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authorjohannst <johannes.stoelp@gmail.com>2021-04-30 23:18:20 +0200
committerjohannst <johannes.stoelp@gmail.com>2021-04-30 23:18:20 +0200
commit43fe4fe17014f793e4b75ab7bb95b89c0183de17 (patch)
treefd56879040b0efe89bffd224696aa92361acdf68
parent56c1298fc149bf44b013c90242d552d2949c169c (diff)
downloaddynld-43fe4fe17014f793e4b75ab7bb95b89c0183de17.tar.gz
dynld-43fe4fe17014f793e4b75ab7bb95b89c0183de17.zip
Rename ExecInfo -> SystemVDescriptor
-rw-r--r--04_dynld_nostd/dynld.c49
1 files changed, 25 insertions, 24 deletions
diff --git a/04_dynld_nostd/dynld.c b/04_dynld_nostd/dynld.c
index 6e1bebf..5193761 100644
--- a/04_dynld_nostd/dynld.c
+++ b/04_dynld_nostd/dynld.c
@@ -21,7 +21,7 @@ enum {
};
// }}}
-// {{{ Execinfo
+// {{{ SystemVDescriptor
typedef struct {
uint64_t argc; // Number of commandline arguments.
@@ -29,31 +29,31 @@ typedef struct {
uint64_t envc; // Number of environment variables.
const char** envv; // List of pointers to environment variables.
uint64_t auxv[AT_MAX_CNT]; // Auxiliary vector entries.
-} ExecInfo;
+} SystemVDescriptor;
// Interpret and extract data passed on the stack by the Linux Kernel
// when loading the initial process image.
// The data is organized according to the SystemV x86_64 ABI.
-static ExecInfo get_exec_info(const uint64_t* prctx) {
- ExecInfo info = {0};
+static SystemVDescriptor get_systemv_descriptor(const uint64_t* prctx) {
+ SystemVDescriptor sysv = {0};
- info.argc = *prctx;
- info.argv = (const char**)(prctx + 1);
- info.envv = (const char**)(info.argv + info.argc + 1);
+ sysv.argc = *prctx;
+ sysv.argv = (const char**)(prctx + 1);
+ sysv.envv = (const char**)(sysv.argv + sysv.argc + 1);
// Count the number of environment variables in the `ENVP` segment.
- for (const char** env = info.envv; *env; ++env) {
- info.envc += 1;
+ for (const char** env = sysv.envv; *env; ++env) {
+ sysv.envc += 1;
}
// Decode auxiliary vector `AUXV`.
- for (const Auxv64Entry* auxvp = (const Auxv64Entry*)(info.envv + info.envc + 1); auxvp->tag != AT_NULL; ++auxvp) {
+ for (const Auxv64Entry* auxvp = (const Auxv64Entry*)(sysv.envv + sysv.envc + 1); auxvp->tag != AT_NULL; ++auxvp) {
if (auxvp->tag < AT_MAX_CNT) {
- info.auxv[auxvp->tag] = auxvp->val;
+ sysv.auxv[auxvp->tag] = auxvp->val;
}
}
- return info;
+ return sysv;
}
// }}}
@@ -92,7 +92,7 @@ static void decode_dynamic(Dso* dso, uint64_t dynoff) {
ERROR_ON(dso->dynamic[DT_HASH] == 0, "DT_HASH missing in dynamic section!");
}
-static Dso get_prog_dso(const ExecInfo* info) {
+static Dso get_prog_dso(const SystemVDescriptor* sysv) {
Dso prog = {0};
// Determine the base address of the user program.
@@ -121,21 +121,21 @@ static Dso get_prog_dso(const ExecInfo* info) {
// | |
//
// PROG BASE = AT_PHDR - PT_PHDR.vaddr
- ERROR_ON(info->auxv[AT_PHDR] == 0 || info->auxv[AT_EXECFD] != 0, "AT_PHDR entry missing in the AUXV!");
+ ERROR_ON(sysv->auxv[AT_PHDR] == 0 || sysv->auxv[AT_EXECFD] != 0, "AT_PHDR entry missing in the AUXV!");
// Offset to the `.dynamic` section from the user programs `base addr`.
uint64_t dynoff = 0;
// Program header of the user program.
- const Elf64Phdr* phdr = (const Elf64Phdr*)info->auxv[AT_PHDR];
+ const Elf64Phdr* phdr = (const Elf64Phdr*)sysv->auxv[AT_PHDR];
- ERROR_ON(info->auxv[AT_PHENT] != sizeof(Elf64Phdr), "Elf64Phdr size miss-match!");
+ ERROR_ON(sysv->auxv[AT_PHENT] != sizeof(Elf64Phdr), "Elf64Phdr size miss-match!");
// Decode PHDRs of the user program.
- for (unsigned phdrnum = info->auxv[AT_PHNUM]; --phdrnum; ++phdr) {
+ for (unsigned phdrnum = sysv->auxv[AT_PHNUM]; --phdrnum; ++phdr) {
if (phdr->type == PT_PHDR) {
- ERROR_ON(info->auxv[AT_PHDR] < phdr->vaddr, "Expectation auxv[AT_PHDR] >= phdr->vaddr failed!");
- prog.base = (uint8_t*)(info->auxv[AT_PHDR] - phdr->vaddr);
+ ERROR_ON(sysv->auxv[AT_PHDR] < phdr->vaddr, "Expectation auxv[AT_PHDR] >= phdr->vaddr failed!");
+ prog.base = (uint8_t*)(sysv->auxv[AT_PHDR] - phdr->vaddr);
} else if (phdr->type == PT_DYNAMIC) {
dynoff = phdr->vaddr;
}
@@ -148,8 +148,8 @@ static Dso get_prog_dso(const ExecInfo* info) {
decode_dynamic(&prog, dynoff);
// Get the entrypoint of the user program form the auxiliary vector.
- ERROR_ON(info->auxv[AT_ENTRY] == 0, "AT_ENTRY entry missing in the AUXV!");
- prog.entry = (void (*)())info->auxv[AT_ENTRY];
+ ERROR_ON(sysv->auxv[AT_ENTRY] == 0, "AT_ENTRY entry missing in the AUXV!");
+ prog.entry = (void (*)())sysv->auxv[AT_ENTRY];
return prog;
}
@@ -265,6 +265,7 @@ static void* lookup_sym(const Dso* dso, const char* symname) {
static Dso map_dependency(const char* dependency) {
// For simplicity we only search for SO dependencies in the current working dir.
+ // So no support for DT_RPATH/DT_RUNPATH and LD_LIBRARY_PATH.
ERROR_ON(access(dependency, R_OK) != 0, "Dependency '%s' does not exist!\n", dependency);
const int fd = open(dependency, O_RDONLY);
@@ -524,14 +525,14 @@ static void setup_got(const Dso* dso) {
void dl_entry(const uint64_t* prctx) {
// Parse SystemV ABI block.
- const ExecInfo exec_info = get_exec_info(prctx);
+ const SystemVDescriptor sysv_desc = get_systemv_descriptor(prctx);
// Ensure hard-coded page size value is correct.
- ERROR_ON(exec_info.auxv[AT_PAGESZ] != PAGE_SIZE, "Hard-coded PAGE_SIZE miss-match!");
+ ERROR_ON(sysv_desc.auxv[AT_PAGESZ] != PAGE_SIZE, "Hard-coded PAGE_SIZE miss-match!");
// Initialize dso handle for user program but extracting necesarry
// information from `AUXV` and the `PHDR`.
- const Dso dso_prog = get_prog_dso(&exec_info);
+ const Dso dso_prog = get_prog_dso(&sysv_desc);
// Map dependency.
//