remoteproc: qcom: Use of_reserved_mem_region_* functions for "memory-region"

Use the newly added of_reserved_mem_region_to_resource() and
of_reserved_mem_region_count() functions to handle "memory-region"
properties.

The error handling is a bit different in some cases. Often
"memory-region" is optional, so failed lookup is not an error. But then
an error in of_reserved_mem_lookup() is treated as an error. However,
that distinction is not really important. Either the region is available
and usable or it is not. So now, it is just
of_reserved_mem_region_to_resource() which is checked for an error.

Signed-off-by: Rob Herring (Arm) <robh@kernel.org>
Link: https://lore.kernel.org/r/20251124182751.507624-2-robh@kernel.org
Signed-off-by: Bjorn Andersson <andersson@kernel.org>
This commit is contained in:
Rob Herring (Arm)
2025-11-24 12:27:48 -06:00
committed by Bjorn Andersson
parent a1f2c2d55a
commit c70b9d5fdc
5 changed files with 71 additions and 128 deletions

View File

@@ -625,26 +625,20 @@ static int adsp_init_mmio(struct qcom_adsp *adsp,
static int adsp_alloc_memory_region(struct qcom_adsp *adsp) static int adsp_alloc_memory_region(struct qcom_adsp *adsp)
{ {
struct reserved_mem *rmem = NULL; int ret;
struct device_node *node; struct resource res;
node = of_parse_phandle(adsp->dev->of_node, "memory-region", 0); ret = of_reserved_mem_region_to_resource(adsp->dev->of_node, 0, &res);
if (node) if (ret) {
rmem = of_reserved_mem_lookup(node);
of_node_put(node);
if (!rmem) {
dev_err(adsp->dev, "unable to resolve memory-region\n"); dev_err(adsp->dev, "unable to resolve memory-region\n");
return -EINVAL; return ret;
} }
adsp->mem_phys = adsp->mem_reloc = rmem->base; adsp->mem_phys = adsp->mem_reloc = res.start;
adsp->mem_size = rmem->size; adsp->mem_size = resource_size(&res);
adsp->mem_region = devm_ioremap_wc(adsp->dev, adsp->mem_region = devm_ioremap_resource_wc(adsp->dev, &res);
adsp->mem_phys, adsp->mem_size);
if (!adsp->mem_region) { if (!adsp->mem_region) {
dev_err(adsp->dev, "unable to map memory region: %pa+%zx\n", dev_err(adsp->dev, "unable to map memory region: %pR\n", &res);
&rmem->base, adsp->mem_size);
return -EBUSY; return -EBUSY;
} }

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@@ -1970,8 +1970,8 @@ static int q6v5_init_reset(struct q6v5 *qproc)
static int q6v5_alloc_memory_region(struct q6v5 *qproc) static int q6v5_alloc_memory_region(struct q6v5 *qproc)
{ {
struct device_node *child; struct device_node *child;
struct reserved_mem *rmem; struct resource res;
struct device_node *node; int ret;
/* /*
* In the absence of mba/mpss sub-child, extract the mba and mpss * In the absence of mba/mpss sub-child, extract the mba and mpss
@@ -1979,71 +1979,49 @@ static int q6v5_alloc_memory_region(struct q6v5 *qproc)
*/ */
child = of_get_child_by_name(qproc->dev->of_node, "mba"); child = of_get_child_by_name(qproc->dev->of_node, "mba");
if (!child) { if (!child) {
node = of_parse_phandle(qproc->dev->of_node, ret = of_reserved_mem_region_to_resource(qproc->dev->of_node, 0, &res);
"memory-region", 0);
} else { } else {
node = of_parse_phandle(child, "memory-region", 0); ret = of_reserved_mem_region_to_resource(child, 0, &res);
of_node_put(child); of_node_put(child);
} }
if (!node) { if (ret) {
dev_err(qproc->dev, "no mba memory-region specified\n");
return -EINVAL;
}
rmem = of_reserved_mem_lookup(node);
of_node_put(node);
if (!rmem) {
dev_err(qproc->dev, "unable to resolve mba region\n"); dev_err(qproc->dev, "unable to resolve mba region\n");
return -EINVAL; return ret;
} }
qproc->mba_phys = rmem->base; qproc->mba_phys = res.start;
qproc->mba_size = rmem->size; qproc->mba_size = resource_size(&res);
if (!child) { if (!child) {
node = of_parse_phandle(qproc->dev->of_node, ret = of_reserved_mem_region_to_resource(qproc->dev->of_node, 1, &res);
"memory-region", 1);
} else { } else {
child = of_get_child_by_name(qproc->dev->of_node, "mpss"); child = of_get_child_by_name(qproc->dev->of_node, "mpss");
node = of_parse_phandle(child, "memory-region", 0); ret = of_reserved_mem_region_to_resource(child, 0, &res);
of_node_put(child); of_node_put(child);
} }
if (!node) { if (ret) {
dev_err(qproc->dev, "no mpss memory-region specified\n");
return -EINVAL;
}
rmem = of_reserved_mem_lookup(node);
of_node_put(node);
if (!rmem) {
dev_err(qproc->dev, "unable to resolve mpss region\n"); dev_err(qproc->dev, "unable to resolve mpss region\n");
return -EINVAL; return ret;
} }
qproc->mpss_phys = qproc->mpss_reloc = rmem->base; qproc->mpss_phys = qproc->mpss_reloc = res.start;
qproc->mpss_size = rmem->size; qproc->mpss_size = resource_size(&res);
if (!child) { if (!child) {
node = of_parse_phandle(qproc->dev->of_node, "memory-region", 2); ret = of_reserved_mem_region_to_resource(qproc->dev->of_node, 2, &res);
} else { } else {
child = of_get_child_by_name(qproc->dev->of_node, "metadata"); child = of_get_child_by_name(qproc->dev->of_node, "metadata");
node = of_parse_phandle(child, "memory-region", 0); ret = of_reserved_mem_region_to_resource(child, 0, &res);
of_node_put(child); of_node_put(child);
} }
if (!node) if (ret)
return 0; return 0;
rmem = of_reserved_mem_lookup(node); qproc->mdata_phys = res.start;
if (!rmem) { qproc->mdata_size = resource_size(&res);
dev_err(qproc->dev, "unable to resolve metadata region\n");
return -EINVAL;
}
qproc->mdata_phys = rmem->base;
qproc->mdata_size = rmem->size;
return 0; return 0;
} }

View File

@@ -547,53 +547,37 @@ static void qcom_pas_pds_detach(struct qcom_pas *pas, struct device **pds, size_
static int qcom_pas_alloc_memory_region(struct qcom_pas *pas) static int qcom_pas_alloc_memory_region(struct qcom_pas *pas)
{ {
struct reserved_mem *rmem; struct resource res;
struct device_node *node; int ret;
node = of_parse_phandle(pas->dev->of_node, "memory-region", 0); ret = of_reserved_mem_region_to_resource(pas->dev->of_node, 0, &res);
if (!node) { if (ret) {
dev_err(pas->dev, "no memory-region specified\n");
return -EINVAL;
}
rmem = of_reserved_mem_lookup(node);
of_node_put(node);
if (!rmem) {
dev_err(pas->dev, "unable to resolve memory-region\n"); dev_err(pas->dev, "unable to resolve memory-region\n");
return -EINVAL; return ret;
} }
pas->mem_phys = pas->mem_reloc = rmem->base; pas->mem_phys = pas->mem_reloc = res.start;
pas->mem_size = rmem->size; pas->mem_size = resource_size(&res);
pas->mem_region = devm_ioremap_wc(pas->dev, pas->mem_phys, pas->mem_size); pas->mem_region = devm_ioremap_resource_wc(pas->dev, &res);
if (!pas->mem_region) { if (!pas->mem_region) {
dev_err(pas->dev, "unable to map memory region: %pa+%zx\n", dev_err(pas->dev, "unable to map memory region: %pR\n", &res);
&rmem->base, pas->mem_size);
return -EBUSY; return -EBUSY;
} }
if (!pas->dtb_pas_id) if (!pas->dtb_pas_id)
return 0; return 0;
node = of_parse_phandle(pas->dev->of_node, "memory-region", 1); ret = of_reserved_mem_region_to_resource(pas->dev->of_node, 1, &res);
if (!node) { if (ret) {
dev_err(pas->dev, "no dtb memory-region specified\n");
return -EINVAL;
}
rmem = of_reserved_mem_lookup(node);
of_node_put(node);
if (!rmem) {
dev_err(pas->dev, "unable to resolve dtb memory-region\n"); dev_err(pas->dev, "unable to resolve dtb memory-region\n");
return -EINVAL; return ret;
} }
pas->dtb_mem_phys = pas->dtb_mem_reloc = rmem->base; pas->dtb_mem_phys = pas->dtb_mem_reloc = res.start;
pas->dtb_mem_size = rmem->size; pas->dtb_mem_size = resource_size(&res);
pas->dtb_mem_region = devm_ioremap_wc(pas->dev, pas->dtb_mem_phys, pas->dtb_mem_size); pas->dtb_mem_region = devm_ioremap_resource_wc(pas->dev, &res);
if (!pas->dtb_mem_region) { if (!pas->dtb_mem_region) {
dev_err(pas->dev, "unable to map dtb memory region: %pa+%zx\n", dev_err(pas->dev, "unable to map dtb memory region: %pR\n", &res);
&rmem->base, pas->dtb_mem_size);
return -EBUSY; return -EBUSY;
} }
@@ -603,7 +587,6 @@ static int qcom_pas_alloc_memory_region(struct qcom_pas *pas)
static int qcom_pas_assign_memory_region(struct qcom_pas *pas) static int qcom_pas_assign_memory_region(struct qcom_pas *pas)
{ {
struct qcom_scm_vmperm perm[MAX_ASSIGN_COUNT]; struct qcom_scm_vmperm perm[MAX_ASSIGN_COUNT];
struct device_node *node;
unsigned int perm_size; unsigned int perm_size;
int offset; int offset;
int ret; int ret;
@@ -612,17 +595,15 @@ static int qcom_pas_assign_memory_region(struct qcom_pas *pas)
return 0; return 0;
for (offset = 0; offset < pas->region_assign_count; ++offset) { for (offset = 0; offset < pas->region_assign_count; ++offset) {
struct reserved_mem *rmem = NULL; struct resource res;
node = of_parse_phandle(pas->dev->of_node, "memory-region", ret = of_reserved_mem_region_to_resource(pas->dev->of_node,
pas->region_assign_idx + offset); pas->region_assign_idx + offset,
if (node) &res);
rmem = of_reserved_mem_lookup(node); if (ret) {
of_node_put(node);
if (!rmem) {
dev_err(pas->dev, "unable to resolve shareable memory-region index %d\n", dev_err(pas->dev, "unable to resolve shareable memory-region index %d\n",
offset); offset);
return -EINVAL; return ret;
} }
if (pas->region_assign_shared) { if (pas->region_assign_shared) {
@@ -637,8 +618,8 @@ static int qcom_pas_assign_memory_region(struct qcom_pas *pas)
perm_size = 1; perm_size = 1;
} }
pas->region_assign_phys[offset] = rmem->base; pas->region_assign_phys[offset] = res.start;
pas->region_assign_size[offset] = rmem->size; pas->region_assign_size[offset] = resource_size(&res);
pas->region_assign_owners[offset] = BIT(QCOM_SCM_VMID_HLOS); pas->region_assign_owners[offset] = BIT(QCOM_SCM_VMID_HLOS);
ret = qcom_scm_assign_mem(pas->region_assign_phys[offset], ret = qcom_scm_assign_mem(pas->region_assign_phys[offset],

View File

@@ -873,27 +873,22 @@ static int q6v5_wcss_init_mmio(struct q6v5_wcss *wcss,
static int q6v5_alloc_memory_region(struct q6v5_wcss *wcss) static int q6v5_alloc_memory_region(struct q6v5_wcss *wcss)
{ {
struct reserved_mem *rmem = NULL;
struct device_node *node;
struct device *dev = wcss->dev; struct device *dev = wcss->dev;
struct resource res;
int ret;
node = of_parse_phandle(dev->of_node, "memory-region", 0); ret = of_reserved_mem_region_to_resource(dev->of_node, 0, &res);
if (node) if (ret) {
rmem = of_reserved_mem_lookup(node);
of_node_put(node);
if (!rmem) {
dev_err(dev, "unable to acquire memory-region\n"); dev_err(dev, "unable to acquire memory-region\n");
return -EINVAL; return ret;
} }
wcss->mem_phys = rmem->base; wcss->mem_phys = res.start;
wcss->mem_reloc = rmem->base; wcss->mem_reloc = res.start;
wcss->mem_size = rmem->size; wcss->mem_size = resource_size(&res);
wcss->mem_region = devm_ioremap_wc(dev, wcss->mem_phys, wcss->mem_size); wcss->mem_region = devm_ioremap_resource_wc(dev, &res);
if (!wcss->mem_region) { if (!wcss->mem_region) {
dev_err(dev, "unable to map memory region: %pa+%pa\n", dev_err(dev, "unable to map memory region: %pR\n", &res);
&rmem->base, &rmem->size);
return -EBUSY; return -EBUSY;
} }

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@@ -526,25 +526,20 @@ static int wcnss_request_irq(struct qcom_wcnss *wcnss,
static int wcnss_alloc_memory_region(struct qcom_wcnss *wcnss) static int wcnss_alloc_memory_region(struct qcom_wcnss *wcnss)
{ {
struct reserved_mem *rmem = NULL; struct resource res;
struct device_node *node; int ret;
node = of_parse_phandle(wcnss->dev->of_node, "memory-region", 0); ret = of_reserved_mem_region_to_resource(wcnss->dev->of_node, 0, &res);
if (node) if (ret) {
rmem = of_reserved_mem_lookup(node);
of_node_put(node);
if (!rmem) {
dev_err(wcnss->dev, "unable to resolve memory-region\n"); dev_err(wcnss->dev, "unable to resolve memory-region\n");
return -EINVAL; return ret;
} }
wcnss->mem_phys = wcnss->mem_reloc = rmem->base; wcnss->mem_phys = wcnss->mem_reloc = res.start;
wcnss->mem_size = rmem->size; wcnss->mem_size = resource_size(&res);
wcnss->mem_region = devm_ioremap_wc(wcnss->dev, wcnss->mem_phys, wcnss->mem_size); wcnss->mem_region = devm_ioremap_resource_wc(wcnss->dev, &res);
if (!wcnss->mem_region) { if (!wcnss->mem_region) {
dev_err(wcnss->dev, "unable to map memory region: %pa+%zx\n", dev_err(wcnss->dev, "unable to map memory region: %pR\n", &res);
&rmem->base, wcnss->mem_size);
return -EBUSY; return -EBUSY;
} }