entries);
+ kfree(regs);
+ return 0;
+}
+
+static int curr_dbg_uid0_show(struct seq_file *s, void *unused)
+{
+ return curr_dbg_uidn_show(s, unused, 0);
+}
+
+DEFINE_SHOW_ATTRIBUTE(curr_dbg_uid0);
+
+static int curr_dbg_uid1_show(struct seq_file *s, void *unused)
+{
+ return curr_dbg_uidn_show(s, unused, 1);
+}
+
+DEFINE_SHOW_ATTRIBUTE(curr_dbg_uid1);
+
+static int curr_dbg_uid2_show(struct seq_file *s, void *unused)
+{
+ return curr_dbg_uidn_show(s, unused, 2);
+}
+
+DEFINE_SHOW_ATTRIBUTE(curr_dbg_uid2);
+
+static int prev_dbg_uidn_show(struct seq_file *s, void *unused, int uid)
+{
+ struct genwqe_dev *cd = s->private;
+
+ dbg_uidn_show(s, cd->ffdc[uid].regs, cd->ffdc[uid].entries);
+ return 0;
+}
+
+static int prev_dbg_uid0_show(struct seq_file *s, void *unused)
+{
+ return prev_dbg_uidn_show(s, unused, 0);
+}
+
+DEFINE_SHOW_ATTRIBUTE(prev_dbg_uid0);
+
+static int prev_dbg_uid1_show(struct seq_file *s, void *unused)
+{
+ return prev_dbg_uidn_show(s, unused, 1);
+}
+
+DEFINE_SHOW_ATTRIBUTE(prev_dbg_uid1);
+
+static int prev_dbg_uid2_show(struct seq_file *s, void *unused)
+{
+ return prev_dbg_uidn_show(s, unused, 2);
+}
+
+DEFINE_SHOW_ATTRIBUTE(prev_dbg_uid2);
+
+static int curr_regs_show(struct seq_file *s, void *unused)
+{
+ struct genwqe_dev *cd = s->private;
+ unsigned int i;
+ struct genwqe_reg *regs;
+
+ regs = kcalloc(GENWQE_FFDC_REGS, sizeof(*regs), GFP_KERNEL);
+ if (regs == NULL)
+ return -ENOMEM;
+
+ genwqe_stop_traps(cd);
+ genwqe_read_ffdc_regs(cd, regs, GENWQE_FFDC_REGS, 1);
+ genwqe_start_traps(cd);
+
+ for (i = 0; i < GENWQE_FFDC_REGS; i++) {
+ if (regs[i].addr == 0xffffffff)
+ break; /* invalid entries */
+
+ if (regs[i].val == 0x0ull)
+ continue; /* do not print 0x0 FIRs */
+
+ seq_printf(s, " 0x%08x 0x%016llx\n",
+ regs[i].addr, regs[i].val);
+ }
+ return 0;
+}
+
+DEFINE_SHOW_ATTRIBUTE(curr_regs);
+
+static int prev_regs_show(struct seq_file *s, void *unused)
+{
+ struct genwqe_dev *cd = s->private;
+ unsigned int i;
+ struct genwqe_reg *regs = cd->ffdc[GENWQE_DBG_REGS].regs;
+
+ if (regs == NULL)
+ return -EINVAL;
+
+ for (i = 0; i < GENWQE_FFDC_REGS; i++) {
+ if (regs[i].addr == 0xffffffff)
+ break; /* invalid entries */
+
+ if (regs[i].val == 0x0ull)
+ continue; /* do not print 0x0 FIRs */
+
+ seq_printf(s, " 0x%08x 0x%016llx\n",
+ regs[i].addr, regs[i].val);
+ }
+ return 0;
+}
+
+DEFINE_SHOW_ATTRIBUTE(prev_regs);
+
+static int jtimer_show(struct seq_file *s, void *unused)
+{
+ struct genwqe_dev *cd = s->private;
+ unsigned int vf_num;
+ u64 jtimer;
+
+ jtimer = genwqe_read_vreg(cd, IO_SLC_VF_APPJOB_TIMEOUT, 0);
+ seq_printf(s, " PF 0x%016llx %d msec\n", jtimer,
+ GENWQE_PF_JOBTIMEOUT_MSEC);
+
+ for (vf_num = 0; vf_num < cd->num_vfs; vf_num++) {
+ jtimer = genwqe_read_vreg(cd, IO_SLC_VF_APPJOB_TIMEOUT,
+ vf_num + 1);
+ seq_printf(s, " VF%-2d 0x%016llx %d msec\n", vf_num, jtimer,
+ cd->vf_jobtimeout_msec[vf_num]);
+ }
+ return 0;
+}
+
+DEFINE_SHOW_ATTRIBUTE(jtimer);
+
+static int queue_working_time_show(struct seq_file *s, void *unused)
+{
+ struct genwqe_dev *cd = s->private;
+ unsigned int vf_num;
+ u64 t;
+
+ t = genwqe_read_vreg(cd, IO_SLC_VF_QUEUE_WTIME, 0);
+ seq_printf(s, " PF 0x%016llx\n", t);
+
+ for (vf_num = 0; vf_num < cd->num_vfs; vf_num++) {
+ t = genwqe_read_vreg(cd, IO_SLC_VF_QUEUE_WTIME, vf_num + 1);
+ seq_printf(s, " VF%-2d 0x%016llx\n", vf_num, t);
+ }
+ return 0;
+}
+
+DEFINE_SHOW_ATTRIBUTE(queue_working_time);
+
+static int ddcb_info_show(struct seq_file *s, void *unused)
+{
+ struct genwqe_dev *cd = s->private;
+ unsigned int i;
+ struct ddcb_queue *queue;
+ struct ddcb *pddcb;
+
+ queue = &cd->queue;
+ seq_puts(s, "DDCB QUEUE:\n");
+ seq_printf(s, " ddcb_max: %d\n"
+ " ddcb_daddr: %016llx - %016llx\n"
+ " ddcb_vaddr: %p\n"
+ " ddcbs_in_flight: %u\n"
+ " ddcbs_max_in_flight: %u\n"
+ " ddcbs_completed: %u\n"
+ " return_on_busy: %u\n"
+ " wait_on_busy: %u\n"
+ " irqs_processed: %u\n",
+ queue->ddcb_max, (long long)queue->ddcb_daddr,
+ (long long)queue->ddcb_daddr +
+ (queue->ddcb_max * DDCB_LENGTH),
+ queue->ddcb_vaddr, queue->ddcbs_in_flight,
+ queue->ddcbs_max_in_flight, queue->ddcbs_completed,
+ queue->return_on_busy, queue->wait_on_busy,
+ cd->irqs_processed);
+
+ /* Hardware State */
+ seq_printf(s, " 0x%08x 0x%016llx IO_QUEUE_CONFIG\n"
+ " 0x%08x 0x%016llx IO_QUEUE_STATUS\n"
+ " 0x%08x 0x%016llx IO_QUEUE_SEGMENT\n"
+ " 0x%08x 0x%016llx IO_QUEUE_INITSQN\n"
+ " 0x%08x 0x%016llx IO_QUEUE_WRAP\n"
+ " 0x%08x 0x%016llx IO_QUEUE_OFFSET\n"
+ " 0x%08x 0x%016llx IO_QUEUE_WTIME\n"
+ " 0x%08x 0x%016llx IO_QUEUE_ERRCNTS\n"
+ " 0x%08x 0x%016llx IO_QUEUE_LRW\n",
+ queue->IO_QUEUE_CONFIG,
+ __genwqe_readq(cd, queue->IO_QUEUE_CONFIG),
+ queue->IO_QUEUE_STATUS,
+ __genwqe_readq(cd, queue->IO_QUEUE_STATUS),
+ queue->IO_QUEUE_SEGMENT,
+ __genwqe_readq(cd, queue->IO_QUEUE_SEGMENT),
+ queue->IO_QUEUE_INITSQN,
+ __genwqe_readq(cd, queue->IO_QUEUE_INITSQN),
+ queue->IO_QUEUE_WRAP,
+ __genwqe_readq(cd, queue->IO_QUEUE_WRAP),
+ queue->IO_QUEUE_OFFSET,
+ __genwqe_readq(cd, queue->IO_QUEUE_OFFSET),
+ queue->IO_QUEUE_WTIME,
+ __genwqe_readq(cd, queue->IO_QUEUE_WTIME),
+ queue->IO_QUEUE_ERRCNTS,
+ __genwqe_readq(cd, queue->IO_QUEUE_ERRCNTS),
+ queue->IO_QUEUE_LRW,
+ __genwqe_readq(cd, queue->IO_QUEUE_LRW));
+
+ seq_printf(s, "DDCB list (ddcb_act=%d/ddcb_next=%d):\n",
+ queue->ddcb_act, queue->ddcb_next);
+
+ pddcb = queue->ddcb_vaddr;
+ for (i = 0; i < queue->ddcb_max; i++) {
+ seq_printf(s, " %-3d: RETC=%03x SEQ=%04x HSI/SHI=%02x/%02x ",
+ i, be16_to_cpu(pddcb->retc_16),
+ be16_to_cpu(pddcb->seqnum_16),
+ pddcb->hsi, pddcb->shi);
+ seq_printf(s, "PRIV=%06llx CMD=%02x\n",
+ be64_to_cpu(pddcb->priv_64), pddcb->cmd);
+ pddcb++;
+ }
+ return 0;
+}
+
+DEFINE_SHOW_ATTRIBUTE(ddcb_info);
+
+static int info_show(struct seq_file *s, void *unused)
+{
+ struct genwqe_dev *cd = s->private;
+ u64 app_id, slu_id, bitstream = -1;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ slu_id = __genwqe_readq(cd, IO_SLU_UNITCFG);
+ app_id = __genwqe_readq(cd, IO_APP_UNITCFG);
+
+ if (genwqe_is_privileged(cd))
+ bitstream = __genwqe_readq(cd, IO_SLU_BITSTREAM);
+
+ seq_printf(s, "%s driver version: %s\n"
+ " Device Name/Type: %s %s CardIdx: %d\n"
+ " SLU/APP Config : 0x%016llx/0x%016llx\n"
+ " Build Date : %u/%x/%u\n"
+ " Base Clock : %u MHz\n"
+ " Arch/SVN Release: %u/%llx\n"
+ " Bitstream : %llx\n",
+ GENWQE_DEVNAME, DRV_VERSION, dev_name(&pci_dev->dev),
+ genwqe_is_privileged(cd) ?
+ "Physical" : "Virtual or no SR-IOV",
+ cd->card_idx, slu_id, app_id,
+ (u16)((slu_id >> 12) & 0x0fLLU), /* month */
+ (u16)((slu_id >> 4) & 0xffLLU), /* day */
+ (u16)((slu_id >> 16) & 0x0fLLU) + 2010, /* year */
+ genwqe_base_clock_frequency(cd),
+ (u16)((slu_id >> 32) & 0xffLLU), slu_id >> 40,
+ bitstream);
+
+ return 0;
+}
+
+DEFINE_SHOW_ATTRIBUTE(info);
+
+void genwqe_init_debugfs(struct genwqe_dev *cd)
+{
+ struct dentry *root;
+ char card_name[64];
+ char name[64];
+ unsigned int i;
+
+ sprintf(card_name, "%s%d_card", GENWQE_DEVNAME, cd->card_idx);
+
+ root = debugfs_create_dir(card_name, cd->debugfs_genwqe);
+
+ /* non privileged interfaces are done here */
+ debugfs_create_file("ddcb_info", S_IRUGO, root, cd, &ddcb_info_fops);
+ debugfs_create_file("info", S_IRUGO, root, cd, &info_fops);
+ debugfs_create_x64("err_inject", 0666, root, &cd->err_inject);
+ debugfs_create_u32("ddcb_software_timeout", 0666, root,
+ &cd->ddcb_software_timeout);
+ debugfs_create_u32("kill_timeout", 0666, root, &cd->kill_timeout);
+
+ /* privileged interfaces follow here */
+ if (!genwqe_is_privileged(cd)) {
+ cd->debugfs_root = root;
+ return;
+ }
+
+ debugfs_create_file("curr_regs", S_IRUGO, root, cd, &curr_regs_fops);
+ debugfs_create_file("curr_dbg_uid0", S_IRUGO, root, cd,
+ &curr_dbg_uid0_fops);
+ debugfs_create_file("curr_dbg_uid1", S_IRUGO, root, cd,
+ &curr_dbg_uid1_fops);
+ debugfs_create_file("curr_dbg_uid2", S_IRUGO, root, cd,
+ &curr_dbg_uid2_fops);
+ debugfs_create_file("prev_regs", S_IRUGO, root, cd, &prev_regs_fops);
+ debugfs_create_file("prev_dbg_uid0", S_IRUGO, root, cd,
+ &prev_dbg_uid0_fops);
+ debugfs_create_file("prev_dbg_uid1", S_IRUGO, root, cd,
+ &prev_dbg_uid1_fops);
+ debugfs_create_file("prev_dbg_uid2", S_IRUGO, root, cd,
+ &prev_dbg_uid2_fops);
+
+ for (i = 0; i < GENWQE_MAX_VFS; i++) {
+ sprintf(name, "vf%u_jobtimeout_msec", i);
+ debugfs_create_u32(name, 0666, root,
+ &cd->vf_jobtimeout_msec[i]);
+ }
+
+ debugfs_create_file("jobtimer", S_IRUGO, root, cd, &jtimer_fops);
+ debugfs_create_file("queue_working_time", S_IRUGO, root, cd,
+ &queue_working_time_fops);
+ debugfs_create_u32("skip_recovery", 0666, root, &cd->skip_recovery);
+ debugfs_create_u32("use_platform_recovery", 0666, root,
+ &cd->use_platform_recovery);
+
+ cd->debugfs_root = root;
+}
+
+void genqwe_exit_debugfs(struct genwqe_dev *cd)
+{
+ debugfs_remove_recursive(cd->debugfs_root);
+}
diff --git a/drivers/misc/genwqe/card_dev.c b/drivers/misc/genwqe/card_dev.c
new file mode 100644
index 000000000..55fc5b80e
--- /dev/null
+++ b/drivers/misc/genwqe/card_dev.c
@@ -0,0 +1,1391 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * IBM Accelerator Family 'GenWQE'
+ *
+ * (C) Copyright IBM Corp. 2013
+ *
+ * Author: Frank Haverkamp <haver@linux.vnet.ibm.com>
+ * Author: Joerg-Stephan Vogt <jsvogt@de.ibm.com>
+ * Author: Michael Jung <mijung@gmx.net>
+ * Author: Michael Ruettger <michael@ibmra.de>
+ */
+
+/*
+ * Character device representation of the GenWQE device. This allows
+ * user-space applications to communicate with the card.
+ */
+
+#include <linux/kernel.h>
+#include <linux/types.h>
+#include <linux/module.h>
+#include <linux/pci.h>
+#include <linux/string.h>
+#include <linux/fs.h>
+#include <linux/sched/signal.h>
+#include <linux/wait.h>
+#include <linux/delay.h>
+#include <linux/atomic.h>
+
+#include "card_base.h"
+#include "card_ddcb.h"
+
+static int genwqe_open_files(struct genwqe_dev *cd)
+{
+ int rc;
+ unsigned long flags;
+
+ spin_lock_irqsave(&cd->file_lock, flags);
+ rc = list_empty(&cd->file_list);
+ spin_unlock_irqrestore(&cd->file_lock, flags);
+ return !rc;
+}
+
+static void genwqe_add_file(struct genwqe_dev *cd, struct genwqe_file *cfile)
+{
+ unsigned long flags;
+
+ cfile->opener = get_pid(task_tgid(current));
+ spin_lock_irqsave(&cd->file_lock, flags);
+ list_add(&cfile->list, &cd->file_list);
+ spin_unlock_irqrestore(&cd->file_lock, flags);
+}
+
+static int genwqe_del_file(struct genwqe_dev *cd, struct genwqe_file *cfile)
+{
+ unsigned long flags;
+
+ spin_lock_irqsave(&cd->file_lock, flags);
+ list_del(&cfile->list);
+ spin_unlock_irqrestore(&cd->file_lock, flags);
+ put_pid(cfile->opener);
+
+ return 0;
+}
+
+static void genwqe_add_pin(struct genwqe_file *cfile, struct dma_mapping *m)
+{
+ unsigned long flags;
+
+ spin_lock_irqsave(&cfile->pin_lock, flags);
+ list_add(&m->pin_list, &cfile->pin_list);
+ spin_unlock_irqrestore(&cfile->pin_lock, flags);
+}
+
+static int genwqe_del_pin(struct genwqe_file *cfile, struct dma_mapping *m)
+{
+ unsigned long flags;
+
+ spin_lock_irqsave(&cfile->pin_lock, flags);
+ list_del(&m->pin_list);
+ spin_unlock_irqrestore(&cfile->pin_lock, flags);
+
+ return 0;
+}
+
+/**
+ * genwqe_search_pin() - Search for the mapping for a userspace address
+ * @cfile: Descriptor of opened file
+ * @u_addr: User virtual address
+ * @size: Size of buffer
+ * @virt_addr: Virtual address to be updated
+ *
+ * Return: Pointer to the corresponding mapping NULL if not found
+ */
+static struct dma_mapping *genwqe_search_pin(struct genwqe_file *cfile,
+ unsigned long u_addr,
+ unsigned int size,
+ void **virt_addr)
+{
+ unsigned long flags;
+ struct dma_mapping *m;
+
+ spin_lock_irqsave(&cfile->pin_lock, flags);
+
+ list_for_each_entry(m, &cfile->pin_list, pin_list) {
+ if ((((u64)m->u_vaddr) <= (u_addr)) &&
+ (((u64)m->u_vaddr + m->size) >= (u_addr + size))) {
+
+ if (virt_addr)
+ *virt_addr = m->k_vaddr +
+ (u_addr - (u64)m->u_vaddr);
+
+ spin_unlock_irqrestore(&cfile->pin_lock, flags);
+ return m;
+ }
+ }
+ spin_unlock_irqrestore(&cfile->pin_lock, flags);
+ return NULL;
+}
+
+static void __genwqe_add_mapping(struct genwqe_file *cfile,
+ struct dma_mapping *dma_map)
+{
+ unsigned long flags;
+
+ spin_lock_irqsave(&cfile->map_lock, flags);
+ list_add(&dma_map->card_list, &cfile->map_list);
+ spin_unlock_irqrestore(&cfile->map_lock, flags);
+}
+
+static void __genwqe_del_mapping(struct genwqe_file *cfile,
+ struct dma_mapping *dma_map)
+{
+ unsigned long flags;
+
+ spin_lock_irqsave(&cfile->map_lock, flags);
+ list_del(&dma_map->card_list);
+ spin_unlock_irqrestore(&cfile->map_lock, flags);
+}
+
+
+/**
+ * __genwqe_search_mapping() - Search for the mapping for a userspace address
+ * @cfile: descriptor of opened file
+ * @u_addr: user virtual address
+ * @size: size of buffer
+ * @dma_addr: DMA address to be updated
+ * @virt_addr: Virtual address to be updated
+ * Return: Pointer to the corresponding mapping NULL if not found
+ */
+static struct dma_mapping *__genwqe_search_mapping(struct genwqe_file *cfile,
+ unsigned long u_addr,
+ unsigned int size,
+ dma_addr_t *dma_addr,
+ void **virt_addr)
+{
+ unsigned long flags;
+ struct dma_mapping *m;
+ struct pci_dev *pci_dev = cfile->cd->pci_dev;
+
+ spin_lock_irqsave(&cfile->map_lock, flags);
+ list_for_each_entry(m, &cfile->map_list, card_list) {
+
+ if ((((u64)m->u_vaddr) <= (u_addr)) &&
+ (((u64)m->u_vaddr + m->size) >= (u_addr + size))) {
+
+ /* match found: current is as expected and
+ addr is in range */
+ if (dma_addr)
+ *dma_addr = m->dma_addr +
+ (u_addr - (u64)m->u_vaddr);
+
+ if (virt_addr)
+ *virt_addr = m->k_vaddr +
+ (u_addr - (u64)m->u_vaddr);
+
+ spin_unlock_irqrestore(&cfile->map_lock, flags);
+ return m;
+ }
+ }
+ spin_unlock_irqrestore(&cfile->map_lock, flags);
+
+ dev_err(&pci_dev->dev,
+ "[%s] Entry not found: u_addr=%lx, size=%x\n",
+ __func__, u_addr, size);
+
+ return NULL;
+}
+
+static void genwqe_remove_mappings(struct genwqe_file *cfile)
+{
+ int i = 0;
+ struct list_head *node, *next;
+ struct dma_mapping *dma_map;
+ struct genwqe_dev *cd = cfile->cd;
+ struct pci_dev *pci_dev = cfile->cd->pci_dev;
+
+ list_for_each_safe(node, next, &cfile->map_list) {
+ dma_map = list_entry(node, struct dma_mapping, card_list);
+
+ list_del_init(&dma_map->card_list);
+
+ /*
+ * This is really a bug, because those things should
+ * have been already tidied up.
+ *
+ * GENWQE_MAPPING_RAW should have been removed via mmunmap().
+ * GENWQE_MAPPING_SGL_TEMP should be removed by tidy up code.
+ */
+ dev_err(&pci_dev->dev,
+ "[%s] %d. cleanup mapping: u_vaddr=%p u_kaddr=%016lx dma_addr=%lx\n",
+ __func__, i++, dma_map->u_vaddr,
+ (unsigned long)dma_map->k_vaddr,
+ (unsigned long)dma_map->dma_addr);
+
+ if (dma_map->type == GENWQE_MAPPING_RAW) {
+ /* we allocated this dynamically */
+ __genwqe_free_consistent(cd, dma_map->size,
+ dma_map->k_vaddr,
+ dma_map->dma_addr);
+ kfree(dma_map);
+ } else if (dma_map->type == GENWQE_MAPPING_SGL_TEMP) {
+ /* we use dma_map statically from the request */
+ genwqe_user_vunmap(cd, dma_map);
+ }
+ }
+}
+
+static void genwqe_remove_pinnings(struct genwqe_file *cfile)
+{
+ struct list_head *node, *next;
+ struct dma_mapping *dma_map;
+ struct genwqe_dev *cd = cfile->cd;
+
+ list_for_each_safe(node, next, &cfile->pin_list) {
+ dma_map = list_entry(node, struct dma_mapping, pin_list);
+
+ /*
+ * This is not a bug, because a killed processed might
+ * not call the unpin ioctl, which is supposed to free
+ * the resources.
+ *
+ * Pinnings are dymically allocated and need to be
+ * deleted.
+ */
+ list_del_init(&dma_map->pin_list);
+ genwqe_user_vunmap(cd, dma_map);
+ kfree(dma_map);
+ }
+}
+
+/**
+ * genwqe_kill_fasync() - Send signal to all processes with open GenWQE files
+ * @cd: GenWQE device information
+ * @sig: Signal to send out
+ *
+ * E.g. genwqe_send_signal(cd, SIGIO);
+ */
+static int genwqe_kill_fasync(struct genwqe_dev *cd, int sig)
+{
+ unsigned int files = 0;
+ unsigned long flags;
+ struct genwqe_file *cfile;
+
+ spin_lock_irqsave(&cd->file_lock, flags);
+ list_for_each_entry(cfile, &cd->file_list, list) {
+ if (cfile->async_queue)
+ kill_fasync(&cfile->async_queue, sig, POLL_HUP);
+ files++;
+ }
+ spin_unlock_irqrestore(&cd->file_lock, flags);
+ return files;
+}
+
+static int genwqe_terminate(struct genwqe_dev *cd)
+{
+ unsigned int files = 0;
+ unsigned long flags;
+ struct genwqe_file *cfile;
+
+ spin_lock_irqsave(&cd->file_lock, flags);
+ list_for_each_entry(cfile, &cd->file_list, list) {
+ kill_pid(cfile->opener, SIGKILL, 1);
+ files++;
+ }
+ spin_unlock_irqrestore(&cd->file_lock, flags);
+ return files;
+}
+
+/**
+ * genwqe_open() - file open
+ * @inode: file system information
+ * @filp: file handle
+ *
+ * This function is executed whenever an application calls
+ * open("/dev/genwqe",..).
+ *
+ * Return: 0 if successful or <0 if errors
+ */
+static int genwqe_open(struct inode *inode, struct file *filp)
+{
+ struct genwqe_dev *cd;
+ struct genwqe_file *cfile;
+
+ cfile = kzalloc(sizeof(*cfile), GFP_KERNEL);
+ if (cfile == NULL)
+ return -ENOMEM;
+
+ cd = container_of(inode->i_cdev, struct genwqe_dev, cdev_genwqe);
+ cfile->cd = cd;
+ cfile->filp = filp;
+ cfile->client = NULL;
+
+ spin_lock_init(&cfile->map_lock); /* list of raw memory allocations */
+ INIT_LIST_HEAD(&cfile->map_list);
+
+ spin_lock_init(&cfile->pin_lock); /* list of user pinned memory */
+ INIT_LIST_HEAD(&cfile->pin_list);
+
+ filp->private_data = cfile;
+
+ genwqe_add_file(cd, cfile);
+ return 0;
+}
+
+/**
+ * genwqe_fasync() - Setup process to receive SIGIO.
+ * @fd: file descriptor
+ * @filp: file handle
+ * @mode: file mode
+ *
+ * Sending a signal is working as following:
+ *
+ * if (cdev->async_queue)
+ * kill_fasync(&cdev->async_queue, SIGIO, POLL_IN);
+ *
+ * Some devices also implement asynchronous notification to indicate
+ * when the device can be written; in this case, of course,
+ * kill_fasync must be called with a mode of POLL_OUT.
+ */
+static int genwqe_fasync(int fd, struct file *filp, int mode)
+{
+ struct genwqe_file *cdev = (struct genwqe_file *)filp->private_data;
+
+ return fasync_helper(fd, filp, mode, &cdev->async_queue);
+}
+
+
+/**
+ * genwqe_release() - file close
+ * @inode: file system information
+ * @filp: file handle
+ *
+ * This function is executed whenever an application calls 'close(fd_genwqe)'
+ *
+ * Return: always 0
+ */
+static int genwqe_release(struct inode *inode, struct file *filp)
+{
+ struct genwqe_file *cfile = (struct genwqe_file *)filp->private_data;
+ struct genwqe_dev *cd = cfile->cd;
+
+ /* there must be no entries in these lists! */
+ genwqe_remove_mappings(cfile);
+ genwqe_remove_pinnings(cfile);
+
+ /* remove this filp from the asynchronously notified filp's */
+ genwqe_fasync(-1, filp, 0);
+
+ /*
+ * For this to work we must not release cd when this cfile is
+ * not yet released, otherwise the list entry is invalid,
+ * because the list itself gets reinstantiated!
+ */
+ genwqe_del_file(cd, cfile);
+ kfree(cfile);
+ return 0;
+}
+
+static void genwqe_vma_open(struct vm_area_struct *vma)
+{
+ /* nothing ... */
+}
+
+/**
+ * genwqe_vma_close() - Called each time when vma is unmapped
+ * @vma: VMA area to close
+ *
+ * Free memory which got allocated by GenWQE mmap().
+ */
+static void genwqe_vma_close(struct vm_area_struct *vma)
+{
+ unsigned long vsize = vma->vm_end - vma->vm_start;
+ struct inode *inode = file_inode(vma->vm_file);
+ struct dma_mapping *dma_map;
+ struct genwqe_dev *cd = container_of(inode->i_cdev, struct genwqe_dev,
+ cdev_genwqe);
+ struct pci_dev *pci_dev = cd->pci_dev;
+ dma_addr_t d_addr = 0;
+ struct genwqe_file *cfile = vma->vm_private_data;
+
+ dma_map = __genwqe_search_mapping(cfile, vma->vm_start, vsize,
+ &d_addr, NULL);
+ if (dma_map == NULL) {
+ dev_err(&pci_dev->dev,
+ " [%s] err: mapping not found: v=%lx, p=%lx s=%lx\n",
+ __func__, vma->vm_start, vma->vm_pgoff << PAGE_SHIFT,
+ vsize);
+ return;
+ }
+ __genwqe_del_mapping(cfile, dma_map);
+ __genwqe_free_consistent(cd, dma_map->size, dma_map->k_vaddr,
+ dma_map->dma_addr);
+ kfree(dma_map);
+}
+
+static const struct vm_operations_struct genwqe_vma_ops = {
+ .open = genwqe_vma_open,
+ .close = genwqe_vma_close,
+};
+
+/**
+ * genwqe_mmap() - Provide contignous buffers to userspace
+ * @filp: File pointer (unused)
+ * @vma: VMA area to map
+ *
+ * We use mmap() to allocate contignous buffers used for DMA
+ * transfers. After the buffer is allocated we remap it to user-space
+ * and remember a reference to our dma_mapping data structure, where
+ * we store the associated DMA address and allocated size.
+ *
+ * When we receive a DDCB execution request with the ATS bits set to
+ * plain buffer, we lookup our dma_mapping list to find the
+ * corresponding DMA address for the associated user-space address.
+ */
+static int genwqe_mmap(struct file *filp, struct vm_area_struct *vma)
+{
+ int rc;
+ unsigned long pfn, vsize = vma->vm_end - vma->vm_start;
+ struct genwqe_file *cfile = (struct genwqe_file *)filp->private_data;
+ struct genwqe_dev *cd = cfile->cd;
+ struct dma_mapping *dma_map;
+
+ if (vsize == 0)
+ return -EINVAL;
+
+ if (get_order(vsize) > MAX_ORDER)
+ return -ENOMEM;
+
+ dma_map = kzalloc(sizeof(struct dma_mapping), GFP_KERNEL);
+ if (dma_map == NULL)
+ return -ENOMEM;
+
+ genwqe_mapping_init(dma_map, GENWQE_MAPPING_RAW);
+ dma_map->u_vaddr = (void *)vma->vm_start;
+ dma_map->size = vsize;
+ dma_map->nr_pages = DIV_ROUND_UP(vsize, PAGE_SIZE);
+ dma_map->k_vaddr = __genwqe_alloc_consistent(cd, vsize,
+ &dma_map->dma_addr);
+ if (dma_map->k_vaddr == NULL) {
+ rc = -ENOMEM;
+ goto free_dma_map;
+ }
+
+ if (capable(CAP_SYS_ADMIN) && (vsize > sizeof(dma_addr_t)))
+ *(dma_addr_t *)dma_map->k_vaddr = dma_map->dma_addr;
+
+ pfn = virt_to_phys(dma_map->k_vaddr) >> PAGE_SHIFT;
+ rc = remap_pfn_range(vma,
+ vma->vm_start,
+ pfn,
+ vsize,
+ vma->vm_page_prot);
+ if (rc != 0) {
+ rc = -EFAULT;
+ goto free_dma_mem;
+ }
+
+ vma->vm_private_data = cfile;
+ vma->vm_ops = &genwqe_vma_ops;
+ __genwqe_add_mapping(cfile, dma_map);
+
+ return 0;
+
+ free_dma_mem:
+ __genwqe_free_consistent(cd, dma_map->size,
+ dma_map->k_vaddr,
+ dma_map->dma_addr);
+ free_dma_map:
+ kfree(dma_map);
+ return rc;
+}
+
+#define FLASH_BLOCK 0x40000 /* we use 256k blocks */
+
+/**
+ * do_flash_update() - Excute flash update (write image or CVPD)
+ * @cfile: Descriptor of opened file
+ * @load: details about image load
+ *
+ * Return: 0 if successful
+ */
+static int do_flash_update(struct genwqe_file *cfile,
+ struct genwqe_bitstream *load)
+{
+ int rc = 0;
+ int blocks_to_flash;
+ dma_addr_t dma_addr;
+ u64 flash = 0;
+ size_t tocopy = 0;
+ u8 __user *buf;
+ u8 *xbuf;
+ u32 crc;
+ u8 cmdopts;
+ struct genwqe_dev *cd = cfile->cd;
+ struct file *filp = cfile->filp;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ if ((load->size & 0x3) != 0)
+ return -EINVAL;
+
+ if (((unsigned long)(load->data_addr) & ~PAGE_MASK) != 0)
+ return -EINVAL;
+
+ /* FIXME Bits have changed for new service layer! */
+ switch ((char)load->partition) {
+ case '0':
+ cmdopts = 0x14;
+ break; /* download/erase_first/part_0 */
+ case '1':
+ cmdopts = 0x1C;
+ break; /* download/erase_first/part_1 */
+ case 'v':
+ cmdopts = 0x0C;
+ break; /* download/erase_first/vpd */
+ default:
+ return -EINVAL;
+ }
+
+ buf = (u8 __user *)load->data_addr;
+ xbuf = __genwqe_alloc_consistent(cd, FLASH_BLOCK, &dma_addr);
+ if (xbuf == NULL)
+ return -ENOMEM;
+
+ blocks_to_flash = load->size / FLASH_BLOCK;
+ while (load->size) {
+ struct genwqe_ddcb_cmd *req;
+
+ /*
+ * We must be 4 byte aligned. Buffer must be 0 appened
+ * to have defined values when calculating CRC.
+ */
+ tocopy = min_t(size_t, load->size, FLASH_BLOCK);
+
+ rc = copy_from_user(xbuf, buf, tocopy);
+ if (rc) {
+ rc = -EFAULT;
+ goto free_buffer;
+ }
+ crc = genwqe_crc32(xbuf, tocopy, 0xffffffff);
+
+ dev_dbg(&pci_dev->dev,
+ "[%s] DMA: %lx CRC: %08x SZ: %ld %d\n",
+ __func__, (unsigned long)dma_addr, crc, tocopy,
+ blocks_to_flash);
+
+ /* prepare DDCB for SLU process */
+ req = ddcb_requ_alloc();
+ if (req == NULL) {
+ rc = -ENOMEM;
+ goto free_buffer;
+ }
+
+ req->cmd = SLCMD_MOVE_FLASH;
+ req->cmdopts = cmdopts;
+
+ /* prepare invariant values */
+ if (genwqe_get_slu_id(cd) <= 0x2) {
+ *(__be64 *)&req->__asiv[0] = cpu_to_be64(dma_addr);
+ *(__be64 *)&req->__asiv[8] = cpu_to_be64(tocopy);
+ *(__be64 *)&req->__asiv[16] = cpu_to_be64(flash);
+ *(__be32 *)&req->__asiv[24] = cpu_to_be32(0);
+ req->__asiv[24] = load->uid;
+ *(__be32 *)&req->__asiv[28] = cpu_to_be32(crc);
+
+ /* for simulation only */
+ *(__be64 *)&req->__asiv[88] = cpu_to_be64(load->slu_id);
+ *(__be64 *)&req->__asiv[96] = cpu_to_be64(load->app_id);
+ req->asiv_length = 32; /* bytes included in crc calc */
+ } else { /* setup DDCB for ATS architecture */
+ *(__be64 *)&req->asiv[0] = cpu_to_be64(dma_addr);
+ *(__be32 *)&req->asiv[8] = cpu_to_be32(tocopy);
+ *(__be32 *)&req->asiv[12] = cpu_to_be32(0); /* resvd */
+ *(__be64 *)&req->asiv[16] = cpu_to_be64(flash);
+ *(__be32 *)&req->asiv[24] = cpu_to_be32(load->uid<<24);
+ *(__be32 *)&req->asiv[28] = cpu_to_be32(crc);
+
+ /* for simulation only */
+ *(__be64 *)&req->asiv[80] = cpu_to_be64(load->slu_id);
+ *(__be64 *)&req->asiv[88] = cpu_to_be64(load->app_id);
+
+ /* Rd only */
+ req->ats = 0x4ULL << 44;
+ req->asiv_length = 40; /* bytes included in crc calc */
+ }
+ req->asv_length = 8;
+
+ /* For Genwqe5 we get back the calculated CRC */
+ *(u64 *)&req->asv[0] = 0ULL; /* 0x80 */
+
+ rc = __genwqe_execute_raw_ddcb(cd, req, filp->f_flags);
+
+ load->retc = req->retc;
+ load->attn = req->attn;
+ load->progress = req->progress;
+
+ if (rc < 0) {
+ ddcb_requ_free(req);
+ goto free_buffer;
+ }
+
+ if (req->retc != DDCB_RETC_COMPLETE) {
+ rc = -EIO;
+ ddcb_requ_free(req);
+ goto free_buffer;
+ }
+
+ load->size -= tocopy;
+ flash += tocopy;
+ buf += tocopy;
+ blocks_to_flash--;
+ ddcb_requ_free(req);
+ }
+
+ free_buffer:
+ __genwqe_free_consistent(cd, FLASH_BLOCK, xbuf, dma_addr);
+ return rc;
+}
+
+static int do_flash_read(struct genwqe_file *cfile,
+ struct genwqe_bitstream *load)
+{
+ int rc, blocks_to_flash;
+ dma_addr_t dma_addr;
+ u64 flash = 0;
+ size_t tocopy = 0;
+ u8 __user *buf;
+ u8 *xbuf;
+ u8 cmdopts;
+ struct genwqe_dev *cd = cfile->cd;
+ struct file *filp = cfile->filp;
+ struct pci_dev *pci_dev = cd->pci_dev;
+ struct genwqe_ddcb_cmd *cmd;
+
+ if ((load->size & 0x3) != 0)
+ return -EINVAL;
+
+ if (((unsigned long)(load->data_addr) & ~PAGE_MASK) != 0)
+ return -EINVAL;
+
+ /* FIXME Bits have changed for new service layer! */
+ switch ((char)load->partition) {
+ case '0':
+ cmdopts = 0x12;
+ break; /* upload/part_0 */
+ case '1':
+ cmdopts = 0x1A;
+ break; /* upload/part_1 */
+ case 'v':
+ cmdopts = 0x0A;
+ break; /* upload/vpd */
+ default:
+ return -EINVAL;
+ }
+
+ buf = (u8 __user *)load->data_addr;
+ xbuf = __genwqe_alloc_consistent(cd, FLASH_BLOCK, &dma_addr);
+ if (xbuf == NULL)
+ return -ENOMEM;
+
+ blocks_to_flash = load->size / FLASH_BLOCK;
+ while (load->size) {
+ /*
+ * We must be 4 byte aligned. Buffer must be 0 appened
+ * to have defined values when calculating CRC.
+ */
+ tocopy = min_t(size_t, load->size, FLASH_BLOCK);
+
+ dev_dbg(&pci_dev->dev,
+ "[%s] DMA: %lx SZ: %ld %d\n",
+ __func__, (unsigned long)dma_addr, tocopy,
+ blocks_to_flash);
+
+ /* prepare DDCB for SLU process */
+ cmd = ddcb_requ_alloc();
+ if (cmd == NULL) {
+ rc = -ENOMEM;
+ goto free_buffer;
+ }
+ cmd->cmd = SLCMD_MOVE_FLASH;
+ cmd->cmdopts = cmdopts;
+
+ /* prepare invariant values */
+ if (genwqe_get_slu_id(cd) <= 0x2) {
+ *(__be64 *)&cmd->__asiv[0] = cpu_to_be64(dma_addr);
+ *(__be64 *)&cmd->__asiv[8] = cpu_to_be64(tocopy);
+ *(__be64 *)&cmd->__asiv[16] = cpu_to_be64(flash);
+ *(__be32 *)&cmd->__asiv[24] = cpu_to_be32(0);
+ cmd->__asiv[24] = load->uid;
+ *(__be32 *)&cmd->__asiv[28] = cpu_to_be32(0) /* CRC */;
+ cmd->asiv_length = 32; /* bytes included in crc calc */
+ } else { /* setup DDCB for ATS architecture */
+ *(__be64 *)&cmd->asiv[0] = cpu_to_be64(dma_addr);
+ *(__be32 *)&cmd->asiv[8] = cpu_to_be32(tocopy);
+ *(__be32 *)&cmd->asiv[12] = cpu_to_be32(0); /* resvd */
+ *(__be64 *)&cmd->asiv[16] = cpu_to_be64(flash);
+ *(__be32 *)&cmd->asiv[24] = cpu_to_be32(load->uid<<24);
+ *(__be32 *)&cmd->asiv[28] = cpu_to_be32(0); /* CRC */
+
+ /* rd/wr */
+ cmd->ats = 0x5ULL << 44;
+ cmd->asiv_length = 40; /* bytes included in crc calc */
+ }
+ cmd->asv_length = 8;
+
+ /* we only get back the calculated CRC */
+ *(u64 *)&cmd->asv[0] = 0ULL; /* 0x80 */
+
+ rc = __genwqe_execute_raw_ddcb(cd, cmd, filp->f_flags);
+
+ load->retc = cmd->retc;
+ load->attn = cmd->attn;
+ load->progress = cmd->progress;
+
+ if ((rc < 0) && (rc != -EBADMSG)) {
+ ddcb_requ_free(cmd);
+ goto free_buffer;
+ }
+
+ rc = copy_to_user(buf, xbuf, tocopy);
+ if (rc) {
+ rc = -EFAULT;
+ ddcb_requ_free(cmd);
+ goto free_buffer;
+ }
+
+ /* We know that we can get retc 0x104 with CRC err */
+ if (((cmd->retc == DDCB_RETC_FAULT) &&
+ (cmd->attn != 0x02)) || /* Normally ignore CRC error */
+ ((cmd->retc == DDCB_RETC_COMPLETE) &&
+ (cmd->attn != 0x00))) { /* Everything was fine */
+ rc = -EIO;
+ ddcb_requ_free(cmd);
+ goto free_buffer;
+ }
+
+ load->size -= tocopy;
+ flash += tocopy;
+ buf += tocopy;
+ blocks_to_flash--;
+ ddcb_requ_free(cmd);
+ }
+ rc = 0;
+
+ free_buffer:
+ __genwqe_free_consistent(cd, FLASH_BLOCK, xbuf, dma_addr);
+ return rc;
+}
+
+static int genwqe_pin_mem(struct genwqe_file *cfile, struct genwqe_mem *m)
+{
+ int rc;
+ struct genwqe_dev *cd = cfile->cd;
+ struct pci_dev *pci_dev = cfile->cd->pci_dev;
+ struct dma_mapping *dma_map;
+ unsigned long map_addr;
+ unsigned long map_size;
+
+ if ((m->addr == 0x0) || (m->size == 0))
+ return -EINVAL;
+ if (m->size > ULONG_MAX - PAGE_SIZE - (m->addr & ~PAGE_MASK))
+ return -EINVAL;
+
+ map_addr = (m->addr & PAGE_MASK);
+ map_size = round_up(m->size + (m->addr & ~PAGE_MASK), PAGE_SIZE);
+
+ dma_map = kzalloc(sizeof(struct dma_mapping), GFP_KERNEL);
+ if (dma_map == NULL)
+ return -ENOMEM;
+
+ genwqe_mapping_init(dma_map, GENWQE_MAPPING_SGL_PINNED);
+ rc = genwqe_user_vmap(cd, dma_map, (void *)map_addr, map_size);
+ if (rc != 0) {
+ dev_err(&pci_dev->dev,
+ "[%s] genwqe_user_vmap rc=%d\n", __func__, rc);
+ kfree(dma_map);
+ return rc;
+ }
+
+ genwqe_add_pin(cfile, dma_map);
+ return 0;
+}
+
+static int genwqe_unpin_mem(struct genwqe_file *cfile, struct genwqe_mem *m)
+{
+ struct genwqe_dev *cd = cfile->cd;
+ struct dma_mapping *dma_map;
+ unsigned long map_addr;
+ unsigned long map_size;
+
+ if (m->addr == 0x0)
+ return -EINVAL;
+
+ map_addr = (m->addr & PAGE_MASK);
+ map_size = round_up(m->size + (m->addr & ~PAGE_MASK), PAGE_SIZE);
+
+ dma_map = genwqe_search_pin(cfile, map_addr, map_size, NULL);
+ if (dma_map == NULL)
+ return -ENOENT;
+
+ genwqe_del_pin(cfile, dma_map);
+ genwqe_user_vunmap(cd, dma_map);
+ kfree(dma_map);
+ return 0;
+}
+
+/**
+ * ddcb_cmd_cleanup() - Remove dynamically created fixup entries
+ * @cfile: Descriptor of opened file
+ * @req: DDCB work request
+ *
+ * Only if there are any. Pinnings are not removed.
+ */
+static int ddcb_cmd_cleanup(struct genwqe_file *cfile, struct ddcb_requ *req)
+{
+ unsigned int i;
+ struct dma_mapping *dma_map;
+ struct genwqe_dev *cd = cfile->cd;
+
+ for (i = 0; i < DDCB_FIXUPS; i++) {
+ dma_map = &req->dma_mappings[i];
+
+ if (dma_mapping_used(dma_map)) {
+ __genwqe_del_mapping(cfile, dma_map);
+ genwqe_user_vunmap(cd, dma_map);
+ }
+ if (req->sgls[i].sgl != NULL)
+ genwqe_free_sync_sgl(cd, &req->sgls[i]);
+ }
+ return 0;
+}
+
+/**
+ * ddcb_cmd_fixups() - Establish DMA fixups/sglists for user memory references
+ * @cfile: Descriptor of opened file
+ * @req: DDCB work request
+ *
+ * Before the DDCB gets executed we need to handle the fixups. We
+ * replace the user-space addresses with DMA addresses or do
+ * additional setup work e.g. generating a scatter-gather list which
+ * is used to describe the memory referred to in the fixup.
+ */
+static int ddcb_cmd_fixups(struct genwqe_file *cfile, struct ddcb_requ *req)
+{
+ int rc;
+ unsigned int asiv_offs, i;
+ struct genwqe_dev *cd = cfile->cd;
+ struct genwqe_ddcb_cmd *cmd = &req->cmd;
+ struct dma_mapping *m;
+
+ for (i = 0, asiv_offs = 0x00; asiv_offs <= 0x58;
+ i++, asiv_offs += 0x08) {
+
+ u64 u_addr;
+ dma_addr_t d_addr;
+ u32 u_size = 0;
+ u64 ats_flags;
+
+ ats_flags = ATS_GET_FLAGS(cmd->ats, asiv_offs);
+
+ switch (ats_flags) {
+
+ case ATS_TYPE_DATA:
+ break; /* nothing to do here */
+
+ case ATS_TYPE_FLAT_RDWR:
+ case ATS_TYPE_FLAT_RD: {
+ u_addr = be64_to_cpu(*((__be64 *)&cmd->
+ asiv[asiv_offs]));
+ u_size = be32_to_cpu(*((__be32 *)&cmd->
+ asiv[asiv_offs + 0x08]));
+
+ /*
+ * No data available. Ignore u_addr in this
+ * case and set addr to 0. Hardware must not
+ * fetch the buffer.
+ */
+ if (u_size == 0x0) {
+ *((__be64 *)&cmd->asiv[asiv_offs]) =
+ cpu_to_be64(0x0);
+ break;
+ }
+
+ m = __genwqe_search_mapping(cfile, u_addr, u_size,
+ &d_addr, NULL);
+ if (m == NULL) {
+ rc = -EFAULT;
+ goto err_out;
+ }
+
+ *((__be64 *)&cmd->asiv[asiv_offs]) =
+ cpu_to_be64(d_addr);
+ break;
+ }
+
+ case ATS_TYPE_SGL_RDWR:
+ case ATS_TYPE_SGL_RD: {
+ int page_offs;
+
+ u_addr = be64_to_cpu(*((__be64 *)
+ &cmd->asiv[asiv_offs]));
+ u_size = be32_to_cpu(*((__be32 *)
+ &cmd->asiv[asiv_offs + 0x08]));
+
+ /*
+ * No data available. Ignore u_addr in this
+ * case and set addr to 0. Hardware must not
+ * fetch the empty sgl.
+ */
+ if (u_size == 0x0) {
+ *((__be64 *)&cmd->asiv[asiv_offs]) =
+ cpu_to_be64(0x0);
+ break;
+ }
+
+ m = genwqe_search_pin(cfile, u_addr, u_size, NULL);
+ if (m != NULL) {
+ page_offs = (u_addr -
+ (u64)m->u_vaddr)/PAGE_SIZE;
+ } else {
+ m = &req->dma_mappings[i];
+
+ genwqe_mapping_init(m,
+ GENWQE_MAPPING_SGL_TEMP);
+
+ if (ats_flags == ATS_TYPE_SGL_RD)
+ m->write = 0;
+
+ rc = genwqe_user_vmap(cd, m, (void *)u_addr,
+ u_size);
+ if (rc != 0)
+ goto err_out;
+
+ __genwqe_add_mapping(cfile, m);
+ page_offs = 0;
+ }
+
+ /* create genwqe style scatter gather list */
+ rc = genwqe_alloc_sync_sgl(cd, &req->sgls[i],
+ (void __user *)u_addr,
+ u_size, m->write);
+ if (rc != 0)
+ goto err_out;
+
+ genwqe_setup_sgl(cd, &req->sgls[i],
+ &m->dma_list[page_offs]);
+
+ *((__be64 *)&cmd->asiv[asiv_offs]) =
+ cpu_to_be64(req->sgls[i].sgl_dma_addr);
+
+ break;
+ }
+ default:
+ rc = -EINVAL;
+ goto err_out;
+ }
+ }
+ return 0;
+
+ err_out:
+ ddcb_cmd_cleanup(cfile, req);
+ return rc;
+}
+
+/**
+ * genwqe_execute_ddcb() - Execute DDCB using userspace address fixups
+ * @cfile: Descriptor of opened file
+ * @cmd: Command identifier (passed from user)
+ *
+ * The code will build up the translation tables or lookup the
+ * contignous memory allocation table to find the right translations
+ * and DMA addresses.
+ */
+static int genwqe_execute_ddcb(struct genwqe_file *cfile,
+ struct genwqe_ddcb_cmd *cmd)
+{
+ int rc;
+ struct genwqe_dev *cd = cfile->cd;
+ struct file *filp = cfile->filp;
+ struct ddcb_requ *req = container_of(cmd, struct ddcb_requ, cmd);
+
+ rc = ddcb_cmd_fixups(cfile, req);
+ if (rc != 0)
+ return rc;
+
+ rc = __genwqe_execute_raw_ddcb(cd, cmd, filp->f_flags);
+ ddcb_cmd_cleanup(cfile, req);
+ return rc;
+}
+
+static int do_execute_ddcb(struct genwqe_file *cfile,
+ unsigned long arg, int raw)
+{
+ int rc;
+ struct genwqe_ddcb_cmd *cmd;
+ struct genwqe_dev *cd = cfile->cd;
+ struct file *filp = cfile->filp;
+
+ cmd = ddcb_requ_alloc();
+ if (cmd == NULL)
+ return -ENOMEM;
+
+ if (copy_from_user(cmd, (void __user *)arg, sizeof(*cmd))) {
+ ddcb_requ_free(cmd);
+ return -EFAULT;
+ }
+
+ if (!raw)
+ rc = genwqe_execute_ddcb(cfile, cmd);
+ else
+ rc = __genwqe_execute_raw_ddcb(cd, cmd, filp->f_flags);
+
+ /* Copy back only the modifed fields. Do not copy ASIV
+ back since the copy got modified by the driver. */
+ if (copy_to_user((void __user *)arg, cmd,
+ sizeof(*cmd) - DDCB_ASIV_LENGTH)) {
+ ddcb_requ_free(cmd);
+ return -EFAULT;
+ }
+
+ ddcb_requ_free(cmd);
+ return rc;
+}
+
+/**
+ * genwqe_ioctl() - IO control
+ * @filp: file handle
+ * @cmd: command identifier (passed from user)
+ * @arg: argument (passed from user)
+ *
+ * Return: 0 success
+ */
+static long genwqe_ioctl(struct file *filp, unsigned int cmd,
+ unsigned long arg)
+{
+ int rc = 0;
+ struct genwqe_file *cfile = (struct genwqe_file *)filp->private_data;
+ struct genwqe_dev *cd = cfile->cd;
+ struct pci_dev *pci_dev = cd->pci_dev;
+ struct genwqe_reg_io __user *io;
+ u64 val;
+ u32 reg_offs;
+
+ /* Return -EIO if card hit EEH */
+ if (pci_channel_offline(pci_dev))
+ return -EIO;
+
+ if (_IOC_TYPE(cmd) != GENWQE_IOC_CODE)
+ return -EINVAL;
+
+ switch (cmd) {
+
+ case GENWQE_GET_CARD_STATE:
+ put_user(cd->card_state, (enum genwqe_card_state __user *)arg);
+ return 0;
+
+ /* Register access */
+ case GENWQE_READ_REG64: {
+ io = (struct genwqe_reg_io __user *)arg;
+
+ if (get_user(reg_offs, &io->num))
+ return -EFAULT;
+
+ if ((reg_offs >= cd->mmio_len) || (reg_offs & 0x7))
+ return -EINVAL;
+
+ val = __genwqe_readq(cd, reg_offs);
+ put_user(val, &io->val64);
+ return 0;
+ }
+
+ case GENWQE_WRITE_REG64: {
+ io = (struct genwqe_reg_io __user *)arg;
+
+ if (!capable(CAP_SYS_ADMIN))
+ return -EPERM;
+
+ if ((filp->f_flags & O_ACCMODE) == O_RDONLY)
+ return -EPERM;
+
+ if (get_user(reg_offs, &io->num))
+ return -EFAULT;
+
+ if ((reg_offs >= cd->mmio_len) || (reg_offs & 0x7))
+ return -EINVAL;
+
+ if (get_user(val, &io->val64))
+ return -EFAULT;
+
+ __genwqe_writeq(cd, reg_offs, val);
+ return 0;
+ }
+
+ case GENWQE_READ_REG32: {
+ io = (struct genwqe_reg_io __user *)arg;
+
+ if (get_user(reg_offs, &io->num))
+ return -EFAULT;
+
+ if ((reg_offs >= cd->mmio_len) || (reg_offs & 0x3))
+ return -EINVAL;
+
+ val = __genwqe_readl(cd, reg_offs);
+ put_user(val, &io->val64);
+ return 0;
+ }
+
+ case GENWQE_WRITE_REG32: {
+ io = (struct genwqe_reg_io __user *)arg;
+
+ if (!capable(CAP_SYS_ADMIN))
+ return -EPERM;
+
+ if ((filp->f_flags & O_ACCMODE) == O_RDONLY)
+ return -EPERM;
+
+ if (get_user(reg_offs, &io->num))
+ return -EFAULT;
+
+ if ((reg_offs >= cd->mmio_len) || (reg_offs & 0x3))
+ return -EINVAL;
+
+ if (get_user(val, &io->val64))
+ return -EFAULT;
+
+ __genwqe_writel(cd, reg_offs, val);
+ return 0;
+ }
+
+ /* Flash update/reading */
+ case GENWQE_SLU_UPDATE: {
+ struct genwqe_bitstream load;
+
+ if (!genwqe_is_privileged(cd))
+ return -EPERM;
+
+ if ((filp->f_flags & O_ACCMODE) == O_RDONLY)
+ return -EPERM;
+
+ if (copy_from_user(&load, (void __user *)arg,
+ sizeof(load)))
+ return -EFAULT;
+
+ rc = do_flash_update(cfile, &load);
+
+ if (copy_to_user((void __user *)arg, &load, sizeof(load)))
+ return -EFAULT;
+
+ return rc;
+ }
+
+ case GENWQE_SLU_READ: {
+ struct genwqe_bitstream load;
+
+ if (!genwqe_is_privileged(cd))
+ return -EPERM;
+
+ if (genwqe_flash_readback_fails(cd))
+ return -ENOSPC; /* known to fail for old versions */
+
+ if (copy_from_user(&load, (void __user *)arg, sizeof(load)))
+ return -EFAULT;
+
+ rc = do_flash_read(cfile, &load);
+
+ if (copy_to_user((void __user *)arg, &load, sizeof(load)))
+ return -EFAULT;
+
+ return rc;
+ }
+
+ /* memory pinning and unpinning */
+ case GENWQE_PIN_MEM: {
+ struct genwqe_mem m;
+
+ if (copy_from_user(&m, (void __user *)arg, sizeof(m)))
+ return -EFAULT;
+
+ return genwqe_pin_mem(cfile, &m);
+ }
+
+ case GENWQE_UNPIN_MEM: {
+ struct genwqe_mem m;
+
+ if (copy_from_user(&m, (void __user *)arg, sizeof(m)))
+ return -EFAULT;
+
+ return genwqe_unpin_mem(cfile, &m);
+ }
+
+ /* launch an DDCB and wait for completion */
+ case GENWQE_EXECUTE_DDCB:
+ return do_execute_ddcb(cfile, arg, 0);
+
+ case GENWQE_EXECUTE_RAW_DDCB: {
+
+ if (!capable(CAP_SYS_ADMIN))
+ return -EPERM;
+
+ return do_execute_ddcb(cfile, arg, 1);
+ }
+
+ default:
+ return -EINVAL;
+ }
+
+ return rc;
+}
+
+static const struct file_operations genwqe_fops = {
+ .owner = THIS_MODULE,
+ .open = genwqe_open,
+ .fasync = genwqe_fasync,
+ .mmap = genwqe_mmap,
+ .unlocked_ioctl = genwqe_ioctl,
+ .compat_ioctl = compat_ptr_ioctl,
+ .release = genwqe_release,
+};
+
+static int genwqe_device_initialized(struct genwqe_dev *cd)
+{
+ return cd->dev != NULL;
+}
+
+/**
+ * genwqe_device_create() - Create and configure genwqe char device
+ * @cd: genwqe device descriptor
+ *
+ * This function must be called before we create any more genwqe
+ * character devices, because it is allocating the major and minor
+ * number which are supposed to be used by the client drivers.
+ */
+int genwqe_device_create(struct genwqe_dev *cd)
+{
+ int rc;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ /*
+ * Here starts the individual setup per client. It must
+ * initialize its own cdev data structure with its own fops.
+ * The appropriate devnum needs to be created. The ranges must
+ * not overlap.
+ */
+ rc = alloc_chrdev_region(&cd->devnum_genwqe, 0,
+ GENWQE_MAX_MINOR, GENWQE_DEVNAME);
+ if (rc < 0) {
+ dev_err(&pci_dev->dev, "err: alloc_chrdev_region failed\n");
+ goto err_dev;
+ }
+
+ cdev_init(&cd->cdev_genwqe, &genwqe_fops);
+ cd->cdev_genwqe.owner = THIS_MODULE;
+
+ rc = cdev_add(&cd->cdev_genwqe, cd->devnum_genwqe, 1);
+ if (rc < 0) {
+ dev_err(&pci_dev->dev, "err: cdev_add failed\n");
+ goto err_add;
+ }
+
+ /*
+ * Finally the device in /dev/... must be created. The rule is
+ * to use card%d_clientname for each created device.
+ */
+ cd->dev = device_create_with_groups(cd->class_genwqe,
+ &cd->pci_dev->dev,
+ cd->devnum_genwqe, cd,
+ genwqe_attribute_groups,
+ GENWQE_DEVNAME "%u_card",
+ cd->card_idx);
+ if (IS_ERR(cd->dev)) {
+ rc = PTR_ERR(cd->dev);
+ goto err_cdev;
+ }
+
+ genwqe_init_debugfs(cd);
+
+ return 0;
+
+ err_cdev:
+ cdev_del(&cd->cdev_genwqe);
+ err_add:
+ unregister_chrdev_region(cd->devnum_genwqe, GENWQE_MAX_MINOR);
+ err_dev:
+ cd->dev = NULL;
+ return rc;
+}
+
+static int genwqe_inform_and_stop_processes(struct genwqe_dev *cd)
+{
+ int rc;
+ unsigned int i;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ if (!genwqe_open_files(cd))
+ return 0;
+
+ dev_warn(&pci_dev->dev, "[%s] send SIGIO and wait ...\n", __func__);
+
+ rc = genwqe_kill_fasync(cd, SIGIO);
+ if (rc > 0) {
+ /* give kill_timeout seconds to close file descriptors ... */
+ for (i = 0; (i < GENWQE_KILL_TIMEOUT) &&
+ genwqe_open_files(cd); i++) {
+ dev_info(&pci_dev->dev, " %d sec ...", i);
+
+ cond_resched();
+ msleep(1000);
+ }
+
+ /* if no open files we can safely continue, else ... */
+ if (!genwqe_open_files(cd))
+ return 0;
+
+ dev_warn(&pci_dev->dev,
+ "[%s] send SIGKILL and wait ...\n", __func__);
+
+ rc = genwqe_terminate(cd);
+ if (rc) {
+ /* Give kill_timout more seconds to end processes */
+ for (i = 0; (i < GENWQE_KILL_TIMEOUT) &&
+ genwqe_open_files(cd); i++) {
+ dev_warn(&pci_dev->dev, " %d sec ...", i);
+
+ cond_resched();
+ msleep(1000);
+ }
+ }
+ }
+ return 0;
+}
+
+/**
+ * genwqe_device_remove() - Remove genwqe's char device
+ * @cd: GenWQE device information
+ *
+ * This function must be called after the client devices are removed
+ * because it will free the major/minor number range for the genwqe
+ * drivers.
+ *
+ * This function must be robust enough to be called twice.
+ */
+int genwqe_device_remove(struct genwqe_dev *cd)
+{
+ int rc;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ if (!genwqe_device_initialized(cd))
+ return 1;
+
+ genwqe_inform_and_stop_processes(cd);
+
+ /*
+ * We currently do wait until all filedescriptors are
+ * closed. This leads to a problem when we abort the
+ * application which will decrease this reference from
+ * 1/unused to 0/illegal and not from 2/used 1/empty.
+ */
+ rc = kref_read(&cd->cdev_genwqe.kobj.kref);
+ if (rc != 1) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: cdev_genwqe...refcount=%d\n", __func__, rc);
+ panic("Fatal err: cannot free resources with pending references!");
+ }
+
+ genqwe_exit_debugfs(cd);
+ device_destroy(cd->class_genwqe, cd->devnum_genwqe);
+ cdev_del(&cd->cdev_genwqe);
+ unregister_chrdev_region(cd->devnum_genwqe, GENWQE_MAX_MINOR);
+ cd->dev = NULL;
+
+ return 0;
+}
diff --git a/drivers/misc/genwqe/card_sysfs.c b/drivers/misc/genwqe/card_sysfs.c
new file mode 100644
index 000000000..b2f115602
--- /dev/null
+++ b/drivers/misc/genwqe/card_sysfs.c
@@ -0,0 +1,295 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * IBM Accelerator Family 'GenWQE'
+ *
+ * (C) Copyright IBM Corp. 2013
+ *
+ * Author: Frank Haverkamp <haver@linux.vnet.ibm.com>
+ * Author: Joerg-Stephan Vogt <jsvogt@de.ibm.com>
+ * Author: Michael Jung <mijung@gmx.net>
+ * Author: Michael Ruettger <michael@ibmra.de>
+ */
+
+/*
+ * Sysfs interfaces for the GenWQE card. There are attributes to query
+ * the version of the bitstream as well as some for the driver. For
+ * debugging, please also see the debugfs interfaces of this driver.
+ */
+
+#include <linux/kernel.h>
+#include <linux/types.h>
+#include <linux/module.h>
+#include <linux/pci.h>
+#include <linux/string.h>
+#include <linux/fs.h>
+#include <linux/sysfs.h>
+#include <linux/ctype.h>
+#include <linux/device.h>
+
+#include "card_base.h"
+#include "card_ddcb.h"
+
+static const char * const genwqe_types[] = {
+ [GENWQE_TYPE_ALTERA_230] = "GenWQE4-230",
+ [GENWQE_TYPE_ALTERA_530] = "GenWQE4-530",
+ [GENWQE_TYPE_ALTERA_A4] = "GenWQE5-A4",
+ [GENWQE_TYPE_ALTERA_A7] = "GenWQE5-A7",
+};
+
+static ssize_t status_show(struct device *dev, struct device_attribute *attr,
+ char *buf)
+{
+ struct genwqe_dev *cd = dev_get_drvdata(dev);
+ const char *cs[GENWQE_CARD_STATE_MAX] = { "unused", "used", "error" };
+
+ return sprintf(buf, "%s\n", cs[cd->card_state]);
+}
+static DEVICE_ATTR_RO(status);
+
+static ssize_t appid_show(struct device *dev, struct device_attribute *attr,
+ char *buf)
+{
+ char app_name[5];
+ struct genwqe_dev *cd = dev_get_drvdata(dev);
+
+ genwqe_read_app_id(cd, app_name, sizeof(app_name));
+ return sprintf(buf, "%s\n", app_name);
+}
+static DEVICE_ATTR_RO(appid);
+
+static ssize_t version_show(struct device *dev, struct device_attribute *attr,
+ char *buf)
+{
+ u64 slu_id, app_id;
+ struct genwqe_dev *cd = dev_get_drvdata(dev);
+
+ slu_id = __genwqe_readq(cd, IO_SLU_UNITCFG);
+ app_id = __genwqe_readq(cd, IO_APP_UNITCFG);
+
+ return sprintf(buf, "%016llx.%016llx\n", slu_id, app_id);
+}
+static DEVICE_ATTR_RO(version);
+
+static ssize_t type_show(struct device *dev, struct device_attribute *attr,
+ char *buf)
+{
+ u8 card_type;
+ struct genwqe_dev *cd = dev_get_drvdata(dev);
+
+ card_type = genwqe_card_type(cd);
+ return sprintf(buf, "%s\n", (card_type >= ARRAY_SIZE(genwqe_types)) ?
+ "invalid" : genwqe_types[card_type]);
+}
+static DEVICE_ATTR_RO(type);
+
+static ssize_t tempsens_show(struct device *dev, struct device_attribute *attr,
+ char *buf)
+{
+ u64 tempsens;
+ struct genwqe_dev *cd = dev_get_drvdata(dev);
+
+ tempsens = __genwqe_readq(cd, IO_SLU_TEMPERATURE_SENSOR);
+ return sprintf(buf, "%016llx\n", tempsens);
+}
+static DEVICE_ATTR_RO(tempsens);
+
+static ssize_t freerunning_timer_show(struct device *dev,
+ struct device_attribute *attr,
+ char *buf)
+{
+ u64 t;
+ struct genwqe_dev *cd = dev_get_drvdata(dev);
+
+ t = __genwqe_readq(cd, IO_SLC_FREE_RUNNING_TIMER);
+ return sprintf(buf, "%016llx\n", t);
+}
+static DEVICE_ATTR_RO(freerunning_timer);
+
+static ssize_t queue_working_time_show(struct device *dev,
+ struct device_attribute *attr,
+ char *buf)
+{
+ u64 t;
+ struct genwqe_dev *cd = dev_get_drvdata(dev);
+
+ t = __genwqe_readq(cd, IO_SLC_QUEUE_WTIME);
+ return sprintf(buf, "%016llx\n", t);
+}
+static DEVICE_ATTR_RO(queue_working_time);
+
+static ssize_t base_clock_show(struct device *dev,
+ struct device_attribute *attr,
+ char *buf)
+{
+ u64 base_clock;
+ struct genwqe_dev *cd = dev_get_drvdata(dev);
+
+ base_clock = genwqe_base_clock_frequency(cd);
+ return sprintf(buf, "%lld\n", base_clock);
+}
+static DEVICE_ATTR_RO(base_clock);
+
+/*
+ * curr_bitstream_show() - Show the current bitstream id
+ *
+ * There is a bug in some old versions of the CPLD which selects the
+ * bitstream, which causes the IO_SLU_BITSTREAM register to report
+ * unreliable data in very rare cases. This makes this sysfs
+ * unreliable up to the point were a new CPLD version is being used.
+ *
+ * Unfortunately there is no automatic way yet to query the CPLD
+ * version, such that you need to manually ensure via programming
+ * tools that you have a recent version of the CPLD software.
+ *
+ * The proposed circumvention is to use a special recovery bitstream
+ * on the backup partition (0) to identify problems while loading the
+ * image.
+ */
+static ssize_t curr_bitstream_show(struct device *dev,
+ struct device_attribute *attr, char *buf)
+{
+ int curr_bitstream;
+ struct genwqe_dev *cd = dev_get_drvdata(dev);
+
+ curr_bitstream = __genwqe_readq(cd, IO_SLU_BITSTREAM) & 0x1;
+ return sprintf(buf, "%d\n", curr_bitstream);
+}
+static DEVICE_ATTR_RO(curr_bitstream);
+
+/*
+ * next_bitstream_show() - Show the next activated bitstream
+ *
+ * IO_SLC_CFGREG_SOFTRESET: This register can only be accessed by the PF.
+ */
+static ssize_t next_bitstream_show(struct device *dev,
+ struct device_attribute *attr, char *buf)
+{
+ int next_bitstream;
+ struct genwqe_dev *cd = dev_get_drvdata(dev);
+
+ switch ((cd->softreset & 0xc) >> 2) {
+ case 0x2:
+ next_bitstream = 0;
+ break;
+ case 0x3:
+ next_bitstream = 1;
+ break;
+ default:
+ next_bitstream = -1;
+ break; /* error */
+ }
+ return sprintf(buf, "%d\n", next_bitstream);
+}
+
+static ssize_t next_bitstream_store(struct device *dev,
+ struct device_attribute *attr,
+ const char *buf, size_t count)
+{
+ int partition;
+ struct genwqe_dev *cd = dev_get_drvdata(dev);
+
+ if (kstrtoint(buf, 0, &partition) < 0)
+ return -EINVAL;
+
+ switch (partition) {
+ case 0x0:
+ cd->softreset = 0x78;
+ break;
+ case 0x1:
+ cd->softreset = 0x7c;
+ break;
+ default:
+ return -EINVAL;
+ }
+
+ __genwqe_writeq(cd, IO_SLC_CFGREG_SOFTRESET, cd->softreset);
+ return count;
+}
+static DEVICE_ATTR_RW(next_bitstream);
+
+static ssize_t reload_bitstream_store(struct device *dev,
+ struct device_attribute *attr,
+ const char *buf, size_t count)
+{
+ int reload;
+ struct genwqe_dev *cd = dev_get_drvdata(dev);
+
+ if (kstrtoint(buf, 0, &reload) < 0)
+ return -EINVAL;
+
+ if (reload == 0x1) {
+ if (cd->card_state == GENWQE_CARD_UNUSED ||
+ cd->card_state == GENWQE_CARD_USED)
+ cd->card_state = GENWQE_CARD_RELOAD_BITSTREAM;
+ else
+ return -EIO;
+ } else {
+ return -EINVAL;
+ }
+
+ return count;
+}
+static DEVICE_ATTR_WO(reload_bitstream);
+
+/*
+ * Create device_attribute structures / params: name, mode, show, store
+ * additional flag if valid in VF
+ */
+static struct attribute *genwqe_attributes[] = {
+ &dev_attr_tempsens.attr,
+ &dev_attr_next_bitstream.attr,
+ &dev_attr_curr_bitstream.attr,
+ &dev_attr_base_clock.attr,
+ &dev_attr_type.attr,
+ &dev_attr_version.attr,
+ &dev_attr_appid.attr,
+ &dev_attr_status.attr,
+ &dev_attr_freerunning_timer.attr,
+ &dev_attr_queue_working_time.attr,
+ &dev_attr_reload_bitstream.attr,
+ NULL,
+};
+
+static struct attribute *genwqe_normal_attributes[] = {
+ &dev_attr_type.attr,
+ &dev_attr_version.attr,
+ &dev_attr_appid.attr,
+ &dev_attr_status.attr,
+ &dev_attr_freerunning_timer.attr,
+ &dev_attr_queue_working_time.attr,
+ NULL,
+};
+
+/*
+ * genwqe_is_visible() - Determine if sysfs attribute should be visible or not
+ *
+ * VFs have restricted mmio capabilities, so not all sysfs entries
+ * are allowed in VFs.
+ */
+static umode_t genwqe_is_visible(struct kobject *kobj,
+ struct attribute *attr, int n)
+{
+ unsigned int j;
+ struct device *dev = kobj_to_dev(kobj);
+ struct genwqe_dev *cd = dev_get_drvdata(dev);
+ umode_t mode = attr->mode;
+
+ if (genwqe_is_privileged(cd))
+ return mode;
+
+ for (j = 0; genwqe_normal_attributes[j] != NULL; j++)
+ if (genwqe_normal_attributes[j] == attr)
+ return mode;
+
+ return 0;
+}
+
+static struct attribute_group genwqe_attribute_group = {
+ .is_visible = genwqe_is_visible,
+ .attrs = genwqe_attributes,
+};
+
+const struct attribute_group *genwqe_attribute_groups[] = {
+ &genwqe_attribute_group,
+ NULL,
+};
diff --git a/drivers/misc/genwqe/card_utils.c b/drivers/misc/genwqe/card_utils.c
new file mode 100644
index 000000000..039b923d1
--- /dev/null
+++ b/drivers/misc/genwqe/card_utils.c
@@ -0,0 +1,1049 @@
+// SPDX-License-Identifier: GPL-2.0-only
+/*
+ * IBM Accelerator Family 'GenWQE'
+ *
+ * (C) Copyright IBM Corp. 2013
+ *
+ * Author: Frank Haverkamp <haver@linux.vnet.ibm.com>
+ * Author: Joerg-Stephan Vogt <jsvogt@de.ibm.com>
+ * Author: Michael Jung <mijung@gmx.net>
+ * Author: Michael Ruettger <michael@ibmra.de>
+ */
+
+/*
+ * Miscelanous functionality used in the other GenWQE driver parts.
+ */
+
+#include <linux/kernel.h>
+#include <linux/sched.h>
+#include <linux/vmalloc.h>
+#include <linux/page-flags.h>
+#include <linux/scatterlist.h>
+#include <linux/hugetlb.h>
+#include <linux/iommu.h>
+#include <linux/pci.h>
+#include <linux/dma-mapping.h>
+#include <linux/ctype.h>
+#include <linux/module.h>
+#include <linux/platform_device.h>
+#include <linux/delay.h>
+#include <linux/pgtable.h>
+
+#include "genwqe_driver.h"
+#include "card_base.h"
+#include "card_ddcb.h"
+
+/**
+ * __genwqe_writeq() - Write 64-bit register
+ * @cd: genwqe device descriptor
+ * @byte_offs: byte offset within BAR
+ * @val: 64-bit value
+ *
+ * Return: 0 if success; < 0 if error
+ */
+int __genwqe_writeq(struct genwqe_dev *cd, u64 byte_offs, u64 val)
+{
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ if (cd->err_inject & GENWQE_INJECT_HARDWARE_FAILURE)
+ return -EIO;
+
+ if (cd->mmio == NULL)
+ return -EIO;
+
+ if (pci_channel_offline(pci_dev))
+ return -EIO;
+
+ __raw_writeq((__force u64)cpu_to_be64(val), cd->mmio + byte_offs);
+ return 0;
+}
+
+/**
+ * __genwqe_readq() - Read 64-bit register
+ * @cd: genwqe device descriptor
+ * @byte_offs: offset within BAR
+ *
+ * Return: value from register
+ */
+u64 __genwqe_readq(struct genwqe_dev *cd, u64 byte_offs)
+{
+ if (cd->err_inject & GENWQE_INJECT_HARDWARE_FAILURE)
+ return 0xffffffffffffffffull;
+
+ if ((cd->err_inject & GENWQE_INJECT_GFIR_FATAL) &&
+ (byte_offs == IO_SLC_CFGREG_GFIR))
+ return 0x000000000000ffffull;
+
+ if ((cd->err_inject & GENWQE_INJECT_GFIR_INFO) &&
+ (byte_offs == IO_SLC_CFGREG_GFIR))
+ return 0x00000000ffff0000ull;
+
+ if (cd->mmio == NULL)
+ return 0xffffffffffffffffull;
+
+ return be64_to_cpu((__force __be64)__raw_readq(cd->mmio + byte_offs));
+}
+
+/**
+ * __genwqe_writel() - Write 32-bit register
+ * @cd: genwqe device descriptor
+ * @byte_offs: byte offset within BAR
+ * @val: 32-bit value
+ *
+ * Return: 0 if success; < 0 if error
+ */
+int __genwqe_writel(struct genwqe_dev *cd, u64 byte_offs, u32 val)
+{
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ if (cd->err_inject & GENWQE_INJECT_HARDWARE_FAILURE)
+ return -EIO;
+
+ if (cd->mmio == NULL)
+ return -EIO;
+
+ if (pci_channel_offline(pci_dev))
+ return -EIO;
+
+ __raw_writel((__force u32)cpu_to_be32(val), cd->mmio + byte_offs);
+ return 0;
+}
+
+/**
+ * __genwqe_readl() - Read 32-bit register
+ * @cd: genwqe device descriptor
+ * @byte_offs: offset within BAR
+ *
+ * Return: Value from register
+ */
+u32 __genwqe_readl(struct genwqe_dev *cd, u64 byte_offs)
+{
+ if (cd->err_inject & GENWQE_INJECT_HARDWARE_FAILURE)
+ return 0xffffffff;
+
+ if (cd->mmio == NULL)
+ return 0xffffffff;
+
+ return be32_to_cpu((__force __be32)__raw_readl(cd->mmio + byte_offs));
+}
+
+/**
+ * genwqe_read_app_id() - Extract app_id
+ * @cd: genwqe device descriptor
+ * @app_name: carrier used to pass-back name
+ * @len: length of data for name
+ *
+ * app_unitcfg need to be filled with valid data first
+ */
+int genwqe_read_app_id(struct genwqe_dev *cd, char *app_name, int len)
+{
+ int i, j;
+ u32 app_id = (u32)cd->app_unitcfg;
+
+ memset(app_name, 0, len);
+ for (i = 0, j = 0; j < min(len, 4); j++) {
+ char ch = (char)((app_id >> (24 - j*8)) & 0xff);
+
+ if (ch == ' ')
+ continue;
+ app_name[i++] = isprint(ch) ? ch : 'X';
+ }
+ return i;
+}
+
+/**
+ * genwqe_init_crc32() - Prepare a lookup table for fast crc32 calculations
+ *
+ * Existing kernel functions seem to use a different polynom,
+ * therefore we could not use them here.
+ *
+ * Genwqe's Polynomial = 0x20044009
+ */
+#define CRC32_POLYNOMIAL 0x20044009
+static u32 crc32_tab[256]; /* crc32 lookup table */
+
+void genwqe_init_crc32(void)
+{
+ int i, j;
+ u32 crc;
+
+ for (i = 0; i < 256; i++) {
+ crc = i << 24;
+ for (j = 0; j < 8; j++) {
+ if (crc & 0x80000000)
+ crc = (crc << 1) ^ CRC32_POLYNOMIAL;
+ else
+ crc = (crc << 1);
+ }
+ crc32_tab[i] = crc;
+ }
+}
+
+/**
+ * genwqe_crc32() - Generate 32-bit crc as required for DDCBs
+ * @buff: pointer to data buffer
+ * @len: length of data for calculation
+ * @init: initial crc (0xffffffff at start)
+ *
+ * polynomial = x^32 * + x^29 + x^18 + x^14 + x^3 + 1 (0x20044009)
+ *
+ * Example: 4 bytes 0x01 0x02 0x03 0x04 with init=0xffffffff should
+ * result in a crc32 of 0xf33cb7d3.
+ *
+ * The existing kernel crc functions did not cover this polynom yet.
+ *
+ * Return: crc32 checksum.
+ */
+u32 genwqe_crc32(u8 *buff, size_t len, u32 init)
+{
+ int i;
+ u32 crc;
+
+ crc = init;
+ while (len--) {
+ i = ((crc >> 24) ^ *buff++) & 0xFF;
+ crc = (crc << 8) ^ crc32_tab[i];
+ }
+ return crc;
+}
+
+void *__genwqe_alloc_consistent(struct genwqe_dev *cd, size_t size,
+ dma_addr_t *dma_handle)
+{
+ if (get_order(size) >= MAX_ORDER)
+ return NULL;
+
+ return dma_alloc_coherent(&cd->pci_dev->dev, size, dma_handle,
+ GFP_KERNEL);
+}
+
+void __genwqe_free_consistent(struct genwqe_dev *cd, size_t size,
+ void *vaddr, dma_addr_t dma_handle)
+{
+ if (vaddr == NULL)
+ return;
+
+ dma_free_coherent(&cd->pci_dev->dev, size, vaddr, dma_handle);
+}
+
+static void genwqe_unmap_pages(struct genwqe_dev *cd, dma_addr_t *dma_list,
+ int num_pages)
+{
+ int i;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ for (i = 0; (i < num_pages) && (dma_list[i] != 0x0); i++) {
+ pci_unmap_page(pci_dev, dma_list[i],
+ PAGE_SIZE, PCI_DMA_BIDIRECTIONAL);
+ dma_list[i] = 0x0;
+ }
+}
+
+static int genwqe_map_pages(struct genwqe_dev *cd,
+ struct page **page_list, int num_pages,
+ dma_addr_t *dma_list)
+{
+ int i;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ /* establish DMA mapping for requested pages */
+ for (i = 0; i < num_pages; i++) {
+ dma_addr_t daddr;
+
+ dma_list[i] = 0x0;
+ daddr = pci_map_page(pci_dev, page_list[i],
+ 0, /* map_offs */
+ PAGE_SIZE,
+ PCI_DMA_BIDIRECTIONAL); /* FIXME rd/rw */
+
+ if (pci_dma_mapping_error(pci_dev, daddr)) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: no dma addr daddr=%016llx!\n",
+ __func__, (long long)daddr);
+ goto err;
+ }
+
+ dma_list[i] = daddr;
+ }
+ return 0;
+
+ err:
+ genwqe_unmap_pages(cd, dma_list, num_pages);
+ return -EIO;
+}
+
+static int genwqe_sgl_size(int num_pages)
+{
+ int len, num_tlb = num_pages / 7;
+
+ len = sizeof(struct sg_entry) * (num_pages+num_tlb + 1);
+ return roundup(len, PAGE_SIZE);
+}
+
+/*
+ * genwqe_alloc_sync_sgl() - Allocate memory for sgl and overlapping pages
+ *
+ * Allocates memory for sgl and overlapping pages. Pages which might
+ * overlap other user-space memory blocks are being cached for DMAs,
+ * such that we do not run into syncronization issues. Data is copied
+ * from user-space into the cached pages.
+ */
+int genwqe_alloc_sync_sgl(struct genwqe_dev *cd, struct genwqe_sgl *sgl,
+ void __user *user_addr, size_t user_size, int write)
+{
+ int ret = -ENOMEM;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ sgl->fpage_offs = offset_in_page((unsigned long)user_addr);
+ sgl->fpage_size = min_t(size_t, PAGE_SIZE-sgl->fpage_offs, user_size);
+ sgl->nr_pages = DIV_ROUND_UP(sgl->fpage_offs + user_size, PAGE_SIZE);
+ sgl->lpage_size = (user_size - sgl->fpage_size) % PAGE_SIZE;
+
+ dev_dbg(&pci_dev->dev, "[%s] uaddr=%p usize=%8ld nr_pages=%ld fpage_offs=%lx fpage_size=%ld lpage_size=%ld\n",
+ __func__, user_addr, user_size, sgl->nr_pages,
+ sgl->fpage_offs, sgl->fpage_size, sgl->lpage_size);
+
+ sgl->user_addr = user_addr;
+ sgl->user_size = user_size;
+ sgl->write = write;
+ sgl->sgl_size = genwqe_sgl_size(sgl->nr_pages);
+
+ if (get_order(sgl->sgl_size) > MAX_ORDER) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: too much memory requested!\n", __func__);
+ return ret;
+ }
+
+ sgl->sgl = __genwqe_alloc_consistent(cd, sgl->sgl_size,
+ &sgl->sgl_dma_addr);
+ if (sgl->sgl == NULL) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: no memory available!\n", __func__);
+ return ret;
+ }
+
+ /* Only use buffering on incomplete pages */
+ if ((sgl->fpage_size != 0) && (sgl->fpage_size != PAGE_SIZE)) {
+ sgl->fpage = __genwqe_alloc_consistent(cd, PAGE_SIZE,
+ &sgl->fpage_dma_addr);
+ if (sgl->fpage == NULL)
+ goto err_out;
+
+ /* Sync with user memory */
+ if (copy_from_user(sgl->fpage + sgl->fpage_offs,
+ user_addr, sgl->fpage_size)) {
+ ret = -EFAULT;
+ goto err_out;
+ }
+ }
+ if (sgl->lpage_size != 0) {
+ sgl->lpage = __genwqe_alloc_consistent(cd, PAGE_SIZE,
+ &sgl->lpage_dma_addr);
+ if (sgl->lpage == NULL)
+ goto err_out1;
+
+ /* Sync with user memory */
+ if (copy_from_user(sgl->lpage, user_addr + user_size -
+ sgl->lpage_size, sgl->lpage_size)) {
+ ret = -EFAULT;
+ goto err_out2;
+ }
+ }
+ return 0;
+
+ err_out2:
+ __genwqe_free_consistent(cd, PAGE_SIZE, sgl->lpage,
+ sgl->lpage_dma_addr);
+ sgl->lpage = NULL;
+ sgl->lpage_dma_addr = 0;
+ err_out1:
+ __genwqe_free_consistent(cd, PAGE_SIZE, sgl->fpage,
+ sgl->fpage_dma_addr);
+ sgl->fpage = NULL;
+ sgl->fpage_dma_addr = 0;
+ err_out:
+ __genwqe_free_consistent(cd, sgl->sgl_size, sgl->sgl,
+ sgl->sgl_dma_addr);
+ sgl->sgl = NULL;
+ sgl->sgl_dma_addr = 0;
+ sgl->sgl_size = 0;
+
+ return ret;
+}
+
+int genwqe_setup_sgl(struct genwqe_dev *cd, struct genwqe_sgl *sgl,
+ dma_addr_t *dma_list)
+{
+ int i = 0, j = 0, p;
+ unsigned long dma_offs, map_offs;
+ dma_addr_t prev_daddr = 0;
+ struct sg_entry *s, *last_s = NULL;
+ size_t size = sgl->user_size;
+
+ dma_offs = 128; /* next block if needed/dma_offset */
+ map_offs = sgl->fpage_offs; /* offset in first page */
+
+ s = &sgl->sgl[0]; /* first set of 8 entries */
+ p = 0; /* page */
+ while (p < sgl->nr_pages) {
+ dma_addr_t daddr;
+ unsigned int size_to_map;
+
+ /* always write the chaining entry, cleanup is done later */
+ j = 0;
+ s[j].target_addr = cpu_to_be64(sgl->sgl_dma_addr + dma_offs);
+ s[j].len = cpu_to_be32(128);
+ s[j].flags = cpu_to_be32(SG_CHAINED);
+ j++;
+
+ while (j < 8) {
+ /* DMA mapping for requested page, offs, size */
+ size_to_map = min(size, PAGE_SIZE - map_offs);
+
+ if ((p == 0) && (sgl->fpage != NULL)) {
+ daddr = sgl->fpage_dma_addr + map_offs;
+
+ } else if ((p == sgl->nr_pages - 1) &&
+ (sgl->lpage != NULL)) {
+ daddr = sgl->lpage_dma_addr;
+ } else {
+ daddr = dma_list[p] + map_offs;
+ }
+
+ size -= size_to_map;
+ map_offs = 0;
+
+ if (prev_daddr == daddr) {
+ u32 prev_len = be32_to_cpu(last_s->len);
+
+ /* pr_info("daddr combining: "
+ "%016llx/%08x -> %016llx\n",
+ prev_daddr, prev_len, daddr); */
+
+ last_s->len = cpu_to_be32(prev_len +
+ size_to_map);
+
+ p++; /* process next page */
+ if (p == sgl->nr_pages)
+ goto fixup; /* nothing to do */
+
+ prev_daddr = daddr + size_to_map;
+ continue;
+ }
+
+ /* start new entry */
+ s[j].target_addr = cpu_to_be64(daddr);
+ s[j].len = cpu_to_be32(size_to_map);
+ s[j].flags = cpu_to_be32(SG_DATA);
+ prev_daddr = daddr + size_to_map;
+ last_s = &s[j];
+ j++;
+
+ p++; /* process next page */
+ if (p == sgl->nr_pages)
+ goto fixup; /* nothing to do */
+ }
+ dma_offs += 128;
+ s += 8; /* continue 8 elements further */
+ }
+ fixup:
+ if (j == 1) { /* combining happened on last entry! */
+ s -= 8; /* full shift needed on previous sgl block */
+ j = 7; /* shift all elements */
+ }
+
+ for (i = 0; i < j; i++) /* move elements 1 up */
+ s[i] = s[i + 1];
+
+ s[i].target_addr = cpu_to_be64(0);
+ s[i].len = cpu_to_be32(0);
+ s[i].flags = cpu_to_be32(SG_END_LIST);
+ return 0;
+}
+
+/**
+ * genwqe_free_sync_sgl() - Free memory for sgl and overlapping pages
+ * @cd: genwqe device descriptor
+ * @sgl: scatter gather list describing user-space memory
+ *
+ * After the DMA transfer has been completed we free the memory for
+ * the sgl and the cached pages. Data is being transferred from cached
+ * pages into user-space buffers.
+ */
+int genwqe_free_sync_sgl(struct genwqe_dev *cd, struct genwqe_sgl *sgl)
+{
+ int rc = 0;
+ size_t offset;
+ unsigned long res;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ if (sgl->fpage) {
+ if (sgl->write) {
+ res = copy_to_user(sgl->user_addr,
+ sgl->fpage + sgl->fpage_offs, sgl->fpage_size);
+ if (res) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: copying fpage! (res=%lu)\n",
+ __func__, res);
+ rc = -EFAULT;
+ }
+ }
+ __genwqe_free_consistent(cd, PAGE_SIZE, sgl->fpage,
+ sgl->fpage_dma_addr);
+ sgl->fpage = NULL;
+ sgl->fpage_dma_addr = 0;
+ }
+ if (sgl->lpage) {
+ if (sgl->write) {
+ offset = sgl->user_size - sgl->lpage_size;
+ res = copy_to_user(sgl->user_addr + offset, sgl->lpage,
+ sgl->lpage_size);
+ if (res) {
+ dev_err(&pci_dev->dev,
+ "[%s] err: copying lpage! (res=%lu)\n",
+ __func__, res);
+ rc = -EFAULT;
+ }
+ }
+ __genwqe_free_consistent(cd, PAGE_SIZE, sgl->lpage,
+ sgl->lpage_dma_addr);
+ sgl->lpage = NULL;
+ sgl->lpage_dma_addr = 0;
+ }
+ __genwqe_free_consistent(cd, sgl->sgl_size, sgl->sgl,
+ sgl->sgl_dma_addr);
+
+ sgl->sgl = NULL;
+ sgl->sgl_dma_addr = 0x0;
+ sgl->sgl_size = 0;
+ return rc;
+}
+
+/**
+ * genwqe_user_vmap() - Map user-space memory to virtual kernel memory
+ * @cd: pointer to genwqe device
+ * @m: mapping params
+ * @uaddr: user virtual address
+ * @size: size of memory to be mapped
+ *
+ * We need to think about how we could speed this up. Of course it is
+ * not a good idea to do this over and over again, like we are
+ * currently doing it. Nevertheless, I am curious where on the path
+ * the performance is spend. Most probably within the memory
+ * allocation functions, but maybe also in the DMA mapping code.
+ *
+ * Restrictions: The maximum size of the possible mapping currently depends
+ * on the amount of memory we can get using kzalloc() for the
+ * page_list and pci_alloc_consistent for the sg_list.
+ * The sg_list is currently itself not scattered, which could
+ * be fixed with some effort. The page_list must be split into
+ * PAGE_SIZE chunks too. All that will make the complicated
+ * code more complicated.
+ *
+ * Return: 0 if success
+ */
+int genwqe_user_vmap(struct genwqe_dev *cd, struct dma_mapping *m, void *uaddr,
+ unsigned long size)
+{
+ int rc = -EINVAL;
+ unsigned long data, offs;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ if ((uaddr == NULL) || (size == 0)) {
+ m->size = 0; /* mark unused and not added */
+ return -EINVAL;
+ }
+ m->u_vaddr = uaddr;
+ m->size = size;
+
+ /* determine space needed for page_list. */
+ data = (unsigned long)uaddr;
+ offs = offset_in_page(data);
+ if (size > ULONG_MAX - PAGE_SIZE - offs) {
+ m->size = 0; /* mark unused and not added */
+ return -EINVAL;
+ }
+ m->nr_pages = DIV_ROUND_UP(offs + size, PAGE_SIZE);
+
+ m->page_list = kcalloc(m->nr_pages,
+ sizeof(struct page *) + sizeof(dma_addr_t),
+ GFP_KERNEL);
+ if (!m->page_list) {
+ dev_err(&pci_dev->dev, "err: alloc page_list failed\n");
+ m->nr_pages = 0;
+ m->u_vaddr = NULL;
+ m->size = 0; /* mark unused and not added */
+ return -ENOMEM;
+ }
+ m->dma_list = (dma_addr_t *)(m->page_list + m->nr_pages);
+
+ /* pin user pages in memory */
+ rc = pin_user_pages_fast(data & PAGE_MASK, /* page aligned addr */
+ m->nr_pages,
+ m->write ? FOLL_WRITE : 0, /* readable/writable */
+ m->page_list); /* ptrs to pages */
+ if (rc < 0)
+ goto fail_pin_user_pages;
+
+ /* assumption: pin_user_pages can be killed by signals. */
+ if (rc < m->nr_pages) {
+ unpin_user_pages_dirty_lock(m->page_list, rc, m->write);
+ rc = -EFAULT;
+ goto fail_pin_user_pages;
+ }
+
+ rc = genwqe_map_pages(cd, m->page_list, m->nr_pages, m->dma_list);
+ if (rc != 0)
+ goto fail_free_user_pages;
+
+ return 0;
+
+ fail_free_user_pages:
+ unpin_user_pages_dirty_lock(m->page_list, m->nr_pages, m->write);
+
+ fail_pin_user_pages:
+ kfree(m->page_list);
+ m->page_list = NULL;
+ m->dma_list = NULL;
+ m->nr_pages = 0;
+ m->u_vaddr = NULL;
+ m->size = 0; /* mark unused and not added */
+ return rc;
+}
+
+/**
+ * genwqe_user_vunmap() - Undo mapping of user-space mem to virtual kernel
+ * memory
+ * @cd: pointer to genwqe device
+ * @m: mapping params
+ */
+int genwqe_user_vunmap(struct genwqe_dev *cd, struct dma_mapping *m)
+{
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ if (!dma_mapping_used(m)) {
+ dev_err(&pci_dev->dev, "[%s] err: mapping %p not used!\n",
+ __func__, m);
+ return -EINVAL;
+ }
+
+ if (m->dma_list)
+ genwqe_unmap_pages(cd, m->dma_list, m->nr_pages);
+
+ if (m->page_list) {
+ unpin_user_pages_dirty_lock(m->page_list, m->nr_pages,
+ m->write);
+ kfree(m->page_list);
+ m->page_list = NULL;
+ m->dma_list = NULL;
+ m->nr_pages = 0;
+ }
+
+ m->u_vaddr = NULL;
+ m->size = 0; /* mark as unused and not added */
+ return 0;
+}
+
+/**
+ * genwqe_card_type() - Get chip type SLU Configuration Register
+ * @cd: pointer to the genwqe device descriptor
+ * Return: 0: Altera Stratix-IV 230
+ * 1: Altera Stratix-IV 530
+ * 2: Altera Stratix-V A4
+ * 3: Altera Stratix-V A7
+ */
+u8 genwqe_card_type(struct genwqe_dev *cd)
+{
+ u64 card_type = cd->slu_unitcfg;
+
+ return (u8)((card_type & IO_SLU_UNITCFG_TYPE_MASK) >> 20);
+}
+
+/**
+ * genwqe_card_reset() - Reset the card
+ * @cd: pointer to the genwqe device descriptor
+ */
+int genwqe_card_reset(struct genwqe_dev *cd)
+{
+ u64 softrst;
+ struct pci_dev *pci_dev = cd->pci_dev;
+
+ if (!genwqe_is_privileged(cd))
+ return -ENODEV;
+
+ /* new SL */
+ __genwqe_writeq(cd, IO_SLC_CFGREG_SOFTRESET, 0x1ull);
+ msleep(1000);
+ __genwqe_readq(cd, IO_HSU_FIR_CLR);
+ __genwqe_readq(cd, IO_APP_FIR_CLR);
+ __genwqe_readq(cd, IO_SLU_FIR_CLR);
+
+ /*
+ * Read-modify-write to preserve the stealth bits
+ *
+ * For SL >= 039, Stealth WE bit allows removing
+ * the read-modify-wrote.
+ * r-m-w may require a mask 0x3C to avoid hitting hard
+ * reset again for error reset (should be 0, chicken).
+ */
+ softrst = __genwqe_readq(cd, IO_SLC_CFGREG_SOFTRESET) & 0x3cull;
+ __genwqe_writeq(cd, IO_SLC_CFGREG_SOFTRESET, softrst | 0x2ull);
+
+ /* give ERRORRESET some time to finish */
+ msleep(50);
+
+ if (genwqe_need_err_masking(cd)) {
+ dev_info(&pci_dev->dev,
+ "[%s] masking errors for old bitstreams\n", __func__);
+ __genwqe_writeq(cd, IO_SLC_MISC_DEBUG, 0x0aull);
+ }
+ return 0;
+}
+
+int genwqe_read_softreset(struct genwqe_dev *cd)
+{
+ u64 bitstream;
+
+ if (!genwqe_is_privileged(cd))
+ return -ENODEV;
+
+ bitstream = __genwqe_readq(cd, IO_SLU_BITSTREAM) & 0x1;
+ cd->softreset = (bitstream == 0) ? 0x8ull : 0xcull;
+ return 0;
+}
+
+/**
+ * genwqe_set_interrupt_capability() - Configure MSI capability structure
+ * @cd: pointer to the device
+ * @count: number of vectors to allocate
+ * Return: 0 if no error
+ */
+int genwqe_set_interrupt_capability(struct genwqe_dev *cd, int count)
+{
+ int rc;
+
+ rc = pci_alloc_irq_vectors(cd->pci_dev, 1, count, PCI_IRQ_MSI);
+ if (rc < 0)
+ return rc;
+ return 0;
+}
+
+/**
+ * genwqe_reset_interrupt_capability() - Undo genwqe_set_interrupt_capability()
+ * @cd: pointer to the device
+ */
+void genwqe_reset_interrupt_capability(struct genwqe_dev *cd)
+{
+ pci_free_irq_vectors(cd->pci_dev);
+}
+
+/**
+ * set_reg_idx() - Fill array with data. Ignore illegal offsets.
+ * @cd: card device
+ * @r: debug register array
+ * @i: index to desired entry
+ * @m: maximum possible entries
+ * @addr: addr which is read
+ * @idx: index in debug array
+ * @val: read value
+ */
+static int set_reg_idx(struct genwqe_dev *cd, struct genwqe_reg *r,
+ unsigned int *i, unsigned int m, u32 addr, u32 idx,
+ u64 val)
+{
+ if (WARN_ON_ONCE(*i >= m))
+ return -EFAULT;
+
+ r[*i].addr = addr;
+ r[*i].idx = idx;
+ r[*i].val = val;
+ ++*i;
+ return 0;
+}
+
+static int set_reg(struct genwqe_dev *cd, struct genwqe_reg *r,
+ unsigned int *i, unsigned int m, u32 addr, u64 val)
+{
+ return set_reg_idx(cd, r, i, m, addr, 0, val);
+}
+
+int genwqe_read_ffdc_regs(struct genwqe_dev *cd, struct genwqe_reg *regs,
+ unsigned int max_regs, int all)
+{
+ unsigned int i, j, idx = 0;
+ u32 ufir_addr, ufec_addr, sfir_addr, sfec_addr;
+ u64 gfir, sluid, appid, ufir, ufec, sfir, sfec;
+
+ /* Global FIR */
+ gfir = __genwqe_readq(cd, IO_SLC_CFGREG_GFIR);
+ set_reg(cd, regs, &idx, max_regs, IO_SLC_CFGREG_GFIR, gfir);
+
+ /* UnitCfg for SLU */
+ sluid = __genwqe_readq(cd, IO_SLU_UNITCFG); /* 0x00000000 */
+ set_reg(cd, regs, &idx, max_regs, IO_SLU_UNITCFG, sluid);
+
+ /* UnitCfg for APP */
+ appid = __genwqe_readq(cd, IO_APP_UNITCFG); /* 0x02000000 */
+ set_reg(cd, regs, &idx, max_regs, IO_APP_UNITCFG, appid);
+
+ /* Check all chip Units */
+ for (i = 0; i < GENWQE_MAX_UNITS; i++) {
+
+ /* Unit FIR */
+ ufir_addr = (i << 24) | 0x008;
+ ufir = __genwqe_readq(cd, ufir_addr);
+ set_reg(cd, regs, &idx, max_regs, ufir_addr, ufir);
+
+ /* Unit FEC */
+ ufec_addr = (i << 24) | 0x018;
+ ufec = __genwqe_readq(cd, ufec_addr);
+ set_reg(cd, regs, &idx, max_regs, ufec_addr, ufec);
+
+ for (j = 0; j < 64; j++) {
+ /* wherever there is a primary 1, read the 2ndary */
+ if (!all && (!(ufir & (1ull << j))))
+ continue;
+
+ sfir_addr = (i << 24) | (0x100 + 8 * j);
+ sfir = __genwqe_readq(cd, sfir_addr);
+ set_reg(cd, regs, &idx, max_regs, sfir_addr, sfir);
+
+ sfec_addr = (i << 24) | (0x300 + 8 * j);
+ sfec = __genwqe_readq(cd, sfec_addr);
+ set_reg(cd, regs, &idx, max_regs, sfec_addr, sfec);
+ }
+ }
+
+ /* fill with invalid data until end */
+ for (i = idx; i < max_regs; i++) {
+ regs[i].addr = 0xffffffff;
+ regs[i].val = 0xffffffffffffffffull;
+ }
+ return idx;
+}
+
+/**
+ * genwqe_ffdc_buff_size() - Calculates the number of dump registers
+ * @cd: genwqe device descriptor
+ * @uid: unit ID
+ */
+int genwqe_ffdc_buff_size(struct genwqe_dev *cd, int uid)
+{
+ int entries = 0, ring, traps, traces, trace_entries;
+ u32 eevptr_addr, l_addr, d_len, d_type;
+ u64 eevptr, val, addr;
+
+ eevptr_addr = GENWQE_UID_OFFS(uid) | IO_EXTENDED_ERROR_POINTER;
+ eevptr = __genwqe_readq(cd, eevptr_addr);
+
+ if ((eevptr != 0x0) && (eevptr != -1ull)) {
+ l_addr = GENWQE_UID_OFFS(uid) | eevptr;
+
+ while (1) {
+ val = __genwqe_readq(cd, l_addr);
+
+ if ((val == 0x0) || (val == -1ull))
+ break;
+
+ /* 38:24 */
+ d_len = (val & 0x0000007fff000000ull) >> 24;
+
+ /* 39 */
+ d_type = (val & 0x0000008000000000ull) >> 36;
+
+ if (d_type) { /* repeat */
+ entries += d_len;
+ } else { /* size in bytes! */
+ entries += d_len >> 3;
+ }
+
+ l_addr += 8;
+ }
+ }
+
+ for (ring = 0; ring < 8; ring++) {
+ addr = GENWQE_UID_OFFS(uid) | IO_EXTENDED_DIAG_MAP(ring);
+ val = __genwqe_readq(cd, addr);
+
+ if ((val == 0x0ull) || (val == -1ull))
+ continue;
+
+ traps = (val >> 24) & 0xff;
+ traces = (val >> 16) & 0xff;
+ trace_entries = val & 0xffff;
+
+ entries += traps + (traces * trace_entries);
+ }
+ return entries;
+}
+
+/**
+ * genwqe_ffdc_buff_read() - Implements LogoutExtendedErrorRegisters procedure
+ * @cd: genwqe device descriptor
+ * @uid: unit ID
+ * @regs: register information
+ * @max_regs: number of register entries
+ */
+int genwqe_ffdc_buff_read(struct genwqe_dev *cd, int uid,
+ struct genwqe_reg *regs, unsigned int max_regs)
+{
+ int i, traps, traces, trace, trace_entries, trace_entry, ring;
+ unsigned int idx = 0;
+ u32 eevptr_addr, l_addr, d_addr, d_len, d_type;
+ u64 eevptr, e, val, addr;
+
+ eevptr_addr = GENWQE_UID_OFFS(uid) | IO_EXTENDED_ERROR_POINTER;
+ eevptr = __genwqe_readq(cd, eevptr_addr);
+
+ if ((eevptr != 0x0) && (eevptr != 0xffffffffffffffffull)) {
+ l_addr = GENWQE_UID_OFFS(uid) | eevptr;
+ while (1) {
+ e = __genwqe_readq(cd, l_addr);
+ if ((e == 0x0) || (e == 0xffffffffffffffffull))
+ break;
+
+ d_addr = (e & 0x0000000000ffffffull); /* 23:0 */
+ d_len = (e & 0x0000007fff000000ull) >> 24; /* 38:24 */
+ d_type = (e & 0x0000008000000000ull) >> 36; /* 39 */
+ d_addr |= GENWQE_UID_OFFS(uid);
+
+ if (d_type) {
+ for (i = 0; i < (int)d_len; i++) {
+ val = __genwqe_readq(cd, d_addr);
+ set_reg_idx(cd, regs, &idx, max_regs,
+ d_addr, i, val);
+ }
+ } else {
+ d_len >>= 3; /* Size in bytes! */
+ for (i = 0; i < (int)d_len; i++, d_addr += 8) {
+ val = __genwqe_readq(cd, d_addr);
+ set_reg_idx(cd, regs, &idx, max_regs,
+ d_addr, 0, val);
+ }
+ }
+ l_addr += 8;
+ }
+ }
+
+ /*
+ * To save time, there are only 6 traces poplulated on Uid=2,
+ * Ring=1. each with iters=512.
+ */
+ for (ring = 0; ring < 8; ring++) { /* 0 is fls, 1 is fds,
+ 2...7 are ASI rings */
+ addr = GENWQE_UID_OFFS(uid) | IO_EXTENDED_DIAG_MAP(ring);
+ val = __genwqe_readq(cd, addr);
+
+ if ((val == 0x0ull) || (val == -1ull))
+ continue;
+
+ traps = (val >> 24) & 0xff; /* Number of Traps */
+ traces = (val >> 16) & 0xff; /* Number of Traces */
+ trace_entries = val & 0xffff; /* Entries per trace */
+
+ /* Note: This is a combined loop that dumps both the traps */
+ /* (for the trace == 0 case) as well as the traces 1 to */
+ /* 'traces'. */
+ for (trace = 0; trace <= traces; trace++) {
+ u32 diag_sel =
+ GENWQE_EXTENDED_DIAG_SELECTOR(ring, trace);
+
+ addr = (GENWQE_UID_OFFS(uid) |
+ IO_EXTENDED_DIAG_SELECTOR);
+ __genwqe_writeq(cd, addr, diag_sel);
+
+ for (trace_entry = 0;
+ trace_entry < (trace ? trace_entries : traps);
+ trace_entry++) {
+ addr = (GENWQE_UID_OFFS(uid) |
+ IO_EXTENDED_DIAG_READ_MBX);
+ val = __genwqe_readq(cd, addr);
+ set_reg_idx(cd, regs, &idx, max_regs, addr,
+ (diag_sel<<16) | trace_entry, val);
+ }
+ }
+ }
+ return 0;
+}
+
+/**
+ * genwqe_write_vreg() - Write register in virtual window
+ * @cd: genwqe device descriptor
+ * @reg: register (byte) offset within BAR
+ * @val: value to write
+ * @func: PCI virtual function
+ *
+ * Note, these registers are only accessible to the PF through the
+ * VF-window. It is not intended for the VF to access.
+ */
+int genwqe_write_vreg(struct genwqe_dev *cd, u32 reg, u64 val, int func)
+{
+ __genwqe_writeq(cd, IO_PF_SLC_VIRTUAL_WINDOW, func & 0xf);
+ __genwqe_writeq(cd, reg, val);
+ return 0;
+}
+
+/**
+ * genwqe_read_vreg() - Read register in virtual window
+ * @cd: genwqe device descriptor
+ * @reg: register (byte) offset within BAR
+ * @func: PCI virtual function
+ *
+ * Note, these registers are only accessible to the PF through the
+ * VF-window. It is not intended for the VF to access.
+ */
+u64 genwqe_read_vreg(struct genwqe_dev *cd, u32 reg, int func)
+{
+ __genwqe_writeq(cd, IO_PF_SLC_VIRTUAL_WINDOW, func & 0xf);
+ return __genwqe_readq(cd, reg);
+}
+
+/**
+ * genwqe_base_clock_frequency() - Deteremine base clock frequency of the card
+ * @cd: genwqe device descriptor
+ *
+ * Note: From a design perspective it turned out to be a bad idea to
+ * use codes here to specifiy the frequency/speed values. An old
+ * driver cannot understand new codes and is therefore always a
+ * problem. Better is to measure out the value or put the
+ * speed/frequency directly into a register which is always a valid
+ * value for old as well as for new software.
+ *
+ * Return: Card clock in MHz
+ */
+int genwqe_base_clock_frequency(struct genwqe_dev *cd)
+{
+ u16 speed; /* MHz MHz MHz MHz */
+ static const int speed_grade[] = { 250, 200, 166, 175 };
+
+ speed = (u16)((cd->slu_unitcfg >> 28) & 0x0full);
+ if (speed >= ARRAY_SIZE(speed_grade))
+ return 0; /* illegal value */
+
+ return speed_grade[speed];
+}
+
+/**
+ * genwqe_stop_traps() - Stop traps
+ * @cd: genwqe device descriptor
+ *
+ * Before reading out the analysis data, we need to stop the traps.
+ */
+void genwqe_stop_traps(struct genwqe_dev *cd)
+{
+ __genwqe_writeq(cd, IO_SLC_MISC_DEBUG_SET, 0xcull);
+}
+
+/**
+ * genwqe_start_traps() - Start traps
+ * @cd: genwqe device descriptor
+ *
+ * After having read the data, we can/must enable the traps again.
+ */
+void genwqe_start_traps(struct genwqe_dev *cd)
+{
+ __genwqe_writeq(cd, IO_SLC_MISC_DEBUG_CLR, 0xcull);
+
+ if (genwqe_need_err_masking(cd))
+ __genwqe_writeq(cd, IO_SLC_MISC_DEBUG, 0x0aull);
+}
diff --git a/drivers/misc/genwqe/genwqe_driver.h b/drivers/misc/genwqe/genwqe_driver.h
new file mode 100644
index 000000000..8c333481b
--- /dev/null
+++ b/drivers/misc/genwqe/genwqe_driver.h
@@ -0,0 +1,69 @@
+/* SPDX-License-Identifier: GPL-2.0-only */
+#ifndef __GENWQE_DRIVER_H__
+#define __GENWQE_DRIVER_H__
+
+/**
+ * IBM Accelerator Family 'GenWQE'
+ *
+ * (C) Copyright IBM Corp. 2013
+ *
+ * Author: Frank Haverkamp <haver@linux.vnet.ibm.com>
+ * Author: Joerg-Stephan Vogt <jsvogt@de.ibm.com>
+ * Author: Michael Jung <mijung@gmx.net>
+ * Author: Michael Ruettger <michael@ibmra.de>
+ */
+
+#include <linux/types.h>
+#include <linux/stddef.h>
+#include <linux/cdev.h>
+#include <linux/list.h>
+#include <linux/kthread.h>
+#include <linux/scatterlist.h>
+#include <linux/iommu.h>
+#include <linux/spinlock.h>
+#include <linux/mutex.h>
+#include <linux/platform_device.h>
+#include <linux/printk.h>
+
+#include <asm/byteorder.h>
+#include <linux/genwqe/genwqe_card.h>
+
+#define DRV_VERSION "2.0.25"
+
+/*
+ * Static minor number assignement, until we decide/implement
+ * something dynamic.
+ */
+#define GENWQE_MAX_MINOR 128 /* up to 128 possible genwqe devices */
+
+/**
+ * genwqe_requ_alloc() - Allocate a new DDCB execution request
+ *
+ * This data structure contains the user visiable fields of the DDCB
+ * to be executed.
+ *
+ * Return: ptr to genwqe_ddcb_cmd data structure
+ */
+struct genwqe_ddcb_cmd *ddcb_requ_alloc(void);
+
+/**
+ * ddcb_requ_free() - Free DDCB execution request.
+ * @req: ptr to genwqe_ddcb_cmd data structure.
+ */
+void ddcb_requ_free(struct genwqe_ddcb_cmd *req);
+
+u32 genwqe_crc32(u8 *buff, size_t len, u32 init);
+
+static inline void genwqe_hexdump(struct pci_dev *pci_dev,
+ const void *buff, unsigned int size)
+{
+ char prefix[32];
+
+ scnprintf(prefix, sizeof(prefix), "%s %s: ",
+ GENWQE_DEVNAME, pci_name(pci_dev));
+
+ print_hex_dump_debug(prefix, DUMP_PREFIX_OFFSET, 16, 1, buff,
+ size, true);
+}
+
+#endif /* __GENWQE_DRIVER_H__ */