linux-stable/drivers/crypto/ccree/cc_debugfs.c
Uwe Kleine-König 8e96729fc2 crypto: ccree - Make cc_debugfs_global_fini() available for module init function
ccree_init() calls cc_debugfs_global_fini(), the former is an init
function and the latter an exit function though.

A modular build emits:

	WARNING: modpost: drivers/crypto/ccree/ccree.o: section mismatch in reference: init_module (section: .init.text) -> cc_debugfs_global_fini (section: .exit.text)

(with CONFIG_DEBUG_SECTION_MISMATCH=y).

Fixes: 4f1c596df7 ("crypto: ccree - Remove debugfs when platform_driver_register failed")
Signed-off-by: Uwe Kleine-König <u.kleine-koenig@pengutronix.de>
Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
2022-11-22 18:12:55 +08:00

107 lines
2.7 KiB
C

// SPDX-License-Identifier: GPL-2.0
/* Copyright (C) 2012-2019 ARM Limited or its affiliates. */
#include <linux/kernel.h>
#include <linux/debugfs.h>
#include <linux/stringify.h>
#include "cc_driver.h"
#include "cc_crypto_ctx.h"
#include "cc_debugfs.h"
#define CC_DEBUG_REG(_X) { \
.name = __stringify(_X),\
.offset = CC_REG(_X) \
}
/*
* This is a global var for the dentry of the
* debugfs ccree/ dir. It is not tied down to
* a specific instance of ccree, hence it is
* global.
*/
static struct dentry *cc_debugfs_dir;
static struct debugfs_reg32 ver_sig_regs[] = {
{ .name = "SIGNATURE" }, /* Must be 0th */
{ .name = "VERSION" }, /* Must be 1st */
};
static const struct debugfs_reg32 pid_cid_regs[] = {
CC_DEBUG_REG(PERIPHERAL_ID_0),
CC_DEBUG_REG(PERIPHERAL_ID_1),
CC_DEBUG_REG(PERIPHERAL_ID_2),
CC_DEBUG_REG(PERIPHERAL_ID_3),
CC_DEBUG_REG(PERIPHERAL_ID_4),
CC_DEBUG_REG(COMPONENT_ID_0),
CC_DEBUG_REG(COMPONENT_ID_1),
CC_DEBUG_REG(COMPONENT_ID_2),
CC_DEBUG_REG(COMPONENT_ID_3),
};
static const struct debugfs_reg32 debug_regs[] = {
CC_DEBUG_REG(HOST_IRR),
CC_DEBUG_REG(HOST_POWER_DOWN_EN),
CC_DEBUG_REG(AXIM_MON_ERR),
CC_DEBUG_REG(DSCRPTR_QUEUE_CONTENT),
CC_DEBUG_REG(HOST_IMR),
CC_DEBUG_REG(AXIM_CFG),
CC_DEBUG_REG(AXIM_CACHE_PARAMS),
CC_DEBUG_REG(GPR_HOST),
CC_DEBUG_REG(AXIM_MON_COMP),
};
void __init cc_debugfs_global_init(void)
{
cc_debugfs_dir = debugfs_create_dir("ccree", NULL);
}
void cc_debugfs_global_fini(void)
{
debugfs_remove(cc_debugfs_dir);
}
int cc_debugfs_init(struct cc_drvdata *drvdata)
{
struct device *dev = drvdata_to_dev(drvdata);
struct debugfs_regset32 *regset, *verset;
regset = devm_kzalloc(dev, sizeof(*regset), GFP_KERNEL);
if (!regset)
return -ENOMEM;
regset->regs = debug_regs;
regset->nregs = ARRAY_SIZE(debug_regs);
regset->base = drvdata->cc_base;
regset->dev = dev;
drvdata->dir = debugfs_create_dir(drvdata->plat_dev->name,
cc_debugfs_dir);
debugfs_create_regset32("regs", 0400, drvdata->dir, regset);
debugfs_create_bool("coherent", 0400, drvdata->dir, &drvdata->coherent);
verset = devm_kzalloc(dev, sizeof(*verset), GFP_KERNEL);
/* Failing here is not important enough to fail the module load */
if (!verset)
return 0;
if (drvdata->hw_rev <= CC_HW_REV_712) {
ver_sig_regs[0].offset = drvdata->sig_offset;
ver_sig_regs[1].offset = drvdata->ver_offset;
verset->regs = ver_sig_regs;
verset->nregs = ARRAY_SIZE(ver_sig_regs);
} else {
verset->regs = pid_cid_regs;
verset->nregs = ARRAY_SIZE(pid_cid_regs);
}
verset->base = drvdata->cc_base;
verset->dev = dev;
debugfs_create_regset32("version", 0400, drvdata->dir, verset);
return 0;
}
void cc_debugfs_fini(struct cc_drvdata *drvdata)
{
debugfs_remove_recursive(drvdata->dir);
}